diff --git a/go.mod b/go.mod index 7286ecd8f5..18357eefea 100644 --- a/go.mod +++ b/go.mod @@ -1,6 +1,6 @@ module knative.dev/eventing-rabbitmq -go 1.23.0 +go 1.24.0 require ( github.com/cloudevents/sdk-go/observability/opencensus/v2 v2.15.2 @@ -14,16 +14,16 @@ require ( github.com/rabbitmq/messaging-topology-operator v1.12.0 go.opencensus.io v0.24.0 go.uber.org/zap v1.27.0 - k8s.io/api v0.32.2 - k8s.io/apiextensions-apiserver v0.32.1 - k8s.io/apimachinery v0.32.2 - k8s.io/client-go v0.32.2 - k8s.io/code-generator v0.32.2 - k8s.io/kube-openapi v0.0.0-20241212222426-2c72e554b1e7 - knative.dev/eventing v0.45.1-0.20250526160117-40bac3cce0e6 - knative.dev/hack v0.0.0-20250514121446-f525e187efdc - knative.dev/pkg v0.0.0-20250520014526-44579e9ce5ed - knative.dev/reconciler-test v0.0.0-20250516121650-f46fa6544a97 + k8s.io/api v0.33.1 + k8s.io/apiextensions-apiserver v0.33.1 + k8s.io/apimachinery v0.33.1 + k8s.io/client-go v0.33.1 + k8s.io/code-generator v0.33.1 + k8s.io/kube-openapi v0.0.0-20250318190949-c8a335a9a2ff + knative.dev/eventing v0.45.1-0.20250709065003-351613bc3192 + knative.dev/hack v0.0.0-20250708013849-70d4b00da6ba + knative.dev/pkg v0.0.0-20250710001404-a4cc1bdef5b2 + knative.dev/reconciler-test v0.0.0-20250708152404-d97d9007b8d3 sigs.k8s.io/controller-runtime v0.19.0 ) @@ -41,6 +41,7 @@ require ( github.com/beorn7/perks v1.0.1 // indirect github.com/blang/semver/v4 v4.0.0 // indirect github.com/blendle/zapdriver v1.3.1 // indirect + github.com/cenkalti/backoff/v5 v5.0.2 // indirect github.com/census-instrumentation/opencensus-proto v0.4.1 // indirect github.com/cert-manager/cert-manager v1.16.3 // indirect github.com/cespare/xxhash/v2 v2.3.0 // indirect @@ -50,12 +51,15 @@ require ( github.com/davecgh/go-spew v1.1.2-0.20180830191138-d8f796af33cc // indirect github.com/emicklei/go-restful/v3 v3.12.1 // indirect github.com/evanphx/json-patch/v5 v5.9.11 // indirect + github.com/felixge/httpsnoop v1.0.4 // indirect github.com/fsnotify/fsnotify v1.7.0 // indirect github.com/fxamacker/cbor/v2 v2.7.0 // indirect - github.com/go-jose/go-jose/v3 v3.0.3 // indirect + github.com/go-jose/go-jose/v3 v3.0.4 // indirect github.com/go-kit/log v0.2.1 // indirect github.com/go-logfmt/logfmt v0.5.1 // indirect - github.com/go-logr/logr v1.4.2 // indirect + github.com/go-logr/logr v1.4.3 // indirect + github.com/go-logr/stdr v1.2.2 // indirect + github.com/go-logr/zapr v1.3.0 // indirect github.com/go-openapi/jsonpointer v0.21.0 // indirect github.com/go-openapi/jsonreference v0.21.0 // indirect github.com/go-openapi/swag v0.23.0 // indirect @@ -64,24 +68,22 @@ require ( github.com/golang/groupcache v0.0.0-20210331224755-41bb18bfe9da // indirect github.com/golang/protobuf v1.5.4 // indirect github.com/google/gnostic-models v0.6.9 // indirect - github.com/google/gofuzz v1.2.0 // indirect - github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.1 // indirect + github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.1 // indirect github.com/hashicorp/go-cleanhttp v0.5.2 // indirect github.com/hashicorp/go-retryablehttp v0.7.7 // indirect github.com/hashicorp/golang-lru v1.0.2 // indirect github.com/josharian/intern v1.0.0 // indirect github.com/json-iterator/go v1.1.12 // indirect - github.com/klauspost/compress v1.17.11 // indirect github.com/mailru/easyjson v0.9.0 // indirect github.com/modern-go/concurrent v0.0.0-20180306012644-bacd9c7ef1dd // indirect github.com/modern-go/reflect2 v1.0.2 // indirect github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822 // indirect github.com/openzipkin/zipkin-go v0.4.3 // indirect github.com/pmezard/go-difflib v1.0.1-0.20181226105442-5d4384ee4fb2 // indirect - github.com/prometheus/client_golang v1.20.5 // indirect - github.com/prometheus/client_model v0.6.1 // indirect - github.com/prometheus/common v0.62.0 // indirect - github.com/prometheus/procfs v0.15.1 // indirect + github.com/prometheus/client_golang v1.22.0 // indirect + github.com/prometheus/client_model v0.6.2 // indirect + github.com/prometheus/common v0.65.0 // indirect + github.com/prometheus/procfs v0.16.1 // indirect github.com/prometheus/statsd_exporter v0.22.7 // indirect github.com/rickb777/plural v1.2.1 // indirect github.com/robfig/cron/v3 v3.0.1 // indirect @@ -90,35 +92,53 @@ require ( github.com/stretchr/testify v1.10.0 // indirect github.com/valyala/bytebufferpool v1.0.0 // indirect github.com/x448/float16 v0.8.4 // indirect + go.opentelemetry.io/auto/sdk v1.1.0 // indirect + go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.62.0 // indirect + go.opentelemetry.io/contrib/instrumentation/runtime v0.62.0 // indirect + go.opentelemetry.io/otel v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp v1.37.0 // indirect + go.opentelemetry.io/otel/exporters/prometheus v0.59.0 // indirect + go.opentelemetry.io/otel/exporters/stdout/stdouttrace v1.37.0 // indirect + go.opentelemetry.io/otel/metric v1.37.0 // indirect + go.opentelemetry.io/otel/sdk v1.37.0 // indirect + go.opentelemetry.io/otel/sdk/metric v1.37.0 // indirect + go.opentelemetry.io/otel/trace v1.37.0 // indirect + go.opentelemetry.io/proto/otlp v1.7.0 // indirect go.uber.org/atomic v1.10.0 // indirect go.uber.org/automaxprocs v1.6.0 // indirect go.uber.org/multierr v1.11.0 // indirect - golang.org/x/crypto v0.38.0 // indirect + go.yaml.in/yaml/v2 v2.4.2 // indirect + golang.org/x/crypto v0.39.0 // indirect golang.org/x/exp v0.0.0-20250210185358-939b2ce775ac // indirect - golang.org/x/mod v0.24.0 // indirect - golang.org/x/net v0.40.0 // indirect - golang.org/x/oauth2 v0.26.0 // indirect - golang.org/x/sync v0.14.0 // indirect + golang.org/x/mod v0.25.0 // indirect + golang.org/x/net v0.41.0 // indirect + golang.org/x/oauth2 v0.30.0 // indirect + golang.org/x/sync v0.15.0 // indirect golang.org/x/sys v0.33.0 // indirect golang.org/x/term v0.32.0 // indirect - golang.org/x/text v0.25.0 // indirect + golang.org/x/text v0.26.0 // indirect golang.org/x/time v0.10.0 // indirect - golang.org/x/tools v0.33.0 // indirect + golang.org/x/tools v0.34.0 // indirect gomodules.xyz/jsonpatch/v2 v2.5.0 // indirect google.golang.org/api v0.198.0 // indirect - google.golang.org/genproto/googleapis/api v0.0.0-20250218202821-56aae31c358a // indirect - google.golang.org/genproto/googleapis/rpc v0.0.0-20250218202821-56aae31c358a // indirect - google.golang.org/grpc v1.72.1 // indirect + google.golang.org/genproto/googleapis/api v0.0.0-20250603155806-513f23925822 // indirect + google.golang.org/genproto/googleapis/rpc v0.0.0-20250603155806-513f23925822 // indirect + google.golang.org/grpc v1.73.0 // indirect google.golang.org/protobuf v1.36.6 // indirect gopkg.in/evanphx/json-patch.v4 v4.12.0 // indirect gopkg.in/inf.v0 v0.9.1 // indirect gopkg.in/yaml.v2 v2.4.0 // indirect gopkg.in/yaml.v3 v3.0.1 // indirect - k8s.io/apiserver v0.32.1 // indirect - k8s.io/gengo/v2 v2.0.0-20240911193312-2b36238f13e9 // indirect + k8s.io/apiserver v0.33.1 // indirect + k8s.io/gengo/v2 v2.0.0-20250207200755-1244d31929d7 // indirect k8s.io/klog/v2 v2.130.1 // indirect sigs.k8s.io/gateway-api v1.1.0 // indirect sigs.k8s.io/json v0.0.0-20241014173422-cfa47c3a1cc8 // indirect - sigs.k8s.io/structured-merge-diff/v4 v4.5.0 // indirect - sigs.k8s.io/yaml v1.4.0 // indirect + sigs.k8s.io/randfill v1.0.0 // indirect + sigs.k8s.io/structured-merge-diff/v4 v4.6.0 // indirect + sigs.k8s.io/yaml v1.5.0 // indirect ) diff --git a/go.sum b/go.sum index 38469d96f0..4df901e787 100644 --- a/go.sum +++ b/go.sum @@ -81,6 +81,8 @@ github.com/blang/semver/v4 v4.0.0 h1:1PFHFE6yCCTv8C1TeyNNarDzntLi7wMI5i/pzqYIsAM github.com/blang/semver/v4 v4.0.0/go.mod h1:IbckMUScFkM3pff0VJDNKRiT6TG/YpiHIM2yvyW5YoQ= github.com/blendle/zapdriver v1.3.1 h1:C3dydBOWYRiOk+B8X9IVZ5IOe+7cl+tGOexN4QqHfpE= github.com/blendle/zapdriver v1.3.1/go.mod h1:mdXfREi6u5MArG4j9fewC+FGnXaBR+T4Ox4J2u4eHCc= +github.com/cenkalti/backoff/v5 v5.0.2 h1:rIfFVxEf1QsI7E1ZHfp/B4DF/6QBAUhmgkxc0H7Zss8= +github.com/cenkalti/backoff/v5 v5.0.2/go.mod h1:rkhZdG3JZukswDf7f0cwqPNk4K0sa+F97BxZthm/crw= github.com/census-instrumentation/opencensus-proto v0.2.1/go.mod h1:f6KPmirojxKA12rnyqOA5BBL4O983OfeGPqjHWSTneU= github.com/census-instrumentation/opencensus-proto v0.3.0/go.mod h1:f6KPmirojxKA12rnyqOA5BBL4O983OfeGPqjHWSTneU= github.com/census-instrumentation/opencensus-proto v0.4.1 h1:iKLQ0xPNFxR/2hzXZMrBo8f1j86j5WHzznCCQxV/b8g= @@ -151,6 +153,8 @@ github.com/fatih/color v1.9.0/go.mod h1:eQcE1qtQxscV5RaZvpXrrb8Drkc3/DdQ+uUYCNjL github.com/fatih/color v1.13.0/go.mod h1:kLAiJbzzSOZDVNGyDpeOxJ47H46qBXwg5ILebYFFOfk= github.com/fatih/color v1.16.0 h1:zmkK9Ngbjj+K0yRhTVONQh1p/HknKYSlNT+vZCzyokM= github.com/fatih/color v1.16.0/go.mod h1:fL2Sau1YI5c0pdGEVCbKQbLXB6edEj1ZgiY4NijnWvE= +github.com/felixge/httpsnoop v1.0.4 h1:NFTV2Zj1bL4mc9sqWACXbQFVBBg2W3GPvqp8/ESS2Wg= +github.com/felixge/httpsnoop v1.0.4/go.mod h1:m8KPJKqk1gH5J9DgRY2ASl2lWCfGKXixSwevea8zH2U= github.com/fsnotify/fsnotify v1.4.7/go.mod h1:jwhsz4b93w/PPRr/qN1Yymfu8t87LnFCMoQvtojpjFo= github.com/fsnotify/fsnotify v1.5.1/go.mod h1:T3375wBYaZdLLcVNkcVbzGHY7f1l/uK5T5Ai1i3InKU= github.com/fsnotify/fsnotify v1.7.0 h1:8JEhPFa5W2WU7YfeZzPNqzMP6Lwt7L2715Ggo0nosvA= @@ -161,8 +165,8 @@ github.com/ghodss/yaml v1.0.0/go.mod h1:4dBDuWmgqj2HViK6kFavaiC9ZROes6MMH2rRYeME github.com/go-gl/glfw v0.0.0-20190409004039-e6da0acd62b1/go.mod h1:vR7hzQXu2zJy9AVAgeJqvqgH9Q5CA+iKCZ2gyEVpxRU= github.com/go-gl/glfw/v3.3/glfw v0.0.0-20191125211704-12ad95a8df72/go.mod h1:tQ2UAYgL5IevRw8kRxooKSPJfGvJ9fJQFa0TUsXzTg8= github.com/go-gl/glfw/v3.3/glfw v0.0.0-20200222043503-6f7a984d4dc4/go.mod h1:tQ2UAYgL5IevRw8kRxooKSPJfGvJ9fJQFa0TUsXzTg8= -github.com/go-jose/go-jose/v3 v3.0.3 h1:fFKWeig/irsp7XD2zBxvnmA/XaRWp5V3CBsZXJF7G7k= -github.com/go-jose/go-jose/v3 v3.0.3/go.mod h1:5b+7YgP7ZICgJDBdfjZaIt+H/9L9T/YQrVfLAMboGkQ= +github.com/go-jose/go-jose/v3 v3.0.4 h1:Wp5HA7bLQcKnf6YYao/4kpRpVMp/yf6+pJKV8WFSaNY= +github.com/go-jose/go-jose/v3 v3.0.4/go.mod h1:5b+7YgP7ZICgJDBdfjZaIt+H/9L9T/YQrVfLAMboGkQ= github.com/go-kit/kit v0.8.0/go.mod h1:xBxKIO96dXMWWy0MnWVtmwkA9/13aqxPnvrjFYMA2as= github.com/go-kit/kit v0.9.0/go.mod h1:xBxKIO96dXMWWy0MnWVtmwkA9/13aqxPnvrjFYMA2as= github.com/go-kit/log v0.1.0/go.mod h1:zbhenjAZHb184qTLMA9ZjW7ThYL0H2mk7Q6pNt4vbaY= @@ -174,8 +178,9 @@ github.com/go-logfmt/logfmt v0.4.0/go.mod h1:3RMwSq7FuexP4Kalkev3ejPJsZTpXXBr9+V github.com/go-logfmt/logfmt v0.5.0/go.mod h1:wCYkCAKZfumFQihp8CzCvQ3paCTfi41vtzG1KdI/P7A= github.com/go-logfmt/logfmt v0.5.1 h1:otpy5pqBCBZ1ng9RQ0dPu4PN7ba75Y/aA+UpowDyNVA= github.com/go-logfmt/logfmt v0.5.1/go.mod h1:WYhtIu8zTZfxdn5+rREduYbwxfcBr/Vr6KEVveWlfTs= -github.com/go-logr/logr v1.4.2 h1:6pFjapn8bFcIbiKo3XT4j/BhANplGihG6tvd+8rYgrY= -github.com/go-logr/logr v1.4.2/go.mod h1:9T104GzyrTigFIr8wt5mBrctHMim0Nb2HLGrmQ40KvY= +github.com/go-logr/logr v1.2.2/go.mod h1:jdQByPbusPIv2/zmleS9BjJVeZ6kBagPoEUsqbVz/1A= +github.com/go-logr/logr v1.4.3 h1:CjnDlHq8ikf6E492q6eKboGOC0T8CDaOvkHCIg8idEI= +github.com/go-logr/logr v1.4.3/go.mod h1:9T104GzyrTigFIr8wt5mBrctHMim0Nb2HLGrmQ40KvY= github.com/go-logr/stdr v1.2.2 h1:hSWxHoqTgW2S2qGc0LTAI563KZ5YKYRhT3MFKZMbjag= github.com/go-logr/stdr v1.2.2/go.mod h1:mMo/vtBO5dYbehREoey6XUKy/eSumjCCveDpRre4VKE= github.com/go-logr/zapr v1.3.0 h1:XGdV8XW8zdwFiwOA2Dryh1gj2KRQyOOoNmBy4EplIcQ= @@ -292,8 +297,8 @@ github.com/gorilla/context v1.1.1/go.mod h1:kBGZzfjB9CEq2AlWe17Uuf7NDRt0dE0s8S51 github.com/gorilla/mux v1.6.2/go.mod h1:1lud6UwP+6orDFRuTfBEV8e9/aOM/c4fVVCaMa2zaAs= github.com/grpc-ecosystem/grpc-gateway v1.14.6/go.mod h1:zdiPV4Yse/1gnckTHtghG4GkDEdKCRJduHpTxT3/jcw= github.com/grpc-ecosystem/grpc-gateway v1.16.0/go.mod h1:BDjrQk3hbvj6Nolgz8mAMFbcEtjT1g+wF4CSlocrBnw= -github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.1 h1:e9Rjr40Z98/clHv5Yg79Is0NtosR5LXRvdr7o/6NwbA= -github.com/grpc-ecosystem/grpc-gateway/v2 v2.26.1/go.mod h1:tIxuGz/9mpox++sgp9fJjHO0+q1X9/UOWd798aAm22M= +github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.1 h1:X5VWvz21y3gzm9Nw/kaUeku/1+uBhcekkmy4IkffJww= +github.com/grpc-ecosystem/grpc-gateway/v2 v2.27.1/go.mod h1:Zanoh4+gvIgluNqcfMVTJueD4wSS5hT7zTt4Mrutd90= github.com/hashicorp/consul/api v1.11.0/go.mod h1:XjsvQN+RJGWI2TWy1/kqaE16HrR2J/FWgkYjdZQsX9M= github.com/hashicorp/consul/sdk v0.8.0/go.mod h1:GBvyrGALthsZObzUGsfgHZQDXjg4lOjagTIwIR1vPms= github.com/hashicorp/errwrap v1.0.0/go.mod h1:YH+1FKiLXxHSkmPseP+kNlulaMuP3n2brvKWEqk/Jc4= @@ -353,8 +358,8 @@ github.com/kelseyhightower/envconfig v1.4.0 h1:Im6hONhd3pLkfDFsbRgu68RDNkGF1r3dv github.com/kelseyhightower/envconfig v1.4.0/go.mod h1:cccZRl6mQpaq41TPp5QxidR+Sa3axMbJDNb//FQX6Gg= github.com/kisielk/errcheck v1.5.0/go.mod h1:pFxgyoBC7bSaBwPgfKdkLd5X25qrDl4LWUI2bnpBCr8= github.com/kisielk/gotool v1.0.0/go.mod h1:XhKaO+MFFWcvkIS/tQcRk01m1F5IRFswLeQ+oQHNcck= -github.com/klauspost/compress v1.17.11 h1:In6xLpyWOi1+C7tXUUWv2ot1QvBjxevKAaI6IXrJmUc= -github.com/klauspost/compress v1.17.11/go.mod h1:pMDklpSncoRMuLFrf1W9Ss9KT+0rH90U12bZKk7uwG0= +github.com/klauspost/compress v1.18.0 h1:c/Cqfb0r+Yi+JtIEq73FWXVkRonBlf0CRNYc8Zttxdo= +github.com/klauspost/compress v1.18.0/go.mod h1:2Pp+KzxcywXVXMr50+X0Q/Lsb43OQHYWRCY2AiWywWQ= github.com/konsorten/go-windows-terminal-sequences v1.0.1/go.mod h1:T0+1ngSBFLxvqU3pZ+m/2kptfBszLMUkC4ZK/EgS/cQ= github.com/konsorten/go-windows-terminal-sequences v1.0.3/go.mod h1:T0+1ngSBFLxvqU3pZ+m/2kptfBszLMUkC4ZK/EgS/cQ= github.com/kr/fs v0.1.0/go.mod h1:FFnZGqtBN9Gxj7eW1uZ42v5BccTP0vu6NEaFoC2HwRg= @@ -453,14 +458,14 @@ github.com/prometheus/client_golang v1.11.0/go.mod h1:Z6t4BnS23TR94PD6BsDNk8yVqr github.com/prometheus/client_golang v1.12.1/go.mod h1:3Z9XVyYiZYEO+YQWt3RD2R3jrbd179Rt297l4aS6nDY= github.com/prometheus/client_golang v1.12.2/go.mod h1:3Z9XVyYiZYEO+YQWt3RD2R3jrbd179Rt297l4aS6nDY= github.com/prometheus/client_golang v1.13.0/go.mod h1:vTeo+zgvILHsnnj/39Ou/1fPN5nJFOEMgftOUOmlvYQ= -github.com/prometheus/client_golang v1.20.5 h1:cxppBPuYhUnsO6yo/aoRol4L7q7UFfdm+bR9r+8l63Y= -github.com/prometheus/client_golang v1.20.5/go.mod h1:PIEt8X02hGcP8JWbeHyeZ53Y/jReSnHgO035n//V5WE= +github.com/prometheus/client_golang v1.22.0 h1:rb93p9lokFEsctTys46VnV1kLCDpVZ0a/Y92Vm0Zc6Q= +github.com/prometheus/client_golang v1.22.0/go.mod h1:R7ljNsLXhuQXYZYtw6GAE9AZg8Y7vEW5scdCXrWRXC0= github.com/prometheus/client_model v0.0.0-20180712105110-5c3871d89910/go.mod h1:MbSGuTsp3dbXC40dX6PRTWyKYBIrTGTE9sqQNg2J8bo= github.com/prometheus/client_model v0.0.0-20190129233127-fd36f4220a90/go.mod h1:xMI15A0UPsDsEKsMN9yxemIoYk6Tm2C1GtYGdfGttqA= github.com/prometheus/client_model v0.0.0-20190812154241-14fe0d1b01d4/go.mod h1:xMI15A0UPsDsEKsMN9yxemIoYk6Tm2C1GtYGdfGttqA= github.com/prometheus/client_model v0.2.0/go.mod h1:xMI15A0UPsDsEKsMN9yxemIoYk6Tm2C1GtYGdfGttqA= -github.com/prometheus/client_model v0.6.1 h1:ZKSh/rekM+n3CeS952MLRAdFwIKqeY8b62p8ais2e9E= -github.com/prometheus/client_model v0.6.1/go.mod h1:OrxVMOVHjw3lKMa8+x6HeMGkHMQyHDk9E3jmP2AmGiY= +github.com/prometheus/client_model v0.6.2 h1:oBsgwpGs7iVziMvrGhE53c/GrLUsZdHnqNwqPLxwZyk= +github.com/prometheus/client_model v0.6.2/go.mod h1:y3m2F6Gdpfy6Ut/GBsUqTWZqCUvMVzSfMLjcu6wAwpE= github.com/prometheus/common v0.4.1/go.mod h1:TNfzLD0ON7rHzMJeJkieUDPYmFC7Snx/y86RQel1bk4= github.com/prometheus/common v0.9.1/go.mod h1:yhUN8i9wzaXS3w1O07YhxHEBxD+W35wd8bs7vj7HSQ4= github.com/prometheus/common v0.10.0/go.mod h1:Tlit/dnDKsSWFlCLTWaA1cyBgKHSMdTB80sz/V91rCo= @@ -468,8 +473,8 @@ github.com/prometheus/common v0.26.0/go.mod h1:M7rCNAaPfAosfx8veZJCuw84e35h3Cfd9 github.com/prometheus/common v0.32.1/go.mod h1:vu+V0TpY+O6vW9J44gczi3Ap/oXXR10b+M/gUGO4Hls= github.com/prometheus/common v0.35.0/go.mod h1:phzohg0JFMnBEFGxTDbfu3QyL5GI8gTQJFhYO5B3mfA= github.com/prometheus/common v0.37.0/go.mod h1:phzohg0JFMnBEFGxTDbfu3QyL5GI8gTQJFhYO5B3mfA= -github.com/prometheus/common v0.62.0 h1:xasJaQlnWAeyHdUBeGjXmutelfJHWMRr+Fg4QszZ2Io= -github.com/prometheus/common v0.62.0/go.mod h1:vyBcEuLSvWos9B1+CyL7JZ2up+uFzXhkqml0W5zIY1I= +github.com/prometheus/common v0.65.0 h1:QDwzd+G1twt//Kwj/Ww6E9FQq1iVMmODnILtW1t2VzE= +github.com/prometheus/common v0.65.0/go.mod h1:0gZns+BLRQ3V6NdaerOhMbwwRbNh9hkGINtQAsP5GS8= github.com/prometheus/procfs v0.0.0-20181005140218-185b4288413d/go.mod h1:c3At6R/oaqEKCNdg8wHV1ftS6bRYblBhIjjI8uT2IGk= github.com/prometheus/procfs v0.0.2/go.mod h1:TjEm7ze935MbeOT/UhFTIMYKhuLP4wbCsTZCD3I8kEA= github.com/prometheus/procfs v0.0.8/go.mod h1:7Qr8sr6344vo1JqZ6HhLceV9o3AJ1Ff+GxbHq6oeK9A= @@ -477,8 +482,8 @@ github.com/prometheus/procfs v0.1.3/go.mod h1:lV6e/gmhEcM9IjHGsFOCxxuZ+z1YqCvr4O github.com/prometheus/procfs v0.6.0/go.mod h1:cz+aTbrPOrUb4q7XlbU9ygM+/jj0fzG6c1xBZuNvfVA= github.com/prometheus/procfs v0.7.3/go.mod h1:cz+aTbrPOrUb4q7XlbU9ygM+/jj0fzG6c1xBZuNvfVA= github.com/prometheus/procfs v0.8.0/go.mod h1:z7EfXMXOkbkqb9IINtpCn86r/to3BnA0uaxHdg830/4= -github.com/prometheus/procfs v0.15.1 h1:YagwOFzUgYfKKHX6Dr+sHT7km/hxC76UB0learggepc= -github.com/prometheus/procfs v0.15.1/go.mod h1:fB45yRUv8NstnjriLhBQLuOUt+WW4BsoGhij/e3PBqk= +github.com/prometheus/procfs v0.16.1 h1:hZ15bTNuirocR6u0JZ6BAHHmwS1p8B4P6MRqxtzMyRg= +github.com/prometheus/procfs v0.16.1/go.mod h1:teAbpZRB1iIAJYREa1LsoWUXykVXA1KlTmWl8x/U+Is= github.com/prometheus/statsd_exporter v0.22.7 h1:7Pji/i2GuhK6Lu7DHrtTkFmNBCudCPT1pX2CziuyQR0= github.com/prometheus/statsd_exporter v0.22.7/go.mod h1:N/TevpjkIh9ccs6nuzY3jQn9dFqnUakOjnEuMPJJJnI= github.com/rabbitmq/amqp091-go v1.9.0 h1:qrQtyzB4H8BQgEuJwhmVQqVHB9O4+MNDJCCAcpc3Aoo= @@ -524,6 +529,8 @@ github.com/stretchr/objx v0.1.0/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+ github.com/stretchr/objx v0.1.1/go.mod h1:HFkY916IF+rwdDfMAkV7OtwuqBVzrE8GR6GFx+wExME= github.com/stretchr/objx v0.4.0/go.mod h1:YvHI0jy2hoMjB+UWwv71VJQ9isScKT/TqJzVSSt89Yw= github.com/stretchr/objx v0.5.0/go.mod h1:Yh+to48EsGEfYuaHDzXPcE3xhTkx73EhmCGUpEOglKo= +github.com/stretchr/objx v0.5.2 h1:xuMeJ0Sdp5ZMRXx/aWO6RZxdr3beISkG5/G/aIRr3pY= +github.com/stretchr/objx v0.5.2/go.mod h1:FRsXN1f5AsAjCGJKqEizvkpNtU+EGNCLh3NxZ/8L+MA= github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs= github.com/stretchr/testify v1.3.0/go.mod h1:M5WIy9Dh21IEIfnGCwXGc5bZfKNJtfHm1UVUgZn+9EI= github.com/stretchr/testify v1.4.0/go.mod h1:j7eGeouHqKxXV5pUuKE4zz7dFj8WfuZ+81PSLYec5m4= @@ -562,17 +569,37 @@ go.opencensus.io v0.24.0 h1:y73uSU6J157QMP2kn2r30vwW1A2W2WFwSCGnAVxeaD0= go.opencensus.io v0.24.0/go.mod h1:vNK8G9p7aAivkbmorf4v+7Hgx+Zs0yY+0fOtgBfjQKo= go.opentelemetry.io/auto/sdk v1.1.0 h1:cH53jehLUN6UFLY71z+NDOiNJqDdPRaXzTel0sJySYA= go.opentelemetry.io/auto/sdk v1.1.0/go.mod h1:3wSPjt5PWp2RhlCcmmOial7AvC4DQqZb7a7wCow3W8A= -go.opentelemetry.io/otel v1.34.0 h1:zRLXxLCgL1WyKsPVrgbSdMN4c0FMkDAskSTQP+0hdUY= -go.opentelemetry.io/otel v1.34.0/go.mod h1:OWFPOQ+h4G8xpyjgqo4SxJYdDQ/qmRH+wivy7zzx9oI= -go.opentelemetry.io/otel/metric v1.34.0 h1:+eTR3U0MyfWjRDhmFMxe2SsW64QrZ84AOhvqS7Y+PoQ= -go.opentelemetry.io/otel/metric v1.34.0/go.mod h1:CEDrp0fy2D0MvkXE+dPV7cMi8tWZwX3dmaIhwPOaqHE= -go.opentelemetry.io/otel/sdk v1.34.0 h1:95zS4k/2GOy069d321O8jWgYsW3MzVV+KuSPKp7Wr1A= -go.opentelemetry.io/otel/sdk v1.34.0/go.mod h1:0e/pNiaMAqaykJGKbi+tSjWfNNHMTxoC9qANsCzbyxU= -go.opentelemetry.io/otel/sdk/metric v1.34.0 h1:5CeK9ujjbFVL5c1PhLuStg1wxA7vQv7ce1EK0Gyvahk= -go.opentelemetry.io/otel/sdk/metric v1.34.0/go.mod h1:jQ/r8Ze28zRKoNRdkjCZxfs6YvBTG1+YIqyFVFYec5w= -go.opentelemetry.io/otel/trace v1.34.0 h1:+ouXS2V8Rd4hp4580a8q23bg0azF2nI8cqLYnC8mh/k= -go.opentelemetry.io/otel/trace v1.34.0/go.mod h1:Svm7lSjQD7kG7KJ/MUHPVXSDGz2OX4h0M2jHBhmSfRE= 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+go.opentelemetry.io/otel/trace v1.37.0/go.mod h1:TlgrlQ+PtQO5XFerSPUYG0JSgGyryXewPGyayAWSBS0= go.opentelemetry.io/proto/otlp v0.7.0/go.mod h1:PqfVotwruBrMGOCsRd/89rSnXhoiJIqeYNgFYFoEGnI= +go.opentelemetry.io/proto/otlp v1.7.0 h1:jX1VolD6nHuFzOYso2E73H85i92Mv8JQYk0K9vz09os= +go.opentelemetry.io/proto/otlp v1.7.0/go.mod h1:fSKjH6YJ7HDlwzltzyMj036AJ3ejJLCgCSHGj4efDDo= go.uber.org/atomic v1.4.0/go.mod h1:gD2HeocX3+yG+ygLZcrzQJaqmWj9AIm7n08wl/qW/PE= go.uber.org/atomic v1.7.0/go.mod h1:fEN4uk6kAWBTFdckzkM89CLk9XfWZrxpCo0nPH17wJc= go.uber.org/atomic v1.10.0 h1:9qC72Qh0+3MqyJbAn8YU5xVq1frD8bn3JtD2oXtafVQ= @@ -590,6 +617,10 @@ go.uber.org/zap v1.10.0/go.mod h1:vwi/ZaCAaUcBkycHslxD9B2zi4UTXhF60s6SWpuDF0Q= go.uber.org/zap v1.17.0/go.mod h1:MXVU+bhUf/A7Xi2HNOnopQOrmycQ5Ih87HtOu4q5SSo= go.uber.org/zap v1.27.0 h1:aJMhYGrd5QSmlpLMr2MftRKl7t8J8PTZPA732ud/XR8= go.uber.org/zap v1.27.0/go.mod h1:GB2qFLM7cTU87MWRP2mPIjqfIDnGu+VIO4V/SdhGo2E= +go.yaml.in/yaml/v2 v2.4.2 h1:DzmwEr2rDGHl7lsFgAHxmNz/1NlQ7xLIrlN2h5d1eGI= +go.yaml.in/yaml/v2 v2.4.2/go.mod h1:081UH+NErpNdqlCXm3TtEran0rJZGxAYx9hb/ELlsPU= +go.yaml.in/yaml/v3 v3.0.3 h1:bXOww4E/J3f66rav3pX3m8w6jDE4knZjGOw8b5Y6iNE= +go.yaml.in/yaml/v3 v3.0.3/go.mod h1:tBHosrYAkRZjRAOREWbDnBXUf08JOwYq++0QNwQiWzI= golang.org/x/crypto v0.0.0-20180904163835-0709b304e793/go.mod h1:6SG95UA2DQfeDnfUPMdvaQW0Q7yPrPDi9nlGo2tz2b4= golang.org/x/crypto v0.0.0-20181029021203-45a5f77698d3/go.mod h1:6SG95UA2DQfeDnfUPMdvaQW0Q7yPrPDi9nlGo2tz2b4= golang.org/x/crypto v0.0.0-20190308221718-c2843e01d9a2/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w= @@ -602,8 +633,8 @@ golang.org/x/crypto v0.0.0-20200622213623-75b288015ac9/go.mod h1:LzIPMQfyMNhhGPh golang.org/x/crypto v0.0.0-20210817164053-32db794688a5/go.mod h1:GvvjBRRGRdwPK5ydBHafDWAxML/pGHZbMvKqRZ5+Abc= golang.org/x/crypto v0.0.0-20210921155107-089bfa567519/go.mod h1:GvvjBRRGRdwPK5ydBHafDWAxML/pGHZbMvKqRZ5+Abc= golang.org/x/crypto v0.19.0/go.mod h1:Iy9bg/ha4yyC70EfRS8jz+B6ybOBKMaSxLj6P6oBDfU= -golang.org/x/crypto v0.38.0 h1:jt+WWG8IZlBnVbomuhg2Mdq0+BBQaHbtqHEFEigjUV8= -golang.org/x/crypto v0.38.0/go.mod h1:MvrbAqul58NNYPKnOra203SB9vpuZW0e+RRZV+Ggqjw= +golang.org/x/crypto v0.39.0 h1:SHs+kF4LP+f+p14esP5jAoDpHU8Gu/v9lFRK6IT5imM= +golang.org/x/crypto v0.39.0/go.mod h1:L+Xg3Wf6HoL4Bn4238Z6ft6KfEpN0tJGo53AAPC632U= golang.org/x/exp v0.0.0-20190121172915-509febef88a4/go.mod h1:CJ0aWSM057203Lf6IL+f9T1iT9GByDxfZKAQTCR3kQA= golang.org/x/exp v0.0.0-20190306152737-a1d7652674e8/go.mod h1:CJ0aWSM057203Lf6IL+f9T1iT9GByDxfZKAQTCR3kQA= golang.org/x/exp v0.0.0-20190510132918-efd6b22b2522/go.mod h1:ZjyILWgesfNpC6sMxTJOJm9Kp84zZh5NQWvqDGG3Qr8= @@ -644,8 +675,8 @@ golang.org/x/mod v0.4.2/go.mod h1:s0Qsj1ACt9ePp/hMypM3fl4fZqREWJwdYDEqhRiZZUA= golang.org/x/mod v0.5.0/go.mod h1:5OXOZSfqPIIbmVBIIKWRFfZjPR0E5r58TLhUjH0a2Ro= golang.org/x/mod v0.6.0-dev.0.20220419223038-86c51ed26bb4/go.mod h1:jJ57K6gSWd91VN4djpZkiMVwK6gcyfeH4XE8wZrZaV4= golang.org/x/mod v0.8.0/go.mod h1:iBbtSCu2XBx23ZKBPSOrRkjjQPZFPuis4dIYUhu/chs= -golang.org/x/mod v0.24.0 h1:ZfthKaKaT4NrhGVZHO1/WDTwGES4De8KtWO0SIbNJMU= -golang.org/x/mod v0.24.0/go.mod h1:IXM97Txy2VM4PJ3gI61r1YEk/gAj6zAHN3AdZt6S9Ww= +golang.org/x/mod v0.25.0 h1:n7a+ZbQKQA/Ysbyb0/6IbB1H/X41mKgbhfv7AfG/44w= +golang.org/x/mod v0.25.0/go.mod h1:IXM97Txy2VM4PJ3gI61r1YEk/gAj6zAHN3AdZt6S9Ww= golang.org/x/net v0.0.0-20180724234803-3673e40ba225/go.mod h1:mL1N/T3taQHkDXs73rZJwtUhF3w3ftmwwsq0BUmARs4= golang.org/x/net v0.0.0-20180826012351-8a410e7b638d/go.mod h1:mL1N/T3taQHkDXs73rZJwtUhF3w3ftmwwsq0BUmARs4= golang.org/x/net v0.0.0-20180906233101-161cd47e91fd/go.mod h1:mL1N/T3taQHkDXs73rZJwtUhF3w3ftmwwsq0BUmARs4= @@ -696,8 +727,8 @@ golang.org/x/net v0.0.0-20220225172249-27dd8689420f/go.mod h1:CfG3xpIq0wQ8r1q4Su golang.org/x/net v0.0.0-20220722155237-a158d28d115b/go.mod h1:XRhObCWvk6IyKnWLug+ECip1KBveYUHfp+8e9klMJ9c= golang.org/x/net v0.6.0/go.mod h1:2Tu9+aMcznHK/AK1HMvgo6xiTLG5rD5rZLDS+rp2Bjs= golang.org/x/net v0.10.0/go.mod h1:0qNGK6F8kojg2nk9dLZ2mShWaEBan6FAoqfSigmmuDg= -golang.org/x/net v0.40.0 h1:79Xs7wF06Gbdcg4kdCCIQArK11Z1hr5POQ6+fIYHNuY= -golang.org/x/net v0.40.0/go.mod h1:y0hY0exeL2Pku80/zKK7tpntoX23cqL3Oa6njdgRtds= +golang.org/x/net v0.41.0 h1:vBTly1HeNPEn3wtREYfy4GZ/NECgw2Cnl+nK6Nz3uvw= +golang.org/x/net v0.41.0/go.mod h1:B/K4NNqkfmg07DQYrbwvSluqCJOOXwUjeb/5lOisjbA= golang.org/x/oauth2 v0.0.0-20180821212333-d2e6202438be/go.mod h1:N/0e6XlmueqKjAGxoOufVs8QHGRruUQn6yWY3a++T0U= golang.org/x/oauth2 v0.0.0-20190226205417-e64efc72b421/go.mod h1:gOpvHmFTYa4IltrdGE7lF6nIHvwfUNPOp7c8zoXwtLw= golang.org/x/oauth2 v0.0.0-20190604053449-0f29369cfe45/go.mod h1:gOpvHmFTYa4IltrdGE7lF6nIHvwfUNPOp7c8zoXwtLw= @@ -716,8 +747,8 @@ golang.org/x/oauth2 v0.0.0-20210819190943-2bc19b11175f/go.mod h1:KelEdhl1UZF7XfJ golang.org/x/oauth2 v0.0.0-20211005180243-6b3c2da341f1/go.mod h1:KelEdhl1UZF7XfJ4dDtk6s++YSgaE7mD/BuKKDLBl4A= golang.org/x/oauth2 v0.0.0-20211104180415-d3ed0bb246c8/go.mod h1:KelEdhl1UZF7XfJ4dDtk6s++YSgaE7mD/BuKKDLBl4A= golang.org/x/oauth2 v0.0.0-20220223155221-ee480838109b/go.mod h1:DAh4E804XQdzx2j+YRIaUnCqCV2RuMz24cGBJ5QYIrc= -golang.org/x/oauth2 v0.26.0 h1:afQXWNNaeC4nvZ0Ed9XvCCzXM6UHJG7iCg0W4fPqSBE= -golang.org/x/oauth2 v0.26.0/go.mod h1:XYTD2NtWslqkgxebSiOHnXEap4TF09sJSc7H1sXbhtI= +golang.org/x/oauth2 v0.30.0 h1:dnDm7JmhM45NNpd8FDDeLhK6FwqbOf4MLCM9zb1BOHI= +golang.org/x/oauth2 v0.30.0/go.mod h1:B++QgG3ZKulg6sRPGD/mqlHQs5rB3Ml9erfeDY7xKlU= golang.org/x/sync v0.0.0-20180314180146-1d60e4601c6f/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= golang.org/x/sync v0.0.0-20181108010431-42b317875d0f/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= golang.org/x/sync v0.0.0-20181221193216-37e7f081c4d4/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= @@ -732,8 +763,8 @@ golang.org/x/sync v0.0.0-20210220032951-036812b2e83c/go.mod h1:RxMgew5VJxzue5/jJ golang.org/x/sync v0.0.0-20220601150217-0de741cfad7f/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= golang.org/x/sync v0.0.0-20220722155255-886fb9371eb4/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= golang.org/x/sync v0.1.0/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= -golang.org/x/sync v0.14.0 h1:woo0S4Yywslg6hp4eUFjTVOyKt0RookbpAHG4c1HmhQ= -golang.org/x/sync v0.14.0/go.mod h1:1dzgHSNfp02xaA81J2MS99Qcpr2w7fw1gpm99rleRqA= +golang.org/x/sync v0.15.0 h1:KWH3jNZsfyT6xfAfKiz6MRNmd46ByHDYaZ7KSkCtdW8= +golang.org/x/sync v0.15.0/go.mod h1:1dzgHSNfp02xaA81J2MS99Qcpr2w7fw1gpm99rleRqA= golang.org/x/sys v0.0.0-20180823144017-11551d06cbcc/go.mod h1:STP8DvDyc/dI5b8T5hshtkjS+E42TnysNCUPdjciGhY= golang.org/x/sys v0.0.0-20180830151530-49385e6e1522/go.mod h1:STP8DvDyc/dI5b8T5hshtkjS+E42TnysNCUPdjciGhY= golang.org/x/sys v0.0.0-20180905080454-ebe1bf3edb33/go.mod h1:STP8DvDyc/dI5b8T5hshtkjS+E42TnysNCUPdjciGhY= @@ -836,8 +867,8 @@ golang.org/x/text v0.3.7/go.mod h1:u+2+/6zg+i71rQMx5EYifcz6MCKuco9NR6JIITiCfzQ= golang.org/x/text v0.7.0/go.mod h1:mrYo+phRRbMaCq/xk9113O4dZlRixOauAjOtrjsXDZ8= golang.org/x/text v0.9.0/go.mod h1:e1OnstbJyHTd6l/uOt8jFFHp6TRDWZR/bV3emEE/zU8= golang.org/x/text v0.14.0/go.mod h1:18ZOQIKpY8NJVqYksKHtTdi31H5itFRjB5/qKTNYzSU= -golang.org/x/text v0.25.0 h1:qVyWApTSYLk/drJRO5mDlNYskwQznZmkpV2c8q9zls4= -golang.org/x/text v0.25.0/go.mod h1:WEdwpYrmk1qmdHvhkSTNPm3app7v4rsT8F2UD6+VHIA= +golang.org/x/text v0.26.0 h1:P42AVeLghgTYr4+xUnTRKDMqpar+PtX7KWuNQL21L8M= +golang.org/x/text v0.26.0/go.mod h1:QK15LZJUUQVJxhz7wXgxSy/CJaTFjd0G+YLonydOVQA= golang.org/x/time v0.0.0-20181108054448-85acf8d2951c/go.mod h1:tRJNPiyCQ0inRvYxbN9jk5I+vvW/OXSQhTDSoE431IQ= golang.org/x/time v0.0.0-20190308202827-9d24e82272b4/go.mod h1:tRJNPiyCQ0inRvYxbN9jk5I+vvW/OXSQhTDSoE431IQ= golang.org/x/time v0.0.0-20191024005414-555d28b269f0/go.mod h1:tRJNPiyCQ0inRvYxbN9jk5I+vvW/OXSQhTDSoE431IQ= @@ -900,8 +931,8 @@ golang.org/x/tools v0.1.4/go.mod h1:o0xws9oXOQQZyjljx8fwUC0k7L1pTE6eaCbjGeHmOkk= golang.org/x/tools v0.1.5/go.mod 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a/vendor/github.com/klauspost/compress/.gitignore +++ b/vendor/github.com/cenkalti/backoff/v5/.gitignore @@ -20,13 +20,6 @@ _cgo_export.* _testmain.go *.exe -*.test -*.prof -/s2/cmd/_s2sx/sfx-exe -# Linux perf files -perf.data -perf.data.old - -# gdb history -.gdb_history +# IDEs +.idea/ diff --git a/vendor/github.com/cenkalti/backoff/v5/CHANGELOG.md b/vendor/github.com/cenkalti/backoff/v5/CHANGELOG.md new file mode 100644 index 0000000000..658c37436d --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/CHANGELOG.md @@ -0,0 +1,29 @@ +# Changelog + +All notable changes to this project will be documented in this file. + +The format is based on [Keep a Changelog](https://keepachangelog.com/en/1.1.0/), +and this project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html). + +## [5.0.0] - 2024-12-19 + +### Added + +- RetryAfterError can be returned from an operation to indicate how long to wait before the next retry. + +### Changed + +- Retry function now accepts additional options for specifying max number of tries and max elapsed time. +- Retry function now accepts a context.Context. +- Operation function signature changed to return result (any type) and error. + +### Removed + +- RetryNotify* and RetryWithData functions. Only single Retry function remains. +- Optional arguments from ExponentialBackoff constructor. +- Clock and Timer interfaces. + +### Fixed + +- The original error is returned from Retry if there's a PermanentError. (#144) +- The Retry function respects the wrapped PermanentError. (#140) diff --git a/vendor/github.com/cenkalti/backoff/v5/LICENSE b/vendor/github.com/cenkalti/backoff/v5/LICENSE new file mode 100644 index 0000000000..89b8179965 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/LICENSE @@ -0,0 +1,20 @@ +The MIT License (MIT) + +Copyright (c) 2014 Cenk Altı + +Permission is hereby granted, free of charge, to any person obtaining a copy of +this software and associated documentation files (the "Software"), to deal in +the Software without restriction, including without limitation the rights to +use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of +the Software, and to permit persons to whom the Software is furnished to do so, +subject to the following conditions: + +The above copyright notice and this permission notice shall be included in all +copies or substantial portions of the Software. + +THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR +IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS +FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR +COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER +IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN +CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/vendor/github.com/cenkalti/backoff/v5/README.md b/vendor/github.com/cenkalti/backoff/v5/README.md new file mode 100644 index 0000000000..4611b1d170 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/README.md @@ -0,0 +1,31 @@ +# Exponential Backoff [![GoDoc][godoc image]][godoc] + +This is a Go port of the exponential backoff algorithm from [Google's HTTP Client Library for Java][google-http-java-client]. + +[Exponential backoff][exponential backoff wiki] +is an algorithm that uses feedback to multiplicatively decrease the rate of some process, +in order to gradually find an acceptable rate. +The retries exponentially increase and stop increasing when a certain threshold is met. + +## Usage + +Import path is `github.com/cenkalti/backoff/v5`. Please note the version part at the end. + +For most cases, use `Retry` function. See [example_test.go][example] for an example. + +If you have specific needs, copy `Retry` function (from [retry.go][retry-src]) into your code and modify it as needed. + +## Contributing + +* I would like to keep this library as small as possible. +* Please don't send a PR without opening an issue and discussing it first. +* If proposed change is not a common use case, I will probably not accept it. + +[godoc]: https://pkg.go.dev/github.com/cenkalti/backoff/v5 +[godoc image]: https://godoc.org/github.com/cenkalti/backoff?status.png + +[google-http-java-client]: https://github.com/google/google-http-java-client/blob/da1aa993e90285ec18579f1553339b00e19b3ab5/google-http-client/src/main/java/com/google/api/client/util/ExponentialBackOff.java +[exponential backoff wiki]: http://en.wikipedia.org/wiki/Exponential_backoff + +[retry-src]: https://github.com/cenkalti/backoff/blob/v5/retry.go +[example]: https://github.com/cenkalti/backoff/blob/v5/example_test.go diff --git a/vendor/github.com/cenkalti/backoff/v5/backoff.go b/vendor/github.com/cenkalti/backoff/v5/backoff.go new file mode 100644 index 0000000000..dd2b24ca73 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/backoff.go @@ -0,0 +1,66 @@ +// Package backoff implements backoff algorithms for retrying operations. +// +// Use Retry function for retrying operations that may fail. +// If Retry does not meet your needs, +// copy/paste the function into your project and modify as you wish. +// +// There is also Ticker type similar to time.Ticker. +// You can use it if you need to work with channels. +// +// See Examples section below for usage examples. +package backoff + +import "time" + +// BackOff is a backoff policy for retrying an operation. +type BackOff interface { + // NextBackOff returns the duration to wait before retrying the operation, + // backoff.Stop to indicate that no more retries should be made. + // + // Example usage: + // + // duration := backoff.NextBackOff() + // if duration == backoff.Stop { + // // Do not retry operation. + // } else { + // // Sleep for duration and retry operation. + // } + // + NextBackOff() time.Duration + + // Reset to initial state. + Reset() +} + +// Stop indicates that no more retries should be made for use in NextBackOff(). +const Stop time.Duration = -1 + +// ZeroBackOff is a fixed backoff policy whose backoff time is always zero, +// meaning that the operation is retried immediately without waiting, indefinitely. +type ZeroBackOff struct{} + +func (b *ZeroBackOff) Reset() {} + +func (b *ZeroBackOff) NextBackOff() time.Duration { return 0 } + +// StopBackOff is a fixed backoff policy that always returns backoff.Stop for +// NextBackOff(), meaning that the operation should never be retried. +type StopBackOff struct{} + +func (b *StopBackOff) Reset() {} + +func (b *StopBackOff) NextBackOff() time.Duration { return Stop } + +// ConstantBackOff is a backoff policy that always returns the same backoff delay. +// This is in contrast to an exponential backoff policy, +// which returns a delay that grows longer as you call NextBackOff() over and over again. +type ConstantBackOff struct { + Interval time.Duration +} + +func (b *ConstantBackOff) Reset() {} +func (b *ConstantBackOff) NextBackOff() time.Duration { return b.Interval } + +func NewConstantBackOff(d time.Duration) *ConstantBackOff { + return &ConstantBackOff{Interval: d} +} diff --git a/vendor/github.com/cenkalti/backoff/v5/error.go b/vendor/github.com/cenkalti/backoff/v5/error.go new file mode 100644 index 0000000000..beb2b38a23 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/error.go @@ -0,0 +1,46 @@ +package backoff + +import ( + "fmt" + "time" +) + +// PermanentError signals that the operation should not be retried. +type PermanentError struct { + Err error +} + +// Permanent wraps the given err in a *PermanentError. +func Permanent(err error) error { + if err == nil { + return nil + } + return &PermanentError{ + Err: err, + } +} + +// Error returns a string representation of the Permanent error. +func (e *PermanentError) Error() string { + return e.Err.Error() +} + +// Unwrap returns the wrapped error. +func (e *PermanentError) Unwrap() error { + return e.Err +} + +// RetryAfterError signals that the operation should be retried after the given duration. +type RetryAfterError struct { + Duration time.Duration +} + +// RetryAfter returns a RetryAfter error that specifies how long to wait before retrying. +func RetryAfter(seconds int) error { + return &RetryAfterError{Duration: time.Duration(seconds) * time.Second} +} + +// Error returns a string representation of the RetryAfter error. +func (e *RetryAfterError) Error() string { + return fmt.Sprintf("retry after %s", e.Duration) +} diff --git a/vendor/github.com/cenkalti/backoff/v5/exponential.go b/vendor/github.com/cenkalti/backoff/v5/exponential.go new file mode 100644 index 0000000000..c1f3e442d3 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/exponential.go @@ -0,0 +1,125 @@ +package backoff + +import ( + "math/rand" + "time" +) + +/* +ExponentialBackOff is a backoff implementation that increases the backoff +period for each retry attempt using a randomization function that grows exponentially. + +NextBackOff() is calculated using the following formula: + + randomized interval = + RetryInterval * (random value in range [1 - RandomizationFactor, 1 + RandomizationFactor]) + +In other words NextBackOff() will range between the randomization factor +percentage below and above the retry interval. + +For example, given the following parameters: + + RetryInterval = 2 + RandomizationFactor = 0.5 + Multiplier = 2 + +the actual backoff period used in the next retry attempt will range between 1 and 3 seconds, +multiplied by the exponential, that is, between 2 and 6 seconds. + +Note: MaxInterval caps the RetryInterval and not the randomized interval. + +If the time elapsed since an ExponentialBackOff instance is created goes past the +MaxElapsedTime, then the method NextBackOff() starts returning backoff.Stop. + +The elapsed time can be reset by calling Reset(). + +Example: Given the following default arguments, for 10 tries the sequence will be, +and assuming we go over the MaxElapsedTime on the 10th try: + + Request # RetryInterval (seconds) Randomized Interval (seconds) + + 1 0.5 [0.25, 0.75] + 2 0.75 [0.375, 1.125] + 3 1.125 [0.562, 1.687] + 4 1.687 [0.8435, 2.53] + 5 2.53 [1.265, 3.795] + 6 3.795 [1.897, 5.692] + 7 5.692 [2.846, 8.538] + 8 8.538 [4.269, 12.807] + 9 12.807 [6.403, 19.210] + 10 19.210 backoff.Stop + +Note: Implementation is not thread-safe. +*/ +type ExponentialBackOff struct { + InitialInterval time.Duration + RandomizationFactor float64 + Multiplier float64 + MaxInterval time.Duration + + currentInterval time.Duration +} + +// Default values for ExponentialBackOff. +const ( + DefaultInitialInterval = 500 * time.Millisecond + DefaultRandomizationFactor = 0.5 + DefaultMultiplier = 1.5 + DefaultMaxInterval = 60 * time.Second +) + +// NewExponentialBackOff creates an instance of ExponentialBackOff using default values. +func NewExponentialBackOff() *ExponentialBackOff { + return &ExponentialBackOff{ + InitialInterval: DefaultInitialInterval, + RandomizationFactor: DefaultRandomizationFactor, + Multiplier: DefaultMultiplier, + MaxInterval: DefaultMaxInterval, + } +} + +// Reset the interval back to the initial retry interval and restarts the timer. +// Reset must be called before using b. +func (b *ExponentialBackOff) Reset() { + b.currentInterval = b.InitialInterval +} + +// NextBackOff calculates the next backoff interval using the formula: +// +// Randomized interval = RetryInterval * (1 ± RandomizationFactor) +func (b *ExponentialBackOff) NextBackOff() time.Duration { + if b.currentInterval == 0 { + b.currentInterval = b.InitialInterval + } + + next := getRandomValueFromInterval(b.RandomizationFactor, rand.Float64(), b.currentInterval) + b.incrementCurrentInterval() + return next +} + +// Increments the current interval by multiplying it with the multiplier. +func (b *ExponentialBackOff) incrementCurrentInterval() { + // Check for overflow, if overflow is detected set the current interval to the max interval. + if float64(b.currentInterval) >= float64(b.MaxInterval)/b.Multiplier { + b.currentInterval = b.MaxInterval + } else { + b.currentInterval = time.Duration(float64(b.currentInterval) * b.Multiplier) + } +} + +// Returns a random value from the following interval: +// +// [currentInterval - randomizationFactor * currentInterval, currentInterval + randomizationFactor * currentInterval]. +func getRandomValueFromInterval(randomizationFactor, random float64, currentInterval time.Duration) time.Duration { + if randomizationFactor == 0 { + return currentInterval // make sure no randomness is used when randomizationFactor is 0. + } + var delta = randomizationFactor * float64(currentInterval) + var minInterval = float64(currentInterval) - delta + var maxInterval = float64(currentInterval) + delta + + // Get a random value from the range [minInterval, maxInterval]. + // The formula used below has a +1 because if the minInterval is 1 and the maxInterval is 3 then + // we want a 33% chance for selecting either 1, 2 or 3. + return time.Duration(minInterval + (random * (maxInterval - minInterval + 1))) +} diff --git a/vendor/github.com/cenkalti/backoff/v5/retry.go b/vendor/github.com/cenkalti/backoff/v5/retry.go new file mode 100644 index 0000000000..e43f47fb8a --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/retry.go @@ -0,0 +1,139 @@ +package backoff + +import ( + "context" + "errors" + "time" +) + +// DefaultMaxElapsedTime sets a default limit for the total retry duration. +const DefaultMaxElapsedTime = 15 * time.Minute + +// Operation is a function that attempts an operation and may be retried. +type Operation[T any] func() (T, error) + +// Notify is a function called on operation error with the error and backoff duration. +type Notify func(error, time.Duration) + +// retryOptions holds configuration settings for the retry mechanism. +type retryOptions struct { + BackOff BackOff // Strategy for calculating backoff periods. + Timer timer // Timer to manage retry delays. + Notify Notify // Optional function to notify on each retry error. + MaxTries uint // Maximum number of retry attempts. + MaxElapsedTime time.Duration // Maximum total time for all retries. +} + +type RetryOption func(*retryOptions) + +// WithBackOff configures a custom backoff strategy. +func WithBackOff(b BackOff) RetryOption { + return func(args *retryOptions) { + args.BackOff = b + } +} + +// withTimer sets a custom timer for managing delays between retries. +func withTimer(t timer) RetryOption { + return func(args *retryOptions) { + args.Timer = t + } +} + +// WithNotify sets a notification function to handle retry errors. +func WithNotify(n Notify) RetryOption { + return func(args *retryOptions) { + args.Notify = n + } +} + +// WithMaxTries limits the number of retry attempts. +func WithMaxTries(n uint) RetryOption { + return func(args *retryOptions) { + args.MaxTries = n + } +} + +// WithMaxElapsedTime limits the total duration for retry attempts. +func WithMaxElapsedTime(d time.Duration) RetryOption { + return func(args *retryOptions) { + args.MaxElapsedTime = d + } +} + +// Retry attempts the operation until success, a permanent error, or backoff completion. +// It ensures the operation is executed at least once. +// +// Returns the operation result or error if retries are exhausted or context is cancelled. +func Retry[T any](ctx context.Context, operation Operation[T], opts ...RetryOption) (T, error) { + // Initialize default retry options. + args := &retryOptions{ + BackOff: NewExponentialBackOff(), + Timer: &defaultTimer{}, + MaxElapsedTime: DefaultMaxElapsedTime, + } + + // Apply user-provided options to the default settings. + for _, opt := range opts { + opt(args) + } + + defer args.Timer.Stop() + + startedAt := time.Now() + args.BackOff.Reset() + for numTries := uint(1); ; numTries++ { + // Execute the operation. + res, err := operation() + if err == nil { + return res, nil + } + + // Stop retrying if maximum tries exceeded. + if args.MaxTries > 0 && numTries >= args.MaxTries { + return res, err + } + + // Handle permanent errors without retrying. + var permanent *PermanentError + if errors.As(err, &permanent) { + return res, err + } + + // Stop retrying if context is cancelled. + if cerr := context.Cause(ctx); cerr != nil { + return res, cerr + } + + // Calculate next backoff duration. + next := args.BackOff.NextBackOff() + if next == Stop { + return res, err + } + + // Reset backoff if RetryAfterError is encountered. + var retryAfter *RetryAfterError + if errors.As(err, &retryAfter) { + next = retryAfter.Duration + args.BackOff.Reset() + } + + // Stop retrying if maximum elapsed time exceeded. + if args.MaxElapsedTime > 0 && time.Since(startedAt)+next > args.MaxElapsedTime { + return res, err + } + + // Notify on error if a notifier function is provided. + if args.Notify != nil { + args.Notify(err, next) + } + + // Wait for the next backoff period or context cancellation. + args.Timer.Start(next) + select { + case <-args.Timer.C(): + case <-ctx.Done(): + return res, context.Cause(ctx) + } + } +} diff --git a/vendor/github.com/cenkalti/backoff/v5/ticker.go b/vendor/github.com/cenkalti/backoff/v5/ticker.go new file mode 100644 index 0000000000..f0d4b2ae72 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/ticker.go @@ -0,0 +1,83 @@ +package backoff + +import ( + "sync" + "time" +) + +// Ticker holds a channel that delivers `ticks' of a clock at times reported by a BackOff. +// +// Ticks will continue to arrive when the previous operation is still running, +// so operations that take a while to fail could run in quick succession. +type Ticker struct { + C <-chan time.Time + c chan time.Time + b BackOff + timer timer + stop chan struct{} + stopOnce sync.Once +} + +// NewTicker returns a new Ticker containing a channel that will send +// the time at times specified by the BackOff argument. Ticker is +// guaranteed to tick at least once. The channel is closed when Stop +// method is called or BackOff stops. It is not safe to manipulate the +// provided backoff policy (notably calling NextBackOff or Reset) +// while the ticker is running. +func NewTicker(b BackOff) *Ticker { + c := make(chan time.Time) + t := &Ticker{ + C: c, + c: c, + b: b, + timer: &defaultTimer{}, + stop: make(chan struct{}), + } + t.b.Reset() + go t.run() + return t +} + +// Stop turns off a ticker. After Stop, no more ticks will be sent. +func (t *Ticker) Stop() { + t.stopOnce.Do(func() { close(t.stop) }) +} + +func (t *Ticker) run() { + c := t.c + defer close(c) + + // Ticker is guaranteed to tick at least once. + afterC := t.send(time.Now()) + + for { + if afterC == nil { + return + } + + select { + case tick := <-afterC: + afterC = t.send(tick) + case <-t.stop: + t.c = nil // Prevent future ticks from being sent to the channel. + return + } + } +} + +func (t *Ticker) send(tick time.Time) <-chan time.Time { + select { + case t.c <- tick: + case <-t.stop: + return nil + } + + next := t.b.NextBackOff() + if next == Stop { + t.Stop() + return nil + } + + t.timer.Start(next) + return t.timer.C() +} diff --git a/vendor/github.com/cenkalti/backoff/v5/timer.go b/vendor/github.com/cenkalti/backoff/v5/timer.go new file mode 100644 index 0000000000..a895309747 --- /dev/null +++ b/vendor/github.com/cenkalti/backoff/v5/timer.go @@ -0,0 +1,35 @@ +package backoff + +import "time" + +type timer interface { + Start(duration time.Duration) + Stop() + C() <-chan time.Time +} + +// defaultTimer implements Timer interface using time.Timer +type defaultTimer struct { + timer *time.Timer +} + +// C returns the timers channel which receives the current time when the timer fires. +func (t *defaultTimer) C() <-chan time.Time { + return t.timer.C +} + +// Start starts the timer to fire after the given duration +func (t *defaultTimer) Start(duration time.Duration) { + if t.timer == nil { + t.timer = time.NewTimer(duration) + } else { + t.timer.Reset(duration) + } +} + +// Stop is called when the timer is not used anymore and resources may be freed. +func (t *defaultTimer) Stop() { + if t.timer != nil { + t.timer.Stop() + } +} diff --git a/vendor/github.com/klauspost/compress/s2sx.sum b/vendor/github.com/felixge/httpsnoop/.gitignore similarity index 100% rename from vendor/github.com/klauspost/compress/s2sx.sum rename to vendor/github.com/felixge/httpsnoop/.gitignore diff --git a/vendor/github.com/felixge/httpsnoop/LICENSE.txt b/vendor/github.com/felixge/httpsnoop/LICENSE.txt new file mode 100644 index 0000000000..e028b46a9b --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/LICENSE.txt @@ -0,0 +1,19 @@ +Copyright (c) 2016 Felix Geisendörfer (felix@debuggable.com) + + Permission is hereby granted, free of charge, to any person obtaining a copy + of this software and associated documentation files (the "Software"), to deal + in the Software without restriction, including without limitation the rights + to use, copy, modify, merge, publish, distribute, sublicense, and/or sell + copies of the Software, and to permit persons to whom the Software is + furnished to do so, subject to the following conditions: + + The above copyright notice and this permission notice shall be included in + all copies or substantial portions of the Software. + + THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR + IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, + FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE + AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER + LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, + OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN + THE SOFTWARE. diff --git a/vendor/github.com/felixge/httpsnoop/Makefile b/vendor/github.com/felixge/httpsnoop/Makefile new file mode 100644 index 0000000000..4e12afdd90 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/Makefile @@ -0,0 +1,10 @@ +.PHONY: ci generate clean + +ci: clean generate + go test -race -v ./... + +generate: + go generate . + +clean: + rm -rf *_generated*.go diff --git a/vendor/github.com/felixge/httpsnoop/README.md b/vendor/github.com/felixge/httpsnoop/README.md new file mode 100644 index 0000000000..cf6b42f3d7 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/README.md @@ -0,0 +1,95 @@ +# httpsnoop + +Package httpsnoop provides an easy way to capture http related metrics (i.e. +response time, bytes written, and http status code) from your application's +http.Handlers. + +Doing this requires non-trivial wrapping of the http.ResponseWriter interface, +which is also exposed for users interested in a more low-level API. + +[![Go Reference](https://pkg.go.dev/badge/github.com/felixge/httpsnoop.svg)](https://pkg.go.dev/github.com/felixge/httpsnoop) +[![Build Status](https://github.com/felixge/httpsnoop/actions/workflows/main.yaml/badge.svg)](https://github.com/felixge/httpsnoop/actions/workflows/main.yaml) + +## Usage Example + +```go +// myH is your app's http handler, perhaps a http.ServeMux or similar. +var myH http.Handler +// wrappedH wraps myH in order to log every request. +wrappedH := http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { + m := httpsnoop.CaptureMetrics(myH, w, r) + log.Printf( + "%s %s (code=%d dt=%s written=%d)", + r.Method, + r.URL, + m.Code, + m.Duration, + m.Written, + ) +}) +http.ListenAndServe(":8080", wrappedH) +``` + +## Why this package exists + +Instrumenting an application's http.Handler is surprisingly difficult. + +However if you google for e.g. "capture ResponseWriter status code" you'll find +lots of advise and code examples that suggest it to be a fairly trivial +undertaking. Unfortunately everything I've seen so far has a high chance of +breaking your application. + +The main problem is that a `http.ResponseWriter` often implements additional +interfaces such as `http.Flusher`, `http.CloseNotifier`, `http.Hijacker`, `http.Pusher`, and +`io.ReaderFrom`. So the naive approach of just wrapping `http.ResponseWriter` +in your own struct that also implements the `http.ResponseWriter` interface +will hide the additional interfaces mentioned above. This has a high change of +introducing subtle bugs into any non-trivial application. + +Another approach I've seen people take is to return a struct that implements +all of the interfaces above. However, that's also problematic, because it's +difficult to fake some of these interfaces behaviors when the underlying +`http.ResponseWriter` doesn't have an implementation. It's also dangerous, +because an application may choose to operate differently, merely because it +detects the presence of these additional interfaces. + +This package solves this problem by checking which additional interfaces a +`http.ResponseWriter` implements, returning a wrapped version implementing the +exact same set of interfaces. + +Additionally this package properly handles edge cases such as `WriteHeader` not +being called, or called more than once, as well as concurrent calls to +`http.ResponseWriter` methods, and even calls happening after the wrapped +`ServeHTTP` has already returned. + +Unfortunately this package is not perfect either. It's possible that it is +still missing some interfaces provided by the go core (let me know if you find +one), and it won't work for applications adding their own interfaces into the +mix. You can however use `httpsnoop.Unwrap(w)` to access the underlying +`http.ResponseWriter` and type-assert the result to its other interfaces. + +However, hopefully the explanation above has sufficiently scared you of rolling +your own solution to this problem. httpsnoop may still break your application, +but at least it tries to avoid it as much as possible. + +Anyway, the real problem here is that smuggling additional interfaces inside +`http.ResponseWriter` is a problematic design choice, but it probably goes as +deep as the Go language specification itself. But that's okay, I still prefer +Go over the alternatives ;). + +## Performance + +``` +BenchmarkBaseline-8 20000 94912 ns/op +BenchmarkCaptureMetrics-8 20000 95461 ns/op +``` + +As you can see, using `CaptureMetrics` on a vanilla http.Handler introduces an +overhead of ~500 ns per http request on my machine. However, the margin of +error appears to be larger than that, therefor it should be reasonable to +assume that the overhead introduced by `CaptureMetrics` is absolutely +negligible. + +## License + +MIT diff --git a/vendor/github.com/felixge/httpsnoop/capture_metrics.go b/vendor/github.com/felixge/httpsnoop/capture_metrics.go new file mode 100644 index 0000000000..bec7b71b39 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/capture_metrics.go @@ -0,0 +1,86 @@ +package httpsnoop + +import ( + "io" + "net/http" + "time" +) + +// Metrics holds metrics captured from CaptureMetrics. +type Metrics struct { + // Code is the first http response code passed to the WriteHeader func of + // the ResponseWriter. If no such call is made, a default code of 200 is + // assumed instead. + Code int + // Duration is the time it took to execute the handler. + Duration time.Duration + // Written is the number of bytes successfully written by the Write or + // ReadFrom function of the ResponseWriter. ResponseWriters may also write + // data to their underlaying connection directly (e.g. headers), but those + // are not tracked. Therefor the number of Written bytes will usually match + // the size of the response body. + Written int64 +} + +// CaptureMetrics wraps the given hnd, executes it with the given w and r, and +// returns the metrics it captured from it. +func CaptureMetrics(hnd http.Handler, w http.ResponseWriter, r *http.Request) Metrics { + return CaptureMetricsFn(w, func(ww http.ResponseWriter) { + hnd.ServeHTTP(ww, r) + }) +} + +// CaptureMetricsFn wraps w and calls fn with the wrapped w and returns the +// resulting metrics. This is very similar to CaptureMetrics (which is just +// sugar on top of this func), but is a more usable interface if your +// application doesn't use the Go http.Handler interface. +func CaptureMetricsFn(w http.ResponseWriter, fn func(http.ResponseWriter)) Metrics { + m := Metrics{Code: http.StatusOK} + m.CaptureMetrics(w, fn) + return m +} + +// CaptureMetrics wraps w and calls fn with the wrapped w and updates +// Metrics m with the resulting metrics. This is similar to CaptureMetricsFn, +// but allows one to customize starting Metrics object. +func (m *Metrics) CaptureMetrics(w http.ResponseWriter, fn func(http.ResponseWriter)) { + var ( + start = time.Now() + headerWritten bool + hooks = Hooks{ + WriteHeader: func(next WriteHeaderFunc) WriteHeaderFunc { + return func(code int) { + next(code) + + if !(code >= 100 && code <= 199) && !headerWritten { + m.Code = code + headerWritten = true + } + } + }, + + Write: func(next WriteFunc) WriteFunc { + return func(p []byte) (int, error) { + n, err := next(p) + + m.Written += int64(n) + headerWritten = true + return n, err + } + }, + + ReadFrom: func(next ReadFromFunc) ReadFromFunc { + return func(src io.Reader) (int64, error) { + n, err := next(src) + + headerWritten = true + m.Written += n + return n, err + } + }, + } + ) + + fn(Wrap(w, hooks)) + m.Duration += time.Since(start) +} diff --git a/vendor/github.com/felixge/httpsnoop/docs.go b/vendor/github.com/felixge/httpsnoop/docs.go new file mode 100644 index 0000000000..203c35b3c6 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/docs.go @@ -0,0 +1,10 @@ +// Package httpsnoop provides an easy way to capture http related metrics (i.e. +// response time, bytes written, and http status code) from your application's +// http.Handlers. +// +// Doing this requires non-trivial wrapping of the http.ResponseWriter +// interface, which is also exposed for users interested in a more low-level +// API. +package httpsnoop + +//go:generate go run codegen/main.go diff --git a/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go b/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go new file mode 100644 index 0000000000..101cedde67 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/wrap_generated_gteq_1.8.go @@ -0,0 +1,436 @@ +// +build go1.8 +// Code generated by "httpsnoop/codegen"; DO NOT EDIT. + +package httpsnoop + +import ( + "bufio" + "io" + "net" + "net/http" +) + +// HeaderFunc is part of the http.ResponseWriter interface. +type HeaderFunc func() http.Header + +// WriteHeaderFunc is part of the http.ResponseWriter interface. +type WriteHeaderFunc func(code int) + +// WriteFunc is part of the http.ResponseWriter interface. +type WriteFunc func(b []byte) (int, error) + +// FlushFunc is part of the http.Flusher interface. +type FlushFunc func() + +// CloseNotifyFunc is part of the http.CloseNotifier interface. +type CloseNotifyFunc func() <-chan bool + +// HijackFunc is part of the http.Hijacker interface. +type HijackFunc func() (net.Conn, *bufio.ReadWriter, error) + +// ReadFromFunc is part of the io.ReaderFrom interface. +type ReadFromFunc func(src io.Reader) (int64, error) + +// PushFunc is part of the http.Pusher interface. +type PushFunc func(target string, opts *http.PushOptions) error + +// Hooks defines a set of method interceptors for methods included in +// http.ResponseWriter as well as some others. You can think of them as +// middleware for the function calls they target. See Wrap for more details. +type Hooks struct { + Header func(HeaderFunc) HeaderFunc + WriteHeader func(WriteHeaderFunc) WriteHeaderFunc + Write func(WriteFunc) WriteFunc + Flush func(FlushFunc) FlushFunc + CloseNotify func(CloseNotifyFunc) CloseNotifyFunc + Hijack func(HijackFunc) HijackFunc + ReadFrom func(ReadFromFunc) ReadFromFunc + Push func(PushFunc) PushFunc +} + +// Wrap returns a wrapped version of w that provides the exact same interface +// as w. Specifically if w implements any combination of: +// +// - http.Flusher +// - http.CloseNotifier +// - http.Hijacker +// - io.ReaderFrom +// - http.Pusher +// +// The wrapped version will implement the exact same combination. If no hooks +// are set, the wrapped version also behaves exactly as w. Hooks targeting +// methods not supported by w are ignored. Any other hooks will intercept the +// method they target and may modify the call's arguments and/or return values. +// The CaptureMetrics implementation serves as a working example for how the +// hooks can be used. +func Wrap(w http.ResponseWriter, hooks Hooks) http.ResponseWriter { + rw := &rw{w: w, h: hooks} + _, i0 := w.(http.Flusher) + _, i1 := w.(http.CloseNotifier) + _, i2 := w.(http.Hijacker) + _, i3 := w.(io.ReaderFrom) + _, i4 := w.(http.Pusher) + switch { + // combination 1/32 + case !i0 && !i1 && !i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + }{rw, rw} + // combination 2/32 + case !i0 && !i1 && !i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Pusher + }{rw, rw, rw} + // combination 3/32 + case !i0 && !i1 && !i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + io.ReaderFrom + }{rw, rw, rw} + // combination 4/32 + case !i0 && !i1 && !i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw} + // combination 5/32 + case !i0 && !i1 && i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + }{rw, rw, rw} + // combination 6/32 + case !i0 && !i1 && i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + http.Pusher + }{rw, rw, rw, rw} + // combination 7/32 + case !i0 && !i1 && i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 8/32 + case !i0 && !i1 && i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 9/32 + case !i0 && i1 && !i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + }{rw, rw, rw} + // combination 10/32 + case !i0 && i1 && !i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Pusher + }{rw, rw, rw, rw} + // combination 11/32 + case !i0 && i1 && !i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 12/32 + case !i0 && i1 && !i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 13/32 + case !i0 && i1 && i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + }{rw, rw, rw, rw} + // combination 14/32 + case !i0 && i1 && i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 15/32 + case !i0 && i1 && i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 16/32 + case !i0 && i1 && i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw, rw} + // combination 17/32 + case i0 && !i1 && !i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + }{rw, rw, rw} + // combination 18/32 + case i0 && !i1 && !i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Pusher + }{rw, rw, rw, rw} + // combination 19/32 + case i0 && !i1 && !i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 20/32 + case i0 && !i1 && !i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 21/32 + case i0 && !i1 && i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + }{rw, rw, rw, rw} + // combination 22/32 + case i0 && !i1 && i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 23/32 + case i0 && !i1 && i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 24/32 + case i0 && !i1 && i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw, rw} + // combination 25/32 + case i0 && i1 && !i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + }{rw, rw, rw, rw} + // combination 26/32 + case i0 && i1 && !i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Pusher + }{rw, rw, rw, rw, rw} + // combination 27/32 + case i0 && i1 && !i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 28/32 + case i0 && i1 && !i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw, rw} + // combination 29/32 + case i0 && i1 && i2 && !i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + }{rw, rw, rw, rw, rw} + // combination 30/32 + case i0 && i1 && i2 && !i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + http.Pusher + }{rw, rw, rw, rw, rw, rw} + // combination 31/32 + case i0 && i1 && i2 && i3 && !i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw, rw} + // combination 32/32 + case i0 && i1 && i2 && i3 && i4: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + io.ReaderFrom + http.Pusher + }{rw, rw, rw, rw, rw, rw, rw} + } + panic("unreachable") +} + +type rw struct { + w http.ResponseWriter + h Hooks +} + +func (w *rw) Unwrap() http.ResponseWriter { + return w.w +} + +func (w *rw) Header() http.Header { + f := w.w.(http.ResponseWriter).Header + if w.h.Header != nil { + f = w.h.Header(f) + } + return f() +} + +func (w *rw) WriteHeader(code int) { + f := w.w.(http.ResponseWriter).WriteHeader + if w.h.WriteHeader != nil { + f = w.h.WriteHeader(f) + } + f(code) +} + +func (w *rw) Write(b []byte) (int, error) { + f := w.w.(http.ResponseWriter).Write + if w.h.Write != nil { + f = w.h.Write(f) + } + return f(b) +} + +func (w *rw) Flush() { + f := w.w.(http.Flusher).Flush + if w.h.Flush != nil { + f = w.h.Flush(f) + } + f() +} + +func (w *rw) CloseNotify() <-chan bool { + f := w.w.(http.CloseNotifier).CloseNotify + if w.h.CloseNotify != nil { + f = w.h.CloseNotify(f) + } + return f() +} + +func (w *rw) Hijack() (net.Conn, *bufio.ReadWriter, error) { + f := w.w.(http.Hijacker).Hijack + if w.h.Hijack != nil { + f = w.h.Hijack(f) + } + return f() +} + +func (w *rw) ReadFrom(src io.Reader) (int64, error) { + f := w.w.(io.ReaderFrom).ReadFrom + if w.h.ReadFrom != nil { + f = w.h.ReadFrom(f) + } + return f(src) +} + +func (w *rw) Push(target string, opts *http.PushOptions) error { + f := w.w.(http.Pusher).Push + if w.h.Push != nil { + f = w.h.Push(f) + } + return f(target, opts) +} + +type Unwrapper interface { + Unwrap() http.ResponseWriter +} + +// Unwrap returns the underlying http.ResponseWriter from within zero or more +// layers of httpsnoop wrappers. +func Unwrap(w http.ResponseWriter) http.ResponseWriter { + if rw, ok := w.(Unwrapper); ok { + // recurse until rw.Unwrap() returns a non-Unwrapper + return Unwrap(rw.Unwrap()) + } else { + return w + } +} diff --git a/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go b/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go new file mode 100644 index 0000000000..e0951df152 --- /dev/null +++ b/vendor/github.com/felixge/httpsnoop/wrap_generated_lt_1.8.go @@ -0,0 +1,278 @@ +// +build !go1.8 +// Code generated by "httpsnoop/codegen"; DO NOT EDIT. + +package httpsnoop + +import ( + "bufio" + "io" + "net" + "net/http" +) + +// HeaderFunc is part of the http.ResponseWriter interface. +type HeaderFunc func() http.Header + +// WriteHeaderFunc is part of the http.ResponseWriter interface. +type WriteHeaderFunc func(code int) + +// WriteFunc is part of the http.ResponseWriter interface. +type WriteFunc func(b []byte) (int, error) + +// FlushFunc is part of the http.Flusher interface. +type FlushFunc func() + +// CloseNotifyFunc is part of the http.CloseNotifier interface. +type CloseNotifyFunc func() <-chan bool + +// HijackFunc is part of the http.Hijacker interface. +type HijackFunc func() (net.Conn, *bufio.ReadWriter, error) + +// ReadFromFunc is part of the io.ReaderFrom interface. +type ReadFromFunc func(src io.Reader) (int64, error) + +// Hooks defines a set of method interceptors for methods included in +// http.ResponseWriter as well as some others. You can think of them as +// middleware for the function calls they target. See Wrap for more details. +type Hooks struct { + Header func(HeaderFunc) HeaderFunc + WriteHeader func(WriteHeaderFunc) WriteHeaderFunc + Write func(WriteFunc) WriteFunc + Flush func(FlushFunc) FlushFunc + CloseNotify func(CloseNotifyFunc) CloseNotifyFunc + Hijack func(HijackFunc) HijackFunc + ReadFrom func(ReadFromFunc) ReadFromFunc +} + +// Wrap returns a wrapped version of w that provides the exact same interface +// as w. Specifically if w implements any combination of: +// +// - http.Flusher +// - http.CloseNotifier +// - http.Hijacker +// - io.ReaderFrom +// +// The wrapped version will implement the exact same combination. If no hooks +// are set, the wrapped version also behaves exactly as w. Hooks targeting +// methods not supported by w are ignored. Any other hooks will intercept the +// method they target and may modify the call's arguments and/or return values. +// The CaptureMetrics implementation serves as a working example for how the +// hooks can be used. +func Wrap(w http.ResponseWriter, hooks Hooks) http.ResponseWriter { + rw := &rw{w: w, h: hooks} + _, i0 := w.(http.Flusher) + _, i1 := w.(http.CloseNotifier) + _, i2 := w.(http.Hijacker) + _, i3 := w.(io.ReaderFrom) + switch { + // combination 1/16 + case !i0 && !i1 && !i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + }{rw, rw} + // combination 2/16 + case !i0 && !i1 && !i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + io.ReaderFrom + }{rw, rw, rw} + // combination 3/16 + case !i0 && !i1 && i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + }{rw, rw, rw} + // combination 4/16 + case !i0 && !i1 && i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 5/16 + case !i0 && i1 && !i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + }{rw, rw, rw} + // combination 6/16 + case !i0 && i1 && !i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 7/16 + case !i0 && i1 && i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + }{rw, rw, rw, rw} + // combination 8/16 + case !i0 && i1 && i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.CloseNotifier + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 9/16 + case i0 && !i1 && !i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + }{rw, rw, rw} + // combination 10/16 + case i0 && !i1 && !i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + io.ReaderFrom + }{rw, rw, rw, rw} + // combination 11/16 + case i0 && !i1 && i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + }{rw, rw, rw, rw} + // combination 12/16 + case i0 && !i1 && i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 13/16 + case i0 && i1 && !i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + }{rw, rw, rw, rw} + // combination 14/16 + case i0 && i1 && !i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + io.ReaderFrom + }{rw, rw, rw, rw, rw} + // combination 15/16 + case i0 && i1 && i2 && !i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + }{rw, rw, rw, rw, rw} + // combination 16/16 + case i0 && i1 && i2 && i3: + return struct { + Unwrapper + http.ResponseWriter + http.Flusher + http.CloseNotifier + http.Hijacker + io.ReaderFrom + }{rw, rw, rw, rw, rw, rw} + } + panic("unreachable") +} + +type rw struct { + w http.ResponseWriter + h Hooks +} + +func (w *rw) Unwrap() http.ResponseWriter { + return w.w +} + +func (w *rw) Header() http.Header { + f := w.w.(http.ResponseWriter).Header + if w.h.Header != nil { + f = w.h.Header(f) + } + return f() +} + +func (w *rw) WriteHeader(code int) { + f := w.w.(http.ResponseWriter).WriteHeader + if w.h.WriteHeader != nil { + f = w.h.WriteHeader(f) + } + f(code) +} + +func (w *rw) Write(b []byte) (int, error) { + f := w.w.(http.ResponseWriter).Write + if w.h.Write != nil { + f = w.h.Write(f) + } + return f(b) +} + +func (w *rw) Flush() { + f := w.w.(http.Flusher).Flush + if w.h.Flush != nil { + f = w.h.Flush(f) + } + f() +} + +func (w *rw) CloseNotify() <-chan bool { + f := w.w.(http.CloseNotifier).CloseNotify + if w.h.CloseNotify != nil { + f = w.h.CloseNotify(f) + } + return f() +} + +func (w *rw) Hijack() (net.Conn, *bufio.ReadWriter, error) { + f := w.w.(http.Hijacker).Hijack + if w.h.Hijack != nil { + f = w.h.Hijack(f) + } + return f() +} + +func (w *rw) ReadFrom(src io.Reader) (int64, error) { + f := w.w.(io.ReaderFrom).ReadFrom + if w.h.ReadFrom != nil { + f = w.h.ReadFrom(f) + } + return f(src) +} + +type Unwrapper interface { + Unwrap() http.ResponseWriter +} + +// Unwrap returns the underlying http.ResponseWriter from within zero or more +// layers of httpsnoop wrappers. +func Unwrap(w http.ResponseWriter) http.ResponseWriter { + if rw, ok := w.(Unwrapper); ok { + // recurse until rw.Unwrap() returns a non-Unwrapper + return Unwrap(rw.Unwrap()) + } else { + return w + } +} diff --git a/vendor/github.com/go-jose/go-jose/v3/jwe.go b/vendor/github.com/go-jose/go-jose/v3/jwe.go index 4267ac7502..1ba4ae0c00 100644 --- a/vendor/github.com/go-jose/go-jose/v3/jwe.go +++ b/vendor/github.com/go-jose/go-jose/v3/jwe.go @@ -202,10 +202,11 @@ func (parsed *rawJSONWebEncryption) sanitized() (*JSONWebEncryption, error) { // parseEncryptedCompact parses a message in compact format. func parseEncryptedCompact(input string) (*JSONWebEncryption, error) { - parts := strings.Split(input, ".") - if len(parts) != 5 { + // Five parts is four separators + if strings.Count(input, ".") != 4 { return nil, fmt.Errorf("go-jose/go-jose: compact JWE format must have five parts") } + parts := strings.SplitN(input, ".", 5) rawProtected, err := base64URLDecode(parts[0]) if err != nil { diff --git a/vendor/github.com/go-jose/go-jose/v3/jws.go b/vendor/github.com/go-jose/go-jose/v3/jws.go index e37007dbb8..401fc18ac4 100644 --- a/vendor/github.com/go-jose/go-jose/v3/jws.go +++ b/vendor/github.com/go-jose/go-jose/v3/jws.go @@ -275,10 +275,11 @@ func (parsed *rawJSONWebSignature) sanitized() (*JSONWebSignature, error) { // parseSignedCompact parses a message in compact format. func parseSignedCompact(input string, payload []byte) (*JSONWebSignature, error) { - parts := strings.Split(input, ".") - if len(parts) != 3 { + // Three parts is two separators + if strings.Count(input, ".") != 2 { return nil, fmt.Errorf("go-jose/go-jose: compact JWS format must have three parts") } + parts := strings.SplitN(input, ".", 3) if parts[1] != "" && payload != nil { return nil, fmt.Errorf("go-jose/go-jose: payload is not detached") diff --git a/vendor/github.com/go-logr/logr/.golangci.yaml b/vendor/github.com/go-logr/logr/.golangci.yaml index 0cffafa7bf..0ed62c1a18 100644 --- a/vendor/github.com/go-logr/logr/.golangci.yaml +++ b/vendor/github.com/go-logr/logr/.golangci.yaml @@ -1,26 +1,28 @@ +version: "2" + run: timeout: 1m tests: true linters: - disable-all: true - enable: + default: none + enable: # please keep this alphabetized + - asasalint - asciicheck + - copyloopvar + - dupl - errcheck - forcetypeassert + - goconst - gocritic - - gofmt - - goimports - - gosimple - govet - ineffassign - misspell + - musttag - revive - staticcheck - - typecheck - unused issues: - exclude-use-default: false max-issues-per-linter: 0 max-same-issues: 10 diff --git a/vendor/github.com/go-logr/logr/funcr/funcr.go b/vendor/github.com/go-logr/logr/funcr/funcr.go new file mode 100644 index 0000000000..b22c57d713 --- /dev/null +++ b/vendor/github.com/go-logr/logr/funcr/funcr.go @@ -0,0 +1,914 @@ +/* +Copyright 2021 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Package funcr implements formatting of structured log messages and +// optionally captures the call site and timestamp. +// +// The simplest way to use it is via its implementation of a +// github.com/go-logr/logr.LogSink with output through an arbitrary +// "write" function. See New and NewJSON for details. +// +// # Custom LogSinks +// +// For users who need more control, a funcr.Formatter can be embedded inside +// your own custom LogSink implementation. This is useful when the LogSink +// needs to implement additional methods, for example. +// +// # Formatting +// +// This will respect logr.Marshaler, fmt.Stringer, and error interfaces for +// values which are being logged. When rendering a struct, funcr will use Go's +// standard JSON tags (all except "string"). +package funcr + +import ( + "bytes" + "encoding" + "encoding/json" + "fmt" + "path/filepath" + "reflect" + "runtime" + "strconv" + "strings" + "time" + + "github.com/go-logr/logr" +) + +// New returns a logr.Logger which is implemented by an arbitrary function. +func New(fn func(prefix, args string), opts Options) logr.Logger { + return logr.New(newSink(fn, NewFormatter(opts))) +} + +// NewJSON returns a logr.Logger which is implemented by an arbitrary function +// and produces JSON output. +func NewJSON(fn func(obj string), opts Options) logr.Logger { + fnWrapper := func(_, obj string) { + fn(obj) + } + return logr.New(newSink(fnWrapper, NewFormatterJSON(opts))) +} + +// Underlier exposes access to the underlying logging function. Since +// callers only have a logr.Logger, they have to know which +// implementation is in use, so this interface is less of an +// abstraction and more of a way to test type conversion. +type Underlier interface { + GetUnderlying() func(prefix, args string) +} + +func newSink(fn func(prefix, args string), formatter Formatter) logr.LogSink { + l := &fnlogger{ + Formatter: formatter, + write: fn, + } + // For skipping fnlogger.Info and fnlogger.Error. + l.AddCallDepth(1) // via Formatter + return l +} + +// Options carries parameters which influence the way logs are generated. +type Options struct { + // LogCaller tells funcr to add a "caller" key to some or all log lines. + // This has some overhead, so some users might not want it. + LogCaller MessageClass + + // LogCallerFunc tells funcr to also log the calling function name. This + // has no effect if caller logging is not enabled (see Options.LogCaller). + LogCallerFunc bool + + // LogTimestamp tells funcr to add a "ts" key to log lines. This has some + // overhead, so some users might not want it. + LogTimestamp bool + + // TimestampFormat tells funcr how to render timestamps when LogTimestamp + // is enabled. If not specified, a default format will be used. For more + // details, see docs for Go's time.Layout. + TimestampFormat string + + // LogInfoLevel tells funcr what key to use to log the info level. + // If not specified, the info level will be logged as "level". + // If this is set to "", the info level will not be logged at all. + LogInfoLevel *string + + // Verbosity tells funcr which V logs to produce. Higher values enable + // more logs. Info logs at or below this level will be written, while logs + // above this level will be discarded. + Verbosity int + + // RenderBuiltinsHook allows users to mutate the list of key-value pairs + // while a log line is being rendered. The kvList argument follows logr + // conventions - each pair of slice elements is comprised of a string key + // and an arbitrary value (verified and sanitized before calling this + // hook). The value returned must follow the same conventions. This hook + // can be used to audit or modify logged data. For example, you might want + // to prefix all of funcr's built-in keys with some string. This hook is + // only called for built-in (provided by funcr itself) key-value pairs. + // Equivalent hooks are offered for key-value pairs saved via + // logr.Logger.WithValues or Formatter.AddValues (see RenderValuesHook) and + // for user-provided pairs (see RenderArgsHook). + RenderBuiltinsHook func(kvList []any) []any + + // RenderValuesHook is the same as RenderBuiltinsHook, except that it is + // only called for key-value pairs saved via logr.Logger.WithValues. See + // RenderBuiltinsHook for more details. + RenderValuesHook func(kvList []any) []any + + // RenderArgsHook is the same as RenderBuiltinsHook, except that it is only + // called for key-value pairs passed directly to Info and Error. See + // RenderBuiltinsHook for more details. + RenderArgsHook func(kvList []any) []any + + // MaxLogDepth tells funcr how many levels of nested fields (e.g. a struct + // that contains a struct, etc.) it may log. Every time it finds a struct, + // slice, array, or map the depth is increased by one. When the maximum is + // reached, the value will be converted to a string indicating that the max + // depth has been exceeded. If this field is not specified, a default + // value will be used. + MaxLogDepth int +} + +// MessageClass indicates which category or categories of messages to consider. +type MessageClass int + +const ( + // None ignores all message classes. + None MessageClass = iota + // All considers all message classes. + All + // Info only considers info messages. + Info + // Error only considers error messages. + Error +) + +// fnlogger inherits some of its LogSink implementation from Formatter +// and just needs to add some glue code. +type fnlogger struct { + Formatter + write func(prefix, args string) +} + +func (l fnlogger) WithName(name string) logr.LogSink { + l.AddName(name) // via Formatter + return &l +} + +func (l fnlogger) WithValues(kvList ...any) logr.LogSink { + l.AddValues(kvList) // via Formatter + return &l +} + +func (l fnlogger) WithCallDepth(depth int) logr.LogSink { + l.AddCallDepth(depth) // via Formatter + return &l +} + +func (l fnlogger) Info(level int, msg string, kvList ...any) { + prefix, args := l.FormatInfo(level, msg, kvList) + l.write(prefix, args) +} + +func (l fnlogger) Error(err error, msg string, kvList ...any) { + prefix, args := l.FormatError(err, msg, kvList) + l.write(prefix, args) +} + +func (l fnlogger) GetUnderlying() func(prefix, args string) { + return l.write +} + +// Assert conformance to the interfaces. +var _ logr.LogSink = &fnlogger{} +var _ logr.CallDepthLogSink = &fnlogger{} +var _ Underlier = &fnlogger{} + +// NewFormatter constructs a Formatter which emits a JSON-like key=value format. +func NewFormatter(opts Options) Formatter { + return newFormatter(opts, outputKeyValue) +} + +// NewFormatterJSON constructs a Formatter which emits strict JSON. +func NewFormatterJSON(opts Options) Formatter { + return newFormatter(opts, outputJSON) +} + +// Defaults for Options. +const defaultTimestampFormat = "2006-01-02 15:04:05.000000" +const defaultMaxLogDepth = 16 + +func newFormatter(opts Options, outfmt outputFormat) Formatter { + if opts.TimestampFormat == "" { + opts.TimestampFormat = defaultTimestampFormat + } + if opts.MaxLogDepth == 0 { + opts.MaxLogDepth = defaultMaxLogDepth + } + if opts.LogInfoLevel == nil { + opts.LogInfoLevel = new(string) + *opts.LogInfoLevel = "level" + } + f := Formatter{ + outputFormat: outfmt, + prefix: "", + values: nil, + depth: 0, + opts: &opts, + } + return f +} + +// Formatter is an opaque struct which can be embedded in a LogSink +// implementation. It should be constructed with NewFormatter. Some of +// its methods directly implement logr.LogSink. +type Formatter struct { + outputFormat outputFormat + prefix string + values []any + valuesStr string + depth int + opts *Options + groupName string // for slog groups + groups []groupDef +} + +// outputFormat indicates which outputFormat to use. +type outputFormat int + +const ( + // outputKeyValue emits a JSON-like key=value format, but not strict JSON. + outputKeyValue outputFormat = iota + // outputJSON emits strict JSON. + outputJSON +) + +// groupDef represents a saved group. The values may be empty, but we don't +// know if we need to render the group until the final record is rendered. +type groupDef struct { + name string + values string +} + +// PseudoStruct is a list of key-value pairs that gets logged as a struct. +type PseudoStruct []any + +// render produces a log line, ready to use. +func (f Formatter) render(builtins, args []any) string { + // Empirically bytes.Buffer is faster than strings.Builder for this. + buf := bytes.NewBuffer(make([]byte, 0, 1024)) + + if f.outputFormat == outputJSON { + buf.WriteByte('{') // for the whole record + } + + // Render builtins + vals := builtins + if hook := f.opts.RenderBuiltinsHook; hook != nil { + vals = hook(f.sanitize(vals)) + } + f.flatten(buf, vals, false) // keys are ours, no need to escape + continuing := len(builtins) > 0 + + // Turn the inner-most group into a string + argsStr := func() string { + buf := bytes.NewBuffer(make([]byte, 0, 1024)) + + vals = args + if hook := f.opts.RenderArgsHook; hook != nil { + vals = hook(f.sanitize(vals)) + } + f.flatten(buf, vals, true) // escape user-provided keys + + return buf.String() + }() + + // Render the stack of groups from the inside out. + bodyStr := f.renderGroup(f.groupName, f.valuesStr, argsStr) + for i := len(f.groups) - 1; i >= 0; i-- { + grp := &f.groups[i] + if grp.values == "" && bodyStr == "" { + // no contents, so we must elide the whole group + continue + } + bodyStr = f.renderGroup(grp.name, grp.values, bodyStr) + } + + if bodyStr != "" { + if continuing { + buf.WriteByte(f.comma()) + } + buf.WriteString(bodyStr) + } + + if f.outputFormat == outputJSON { + buf.WriteByte('}') // for the whole record + } + + return buf.String() +} + +// renderGroup returns a string representation of the named group with rendered +// values and args. If the name is empty, this will return the values and args, +// joined. If the name is not empty, this will return a single key-value pair, +// where the value is a grouping of the values and args. If the values and +// args are both empty, this will return an empty string, even if the name was +// specified. +func (f Formatter) renderGroup(name string, values string, args string) string { + buf := bytes.NewBuffer(make([]byte, 0, 1024)) + + needClosingBrace := false + if name != "" && (values != "" || args != "") { + buf.WriteString(f.quoted(name, true)) // escape user-provided keys + buf.WriteByte(f.colon()) + buf.WriteByte('{') + needClosingBrace = true + } + + continuing := false + if values != "" { + buf.WriteString(values) + continuing = true + } + + if args != "" { + if continuing { + buf.WriteByte(f.comma()) + } + buf.WriteString(args) + } + + if needClosingBrace { + buf.WriteByte('}') + } + + return buf.String() +} + +// flatten renders a list of key-value pairs into a buffer. If escapeKeys is +// true, the keys are assumed to have non-JSON-compatible characters in them +// and must be evaluated for escapes. +// +// This function returns a potentially modified version of kvList, which +// ensures that there is a value for every key (adding a value if needed) and +// that each key is a string (substituting a key if needed). +func (f Formatter) flatten(buf *bytes.Buffer, kvList []any, escapeKeys bool) []any { + // This logic overlaps with sanitize() but saves one type-cast per key, + // which can be measurable. + if len(kvList)%2 != 0 { + kvList = append(kvList, noValue) + } + copied := false + for i := 0; i < len(kvList); i += 2 { + k, ok := kvList[i].(string) + if !ok { + if !copied { + newList := make([]any, len(kvList)) + copy(newList, kvList) + kvList = newList + copied = true + } + k = f.nonStringKey(kvList[i]) + kvList[i] = k + } + v := kvList[i+1] + + if i > 0 { + if f.outputFormat == outputJSON { + buf.WriteByte(f.comma()) + } else { + // In theory the format could be something we don't understand. In + // practice, we control it, so it won't be. + buf.WriteByte(' ') + } + } + + buf.WriteString(f.quoted(k, escapeKeys)) + buf.WriteByte(f.colon()) + buf.WriteString(f.pretty(v)) + } + return kvList +} + +func (f Formatter) quoted(str string, escape bool) string { + if escape { + return prettyString(str) + } + // this is faster + return `"` + str + `"` +} + +func (f Formatter) comma() byte { + if f.outputFormat == outputJSON { + return ',' + } + return ' ' +} + +func (f Formatter) colon() byte { + if f.outputFormat == outputJSON { + return ':' + } + return '=' +} + +func (f Formatter) pretty(value any) string { + return f.prettyWithFlags(value, 0, 0) +} + +const ( + flagRawStruct = 0x1 // do not print braces on structs +) + +// TODO: This is not fast. Most of the overhead goes here. +func (f Formatter) prettyWithFlags(value any, flags uint32, depth int) string { + if depth > f.opts.MaxLogDepth { + return `""` + } + + // Handle types that take full control of logging. + if v, ok := value.(logr.Marshaler); ok { + // Replace the value with what the type wants to get logged. + // That then gets handled below via reflection. + value = invokeMarshaler(v) + } + + // Handle types that want to format themselves. + switch v := value.(type) { + case fmt.Stringer: + value = invokeStringer(v) + case error: + value = invokeError(v) + } + + // Handling the most common types without reflect is a small perf win. + switch v := value.(type) { + case bool: + return strconv.FormatBool(v) + case string: + return prettyString(v) + case int: + return strconv.FormatInt(int64(v), 10) + case int8: + return strconv.FormatInt(int64(v), 10) + case int16: + return strconv.FormatInt(int64(v), 10) + case int32: + return strconv.FormatInt(int64(v), 10) + case int64: + return strconv.FormatInt(int64(v), 10) + case uint: + return strconv.FormatUint(uint64(v), 10) + case uint8: + return strconv.FormatUint(uint64(v), 10) + case uint16: + return strconv.FormatUint(uint64(v), 10) + case uint32: + return strconv.FormatUint(uint64(v), 10) + case uint64: + return strconv.FormatUint(v, 10) + case uintptr: + return strconv.FormatUint(uint64(v), 10) + case float32: + return strconv.FormatFloat(float64(v), 'f', -1, 32) + case float64: + return strconv.FormatFloat(v, 'f', -1, 64) + case complex64: + return `"` + strconv.FormatComplex(complex128(v), 'f', -1, 64) + `"` + case complex128: + return `"` + strconv.FormatComplex(v, 'f', -1, 128) + `"` + case PseudoStruct: + buf := bytes.NewBuffer(make([]byte, 0, 1024)) + v = f.sanitize(v) + if flags&flagRawStruct == 0 { + buf.WriteByte('{') + } + for i := 0; i < len(v); i += 2 { + if i > 0 { + buf.WriteByte(f.comma()) + } + k, _ := v[i].(string) // sanitize() above means no need to check success + // arbitrary keys might need escaping + buf.WriteString(prettyString(k)) + buf.WriteByte(f.colon()) + buf.WriteString(f.prettyWithFlags(v[i+1], 0, depth+1)) + } + if flags&flagRawStruct == 0 { + buf.WriteByte('}') + } + return buf.String() + } + + buf := bytes.NewBuffer(make([]byte, 0, 256)) + t := reflect.TypeOf(value) + if t == nil { + return "null" + } + v := reflect.ValueOf(value) + switch t.Kind() { + case reflect.Bool: + return strconv.FormatBool(v.Bool()) + case reflect.String: + return prettyString(v.String()) + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return strconv.FormatInt(int64(v.Int()), 10) + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: + return strconv.FormatUint(uint64(v.Uint()), 10) + case reflect.Float32: + return strconv.FormatFloat(float64(v.Float()), 'f', -1, 32) + case reflect.Float64: + return strconv.FormatFloat(v.Float(), 'f', -1, 64) + case reflect.Complex64: + return `"` + strconv.FormatComplex(complex128(v.Complex()), 'f', -1, 64) + `"` + case reflect.Complex128: + return `"` + strconv.FormatComplex(v.Complex(), 'f', -1, 128) + `"` + case reflect.Struct: + if flags&flagRawStruct == 0 { + buf.WriteByte('{') + } + printComma := false // testing i>0 is not enough because of JSON omitted fields + for i := 0; i < t.NumField(); i++ { + fld := t.Field(i) + if fld.PkgPath != "" { + // reflect says this field is only defined for non-exported fields. + continue + } + if !v.Field(i).CanInterface() { + // reflect isn't clear exactly what this means, but we can't use it. + continue + } + name := "" + omitempty := false + if tag, found := fld.Tag.Lookup("json"); found { + if tag == "-" { + continue + } + if comma := strings.Index(tag, ","); comma != -1 { + if n := tag[:comma]; n != "" { + name = n + } + rest := tag[comma:] + if strings.Contains(rest, ",omitempty,") || strings.HasSuffix(rest, ",omitempty") { + omitempty = true + } + } else { + name = tag + } + } + if omitempty && isEmpty(v.Field(i)) { + continue + } + if printComma { + buf.WriteByte(f.comma()) + } + printComma = true // if we got here, we are rendering a field + if fld.Anonymous && fld.Type.Kind() == reflect.Struct && name == "" { + buf.WriteString(f.prettyWithFlags(v.Field(i).Interface(), flags|flagRawStruct, depth+1)) + continue + } + if name == "" { + name = fld.Name + } + // field names can't contain characters which need escaping + buf.WriteString(f.quoted(name, false)) + buf.WriteByte(f.colon()) + buf.WriteString(f.prettyWithFlags(v.Field(i).Interface(), 0, depth+1)) + } + if flags&flagRawStruct == 0 { + buf.WriteByte('}') + } + return buf.String() + case reflect.Slice, reflect.Array: + // If this is outputing as JSON make sure this isn't really a json.RawMessage. + // If so just emit "as-is" and don't pretty it as that will just print + // it as [X,Y,Z,...] which isn't terribly useful vs the string form you really want. + if f.outputFormat == outputJSON { + if rm, ok := value.(json.RawMessage); ok { + // If it's empty make sure we emit an empty value as the array style would below. + if len(rm) > 0 { + buf.Write(rm) + } else { + buf.WriteString("null") + } + return buf.String() + } + } + buf.WriteByte('[') + for i := 0; i < v.Len(); i++ { + if i > 0 { + buf.WriteByte(f.comma()) + } + e := v.Index(i) + buf.WriteString(f.prettyWithFlags(e.Interface(), 0, depth+1)) + } + buf.WriteByte(']') + return buf.String() + case reflect.Map: + buf.WriteByte('{') + // This does not sort the map keys, for best perf. + it := v.MapRange() + i := 0 + for it.Next() { + if i > 0 { + buf.WriteByte(f.comma()) + } + // If a map key supports TextMarshaler, use it. + keystr := "" + if m, ok := it.Key().Interface().(encoding.TextMarshaler); ok { + txt, err := m.MarshalText() + if err != nil { + keystr = fmt.Sprintf("", err.Error()) + } else { + keystr = string(txt) + } + keystr = prettyString(keystr) + } else { + // prettyWithFlags will produce already-escaped values + keystr = f.prettyWithFlags(it.Key().Interface(), 0, depth+1) + if t.Key().Kind() != reflect.String { + // JSON only does string keys. Unlike Go's standard JSON, we'll + // convert just about anything to a string. + keystr = prettyString(keystr) + } + } + buf.WriteString(keystr) + buf.WriteByte(f.colon()) + buf.WriteString(f.prettyWithFlags(it.Value().Interface(), 0, depth+1)) + i++ + } + buf.WriteByte('}') + return buf.String() + case reflect.Ptr, reflect.Interface: + if v.IsNil() { + return "null" + } + return f.prettyWithFlags(v.Elem().Interface(), 0, depth) + } + return fmt.Sprintf(`""`, t.Kind().String()) +} + +func prettyString(s string) string { + // Avoid escaping (which does allocations) if we can. + if needsEscape(s) { + return strconv.Quote(s) + } + b := bytes.NewBuffer(make([]byte, 0, 1024)) + b.WriteByte('"') + b.WriteString(s) + b.WriteByte('"') + return b.String() +} + +// needsEscape determines whether the input string needs to be escaped or not, +// without doing any allocations. +func needsEscape(s string) bool { + for _, r := range s { + if !strconv.IsPrint(r) || r == '\\' || r == '"' { + return true + } + } + return false +} + +func isEmpty(v reflect.Value) bool { + switch v.Kind() { + case reflect.Array, reflect.Map, reflect.Slice, reflect.String: + return v.Len() == 0 + case reflect.Bool: + return !v.Bool() + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return v.Int() == 0 + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uintptr: + return v.Uint() == 0 + case reflect.Float32, reflect.Float64: + return v.Float() == 0 + case reflect.Complex64, reflect.Complex128: + return v.Complex() == 0 + case reflect.Interface, reflect.Ptr: + return v.IsNil() + } + return false +} + +func invokeMarshaler(m logr.Marshaler) (ret any) { + defer func() { + if r := recover(); r != nil { + ret = fmt.Sprintf("", r) + } + }() + return m.MarshalLog() +} + +func invokeStringer(s fmt.Stringer) (ret string) { + defer func() { + if r := recover(); r != nil { + ret = fmt.Sprintf("", r) + } + }() + return s.String() +} + +func invokeError(e error) (ret string) { + defer func() { + if r := recover(); r != nil { + ret = fmt.Sprintf("", r) + } + }() + return e.Error() +} + +// Caller represents the original call site for a log line, after considering +// logr.Logger.WithCallDepth and logr.Logger.WithCallStackHelper. The File and +// Line fields will always be provided, while the Func field is optional. +// Users can set the render hook fields in Options to examine logged key-value +// pairs, one of which will be {"caller", Caller} if the Options.LogCaller +// field is enabled for the given MessageClass. +type Caller struct { + // File is the basename of the file for this call site. + File string `json:"file"` + // Line is the line number in the file for this call site. + Line int `json:"line"` + // Func is the function name for this call site, or empty if + // Options.LogCallerFunc is not enabled. + Func string `json:"function,omitempty"` +} + +func (f Formatter) caller() Caller { + // +1 for this frame, +1 for Info/Error. + pc, file, line, ok := runtime.Caller(f.depth + 2) + if !ok { + return Caller{"", 0, ""} + } + fn := "" + if f.opts.LogCallerFunc { + if fp := runtime.FuncForPC(pc); fp != nil { + fn = fp.Name() + } + } + + return Caller{filepath.Base(file), line, fn} +} + +const noValue = "" + +func (f Formatter) nonStringKey(v any) string { + return fmt.Sprintf("", f.snippet(v)) +} + +// snippet produces a short snippet string of an arbitrary value. +func (f Formatter) snippet(v any) string { + const snipLen = 16 + + snip := f.pretty(v) + if len(snip) > snipLen { + snip = snip[:snipLen] + } + return snip +} + +// sanitize ensures that a list of key-value pairs has a value for every key +// (adding a value if needed) and that each key is a string (substituting a key +// if needed). +func (f Formatter) sanitize(kvList []any) []any { + if len(kvList)%2 != 0 { + kvList = append(kvList, noValue) + } + for i := 0; i < len(kvList); i += 2 { + _, ok := kvList[i].(string) + if !ok { + kvList[i] = f.nonStringKey(kvList[i]) + } + } + return kvList +} + +// startGroup opens a new group scope (basically a sub-struct), which locks all +// the current saved values and starts them anew. This is needed to satisfy +// slog. +func (f *Formatter) startGroup(name string) { + // Unnamed groups are just inlined. + if name == "" { + return + } + + n := len(f.groups) + f.groups = append(f.groups[:n:n], groupDef{f.groupName, f.valuesStr}) + + // Start collecting new values. + f.groupName = name + f.valuesStr = "" + f.values = nil +} + +// Init configures this Formatter from runtime info, such as the call depth +// imposed by logr itself. +// Note that this receiver is a pointer, so depth can be saved. +func (f *Formatter) Init(info logr.RuntimeInfo) { + f.depth += info.CallDepth +} + +// Enabled checks whether an info message at the given level should be logged. +func (f Formatter) Enabled(level int) bool { + return level <= f.opts.Verbosity +} + +// GetDepth returns the current depth of this Formatter. This is useful for +// implementations which do their own caller attribution. +func (f Formatter) GetDepth() int { + return f.depth +} + +// FormatInfo renders an Info log message into strings. The prefix will be +// empty when no names were set (via AddNames), or when the output is +// configured for JSON. +func (f Formatter) FormatInfo(level int, msg string, kvList []any) (prefix, argsStr string) { + args := make([]any, 0, 64) // using a constant here impacts perf + prefix = f.prefix + if f.outputFormat == outputJSON { + args = append(args, "logger", prefix) + prefix = "" + } + if f.opts.LogTimestamp { + args = append(args, "ts", time.Now().Format(f.opts.TimestampFormat)) + } + if policy := f.opts.LogCaller; policy == All || policy == Info { + args = append(args, "caller", f.caller()) + } + if key := *f.opts.LogInfoLevel; key != "" { + args = append(args, key, level) + } + args = append(args, "msg", msg) + return prefix, f.render(args, kvList) +} + +// FormatError renders an Error log message into strings. The prefix will be +// empty when no names were set (via AddNames), or when the output is +// configured for JSON. +func (f Formatter) FormatError(err error, msg string, kvList []any) (prefix, argsStr string) { + args := make([]any, 0, 64) // using a constant here impacts perf + prefix = f.prefix + if f.outputFormat == outputJSON { + args = append(args, "logger", prefix) + prefix = "" + } + if f.opts.LogTimestamp { + args = append(args, "ts", time.Now().Format(f.opts.TimestampFormat)) + } + if policy := f.opts.LogCaller; policy == All || policy == Error { + args = append(args, "caller", f.caller()) + } + args = append(args, "msg", msg) + var loggableErr any + if err != nil { + loggableErr = err.Error() + } + args = append(args, "error", loggableErr) + return prefix, f.render(args, kvList) +} + +// AddName appends the specified name. funcr uses '/' characters to separate +// name elements. Callers should not pass '/' in the provided name string, but +// this library does not actually enforce that. +func (f *Formatter) AddName(name string) { + if len(f.prefix) > 0 { + f.prefix += "/" + } + f.prefix += name +} + +// AddValues adds key-value pairs to the set of saved values to be logged with +// each log line. +func (f *Formatter) AddValues(kvList []any) { + // Three slice args forces a copy. + n := len(f.values) + f.values = append(f.values[:n:n], kvList...) + + vals := f.values + if hook := f.opts.RenderValuesHook; hook != nil { + vals = hook(f.sanitize(vals)) + } + + // Pre-render values, so we don't have to do it on each Info/Error call. + buf := bytes.NewBuffer(make([]byte, 0, 1024)) + f.flatten(buf, vals, true) // escape user-provided keys + f.valuesStr = buf.String() +} + +// AddCallDepth increases the number of stack-frames to skip when attributing +// the log line to a file and line. +func (f *Formatter) AddCallDepth(depth int) { + f.depth += depth +} diff --git a/vendor/github.com/go-logr/logr/funcr/slogsink.go b/vendor/github.com/go-logr/logr/funcr/slogsink.go new file mode 100644 index 0000000000..7bd84761e2 --- /dev/null +++ b/vendor/github.com/go-logr/logr/funcr/slogsink.go @@ -0,0 +1,105 @@ +//go:build go1.21 +// +build go1.21 + +/* +Copyright 2023 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package funcr + +import ( + "context" + "log/slog" + + "github.com/go-logr/logr" +) + +var _ logr.SlogSink = &fnlogger{} + +const extraSlogSinkDepth = 3 // 2 for slog, 1 for SlogSink + +func (l fnlogger) Handle(_ context.Context, record slog.Record) error { + kvList := make([]any, 0, 2*record.NumAttrs()) + record.Attrs(func(attr slog.Attr) bool { + kvList = attrToKVs(attr, kvList) + return true + }) + + if record.Level >= slog.LevelError { + l.WithCallDepth(extraSlogSinkDepth).Error(nil, record.Message, kvList...) + } else { + level := l.levelFromSlog(record.Level) + l.WithCallDepth(extraSlogSinkDepth).Info(level, record.Message, kvList...) + } + return nil +} + +func (l fnlogger) WithAttrs(attrs []slog.Attr) logr.SlogSink { + kvList := make([]any, 0, 2*len(attrs)) + for _, attr := range attrs { + kvList = attrToKVs(attr, kvList) + } + l.AddValues(kvList) + return &l +} + +func (l fnlogger) WithGroup(name string) logr.SlogSink { + l.startGroup(name) + return &l +} + +// attrToKVs appends a slog.Attr to a logr-style kvList. It handle slog Groups +// and other details of slog. +func attrToKVs(attr slog.Attr, kvList []any) []any { + attrVal := attr.Value.Resolve() + if attrVal.Kind() == slog.KindGroup { + groupVal := attrVal.Group() + grpKVs := make([]any, 0, 2*len(groupVal)) + for _, attr := range groupVal { + grpKVs = attrToKVs(attr, grpKVs) + } + if attr.Key == "" { + // slog says we have to inline these + kvList = append(kvList, grpKVs...) + } else { + kvList = append(kvList, attr.Key, PseudoStruct(grpKVs)) + } + } else if attr.Key != "" { + kvList = append(kvList, attr.Key, attrVal.Any()) + } + + return kvList +} + +// levelFromSlog adjusts the level by the logger's verbosity and negates it. +// It ensures that the result is >= 0. This is necessary because the result is +// passed to a LogSink and that API did not historically document whether +// levels could be negative or what that meant. +// +// Some example usage: +// +// logrV0 := getMyLogger() +// logrV2 := logrV0.V(2) +// slogV2 := slog.New(logr.ToSlogHandler(logrV2)) +// slogV2.Debug("msg") // =~ logrV2.V(4) =~ logrV0.V(6) +// slogV2.Info("msg") // =~ logrV2.V(0) =~ logrV0.V(2) +// slogv2.Warn("msg") // =~ logrV2.V(-4) =~ logrV0.V(0) +func (l fnlogger) levelFromSlog(level slog.Level) int { + result := -level + if result < 0 { + result = 0 // because LogSink doesn't expect negative V levels + } + return int(result) +} diff --git a/vendor/github.com/go-logr/logr/slogr/slogr.go b/vendor/github.com/go-logr/logr/slogr/slogr.go new file mode 100644 index 0000000000..36432c56fd --- /dev/null +++ b/vendor/github.com/go-logr/logr/slogr/slogr.go @@ -0,0 +1,61 @@ +//go:build go1.21 +// +build go1.21 + +/* +Copyright 2023 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Package slogr enables usage of a slog.Handler with logr.Logger as front-end +// API and of a logr.LogSink through the slog.Handler and thus slog.Logger +// APIs. +// +// See the README in the top-level [./logr] package for a discussion of +// interoperability. +// +// Deprecated: use the main logr package instead. +package slogr + +import ( + "log/slog" + + "github.com/go-logr/logr" +) + +// NewLogr returns a logr.Logger which writes to the slog.Handler. +// +// Deprecated: use [logr.FromSlogHandler] instead. +func NewLogr(handler slog.Handler) logr.Logger { + return logr.FromSlogHandler(handler) +} + +// NewSlogHandler returns a slog.Handler which writes to the same sink as the logr.Logger. +// +// Deprecated: use [logr.ToSlogHandler] instead. +func NewSlogHandler(logger logr.Logger) slog.Handler { + return logr.ToSlogHandler(logger) +} + +// ToSlogHandler returns a slog.Handler which writes to the same sink as the logr.Logger. +// +// Deprecated: use [logr.ToSlogHandler] instead. +func ToSlogHandler(logger logr.Logger) slog.Handler { + return logr.ToSlogHandler(logger) +} + +// SlogSink is an optional interface that a LogSink can implement to support +// logging through the slog.Logger or slog.Handler APIs better. +// +// Deprecated: use [logr.SlogSink] instead. +type SlogSink = logr.SlogSink diff --git a/vendor/github.com/google/gofuzz/LICENSE b/vendor/github.com/go-logr/stdr/LICENSE similarity index 99% rename from vendor/github.com/google/gofuzz/LICENSE rename to vendor/github.com/go-logr/stdr/LICENSE index d645695673..261eeb9e9f 100644 --- a/vendor/github.com/google/gofuzz/LICENSE +++ b/vendor/github.com/go-logr/stdr/LICENSE @@ -1,4 +1,3 @@ - Apache License Version 2.0, January 2004 http://www.apache.org/licenses/ diff --git a/vendor/github.com/go-logr/stdr/README.md b/vendor/github.com/go-logr/stdr/README.md new file mode 100644 index 0000000000..5158667890 --- /dev/null +++ b/vendor/github.com/go-logr/stdr/README.md @@ -0,0 +1,6 @@ +# Minimal Go logging using logr and Go's standard library + +[![Go Reference](https://pkg.go.dev/badge/github.com/go-logr/stdr.svg)](https://pkg.go.dev/github.com/go-logr/stdr) + +This package implements the [logr interface](https://github.com/go-logr/logr) +in terms of Go's standard log package(https://pkg.go.dev/log). diff --git a/vendor/github.com/go-logr/stdr/stdr.go b/vendor/github.com/go-logr/stdr/stdr.go new file mode 100644 index 0000000000..93a8aab51b --- /dev/null +++ b/vendor/github.com/go-logr/stdr/stdr.go @@ -0,0 +1,170 @@ +/* +Copyright 2019 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Package stdr implements github.com/go-logr/logr.Logger in terms of +// Go's standard log package. +package stdr + +import ( + "log" + "os" + + "github.com/go-logr/logr" + "github.com/go-logr/logr/funcr" +) + +// The global verbosity level. See SetVerbosity(). +var globalVerbosity int + +// SetVerbosity sets the global level against which all info logs will be +// compared. If this is greater than or equal to the "V" of the logger, the +// message will be logged. A higher value here means more logs will be written. +// The previous verbosity value is returned. This is not concurrent-safe - +// callers must be sure to call it from only one goroutine. +func SetVerbosity(v int) int { + old := globalVerbosity + globalVerbosity = v + return old +} + +// New returns a logr.Logger which is implemented by Go's standard log package, +// or something like it. If std is nil, this will use a default logger +// instead. +// +// Example: stdr.New(log.New(os.Stderr, "", log.LstdFlags|log.Lshortfile))) +func New(std StdLogger) logr.Logger { + return NewWithOptions(std, Options{}) +} + +// NewWithOptions returns a logr.Logger which is implemented by Go's standard +// log package, or something like it. See New for details. +func NewWithOptions(std StdLogger, opts Options) logr.Logger { + if std == nil { + // Go's log.Default() is only available in 1.16 and higher. + std = log.New(os.Stderr, "", log.LstdFlags) + } + + if opts.Depth < 0 { + opts.Depth = 0 + } + + fopts := funcr.Options{ + LogCaller: funcr.MessageClass(opts.LogCaller), + } + + sl := &logger{ + Formatter: funcr.NewFormatter(fopts), + std: std, + } + + // For skipping our own logger.Info/Error. + sl.Formatter.AddCallDepth(1 + opts.Depth) + + return logr.New(sl) +} + +// Options carries parameters which influence the way logs are generated. +type Options struct { + // Depth biases the assumed number of call frames to the "true" caller. + // This is useful when the calling code calls a function which then calls + // stdr (e.g. a logging shim to another API). Values less than zero will + // be treated as zero. + Depth int + + // LogCaller tells stdr to add a "caller" key to some or all log lines. + // Go's log package has options to log this natively, too. + LogCaller MessageClass + + // TODO: add an option to log the date/time +} + +// MessageClass indicates which category or categories of messages to consider. +type MessageClass int + +const ( + // None ignores all message classes. + None MessageClass = iota + // All considers all message classes. + All + // Info only considers info messages. + Info + // Error only considers error messages. + Error +) + +// StdLogger is the subset of the Go stdlib log.Logger API that is needed for +// this adapter. +type StdLogger interface { + // Output is the same as log.Output and log.Logger.Output. + Output(calldepth int, logline string) error +} + +type logger struct { + funcr.Formatter + std StdLogger +} + +var _ logr.LogSink = &logger{} +var _ logr.CallDepthLogSink = &logger{} + +func (l logger) Enabled(level int) bool { + return globalVerbosity >= level +} + +func (l logger) Info(level int, msg string, kvList ...interface{}) { + prefix, args := l.FormatInfo(level, msg, kvList) + if prefix != "" { + args = prefix + ": " + args + } + _ = l.std.Output(l.Formatter.GetDepth()+1, args) +} + +func (l logger) Error(err error, msg string, kvList ...interface{}) { + prefix, args := l.FormatError(err, msg, kvList) + if prefix != "" { + args = prefix + ": " + args + } + _ = l.std.Output(l.Formatter.GetDepth()+1, args) +} + +func (l logger) WithName(name string) logr.LogSink { + l.Formatter.AddName(name) + return &l +} + +func (l logger) WithValues(kvList ...interface{}) logr.LogSink { + l.Formatter.AddValues(kvList) + return &l +} + +func (l logger) WithCallDepth(depth int) logr.LogSink { + l.Formatter.AddCallDepth(depth) + return &l +} + +// Underlier exposes access to the underlying logging implementation. Since +// callers only have a logr.Logger, they have to know which implementation is +// in use, so this interface is less of an abstraction and more of way to test +// type conversion. +type Underlier interface { + GetUnderlying() StdLogger +} + +// GetUnderlying returns the StdLogger underneath this logger. Since StdLogger +// is itself an interface, the result may or may not be a Go log.Logger. +func (l logger) GetUnderlying() StdLogger { + return l.std +} diff --git a/vendor/github.com/go-logr/zapr/.gitignore b/vendor/github.com/go-logr/zapr/.gitignore new file mode 100644 index 0000000000..b72f9be204 --- /dev/null +++ b/vendor/github.com/go-logr/zapr/.gitignore @@ -0,0 +1,2 @@ +*~ +*.swp diff --git a/vendor/github.com/go-logr/zapr/.golangci.yaml b/vendor/github.com/go-logr/zapr/.golangci.yaml new file mode 100644 index 0000000000..64246c50cc --- /dev/null +++ b/vendor/github.com/go-logr/zapr/.golangci.yaml @@ -0,0 +1,20 @@ +issues: + exclude-use-default: false + +linters: + disable-all: true + enable: + - asciicheck + - errcheck + - forcetypeassert + - gocritic + - gofmt + - goimports + - gosimple + - govet + - ineffassign + - misspell + - revive + - staticcheck + - typecheck + - unused diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/LICENSE b/vendor/github.com/go-logr/zapr/LICENSE similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/LICENSE rename to vendor/github.com/go-logr/zapr/LICENSE diff --git a/vendor/github.com/go-logr/zapr/README.md b/vendor/github.com/go-logr/zapr/README.md new file mode 100644 index 0000000000..ff332da3a1 --- /dev/null +++ b/vendor/github.com/go-logr/zapr/README.md @@ -0,0 +1,107 @@ +Zapr :zap: +========== + +A [logr](https://github.com/go-logr/logr) implementation using +[Zap](https://github.com/uber-go/zap). Can also be used as +[slog](https://pkg.go.dev/log/slog) handler. + +Usage +----- + +Via logr: + +```go +package main + +import ( + "fmt" + + "go.uber.org/zap" + "github.com/go-logr/logr" + "github.com/go-logr/zapr" +) + +func main() { + var log logr.Logger + + zapLog, err := zap.NewDevelopment() + if err != nil { + panic(fmt.Sprintf("who watches the watchmen (%v)?", err)) + } + log = zapr.NewLogger(zapLog) + + log.Info("Logr in action!", "the answer", 42) +} +``` + +Via slog: + +``` +package main + +import ( + "fmt" + "log/slog" + + "github.com/go-logr/logr/slogr" + "github.com/go-logr/zapr" + "go.uber.org/zap" +) + +func main() { + var log *slog.Logger + + zapLog, err := zap.NewDevelopment() + if err != nil { + panic(fmt.Sprintf("who watches the watchmen (%v)?", err)) + } + log = slog.New(slogr.NewSlogHandler(zapr.NewLogger(zapLog))) + + log.Info("Logr in action!", "the answer", 42) +} +``` + +Increasing Verbosity +-------------------- + +Zap uses semantically named levels for logging (`DebugLevel`, `InfoLevel`, +`WarningLevel`, ...). Logr uses arbitrary numeric levels. By default logr's +`V(0)` is zap's `InfoLevel` and `V(1)` is zap's `DebugLevel` (which is +numerically -1). Zap does not have named levels that are more verbose than +`DebugLevel`, but it's possible to fake it. + +As of zap v1.19.0 you can do something like the following in your setup code: + +```go + zc := zap.NewProductionConfig() + zc.Level = zap.NewAtomicLevelAt(zapcore.Level(-2)) + z, err := zc.Build() + if err != nil { + // ... + } + log := zapr.NewLogger(z) +``` + +Zap's levels get more verbose as the number gets smaller and more important and +the number gets larger (`DebugLevel` is -1, `InfoLevel` is 0, `WarnLevel` is 1, +and so on). + +The `-2` in the above snippet means that `log.V(2).Info()` calls will be active. +`-3` would enable `log.V(3).Info()`, etc. Note that zap's levels are `int8` +which means the most verbose level you can give it is -128. The zapr +implementation will cap `V()` levels greater than 127 to 127, so setting the +zap level to -128 really means "activate all logs". + +Implementation Details +---------------------- + +For the most part, concepts in Zap correspond directly with those in logr. + +Unlike Zap, all fields *must* be in the form of sugared fields -- +it's illegal to pass a strongly-typed Zap field in a key position to any +of the logging methods (`Log`, `Error`). + +The zapr `logr.LogSink` implementation also implements `logr.SlogHandler`. That +enables `slogr.NewSlogHandler` to provide a `slog.Handler` which just passes +parameters through to zapr. zapr handles special slog values (Group, +LogValuer), regardless of which front-end API is used. diff --git a/vendor/github.com/go-logr/zapr/slogzapr.go b/vendor/github.com/go-logr/zapr/slogzapr.go new file mode 100644 index 0000000000..84f56e4351 --- /dev/null +++ b/vendor/github.com/go-logr/zapr/slogzapr.go @@ -0,0 +1,183 @@ +//go:build go1.21 +// +build go1.21 + +/* +Copyright 2023 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package zapr + +import ( + "context" + "log/slog" + "runtime" + + "github.com/go-logr/logr/slogr" + "go.uber.org/zap" + "go.uber.org/zap/zapcore" +) + +var _ slogr.SlogSink = &zapLogger{} + +func (zl *zapLogger) Handle(_ context.Context, record slog.Record) error { + zapLevel := zap.InfoLevel + intLevel := 0 + isError := false + switch { + case record.Level >= slog.LevelError: + zapLevel = zap.ErrorLevel + isError = true + case record.Level >= slog.LevelWarn: + zapLevel = zap.WarnLevel + case record.Level >= 0: + // Already set above -> info. + default: + zapLevel = zapcore.Level(record.Level) + intLevel = int(-zapLevel) + } + + if checkedEntry := zl.l.Check(zapLevel, record.Message); checkedEntry != nil { + checkedEntry.Time = record.Time + checkedEntry.Caller = pcToCallerEntry(record.PC) + var fieldsBuffer [2]zap.Field + fields := fieldsBuffer[:0] + if !isError && zl.numericLevelKey != "" { + // Record verbosity for info entries. + fields = append(fields, zap.Int(zl.numericLevelKey, intLevel)) + } + // Inline all attributes. + fields = append(fields, zap.Inline(zapcore.ObjectMarshalerFunc(func(enc zapcore.ObjectEncoder) error { + record.Attrs(func(attr slog.Attr) bool { + encodeSlog(enc, attr) + return true + }) + return nil + }))) + checkedEntry.Write(fields...) + } + return nil +} + +func encodeSlog(enc zapcore.ObjectEncoder, attr slog.Attr) { + if attr.Equal(slog.Attr{}) { + // Ignore empty attribute. + return + } + + // Check in order of expected frequency, most common ones first. + // + // Usage statistics for parameters from Kubernetes 152876a3e, + // calculated with k/k/test/integration/logs/benchmark: + // + // kube-controller-manager -v10: + // strings: 10043 (85%) + // with API objects: 2 (0% of all arguments) + // types and their number of usage: NodeStatus:2 + // numbers: 792 (6%) + // ObjectRef: 292 (2%) + // others: 595 (5%) + // + // kube-scheduler -v10: + // strings: 1325 (40%) + // with API objects: 109 (3% of all arguments) + // types and their number of usage: PersistentVolume:50 PersistentVolumeClaim:59 + // numbers: 473 (14%) + // ObjectRef: 1305 (39%) + // others: 176 (5%) + + kind := attr.Value.Kind() + switch kind { + case slog.KindString: + enc.AddString(attr.Key, attr.Value.String()) + case slog.KindLogValuer: + // This includes klog.KObj. + encodeSlog(enc, slog.Attr{ + Key: attr.Key, + Value: attr.Value.Resolve(), + }) + case slog.KindInt64: + enc.AddInt64(attr.Key, attr.Value.Int64()) + case slog.KindUint64: + enc.AddUint64(attr.Key, attr.Value.Uint64()) + case slog.KindFloat64: + enc.AddFloat64(attr.Key, attr.Value.Float64()) + case slog.KindBool: + enc.AddBool(attr.Key, attr.Value.Bool()) + case slog.KindDuration: + enc.AddDuration(attr.Key, attr.Value.Duration()) + case slog.KindTime: + enc.AddTime(attr.Key, attr.Value.Time()) + case slog.KindGroup: + attrs := attr.Value.Group() + if attr.Key == "" { + // Inline group. + for _, attr := range attrs { + encodeSlog(enc, attr) + } + return + } + if len(attrs) == 0 { + // Ignore empty group. + return + } + _ = enc.AddObject(attr.Key, marshalAttrs(attrs)) + default: + // We have to go through reflection in zap.Any to get support + // for e.g. fmt.Stringer. + zap.Any(attr.Key, attr.Value.Any()).AddTo(enc) + } +} + +type marshalAttrs []slog.Attr + +func (attrs marshalAttrs) MarshalLogObject(enc zapcore.ObjectEncoder) error { + for _, attr := range attrs { + encodeSlog(enc, attr) + } + return nil +} + +var _ zapcore.ObjectMarshaler = marshalAttrs(nil) + +func pcToCallerEntry(pc uintptr) zapcore.EntryCaller { + if pc == 0 { + return zapcore.EntryCaller{} + } + // Same as https://cs.opensource.google/go/x/exp/+/642cacee:slog/record.go;drc=642cacee5cc05231f45555a333d07f1005ffc287;l=70 + fs := runtime.CallersFrames([]uintptr{pc}) + f, _ := fs.Next() + if f.File == "" { + return zapcore.EntryCaller{} + } + return zapcore.EntryCaller{ + Defined: true, + PC: pc, + File: f.File, + Line: f.Line, + Function: f.Function, + } +} + +func (zl *zapLogger) WithAttrs(attrs []slog.Attr) slogr.SlogSink { + newLogger := *zl + newLogger.l = newLogger.l.With(zap.Inline(marshalAttrs(attrs))) + return &newLogger +} + +func (zl *zapLogger) WithGroup(name string) slogr.SlogSink { + newLogger := *zl + newLogger.l = newLogger.l.With(zap.Namespace(name)) + return &newLogger +} diff --git a/vendor/github.com/go-logr/zapr/zapr.go b/vendor/github.com/go-logr/zapr/zapr.go new file mode 100644 index 0000000000..c8503ab9ea --- /dev/null +++ b/vendor/github.com/go-logr/zapr/zapr.go @@ -0,0 +1,307 @@ +/* +Copyright 2019 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +// Copyright 2018 Solly Ross +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Package zapr defines an implementation of the github.com/go-logr/logr +// interfaces built on top of Zap (go.uber.org/zap). +// +// # Usage +// +// A new logr.Logger can be constructed from an existing zap.Logger using +// the NewLogger function: +// +// log := zapr.NewLogger(someZapLogger) +// +// # Implementation Details +// +// For the most part, concepts in Zap correspond directly with those in +// logr. +// +// Unlike Zap, all fields *must* be in the form of sugared fields -- +// it's illegal to pass a strongly-typed Zap field in a key position +// to any of the log methods. +// +// Levels in logr correspond to custom debug levels in Zap. Any given level +// in logr is represents by its inverse in zap (`zapLevel = -1*logrLevel`). +// For example V(2) is equivalent to log level -2 in Zap, while V(1) is +// equivalent to Zap's DebugLevel. +package zapr + +import ( + "fmt" + + "github.com/go-logr/logr" + "go.uber.org/zap" + "go.uber.org/zap/zapcore" +) + +// NB: right now, we always use the equivalent of sugared logging. +// This is necessary, since logr doesn't define non-suggared types, +// and using zap-specific non-suggared types would make uses tied +// directly to Zap. + +// zapLogger is a logr.Logger that uses Zap to log. The level has already been +// converted to a Zap level, which is to say that `logrLevel = -1*zapLevel`. +type zapLogger struct { + // NB: this looks very similar to zap.SugaredLogger, but + // deals with our desire to have multiple verbosity levels. + l *zap.Logger + + // numericLevelKey controls whether the numeric logr level is + // added to each Info log message and with which key. + numericLevelKey string + + // errorKey is the field name used for the error in + // Logger.Error calls. + errorKey string + + // allowZapFields enables logging of strongly-typed Zap + // fields. It is off by default because it breaks + // implementation agnosticism. + allowZapFields bool + + // panicMessages enables log messages for invalid log calls + // that explain why a call was invalid (for example, + // non-string key). This is enabled by default. + panicMessages bool +} + +const ( + // noLevel tells handleFields to not inject a numeric log level field. + noLevel = -1 +) + +// handleFields converts a bunch of arbitrary key-value pairs into Zap fields. It takes +// additional pre-converted Zap fields, for use with automatically attached fields, like +// `error`. +func (zl *zapLogger) handleFields(lvl int, args []interface{}, additional ...zap.Field) []zap.Field { + injectNumericLevel := zl.numericLevelKey != "" && lvl != noLevel + + // a slightly modified version of zap.SugaredLogger.sweetenFields + if len(args) == 0 { + // fast-return if we have no suggared fields and no "v" field. + if !injectNumericLevel { + return additional + } + // Slightly slower fast path when we need to inject "v". + return append(additional, zap.Int(zl.numericLevelKey, lvl)) + } + + // unlike Zap, we can be pretty sure users aren't passing structured + // fields (since logr has no concept of that), so guess that we need a + // little less space. + numFields := len(args)/2 + len(additional) + if injectNumericLevel { + numFields++ + } + fields := make([]zap.Field, 0, numFields) + if injectNumericLevel { + fields = append(fields, zap.Int(zl.numericLevelKey, lvl)) + } + for i := 0; i < len(args); { + // Check just in case for strongly-typed Zap fields, + // which might be illegal (since it breaks + // implementation agnosticism). If disabled, we can + // give a better error message. + if field, ok := args[i].(zap.Field); ok { + if zl.allowZapFields { + fields = append(fields, field) + i++ + continue + } + if zl.panicMessages { + zl.l.WithOptions(zap.AddCallerSkip(1)).DPanic("strongly-typed Zap Field passed to logr", zapIt("zap field", args[i])) + } + break + } + + // make sure this isn't a mismatched key + if i == len(args)-1 { + if zl.panicMessages { + zl.l.WithOptions(zap.AddCallerSkip(1)).DPanic("odd number of arguments passed as key-value pairs for logging", zapIt("ignored key", args[i])) + } + break + } + + // process a key-value pair, + // ensuring that the key is a string + key, val := args[i], args[i+1] + keyStr, isString := key.(string) + if !isString { + // if the key isn't a string, DPanic and stop logging + if zl.panicMessages { + zl.l.WithOptions(zap.AddCallerSkip(1)).DPanic("non-string key argument passed to logging, ignoring all later arguments", zapIt("invalid key", key)) + } + break + } + + fields = append(fields, zapIt(keyStr, val)) + i += 2 + } + + return append(fields, additional...) +} + +func invokeMarshaler(field string, m logr.Marshaler) (f string, ret interface{}) { + defer func() { + if r := recover(); r != nil { + ret = fmt.Sprintf("PANIC=%s", r) + f = field + "Error" + } + }() + return field, m.MarshalLog() +} + +func (zl *zapLogger) Init(ri logr.RuntimeInfo) { + zl.l = zl.l.WithOptions(zap.AddCallerSkip(ri.CallDepth)) +} + +// Zap levels are int8 - make sure we stay in bounds. logr itself should +// ensure we never get negative values. +func toZapLevel(lvl int) zapcore.Level { + if lvl > 127 { + lvl = 127 + } + // zap levels are inverted. + return 0 - zapcore.Level(lvl) +} + +func (zl zapLogger) Enabled(lvl int) bool { + return zl.l.Core().Enabled(toZapLevel(lvl)) +} + +func (zl *zapLogger) Info(lvl int, msg string, keysAndVals ...interface{}) { + if checkedEntry := zl.l.Check(toZapLevel(lvl), msg); checkedEntry != nil { + checkedEntry.Write(zl.handleFields(lvl, keysAndVals)...) + } +} + +func (zl *zapLogger) Error(err error, msg string, keysAndVals ...interface{}) { + if checkedEntry := zl.l.Check(zap.ErrorLevel, msg); checkedEntry != nil { + checkedEntry.Write(zl.handleFields(noLevel, keysAndVals, zap.NamedError(zl.errorKey, err))...) + } +} + +func (zl *zapLogger) WithValues(keysAndValues ...interface{}) logr.LogSink { + newLogger := *zl + newLogger.l = zl.l.With(zl.handleFields(noLevel, keysAndValues)...) + return &newLogger +} + +func (zl *zapLogger) WithName(name string) logr.LogSink { + newLogger := *zl + newLogger.l = zl.l.Named(name) + return &newLogger +} + +func (zl *zapLogger) WithCallDepth(depth int) logr.LogSink { + newLogger := *zl + newLogger.l = zl.l.WithOptions(zap.AddCallerSkip(depth)) + return &newLogger +} + +// Underlier exposes access to the underlying logging implementation. Since +// callers only have a logr.Logger, they have to know which implementation is +// in use, so this interface is less of an abstraction and more of way to test +// type conversion. +type Underlier interface { + GetUnderlying() *zap.Logger +} + +func (zl *zapLogger) GetUnderlying() *zap.Logger { + return zl.l +} + +// NewLogger creates a new logr.Logger using the given Zap Logger to log. +func NewLogger(l *zap.Logger) logr.Logger { + return NewLoggerWithOptions(l) +} + +// NewLoggerWithOptions creates a new logr.Logger using the given Zap Logger to +// log and applies additional options. +func NewLoggerWithOptions(l *zap.Logger, opts ...Option) logr.Logger { + // creates a new logger skipping one level of callstack + log := l.WithOptions(zap.AddCallerSkip(1)) + zl := &zapLogger{ + l: log, + } + zl.errorKey = "error" + zl.panicMessages = true + for _, option := range opts { + option(zl) + } + return logr.New(zl) +} + +// Option is one additional parameter for NewLoggerWithOptions. +type Option func(*zapLogger) + +// LogInfoLevel controls whether a numeric log level is added to +// Info log message. The empty string disables this, a non-empty +// string is the key for the additional field. Errors and +// internal panic messages do not have a log level and thus +// are always logged without this extra field. +func LogInfoLevel(key string) Option { + return func(zl *zapLogger) { + zl.numericLevelKey = key + } +} + +// ErrorKey replaces the default "error" field name used for the error +// in Logger.Error calls. +func ErrorKey(key string) Option { + return func(zl *zapLogger) { + zl.errorKey = key + } +} + +// AllowZapFields controls whether strongly-typed Zap fields may +// be passed instead of a key/value pair. This is disabled by +// default because it breaks implementation agnosticism. +func AllowZapFields(allowed bool) Option { + return func(zl *zapLogger) { + zl.allowZapFields = allowed + } +} + +// DPanicOnBugs controls whether extra log messages are emitted for +// invalid log calls with zap's DPanic method. Depending on the +// configuration of the zap logger, the program then panics after +// emitting the log message which is useful in development because +// such invalid log calls are bugs in the program. The log messages +// explain why a call was invalid (for example, non-string +// key). Emitting them is enabled by default. +func DPanicOnBugs(enabled bool) Option { + return func(zl *zapLogger) { + zl.panicMessages = enabled + } +} + +var _ logr.LogSink = &zapLogger{} +var _ logr.CallDepthLogSink = &zapLogger{} diff --git a/vendor/github.com/go-logr/zapr/zapr_noslog.go b/vendor/github.com/go-logr/zapr/zapr_noslog.go new file mode 100644 index 0000000000..ec8517b793 --- /dev/null +++ b/vendor/github.com/go-logr/zapr/zapr_noslog.go @@ -0,0 +1,34 @@ +//go:build !go1.21 +// +build !go1.21 + +/* +Copyright 2023 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package zapr + +import ( + "github.com/go-logr/logr" + "go.uber.org/zap" +) + +func zapIt(field string, val interface{}) zap.Field { + // Handle types that implement logr.Marshaler: log the replacement + // object instead of the original one. + if marshaler, ok := val.(logr.Marshaler); ok { + field, val = invokeMarshaler(field, marshaler) + } + return zap.Any(field, val) +} diff --git a/vendor/github.com/go-logr/zapr/zapr_slog.go b/vendor/github.com/go-logr/zapr/zapr_slog.go new file mode 100644 index 0000000000..f07203604d --- /dev/null +++ b/vendor/github.com/go-logr/zapr/zapr_slog.go @@ -0,0 +1,48 @@ +//go:build go1.21 +// +build go1.21 + +/* +Copyright 2023 The logr Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package zapr + +import ( + "log/slog" + + "github.com/go-logr/logr" + "go.uber.org/zap" + "go.uber.org/zap/zapcore" +) + +func zapIt(field string, val interface{}) zap.Field { + switch valTyped := val.(type) { + case logr.Marshaler: + // Handle types that implement logr.Marshaler: log the replacement + // object instead of the original one. + field, val = invokeMarshaler(field, valTyped) + case slog.LogValuer: + // The same for slog.LogValuer. We let slog.Value handle + // potential panics and recursion. + val = slog.AnyValue(val).Resolve() + } + if slogValue, ok := val.(slog.Value); ok { + return zap.Inline(zapcore.ObjectMarshalerFunc(func(enc zapcore.ObjectEncoder) error { + encodeSlog(enc, slog.Attr{Key: field, Value: slogValue}) + return nil + })) + } + return zap.Any(field, val) +} diff --git a/vendor/github.com/golang/protobuf/proto/buffer.go b/vendor/github.com/golang/protobuf/proto/buffer.go deleted file mode 100644 index e810e6fea1..0000000000 --- a/vendor/github.com/golang/protobuf/proto/buffer.go +++ /dev/null @@ -1,324 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "errors" - "fmt" - - "google.golang.org/protobuf/encoding/prototext" - "google.golang.org/protobuf/encoding/protowire" - "google.golang.org/protobuf/runtime/protoimpl" -) - -const ( - WireVarint = 0 - WireFixed32 = 5 - WireFixed64 = 1 - WireBytes = 2 - WireStartGroup = 3 - WireEndGroup = 4 -) - -// EncodeVarint returns the varint encoded bytes of v. -func EncodeVarint(v uint64) []byte { - return protowire.AppendVarint(nil, v) -} - -// SizeVarint returns the length of the varint encoded bytes of v. -// This is equal to len(EncodeVarint(v)). -func SizeVarint(v uint64) int { - return protowire.SizeVarint(v) -} - -// DecodeVarint parses a varint encoded integer from b, -// returning the integer value and the length of the varint. -// It returns (0, 0) if there is a parse error. -func DecodeVarint(b []byte) (uint64, int) { - v, n := protowire.ConsumeVarint(b) - if n < 0 { - return 0, 0 - } - return v, n -} - -// Buffer is a buffer for encoding and decoding the protobuf wire format. -// It may be reused between invocations to reduce memory usage. -type Buffer struct { - buf []byte - idx int - deterministic bool -} - -// NewBuffer allocates a new Buffer initialized with buf, -// where the contents of buf are considered the unread portion of the buffer. -func NewBuffer(buf []byte) *Buffer { - return &Buffer{buf: buf} -} - -// SetDeterministic specifies whether to use deterministic serialization. -// -// Deterministic serialization guarantees that for a given binary, equal -// messages will always be serialized to the same bytes. This implies: -// -// - Repeated serialization of a message will return the same bytes. -// - Different processes of the same binary (which may be executing on -// different machines) will serialize equal messages to the same bytes. -// -// Note that the deterministic serialization is NOT canonical across -// languages. It is not guaranteed to remain stable over time. It is unstable -// across different builds with schema changes due to unknown fields. -// Users who need canonical serialization (e.g., persistent storage in a -// canonical form, fingerprinting, etc.) should define their own -// canonicalization specification and implement their own serializer rather -// than relying on this API. -// -// If deterministic serialization is requested, map entries will be sorted -// by keys in lexographical order. This is an implementation detail and -// subject to change. -func (b *Buffer) SetDeterministic(deterministic bool) { - b.deterministic = deterministic -} - -// SetBuf sets buf as the internal buffer, -// where the contents of buf are considered the unread portion of the buffer. -func (b *Buffer) SetBuf(buf []byte) { - b.buf = buf - b.idx = 0 -} - -// Reset clears the internal buffer of all written and unread data. -func (b *Buffer) Reset() { - b.buf = b.buf[:0] - b.idx = 0 -} - -// Bytes returns the internal buffer. -func (b *Buffer) Bytes() []byte { - return b.buf -} - -// Unread returns the unread portion of the buffer. -func (b *Buffer) Unread() []byte { - return b.buf[b.idx:] -} - -// Marshal appends the wire-format encoding of m to the buffer. -func (b *Buffer) Marshal(m Message) error { - var err error - b.buf, err = marshalAppend(b.buf, m, b.deterministic) - return err -} - -// Unmarshal parses the wire-format message in the buffer and -// places the decoded results in m. -// It does not reset m before unmarshaling. -func (b *Buffer) Unmarshal(m Message) error { - err := UnmarshalMerge(b.Unread(), m) - b.idx = len(b.buf) - return err -} - -type unknownFields struct{ XXX_unrecognized protoimpl.UnknownFields } - -func (m *unknownFields) String() string { panic("not implemented") } -func (m *unknownFields) Reset() { panic("not implemented") } -func (m *unknownFields) ProtoMessage() { panic("not implemented") } - -// DebugPrint dumps the encoded bytes of b with a header and footer including s -// to stdout. This is only intended for debugging. -func (*Buffer) DebugPrint(s string, b []byte) { - m := MessageReflect(new(unknownFields)) - m.SetUnknown(b) - b, _ = prototext.MarshalOptions{AllowPartial: true, Indent: "\t"}.Marshal(m.Interface()) - fmt.Printf("==== %s ====\n%s==== %s ====\n", s, b, s) -} - -// EncodeVarint appends an unsigned varint encoding to the buffer. -func (b *Buffer) EncodeVarint(v uint64) error { - b.buf = protowire.AppendVarint(b.buf, v) - return nil -} - -// EncodeZigzag32 appends a 32-bit zig-zag varint encoding to the buffer. -func (b *Buffer) EncodeZigzag32(v uint64) error { - return b.EncodeVarint(uint64((uint32(v) << 1) ^ uint32((int32(v) >> 31)))) -} - -// EncodeZigzag64 appends a 64-bit zig-zag varint encoding to the buffer. -func (b *Buffer) EncodeZigzag64(v uint64) error { - return b.EncodeVarint(uint64((uint64(v) << 1) ^ uint64((int64(v) >> 63)))) -} - -// EncodeFixed32 appends a 32-bit little-endian integer to the buffer. -func (b *Buffer) EncodeFixed32(v uint64) error { - b.buf = protowire.AppendFixed32(b.buf, uint32(v)) - return nil -} - -// EncodeFixed64 appends a 64-bit little-endian integer to the buffer. -func (b *Buffer) EncodeFixed64(v uint64) error { - b.buf = protowire.AppendFixed64(b.buf, uint64(v)) - return nil -} - -// EncodeRawBytes appends a length-prefixed raw bytes to the buffer. -func (b *Buffer) EncodeRawBytes(v []byte) error { - b.buf = protowire.AppendBytes(b.buf, v) - return nil -} - -// EncodeStringBytes appends a length-prefixed raw bytes to the buffer. -// It does not validate whether v contains valid UTF-8. -func (b *Buffer) EncodeStringBytes(v string) error { - b.buf = protowire.AppendString(b.buf, v) - return nil -} - -// EncodeMessage appends a length-prefixed encoded message to the buffer. -func (b *Buffer) EncodeMessage(m Message) error { - var err error - b.buf = protowire.AppendVarint(b.buf, uint64(Size(m))) - b.buf, err = marshalAppend(b.buf, m, b.deterministic) - return err -} - -// DecodeVarint consumes an encoded unsigned varint from the buffer. -func (b *Buffer) DecodeVarint() (uint64, error) { - v, n := protowire.ConsumeVarint(b.buf[b.idx:]) - if n < 0 { - return 0, protowire.ParseError(n) - } - b.idx += n - return uint64(v), nil -} - -// DecodeZigzag32 consumes an encoded 32-bit zig-zag varint from the buffer. -func (b *Buffer) DecodeZigzag32() (uint64, error) { - v, err := b.DecodeVarint() - if err != nil { - return 0, err - } - return uint64((uint32(v) >> 1) ^ uint32((int32(v&1)<<31)>>31)), nil -} - -// DecodeZigzag64 consumes an encoded 64-bit zig-zag varint from the buffer. -func (b *Buffer) DecodeZigzag64() (uint64, error) { - v, err := b.DecodeVarint() - if err != nil { - return 0, err - } - return uint64((uint64(v) >> 1) ^ uint64((int64(v&1)<<63)>>63)), nil -} - -// DecodeFixed32 consumes a 32-bit little-endian integer from the buffer. -func (b *Buffer) DecodeFixed32() (uint64, error) { - v, n := protowire.ConsumeFixed32(b.buf[b.idx:]) - if n < 0 { - return 0, protowire.ParseError(n) - } - b.idx += n - return uint64(v), nil -} - -// DecodeFixed64 consumes a 64-bit little-endian integer from the buffer. -func (b *Buffer) DecodeFixed64() (uint64, error) { - v, n := protowire.ConsumeFixed64(b.buf[b.idx:]) - if n < 0 { - return 0, protowire.ParseError(n) - } - b.idx += n - return uint64(v), nil -} - -// DecodeRawBytes consumes a length-prefixed raw bytes from the buffer. -// If alloc is specified, it returns a copy the raw bytes -// rather than a sub-slice of the buffer. -func (b *Buffer) DecodeRawBytes(alloc bool) ([]byte, error) { - v, n := protowire.ConsumeBytes(b.buf[b.idx:]) - if n < 0 { - return nil, protowire.ParseError(n) - } - b.idx += n - if alloc { - v = append([]byte(nil), v...) - } - return v, nil -} - -// DecodeStringBytes consumes a length-prefixed raw bytes from the buffer. -// It does not validate whether the raw bytes contain valid UTF-8. -func (b *Buffer) DecodeStringBytes() (string, error) { - v, n := protowire.ConsumeString(b.buf[b.idx:]) - if n < 0 { - return "", protowire.ParseError(n) - } - b.idx += n - return v, nil -} - -// DecodeMessage consumes a length-prefixed message from the buffer. -// It does not reset m before unmarshaling. -func (b *Buffer) DecodeMessage(m Message) error { - v, err := b.DecodeRawBytes(false) - if err != nil { - return err - } - return UnmarshalMerge(v, m) -} - -// DecodeGroup consumes a message group from the buffer. -// It assumes that the start group marker has already been consumed and -// consumes all bytes until (and including the end group marker). -// It does not reset m before unmarshaling. -func (b *Buffer) DecodeGroup(m Message) error { - v, n, err := consumeGroup(b.buf[b.idx:]) - if err != nil { - return err - } - b.idx += n - return UnmarshalMerge(v, m) -} - -// consumeGroup parses b until it finds an end group marker, returning -// the raw bytes of the message (excluding the end group marker) and the -// the total length of the message (including the end group marker). -func consumeGroup(b []byte) ([]byte, int, error) { - b0 := b - depth := 1 // assume this follows a start group marker - for { - _, wtyp, tagLen := protowire.ConsumeTag(b) - if tagLen < 0 { - return nil, 0, protowire.ParseError(tagLen) - } - b = b[tagLen:] - - var valLen int - switch wtyp { - case protowire.VarintType: - _, valLen = protowire.ConsumeVarint(b) - case protowire.Fixed32Type: - _, valLen = protowire.ConsumeFixed32(b) - case protowire.Fixed64Type: - _, valLen = protowire.ConsumeFixed64(b) - case protowire.BytesType: - _, valLen = protowire.ConsumeBytes(b) - case protowire.StartGroupType: - depth++ - case protowire.EndGroupType: - depth-- - default: - return nil, 0, errors.New("proto: cannot parse reserved wire type") - } - if valLen < 0 { - return nil, 0, protowire.ParseError(valLen) - } - b = b[valLen:] - - if depth == 0 { - return b0[:len(b0)-len(b)-tagLen], len(b0) - len(b), nil - } - } -} diff --git a/vendor/github.com/golang/protobuf/proto/defaults.go b/vendor/github.com/golang/protobuf/proto/defaults.go deleted file mode 100644 index d399bf069c..0000000000 --- a/vendor/github.com/golang/protobuf/proto/defaults.go +++ /dev/null @@ -1,63 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "google.golang.org/protobuf/reflect/protoreflect" -) - -// SetDefaults sets unpopulated scalar fields to their default values. -// Fields within a oneof are not set even if they have a default value. -// SetDefaults is recursively called upon any populated message fields. -func SetDefaults(m Message) { - if m != nil { - setDefaults(MessageReflect(m)) - } -} - -func setDefaults(m protoreflect.Message) { - fds := m.Descriptor().Fields() - for i := 0; i < fds.Len(); i++ { - fd := fds.Get(i) - if !m.Has(fd) { - if fd.HasDefault() && fd.ContainingOneof() == nil { - v := fd.Default() - if fd.Kind() == protoreflect.BytesKind { - v = protoreflect.ValueOf(append([]byte(nil), v.Bytes()...)) // copy the default bytes - } - m.Set(fd, v) - } - continue - } - } - - m.Range(func(fd protoreflect.FieldDescriptor, v protoreflect.Value) bool { - switch { - // Handle singular message. - case fd.Cardinality() != protoreflect.Repeated: - if fd.Message() != nil { - setDefaults(m.Get(fd).Message()) - } - // Handle list of messages. - case fd.IsList(): - if fd.Message() != nil { - ls := m.Get(fd).List() - for i := 0; i < ls.Len(); i++ { - setDefaults(ls.Get(i).Message()) - } - } - // Handle map of messages. - case fd.IsMap(): - if fd.MapValue().Message() != nil { - ms := m.Get(fd).Map() - ms.Range(func(_ protoreflect.MapKey, v protoreflect.Value) bool { - setDefaults(v.Message()) - return true - }) - } - } - return true - }) -} diff --git a/vendor/github.com/golang/protobuf/proto/deprecated.go b/vendor/github.com/golang/protobuf/proto/deprecated.go deleted file mode 100644 index e8db57e097..0000000000 --- a/vendor/github.com/golang/protobuf/proto/deprecated.go +++ /dev/null @@ -1,113 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "encoding/json" - "errors" - "fmt" - "strconv" - - protoV2 "google.golang.org/protobuf/proto" -) - -var ( - // Deprecated: No longer returned. - ErrNil = errors.New("proto: Marshal called with nil") - - // Deprecated: No longer returned. - ErrTooLarge = errors.New("proto: message encodes to over 2 GB") - - // Deprecated: No longer returned. - ErrInternalBadWireType = errors.New("proto: internal error: bad wiretype for oneof") -) - -// Deprecated: Do not use. -type Stats struct{ Emalloc, Dmalloc, Encode, Decode, Chit, Cmiss, Size uint64 } - -// Deprecated: Do not use. -func GetStats() Stats { return Stats{} } - -// Deprecated: Do not use. -func MarshalMessageSet(interface{}) ([]byte, error) { - return nil, errors.New("proto: not implemented") -} - -// Deprecated: Do not use. -func UnmarshalMessageSet([]byte, interface{}) error { - return errors.New("proto: not implemented") -} - -// Deprecated: Do not use. -func MarshalMessageSetJSON(interface{}) ([]byte, error) { - return nil, errors.New("proto: not implemented") -} - -// Deprecated: Do not use. -func UnmarshalMessageSetJSON([]byte, interface{}) error { - return errors.New("proto: not implemented") -} - -// Deprecated: Do not use. -func RegisterMessageSetType(Message, int32, string) {} - -// Deprecated: Do not use. -func EnumName(m map[int32]string, v int32) string { - s, ok := m[v] - if ok { - return s - } - return strconv.Itoa(int(v)) -} - -// Deprecated: Do not use. -func UnmarshalJSONEnum(m map[string]int32, data []byte, enumName string) (int32, error) { - if data[0] == '"' { - // New style: enums are strings. - var repr string - if err := json.Unmarshal(data, &repr); err != nil { - return -1, err - } - val, ok := m[repr] - if !ok { - return 0, fmt.Errorf("unrecognized enum %s value %q", enumName, repr) - } - return val, nil - } - // Old style: enums are ints. - var val int32 - if err := json.Unmarshal(data, &val); err != nil { - return 0, fmt.Errorf("cannot unmarshal %#q into enum %s", data, enumName) - } - return val, nil -} - -// Deprecated: Do not use; this type existed for intenal-use only. -type InternalMessageInfo struct{} - -// Deprecated: Do not use; this method existed for intenal-use only. -func (*InternalMessageInfo) DiscardUnknown(m Message) { - DiscardUnknown(m) -} - -// Deprecated: Do not use; this method existed for intenal-use only. -func (*InternalMessageInfo) Marshal(b []byte, m Message, deterministic bool) ([]byte, error) { - return protoV2.MarshalOptions{Deterministic: deterministic}.MarshalAppend(b, MessageV2(m)) -} - -// Deprecated: Do not use; this method existed for intenal-use only. -func (*InternalMessageInfo) Merge(dst, src Message) { - protoV2.Merge(MessageV2(dst), MessageV2(src)) -} - -// Deprecated: Do not use; this method existed for intenal-use only. -func (*InternalMessageInfo) Size(m Message) int { - return protoV2.Size(MessageV2(m)) -} - -// Deprecated: Do not use; this method existed for intenal-use only. -func (*InternalMessageInfo) Unmarshal(m Message, b []byte) error { - return protoV2.UnmarshalOptions{Merge: true}.Unmarshal(b, MessageV2(m)) -} diff --git a/vendor/github.com/golang/protobuf/proto/discard.go b/vendor/github.com/golang/protobuf/proto/discard.go deleted file mode 100644 index 2187e877fa..0000000000 --- a/vendor/github.com/golang/protobuf/proto/discard.go +++ /dev/null @@ -1,58 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "google.golang.org/protobuf/reflect/protoreflect" -) - -// DiscardUnknown recursively discards all unknown fields from this message -// and all embedded messages. -// -// When unmarshaling a message with unrecognized fields, the tags and values -// of such fields are preserved in the Message. This allows a later call to -// marshal to be able to produce a message that continues to have those -// unrecognized fields. To avoid this, DiscardUnknown is used to -// explicitly clear the unknown fields after unmarshaling. -func DiscardUnknown(m Message) { - if m != nil { - discardUnknown(MessageReflect(m)) - } -} - -func discardUnknown(m protoreflect.Message) { - m.Range(func(fd protoreflect.FieldDescriptor, val protoreflect.Value) bool { - switch { - // Handle singular message. - case fd.Cardinality() != protoreflect.Repeated: - if fd.Message() != nil { - discardUnknown(m.Get(fd).Message()) - } - // Handle list of messages. - case fd.IsList(): - if fd.Message() != nil { - ls := m.Get(fd).List() - for i := 0; i < ls.Len(); i++ { - discardUnknown(ls.Get(i).Message()) - } - } - // Handle map of messages. - case fd.IsMap(): - if fd.MapValue().Message() != nil { - ms := m.Get(fd).Map() - ms.Range(func(_ protoreflect.MapKey, v protoreflect.Value) bool { - discardUnknown(v.Message()) - return true - }) - } - } - return true - }) - - // Discard unknown fields. - if len(m.GetUnknown()) > 0 { - m.SetUnknown(nil) - } -} diff --git a/vendor/github.com/golang/protobuf/proto/extensions.go b/vendor/github.com/golang/protobuf/proto/extensions.go deleted file mode 100644 index 42fc120c97..0000000000 --- a/vendor/github.com/golang/protobuf/proto/extensions.go +++ /dev/null @@ -1,356 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "errors" - "fmt" - "reflect" - - "google.golang.org/protobuf/encoding/protowire" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" - "google.golang.org/protobuf/runtime/protoiface" - "google.golang.org/protobuf/runtime/protoimpl" -) - -type ( - // ExtensionDesc represents an extension descriptor and - // is used to interact with an extension field in a message. - // - // Variables of this type are generated in code by protoc-gen-go. - ExtensionDesc = protoimpl.ExtensionInfo - - // ExtensionRange represents a range of message extensions. - // Used in code generated by protoc-gen-go. - ExtensionRange = protoiface.ExtensionRangeV1 - - // Deprecated: Do not use; this is an internal type. - Extension = protoimpl.ExtensionFieldV1 - - // Deprecated: Do not use; this is an internal type. - XXX_InternalExtensions = protoimpl.ExtensionFields -) - -// ErrMissingExtension reports whether the extension was not present. -var ErrMissingExtension = errors.New("proto: missing extension") - -var errNotExtendable = errors.New("proto: not an extendable proto.Message") - -// HasExtension reports whether the extension field is present in m -// either as an explicitly populated field or as an unknown field. -func HasExtension(m Message, xt *ExtensionDesc) (has bool) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return false - } - - // Check whether any populated known field matches the field number. - xtd := xt.TypeDescriptor() - if isValidExtension(mr.Descriptor(), xtd) { - has = mr.Has(xtd) - } else { - mr.Range(func(fd protoreflect.FieldDescriptor, _ protoreflect.Value) bool { - has = int32(fd.Number()) == xt.Field - return !has - }) - } - - // Check whether any unknown field matches the field number. - for b := mr.GetUnknown(); !has && len(b) > 0; { - num, _, n := protowire.ConsumeField(b) - has = int32(num) == xt.Field - b = b[n:] - } - return has -} - -// ClearExtension removes the extension field from m -// either as an explicitly populated field or as an unknown field. -func ClearExtension(m Message, xt *ExtensionDesc) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return - } - - xtd := xt.TypeDescriptor() - if isValidExtension(mr.Descriptor(), xtd) { - mr.Clear(xtd) - } else { - mr.Range(func(fd protoreflect.FieldDescriptor, _ protoreflect.Value) bool { - if int32(fd.Number()) == xt.Field { - mr.Clear(fd) - return false - } - return true - }) - } - clearUnknown(mr, fieldNum(xt.Field)) -} - -// ClearAllExtensions clears all extensions from m. -// This includes populated fields and unknown fields in the extension range. -func ClearAllExtensions(m Message) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return - } - - mr.Range(func(fd protoreflect.FieldDescriptor, _ protoreflect.Value) bool { - if fd.IsExtension() { - mr.Clear(fd) - } - return true - }) - clearUnknown(mr, mr.Descriptor().ExtensionRanges()) -} - -// GetExtension retrieves a proto2 extended field from m. -// -// If the descriptor is type complete (i.e., ExtensionDesc.ExtensionType is non-nil), -// then GetExtension parses the encoded field and returns a Go value of the specified type. -// If the field is not present, then the default value is returned (if one is specified), -// otherwise ErrMissingExtension is reported. -// -// If the descriptor is type incomplete (i.e., ExtensionDesc.ExtensionType is nil), -// then GetExtension returns the raw encoded bytes for the extension field. -func GetExtension(m Message, xt *ExtensionDesc) (interface{}, error) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() || mr.Descriptor().ExtensionRanges().Len() == 0 { - return nil, errNotExtendable - } - - // Retrieve the unknown fields for this extension field. - var bo protoreflect.RawFields - for bi := mr.GetUnknown(); len(bi) > 0; { - num, _, n := protowire.ConsumeField(bi) - if int32(num) == xt.Field { - bo = append(bo, bi[:n]...) - } - bi = bi[n:] - } - - // For type incomplete descriptors, only retrieve the unknown fields. - if xt.ExtensionType == nil { - return []byte(bo), nil - } - - // If the extension field only exists as unknown fields, unmarshal it. - // This is rarely done since proto.Unmarshal eagerly unmarshals extensions. - xtd := xt.TypeDescriptor() - if !isValidExtension(mr.Descriptor(), xtd) { - return nil, fmt.Errorf("proto: bad extended type; %T does not extend %T", xt.ExtendedType, m) - } - if !mr.Has(xtd) && len(bo) > 0 { - m2 := mr.New() - if err := (proto.UnmarshalOptions{ - Resolver: extensionResolver{xt}, - }.Unmarshal(bo, m2.Interface())); err != nil { - return nil, err - } - if m2.Has(xtd) { - mr.Set(xtd, m2.Get(xtd)) - clearUnknown(mr, fieldNum(xt.Field)) - } - } - - // Check whether the message has the extension field set or a default. - var pv protoreflect.Value - switch { - case mr.Has(xtd): - pv = mr.Get(xtd) - case xtd.HasDefault(): - pv = xtd.Default() - default: - return nil, ErrMissingExtension - } - - v := xt.InterfaceOf(pv) - rv := reflect.ValueOf(v) - if isScalarKind(rv.Kind()) { - rv2 := reflect.New(rv.Type()) - rv2.Elem().Set(rv) - v = rv2.Interface() - } - return v, nil -} - -// extensionResolver is a custom extension resolver that stores a single -// extension type that takes precedence over the global registry. -type extensionResolver struct{ xt protoreflect.ExtensionType } - -func (r extensionResolver) FindExtensionByName(field protoreflect.FullName) (protoreflect.ExtensionType, error) { - if xtd := r.xt.TypeDescriptor(); xtd.FullName() == field { - return r.xt, nil - } - return protoregistry.GlobalTypes.FindExtensionByName(field) -} - -func (r extensionResolver) FindExtensionByNumber(message protoreflect.FullName, field protoreflect.FieldNumber) (protoreflect.ExtensionType, error) { - if xtd := r.xt.TypeDescriptor(); xtd.ContainingMessage().FullName() == message && xtd.Number() == field { - return r.xt, nil - } - return protoregistry.GlobalTypes.FindExtensionByNumber(message, field) -} - -// GetExtensions returns a list of the extensions values present in m, -// corresponding with the provided list of extension descriptors, xts. -// If an extension is missing in m, the corresponding value is nil. -func GetExtensions(m Message, xts []*ExtensionDesc) ([]interface{}, error) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return nil, errNotExtendable - } - - vs := make([]interface{}, len(xts)) - for i, xt := range xts { - v, err := GetExtension(m, xt) - if err != nil { - if err == ErrMissingExtension { - continue - } - return vs, err - } - vs[i] = v - } - return vs, nil -} - -// SetExtension sets an extension field in m to the provided value. -func SetExtension(m Message, xt *ExtensionDesc, v interface{}) error { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() || mr.Descriptor().ExtensionRanges().Len() == 0 { - return errNotExtendable - } - - rv := reflect.ValueOf(v) - if reflect.TypeOf(v) != reflect.TypeOf(xt.ExtensionType) { - return fmt.Errorf("proto: bad extension value type. got: %T, want: %T", v, xt.ExtensionType) - } - if rv.Kind() == reflect.Ptr { - if rv.IsNil() { - return fmt.Errorf("proto: SetExtension called with nil value of type %T", v) - } - if isScalarKind(rv.Elem().Kind()) { - v = rv.Elem().Interface() - } - } - - xtd := xt.TypeDescriptor() - if !isValidExtension(mr.Descriptor(), xtd) { - return fmt.Errorf("proto: bad extended type; %T does not extend %T", xt.ExtendedType, m) - } - mr.Set(xtd, xt.ValueOf(v)) - clearUnknown(mr, fieldNum(xt.Field)) - return nil -} - -// SetRawExtension inserts b into the unknown fields of m. -// -// Deprecated: Use Message.ProtoReflect.SetUnknown instead. -func SetRawExtension(m Message, fnum int32, b []byte) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return - } - - // Verify that the raw field is valid. - for b0 := b; len(b0) > 0; { - num, _, n := protowire.ConsumeField(b0) - if int32(num) != fnum { - panic(fmt.Sprintf("mismatching field number: got %d, want %d", num, fnum)) - } - b0 = b0[n:] - } - - ClearExtension(m, &ExtensionDesc{Field: fnum}) - mr.SetUnknown(append(mr.GetUnknown(), b...)) -} - -// ExtensionDescs returns a list of extension descriptors found in m, -// containing descriptors for both populated extension fields in m and -// also unknown fields of m that are in the extension range. -// For the later case, an type incomplete descriptor is provided where only -// the ExtensionDesc.Field field is populated. -// The order of the extension descriptors is undefined. -func ExtensionDescs(m Message) ([]*ExtensionDesc, error) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() || mr.Descriptor().ExtensionRanges().Len() == 0 { - return nil, errNotExtendable - } - - // Collect a set of known extension descriptors. - extDescs := make(map[protoreflect.FieldNumber]*ExtensionDesc) - mr.Range(func(fd protoreflect.FieldDescriptor, v protoreflect.Value) bool { - if fd.IsExtension() { - xt := fd.(protoreflect.ExtensionTypeDescriptor) - if xd, ok := xt.Type().(*ExtensionDesc); ok { - extDescs[fd.Number()] = xd - } - } - return true - }) - - // Collect a set of unknown extension descriptors. - extRanges := mr.Descriptor().ExtensionRanges() - for b := mr.GetUnknown(); len(b) > 0; { - num, _, n := protowire.ConsumeField(b) - if extRanges.Has(num) && extDescs[num] == nil { - extDescs[num] = nil - } - b = b[n:] - } - - // Transpose the set of descriptors into a list. - var xts []*ExtensionDesc - for num, xt := range extDescs { - if xt == nil { - xt = &ExtensionDesc{Field: int32(num)} - } - xts = append(xts, xt) - } - return xts, nil -} - -// isValidExtension reports whether xtd is a valid extension descriptor for md. -func isValidExtension(md protoreflect.MessageDescriptor, xtd protoreflect.ExtensionTypeDescriptor) bool { - return xtd.ContainingMessage() == md && md.ExtensionRanges().Has(xtd.Number()) -} - -// isScalarKind reports whether k is a protobuf scalar kind (except bytes). -// This function exists for historical reasons since the representation of -// scalars differs between v1 and v2, where v1 uses *T and v2 uses T. -func isScalarKind(k reflect.Kind) bool { - switch k { - case reflect.Bool, reflect.Int32, reflect.Int64, reflect.Uint32, reflect.Uint64, reflect.Float32, reflect.Float64, reflect.String: - return true - default: - return false - } -} - -// clearUnknown removes unknown fields from m where remover.Has reports true. -func clearUnknown(m protoreflect.Message, remover interface { - Has(protoreflect.FieldNumber) bool -}) { - var bo protoreflect.RawFields - for bi := m.GetUnknown(); len(bi) > 0; { - num, _, n := protowire.ConsumeField(bi) - if !remover.Has(num) { - bo = append(bo, bi[:n]...) - } - bi = bi[n:] - } - if bi := m.GetUnknown(); len(bi) != len(bo) { - m.SetUnknown(bo) - } -} - -type fieldNum protoreflect.FieldNumber - -func (n1 fieldNum) Has(n2 protoreflect.FieldNumber) bool { - return protoreflect.FieldNumber(n1) == n2 -} diff --git a/vendor/github.com/golang/protobuf/proto/properties.go b/vendor/github.com/golang/protobuf/proto/properties.go deleted file mode 100644 index dcdc2202fa..0000000000 --- a/vendor/github.com/golang/protobuf/proto/properties.go +++ /dev/null @@ -1,306 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "fmt" - "reflect" - "strconv" - "strings" - "sync" - - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/runtime/protoimpl" -) - -// StructProperties represents protocol buffer type information for a -// generated protobuf message in the open-struct API. -// -// Deprecated: Do not use. -type StructProperties struct { - // Prop are the properties for each field. - // - // Fields belonging to a oneof are stored in OneofTypes instead, with a - // single Properties representing the parent oneof held here. - // - // The order of Prop matches the order of fields in the Go struct. - // Struct fields that are not related to protobufs have a "XXX_" prefix - // in the Properties.Name and must be ignored by the user. - Prop []*Properties - - // OneofTypes contains information about the oneof fields in this message. - // It is keyed by the protobuf field name. - OneofTypes map[string]*OneofProperties -} - -// Properties represents the type information for a protobuf message field. -// -// Deprecated: Do not use. -type Properties struct { - // Name is a placeholder name with little meaningful semantic value. - // If the name has an "XXX_" prefix, the entire Properties must be ignored. - Name string - // OrigName is the protobuf field name or oneof name. - OrigName string - // JSONName is the JSON name for the protobuf field. - JSONName string - // Enum is a placeholder name for enums. - // For historical reasons, this is neither the Go name for the enum, - // nor the protobuf name for the enum. - Enum string // Deprecated: Do not use. - // Weak contains the full name of the weakly referenced message. - Weak string - // Wire is a string representation of the wire type. - Wire string - // WireType is the protobuf wire type for the field. - WireType int - // Tag is the protobuf field number. - Tag int - // Required reports whether this is a required field. - Required bool - // Optional reports whether this is a optional field. - Optional bool - // Repeated reports whether this is a repeated field. - Repeated bool - // Packed reports whether this is a packed repeated field of scalars. - Packed bool - // Proto3 reports whether this field operates under the proto3 syntax. - Proto3 bool - // Oneof reports whether this field belongs within a oneof. - Oneof bool - - // Default is the default value in string form. - Default string - // HasDefault reports whether the field has a default value. - HasDefault bool - - // MapKeyProp is the properties for the key field for a map field. - MapKeyProp *Properties - // MapValProp is the properties for the value field for a map field. - MapValProp *Properties -} - -// OneofProperties represents the type information for a protobuf oneof. -// -// Deprecated: Do not use. -type OneofProperties struct { - // Type is a pointer to the generated wrapper type for the field value. - // This is nil for messages that are not in the open-struct API. - Type reflect.Type - // Field is the index into StructProperties.Prop for the containing oneof. - Field int - // Prop is the properties for the field. - Prop *Properties -} - -// String formats the properties in the protobuf struct field tag style. -func (p *Properties) String() string { - s := p.Wire - s += "," + strconv.Itoa(p.Tag) - if p.Required { - s += ",req" - } - if p.Optional { - s += ",opt" - } - if p.Repeated { - s += ",rep" - } - if p.Packed { - s += ",packed" - } - s += ",name=" + p.OrigName - if p.JSONName != "" { - s += ",json=" + p.JSONName - } - if len(p.Enum) > 0 { - s += ",enum=" + p.Enum - } - if len(p.Weak) > 0 { - s += ",weak=" + p.Weak - } - if p.Proto3 { - s += ",proto3" - } - if p.Oneof { - s += ",oneof" - } - if p.HasDefault { - s += ",def=" + p.Default - } - return s -} - -// Parse populates p by parsing a string in the protobuf struct field tag style. -func (p *Properties) Parse(tag string) { - // For example: "bytes,49,opt,name=foo,def=hello!" - for len(tag) > 0 { - i := strings.IndexByte(tag, ',') - if i < 0 { - i = len(tag) - } - switch s := tag[:i]; { - case strings.HasPrefix(s, "name="): - p.OrigName = s[len("name="):] - case strings.HasPrefix(s, "json="): - p.JSONName = s[len("json="):] - case strings.HasPrefix(s, "enum="): - p.Enum = s[len("enum="):] - case strings.HasPrefix(s, "weak="): - p.Weak = s[len("weak="):] - case strings.Trim(s, "0123456789") == "": - n, _ := strconv.ParseUint(s, 10, 32) - p.Tag = int(n) - case s == "opt": - p.Optional = true - case s == "req": - p.Required = true - case s == "rep": - p.Repeated = true - case s == "varint" || s == "zigzag32" || s == "zigzag64": - p.Wire = s - p.WireType = WireVarint - case s == "fixed32": - p.Wire = s - p.WireType = WireFixed32 - case s == "fixed64": - p.Wire = s - p.WireType = WireFixed64 - case s == "bytes": - p.Wire = s - p.WireType = WireBytes - case s == "group": - p.Wire = s - p.WireType = WireStartGroup - case s == "packed": - p.Packed = true - case s == "proto3": - p.Proto3 = true - case s == "oneof": - p.Oneof = true - case strings.HasPrefix(s, "def="): - // The default tag is special in that everything afterwards is the - // default regardless of the presence of commas. - p.HasDefault = true - p.Default, i = tag[len("def="):], len(tag) - } - tag = strings.TrimPrefix(tag[i:], ",") - } -} - -// Init populates the properties from a protocol buffer struct tag. -// -// Deprecated: Do not use. -func (p *Properties) Init(typ reflect.Type, name, tag string, f *reflect.StructField) { - p.Name = name - p.OrigName = name - if tag == "" { - return - } - p.Parse(tag) - - if typ != nil && typ.Kind() == reflect.Map { - p.MapKeyProp = new(Properties) - p.MapKeyProp.Init(nil, "Key", f.Tag.Get("protobuf_key"), nil) - p.MapValProp = new(Properties) - p.MapValProp.Init(nil, "Value", f.Tag.Get("protobuf_val"), nil) - } -} - -var propertiesCache sync.Map // map[reflect.Type]*StructProperties - -// GetProperties returns the list of properties for the type represented by t, -// which must be a generated protocol buffer message in the open-struct API, -// where protobuf message fields are represented by exported Go struct fields. -// -// Deprecated: Use protobuf reflection instead. -func GetProperties(t reflect.Type) *StructProperties { - if p, ok := propertiesCache.Load(t); ok { - return p.(*StructProperties) - } - p, _ := propertiesCache.LoadOrStore(t, newProperties(t)) - return p.(*StructProperties) -} - -func newProperties(t reflect.Type) *StructProperties { - if t.Kind() != reflect.Struct { - panic(fmt.Sprintf("%v is not a generated message in the open-struct API", t)) - } - - var hasOneof bool - prop := new(StructProperties) - - // Construct a list of properties for each field in the struct. - for i := 0; i < t.NumField(); i++ { - p := new(Properties) - f := t.Field(i) - tagField := f.Tag.Get("protobuf") - p.Init(f.Type, f.Name, tagField, &f) - - tagOneof := f.Tag.Get("protobuf_oneof") - if tagOneof != "" { - hasOneof = true - p.OrigName = tagOneof - } - - // Rename unrelated struct fields with the "XXX_" prefix since so much - // user code simply checks for this to exclude special fields. - if tagField == "" && tagOneof == "" && !strings.HasPrefix(p.Name, "XXX_") { - p.Name = "XXX_" + p.Name - p.OrigName = "XXX_" + p.OrigName - } else if p.Weak != "" { - p.Name = p.OrigName // avoid possible "XXX_" prefix on weak field - } - - prop.Prop = append(prop.Prop, p) - } - - // Construct a mapping of oneof field names to properties. - if hasOneof { - var oneofWrappers []interface{} - if fn, ok := reflect.PtrTo(t).MethodByName("XXX_OneofFuncs"); ok { - oneofWrappers = fn.Func.Call([]reflect.Value{reflect.Zero(fn.Type.In(0))})[3].Interface().([]interface{}) - } - if fn, ok := reflect.PtrTo(t).MethodByName("XXX_OneofWrappers"); ok { - oneofWrappers = fn.Func.Call([]reflect.Value{reflect.Zero(fn.Type.In(0))})[0].Interface().([]interface{}) - } - if m, ok := reflect.Zero(reflect.PtrTo(t)).Interface().(protoreflect.ProtoMessage); ok { - if m, ok := m.ProtoReflect().(interface{ ProtoMessageInfo() *protoimpl.MessageInfo }); ok { - oneofWrappers = m.ProtoMessageInfo().OneofWrappers - } - } - - prop.OneofTypes = make(map[string]*OneofProperties) - for _, wrapper := range oneofWrappers { - p := &OneofProperties{ - Type: reflect.ValueOf(wrapper).Type(), // *T - Prop: new(Properties), - } - f := p.Type.Elem().Field(0) - p.Prop.Name = f.Name - p.Prop.Parse(f.Tag.Get("protobuf")) - - // Determine the struct field that contains this oneof. - // Each wrapper is assignable to exactly one parent field. - var foundOneof bool - for i := 0; i < t.NumField() && !foundOneof; i++ { - if p.Type.AssignableTo(t.Field(i).Type) { - p.Field = i - foundOneof = true - } - } - if !foundOneof { - panic(fmt.Sprintf("%v is not a generated message in the open-struct API", t)) - } - prop.OneofTypes[p.Prop.OrigName] = p - } - } - - return prop -} - -func (sp *StructProperties) Len() int { return len(sp.Prop) } -func (sp *StructProperties) Less(i, j int) bool { return false } -func (sp *StructProperties) Swap(i, j int) { return } diff --git a/vendor/github.com/golang/protobuf/proto/proto.go b/vendor/github.com/golang/protobuf/proto/proto.go deleted file mode 100644 index 5aee89c323..0000000000 --- a/vendor/github.com/golang/protobuf/proto/proto.go +++ /dev/null @@ -1,167 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package proto provides functionality for handling protocol buffer messages. -// In particular, it provides marshaling and unmarshaling between a protobuf -// message and the binary wire format. -// -// See https://developers.google.com/protocol-buffers/docs/gotutorial for -// more information. -// -// Deprecated: Use the "google.golang.org/protobuf/proto" package instead. -package proto - -import ( - protoV2 "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/runtime/protoiface" - "google.golang.org/protobuf/runtime/protoimpl" -) - -const ( - ProtoPackageIsVersion1 = true - ProtoPackageIsVersion2 = true - ProtoPackageIsVersion3 = true - ProtoPackageIsVersion4 = true -) - -// GeneratedEnum is any enum type generated by protoc-gen-go -// which is a named int32 kind. -// This type exists for documentation purposes. -type GeneratedEnum interface{} - -// GeneratedMessage is any message type generated by protoc-gen-go -// which is a pointer to a named struct kind. -// This type exists for documentation purposes. -type GeneratedMessage interface{} - -// Message is a protocol buffer message. -// -// This is the v1 version of the message interface and is marginally better -// than an empty interface as it lacks any method to programatically interact -// with the contents of the message. -// -// A v2 message is declared in "google.golang.org/protobuf/proto".Message and -// exposes protobuf reflection as a first-class feature of the interface. -// -// To convert a v1 message to a v2 message, use the MessageV2 function. -// To convert a v2 message to a v1 message, use the MessageV1 function. -type Message = protoiface.MessageV1 - -// MessageV1 converts either a v1 or v2 message to a v1 message. -// It returns nil if m is nil. -func MessageV1(m GeneratedMessage) protoiface.MessageV1 { - return protoimpl.X.ProtoMessageV1Of(m) -} - -// MessageV2 converts either a v1 or v2 message to a v2 message. -// It returns nil if m is nil. -func MessageV2(m GeneratedMessage) protoV2.Message { - return protoimpl.X.ProtoMessageV2Of(m) -} - -// MessageReflect returns a reflective view for a message. -// It returns nil if m is nil. -func MessageReflect(m Message) protoreflect.Message { - return protoimpl.X.MessageOf(m) -} - -// Marshaler is implemented by messages that can marshal themselves. -// This interface is used by the following functions: Size, Marshal, -// Buffer.Marshal, and Buffer.EncodeMessage. -// -// Deprecated: Do not implement. -type Marshaler interface { - // Marshal formats the encoded bytes of the message. - // It should be deterministic and emit valid protobuf wire data. - // The caller takes ownership of the returned buffer. - Marshal() ([]byte, error) -} - -// Unmarshaler is implemented by messages that can unmarshal themselves. -// This interface is used by the following functions: Unmarshal, UnmarshalMerge, -// Buffer.Unmarshal, Buffer.DecodeMessage, and Buffer.DecodeGroup. -// -// Deprecated: Do not implement. -type Unmarshaler interface { - // Unmarshal parses the encoded bytes of the protobuf wire input. - // The provided buffer is only valid for during method call. - // It should not reset the receiver message. - Unmarshal([]byte) error -} - -// Merger is implemented by messages that can merge themselves. -// This interface is used by the following functions: Clone and Merge. -// -// Deprecated: Do not implement. -type Merger interface { - // Merge merges the contents of src into the receiver message. - // It clones all data structures in src such that it aliases no mutable - // memory referenced by src. - Merge(src Message) -} - -// RequiredNotSetError is an error type returned when -// marshaling or unmarshaling a message with missing required fields. -type RequiredNotSetError struct { - err error -} - -func (e *RequiredNotSetError) Error() string { - if e.err != nil { - return e.err.Error() - } - return "proto: required field not set" -} -func (e *RequiredNotSetError) RequiredNotSet() bool { - return true -} - -func checkRequiredNotSet(m protoV2.Message) error { - if err := protoV2.CheckInitialized(m); err != nil { - return &RequiredNotSetError{err: err} - } - return nil -} - -// Clone returns a deep copy of src. -func Clone(src Message) Message { - return MessageV1(protoV2.Clone(MessageV2(src))) -} - -// Merge merges src into dst, which must be messages of the same type. -// -// Populated scalar fields in src are copied to dst, while populated -// singular messages in src are merged into dst by recursively calling Merge. -// The elements of every list field in src is appended to the corresponded -// list fields in dst. The entries of every map field in src is copied into -// the corresponding map field in dst, possibly replacing existing entries. -// The unknown fields of src are appended to the unknown fields of dst. -func Merge(dst, src Message) { - protoV2.Merge(MessageV2(dst), MessageV2(src)) -} - -// Equal reports whether two messages are equal. -// If two messages marshal to the same bytes under deterministic serialization, -// then Equal is guaranteed to report true. -// -// Two messages are equal if they are the same protobuf message type, -// have the same set of populated known and extension field values, -// and the same set of unknown fields values. -// -// Scalar values are compared with the equivalent of the == operator in Go, -// except bytes values which are compared using bytes.Equal and -// floating point values which specially treat NaNs as equal. -// Message values are compared by recursively calling Equal. -// Lists are equal if each element value is also equal. -// Maps are equal if they have the same set of keys, where the pair of values -// for each key is also equal. -func Equal(x, y Message) bool { - return protoV2.Equal(MessageV2(x), MessageV2(y)) -} - -func isMessageSet(md protoreflect.MessageDescriptor) bool { - ms, ok := md.(interface{ IsMessageSet() bool }) - return ok && ms.IsMessageSet() -} diff --git a/vendor/github.com/golang/protobuf/proto/registry.go b/vendor/github.com/golang/protobuf/proto/registry.go deleted file mode 100644 index 066b4323b4..0000000000 --- a/vendor/github.com/golang/protobuf/proto/registry.go +++ /dev/null @@ -1,317 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "bytes" - "compress/gzip" - "fmt" - "io/ioutil" - "reflect" - "strings" - "sync" - - "google.golang.org/protobuf/reflect/protodesc" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" - "google.golang.org/protobuf/runtime/protoimpl" -) - -// filePath is the path to the proto source file. -type filePath = string // e.g., "google/protobuf/descriptor.proto" - -// fileDescGZIP is the compressed contents of the encoded FileDescriptorProto. -type fileDescGZIP = []byte - -var fileCache sync.Map // map[filePath]fileDescGZIP - -// RegisterFile is called from generated code to register the compressed -// FileDescriptorProto with the file path for a proto source file. -// -// Deprecated: Use protoregistry.GlobalFiles.RegisterFile instead. -func RegisterFile(s filePath, d fileDescGZIP) { - // Decompress the descriptor. - zr, err := gzip.NewReader(bytes.NewReader(d)) - if err != nil { - panic(fmt.Sprintf("proto: invalid compressed file descriptor: %v", err)) - } - b, err := ioutil.ReadAll(zr) - if err != nil { - panic(fmt.Sprintf("proto: invalid compressed file descriptor: %v", err)) - } - - // Construct a protoreflect.FileDescriptor from the raw descriptor. - // Note that DescBuilder.Build automatically registers the constructed - // file descriptor with the v2 registry. - protoimpl.DescBuilder{RawDescriptor: b}.Build() - - // Locally cache the raw descriptor form for the file. - fileCache.Store(s, d) -} - -// FileDescriptor returns the compressed FileDescriptorProto given the file path -// for a proto source file. It returns nil if not found. -// -// Deprecated: Use protoregistry.GlobalFiles.FindFileByPath instead. -func FileDescriptor(s filePath) fileDescGZIP { - if v, ok := fileCache.Load(s); ok { - return v.(fileDescGZIP) - } - - // Find the descriptor in the v2 registry. - var b []byte - if fd, _ := protoregistry.GlobalFiles.FindFileByPath(s); fd != nil { - b, _ = Marshal(protodesc.ToFileDescriptorProto(fd)) - } - - // Locally cache the raw descriptor form for the file. - if len(b) > 0 { - v, _ := fileCache.LoadOrStore(s, protoimpl.X.CompressGZIP(b)) - return v.(fileDescGZIP) - } - return nil -} - -// enumName is the name of an enum. For historical reasons, the enum name is -// neither the full Go name nor the full protobuf name of the enum. -// The name is the dot-separated combination of just the proto package that the -// enum is declared within followed by the Go type name of the generated enum. -type enumName = string // e.g., "my.proto.package.GoMessage_GoEnum" - -// enumsByName maps enum values by name to their numeric counterpart. -type enumsByName = map[string]int32 - -// enumsByNumber maps enum values by number to their name counterpart. -type enumsByNumber = map[int32]string - -var enumCache sync.Map // map[enumName]enumsByName -var numFilesCache sync.Map // map[protoreflect.FullName]int - -// RegisterEnum is called from the generated code to register the mapping of -// enum value names to enum numbers for the enum identified by s. -// -// Deprecated: Use protoregistry.GlobalTypes.RegisterEnum instead. -func RegisterEnum(s enumName, _ enumsByNumber, m enumsByName) { - if _, ok := enumCache.Load(s); ok { - panic("proto: duplicate enum registered: " + s) - } - enumCache.Store(s, m) - - // This does not forward registration to the v2 registry since this API - // lacks sufficient information to construct a complete v2 enum descriptor. -} - -// EnumValueMap returns the mapping from enum value names to enum numbers for -// the enum of the given name. It returns nil if not found. -// -// Deprecated: Use protoregistry.GlobalTypes.FindEnumByName instead. -func EnumValueMap(s enumName) enumsByName { - if v, ok := enumCache.Load(s); ok { - return v.(enumsByName) - } - - // Check whether the cache is stale. If the number of files in the current - // package differs, then it means that some enums may have been recently - // registered upstream that we do not know about. - var protoPkg protoreflect.FullName - if i := strings.LastIndexByte(s, '.'); i >= 0 { - protoPkg = protoreflect.FullName(s[:i]) - } - v, _ := numFilesCache.Load(protoPkg) - numFiles, _ := v.(int) - if protoregistry.GlobalFiles.NumFilesByPackage(protoPkg) == numFiles { - return nil // cache is up-to-date; was not found earlier - } - - // Update the enum cache for all enums declared in the given proto package. - numFiles = 0 - protoregistry.GlobalFiles.RangeFilesByPackage(protoPkg, func(fd protoreflect.FileDescriptor) bool { - walkEnums(fd, func(ed protoreflect.EnumDescriptor) { - name := protoimpl.X.LegacyEnumName(ed) - if _, ok := enumCache.Load(name); !ok { - m := make(enumsByName) - evs := ed.Values() - for i := evs.Len() - 1; i >= 0; i-- { - ev := evs.Get(i) - m[string(ev.Name())] = int32(ev.Number()) - } - enumCache.LoadOrStore(name, m) - } - }) - numFiles++ - return true - }) - numFilesCache.Store(protoPkg, numFiles) - - // Check cache again for enum map. - if v, ok := enumCache.Load(s); ok { - return v.(enumsByName) - } - return nil -} - -// walkEnums recursively walks all enums declared in d. -func walkEnums(d interface { - Enums() protoreflect.EnumDescriptors - Messages() protoreflect.MessageDescriptors -}, f func(protoreflect.EnumDescriptor)) { - eds := d.Enums() - for i := eds.Len() - 1; i >= 0; i-- { - f(eds.Get(i)) - } - mds := d.Messages() - for i := mds.Len() - 1; i >= 0; i-- { - walkEnums(mds.Get(i), f) - } -} - -// messageName is the full name of protobuf message. -type messageName = string - -var messageTypeCache sync.Map // map[messageName]reflect.Type - -// RegisterType is called from generated code to register the message Go type -// for a message of the given name. -// -// Deprecated: Use protoregistry.GlobalTypes.RegisterMessage instead. -func RegisterType(m Message, s messageName) { - mt := protoimpl.X.LegacyMessageTypeOf(m, protoreflect.FullName(s)) - if err := protoregistry.GlobalTypes.RegisterMessage(mt); err != nil { - panic(err) - } - messageTypeCache.Store(s, reflect.TypeOf(m)) -} - -// RegisterMapType is called from generated code to register the Go map type -// for a protobuf message representing a map entry. -// -// Deprecated: Do not use. -func RegisterMapType(m interface{}, s messageName) { - t := reflect.TypeOf(m) - if t.Kind() != reflect.Map { - panic(fmt.Sprintf("invalid map kind: %v", t)) - } - if _, ok := messageTypeCache.Load(s); ok { - panic(fmt.Errorf("proto: duplicate proto message registered: %s", s)) - } - messageTypeCache.Store(s, t) -} - -// MessageType returns the message type for a named message. -// It returns nil if not found. -// -// Deprecated: Use protoregistry.GlobalTypes.FindMessageByName instead. -func MessageType(s messageName) reflect.Type { - if v, ok := messageTypeCache.Load(s); ok { - return v.(reflect.Type) - } - - // Derive the message type from the v2 registry. - var t reflect.Type - if mt, _ := protoregistry.GlobalTypes.FindMessageByName(protoreflect.FullName(s)); mt != nil { - t = messageGoType(mt) - } - - // If we could not get a concrete type, it is possible that it is a - // pseudo-message for a map entry. - if t == nil { - d, _ := protoregistry.GlobalFiles.FindDescriptorByName(protoreflect.FullName(s)) - if md, _ := d.(protoreflect.MessageDescriptor); md != nil && md.IsMapEntry() { - kt := goTypeForField(md.Fields().ByNumber(1)) - vt := goTypeForField(md.Fields().ByNumber(2)) - t = reflect.MapOf(kt, vt) - } - } - - // Locally cache the message type for the given name. - if t != nil { - v, _ := messageTypeCache.LoadOrStore(s, t) - return v.(reflect.Type) - } - return nil -} - -func goTypeForField(fd protoreflect.FieldDescriptor) reflect.Type { - switch k := fd.Kind(); k { - case protoreflect.EnumKind: - if et, _ := protoregistry.GlobalTypes.FindEnumByName(fd.Enum().FullName()); et != nil { - return enumGoType(et) - } - return reflect.TypeOf(protoreflect.EnumNumber(0)) - case protoreflect.MessageKind, protoreflect.GroupKind: - if mt, _ := protoregistry.GlobalTypes.FindMessageByName(fd.Message().FullName()); mt != nil { - return messageGoType(mt) - } - return reflect.TypeOf((*protoreflect.Message)(nil)).Elem() - default: - return reflect.TypeOf(fd.Default().Interface()) - } -} - -func enumGoType(et protoreflect.EnumType) reflect.Type { - return reflect.TypeOf(et.New(0)) -} - -func messageGoType(mt protoreflect.MessageType) reflect.Type { - return reflect.TypeOf(MessageV1(mt.Zero().Interface())) -} - -// MessageName returns the full protobuf name for the given message type. -// -// Deprecated: Use protoreflect.MessageDescriptor.FullName instead. -func MessageName(m Message) messageName { - if m == nil { - return "" - } - if m, ok := m.(interface{ XXX_MessageName() messageName }); ok { - return m.XXX_MessageName() - } - return messageName(protoimpl.X.MessageDescriptorOf(m).FullName()) -} - -// RegisterExtension is called from the generated code to register -// the extension descriptor. -// -// Deprecated: Use protoregistry.GlobalTypes.RegisterExtension instead. -func RegisterExtension(d *ExtensionDesc) { - if err := protoregistry.GlobalTypes.RegisterExtension(d); err != nil { - panic(err) - } -} - -type extensionsByNumber = map[int32]*ExtensionDesc - -var extensionCache sync.Map // map[messageName]extensionsByNumber - -// RegisteredExtensions returns a map of the registered extensions for the -// provided protobuf message, indexed by the extension field number. -// -// Deprecated: Use protoregistry.GlobalTypes.RangeExtensionsByMessage instead. -func RegisteredExtensions(m Message) extensionsByNumber { - // Check whether the cache is stale. If the number of extensions for - // the given message differs, then it means that some extensions were - // recently registered upstream that we do not know about. - s := MessageName(m) - v, _ := extensionCache.Load(s) - xs, _ := v.(extensionsByNumber) - if protoregistry.GlobalTypes.NumExtensionsByMessage(protoreflect.FullName(s)) == len(xs) { - return xs // cache is up-to-date - } - - // Cache is stale, re-compute the extensions map. - xs = make(extensionsByNumber) - protoregistry.GlobalTypes.RangeExtensionsByMessage(protoreflect.FullName(s), func(xt protoreflect.ExtensionType) bool { - if xd, ok := xt.(*ExtensionDesc); ok { - xs[int32(xt.TypeDescriptor().Number())] = xd - } else { - // TODO: This implies that the protoreflect.ExtensionType is a - // custom type not generated by protoc-gen-go. We could try and - // convert the type to an ExtensionDesc. - } - return true - }) - extensionCache.Store(s, xs) - return xs -} diff --git a/vendor/github.com/golang/protobuf/proto/text_decode.go b/vendor/github.com/golang/protobuf/proto/text_decode.go deleted file mode 100644 index 47eb3e4450..0000000000 --- a/vendor/github.com/golang/protobuf/proto/text_decode.go +++ /dev/null @@ -1,801 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "encoding" - "errors" - "fmt" - "reflect" - "strconv" - "strings" - "unicode/utf8" - - "google.golang.org/protobuf/encoding/prototext" - protoV2 "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" -) - -const wrapTextUnmarshalV2 = false - -// ParseError is returned by UnmarshalText. -type ParseError struct { - Message string - - // Deprecated: Do not use. - Line, Offset int -} - -func (e *ParseError) Error() string { - if wrapTextUnmarshalV2 { - return e.Message - } - if e.Line == 1 { - return fmt.Sprintf("line 1.%d: %v", e.Offset, e.Message) - } - return fmt.Sprintf("line %d: %v", e.Line, e.Message) -} - -// UnmarshalText parses a proto text formatted string into m. -func UnmarshalText(s string, m Message) error { - if u, ok := m.(encoding.TextUnmarshaler); ok { - return u.UnmarshalText([]byte(s)) - } - - m.Reset() - mi := MessageV2(m) - - if wrapTextUnmarshalV2 { - err := prototext.UnmarshalOptions{ - AllowPartial: true, - }.Unmarshal([]byte(s), mi) - if err != nil { - return &ParseError{Message: err.Error()} - } - return checkRequiredNotSet(mi) - } else { - if err := newTextParser(s).unmarshalMessage(mi.ProtoReflect(), ""); err != nil { - return err - } - return checkRequiredNotSet(mi) - } -} - -type textParser struct { - s string // remaining input - done bool // whether the parsing is finished (success or error) - backed bool // whether back() was called - offset, line int - cur token -} - -type token struct { - value string - err *ParseError - line int // line number - offset int // byte number from start of input, not start of line - unquoted string // the unquoted version of value, if it was a quoted string -} - -func newTextParser(s string) *textParser { - p := new(textParser) - p.s = s - p.line = 1 - p.cur.line = 1 - return p -} - -func (p *textParser) unmarshalMessage(m protoreflect.Message, terminator string) (err error) { - md := m.Descriptor() - fds := md.Fields() - - // A struct is a sequence of "name: value", terminated by one of - // '>' or '}', or the end of the input. A name may also be - // "[extension]" or "[type/url]". - // - // The whole struct can also be an expanded Any message, like: - // [type/url] < ... struct contents ... > - seen := make(map[protoreflect.FieldNumber]bool) - for { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value == terminator { - break - } - if tok.value == "[" { - if err := p.unmarshalExtensionOrAny(m, seen); err != nil { - return err - } - continue - } - - // This is a normal, non-extension field. - name := protoreflect.Name(tok.value) - fd := fds.ByName(name) - switch { - case fd == nil: - gd := fds.ByName(protoreflect.Name(strings.ToLower(string(name)))) - if gd != nil && gd.Kind() == protoreflect.GroupKind && gd.Message().Name() == name { - fd = gd - } - case fd.Kind() == protoreflect.GroupKind && fd.Message().Name() != name: - fd = nil - case fd.IsWeak() && fd.Message().IsPlaceholder(): - fd = nil - } - if fd == nil { - typeName := string(md.FullName()) - if m, ok := m.Interface().(Message); ok { - t := reflect.TypeOf(m) - if t.Kind() == reflect.Ptr { - typeName = t.Elem().String() - } - } - return p.errorf("unknown field name %q in %v", name, typeName) - } - if od := fd.ContainingOneof(); od != nil && m.WhichOneof(od) != nil { - return p.errorf("field '%s' would overwrite already parsed oneof '%s'", name, od.Name()) - } - if fd.Cardinality() != protoreflect.Repeated && seen[fd.Number()] { - return p.errorf("non-repeated field %q was repeated", fd.Name()) - } - seen[fd.Number()] = true - - // Consume any colon. - if err := p.checkForColon(fd); err != nil { - return err - } - - // Parse into the field. - v := m.Get(fd) - if !m.Has(fd) && (fd.IsList() || fd.IsMap() || fd.Message() != nil) { - v = m.Mutable(fd) - } - if v, err = p.unmarshalValue(v, fd); err != nil { - return err - } - m.Set(fd, v) - - if err := p.consumeOptionalSeparator(); err != nil { - return err - } - } - return nil -} - -func (p *textParser) unmarshalExtensionOrAny(m protoreflect.Message, seen map[protoreflect.FieldNumber]bool) error { - name, err := p.consumeExtensionOrAnyName() - if err != nil { - return err - } - - // If it contains a slash, it's an Any type URL. - if slashIdx := strings.LastIndex(name, "/"); slashIdx >= 0 { - tok := p.next() - if tok.err != nil { - return tok.err - } - // consume an optional colon - if tok.value == ":" { - tok = p.next() - if tok.err != nil { - return tok.err - } - } - - var terminator string - switch tok.value { - case "<": - terminator = ">" - case "{": - terminator = "}" - default: - return p.errorf("expected '{' or '<', found %q", tok.value) - } - - mt, err := protoregistry.GlobalTypes.FindMessageByURL(name) - if err != nil { - return p.errorf("unrecognized message %q in google.protobuf.Any", name[slashIdx+len("/"):]) - } - m2 := mt.New() - if err := p.unmarshalMessage(m2, terminator); err != nil { - return err - } - b, err := protoV2.Marshal(m2.Interface()) - if err != nil { - return p.errorf("failed to marshal message of type %q: %v", name[slashIdx+len("/"):], err) - } - - urlFD := m.Descriptor().Fields().ByName("type_url") - valFD := m.Descriptor().Fields().ByName("value") - if seen[urlFD.Number()] { - return p.errorf("Any message unpacked multiple times, or %q already set", urlFD.Name()) - } - if seen[valFD.Number()] { - return p.errorf("Any message unpacked multiple times, or %q already set", valFD.Name()) - } - m.Set(urlFD, protoreflect.ValueOfString(name)) - m.Set(valFD, protoreflect.ValueOfBytes(b)) - seen[urlFD.Number()] = true - seen[valFD.Number()] = true - return nil - } - - xname := protoreflect.FullName(name) - xt, _ := protoregistry.GlobalTypes.FindExtensionByName(xname) - if xt == nil && isMessageSet(m.Descriptor()) { - xt, _ = protoregistry.GlobalTypes.FindExtensionByName(xname.Append("message_set_extension")) - } - if xt == nil { - return p.errorf("unrecognized extension %q", name) - } - fd := xt.TypeDescriptor() - if fd.ContainingMessage().FullName() != m.Descriptor().FullName() { - return p.errorf("extension field %q does not extend message %q", name, m.Descriptor().FullName()) - } - - if err := p.checkForColon(fd); err != nil { - return err - } - - v := m.Get(fd) - if !m.Has(fd) && (fd.IsList() || fd.IsMap() || fd.Message() != nil) { - v = m.Mutable(fd) - } - v, err = p.unmarshalValue(v, fd) - if err != nil { - return err - } - m.Set(fd, v) - return p.consumeOptionalSeparator() -} - -func (p *textParser) unmarshalValue(v protoreflect.Value, fd protoreflect.FieldDescriptor) (protoreflect.Value, error) { - tok := p.next() - if tok.err != nil { - return v, tok.err - } - if tok.value == "" { - return v, p.errorf("unexpected EOF") - } - - switch { - case fd.IsList(): - lv := v.List() - var err error - if tok.value == "[" { - // Repeated field with list notation, like [1,2,3]. - for { - vv := lv.NewElement() - vv, err = p.unmarshalSingularValue(vv, fd) - if err != nil { - return v, err - } - lv.Append(vv) - - tok := p.next() - if tok.err != nil { - return v, tok.err - } - if tok.value == "]" { - break - } - if tok.value != "," { - return v, p.errorf("Expected ']' or ',' found %q", tok.value) - } - } - return v, nil - } - - // One value of the repeated field. - p.back() - vv := lv.NewElement() - vv, err = p.unmarshalSingularValue(vv, fd) - if err != nil { - return v, err - } - lv.Append(vv) - return v, nil - case fd.IsMap(): - // The map entry should be this sequence of tokens: - // < key : KEY value : VALUE > - // However, implementations may omit key or value, and technically - // we should support them in any order. - var terminator string - switch tok.value { - case "<": - terminator = ">" - case "{": - terminator = "}" - default: - return v, p.errorf("expected '{' or '<', found %q", tok.value) - } - - keyFD := fd.MapKey() - valFD := fd.MapValue() - - mv := v.Map() - kv := keyFD.Default() - vv := mv.NewValue() - for { - tok := p.next() - if tok.err != nil { - return v, tok.err - } - if tok.value == terminator { - break - } - var err error - switch tok.value { - case "key": - if err := p.consumeToken(":"); err != nil { - return v, err - } - if kv, err = p.unmarshalSingularValue(kv, keyFD); err != nil { - return v, err - } - if err := p.consumeOptionalSeparator(); err != nil { - return v, err - } - case "value": - if err := p.checkForColon(valFD); err != nil { - return v, err - } - if vv, err = p.unmarshalSingularValue(vv, valFD); err != nil { - return v, err - } - if err := p.consumeOptionalSeparator(); err != nil { - return v, err - } - default: - p.back() - return v, p.errorf(`expected "key", "value", or %q, found %q`, terminator, tok.value) - } - } - mv.Set(kv.MapKey(), vv) - return v, nil - default: - p.back() - return p.unmarshalSingularValue(v, fd) - } -} - -func (p *textParser) unmarshalSingularValue(v protoreflect.Value, fd protoreflect.FieldDescriptor) (protoreflect.Value, error) { - tok := p.next() - if tok.err != nil { - return v, tok.err - } - if tok.value == "" { - return v, p.errorf("unexpected EOF") - } - - switch fd.Kind() { - case protoreflect.BoolKind: - switch tok.value { - case "true", "1", "t", "True": - return protoreflect.ValueOfBool(true), nil - case "false", "0", "f", "False": - return protoreflect.ValueOfBool(false), nil - } - case protoreflect.Int32Kind, protoreflect.Sint32Kind, protoreflect.Sfixed32Kind: - if x, err := strconv.ParseInt(tok.value, 0, 32); err == nil { - return protoreflect.ValueOfInt32(int32(x)), nil - } - - // The C++ parser accepts large positive hex numbers that uses - // two's complement arithmetic to represent negative numbers. - // This feature is here for backwards compatibility with C++. - if strings.HasPrefix(tok.value, "0x") { - if x, err := strconv.ParseUint(tok.value, 0, 32); err == nil { - return protoreflect.ValueOfInt32(int32(-(int64(^x) + 1))), nil - } - } - case protoreflect.Int64Kind, protoreflect.Sint64Kind, protoreflect.Sfixed64Kind: - if x, err := strconv.ParseInt(tok.value, 0, 64); err == nil { - return protoreflect.ValueOfInt64(int64(x)), nil - } - - // The C++ parser accepts large positive hex numbers that uses - // two's complement arithmetic to represent negative numbers. - // This feature is here for backwards compatibility with C++. - if strings.HasPrefix(tok.value, "0x") { - if x, err := strconv.ParseUint(tok.value, 0, 64); err == nil { - return protoreflect.ValueOfInt64(int64(-(int64(^x) + 1))), nil - } - } - case protoreflect.Uint32Kind, protoreflect.Fixed32Kind: - if x, err := strconv.ParseUint(tok.value, 0, 32); err == nil { - return protoreflect.ValueOfUint32(uint32(x)), nil - } - case protoreflect.Uint64Kind, protoreflect.Fixed64Kind: - if x, err := strconv.ParseUint(tok.value, 0, 64); err == nil { - return protoreflect.ValueOfUint64(uint64(x)), nil - } - case protoreflect.FloatKind: - // Ignore 'f' for compatibility with output generated by C++, - // but don't remove 'f' when the value is "-inf" or "inf". - v := tok.value - if strings.HasSuffix(v, "f") && v != "-inf" && v != "inf" { - v = v[:len(v)-len("f")] - } - if x, err := strconv.ParseFloat(v, 32); err == nil { - return protoreflect.ValueOfFloat32(float32(x)), nil - } - case protoreflect.DoubleKind: - // Ignore 'f' for compatibility with output generated by C++, - // but don't remove 'f' when the value is "-inf" or "inf". - v := tok.value - if strings.HasSuffix(v, "f") && v != "-inf" && v != "inf" { - v = v[:len(v)-len("f")] - } - if x, err := strconv.ParseFloat(v, 64); err == nil { - return protoreflect.ValueOfFloat64(float64(x)), nil - } - case protoreflect.StringKind: - if isQuote(tok.value[0]) { - return protoreflect.ValueOfString(tok.unquoted), nil - } - case protoreflect.BytesKind: - if isQuote(tok.value[0]) { - return protoreflect.ValueOfBytes([]byte(tok.unquoted)), nil - } - case protoreflect.EnumKind: - if x, err := strconv.ParseInt(tok.value, 0, 32); err == nil { - return protoreflect.ValueOfEnum(protoreflect.EnumNumber(x)), nil - } - vd := fd.Enum().Values().ByName(protoreflect.Name(tok.value)) - if vd != nil { - return protoreflect.ValueOfEnum(vd.Number()), nil - } - case protoreflect.MessageKind, protoreflect.GroupKind: - var terminator string - switch tok.value { - case "{": - terminator = "}" - case "<": - terminator = ">" - default: - return v, p.errorf("expected '{' or '<', found %q", tok.value) - } - err := p.unmarshalMessage(v.Message(), terminator) - return v, err - default: - panic(fmt.Sprintf("invalid kind %v", fd.Kind())) - } - return v, p.errorf("invalid %v: %v", fd.Kind(), tok.value) -} - -// Consume a ':' from the input stream (if the next token is a colon), -// returning an error if a colon is needed but not present. -func (p *textParser) checkForColon(fd protoreflect.FieldDescriptor) *ParseError { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != ":" { - if fd.Message() == nil { - return p.errorf("expected ':', found %q", tok.value) - } - p.back() - } - return nil -} - -// consumeExtensionOrAnyName consumes an extension name or an Any type URL and -// the following ']'. It returns the name or URL consumed. -func (p *textParser) consumeExtensionOrAnyName() (string, error) { - tok := p.next() - if tok.err != nil { - return "", tok.err - } - - // If extension name or type url is quoted, it's a single token. - if len(tok.value) > 2 && isQuote(tok.value[0]) && tok.value[len(tok.value)-1] == tok.value[0] { - name, err := unquoteC(tok.value[1:len(tok.value)-1], rune(tok.value[0])) - if err != nil { - return "", err - } - return name, p.consumeToken("]") - } - - // Consume everything up to "]" - var parts []string - for tok.value != "]" { - parts = append(parts, tok.value) - tok = p.next() - if tok.err != nil { - return "", p.errorf("unrecognized type_url or extension name: %s", tok.err) - } - if p.done && tok.value != "]" { - return "", p.errorf("unclosed type_url or extension name") - } - } - return strings.Join(parts, ""), nil -} - -// consumeOptionalSeparator consumes an optional semicolon or comma. -// It is used in unmarshalMessage to provide backward compatibility. -func (p *textParser) consumeOptionalSeparator() error { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != ";" && tok.value != "," { - p.back() - } - return nil -} - -func (p *textParser) errorf(format string, a ...interface{}) *ParseError { - pe := &ParseError{fmt.Sprintf(format, a...), p.cur.line, p.cur.offset} - p.cur.err = pe - p.done = true - return pe -} - -func (p *textParser) skipWhitespace() { - i := 0 - for i < len(p.s) && (isWhitespace(p.s[i]) || p.s[i] == '#') { - if p.s[i] == '#' { - // comment; skip to end of line or input - for i < len(p.s) && p.s[i] != '\n' { - i++ - } - if i == len(p.s) { - break - } - } - if p.s[i] == '\n' { - p.line++ - } - i++ - } - p.offset += i - p.s = p.s[i:len(p.s)] - if len(p.s) == 0 { - p.done = true - } -} - -func (p *textParser) advance() { - // Skip whitespace - p.skipWhitespace() - if p.done { - return - } - - // Start of non-whitespace - p.cur.err = nil - p.cur.offset, p.cur.line = p.offset, p.line - p.cur.unquoted = "" - switch p.s[0] { - case '<', '>', '{', '}', ':', '[', ']', ';', ',', '/': - // Single symbol - p.cur.value, p.s = p.s[0:1], p.s[1:len(p.s)] - case '"', '\'': - // Quoted string - i := 1 - for i < len(p.s) && p.s[i] != p.s[0] && p.s[i] != '\n' { - if p.s[i] == '\\' && i+1 < len(p.s) { - // skip escaped char - i++ - } - i++ - } - if i >= len(p.s) || p.s[i] != p.s[0] { - p.errorf("unmatched quote") - return - } - unq, err := unquoteC(p.s[1:i], rune(p.s[0])) - if err != nil { - p.errorf("invalid quoted string %s: %v", p.s[0:i+1], err) - return - } - p.cur.value, p.s = p.s[0:i+1], p.s[i+1:len(p.s)] - p.cur.unquoted = unq - default: - i := 0 - for i < len(p.s) && isIdentOrNumberChar(p.s[i]) { - i++ - } - if i == 0 { - p.errorf("unexpected byte %#x", p.s[0]) - return - } - p.cur.value, p.s = p.s[0:i], p.s[i:len(p.s)] - } - p.offset += len(p.cur.value) -} - -// Back off the parser by one token. Can only be done between calls to next(). -// It makes the next advance() a no-op. -func (p *textParser) back() { p.backed = true } - -// Advances the parser and returns the new current token. -func (p *textParser) next() *token { - if p.backed || p.done { - p.backed = false - return &p.cur - } - p.advance() - if p.done { - p.cur.value = "" - } else if len(p.cur.value) > 0 && isQuote(p.cur.value[0]) { - // Look for multiple quoted strings separated by whitespace, - // and concatenate them. - cat := p.cur - for { - p.skipWhitespace() - if p.done || !isQuote(p.s[0]) { - break - } - p.advance() - if p.cur.err != nil { - return &p.cur - } - cat.value += " " + p.cur.value - cat.unquoted += p.cur.unquoted - } - p.done = false // parser may have seen EOF, but we want to return cat - p.cur = cat - } - return &p.cur -} - -func (p *textParser) consumeToken(s string) error { - tok := p.next() - if tok.err != nil { - return tok.err - } - if tok.value != s { - p.back() - return p.errorf("expected %q, found %q", s, tok.value) - } - return nil -} - -var errBadUTF8 = errors.New("proto: bad UTF-8") - -func unquoteC(s string, quote rune) (string, error) { - // This is based on C++'s tokenizer.cc. - // Despite its name, this is *not* parsing C syntax. - // For instance, "\0" is an invalid quoted string. - - // Avoid allocation in trivial cases. - simple := true - for _, r := range s { - if r == '\\' || r == quote { - simple = false - break - } - } - if simple { - return s, nil - } - - buf := make([]byte, 0, 3*len(s)/2) - for len(s) > 0 { - r, n := utf8.DecodeRuneInString(s) - if r == utf8.RuneError && n == 1 { - return "", errBadUTF8 - } - s = s[n:] - if r != '\\' { - if r < utf8.RuneSelf { - buf = append(buf, byte(r)) - } else { - buf = append(buf, string(r)...) - } - continue - } - - ch, tail, err := unescape(s) - if err != nil { - return "", err - } - buf = append(buf, ch...) - s = tail - } - return string(buf), nil -} - -func unescape(s string) (ch string, tail string, err error) { - r, n := utf8.DecodeRuneInString(s) - if r == utf8.RuneError && n == 1 { - return "", "", errBadUTF8 - } - s = s[n:] - switch r { - case 'a': - return "\a", s, nil - case 'b': - return "\b", s, nil - case 'f': - return "\f", s, nil - case 'n': - return "\n", s, nil - case 'r': - return "\r", s, nil - case 't': - return "\t", s, nil - case 'v': - return "\v", s, nil - case '?': - return "?", s, nil // trigraph workaround - case '\'', '"', '\\': - return string(r), s, nil - case '0', '1', '2', '3', '4', '5', '6', '7': - if len(s) < 2 { - return "", "", fmt.Errorf(`\%c requires 2 following digits`, r) - } - ss := string(r) + s[:2] - s = s[2:] - i, err := strconv.ParseUint(ss, 8, 8) - if err != nil { - return "", "", fmt.Errorf(`\%s contains non-octal digits`, ss) - } - return string([]byte{byte(i)}), s, nil - case 'x', 'X', 'u', 'U': - var n int - switch r { - case 'x', 'X': - n = 2 - case 'u': - n = 4 - case 'U': - n = 8 - } - if len(s) < n { - return "", "", fmt.Errorf(`\%c requires %d following digits`, r, n) - } - ss := s[:n] - s = s[n:] - i, err := strconv.ParseUint(ss, 16, 64) - if err != nil { - return "", "", fmt.Errorf(`\%c%s contains non-hexadecimal digits`, r, ss) - } - if r == 'x' || r == 'X' { - return string([]byte{byte(i)}), s, nil - } - if i > utf8.MaxRune { - return "", "", fmt.Errorf(`\%c%s is not a valid Unicode code point`, r, ss) - } - return string(rune(i)), s, nil - } - return "", "", fmt.Errorf(`unknown escape \%c`, r) -} - -func isIdentOrNumberChar(c byte) bool { - switch { - case 'A' <= c && c <= 'Z', 'a' <= c && c <= 'z': - return true - case '0' <= c && c <= '9': - return true - } - switch c { - case '-', '+', '.', '_': - return true - } - return false -} - -func isWhitespace(c byte) bool { - switch c { - case ' ', '\t', '\n', '\r': - return true - } - return false -} - -func isQuote(c byte) bool { - switch c { - case '"', '\'': - return true - } - return false -} diff --git a/vendor/github.com/golang/protobuf/proto/text_encode.go b/vendor/github.com/golang/protobuf/proto/text_encode.go deleted file mode 100644 index a31134eeb3..0000000000 --- a/vendor/github.com/golang/protobuf/proto/text_encode.go +++ /dev/null @@ -1,560 +0,0 @@ -// Copyright 2010 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - "bytes" - "encoding" - "fmt" - "io" - "math" - "sort" - "strings" - - "google.golang.org/protobuf/encoding/prototext" - "google.golang.org/protobuf/encoding/protowire" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" -) - -const wrapTextMarshalV2 = false - -// TextMarshaler is a configurable text format marshaler. -type TextMarshaler struct { - Compact bool // use compact text format (one line) - ExpandAny bool // expand google.protobuf.Any messages of known types -} - -// Marshal writes the proto text format of m to w. -func (tm *TextMarshaler) Marshal(w io.Writer, m Message) error { - b, err := tm.marshal(m) - if len(b) > 0 { - if _, err := w.Write(b); err != nil { - return err - } - } - return err -} - -// Text returns a proto text formatted string of m. -func (tm *TextMarshaler) Text(m Message) string { - b, _ := tm.marshal(m) - return string(b) -} - -func (tm *TextMarshaler) marshal(m Message) ([]byte, error) { - mr := MessageReflect(m) - if mr == nil || !mr.IsValid() { - return []byte(""), nil - } - - if wrapTextMarshalV2 { - if m, ok := m.(encoding.TextMarshaler); ok { - return m.MarshalText() - } - - opts := prototext.MarshalOptions{ - AllowPartial: true, - EmitUnknown: true, - } - if !tm.Compact { - opts.Indent = " " - } - if !tm.ExpandAny { - opts.Resolver = (*protoregistry.Types)(nil) - } - return opts.Marshal(mr.Interface()) - } else { - w := &textWriter{ - compact: tm.Compact, - expandAny: tm.ExpandAny, - complete: true, - } - - if m, ok := m.(encoding.TextMarshaler); ok { - b, err := m.MarshalText() - if err != nil { - return nil, err - } - w.Write(b) - return w.buf, nil - } - - err := w.writeMessage(mr) - return w.buf, err - } -} - -var ( - defaultTextMarshaler = TextMarshaler{} - compactTextMarshaler = TextMarshaler{Compact: true} -) - -// MarshalText writes the proto text format of m to w. -func MarshalText(w io.Writer, m Message) error { return defaultTextMarshaler.Marshal(w, m) } - -// MarshalTextString returns a proto text formatted string of m. -func MarshalTextString(m Message) string { return defaultTextMarshaler.Text(m) } - -// CompactText writes the compact proto text format of m to w. -func CompactText(w io.Writer, m Message) error { return compactTextMarshaler.Marshal(w, m) } - -// CompactTextString returns a compact proto text formatted string of m. -func CompactTextString(m Message) string { return compactTextMarshaler.Text(m) } - -var ( - newline = []byte("\n") - endBraceNewline = []byte("}\n") - posInf = []byte("inf") - negInf = []byte("-inf") - nan = []byte("nan") -) - -// textWriter is an io.Writer that tracks its indentation level. -type textWriter struct { - compact bool // same as TextMarshaler.Compact - expandAny bool // same as TextMarshaler.ExpandAny - complete bool // whether the current position is a complete line - indent int // indentation level; never negative - buf []byte -} - -func (w *textWriter) Write(p []byte) (n int, _ error) { - newlines := bytes.Count(p, newline) - if newlines == 0 { - if !w.compact && w.complete { - w.writeIndent() - } - w.buf = append(w.buf, p...) - w.complete = false - return len(p), nil - } - - frags := bytes.SplitN(p, newline, newlines+1) - if w.compact { - for i, frag := range frags { - if i > 0 { - w.buf = append(w.buf, ' ') - n++ - } - w.buf = append(w.buf, frag...) - n += len(frag) - } - return n, nil - } - - for i, frag := range frags { - if w.complete { - w.writeIndent() - } - w.buf = append(w.buf, frag...) - n += len(frag) - if i+1 < len(frags) { - w.buf = append(w.buf, '\n') - n++ - } - } - w.complete = len(frags[len(frags)-1]) == 0 - return n, nil -} - -func (w *textWriter) WriteByte(c byte) error { - if w.compact && c == '\n' { - c = ' ' - } - if !w.compact && w.complete { - w.writeIndent() - } - w.buf = append(w.buf, c) - w.complete = c == '\n' - return nil -} - -func (w *textWriter) writeName(fd protoreflect.FieldDescriptor) { - if !w.compact && w.complete { - w.writeIndent() - } - w.complete = false - - if fd.Kind() != protoreflect.GroupKind { - w.buf = append(w.buf, fd.Name()...) - w.WriteByte(':') - } else { - // Use message type name for group field name. - w.buf = append(w.buf, fd.Message().Name()...) - } - - if !w.compact { - w.WriteByte(' ') - } -} - -func requiresQuotes(u string) bool { - // When type URL contains any characters except [0-9A-Za-z./\-]*, it must be quoted. - for _, ch := range u { - switch { - case ch == '.' || ch == '/' || ch == '_': - continue - case '0' <= ch && ch <= '9': - continue - case 'A' <= ch && ch <= 'Z': - continue - case 'a' <= ch && ch <= 'z': - continue - default: - return true - } - } - return false -} - -// writeProto3Any writes an expanded google.protobuf.Any message. -// -// It returns (false, nil) if sv value can't be unmarshaled (e.g. because -// required messages are not linked in). -// -// It returns (true, error) when sv was written in expanded format or an error -// was encountered. -func (w *textWriter) writeProto3Any(m protoreflect.Message) (bool, error) { - md := m.Descriptor() - fdURL := md.Fields().ByName("type_url") - fdVal := md.Fields().ByName("value") - - url := m.Get(fdURL).String() - mt, err := protoregistry.GlobalTypes.FindMessageByURL(url) - if err != nil { - return false, nil - } - - b := m.Get(fdVal).Bytes() - m2 := mt.New() - if err := proto.Unmarshal(b, m2.Interface()); err != nil { - return false, nil - } - w.Write([]byte("[")) - if requiresQuotes(url) { - w.writeQuotedString(url) - } else { - w.Write([]byte(url)) - } - if w.compact { - w.Write([]byte("]:<")) - } else { - w.Write([]byte("]: <\n")) - w.indent++ - } - if err := w.writeMessage(m2); err != nil { - return true, err - } - if w.compact { - w.Write([]byte("> ")) - } else { - w.indent-- - w.Write([]byte(">\n")) - } - return true, nil -} - -func (w *textWriter) writeMessage(m protoreflect.Message) error { - md := m.Descriptor() - if w.expandAny && md.FullName() == "google.protobuf.Any" { - if canExpand, err := w.writeProto3Any(m); canExpand { - return err - } - } - - fds := md.Fields() - for i := 0; i < fds.Len(); { - fd := fds.Get(i) - if od := fd.ContainingOneof(); od != nil { - fd = m.WhichOneof(od) - i += od.Fields().Len() - } else { - i++ - } - if fd == nil || !m.Has(fd) { - continue - } - - switch { - case fd.IsList(): - lv := m.Get(fd).List() - for j := 0; j < lv.Len(); j++ { - w.writeName(fd) - v := lv.Get(j) - if err := w.writeSingularValue(v, fd); err != nil { - return err - } - w.WriteByte('\n') - } - case fd.IsMap(): - kfd := fd.MapKey() - vfd := fd.MapValue() - mv := m.Get(fd).Map() - - type entry struct{ key, val protoreflect.Value } - var entries []entry - mv.Range(func(k protoreflect.MapKey, v protoreflect.Value) bool { - entries = append(entries, entry{k.Value(), v}) - return true - }) - sort.Slice(entries, func(i, j int) bool { - switch kfd.Kind() { - case protoreflect.BoolKind: - return !entries[i].key.Bool() && entries[j].key.Bool() - case protoreflect.Int32Kind, protoreflect.Sint32Kind, protoreflect.Sfixed32Kind, protoreflect.Int64Kind, protoreflect.Sint64Kind, protoreflect.Sfixed64Kind: - return entries[i].key.Int() < entries[j].key.Int() - case protoreflect.Uint32Kind, protoreflect.Fixed32Kind, protoreflect.Uint64Kind, protoreflect.Fixed64Kind: - return entries[i].key.Uint() < entries[j].key.Uint() - case protoreflect.StringKind: - return entries[i].key.String() < entries[j].key.String() - default: - panic("invalid kind") - } - }) - for _, entry := range entries { - w.writeName(fd) - w.WriteByte('<') - if !w.compact { - w.WriteByte('\n') - } - w.indent++ - w.writeName(kfd) - if err := w.writeSingularValue(entry.key, kfd); err != nil { - return err - } - w.WriteByte('\n') - w.writeName(vfd) - if err := w.writeSingularValue(entry.val, vfd); err != nil { - return err - } - w.WriteByte('\n') - w.indent-- - w.WriteByte('>') - w.WriteByte('\n') - } - default: - w.writeName(fd) - if err := w.writeSingularValue(m.Get(fd), fd); err != nil { - return err - } - w.WriteByte('\n') - } - } - - if b := m.GetUnknown(); len(b) > 0 { - w.writeUnknownFields(b) - } - return w.writeExtensions(m) -} - -func (w *textWriter) writeSingularValue(v protoreflect.Value, fd protoreflect.FieldDescriptor) error { - switch fd.Kind() { - case protoreflect.FloatKind, protoreflect.DoubleKind: - switch vf := v.Float(); { - case math.IsInf(vf, +1): - w.Write(posInf) - case math.IsInf(vf, -1): - w.Write(negInf) - case math.IsNaN(vf): - w.Write(nan) - default: - fmt.Fprint(w, v.Interface()) - } - case protoreflect.StringKind: - // NOTE: This does not validate UTF-8 for historical reasons. - w.writeQuotedString(string(v.String())) - case protoreflect.BytesKind: - w.writeQuotedString(string(v.Bytes())) - case protoreflect.MessageKind, protoreflect.GroupKind: - var bra, ket byte = '<', '>' - if fd.Kind() == protoreflect.GroupKind { - bra, ket = '{', '}' - } - w.WriteByte(bra) - if !w.compact { - w.WriteByte('\n') - } - w.indent++ - m := v.Message() - if m2, ok := m.Interface().(encoding.TextMarshaler); ok { - b, err := m2.MarshalText() - if err != nil { - return err - } - w.Write(b) - } else { - w.writeMessage(m) - } - w.indent-- - w.WriteByte(ket) - case protoreflect.EnumKind: - if ev := fd.Enum().Values().ByNumber(v.Enum()); ev != nil { - fmt.Fprint(w, ev.Name()) - } else { - fmt.Fprint(w, v.Enum()) - } - default: - fmt.Fprint(w, v.Interface()) - } - return nil -} - -// writeQuotedString writes a quoted string in the protocol buffer text format. -func (w *textWriter) writeQuotedString(s string) { - w.WriteByte('"') - for i := 0; i < len(s); i++ { - switch c := s[i]; c { - case '\n': - w.buf = append(w.buf, `\n`...) - case '\r': - w.buf = append(w.buf, `\r`...) - case '\t': - w.buf = append(w.buf, `\t`...) - case '"': - w.buf = append(w.buf, `\"`...) - case '\\': - w.buf = append(w.buf, `\\`...) - default: - if isPrint := c >= 0x20 && c < 0x7f; isPrint { - w.buf = append(w.buf, c) - } else { - w.buf = append(w.buf, fmt.Sprintf(`\%03o`, c)...) - } - } - } - w.WriteByte('"') -} - -func (w *textWriter) writeUnknownFields(b []byte) { - if !w.compact { - fmt.Fprintf(w, "/* %d unknown bytes */\n", len(b)) - } - - for len(b) > 0 { - num, wtyp, n := protowire.ConsumeTag(b) - if n < 0 { - return - } - b = b[n:] - - if wtyp == protowire.EndGroupType { - w.indent-- - w.Write(endBraceNewline) - continue - } - fmt.Fprint(w, num) - if wtyp != protowire.StartGroupType { - w.WriteByte(':') - } - if !w.compact || wtyp == protowire.StartGroupType { - w.WriteByte(' ') - } - switch wtyp { - case protowire.VarintType: - v, n := protowire.ConsumeVarint(b) - if n < 0 { - return - } - b = b[n:] - fmt.Fprint(w, v) - case protowire.Fixed32Type: - v, n := protowire.ConsumeFixed32(b) - if n < 0 { - return - } - b = b[n:] - fmt.Fprint(w, v) - case protowire.Fixed64Type: - v, n := protowire.ConsumeFixed64(b) - if n < 0 { - return - } - b = b[n:] - fmt.Fprint(w, v) - case protowire.BytesType: - v, n := protowire.ConsumeBytes(b) - if n < 0 { - return - } - b = b[n:] - fmt.Fprintf(w, "%q", v) - case protowire.StartGroupType: - w.WriteByte('{') - w.indent++ - default: - fmt.Fprintf(w, "/* unknown wire type %d */", wtyp) - } - w.WriteByte('\n') - } -} - -// writeExtensions writes all the extensions in m. -func (w *textWriter) writeExtensions(m protoreflect.Message) error { - md := m.Descriptor() - if md.ExtensionRanges().Len() == 0 { - return nil - } - - type ext struct { - desc protoreflect.FieldDescriptor - val protoreflect.Value - } - var exts []ext - m.Range(func(fd protoreflect.FieldDescriptor, v protoreflect.Value) bool { - if fd.IsExtension() { - exts = append(exts, ext{fd, v}) - } - return true - }) - sort.Slice(exts, func(i, j int) bool { - return exts[i].desc.Number() < exts[j].desc.Number() - }) - - for _, ext := range exts { - // For message set, use the name of the message as the extension name. - name := string(ext.desc.FullName()) - if isMessageSet(ext.desc.ContainingMessage()) { - name = strings.TrimSuffix(name, ".message_set_extension") - } - - if !ext.desc.IsList() { - if err := w.writeSingularExtension(name, ext.val, ext.desc); err != nil { - return err - } - } else { - lv := ext.val.List() - for i := 0; i < lv.Len(); i++ { - if err := w.writeSingularExtension(name, lv.Get(i), ext.desc); err != nil { - return err - } - } - } - } - return nil -} - -func (w *textWriter) writeSingularExtension(name string, v protoreflect.Value, fd protoreflect.FieldDescriptor) error { - fmt.Fprintf(w, "[%s]:", name) - if !w.compact { - w.WriteByte(' ') - } - if err := w.writeSingularValue(v, fd); err != nil { - return err - } - w.WriteByte('\n') - return nil -} - -func (w *textWriter) writeIndent() { - if !w.complete { - return - } - for i := 0; i < w.indent*2; i++ { - w.buf = append(w.buf, ' ') - } - w.complete = false -} diff --git a/vendor/github.com/golang/protobuf/proto/wire.go b/vendor/github.com/golang/protobuf/proto/wire.go deleted file mode 100644 index d7c28da5a7..0000000000 --- a/vendor/github.com/golang/protobuf/proto/wire.go +++ /dev/null @@ -1,78 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -import ( - protoV2 "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/runtime/protoiface" -) - -// Size returns the size in bytes of the wire-format encoding of m. -func Size(m Message) int { - if m == nil { - return 0 - } - mi := MessageV2(m) - return protoV2.Size(mi) -} - -// Marshal returns the wire-format encoding of m. -func Marshal(m Message) ([]byte, error) { - b, err := marshalAppend(nil, m, false) - if b == nil { - b = zeroBytes - } - return b, err -} - -var zeroBytes = make([]byte, 0, 0) - -func marshalAppend(buf []byte, m Message, deterministic bool) ([]byte, error) { - if m == nil { - return nil, ErrNil - } - mi := MessageV2(m) - nbuf, err := protoV2.MarshalOptions{ - Deterministic: deterministic, - AllowPartial: true, - }.MarshalAppend(buf, mi) - if err != nil { - return buf, err - } - if len(buf) == len(nbuf) { - if !mi.ProtoReflect().IsValid() { - return buf, ErrNil - } - } - return nbuf, checkRequiredNotSet(mi) -} - -// Unmarshal parses a wire-format message in b and places the decoded results in m. -// -// Unmarshal resets m before starting to unmarshal, so any existing data in m is always -// removed. Use UnmarshalMerge to preserve and append to existing data. -func Unmarshal(b []byte, m Message) error { - m.Reset() - return UnmarshalMerge(b, m) -} - -// UnmarshalMerge parses a wire-format message in b and places the decoded results in m. -func UnmarshalMerge(b []byte, m Message) error { - mi := MessageV2(m) - out, err := protoV2.UnmarshalOptions{ - AllowPartial: true, - Merge: true, - }.UnmarshalState(protoiface.UnmarshalInput{ - Buf: b, - Message: mi.ProtoReflect(), - }) - if err != nil { - return err - } - if out.Flags&protoiface.UnmarshalInitialized > 0 { - return nil - } - return checkRequiredNotSet(mi) -} diff --git a/vendor/github.com/golang/protobuf/proto/wrappers.go b/vendor/github.com/golang/protobuf/proto/wrappers.go deleted file mode 100644 index 398e348599..0000000000 --- a/vendor/github.com/golang/protobuf/proto/wrappers.go +++ /dev/null @@ -1,34 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package proto - -// Bool stores v in a new bool value and returns a pointer to it. -func Bool(v bool) *bool { return &v } - -// Int stores v in a new int32 value and returns a pointer to it. -// -// Deprecated: Use Int32 instead. -func Int(v int) *int32 { return Int32(int32(v)) } - -// Int32 stores v in a new int32 value and returns a pointer to it. -func Int32(v int32) *int32 { return &v } - -// Int64 stores v in a new int64 value and returns a pointer to it. -func Int64(v int64) *int64 { return &v } - -// Uint32 stores v in a new uint32 value and returns a pointer to it. -func Uint32(v uint32) *uint32 { return &v } - -// Uint64 stores v in a new uint64 value and returns a pointer to it. -func Uint64(v uint64) *uint64 { return &v } - -// Float32 stores v in a new float32 value and returns a pointer to it. -func Float32(v float32) *float32 { return &v } - -// Float64 stores v in a new float64 value and returns a pointer to it. -func Float64(v float64) *float64 { return &v } - -// String stores v in a new string value and returns a pointer to it. -func String(v string) *string { return &v } diff --git a/vendor/github.com/google/gofuzz/.travis.yml b/vendor/github.com/google/gofuzz/.travis.yml deleted file mode 100644 index 061d72ae07..0000000000 --- a/vendor/github.com/google/gofuzz/.travis.yml +++ /dev/null @@ -1,10 +0,0 @@ -language: go - -go: - - 1.11.x - - 1.12.x - - 1.13.x - - master - -script: - - go test -cover diff --git a/vendor/github.com/google/gofuzz/CONTRIBUTING.md b/vendor/github.com/google/gofuzz/CONTRIBUTING.md deleted file mode 100644 index 97c1b34fd5..0000000000 --- a/vendor/github.com/google/gofuzz/CONTRIBUTING.md +++ /dev/null @@ -1,67 +0,0 @@ -# How to contribute # - -We'd love to accept your patches and contributions to this project. There are -just a few small guidelines you need to follow. - - -## Contributor License Agreement ## - -Contributions to any Google project must be accompanied by a Contributor -License Agreement. This is not a copyright **assignment**, it simply gives -Google permission to use and redistribute your contributions as part of the -project. - - * If you are an individual writing original source code and you're sure you - own the intellectual property, then you'll need to sign an [individual - CLA][]. - - * If you work for a company that wants to allow you to contribute your work, - then you'll need to sign a [corporate CLA][]. - -You generally only need to submit a CLA once, so if you've already submitted -one (even if it was for a different project), you probably don't need to do it -again. - -[individual CLA]: https://developers.google.com/open-source/cla/individual -[corporate CLA]: https://developers.google.com/open-source/cla/corporate - - -## Submitting a patch ## - - 1. It's generally best to start by opening a new issue describing the bug or - feature you're intending to fix. Even if you think it's relatively minor, - it's helpful to know what people are working on. Mention in the initial - issue that you are planning to work on that bug or feature so that it can - be assigned to you. - - 1. Follow the normal process of [forking][] the project, and setup a new - branch to work in. It's important that each group of changes be done in - separate branches in order to ensure that a pull request only includes the - commits related to that bug or feature. - - 1. Go makes it very simple to ensure properly formatted code, so always run - `go fmt` on your code before committing it. You should also run - [golint][] over your code. As noted in the [golint readme][], it's not - strictly necessary that your code be completely "lint-free", but this will - help you find common style issues. - - 1. Any significant changes should almost always be accompanied by tests. The - project already has good test coverage, so look at some of the existing - tests if you're unsure how to go about it. [gocov][] and [gocov-html][] - are invaluable tools for seeing which parts of your code aren't being - exercised by your tests. - - 1. Do your best to have [well-formed commit messages][] for each change. - This provides consistency throughout the project, and ensures that commit - messages are able to be formatted properly by various git tools. - - 1. Finally, push the commits to your fork and submit a [pull request][]. - -[forking]: https://help.github.com/articles/fork-a-repo -[golint]: https://github.com/golang/lint -[golint readme]: https://github.com/golang/lint/blob/master/README -[gocov]: https://github.com/axw/gocov -[gocov-html]: https://github.com/matm/gocov-html -[well-formed commit messages]: http://tbaggery.com/2008/04/19/a-note-about-git-commit-messages.html -[squash]: http://git-scm.com/book/en/Git-Tools-Rewriting-History#Squashing-Commits -[pull request]: https://help.github.com/articles/creating-a-pull-request diff --git a/vendor/github.com/google/gofuzz/fuzz.go b/vendor/github.com/google/gofuzz/fuzz.go deleted file mode 100644 index 761520a8ce..0000000000 --- a/vendor/github.com/google/gofuzz/fuzz.go +++ /dev/null @@ -1,605 +0,0 @@ -/* -Copyright 2014 Google Inc. All rights reserved. - -Licensed under the Apache License, Version 2.0 (the "License"); -you may not use this file except in compliance with the License. -You may obtain a copy of the License at - - http://www.apache.org/licenses/LICENSE-2.0 - -Unless required by applicable law or agreed to in writing, software -distributed under the License is distributed on an "AS IS" BASIS, -WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -See the License for the specific language governing permissions and -limitations under the License. -*/ - -package fuzz - -import ( - "fmt" - "math/rand" - "reflect" - "regexp" - "time" - - "github.com/google/gofuzz/bytesource" - "strings" -) - -// fuzzFuncMap is a map from a type to a fuzzFunc that handles that type. -type fuzzFuncMap map[reflect.Type]reflect.Value - -// Fuzzer knows how to fill any object with random fields. -type Fuzzer struct { - fuzzFuncs fuzzFuncMap - defaultFuzzFuncs fuzzFuncMap - r *rand.Rand - nilChance float64 - minElements int - maxElements int - maxDepth int - skipFieldPatterns []*regexp.Regexp -} - -// New returns a new Fuzzer. Customize your Fuzzer further by calling Funcs, -// RandSource, NilChance, or NumElements in any order. -func New() *Fuzzer { - return NewWithSeed(time.Now().UnixNano()) -} - -func NewWithSeed(seed int64) *Fuzzer { - f := &Fuzzer{ - defaultFuzzFuncs: fuzzFuncMap{ - reflect.TypeOf(&time.Time{}): reflect.ValueOf(fuzzTime), - }, - - fuzzFuncs: fuzzFuncMap{}, - r: rand.New(rand.NewSource(seed)), - nilChance: .2, - minElements: 1, - maxElements: 10, - maxDepth: 100, - } - return f -} - -// NewFromGoFuzz is a helper function that enables using gofuzz (this -// project) with go-fuzz (https://github.com/dvyukov/go-fuzz) for continuous -// fuzzing. Essentially, it enables translating the fuzzing bytes from -// go-fuzz to any Go object using this library. -// -// This implementation promises a constant translation from a given slice of -// bytes to the fuzzed objects. This promise will remain over future -// versions of Go and of this library. -// -// Note: the returned Fuzzer should not be shared between multiple goroutines, -// as its deterministic output will no longer be available. -// -// Example: use go-fuzz to test the function `MyFunc(int)` in the package -// `mypackage`. Add the file: "mypacakge_fuzz.go" with the content: -// -// // +build gofuzz -// package mypacakge -// import fuzz "github.com/google/gofuzz" -// func Fuzz(data []byte) int { -// var i int -// fuzz.NewFromGoFuzz(data).Fuzz(&i) -// MyFunc(i) -// return 0 -// } -func NewFromGoFuzz(data []byte) *Fuzzer { - return New().RandSource(bytesource.New(data)) -} - -// Funcs adds each entry in fuzzFuncs as a custom fuzzing function. -// -// Each entry in fuzzFuncs must be a function taking two parameters. -// The first parameter must be a pointer or map. It is the variable that -// function will fill with random data. The second parameter must be a -// fuzz.Continue, which will provide a source of randomness and a way -// to automatically continue fuzzing smaller pieces of the first parameter. -// -// These functions are called sensibly, e.g., if you wanted custom string -// fuzzing, the function `func(s *string, c fuzz.Continue)` would get -// called and passed the address of strings. Maps and pointers will always -// be made/new'd for you, ignoring the NilChange option. For slices, it -// doesn't make much sense to pre-create them--Fuzzer doesn't know how -// long you want your slice--so take a pointer to a slice, and make it -// yourself. (If you don't want your map/pointer type pre-made, take a -// pointer to it, and make it yourself.) See the examples for a range of -// custom functions. -func (f *Fuzzer) Funcs(fuzzFuncs ...interface{}) *Fuzzer { - for i := range fuzzFuncs { - v := reflect.ValueOf(fuzzFuncs[i]) - if v.Kind() != reflect.Func { - panic("Need only funcs!") - } - t := v.Type() - if t.NumIn() != 2 || t.NumOut() != 0 { - panic("Need 2 in and 0 out params!") - } - argT := t.In(0) - switch argT.Kind() { - case reflect.Ptr, reflect.Map: - default: - panic("fuzzFunc must take pointer or map type") - } - if t.In(1) != reflect.TypeOf(Continue{}) { - panic("fuzzFunc's second parameter must be type fuzz.Continue") - } - f.fuzzFuncs[argT] = v - } - return f -} - -// RandSource causes f to get values from the given source of randomness. -// Use if you want deterministic fuzzing. -func (f *Fuzzer) RandSource(s rand.Source) *Fuzzer { - f.r = rand.New(s) - return f -} - -// NilChance sets the probability of creating a nil pointer, map, or slice to -// 'p'. 'p' should be between 0 (no nils) and 1 (all nils), inclusive. -func (f *Fuzzer) NilChance(p float64) *Fuzzer { - if p < 0 || p > 1 { - panic("p should be between 0 and 1, inclusive.") - } - f.nilChance = p - return f -} - -// NumElements sets the minimum and maximum number of elements that will be -// added to a non-nil map or slice. -func (f *Fuzzer) NumElements(atLeast, atMost int) *Fuzzer { - if atLeast > atMost { - panic("atLeast must be <= atMost") - } - if atLeast < 0 { - panic("atLeast must be >= 0") - } - f.minElements = atLeast - f.maxElements = atMost - return f -} - -func (f *Fuzzer) genElementCount() int { - if f.minElements == f.maxElements { - return f.minElements - } - return f.minElements + f.r.Intn(f.maxElements-f.minElements+1) -} - -func (f *Fuzzer) genShouldFill() bool { - return f.r.Float64() >= f.nilChance -} - -// MaxDepth sets the maximum number of recursive fuzz calls that will be made -// before stopping. This includes struct members, pointers, and map and slice -// elements. -func (f *Fuzzer) MaxDepth(d int) *Fuzzer { - f.maxDepth = d - return f -} - -// Skip fields which match the supplied pattern. Call this multiple times if needed -// This is useful to skip XXX_ fields generated by protobuf -func (f *Fuzzer) SkipFieldsWithPattern(pattern *regexp.Regexp) *Fuzzer { - f.skipFieldPatterns = append(f.skipFieldPatterns, pattern) - return f -} - -// Fuzz recursively fills all of obj's fields with something random. First -// this tries to find a custom fuzz function (see Funcs). If there is no -// custom function this tests whether the object implements fuzz.Interface and, -// if so, calls Fuzz on it to fuzz itself. If that fails, this will see if -// there is a default fuzz function provided by this package. If all of that -// fails, this will generate random values for all primitive fields and then -// recurse for all non-primitives. -// -// This is safe for cyclic or tree-like structs, up to a limit. Use the -// MaxDepth method to adjust how deep you need it to recurse. -// -// obj must be a pointer. Only exported (public) fields can be set (thanks, -// golang :/ ) Intended for tests, so will panic on bad input or unimplemented -// fields. -func (f *Fuzzer) Fuzz(obj interface{}) { - v := reflect.ValueOf(obj) - if v.Kind() != reflect.Ptr { - panic("needed ptr!") - } - v = v.Elem() - f.fuzzWithContext(v, 0) -} - -// FuzzNoCustom is just like Fuzz, except that any custom fuzz function for -// obj's type will not be called and obj will not be tested for fuzz.Interface -// conformance. This applies only to obj and not other instances of obj's -// type. -// Not safe for cyclic or tree-like structs! -// obj must be a pointer. Only exported (public) fields can be set (thanks, golang :/ ) -// Intended for tests, so will panic on bad input or unimplemented fields. -func (f *Fuzzer) FuzzNoCustom(obj interface{}) { - v := reflect.ValueOf(obj) - if v.Kind() != reflect.Ptr { - panic("needed ptr!") - } - v = v.Elem() - f.fuzzWithContext(v, flagNoCustomFuzz) -} - -const ( - // Do not try to find a custom fuzz function. Does not apply recursively. - flagNoCustomFuzz uint64 = 1 << iota -) - -func (f *Fuzzer) fuzzWithContext(v reflect.Value, flags uint64) { - fc := &fuzzerContext{fuzzer: f} - fc.doFuzz(v, flags) -} - -// fuzzerContext carries context about a single fuzzing run, which lets Fuzzer -// be thread-safe. -type fuzzerContext struct { - fuzzer *Fuzzer - curDepth int -} - -func (fc *fuzzerContext) doFuzz(v reflect.Value, flags uint64) { - if fc.curDepth >= fc.fuzzer.maxDepth { - return - } - fc.curDepth++ - defer func() { fc.curDepth-- }() - - if !v.CanSet() { - return - } - - if flags&flagNoCustomFuzz == 0 { - // Check for both pointer and non-pointer custom functions. - if v.CanAddr() && fc.tryCustom(v.Addr()) { - return - } - if fc.tryCustom(v) { - return - } - } - - if fn, ok := fillFuncMap[v.Kind()]; ok { - fn(v, fc.fuzzer.r) - return - } - - switch v.Kind() { - case reflect.Map: - if fc.fuzzer.genShouldFill() { - v.Set(reflect.MakeMap(v.Type())) - n := fc.fuzzer.genElementCount() - for i := 0; i < n; i++ { - key := reflect.New(v.Type().Key()).Elem() - fc.doFuzz(key, 0) - val := reflect.New(v.Type().Elem()).Elem() - fc.doFuzz(val, 0) - v.SetMapIndex(key, val) - } - return - } - v.Set(reflect.Zero(v.Type())) - case reflect.Ptr: - if fc.fuzzer.genShouldFill() { - v.Set(reflect.New(v.Type().Elem())) - fc.doFuzz(v.Elem(), 0) - return - } - v.Set(reflect.Zero(v.Type())) - case reflect.Slice: - if fc.fuzzer.genShouldFill() { - n := fc.fuzzer.genElementCount() - v.Set(reflect.MakeSlice(v.Type(), n, n)) - for i := 0; i < n; i++ { - fc.doFuzz(v.Index(i), 0) - } - return - } - v.Set(reflect.Zero(v.Type())) - case reflect.Array: - if fc.fuzzer.genShouldFill() { - n := v.Len() - for i := 0; i < n; i++ { - fc.doFuzz(v.Index(i), 0) - } - return - } - v.Set(reflect.Zero(v.Type())) - case reflect.Struct: - for i := 0; i < v.NumField(); i++ { - skipField := false - fieldName := v.Type().Field(i).Name - for _, pattern := range fc.fuzzer.skipFieldPatterns { - if pattern.MatchString(fieldName) { - skipField = true - break - } - } - if !skipField { - fc.doFuzz(v.Field(i), 0) - } - } - case reflect.Chan: - fallthrough - case reflect.Func: - fallthrough - case reflect.Interface: - fallthrough - default: - panic(fmt.Sprintf("Can't handle %#v", v.Interface())) - } -} - -// tryCustom searches for custom handlers, and returns true iff it finds a match -// and successfully randomizes v. -func (fc *fuzzerContext) tryCustom(v reflect.Value) bool { - // First: see if we have a fuzz function for it. - doCustom, ok := fc.fuzzer.fuzzFuncs[v.Type()] - if !ok { - // Second: see if it can fuzz itself. - if v.CanInterface() { - intf := v.Interface() - if fuzzable, ok := intf.(Interface); ok { - fuzzable.Fuzz(Continue{fc: fc, Rand: fc.fuzzer.r}) - return true - } - } - // Finally: see if there is a default fuzz function. - doCustom, ok = fc.fuzzer.defaultFuzzFuncs[v.Type()] - if !ok { - return false - } - } - - switch v.Kind() { - case reflect.Ptr: - if v.IsNil() { - if !v.CanSet() { - return false - } - v.Set(reflect.New(v.Type().Elem())) - } - case reflect.Map: - if v.IsNil() { - if !v.CanSet() { - return false - } - v.Set(reflect.MakeMap(v.Type())) - } - default: - return false - } - - doCustom.Call([]reflect.Value{v, reflect.ValueOf(Continue{ - fc: fc, - Rand: fc.fuzzer.r, - })}) - return true -} - -// Interface represents an object that knows how to fuzz itself. Any time we -// find a type that implements this interface we will delegate the act of -// fuzzing itself. -type Interface interface { - Fuzz(c Continue) -} - -// Continue can be passed to custom fuzzing functions to allow them to use -// the correct source of randomness and to continue fuzzing their members. -type Continue struct { - fc *fuzzerContext - - // For convenience, Continue implements rand.Rand via embedding. - // Use this for generating any randomness if you want your fuzzing - // to be repeatable for a given seed. - *rand.Rand -} - -// Fuzz continues fuzzing obj. obj must be a pointer. -func (c Continue) Fuzz(obj interface{}) { - v := reflect.ValueOf(obj) - if v.Kind() != reflect.Ptr { - panic("needed ptr!") - } - v = v.Elem() - c.fc.doFuzz(v, 0) -} - -// FuzzNoCustom continues fuzzing obj, except that any custom fuzz function for -// obj's type will not be called and obj will not be tested for fuzz.Interface -// conformance. This applies only to obj and not other instances of obj's -// type. -func (c Continue) FuzzNoCustom(obj interface{}) { - v := reflect.ValueOf(obj) - if v.Kind() != reflect.Ptr { - panic("needed ptr!") - } - v = v.Elem() - c.fc.doFuzz(v, flagNoCustomFuzz) -} - -// RandString makes a random string up to 20 characters long. The returned string -// may include a variety of (valid) UTF-8 encodings. -func (c Continue) RandString() string { - return randString(c.Rand) -} - -// RandUint64 makes random 64 bit numbers. -// Weirdly, rand doesn't have a function that gives you 64 random bits. -func (c Continue) RandUint64() uint64 { - return randUint64(c.Rand) -} - -// RandBool returns true or false randomly. -func (c Continue) RandBool() bool { - return randBool(c.Rand) -} - -func fuzzInt(v reflect.Value, r *rand.Rand) { - v.SetInt(int64(randUint64(r))) -} - -func fuzzUint(v reflect.Value, r *rand.Rand) { - v.SetUint(randUint64(r)) -} - -func fuzzTime(t *time.Time, c Continue) { - var sec, nsec int64 - // Allow for about 1000 years of random time values, which keeps things - // like JSON parsing reasonably happy. - sec = c.Rand.Int63n(1000 * 365 * 24 * 60 * 60) - c.Fuzz(&nsec) - *t = time.Unix(sec, nsec) -} - -var fillFuncMap = map[reflect.Kind]func(reflect.Value, *rand.Rand){ - reflect.Bool: func(v reflect.Value, r *rand.Rand) { - v.SetBool(randBool(r)) - }, - reflect.Int: fuzzInt, - reflect.Int8: fuzzInt, - reflect.Int16: fuzzInt, - reflect.Int32: fuzzInt, - reflect.Int64: fuzzInt, - reflect.Uint: fuzzUint, - reflect.Uint8: fuzzUint, - reflect.Uint16: fuzzUint, - reflect.Uint32: fuzzUint, - reflect.Uint64: fuzzUint, - reflect.Uintptr: fuzzUint, - reflect.Float32: func(v reflect.Value, r *rand.Rand) { - v.SetFloat(float64(r.Float32())) - }, - reflect.Float64: func(v reflect.Value, r *rand.Rand) { - v.SetFloat(r.Float64()) - }, - reflect.Complex64: func(v reflect.Value, r *rand.Rand) { - v.SetComplex(complex128(complex(r.Float32(), r.Float32()))) - }, - reflect.Complex128: func(v reflect.Value, r *rand.Rand) { - v.SetComplex(complex(r.Float64(), r.Float64())) - }, - reflect.String: func(v reflect.Value, r *rand.Rand) { - v.SetString(randString(r)) - }, - reflect.UnsafePointer: func(v reflect.Value, r *rand.Rand) { - panic("unimplemented") - }, -} - -// randBool returns true or false randomly. -func randBool(r *rand.Rand) bool { - return r.Int31()&(1<<30) == 0 -} - -type int63nPicker interface { - Int63n(int64) int64 -} - -// UnicodeRange describes a sequential range of unicode characters. -// Last must be numerically greater than First. -type UnicodeRange struct { - First, Last rune -} - -// UnicodeRanges describes an arbitrary number of sequential ranges of unicode characters. -// To be useful, each range must have at least one character (First <= Last) and -// there must be at least one range. -type UnicodeRanges []UnicodeRange - -// choose returns a random unicode character from the given range, using the -// given randomness source. -func (ur UnicodeRange) choose(r int63nPicker) rune { - count := int64(ur.Last - ur.First + 1) - return ur.First + rune(r.Int63n(count)) -} - -// CustomStringFuzzFunc constructs a FuzzFunc which produces random strings. -// Each character is selected from the range ur. If there are no characters -// in the range (cr.Last < cr.First), this will panic. -func (ur UnicodeRange) CustomStringFuzzFunc() func(s *string, c Continue) { - ur.check() - return func(s *string, c Continue) { - *s = ur.randString(c.Rand) - } -} - -// check is a function that used to check whether the first of ur(UnicodeRange) -// is greater than the last one. -func (ur UnicodeRange) check() { - if ur.Last < ur.First { - panic("The last encoding must be greater than the first one.") - } -} - -// randString of UnicodeRange makes a random string up to 20 characters long. -// Each character is selected form ur(UnicodeRange). -func (ur UnicodeRange) randString(r *rand.Rand) string { - n := r.Intn(20) - sb := strings.Builder{} - sb.Grow(n) - for i := 0; i < n; i++ { - sb.WriteRune(ur.choose(r)) - } - return sb.String() -} - -// defaultUnicodeRanges sets a default unicode range when user do not set -// CustomStringFuzzFunc() but wants fuzz string. -var defaultUnicodeRanges = UnicodeRanges{ - {' ', '~'}, // ASCII characters - {'\u00a0', '\u02af'}, // Multi-byte encoded characters - {'\u4e00', '\u9fff'}, // Common CJK (even longer encodings) -} - -// CustomStringFuzzFunc constructs a FuzzFunc which produces random strings. -// Each character is selected from one of the ranges of ur(UnicodeRanges). -// Each range has an equal probability of being chosen. If there are no ranges, -// or a selected range has no characters (.Last < .First), this will panic. -// Do not modify any of the ranges in ur after calling this function. -func (ur UnicodeRanges) CustomStringFuzzFunc() func(s *string, c Continue) { - // Check unicode ranges slice is empty. - if len(ur) == 0 { - panic("UnicodeRanges is empty.") - } - // if not empty, each range should be checked. - for i := range ur { - ur[i].check() - } - return func(s *string, c Continue) { - *s = ur.randString(c.Rand) - } -} - -// randString of UnicodeRanges makes a random string up to 20 characters long. -// Each character is selected form one of the ranges of ur(UnicodeRanges), -// and each range has an equal probability of being chosen. -func (ur UnicodeRanges) randString(r *rand.Rand) string { - n := r.Intn(20) - sb := strings.Builder{} - sb.Grow(n) - for i := 0; i < n; i++ { - sb.WriteRune(ur[r.Intn(len(ur))].choose(r)) - } - return sb.String() -} - -// randString makes a random string up to 20 characters long. The returned string -// may include a variety of (valid) UTF-8 encodings. -func randString(r *rand.Rand) string { - return defaultUnicodeRanges.randString(r) -} - -// randUint64 makes random 64 bit numbers. -// Weirdly, rand doesn't have a function that gives you 64 random bits. -func randUint64(r *rand.Rand) uint64 { - return uint64(r.Uint32())<<32 | uint64(r.Uint32()) -} diff --git a/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/errors.go b/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/errors.go index 41cd4f5030..bbe7decf09 100644 --- a/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/errors.go +++ b/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/errors.go @@ -148,22 +148,20 @@ func DefaultHTTPErrorHandler(ctx context.Context, mux *ServeMux, marshaler Marsh } md, ok := ServerMetadataFromContext(ctx) - if !ok { - grpclog.Error("Failed to extract ServerMetadata from context") - } - - handleForwardResponseServerMetadata(w, mux, md) - - // RFC 7230 https://tools.ietf.org/html/rfc7230#section-4.1.2 - // Unless the request includes a TE header field indicating "trailers" - // is acceptable, as described in Section 4.3, a server SHOULD NOT - // generate trailer fields that it believes are necessary for the user - // agent to receive. - doForwardTrailers := requestAcceptsTrailers(r) - - if doForwardTrailers { - handleForwardResponseTrailerHeader(w, mux, md) - w.Header().Set("Transfer-Encoding", "chunked") + if ok { + handleForwardResponseServerMetadata(w, mux, md) + + // RFC 7230 https://tools.ietf.org/html/rfc7230#section-4.1.2 + // Unless the request includes a TE header field indicating "trailers" + // is acceptable, as described in Section 4.3, a server SHOULD NOT + // generate trailer fields that it believes are necessary for the user + // agent to receive. + doForwardTrailers := requestAcceptsTrailers(r) + + if doForwardTrailers { + handleForwardResponseTrailerHeader(w, mux, md) + w.Header().Set("Transfer-Encoding", "chunked") + } } st := HTTPStatusFromCode(s.Code()) @@ -176,7 +174,7 @@ func DefaultHTTPErrorHandler(ctx context.Context, mux *ServeMux, marshaler Marsh grpclog.Errorf("Failed to write response: %v", err) } - if doForwardTrailers { + if ok && requestAcceptsTrailers(r) { handleForwardResponseTrailer(w, mux, md) } } diff --git a/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go b/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go index f0727cf7c0..2f0b9e9e0f 100644 --- a/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go +++ b/vendor/github.com/grpc-ecosystem/grpc-gateway/v2/runtime/handler.go @@ -153,12 +153,10 @@ type responseBody interface { // ForwardResponseMessage forwards the message "resp" from gRPC server to REST client. func ForwardResponseMessage(ctx context.Context, mux *ServeMux, marshaler Marshaler, w http.ResponseWriter, req *http.Request, resp proto.Message, opts ...func(context.Context, http.ResponseWriter, proto.Message) error) { md, ok := ServerMetadataFromContext(ctx) - if !ok { - grpclog.Error("Failed to extract ServerMetadata from context") + if ok { + handleForwardResponseServerMetadata(w, mux, md) } - handleForwardResponseServerMetadata(w, mux, md) - // RFC 7230 https://tools.ietf.org/html/rfc7230#section-4.1.2 // Unless the request includes a TE header field indicating "trailers" // is acceptable, as described in Section 4.3, a server SHOULD NOT @@ -166,7 +164,7 @@ func ForwardResponseMessage(ctx context.Context, mux *ServeMux, marshaler Marsha // agent to receive. doForwardTrailers := requestAcceptsTrailers(req) - if doForwardTrailers { + if ok && doForwardTrailers { handleForwardResponseTrailerHeader(w, mux, md) w.Header().Set("Transfer-Encoding", "chunked") } @@ -204,7 +202,7 @@ func ForwardResponseMessage(ctx context.Context, mux *ServeMux, marshaler Marsha grpclog.Errorf("Failed to write response: %v", err) } - if doForwardTrailers { + if ok && doForwardTrailers { handleForwardResponseTrailer(w, mux, md) } } diff --git a/vendor/github.com/klauspost/compress/.gitattributes b/vendor/github.com/klauspost/compress/.gitattributes deleted file mode 100644 index 402433593c..0000000000 --- a/vendor/github.com/klauspost/compress/.gitattributes +++ /dev/null @@ -1,2 +0,0 @@ -* -text -*.bin -text -diff diff --git a/vendor/github.com/klauspost/compress/.goreleaser.yml b/vendor/github.com/klauspost/compress/.goreleaser.yml deleted file mode 100644 index 4528059ca6..0000000000 --- a/vendor/github.com/klauspost/compress/.goreleaser.yml +++ /dev/null @@ -1,123 +0,0 @@ -version: 2 - -before: - hooks: - - ./gen.sh - -builds: - - - id: "s2c" - binary: s2c - main: ./s2/cmd/s2c/main.go - flags: - - -trimpath - env: - - CGO_ENABLED=0 - goos: - - aix - - linux - - freebsd - - netbsd - - windows - - darwin - goarch: - - 386 - - amd64 - - arm - - arm64 - - ppc64 - - ppc64le - - mips64 - - mips64le - goarm: - - 7 - - - id: "s2d" - binary: s2d - main: ./s2/cmd/s2d/main.go - flags: - - -trimpath - env: - - CGO_ENABLED=0 - goos: - - aix - - linux - - freebsd - - netbsd - - windows - - darwin - goarch: - - 386 - - amd64 - - arm - - arm64 - - ppc64 - - ppc64le - - mips64 - - mips64le - goarm: - - 7 - - - id: "s2sx" - binary: s2sx - main: ./s2/cmd/_s2sx/main.go - flags: - - -modfile=s2sx.mod - - -trimpath - env: - - CGO_ENABLED=0 - goos: - - aix - - linux - - freebsd - - netbsd - - windows - - darwin - goarch: - - 386 - - amd64 - - arm - - arm64 - - ppc64 - - ppc64le - - mips64 - - mips64le - goarm: - - 7 - -archives: - - - id: s2-binaries - name_template: "s2-{{ .Os }}_{{ .Arch }}{{ if .Arm }}v{{ .Arm }}{{ end }}" - format_overrides: - - goos: windows - format: zip - files: - - unpack/* - - s2/LICENSE - - s2/README.md -checksum: - name_template: 'checksums.txt' -snapshot: - version_template: "{{ .Tag }}-next" -changelog: - sort: asc - filters: - exclude: - - '^doc:' - - '^docs:' - - '^test:' - - '^tests:' - - '^Update\sREADME.md' - -nfpms: - - - file_name_template: "s2_package__{{ .Os }}_{{ .Arch }}{{ if .Arm }}v{{ .Arm }}{{ end }}" - vendor: Klaus Post - homepage: https://github.com/klauspost/compress - maintainer: Klaus Post - description: S2 Compression Tool - license: BSD 3-Clause - formats: - - deb - - rpm diff --git a/vendor/github.com/klauspost/compress/README.md b/vendor/github.com/klauspost/compress/README.md deleted file mode 100644 index de264c85a5..0000000000 --- a/vendor/github.com/klauspost/compress/README.md +++ /dev/null @@ -1,721 +0,0 @@ -# compress - -This package provides various compression algorithms. - -* [zstandard](https://github.com/klauspost/compress/tree/master/zstd#zstd) compression and decompression in pure Go. -* [S2](https://github.com/klauspost/compress/tree/master/s2#s2-compression) is a high performance replacement for Snappy. -* Optimized [deflate](https://godoc.org/github.com/klauspost/compress/flate) packages which can be used as a dropin replacement for [gzip](https://godoc.org/github.com/klauspost/compress/gzip), [zip](https://godoc.org/github.com/klauspost/compress/zip) and [zlib](https://godoc.org/github.com/klauspost/compress/zlib). -* [snappy](https://github.com/klauspost/compress/tree/master/snappy) is a drop-in replacement for `github.com/golang/snappy` offering better compression and concurrent streams. -* [huff0](https://github.com/klauspost/compress/tree/master/huff0) and [FSE](https://github.com/klauspost/compress/tree/master/fse) implementations for raw entropy encoding. -* [gzhttp](https://github.com/klauspost/compress/tree/master/gzhttp) Provides client and server wrappers for handling gzipped requests efficiently. -* [pgzip](https://github.com/klauspost/pgzip) is a separate package that provides a very fast parallel gzip implementation. - -[![Go Reference](https://pkg.go.dev/badge/klauspost/compress.svg)](https://pkg.go.dev/github.com/klauspost/compress?tab=subdirectories) -[![Go](https://github.com/klauspost/compress/actions/workflows/go.yml/badge.svg)](https://github.com/klauspost/compress/actions/workflows/go.yml) -[![Sourcegraph Badge](https://sourcegraph.com/github.com/klauspost/compress/-/badge.svg)](https://sourcegraph.com/github.com/klauspost/compress?badge) - -# changelog - -* Sep 23rd, 2024 - [1.17.10](https://github.com/klauspost/compress/releases/tag/v1.17.10) - * gzhttp: Add TransportAlwaysDecompress option. https://github.com/klauspost/compress/pull/978 - * gzhttp: Add supported decompress request body by @mirecl in https://github.com/klauspost/compress/pull/1002 - * s2: Add EncodeBuffer buffer recycling callback https://github.com/klauspost/compress/pull/982 - * zstd: Improve memory usage on small streaming encodes https://github.com/klauspost/compress/pull/1007 - * flate: read data written with partial flush by @vajexal in https://github.com/klauspost/compress/pull/996 - -* Jun 12th, 2024 - [1.17.9](https://github.com/klauspost/compress/releases/tag/v1.17.9) - * s2: Reduce ReadFrom temporary allocations https://github.com/klauspost/compress/pull/949 - * flate, zstd: Shave some bytes off amd64 matchLen by @greatroar in https://github.com/klauspost/compress/pull/963 - * Upgrade zip/zlib to 1.22.4 upstream https://github.com/klauspost/compress/pull/970 https://github.com/klauspost/compress/pull/971 - * zstd: BuildDict fails with RLE table https://github.com/klauspost/compress/pull/951 - -* Apr 9th, 2024 - [1.17.8](https://github.com/klauspost/compress/releases/tag/v1.17.8) - * zstd: Reject blocks where reserved values are not 0 https://github.com/klauspost/compress/pull/885 - * zstd: Add RLE detection+encoding https://github.com/klauspost/compress/pull/938 - -* Feb 21st, 2024 - [1.17.7](https://github.com/klauspost/compress/releases/tag/v1.17.7) - * s2: Add AsyncFlush method: Complete the block without flushing by @Jille in https://github.com/klauspost/compress/pull/927 - * s2: Fix literal+repeat exceeds dst crash https://github.com/klauspost/compress/pull/930 - -* Feb 5th, 2024 - [1.17.6](https://github.com/klauspost/compress/releases/tag/v1.17.6) - * zstd: Fix incorrect repeat coding in best mode https://github.com/klauspost/compress/pull/923 - * s2: Fix DecodeConcurrent deadlock on errors https://github.com/klauspost/compress/pull/925 - -* Jan 26th, 2024 - [v1.17.5](https://github.com/klauspost/compress/releases/tag/v1.17.5) - * flate: Fix reset with dictionary on custom window encodes https://github.com/klauspost/compress/pull/912 - * zstd: Add Frame header encoding and stripping https://github.com/klauspost/compress/pull/908 - * zstd: Limit better/best default window to 8MB https://github.com/klauspost/compress/pull/913 - * zstd: Speed improvements by @greatroar in https://github.com/klauspost/compress/pull/896 https://github.com/klauspost/compress/pull/910 - * s2: Fix callbacks for skippable blocks and disallow 0xfe (Padding) by @Jille in https://github.com/klauspost/compress/pull/916 https://github.com/klauspost/compress/pull/917 -https://github.com/klauspost/compress/pull/919 https://github.com/klauspost/compress/pull/918 - -* Dec 1st, 2023 - [v1.17.4](https://github.com/klauspost/compress/releases/tag/v1.17.4) - * huff0: Speed up symbol counting by @greatroar in https://github.com/klauspost/compress/pull/887 - * huff0: Remove byteReader by @greatroar in https://github.com/klauspost/compress/pull/886 - * gzhttp: Allow overriding decompression on transport https://github.com/klauspost/compress/pull/892 - * gzhttp: Clamp compression level https://github.com/klauspost/compress/pull/890 - * gzip: Error out if reserved bits are set https://github.com/klauspost/compress/pull/891 - -* Nov 15th, 2023 - [v1.17.3](https://github.com/klauspost/compress/releases/tag/v1.17.3) - * fse: Fix max header size https://github.com/klauspost/compress/pull/881 - * zstd: Improve better/best compression https://github.com/klauspost/compress/pull/877 - * gzhttp: Fix missing content type on Close https://github.com/klauspost/compress/pull/883 - -* Oct 22nd, 2023 - [v1.17.2](https://github.com/klauspost/compress/releases/tag/v1.17.2) - * zstd: Fix rare *CORRUPTION* output in "best" mode. See https://github.com/klauspost/compress/pull/876 - -* Oct 14th, 2023 - [v1.17.1](https://github.com/klauspost/compress/releases/tag/v1.17.1) - * s2: Fix S2 "best" dictionary wrong encoding by @klauspost in https://github.com/klauspost/compress/pull/871 - * flate: Reduce allocations in decompressor and minor code improvements by @fakefloordiv in https://github.com/klauspost/compress/pull/869 - * s2: Fix EstimateBlockSize on 6&7 length input by @klauspost in https://github.com/klauspost/compress/pull/867 - -* Sept 19th, 2023 - [v1.17.0](https://github.com/klauspost/compress/releases/tag/v1.17.0) - * Add experimental dictionary builder https://github.com/klauspost/compress/pull/853 - * Add xerial snappy read/writer https://github.com/klauspost/compress/pull/838 - * flate: Add limited window compression https://github.com/klauspost/compress/pull/843 - * s2: Do 2 overlapping match checks https://github.com/klauspost/compress/pull/839 - * flate: Add amd64 assembly matchlen https://github.com/klauspost/compress/pull/837 - * gzip: Copy bufio.Reader on Reset by @thatguystone in https://github.com/klauspost/compress/pull/860 - -
- See changes to v1.16.x - - -* July 1st, 2023 - [v1.16.7](https://github.com/klauspost/compress/releases/tag/v1.16.7) - * zstd: Fix default level first dictionary encode https://github.com/klauspost/compress/pull/829 - * s2: add GetBufferCapacity() method by @GiedriusS in https://github.com/klauspost/compress/pull/832 - -* June 13, 2023 - [v1.16.6](https://github.com/klauspost/compress/releases/tag/v1.16.6) - * zstd: correctly ignore WithEncoderPadding(1) by @ianlancetaylor in https://github.com/klauspost/compress/pull/806 - * zstd: Add amd64 match length assembly https://github.com/klauspost/compress/pull/824 - * gzhttp: Handle informational headers by @rtribotte in https://github.com/klauspost/compress/pull/815 - * s2: Improve Better compression slightly https://github.com/klauspost/compress/pull/663 - -* Apr 16, 2023 - [v1.16.5](https://github.com/klauspost/compress/releases/tag/v1.16.5) - * zstd: readByte needs to use io.ReadFull by @jnoxon in https://github.com/klauspost/compress/pull/802 - * gzip: Fix WriterTo after initial read https://github.com/klauspost/compress/pull/804 - -* Apr 5, 2023 - [v1.16.4](https://github.com/klauspost/compress/releases/tag/v1.16.4) - * zstd: Improve zstd best efficiency by @greatroar and @klauspost in https://github.com/klauspost/compress/pull/784 - * zstd: Respect WithAllLitEntropyCompression https://github.com/klauspost/compress/pull/792 - * zstd: Fix amd64 not always detecting corrupt data https://github.com/klauspost/compress/pull/785 - * zstd: Various minor improvements by @greatroar in https://github.com/klauspost/compress/pull/788 https://github.com/klauspost/compress/pull/794 https://github.com/klauspost/compress/pull/795 - * s2: Fix huge block overflow https://github.com/klauspost/compress/pull/779 - * s2: Allow CustomEncoder fallback https://github.com/klauspost/compress/pull/780 - * gzhttp: Support ResponseWriter Unwrap() in gzhttp handler by @jgimenez in https://github.com/klauspost/compress/pull/799 - -* Mar 13, 2023 - [v1.16.1](https://github.com/klauspost/compress/releases/tag/v1.16.1) - * zstd: Speed up + improve best encoder by @greatroar in https://github.com/klauspost/compress/pull/776 - * gzhttp: Add optional [BREACH mitigation](https://github.com/klauspost/compress/tree/master/gzhttp#breach-mitigation). https://github.com/klauspost/compress/pull/762 https://github.com/klauspost/compress/pull/768 https://github.com/klauspost/compress/pull/769 https://github.com/klauspost/compress/pull/770 https://github.com/klauspost/compress/pull/767 - * s2: Add Intel LZ4s converter https://github.com/klauspost/compress/pull/766 - * zstd: Minor bug fixes https://github.com/klauspost/compress/pull/771 https://github.com/klauspost/compress/pull/772 https://github.com/klauspost/compress/pull/773 - * huff0: Speed up compress1xDo by @greatroar in https://github.com/klauspost/compress/pull/774 - -* Feb 26, 2023 - [v1.16.0](https://github.com/klauspost/compress/releases/tag/v1.16.0) - * s2: Add [Dictionary](https://github.com/klauspost/compress/tree/master/s2#dictionaries) support. https://github.com/klauspost/compress/pull/685 - * s2: Add Compression Size Estimate. https://github.com/klauspost/compress/pull/752 - * s2: Add support for custom stream encoder. https://github.com/klauspost/compress/pull/755 - * s2: Add LZ4 block converter. https://github.com/klauspost/compress/pull/748 - * s2: Support io.ReaderAt in ReadSeeker. https://github.com/klauspost/compress/pull/747 - * s2c/s2sx: Use concurrent decoding. https://github.com/klauspost/compress/pull/746 -
- -
- See changes to v1.15.x - -* Jan 21st, 2023 (v1.15.15) - * deflate: Improve level 7-9 by @klauspost in https://github.com/klauspost/compress/pull/739 - * zstd: Add delta encoding support by @greatroar in https://github.com/klauspost/compress/pull/728 - * zstd: Various speed improvements by @greatroar https://github.com/klauspost/compress/pull/741 https://github.com/klauspost/compress/pull/734 https://github.com/klauspost/compress/pull/736 https://github.com/klauspost/compress/pull/744 https://github.com/klauspost/compress/pull/743 https://github.com/klauspost/compress/pull/745 - * gzhttp: Add SuffixETag() and DropETag() options to prevent ETag collisions on compressed responses by @willbicks in https://github.com/klauspost/compress/pull/740 - -* Jan 3rd, 2023 (v1.15.14) - - * flate: Improve speed in big stateless blocks https://github.com/klauspost/compress/pull/718 - * zstd: Minor speed tweaks by @greatroar in https://github.com/klauspost/compress/pull/716 https://github.com/klauspost/compress/pull/720 - * export NoGzipResponseWriter for custom ResponseWriter wrappers by @harshavardhana in https://github.com/klauspost/compress/pull/722 - * s2: Add example for indexing and existing stream https://github.com/klauspost/compress/pull/723 - -* Dec 11, 2022 (v1.15.13) - * zstd: Add [MaxEncodedSize](https://pkg.go.dev/github.com/klauspost/compress@v1.15.13/zstd#Encoder.MaxEncodedSize) to encoder https://github.com/klauspost/compress/pull/691 - * zstd: Various tweaks and improvements https://github.com/klauspost/compress/pull/693 https://github.com/klauspost/compress/pull/695 https://github.com/klauspost/compress/pull/696 https://github.com/klauspost/compress/pull/701 https://github.com/klauspost/compress/pull/702 https://github.com/klauspost/compress/pull/703 https://github.com/klauspost/compress/pull/704 https://github.com/klauspost/compress/pull/705 https://github.com/klauspost/compress/pull/706 https://github.com/klauspost/compress/pull/707 https://github.com/klauspost/compress/pull/708 - -* Oct 26, 2022 (v1.15.12) - - * zstd: Tweak decoder allocs. https://github.com/klauspost/compress/pull/680 - * gzhttp: Always delete `HeaderNoCompression` https://github.com/klauspost/compress/pull/683 - -* Sept 26, 2022 (v1.15.11) - - * flate: Improve level 1-3 compression https://github.com/klauspost/compress/pull/678 - * zstd: Improve "best" compression by @nightwolfz in https://github.com/klauspost/compress/pull/677 - * zstd: Fix+reduce decompression allocations https://github.com/klauspost/compress/pull/668 - * zstd: Fix non-effective noescape tag https://github.com/klauspost/compress/pull/667 - -* Sept 16, 2022 (v1.15.10) - - * zstd: Add [WithDecodeAllCapLimit](https://pkg.go.dev/github.com/klauspost/compress@v1.15.10/zstd#WithDecodeAllCapLimit) https://github.com/klauspost/compress/pull/649 - * Add Go 1.19 - deprecate Go 1.16 https://github.com/klauspost/compress/pull/651 - * flate: Improve level 5+6 compression https://github.com/klauspost/compress/pull/656 - * zstd: Improve "better" compression https://github.com/klauspost/compress/pull/657 - * s2: Improve "best" compression https://github.com/klauspost/compress/pull/658 - * s2: Improve "better" compression. https://github.com/klauspost/compress/pull/635 - * s2: Slightly faster non-assembly decompression https://github.com/klauspost/compress/pull/646 - * Use arrays for constant size copies https://github.com/klauspost/compress/pull/659 - -* July 21, 2022 (v1.15.9) - - * zstd: Fix decoder crash on amd64 (no BMI) on invalid input https://github.com/klauspost/compress/pull/645 - * zstd: Disable decoder extended memory copies (amd64) due to possible crashes https://github.com/klauspost/compress/pull/644 - * zstd: Allow single segments up to "max decoded size" by @klauspost in https://github.com/klauspost/compress/pull/643 - -* July 13, 2022 (v1.15.8) - - * gzip: fix stack exhaustion bug in Reader.Read https://github.com/klauspost/compress/pull/641 - * s2: Add Index header trim/restore https://github.com/klauspost/compress/pull/638 - * zstd: Optimize seqdeq amd64 asm by @greatroar in https://github.com/klauspost/compress/pull/636 - * zstd: Improve decoder memcopy https://github.com/klauspost/compress/pull/637 - * huff0: Pass a single bitReader pointer to asm by @greatroar in https://github.com/klauspost/compress/pull/634 - * zstd: Branchless getBits for amd64 w/o BMI2 by @greatroar in https://github.com/klauspost/compress/pull/640 - * gzhttp: Remove header before writing https://github.com/klauspost/compress/pull/639 - -* June 29, 2022 (v1.15.7) - - * s2: Fix absolute forward seeks https://github.com/klauspost/compress/pull/633 - * zip: Merge upstream https://github.com/klauspost/compress/pull/631 - * zip: Re-add zip64 fix https://github.com/klauspost/compress/pull/624 - * zstd: translate fseDecoder.buildDtable into asm by @WojciechMula in https://github.com/klauspost/compress/pull/598 - * flate: Faster histograms https://github.com/klauspost/compress/pull/620 - * deflate: Use compound hcode https://github.com/klauspost/compress/pull/622 - -* June 3, 2022 (v1.15.6) - * s2: Improve coding for long, close matches https://github.com/klauspost/compress/pull/613 - * s2c: Add Snappy/S2 stream recompression https://github.com/klauspost/compress/pull/611 - * zstd: Always use configured block size https://github.com/klauspost/compress/pull/605 - * zstd: Fix incorrect hash table placement for dict encoding in default https://github.com/klauspost/compress/pull/606 - * zstd: Apply default config to ZipDecompressor without options https://github.com/klauspost/compress/pull/608 - * gzhttp: Exclude more common archive formats https://github.com/klauspost/compress/pull/612 - * s2: Add ReaderIgnoreCRC https://github.com/klauspost/compress/pull/609 - * s2: Remove sanity load on index creation https://github.com/klauspost/compress/pull/607 - * snappy: Use dedicated function for scoring https://github.com/klauspost/compress/pull/614 - * s2c+s2d: Use official snappy framed extension https://github.com/klauspost/compress/pull/610 - -* May 25, 2022 (v1.15.5) - * s2: Add concurrent stream decompression https://github.com/klauspost/compress/pull/602 - * s2: Fix final emit oob read crash on amd64 https://github.com/klauspost/compress/pull/601 - * huff0: asm implementation of Decompress1X by @WojciechMula https://github.com/klauspost/compress/pull/596 - * zstd: Use 1 less goroutine for stream decoding https://github.com/klauspost/compress/pull/588 - * zstd: Copy literal in 16 byte blocks when possible https://github.com/klauspost/compress/pull/592 - * zstd: Speed up when WithDecoderLowmem(false) https://github.com/klauspost/compress/pull/599 - * zstd: faster next state update in BMI2 version of decode by @WojciechMula in https://github.com/klauspost/compress/pull/593 - * huff0: Do not check max size when reading table. https://github.com/klauspost/compress/pull/586 - * flate: Inplace hashing for level 7-9 by @klauspost in https://github.com/klauspost/compress/pull/590 - - -* May 11, 2022 (v1.15.4) - * huff0: decompress directly into output by @WojciechMula in [#577](https://github.com/klauspost/compress/pull/577) - * inflate: Keep dict on stack [#581](https://github.com/klauspost/compress/pull/581) - * zstd: Faster decoding memcopy in asm [#583](https://github.com/klauspost/compress/pull/583) - * zstd: Fix ignored crc [#580](https://github.com/klauspost/compress/pull/580) - -* May 5, 2022 (v1.15.3) - * zstd: Allow to ignore checksum checking by @WojciechMula [#572](https://github.com/klauspost/compress/pull/572) - * s2: Fix incorrect seek for io.SeekEnd in [#575](https://github.com/klauspost/compress/pull/575) - -* Apr 26, 2022 (v1.15.2) - * zstd: Add x86-64 assembly for decompression on streams and blocks. Contributed by [@WojciechMula](https://github.com/WojciechMula). Typically 2x faster. [#528](https://github.com/klauspost/compress/pull/528) [#531](https://github.com/klauspost/compress/pull/531) [#545](https://github.com/klauspost/compress/pull/545) [#537](https://github.com/klauspost/compress/pull/537) - * zstd: Add options to ZipDecompressor and fixes [#539](https://github.com/klauspost/compress/pull/539) - * s2: Use sorted search for index [#555](https://github.com/klauspost/compress/pull/555) - * Minimum version is Go 1.16, added CI test on 1.18. - -* Mar 11, 2022 (v1.15.1) - * huff0: Add x86 assembly of Decode4X by @WojciechMula in [#512](https://github.com/klauspost/compress/pull/512) - * zstd: Reuse zip decoders in [#514](https://github.com/klauspost/compress/pull/514) - * zstd: Detect extra block data and report as corrupted in [#520](https://github.com/klauspost/compress/pull/520) - * zstd: Handle zero sized frame content size stricter in [#521](https://github.com/klauspost/compress/pull/521) - * zstd: Add stricter block size checks in [#523](https://github.com/klauspost/compress/pull/523) - -* Mar 3, 2022 (v1.15.0) - * zstd: Refactor decoder by @klauspost in [#498](https://github.com/klauspost/compress/pull/498) - * zstd: Add stream encoding without goroutines by @klauspost in [#505](https://github.com/klauspost/compress/pull/505) - * huff0: Prevent single blocks exceeding 16 bits by @klauspost in[#507](https://github.com/klauspost/compress/pull/507) - * flate: Inline literal emission by @klauspost in [#509](https://github.com/klauspost/compress/pull/509) - * gzhttp: Add zstd to transport by @klauspost in [#400](https://github.com/klauspost/compress/pull/400) - * gzhttp: Make content-type optional by @klauspost in [#510](https://github.com/klauspost/compress/pull/510) - -Both compression and decompression now supports "synchronous" stream operations. This means that whenever "concurrency" is set to 1, they will operate without spawning goroutines. - -Stream decompression is now faster on asynchronous, since the goroutine allocation much more effectively splits the workload. On typical streams this will typically use 2 cores fully for decompression. When a stream has finished decoding no goroutines will be left over, so decoders can now safely be pooled and still be garbage collected. - -While the release has been extensively tested, it is recommended to testing when upgrading. - -
- -
- See changes to v1.14.x - -* Feb 22, 2022 (v1.14.4) - * flate: Fix rare huffman only (-2) corruption. [#503](https://github.com/klauspost/compress/pull/503) - * zip: Update deprecated CreateHeaderRaw to correctly call CreateRaw by @saracen in [#502](https://github.com/klauspost/compress/pull/502) - * zip: don't read data descriptor early by @saracen in [#501](https://github.com/klauspost/compress/pull/501) #501 - * huff0: Use static decompression buffer up to 30% faster by @klauspost in [#499](https://github.com/klauspost/compress/pull/499) [#500](https://github.com/klauspost/compress/pull/500) - -* Feb 17, 2022 (v1.14.3) - * flate: Improve fastest levels compression speed ~10% more throughput. [#482](https://github.com/klauspost/compress/pull/482) [#489](https://github.com/klauspost/compress/pull/489) [#490](https://github.com/klauspost/compress/pull/490) [#491](https://github.com/klauspost/compress/pull/491) [#494](https://github.com/klauspost/compress/pull/494) [#478](https://github.com/klauspost/compress/pull/478) - * flate: Faster decompression speed, ~5-10%. [#483](https://github.com/klauspost/compress/pull/483) - * s2: Faster compression with Go v1.18 and amd64 microarch level 3+. [#484](https://github.com/klauspost/compress/pull/484) [#486](https://github.com/klauspost/compress/pull/486) - -* Jan 25, 2022 (v1.14.2) - * zstd: improve header decoder by @dsnet [#476](https://github.com/klauspost/compress/pull/476) - * zstd: Add bigger default blocks [#469](https://github.com/klauspost/compress/pull/469) - * zstd: Remove unused decompression buffer [#470](https://github.com/klauspost/compress/pull/470) - * zstd: Fix logically dead code by @ningmingxiao [#472](https://github.com/klauspost/compress/pull/472) - * flate: Improve level 7-9 [#471](https://github.com/klauspost/compress/pull/471) [#473](https://github.com/klauspost/compress/pull/473) - * zstd: Add noasm tag for xxhash [#475](https://github.com/klauspost/compress/pull/475) - -* Jan 11, 2022 (v1.14.1) - * s2: Add stream index in [#462](https://github.com/klauspost/compress/pull/462) - * flate: Speed and efficiency improvements in [#439](https://github.com/klauspost/compress/pull/439) [#461](https://github.com/klauspost/compress/pull/461) [#455](https://github.com/klauspost/compress/pull/455) [#452](https://github.com/klauspost/compress/pull/452) [#458](https://github.com/klauspost/compress/pull/458) - * zstd: Performance improvement in [#420]( https://github.com/klauspost/compress/pull/420) [#456](https://github.com/klauspost/compress/pull/456) [#437](https://github.com/klauspost/compress/pull/437) [#467](https://github.com/klauspost/compress/pull/467) [#468](https://github.com/klauspost/compress/pull/468) - * zstd: add arm64 xxhash assembly in [#464](https://github.com/klauspost/compress/pull/464) - * Add garbled for binaries for s2 in [#445](https://github.com/klauspost/compress/pull/445) -
- -
- See changes to v1.13.x - -* Aug 30, 2021 (v1.13.5) - * gz/zlib/flate: Alias stdlib errors [#425](https://github.com/klauspost/compress/pull/425) - * s2: Add block support to commandline tools [#413](https://github.com/klauspost/compress/pull/413) - * zstd: pooledZipWriter should return Writers to the same pool [#426](https://github.com/klauspost/compress/pull/426) - * Removed golang/snappy as external dependency for tests [#421](https://github.com/klauspost/compress/pull/421) - -* Aug 12, 2021 (v1.13.4) - * Add [snappy replacement package](https://github.com/klauspost/compress/tree/master/snappy). - * zstd: Fix incorrect encoding in "best" mode [#415](https://github.com/klauspost/compress/pull/415) - -* Aug 3, 2021 (v1.13.3) - * zstd: Improve Best compression [#404](https://github.com/klauspost/compress/pull/404) - * zstd: Fix WriteTo error forwarding [#411](https://github.com/klauspost/compress/pull/411) - * gzhttp: Return http.HandlerFunc instead of http.Handler. Unlikely breaking change. [#406](https://github.com/klauspost/compress/pull/406) - * s2sx: Fix max size error [#399](https://github.com/klauspost/compress/pull/399) - * zstd: Add optional stream content size on reset [#401](https://github.com/klauspost/compress/pull/401) - * zstd: use SpeedBestCompression for level >= 10 [#410](https://github.com/klauspost/compress/pull/410) - -* Jun 14, 2021 (v1.13.1) - * s2: Add full Snappy output support [#396](https://github.com/klauspost/compress/pull/396) - * zstd: Add configurable [Decoder window](https://pkg.go.dev/github.com/klauspost/compress/zstd#WithDecoderMaxWindow) size [#394](https://github.com/klauspost/compress/pull/394) - * gzhttp: Add header to skip compression [#389](https://github.com/klauspost/compress/pull/389) - * s2: Improve speed with bigger output margin [#395](https://github.com/klauspost/compress/pull/395) - -* Jun 3, 2021 (v1.13.0) - * Added [gzhttp](https://github.com/klauspost/compress/tree/master/gzhttp#gzip-handler) which allows wrapping HTTP servers and clients with GZIP compressors. - * zstd: Detect short invalid signatures [#382](https://github.com/klauspost/compress/pull/382) - * zstd: Spawn decoder goroutine only if needed. [#380](https://github.com/klauspost/compress/pull/380) -
- - -
- See changes to v1.12.x - -* May 25, 2021 (v1.12.3) - * deflate: Better/faster Huffman encoding [#374](https://github.com/klauspost/compress/pull/374) - * deflate: Allocate less for history. [#375](https://github.com/klauspost/compress/pull/375) - * zstd: Forward read errors [#373](https://github.com/klauspost/compress/pull/373) - -* Apr 27, 2021 (v1.12.2) - * zstd: Improve better/best compression [#360](https://github.com/klauspost/compress/pull/360) [#364](https://github.com/klauspost/compress/pull/364) [#365](https://github.com/klauspost/compress/pull/365) - * zstd: Add helpers to compress/decompress zstd inside zip files [#363](https://github.com/klauspost/compress/pull/363) - * deflate: Improve level 5+6 compression [#367](https://github.com/klauspost/compress/pull/367) - * s2: Improve better/best compression [#358](https://github.com/klauspost/compress/pull/358) [#359](https://github.com/klauspost/compress/pull/358) - * s2: Load after checking src limit on amd64. [#362](https://github.com/klauspost/compress/pull/362) - * s2sx: Limit max executable size [#368](https://github.com/klauspost/compress/pull/368) - -* Apr 14, 2021 (v1.12.1) - * snappy package removed. Upstream added as dependency. - * s2: Better compression in "best" mode [#353](https://github.com/klauspost/compress/pull/353) - * s2sx: Add stdin input and detect pre-compressed from signature [#352](https://github.com/klauspost/compress/pull/352) - * s2c/s2d: Add http as possible input [#348](https://github.com/klauspost/compress/pull/348) - * s2c/s2d/s2sx: Always truncate when writing files [#352](https://github.com/klauspost/compress/pull/352) - * zstd: Reduce memory usage further when using [WithLowerEncoderMem](https://pkg.go.dev/github.com/klauspost/compress/zstd#WithLowerEncoderMem) [#346](https://github.com/klauspost/compress/pull/346) - * s2: Fix potential problem with amd64 assembly and profilers [#349](https://github.com/klauspost/compress/pull/349) -
- -
- See changes to v1.11.x - -* Mar 26, 2021 (v1.11.13) - * zstd: Big speedup on small dictionary encodes [#344](https://github.com/klauspost/compress/pull/344) [#345](https://github.com/klauspost/compress/pull/345) - * zstd: Add [WithLowerEncoderMem](https://pkg.go.dev/github.com/klauspost/compress/zstd#WithLowerEncoderMem) encoder option [#336](https://github.com/klauspost/compress/pull/336) - * deflate: Improve entropy compression [#338](https://github.com/klauspost/compress/pull/338) - * s2: Clean up and minor performance improvement in best [#341](https://github.com/klauspost/compress/pull/341) - -* Mar 5, 2021 (v1.11.12) - * s2: Add `s2sx` binary that creates [self extracting archives](https://github.com/klauspost/compress/tree/master/s2#s2sx-self-extracting-archives). - * s2: Speed up decompression on non-assembly platforms [#328](https://github.com/klauspost/compress/pull/328) - -* Mar 1, 2021 (v1.11.9) - * s2: Add ARM64 decompression assembly. Around 2x output speed. [#324](https://github.com/klauspost/compress/pull/324) - * s2: Improve "better" speed and efficiency. [#325](https://github.com/klauspost/compress/pull/325) - * s2: Fix binaries. - -* Feb 25, 2021 (v1.11.8) - * s2: Fixed occasional out-of-bounds write on amd64. Upgrade recommended. - * s2: Add AMD64 assembly for better mode. 25-50% faster. [#315](https://github.com/klauspost/compress/pull/315) - * s2: Less upfront decoder allocation. [#322](https://github.com/klauspost/compress/pull/322) - * zstd: Faster "compression" of incompressible data. [#314](https://github.com/klauspost/compress/pull/314) - * zip: Fix zip64 headers. [#313](https://github.com/klauspost/compress/pull/313) - -* Jan 14, 2021 (v1.11.7) - * Use Bytes() interface to get bytes across packages. [#309](https://github.com/klauspost/compress/pull/309) - * s2: Add 'best' compression option. [#310](https://github.com/klauspost/compress/pull/310) - * s2: Add ReaderMaxBlockSize, changes `s2.NewReader` signature to include varargs. [#311](https://github.com/klauspost/compress/pull/311) - * s2: Fix crash on small better buffers. [#308](https://github.com/klauspost/compress/pull/308) - * s2: Clean up decoder. [#312](https://github.com/klauspost/compress/pull/312) - -* Jan 7, 2021 (v1.11.6) - * zstd: Make decoder allocations smaller [#306](https://github.com/klauspost/compress/pull/306) - * zstd: Free Decoder resources when Reset is called with a nil io.Reader [#305](https://github.com/klauspost/compress/pull/305) - -* Dec 20, 2020 (v1.11.4) - * zstd: Add Best compression mode [#304](https://github.com/klauspost/compress/pull/304) - * Add header decoder [#299](https://github.com/klauspost/compress/pull/299) - * s2: Add uncompressed stream option [#297](https://github.com/klauspost/compress/pull/297) - * Simplify/speed up small blocks with known max size. [#300](https://github.com/klauspost/compress/pull/300) - * zstd: Always reset literal dict encoder [#303](https://github.com/klauspost/compress/pull/303) - -* Nov 15, 2020 (v1.11.3) - * inflate: 10-15% faster decompression [#293](https://github.com/klauspost/compress/pull/293) - * zstd: Tweak DecodeAll default allocation [#295](https://github.com/klauspost/compress/pull/295) - -* Oct 11, 2020 (v1.11.2) - * s2: Fix out of bounds read in "better" block compression [#291](https://github.com/klauspost/compress/pull/291) - -* Oct 1, 2020 (v1.11.1) - * zstd: Set allLitEntropy true in default configuration [#286](https://github.com/klauspost/compress/pull/286) - -* Sept 8, 2020 (v1.11.0) - * zstd: Add experimental compression [dictionaries](https://github.com/klauspost/compress/tree/master/zstd#dictionaries) [#281](https://github.com/klauspost/compress/pull/281) - * zstd: Fix mixed Write and ReadFrom calls [#282](https://github.com/klauspost/compress/pull/282) - * inflate/gz: Limit variable shifts, ~5% faster decompression [#274](https://github.com/klauspost/compress/pull/274) -
- -
- See changes to v1.10.x - -* July 8, 2020 (v1.10.11) - * zstd: Fix extra block when compressing with ReadFrom. [#278](https://github.com/klauspost/compress/pull/278) - * huff0: Also populate compression table when reading decoding table. [#275](https://github.com/klauspost/compress/pull/275) - -* June 23, 2020 (v1.10.10) - * zstd: Skip entropy compression in fastest mode when no matches. [#270](https://github.com/klauspost/compress/pull/270) - -* June 16, 2020 (v1.10.9): - * zstd: API change for specifying dictionaries. See [#268](https://github.com/klauspost/compress/pull/268) - * zip: update CreateHeaderRaw to handle zip64 fields. [#266](https://github.com/klauspost/compress/pull/266) - * Fuzzit tests removed. The service has been purchased and is no longer available. - -* June 5, 2020 (v1.10.8): - * 1.15x faster zstd block decompression. [#265](https://github.com/klauspost/compress/pull/265) - -* June 1, 2020 (v1.10.7): - * Added zstd decompression [dictionary support](https://github.com/klauspost/compress/tree/master/zstd#dictionaries) - * Increase zstd decompression speed up to 1.19x. [#259](https://github.com/klauspost/compress/pull/259) - * Remove internal reset call in zstd compression and reduce allocations. [#263](https://github.com/klauspost/compress/pull/263) - -* May 21, 2020: (v1.10.6) - * zstd: Reduce allocations while decoding. [#258](https://github.com/klauspost/compress/pull/258), [#252](https://github.com/klauspost/compress/pull/252) - * zstd: Stricter decompression checks. - -* April 12, 2020: (v1.10.5) - * s2-commands: Flush output when receiving SIGINT. [#239](https://github.com/klauspost/compress/pull/239) - -* Apr 8, 2020: (v1.10.4) - * zstd: Minor/special case optimizations. [#251](https://github.com/klauspost/compress/pull/251), [#250](https://github.com/klauspost/compress/pull/250), [#249](https://github.com/klauspost/compress/pull/249), [#247](https://github.com/klauspost/compress/pull/247) -* Mar 11, 2020: (v1.10.3) - * s2: Use S2 encoder in pure Go mode for Snappy output as well. [#245](https://github.com/klauspost/compress/pull/245) - * s2: Fix pure Go block encoder. [#244](https://github.com/klauspost/compress/pull/244) - * zstd: Added "better compression" mode. [#240](https://github.com/klauspost/compress/pull/240) - * zstd: Improve speed of fastest compression mode by 5-10% [#241](https://github.com/klauspost/compress/pull/241) - * zstd: Skip creating encoders when not needed. [#238](https://github.com/klauspost/compress/pull/238) - -* Feb 27, 2020: (v1.10.2) - * Close to 50% speedup in inflate (gzip/zip decompression). [#236](https://github.com/klauspost/compress/pull/236) [#234](https://github.com/klauspost/compress/pull/234) [#232](https://github.com/klauspost/compress/pull/232) - * Reduce deflate level 1-6 memory usage up to 59%. [#227](https://github.com/klauspost/compress/pull/227) - -* Feb 18, 2020: (v1.10.1) - * Fix zstd crash when resetting multiple times without sending data. [#226](https://github.com/klauspost/compress/pull/226) - * deflate: Fix dictionary use on level 1-6. [#224](https://github.com/klauspost/compress/pull/224) - * Remove deflate writer reference when closing. [#224](https://github.com/klauspost/compress/pull/224) - -* Feb 4, 2020: (v1.10.0) - * Add optional dictionary to [stateless deflate](https://pkg.go.dev/github.com/klauspost/compress/flate?tab=doc#StatelessDeflate). Breaking change, send `nil` for previous behaviour. [#216](https://github.com/klauspost/compress/pull/216) - * Fix buffer overflow on repeated small block deflate. [#218](https://github.com/klauspost/compress/pull/218) - * Allow copying content from an existing ZIP file without decompressing+compressing. [#214](https://github.com/klauspost/compress/pull/214) - * Added [S2](https://github.com/klauspost/compress/tree/master/s2#s2-compression) AMD64 assembler and various optimizations. Stream speed >10GB/s. [#186](https://github.com/klauspost/compress/pull/186) - -
- -
- See changes prior to v1.10.0 - -* Jan 20,2020 (v1.9.8) Optimize gzip/deflate with better size estimates and faster table generation. [#207](https://github.com/klauspost/compress/pull/207) by [luyu6056](https://github.com/luyu6056), [#206](https://github.com/klauspost/compress/pull/206). -* Jan 11, 2020: S2 Encode/Decode will use provided buffer if capacity is big enough. [#204](https://github.com/klauspost/compress/pull/204) -* Jan 5, 2020: (v1.9.7) Fix another zstd regression in v1.9.5 - v1.9.6 removed. -* Jan 4, 2020: (v1.9.6) Regression in v1.9.5 fixed causing corrupt zstd encodes in rare cases. -* Jan 4, 2020: Faster IO in [s2c + s2d commandline tools](https://github.com/klauspost/compress/tree/master/s2#commandline-tools) compression/decompression. [#192](https://github.com/klauspost/compress/pull/192) -* Dec 29, 2019: Removed v1.9.5 since fuzz tests showed a compatibility problem with the reference zstandard decoder. -* Dec 29, 2019: (v1.9.5) zstd: 10-20% faster block compression. [#199](https://github.com/klauspost/compress/pull/199) -* Dec 29, 2019: [zip](https://godoc.org/github.com/klauspost/compress/zip) package updated with latest Go features -* Dec 29, 2019: zstd: Single segment flag condintions tweaked. [#197](https://github.com/klauspost/compress/pull/197) -* Dec 18, 2019: s2: Faster compression when ReadFrom is used. [#198](https://github.com/klauspost/compress/pull/198) -* Dec 10, 2019: s2: Fix repeat length output when just above at 16MB limit. -* Dec 10, 2019: zstd: Add function to get decoder as io.ReadCloser. [#191](https://github.com/klauspost/compress/pull/191) -* Dec 3, 2019: (v1.9.4) S2: limit max repeat length. [#188](https://github.com/klauspost/compress/pull/188) -* Dec 3, 2019: Add [WithNoEntropyCompression](https://godoc.org/github.com/klauspost/compress/zstd#WithNoEntropyCompression) to zstd [#187](https://github.com/klauspost/compress/pull/187) -* Dec 3, 2019: Reduce memory use for tests. Check for leaked goroutines. -* Nov 28, 2019 (v1.9.3) Less allocations in stateless deflate. -* Nov 28, 2019: 5-20% Faster huff0 decode. Impacts zstd as well. [#184](https://github.com/klauspost/compress/pull/184) -* Nov 12, 2019 (v1.9.2) Added [Stateless Compression](#stateless-compression) for gzip/deflate. -* Nov 12, 2019: Fixed zstd decompression of large single blocks. [#180](https://github.com/klauspost/compress/pull/180) -* Nov 11, 2019: Set default [s2c](https://github.com/klauspost/compress/tree/master/s2#commandline-tools) block size to 4MB. -* Nov 11, 2019: Reduce inflate memory use by 1KB. -* Nov 10, 2019: Less allocations in deflate bit writer. -* Nov 10, 2019: Fix inconsistent error returned by zstd decoder. -* Oct 28, 2019 (v1.9.1) ztsd: Fix crash when compressing blocks. [#174](https://github.com/klauspost/compress/pull/174) -* Oct 24, 2019 (v1.9.0) zstd: Fix rare data corruption [#173](https://github.com/klauspost/compress/pull/173) -* Oct 24, 2019 zstd: Fix huff0 out of buffer write [#171](https://github.com/klauspost/compress/pull/171) and always return errors [#172](https://github.com/klauspost/compress/pull/172) -* Oct 10, 2019: Big deflate rewrite, 30-40% faster with better compression [#105](https://github.com/klauspost/compress/pull/105) - -
- -
- See changes prior to v1.9.0 - -* Oct 10, 2019: (v1.8.6) zstd: Allow partial reads to get flushed data. [#169](https://github.com/klauspost/compress/pull/169) -* Oct 3, 2019: Fix inconsistent results on broken zstd streams. -* Sep 25, 2019: Added `-rm` (remove source files) and `-q` (no output except errors) to `s2c` and `s2d` [commands](https://github.com/klauspost/compress/tree/master/s2#commandline-tools) -* Sep 16, 2019: (v1.8.4) Add `s2c` and `s2d` [commandline tools](https://github.com/klauspost/compress/tree/master/s2#commandline-tools). -* Sep 10, 2019: (v1.8.3) Fix s2 decoder [Skip](https://godoc.org/github.com/klauspost/compress/s2#Reader.Skip). -* Sep 7, 2019: zstd: Added [WithWindowSize](https://godoc.org/github.com/klauspost/compress/zstd#WithWindowSize), contributed by [ianwilkes](https://github.com/ianwilkes). -* Sep 5, 2019: (v1.8.2) Add [WithZeroFrames](https://godoc.org/github.com/klauspost/compress/zstd#WithZeroFrames) which adds full zero payload block encoding option. -* Sep 5, 2019: Lazy initialization of zstandard predefined en/decoder tables. -* Aug 26, 2019: (v1.8.1) S2: 1-2% compression increase in "better" compression mode. -* Aug 26, 2019: zstd: Check maximum size of Huffman 1X compressed literals while decoding. -* Aug 24, 2019: (v1.8.0) Added [S2 compression](https://github.com/klauspost/compress/tree/master/s2#s2-compression), a high performance replacement for Snappy. -* Aug 21, 2019: (v1.7.6) Fixed minor issues found by fuzzer. One could lead to zstd not decompressing. -* Aug 18, 2019: Add [fuzzit](https://fuzzit.dev/) continuous fuzzing. -* Aug 14, 2019: zstd: Skip incompressible data 2x faster. [#147](https://github.com/klauspost/compress/pull/147) -* Aug 4, 2019 (v1.7.5): Better literal compression. [#146](https://github.com/klauspost/compress/pull/146) -* Aug 4, 2019: Faster zstd compression. [#143](https://github.com/klauspost/compress/pull/143) [#144](https://github.com/klauspost/compress/pull/144) -* Aug 4, 2019: Faster zstd decompression. [#145](https://github.com/klauspost/compress/pull/145) [#143](https://github.com/klauspost/compress/pull/143) [#142](https://github.com/klauspost/compress/pull/142) -* July 15, 2019 (v1.7.4): Fix double EOF block in rare cases on zstd encoder. -* July 15, 2019 (v1.7.3): Minor speedup/compression increase in default zstd encoder. -* July 14, 2019: zstd decoder: Fix decompression error on multiple uses with mixed content. -* July 7, 2019 (v1.7.2): Snappy update, zstd decoder potential race fix. -* June 17, 2019: zstd decompression bugfix. -* June 17, 2019: fix 32 bit builds. -* June 17, 2019: Easier use in modules (less dependencies). -* June 9, 2019: New stronger "default" [zstd](https://github.com/klauspost/compress/tree/master/zstd#zstd) compression mode. Matches zstd default compression ratio. -* June 5, 2019: 20-40% throughput in [zstandard](https://github.com/klauspost/compress/tree/master/zstd#zstd) compression and better compression. -* June 5, 2019: deflate/gzip compression: Reduce memory usage of lower compression levels. -* June 2, 2019: Added [zstandard](https://github.com/klauspost/compress/tree/master/zstd#zstd) compression! -* May 25, 2019: deflate/gzip: 10% faster bit writer, mostly visible in lower levels. -* Apr 22, 2019: [zstd](https://github.com/klauspost/compress/tree/master/zstd#zstd) decompression added. -* Aug 1, 2018: Added [huff0 README](https://github.com/klauspost/compress/tree/master/huff0#huff0-entropy-compression). -* Jul 8, 2018: Added [Performance Update 2018](#performance-update-2018) below. -* Jun 23, 2018: Merged [Go 1.11 inflate optimizations](https://go-review.googlesource.com/c/go/+/102235). Go 1.9 is now required. Backwards compatible version tagged with [v1.3.0](https://github.com/klauspost/compress/releases/tag/v1.3.0). -* Apr 2, 2018: Added [huff0](https://godoc.org/github.com/klauspost/compress/huff0) en/decoder. Experimental for now, API may change. -* Mar 4, 2018: Added [FSE Entropy](https://godoc.org/github.com/klauspost/compress/fse) en/decoder. Experimental for now, API may change. -* Nov 3, 2017: Add compression [Estimate](https://godoc.org/github.com/klauspost/compress#Estimate) function. -* May 28, 2017: Reduce allocations when resetting decoder. -* Apr 02, 2017: Change back to official crc32, since changes were merged in Go 1.7. -* Jan 14, 2017: Reduce stack pressure due to array copies. See [Issue #18625](https://github.com/golang/go/issues/18625). -* Oct 25, 2016: Level 2-4 have been rewritten and now offers significantly better performance than before. -* Oct 20, 2016: Port zlib changes from Go 1.7 to fix zlib writer issue. Please update. -* Oct 16, 2016: Go 1.7 changes merged. Apples to apples this package is a few percent faster, but has a significantly better balance between speed and compression per level. -* Mar 24, 2016: Always attempt Huffman encoding on level 4-7. This improves base 64 encoded data compression. -* Mar 24, 2016: Small speedup for level 1-3. -* Feb 19, 2016: Faster bit writer, level -2 is 15% faster, level 1 is 4% faster. -* Feb 19, 2016: Handle small payloads faster in level 1-3. -* Feb 19, 2016: Added faster level 2 + 3 compression modes. -* Feb 19, 2016: [Rebalanced compression levels](https://blog.klauspost.com/rebalancing-deflate-compression-levels/), so there is a more even progression in terms of compression. New default level is 5. -* Feb 14, 2016: Snappy: Merge upstream changes. -* Feb 14, 2016: Snappy: Fix aggressive skipping. -* Feb 14, 2016: Snappy: Update benchmark. -* Feb 13, 2016: Deflate: Fixed assembler problem that could lead to sub-optimal compression. -* Feb 12, 2016: Snappy: Added AMD64 SSE 4.2 optimizations to matching, which makes easy to compress material run faster. Typical speedup is around 25%. -* Feb 9, 2016: Added Snappy package fork. This version is 5-7% faster, much more on hard to compress content. -* Jan 30, 2016: Optimize level 1 to 3 by not considering static dictionary or storing uncompressed. ~4-5% speedup. -* Jan 16, 2016: Optimization on deflate level 1,2,3 compression. -* Jan 8 2016: Merge [CL 18317](https://go-review.googlesource.com/#/c/18317): fix reading, writing of zip64 archives. -* Dec 8 2015: Make level 1 and -2 deterministic even if write size differs. -* Dec 8 2015: Split encoding functions, so hashing and matching can potentially be inlined. 1-3% faster on AMD64. 5% faster on other platforms. -* Dec 8 2015: Fixed rare [one byte out-of bounds read](https://github.com/klauspost/compress/issues/20). Please update! -* Nov 23 2015: Optimization on token writer. ~2-4% faster. Contributed by [@dsnet](https://github.com/dsnet). -* Nov 20 2015: Small optimization to bit writer on 64 bit systems. -* Nov 17 2015: Fixed out-of-bound errors if the underlying Writer returned an error. See [#15](https://github.com/klauspost/compress/issues/15). -* Nov 12 2015: Added [io.WriterTo](https://golang.org/pkg/io/#WriterTo) support to gzip/inflate. -* Nov 11 2015: Merged [CL 16669](https://go-review.googlesource.com/#/c/16669/4): archive/zip: enable overriding (de)compressors per file -* Oct 15 2015: Added skipping on uncompressible data. Random data speed up >5x. - -
- -# deflate usage - -The packages are drop-in replacements for standard libraries. Simply replace the import path to use them: - -| old import | new import | Documentation -|--------------------|-----------------------------------------|--------------------| -| `compress/gzip` | `github.com/klauspost/compress/gzip` | [gzip](https://pkg.go.dev/github.com/klauspost/compress/gzip?tab=doc) -| `compress/zlib` | `github.com/klauspost/compress/zlib` | [zlib](https://pkg.go.dev/github.com/klauspost/compress/zlib?tab=doc) -| `archive/zip` | `github.com/klauspost/compress/zip` | [zip](https://pkg.go.dev/github.com/klauspost/compress/zip?tab=doc) -| `compress/flate` | `github.com/klauspost/compress/flate` | [flate](https://pkg.go.dev/github.com/klauspost/compress/flate?tab=doc) - -* Optimized [deflate](https://godoc.org/github.com/klauspost/compress/flate) packages which can be used as a dropin replacement for [gzip](https://godoc.org/github.com/klauspost/compress/gzip), [zip](https://godoc.org/github.com/klauspost/compress/zip) and [zlib](https://godoc.org/github.com/klauspost/compress/zlib). - -You may also be interested in [pgzip](https://github.com/klauspost/pgzip), which is a drop in replacement for gzip, which support multithreaded compression on big files and the optimized [crc32](https://github.com/klauspost/crc32) package used by these packages. - -The packages contains the same as the standard library, so you can use the godoc for that: [gzip](http://golang.org/pkg/compress/gzip/), [zip](http://golang.org/pkg/archive/zip/), [zlib](http://golang.org/pkg/compress/zlib/), [flate](http://golang.org/pkg/compress/flate/). - -Currently there is only minor speedup on decompression (mostly CRC32 calculation). - -Memory usage is typically 1MB for a Writer. stdlib is in the same range. -If you expect to have a lot of concurrently allocated Writers consider using -the stateless compress described below. - -For compression performance, see: [this spreadsheet](https://docs.google.com/spreadsheets/d/1nuNE2nPfuINCZJRMt6wFWhKpToF95I47XjSsc-1rbPQ/edit?usp=sharing). - -To disable all assembly add `-tags=noasm`. This works across all packages. - -# Stateless compression - -This package offers stateless compression as a special option for gzip/deflate. -It will do compression but without maintaining any state between Write calls. - -This means there will be no memory kept between Write calls, but compression and speed will be suboptimal. - -This is only relevant in cases where you expect to run many thousands of compressors concurrently, -but with very little activity. This is *not* intended for regular web servers serving individual requests. - -Because of this, the size of actual Write calls will affect output size. - -In gzip, specify level `-3` / `gzip.StatelessCompression` to enable. - -For direct deflate use, NewStatelessWriter and StatelessDeflate are available. See [documentation](https://godoc.org/github.com/klauspost/compress/flate#NewStatelessWriter) - -A `bufio.Writer` can of course be used to control write sizes. For example, to use a 4KB buffer: - -```go - // replace 'ioutil.Discard' with your output. - gzw, err := gzip.NewWriterLevel(ioutil.Discard, gzip.StatelessCompression) - if err != nil { - return err - } - defer gzw.Close() - - w := bufio.NewWriterSize(gzw, 4096) - defer w.Flush() - - // Write to 'w' -``` - -This will only use up to 4KB in memory when the writer is idle. - -Compression is almost always worse than the fastest compression level -and each write will allocate (a little) memory. - -# Performance Update 2018 - -It has been a while since we have been looking at the speed of this package compared to the standard library, so I thought I would re-do my tests and give some overall recommendations based on the current state. All benchmarks have been performed with Go 1.10 on my Desktop Intel(R) Core(TM) i7-2600 CPU @3.40GHz. Since I last ran the tests, I have gotten more RAM, which means tests with big files are no longer limited by my SSD. - -The raw results are in my [updated spreadsheet](https://docs.google.com/spreadsheets/d/1nuNE2nPfuINCZJRMt6wFWhKpToF95I47XjSsc-1rbPQ/edit?usp=sharing). Due to cgo changes and upstream updates i could not get the cgo version of gzip to compile. Instead I included the [zstd](https://github.com/datadog/zstd) cgo implementation. If I get cgo gzip to work again, I might replace the results in the sheet. - -The columns to take note of are: *MB/s* - the throughput. *Reduction* - the data size reduction in percent of the original. *Rel Speed* relative speed compared to the standard library at the same level. *Smaller* - how many percent smaller is the compressed output compared to stdlib. Negative means the output was bigger. *Loss* means the loss (or gain) in compression as a percentage difference of the input. - -The `gzstd` (standard library gzip) and `gzkp` (this package gzip) only uses one CPU core. [`pgzip`](https://github.com/klauspost/pgzip), [`bgzf`](https://github.com/biogo/hts/tree/master/bgzf) uses all 4 cores. [`zstd`](https://github.com/DataDog/zstd) uses one core, and is a beast (but not Go, yet). - - -## Overall differences. - -There appears to be a roughly 5-10% speed advantage over the standard library when comparing at similar compression levels. - -The biggest difference you will see is the result of [re-balancing](https://blog.klauspost.com/rebalancing-deflate-compression-levels/) the compression levels. I wanted by library to give a smoother transition between the compression levels than the standard library. - -This package attempts to provide a more smooth transition, where "1" is taking a lot of shortcuts, "5" is the reasonable trade-off and "9" is the "give me the best compression", and the values in between gives something reasonable in between. The standard library has big differences in levels 1-4, but levels 5-9 having no significant gains - often spending a lot more time than can be justified by the achieved compression. - -There are links to all the test data in the [spreadsheet](https://docs.google.com/spreadsheets/d/1nuNE2nPfuINCZJRMt6wFWhKpToF95I47XjSsc-1rbPQ/edit?usp=sharing) in the top left field on each tab. - -## Web Content - -This test set aims to emulate typical use in a web server. The test-set is 4GB data in 53k files, and is a mixture of (mostly) HTML, JS, CSS. - -Since level 1 and 9 are close to being the same code, they are quite close. But looking at the levels in-between the differences are quite big. - -Looking at level 6, this package is 88% faster, but will output about 6% more data. For a web server, this means you can serve 88% more data, but have to pay for 6% more bandwidth. You can draw your own conclusions on what would be the most expensive for your case. - -## Object files - -This test is for typical data files stored on a server. In this case it is a collection of Go precompiled objects. They are very compressible. - -The picture is similar to the web content, but with small differences since this is very compressible. Levels 2-3 offer good speed, but is sacrificing quite a bit of compression. - -The standard library seems suboptimal on level 3 and 4 - offering both worse compression and speed than level 6 & 7 of this package respectively. - -## Highly Compressible File - -This is a JSON file with very high redundancy. The reduction starts at 95% on level 1, so in real life terms we are dealing with something like a highly redundant stream of data, etc. - -It is definitely visible that we are dealing with specialized content here, so the results are very scattered. This package does not do very well at levels 1-4, but picks up significantly at level 5 and levels 7 and 8 offering great speed for the achieved compression. - -So if you know you content is extremely compressible you might want to go slightly higher than the defaults. The standard library has a huge gap between levels 3 and 4 in terms of speed (2.75x slowdown), so it offers little "middle ground". - -## Medium-High Compressible - -This is a pretty common test corpus: [enwik9](http://mattmahoney.net/dc/textdata.html). It contains the first 10^9 bytes of the English Wikipedia dump on Mar. 3, 2006. This is a very good test of typical text based compression and more data heavy streams. - -We see a similar picture here as in "Web Content". On equal levels some compression is sacrificed for more speed. Level 5 seems to be the best trade-off between speed and size, beating stdlib level 3 in both. - -## Medium Compressible - -I will combine two test sets, one [10GB file set](http://mattmahoney.net/dc/10gb.html) and a VM disk image (~8GB). Both contain different data types and represent a typical backup scenario. - -The most notable thing is how quickly the standard library drops to very low compression speeds around level 5-6 without any big gains in compression. Since this type of data is fairly common, this does not seem like good behavior. - - -## Un-compressible Content - -This is mainly a test of how good the algorithms are at detecting un-compressible input. The standard library only offers this feature with very conservative settings at level 1. Obviously there is no reason for the algorithms to try to compress input that cannot be compressed. The only downside is that it might skip some compressible data on false detections. - - -## Huffman only compression - -This compression library adds a special compression level, named `HuffmanOnly`, which allows near linear time compression. This is done by completely disabling matching of previous data, and only reduce the number of bits to represent each character. - -This means that often used characters, like 'e' and ' ' (space) in text use the fewest bits to represent, and rare characters like '¤' takes more bits to represent. For more information see [wikipedia](https://en.wikipedia.org/wiki/Huffman_coding) or this nice [video](https://youtu.be/ZdooBTdW5bM). - -Since this type of compression has much less variance, the compression speed is mostly unaffected by the input data, and is usually more than *180MB/s* for a single core. - -The downside is that the compression ratio is usually considerably worse than even the fastest conventional compression. The compression ratio can never be better than 8:1 (12.5%). - -The linear time compression can be used as a "better than nothing" mode, where you cannot risk the encoder to slow down on some content. For comparison, the size of the "Twain" text is *233460 bytes* (+29% vs. level 1) and encode speed is 144MB/s (4.5x level 1). So in this case you trade a 30% size increase for a 4 times speedup. - -For more information see my blog post on [Fast Linear Time Compression](http://blog.klauspost.com/constant-time-gzipzip-compression/). - -This is implemented on Go 1.7 as "Huffman Only" mode, though not exposed for gzip. - -# Other packages - -Here are other packages of good quality and pure Go (no cgo wrappers or autoconverted code): - -* [github.com/pierrec/lz4](https://github.com/pierrec/lz4) - strong multithreaded LZ4 compression. -* [github.com/cosnicolaou/pbzip2](https://github.com/cosnicolaou/pbzip2) - multithreaded bzip2 decompression. -* [github.com/dsnet/compress](https://github.com/dsnet/compress) - brotli decompression, bzip2 writer. -* [github.com/ronanh/intcomp](https://github.com/ronanh/intcomp) - Integer compression. -* [github.com/spenczar/fpc](https://github.com/spenczar/fpc) - Float compression. -* [github.com/minio/zipindex](https://github.com/minio/zipindex) - External ZIP directory index. -* [github.com/ybirader/pzip](https://github.com/ybirader/pzip) - Fast concurrent zip archiver and extractor. - -# license - -This code is licensed under the same conditions as the original Go code. See LICENSE file. diff --git a/vendor/github.com/klauspost/compress/SECURITY.md b/vendor/github.com/klauspost/compress/SECURITY.md deleted file mode 100644 index ca6685e2b7..0000000000 --- a/vendor/github.com/klauspost/compress/SECURITY.md +++ /dev/null @@ -1,25 +0,0 @@ -# Security Policy - -## Supported Versions - -Security updates are applied only to the latest release. - -## Vulnerability Definition - -A security vulnerability is a bug that with certain input triggers a crash or an infinite loop. Most calls will have varying execution time and only in rare cases will slow operation be considered a security vulnerability. - -Corrupted output generally is not considered a security vulnerability, unless independent operations are able to affect each other. Note that not all functionality is re-entrant and safe to use concurrently. - -Out-of-memory crashes only applies if the en/decoder uses an abnormal amount of memory, with appropriate options applied, to limit maximum window size, concurrency, etc. However, if you are in doubt you are welcome to file a security issue. - -It is assumed that all callers are trusted, meaning internal data exposed through reflection or inspection of returned data structures is not considered a vulnerability. - -Vulnerabilities resulting from compiler/assembler errors should be reported upstream. Depending on the severity this package may or may not implement a workaround. - -## Reporting a Vulnerability - -If you have discovered a security vulnerability in this project, please report it privately. **Do not disclose it as a public issue.** This gives us time to work with you to fix the issue before public exposure, reducing the chance that the exploit will be used before a patch is released. - -Please disclose it at [security advisory](https://github.com/klauspost/compress/security/advisories/new). If possible please provide a minimal reproducer. If the issue only applies to a single platform, it would be helpful to provide access to that. - -This project is maintained by a team of volunteers on a reasonable-effort basis. As such, vulnerabilities will be disclosed in a best effort base. diff --git a/vendor/github.com/klauspost/compress/compressible.go b/vendor/github.com/klauspost/compress/compressible.go deleted file mode 100644 index ea5a692d51..0000000000 --- a/vendor/github.com/klauspost/compress/compressible.go +++ /dev/null @@ -1,85 +0,0 @@ -package compress - -import "math" - -// Estimate returns a normalized compressibility estimate of block b. -// Values close to zero are likely uncompressible. -// Values above 0.1 are likely to be compressible. -// Values above 0.5 are very compressible. -// Very small lengths will return 0. -func Estimate(b []byte) float64 { - if len(b) < 16 { - return 0 - } - - // Correctly predicted order 1 - hits := 0 - lastMatch := false - var o1 [256]byte - var hist [256]int - c1 := byte(0) - for _, c := range b { - if c == o1[c1] { - // We only count a hit if there was two correct predictions in a row. - if lastMatch { - hits++ - } - lastMatch = true - } else { - lastMatch = false - } - o1[c1] = c - c1 = c - hist[c]++ - } - - // Use x^0.6 to give better spread - prediction := math.Pow(float64(hits)/float64(len(b)), 0.6) - - // Calculate histogram distribution - variance := float64(0) - avg := float64(len(b)) / 256 - - for _, v := range hist { - Δ := float64(v) - avg - variance += Δ * Δ - } - - stddev := math.Sqrt(float64(variance)) / float64(len(b)) - exp := math.Sqrt(1 / float64(len(b))) - - // Subtract expected stddev - stddev -= exp - if stddev < 0 { - stddev = 0 - } - stddev *= 1 + exp - - // Use x^0.4 to give better spread - entropy := math.Pow(stddev, 0.4) - - // 50/50 weight between prediction and histogram distribution - return math.Pow((prediction+entropy)/2, 0.9) -} - -// ShannonEntropyBits returns the number of bits minimum required to represent -// an entropy encoding of the input bytes. -// https://en.wiktionary.org/wiki/Shannon_entropy -func ShannonEntropyBits(b []byte) int { - if len(b) == 0 { - return 0 - } - var hist [256]int - for _, c := range b { - hist[c]++ - } - shannon := float64(0) - invTotal := 1.0 / float64(len(b)) - for _, v := range hist[:] { - if v > 0 { - n := float64(v) - shannon += math.Ceil(-math.Log2(n*invTotal) * n) - } - } - return int(math.Ceil(shannon)) -} diff --git a/vendor/github.com/klauspost/compress/fse/README.md b/vendor/github.com/klauspost/compress/fse/README.md deleted file mode 100644 index ea7324da67..0000000000 --- a/vendor/github.com/klauspost/compress/fse/README.md +++ /dev/null @@ -1,79 +0,0 @@ -# Finite State Entropy - -This package provides Finite State Entropy encoding and decoding. - -Finite State Entropy (also referenced as [tANS](https://en.wikipedia.org/wiki/Asymmetric_numeral_systems#tANS)) -encoding provides a fast near-optimal symbol encoding/decoding -for byte blocks as implemented in [zstandard](https://github.com/facebook/zstd). - -This can be used for compressing input with a lot of similar input values to the smallest number of bytes. -This does not perform any multi-byte [dictionary coding](https://en.wikipedia.org/wiki/Dictionary_coder) as LZ coders, -but it can be used as a secondary step to compressors (like Snappy) that does not do entropy encoding. - -* [Godoc documentation](https://godoc.org/github.com/klauspost/compress/fse) - -## News - - * Feb 2018: First implementation released. Consider this beta software for now. - -# Usage - -This package provides a low level interface that allows to compress single independent blocks. - -Each block is separate, and there is no built in integrity checks. -This means that the caller should keep track of block sizes and also do checksums if needed. - -Compressing a block is done via the [`Compress`](https://godoc.org/github.com/klauspost/compress/fse#Compress) function. -You must provide input and will receive the output and maybe an error. - -These error values can be returned: - -| Error | Description | -|---------------------|-----------------------------------------------------------------------------| -| `` | Everything ok, output is returned | -| `ErrIncompressible` | Returned when input is judged to be too hard to compress | -| `ErrUseRLE` | Returned from the compressor when the input is a single byte value repeated | -| `(error)` | An internal error occurred. | - -As can be seen above there are errors that will be returned even under normal operation so it is important to handle these. - -To reduce allocations you can provide a [`Scratch`](https://godoc.org/github.com/klauspost/compress/fse#Scratch) object -that can be re-used for successive calls. Both compression and decompression accepts a `Scratch` object, and the same -object can be used for both. - -Be aware, that when re-using a `Scratch` object that the *output* buffer is also re-used, so if you are still using this -you must set the `Out` field in the scratch to nil. The same buffer is used for compression and decompression output. - -Decompressing is done by calling the [`Decompress`](https://godoc.org/github.com/klauspost/compress/fse#Decompress) function. -You must provide the output from the compression stage, at exactly the size you got back. If you receive an error back -your input was likely corrupted. - -It is important to note that a successful decoding does *not* mean your output matches your original input. -There are no integrity checks, so relying on errors from the decompressor does not assure your data is valid. - -For more detailed usage, see examples in the [godoc documentation](https://godoc.org/github.com/klauspost/compress/fse#pkg-examples). - -# Performance - -A lot of factors are affecting speed. Block sizes and compressibility of the material are primary factors. -All compression functions are currently only running on the calling goroutine so only one core will be used per block. - -The compressor is significantly faster if symbols are kept as small as possible. The highest byte value of the input -is used to reduce some of the processing, so if all your input is above byte value 64 for instance, it may be -beneficial to transpose all your input values down by 64. - -With moderate block sizes around 64k speed are typically 200MB/s per core for compression and -around 300MB/s decompression speed. - -The same hardware typically does Huffman (deflate) encoding at 125MB/s and decompression at 100MB/s. - -# Plans - -At one point, more internals will be exposed to facilitate more "expert" usage of the components. - -A streaming interface is also likely to be implemented. Likely compatible with [FSE stream format](https://github.com/Cyan4973/FiniteStateEntropy/blob/dev/programs/fileio.c#L261). - -# Contributing - -Contributions are always welcome. Be aware that adding public functions will require good justification and breaking -changes will likely not be accepted. If in doubt open an issue before writing the PR. \ No newline at end of file diff --git a/vendor/github.com/klauspost/compress/fse/bitreader.go b/vendor/github.com/klauspost/compress/fse/bitreader.go deleted file mode 100644 index f65eb3909c..0000000000 --- a/vendor/github.com/klauspost/compress/fse/bitreader.go +++ /dev/null @@ -1,122 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package fse - -import ( - "encoding/binary" - "errors" - "io" -) - -// bitReader reads a bitstream in reverse. -// The last set bit indicates the start of the stream and is used -// for aligning the input. -type bitReader struct { - in []byte - off uint // next byte to read is at in[off - 1] - value uint64 - bitsRead uint8 -} - -// init initializes and resets the bit reader. -func (b *bitReader) init(in []byte) error { - if len(in) < 1 { - return errors.New("corrupt stream: too short") - } - b.in = in - b.off = uint(len(in)) - // The highest bit of the last byte indicates where to start - v := in[len(in)-1] - if v == 0 { - return errors.New("corrupt stream, did not find end of stream") - } - b.bitsRead = 64 - b.value = 0 - if len(in) >= 8 { - b.fillFastStart() - } else { - b.fill() - b.fill() - } - b.bitsRead += 8 - uint8(highBits(uint32(v))) - return nil -} - -// getBits will return n bits. n can be 0. -func (b *bitReader) getBits(n uint8) uint16 { - if n == 0 || b.bitsRead >= 64 { - return 0 - } - return b.getBitsFast(n) -} - -// getBitsFast requires that at least one bit is requested every time. -// There are no checks if the buffer is filled. -func (b *bitReader) getBitsFast(n uint8) uint16 { - const regMask = 64 - 1 - v := uint16((b.value << (b.bitsRead & regMask)) >> ((regMask + 1 - n) & regMask)) - b.bitsRead += n - return v -} - -// fillFast() will make sure at least 32 bits are available. -// There must be at least 4 bytes available. -func (b *bitReader) fillFast() { - if b.bitsRead < 32 { - return - } - // 2 bounds checks. - v := b.in[b.off-4:] - v = v[:4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value = (b.value << 32) | uint64(low) - b.bitsRead -= 32 - b.off -= 4 -} - -// fill() will make sure at least 32 bits are available. -func (b *bitReader) fill() { - if b.bitsRead < 32 { - return - } - if b.off > 4 { - v := b.in[b.off-4:] - v = v[:4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value = (b.value << 32) | uint64(low) - b.bitsRead -= 32 - b.off -= 4 - return - } - for b.off > 0 { - b.value = (b.value << 8) | uint64(b.in[b.off-1]) - b.bitsRead -= 8 - b.off-- - } -} - -// fillFastStart() assumes the bitreader is empty and there is at least 8 bytes to read. -func (b *bitReader) fillFastStart() { - // Do single re-slice to avoid bounds checks. - b.value = binary.LittleEndian.Uint64(b.in[b.off-8:]) - b.bitsRead = 0 - b.off -= 8 -} - -// finished returns true if all bits have been read from the bit stream. -func (b *bitReader) finished() bool { - return b.bitsRead >= 64 && b.off == 0 -} - -// close the bitstream and returns an error if out-of-buffer reads occurred. -func (b *bitReader) close() error { - // Release reference. - b.in = nil - if b.bitsRead > 64 { - return io.ErrUnexpectedEOF - } - return nil -} diff --git a/vendor/github.com/klauspost/compress/fse/bitwriter.go b/vendor/github.com/klauspost/compress/fse/bitwriter.go deleted file mode 100644 index e82fa3bb7b..0000000000 --- a/vendor/github.com/klauspost/compress/fse/bitwriter.go +++ /dev/null @@ -1,167 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package fse - -import "fmt" - -// bitWriter will write bits. -// First bit will be LSB of the first byte of output. -type bitWriter struct { - bitContainer uint64 - nBits uint8 - out []byte -} - -// bitMask16 is bitmasks. Has extra to avoid bounds check. -var bitMask16 = [32]uint16{ - 0, 1, 3, 7, 0xF, 0x1F, - 0x3F, 0x7F, 0xFF, 0x1FF, 0x3FF, 0x7FF, - 0xFFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF, 0xFFFF, - 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, - 0xFFFF, 0xFFFF} /* up to 16 bits */ - -// addBits16NC will add up to 16 bits. -// It will not check if there is space for them, -// so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits16NC(value uint16, bits uint8) { - b.bitContainer |= uint64(value&bitMask16[bits&31]) << (b.nBits & 63) - b.nBits += bits -} - -// addBits16Clean will add up to 16 bits. value may not contain more set bits than indicated. -// It will not check if there is space for them, so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits16Clean(value uint16, bits uint8) { - b.bitContainer |= uint64(value) << (b.nBits & 63) - b.nBits += bits -} - -// addBits16ZeroNC will add up to 16 bits. -// It will not check if there is space for them, -// so the caller must ensure that it has flushed recently. -// This is fastest if bits can be zero. -func (b *bitWriter) addBits16ZeroNC(value uint16, bits uint8) { - if bits == 0 { - return - } - value <<= (16 - bits) & 15 - value >>= (16 - bits) & 15 - b.bitContainer |= uint64(value) << (b.nBits & 63) - b.nBits += bits -} - -// flush will flush all pending full bytes. -// There will be at least 56 bits available for writing when this has been called. -// Using flush32 is faster, but leaves less space for writing. -func (b *bitWriter) flush() { - v := b.nBits >> 3 - switch v { - case 0: - case 1: - b.out = append(b.out, - byte(b.bitContainer), - ) - case 2: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - ) - case 3: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - ) - case 4: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24), - ) - case 5: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24), - byte(b.bitContainer>>32), - ) - case 6: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24), - byte(b.bitContainer>>32), - byte(b.bitContainer>>40), - ) - case 7: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24), - byte(b.bitContainer>>32), - byte(b.bitContainer>>40), - byte(b.bitContainer>>48), - ) - case 8: - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24), - byte(b.bitContainer>>32), - byte(b.bitContainer>>40), - byte(b.bitContainer>>48), - byte(b.bitContainer>>56), - ) - default: - panic(fmt.Errorf("bits (%d) > 64", b.nBits)) - } - b.bitContainer >>= v << 3 - b.nBits &= 7 -} - -// flush32 will flush out, so there are at least 32 bits available for writing. -func (b *bitWriter) flush32() { - if b.nBits < 32 { - return - } - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24)) - b.nBits -= 32 - b.bitContainer >>= 32 -} - -// flushAlign will flush remaining full bytes and align to next byte boundary. -func (b *bitWriter) flushAlign() { - nbBytes := (b.nBits + 7) >> 3 - for i := uint8(0); i < nbBytes; i++ { - b.out = append(b.out, byte(b.bitContainer>>(i*8))) - } - b.nBits = 0 - b.bitContainer = 0 -} - -// close will write the alignment bit and write the final byte(s) -// to the output. -func (b *bitWriter) close() { - // End mark - b.addBits16Clean(1, 1) - // flush until next byte. - b.flushAlign() -} - -// reset and continue writing by appending to out. -func (b *bitWriter) reset(out []byte) { - b.bitContainer = 0 - b.nBits = 0 - b.out = out -} diff --git a/vendor/github.com/klauspost/compress/fse/bytereader.go b/vendor/github.com/klauspost/compress/fse/bytereader.go deleted file mode 100644 index abade2d605..0000000000 --- a/vendor/github.com/klauspost/compress/fse/bytereader.go +++ /dev/null @@ -1,47 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package fse - -// byteReader provides a byte reader that reads -// little endian values from a byte stream. -// The input stream is manually advanced. -// The reader performs no bounds checks. -type byteReader struct { - b []byte - off int -} - -// init will initialize the reader and set the input. -func (b *byteReader) init(in []byte) { - b.b = in - b.off = 0 -} - -// advance the stream b n bytes. -func (b *byteReader) advance(n uint) { - b.off += int(n) -} - -// Uint32 returns a little endian uint32 starting at current offset. -func (b byteReader) Uint32() uint32 { - b2 := b.b[b.off:] - b2 = b2[:4] - v3 := uint32(b2[3]) - v2 := uint32(b2[2]) - v1 := uint32(b2[1]) - v0 := uint32(b2[0]) - return v0 | (v1 << 8) | (v2 << 16) | (v3 << 24) -} - -// unread returns the unread portion of the input. -func (b byteReader) unread() []byte { - return b.b[b.off:] -} - -// remain will return the number of bytes remaining. -func (b byteReader) remain() int { - return len(b.b) - b.off -} diff --git a/vendor/github.com/klauspost/compress/fse/compress.go b/vendor/github.com/klauspost/compress/fse/compress.go deleted file mode 100644 index 074018d8f9..0000000000 --- a/vendor/github.com/klauspost/compress/fse/compress.go +++ /dev/null @@ -1,683 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package fse - -import ( - "errors" - "fmt" -) - -// Compress the input bytes. Input must be < 2GB. -// Provide a Scratch buffer to avoid memory allocations. -// Note that the output is also kept in the scratch buffer. -// If input is too hard to compress, ErrIncompressible is returned. -// If input is a single byte value repeated ErrUseRLE is returned. -func Compress(in []byte, s *Scratch) ([]byte, error) { - if len(in) <= 1 { - return nil, ErrIncompressible - } - if len(in) > (2<<30)-1 { - return nil, errors.New("input too big, must be < 2GB") - } - s, err := s.prepare(in) - if err != nil { - return nil, err - } - - // Create histogram, if none was provided. - maxCount := s.maxCount - if maxCount == 0 { - maxCount = s.countSimple(in) - } - // Reset for next run. - s.clearCount = true - s.maxCount = 0 - if maxCount == len(in) { - // One symbol, use RLE - return nil, ErrUseRLE - } - if maxCount == 1 || maxCount < (len(in)>>7) { - // Each symbol present maximum once or too well distributed. - return nil, ErrIncompressible - } - s.optimalTableLog() - err = s.normalizeCount() - if err != nil { - return nil, err - } - err = s.writeCount() - if err != nil { - return nil, err - } - - if false { - err = s.validateNorm() - if err != nil { - return nil, err - } - } - - err = s.buildCTable() - if err != nil { - return nil, err - } - err = s.compress(in) - if err != nil { - return nil, err - } - s.Out = s.bw.out - // Check if we compressed. - if len(s.Out) >= len(in) { - return nil, ErrIncompressible - } - return s.Out, nil -} - -// cState contains the compression state of a stream. -type cState struct { - bw *bitWriter - stateTable []uint16 - state uint16 -} - -// init will initialize the compression state to the first symbol of the stream. -func (c *cState) init(bw *bitWriter, ct *cTable, tableLog uint8, first symbolTransform) { - c.bw = bw - c.stateTable = ct.stateTable - - nbBitsOut := (first.deltaNbBits + (1 << 15)) >> 16 - im := int32((nbBitsOut << 16) - first.deltaNbBits) - lu := (im >> nbBitsOut) + first.deltaFindState - c.state = c.stateTable[lu] -} - -// encode the output symbol provided and write it to the bitstream. -func (c *cState) encode(symbolTT symbolTransform) { - nbBitsOut := (uint32(c.state) + symbolTT.deltaNbBits) >> 16 - dstState := int32(c.state>>(nbBitsOut&15)) + symbolTT.deltaFindState - c.bw.addBits16NC(c.state, uint8(nbBitsOut)) - c.state = c.stateTable[dstState] -} - -// encode the output symbol provided and write it to the bitstream. -func (c *cState) encodeZero(symbolTT symbolTransform) { - nbBitsOut := (uint32(c.state) + symbolTT.deltaNbBits) >> 16 - dstState := int32(c.state>>(nbBitsOut&15)) + symbolTT.deltaFindState - c.bw.addBits16ZeroNC(c.state, uint8(nbBitsOut)) - c.state = c.stateTable[dstState] -} - -// flush will write the tablelog to the output and flush the remaining full bytes. -func (c *cState) flush(tableLog uint8) { - c.bw.flush32() - c.bw.addBits16NC(c.state, tableLog) - c.bw.flush() -} - -// compress is the main compression loop that will encode the input from the last byte to the first. -func (s *Scratch) compress(src []byte) error { - if len(src) <= 2 { - return errors.New("compress: src too small") - } - tt := s.ct.symbolTT[:256] - s.bw.reset(s.Out) - - // Our two states each encodes every second byte. - // Last byte encoded (first byte decoded) will always be encoded by c1. - var c1, c2 cState - - // Encode so remaining size is divisible by 4. - ip := len(src) - if ip&1 == 1 { - c1.init(&s.bw, &s.ct, s.actualTableLog, tt[src[ip-1]]) - c2.init(&s.bw, &s.ct, s.actualTableLog, tt[src[ip-2]]) - c1.encodeZero(tt[src[ip-3]]) - ip -= 3 - } else { - c2.init(&s.bw, &s.ct, s.actualTableLog, tt[src[ip-1]]) - c1.init(&s.bw, &s.ct, s.actualTableLog, tt[src[ip-2]]) - ip -= 2 - } - if ip&2 != 0 { - c2.encodeZero(tt[src[ip-1]]) - c1.encodeZero(tt[src[ip-2]]) - ip -= 2 - } - src = src[:ip] - - // Main compression loop. - switch { - case !s.zeroBits && s.actualTableLog <= 8: - // We can encode 4 symbols without requiring a flush. - // We do not need to check if any output is 0 bits. - for ; len(src) >= 4; src = src[:len(src)-4] { - s.bw.flush32() - v3, v2, v1, v0 := src[len(src)-4], src[len(src)-3], src[len(src)-2], src[len(src)-1] - c2.encode(tt[v0]) - c1.encode(tt[v1]) - c2.encode(tt[v2]) - c1.encode(tt[v3]) - } - case !s.zeroBits: - // We do not need to check if any output is 0 bits. - for ; len(src) >= 4; src = src[:len(src)-4] { - s.bw.flush32() - v3, v2, v1, v0 := src[len(src)-4], src[len(src)-3], src[len(src)-2], src[len(src)-1] - c2.encode(tt[v0]) - c1.encode(tt[v1]) - s.bw.flush32() - c2.encode(tt[v2]) - c1.encode(tt[v3]) - } - case s.actualTableLog <= 8: - // We can encode 4 symbols without requiring a flush - for ; len(src) >= 4; src = src[:len(src)-4] { - s.bw.flush32() - v3, v2, v1, v0 := src[len(src)-4], src[len(src)-3], src[len(src)-2], src[len(src)-1] - c2.encodeZero(tt[v0]) - c1.encodeZero(tt[v1]) - c2.encodeZero(tt[v2]) - c1.encodeZero(tt[v3]) - } - default: - for ; len(src) >= 4; src = src[:len(src)-4] { - s.bw.flush32() - v3, v2, v1, v0 := src[len(src)-4], src[len(src)-3], src[len(src)-2], src[len(src)-1] - c2.encodeZero(tt[v0]) - c1.encodeZero(tt[v1]) - s.bw.flush32() - c2.encodeZero(tt[v2]) - c1.encodeZero(tt[v3]) - } - } - - // Flush final state. - // Used to initialize state when decoding. - c2.flush(s.actualTableLog) - c1.flush(s.actualTableLog) - - s.bw.close() - return nil -} - -// writeCount will write the normalized histogram count to header. -// This is read back by readNCount. -func (s *Scratch) writeCount() error { - var ( - tableLog = s.actualTableLog - tableSize = 1 << tableLog - previous0 bool - charnum uint16 - - maxHeaderSize = ((int(s.symbolLen)*int(tableLog) + 4 + 2) >> 3) + 3 - - // Write Table Size - bitStream = uint32(tableLog - minTablelog) - bitCount = uint(4) - remaining = int16(tableSize + 1) /* +1 for extra accuracy */ - threshold = int16(tableSize) - nbBits = uint(tableLog + 1) - ) - if cap(s.Out) < maxHeaderSize { - s.Out = make([]byte, 0, s.br.remain()+maxHeaderSize) - } - outP := uint(0) - out := s.Out[:maxHeaderSize] - - // stops at 1 - for remaining > 1 { - if previous0 { - start := charnum - for s.norm[charnum] == 0 { - charnum++ - } - for charnum >= start+24 { - start += 24 - bitStream += uint32(0xFFFF) << bitCount - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - } - for charnum >= start+3 { - start += 3 - bitStream += 3 << bitCount - bitCount += 2 - } - bitStream += uint32(charnum-start) << bitCount - bitCount += 2 - if bitCount > 16 { - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - bitCount -= 16 - } - } - - count := s.norm[charnum] - charnum++ - max := (2*threshold - 1) - remaining - if count < 0 { - remaining += count - } else { - remaining -= count - } - count++ // +1 for extra accuracy - if count >= threshold { - count += max // [0..max[ [max..threshold[ (...) [threshold+max 2*threshold[ - } - bitStream += uint32(count) << bitCount - bitCount += nbBits - if count < max { - bitCount-- - } - - previous0 = count == 1 - if remaining < 1 { - return errors.New("internal error: remaining<1") - } - for remaining < threshold { - nbBits-- - threshold >>= 1 - } - - if bitCount > 16 { - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - bitCount -= 16 - } - } - - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += (bitCount + 7) / 8 - - if charnum > s.symbolLen { - return errors.New("internal error: charnum > s.symbolLen") - } - s.Out = out[:outP] - return nil -} - -// symbolTransform contains the state transform for a symbol. -type symbolTransform struct { - deltaFindState int32 - deltaNbBits uint32 -} - -// String prints values as a human readable string. -func (s symbolTransform) String() string { - return fmt.Sprintf("dnbits: %08x, fs:%d", s.deltaNbBits, s.deltaFindState) -} - -// cTable contains tables used for compression. -type cTable struct { - tableSymbol []byte - stateTable []uint16 - symbolTT []symbolTransform -} - -// allocCtable will allocate tables needed for compression. -// If existing tables a re big enough, they are simply re-used. -func (s *Scratch) allocCtable() { - tableSize := 1 << s.actualTableLog - // get tableSymbol that is big enough. - if cap(s.ct.tableSymbol) < tableSize { - s.ct.tableSymbol = make([]byte, tableSize) - } - s.ct.tableSymbol = s.ct.tableSymbol[:tableSize] - - ctSize := tableSize - if cap(s.ct.stateTable) < ctSize { - s.ct.stateTable = make([]uint16, ctSize) - } - s.ct.stateTable = s.ct.stateTable[:ctSize] - - if cap(s.ct.symbolTT) < 256 { - s.ct.symbolTT = make([]symbolTransform, 256) - } - s.ct.symbolTT = s.ct.symbolTT[:256] -} - -// buildCTable will populate the compression table so it is ready to be used. -func (s *Scratch) buildCTable() error { - tableSize := uint32(1 << s.actualTableLog) - highThreshold := tableSize - 1 - var cumul [maxSymbolValue + 2]int16 - - s.allocCtable() - tableSymbol := s.ct.tableSymbol[:tableSize] - // symbol start positions - { - cumul[0] = 0 - for ui, v := range s.norm[:s.symbolLen-1] { - u := byte(ui) // one less than reference - if v == -1 { - // Low proba symbol - cumul[u+1] = cumul[u] + 1 - tableSymbol[highThreshold] = u - highThreshold-- - } else { - cumul[u+1] = cumul[u] + v - } - } - // Encode last symbol separately to avoid overflowing u - u := int(s.symbolLen - 1) - v := s.norm[s.symbolLen-1] - if v == -1 { - // Low proba symbol - cumul[u+1] = cumul[u] + 1 - tableSymbol[highThreshold] = byte(u) - highThreshold-- - } else { - cumul[u+1] = cumul[u] + v - } - if uint32(cumul[s.symbolLen]) != tableSize { - return fmt.Errorf("internal error: expected cumul[s.symbolLen] (%d) == tableSize (%d)", cumul[s.symbolLen], tableSize) - } - cumul[s.symbolLen] = int16(tableSize) + 1 - } - // Spread symbols - s.zeroBits = false - { - step := tableStep(tableSize) - tableMask := tableSize - 1 - var position uint32 - // if any symbol > largeLimit, we may have 0 bits output. - largeLimit := int16(1 << (s.actualTableLog - 1)) - for ui, v := range s.norm[:s.symbolLen] { - symbol := byte(ui) - if v > largeLimit { - s.zeroBits = true - } - for nbOccurrences := int16(0); nbOccurrences < v; nbOccurrences++ { - tableSymbol[position] = symbol - position = (position + step) & tableMask - for position > highThreshold { - position = (position + step) & tableMask - } /* Low proba area */ - } - } - - // Check if we have gone through all positions - if position != 0 { - return errors.New("position!=0") - } - } - - // Build table - table := s.ct.stateTable - { - tsi := int(tableSize) - for u, v := range tableSymbol { - // TableU16 : sorted by symbol order; gives next state value - table[cumul[v]] = uint16(tsi + u) - cumul[v]++ - } - } - - // Build Symbol Transformation Table - { - total := int16(0) - symbolTT := s.ct.symbolTT[:s.symbolLen] - tableLog := s.actualTableLog - tl := (uint32(tableLog) << 16) - (1 << tableLog) - for i, v := range s.norm[:s.symbolLen] { - switch v { - case 0: - case -1, 1: - symbolTT[i].deltaNbBits = tl - symbolTT[i].deltaFindState = int32(total - 1) - total++ - default: - maxBitsOut := uint32(tableLog) - highBits(uint32(v-1)) - minStatePlus := uint32(v) << maxBitsOut - symbolTT[i].deltaNbBits = (maxBitsOut << 16) - minStatePlus - symbolTT[i].deltaFindState = int32(total - v) - total += v - } - } - if total != int16(tableSize) { - return fmt.Errorf("total mismatch %d (got) != %d (want)", total, tableSize) - } - } - return nil -} - -// countSimple will create a simple histogram in s.count. -// Returns the biggest count. -// Does not update s.clearCount. -func (s *Scratch) countSimple(in []byte) (max int) { - for _, v := range in { - s.count[v]++ - } - m, symlen := uint32(0), s.symbolLen - for i, v := range s.count[:] { - if v == 0 { - continue - } - if v > m { - m = v - } - symlen = uint16(i) + 1 - } - s.symbolLen = symlen - return int(m) -} - -// minTableLog provides the minimum logSize to safely represent a distribution. -func (s *Scratch) minTableLog() uint8 { - minBitsSrc := highBits(uint32(s.br.remain()-1)) + 1 - minBitsSymbols := highBits(uint32(s.symbolLen-1)) + 2 - if minBitsSrc < minBitsSymbols { - return uint8(minBitsSrc) - } - return uint8(minBitsSymbols) -} - -// optimalTableLog calculates and sets the optimal tableLog in s.actualTableLog -func (s *Scratch) optimalTableLog() { - tableLog := s.TableLog - minBits := s.minTableLog() - maxBitsSrc := uint8(highBits(uint32(s.br.remain()-1))) - 2 - if maxBitsSrc < tableLog { - // Accuracy can be reduced - tableLog = maxBitsSrc - } - if minBits > tableLog { - tableLog = minBits - } - // Need a minimum to safely represent all symbol values - if tableLog < minTablelog { - tableLog = minTablelog - } - if tableLog > maxTableLog { - tableLog = maxTableLog - } - s.actualTableLog = tableLog -} - -var rtbTable = [...]uint32{0, 473195, 504333, 520860, 550000, 700000, 750000, 830000} - -// normalizeCount will normalize the count of the symbols so -// the total is equal to the table size. -func (s *Scratch) normalizeCount() error { - var ( - tableLog = s.actualTableLog - scale = 62 - uint64(tableLog) - step = (1 << 62) / uint64(s.br.remain()) - vStep = uint64(1) << (scale - 20) - stillToDistribute = int16(1 << tableLog) - largest int - largestP int16 - lowThreshold = (uint32)(s.br.remain() >> tableLog) - ) - - for i, cnt := range s.count[:s.symbolLen] { - // already handled - // if (count[s] == s.length) return 0; /* rle special case */ - - if cnt == 0 { - s.norm[i] = 0 - continue - } - if cnt <= lowThreshold { - s.norm[i] = -1 - stillToDistribute-- - } else { - proba := (int16)((uint64(cnt) * step) >> scale) - if proba < 8 { - restToBeat := vStep * uint64(rtbTable[proba]) - v := uint64(cnt)*step - (uint64(proba) << scale) - if v > restToBeat { - proba++ - } - } - if proba > largestP { - largestP = proba - largest = i - } - s.norm[i] = proba - stillToDistribute -= proba - } - } - - if -stillToDistribute >= (s.norm[largest] >> 1) { - // corner case, need another normalization method - return s.normalizeCount2() - } - s.norm[largest] += stillToDistribute - return nil -} - -// Secondary normalization method. -// To be used when primary method fails. -func (s *Scratch) normalizeCount2() error { - const notYetAssigned = -2 - var ( - distributed uint32 - total = uint32(s.br.remain()) - tableLog = s.actualTableLog - lowThreshold = total >> tableLog - lowOne = (total * 3) >> (tableLog + 1) - ) - for i, cnt := range s.count[:s.symbolLen] { - if cnt == 0 { - s.norm[i] = 0 - continue - } - if cnt <= lowThreshold { - s.norm[i] = -1 - distributed++ - total -= cnt - continue - } - if cnt <= lowOne { - s.norm[i] = 1 - distributed++ - total -= cnt - continue - } - s.norm[i] = notYetAssigned - } - toDistribute := (1 << tableLog) - distributed - - if (total / toDistribute) > lowOne { - // risk of rounding to zero - lowOne = (total * 3) / (toDistribute * 2) - for i, cnt := range s.count[:s.symbolLen] { - if (s.norm[i] == notYetAssigned) && (cnt <= lowOne) { - s.norm[i] = 1 - distributed++ - total -= cnt - continue - } - } - toDistribute = (1 << tableLog) - distributed - } - if distributed == uint32(s.symbolLen)+1 { - // all values are pretty poor; - // probably incompressible data (should have already been detected); - // find max, then give all remaining points to max - var maxV int - var maxC uint32 - for i, cnt := range s.count[:s.symbolLen] { - if cnt > maxC { - maxV = i - maxC = cnt - } - } - s.norm[maxV] += int16(toDistribute) - return nil - } - - if total == 0 { - // all of the symbols were low enough for the lowOne or lowThreshold - for i := uint32(0); toDistribute > 0; i = (i + 1) % (uint32(s.symbolLen)) { - if s.norm[i] > 0 { - toDistribute-- - s.norm[i]++ - } - } - return nil - } - - var ( - vStepLog = 62 - uint64(tableLog) - mid = uint64((1 << (vStepLog - 1)) - 1) - rStep = (((1 << vStepLog) * uint64(toDistribute)) + mid) / uint64(total) // scale on remaining - tmpTotal = mid - ) - for i, cnt := range s.count[:s.symbolLen] { - if s.norm[i] == notYetAssigned { - var ( - end = tmpTotal + uint64(cnt)*rStep - sStart = uint32(tmpTotal >> vStepLog) - sEnd = uint32(end >> vStepLog) - weight = sEnd - sStart - ) - if weight < 1 { - return errors.New("weight < 1") - } - s.norm[i] = int16(weight) - tmpTotal = end - } - } - return nil -} - -// validateNorm validates the normalized histogram table. -func (s *Scratch) validateNorm() (err error) { - var total int - for _, v := range s.norm[:s.symbolLen] { - if v >= 0 { - total += int(v) - } else { - total -= int(v) - } - } - defer func() { - if err == nil { - return - } - fmt.Printf("selected TableLog: %d, Symbol length: %d\n", s.actualTableLog, s.symbolLen) - for i, v := range s.norm[:s.symbolLen] { - fmt.Printf("%3d: %5d -> %4d \n", i, s.count[i], v) - } - }() - if total != (1 << s.actualTableLog) { - return fmt.Errorf("warning: Total == %d != %d", total, 1< tablelogAbsoluteMax { - return errors.New("tableLog too large") - } - bitStream >>= 4 - bitCount := uint(4) - - s.actualTableLog = uint8(nbBits) - remaining := int32((1 << nbBits) + 1) - threshold := int32(1 << nbBits) - gotTotal := int32(0) - nbBits++ - - for remaining > 1 { - if previous0 { - n0 := charnum - for (bitStream & 0xFFFF) == 0xFFFF { - n0 += 24 - if b.off < iend-5 { - b.advance(2) - bitStream = b.Uint32() >> bitCount - } else { - bitStream >>= 16 - bitCount += 16 - } - } - for (bitStream & 3) == 3 { - n0 += 3 - bitStream >>= 2 - bitCount += 2 - } - n0 += uint16(bitStream & 3) - bitCount += 2 - if n0 > maxSymbolValue { - return errors.New("maxSymbolValue too small") - } - for charnum < n0 { - s.norm[charnum&0xff] = 0 - charnum++ - } - - if b.off <= iend-7 || b.off+int(bitCount>>3) <= iend-4 { - b.advance(bitCount >> 3) - bitCount &= 7 - bitStream = b.Uint32() >> bitCount - } else { - bitStream >>= 2 - } - } - - max := (2*(threshold) - 1) - (remaining) - var count int32 - - if (int32(bitStream) & (threshold - 1)) < max { - count = int32(bitStream) & (threshold - 1) - bitCount += nbBits - 1 - } else { - count = int32(bitStream) & (2*threshold - 1) - if count >= threshold { - count -= max - } - bitCount += nbBits - } - - count-- // extra accuracy - if count < 0 { - // -1 means +1 - remaining += count - gotTotal -= count - } else { - remaining -= count - gotTotal += count - } - s.norm[charnum&0xff] = int16(count) - charnum++ - previous0 = count == 0 - for remaining < threshold { - nbBits-- - threshold >>= 1 - } - if b.off <= iend-7 || b.off+int(bitCount>>3) <= iend-4 { - b.advance(bitCount >> 3) - bitCount &= 7 - } else { - bitCount -= (uint)(8 * (len(b.b) - 4 - b.off)) - b.off = len(b.b) - 4 - } - bitStream = b.Uint32() >> (bitCount & 31) - } - s.symbolLen = charnum - - if s.symbolLen <= 1 { - return fmt.Errorf("symbolLen (%d) too small", s.symbolLen) - } - if s.symbolLen > maxSymbolValue+1 { - return fmt.Errorf("symbolLen (%d) too big", s.symbolLen) - } - if remaining != 1 { - return fmt.Errorf("corruption detected (remaining %d != 1)", remaining) - } - if bitCount > 32 { - return fmt.Errorf("corruption detected (bitCount %d > 32)", bitCount) - } - if gotTotal != 1<> 3) - return nil -} - -// decSymbol contains information about a state entry, -// Including the state offset base, the output symbol and -// the number of bits to read for the low part of the destination state. -type decSymbol struct { - newState uint16 - symbol uint8 - nbBits uint8 -} - -// allocDtable will allocate decoding tables if they are not big enough. -func (s *Scratch) allocDtable() { - tableSize := 1 << s.actualTableLog - if cap(s.decTable) < tableSize { - s.decTable = make([]decSymbol, tableSize) - } - s.decTable = s.decTable[:tableSize] - - if cap(s.ct.tableSymbol) < 256 { - s.ct.tableSymbol = make([]byte, 256) - } - s.ct.tableSymbol = s.ct.tableSymbol[:256] - - if cap(s.ct.stateTable) < 256 { - s.ct.stateTable = make([]uint16, 256) - } - s.ct.stateTable = s.ct.stateTable[:256] -} - -// buildDtable will build the decoding table. -func (s *Scratch) buildDtable() error { - tableSize := uint32(1 << s.actualTableLog) - highThreshold := tableSize - 1 - s.allocDtable() - symbolNext := s.ct.stateTable[:256] - - // Init, lay down lowprob symbols - s.zeroBits = false - { - largeLimit := int16(1 << (s.actualTableLog - 1)) - for i, v := range s.norm[:s.symbolLen] { - if v == -1 { - s.decTable[highThreshold].symbol = uint8(i) - highThreshold-- - symbolNext[i] = 1 - } else { - if v >= largeLimit { - s.zeroBits = true - } - symbolNext[i] = uint16(v) - } - } - } - // Spread symbols - { - tableMask := tableSize - 1 - step := tableStep(tableSize) - position := uint32(0) - for ss, v := range s.norm[:s.symbolLen] { - for i := 0; i < int(v); i++ { - s.decTable[position].symbol = uint8(ss) - position = (position + step) & tableMask - for position > highThreshold { - // lowprob area - position = (position + step) & tableMask - } - } - } - if position != 0 { - // position must reach all cells once, otherwise normalizedCounter is incorrect - return errors.New("corrupted input (position != 0)") - } - } - - // Build Decoding table - { - tableSize := uint16(1 << s.actualTableLog) - for u, v := range s.decTable { - symbol := v.symbol - nextState := symbolNext[symbol] - symbolNext[symbol] = nextState + 1 - nBits := s.actualTableLog - byte(highBits(uint32(nextState))) - s.decTable[u].nbBits = nBits - newState := (nextState << nBits) - tableSize - if newState >= tableSize { - return fmt.Errorf("newState (%d) outside table size (%d)", newState, tableSize) - } - if newState == uint16(u) && nBits == 0 { - // Seems weird that this is possible with nbits > 0. - return fmt.Errorf("newState (%d) == oldState (%d) and no bits", newState, u) - } - s.decTable[u].newState = newState - } - } - return nil -} - -// decompress will decompress the bitstream. -// If the buffer is over-read an error is returned. -func (s *Scratch) decompress() error { - br := &s.bits - if err := br.init(s.br.unread()); err != nil { - return err - } - - var s1, s2 decoder - // Initialize and decode first state and symbol. - s1.init(br, s.decTable, s.actualTableLog) - s2.init(br, s.decTable, s.actualTableLog) - - // Use temp table to avoid bound checks/append penalty. - var tmp = s.ct.tableSymbol[:256] - var off uint8 - - // Main part - if !s.zeroBits { - for br.off >= 8 { - br.fillFast() - tmp[off+0] = s1.nextFast() - tmp[off+1] = s2.nextFast() - br.fillFast() - tmp[off+2] = s1.nextFast() - tmp[off+3] = s2.nextFast() - off += 4 - // When off is 0, we have overflowed and should write. - if off == 0 { - s.Out = append(s.Out, tmp...) - if len(s.Out) >= s.DecompressLimit { - return fmt.Errorf("output size (%d) > DecompressLimit (%d)", len(s.Out), s.DecompressLimit) - } - } - } - } else { - for br.off >= 8 { - br.fillFast() - tmp[off+0] = s1.next() - tmp[off+1] = s2.next() - br.fillFast() - tmp[off+2] = s1.next() - tmp[off+3] = s2.next() - off += 4 - if off == 0 { - s.Out = append(s.Out, tmp...) - // When off is 0, we have overflowed and should write. - if len(s.Out) >= s.DecompressLimit { - return fmt.Errorf("output size (%d) > DecompressLimit (%d)", len(s.Out), s.DecompressLimit) - } - } - } - } - s.Out = append(s.Out, tmp[:off]...) - - // Final bits, a bit more expensive check - for { - if s1.finished() { - s.Out = append(s.Out, s1.final(), s2.final()) - break - } - br.fill() - s.Out = append(s.Out, s1.next()) - if s2.finished() { - s.Out = append(s.Out, s2.final(), s1.final()) - break - } - s.Out = append(s.Out, s2.next()) - if len(s.Out) >= s.DecompressLimit { - return fmt.Errorf("output size (%d) > DecompressLimit (%d)", len(s.Out), s.DecompressLimit) - } - } - return br.close() -} - -// decoder keeps track of the current state and updates it from the bitstream. -type decoder struct { - state uint16 - br *bitReader - dt []decSymbol -} - -// init will initialize the decoder and read the first state from the stream. -func (d *decoder) init(in *bitReader, dt []decSymbol, tableLog uint8) { - d.dt = dt - d.br = in - d.state = in.getBits(tableLog) -} - -// next returns the next symbol and sets the next state. -// At least tablelog bits must be available in the bit reader. -func (d *decoder) next() uint8 { - n := &d.dt[d.state] - lowBits := d.br.getBits(n.nbBits) - d.state = n.newState + lowBits - return n.symbol -} - -// finished returns true if all bits have been read from the bitstream -// and the next state would require reading bits from the input. -func (d *decoder) finished() bool { - return d.br.finished() && d.dt[d.state].nbBits > 0 -} - -// final returns the current state symbol without decoding the next. -func (d *decoder) final() uint8 { - return d.dt[d.state].symbol -} - -// nextFast returns the next symbol and sets the next state. -// This can only be used if no symbols are 0 bits. -// At least tablelog bits must be available in the bit reader. -func (d *decoder) nextFast() uint8 { - n := d.dt[d.state] - lowBits := d.br.getBitsFast(n.nbBits) - d.state = n.newState + lowBits - return n.symbol -} diff --git a/vendor/github.com/klauspost/compress/fse/fse.go b/vendor/github.com/klauspost/compress/fse/fse.go deleted file mode 100644 index 535cbadfde..0000000000 --- a/vendor/github.com/klauspost/compress/fse/fse.go +++ /dev/null @@ -1,144 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -// Package fse provides Finite State Entropy encoding and decoding. -// -// Finite State Entropy encoding provides a fast near-optimal symbol encoding/decoding -// for byte blocks as implemented in zstd. -// -// See https://github.com/klauspost/compress/tree/master/fse for more information. -package fse - -import ( - "errors" - "fmt" - "math/bits" -) - -const ( - /*!MEMORY_USAGE : - * Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.) - * Increasing memory usage improves compression ratio - * Reduced memory usage can improve speed, due to cache effect - * Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */ - maxMemoryUsage = 14 - defaultMemoryUsage = 13 - - maxTableLog = maxMemoryUsage - 2 - maxTablesize = 1 << maxTableLog - defaultTablelog = defaultMemoryUsage - 2 - minTablelog = 5 - maxSymbolValue = 255 -) - -var ( - // ErrIncompressible is returned when input is judged to be too hard to compress. - ErrIncompressible = errors.New("input is not compressible") - - // ErrUseRLE is returned from the compressor when the input is a single byte value repeated. - ErrUseRLE = errors.New("input is single value repeated") -) - -// Scratch provides temporary storage for compression and decompression. -type Scratch struct { - // Private - count [maxSymbolValue + 1]uint32 - norm [maxSymbolValue + 1]int16 - br byteReader - bits bitReader - bw bitWriter - ct cTable // Compression tables. - decTable []decSymbol // Decompression table. - maxCount int // count of the most probable symbol - - // Per block parameters. - // These can be used to override compression parameters of the block. - // Do not touch, unless you know what you are doing. - - // Out is output buffer. - // If the scratch is re-used before the caller is done processing the output, - // set this field to nil. - // Otherwise the output buffer will be re-used for next Compression/Decompression step - // and allocation will be avoided. - Out []byte - - // DecompressLimit limits the maximum decoded size acceptable. - // If > 0 decompression will stop when approximately this many bytes - // has been decoded. - // If 0, maximum size will be 2GB. - DecompressLimit int - - symbolLen uint16 // Length of active part of the symbol table. - actualTableLog uint8 // Selected tablelog. - zeroBits bool // no bits has prob > 50%. - clearCount bool // clear count - - // MaxSymbolValue will override the maximum symbol value of the next block. - MaxSymbolValue uint8 - - // TableLog will attempt to override the tablelog for the next block. - TableLog uint8 -} - -// Histogram allows to populate the histogram and skip that step in the compression, -// It otherwise allows to inspect the histogram when compression is done. -// To indicate that you have populated the histogram call HistogramFinished -// with the value of the highest populated symbol, as well as the number of entries -// in the most populated entry. These are accepted at face value. -// The returned slice will always be length 256. -func (s *Scratch) Histogram() []uint32 { - return s.count[:] -} - -// HistogramFinished can be called to indicate that the histogram has been populated. -// maxSymbol is the index of the highest set symbol of the next data segment. -// maxCount is the number of entries in the most populated entry. -// These are accepted at face value. -func (s *Scratch) HistogramFinished(maxSymbol uint8, maxCount int) { - s.maxCount = maxCount - s.symbolLen = uint16(maxSymbol) + 1 - s.clearCount = maxCount != 0 -} - -// prepare will prepare and allocate scratch tables used for both compression and decompression. -func (s *Scratch) prepare(in []byte) (*Scratch, error) { - if s == nil { - s = &Scratch{} - } - if s.MaxSymbolValue == 0 { - s.MaxSymbolValue = 255 - } - if s.TableLog == 0 { - s.TableLog = defaultTablelog - } - if s.TableLog > maxTableLog { - return nil, fmt.Errorf("tableLog (%d) > maxTableLog (%d)", s.TableLog, maxTableLog) - } - if cap(s.Out) == 0 { - s.Out = make([]byte, 0, len(in)) - } - if s.clearCount && s.maxCount == 0 { - for i := range s.count { - s.count[i] = 0 - } - s.clearCount = false - } - s.br.init(in) - if s.DecompressLimit == 0 { - // Max size 2GB. - s.DecompressLimit = (2 << 30) - 1 - } - - return s, nil -} - -// tableStep returns the next table index. -func tableStep(tableSize uint32) uint32 { - return (tableSize >> 1) + (tableSize >> 3) + 3 -} - -func highBits(val uint32) (n uint32) { - return uint32(bits.Len32(val) - 1) -} diff --git a/vendor/github.com/klauspost/compress/gen.sh b/vendor/github.com/klauspost/compress/gen.sh deleted file mode 100644 index aff942205f..0000000000 --- a/vendor/github.com/klauspost/compress/gen.sh +++ /dev/null @@ -1,4 +0,0 @@ -#!/bin/sh - -cd s2/cmd/_s2sx/ || exit 1 -go generate . diff --git a/vendor/github.com/klauspost/compress/huff0/.gitignore b/vendor/github.com/klauspost/compress/huff0/.gitignore deleted file mode 100644 index b3d262958f..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/.gitignore +++ /dev/null @@ -1 +0,0 @@ -/huff0-fuzz.zip diff --git a/vendor/github.com/klauspost/compress/huff0/README.md b/vendor/github.com/klauspost/compress/huff0/README.md deleted file mode 100644 index 8b6e5c6638..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/README.md +++ /dev/null @@ -1,89 +0,0 @@ -# Huff0 entropy compression - -This package provides Huff0 encoding and decoding as used in zstd. - -[Huff0](https://github.com/Cyan4973/FiniteStateEntropy#new-generation-entropy-coders), -a Huffman codec designed for modern CPU, featuring OoO (Out of Order) operations on multiple ALU -(Arithmetic Logic Unit), achieving extremely fast compression and decompression speeds. - -This can be used for compressing input with a lot of similar input values to the smallest number of bytes. -This does not perform any multi-byte [dictionary coding](https://en.wikipedia.org/wiki/Dictionary_coder) as LZ coders, -but it can be used as a secondary step to compressors (like Snappy) that does not do entropy encoding. - -* [Godoc documentation](https://godoc.org/github.com/klauspost/compress/huff0) - -## News - -This is used as part of the [zstandard](https://github.com/klauspost/compress/tree/master/zstd#zstd) compression and decompression package. - -This ensures that most functionality is well tested. - -# Usage - -This package provides a low level interface that allows to compress single independent blocks. - -Each block is separate, and there is no built in integrity checks. -This means that the caller should keep track of block sizes and also do checksums if needed. - -Compressing a block is done via the [`Compress1X`](https://godoc.org/github.com/klauspost/compress/huff0#Compress1X) and -[`Compress4X`](https://godoc.org/github.com/klauspost/compress/huff0#Compress4X) functions. -You must provide input and will receive the output and maybe an error. - -These error values can be returned: - -| Error | Description | -|---------------------|-----------------------------------------------------------------------------| -| `` | Everything ok, output is returned | -| `ErrIncompressible` | Returned when input is judged to be too hard to compress | -| `ErrUseRLE` | Returned from the compressor when the input is a single byte value repeated | -| `ErrTooBig` | Returned if the input block exceeds the maximum allowed size (128 Kib) | -| `(error)` | An internal error occurred. | - - -As can be seen above some of there are errors that will be returned even under normal operation so it is important to handle these. - -To reduce allocations you can provide a [`Scratch`](https://godoc.org/github.com/klauspost/compress/huff0#Scratch) object -that can be re-used for successive calls. Both compression and decompression accepts a `Scratch` object, and the same -object can be used for both. - -Be aware, that when re-using a `Scratch` object that the *output* buffer is also re-used, so if you are still using this -you must set the `Out` field in the scratch to nil. The same buffer is used for compression and decompression output. - -The `Scratch` object will retain state that allows to re-use previous tables for encoding and decoding. - -## Tables and re-use - -Huff0 allows for reusing tables from the previous block to save space if that is expected to give better/faster results. - -The Scratch object allows you to set a [`ReusePolicy`](https://godoc.org/github.com/klauspost/compress/huff0#ReusePolicy) -that controls this behaviour. See the documentation for details. This can be altered between each block. - -Do however note that this information is *not* stored in the output block and it is up to the users of the package to -record whether [`ReadTable`](https://godoc.org/github.com/klauspost/compress/huff0#ReadTable) should be called, -based on the boolean reported back from the CompressXX call. - -If you want to store the table separate from the data, you can access them as `OutData` and `OutTable` on the -[`Scratch`](https://godoc.org/github.com/klauspost/compress/huff0#Scratch) object. - -## Decompressing - -The first part of decoding is to initialize the decoding table through [`ReadTable`](https://godoc.org/github.com/klauspost/compress/huff0#ReadTable). -This will initialize the decoding tables. -You can supply the complete block to `ReadTable` and it will return the data part of the block -which can be given to the decompressor. - -Decompressing is done by calling the [`Decompress1X`](https://godoc.org/github.com/klauspost/compress/huff0#Scratch.Decompress1X) -or [`Decompress4X`](https://godoc.org/github.com/klauspost/compress/huff0#Scratch.Decompress4X) function. - -For concurrently decompressing content with a fixed table a stateless [`Decoder`](https://godoc.org/github.com/klauspost/compress/huff0#Decoder) can be requested which will remain correct as long as the scratch is unchanged. The capacity of the provided slice indicates the expected output size. - -You must provide the output from the compression stage, at exactly the size you got back. If you receive an error back -your input was likely corrupted. - -It is important to note that a successful decoding does *not* mean your output matches your original input. -There are no integrity checks, so relying on errors from the decompressor does not assure your data is valid. - -# Contributing - -Contributions are always welcome. Be aware that adding public functions will require good justification and breaking -changes will likely not be accepted. If in doubt open an issue before writing the PR. diff --git a/vendor/github.com/klauspost/compress/huff0/bitreader.go b/vendor/github.com/klauspost/compress/huff0/bitreader.go deleted file mode 100644 index e36d9742f9..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/bitreader.go +++ /dev/null @@ -1,229 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package huff0 - -import ( - "encoding/binary" - "errors" - "fmt" - "io" -) - -// bitReader reads a bitstream in reverse. -// The last set bit indicates the start of the stream and is used -// for aligning the input. -type bitReaderBytes struct { - in []byte - off uint // next byte to read is at in[off - 1] - value uint64 - bitsRead uint8 -} - -// init initializes and resets the bit reader. -func (b *bitReaderBytes) init(in []byte) error { - if len(in) < 1 { - return errors.New("corrupt stream: too short") - } - b.in = in - b.off = uint(len(in)) - // The highest bit of the last byte indicates where to start - v := in[len(in)-1] - if v == 0 { - return errors.New("corrupt stream, did not find end of stream") - } - b.bitsRead = 64 - b.value = 0 - if len(in) >= 8 { - b.fillFastStart() - } else { - b.fill() - b.fill() - } - b.advance(8 - uint8(highBit32(uint32(v)))) - return nil -} - -// peekBitsFast requires that at least one bit is requested every time. -// There are no checks if the buffer is filled. -func (b *bitReaderBytes) peekByteFast() uint8 { - got := uint8(b.value >> 56) - return got -} - -func (b *bitReaderBytes) advance(n uint8) { - b.bitsRead += n - b.value <<= n & 63 -} - -// fillFast() will make sure at least 32 bits are available. -// There must be at least 4 bytes available. -func (b *bitReaderBytes) fillFast() { - if b.bitsRead < 32 { - return - } - - // 2 bounds checks. - v := b.in[b.off-4 : b.off] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value |= uint64(low) << (b.bitsRead - 32) - b.bitsRead -= 32 - b.off -= 4 -} - -// fillFastStart() assumes the bitReaderBytes is empty and there is at least 8 bytes to read. -func (b *bitReaderBytes) fillFastStart() { - // Do single re-slice to avoid bounds checks. - b.value = binary.LittleEndian.Uint64(b.in[b.off-8:]) - b.bitsRead = 0 - b.off -= 8 -} - -// fill() will make sure at least 32 bits are available. -func (b *bitReaderBytes) fill() { - if b.bitsRead < 32 { - return - } - if b.off > 4 { - v := b.in[b.off-4 : b.off] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value |= uint64(low) << (b.bitsRead - 32) - b.bitsRead -= 32 - b.off -= 4 - return - } - for b.off > 0 { - b.value |= uint64(b.in[b.off-1]) << (b.bitsRead - 8) - b.bitsRead -= 8 - b.off-- - } -} - -// finished returns true if all bits have been read from the bit stream. -func (b *bitReaderBytes) finished() bool { - return b.off == 0 && b.bitsRead >= 64 -} - -func (b *bitReaderBytes) remaining() uint { - return b.off*8 + uint(64-b.bitsRead) -} - -// close the bitstream and returns an error if out-of-buffer reads occurred. -func (b *bitReaderBytes) close() error { - // Release reference. - b.in = nil - if b.remaining() > 0 { - return fmt.Errorf("corrupt input: %d bits remain on stream", b.remaining()) - } - if b.bitsRead > 64 { - return io.ErrUnexpectedEOF - } - return nil -} - -// bitReaderShifted reads a bitstream in reverse. -// The last set bit indicates the start of the stream and is used -// for aligning the input. -type bitReaderShifted struct { - in []byte - off uint // next byte to read is at in[off - 1] - value uint64 - bitsRead uint8 -} - -// init initializes and resets the bit reader. -func (b *bitReaderShifted) init(in []byte) error { - if len(in) < 1 { - return errors.New("corrupt stream: too short") - } - b.in = in - b.off = uint(len(in)) - // The highest bit of the last byte indicates where to start - v := in[len(in)-1] - if v == 0 { - return errors.New("corrupt stream, did not find end of stream") - } - b.bitsRead = 64 - b.value = 0 - if len(in) >= 8 { - b.fillFastStart() - } else { - b.fill() - b.fill() - } - b.advance(8 - uint8(highBit32(uint32(v)))) - return nil -} - -// peekBitsFast requires that at least one bit is requested every time. -// There are no checks if the buffer is filled. -func (b *bitReaderShifted) peekBitsFast(n uint8) uint16 { - return uint16(b.value >> ((64 - n) & 63)) -} - -func (b *bitReaderShifted) advance(n uint8) { - b.bitsRead += n - b.value <<= n & 63 -} - -// fillFast() will make sure at least 32 bits are available. -// There must be at least 4 bytes available. -func (b *bitReaderShifted) fillFast() { - if b.bitsRead < 32 { - return - } - - // 2 bounds checks. - v := b.in[b.off-4 : b.off] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value |= uint64(low) << ((b.bitsRead - 32) & 63) - b.bitsRead -= 32 - b.off -= 4 -} - -// fillFastStart() assumes the bitReaderShifted is empty and there is at least 8 bytes to read. -func (b *bitReaderShifted) fillFastStart() { - // Do single re-slice to avoid bounds checks. - b.value = binary.LittleEndian.Uint64(b.in[b.off-8:]) - b.bitsRead = 0 - b.off -= 8 -} - -// fill() will make sure at least 32 bits are available. -func (b *bitReaderShifted) fill() { - if b.bitsRead < 32 { - return - } - if b.off > 4 { - v := b.in[b.off-4 : b.off] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value |= uint64(low) << ((b.bitsRead - 32) & 63) - b.bitsRead -= 32 - b.off -= 4 - return - } - for b.off > 0 { - b.value |= uint64(b.in[b.off-1]) << ((b.bitsRead - 8) & 63) - b.bitsRead -= 8 - b.off-- - } -} - -func (b *bitReaderShifted) remaining() uint { - return b.off*8 + uint(64-b.bitsRead) -} - -// close the bitstream and returns an error if out-of-buffer reads occurred. -func (b *bitReaderShifted) close() error { - // Release reference. - b.in = nil - if b.remaining() > 0 { - return fmt.Errorf("corrupt input: %d bits remain on stream", b.remaining()) - } - if b.bitsRead > 64 { - return io.ErrUnexpectedEOF - } - return nil -} diff --git a/vendor/github.com/klauspost/compress/huff0/bitwriter.go b/vendor/github.com/klauspost/compress/huff0/bitwriter.go deleted file mode 100644 index 0ebc9aaac7..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/bitwriter.go +++ /dev/null @@ -1,102 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package huff0 - -// bitWriter will write bits. -// First bit will be LSB of the first byte of output. -type bitWriter struct { - bitContainer uint64 - nBits uint8 - out []byte -} - -// addBits16Clean will add up to 16 bits. value may not contain more set bits than indicated. -// It will not check if there is space for them, so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits16Clean(value uint16, bits uint8) { - b.bitContainer |= uint64(value) << (b.nBits & 63) - b.nBits += bits -} - -// encSymbol will add up to 16 bits. value may not contain more set bits than indicated. -// It will not check if there is space for them, so the caller must ensure that it has flushed recently. -func (b *bitWriter) encSymbol(ct cTable, symbol byte) { - enc := ct[symbol] - b.bitContainer |= uint64(enc.val) << (b.nBits & 63) - if false { - if enc.nBits == 0 { - panic("nbits 0") - } - } - b.nBits += enc.nBits -} - -// encTwoSymbols will add up to 32 bits. value may not contain more set bits than indicated. -// It will not check if there is space for them, so the caller must ensure that it has flushed recently. -func (b *bitWriter) encTwoSymbols(ct cTable, av, bv byte) { - encA := ct[av] - encB := ct[bv] - sh := b.nBits & 63 - combined := uint64(encA.val) | (uint64(encB.val) << (encA.nBits & 63)) - b.bitContainer |= combined << sh - if false { - if encA.nBits == 0 { - panic("nbitsA 0") - } - if encB.nBits == 0 { - panic("nbitsB 0") - } - } - b.nBits += encA.nBits + encB.nBits -} - -// encFourSymbols adds up to 32 bits from four symbols. -// It will not check if there is space for them, -// so the caller must ensure that b has been flushed recently. -func (b *bitWriter) encFourSymbols(encA, encB, encC, encD cTableEntry) { - bitsA := encA.nBits - bitsB := bitsA + encB.nBits - bitsC := bitsB + encC.nBits - bitsD := bitsC + encD.nBits - combined := uint64(encA.val) | - (uint64(encB.val) << (bitsA & 63)) | - (uint64(encC.val) << (bitsB & 63)) | - (uint64(encD.val) << (bitsC & 63)) - b.bitContainer |= combined << (b.nBits & 63) - b.nBits += bitsD -} - -// flush32 will flush out, so there are at least 32 bits available for writing. -func (b *bitWriter) flush32() { - if b.nBits < 32 { - return - } - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24)) - b.nBits -= 32 - b.bitContainer >>= 32 -} - -// flushAlign will flush remaining full bytes and align to next byte boundary. -func (b *bitWriter) flushAlign() { - nbBytes := (b.nBits + 7) >> 3 - for i := uint8(0); i < nbBytes; i++ { - b.out = append(b.out, byte(b.bitContainer>>(i*8))) - } - b.nBits = 0 - b.bitContainer = 0 -} - -// close will write the alignment bit and write the final byte(s) -// to the output. -func (b *bitWriter) close() { - // End mark - b.addBits16Clean(1, 1) - // flush until next byte. - b.flushAlign() -} diff --git a/vendor/github.com/klauspost/compress/huff0/compress.go b/vendor/github.com/klauspost/compress/huff0/compress.go deleted file mode 100644 index 84aa3d12f0..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/compress.go +++ /dev/null @@ -1,742 +0,0 @@ -package huff0 - -import ( - "fmt" - "math" - "runtime" - "sync" -) - -// Compress1X will compress the input. -// The output can be decoded using Decompress1X. -// Supply a Scratch object. The scratch object contains state about re-use, -// So when sharing across independent encodes, be sure to set the re-use policy. -func Compress1X(in []byte, s *Scratch) (out []byte, reUsed bool, err error) { - s, err = s.prepare(in) - if err != nil { - return nil, false, err - } - return compress(in, s, s.compress1X) -} - -// Compress4X will compress the input. The input is split into 4 independent blocks -// and compressed similar to Compress1X. -// The output can be decoded using Decompress4X. -// Supply a Scratch object. The scratch object contains state about re-use, -// So when sharing across independent encodes, be sure to set the re-use policy. -func Compress4X(in []byte, s *Scratch) (out []byte, reUsed bool, err error) { - s, err = s.prepare(in) - if err != nil { - return nil, false, err - } - if false { - // TODO: compress4Xp only slightly faster. - const parallelThreshold = 8 << 10 - if len(in) < parallelThreshold || runtime.GOMAXPROCS(0) == 1 { - return compress(in, s, s.compress4X) - } - return compress(in, s, s.compress4Xp) - } - return compress(in, s, s.compress4X) -} - -func compress(in []byte, s *Scratch, compressor func(src []byte) ([]byte, error)) (out []byte, reUsed bool, err error) { - // Nuke previous table if we cannot reuse anyway. - if s.Reuse == ReusePolicyNone { - s.prevTable = s.prevTable[:0] - } - - // Create histogram, if none was provided. - maxCount := s.maxCount - var canReuse = false - if maxCount == 0 { - maxCount, canReuse = s.countSimple(in) - } else { - canReuse = s.canUseTable(s.prevTable) - } - - // We want the output size to be less than this: - wantSize := len(in) - if s.WantLogLess > 0 { - wantSize -= wantSize >> s.WantLogLess - } - - // Reset for next run. - s.clearCount = true - s.maxCount = 0 - if maxCount >= len(in) { - if maxCount > len(in) { - return nil, false, fmt.Errorf("maxCount (%d) > length (%d)", maxCount, len(in)) - } - if len(in) == 1 { - return nil, false, ErrIncompressible - } - // One symbol, use RLE - return nil, false, ErrUseRLE - } - if maxCount == 1 || maxCount < (len(in)>>7) { - // Each symbol present maximum once or too well distributed. - return nil, false, ErrIncompressible - } - if s.Reuse == ReusePolicyMust && !canReuse { - // We must reuse, but we can't. - return nil, false, ErrIncompressible - } - if (s.Reuse == ReusePolicyPrefer || s.Reuse == ReusePolicyMust) && canReuse { - keepTable := s.cTable - keepTL := s.actualTableLog - s.cTable = s.prevTable - s.actualTableLog = s.prevTableLog - s.Out, err = compressor(in) - s.cTable = keepTable - s.actualTableLog = keepTL - if err == nil && len(s.Out) < wantSize { - s.OutData = s.Out - return s.Out, true, nil - } - if s.Reuse == ReusePolicyMust { - return nil, false, ErrIncompressible - } - // Do not attempt to re-use later. - s.prevTable = s.prevTable[:0] - } - - // Calculate new table. - err = s.buildCTable() - if err != nil { - return nil, false, err - } - - if false && !s.canUseTable(s.cTable) { - panic("invalid table generated") - } - - if s.Reuse == ReusePolicyAllow && canReuse { - hSize := len(s.Out) - oldSize := s.prevTable.estimateSize(s.count[:s.symbolLen]) - newSize := s.cTable.estimateSize(s.count[:s.symbolLen]) - if oldSize <= hSize+newSize || hSize+12 >= wantSize { - // Retain cTable even if we re-use. - keepTable := s.cTable - keepTL := s.actualTableLog - - s.cTable = s.prevTable - s.actualTableLog = s.prevTableLog - s.Out, err = compressor(in) - - // Restore ctable. - s.cTable = keepTable - s.actualTableLog = keepTL - if err != nil { - return nil, false, err - } - if len(s.Out) >= wantSize { - return nil, false, ErrIncompressible - } - s.OutData = s.Out - return s.Out, true, nil - } - } - - // Use new table - err = s.cTable.write(s) - if err != nil { - s.OutTable = nil - return nil, false, err - } - s.OutTable = s.Out - - // Compress using new table - s.Out, err = compressor(in) - if err != nil { - s.OutTable = nil - return nil, false, err - } - if len(s.Out) >= wantSize { - s.OutTable = nil - return nil, false, ErrIncompressible - } - // Move current table into previous. - s.prevTable, s.prevTableLog, s.cTable = s.cTable, s.actualTableLog, s.prevTable[:0] - s.OutData = s.Out[len(s.OutTable):] - return s.Out, false, nil -} - -// EstimateSizes will estimate the data sizes -func EstimateSizes(in []byte, s *Scratch) (tableSz, dataSz, reuseSz int, err error) { - s, err = s.prepare(in) - if err != nil { - return 0, 0, 0, err - } - - // Create histogram, if none was provided. - tableSz, dataSz, reuseSz = -1, -1, -1 - maxCount := s.maxCount - var canReuse = false - if maxCount == 0 { - maxCount, canReuse = s.countSimple(in) - } else { - canReuse = s.canUseTable(s.prevTable) - } - - // We want the output size to be less than this: - wantSize := len(in) - if s.WantLogLess > 0 { - wantSize -= wantSize >> s.WantLogLess - } - - // Reset for next run. - s.clearCount = true - s.maxCount = 0 - if maxCount >= len(in) { - if maxCount > len(in) { - return 0, 0, 0, fmt.Errorf("maxCount (%d) > length (%d)", maxCount, len(in)) - } - if len(in) == 1 { - return 0, 0, 0, ErrIncompressible - } - // One symbol, use RLE - return 0, 0, 0, ErrUseRLE - } - if maxCount == 1 || maxCount < (len(in)>>7) { - // Each symbol present maximum once or too well distributed. - return 0, 0, 0, ErrIncompressible - } - - // Calculate new table. - err = s.buildCTable() - if err != nil { - return 0, 0, 0, err - } - - if false && !s.canUseTable(s.cTable) { - panic("invalid table generated") - } - - tableSz, err = s.cTable.estTableSize(s) - if err != nil { - return 0, 0, 0, err - } - if canReuse { - reuseSz = s.prevTable.estimateSize(s.count[:s.symbolLen]) - } - dataSz = s.cTable.estimateSize(s.count[:s.symbolLen]) - - // Restore - return tableSz, dataSz, reuseSz, nil -} - -func (s *Scratch) compress1X(src []byte) ([]byte, error) { - return s.compress1xDo(s.Out, src), nil -} - -func (s *Scratch) compress1xDo(dst, src []byte) []byte { - var bw = bitWriter{out: dst} - - // N is length divisible by 4. - n := len(src) - n -= n & 3 - cTable := s.cTable[:256] - - // Encode last bytes. - for i := len(src) & 3; i > 0; i-- { - bw.encSymbol(cTable, src[n+i-1]) - } - n -= 4 - if s.actualTableLog <= 8 { - for ; n >= 0; n -= 4 { - tmp := src[n : n+4] - // tmp should be len 4 - bw.flush32() - bw.encFourSymbols(cTable[tmp[3]], cTable[tmp[2]], cTable[tmp[1]], cTable[tmp[0]]) - } - } else { - for ; n >= 0; n -= 4 { - tmp := src[n : n+4] - // tmp should be len 4 - bw.flush32() - bw.encTwoSymbols(cTable, tmp[3], tmp[2]) - bw.flush32() - bw.encTwoSymbols(cTable, tmp[1], tmp[0]) - } - } - bw.close() - return bw.out -} - -var sixZeros [6]byte - -func (s *Scratch) compress4X(src []byte) ([]byte, error) { - if len(src) < 12 { - return nil, ErrIncompressible - } - segmentSize := (len(src) + 3) / 4 - - // Add placeholder for output length - offsetIdx := len(s.Out) - s.Out = append(s.Out, sixZeros[:]...) - - for i := 0; i < 4; i++ { - toDo := src - if len(toDo) > segmentSize { - toDo = toDo[:segmentSize] - } - src = src[len(toDo):] - - idx := len(s.Out) - s.Out = s.compress1xDo(s.Out, toDo) - if len(s.Out)-idx > math.MaxUint16 { - // We cannot store the size in the jump table - return nil, ErrIncompressible - } - // Write compressed length as little endian before block. - if i < 3 { - // Last length is not written. - length := len(s.Out) - idx - s.Out[i*2+offsetIdx] = byte(length) - s.Out[i*2+offsetIdx+1] = byte(length >> 8) - } - } - - return s.Out, nil -} - -// compress4Xp will compress 4 streams using separate goroutines. -func (s *Scratch) compress4Xp(src []byte) ([]byte, error) { - if len(src) < 12 { - return nil, ErrIncompressible - } - // Add placeholder for output length - s.Out = s.Out[:6] - - segmentSize := (len(src) + 3) / 4 - var wg sync.WaitGroup - wg.Add(4) - for i := 0; i < 4; i++ { - toDo := src - if len(toDo) > segmentSize { - toDo = toDo[:segmentSize] - } - src = src[len(toDo):] - - // Separate goroutine for each block. - go func(i int) { - s.tmpOut[i] = s.compress1xDo(s.tmpOut[i][:0], toDo) - wg.Done() - }(i) - } - wg.Wait() - for i := 0; i < 4; i++ { - o := s.tmpOut[i] - if len(o) > math.MaxUint16 { - // We cannot store the size in the jump table - return nil, ErrIncompressible - } - // Write compressed length as little endian before block. - if i < 3 { - // Last length is not written. - s.Out[i*2] = byte(len(o)) - s.Out[i*2+1] = byte(len(o) >> 8) - } - - // Write output. - s.Out = append(s.Out, o...) - } - return s.Out, nil -} - -// countSimple will create a simple histogram in s.count. -// Returns the biggest count. -// Does not update s.clearCount. -func (s *Scratch) countSimple(in []byte) (max int, reuse bool) { - reuse = true - _ = s.count // Assert that s != nil to speed up the following loop. - for _, v := range in { - s.count[v]++ - } - m := uint32(0) - if len(s.prevTable) > 0 { - for i, v := range s.count[:] { - if v == 0 { - continue - } - if v > m { - m = v - } - s.symbolLen = uint16(i) + 1 - if i >= len(s.prevTable) { - reuse = false - } else if s.prevTable[i].nBits == 0 { - reuse = false - } - } - return int(m), reuse - } - for i, v := range s.count[:] { - if v == 0 { - continue - } - if v > m { - m = v - } - s.symbolLen = uint16(i) + 1 - } - return int(m), false -} - -func (s *Scratch) canUseTable(c cTable) bool { - if len(c) < int(s.symbolLen) { - return false - } - for i, v := range s.count[:s.symbolLen] { - if v != 0 && c[i].nBits == 0 { - return false - } - } - return true -} - -//lint:ignore U1000 used for debugging -func (s *Scratch) validateTable(c cTable) bool { - if len(c) < int(s.symbolLen) { - return false - } - for i, v := range s.count[:s.symbolLen] { - if v != 0 { - if c[i].nBits == 0 { - return false - } - if c[i].nBits > s.actualTableLog { - return false - } - } - } - return true -} - -// minTableLog provides the minimum logSize to safely represent a distribution. -func (s *Scratch) minTableLog() uint8 { - minBitsSrc := highBit32(uint32(s.srcLen)) + 1 - minBitsSymbols := highBit32(uint32(s.symbolLen-1)) + 2 - if minBitsSrc < minBitsSymbols { - return uint8(minBitsSrc) - } - return uint8(minBitsSymbols) -} - -// optimalTableLog calculates and sets the optimal tableLog in s.actualTableLog -func (s *Scratch) optimalTableLog() { - tableLog := s.TableLog - minBits := s.minTableLog() - maxBitsSrc := uint8(highBit32(uint32(s.srcLen-1))) - 1 - if maxBitsSrc < tableLog { - // Accuracy can be reduced - tableLog = maxBitsSrc - } - if minBits > tableLog { - tableLog = minBits - } - // Need a minimum to safely represent all symbol values - if tableLog < minTablelog { - tableLog = minTablelog - } - if tableLog > tableLogMax { - tableLog = tableLogMax - } - s.actualTableLog = tableLog -} - -type cTableEntry struct { - val uint16 - nBits uint8 - // We have 8 bits extra -} - -const huffNodesMask = huffNodesLen - 1 - -func (s *Scratch) buildCTable() error { - s.optimalTableLog() - s.huffSort() - if cap(s.cTable) < maxSymbolValue+1 { - s.cTable = make([]cTableEntry, s.symbolLen, maxSymbolValue+1) - } else { - s.cTable = s.cTable[:s.symbolLen] - for i := range s.cTable { - s.cTable[i] = cTableEntry{} - } - } - - var startNode = int16(s.symbolLen) - nonNullRank := s.symbolLen - 1 - - nodeNb := startNode - huffNode := s.nodes[1 : huffNodesLen+1] - - // This overlays the slice above, but allows "-1" index lookups. - // Different from reference implementation. - huffNode0 := s.nodes[0 : huffNodesLen+1] - - for huffNode[nonNullRank].count() == 0 { - nonNullRank-- - } - - lowS := int16(nonNullRank) - nodeRoot := nodeNb + lowS - 1 - lowN := nodeNb - huffNode[nodeNb].setCount(huffNode[lowS].count() + huffNode[lowS-1].count()) - huffNode[lowS].setParent(nodeNb) - huffNode[lowS-1].setParent(nodeNb) - nodeNb++ - lowS -= 2 - for n := nodeNb; n <= nodeRoot; n++ { - huffNode[n].setCount(1 << 30) - } - // fake entry, strong barrier - huffNode0[0].setCount(1 << 31) - - // create parents - for nodeNb <= nodeRoot { - var n1, n2 int16 - if huffNode0[lowS+1].count() < huffNode0[lowN+1].count() { - n1 = lowS - lowS-- - } else { - n1 = lowN - lowN++ - } - if huffNode0[lowS+1].count() < huffNode0[lowN+1].count() { - n2 = lowS - lowS-- - } else { - n2 = lowN - lowN++ - } - - huffNode[nodeNb].setCount(huffNode0[n1+1].count() + huffNode0[n2+1].count()) - huffNode0[n1+1].setParent(nodeNb) - huffNode0[n2+1].setParent(nodeNb) - nodeNb++ - } - - // distribute weights (unlimited tree height) - huffNode[nodeRoot].setNbBits(0) - for n := nodeRoot - 1; n >= startNode; n-- { - huffNode[n].setNbBits(huffNode[huffNode[n].parent()].nbBits() + 1) - } - for n := uint16(0); n <= nonNullRank; n++ { - huffNode[n].setNbBits(huffNode[huffNode[n].parent()].nbBits() + 1) - } - s.actualTableLog = s.setMaxHeight(int(nonNullRank)) - maxNbBits := s.actualTableLog - - // fill result into tree (val, nbBits) - if maxNbBits > tableLogMax { - return fmt.Errorf("internal error: maxNbBits (%d) > tableLogMax (%d)", maxNbBits, tableLogMax) - } - var nbPerRank [tableLogMax + 1]uint16 - var valPerRank [16]uint16 - for _, v := range huffNode[:nonNullRank+1] { - nbPerRank[v.nbBits()]++ - } - // determine stating value per rank - { - min := uint16(0) - for n := maxNbBits; n > 0; n-- { - // get starting value within each rank - valPerRank[n] = min - min += nbPerRank[n] - min >>= 1 - } - } - - // push nbBits per symbol, symbol order - for _, v := range huffNode[:nonNullRank+1] { - s.cTable[v.symbol()].nBits = v.nbBits() - } - - // assign value within rank, symbol order - t := s.cTable[:s.symbolLen] - for n, val := range t { - nbits := val.nBits & 15 - v := valPerRank[nbits] - t[n].val = v - valPerRank[nbits] = v + 1 - } - - return nil -} - -// huffSort will sort symbols, decreasing order. -func (s *Scratch) huffSort() { - type rankPos struct { - base uint32 - current uint32 - } - - // Clear nodes - nodes := s.nodes[:huffNodesLen+1] - s.nodes = nodes - nodes = nodes[1 : huffNodesLen+1] - - // Sort into buckets based on length of symbol count. - var rank [32]rankPos - for _, v := range s.count[:s.symbolLen] { - r := highBit32(v+1) & 31 - rank[r].base++ - } - // maxBitLength is log2(BlockSizeMax) + 1 - const maxBitLength = 18 + 1 - for n := maxBitLength; n > 0; n-- { - rank[n-1].base += rank[n].base - } - for n := range rank[:maxBitLength] { - rank[n].current = rank[n].base - } - for n, c := range s.count[:s.symbolLen] { - r := (highBit32(c+1) + 1) & 31 - pos := rank[r].current - rank[r].current++ - prev := nodes[(pos-1)&huffNodesMask] - for pos > rank[r].base && c > prev.count() { - nodes[pos&huffNodesMask] = prev - pos-- - prev = nodes[(pos-1)&huffNodesMask] - } - nodes[pos&huffNodesMask] = makeNodeElt(c, byte(n)) - } -} - -func (s *Scratch) setMaxHeight(lastNonNull int) uint8 { - maxNbBits := s.actualTableLog - huffNode := s.nodes[1 : huffNodesLen+1] - //huffNode = huffNode[: huffNodesLen] - - largestBits := huffNode[lastNonNull].nbBits() - - // early exit : no elt > maxNbBits - if largestBits <= maxNbBits { - return largestBits - } - totalCost := int(0) - baseCost := int(1) << (largestBits - maxNbBits) - n := uint32(lastNonNull) - - for huffNode[n].nbBits() > maxNbBits { - totalCost += baseCost - (1 << (largestBits - huffNode[n].nbBits())) - huffNode[n].setNbBits(maxNbBits) - n-- - } - // n stops at huffNode[n].nbBits <= maxNbBits - - for huffNode[n].nbBits() == maxNbBits { - n-- - } - // n end at index of smallest symbol using < maxNbBits - - // renorm totalCost - totalCost >>= largestBits - maxNbBits /* note : totalCost is necessarily a multiple of baseCost */ - - // repay normalized cost - { - const noSymbol = 0xF0F0F0F0 - var rankLast [tableLogMax + 2]uint32 - - for i := range rankLast[:] { - rankLast[i] = noSymbol - } - - // Get pos of last (smallest) symbol per rank - { - currentNbBits := maxNbBits - for pos := int(n); pos >= 0; pos-- { - if huffNode[pos].nbBits() >= currentNbBits { - continue - } - currentNbBits = huffNode[pos].nbBits() // < maxNbBits - rankLast[maxNbBits-currentNbBits] = uint32(pos) - } - } - - for totalCost > 0 { - nBitsToDecrease := uint8(highBit32(uint32(totalCost))) + 1 - - for ; nBitsToDecrease > 1; nBitsToDecrease-- { - highPos := rankLast[nBitsToDecrease] - lowPos := rankLast[nBitsToDecrease-1] - if highPos == noSymbol { - continue - } - if lowPos == noSymbol { - break - } - highTotal := huffNode[highPos].count() - lowTotal := 2 * huffNode[lowPos].count() - if highTotal <= lowTotal { - break - } - } - // only triggered when no more rank 1 symbol left => find closest one (note : there is necessarily at least one !) - // HUF_MAX_TABLELOG test just to please gcc 5+; but it should not be necessary - // FIXME: try to remove - for (nBitsToDecrease <= tableLogMax) && (rankLast[nBitsToDecrease] == noSymbol) { - nBitsToDecrease++ - } - totalCost -= 1 << (nBitsToDecrease - 1) - if rankLast[nBitsToDecrease-1] == noSymbol { - // this rank is no longer empty - rankLast[nBitsToDecrease-1] = rankLast[nBitsToDecrease] - } - huffNode[rankLast[nBitsToDecrease]].setNbBits(1 + - huffNode[rankLast[nBitsToDecrease]].nbBits()) - if rankLast[nBitsToDecrease] == 0 { - /* special case, reached largest symbol */ - rankLast[nBitsToDecrease] = noSymbol - } else { - rankLast[nBitsToDecrease]-- - if huffNode[rankLast[nBitsToDecrease]].nbBits() != maxNbBits-nBitsToDecrease { - rankLast[nBitsToDecrease] = noSymbol /* this rank is now empty */ - } - } - } - - for totalCost < 0 { /* Sometimes, cost correction overshoot */ - if rankLast[1] == noSymbol { /* special case : no rank 1 symbol (using maxNbBits-1); let's create one from largest rank 0 (using maxNbBits) */ - for huffNode[n].nbBits() == maxNbBits { - n-- - } - huffNode[n+1].setNbBits(huffNode[n+1].nbBits() - 1) - rankLast[1] = n + 1 - totalCost++ - continue - } - huffNode[rankLast[1]+1].setNbBits(huffNode[rankLast[1]+1].nbBits() - 1) - rankLast[1]++ - totalCost++ - } - } - return maxNbBits -} - -// A nodeElt is the fields -// -// count uint32 -// parent uint16 -// symbol byte -// nbBits uint8 -// -// in some order, all squashed into an integer so that the compiler -// always loads and stores entire nodeElts instead of separate fields. -type nodeElt uint64 - -func makeNodeElt(count uint32, symbol byte) nodeElt { - return nodeElt(count) | nodeElt(symbol)<<48 -} - -func (e *nodeElt) count() uint32 { return uint32(*e) } -func (e *nodeElt) parent() uint16 { return uint16(*e >> 32) } -func (e *nodeElt) symbol() byte { return byte(*e >> 48) } -func (e *nodeElt) nbBits() uint8 { return uint8(*e >> 56) } - -func (e *nodeElt) setCount(c uint32) { *e = (*e)&0xffffffff00000000 | nodeElt(c) } -func (e *nodeElt) setParent(p int16) { *e = (*e)&0xffff0000ffffffff | nodeElt(uint16(p))<<32 } -func (e *nodeElt) setNbBits(n uint8) { *e = (*e)&0x00ffffffffffffff | nodeElt(n)<<56 } diff --git a/vendor/github.com/klauspost/compress/huff0/decompress.go b/vendor/github.com/klauspost/compress/huff0/decompress.go deleted file mode 100644 index 0f56b02d74..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/decompress.go +++ /dev/null @@ -1,1167 +0,0 @@ -package huff0 - -import ( - "errors" - "fmt" - "io" - "sync" - - "github.com/klauspost/compress/fse" -) - -type dTable struct { - single []dEntrySingle -} - -// single-symbols decoding -type dEntrySingle struct { - entry uint16 -} - -// Uses special code for all tables that are < 8 bits. -const use8BitTables = true - -// ReadTable will read a table from the input. -// The size of the input may be larger than the table definition. -// Any content remaining after the table definition will be returned. -// If no Scratch is provided a new one is allocated. -// The returned Scratch can be used for encoding or decoding input using this table. -func ReadTable(in []byte, s *Scratch) (s2 *Scratch, remain []byte, err error) { - s, err = s.prepare(nil) - if err != nil { - return s, nil, err - } - if len(in) <= 1 { - return s, nil, errors.New("input too small for table") - } - iSize := in[0] - in = in[1:] - if iSize >= 128 { - // Uncompressed - oSize := iSize - 127 - iSize = (oSize + 1) / 2 - if int(iSize) > len(in) { - return s, nil, errors.New("input too small for table") - } - for n := uint8(0); n < oSize; n += 2 { - v := in[n/2] - s.huffWeight[n] = v >> 4 - s.huffWeight[n+1] = v & 15 - } - s.symbolLen = uint16(oSize) - in = in[iSize:] - } else { - if len(in) < int(iSize) { - return s, nil, fmt.Errorf("input too small for table, want %d bytes, have %d", iSize, len(in)) - } - // FSE compressed weights - s.fse.DecompressLimit = 255 - hw := s.huffWeight[:] - s.fse.Out = hw - b, err := fse.Decompress(in[:iSize], s.fse) - s.fse.Out = nil - if err != nil { - return s, nil, fmt.Errorf("fse decompress returned: %w", err) - } - if len(b) > 255 { - return s, nil, errors.New("corrupt input: output table too large") - } - s.symbolLen = uint16(len(b)) - in = in[iSize:] - } - - // collect weight stats - var rankStats [16]uint32 - weightTotal := uint32(0) - for _, v := range s.huffWeight[:s.symbolLen] { - if v > tableLogMax { - return s, nil, errors.New("corrupt input: weight too large") - } - v2 := v & 15 - rankStats[v2]++ - // (1 << (v2-1)) is slower since the compiler cannot prove that v2 isn't 0. - weightTotal += (1 << v2) >> 1 - } - if weightTotal == 0 { - return s, nil, errors.New("corrupt input: weights zero") - } - - // get last non-null symbol weight (implied, total must be 2^n) - { - tableLog := highBit32(weightTotal) + 1 - if tableLog > tableLogMax { - return s, nil, errors.New("corrupt input: tableLog too big") - } - s.actualTableLog = uint8(tableLog) - // determine last weight - { - total := uint32(1) << tableLog - rest := total - weightTotal - verif := uint32(1) << highBit32(rest) - lastWeight := highBit32(rest) + 1 - if verif != rest { - // last value must be a clean power of 2 - return s, nil, errors.New("corrupt input: last value not power of two") - } - s.huffWeight[s.symbolLen] = uint8(lastWeight) - s.symbolLen++ - rankStats[lastWeight]++ - } - } - - if (rankStats[1] < 2) || (rankStats[1]&1 != 0) { - // by construction : at least 2 elts of rank 1, must be even - return s, nil, errors.New("corrupt input: min elt size, even check failed ") - } - - // TODO: Choose between single/double symbol decoding - - // Calculate starting value for each rank - { - var nextRankStart uint32 - for n := uint8(1); n < s.actualTableLog+1; n++ { - current := nextRankStart - nextRankStart += rankStats[n] << (n - 1) - rankStats[n] = current - } - } - - // fill DTable (always full size) - tSize := 1 << tableLogMax - if len(s.dt.single) != tSize { - s.dt.single = make([]dEntrySingle, tSize) - } - cTable := s.prevTable - if cap(cTable) < maxSymbolValue+1 { - cTable = make([]cTableEntry, 0, maxSymbolValue+1) - } - cTable = cTable[:maxSymbolValue+1] - s.prevTable = cTable[:s.symbolLen] - s.prevTableLog = s.actualTableLog - - for n, w := range s.huffWeight[:s.symbolLen] { - if w == 0 { - cTable[n] = cTableEntry{ - val: 0, - nBits: 0, - } - continue - } - length := (uint32(1) << w) >> 1 - d := dEntrySingle{ - entry: uint16(s.actualTableLog+1-w) | (uint16(n) << 8), - } - - rank := &rankStats[w] - cTable[n] = cTableEntry{ - val: uint16(*rank >> (w - 1)), - nBits: uint8(d.entry), - } - - single := s.dt.single[*rank : *rank+length] - for i := range single { - single[i] = d - } - *rank += length - } - - return s, in, nil -} - -// Decompress1X will decompress a 1X encoded stream. -// The length of the supplied input must match the end of a block exactly. -// Before this is called, the table must be initialized with ReadTable unless -// the encoder re-used the table. -// deprecated: Use the stateless Decoder() to get a concurrent version. -func (s *Scratch) Decompress1X(in []byte) (out []byte, err error) { - if cap(s.Out) < s.MaxDecodedSize { - s.Out = make([]byte, s.MaxDecodedSize) - } - s.Out = s.Out[:0:s.MaxDecodedSize] - s.Out, err = s.Decoder().Decompress1X(s.Out, in) - return s.Out, err -} - -// Decompress4X will decompress a 4X encoded stream. -// Before this is called, the table must be initialized with ReadTable unless -// the encoder re-used the table. -// The length of the supplied input must match the end of a block exactly. -// The destination size of the uncompressed data must be known and provided. -// deprecated: Use the stateless Decoder() to get a concurrent version. -func (s *Scratch) Decompress4X(in []byte, dstSize int) (out []byte, err error) { - if dstSize > s.MaxDecodedSize { - return nil, ErrMaxDecodedSizeExceeded - } - if cap(s.Out) < dstSize { - s.Out = make([]byte, s.MaxDecodedSize) - } - s.Out = s.Out[:0:dstSize] - s.Out, err = s.Decoder().Decompress4X(s.Out, in) - return s.Out, err -} - -// Decoder will return a stateless decoder that can be used by multiple -// decompressors concurrently. -// Before this is called, the table must be initialized with ReadTable. -// The Decoder is still linked to the scratch buffer so that cannot be reused. -// However, it is safe to discard the scratch. -func (s *Scratch) Decoder() *Decoder { - return &Decoder{ - dt: s.dt, - actualTableLog: s.actualTableLog, - bufs: &s.decPool, - } -} - -// Decoder provides stateless decoding. -type Decoder struct { - dt dTable - actualTableLog uint8 - bufs *sync.Pool -} - -func (d *Decoder) buffer() *[4][256]byte { - buf, ok := d.bufs.Get().(*[4][256]byte) - if ok { - return buf - } - return &[4][256]byte{} -} - -// decompress1X8Bit will decompress a 1X encoded stream with tablelog <= 8. -// The cap of the output buffer will be the maximum decompressed size. -// The length of the supplied input must match the end of a block exactly. -func (d *Decoder) decompress1X8Bit(dst, src []byte) ([]byte, error) { - if d.actualTableLog == 8 { - return d.decompress1X8BitExactly(dst, src) - } - var br bitReaderBytes - err := br.init(src) - if err != nil { - return dst, err - } - maxDecodedSize := cap(dst) - dst = dst[:0] - - // Avoid bounds check by always having full sized table. - dt := d.dt.single[:256] - - // Use temp table to avoid bound checks/append penalty. - bufs := d.buffer() - buf := &bufs[0] - var off uint8 - - switch d.actualTableLog { - case 8: - const shift = 0 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - br.close() - d.bufs.Put(bufs) - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 7: - const shift = 8 - 7 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - br.close() - d.bufs.Put(bufs) - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 6: - const shift = 8 - 6 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 5: - const shift = 8 - 5 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 4: - const shift = 8 - 4 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 3: - const shift = 8 - 3 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 2: - const shift = 8 - 2 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - case 1: - const shift = 8 - 1 - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>(56+shift))] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - default: - d.bufs.Put(bufs) - return nil, fmt.Errorf("invalid tablelog: %d", d.actualTableLog) - } - - if len(dst)+int(off) > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:off]...) - - // br < 4, so uint8 is fine - bitsLeft := int8(uint8(br.off)*8 + (64 - br.bitsRead)) - shift := (8 - d.actualTableLog) & 7 - - for bitsLeft > 0 { - if br.bitsRead >= 64-8 { - for br.off > 0 { - br.value |= uint64(br.in[br.off-1]) << (br.bitsRead - 8) - br.bitsRead -= 8 - br.off-- - } - } - if len(dst) >= maxDecodedSize { - br.close() - d.bufs.Put(bufs) - return nil, ErrMaxDecodedSizeExceeded - } - v := dt[br.peekByteFast()>>shift] - nBits := uint8(v.entry) - br.advance(nBits) - bitsLeft -= int8(nBits) - dst = append(dst, uint8(v.entry>>8)) - } - d.bufs.Put(bufs) - return dst, br.close() -} - -// decompress1X8Bit will decompress a 1X encoded stream with tablelog <= 8. -// The cap of the output buffer will be the maximum decompressed size. -// The length of the supplied input must match the end of a block exactly. -func (d *Decoder) decompress1X8BitExactly(dst, src []byte) ([]byte, error) { - var br bitReaderBytes - err := br.init(src) - if err != nil { - return dst, err - } - maxDecodedSize := cap(dst) - dst = dst[:0] - - // Avoid bounds check by always having full sized table. - dt := d.dt.single[:256] - - // Use temp table to avoid bound checks/append penalty. - bufs := d.buffer() - buf := &bufs[0] - var off uint8 - - const shift = 56 - - //fmt.Printf("mask: %b, tl:%d\n", mask, d.actualTableLog) - for br.off >= 4 { - br.fillFast() - v := dt[uint8(br.value>>shift)] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>shift)] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>shift)] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[uint8(br.value>>shift)] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - - if len(dst)+int(off) > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:off]...) - - // br < 4, so uint8 is fine - bitsLeft := int8(uint8(br.off)*8 + (64 - br.bitsRead)) - for bitsLeft > 0 { - if br.bitsRead >= 64-8 { - for br.off > 0 { - br.value |= uint64(br.in[br.off-1]) << (br.bitsRead - 8) - br.bitsRead -= 8 - br.off-- - } - } - if len(dst) >= maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - v := dt[br.peekByteFast()] - nBits := uint8(v.entry) - br.advance(nBits) - bitsLeft -= int8(nBits) - dst = append(dst, uint8(v.entry>>8)) - } - d.bufs.Put(bufs) - return dst, br.close() -} - -// Decompress4X will decompress a 4X encoded stream. -// The length of the supplied input must match the end of a block exactly. -// The *capacity* of the dst slice must match the destination size of -// the uncompressed data exactly. -func (d *Decoder) decompress4X8bit(dst, src []byte) ([]byte, error) { - if d.actualTableLog == 8 { - return d.decompress4X8bitExactly(dst, src) - } - - var br [4]bitReaderBytes - start := 6 - for i := 0; i < 3; i++ { - length := int(src[i*2]) | (int(src[i*2+1]) << 8) - if start+length >= len(src) { - return nil, errors.New("truncated input (or invalid offset)") - } - err := br[i].init(src[start : start+length]) - if err != nil { - return nil, err - } - start += length - } - err := br[3].init(src[start:]) - if err != nil { - return nil, err - } - - // destination, offset to match first output - dstSize := cap(dst) - dst = dst[:dstSize] - out := dst - dstEvery := (dstSize + 3) / 4 - - shift := (56 + (8 - d.actualTableLog)) & 63 - - const tlSize = 1 << 8 - single := d.dt.single[:tlSize] - - // Use temp table to avoid bound checks/append penalty. - buf := d.buffer() - var off uint8 - var decoded int - - // Decode 4 values from each decoder/loop. - const bufoff = 256 - for { - if br[0].off < 4 || br[1].off < 4 || br[2].off < 4 || br[3].off < 4 { - break - } - - { - // Interleave 2 decodes. - const stream = 0 - const stream2 = 1 - br1 := &br[stream] - br2 := &br[stream2] - br1.fillFast() - br2.fillFast() - - v := single[uint8(br1.value>>shift)].entry - v2 := single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off] = uint8(v >> 8) - buf[stream2][off] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+1] = uint8(v >> 8) - buf[stream2][off+1] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+2] = uint8(v >> 8) - buf[stream2][off+2] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+3] = uint8(v >> 8) - buf[stream2][off+3] = uint8(v2 >> 8) - } - - { - const stream = 2 - const stream2 = 3 - br1 := &br[stream] - br2 := &br[stream2] - br1.fillFast() - br2.fillFast() - - v := single[uint8(br1.value>>shift)].entry - v2 := single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off] = uint8(v >> 8) - buf[stream2][off] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+1] = uint8(v >> 8) - buf[stream2][off+1] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+2] = uint8(v >> 8) - buf[stream2][off+2] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+3] = uint8(v >> 8) - buf[stream2][off+3] = uint8(v2 >> 8) - } - - off += 4 - - if off == 0 { - if bufoff > dstEvery { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 1") - } - // There must at least be 3 buffers left. - if len(out)-bufoff < dstEvery*3 { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 2") - } - //copy(out, buf[0][:]) - //copy(out[dstEvery:], buf[1][:]) - //copy(out[dstEvery*2:], buf[2][:]) - *(*[bufoff]byte)(out) = buf[0] - *(*[bufoff]byte)(out[dstEvery:]) = buf[1] - *(*[bufoff]byte)(out[dstEvery*2:]) = buf[2] - *(*[bufoff]byte)(out[dstEvery*3:]) = buf[3] - out = out[bufoff:] - decoded += bufoff * 4 - } - } - if off > 0 { - ioff := int(off) - if len(out) < dstEvery*3+ioff { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 3") - } - copy(out, buf[0][:off]) - copy(out[dstEvery:], buf[1][:off]) - copy(out[dstEvery*2:], buf[2][:off]) - copy(out[dstEvery*3:], buf[3][:off]) - decoded += int(off) * 4 - out = out[off:] - } - - // Decode remaining. - // Decode remaining. - remainBytes := dstEvery - (decoded / 4) - for i := range br { - offset := dstEvery * i - endsAt := offset + remainBytes - if endsAt > len(out) { - endsAt = len(out) - } - br := &br[i] - bitsLeft := br.remaining() - for bitsLeft > 0 { - if br.finished() { - d.bufs.Put(buf) - return nil, io.ErrUnexpectedEOF - } - if br.bitsRead >= 56 { - if br.off >= 4 { - v := br.in[br.off-4:] - v = v[:4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - br.value |= uint64(low) << (br.bitsRead - 32) - br.bitsRead -= 32 - br.off -= 4 - } else { - for br.off > 0 { - br.value |= uint64(br.in[br.off-1]) << (br.bitsRead - 8) - br.bitsRead -= 8 - br.off-- - } - } - } - // end inline... - if offset >= endsAt { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 4") - } - - // Read value and increment offset. - v := single[uint8(br.value>>shift)].entry - nBits := uint8(v) - br.advance(nBits) - bitsLeft -= uint(nBits) - out[offset] = uint8(v >> 8) - offset++ - } - if offset != endsAt { - d.bufs.Put(buf) - return nil, fmt.Errorf("corruption detected: short output block %d, end %d != %d", i, offset, endsAt) - } - decoded += offset - dstEvery*i - err = br.close() - if err != nil { - d.bufs.Put(buf) - return nil, err - } - } - d.bufs.Put(buf) - if dstSize != decoded { - return nil, errors.New("corruption detected: short output block") - } - return dst, nil -} - -// Decompress4X will decompress a 4X encoded stream. -// The length of the supplied input must match the end of a block exactly. -// The *capacity* of the dst slice must match the destination size of -// the uncompressed data exactly. -func (d *Decoder) decompress4X8bitExactly(dst, src []byte) ([]byte, error) { - var br [4]bitReaderBytes - start := 6 - for i := 0; i < 3; i++ { - length := int(src[i*2]) | (int(src[i*2+1]) << 8) - if start+length >= len(src) { - return nil, errors.New("truncated input (or invalid offset)") - } - err := br[i].init(src[start : start+length]) - if err != nil { - return nil, err - } - start += length - } - err := br[3].init(src[start:]) - if err != nil { - return nil, err - } - - // destination, offset to match first output - dstSize := cap(dst) - dst = dst[:dstSize] - out := dst - dstEvery := (dstSize + 3) / 4 - - const shift = 56 - const tlSize = 1 << 8 - single := d.dt.single[:tlSize] - - // Use temp table to avoid bound checks/append penalty. - buf := d.buffer() - var off uint8 - var decoded int - - // Decode 4 values from each decoder/loop. - const bufoff = 256 - for { - if br[0].off < 4 || br[1].off < 4 || br[2].off < 4 || br[3].off < 4 { - break - } - - { - // Interleave 2 decodes. - const stream = 0 - const stream2 = 1 - br1 := &br[stream] - br2 := &br[stream2] - br1.fillFast() - br2.fillFast() - - v := single[uint8(br1.value>>shift)].entry - v2 := single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off] = uint8(v >> 8) - buf[stream2][off] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+1] = uint8(v >> 8) - buf[stream2][off+1] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+2] = uint8(v >> 8) - buf[stream2][off+2] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+3] = uint8(v >> 8) - buf[stream2][off+3] = uint8(v2 >> 8) - } - - { - const stream = 2 - const stream2 = 3 - br1 := &br[stream] - br2 := &br[stream2] - br1.fillFast() - br2.fillFast() - - v := single[uint8(br1.value>>shift)].entry - v2 := single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off] = uint8(v >> 8) - buf[stream2][off] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+1] = uint8(v >> 8) - buf[stream2][off+1] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+2] = uint8(v >> 8) - buf[stream2][off+2] = uint8(v2 >> 8) - - v = single[uint8(br1.value>>shift)].entry - v2 = single[uint8(br2.value>>shift)].entry - br1.bitsRead += uint8(v) - br1.value <<= v & 63 - br2.bitsRead += uint8(v2) - br2.value <<= v2 & 63 - buf[stream][off+3] = uint8(v >> 8) - buf[stream2][off+3] = uint8(v2 >> 8) - } - - off += 4 - - if off == 0 { - if bufoff > dstEvery { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 1") - } - // There must at least be 3 buffers left. - if len(out)-bufoff < dstEvery*3 { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 2") - } - - //copy(out, buf[0][:]) - //copy(out[dstEvery:], buf[1][:]) - //copy(out[dstEvery*2:], buf[2][:]) - // copy(out[dstEvery*3:], buf[3][:]) - *(*[bufoff]byte)(out) = buf[0] - *(*[bufoff]byte)(out[dstEvery:]) = buf[1] - *(*[bufoff]byte)(out[dstEvery*2:]) = buf[2] - *(*[bufoff]byte)(out[dstEvery*3:]) = buf[3] - out = out[bufoff:] - decoded += bufoff * 4 - } - } - if off > 0 { - ioff := int(off) - if len(out) < dstEvery*3+ioff { - return nil, errors.New("corruption detected: stream overrun 3") - } - copy(out, buf[0][:off]) - copy(out[dstEvery:], buf[1][:off]) - copy(out[dstEvery*2:], buf[2][:off]) - copy(out[dstEvery*3:], buf[3][:off]) - decoded += int(off) * 4 - out = out[off:] - } - - // Decode remaining. - remainBytes := dstEvery - (decoded / 4) - for i := range br { - offset := dstEvery * i - endsAt := offset + remainBytes - if endsAt > len(out) { - endsAt = len(out) - } - br := &br[i] - bitsLeft := br.remaining() - for bitsLeft > 0 { - if br.finished() { - d.bufs.Put(buf) - return nil, io.ErrUnexpectedEOF - } - if br.bitsRead >= 56 { - if br.off >= 4 { - v := br.in[br.off-4:] - v = v[:4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - br.value |= uint64(low) << (br.bitsRead - 32) - br.bitsRead -= 32 - br.off -= 4 - } else { - for br.off > 0 { - br.value |= uint64(br.in[br.off-1]) << (br.bitsRead - 8) - br.bitsRead -= 8 - br.off-- - } - } - } - // end inline... - if offset >= endsAt { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 4") - } - - // Read value and increment offset. - v := single[br.peekByteFast()].entry - nBits := uint8(v) - br.advance(nBits) - bitsLeft -= uint(nBits) - out[offset] = uint8(v >> 8) - offset++ - } - if offset != endsAt { - d.bufs.Put(buf) - return nil, fmt.Errorf("corruption detected: short output block %d, end %d != %d", i, offset, endsAt) - } - - decoded += offset - dstEvery*i - err = br.close() - if err != nil { - d.bufs.Put(buf) - return nil, err - } - } - d.bufs.Put(buf) - if dstSize != decoded { - return nil, errors.New("corruption detected: short output block") - } - return dst, nil -} - -// matches will compare a decoding table to a coding table. -// Errors are written to the writer. -// Nothing will be written if table is ok. -func (s *Scratch) matches(ct cTable, w io.Writer) { - if s == nil || len(s.dt.single) == 0 { - return - } - dt := s.dt.single[:1<>8) == byte(sym) { - fmt.Fprintf(w, "symbol %x has decoder, but no encoder\n", sym) - errs++ - break - } - } - if errs == 0 { - broken-- - } - continue - } - // Unused bits in input - ub := tablelog - enc.nBits - top := enc.val << ub - // decoder looks at top bits. - dec := dt[top] - if uint8(dec.entry) != enc.nBits { - fmt.Fprintf(w, "symbol 0x%x bit size mismatch (enc: %d, dec:%d).\n", sym, enc.nBits, uint8(dec.entry)) - errs++ - } - if uint8(dec.entry>>8) != uint8(sym) { - fmt.Fprintf(w, "symbol 0x%x decoder output mismatch (enc: %d, dec:%d).\n", sym, sym, uint8(dec.entry>>8)) - errs++ - } - if errs > 0 { - fmt.Fprintf(w, "%d errors in base, stopping\n", errs) - continue - } - // Ensure that all combinations are covered. - for i := uint16(0); i < (1 << ub); i++ { - vval := top | i - dec := dt[vval] - if uint8(dec.entry) != enc.nBits { - fmt.Fprintf(w, "symbol 0x%x bit size mismatch (enc: %d, dec:%d).\n", vval, enc.nBits, uint8(dec.entry)) - errs++ - } - if uint8(dec.entry>>8) != uint8(sym) { - fmt.Fprintf(w, "symbol 0x%x decoder output mismatch (enc: %d, dec:%d).\n", vval, sym, uint8(dec.entry>>8)) - errs++ - } - if errs > 20 { - fmt.Fprintf(w, "%d errors, stopping\n", errs) - break - } - } - if errs == 0 { - ok++ - broken-- - } - } - if broken > 0 { - fmt.Fprintf(w, "%d broken, %d ok\n", broken, ok) - } -} diff --git a/vendor/github.com/klauspost/compress/huff0/decompress_amd64.go b/vendor/github.com/klauspost/compress/huff0/decompress_amd64.go deleted file mode 100644 index ba7e8e6b02..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/decompress_amd64.go +++ /dev/null @@ -1,226 +0,0 @@ -//go:build amd64 && !appengine && !noasm && gc -// +build amd64,!appengine,!noasm,gc - -// This file contains the specialisation of Decoder.Decompress4X -// and Decoder.Decompress1X that use an asm implementation of thir main loops. -package huff0 - -import ( - "errors" - "fmt" - - "github.com/klauspost/compress/internal/cpuinfo" -) - -// decompress4x_main_loop_x86 is an x86 assembler implementation -// of Decompress4X when tablelog > 8. -// -//go:noescape -func decompress4x_main_loop_amd64(ctx *decompress4xContext) - -// decompress4x_8b_loop_x86 is an x86 assembler implementation -// of Decompress4X when tablelog <= 8 which decodes 4 entries -// per loop. -// -//go:noescape -func decompress4x_8b_main_loop_amd64(ctx *decompress4xContext) - -// fallback8BitSize is the size where using Go version is faster. -const fallback8BitSize = 800 - -type decompress4xContext struct { - pbr *[4]bitReaderShifted - peekBits uint8 - out *byte - dstEvery int - tbl *dEntrySingle - decoded int - limit *byte -} - -// Decompress4X will decompress a 4X encoded stream. -// The length of the supplied input must match the end of a block exactly. -// The *capacity* of the dst slice must match the destination size of -// the uncompressed data exactly. -func (d *Decoder) Decompress4X(dst, src []byte) ([]byte, error) { - if len(d.dt.single) == 0 { - return nil, errors.New("no table loaded") - } - if len(src) < 6+(4*1) { - return nil, errors.New("input too small") - } - - use8BitTables := d.actualTableLog <= 8 - if cap(dst) < fallback8BitSize && use8BitTables { - return d.decompress4X8bit(dst, src) - } - - var br [4]bitReaderShifted - // Decode "jump table" - start := 6 - for i := 0; i < 3; i++ { - length := int(src[i*2]) | (int(src[i*2+1]) << 8) - if start+length >= len(src) { - return nil, errors.New("truncated input (or invalid offset)") - } - err := br[i].init(src[start : start+length]) - if err != nil { - return nil, err - } - start += length - } - err := br[3].init(src[start:]) - if err != nil { - return nil, err - } - - // destination, offset to match first output - dstSize := cap(dst) - dst = dst[:dstSize] - out := dst - dstEvery := (dstSize + 3) / 4 - - const tlSize = 1 << tableLogMax - const tlMask = tlSize - 1 - single := d.dt.single[:tlSize] - - var decoded int - - if len(out) > 4*4 && !(br[0].off < 4 || br[1].off < 4 || br[2].off < 4 || br[3].off < 4) { - ctx := decompress4xContext{ - pbr: &br, - peekBits: uint8((64 - d.actualTableLog) & 63), // see: bitReaderShifted.peekBitsFast() - out: &out[0], - dstEvery: dstEvery, - tbl: &single[0], - limit: &out[dstEvery-4], // Always stop decoding when first buffer gets here to avoid writing OOB on last. - } - if use8BitTables { - decompress4x_8b_main_loop_amd64(&ctx) - } else { - decompress4x_main_loop_amd64(&ctx) - } - - decoded = ctx.decoded - out = out[decoded/4:] - } - - // Decode remaining. - remainBytes := dstEvery - (decoded / 4) - for i := range br { - offset := dstEvery * i - endsAt := offset + remainBytes - if endsAt > len(out) { - endsAt = len(out) - } - br := &br[i] - bitsLeft := br.remaining() - for bitsLeft > 0 { - br.fill() - if offset >= endsAt { - return nil, errors.New("corruption detected: stream overrun 4") - } - - // Read value and increment offset. - val := br.peekBitsFast(d.actualTableLog) - v := single[val&tlMask].entry - nBits := uint8(v) - br.advance(nBits) - bitsLeft -= uint(nBits) - out[offset] = uint8(v >> 8) - offset++ - } - if offset != endsAt { - return nil, fmt.Errorf("corruption detected: short output block %d, end %d != %d", i, offset, endsAt) - } - decoded += offset - dstEvery*i - err = br.close() - if err != nil { - return nil, err - } - } - if dstSize != decoded { - return nil, errors.New("corruption detected: short output block") - } - return dst, nil -} - -// decompress4x_main_loop_x86 is an x86 assembler implementation -// of Decompress1X when tablelog > 8. -// -//go:noescape -func decompress1x_main_loop_amd64(ctx *decompress1xContext) - -// decompress4x_main_loop_x86 is an x86 with BMI2 assembler implementation -// of Decompress1X when tablelog > 8. -// -//go:noescape -func decompress1x_main_loop_bmi2(ctx *decompress1xContext) - -type decompress1xContext struct { - pbr *bitReaderShifted - peekBits uint8 - out *byte - outCap int - tbl *dEntrySingle - decoded int -} - -// Error reported by asm implementations -const error_max_decoded_size_exeeded = -1 - -// Decompress1X will decompress a 1X encoded stream. -// The cap of the output buffer will be the maximum decompressed size. -// The length of the supplied input must match the end of a block exactly. -func (d *Decoder) Decompress1X(dst, src []byte) ([]byte, error) { - if len(d.dt.single) == 0 { - return nil, errors.New("no table loaded") - } - var br bitReaderShifted - err := br.init(src) - if err != nil { - return dst, err - } - maxDecodedSize := cap(dst) - dst = dst[:maxDecodedSize] - - const tlSize = 1 << tableLogMax - const tlMask = tlSize - 1 - - if maxDecodedSize >= 4 { - ctx := decompress1xContext{ - pbr: &br, - out: &dst[0], - outCap: maxDecodedSize, - peekBits: uint8((64 - d.actualTableLog) & 63), // see: bitReaderShifted.peekBitsFast() - tbl: &d.dt.single[0], - } - - if cpuinfo.HasBMI2() { - decompress1x_main_loop_bmi2(&ctx) - } else { - decompress1x_main_loop_amd64(&ctx) - } - if ctx.decoded == error_max_decoded_size_exeeded { - return nil, ErrMaxDecodedSizeExceeded - } - - dst = dst[:ctx.decoded] - } - - // br < 8, so uint8 is fine - bitsLeft := uint8(br.off)*8 + 64 - br.bitsRead - for bitsLeft > 0 { - br.fill() - if len(dst) >= maxDecodedSize { - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - v := d.dt.single[br.peekBitsFast(d.actualTableLog)&tlMask] - nBits := uint8(v.entry) - br.advance(nBits) - bitsLeft -= nBits - dst = append(dst, uint8(v.entry>>8)) - } - return dst, br.close() -} diff --git a/vendor/github.com/klauspost/compress/huff0/decompress_amd64.s b/vendor/github.com/klauspost/compress/huff0/decompress_amd64.s deleted file mode 100644 index c4c7ab2d1f..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/decompress_amd64.s +++ /dev/null @@ -1,830 +0,0 @@ -// Code generated by command: go run gen.go -out ../decompress_amd64.s -pkg=huff0. DO NOT EDIT. - -//go:build amd64 && !appengine && !noasm && gc - -// func decompress4x_main_loop_amd64(ctx *decompress4xContext) -TEXT ·decompress4x_main_loop_amd64(SB), $0-8 - // Preload values - MOVQ ctx+0(FP), AX - MOVBQZX 8(AX), DI - MOVQ 16(AX), BX - MOVQ 48(AX), SI - MOVQ 24(AX), R8 - MOVQ 32(AX), R9 - MOVQ (AX), R10 - - // Main loop -main_loop: - XORL DX, DX - CMPQ BX, SI - SETGE DL - - // br0.fillFast32() - MOVQ 32(R10), R11 - MOVBQZX 40(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill0 - MOVQ 24(R10), AX - SUBQ $0x20, R12 - SUBQ $0x04, AX - MOVQ (R10), R13 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (AX)(R13*1), R13 - MOVQ R12, CX - SHLQ CL, R13 - MOVQ AX, 24(R10) - ORQ R13, R11 - - // exhausted += (br0.off < 4) - CMPQ AX, $0x04 - ADCB $+0, DL - -skip_fill0: - // val0 := br0.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br0.peekTopBits(peekBits) - MOVQ DI, CX - MOVQ R11, R13 - SHRQ CL, R13 - - // v1 := table[val1&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v1.entry)) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // these two writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - MOVW AX, (BX) - - // update the bitreader structure - MOVQ R11, 32(R10) - MOVB R12, 40(R10) - - // br1.fillFast32() - MOVQ 80(R10), R11 - MOVBQZX 88(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill1 - MOVQ 72(R10), AX - SUBQ $0x20, R12 - SUBQ $0x04, AX - MOVQ 48(R10), R13 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (AX)(R13*1), R13 - MOVQ R12, CX - SHLQ CL, R13 - MOVQ AX, 72(R10) - ORQ R13, R11 - - // exhausted += (br1.off < 4) - CMPQ AX, $0x04 - ADCB $+0, DL - -skip_fill1: - // val0 := br1.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br1.peekTopBits(peekBits) - MOVQ DI, CX - MOVQ R11, R13 - SHRQ CL, R13 - - // v1 := table[val1&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v1.entry)) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // these two writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - MOVW AX, (BX)(R8*1) - - // update the bitreader structure - MOVQ R11, 80(R10) - MOVB R12, 88(R10) - - // br2.fillFast32() - MOVQ 128(R10), R11 - MOVBQZX 136(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill2 - MOVQ 120(R10), AX - SUBQ $0x20, R12 - SUBQ $0x04, AX - MOVQ 96(R10), R13 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (AX)(R13*1), R13 - MOVQ R12, CX - SHLQ CL, R13 - MOVQ AX, 120(R10) - ORQ R13, R11 - - // exhausted += (br2.off < 4) - CMPQ AX, $0x04 - ADCB $+0, DL - -skip_fill2: - // val0 := br2.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br2.peekTopBits(peekBits) - MOVQ DI, CX - MOVQ R11, R13 - SHRQ CL, R13 - - // v1 := table[val1&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v1.entry)) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // these two writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - MOVW AX, (BX)(R8*2) - - // update the bitreader structure - MOVQ R11, 128(R10) - MOVB R12, 136(R10) - - // br3.fillFast32() - MOVQ 176(R10), R11 - MOVBQZX 184(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill3 - MOVQ 168(R10), AX - SUBQ $0x20, R12 - SUBQ $0x04, AX - MOVQ 144(R10), R13 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (AX)(R13*1), R13 - MOVQ R12, CX - SHLQ CL, R13 - MOVQ AX, 168(R10) - ORQ R13, R11 - - // exhausted += (br3.off < 4) - CMPQ AX, $0x04 - ADCB $+0, DL - -skip_fill3: - // val0 := br3.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br3.peekTopBits(peekBits) - MOVQ DI, CX - MOVQ R11, R13 - SHRQ CL, R13 - - // v1 := table[val1&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v1.entry)) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // these two writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - LEAQ (R8)(R8*2), CX - MOVW AX, (BX)(CX*1) - - // update the bitreader structure - MOVQ R11, 176(R10) - MOVB R12, 184(R10) - ADDQ $0x02, BX - TESTB DL, DL - JZ main_loop - MOVQ ctx+0(FP), AX - SUBQ 16(AX), BX - SHLQ $0x02, BX - MOVQ BX, 40(AX) - RET - -// func decompress4x_8b_main_loop_amd64(ctx *decompress4xContext) -TEXT ·decompress4x_8b_main_loop_amd64(SB), $0-8 - // Preload values - MOVQ ctx+0(FP), CX - MOVBQZX 8(CX), DI - MOVQ 16(CX), BX - MOVQ 48(CX), SI - MOVQ 24(CX), R8 - MOVQ 32(CX), R9 - MOVQ (CX), R10 - - // Main loop -main_loop: - XORL DX, DX - CMPQ BX, SI - SETGE DL - - // br0.fillFast32() - MOVQ 32(R10), R11 - MOVBQZX 40(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill0 - MOVQ 24(R10), R13 - SUBQ $0x20, R12 - SUBQ $0x04, R13 - MOVQ (R10), R14 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (R13)(R14*1), R14 - MOVQ R12, CX - SHLQ CL, R14 - MOVQ R13, 24(R10) - ORQ R14, R11 - - // exhausted += (br0.off < 4) - CMPQ R13, $0x04 - ADCB $+0, DL - -skip_fill0: - // val0 := br0.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br0.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v1 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v1.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // val2 := br0.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v2 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v2.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // val3 := br0.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v3 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br0.advance(uint8(v3.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // these four writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - // out[id * dstEvery + 3] = uint8(v2.entry >> 8) - // out[id * dstEvery + 4] = uint8(v3.entry >> 8) - MOVL AX, (BX) - - // update the bitreader structure - MOVQ R11, 32(R10) - MOVB R12, 40(R10) - - // br1.fillFast32() - MOVQ 80(R10), R11 - MOVBQZX 88(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill1 - MOVQ 72(R10), R13 - SUBQ $0x20, R12 - SUBQ $0x04, R13 - MOVQ 48(R10), R14 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (R13)(R14*1), R14 - MOVQ R12, CX - SHLQ CL, R14 - MOVQ R13, 72(R10) - ORQ R14, R11 - - // exhausted += (br1.off < 4) - CMPQ R13, $0x04 - ADCB $+0, DL - -skip_fill1: - // val0 := br1.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br1.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v1 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v1.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // val2 := br1.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v2 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v2.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // val3 := br1.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v3 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br1.advance(uint8(v3.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // these four writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - // out[id * dstEvery + 3] = uint8(v2.entry >> 8) - // out[id * dstEvery + 4] = uint8(v3.entry >> 8) - MOVL AX, (BX)(R8*1) - - // update the bitreader structure - MOVQ R11, 80(R10) - MOVB R12, 88(R10) - - // br2.fillFast32() - MOVQ 128(R10), R11 - MOVBQZX 136(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill2 - MOVQ 120(R10), R13 - SUBQ $0x20, R12 - SUBQ $0x04, R13 - MOVQ 96(R10), R14 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (R13)(R14*1), R14 - MOVQ R12, CX - SHLQ CL, R14 - MOVQ R13, 120(R10) - ORQ R14, R11 - - // exhausted += (br2.off < 4) - CMPQ R13, $0x04 - ADCB $+0, DL - -skip_fill2: - // val0 := br2.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br2.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v1 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v1.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // val2 := br2.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v2 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v2.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // val3 := br2.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v3 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br2.advance(uint8(v3.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // these four writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - // out[id * dstEvery + 3] = uint8(v2.entry >> 8) - // out[id * dstEvery + 4] = uint8(v3.entry >> 8) - MOVL AX, (BX)(R8*2) - - // update the bitreader structure - MOVQ R11, 128(R10) - MOVB R12, 136(R10) - - // br3.fillFast32() - MOVQ 176(R10), R11 - MOVBQZX 184(R10), R12 - CMPQ R12, $0x20 - JBE skip_fill3 - MOVQ 168(R10), R13 - SUBQ $0x20, R12 - SUBQ $0x04, R13 - MOVQ 144(R10), R14 - - // b.value |= uint64(low) << (b.bitsRead & 63) - MOVL (R13)(R14*1), R14 - MOVQ R12, CX - SHLQ CL, R14 - MOVQ R13, 168(R10) - ORQ R14, R11 - - // exhausted += (br3.off < 4) - CMPQ R13, $0x04 - ADCB $+0, DL - -skip_fill3: - // val0 := br3.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v0 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v0.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - - // val1 := br3.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v1 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v1.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // val2 := br3.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v2 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v2.entry) - MOVB CH, AH - SHLQ CL, R11 - ADDB CL, R12 - - // val3 := br3.peekTopBits(peekBits) - MOVQ R11, R13 - MOVQ DI, CX - SHRQ CL, R13 - - // v3 := table[val0&mask] - MOVW (R9)(R13*2), CX - - // br3.advance(uint8(v3.entry) - MOVB CH, AL - SHLQ CL, R11 - ADDB CL, R12 - BSWAPL AX - - // these four writes get coalesced - // out[id * dstEvery + 0] = uint8(v0.entry >> 8) - // out[id * dstEvery + 1] = uint8(v1.entry >> 8) - // out[id * dstEvery + 3] = uint8(v2.entry >> 8) - // out[id * dstEvery + 4] = uint8(v3.entry >> 8) - LEAQ (R8)(R8*2), CX - MOVL AX, (BX)(CX*1) - - // update the bitreader structure - MOVQ R11, 176(R10) - MOVB R12, 184(R10) - ADDQ $0x04, BX - TESTB DL, DL - JZ main_loop - MOVQ ctx+0(FP), AX - SUBQ 16(AX), BX - SHLQ $0x02, BX - MOVQ BX, 40(AX) - RET - -// func decompress1x_main_loop_amd64(ctx *decompress1xContext) -TEXT ·decompress1x_main_loop_amd64(SB), $0-8 - MOVQ ctx+0(FP), CX - MOVQ 16(CX), DX - MOVQ 24(CX), BX - CMPQ BX, $0x04 - JB error_max_decoded_size_exceeded - LEAQ (DX)(BX*1), BX - MOVQ (CX), SI - MOVQ (SI), R8 - MOVQ 24(SI), R9 - MOVQ 32(SI), R10 - MOVBQZX 40(SI), R11 - MOVQ 32(CX), SI - MOVBQZX 8(CX), DI - JMP loop_condition - -main_loop: - // Check if we have room for 4 bytes in the output buffer - LEAQ 4(DX), CX - CMPQ CX, BX - JGE error_max_decoded_size_exceeded - - // Decode 4 values - CMPQ R11, $0x20 - JL bitReader_fillFast_1_end - SUBQ $0x20, R11 - SUBQ $0x04, R9 - MOVL (R8)(R9*1), R12 - MOVQ R11, CX - SHLQ CL, R12 - ORQ R12, R10 - -bitReader_fillFast_1_end: - MOVQ DI, CX - MOVQ R10, R12 - SHRQ CL, R12 - MOVW (SI)(R12*2), CX - MOVB CH, AL - MOVBQZX CL, CX - ADDQ CX, R11 - SHLQ CL, R10 - MOVQ DI, CX - MOVQ R10, R12 - SHRQ CL, R12 - MOVW (SI)(R12*2), CX - MOVB CH, AH - MOVBQZX CL, CX - ADDQ CX, R11 - SHLQ CL, R10 - BSWAPL AX - CMPQ R11, $0x20 - JL bitReader_fillFast_2_end - SUBQ $0x20, R11 - SUBQ $0x04, R9 - MOVL (R8)(R9*1), R12 - MOVQ R11, CX - SHLQ CL, R12 - ORQ R12, R10 - -bitReader_fillFast_2_end: - MOVQ DI, CX - MOVQ R10, R12 - SHRQ CL, R12 - MOVW (SI)(R12*2), CX - MOVB CH, AH - MOVBQZX CL, CX - ADDQ CX, R11 - SHLQ CL, R10 - MOVQ DI, CX - MOVQ R10, R12 - SHRQ CL, R12 - MOVW (SI)(R12*2), CX - MOVB CH, AL - MOVBQZX CL, CX - ADDQ CX, R11 - SHLQ CL, R10 - BSWAPL AX - - // Store the decoded values - MOVL AX, (DX) - ADDQ $0x04, DX - -loop_condition: - CMPQ R9, $0x08 - JGE main_loop - - // Update ctx structure - MOVQ ctx+0(FP), AX - SUBQ 16(AX), DX - MOVQ DX, 40(AX) - MOVQ (AX), AX - MOVQ R9, 24(AX) - MOVQ R10, 32(AX) - MOVB R11, 40(AX) - RET - - // Report error -error_max_decoded_size_exceeded: - MOVQ ctx+0(FP), AX - MOVQ $-1, CX - MOVQ CX, 40(AX) - RET - -// func decompress1x_main_loop_bmi2(ctx *decompress1xContext) -// Requires: BMI2 -TEXT ·decompress1x_main_loop_bmi2(SB), $0-8 - MOVQ ctx+0(FP), CX - MOVQ 16(CX), DX - MOVQ 24(CX), BX - CMPQ BX, $0x04 - JB error_max_decoded_size_exceeded - LEAQ (DX)(BX*1), BX - MOVQ (CX), SI - MOVQ (SI), R8 - MOVQ 24(SI), R9 - MOVQ 32(SI), R10 - MOVBQZX 40(SI), R11 - MOVQ 32(CX), SI - MOVBQZX 8(CX), DI - JMP loop_condition - -main_loop: - // Check if we have room for 4 bytes in the output buffer - LEAQ 4(DX), CX - CMPQ CX, BX - JGE error_max_decoded_size_exceeded - - // Decode 4 values - CMPQ R11, $0x20 - JL bitReader_fillFast_1_end - SUBQ $0x20, R11 - SUBQ $0x04, R9 - MOVL (R8)(R9*1), CX - SHLXQ R11, CX, CX - ORQ CX, R10 - -bitReader_fillFast_1_end: - SHRXQ DI, R10, CX - MOVW (SI)(CX*2), CX - MOVB CH, AL - MOVBQZX CL, CX - ADDQ CX, R11 - SHLXQ CX, R10, R10 - SHRXQ DI, R10, CX - MOVW (SI)(CX*2), CX - MOVB CH, AH - MOVBQZX CL, CX - ADDQ CX, R11 - SHLXQ CX, R10, R10 - BSWAPL AX - CMPQ R11, $0x20 - JL bitReader_fillFast_2_end - SUBQ $0x20, R11 - SUBQ $0x04, R9 - MOVL (R8)(R9*1), CX - SHLXQ R11, CX, CX - ORQ CX, R10 - -bitReader_fillFast_2_end: - SHRXQ DI, R10, CX - MOVW (SI)(CX*2), CX - MOVB CH, AH - MOVBQZX CL, CX - ADDQ CX, R11 - SHLXQ CX, R10, R10 - SHRXQ DI, R10, CX - MOVW (SI)(CX*2), CX - MOVB CH, AL - MOVBQZX CL, CX - ADDQ CX, R11 - SHLXQ CX, R10, R10 - BSWAPL AX - - // Store the decoded values - MOVL AX, (DX) - ADDQ $0x04, DX - -loop_condition: - CMPQ R9, $0x08 - JGE main_loop - - // Update ctx structure - MOVQ ctx+0(FP), AX - SUBQ 16(AX), DX - MOVQ DX, 40(AX) - MOVQ (AX), AX - MOVQ R9, 24(AX) - MOVQ R10, 32(AX) - MOVB R11, 40(AX) - RET - - // Report error -error_max_decoded_size_exceeded: - MOVQ ctx+0(FP), AX - MOVQ $-1, CX - MOVQ CX, 40(AX) - RET diff --git a/vendor/github.com/klauspost/compress/huff0/decompress_generic.go b/vendor/github.com/klauspost/compress/huff0/decompress_generic.go deleted file mode 100644 index 908c17de63..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/decompress_generic.go +++ /dev/null @@ -1,299 +0,0 @@ -//go:build !amd64 || appengine || !gc || noasm -// +build !amd64 appengine !gc noasm - -// This file contains a generic implementation of Decoder.Decompress4X. -package huff0 - -import ( - "errors" - "fmt" -) - -// Decompress4X will decompress a 4X encoded stream. -// The length of the supplied input must match the end of a block exactly. -// The *capacity* of the dst slice must match the destination size of -// the uncompressed data exactly. -func (d *Decoder) Decompress4X(dst, src []byte) ([]byte, error) { - if len(d.dt.single) == 0 { - return nil, errors.New("no table loaded") - } - if len(src) < 6+(4*1) { - return nil, errors.New("input too small") - } - if use8BitTables && d.actualTableLog <= 8 { - return d.decompress4X8bit(dst, src) - } - - var br [4]bitReaderShifted - // Decode "jump table" - start := 6 - for i := 0; i < 3; i++ { - length := int(src[i*2]) | (int(src[i*2+1]) << 8) - if start+length >= len(src) { - return nil, errors.New("truncated input (or invalid offset)") - } - err := br[i].init(src[start : start+length]) - if err != nil { - return nil, err - } - start += length - } - err := br[3].init(src[start:]) - if err != nil { - return nil, err - } - - // destination, offset to match first output - dstSize := cap(dst) - dst = dst[:dstSize] - out := dst - dstEvery := (dstSize + 3) / 4 - - const tlSize = 1 << tableLogMax - const tlMask = tlSize - 1 - single := d.dt.single[:tlSize] - - // Use temp table to avoid bound checks/append penalty. - buf := d.buffer() - var off uint8 - var decoded int - - // Decode 2 values from each decoder/loop. - const bufoff = 256 - for { - if br[0].off < 4 || br[1].off < 4 || br[2].off < 4 || br[3].off < 4 { - break - } - - { - const stream = 0 - const stream2 = 1 - br[stream].fillFast() - br[stream2].fillFast() - - val := br[stream].peekBitsFast(d.actualTableLog) - val2 := br[stream2].peekBitsFast(d.actualTableLog) - v := single[val&tlMask] - v2 := single[val2&tlMask] - br[stream].advance(uint8(v.entry)) - br[stream2].advance(uint8(v2.entry)) - buf[stream][off] = uint8(v.entry >> 8) - buf[stream2][off] = uint8(v2.entry >> 8) - - val = br[stream].peekBitsFast(d.actualTableLog) - val2 = br[stream2].peekBitsFast(d.actualTableLog) - v = single[val&tlMask] - v2 = single[val2&tlMask] - br[stream].advance(uint8(v.entry)) - br[stream2].advance(uint8(v2.entry)) - buf[stream][off+1] = uint8(v.entry >> 8) - buf[stream2][off+1] = uint8(v2.entry >> 8) - } - - { - const stream = 2 - const stream2 = 3 - br[stream].fillFast() - br[stream2].fillFast() - - val := br[stream].peekBitsFast(d.actualTableLog) - val2 := br[stream2].peekBitsFast(d.actualTableLog) - v := single[val&tlMask] - v2 := single[val2&tlMask] - br[stream].advance(uint8(v.entry)) - br[stream2].advance(uint8(v2.entry)) - buf[stream][off] = uint8(v.entry >> 8) - buf[stream2][off] = uint8(v2.entry >> 8) - - val = br[stream].peekBitsFast(d.actualTableLog) - val2 = br[stream2].peekBitsFast(d.actualTableLog) - v = single[val&tlMask] - v2 = single[val2&tlMask] - br[stream].advance(uint8(v.entry)) - br[stream2].advance(uint8(v2.entry)) - buf[stream][off+1] = uint8(v.entry >> 8) - buf[stream2][off+1] = uint8(v2.entry >> 8) - } - - off += 2 - - if off == 0 { - if bufoff > dstEvery { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 1") - } - // There must at least be 3 buffers left. - if len(out)-bufoff < dstEvery*3 { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 2") - } - //copy(out, buf[0][:]) - //copy(out[dstEvery:], buf[1][:]) - //copy(out[dstEvery*2:], buf[2][:]) - //copy(out[dstEvery*3:], buf[3][:]) - *(*[bufoff]byte)(out) = buf[0] - *(*[bufoff]byte)(out[dstEvery:]) = buf[1] - *(*[bufoff]byte)(out[dstEvery*2:]) = buf[2] - *(*[bufoff]byte)(out[dstEvery*3:]) = buf[3] - out = out[bufoff:] - decoded += bufoff * 4 - } - } - if off > 0 { - ioff := int(off) - if len(out) < dstEvery*3+ioff { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 3") - } - copy(out, buf[0][:off]) - copy(out[dstEvery:], buf[1][:off]) - copy(out[dstEvery*2:], buf[2][:off]) - copy(out[dstEvery*3:], buf[3][:off]) - decoded += int(off) * 4 - out = out[off:] - } - - // Decode remaining. - remainBytes := dstEvery - (decoded / 4) - for i := range br { - offset := dstEvery * i - endsAt := offset + remainBytes - if endsAt > len(out) { - endsAt = len(out) - } - br := &br[i] - bitsLeft := br.remaining() - for bitsLeft > 0 { - br.fill() - if offset >= endsAt { - d.bufs.Put(buf) - return nil, errors.New("corruption detected: stream overrun 4") - } - - // Read value and increment offset. - val := br.peekBitsFast(d.actualTableLog) - v := single[val&tlMask].entry - nBits := uint8(v) - br.advance(nBits) - bitsLeft -= uint(nBits) - out[offset] = uint8(v >> 8) - offset++ - } - if offset != endsAt { - d.bufs.Put(buf) - return nil, fmt.Errorf("corruption detected: short output block %d, end %d != %d", i, offset, endsAt) - } - decoded += offset - dstEvery*i - err = br.close() - if err != nil { - return nil, err - } - } - d.bufs.Put(buf) - if dstSize != decoded { - return nil, errors.New("corruption detected: short output block") - } - return dst, nil -} - -// Decompress1X will decompress a 1X encoded stream. -// The cap of the output buffer will be the maximum decompressed size. -// The length of the supplied input must match the end of a block exactly. -func (d *Decoder) Decompress1X(dst, src []byte) ([]byte, error) { - if len(d.dt.single) == 0 { - return nil, errors.New("no table loaded") - } - if use8BitTables && d.actualTableLog <= 8 { - return d.decompress1X8Bit(dst, src) - } - var br bitReaderShifted - err := br.init(src) - if err != nil { - return dst, err - } - maxDecodedSize := cap(dst) - dst = dst[:0] - - // Avoid bounds check by always having full sized table. - const tlSize = 1 << tableLogMax - const tlMask = tlSize - 1 - dt := d.dt.single[:tlSize] - - // Use temp table to avoid bound checks/append penalty. - bufs := d.buffer() - buf := &bufs[0] - var off uint8 - - for br.off >= 8 { - br.fillFast() - v := dt[br.peekBitsFast(d.actualTableLog)&tlMask] - br.advance(uint8(v.entry)) - buf[off+0] = uint8(v.entry >> 8) - - v = dt[br.peekBitsFast(d.actualTableLog)&tlMask] - br.advance(uint8(v.entry)) - buf[off+1] = uint8(v.entry >> 8) - - // Refill - br.fillFast() - - v = dt[br.peekBitsFast(d.actualTableLog)&tlMask] - br.advance(uint8(v.entry)) - buf[off+2] = uint8(v.entry >> 8) - - v = dt[br.peekBitsFast(d.actualTableLog)&tlMask] - br.advance(uint8(v.entry)) - buf[off+3] = uint8(v.entry >> 8) - - off += 4 - if off == 0 { - if len(dst)+256 > maxDecodedSize { - br.close() - d.bufs.Put(bufs) - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:]...) - } - } - - if len(dst)+int(off) > maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - dst = append(dst, buf[:off]...) - - // br < 8, so uint8 is fine - bitsLeft := uint8(br.off)*8 + 64 - br.bitsRead - for bitsLeft > 0 { - br.fill() - if false && br.bitsRead >= 32 { - if br.off >= 4 { - v := br.in[br.off-4:] - v = v[:4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - br.value = (br.value << 32) | uint64(low) - br.bitsRead -= 32 - br.off -= 4 - } else { - for br.off > 0 { - br.value = (br.value << 8) | uint64(br.in[br.off-1]) - br.bitsRead -= 8 - br.off-- - } - } - } - if len(dst) >= maxDecodedSize { - d.bufs.Put(bufs) - br.close() - return nil, ErrMaxDecodedSizeExceeded - } - v := d.dt.single[br.peekBitsFast(d.actualTableLog)&tlMask] - nBits := uint8(v.entry) - br.advance(nBits) - bitsLeft -= nBits - dst = append(dst, uint8(v.entry>>8)) - } - d.bufs.Put(bufs) - return dst, br.close() -} diff --git a/vendor/github.com/klauspost/compress/huff0/huff0.go b/vendor/github.com/klauspost/compress/huff0/huff0.go deleted file mode 100644 index 77ecd68e0a..0000000000 --- a/vendor/github.com/klauspost/compress/huff0/huff0.go +++ /dev/null @@ -1,337 +0,0 @@ -// Package huff0 provides fast huffman encoding as used in zstd. -// -// See README.md at https://github.com/klauspost/compress/tree/master/huff0 for details. -package huff0 - -import ( - "errors" - "fmt" - "math" - "math/bits" - "sync" - - "github.com/klauspost/compress/fse" -) - -const ( - maxSymbolValue = 255 - - // zstandard limits tablelog to 11, see: - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#huffman-tree-description - tableLogMax = 11 - tableLogDefault = 11 - minTablelog = 5 - huffNodesLen = 512 - - // BlockSizeMax is maximum input size for a single block uncompressed. - BlockSizeMax = 1<<18 - 1 -) - -var ( - // ErrIncompressible is returned when input is judged to be too hard to compress. - ErrIncompressible = errors.New("input is not compressible") - - // ErrUseRLE is returned from the compressor when the input is a single byte value repeated. - ErrUseRLE = errors.New("input is single value repeated") - - // ErrTooBig is return if input is too large for a single block. - ErrTooBig = errors.New("input too big") - - // ErrMaxDecodedSizeExceeded is return if input is too large for a single block. - ErrMaxDecodedSizeExceeded = errors.New("maximum output size exceeded") -) - -type ReusePolicy uint8 - -const ( - // ReusePolicyAllow will allow reuse if it produces smaller output. - ReusePolicyAllow ReusePolicy = iota - - // ReusePolicyPrefer will re-use aggressively if possible. - // This will not check if a new table will produce smaller output, - // except if the current table is impossible to use or - // compressed output is bigger than input. - ReusePolicyPrefer - - // ReusePolicyNone will disable re-use of tables. - // This is slightly faster than ReusePolicyAllow but may produce larger output. - ReusePolicyNone - - // ReusePolicyMust must allow reuse and produce smaller output. - ReusePolicyMust -) - -type Scratch struct { - count [maxSymbolValue + 1]uint32 - - // Per block parameters. - // These can be used to override compression parameters of the block. - // Do not touch, unless you know what you are doing. - - // Out is output buffer. - // If the scratch is re-used before the caller is done processing the output, - // set this field to nil. - // Otherwise the output buffer will be re-used for next Compression/Decompression step - // and allocation will be avoided. - Out []byte - - // OutTable will contain the table data only, if a new table has been generated. - // Slice of the returned data. - OutTable []byte - - // OutData will contain the compressed data. - // Slice of the returned data. - OutData []byte - - // MaxDecodedSize will set the maximum allowed output size. - // This value will automatically be set to BlockSizeMax if not set. - // Decoders will return ErrMaxDecodedSizeExceeded is this limit is exceeded. - MaxDecodedSize int - - srcLen int - - // MaxSymbolValue will override the maximum symbol value of the next block. - MaxSymbolValue uint8 - - // TableLog will attempt to override the tablelog for the next block. - // Must be <= 11 and >= 5. - TableLog uint8 - - // Reuse will specify the reuse policy - Reuse ReusePolicy - - // WantLogLess allows to specify a log 2 reduction that should at least be achieved, - // otherwise the block will be returned as incompressible. - // The reduction should then at least be (input size >> WantLogLess) - // If WantLogLess == 0 any improvement will do. - WantLogLess uint8 - - symbolLen uint16 // Length of active part of the symbol table. - maxCount int // count of the most probable symbol - clearCount bool // clear count - actualTableLog uint8 // Selected tablelog. - prevTableLog uint8 // Tablelog for previous table - prevTable cTable // Table used for previous compression. - cTable cTable // compression table - dt dTable // decompression table - nodes []nodeElt - tmpOut [4][]byte - fse *fse.Scratch - decPool sync.Pool // *[4][256]byte buffers. - huffWeight [maxSymbolValue + 1]byte -} - -// TransferCTable will transfer the previously used compression table. -func (s *Scratch) TransferCTable(src *Scratch) { - if cap(s.prevTable) < len(src.prevTable) { - s.prevTable = make(cTable, 0, maxSymbolValue+1) - } - s.prevTable = s.prevTable[:len(src.prevTable)] - copy(s.prevTable, src.prevTable) - s.prevTableLog = src.prevTableLog -} - -func (s *Scratch) prepare(in []byte) (*Scratch, error) { - if len(in) > BlockSizeMax { - return nil, ErrTooBig - } - if s == nil { - s = &Scratch{} - } - if s.MaxSymbolValue == 0 { - s.MaxSymbolValue = maxSymbolValue - } - if s.TableLog == 0 { - s.TableLog = tableLogDefault - } - if s.TableLog > tableLogMax || s.TableLog < minTablelog { - return nil, fmt.Errorf(" invalid tableLog %d (%d -> %d)", s.TableLog, minTablelog, tableLogMax) - } - if s.MaxDecodedSize <= 0 || s.MaxDecodedSize > BlockSizeMax { - s.MaxDecodedSize = BlockSizeMax - } - if s.clearCount && s.maxCount == 0 { - for i := range s.count { - s.count[i] = 0 - } - s.clearCount = false - } - if cap(s.Out) == 0 { - s.Out = make([]byte, 0, len(in)) - } - s.Out = s.Out[:0] - - s.OutTable = nil - s.OutData = nil - if cap(s.nodes) < huffNodesLen+1 { - s.nodes = make([]nodeElt, 0, huffNodesLen+1) - } - s.nodes = s.nodes[:0] - if s.fse == nil { - s.fse = &fse.Scratch{} - } - s.srcLen = len(in) - - return s, nil -} - -type cTable []cTableEntry - -func (c cTable) write(s *Scratch) error { - var ( - // precomputed conversion table - bitsToWeight [tableLogMax + 1]byte - huffLog = s.actualTableLog - // last weight is not saved. - maxSymbolValue = uint8(s.symbolLen - 1) - huffWeight = s.huffWeight[:256] - ) - const ( - maxFSETableLog = 6 - ) - // convert to weight - bitsToWeight[0] = 0 - for n := uint8(1); n < huffLog+1; n++ { - bitsToWeight[n] = huffLog + 1 - n - } - - // Acquire histogram for FSE. - hist := s.fse.Histogram() - hist = hist[:256] - for i := range hist[:16] { - hist[i] = 0 - } - for n := uint8(0); n < maxSymbolValue; n++ { - v := bitsToWeight[c[n].nBits] & 15 - huffWeight[n] = v - hist[v]++ - } - - // FSE compress if feasible. - if maxSymbolValue >= 2 { - huffMaxCnt := uint32(0) - huffMax := uint8(0) - for i, v := range hist[:16] { - if v == 0 { - continue - } - huffMax = byte(i) - if v > huffMaxCnt { - huffMaxCnt = v - } - } - s.fse.HistogramFinished(huffMax, int(huffMaxCnt)) - s.fse.TableLog = maxFSETableLog - b, err := fse.Compress(huffWeight[:maxSymbolValue], s.fse) - if err == nil && len(b) < int(s.symbolLen>>1) { - s.Out = append(s.Out, uint8(len(b))) - s.Out = append(s.Out, b...) - return nil - } - // Unable to compress (RLE/uncompressible) - } - // write raw values as 4-bits (max : 15) - if maxSymbolValue > (256 - 128) { - // should not happen : likely means source cannot be compressed - return ErrIncompressible - } - op := s.Out - // special case, pack weights 4 bits/weight. - op = append(op, 128|(maxSymbolValue-1)) - // be sure it doesn't cause msan issue in final combination - huffWeight[maxSymbolValue] = 0 - for n := uint16(0); n < uint16(maxSymbolValue); n += 2 { - op = append(op, (huffWeight[n]<<4)|huffWeight[n+1]) - } - s.Out = op - return nil -} - -func (c cTable) estTableSize(s *Scratch) (sz int, err error) { - var ( - // precomputed conversion table - bitsToWeight [tableLogMax + 1]byte - huffLog = s.actualTableLog - // last weight is not saved. - maxSymbolValue = uint8(s.symbolLen - 1) - huffWeight = s.huffWeight[:256] - ) - const ( - maxFSETableLog = 6 - ) - // convert to weight - bitsToWeight[0] = 0 - for n := uint8(1); n < huffLog+1; n++ { - bitsToWeight[n] = huffLog + 1 - n - } - - // Acquire histogram for FSE. - hist := s.fse.Histogram() - hist = hist[:256] - for i := range hist[:16] { - hist[i] = 0 - } - for n := uint8(0); n < maxSymbolValue; n++ { - v := bitsToWeight[c[n].nBits] & 15 - huffWeight[n] = v - hist[v]++ - } - - // FSE compress if feasible. - if maxSymbolValue >= 2 { - huffMaxCnt := uint32(0) - huffMax := uint8(0) - for i, v := range hist[:16] { - if v == 0 { - continue - } - huffMax = byte(i) - if v > huffMaxCnt { - huffMaxCnt = v - } - } - s.fse.HistogramFinished(huffMax, int(huffMaxCnt)) - s.fse.TableLog = maxFSETableLog - b, err := fse.Compress(huffWeight[:maxSymbolValue], s.fse) - if err == nil && len(b) < int(s.symbolLen>>1) { - sz += 1 + len(b) - return sz, nil - } - // Unable to compress (RLE/uncompressible) - } - // write raw values as 4-bits (max : 15) - if maxSymbolValue > (256 - 128) { - // should not happen : likely means source cannot be compressed - return 0, ErrIncompressible - } - // special case, pack weights 4 bits/weight. - sz += 1 + int(maxSymbolValue/2) - return sz, nil -} - -// estimateSize returns the estimated size in bytes of the input represented in the -// histogram supplied. -func (c cTable) estimateSize(hist []uint32) int { - nbBits := uint32(7) - for i, v := range c[:len(hist)] { - nbBits += uint32(v.nBits) * hist[i] - } - return int(nbBits >> 3) -} - -// minSize returns the minimum possible size considering the shannon limit. -func (s *Scratch) minSize(total int) int { - nbBits := float64(7) - fTotal := float64(total) - for _, v := range s.count[:s.symbolLen] { - n := float64(v) - if n > 0 { - nbBits += math.Log2(fTotal/n) * n - } - } - return int(nbBits) >> 3 -} - -func highBit32(val uint32) (n uint32) { - return uint32(bits.Len32(val) - 1) -} diff --git a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo.go b/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo.go deleted file mode 100644 index 3954c51219..0000000000 --- a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo.go +++ /dev/null @@ -1,34 +0,0 @@ -// Package cpuinfo gives runtime info about the current CPU. -// -// This is a very limited module meant for use internally -// in this project. For more versatile solution check -// https://github.com/klauspost/cpuid. -package cpuinfo - -// HasBMI1 checks whether an x86 CPU supports the BMI1 extension. -func HasBMI1() bool { - return hasBMI1 -} - -// HasBMI2 checks whether an x86 CPU supports the BMI2 extension. -func HasBMI2() bool { - return hasBMI2 -} - -// DisableBMI2 will disable BMI2, for testing purposes. -// Call returned function to restore previous state. -func DisableBMI2() func() { - old := hasBMI2 - hasBMI2 = false - return func() { - hasBMI2 = old - } -} - -// HasBMI checks whether an x86 CPU supports both BMI1 and BMI2 extensions. -func HasBMI() bool { - return HasBMI1() && HasBMI2() -} - -var hasBMI1 bool -var hasBMI2 bool diff --git a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.go b/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.go deleted file mode 100644 index e802579c4f..0000000000 --- a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.go +++ /dev/null @@ -1,11 +0,0 @@ -//go:build amd64 && !appengine && !noasm && gc -// +build amd64,!appengine,!noasm,gc - -package cpuinfo - -// go:noescape -func x86extensions() (bmi1, bmi2 bool) - -func init() { - hasBMI1, hasBMI2 = x86extensions() -} diff --git a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.s b/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.s deleted file mode 100644 index 4465fbe9e9..0000000000 --- a/vendor/github.com/klauspost/compress/internal/cpuinfo/cpuinfo_amd64.s +++ /dev/null @@ -1,36 +0,0 @@ -// +build !appengine -// +build gc -// +build !noasm - -#include "textflag.h" -#include "funcdata.h" -#include "go_asm.h" - -TEXT ·x86extensions(SB), NOSPLIT, $0 - // 1. determine max EAX value - XORQ AX, AX - CPUID - - CMPQ AX, $7 - JB unsupported - - // 2. EAX = 7, ECX = 0 --- see Table 3-8 "Information Returned by CPUID Instruction" - MOVQ $7, AX - MOVQ $0, CX - CPUID - - BTQ $3, BX // bit 3 = BMI1 - SETCS AL - - BTQ $8, BX // bit 8 = BMI2 - SETCS AH - - MOVB AL, bmi1+0(FP) - MOVB AH, bmi2+1(FP) - RET - -unsupported: - XORQ AX, AX - MOVB AL, bmi1+0(FP) - MOVB AL, bmi2+1(FP) - RET diff --git a/vendor/github.com/klauspost/compress/internal/snapref/LICENSE b/vendor/github.com/klauspost/compress/internal/snapref/LICENSE deleted file mode 100644 index 6050c10f4c..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2011 The Snappy-Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/github.com/klauspost/compress/internal/snapref/decode.go b/vendor/github.com/klauspost/compress/internal/snapref/decode.go deleted file mode 100644 index 40796a49d6..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/decode.go +++ /dev/null @@ -1,264 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snapref - -import ( - "encoding/binary" - "errors" - "io" -) - -var ( - // ErrCorrupt reports that the input is invalid. - ErrCorrupt = errors.New("snappy: corrupt input") - // ErrTooLarge reports that the uncompressed length is too large. - ErrTooLarge = errors.New("snappy: decoded block is too large") - // ErrUnsupported reports that the input isn't supported. - ErrUnsupported = errors.New("snappy: unsupported input") - - errUnsupportedLiteralLength = errors.New("snappy: unsupported literal length") -) - -// DecodedLen returns the length of the decoded block. -func DecodedLen(src []byte) (int, error) { - v, _, err := decodedLen(src) - return v, err -} - -// decodedLen returns the length of the decoded block and the number of bytes -// that the length header occupied. -func decodedLen(src []byte) (blockLen, headerLen int, err error) { - v, n := binary.Uvarint(src) - if n <= 0 || v > 0xffffffff { - return 0, 0, ErrCorrupt - } - - const wordSize = 32 << (^uint(0) >> 32 & 1) - if wordSize == 32 && v > 0x7fffffff { - return 0, 0, ErrTooLarge - } - return int(v), n, nil -} - -const ( - decodeErrCodeCorrupt = 1 - decodeErrCodeUnsupportedLiteralLength = 2 -) - -// Decode returns the decoded form of src. The returned slice may be a sub- -// slice of dst if dst was large enough to hold the entire decoded block. -// Otherwise, a newly allocated slice will be returned. -// -// The dst and src must not overlap. It is valid to pass a nil dst. -// -// Decode handles the Snappy block format, not the Snappy stream format. -func Decode(dst, src []byte) ([]byte, error) { - dLen, s, err := decodedLen(src) - if err != nil { - return nil, err - } - if dLen <= len(dst) { - dst = dst[:dLen] - } else { - dst = make([]byte, dLen) - } - switch decode(dst, src[s:]) { - case 0: - return dst, nil - case decodeErrCodeUnsupportedLiteralLength: - return nil, errUnsupportedLiteralLength - } - return nil, ErrCorrupt -} - -// NewReader returns a new Reader that decompresses from r, using the framing -// format described at -// https://github.com/google/snappy/blob/master/framing_format.txt -func NewReader(r io.Reader) *Reader { - return &Reader{ - r: r, - decoded: make([]byte, maxBlockSize), - buf: make([]byte, maxEncodedLenOfMaxBlockSize+checksumSize), - } -} - -// Reader is an io.Reader that can read Snappy-compressed bytes. -// -// Reader handles the Snappy stream format, not the Snappy block format. -type Reader struct { - r io.Reader - err error - decoded []byte - buf []byte - // decoded[i:j] contains decoded bytes that have not yet been passed on. - i, j int - readHeader bool -} - -// Reset discards any buffered data, resets all state, and switches the Snappy -// reader to read from r. This permits reusing a Reader rather than allocating -// a new one. -func (r *Reader) Reset(reader io.Reader) { - r.r = reader - r.err = nil - r.i = 0 - r.j = 0 - r.readHeader = false -} - -func (r *Reader) readFull(p []byte, allowEOF bool) (ok bool) { - if _, r.err = io.ReadFull(r.r, p); r.err != nil { - if r.err == io.ErrUnexpectedEOF || (r.err == io.EOF && !allowEOF) { - r.err = ErrCorrupt - } - return false - } - return true -} - -func (r *Reader) fill() error { - for r.i >= r.j { - if !r.readFull(r.buf[:4], true) { - return r.err - } - chunkType := r.buf[0] - if !r.readHeader { - if chunkType != chunkTypeStreamIdentifier { - r.err = ErrCorrupt - return r.err - } - r.readHeader = true - } - chunkLen := int(r.buf[1]) | int(r.buf[2])<<8 | int(r.buf[3])<<16 - if chunkLen > len(r.buf) { - r.err = ErrUnsupported - return r.err - } - - // The chunk types are specified at - // https://github.com/google/snappy/blob/master/framing_format.txt - switch chunkType { - case chunkTypeCompressedData: - // Section 4.2. Compressed data (chunk type 0x00). - if chunkLen < checksumSize { - r.err = ErrCorrupt - return r.err - } - buf := r.buf[:chunkLen] - if !r.readFull(buf, false) { - return r.err - } - checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - buf = buf[checksumSize:] - - n, err := DecodedLen(buf) - if err != nil { - r.err = err - return r.err - } - if n > len(r.decoded) { - r.err = ErrCorrupt - return r.err - } - if _, err := Decode(r.decoded, buf); err != nil { - r.err = err - return r.err - } - if crc(r.decoded[:n]) != checksum { - r.err = ErrCorrupt - return r.err - } - r.i, r.j = 0, n - continue - - case chunkTypeUncompressedData: - // Section 4.3. Uncompressed data (chunk type 0x01). - if chunkLen < checksumSize { - r.err = ErrCorrupt - return r.err - } - buf := r.buf[:checksumSize] - if !r.readFull(buf, false) { - return r.err - } - checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - // Read directly into r.decoded instead of via r.buf. - n := chunkLen - checksumSize - if n > len(r.decoded) { - r.err = ErrCorrupt - return r.err - } - if !r.readFull(r.decoded[:n], false) { - return r.err - } - if crc(r.decoded[:n]) != checksum { - r.err = ErrCorrupt - return r.err - } - r.i, r.j = 0, n - continue - - case chunkTypeStreamIdentifier: - // Section 4.1. Stream identifier (chunk type 0xff). - if chunkLen != len(magicBody) { - r.err = ErrCorrupt - return r.err - } - if !r.readFull(r.buf[:len(magicBody)], false) { - return r.err - } - for i := 0; i < len(magicBody); i++ { - if r.buf[i] != magicBody[i] { - r.err = ErrCorrupt - return r.err - } - } - continue - } - - if chunkType <= 0x7f { - // Section 4.5. Reserved unskippable chunks (chunk types 0x02-0x7f). - r.err = ErrUnsupported - return r.err - } - // Section 4.4 Padding (chunk type 0xfe). - // Section 4.6. Reserved skippable chunks (chunk types 0x80-0xfd). - if !r.readFull(r.buf[:chunkLen], false) { - return r.err - } - } - - return nil -} - -// Read satisfies the io.Reader interface. -func (r *Reader) Read(p []byte) (int, error) { - if r.err != nil { - return 0, r.err - } - - if err := r.fill(); err != nil { - return 0, err - } - - n := copy(p, r.decoded[r.i:r.j]) - r.i += n - return n, nil -} - -// ReadByte satisfies the io.ByteReader interface. -func (r *Reader) ReadByte() (byte, error) { - if r.err != nil { - return 0, r.err - } - - if err := r.fill(); err != nil { - return 0, err - } - - c := r.decoded[r.i] - r.i++ - return c, nil -} diff --git a/vendor/github.com/klauspost/compress/internal/snapref/decode_other.go b/vendor/github.com/klauspost/compress/internal/snapref/decode_other.go deleted file mode 100644 index 77395a6b8b..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/decode_other.go +++ /dev/null @@ -1,113 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snapref - -// decode writes the decoding of src to dst. It assumes that the varint-encoded -// length of the decompressed bytes has already been read, and that len(dst) -// equals that length. -// -// It returns 0 on success or a decodeErrCodeXxx error code on failure. -func decode(dst, src []byte) int { - var d, s, offset, length int - for s < len(src) { - switch src[s] & 0x03 { - case tagLiteral: - x := uint32(src[s] >> 2) - switch { - case x < 60: - s++ - case x == 60: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-1]) - case x == 61: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-2]) | uint32(src[s-1])<<8 - case x == 62: - s += 4 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-3]) | uint32(src[s-2])<<8 | uint32(src[s-1])<<16 - case x == 63: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - x = uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24 - } - length = int(x) + 1 - if length <= 0 { - return decodeErrCodeUnsupportedLiteralLength - } - if length > len(dst)-d || length > len(src)-s { - return decodeErrCodeCorrupt - } - copy(dst[d:], src[s:s+length]) - d += length - s += length - continue - - case tagCopy1: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 4 + int(src[s-2])>>2&0x7 - offset = int(uint32(src[s-2])&0xe0<<3 | uint32(src[s-1])) - - case tagCopy2: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 1 + int(src[s-3])>>2 - offset = int(uint32(src[s-2]) | uint32(src[s-1])<<8) - - case tagCopy4: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - return decodeErrCodeCorrupt - } - length = 1 + int(src[s-5])>>2 - offset = int(uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24) - } - - if offset <= 0 || d < offset || length > len(dst)-d { - return decodeErrCodeCorrupt - } - // Copy from an earlier sub-slice of dst to a later sub-slice. - // If no overlap, use the built-in copy: - if offset >= length { - copy(dst[d:d+length], dst[d-offset:]) - d += length - continue - } - - // Unlike the built-in copy function, this byte-by-byte copy always runs - // forwards, even if the slices overlap. Conceptually, this is: - // - // d += forwardCopy(dst[d:d+length], dst[d-offset:]) - // - // We align the slices into a and b and show the compiler they are the same size. - // This allows the loop to run without bounds checks. - a := dst[d : d+length] - b := dst[d-offset:] - b = b[:len(a)] - for i := range a { - a[i] = b[i] - } - d += length - } - if d != len(dst) { - return decodeErrCodeCorrupt - } - return 0 -} diff --git a/vendor/github.com/klauspost/compress/internal/snapref/encode.go b/vendor/github.com/klauspost/compress/internal/snapref/encode.go deleted file mode 100644 index 13c6040a5d..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/encode.go +++ /dev/null @@ -1,289 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snapref - -import ( - "encoding/binary" - "errors" - "io" -) - -// Encode returns the encoded form of src. The returned slice may be a sub- -// slice of dst if dst was large enough to hold the entire encoded block. -// Otherwise, a newly allocated slice will be returned. -// -// The dst and src must not overlap. It is valid to pass a nil dst. -// -// Encode handles the Snappy block format, not the Snappy stream format. -func Encode(dst, src []byte) []byte { - if n := MaxEncodedLen(len(src)); n < 0 { - panic(ErrTooLarge) - } else if len(dst) < n { - dst = make([]byte, n) - } - - // The block starts with the varint-encoded length of the decompressed bytes. - d := binary.PutUvarint(dst, uint64(len(src))) - - for len(src) > 0 { - p := src - src = nil - if len(p) > maxBlockSize { - p, src = p[:maxBlockSize], p[maxBlockSize:] - } - if len(p) < minNonLiteralBlockSize { - d += emitLiteral(dst[d:], p) - } else { - d += encodeBlock(dst[d:], p) - } - } - return dst[:d] -} - -// inputMargin is the minimum number of extra input bytes to keep, inside -// encodeBlock's inner loop. On some architectures, this margin lets us -// implement a fast path for emitLiteral, where the copy of short (<= 16 byte) -// literals can be implemented as a single load to and store from a 16-byte -// register. That literal's actual length can be as short as 1 byte, so this -// can copy up to 15 bytes too much, but that's OK as subsequent iterations of -// the encoding loop will fix up the copy overrun, and this inputMargin ensures -// that we don't overrun the dst and src buffers. -const inputMargin = 16 - 1 - -// minNonLiteralBlockSize is the minimum size of the input to encodeBlock that -// could be encoded with a copy tag. This is the minimum with respect to the -// algorithm used by encodeBlock, not a minimum enforced by the file format. -// -// The encoded output must start with at least a 1 byte literal, as there are -// no previous bytes to copy. A minimal (1 byte) copy after that, generated -// from an emitCopy call in encodeBlock's main loop, would require at least -// another inputMargin bytes, for the reason above: we want any emitLiteral -// calls inside encodeBlock's main loop to use the fast path if possible, which -// requires being able to overrun by inputMargin bytes. Thus, -// minNonLiteralBlockSize equals 1 + 1 + inputMargin. -// -// The C++ code doesn't use this exact threshold, but it could, as discussed at -// https://groups.google.com/d/topic/snappy-compression/oGbhsdIJSJ8/discussion -// The difference between Go (2+inputMargin) and C++ (inputMargin) is purely an -// optimization. It should not affect the encoded form. This is tested by -// TestSameEncodingAsCppShortCopies. -const minNonLiteralBlockSize = 1 + 1 + inputMargin - -// MaxEncodedLen returns the maximum length of a snappy block, given its -// uncompressed length. -// -// It will return a negative value if srcLen is too large to encode. -func MaxEncodedLen(srcLen int) int { - n := uint64(srcLen) - if n > 0xffffffff { - return -1 - } - // Compressed data can be defined as: - // compressed := item* literal* - // item := literal* copy - // - // The trailing literal sequence has a space blowup of at most 62/60 - // since a literal of length 60 needs one tag byte + one extra byte - // for length information. - // - // Item blowup is trickier to measure. Suppose the "copy" op copies - // 4 bytes of data. Because of a special check in the encoding code, - // we produce a 4-byte copy only if the offset is < 65536. Therefore - // the copy op takes 3 bytes to encode, and this type of item leads - // to at most the 62/60 blowup for representing literals. - // - // Suppose the "copy" op copies 5 bytes of data. If the offset is big - // enough, it will take 5 bytes to encode the copy op. Therefore the - // worst case here is a one-byte literal followed by a five-byte copy. - // That is, 6 bytes of input turn into 7 bytes of "compressed" data. - // - // This last factor dominates the blowup, so the final estimate is: - n = 32 + n + n/6 - if n > 0xffffffff { - return -1 - } - return int(n) -} - -var errClosed = errors.New("snappy: Writer is closed") - -// NewWriter returns a new Writer that compresses to w. -// -// The Writer returned does not buffer writes. There is no need to Flush or -// Close such a Writer. -// -// Deprecated: the Writer returned is not suitable for many small writes, only -// for few large writes. Use NewBufferedWriter instead, which is efficient -// regardless of the frequency and shape of the writes, and remember to Close -// that Writer when done. -func NewWriter(w io.Writer) *Writer { - return &Writer{ - w: w, - obuf: make([]byte, obufLen), - } -} - -// NewBufferedWriter returns a new Writer that compresses to w, using the -// framing format described at -// https://github.com/google/snappy/blob/master/framing_format.txt -// -// The Writer returned buffers writes. Users must call Close to guarantee all -// data has been forwarded to the underlying io.Writer. They may also call -// Flush zero or more times before calling Close. -func NewBufferedWriter(w io.Writer) *Writer { - return &Writer{ - w: w, - ibuf: make([]byte, 0, maxBlockSize), - obuf: make([]byte, obufLen), - } -} - -// Writer is an io.Writer that can write Snappy-compressed bytes. -// -// Writer handles the Snappy stream format, not the Snappy block format. -type Writer struct { - w io.Writer - err error - - // ibuf is a buffer for the incoming (uncompressed) bytes. - // - // Its use is optional. For backwards compatibility, Writers created by the - // NewWriter function have ibuf == nil, do not buffer incoming bytes, and - // therefore do not need to be Flush'ed or Close'd. - ibuf []byte - - // obuf is a buffer for the outgoing (compressed) bytes. - obuf []byte - - // wroteStreamHeader is whether we have written the stream header. - wroteStreamHeader bool -} - -// Reset discards the writer's state and switches the Snappy writer to write to -// w. This permits reusing a Writer rather than allocating a new one. -func (w *Writer) Reset(writer io.Writer) { - w.w = writer - w.err = nil - if w.ibuf != nil { - w.ibuf = w.ibuf[:0] - } - w.wroteStreamHeader = false -} - -// Write satisfies the io.Writer interface. -func (w *Writer) Write(p []byte) (nRet int, errRet error) { - if w.ibuf == nil { - // Do not buffer incoming bytes. This does not perform or compress well - // if the caller of Writer.Write writes many small slices. This - // behavior is therefore deprecated, but still supported for backwards - // compatibility with code that doesn't explicitly Flush or Close. - return w.write(p) - } - - // The remainder of this method is based on bufio.Writer.Write from the - // standard library. - - for len(p) > (cap(w.ibuf)-len(w.ibuf)) && w.err == nil { - var n int - if len(w.ibuf) == 0 { - // Large write, empty buffer. - // Write directly from p to avoid copy. - n, _ = w.write(p) - } else { - n = copy(w.ibuf[len(w.ibuf):cap(w.ibuf)], p) - w.ibuf = w.ibuf[:len(w.ibuf)+n] - w.Flush() - } - nRet += n - p = p[n:] - } - if w.err != nil { - return nRet, w.err - } - n := copy(w.ibuf[len(w.ibuf):cap(w.ibuf)], p) - w.ibuf = w.ibuf[:len(w.ibuf)+n] - nRet += n - return nRet, nil -} - -func (w *Writer) write(p []byte) (nRet int, errRet error) { - if w.err != nil { - return 0, w.err - } - for len(p) > 0 { - obufStart := len(magicChunk) - if !w.wroteStreamHeader { - w.wroteStreamHeader = true - copy(w.obuf, magicChunk) - obufStart = 0 - } - - var uncompressed []byte - if len(p) > maxBlockSize { - uncompressed, p = p[:maxBlockSize], p[maxBlockSize:] - } else { - uncompressed, p = p, nil - } - checksum := crc(uncompressed) - - // Compress the buffer, discarding the result if the improvement - // isn't at least 12.5%. - compressed := Encode(w.obuf[obufHeaderLen:], uncompressed) - chunkType := uint8(chunkTypeCompressedData) - chunkLen := 4 + len(compressed) - obufEnd := obufHeaderLen + len(compressed) - if len(compressed) >= len(uncompressed)-len(uncompressed)/8 { - chunkType = chunkTypeUncompressedData - chunkLen = 4 + len(uncompressed) - obufEnd = obufHeaderLen - } - - // Fill in the per-chunk header that comes before the body. - w.obuf[len(magicChunk)+0] = chunkType - w.obuf[len(magicChunk)+1] = uint8(chunkLen >> 0) - w.obuf[len(magicChunk)+2] = uint8(chunkLen >> 8) - w.obuf[len(magicChunk)+3] = uint8(chunkLen >> 16) - w.obuf[len(magicChunk)+4] = uint8(checksum >> 0) - w.obuf[len(magicChunk)+5] = uint8(checksum >> 8) - w.obuf[len(magicChunk)+6] = uint8(checksum >> 16) - w.obuf[len(magicChunk)+7] = uint8(checksum >> 24) - - if _, err := w.w.Write(w.obuf[obufStart:obufEnd]); err != nil { - w.err = err - return nRet, err - } - if chunkType == chunkTypeUncompressedData { - if _, err := w.w.Write(uncompressed); err != nil { - w.err = err - return nRet, err - } - } - nRet += len(uncompressed) - } - return nRet, nil -} - -// Flush flushes the Writer to its underlying io.Writer. -func (w *Writer) Flush() error { - if w.err != nil { - return w.err - } - if len(w.ibuf) == 0 { - return nil - } - w.write(w.ibuf) - w.ibuf = w.ibuf[:0] - return w.err -} - -// Close calls Flush and then closes the Writer. -func (w *Writer) Close() error { - w.Flush() - ret := w.err - if w.err == nil { - w.err = errClosed - } - return ret -} diff --git a/vendor/github.com/klauspost/compress/internal/snapref/encode_other.go b/vendor/github.com/klauspost/compress/internal/snapref/encode_other.go deleted file mode 100644 index 2754bac6f1..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/encode_other.go +++ /dev/null @@ -1,250 +0,0 @@ -// Copyright 2016 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package snapref - -func load32(b []byte, i int) uint32 { - b = b[i : i+4 : len(b)] // Help the compiler eliminate bounds checks on the next line. - return uint32(b[0]) | uint32(b[1])<<8 | uint32(b[2])<<16 | uint32(b[3])<<24 -} - -func load64(b []byte, i int) uint64 { - b = b[i : i+8 : len(b)] // Help the compiler eliminate bounds checks on the next line. - return uint64(b[0]) | uint64(b[1])<<8 | uint64(b[2])<<16 | uint64(b[3])<<24 | - uint64(b[4])<<32 | uint64(b[5])<<40 | uint64(b[6])<<48 | uint64(b[7])<<56 -} - -// emitLiteral writes a literal chunk and returns the number of bytes written. -// -// It assumes that: -// -// dst is long enough to hold the encoded bytes -// 1 <= len(lit) && len(lit) <= 65536 -func emitLiteral(dst, lit []byte) int { - i, n := 0, uint(len(lit)-1) - switch { - case n < 60: - dst[0] = uint8(n)<<2 | tagLiteral - i = 1 - case n < 1<<8: - dst[0] = 60<<2 | tagLiteral - dst[1] = uint8(n) - i = 2 - default: - dst[0] = 61<<2 | tagLiteral - dst[1] = uint8(n) - dst[2] = uint8(n >> 8) - i = 3 - } - return i + copy(dst[i:], lit) -} - -// emitCopy writes a copy chunk and returns the number of bytes written. -// -// It assumes that: -// -// dst is long enough to hold the encoded bytes -// 1 <= offset && offset <= 65535 -// 4 <= length && length <= 65535 -func emitCopy(dst []byte, offset, length int) int { - i := 0 - // The maximum length for a single tagCopy1 or tagCopy2 op is 64 bytes. The - // threshold for this loop is a little higher (at 68 = 64 + 4), and the - // length emitted down below is a little lower (at 60 = 64 - 4), because - // it's shorter to encode a length 67 copy as a length 60 tagCopy2 followed - // by a length 7 tagCopy1 (which encodes as 3+2 bytes) than to encode it as - // a length 64 tagCopy2 followed by a length 3 tagCopy2 (which encodes as - // 3+3 bytes). The magic 4 in the 64±4 is because the minimum length for a - // tagCopy1 op is 4 bytes, which is why a length 3 copy has to be an - // encodes-as-3-bytes tagCopy2 instead of an encodes-as-2-bytes tagCopy1. - for length >= 68 { - // Emit a length 64 copy, encoded as 3 bytes. - dst[i+0] = 63<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - i += 3 - length -= 64 - } - if length > 64 { - // Emit a length 60 copy, encoded as 3 bytes. - dst[i+0] = 59<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - i += 3 - length -= 60 - } - if length >= 12 || offset >= 2048 { - // Emit the remaining copy, encoded as 3 bytes. - dst[i+0] = uint8(length-1)<<2 | tagCopy2 - dst[i+1] = uint8(offset) - dst[i+2] = uint8(offset >> 8) - return i + 3 - } - // Emit the remaining copy, encoded as 2 bytes. - dst[i+0] = uint8(offset>>8)<<5 | uint8(length-4)<<2 | tagCopy1 - dst[i+1] = uint8(offset) - return i + 2 -} - -func hash(u, shift uint32) uint32 { - return (u * 0x1e35a7bd) >> shift -} - -// EncodeBlockInto exposes encodeBlock but checks dst size. -func EncodeBlockInto(dst, src []byte) (d int) { - if MaxEncodedLen(len(src)) > len(dst) { - return 0 - } - - // encodeBlock breaks on too big blocks, so split. - for len(src) > 0 { - p := src - src = nil - if len(p) > maxBlockSize { - p, src = p[:maxBlockSize], p[maxBlockSize:] - } - if len(p) < minNonLiteralBlockSize { - d += emitLiteral(dst[d:], p) - } else { - d += encodeBlock(dst[d:], p) - } - } - return d -} - -// encodeBlock encodes a non-empty src to a guaranteed-large-enough dst. It -// assumes that the varint-encoded length of the decompressed bytes has already -// been written. -// -// It also assumes that: -// -// len(dst) >= MaxEncodedLen(len(src)) && -// minNonLiteralBlockSize <= len(src) && len(src) <= maxBlockSize -func encodeBlock(dst, src []byte) (d int) { - // Initialize the hash table. Its size ranges from 1<<8 to 1<<14 inclusive. - // The table element type is uint16, as s < sLimit and sLimit < len(src) - // and len(src) <= maxBlockSize and maxBlockSize == 65536. - const ( - maxTableSize = 1 << 14 - // tableMask is redundant, but helps the compiler eliminate bounds - // checks. - tableMask = maxTableSize - 1 - ) - shift := uint32(32 - 8) - for tableSize := 1 << 8; tableSize < maxTableSize && tableSize < len(src); tableSize *= 2 { - shift-- - } - // In Go, all array elements are zero-initialized, so there is no advantage - // to a smaller tableSize per se. However, it matches the C++ algorithm, - // and in the asm versions of this code, we can get away with zeroing only - // the first tableSize elements. - var table [maxTableSize]uint16 - - // sLimit is when to stop looking for offset/length copies. The inputMargin - // lets us use a fast path for emitLiteral in the main loop, while we are - // looking for copies. - sLimit := len(src) - inputMargin - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := 0 - - // The encoded form must start with a literal, as there are no previous - // bytes to copy, so we start looking for hash matches at s == 1. - s := 1 - nextHash := hash(load32(src, s), shift) - - for { - // Copied from the C++ snappy implementation: - // - // Heuristic match skipping: If 32 bytes are scanned with no matches - // found, start looking only at every other byte. If 32 more bytes are - // scanned (or skipped), look at every third byte, etc.. When a match - // is found, immediately go back to looking at every byte. This is a - // small loss (~5% performance, ~0.1% density) for compressible data - // due to more bookkeeping, but for non-compressible data (such as - // JPEG) it's a huge win since the compressor quickly "realizes" the - // data is incompressible and doesn't bother looking for matches - // everywhere. - // - // The "skip" variable keeps track of how many bytes there are since - // the last match; dividing it by 32 (ie. right-shifting by five) gives - // the number of bytes to move ahead for each iteration. - skip := 32 - - nextS := s - candidate := 0 - for { - s = nextS - bytesBetweenHashLookups := skip >> 5 - nextS = s + bytesBetweenHashLookups - skip += bytesBetweenHashLookups - if nextS > sLimit { - goto emitRemainder - } - candidate = int(table[nextHash&tableMask]) - table[nextHash&tableMask] = uint16(s) - nextHash = hash(load32(src, nextS), shift) - if load32(src, s) == load32(src, candidate) { - break - } - } - - // A 4-byte match has been found. We'll later see if more than 4 bytes - // match. But, prior to the match, src[nextEmit:s] are unmatched. Emit - // them as literal bytes. - d += emitLiteral(dst[d:], src[nextEmit:s]) - - // Call emitCopy, and then see if another emitCopy could be our next - // move. Repeat until we find no match for the input immediately after - // what was consumed by the last emitCopy call. - // - // If we exit this loop normally then we need to call emitLiteral next, - // though we don't yet know how big the literal will be. We handle that - // by proceeding to the next iteration of the main loop. We also can - // exit this loop via goto if we get close to exhausting the input. - for { - // Invariant: we have a 4-byte match at s, and no need to emit any - // literal bytes prior to s. - base := s - - // Extend the 4-byte match as long as possible. - // - // This is an inlined version of: - // s = extendMatch(src, candidate+4, s+4) - s += 4 - for i := candidate + 4; s < len(src) && src[i] == src[s]; i, s = i+1, s+1 { - } - - d += emitCopy(dst[d:], base-candidate, s-base) - nextEmit = s - if s >= sLimit { - goto emitRemainder - } - - // We could immediately start working at s now, but to improve - // compression we first update the hash table at s-1 and at s. If - // another emitCopy is not our next move, also calculate nextHash - // at s+1. At least on GOARCH=amd64, these three hash calculations - // are faster as one load64 call (with some shifts) instead of - // three load32 calls. - x := load64(src, s-1) - prevHash := hash(uint32(x>>0), shift) - table[prevHash&tableMask] = uint16(s - 1) - currHash := hash(uint32(x>>8), shift) - candidate = int(table[currHash&tableMask]) - table[currHash&tableMask] = uint16(s) - if uint32(x>>8) != load32(src, candidate) { - nextHash = hash(uint32(x>>16), shift) - s++ - break - } - } - } - -emitRemainder: - if nextEmit < len(src) { - d += emitLiteral(dst[d:], src[nextEmit:]) - } - return d -} diff --git a/vendor/github.com/klauspost/compress/internal/snapref/snappy.go b/vendor/github.com/klauspost/compress/internal/snapref/snappy.go deleted file mode 100644 index 34d01f4aa6..0000000000 --- a/vendor/github.com/klauspost/compress/internal/snapref/snappy.go +++ /dev/null @@ -1,98 +0,0 @@ -// Copyright 2011 The Snappy-Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package snapref implements the Snappy compression format. It aims for very -// high speeds and reasonable compression. -// -// There are actually two Snappy formats: block and stream. They are related, -// but different: trying to decompress block-compressed data as a Snappy stream -// will fail, and vice versa. The block format is the Decode and Encode -// functions and the stream format is the Reader and Writer types. -// -// The block format, the more common case, is used when the complete size (the -// number of bytes) of the original data is known upfront, at the time -// compression starts. The stream format, also known as the framing format, is -// for when that isn't always true. -// -// The canonical, C++ implementation is at https://github.com/google/snappy and -// it only implements the block format. -package snapref - -import ( - "hash/crc32" -) - -/* -Each encoded block begins with the varint-encoded length of the decoded data, -followed by a sequence of chunks. Chunks begin and end on byte boundaries. The -first byte of each chunk is broken into its 2 least and 6 most significant bits -called l and m: l ranges in [0, 4) and m ranges in [0, 64). l is the chunk tag. -Zero means a literal tag. All other values mean a copy tag. - -For literal tags: - - If m < 60, the next 1 + m bytes are literal bytes. - - Otherwise, let n be the little-endian unsigned integer denoted by the next - m - 59 bytes. The next 1 + n bytes after that are literal bytes. - -For copy tags, length bytes are copied from offset bytes ago, in the style of -Lempel-Ziv compression algorithms. In particular: - - For l == 1, the offset ranges in [0, 1<<11) and the length in [4, 12). - The length is 4 + the low 3 bits of m. The high 3 bits of m form bits 8-10 - of the offset. The next byte is bits 0-7 of the offset. - - For l == 2, the offset ranges in [0, 1<<16) and the length in [1, 65). - The length is 1 + m. The offset is the little-endian unsigned integer - denoted by the next 2 bytes. - - For l == 3, this tag is a legacy format that is no longer issued by most - encoders. Nonetheless, the offset ranges in [0, 1<<32) and the length in - [1, 65). The length is 1 + m. The offset is the little-endian unsigned - integer denoted by the next 4 bytes. -*/ -const ( - tagLiteral = 0x00 - tagCopy1 = 0x01 - tagCopy2 = 0x02 - tagCopy4 = 0x03 -) - -const ( - checksumSize = 4 - chunkHeaderSize = 4 - magicChunk = "\xff\x06\x00\x00" + magicBody - magicBody = "sNaPpY" - - // maxBlockSize is the maximum size of the input to encodeBlock. It is not - // part of the wire format per se, but some parts of the encoder assume - // that an offset fits into a uint16. - // - // Also, for the framing format (Writer type instead of Encode function), - // https://github.com/google/snappy/blob/master/framing_format.txt says - // that "the uncompressed data in a chunk must be no longer than 65536 - // bytes". - maxBlockSize = 65536 - - // maxEncodedLenOfMaxBlockSize equals MaxEncodedLen(maxBlockSize), but is - // hard coded to be a const instead of a variable, so that obufLen can also - // be a const. Their equivalence is confirmed by - // TestMaxEncodedLenOfMaxBlockSize. - maxEncodedLenOfMaxBlockSize = 76490 - - obufHeaderLen = len(magicChunk) + checksumSize + chunkHeaderSize - obufLen = obufHeaderLen + maxEncodedLenOfMaxBlockSize -) - -const ( - chunkTypeCompressedData = 0x00 - chunkTypeUncompressedData = 0x01 - chunkTypePadding = 0xfe - chunkTypeStreamIdentifier = 0xff -) - -var crcTable = crc32.MakeTable(crc32.Castagnoli) - -// crc implements the checksum specified in section 3 of -// https://github.com/google/snappy/blob/master/framing_format.txt -func crc(b []byte) uint32 { - c := crc32.Update(0, crcTable, b) - return uint32(c>>15|c<<17) + 0xa282ead8 -} diff --git a/vendor/github.com/klauspost/compress/s2sx.mod b/vendor/github.com/klauspost/compress/s2sx.mod deleted file mode 100644 index 5a4412f907..0000000000 --- a/vendor/github.com/klauspost/compress/s2sx.mod +++ /dev/null @@ -1,4 +0,0 @@ -module github.com/klauspost/compress - -go 1.19 - diff --git a/vendor/github.com/klauspost/compress/zstd/README.md b/vendor/github.com/klauspost/compress/zstd/README.md deleted file mode 100644 index 92e2347bbc..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/README.md +++ /dev/null @@ -1,441 +0,0 @@ -# zstd - -[Zstandard](https://facebook.github.io/zstd/) is a real-time compression algorithm, providing high compression ratios. -It offers a very wide range of compression / speed trade-off, while being backed by a very fast decoder. -A high performance compression algorithm is implemented. For now focused on speed. - -This package provides [compression](#Compressor) to and [decompression](#Decompressor) of Zstandard content. - -This package is pure Go and without use of "unsafe". - -The `zstd` package is provided as open source software using a Go standard license. - -Currently the package is heavily optimized for 64 bit processors and will be significantly slower on 32 bit processors. - -For seekable zstd streams, see [this excellent package](https://github.com/SaveTheRbtz/zstd-seekable-format-go). - -## Installation - -Install using `go get -u github.com/klauspost/compress`. The package is located in `github.com/klauspost/compress/zstd`. - -[![Go Reference](https://pkg.go.dev/badge/github.com/klauspost/compress/zstd.svg)](https://pkg.go.dev/github.com/klauspost/compress/zstd) - -## Compressor - -### Status: - -STABLE - there may always be subtle bugs, a wide variety of content has been tested and the library is actively -used by several projects. This library is being [fuzz-tested](https://github.com/klauspost/compress-fuzz) for all updates. - -There may still be specific combinations of data types/size/settings that could lead to edge cases, -so as always, testing is recommended. - -For now, a high speed (fastest) and medium-fast (default) compressor has been implemented. - -* The "Fastest" compression ratio is roughly equivalent to zstd level 1. -* The "Default" compression ratio is roughly equivalent to zstd level 3 (default). -* The "Better" compression ratio is roughly equivalent to zstd level 7. -* The "Best" compression ratio is roughly equivalent to zstd level 11. - -In terms of speed, it is typically 2x as fast as the stdlib deflate/gzip in its fastest mode. -The compression ratio compared to stdlib is around level 3, but usually 3x as fast. - - -### Usage - -An Encoder can be used for either compressing a stream via the -`io.WriteCloser` interface supported by the Encoder or as multiple independent -tasks via the `EncodeAll` function. -Smaller encodes are encouraged to use the EncodeAll function. -Use `NewWriter` to create a new instance that can be used for both. - -To create a writer with default options, do like this: - -```Go -// Compress input to output. -func Compress(in io.Reader, out io.Writer) error { - enc, err := zstd.NewWriter(out) - if err != nil { - return err - } - _, err = io.Copy(enc, in) - if err != nil { - enc.Close() - return err - } - return enc.Close() -} -``` - -Now you can encode by writing data to `enc`. The output will be finished writing when `Close()` is called. -Even if your encode fails, you should still call `Close()` to release any resources that may be held up. - -The above is fine for big encodes. However, whenever possible try to *reuse* the writer. - -To reuse the encoder, you can use the `Reset(io.Writer)` function to change to another output. -This will allow the encoder to reuse all resources and avoid wasteful allocations. - -Currently stream encoding has 'light' concurrency, meaning up to 2 goroutines can be working on part -of a stream. This is independent of the `WithEncoderConcurrency(n)`, but that is likely to change -in the future. So if you want to limit concurrency for future updates, specify the concurrency -you would like. - -If you would like stream encoding to be done without spawning async goroutines, use `WithEncoderConcurrency(1)` -which will compress input as each block is completed, blocking on writes until each has completed. - -You can specify your desired compression level using `WithEncoderLevel()` option. Currently only pre-defined -compression settings can be specified. - -#### Future Compatibility Guarantees - -This will be an evolving project. When using this package it is important to note that both the compression efficiency and speed may change. - -The goal will be to keep the default efficiency at the default zstd (level 3). -However the encoding should never be assumed to remain the same, -and you should not use hashes of compressed output for similarity checks. - -The Encoder can be assumed to produce the same output from the exact same code version. -However, the may be modes in the future that break this, -although they will not be enabled without an explicit option. - -This encoder is not designed to (and will probably never) output the exact same bitstream as the reference encoder. - -Also note, that the cgo decompressor currently does not [report all errors on invalid input](https://github.com/DataDog/zstd/issues/59), -[omits error checks](https://github.com/DataDog/zstd/issues/61), [ignores checksums](https://github.com/DataDog/zstd/issues/43) -and seems to ignore concatenated streams, even though [it is part of the spec](https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#frames). - -#### Blocks - -For compressing small blocks, the returned encoder has a function called `EncodeAll(src, dst []byte) []byte`. - -`EncodeAll` will encode all input in src and append it to dst. -This function can be called concurrently. -Each call will only run on a same goroutine as the caller. - -Encoded blocks can be concatenated and the result will be the combined input stream. -Data compressed with EncodeAll can be decoded with the Decoder, using either a stream or `DecodeAll`. - -Especially when encoding blocks you should take special care to reuse the encoder. -This will effectively make it run without allocations after a warmup period. -To make it run completely without allocations, supply a destination buffer with space for all content. - -```Go -import "github.com/klauspost/compress/zstd" - -// Create a writer that caches compressors. -// For this operation type we supply a nil Reader. -var encoder, _ = zstd.NewWriter(nil) - -// Compress a buffer. -// If you have a destination buffer, the allocation in the call can also be eliminated. -func Compress(src []byte) []byte { - return encoder.EncodeAll(src, make([]byte, 0, len(src))) -} -``` - -You can control the maximum number of concurrent encodes using the `WithEncoderConcurrency(n)` -option when creating the writer. - -Using the Encoder for both a stream and individual blocks concurrently is safe. - -### Performance - -I have collected some speed examples to compare speed and compression against other compressors. - -* `file` is the input file. -* `out` is the compressor used. `zskp` is this package. `zstd` is the Datadog cgo library. `gzstd/gzkp` is gzip standard and this library. -* `level` is the compression level used. For `zskp` level 1 is "fastest", level 2 is "default"; 3 is "better", 4 is "best". -* `insize`/`outsize` is the input/output size. -* `millis` is the number of milliseconds used for compression. -* `mb/s` is megabytes (2^20 bytes) per second. - -``` -Silesia Corpus: -http://sun.aei.polsl.pl/~sdeor/corpus/silesia.zip - -This package: -file out level insize outsize millis mb/s -silesia.tar zskp 1 211947520 73821326 634 318.47 -silesia.tar zskp 2 211947520 67655404 1508 133.96 -silesia.tar zskp 3 211947520 64746933 3000 67.37 -silesia.tar zskp 4 211947520 60073508 16926 11.94 - -cgo zstd: -silesia.tar zstd 1 211947520 73605392 543 371.56 -silesia.tar zstd 3 211947520 66793289 864 233.68 -silesia.tar zstd 6 211947520 62916450 1913 105.66 -silesia.tar zstd 9 211947520 60212393 5063 39.92 - -gzip, stdlib/this package: -silesia.tar gzstd 1 211947520 80007735 1498 134.87 -silesia.tar gzkp 1 211947520 80088272 1009 200.31 - -GOB stream of binary data. Highly compressible. -https://files.klauspost.com/compress/gob-stream.7z - -file out level insize outsize millis mb/s -gob-stream zskp 1 1911399616 233948096 3230 564.34 -gob-stream zskp 2 1911399616 203997694 4997 364.73 -gob-stream zskp 3 1911399616 173526523 13435 135.68 -gob-stream zskp 4 1911399616 162195235 47559 38.33 - -gob-stream zstd 1 1911399616 249810424 2637 691.26 -gob-stream zstd 3 1911399616 208192146 3490 522.31 -gob-stream zstd 6 1911399616 193632038 6687 272.56 -gob-stream zstd 9 1911399616 177620386 16175 112.70 - -gob-stream gzstd 1 1911399616 357382013 9046 201.49 -gob-stream gzkp 1 1911399616 359136669 4885 373.08 - -The test data for the Large Text Compression Benchmark is the first -10^9 bytes of the English Wikipedia dump on Mar. 3, 2006. -http://mattmahoney.net/dc/textdata.html - -file out level insize outsize millis mb/s -enwik9 zskp 1 1000000000 343833605 3687 258.64 -enwik9 zskp 2 1000000000 317001237 7672 124.29 -enwik9 zskp 3 1000000000 291915823 15923 59.89 -enwik9 zskp 4 1000000000 261710291 77697 12.27 - -enwik9 zstd 1 1000000000 358072021 3110 306.65 -enwik9 zstd 3 1000000000 313734672 4784 199.35 -enwik9 zstd 6 1000000000 295138875 10290 92.68 -enwik9 zstd 9 1000000000 278348700 28549 33.40 - -enwik9 gzstd 1 1000000000 382578136 8608 110.78 -enwik9 gzkp 1 1000000000 382781160 5628 169.45 - -Highly compressible JSON file. -https://files.klauspost.com/compress/github-june-2days-2019.json.zst - -file out level insize outsize millis mb/s -github-june-2days-2019.json zskp 1 6273951764 697439532 9789 611.17 -github-june-2days-2019.json zskp 2 6273951764 610876538 18553 322.49 -github-june-2days-2019.json zskp 3 6273951764 517662858 44186 135.41 -github-june-2days-2019.json zskp 4 6273951764 464617114 165373 36.18 - -github-june-2days-2019.json zstd 1 6273951764 766284037 8450 708.00 -github-june-2days-2019.json zstd 3 6273951764 661889476 10927 547.57 -github-june-2days-2019.json zstd 6 6273951764 642756859 22996 260.18 -github-june-2days-2019.json zstd 9 6273951764 601974523 52413 114.16 - -github-june-2days-2019.json gzstd 1 6273951764 1164397768 26793 223.32 -github-june-2days-2019.json gzkp 1 6273951764 1120631856 17693 338.16 - -VM Image, Linux mint with a few installed applications: -https://files.klauspost.com/compress/rawstudio-mint14.7z - -file out level insize outsize millis mb/s -rawstudio-mint14.tar zskp 1 8558382592 3718400221 18206 448.29 -rawstudio-mint14.tar zskp 2 8558382592 3326118337 37074 220.15 -rawstudio-mint14.tar zskp 3 8558382592 3163842361 87306 93.49 -rawstudio-mint14.tar zskp 4 8558382592 2970480650 783862 10.41 - -rawstudio-mint14.tar zstd 1 8558382592 3609250104 17136 476.27 -rawstudio-mint14.tar zstd 3 8558382592 3341679997 29262 278.92 -rawstudio-mint14.tar zstd 6 8558382592 3235846406 77904 104.77 -rawstudio-mint14.tar zstd 9 8558382592 3160778861 140946 57.91 - -rawstudio-mint14.tar gzstd 1 8558382592 3926234992 51345 158.96 -rawstudio-mint14.tar gzkp 1 8558382592 3960117298 36722 222.26 - -CSV data: -https://files.klauspost.com/compress/nyc-taxi-data-10M.csv.zst - -file out level insize outsize millis mb/s -nyc-taxi-data-10M.csv zskp 1 3325605752 641319332 9462 335.17 -nyc-taxi-data-10M.csv zskp 2 3325605752 588976126 17570 180.50 -nyc-taxi-data-10M.csv zskp 3 3325605752 529329260 32432 97.79 -nyc-taxi-data-10M.csv zskp 4 3325605752 474949772 138025 22.98 - -nyc-taxi-data-10M.csv zstd 1 3325605752 687399637 8233 385.18 -nyc-taxi-data-10M.csv zstd 3 3325605752 598514411 10065 315.07 -nyc-taxi-data-10M.csv zstd 6 3325605752 570522953 20038 158.27 -nyc-taxi-data-10M.csv zstd 9 3325605752 517554797 64565 49.12 - -nyc-taxi-data-10M.csv gzstd 1 3325605752 928654908 21270 149.11 -nyc-taxi-data-10M.csv gzkp 1 3325605752 922273214 13929 227.68 -``` - -## Decompressor - -Status: STABLE - there may still be subtle bugs, but a wide variety of content has been tested. - -This library is being continuously [fuzz-tested](https://github.com/klauspost/compress-fuzz), -kindly supplied by [fuzzit.dev](https://fuzzit.dev/). -The main purpose of the fuzz testing is to ensure that it is not possible to crash the decoder, -or run it past its limits with ANY input provided. - -### Usage - -The package has been designed for two main usages, big streams of data and smaller in-memory buffers. -There are two main usages of the package for these. Both of them are accessed by creating a `Decoder`. - -For streaming use a simple setup could look like this: - -```Go -import "github.com/klauspost/compress/zstd" - -func Decompress(in io.Reader, out io.Writer) error { - d, err := zstd.NewReader(in) - if err != nil { - return err - } - defer d.Close() - - // Copy content... - _, err = io.Copy(out, d) - return err -} -``` - -It is important to use the "Close" function when you no longer need the Reader to stop running goroutines, -when running with default settings. -Goroutines will exit once an error has been returned, including `io.EOF` at the end of a stream. - -Streams are decoded concurrently in 4 asynchronous stages to give the best possible throughput. -However, if you prefer synchronous decompression, use `WithDecoderConcurrency(1)` which will decompress data -as it is being requested only. - -For decoding buffers, it could look something like this: - -```Go -import "github.com/klauspost/compress/zstd" - -// Create a reader that caches decompressors. -// For this operation type we supply a nil Reader. -var decoder, _ = zstd.NewReader(nil, zstd.WithDecoderConcurrency(0)) - -// Decompress a buffer. We don't supply a destination buffer, -// so it will be allocated by the decoder. -func Decompress(src []byte) ([]byte, error) { - return decoder.DecodeAll(src, nil) -} -``` - -Both of these cases should provide the functionality needed. -The decoder can be used for *concurrent* decompression of multiple buffers. -By default 4 decompressors will be created. - -It will only allow a certain number of concurrent operations to run. -To tweak that yourself use the `WithDecoderConcurrency(n)` option when creating the decoder. -It is possible to use `WithDecoderConcurrency(0)` to create GOMAXPROCS decoders. - -### Dictionaries - -Data compressed with [dictionaries](https://github.com/facebook/zstd#the-case-for-small-data-compression) can be decompressed. - -Dictionaries are added individually to Decoders. -Dictionaries are generated by the `zstd --train` command and contains an initial state for the decoder. -To add a dictionary use the `WithDecoderDicts(dicts ...[]byte)` option with the dictionary data. -Several dictionaries can be added at once. - -The dictionary will be used automatically for the data that specifies them. -A re-used Decoder will still contain the dictionaries registered. - -When registering multiple dictionaries with the same ID, the last one will be used. - -It is possible to use dictionaries when compressing data. - -To enable a dictionary use `WithEncoderDict(dict []byte)`. Here only one dictionary will be used -and it will likely be used even if it doesn't improve compression. - -The used dictionary must be used to decompress the content. - -For any real gains, the dictionary should be built with similar data. -If an unsuitable dictionary is used the output may be slightly larger than using no dictionary. -Use the [zstd commandline tool](https://github.com/facebook/zstd/releases) to build a dictionary from sample data. -For information see [zstd dictionary information](https://github.com/facebook/zstd#the-case-for-small-data-compression). - -For now there is a fixed startup performance penalty for compressing content with dictionaries. -This will likely be improved over time. Just be aware to test performance when implementing. - -### Allocation-less operation - -The decoder has been designed to operate without allocations after a warmup. - -This means that you should *store* the decoder for best performance. -To re-use a stream decoder, use the `Reset(r io.Reader) error` to switch to another stream. -A decoder can safely be re-used even if the previous stream failed. - -To release the resources, you must call the `Close()` function on a decoder. -After this it can *no longer be reused*, but all running goroutines will be stopped. -So you *must* use this if you will no longer need the Reader. - -For decompressing smaller buffers a single decoder can be used. -When decoding buffers, you can supply a destination slice with length 0 and your expected capacity. -In this case no unneeded allocations should be made. - -### Concurrency - -The buffer decoder does everything on the same goroutine and does nothing concurrently. -It can however decode several buffers concurrently. Use `WithDecoderConcurrency(n)` to limit that. - -The stream decoder will create goroutines that: - -1) Reads input and splits the input into blocks. -2) Decompression of literals. -3) Decompression of sequences. -4) Reconstruction of output stream. - -So effectively this also means the decoder will "read ahead" and prepare data to always be available for output. - -The concurrency level will, for streams, determine how many blocks ahead the compression will start. - -Since "blocks" are quite dependent on the output of the previous block stream decoding will only have limited concurrency. - -In practice this means that concurrency is often limited to utilizing about 3 cores effectively. - -### Benchmarks - -The first two are streaming decodes and the last are smaller inputs. - -Running on AMD Ryzen 9 3950X 16-Core Processor. AMD64 assembly used. - -``` -BenchmarkDecoderSilesia-32 5 206878840 ns/op 1024.50 MB/s 49808 B/op 43 allocs/op -BenchmarkDecoderEnwik9-32 1 1271809000 ns/op 786.28 MB/s 72048 B/op 52 allocs/op - -Concurrent blocks, performance: - -BenchmarkDecoder_DecodeAllParallel/kppkn.gtb.zst-32 67356 17857 ns/op 10321.96 MB/s 22.48 pct 102 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/geo.protodata.zst-32 266656 4421 ns/op 26823.21 MB/s 11.89 pct 19 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/plrabn12.txt.zst-32 20992 56842 ns/op 8477.17 MB/s 39.90 pct 754 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/lcet10.txt.zst-32 27456 43932 ns/op 9714.01 MB/s 33.27 pct 524 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/asyoulik.txt.zst-32 78432 15047 ns/op 8319.15 MB/s 40.34 pct 66 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/alice29.txt.zst-32 65800 18436 ns/op 8249.63 MB/s 37.75 pct 88 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/html_x_4.zst-32 102993 11523 ns/op 35546.09 MB/s 3.637 pct 143 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/paper-100k.pdf.zst-32 1000000 1070 ns/op 95720.98 MB/s 80.53 pct 3 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/fireworks.jpeg.zst-32 749802 1752 ns/op 70272.35 MB/s 100.0 pct 5 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/urls.10K.zst-32 22640 52934 ns/op 13263.37 MB/s 26.25 pct 1014 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/html.zst-32 226412 5232 ns/op 19572.27 MB/s 14.49 pct 20 B/op 0 allocs/op -BenchmarkDecoder_DecodeAllParallel/comp-data.bin.zst-32 923041 1276 ns/op 3194.71 MB/s 31.26 pct 0 B/op 0 allocs/op -``` - -This reflects the performance around May 2022, but this may be out of date. - -## Zstd inside ZIP files - -It is possible to use zstandard to compress individual files inside zip archives. -While this isn't widely supported it can be useful for internal files. - -To support the compression and decompression of these files you must register a compressor and decompressor. - -It is highly recommended registering the (de)compressors on individual zip Reader/Writer and NOT -use the global registration functions. The main reason for this is that 2 registrations from -different packages will result in a panic. - -It is a good idea to only have a single compressor and decompressor, since they can be used for multiple zip -files concurrently, and using a single instance will allow reusing some resources. - -See [this example](https://pkg.go.dev/github.com/klauspost/compress/zstd#example-ZipCompressor) for -how to compress and decompress files inside zip archives. - -# Contributions - -Contributions are always welcome. -For new features/fixes, remember to add tests and for performance enhancements include benchmarks. - -For general feedback and experience reports, feel free to open an issue or write me on [Twitter](https://twitter.com/sh0dan). - -This package includes the excellent [`github.com/cespare/xxhash`](https://github.com/cespare/xxhash) package Copyright (c) 2016 Caleb Spare. diff --git a/vendor/github.com/klauspost/compress/zstd/bitreader.go b/vendor/github.com/klauspost/compress/zstd/bitreader.go deleted file mode 100644 index 25ca983941..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/bitreader.go +++ /dev/null @@ -1,136 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "encoding/binary" - "errors" - "fmt" - "io" - "math/bits" -) - -// bitReader reads a bitstream in reverse. -// The last set bit indicates the start of the stream and is used -// for aligning the input. -type bitReader struct { - in []byte - value uint64 // Maybe use [16]byte, but shifting is awkward. - bitsRead uint8 -} - -// init initializes and resets the bit reader. -func (b *bitReader) init(in []byte) error { - if len(in) < 1 { - return errors.New("corrupt stream: too short") - } - b.in = in - // The highest bit of the last byte indicates where to start - v := in[len(in)-1] - if v == 0 { - return errors.New("corrupt stream, did not find end of stream") - } - b.bitsRead = 64 - b.value = 0 - if len(in) >= 8 { - b.fillFastStart() - } else { - b.fill() - b.fill() - } - b.bitsRead += 8 - uint8(highBits(uint32(v))) - return nil -} - -// getBits will return n bits. n can be 0. -func (b *bitReader) getBits(n uint8) int { - if n == 0 /*|| b.bitsRead >= 64 */ { - return 0 - } - return int(b.get32BitsFast(n)) -} - -// get32BitsFast requires that at least one bit is requested every time. -// There are no checks if the buffer is filled. -func (b *bitReader) get32BitsFast(n uint8) uint32 { - const regMask = 64 - 1 - v := uint32((b.value << (b.bitsRead & regMask)) >> ((regMask + 1 - n) & regMask)) - b.bitsRead += n - return v -} - -// fillFast() will make sure at least 32 bits are available. -// There must be at least 4 bytes available. -func (b *bitReader) fillFast() { - if b.bitsRead < 32 { - return - } - v := b.in[len(b.in)-4:] - b.in = b.in[:len(b.in)-4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value = (b.value << 32) | uint64(low) - b.bitsRead -= 32 -} - -// fillFastStart() assumes the bitreader is empty and there is at least 8 bytes to read. -func (b *bitReader) fillFastStart() { - v := b.in[len(b.in)-8:] - b.in = b.in[:len(b.in)-8] - b.value = binary.LittleEndian.Uint64(v) - b.bitsRead = 0 -} - -// fill() will make sure at least 32 bits are available. -func (b *bitReader) fill() { - if b.bitsRead < 32 { - return - } - if len(b.in) >= 4 { - v := b.in[len(b.in)-4:] - b.in = b.in[:len(b.in)-4] - low := (uint32(v[0])) | (uint32(v[1]) << 8) | (uint32(v[2]) << 16) | (uint32(v[3]) << 24) - b.value = (b.value << 32) | uint64(low) - b.bitsRead -= 32 - return - } - - b.bitsRead -= uint8(8 * len(b.in)) - for len(b.in) > 0 { - b.value = (b.value << 8) | uint64(b.in[len(b.in)-1]) - b.in = b.in[:len(b.in)-1] - } -} - -// finished returns true if all bits have been read from the bit stream. -func (b *bitReader) finished() bool { - return len(b.in) == 0 && b.bitsRead >= 64 -} - -// overread returns true if more bits have been requested than is on the stream. -func (b *bitReader) overread() bool { - return b.bitsRead > 64 -} - -// remain returns the number of bits remaining. -func (b *bitReader) remain() uint { - return 8*uint(len(b.in)) + 64 - uint(b.bitsRead) -} - -// close the bitstream and returns an error if out-of-buffer reads occurred. -func (b *bitReader) close() error { - // Release reference. - b.in = nil - if !b.finished() { - return fmt.Errorf("%d extra bits on block, should be 0", b.remain()) - } - if b.bitsRead > 64 { - return io.ErrUnexpectedEOF - } - return nil -} - -func highBits(val uint32) (n uint32) { - return uint32(bits.Len32(val) - 1) -} diff --git a/vendor/github.com/klauspost/compress/zstd/bitwriter.go b/vendor/github.com/klauspost/compress/zstd/bitwriter.go deleted file mode 100644 index 1952f175b0..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/bitwriter.go +++ /dev/null @@ -1,112 +0,0 @@ -// Copyright 2018 Klaus Post. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. -// Based on work Copyright (c) 2013, Yann Collet, released under BSD License. - -package zstd - -// bitWriter will write bits. -// First bit will be LSB of the first byte of output. -type bitWriter struct { - bitContainer uint64 - nBits uint8 - out []byte -} - -// bitMask16 is bitmasks. Has extra to avoid bounds check. -var bitMask16 = [32]uint16{ - 0, 1, 3, 7, 0xF, 0x1F, - 0x3F, 0x7F, 0xFF, 0x1FF, 0x3FF, 0x7FF, - 0xFFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF, 0xFFFF, - 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, 0xFFFF, - 0xFFFF, 0xFFFF} /* up to 16 bits */ - -var bitMask32 = [32]uint32{ - 0, 1, 3, 7, 0xF, 0x1F, 0x3F, 0x7F, 0xFF, - 0x1FF, 0x3FF, 0x7FF, 0xFFF, 0x1FFF, 0x3FFF, 0x7FFF, 0xFFFF, - 0x1ffff, 0x3ffff, 0x7FFFF, 0xfFFFF, 0x1fFFFF, 0x3fFFFF, 0x7fFFFF, 0xffFFFF, - 0x1ffFFFF, 0x3ffFFFF, 0x7ffFFFF, 0xfffFFFF, 0x1fffFFFF, 0x3fffFFFF, 0x7fffFFFF, -} // up to 32 bits - -// addBits16NC will add up to 16 bits. -// It will not check if there is space for them, -// so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits16NC(value uint16, bits uint8) { - b.bitContainer |= uint64(value&bitMask16[bits&31]) << (b.nBits & 63) - b.nBits += bits -} - -// addBits32NC will add up to 31 bits. -// It will not check if there is space for them, -// so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits32NC(value uint32, bits uint8) { - b.bitContainer |= uint64(value&bitMask32[bits&31]) << (b.nBits & 63) - b.nBits += bits -} - -// addBits64NC will add up to 64 bits. -// There must be space for 32 bits. -func (b *bitWriter) addBits64NC(value uint64, bits uint8) { - if bits <= 31 { - b.addBits32Clean(uint32(value), bits) - return - } - b.addBits32Clean(uint32(value), 32) - b.flush32() - b.addBits32Clean(uint32(value>>32), bits-32) -} - -// addBits32Clean will add up to 32 bits. -// It will not check if there is space for them. -// The input must not contain more bits than specified. -func (b *bitWriter) addBits32Clean(value uint32, bits uint8) { - b.bitContainer |= uint64(value) << (b.nBits & 63) - b.nBits += bits -} - -// addBits16Clean will add up to 16 bits. value may not contain more set bits than indicated. -// It will not check if there is space for them, so the caller must ensure that it has flushed recently. -func (b *bitWriter) addBits16Clean(value uint16, bits uint8) { - b.bitContainer |= uint64(value) << (b.nBits & 63) - b.nBits += bits -} - -// flush32 will flush out, so there are at least 32 bits available for writing. -func (b *bitWriter) flush32() { - if b.nBits < 32 { - return - } - b.out = append(b.out, - byte(b.bitContainer), - byte(b.bitContainer>>8), - byte(b.bitContainer>>16), - byte(b.bitContainer>>24)) - b.nBits -= 32 - b.bitContainer >>= 32 -} - -// flushAlign will flush remaining full bytes and align to next byte boundary. -func (b *bitWriter) flushAlign() { - nbBytes := (b.nBits + 7) >> 3 - for i := uint8(0); i < nbBytes; i++ { - b.out = append(b.out, byte(b.bitContainer>>(i*8))) - } - b.nBits = 0 - b.bitContainer = 0 -} - -// close will write the alignment bit and write the final byte(s) -// to the output. -func (b *bitWriter) close() { - // End mark - b.addBits16Clean(1, 1) - // flush until next byte. - b.flushAlign() -} - -// reset and continue writing by appending to out. -func (b *bitWriter) reset(out []byte) { - b.bitContainer = 0 - b.nBits = 0 - b.out = out -} diff --git a/vendor/github.com/klauspost/compress/zstd/blockdec.go b/vendor/github.com/klauspost/compress/zstd/blockdec.go deleted file mode 100644 index 9c28840c3b..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/blockdec.go +++ /dev/null @@ -1,731 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "bytes" - "encoding/binary" - "errors" - "fmt" - "hash/crc32" - "io" - "os" - "path/filepath" - "sync" - - "github.com/klauspost/compress/huff0" - "github.com/klauspost/compress/zstd/internal/xxhash" -) - -type blockType uint8 - -//go:generate stringer -type=blockType,literalsBlockType,seqCompMode,tableIndex - -const ( - blockTypeRaw blockType = iota - blockTypeRLE - blockTypeCompressed - blockTypeReserved -) - -type literalsBlockType uint8 - -const ( - literalsBlockRaw literalsBlockType = iota - literalsBlockRLE - literalsBlockCompressed - literalsBlockTreeless -) - -const ( - // maxCompressedBlockSize is the biggest allowed compressed block size (128KB) - maxCompressedBlockSize = 128 << 10 - - compressedBlockOverAlloc = 16 - maxCompressedBlockSizeAlloc = 128<<10 + compressedBlockOverAlloc - - // Maximum possible block size (all Raw+Uncompressed). - maxBlockSize = (1 << 21) - 1 - - maxMatchLen = 131074 - maxSequences = 0x7f00 + 0xffff - - // We support slightly less than the reference decoder to be able to - // use ints on 32 bit archs. - maxOffsetBits = 30 -) - -var ( - huffDecoderPool = sync.Pool{New: func() interface{} { - return &huff0.Scratch{} - }} - - fseDecoderPool = sync.Pool{New: func() interface{} { - return &fseDecoder{} - }} -) - -type blockDec struct { - // Raw source data of the block. - data []byte - dataStorage []byte - - // Destination of the decoded data. - dst []byte - - // Buffer for literals data. - literalBuf []byte - - // Window size of the block. - WindowSize uint64 - - err error - - // Check against this crc, if hasCRC is true. - checkCRC uint32 - hasCRC bool - - // Frame to use for singlethreaded decoding. - // Should not be used by the decoder itself since parent may be another frame. - localFrame *frameDec - - sequence []seqVals - - async struct { - newHist *history - literals []byte - seqData []byte - seqSize int // Size of uncompressed sequences - fcs uint64 - } - - // Block is RLE, this is the size. - RLESize uint32 - - Type blockType - - // Is this the last block of a frame? - Last bool - - // Use less memory - lowMem bool -} - -func (b *blockDec) String() string { - if b == nil { - return "" - } - return fmt.Sprintf("Steam Size: %d, Type: %v, Last: %t, Window: %d", len(b.data), b.Type, b.Last, b.WindowSize) -} - -func newBlockDec(lowMem bool) *blockDec { - b := blockDec{ - lowMem: lowMem, - } - return &b -} - -// reset will reset the block. -// Input must be a start of a block and will be at the end of the block when returned. -func (b *blockDec) reset(br byteBuffer, windowSize uint64) error { - b.WindowSize = windowSize - tmp, err := br.readSmall(3) - if err != nil { - println("Reading block header:", err) - return err - } - bh := uint32(tmp[0]) | (uint32(tmp[1]) << 8) | (uint32(tmp[2]) << 16) - b.Last = bh&1 != 0 - b.Type = blockType((bh >> 1) & 3) - // find size. - cSize := int(bh >> 3) - maxSize := maxCompressedBlockSizeAlloc - switch b.Type { - case blockTypeReserved: - return ErrReservedBlockType - case blockTypeRLE: - if cSize > maxCompressedBlockSize || cSize > int(b.WindowSize) { - if debugDecoder { - printf("rle block too big: csize:%d block: %+v\n", uint64(cSize), b) - } - return ErrWindowSizeExceeded - } - b.RLESize = uint32(cSize) - if b.lowMem { - maxSize = cSize - } - cSize = 1 - case blockTypeCompressed: - if debugDecoder { - println("Data size on stream:", cSize) - } - b.RLESize = 0 - maxSize = maxCompressedBlockSizeAlloc - if windowSize < maxCompressedBlockSize && b.lowMem { - maxSize = int(windowSize) + compressedBlockOverAlloc - } - if cSize > maxCompressedBlockSize || uint64(cSize) > b.WindowSize { - if debugDecoder { - printf("compressed block too big: csize:%d block: %+v\n", uint64(cSize), b) - } - return ErrCompressedSizeTooBig - } - // Empty compressed blocks must at least be 2 bytes - // for Literals_Block_Type and one for Sequences_Section_Header. - if cSize < 2 { - return ErrBlockTooSmall - } - case blockTypeRaw: - if cSize > maxCompressedBlockSize || cSize > int(b.WindowSize) { - if debugDecoder { - printf("rle block too big: csize:%d block: %+v\n", uint64(cSize), b) - } - return ErrWindowSizeExceeded - } - - b.RLESize = 0 - // We do not need a destination for raw blocks. - maxSize = -1 - default: - panic("Invalid block type") - } - - // Read block data. - if _, ok := br.(*byteBuf); !ok && cap(b.dataStorage) < cSize { - // byteBuf doesn't need a destination buffer. - if b.lowMem || cSize > maxCompressedBlockSize { - b.dataStorage = make([]byte, 0, cSize+compressedBlockOverAlloc) - } else { - b.dataStorage = make([]byte, 0, maxCompressedBlockSizeAlloc) - } - } - b.data, err = br.readBig(cSize, b.dataStorage) - if err != nil { - if debugDecoder { - println("Reading block:", err, "(", cSize, ")", len(b.data)) - printf("%T", br) - } - return err - } - if cap(b.dst) <= maxSize { - b.dst = make([]byte, 0, maxSize+1) - } - return nil -} - -// sendEOF will make the decoder send EOF on this frame. -func (b *blockDec) sendErr(err error) { - b.Last = true - b.Type = blockTypeReserved - b.err = err -} - -// Close will release resources. -// Closed blockDec cannot be reset. -func (b *blockDec) Close() { -} - -// decodeBuf -func (b *blockDec) decodeBuf(hist *history) error { - switch b.Type { - case blockTypeRLE: - if cap(b.dst) < int(b.RLESize) { - if b.lowMem { - b.dst = make([]byte, b.RLESize) - } else { - b.dst = make([]byte, maxCompressedBlockSize) - } - } - b.dst = b.dst[:b.RLESize] - v := b.data[0] - for i := range b.dst { - b.dst[i] = v - } - hist.appendKeep(b.dst) - return nil - case blockTypeRaw: - hist.appendKeep(b.data) - return nil - case blockTypeCompressed: - saved := b.dst - // Append directly to history - if hist.ignoreBuffer == 0 { - b.dst = hist.b - hist.b = nil - } else { - b.dst = b.dst[:0] - } - err := b.decodeCompressed(hist) - if debugDecoder { - println("Decompressed to total", len(b.dst), "bytes, hash:", xxhash.Sum64(b.dst), "error:", err) - } - if hist.ignoreBuffer == 0 { - hist.b = b.dst - b.dst = saved - } else { - hist.appendKeep(b.dst) - } - return err - case blockTypeReserved: - // Used for returning errors. - return b.err - default: - panic("Invalid block type") - } -} - -func (b *blockDec) decodeLiterals(in []byte, hist *history) (remain []byte, err error) { - // There must be at least one byte for Literals_Block_Type and one for Sequences_Section_Header - if len(in) < 2 { - return in, ErrBlockTooSmall - } - - litType := literalsBlockType(in[0] & 3) - var litRegenSize int - var litCompSize int - sizeFormat := (in[0] >> 2) & 3 - var fourStreams bool - var literals []byte - switch litType { - case literalsBlockRaw, literalsBlockRLE: - switch sizeFormat { - case 0, 2: - // Regenerated_Size uses 5 bits (0-31). Literals_Section_Header uses 1 byte. - litRegenSize = int(in[0] >> 3) - in = in[1:] - case 1: - // Regenerated_Size uses 12 bits (0-4095). Literals_Section_Header uses 2 bytes. - litRegenSize = int(in[0]>>4) + (int(in[1]) << 4) - in = in[2:] - case 3: - // Regenerated_Size uses 20 bits (0-1048575). Literals_Section_Header uses 3 bytes. - if len(in) < 3 { - println("too small: litType:", litType, " sizeFormat", sizeFormat, len(in)) - return in, ErrBlockTooSmall - } - litRegenSize = int(in[0]>>4) + (int(in[1]) << 4) + (int(in[2]) << 12) - in = in[3:] - } - case literalsBlockCompressed, literalsBlockTreeless: - switch sizeFormat { - case 0, 1: - // Both Regenerated_Size and Compressed_Size use 10 bits (0-1023). - if len(in) < 3 { - println("too small: litType:", litType, " sizeFormat", sizeFormat, len(in)) - return in, ErrBlockTooSmall - } - n := uint64(in[0]>>4) + (uint64(in[1]) << 4) + (uint64(in[2]) << 12) - litRegenSize = int(n & 1023) - litCompSize = int(n >> 10) - fourStreams = sizeFormat == 1 - in = in[3:] - case 2: - fourStreams = true - if len(in) < 4 { - println("too small: litType:", litType, " sizeFormat", sizeFormat, len(in)) - return in, ErrBlockTooSmall - } - n := uint64(in[0]>>4) + (uint64(in[1]) << 4) + (uint64(in[2]) << 12) + (uint64(in[3]) << 20) - litRegenSize = int(n & 16383) - litCompSize = int(n >> 14) - in = in[4:] - case 3: - fourStreams = true - if len(in) < 5 { - println("too small: litType:", litType, " sizeFormat", sizeFormat, len(in)) - return in, ErrBlockTooSmall - } - n := uint64(in[0]>>4) + (uint64(in[1]) << 4) + (uint64(in[2]) << 12) + (uint64(in[3]) << 20) + (uint64(in[4]) << 28) - litRegenSize = int(n & 262143) - litCompSize = int(n >> 18) - in = in[5:] - } - } - if debugDecoder { - println("literals type:", litType, "litRegenSize:", litRegenSize, "litCompSize:", litCompSize, "sizeFormat:", sizeFormat, "4X:", fourStreams) - } - if litRegenSize > int(b.WindowSize) || litRegenSize > maxCompressedBlockSize { - return in, ErrWindowSizeExceeded - } - - switch litType { - case literalsBlockRaw: - if len(in) < litRegenSize { - println("too small: litType:", litType, " sizeFormat", sizeFormat, "remain:", len(in), "want:", litRegenSize) - return in, ErrBlockTooSmall - } - literals = in[:litRegenSize] - in = in[litRegenSize:] - //printf("Found %d uncompressed literals\n", litRegenSize) - case literalsBlockRLE: - if len(in) < 1 { - println("too small: litType:", litType, " sizeFormat", sizeFormat, "remain:", len(in), "want:", 1) - return in, ErrBlockTooSmall - } - if cap(b.literalBuf) < litRegenSize { - if b.lowMem { - b.literalBuf = make([]byte, litRegenSize, litRegenSize+compressedBlockOverAlloc) - } else { - b.literalBuf = make([]byte, litRegenSize, maxCompressedBlockSize+compressedBlockOverAlloc) - } - } - literals = b.literalBuf[:litRegenSize] - v := in[0] - for i := range literals { - literals[i] = v - } - in = in[1:] - if debugDecoder { - printf("Found %d RLE compressed literals\n", litRegenSize) - } - case literalsBlockTreeless: - if len(in) < litCompSize { - println("too small: litType:", litType, " sizeFormat", sizeFormat, "remain:", len(in), "want:", litCompSize) - return in, ErrBlockTooSmall - } - // Store compressed literals, so we defer decoding until we get history. - literals = in[:litCompSize] - in = in[litCompSize:] - if debugDecoder { - printf("Found %d compressed literals\n", litCompSize) - } - huff := hist.huffTree - if huff == nil { - return in, errors.New("literal block was treeless, but no history was defined") - } - // Ensure we have space to store it. - if cap(b.literalBuf) < litRegenSize { - if b.lowMem { - b.literalBuf = make([]byte, 0, litRegenSize+compressedBlockOverAlloc) - } else { - b.literalBuf = make([]byte, 0, maxCompressedBlockSize+compressedBlockOverAlloc) - } - } - var err error - // Use our out buffer. - huff.MaxDecodedSize = litRegenSize - if fourStreams { - literals, err = huff.Decoder().Decompress4X(b.literalBuf[:0:litRegenSize], literals) - } else { - literals, err = huff.Decoder().Decompress1X(b.literalBuf[:0:litRegenSize], literals) - } - // Make sure we don't leak our literals buffer - if err != nil { - println("decompressing literals:", err) - return in, err - } - if len(literals) != litRegenSize { - return in, fmt.Errorf("literal output size mismatch want %d, got %d", litRegenSize, len(literals)) - } - - case literalsBlockCompressed: - if len(in) < litCompSize { - println("too small: litType:", litType, " sizeFormat", sizeFormat, "remain:", len(in), "want:", litCompSize) - return in, ErrBlockTooSmall - } - literals = in[:litCompSize] - in = in[litCompSize:] - // Ensure we have space to store it. - if cap(b.literalBuf) < litRegenSize { - if b.lowMem { - b.literalBuf = make([]byte, 0, litRegenSize+compressedBlockOverAlloc) - } else { - b.literalBuf = make([]byte, 0, maxCompressedBlockSize+compressedBlockOverAlloc) - } - } - huff := hist.huffTree - if huff == nil || (hist.dict != nil && huff == hist.dict.litEnc) { - huff = huffDecoderPool.Get().(*huff0.Scratch) - if huff == nil { - huff = &huff0.Scratch{} - } - } - var err error - if debugDecoder { - println("huff table input:", len(literals), "CRC:", crc32.ChecksumIEEE(literals)) - } - huff, literals, err = huff0.ReadTable(literals, huff) - if err != nil { - println("reading huffman table:", err) - return in, err - } - hist.huffTree = huff - huff.MaxDecodedSize = litRegenSize - // Use our out buffer. - if fourStreams { - literals, err = huff.Decoder().Decompress4X(b.literalBuf[:0:litRegenSize], literals) - } else { - literals, err = huff.Decoder().Decompress1X(b.literalBuf[:0:litRegenSize], literals) - } - if err != nil { - println("decoding compressed literals:", err) - return in, err - } - // Make sure we don't leak our literals buffer - if len(literals) != litRegenSize { - return in, fmt.Errorf("literal output size mismatch want %d, got %d", litRegenSize, len(literals)) - } - // Re-cap to get extra size. - literals = b.literalBuf[:len(literals)] - if debugDecoder { - printf("Decompressed %d literals into %d bytes\n", litCompSize, litRegenSize) - } - } - hist.decoders.literals = literals - return in, nil -} - -// decodeCompressed will start decompressing a block. -func (b *blockDec) decodeCompressed(hist *history) error { - in := b.data - in, err := b.decodeLiterals(in, hist) - if err != nil { - return err - } - err = b.prepareSequences(in, hist) - if err != nil { - return err - } - if hist.decoders.nSeqs == 0 { - b.dst = append(b.dst, hist.decoders.literals...) - return nil - } - before := len(hist.decoders.out) - err = hist.decoders.decodeSync(hist.b[hist.ignoreBuffer:]) - if err != nil { - return err - } - if hist.decoders.maxSyncLen > 0 { - hist.decoders.maxSyncLen += uint64(before) - hist.decoders.maxSyncLen -= uint64(len(hist.decoders.out)) - } - b.dst = hist.decoders.out - hist.recentOffsets = hist.decoders.prevOffset - return nil -} - -func (b *blockDec) prepareSequences(in []byte, hist *history) (err error) { - if debugDecoder { - printf("prepareSequences: %d byte(s) input\n", len(in)) - } - // Decode Sequences - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#sequences-section - if len(in) < 1 { - return ErrBlockTooSmall - } - var nSeqs int - seqHeader := in[0] - switch { - case seqHeader < 128: - nSeqs = int(seqHeader) - in = in[1:] - case seqHeader < 255: - if len(in) < 2 { - return ErrBlockTooSmall - } - nSeqs = int(seqHeader-128)<<8 | int(in[1]) - in = in[2:] - case seqHeader == 255: - if len(in) < 3 { - return ErrBlockTooSmall - } - nSeqs = 0x7f00 + int(in[1]) + (int(in[2]) << 8) - in = in[3:] - } - if nSeqs == 0 && len(in) != 0 { - // When no sequences, there should not be any more data... - if debugDecoder { - printf("prepareSequences: 0 sequences, but %d byte(s) left on stream\n", len(in)) - } - return ErrUnexpectedBlockSize - } - - var seqs = &hist.decoders - seqs.nSeqs = nSeqs - if nSeqs > 0 { - if len(in) < 1 { - return ErrBlockTooSmall - } - br := byteReader{b: in, off: 0} - compMode := br.Uint8() - br.advance(1) - if debugDecoder { - printf("Compression modes: 0b%b", compMode) - } - if compMode&3 != 0 { - return errors.New("corrupt block: reserved bits not zero") - } - for i := uint(0); i < 3; i++ { - mode := seqCompMode((compMode >> (6 - i*2)) & 3) - if debugDecoder { - println("Table", tableIndex(i), "is", mode) - } - var seq *sequenceDec - switch tableIndex(i) { - case tableLiteralLengths: - seq = &seqs.litLengths - case tableOffsets: - seq = &seqs.offsets - case tableMatchLengths: - seq = &seqs.matchLengths - default: - panic("unknown table") - } - switch mode { - case compModePredefined: - if seq.fse != nil && !seq.fse.preDefined { - fseDecoderPool.Put(seq.fse) - } - seq.fse = &fsePredef[i] - case compModeRLE: - if br.remain() < 1 { - return ErrBlockTooSmall - } - v := br.Uint8() - br.advance(1) - if seq.fse == nil || seq.fse.preDefined { - seq.fse = fseDecoderPool.Get().(*fseDecoder) - } - symb, err := decSymbolValue(v, symbolTableX[i]) - if err != nil { - printf("RLE Transform table (%v) error: %v", tableIndex(i), err) - return err - } - seq.fse.setRLE(symb) - if debugDecoder { - printf("RLE set to 0x%x, code: %v", symb, v) - } - case compModeFSE: - if debugDecoder { - println("Reading table for", tableIndex(i)) - } - if seq.fse == nil || seq.fse.preDefined { - seq.fse = fseDecoderPool.Get().(*fseDecoder) - } - err := seq.fse.readNCount(&br, uint16(maxTableSymbol[i])) - if err != nil { - println("Read table error:", err) - return err - } - err = seq.fse.transform(symbolTableX[i]) - if err != nil { - println("Transform table error:", err) - return err - } - if debugDecoder { - println("Read table ok", "symbolLen:", seq.fse.symbolLen) - } - case compModeRepeat: - seq.repeat = true - } - if br.overread() { - return io.ErrUnexpectedEOF - } - } - in = br.unread() - } - if debugDecoder { - println("Literals:", len(seqs.literals), "hash:", xxhash.Sum64(seqs.literals), "and", seqs.nSeqs, "sequences.") - } - - if nSeqs == 0 { - if len(b.sequence) > 0 { - b.sequence = b.sequence[:0] - } - return nil - } - br := seqs.br - if br == nil { - br = &bitReader{} - } - if err := br.init(in); err != nil { - return err - } - - if err := seqs.initialize(br, hist, b.dst); err != nil { - println("initializing sequences:", err) - return err - } - // Extract blocks... - if false && hist.dict == nil { - fatalErr := func(err error) { - if err != nil { - panic(err) - } - } - fn := fmt.Sprintf("n-%d-lits-%d-prev-%d-%d-%d-win-%d.blk", hist.decoders.nSeqs, len(hist.decoders.literals), hist.recentOffsets[0], hist.recentOffsets[1], hist.recentOffsets[2], hist.windowSize) - var buf bytes.Buffer - fatalErr(binary.Write(&buf, binary.LittleEndian, hist.decoders.litLengths.fse)) - fatalErr(binary.Write(&buf, binary.LittleEndian, hist.decoders.matchLengths.fse)) - fatalErr(binary.Write(&buf, binary.LittleEndian, hist.decoders.offsets.fse)) - buf.Write(in) - os.WriteFile(filepath.Join("testdata", "seqs", fn), buf.Bytes(), os.ModePerm) - } - - return nil -} - -func (b *blockDec) decodeSequences(hist *history) error { - if cap(b.sequence) < hist.decoders.nSeqs { - if b.lowMem { - b.sequence = make([]seqVals, 0, hist.decoders.nSeqs) - } else { - b.sequence = make([]seqVals, 0, 0x7F00+0xffff) - } - } - b.sequence = b.sequence[:hist.decoders.nSeqs] - if hist.decoders.nSeqs == 0 { - hist.decoders.seqSize = len(hist.decoders.literals) - return nil - } - hist.decoders.windowSize = hist.windowSize - hist.decoders.prevOffset = hist.recentOffsets - - err := hist.decoders.decode(b.sequence) - hist.recentOffsets = hist.decoders.prevOffset - return err -} - -func (b *blockDec) executeSequences(hist *history) error { - hbytes := hist.b - if len(hbytes) > hist.windowSize { - hbytes = hbytes[len(hbytes)-hist.windowSize:] - // We do not need history anymore. - if hist.dict != nil { - hist.dict.content = nil - } - } - hist.decoders.windowSize = hist.windowSize - hist.decoders.out = b.dst[:0] - err := hist.decoders.execute(b.sequence, hbytes) - if err != nil { - return err - } - return b.updateHistory(hist) -} - -func (b *blockDec) updateHistory(hist *history) error { - if len(b.data) > maxCompressedBlockSize { - return fmt.Errorf("compressed block size too large (%d)", len(b.data)) - } - // Set output and release references. - b.dst = hist.decoders.out - hist.recentOffsets = hist.decoders.prevOffset - - if b.Last { - // if last block we don't care about history. - println("Last block, no history returned") - hist.b = hist.b[:0] - return nil - } else { - hist.append(b.dst) - if debugDecoder { - println("Finished block with ", len(b.sequence), "sequences. Added", len(b.dst), "to history, now length", len(hist.b)) - } - } - hist.decoders.out, hist.decoders.literals = nil, nil - - return nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/blockenc.go b/vendor/github.com/klauspost/compress/zstd/blockenc.go deleted file mode 100644 index 32a7f401d5..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/blockenc.go +++ /dev/null @@ -1,909 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "errors" - "fmt" - "math" - "math/bits" - - "github.com/klauspost/compress/huff0" -) - -type blockEnc struct { - size int - literals []byte - sequences []seq - coders seqCoders - litEnc *huff0.Scratch - dictLitEnc *huff0.Scratch - wr bitWriter - - extraLits int - output []byte - recentOffsets [3]uint32 - prevRecentOffsets [3]uint32 - - last bool - lowMem bool -} - -// init should be used once the block has been created. -// If called more than once, the effect is the same as calling reset. -func (b *blockEnc) init() { - if b.lowMem { - // 1K literals - if cap(b.literals) < 1<<10 { - b.literals = make([]byte, 0, 1<<10) - } - const defSeqs = 20 - if cap(b.sequences) < defSeqs { - b.sequences = make([]seq, 0, defSeqs) - } - // 1K - if cap(b.output) < 1<<10 { - b.output = make([]byte, 0, 1<<10) - } - } else { - if cap(b.literals) < maxCompressedBlockSize { - b.literals = make([]byte, 0, maxCompressedBlockSize) - } - const defSeqs = 2000 - if cap(b.sequences) < defSeqs { - b.sequences = make([]seq, 0, defSeqs) - } - if cap(b.output) < maxCompressedBlockSize { - b.output = make([]byte, 0, maxCompressedBlockSize) - } - } - - if b.coders.mlEnc == nil { - b.coders.mlEnc = &fseEncoder{} - b.coders.mlPrev = &fseEncoder{} - b.coders.ofEnc = &fseEncoder{} - b.coders.ofPrev = &fseEncoder{} - b.coders.llEnc = &fseEncoder{} - b.coders.llPrev = &fseEncoder{} - } - b.litEnc = &huff0.Scratch{WantLogLess: 4} - b.reset(nil) -} - -// initNewEncode can be used to reset offsets and encoders to the initial state. -func (b *blockEnc) initNewEncode() { - b.recentOffsets = [3]uint32{1, 4, 8} - b.litEnc.Reuse = huff0.ReusePolicyNone - b.coders.setPrev(nil, nil, nil) -} - -// reset will reset the block for a new encode, but in the same stream, -// meaning that state will be carried over, but the block content is reset. -// If a previous block is provided, the recent offsets are carried over. -func (b *blockEnc) reset(prev *blockEnc) { - b.extraLits = 0 - b.literals = b.literals[:0] - b.size = 0 - b.sequences = b.sequences[:0] - b.output = b.output[:0] - b.last = false - if prev != nil { - b.recentOffsets = prev.prevRecentOffsets - } - b.dictLitEnc = nil -} - -// reset will reset the block for a new encode, but in the same stream, -// meaning that state will be carried over, but the block content is reset. -// If a previous block is provided, the recent offsets are carried over. -func (b *blockEnc) swapEncoders(prev *blockEnc) { - b.coders.swap(&prev.coders) - b.litEnc, prev.litEnc = prev.litEnc, b.litEnc -} - -// blockHeader contains the information for a block header. -type blockHeader uint32 - -// setLast sets the 'last' indicator on a block. -func (h *blockHeader) setLast(b bool) { - if b { - *h = *h | 1 - } else { - const mask = (1 << 24) - 2 - *h = *h & mask - } -} - -// setSize will store the compressed size of a block. -func (h *blockHeader) setSize(v uint32) { - const mask = 7 - *h = (*h)&mask | blockHeader(v<<3) -} - -// setType sets the block type. -func (h *blockHeader) setType(t blockType) { - const mask = 1 | (((1 << 24) - 1) ^ 7) - *h = (*h & mask) | blockHeader(t<<1) -} - -// appendTo will append the block header to a slice. -func (h blockHeader) appendTo(b []byte) []byte { - return append(b, uint8(h), uint8(h>>8), uint8(h>>16)) -} - -// String returns a string representation of the block. -func (h blockHeader) String() string { - return fmt.Sprintf("Type: %d, Size: %d, Last:%t", (h>>1)&3, h>>3, h&1 == 1) -} - -// literalsHeader contains literals header information. -type literalsHeader uint64 - -// setType can be used to set the type of literal block. -func (h *literalsHeader) setType(t literalsBlockType) { - const mask = math.MaxUint64 - 3 - *h = (*h & mask) | literalsHeader(t) -} - -// setSize can be used to set a single size, for uncompressed and RLE content. -func (h *literalsHeader) setSize(regenLen int) { - inBits := bits.Len32(uint32(regenLen)) - // Only retain 2 bits - const mask = 3 - lh := uint64(*h & mask) - switch { - case inBits < 5: - lh |= (uint64(regenLen) << 3) | (1 << 60) - if debugEncoder { - got := int(lh>>3) & 0xff - if got != regenLen { - panic(fmt.Sprint("litRegenSize = ", regenLen, "(want) != ", got, "(got)")) - } - } - case inBits < 12: - lh |= (1 << 2) | (uint64(regenLen) << 4) | (2 << 60) - case inBits < 20: - lh |= (3 << 2) | (uint64(regenLen) << 4) | (3 << 60) - default: - panic(fmt.Errorf("internal error: block too big (%d)", regenLen)) - } - *h = literalsHeader(lh) -} - -// setSizes will set the size of a compressed literals section and the input length. -func (h *literalsHeader) setSizes(compLen, inLen int, single bool) { - compBits, inBits := bits.Len32(uint32(compLen)), bits.Len32(uint32(inLen)) - // Only retain 2 bits - const mask = 3 - lh := uint64(*h & mask) - switch { - case compBits <= 10 && inBits <= 10: - if !single { - lh |= 1 << 2 - } - lh |= (uint64(inLen) << 4) | (uint64(compLen) << (10 + 4)) | (3 << 60) - if debugEncoder { - const mmask = (1 << 24) - 1 - n := (lh >> 4) & mmask - if int(n&1023) != inLen { - panic(fmt.Sprint("regensize:", int(n&1023), "!=", inLen, inBits)) - } - if int(n>>10) != compLen { - panic(fmt.Sprint("compsize:", int(n>>10), "!=", compLen, compBits)) - } - } - case compBits <= 14 && inBits <= 14: - lh |= (2 << 2) | (uint64(inLen) << 4) | (uint64(compLen) << (14 + 4)) | (4 << 60) - if single { - panic("single stream used with more than 10 bits length.") - } - case compBits <= 18 && inBits <= 18: - lh |= (3 << 2) | (uint64(inLen) << 4) | (uint64(compLen) << (18 + 4)) | (5 << 60) - if single { - panic("single stream used with more than 10 bits length.") - } - default: - panic("internal error: block too big") - } - *h = literalsHeader(lh) -} - -// appendTo will append the literals header to a byte slice. -func (h literalsHeader) appendTo(b []byte) []byte { - size := uint8(h >> 60) - switch size { - case 1: - b = append(b, uint8(h)) - case 2: - b = append(b, uint8(h), uint8(h>>8)) - case 3: - b = append(b, uint8(h), uint8(h>>8), uint8(h>>16)) - case 4: - b = append(b, uint8(h), uint8(h>>8), uint8(h>>16), uint8(h>>24)) - case 5: - b = append(b, uint8(h), uint8(h>>8), uint8(h>>16), uint8(h>>24), uint8(h>>32)) - default: - panic(fmt.Errorf("internal error: literalsHeader has invalid size (%d)", size)) - } - return b -} - -// size returns the output size with currently set values. -func (h literalsHeader) size() int { - return int(h >> 60) -} - -func (h literalsHeader) String() string { - return fmt.Sprintf("Type: %d, SizeFormat: %d, Size: 0x%d, Bytes:%d", literalsBlockType(h&3), (h>>2)&3, h&((1<<60)-1)>>4, h>>60) -} - -// pushOffsets will push the recent offsets to the backup store. -func (b *blockEnc) pushOffsets() { - b.prevRecentOffsets = b.recentOffsets -} - -// pushOffsets will push the recent offsets to the backup store. -func (b *blockEnc) popOffsets() { - b.recentOffsets = b.prevRecentOffsets -} - -// matchOffset will adjust recent offsets and return the adjusted one, -// if it matches a previous offset. -func (b *blockEnc) matchOffset(offset, lits uint32) uint32 { - // Check if offset is one of the recent offsets. - // Adjusts the output offset accordingly. - // Gives a tiny bit of compression, typically around 1%. - if true { - if lits > 0 { - switch offset { - case b.recentOffsets[0]: - offset = 1 - case b.recentOffsets[1]: - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset = 2 - case b.recentOffsets[2]: - b.recentOffsets[2] = b.recentOffsets[1] - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset = 3 - default: - b.recentOffsets[2] = b.recentOffsets[1] - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset += 3 - } - } else { - switch offset { - case b.recentOffsets[1]: - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset = 1 - case b.recentOffsets[2]: - b.recentOffsets[2] = b.recentOffsets[1] - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset = 2 - case b.recentOffsets[0] - 1: - b.recentOffsets[2] = b.recentOffsets[1] - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset = 3 - default: - b.recentOffsets[2] = b.recentOffsets[1] - b.recentOffsets[1] = b.recentOffsets[0] - b.recentOffsets[0] = offset - offset += 3 - } - } - } else { - offset += 3 - } - return offset -} - -// encodeRaw can be used to set the output to a raw representation of supplied bytes. -func (b *blockEnc) encodeRaw(a []byte) { - var bh blockHeader - bh.setLast(b.last) - bh.setSize(uint32(len(a))) - bh.setType(blockTypeRaw) - b.output = bh.appendTo(b.output[:0]) - b.output = append(b.output, a...) - if debugEncoder { - println("Adding RAW block, length", len(a), "last:", b.last) - } -} - -// encodeRaw can be used to set the output to a raw representation of supplied bytes. -func (b *blockEnc) encodeRawTo(dst, src []byte) []byte { - var bh blockHeader - bh.setLast(b.last) - bh.setSize(uint32(len(src))) - bh.setType(blockTypeRaw) - dst = bh.appendTo(dst) - dst = append(dst, src...) - if debugEncoder { - println("Adding RAW block, length", len(src), "last:", b.last) - } - return dst -} - -// encodeLits can be used if the block is only litLen. -func (b *blockEnc) encodeLits(lits []byte, raw bool) error { - var bh blockHeader - bh.setLast(b.last) - bh.setSize(uint32(len(lits))) - - // Don't compress extremely small blocks - if len(lits) < 8 || (len(lits) < 32 && b.dictLitEnc == nil) || raw { - if debugEncoder { - println("Adding RAW block, length", len(lits), "last:", b.last) - } - bh.setType(blockTypeRaw) - b.output = bh.appendTo(b.output) - b.output = append(b.output, lits...) - return nil - } - - var ( - out []byte - reUsed, single bool - err error - ) - if b.dictLitEnc != nil { - b.litEnc.TransferCTable(b.dictLitEnc) - b.litEnc.Reuse = huff0.ReusePolicyAllow - b.dictLitEnc = nil - } - if len(lits) >= 1024 { - // Use 4 Streams. - out, reUsed, err = huff0.Compress4X(lits, b.litEnc) - } else if len(lits) > 16 { - // Use 1 stream - single = true - out, reUsed, err = huff0.Compress1X(lits, b.litEnc) - } else { - err = huff0.ErrIncompressible - } - if err == nil && len(out)+5 > len(lits) { - // If we are close, we may still be worse or equal to raw. - var lh literalsHeader - lh.setSizes(len(out), len(lits), single) - if len(out)+lh.size() >= len(lits) { - err = huff0.ErrIncompressible - } - } - switch err { - case huff0.ErrIncompressible: - if debugEncoder { - println("Adding RAW block, length", len(lits), "last:", b.last) - } - bh.setType(blockTypeRaw) - b.output = bh.appendTo(b.output) - b.output = append(b.output, lits...) - return nil - case huff0.ErrUseRLE: - if debugEncoder { - println("Adding RLE block, length", len(lits)) - } - bh.setType(blockTypeRLE) - b.output = bh.appendTo(b.output) - b.output = append(b.output, lits[0]) - return nil - case nil: - default: - return err - } - // Compressed... - // Now, allow reuse - b.litEnc.Reuse = huff0.ReusePolicyAllow - bh.setType(blockTypeCompressed) - var lh literalsHeader - if reUsed { - if debugEncoder { - println("Reused tree, compressed to", len(out)) - } - lh.setType(literalsBlockTreeless) - } else { - if debugEncoder { - println("New tree, compressed to", len(out), "tree size:", len(b.litEnc.OutTable)) - } - lh.setType(literalsBlockCompressed) - } - // Set sizes - lh.setSizes(len(out), len(lits), single) - bh.setSize(uint32(len(out) + lh.size() + 1)) - - // Write block headers. - b.output = bh.appendTo(b.output) - b.output = lh.appendTo(b.output) - // Add compressed data. - b.output = append(b.output, out...) - // No sequences. - b.output = append(b.output, 0) - return nil -} - -// encodeRLE will encode an RLE block. -func (b *blockEnc) encodeRLE(val byte, length uint32) { - var bh blockHeader - bh.setLast(b.last) - bh.setSize(length) - bh.setType(blockTypeRLE) - b.output = bh.appendTo(b.output) - b.output = append(b.output, val) -} - -// fuzzFseEncoder can be used to fuzz the FSE encoder. -func fuzzFseEncoder(data []byte) int { - if len(data) > maxSequences || len(data) < 2 { - return 0 - } - enc := fseEncoder{} - hist := enc.Histogram() - maxSym := uint8(0) - for i, v := range data { - v = v & 63 - data[i] = v - hist[v]++ - if v > maxSym { - maxSym = v - } - } - if maxSym == 0 { - // All 0 - return 0 - } - maxCount := func(a []uint32) int { - var max uint32 - for _, v := range a { - if v > max { - max = v - } - } - return int(max) - } - cnt := maxCount(hist[:maxSym]) - if cnt == len(data) { - // RLE - return 0 - } - enc.HistogramFinished(maxSym, cnt) - err := enc.normalizeCount(len(data)) - if err != nil { - return 0 - } - _, err = enc.writeCount(nil) - if err != nil { - panic(err) - } - return 1 -} - -// encode will encode the block and append the output in b.output. -// Previous offset codes must be pushed if more blocks are expected. -func (b *blockEnc) encode(org []byte, raw, rawAllLits bool) error { - if len(b.sequences) == 0 { - return b.encodeLits(b.literals, rawAllLits) - } - if len(b.sequences) == 1 && len(org) > 0 && len(b.literals) <= 1 { - // Check common RLE cases. - seq := b.sequences[0] - if seq.litLen == uint32(len(b.literals)) && seq.offset-3 == 1 { - // Offset == 1 and 0 or 1 literals. - b.encodeRLE(org[0], b.sequences[0].matchLen+zstdMinMatch+seq.litLen) - return nil - } - } - - // We want some difference to at least account for the headers. - saved := b.size - len(b.literals) - (b.size >> 6) - if saved < 16 { - if org == nil { - return errIncompressible - } - b.popOffsets() - return b.encodeLits(org, rawAllLits) - } - - var bh blockHeader - var lh literalsHeader - bh.setLast(b.last) - bh.setType(blockTypeCompressed) - // Store offset of the block header. Needed when we know the size. - bhOffset := len(b.output) - b.output = bh.appendTo(b.output) - - var ( - out []byte - reUsed, single bool - err error - ) - if b.dictLitEnc != nil { - b.litEnc.TransferCTable(b.dictLitEnc) - b.litEnc.Reuse = huff0.ReusePolicyAllow - b.dictLitEnc = nil - } - if len(b.literals) >= 1024 && !raw { - // Use 4 Streams. - out, reUsed, err = huff0.Compress4X(b.literals, b.litEnc) - } else if len(b.literals) > 16 && !raw { - // Use 1 stream - single = true - out, reUsed, err = huff0.Compress1X(b.literals, b.litEnc) - } else { - err = huff0.ErrIncompressible - } - - if err == nil && len(out)+5 > len(b.literals) { - // If we are close, we may still be worse or equal to raw. - var lh literalsHeader - lh.setSize(len(b.literals)) - szRaw := lh.size() - lh.setSizes(len(out), len(b.literals), single) - szComp := lh.size() - if len(out)+szComp >= len(b.literals)+szRaw { - err = huff0.ErrIncompressible - } - } - switch err { - case huff0.ErrIncompressible: - lh.setType(literalsBlockRaw) - lh.setSize(len(b.literals)) - b.output = lh.appendTo(b.output) - b.output = append(b.output, b.literals...) - if debugEncoder { - println("Adding literals RAW, length", len(b.literals)) - } - case huff0.ErrUseRLE: - lh.setType(literalsBlockRLE) - lh.setSize(len(b.literals)) - b.output = lh.appendTo(b.output) - b.output = append(b.output, b.literals[0]) - if debugEncoder { - println("Adding literals RLE") - } - case nil: - // Compressed litLen... - if reUsed { - if debugEncoder { - println("reused tree") - } - lh.setType(literalsBlockTreeless) - } else { - if debugEncoder { - println("new tree, size:", len(b.litEnc.OutTable)) - } - lh.setType(literalsBlockCompressed) - if debugEncoder { - _, _, err := huff0.ReadTable(out, nil) - if err != nil { - panic(err) - } - } - } - lh.setSizes(len(out), len(b.literals), single) - if debugEncoder { - printf("Compressed %d literals to %d bytes", len(b.literals), len(out)) - println("Adding literal header:", lh) - } - b.output = lh.appendTo(b.output) - b.output = append(b.output, out...) - b.litEnc.Reuse = huff0.ReusePolicyAllow - if debugEncoder { - println("Adding literals compressed") - } - default: - if debugEncoder { - println("Adding literals ERROR:", err) - } - return err - } - // Sequence compression - - // Write the number of sequences - switch { - case len(b.sequences) < 128: - b.output = append(b.output, uint8(len(b.sequences))) - case len(b.sequences) < 0x7f00: // TODO: this could be wrong - n := len(b.sequences) - b.output = append(b.output, 128+uint8(n>>8), uint8(n)) - default: - n := len(b.sequences) - 0x7f00 - b.output = append(b.output, 255, uint8(n), uint8(n>>8)) - } - if debugEncoder { - println("Encoding", len(b.sequences), "sequences") - } - b.genCodes() - llEnc := b.coders.llEnc - ofEnc := b.coders.ofEnc - mlEnc := b.coders.mlEnc - err = llEnc.normalizeCount(len(b.sequences)) - if err != nil { - return err - } - err = ofEnc.normalizeCount(len(b.sequences)) - if err != nil { - return err - } - err = mlEnc.normalizeCount(len(b.sequences)) - if err != nil { - return err - } - - // Choose the best compression mode for each type. - // Will evaluate the new vs predefined and previous. - chooseComp := func(cur, prev, preDef *fseEncoder) (*fseEncoder, seqCompMode) { - // See if predefined/previous is better - hist := cur.count[:cur.symbolLen] - nSize := cur.approxSize(hist) + cur.maxHeaderSize() - predefSize := preDef.approxSize(hist) - prevSize := prev.approxSize(hist) - - // Add a small penalty for new encoders. - // Don't bother with extremely small (<2 byte gains). - nSize = nSize + (nSize+2*8*16)>>4 - switch { - case predefSize <= prevSize && predefSize <= nSize || forcePreDef: - if debugEncoder { - println("Using predefined", predefSize>>3, "<=", nSize>>3) - } - return preDef, compModePredefined - case prevSize <= nSize: - if debugEncoder { - println("Using previous", prevSize>>3, "<=", nSize>>3) - } - return prev, compModeRepeat - default: - if debugEncoder { - println("Using new, predef", predefSize>>3, ". previous:", prevSize>>3, ">", nSize>>3, "header max:", cur.maxHeaderSize()>>3, "bytes") - println("tl:", cur.actualTableLog, "symbolLen:", cur.symbolLen, "norm:", cur.norm[:cur.symbolLen], "hist", cur.count[:cur.symbolLen]) - } - return cur, compModeFSE - } - } - - // Write compression mode - var mode uint8 - if llEnc.useRLE { - mode |= uint8(compModeRLE) << 6 - llEnc.setRLE(b.sequences[0].llCode) - if debugEncoder { - println("llEnc.useRLE") - } - } else { - var m seqCompMode - llEnc, m = chooseComp(llEnc, b.coders.llPrev, &fsePredefEnc[tableLiteralLengths]) - mode |= uint8(m) << 6 - } - if ofEnc.useRLE { - mode |= uint8(compModeRLE) << 4 - ofEnc.setRLE(b.sequences[0].ofCode) - if debugEncoder { - println("ofEnc.useRLE") - } - } else { - var m seqCompMode - ofEnc, m = chooseComp(ofEnc, b.coders.ofPrev, &fsePredefEnc[tableOffsets]) - mode |= uint8(m) << 4 - } - - if mlEnc.useRLE { - mode |= uint8(compModeRLE) << 2 - mlEnc.setRLE(b.sequences[0].mlCode) - if debugEncoder { - println("mlEnc.useRLE, code: ", b.sequences[0].mlCode, "value", b.sequences[0].matchLen) - } - } else { - var m seqCompMode - mlEnc, m = chooseComp(mlEnc, b.coders.mlPrev, &fsePredefEnc[tableMatchLengths]) - mode |= uint8(m) << 2 - } - b.output = append(b.output, mode) - if debugEncoder { - printf("Compression modes: 0b%b", mode) - } - b.output, err = llEnc.writeCount(b.output) - if err != nil { - return err - } - start := len(b.output) - b.output, err = ofEnc.writeCount(b.output) - if err != nil { - return err - } - if false { - println("block:", b.output[start:], "tablelog", ofEnc.actualTableLog, "maxcount:", ofEnc.maxCount) - fmt.Printf("selected TableLog: %d, Symbol length: %d\n", ofEnc.actualTableLog, ofEnc.symbolLen) - for i, v := range ofEnc.norm[:ofEnc.symbolLen] { - fmt.Printf("%3d: %5d -> %4d \n", i, ofEnc.count[i], v) - } - } - b.output, err = mlEnc.writeCount(b.output) - if err != nil { - return err - } - - // Maybe in block? - wr := &b.wr - wr.reset(b.output) - - var ll, of, ml cState - - // Current sequence - seq := len(b.sequences) - 1 - s := b.sequences[seq] - llEnc.setBits(llBitsTable[:]) - mlEnc.setBits(mlBitsTable[:]) - ofEnc.setBits(nil) - - llTT, ofTT, mlTT := llEnc.ct.symbolTT[:256], ofEnc.ct.symbolTT[:256], mlEnc.ct.symbolTT[:256] - - // We have 3 bounds checks here (and in the loop). - // Since we are iterating backwards it is kinda hard to avoid. - llB, ofB, mlB := llTT[s.llCode], ofTT[s.ofCode], mlTT[s.mlCode] - ll.init(wr, &llEnc.ct, llB) - of.init(wr, &ofEnc.ct, ofB) - wr.flush32() - ml.init(wr, &mlEnc.ct, mlB) - - // Each of these lookups also generates a bounds check. - wr.addBits32NC(s.litLen, llB.outBits) - wr.addBits32NC(s.matchLen, mlB.outBits) - wr.flush32() - wr.addBits32NC(s.offset, ofB.outBits) - if debugSequences { - println("Encoded seq", seq, s, "codes:", s.llCode, s.mlCode, s.ofCode, "states:", ll.state, ml.state, of.state, "bits:", llB, mlB, ofB) - } - seq-- - // Store sequences in reverse... - for seq >= 0 { - s = b.sequences[seq] - - ofB := ofTT[s.ofCode] - wr.flush32() // tablelog max is below 8 for each, so it will fill max 24 bits. - //of.encode(ofB) - nbBitsOut := (uint32(of.state) + ofB.deltaNbBits) >> 16 - dstState := int32(of.state>>(nbBitsOut&15)) + int32(ofB.deltaFindState) - wr.addBits16NC(of.state, uint8(nbBitsOut)) - of.state = of.stateTable[dstState] - - // Accumulate extra bits. - outBits := ofB.outBits & 31 - extraBits := uint64(s.offset & bitMask32[outBits]) - extraBitsN := outBits - - mlB := mlTT[s.mlCode] - //ml.encode(mlB) - nbBitsOut = (uint32(ml.state) + mlB.deltaNbBits) >> 16 - dstState = int32(ml.state>>(nbBitsOut&15)) + int32(mlB.deltaFindState) - wr.addBits16NC(ml.state, uint8(nbBitsOut)) - ml.state = ml.stateTable[dstState] - - outBits = mlB.outBits & 31 - extraBits = extraBits<> 16 - dstState = int32(ll.state>>(nbBitsOut&15)) + int32(llB.deltaFindState) - wr.addBits16NC(ll.state, uint8(nbBitsOut)) - ll.state = ll.stateTable[dstState] - - outBits = llB.outBits & 31 - extraBits = extraBits<= b.size { - // Discard and encode as raw block. - b.output = b.encodeRawTo(b.output[:bhOffset], org) - b.popOffsets() - b.litEnc.Reuse = huff0.ReusePolicyNone - return nil - } - - // Size is output minus block header. - bh.setSize(uint32(len(b.output)-bhOffset) - 3) - if debugEncoder { - println("Rewriting block header", bh) - } - _ = bh.appendTo(b.output[bhOffset:bhOffset]) - b.coders.setPrev(llEnc, mlEnc, ofEnc) - return nil -} - -var errIncompressible = errors.New("incompressible") - -func (b *blockEnc) genCodes() { - if len(b.sequences) == 0 { - // nothing to do - return - } - if len(b.sequences) > math.MaxUint16 { - panic("can only encode up to 64K sequences") - } - // No bounds checks after here: - llH := b.coders.llEnc.Histogram() - ofH := b.coders.ofEnc.Histogram() - mlH := b.coders.mlEnc.Histogram() - for i := range llH { - llH[i] = 0 - } - for i := range ofH { - ofH[i] = 0 - } - for i := range mlH { - mlH[i] = 0 - } - - var llMax, ofMax, mlMax uint8 - for i := range b.sequences { - seq := &b.sequences[i] - v := llCode(seq.litLen) - seq.llCode = v - llH[v]++ - if v > llMax { - llMax = v - } - - v = ofCode(seq.offset) - seq.ofCode = v - ofH[v]++ - if v > ofMax { - ofMax = v - } - - v = mlCode(seq.matchLen) - seq.mlCode = v - mlH[v]++ - if v > mlMax { - mlMax = v - if debugAsserts && mlMax > maxMatchLengthSymbol { - panic(fmt.Errorf("mlMax > maxMatchLengthSymbol (%d), matchlen: %d", mlMax, seq.matchLen)) - } - } - } - maxCount := func(a []uint32) int { - var max uint32 - for _, v := range a { - if v > max { - max = v - } - } - return int(max) - } - if debugAsserts && mlMax > maxMatchLengthSymbol { - panic(fmt.Errorf("mlMax > maxMatchLengthSymbol (%d)", mlMax)) - } - if debugAsserts && ofMax > maxOffsetBits { - panic(fmt.Errorf("ofMax > maxOffsetBits (%d)", ofMax)) - } - if debugAsserts && llMax > maxLiteralLengthSymbol { - panic(fmt.Errorf("llMax > maxLiteralLengthSymbol (%d)", llMax)) - } - - b.coders.mlEnc.HistogramFinished(mlMax, maxCount(mlH[:mlMax+1])) - b.coders.ofEnc.HistogramFinished(ofMax, maxCount(ofH[:ofMax+1])) - b.coders.llEnc.HistogramFinished(llMax, maxCount(llH[:llMax+1])) -} diff --git a/vendor/github.com/klauspost/compress/zstd/blocktype_string.go b/vendor/github.com/klauspost/compress/zstd/blocktype_string.go deleted file mode 100644 index 01a01e486e..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/blocktype_string.go +++ /dev/null @@ -1,85 +0,0 @@ -// Code generated by "stringer -type=blockType,literalsBlockType,seqCompMode,tableIndex"; DO NOT EDIT. - -package zstd - -import "strconv" - -func _() { - // An "invalid array index" compiler error signifies that the constant values have changed. - // Re-run the stringer command to generate them again. - var x [1]struct{} - _ = x[blockTypeRaw-0] - _ = x[blockTypeRLE-1] - _ = x[blockTypeCompressed-2] - _ = x[blockTypeReserved-3] -} - -const _blockType_name = "blockTypeRawblockTypeRLEblockTypeCompressedblockTypeReserved" - -var _blockType_index = [...]uint8{0, 12, 24, 43, 60} - -func (i blockType) String() string { - if i >= blockType(len(_blockType_index)-1) { - return "blockType(" + strconv.FormatInt(int64(i), 10) + ")" - } - return _blockType_name[_blockType_index[i]:_blockType_index[i+1]] -} -func _() { - // An "invalid array index" compiler error signifies that the constant values have changed. - // Re-run the stringer command to generate them again. - var x [1]struct{} - _ = x[literalsBlockRaw-0] - _ = x[literalsBlockRLE-1] - _ = x[literalsBlockCompressed-2] - _ = x[literalsBlockTreeless-3] -} - -const _literalsBlockType_name = "literalsBlockRawliteralsBlockRLEliteralsBlockCompressedliteralsBlockTreeless" - -var _literalsBlockType_index = [...]uint8{0, 16, 32, 55, 76} - -func (i literalsBlockType) String() string { - if i >= literalsBlockType(len(_literalsBlockType_index)-1) { - return "literalsBlockType(" + strconv.FormatInt(int64(i), 10) + ")" - } - return _literalsBlockType_name[_literalsBlockType_index[i]:_literalsBlockType_index[i+1]] -} -func _() { - // An "invalid array index" compiler error signifies that the constant values have changed. - // Re-run the stringer command to generate them again. - var x [1]struct{} - _ = x[compModePredefined-0] - _ = x[compModeRLE-1] - _ = x[compModeFSE-2] - _ = x[compModeRepeat-3] -} - -const _seqCompMode_name = "compModePredefinedcompModeRLEcompModeFSEcompModeRepeat" - -var _seqCompMode_index = [...]uint8{0, 18, 29, 40, 54} - -func (i seqCompMode) String() string { - if i >= seqCompMode(len(_seqCompMode_index)-1) { - return "seqCompMode(" + strconv.FormatInt(int64(i), 10) + ")" - } - return _seqCompMode_name[_seqCompMode_index[i]:_seqCompMode_index[i+1]] -} -func _() { - // An "invalid array index" compiler error signifies that the constant values have changed. - // Re-run the stringer command to generate them again. - var x [1]struct{} - _ = x[tableLiteralLengths-0] - _ = x[tableOffsets-1] - _ = x[tableMatchLengths-2] -} - -const _tableIndex_name = "tableLiteralLengthstableOffsetstableMatchLengths" - -var _tableIndex_index = [...]uint8{0, 19, 31, 48} - -func (i tableIndex) String() string { - if i >= tableIndex(len(_tableIndex_index)-1) { - return "tableIndex(" + strconv.FormatInt(int64(i), 10) + ")" - } - return _tableIndex_name[_tableIndex_index[i]:_tableIndex_index[i+1]] -} diff --git a/vendor/github.com/klauspost/compress/zstd/bytebuf.go b/vendor/github.com/klauspost/compress/zstd/bytebuf.go deleted file mode 100644 index 55a388553d..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/bytebuf.go +++ /dev/null @@ -1,131 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "fmt" - "io" -) - -type byteBuffer interface { - // Read up to 8 bytes. - // Returns io.ErrUnexpectedEOF if this cannot be satisfied. - readSmall(n int) ([]byte, error) - - // Read >8 bytes. - // MAY use the destination slice. - readBig(n int, dst []byte) ([]byte, error) - - // Read a single byte. - readByte() (byte, error) - - // Skip n bytes. - skipN(n int64) error -} - -// in-memory buffer -type byteBuf []byte - -func (b *byteBuf) readSmall(n int) ([]byte, error) { - if debugAsserts && n > 8 { - panic(fmt.Errorf("small read > 8 (%d). use readBig", n)) - } - bb := *b - if len(bb) < n { - return nil, io.ErrUnexpectedEOF - } - r := bb[:n] - *b = bb[n:] - return r, nil -} - -func (b *byteBuf) readBig(n int, dst []byte) ([]byte, error) { - bb := *b - if len(bb) < n { - return nil, io.ErrUnexpectedEOF - } - r := bb[:n] - *b = bb[n:] - return r, nil -} - -func (b *byteBuf) readByte() (byte, error) { - bb := *b - if len(bb) < 1 { - return 0, io.ErrUnexpectedEOF - } - r := bb[0] - *b = bb[1:] - return r, nil -} - -func (b *byteBuf) skipN(n int64) error { - bb := *b - if n < 0 { - return fmt.Errorf("negative skip (%d) requested", n) - } - if int64(len(bb)) < n { - return io.ErrUnexpectedEOF - } - *b = bb[n:] - return nil -} - -// wrapper around a reader. -type readerWrapper struct { - r io.Reader - tmp [8]byte -} - -func (r *readerWrapper) readSmall(n int) ([]byte, error) { - if debugAsserts && n > 8 { - panic(fmt.Errorf("small read > 8 (%d). use readBig", n)) - } - n2, err := io.ReadFull(r.r, r.tmp[:n]) - // We only really care about the actual bytes read. - if err != nil { - if err == io.EOF { - return nil, io.ErrUnexpectedEOF - } - if debugDecoder { - println("readSmall: got", n2, "want", n, "err", err) - } - return nil, err - } - return r.tmp[:n], nil -} - -func (r *readerWrapper) readBig(n int, dst []byte) ([]byte, error) { - if cap(dst) < n { - dst = make([]byte, n) - } - n2, err := io.ReadFull(r.r, dst[:n]) - if err == io.EOF && n > 0 { - err = io.ErrUnexpectedEOF - } - return dst[:n2], err -} - -func (r *readerWrapper) readByte() (byte, error) { - n2, err := io.ReadFull(r.r, r.tmp[:1]) - if err != nil { - if err == io.EOF { - err = io.ErrUnexpectedEOF - } - return 0, err - } - if n2 != 1 { - return 0, io.ErrUnexpectedEOF - } - return r.tmp[0], nil -} - -func (r *readerWrapper) skipN(n int64) error { - n2, err := io.CopyN(io.Discard, r.r, n) - if n2 != n { - err = io.ErrUnexpectedEOF - } - return err -} diff --git a/vendor/github.com/klauspost/compress/zstd/bytereader.go b/vendor/github.com/klauspost/compress/zstd/bytereader.go deleted file mode 100644 index 0e59a242d8..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/bytereader.go +++ /dev/null @@ -1,82 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -// byteReader provides a byte reader that reads -// little endian values from a byte stream. -// The input stream is manually advanced. -// The reader performs no bounds checks. -type byteReader struct { - b []byte - off int -} - -// advance the stream b n bytes. -func (b *byteReader) advance(n uint) { - b.off += int(n) -} - -// overread returns whether we have advanced too far. -func (b *byteReader) overread() bool { - return b.off > len(b.b) -} - -// Int32 returns a little endian int32 starting at current offset. -func (b byteReader) Int32() int32 { - b2 := b.b[b.off:] - b2 = b2[:4] - v3 := int32(b2[3]) - v2 := int32(b2[2]) - v1 := int32(b2[1]) - v0 := int32(b2[0]) - return v0 | (v1 << 8) | (v2 << 16) | (v3 << 24) -} - -// Uint8 returns the next byte -func (b *byteReader) Uint8() uint8 { - v := b.b[b.off] - return v -} - -// Uint32 returns a little endian uint32 starting at current offset. -func (b byteReader) Uint32() uint32 { - if r := b.remain(); r < 4 { - // Very rare - v := uint32(0) - for i := 1; i <= r; i++ { - v = (v << 8) | uint32(b.b[len(b.b)-i]) - } - return v - } - b2 := b.b[b.off:] - b2 = b2[:4] - v3 := uint32(b2[3]) - v2 := uint32(b2[2]) - v1 := uint32(b2[1]) - v0 := uint32(b2[0]) - return v0 | (v1 << 8) | (v2 << 16) | (v3 << 24) -} - -// Uint32NC returns a little endian uint32 starting at current offset. -// The caller must be sure if there are at least 4 bytes left. -func (b byteReader) Uint32NC() uint32 { - b2 := b.b[b.off:] - b2 = b2[:4] - v3 := uint32(b2[3]) - v2 := uint32(b2[2]) - v1 := uint32(b2[1]) - v0 := uint32(b2[0]) - return v0 | (v1 << 8) | (v2 << 16) | (v3 << 24) -} - -// unread returns the unread portion of the input. -func (b byteReader) unread() []byte { - return b.b[b.off:] -} - -// remain will return the number of bytes remaining. -func (b byteReader) remain() int { - return len(b.b) - b.off -} diff --git a/vendor/github.com/klauspost/compress/zstd/decodeheader.go b/vendor/github.com/klauspost/compress/zstd/decodeheader.go deleted file mode 100644 index 6a5a2988b6..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/decodeheader.go +++ /dev/null @@ -1,261 +0,0 @@ -// Copyright 2020+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. - -package zstd - -import ( - "encoding/binary" - "errors" - "io" -) - -// HeaderMaxSize is the maximum size of a Frame and Block Header. -// If less is sent to Header.Decode it *may* still contain enough information. -const HeaderMaxSize = 14 + 3 - -// Header contains information about the first frame and block within that. -type Header struct { - // SingleSegment specifies whether the data is to be decompressed into a - // single contiguous memory segment. - // It implies that WindowSize is invalid and that FrameContentSize is valid. - SingleSegment bool - - // WindowSize is the window of data to keep while decoding. - // Will only be set if SingleSegment is false. - WindowSize uint64 - - // Dictionary ID. - // If 0, no dictionary. - DictionaryID uint32 - - // HasFCS specifies whether FrameContentSize has a valid value. - HasFCS bool - - // FrameContentSize is the expected uncompressed size of the entire frame. - FrameContentSize uint64 - - // Skippable will be true if the frame is meant to be skipped. - // This implies that FirstBlock.OK is false. - Skippable bool - - // SkippableID is the user-specific ID for the skippable frame. - // Valid values are between 0 to 15, inclusive. - SkippableID int - - // SkippableSize is the length of the user data to skip following - // the header. - SkippableSize uint32 - - // HeaderSize is the raw size of the frame header. - // - // For normal frames, it includes the size of the magic number and - // the size of the header (per section 3.1.1.1). - // It does not include the size for any data blocks (section 3.1.1.2) nor - // the size for the trailing content checksum. - // - // For skippable frames, this counts the size of the magic number - // along with the size of the size field of the payload. - // It does not include the size of the skippable payload itself. - // The total frame size is the HeaderSize plus the SkippableSize. - HeaderSize int - - // First block information. - FirstBlock struct { - // OK will be set if first block could be decoded. - OK bool - - // Is this the last block of a frame? - Last bool - - // Is the data compressed? - // If true CompressedSize will be populated. - // Unfortunately DecompressedSize cannot be determined - // without decoding the blocks. - Compressed bool - - // DecompressedSize is the expected decompressed size of the block. - // Will be 0 if it cannot be determined. - DecompressedSize int - - // CompressedSize of the data in the block. - // Does not include the block header. - // Will be equal to DecompressedSize if not Compressed. - CompressedSize int - } - - // If set there is a checksum present for the block content. - // The checksum field at the end is always 4 bytes long. - HasCheckSum bool -} - -// Decode the header from the beginning of the stream. -// This will decode the frame header and the first block header if enough bytes are provided. -// It is recommended to provide at least HeaderMaxSize bytes. -// If the frame header cannot be read an error will be returned. -// If there isn't enough input, io.ErrUnexpectedEOF is returned. -// The FirstBlock.OK will indicate if enough information was available to decode the first block header. -func (h *Header) Decode(in []byte) error { - _, err := h.DecodeAndStrip(in) - return err -} - -// DecodeAndStrip will decode the header from the beginning of the stream -// and on success return the remaining bytes. -// This will decode the frame header and the first block header if enough bytes are provided. -// It is recommended to provide at least HeaderMaxSize bytes. -// If the frame header cannot be read an error will be returned. -// If there isn't enough input, io.ErrUnexpectedEOF is returned. -// The FirstBlock.OK will indicate if enough information was available to decode the first block header. -func (h *Header) DecodeAndStrip(in []byte) (remain []byte, err error) { - *h = Header{} - if len(in) < 4 { - return nil, io.ErrUnexpectedEOF - } - h.HeaderSize += 4 - b, in := in[:4], in[4:] - if string(b) != frameMagic { - if string(b[1:4]) != skippableFrameMagic || b[0]&0xf0 != 0x50 { - return nil, ErrMagicMismatch - } - if len(in) < 4 { - return nil, io.ErrUnexpectedEOF - } - h.HeaderSize += 4 - h.Skippable = true - h.SkippableID = int(b[0] & 0xf) - h.SkippableSize = binary.LittleEndian.Uint32(in) - return in[4:], nil - } - - // Read Window_Descriptor - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#window_descriptor - if len(in) < 1 { - return nil, io.ErrUnexpectedEOF - } - fhd, in := in[0], in[1:] - h.HeaderSize++ - h.SingleSegment = fhd&(1<<5) != 0 - h.HasCheckSum = fhd&(1<<2) != 0 - if fhd&(1<<3) != 0 { - return nil, errors.New("reserved bit set on frame header") - } - - if !h.SingleSegment { - if len(in) < 1 { - return nil, io.ErrUnexpectedEOF - } - var wd byte - wd, in = in[0], in[1:] - h.HeaderSize++ - windowLog := 10 + (wd >> 3) - windowBase := uint64(1) << windowLog - windowAdd := (windowBase / 8) * uint64(wd&0x7) - h.WindowSize = windowBase + windowAdd - } - - // Read Dictionary_ID - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary_id - if size := fhd & 3; size != 0 { - if size == 3 { - size = 4 - } - if len(in) < int(size) { - return nil, io.ErrUnexpectedEOF - } - b, in = in[:size], in[size:] - h.HeaderSize += int(size) - switch len(b) { - case 1: - h.DictionaryID = uint32(b[0]) - case 2: - h.DictionaryID = uint32(b[0]) | (uint32(b[1]) << 8) - case 4: - h.DictionaryID = uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24) - } - } - - // Read Frame_Content_Size - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#frame_content_size - var fcsSize int - v := fhd >> 6 - switch v { - case 0: - if h.SingleSegment { - fcsSize = 1 - } - default: - fcsSize = 1 << v - } - - if fcsSize > 0 { - h.HasFCS = true - if len(in) < fcsSize { - return nil, io.ErrUnexpectedEOF - } - b, in = in[:fcsSize], in[fcsSize:] - h.HeaderSize += int(fcsSize) - switch len(b) { - case 1: - h.FrameContentSize = uint64(b[0]) - case 2: - // When FCS_Field_Size is 2, the offset of 256 is added. - h.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) + 256 - case 4: - h.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) | (uint64(b[2]) << 16) | (uint64(b[3]) << 24) - case 8: - d1 := uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24) - d2 := uint32(b[4]) | (uint32(b[5]) << 8) | (uint32(b[6]) << 16) | (uint32(b[7]) << 24) - h.FrameContentSize = uint64(d1) | (uint64(d2) << 32) - } - } - - // Frame Header done, we will not fail from now on. - if len(in) < 3 { - return in, nil - } - tmp := in[:3] - bh := uint32(tmp[0]) | (uint32(tmp[1]) << 8) | (uint32(tmp[2]) << 16) - h.FirstBlock.Last = bh&1 != 0 - blockType := blockType((bh >> 1) & 3) - // find size. - cSize := int(bh >> 3) - switch blockType { - case blockTypeReserved: - return in, nil - case blockTypeRLE: - h.FirstBlock.Compressed = true - h.FirstBlock.DecompressedSize = cSize - h.FirstBlock.CompressedSize = 1 - case blockTypeCompressed: - h.FirstBlock.Compressed = true - h.FirstBlock.CompressedSize = cSize - case blockTypeRaw: - h.FirstBlock.DecompressedSize = cSize - h.FirstBlock.CompressedSize = cSize - default: - panic("Invalid block type") - } - - h.FirstBlock.OK = true - return in, nil -} - -// AppendTo will append the encoded header to the dst slice. -// There is no error checking performed on the header values. -func (h *Header) AppendTo(dst []byte) ([]byte, error) { - if h.Skippable { - magic := [4]byte{0x50, 0x2a, 0x4d, 0x18} - magic[0] |= byte(h.SkippableID & 0xf) - dst = append(dst, magic[:]...) - f := h.SkippableSize - return append(dst, uint8(f), uint8(f>>8), uint8(f>>16), uint8(f>>24)), nil - } - f := frameHeader{ - ContentSize: h.FrameContentSize, - WindowSize: uint32(h.WindowSize), - SingleSegment: h.SingleSegment, - Checksum: h.HasCheckSum, - DictID: h.DictionaryID, - } - return f.appendTo(dst), nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/decoder.go b/vendor/github.com/klauspost/compress/zstd/decoder.go deleted file mode 100644 index bbca17234a..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/decoder.go +++ /dev/null @@ -1,948 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "context" - "encoding/binary" - "io" - "sync" - - "github.com/klauspost/compress/zstd/internal/xxhash" -) - -// Decoder provides decoding of zstandard streams. -// The decoder has been designed to operate without allocations after a warmup. -// This means that you should store the decoder for best performance. -// To re-use a stream decoder, use the Reset(r io.Reader) error to switch to another stream. -// A decoder can safely be re-used even if the previous stream failed. -// To release the resources, you must call the Close() function on a decoder. -type Decoder struct { - o decoderOptions - - // Unreferenced decoders, ready for use. - decoders chan *blockDec - - // Current read position used for Reader functionality. - current decoderState - - // sync stream decoding - syncStream struct { - decodedFrame uint64 - br readerWrapper - enabled bool - inFrame bool - dstBuf []byte - } - - frame *frameDec - - // Custom dictionaries. - dicts map[uint32]*dict - - // streamWg is the waitgroup for all streams - streamWg sync.WaitGroup -} - -// decoderState is used for maintaining state when the decoder -// is used for streaming. -type decoderState struct { - // current block being written to stream. - decodeOutput - - // output in order to be written to stream. - output chan decodeOutput - - // cancel remaining output. - cancel context.CancelFunc - - // crc of current frame - crc *xxhash.Digest - - flushed bool -} - -var ( - // Check the interfaces we want to support. - _ = io.WriterTo(&Decoder{}) - _ = io.Reader(&Decoder{}) -) - -// NewReader creates a new decoder. -// A nil Reader can be provided in which case Reset can be used to start a decode. -// -// A Decoder can be used in two modes: -// -// 1) As a stream, or -// 2) For stateless decoding using DecodeAll. -// -// Only a single stream can be decoded concurrently, but the same decoder -// can run multiple concurrent stateless decodes. It is even possible to -// use stateless decodes while a stream is being decoded. -// -// The Reset function can be used to initiate a new stream, which will considerably -// reduce the allocations normally caused by NewReader. -func NewReader(r io.Reader, opts ...DOption) (*Decoder, error) { - initPredefined() - var d Decoder - d.o.setDefault() - for _, o := range opts { - err := o(&d.o) - if err != nil { - return nil, err - } - } - d.current.crc = xxhash.New() - d.current.flushed = true - - if r == nil { - d.current.err = ErrDecoderNilInput - } - - // Transfer option dicts. - d.dicts = make(map[uint32]*dict, len(d.o.dicts)) - for _, dc := range d.o.dicts { - d.dicts[dc.id] = dc - } - d.o.dicts = nil - - // Create decoders - d.decoders = make(chan *blockDec, d.o.concurrent) - for i := 0; i < d.o.concurrent; i++ { - dec := newBlockDec(d.o.lowMem) - dec.localFrame = newFrameDec(d.o) - d.decoders <- dec - } - - if r == nil { - return &d, nil - } - return &d, d.Reset(r) -} - -// Read bytes from the decompressed stream into p. -// Returns the number of bytes written and any error that occurred. -// When the stream is done, io.EOF will be returned. -func (d *Decoder) Read(p []byte) (int, error) { - var n int - for { - if len(d.current.b) > 0 { - filled := copy(p, d.current.b) - p = p[filled:] - d.current.b = d.current.b[filled:] - n += filled - } - if len(p) == 0 { - break - } - if len(d.current.b) == 0 { - // We have an error and no more data - if d.current.err != nil { - break - } - if !d.nextBlock(n == 0) { - return n, d.current.err - } - } - } - if len(d.current.b) > 0 { - if debugDecoder { - println("returning", n, "still bytes left:", len(d.current.b)) - } - // Only return error at end of block - return n, nil - } - if d.current.err != nil { - d.drainOutput() - } - if debugDecoder { - println("returning", n, d.current.err, len(d.decoders)) - } - return n, d.current.err -} - -// Reset will reset the decoder the supplied stream after the current has finished processing. -// Note that this functionality cannot be used after Close has been called. -// Reset can be called with a nil reader to release references to the previous reader. -// After being called with a nil reader, no other operations than Reset or DecodeAll or Close -// should be used. -func (d *Decoder) Reset(r io.Reader) error { - if d.current.err == ErrDecoderClosed { - return d.current.err - } - - d.drainOutput() - - d.syncStream.br.r = nil - if r == nil { - d.current.err = ErrDecoderNilInput - if len(d.current.b) > 0 { - d.current.b = d.current.b[:0] - } - d.current.flushed = true - return nil - } - - // If bytes buffer and < 5MB, do sync decoding anyway. - if bb, ok := r.(byter); ok && bb.Len() < d.o.decodeBufsBelow && !d.o.limitToCap { - bb2 := bb - if debugDecoder { - println("*bytes.Buffer detected, doing sync decode, len:", bb.Len()) - } - b := bb2.Bytes() - var dst []byte - if cap(d.syncStream.dstBuf) > 0 { - dst = d.syncStream.dstBuf[:0] - } - - dst, err := d.DecodeAll(b, dst) - if err == nil { - err = io.EOF - } - // Save output buffer - d.syncStream.dstBuf = dst - d.current.b = dst - d.current.err = err - d.current.flushed = true - if debugDecoder { - println("sync decode to", len(dst), "bytes, err:", err) - } - return nil - } - // Remove current block. - d.stashDecoder() - d.current.decodeOutput = decodeOutput{} - d.current.err = nil - d.current.flushed = false - d.current.d = nil - d.syncStream.dstBuf = nil - - // Ensure no-one else is still running... - d.streamWg.Wait() - if d.frame == nil { - d.frame = newFrameDec(d.o) - } - - if d.o.concurrent == 1 { - return d.startSyncDecoder(r) - } - - d.current.output = make(chan decodeOutput, d.o.concurrent) - ctx, cancel := context.WithCancel(context.Background()) - d.current.cancel = cancel - d.streamWg.Add(1) - go d.startStreamDecoder(ctx, r, d.current.output) - - return nil -} - -// drainOutput will drain the output until errEndOfStream is sent. -func (d *Decoder) drainOutput() { - if d.current.cancel != nil { - if debugDecoder { - println("cancelling current") - } - d.current.cancel() - d.current.cancel = nil - } - if d.current.d != nil { - if debugDecoder { - printf("re-adding current decoder %p, decoders: %d", d.current.d, len(d.decoders)) - } - d.decoders <- d.current.d - d.current.d = nil - d.current.b = nil - } - if d.current.output == nil || d.current.flushed { - println("current already flushed") - return - } - for v := range d.current.output { - if v.d != nil { - if debugDecoder { - printf("re-adding decoder %p", v.d) - } - d.decoders <- v.d - } - } - d.current.output = nil - d.current.flushed = true -} - -// WriteTo writes data to w until there's no more data to write or when an error occurs. -// The return value n is the number of bytes written. -// Any error encountered during the write is also returned. -func (d *Decoder) WriteTo(w io.Writer) (int64, error) { - var n int64 - for { - if len(d.current.b) > 0 { - n2, err2 := w.Write(d.current.b) - n += int64(n2) - if err2 != nil && (d.current.err == nil || d.current.err == io.EOF) { - d.current.err = err2 - } else if n2 != len(d.current.b) { - d.current.err = io.ErrShortWrite - } - } - if d.current.err != nil { - break - } - d.nextBlock(true) - } - err := d.current.err - if err != nil { - d.drainOutput() - } - if err == io.EOF { - err = nil - } - return n, err -} - -// DecodeAll allows stateless decoding of a blob of bytes. -// Output will be appended to dst, so if the destination size is known -// you can pre-allocate the destination slice to avoid allocations. -// DecodeAll can be used concurrently. -// The Decoder concurrency limits will be respected. -func (d *Decoder) DecodeAll(input, dst []byte) ([]byte, error) { - if d.decoders == nil { - return dst, ErrDecoderClosed - } - - // Grab a block decoder and frame decoder. - block := <-d.decoders - frame := block.localFrame - initialSize := len(dst) - defer func() { - if debugDecoder { - printf("re-adding decoder: %p", block) - } - frame.rawInput = nil - frame.bBuf = nil - if frame.history.decoders.br != nil { - frame.history.decoders.br.in = nil - } - d.decoders <- block - }() - frame.bBuf = input - - for { - frame.history.reset() - err := frame.reset(&frame.bBuf) - if err != nil { - if err == io.EOF { - if debugDecoder { - println("frame reset return EOF") - } - return dst, nil - } - return dst, err - } - if err = d.setDict(frame); err != nil { - return nil, err - } - if frame.WindowSize > d.o.maxWindowSize { - if debugDecoder { - println("window size exceeded:", frame.WindowSize, ">", d.o.maxWindowSize) - } - return dst, ErrWindowSizeExceeded - } - if frame.FrameContentSize != fcsUnknown { - if frame.FrameContentSize > d.o.maxDecodedSize-uint64(len(dst)-initialSize) { - if debugDecoder { - println("decoder size exceeded; fcs:", frame.FrameContentSize, "> mcs:", d.o.maxDecodedSize-uint64(len(dst)-initialSize), "len:", len(dst)) - } - return dst, ErrDecoderSizeExceeded - } - if d.o.limitToCap && frame.FrameContentSize > uint64(cap(dst)-len(dst)) { - if debugDecoder { - println("decoder size exceeded; fcs:", frame.FrameContentSize, "> (cap-len)", cap(dst)-len(dst)) - } - return dst, ErrDecoderSizeExceeded - } - if cap(dst)-len(dst) < int(frame.FrameContentSize) { - dst2 := make([]byte, len(dst), len(dst)+int(frame.FrameContentSize)+compressedBlockOverAlloc) - copy(dst2, dst) - dst = dst2 - } - } - - if cap(dst) == 0 && !d.o.limitToCap { - // Allocate len(input) * 2 by default if nothing is provided - // and we didn't get frame content size. - size := len(input) * 2 - // Cap to 1 MB. - if size > 1<<20 { - size = 1 << 20 - } - if uint64(size) > d.o.maxDecodedSize { - size = int(d.o.maxDecodedSize) - } - dst = make([]byte, 0, size) - } - - dst, err = frame.runDecoder(dst, block) - if err != nil { - return dst, err - } - if uint64(len(dst)-initialSize) > d.o.maxDecodedSize { - return dst, ErrDecoderSizeExceeded - } - if len(frame.bBuf) == 0 { - if debugDecoder { - println("frame dbuf empty") - } - break - } - } - return dst, nil -} - -// nextBlock returns the next block. -// If an error occurs d.err will be set. -// Optionally the function can block for new output. -// If non-blocking mode is used the returned boolean will be false -// if no data was available without blocking. -func (d *Decoder) nextBlock(blocking bool) (ok bool) { - if d.current.err != nil { - // Keep error state. - return false - } - d.current.b = d.current.b[:0] - - // SYNC: - if d.syncStream.enabled { - if !blocking { - return false - } - ok = d.nextBlockSync() - if !ok { - d.stashDecoder() - } - return ok - } - - //ASYNC: - d.stashDecoder() - if blocking { - d.current.decodeOutput, ok = <-d.current.output - } else { - select { - case d.current.decodeOutput, ok = <-d.current.output: - default: - return false - } - } - if !ok { - // This should not happen, so signal error state... - d.current.err = io.ErrUnexpectedEOF - return false - } - next := d.current.decodeOutput - if next.d != nil && next.d.async.newHist != nil { - d.current.crc.Reset() - } - if debugDecoder { - var tmp [4]byte - binary.LittleEndian.PutUint32(tmp[:], uint32(xxhash.Sum64(next.b))) - println("got", len(d.current.b), "bytes, error:", d.current.err, "data crc:", tmp) - } - - if d.o.ignoreChecksum { - return true - } - - if len(next.b) > 0 { - d.current.crc.Write(next.b) - } - if next.err == nil && next.d != nil && next.d.hasCRC { - got := uint32(d.current.crc.Sum64()) - if got != next.d.checkCRC { - if debugDecoder { - printf("CRC Check Failed: %08x (got) != %08x (on stream)\n", got, next.d.checkCRC) - } - d.current.err = ErrCRCMismatch - } else { - if debugDecoder { - printf("CRC ok %08x\n", got) - } - } - } - - return true -} - -func (d *Decoder) nextBlockSync() (ok bool) { - if d.current.d == nil { - d.current.d = <-d.decoders - } - for len(d.current.b) == 0 { - if !d.syncStream.inFrame { - d.frame.history.reset() - d.current.err = d.frame.reset(&d.syncStream.br) - if d.current.err == nil { - d.current.err = d.setDict(d.frame) - } - if d.current.err != nil { - return false - } - if d.frame.WindowSize > d.o.maxDecodedSize || d.frame.WindowSize > d.o.maxWindowSize { - d.current.err = ErrDecoderSizeExceeded - return false - } - - d.syncStream.decodedFrame = 0 - d.syncStream.inFrame = true - } - d.current.err = d.frame.next(d.current.d) - if d.current.err != nil { - return false - } - d.frame.history.ensureBlock() - if debugDecoder { - println("History trimmed:", len(d.frame.history.b), "decoded already:", d.syncStream.decodedFrame) - } - histBefore := len(d.frame.history.b) - d.current.err = d.current.d.decodeBuf(&d.frame.history) - - if d.current.err != nil { - println("error after:", d.current.err) - return false - } - d.current.b = d.frame.history.b[histBefore:] - if debugDecoder { - println("history after:", len(d.frame.history.b)) - } - - // Check frame size (before CRC) - d.syncStream.decodedFrame += uint64(len(d.current.b)) - if d.syncStream.decodedFrame > d.frame.FrameContentSize { - if debugDecoder { - printf("DecodedFrame (%d) > FrameContentSize (%d)\n", d.syncStream.decodedFrame, d.frame.FrameContentSize) - } - d.current.err = ErrFrameSizeExceeded - return false - } - - // Check FCS - if d.current.d.Last && d.frame.FrameContentSize != fcsUnknown && d.syncStream.decodedFrame != d.frame.FrameContentSize { - if debugDecoder { - printf("DecodedFrame (%d) != FrameContentSize (%d)\n", d.syncStream.decodedFrame, d.frame.FrameContentSize) - } - d.current.err = ErrFrameSizeMismatch - return false - } - - // Update/Check CRC - if d.frame.HasCheckSum { - if !d.o.ignoreChecksum { - d.frame.crc.Write(d.current.b) - } - if d.current.d.Last { - if !d.o.ignoreChecksum { - d.current.err = d.frame.checkCRC() - } else { - d.current.err = d.frame.consumeCRC() - } - if d.current.err != nil { - println("CRC error:", d.current.err) - return false - } - } - } - d.syncStream.inFrame = !d.current.d.Last - } - return true -} - -func (d *Decoder) stashDecoder() { - if d.current.d != nil { - if debugDecoder { - printf("re-adding current decoder %p", d.current.d) - } - d.decoders <- d.current.d - d.current.d = nil - } -} - -// Close will release all resources. -// It is NOT possible to reuse the decoder after this. -func (d *Decoder) Close() { - if d.current.err == ErrDecoderClosed { - return - } - d.drainOutput() - if d.current.cancel != nil { - d.current.cancel() - d.streamWg.Wait() - d.current.cancel = nil - } - if d.decoders != nil { - close(d.decoders) - for dec := range d.decoders { - dec.Close() - } - d.decoders = nil - } - if d.current.d != nil { - d.current.d.Close() - d.current.d = nil - } - d.current.err = ErrDecoderClosed -} - -// IOReadCloser returns the decoder as an io.ReadCloser for convenience. -// Any changes to the decoder will be reflected, so the returned ReadCloser -// can be reused along with the decoder. -// io.WriterTo is also supported by the returned ReadCloser. -func (d *Decoder) IOReadCloser() io.ReadCloser { - return closeWrapper{d: d} -} - -// closeWrapper wraps a function call as a closer. -type closeWrapper struct { - d *Decoder -} - -// WriteTo forwards WriteTo calls to the decoder. -func (c closeWrapper) WriteTo(w io.Writer) (n int64, err error) { - return c.d.WriteTo(w) -} - -// Read forwards read calls to the decoder. -func (c closeWrapper) Read(p []byte) (n int, err error) { - return c.d.Read(p) -} - -// Close closes the decoder. -func (c closeWrapper) Close() error { - c.d.Close() - return nil -} - -type decodeOutput struct { - d *blockDec - b []byte - err error -} - -func (d *Decoder) startSyncDecoder(r io.Reader) error { - d.frame.history.reset() - d.syncStream.br = readerWrapper{r: r} - d.syncStream.inFrame = false - d.syncStream.enabled = true - d.syncStream.decodedFrame = 0 - return nil -} - -// Create Decoder: -// ASYNC: -// Spawn 3 go routines. -// 0: Read frames and decode block literals. -// 1: Decode sequences. -// 2: Execute sequences, send to output. -func (d *Decoder) startStreamDecoder(ctx context.Context, r io.Reader, output chan decodeOutput) { - defer d.streamWg.Done() - br := readerWrapper{r: r} - - var seqDecode = make(chan *blockDec, d.o.concurrent) - var seqExecute = make(chan *blockDec, d.o.concurrent) - - // Async 1: Decode sequences... - go func() { - var hist history - var hasErr bool - - for block := range seqDecode { - if hasErr { - if block != nil { - seqExecute <- block - } - continue - } - if block.async.newHist != nil { - if debugDecoder { - println("Async 1: new history, recent:", block.async.newHist.recentOffsets) - } - hist.reset() - hist.decoders = block.async.newHist.decoders - hist.recentOffsets = block.async.newHist.recentOffsets - hist.windowSize = block.async.newHist.windowSize - if block.async.newHist.dict != nil { - hist.setDict(block.async.newHist.dict) - } - } - if block.err != nil || block.Type != blockTypeCompressed { - hasErr = block.err != nil - seqExecute <- block - continue - } - - hist.decoders.literals = block.async.literals - block.err = block.prepareSequences(block.async.seqData, &hist) - if debugDecoder && block.err != nil { - println("prepareSequences returned:", block.err) - } - hasErr = block.err != nil - if block.err == nil { - block.err = block.decodeSequences(&hist) - if debugDecoder && block.err != nil { - println("decodeSequences returned:", block.err) - } - hasErr = block.err != nil - // block.async.sequence = hist.decoders.seq[:hist.decoders.nSeqs] - block.async.seqSize = hist.decoders.seqSize - } - seqExecute <- block - } - close(seqExecute) - hist.reset() - }() - - var wg sync.WaitGroup - wg.Add(1) - - // Async 3: Execute sequences... - frameHistCache := d.frame.history.b - go func() { - var hist history - var decodedFrame uint64 - var fcs uint64 - var hasErr bool - for block := range seqExecute { - out := decodeOutput{err: block.err, d: block} - if block.err != nil || hasErr { - hasErr = true - output <- out - continue - } - if block.async.newHist != nil { - if debugDecoder { - println("Async 2: new history") - } - hist.reset() - hist.windowSize = block.async.newHist.windowSize - hist.allocFrameBuffer = block.async.newHist.allocFrameBuffer - if block.async.newHist.dict != nil { - hist.setDict(block.async.newHist.dict) - } - - if cap(hist.b) < hist.allocFrameBuffer { - if cap(frameHistCache) >= hist.allocFrameBuffer { - hist.b = frameHistCache - } else { - hist.b = make([]byte, 0, hist.allocFrameBuffer) - println("Alloc history sized", hist.allocFrameBuffer) - } - } - hist.b = hist.b[:0] - fcs = block.async.fcs - decodedFrame = 0 - } - do := decodeOutput{err: block.err, d: block} - switch block.Type { - case blockTypeRLE: - if debugDecoder { - println("add rle block length:", block.RLESize) - } - - if cap(block.dst) < int(block.RLESize) { - if block.lowMem { - block.dst = make([]byte, block.RLESize) - } else { - block.dst = make([]byte, maxCompressedBlockSize) - } - } - block.dst = block.dst[:block.RLESize] - v := block.data[0] - for i := range block.dst { - block.dst[i] = v - } - hist.append(block.dst) - do.b = block.dst - case blockTypeRaw: - if debugDecoder { - println("add raw block length:", len(block.data)) - } - hist.append(block.data) - do.b = block.data - case blockTypeCompressed: - if debugDecoder { - println("execute with history length:", len(hist.b), "window:", hist.windowSize) - } - hist.decoders.seqSize = block.async.seqSize - hist.decoders.literals = block.async.literals - do.err = block.executeSequences(&hist) - hasErr = do.err != nil - if debugDecoder && hasErr { - println("executeSequences returned:", do.err) - } - do.b = block.dst - } - if !hasErr { - decodedFrame += uint64(len(do.b)) - if decodedFrame > fcs { - println("fcs exceeded", block.Last, fcs, decodedFrame) - do.err = ErrFrameSizeExceeded - hasErr = true - } else if block.Last && fcs != fcsUnknown && decodedFrame != fcs { - do.err = ErrFrameSizeMismatch - hasErr = true - } else { - if debugDecoder { - println("fcs ok", block.Last, fcs, decodedFrame) - } - } - } - output <- do - } - close(output) - frameHistCache = hist.b - wg.Done() - if debugDecoder { - println("decoder goroutines finished") - } - hist.reset() - }() - - var hist history -decodeStream: - for { - var hasErr bool - hist.reset() - decodeBlock := func(block *blockDec) { - if hasErr { - if block != nil { - seqDecode <- block - } - return - } - if block.err != nil || block.Type != blockTypeCompressed { - hasErr = block.err != nil - seqDecode <- block - return - } - - remain, err := block.decodeLiterals(block.data, &hist) - block.err = err - hasErr = block.err != nil - if err == nil { - block.async.literals = hist.decoders.literals - block.async.seqData = remain - } else if debugDecoder { - println("decodeLiterals error:", err) - } - seqDecode <- block - } - frame := d.frame - if debugDecoder { - println("New frame...") - } - var historySent bool - frame.history.reset() - err := frame.reset(&br) - if debugDecoder && err != nil { - println("Frame decoder returned", err) - } - if err == nil { - err = d.setDict(frame) - } - if err == nil && d.frame.WindowSize > d.o.maxWindowSize { - if debugDecoder { - println("decoder size exceeded, fws:", d.frame.WindowSize, "> mws:", d.o.maxWindowSize) - } - - err = ErrDecoderSizeExceeded - } - if err != nil { - select { - case <-ctx.Done(): - case dec := <-d.decoders: - dec.sendErr(err) - decodeBlock(dec) - } - break decodeStream - } - - // Go through all blocks of the frame. - for { - var dec *blockDec - select { - case <-ctx.Done(): - break decodeStream - case dec = <-d.decoders: - // Once we have a decoder, we MUST return it. - } - err := frame.next(dec) - if !historySent { - h := frame.history - if debugDecoder { - println("Alloc History:", h.allocFrameBuffer) - } - hist.reset() - if h.dict != nil { - hist.setDict(h.dict) - } - dec.async.newHist = &h - dec.async.fcs = frame.FrameContentSize - historySent = true - } else { - dec.async.newHist = nil - } - if debugDecoder && err != nil { - println("next block returned error:", err) - } - dec.err = err - dec.hasCRC = false - if dec.Last && frame.HasCheckSum && err == nil { - crc, err := frame.rawInput.readSmall(4) - if len(crc) < 4 { - if err == nil { - err = io.ErrUnexpectedEOF - - } - println("CRC missing?", err) - dec.err = err - } else { - dec.checkCRC = binary.LittleEndian.Uint32(crc) - dec.hasCRC = true - if debugDecoder { - printf("found crc to check: %08x\n", dec.checkCRC) - } - } - } - err = dec.err - last := dec.Last - decodeBlock(dec) - if err != nil { - break decodeStream - } - if last { - break - } - } - } - close(seqDecode) - wg.Wait() - hist.reset() - d.frame.history.b = frameHistCache -} - -func (d *Decoder) setDict(frame *frameDec) (err error) { - dict, ok := d.dicts[frame.DictionaryID] - if ok { - if debugDecoder { - println("setting dict", frame.DictionaryID) - } - frame.history.setDict(dict) - } else if frame.DictionaryID != 0 { - // A zero or missing dictionary id is ambiguous: - // either dictionary zero, or no dictionary. In particular, - // zstd --patch-from uses this id for the source file, - // so only return an error if the dictionary id is not zero. - err = ErrUnknownDictionary - } - return err -} diff --git a/vendor/github.com/klauspost/compress/zstd/decoder_options.go b/vendor/github.com/klauspost/compress/zstd/decoder_options.go deleted file mode 100644 index 774c5f00fe..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/decoder_options.go +++ /dev/null @@ -1,169 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "errors" - "fmt" - "math/bits" - "runtime" -) - -// DOption is an option for creating a decoder. -type DOption func(*decoderOptions) error - -// options retains accumulated state of multiple options. -type decoderOptions struct { - lowMem bool - concurrent int - maxDecodedSize uint64 - maxWindowSize uint64 - dicts []*dict - ignoreChecksum bool - limitToCap bool - decodeBufsBelow int -} - -func (o *decoderOptions) setDefault() { - *o = decoderOptions{ - // use less ram: true for now, but may change. - lowMem: true, - concurrent: runtime.GOMAXPROCS(0), - maxWindowSize: MaxWindowSize, - decodeBufsBelow: 128 << 10, - } - if o.concurrent > 4 { - o.concurrent = 4 - } - o.maxDecodedSize = 64 << 30 -} - -// WithDecoderLowmem will set whether to use a lower amount of memory, -// but possibly have to allocate more while running. -func WithDecoderLowmem(b bool) DOption { - return func(o *decoderOptions) error { o.lowMem = b; return nil } -} - -// WithDecoderConcurrency sets the number of created decoders. -// When decoding block with DecodeAll, this will limit the number -// of possible concurrently running decodes. -// When decoding streams, this will limit the number of -// inflight blocks. -// When decoding streams and setting maximum to 1, -// no async decoding will be done. -// When a value of 0 is provided GOMAXPROCS will be used. -// By default this will be set to 4 or GOMAXPROCS, whatever is lower. -func WithDecoderConcurrency(n int) DOption { - return func(o *decoderOptions) error { - if n < 0 { - return errors.New("concurrency must be at least 1") - } - if n == 0 { - o.concurrent = runtime.GOMAXPROCS(0) - } else { - o.concurrent = n - } - return nil - } -} - -// WithDecoderMaxMemory allows to set a maximum decoded size for in-memory -// non-streaming operations or maximum window size for streaming operations. -// This can be used to control memory usage of potentially hostile content. -// Maximum is 1 << 63 bytes. Default is 64GiB. -func WithDecoderMaxMemory(n uint64) DOption { - return func(o *decoderOptions) error { - if n == 0 { - return errors.New("WithDecoderMaxMemory must be at least 1") - } - if n > 1<<63 { - return errors.New("WithDecoderMaxmemory must be less than 1 << 63") - } - o.maxDecodedSize = n - return nil - } -} - -// WithDecoderDicts allows to register one or more dictionaries for the decoder. -// -// Each slice in dict must be in the [dictionary format] produced by -// "zstd --train" from the Zstandard reference implementation. -// -// If several dictionaries with the same ID are provided, the last one will be used. -// -// [dictionary format]: https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary-format -func WithDecoderDicts(dicts ...[]byte) DOption { - return func(o *decoderOptions) error { - for _, b := range dicts { - d, err := loadDict(b) - if err != nil { - return err - } - o.dicts = append(o.dicts, d) - } - return nil - } -} - -// WithDecoderDictRaw registers a dictionary that may be used by the decoder. -// The slice content can be arbitrary data. -func WithDecoderDictRaw(id uint32, content []byte) DOption { - return func(o *decoderOptions) error { - if bits.UintSize > 32 && uint(len(content)) > dictMaxLength { - return fmt.Errorf("dictionary of size %d > 2GiB too large", len(content)) - } - o.dicts = append(o.dicts, &dict{id: id, content: content, offsets: [3]int{1, 4, 8}}) - return nil - } -} - -// WithDecoderMaxWindow allows to set a maximum window size for decodes. -// This allows rejecting packets that will cause big memory usage. -// The Decoder will likely allocate more memory based on the WithDecoderLowmem setting. -// If WithDecoderMaxMemory is set to a lower value, that will be used. -// Default is 512MB, Maximum is ~3.75 TB as per zstandard spec. -func WithDecoderMaxWindow(size uint64) DOption { - return func(o *decoderOptions) error { - if size < MinWindowSize { - return errors.New("WithMaxWindowSize must be at least 1KB, 1024 bytes") - } - if size > (1<<41)+7*(1<<38) { - return errors.New("WithMaxWindowSize must be less than (1<<41) + 7*(1<<38) ~ 3.75TB") - } - o.maxWindowSize = size - return nil - } -} - -// WithDecodeAllCapLimit will limit DecodeAll to decoding cap(dst)-len(dst) bytes, -// or any size set in WithDecoderMaxMemory. -// This can be used to limit decoding to a specific maximum output size. -// Disabled by default. -func WithDecodeAllCapLimit(b bool) DOption { - return func(o *decoderOptions) error { - o.limitToCap = b - return nil - } -} - -// WithDecodeBuffersBelow will fully decode readers that have a -// `Bytes() []byte` and `Len() int` interface similar to bytes.Buffer. -// This typically uses less allocations but will have the full decompressed object in memory. -// Note that DecodeAllCapLimit will disable this, as well as giving a size of 0 or less. -// Default is 128KiB. -func WithDecodeBuffersBelow(size int) DOption { - return func(o *decoderOptions) error { - o.decodeBufsBelow = size - return nil - } -} - -// IgnoreChecksum allows to forcibly ignore checksum checking. -func IgnoreChecksum(b bool) DOption { - return func(o *decoderOptions) error { - o.ignoreChecksum = b - return nil - } -} diff --git a/vendor/github.com/klauspost/compress/zstd/dict.go b/vendor/github.com/klauspost/compress/zstd/dict.go deleted file mode 100644 index b7b83164bc..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/dict.go +++ /dev/null @@ -1,565 +0,0 @@ -package zstd - -import ( - "bytes" - "encoding/binary" - "errors" - "fmt" - "io" - "math" - "sort" - - "github.com/klauspost/compress/huff0" -) - -type dict struct { - id uint32 - - litEnc *huff0.Scratch - llDec, ofDec, mlDec sequenceDec - offsets [3]int - content []byte -} - -const dictMagic = "\x37\xa4\x30\xec" - -// Maximum dictionary size for the reference implementation (1.5.3) is 2 GiB. -const dictMaxLength = 1 << 31 - -// ID returns the dictionary id or 0 if d is nil. -func (d *dict) ID() uint32 { - if d == nil { - return 0 - } - return d.id -} - -// ContentSize returns the dictionary content size or 0 if d is nil. -func (d *dict) ContentSize() int { - if d == nil { - return 0 - } - return len(d.content) -} - -// Content returns the dictionary content. -func (d *dict) Content() []byte { - if d == nil { - return nil - } - return d.content -} - -// Offsets returns the initial offsets. -func (d *dict) Offsets() [3]int { - if d == nil { - return [3]int{} - } - return d.offsets -} - -// LitEncoder returns the literal encoder. -func (d *dict) LitEncoder() *huff0.Scratch { - if d == nil { - return nil - } - return d.litEnc -} - -// Load a dictionary as described in -// https://github.com/facebook/zstd/blob/master/doc/zstd_compression_format.md#dictionary-format -func loadDict(b []byte) (*dict, error) { - // Check static field size. - if len(b) <= 8+(3*4) { - return nil, io.ErrUnexpectedEOF - } - d := dict{ - llDec: sequenceDec{fse: &fseDecoder{}}, - ofDec: sequenceDec{fse: &fseDecoder{}}, - mlDec: sequenceDec{fse: &fseDecoder{}}, - } - if string(b[:4]) != dictMagic { - return nil, ErrMagicMismatch - } - d.id = binary.LittleEndian.Uint32(b[4:8]) - if d.id == 0 { - return nil, errors.New("dictionaries cannot have ID 0") - } - - // Read literal table - var err error - d.litEnc, b, err = huff0.ReadTable(b[8:], nil) - if err != nil { - return nil, fmt.Errorf("loading literal table: %w", err) - } - d.litEnc.Reuse = huff0.ReusePolicyMust - - br := byteReader{ - b: b, - off: 0, - } - readDec := func(i tableIndex, dec *fseDecoder) error { - if err := dec.readNCount(&br, uint16(maxTableSymbol[i])); err != nil { - return err - } - if br.overread() { - return io.ErrUnexpectedEOF - } - err = dec.transform(symbolTableX[i]) - if err != nil { - println("Transform table error:", err) - return err - } - if debugDecoder || debugEncoder { - println("Read table ok", "symbolLen:", dec.symbolLen) - } - // Set decoders as predefined so they aren't reused. - dec.preDefined = true - return nil - } - - if err := readDec(tableOffsets, d.ofDec.fse); err != nil { - return nil, err - } - if err := readDec(tableMatchLengths, d.mlDec.fse); err != nil { - return nil, err - } - if err := readDec(tableLiteralLengths, d.llDec.fse); err != nil { - return nil, err - } - if br.remain() < 12 { - return nil, io.ErrUnexpectedEOF - } - - d.offsets[0] = int(br.Uint32()) - br.advance(4) - d.offsets[1] = int(br.Uint32()) - br.advance(4) - d.offsets[2] = int(br.Uint32()) - br.advance(4) - if d.offsets[0] <= 0 || d.offsets[1] <= 0 || d.offsets[2] <= 0 { - return nil, errors.New("invalid offset in dictionary") - } - d.content = make([]byte, br.remain()) - copy(d.content, br.unread()) - if d.offsets[0] > len(d.content) || d.offsets[1] > len(d.content) || d.offsets[2] > len(d.content) { - return nil, fmt.Errorf("initial offset bigger than dictionary content size %d, offsets: %v", len(d.content), d.offsets) - } - - return &d, nil -} - -// InspectDictionary loads a zstd dictionary and provides functions to inspect the content. -func InspectDictionary(b []byte) (interface { - ID() uint32 - ContentSize() int - Content() []byte - Offsets() [3]int - LitEncoder() *huff0.Scratch -}, error) { - initPredefined() - d, err := loadDict(b) - return d, err -} - -type BuildDictOptions struct { - // Dictionary ID. - ID uint32 - - // Content to use to create dictionary tables. - Contents [][]byte - - // History to use for all blocks. - History []byte - - // Offsets to use. - Offsets [3]int - - // CompatV155 will make the dictionary compatible with Zstd v1.5.5 and earlier. - // See https://github.com/facebook/zstd/issues/3724 - CompatV155 bool - - // Use the specified encoder level. - // The dictionary will be built using the specified encoder level, - // which will reflect speed and make the dictionary tailored for that level. - // If not set SpeedBestCompression will be used. - Level EncoderLevel - - // DebugOut will write stats and other details here if set. - DebugOut io.Writer -} - -func BuildDict(o BuildDictOptions) ([]byte, error) { - initPredefined() - hist := o.History - contents := o.Contents - debug := o.DebugOut != nil - println := func(args ...interface{}) { - if o.DebugOut != nil { - fmt.Fprintln(o.DebugOut, args...) - } - } - printf := func(s string, args ...interface{}) { - if o.DebugOut != nil { - fmt.Fprintf(o.DebugOut, s, args...) - } - } - print := func(args ...interface{}) { - if o.DebugOut != nil { - fmt.Fprint(o.DebugOut, args...) - } - } - - if int64(len(hist)) > dictMaxLength { - return nil, fmt.Errorf("dictionary of size %d > %d", len(hist), int64(dictMaxLength)) - } - if len(hist) < 8 { - return nil, fmt.Errorf("dictionary of size %d < %d", len(hist), 8) - } - if len(contents) == 0 { - return nil, errors.New("no content provided") - } - d := dict{ - id: o.ID, - litEnc: nil, - llDec: sequenceDec{}, - ofDec: sequenceDec{}, - mlDec: sequenceDec{}, - offsets: o.Offsets, - content: hist, - } - block := blockEnc{lowMem: false} - block.init() - enc := encoder(&bestFastEncoder{fastBase: fastBase{maxMatchOff: int32(maxMatchLen), bufferReset: math.MaxInt32 - int32(maxMatchLen*2), lowMem: false}}) - if o.Level != 0 { - eOpts := encoderOptions{ - level: o.Level, - blockSize: maxMatchLen, - windowSize: maxMatchLen, - dict: &d, - lowMem: false, - } - enc = eOpts.encoder() - } else { - o.Level = SpeedBestCompression - } - var ( - remain [256]int - ll [256]int - ml [256]int - of [256]int - ) - addValues := func(dst *[256]int, src []byte) { - for _, v := range src { - dst[v]++ - } - } - addHist := func(dst *[256]int, src *[256]uint32) { - for i, v := range src { - dst[i] += int(v) - } - } - seqs := 0 - nUsed := 0 - litTotal := 0 - newOffsets := make(map[uint32]int, 1000) - for _, b := range contents { - block.reset(nil) - if len(b) < 8 { - continue - } - nUsed++ - enc.Reset(&d, true) - enc.Encode(&block, b) - addValues(&remain, block.literals) - litTotal += len(block.literals) - if len(block.sequences) == 0 { - continue - } - seqs += len(block.sequences) - block.genCodes() - addHist(&ll, block.coders.llEnc.Histogram()) - addHist(&ml, block.coders.mlEnc.Histogram()) - addHist(&of, block.coders.ofEnc.Histogram()) - for i, seq := range block.sequences { - if i > 3 { - break - } - offset := seq.offset - if offset == 0 { - continue - } - if int(offset) >= len(o.History) { - continue - } - if offset > 3 { - newOffsets[offset-3]++ - } else { - newOffsets[uint32(o.Offsets[offset-1])]++ - } - } - } - // Find most used offsets. - var sortedOffsets []uint32 - for k := range newOffsets { - sortedOffsets = append(sortedOffsets, k) - } - sort.Slice(sortedOffsets, func(i, j int) bool { - a, b := sortedOffsets[i], sortedOffsets[j] - if a == b { - // Prefer the longer offset - return sortedOffsets[i] > sortedOffsets[j] - } - return newOffsets[sortedOffsets[i]] > newOffsets[sortedOffsets[j]] - }) - if len(sortedOffsets) > 3 { - if debug { - print("Offsets:") - for i, v := range sortedOffsets { - if i > 20 { - break - } - printf("[%d: %d],", v, newOffsets[v]) - } - println("") - } - - sortedOffsets = sortedOffsets[:3] - } - for i, v := range sortedOffsets { - o.Offsets[i] = int(v) - } - if debug { - println("New repeat offsets", o.Offsets) - } - - if nUsed == 0 || seqs == 0 { - return nil, fmt.Errorf("%d blocks, %d sequences found", nUsed, seqs) - } - if debug { - println("Sequences:", seqs, "Blocks:", nUsed, "Literals:", litTotal) - } - if seqs/nUsed < 512 { - // Use 512 as minimum. - nUsed = seqs / 512 - if nUsed == 0 { - nUsed = 1 - } - } - copyHist := func(dst *fseEncoder, src *[256]int) ([]byte, error) { - hist := dst.Histogram() - var maxSym uint8 - var maxCount int - var fakeLength int - for i, v := range src { - if v > 0 { - v = v / nUsed - if v == 0 { - v = 1 - } - } - if v > maxCount { - maxCount = v - } - if v != 0 { - maxSym = uint8(i) - } - fakeLength += v - hist[i] = uint32(v) - } - - // Ensure we aren't trying to represent RLE. - if maxCount == fakeLength { - for i := range hist { - if uint8(i) == maxSym { - fakeLength++ - maxSym++ - hist[i+1] = 1 - if maxSym > 1 { - break - } - } - if hist[0] == 0 { - fakeLength++ - hist[i] = 1 - if maxSym > 1 { - break - } - } - } - } - - dst.HistogramFinished(maxSym, maxCount) - dst.reUsed = false - dst.useRLE = false - err := dst.normalizeCount(fakeLength) - if err != nil { - return nil, err - } - if debug { - println("RAW:", dst.count[:maxSym+1], "NORM:", dst.norm[:maxSym+1], "LEN:", fakeLength) - } - return dst.writeCount(nil) - } - if debug { - print("Literal lengths: ") - } - llTable, err := copyHist(block.coders.llEnc, &ll) - if err != nil { - return nil, err - } - if debug { - print("Match lengths: ") - } - mlTable, err := copyHist(block.coders.mlEnc, &ml) - if err != nil { - return nil, err - } - if debug { - print("Offsets: ") - } - ofTable, err := copyHist(block.coders.ofEnc, &of) - if err != nil { - return nil, err - } - - // Literal table - avgSize := litTotal - if avgSize > huff0.BlockSizeMax/2 { - avgSize = huff0.BlockSizeMax / 2 - } - huffBuff := make([]byte, 0, avgSize) - // Target size - div := litTotal / avgSize - if div < 1 { - div = 1 - } - if debug { - println("Huffman weights:") - } - for i, n := range remain[:] { - if n > 0 { - n = n / div - // Allow all entries to be represented. - if n == 0 { - n = 1 - } - huffBuff = append(huffBuff, bytes.Repeat([]byte{byte(i)}, n)...) - if debug { - printf("[%d: %d], ", i, n) - } - } - } - if o.CompatV155 && remain[255]/div == 0 { - huffBuff = append(huffBuff, 255) - } - scratch := &huff0.Scratch{TableLog: 11} - for tries := 0; tries < 255; tries++ { - scratch = &huff0.Scratch{TableLog: 11} - _, _, err = huff0.Compress1X(huffBuff, scratch) - if err == nil { - break - } - if debug { - printf("Try %d: Huffman error: %v\n", tries+1, err) - } - huffBuff = huffBuff[:0] - if tries == 250 { - if debug { - println("Huffman: Bailing out with predefined table") - } - - // Bail out.... Just generate something - huffBuff = append(huffBuff, bytes.Repeat([]byte{255}, 10000)...) - for i := 0; i < 128; i++ { - huffBuff = append(huffBuff, byte(i)) - } - continue - } - if errors.Is(err, huff0.ErrIncompressible) { - // Try truncating least common. - for i, n := range remain[:] { - if n > 0 { - n = n / (div * (i + 1)) - if n > 0 { - huffBuff = append(huffBuff, bytes.Repeat([]byte{byte(i)}, n)...) - } - } - } - if o.CompatV155 && len(huffBuff) > 0 && huffBuff[len(huffBuff)-1] != 255 { - huffBuff = append(huffBuff, 255) - } - if len(huffBuff) == 0 { - huffBuff = append(huffBuff, 0, 255) - } - } - if errors.Is(err, huff0.ErrUseRLE) { - for i, n := range remain[:] { - n = n / (div * (i + 1)) - // Allow all entries to be represented. - if n == 0 { - n = 1 - } - huffBuff = append(huffBuff, bytes.Repeat([]byte{byte(i)}, n)...) - } - } - } - - var out bytes.Buffer - out.Write([]byte(dictMagic)) - out.Write(binary.LittleEndian.AppendUint32(nil, o.ID)) - out.Write(scratch.OutTable) - if debug { - println("huff table:", len(scratch.OutTable), "bytes") - println("of table:", len(ofTable), "bytes") - println("ml table:", len(mlTable), "bytes") - println("ll table:", len(llTable), "bytes") - } - out.Write(ofTable) - out.Write(mlTable) - out.Write(llTable) - out.Write(binary.LittleEndian.AppendUint32(nil, uint32(o.Offsets[0]))) - out.Write(binary.LittleEndian.AppendUint32(nil, uint32(o.Offsets[1]))) - out.Write(binary.LittleEndian.AppendUint32(nil, uint32(o.Offsets[2]))) - out.Write(hist) - if debug { - _, err := loadDict(out.Bytes()) - if err != nil { - panic(err) - } - i, err := InspectDictionary(out.Bytes()) - if err != nil { - panic(err) - } - println("ID:", i.ID()) - println("Content size:", i.ContentSize()) - println("Encoder:", i.LitEncoder() != nil) - println("Offsets:", i.Offsets()) - var totalSize int - for _, b := range contents { - totalSize += len(b) - } - - encWith := func(opts ...EOption) int { - enc, err := NewWriter(nil, opts...) - if err != nil { - panic(err) - } - defer enc.Close() - var dst []byte - var totalSize int - for _, b := range contents { - dst = enc.EncodeAll(b, dst[:0]) - totalSize += len(dst) - } - return totalSize - } - plain := encWith(WithEncoderLevel(o.Level)) - withDict := encWith(WithEncoderLevel(o.Level), WithEncoderDict(out.Bytes())) - println("Input size:", totalSize) - println("Plain Compressed:", plain) - println("Dict Compressed:", withDict) - println("Saved:", plain-withDict, (plain-withDict)/len(contents), "bytes per input (rounded down)") - } - return out.Bytes(), nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/enc_base.go b/vendor/github.com/klauspost/compress/zstd/enc_base.go deleted file mode 100644 index 5ca46038ad..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/enc_base.go +++ /dev/null @@ -1,173 +0,0 @@ -package zstd - -import ( - "fmt" - "math/bits" - - "github.com/klauspost/compress/zstd/internal/xxhash" -) - -const ( - dictShardBits = 6 -) - -type fastBase struct { - // cur is the offset at the start of hist - cur int32 - // maximum offset. Should be at least 2x block size. - maxMatchOff int32 - bufferReset int32 - hist []byte - crc *xxhash.Digest - tmp [8]byte - blk *blockEnc - lastDictID uint32 - lowMem bool -} - -// CRC returns the underlying CRC writer. -func (e *fastBase) CRC() *xxhash.Digest { - return e.crc -} - -// AppendCRC will append the CRC to the destination slice and return it. -func (e *fastBase) AppendCRC(dst []byte) []byte { - crc := e.crc.Sum(e.tmp[:0]) - dst = append(dst, crc[7], crc[6], crc[5], crc[4]) - return dst -} - -// WindowSize returns the window size of the encoder, -// or a window size small enough to contain the input size, if > 0. -func (e *fastBase) WindowSize(size int64) int32 { - if size > 0 && size < int64(e.maxMatchOff) { - b := int32(1) << uint(bits.Len(uint(size))) - // Keep minimum window. - if b < 1024 { - b = 1024 - } - return b - } - return e.maxMatchOff -} - -// Block returns the current block. -func (e *fastBase) Block() *blockEnc { - return e.blk -} - -func (e *fastBase) addBlock(src []byte) int32 { - if debugAsserts && e.cur > e.bufferReset { - panic(fmt.Sprintf("ecur (%d) > buffer reset (%d)", e.cur, e.bufferReset)) - } - // check if we have space already - if len(e.hist)+len(src) > cap(e.hist) { - if cap(e.hist) == 0 { - e.ensureHist(len(src)) - } else { - if cap(e.hist) < int(e.maxMatchOff+maxCompressedBlockSize) { - panic(fmt.Errorf("unexpected buffer cap %d, want at least %d with window %d", cap(e.hist), e.maxMatchOff+maxCompressedBlockSize, e.maxMatchOff)) - } - // Move down - offset := int32(len(e.hist)) - e.maxMatchOff - copy(e.hist[0:e.maxMatchOff], e.hist[offset:]) - e.cur += offset - e.hist = e.hist[:e.maxMatchOff] - } - } - s := int32(len(e.hist)) - e.hist = append(e.hist, src...) - return s -} - -// ensureHist will ensure that history can keep at least this many bytes. -func (e *fastBase) ensureHist(n int) { - if cap(e.hist) >= n { - return - } - l := e.maxMatchOff - if (e.lowMem && e.maxMatchOff > maxCompressedBlockSize) || e.maxMatchOff <= maxCompressedBlockSize { - l += maxCompressedBlockSize - } else { - l += e.maxMatchOff - } - // Make it at least 1MB. - if l < 1<<20 && !e.lowMem { - l = 1 << 20 - } - // Make it at least the requested size. - if l < int32(n) { - l = int32(n) - } - e.hist = make([]byte, 0, l) -} - -// useBlock will replace the block with the provided one, -// but transfer recent offsets from the previous. -func (e *fastBase) UseBlock(enc *blockEnc) { - enc.reset(e.blk) - e.blk = enc -} - -func (e *fastBase) matchlen(s, t int32, src []byte) int32 { - if debugAsserts { - if s < 0 { - err := fmt.Sprintf("s (%d) < 0", s) - panic(err) - } - if t < 0 { - err := fmt.Sprintf("s (%d) < 0", s) - panic(err) - } - if s-t > e.maxMatchOff { - err := fmt.Sprintf("s (%d) - t (%d) > maxMatchOff (%d)", s, t, e.maxMatchOff) - panic(err) - } - if len(src)-int(s) > maxCompressedBlockSize { - panic(fmt.Sprintf("len(src)-s (%d) > maxCompressedBlockSize (%d)", len(src)-int(s), maxCompressedBlockSize)) - } - } - return int32(matchLen(src[s:], src[t:])) -} - -// Reset the encoding table. -func (e *fastBase) resetBase(d *dict, singleBlock bool) { - if e.blk == nil { - e.blk = &blockEnc{lowMem: e.lowMem} - e.blk.init() - } else { - e.blk.reset(nil) - } - e.blk.initNewEncode() - if e.crc == nil { - e.crc = xxhash.New() - } else { - e.crc.Reset() - } - e.blk.dictLitEnc = nil - if d != nil { - low := e.lowMem - if singleBlock { - e.lowMem = true - } - e.ensureHist(d.ContentSize() + maxCompressedBlockSize) - e.lowMem = low - } - - // We offset current position so everything will be out of reach. - // If above reset line, history will be purged. - if e.cur < e.bufferReset { - e.cur += e.maxMatchOff + int32(len(e.hist)) - } - e.hist = e.hist[:0] - if d != nil { - // Set offsets (currently not used) - for i, off := range d.offsets { - e.blk.recentOffsets[i] = uint32(off) - e.blk.prevRecentOffsets[i] = e.blk.recentOffsets[i] - } - // Transfer litenc. - e.blk.dictLitEnc = d.litEnc - e.hist = append(e.hist, d.content...) - } -} diff --git a/vendor/github.com/klauspost/compress/zstd/enc_best.go b/vendor/github.com/klauspost/compress/zstd/enc_best.go deleted file mode 100644 index 4613724e9d..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/enc_best.go +++ /dev/null @@ -1,560 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "bytes" - "fmt" - - "github.com/klauspost/compress" -) - -const ( - bestLongTableBits = 22 // Bits used in the long match table - bestLongTableSize = 1 << bestLongTableBits // Size of the table - bestLongLen = 8 // Bytes used for table hash - - // Note: Increasing the short table bits or making the hash shorter - // can actually lead to compression degradation since it will 'steal' more from the - // long match table and match offsets are quite big. - // This greatly depends on the type of input. - bestShortTableBits = 18 // Bits used in the short match table - bestShortTableSize = 1 << bestShortTableBits // Size of the table - bestShortLen = 4 // Bytes used for table hash - -) - -type match struct { - offset int32 - s int32 - length int32 - rep int32 - est int32 -} - -const highScore = maxMatchLen * 8 - -// estBits will estimate output bits from predefined tables. -func (m *match) estBits(bitsPerByte int32) { - mlc := mlCode(uint32(m.length - zstdMinMatch)) - var ofc uint8 - if m.rep < 0 { - ofc = ofCode(uint32(m.s-m.offset) + 3) - } else { - ofc = ofCode(uint32(m.rep) & 3) - } - // Cost, excluding - ofTT, mlTT := fsePredefEnc[tableOffsets].ct.symbolTT[ofc], fsePredefEnc[tableMatchLengths].ct.symbolTT[mlc] - - // Add cost of match encoding... - m.est = int32(ofTT.outBits + mlTT.outBits) - m.est += int32(ofTT.deltaNbBits>>16 + mlTT.deltaNbBits>>16) - // Subtract savings compared to literal encoding... - m.est -= (m.length * bitsPerByte) >> 10 - if m.est > 0 { - // Unlikely gain.. - m.length = 0 - m.est = highScore - } -} - -// bestFastEncoder uses 2 tables, one for short matches (5 bytes) and one for long matches. -// The long match table contains the previous entry with the same hash, -// effectively making it a "chain" of length 2. -// When we find a long match we choose between the two values and select the longest. -// When we find a short match, after checking the long, we check if we can find a long at n+1 -// and that it is longer (lazy matching). -type bestFastEncoder struct { - fastBase - table [bestShortTableSize]prevEntry - longTable [bestLongTableSize]prevEntry - dictTable []prevEntry - dictLongTable []prevEntry -} - -// Encode improves compression... -func (e *bestFastEncoder) Encode(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 4 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - e.table = [bestShortTableSize]prevEntry{} - e.longTable = [bestLongTableSize]prevEntry{} - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - v2 := e.table[i].prev - if v < minOff { - v = 0 - v2 = 0 - } else { - v = v - e.cur + e.maxMatchOff - if v2 < minOff { - v2 = 0 - } else { - v2 = v2 - e.cur + e.maxMatchOff - } - } - e.table[i] = prevEntry{ - offset: v, - prev: v2, - } - } - for i := range e.longTable[:] { - v := e.longTable[i].offset - v2 := e.longTable[i].prev - if v < minOff { - v = 0 - v2 = 0 - } else { - v = v - e.cur + e.maxMatchOff - if v2 < minOff { - v2 = 0 - } else { - v2 = v2 - e.cur + e.maxMatchOff - } - } - e.longTable[i] = prevEntry{ - offset: v, - prev: v2, - } - } - e.cur = e.maxMatchOff - break - } - - // Add block to history - s := e.addBlock(src) - blk.size = len(src) - - // Check RLE first - if len(src) > zstdMinMatch { - ml := matchLen(src[1:], src) - if ml == len(src)-1 { - blk.literals = append(blk.literals, src[0]) - blk.sequences = append(blk.sequences, seq{litLen: 1, matchLen: uint32(len(src)-1) - zstdMinMatch, offset: 1 + 3}) - return - } - } - - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Use this to estimate literal cost. - // Scaled by 10 bits. - bitsPerByte := int32((compress.ShannonEntropyBits(src) * 1024) / len(src)) - // Huffman can never go < 1 bit/byte - if bitsPerByte < 1024 { - bitsPerByte = 1024 - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - const kSearchStrength = 10 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - offset3 := int32(blk.recentOffsets[2]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - // We allow the encoder to optionally turn off repeat offsets across blocks - canRepeat := len(blk.sequences) > 2 - - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - const goodEnough = 250 - - cv := load6432(src, s) - - nextHashL := hashLen(cv, bestLongTableBits, bestLongLen) - nextHashS := hashLen(cv, bestShortTableBits, bestShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - // Set m to a match at offset if it looks like that will improve compression. - improve := func(m *match, offset int32, s int32, first uint32, rep int32) { - delta := s - offset - if delta >= e.maxMatchOff || delta <= 0 || load3232(src, offset) != first { - return - } - // Try to quick reject if we already have a long match. - if m.length > 16 { - left := len(src) - int(m.s+m.length) - // If we are too close to the end, keep as is. - if left <= 0 { - return - } - checkLen := m.length - (s - m.s) - 8 - if left > 2 && checkLen > 4 { - // Check 4 bytes, 4 bytes from the end of the current match. - a := load3232(src, offset+checkLen) - b := load3232(src, s+checkLen) - if a != b { - return - } - } - } - l := 4 + e.matchlen(s+4, offset+4, src) - if m.rep <= 0 { - // Extend candidate match backwards as far as possible. - // Do not extend repeats as we can assume they are optimal - // and offsets change if s == nextEmit. - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for offset > tMin && s > nextEmit && src[offset-1] == src[s-1] && l < maxMatchLength { - s-- - offset-- - l++ - } - } - if debugAsserts { - if offset >= s { - panic(fmt.Sprintf("offset: %d - s:%d - rep: %d - cur :%d - max: %d", offset, s, rep, e.cur, e.maxMatchOff)) - } - if !bytes.Equal(src[s:s+l], src[offset:offset+l]) { - panic(fmt.Sprintf("second match mismatch: %v != %v, first: %08x", src[s:s+4], src[offset:offset+4], first)) - } - } - cand := match{offset: offset, s: s, length: l, rep: rep} - cand.estBits(bitsPerByte) - if m.est >= highScore || cand.est-m.est+(cand.s-m.s)*bitsPerByte>>10 < 0 { - *m = cand - } - } - - best := match{s: s, est: highScore} - improve(&best, candidateL.offset-e.cur, s, uint32(cv), -1) - improve(&best, candidateL.prev-e.cur, s, uint32(cv), -1) - improve(&best, candidateS.offset-e.cur, s, uint32(cv), -1) - improve(&best, candidateS.prev-e.cur, s, uint32(cv), -1) - - if canRepeat && best.length < goodEnough { - if s == nextEmit { - // Check repeats straight after a match. - improve(&best, s-offset2, s, uint32(cv), 1|4) - improve(&best, s-offset3, s, uint32(cv), 2|4) - if offset1 > 1 { - improve(&best, s-(offset1-1), s, uint32(cv), 3|4) - } - } - - // If either no match or a non-repeat match, check at + 1 - if best.rep <= 0 { - cv32 := uint32(cv >> 8) - spp := s + 1 - improve(&best, spp-offset1, spp, cv32, 1) - improve(&best, spp-offset2, spp, cv32, 2) - improve(&best, spp-offset3, spp, cv32, 3) - if best.rep < 0 { - cv32 = uint32(cv >> 24) - spp += 2 - improve(&best, spp-offset1, spp, cv32, 1) - improve(&best, spp-offset2, spp, cv32, 2) - improve(&best, spp-offset3, spp, cv32, 3) - } - } - } - // Load next and check... - e.longTable[nextHashL] = prevEntry{offset: s + e.cur, prev: candidateL.offset} - e.table[nextHashS] = prevEntry{offset: s + e.cur, prev: candidateS.offset} - index0 := s + 1 - - // Look far ahead, unless we have a really long match already... - if best.length < goodEnough { - // No match found, move forward on input, no need to check forward... - if best.length < 4 { - s += 1 + (s-nextEmit)>>(kSearchStrength-1) - if s >= sLimit { - break encodeLoop - } - continue - } - - candidateS = e.table[hashLen(cv>>8, bestShortTableBits, bestShortLen)] - cv = load6432(src, s+1) - cv2 := load6432(src, s+2) - candidateL = e.longTable[hashLen(cv, bestLongTableBits, bestLongLen)] - candidateL2 := e.longTable[hashLen(cv2, bestLongTableBits, bestLongLen)] - - // Short at s+1 - improve(&best, candidateS.offset-e.cur, s+1, uint32(cv), -1) - // Long at s+1, s+2 - improve(&best, candidateL.offset-e.cur, s+1, uint32(cv), -1) - improve(&best, candidateL.prev-e.cur, s+1, uint32(cv), -1) - improve(&best, candidateL2.offset-e.cur, s+2, uint32(cv2), -1) - improve(&best, candidateL2.prev-e.cur, s+2, uint32(cv2), -1) - if false { - // Short at s+3. - // Too often worse... - improve(&best, e.table[hashLen(cv2>>8, bestShortTableBits, bestShortLen)].offset-e.cur, s+3, uint32(cv2>>8), -1) - } - - // Start check at a fixed offset to allow for a few mismatches. - // For this compression level 2 yields the best results. - // We cannot do this if we have already indexed this position. - const skipBeginning = 2 - if best.s > s-skipBeginning { - // See if we can find a better match by checking where the current best ends. - // Use that offset to see if we can find a better full match. - if sAt := best.s + best.length; sAt < sLimit { - nextHashL := hashLen(load6432(src, sAt), bestLongTableBits, bestLongLen) - candidateEnd := e.longTable[nextHashL] - - if off := candidateEnd.offset - e.cur - best.length + skipBeginning; off >= 0 { - improve(&best, off, best.s+skipBeginning, load3232(src, best.s+skipBeginning), -1) - if off := candidateEnd.prev - e.cur - best.length + skipBeginning; off >= 0 { - improve(&best, off, best.s+skipBeginning, load3232(src, best.s+skipBeginning), -1) - } - } - } - } - } - - if debugAsserts { - if best.offset >= best.s { - panic(fmt.Sprintf("best.offset > s: %d >= %d", best.offset, best.s)) - } - if best.s < nextEmit { - panic(fmt.Sprintf("s %d < nextEmit %d", best.s, nextEmit)) - } - if best.offset < s-e.maxMatchOff { - panic(fmt.Sprintf("best.offset < s-e.maxMatchOff: %d < %d", best.offset, s-e.maxMatchOff)) - } - if !bytes.Equal(src[best.s:best.s+best.length], src[best.offset:best.offset+best.length]) { - panic(fmt.Sprintf("match mismatch: %v != %v", src[best.s:best.s+best.length], src[best.offset:best.offset+best.length])) - } - } - - // We have a match, we can store the forward value - s = best.s - if best.rep > 0 { - var seq seq - seq.matchLen = uint32(best.length - zstdMinMatch) - addLiterals(&seq, best.s) - - // Repeat. If bit 4 is set, this is a non-lit repeat. - seq.offset = uint32(best.rep & 3) - if debugSequences { - println("repeat sequence", seq, "next s:", best.s, "off:", best.s-best.offset) - } - blk.sequences = append(blk.sequences, seq) - - // Index old s + 1 -> s - 1 - s = best.s + best.length - nextEmit = s - - // Index skipped... - end := s - if s > sLimit+4 { - end = sLimit + 4 - } - off := index0 + e.cur - for index0 < end { - cv0 := load6432(src, index0) - h0 := hashLen(cv0, bestLongTableBits, bestLongLen) - h1 := hashLen(cv0, bestShortTableBits, bestShortLen) - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.table[h1] = prevEntry{offset: off, prev: e.table[h1].offset} - off++ - index0++ - } - - switch best.rep { - case 2, 4 | 1: - offset1, offset2 = offset2, offset1 - case 3, 4 | 2: - offset1, offset2, offset3 = offset3, offset1, offset2 - case 4 | 3: - offset1, offset2, offset3 = offset1-1, offset1, offset2 - } - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, best.length) - } - break encodeLoop - } - continue - } - - // A 4-byte match has been found. Update recent offsets. - // We'll later see if more than 4 bytes. - t := best.offset - offset1, offset2, offset3 = s-t, offset1, offset2 - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && int(offset1) > len(src) { - panic("invalid offset") - } - - // Write our sequence - var seq seq - l := best.length - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - - // Index old s + 1 -> s - 1 or sLimit - end := s - if s > sLimit-4 { - end = sLimit - 4 - } - - off := index0 + e.cur - for index0 < end { - cv0 := load6432(src, index0) - h0 := hashLen(cv0, bestLongTableBits, bestLongLen) - h1 := hashLen(cv0, bestShortTableBits, bestShortLen) - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.table[h1] = prevEntry{offset: off, prev: e.table[h1].offset} - index0++ - off++ - } - if s >= sLimit { - break encodeLoop - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - blk.recentOffsets[2] = uint32(offset3) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// EncodeNoHist will encode a block with no history and no following blocks. -// Most notable difference is that src will not be copied for history and -// we do not need to check for max match length. -func (e *bestFastEncoder) EncodeNoHist(blk *blockEnc, src []byte) { - e.ensureHist(len(src)) - e.Encode(blk, src) -} - -// Reset will reset and set a dictionary if not nil -func (e *bestFastEncoder) Reset(d *dict, singleBlock bool) { - e.resetBase(d, singleBlock) - if d == nil { - return - } - // Init or copy dict table - if len(e.dictTable) != len(e.table) || d.id != e.lastDictID { - if len(e.dictTable) != len(e.table) { - e.dictTable = make([]prevEntry, len(e.table)) - } - end := int32(len(d.content)) - 8 + e.maxMatchOff - for i := e.maxMatchOff; i < end; i += 4 { - const hashLog = bestShortTableBits - - cv := load6432(d.content, i-e.maxMatchOff) - nextHash := hashLen(cv, hashLog, bestShortLen) // 0 -> 4 - nextHash1 := hashLen(cv>>8, hashLog, bestShortLen) // 1 -> 5 - nextHash2 := hashLen(cv>>16, hashLog, bestShortLen) // 2 -> 6 - nextHash3 := hashLen(cv>>24, hashLog, bestShortLen) // 3 -> 7 - e.dictTable[nextHash] = prevEntry{ - prev: e.dictTable[nextHash].offset, - offset: i, - } - e.dictTable[nextHash1] = prevEntry{ - prev: e.dictTable[nextHash1].offset, - offset: i + 1, - } - e.dictTable[nextHash2] = prevEntry{ - prev: e.dictTable[nextHash2].offset, - offset: i + 2, - } - e.dictTable[nextHash3] = prevEntry{ - prev: e.dictTable[nextHash3].offset, - offset: i + 3, - } - } - e.lastDictID = d.id - } - - // Init or copy dict table - if len(e.dictLongTable) != len(e.longTable) || d.id != e.lastDictID { - if len(e.dictLongTable) != len(e.longTable) { - e.dictLongTable = make([]prevEntry, len(e.longTable)) - } - if len(d.content) >= 8 { - cv := load6432(d.content, 0) - h := hashLen(cv, bestLongTableBits, bestLongLen) - e.dictLongTable[h] = prevEntry{ - offset: e.maxMatchOff, - prev: e.dictLongTable[h].offset, - } - - end := int32(len(d.content)) - 8 + e.maxMatchOff - off := 8 // First to read - for i := e.maxMatchOff + 1; i < end; i++ { - cv = cv>>8 | (uint64(d.content[off]) << 56) - h := hashLen(cv, bestLongTableBits, bestLongLen) - e.dictLongTable[h] = prevEntry{ - offset: i, - prev: e.dictLongTable[h].offset, - } - off++ - } - } - e.lastDictID = d.id - } - // Reset table to initial state - copy(e.longTable[:], e.dictLongTable) - - e.cur = e.maxMatchOff - // Reset table to initial state - copy(e.table[:], e.dictTable) -} diff --git a/vendor/github.com/klauspost/compress/zstd/enc_better.go b/vendor/github.com/klauspost/compress/zstd/enc_better.go deleted file mode 100644 index 84a79fde76..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/enc_better.go +++ /dev/null @@ -1,1252 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import "fmt" - -const ( - betterLongTableBits = 19 // Bits used in the long match table - betterLongTableSize = 1 << betterLongTableBits // Size of the table - betterLongLen = 8 // Bytes used for table hash - - // Note: Increasing the short table bits or making the hash shorter - // can actually lead to compression degradation since it will 'steal' more from the - // long match table and match offsets are quite big. - // This greatly depends on the type of input. - betterShortTableBits = 13 // Bits used in the short match table - betterShortTableSize = 1 << betterShortTableBits // Size of the table - betterShortLen = 5 // Bytes used for table hash - - betterLongTableShardCnt = 1 << (betterLongTableBits - dictShardBits) // Number of shards in the table - betterLongTableShardSize = betterLongTableSize / betterLongTableShardCnt // Size of an individual shard - - betterShortTableShardCnt = 1 << (betterShortTableBits - dictShardBits) // Number of shards in the table - betterShortTableShardSize = betterShortTableSize / betterShortTableShardCnt // Size of an individual shard -) - -type prevEntry struct { - offset int32 - prev int32 -} - -// betterFastEncoder uses 2 tables, one for short matches (5 bytes) and one for long matches. -// The long match table contains the previous entry with the same hash, -// effectively making it a "chain" of length 2. -// When we find a long match we choose between the two values and select the longest. -// When we find a short match, after checking the long, we check if we can find a long at n+1 -// and that it is longer (lazy matching). -type betterFastEncoder struct { - fastBase - table [betterShortTableSize]tableEntry - longTable [betterLongTableSize]prevEntry -} - -type betterFastEncoderDict struct { - betterFastEncoder - dictTable []tableEntry - dictLongTable []prevEntry - shortTableShardDirty [betterShortTableShardCnt]bool - longTableShardDirty [betterLongTableShardCnt]bool - allDirty bool -} - -// Encode improves compression... -func (e *betterFastEncoder) Encode(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 2 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - e.table = [betterShortTableSize]tableEntry{} - e.longTable = [betterLongTableSize]prevEntry{} - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - for i := range e.longTable[:] { - v := e.longTable[i].offset - v2 := e.longTable[i].prev - if v < minOff { - v = 0 - v2 = 0 - } else { - v = v - e.cur + e.maxMatchOff - if v2 < minOff { - v2 = 0 - } else { - v2 = v2 - e.cur + e.maxMatchOff - } - } - e.longTable[i] = prevEntry{ - offset: v, - prev: v2, - } - } - e.cur = e.maxMatchOff - break - } - // Add block to history - s := e.addBlock(src) - blk.size = len(src) - - // Check RLE first - if len(src) > zstdMinMatch { - ml := matchLen(src[1:], src) - if ml == len(src)-1 { - blk.literals = append(blk.literals, src[0]) - blk.sequences = append(blk.sequences, seq{litLen: 1, matchLen: uint32(len(src)-1) - zstdMinMatch, offset: 1 + 3}) - return - } - } - - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 1. - const stepSize = 1 - - const kSearchStrength = 9 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - var t int32 - // We allow the encoder to optionally turn off repeat offsets across blocks - canRepeat := len(blk.sequences) > 2 - var matched, index0 int32 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHashL := hashLen(cv, betterLongTableBits, betterLongLen) - nextHashS := hashLen(cv, betterShortTableBits, betterShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - const repOff = 1 - repIndex := s - offset1 + repOff - off := s + e.cur - e.longTable[nextHashL] = prevEntry{offset: off, prev: candidateL.offset} - e.table[nextHashS] = tableEntry{offset: off, val: uint32(cv)} - index0 = s + 1 - - if canRepeat { - if repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>(repOff*8)) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+4+repOff, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Index match start+1 (long) -> s - 1 - index0 := s + repOff - s += length + repOff - - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - // Index skipped... - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - off := index0 + e.cur - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.table[hashLen(cv1, betterShortTableBits, betterShortLen)] = tableEntry{offset: off + 1, val: uint32(cv1)} - index0 += 2 - } - cv = load6432(src, s) - continue - } - const repOff2 = 1 - - // We deviate from the reference encoder and also check offset 2. - // Still slower and not much better, so disabled. - // repIndex = s - offset2 + repOff2 - if false && repIndex >= 0 && load6432(src, repIndex) == load6432(src, s+repOff) { - // Consider history as well. - var seq seq - length := 8 + e.matchlen(s+8+repOff2, repIndex+8, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff2 - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 2 - seq.offset = 2 - if debugSequences { - println("repeat sequence 2", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - s += length + repOff2 - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - - // Index skipped... - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - off := index0 + e.cur - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.table[hashLen(cv1, betterShortTableBits, betterShortLen)] = tableEntry{offset: off + 1, val: uint32(cv1)} - index0 += 2 - } - cv = load6432(src, s) - // Swap offsets - offset1, offset2 = offset2, offset1 - continue - } - } - // Find the offsets of our two matches. - coffsetL := candidateL.offset - e.cur - coffsetLP := candidateL.prev - e.cur - - // Check if we have a long match. - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matched = e.matchlen(s+8, coffsetL+8, src) + 8 - t = coffsetL - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - - if s-coffsetLP < e.maxMatchOff && cv == load6432(src, coffsetLP) { - // Found a long match, at least 8 bytes. - prevMatch := e.matchlen(s+8, coffsetLP+8, src) + 8 - if prevMatch > matched { - matched = prevMatch - t = coffsetLP - } - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - } - break - } - - // Check if we have a long match on prev. - if s-coffsetLP < e.maxMatchOff && cv == load6432(src, coffsetLP) { - // Found a long match, at least 8 bytes. - matched = e.matchlen(s+8, coffsetLP+8, src) + 8 - t = coffsetLP - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - break - } - - coffsetS := candidateS.offset - e.cur - - // Check if we have a short match. - if s-coffsetS < e.maxMatchOff && uint32(cv) == candidateS.val { - // found a regular match - matched = e.matchlen(s+4, coffsetS+4, src) + 4 - - // See if we can find a long match at s+1 - const checkAt = 1 - cv := load6432(src, s+checkAt) - nextHashL = hashLen(cv, betterLongTableBits, betterLongLen) - candidateL = e.longTable[nextHashL] - coffsetL = candidateL.offset - e.cur - - // We can store it, since we have at least a 4 byte match. - e.longTable[nextHashL] = prevEntry{offset: s + checkAt + e.cur, prev: candidateL.offset} - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matchedNext := e.matchlen(s+8+checkAt, coffsetL+8, src) + 8 - if matchedNext > matched { - t = coffsetL - s += checkAt - matched = matchedNext - if debugMatches { - println("long match (after short)") - } - break - } - } - - // Check prev long... - coffsetL = candidateL.prev - e.cur - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matchedNext := e.matchlen(s+8+checkAt, coffsetL+8, src) + 8 - if matchedNext > matched { - t = coffsetL - s += checkAt - matched = matchedNext - if debugMatches { - println("prev long match (after short)") - } - break - } - } - t = coffsetS - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - if debugMatches { - println("short match") - } - break - } - - // No match found, move forward in input. - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - - // Try to find a better match by searching for a long match at the end of the current best match - if s+matched < sLimit { - // Allow some bytes at the beginning to mismatch. - // Sweet spot is around 3 bytes, but depends on input. - // The skipped bytes are tested in Extend backwards, - // and still picked up as part of the match if they do. - const skipBeginning = 3 - - nextHashL := hashLen(load6432(src, s+matched), betterLongTableBits, betterLongLen) - s2 := s + skipBeginning - cv := load3232(src, s2) - candidateL := e.longTable[nextHashL] - coffsetL := candidateL.offset - e.cur - matched + skipBeginning - if coffsetL >= 0 && coffsetL < s2 && s2-coffsetL < e.maxMatchOff && cv == load3232(src, coffsetL) { - // Found a long match, at least 4 bytes. - matchedNext := e.matchlen(s2+4, coffsetL+4, src) + 4 - if matchedNext > matched { - t = coffsetL - s = s2 - matched = matchedNext - if debugMatches { - println("long match at end-of-match") - } - } - } - - // Check prev long... - if true { - coffsetL = candidateL.prev - e.cur - matched + skipBeginning - if coffsetL >= 0 && coffsetL < s2 && s2-coffsetL < e.maxMatchOff && cv == load3232(src, coffsetL) { - // Found a long match, at least 4 bytes. - matchedNext := e.matchlen(s2+4, coffsetL+4, src) + 4 - if matchedNext > matched { - t = coffsetL - s = s2 - matched = matchedNext - if debugMatches { - println("prev long match at end-of-match") - } - } - } - } - } - // A match has been found. Update recent offsets. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the n-byte match as long as possible. - l := matched - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - - // Index match start+1 (long) -> s - 1 - off := index0 + e.cur - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.table[hashLen(cv1, betterShortTableBits, betterShortLen)] = tableEntry{offset: off + 1, val: uint32(cv1)} - index0 += 2 - off += 2 - } - - cv = load6432(src, s) - if !canRepeat { - continue - } - - // Check offset 2 - for { - o2 := s - offset2 - if load3232(src, o2) != uint32(cv) { - // Do regular search - break - } - - // Store this, since we have it. - nextHashL := hashLen(cv, betterLongTableBits, betterLongLen) - nextHashS := hashLen(cv, betterShortTableBits, betterShortLen) - - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - e.longTable[nextHashL] = prevEntry{offset: s + e.cur, prev: e.longTable[nextHashL].offset} - e.table[nextHashS] = tableEntry{offset: s + e.cur, val: uint32(cv)} - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - // Finished - break encodeLoop - } - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// EncodeNoHist will encode a block with no history and no following blocks. -// Most notable difference is that src will not be copied for history and -// we do not need to check for max match length. -func (e *betterFastEncoder) EncodeNoHist(blk *blockEnc, src []byte) { - e.ensureHist(len(src)) - e.Encode(blk, src) -} - -// Encode improves compression... -func (e *betterFastEncoderDict) Encode(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 2 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - for i := range e.table[:] { - e.table[i] = tableEntry{} - } - for i := range e.longTable[:] { - e.longTable[i] = prevEntry{} - } - e.cur = e.maxMatchOff - e.allDirty = true - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - for i := range e.longTable[:] { - v := e.longTable[i].offset - v2 := e.longTable[i].prev - if v < minOff { - v = 0 - v2 = 0 - } else { - v = v - e.cur + e.maxMatchOff - if v2 < minOff { - v2 = 0 - } else { - v2 = v2 - e.cur + e.maxMatchOff - } - } - e.longTable[i] = prevEntry{ - offset: v, - prev: v2, - } - } - e.allDirty = true - e.cur = e.maxMatchOff - break - } - - s := e.addBlock(src) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 1. - const stepSize = 1 - - const kSearchStrength = 9 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - var t int32 - // We allow the encoder to optionally turn off repeat offsets across blocks - canRepeat := len(blk.sequences) > 2 - var matched, index0 int32 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHashL := hashLen(cv, betterLongTableBits, betterLongLen) - nextHashS := hashLen(cv, betterShortTableBits, betterShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - const repOff = 1 - repIndex := s - offset1 + repOff - off := s + e.cur - e.longTable[nextHashL] = prevEntry{offset: off, prev: candidateL.offset} - e.markLongShardDirty(nextHashL) - e.table[nextHashS] = tableEntry{offset: off, val: uint32(cv)} - e.markShortShardDirty(nextHashS) - index0 = s + 1 - - if canRepeat { - if repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>(repOff*8)) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+4+repOff, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Index match start+1 (long) -> s - 1 - s += length + repOff - - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - // Index skipped... - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - off := index0 + e.cur - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.markLongShardDirty(h0) - h1 := hashLen(cv1, betterShortTableBits, betterShortLen) - e.table[h1] = tableEntry{offset: off + 1, val: uint32(cv1)} - e.markShortShardDirty(h1) - index0 += 2 - } - cv = load6432(src, s) - continue - } - const repOff2 = 1 - - // We deviate from the reference encoder and also check offset 2. - // Still slower and not much better, so disabled. - // repIndex = s - offset2 + repOff2 - if false && repIndex >= 0 && load6432(src, repIndex) == load6432(src, s+repOff) { - // Consider history as well. - var seq seq - length := 8 + e.matchlen(s+8+repOff2, repIndex+8, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff2 - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 2 - seq.offset = 2 - if debugSequences { - println("repeat sequence 2", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - s += length + repOff2 - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - - // Index skipped... - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - off := index0 + e.cur - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.markLongShardDirty(h0) - h1 := hashLen(cv1, betterShortTableBits, betterShortLen) - e.table[h1] = tableEntry{offset: off + 1, val: uint32(cv1)} - e.markShortShardDirty(h1) - index0 += 2 - } - cv = load6432(src, s) - // Swap offsets - offset1, offset2 = offset2, offset1 - continue - } - } - // Find the offsets of our two matches. - coffsetL := candidateL.offset - e.cur - coffsetLP := candidateL.prev - e.cur - - // Check if we have a long match. - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matched = e.matchlen(s+8, coffsetL+8, src) + 8 - t = coffsetL - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - - if s-coffsetLP < e.maxMatchOff && cv == load6432(src, coffsetLP) { - // Found a long match, at least 8 bytes. - prevMatch := e.matchlen(s+8, coffsetLP+8, src) + 8 - if prevMatch > matched { - matched = prevMatch - t = coffsetLP - } - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - } - break - } - - // Check if we have a long match on prev. - if s-coffsetLP < e.maxMatchOff && cv == load6432(src, coffsetLP) { - // Found a long match, at least 8 bytes. - matched = e.matchlen(s+8, coffsetLP+8, src) + 8 - t = coffsetLP - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - break - } - - coffsetS := candidateS.offset - e.cur - - // Check if we have a short match. - if s-coffsetS < e.maxMatchOff && uint32(cv) == candidateS.val { - // found a regular match - matched = e.matchlen(s+4, coffsetS+4, src) + 4 - - // See if we can find a long match at s+1 - const checkAt = 1 - cv := load6432(src, s+checkAt) - nextHashL = hashLen(cv, betterLongTableBits, betterLongLen) - candidateL = e.longTable[nextHashL] - coffsetL = candidateL.offset - e.cur - - // We can store it, since we have at least a 4 byte match. - e.longTable[nextHashL] = prevEntry{offset: s + checkAt + e.cur, prev: candidateL.offset} - e.markLongShardDirty(nextHashL) - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matchedNext := e.matchlen(s+8+checkAt, coffsetL+8, src) + 8 - if matchedNext > matched { - t = coffsetL - s += checkAt - matched = matchedNext - if debugMatches { - println("long match (after short)") - } - break - } - } - - // Check prev long... - coffsetL = candidateL.prev - e.cur - if s-coffsetL < e.maxMatchOff && cv == load6432(src, coffsetL) { - // Found a long match, at least 8 bytes. - matchedNext := e.matchlen(s+8+checkAt, coffsetL+8, src) + 8 - if matchedNext > matched { - t = coffsetL - s += checkAt - matched = matchedNext - if debugMatches { - println("prev long match (after short)") - } - break - } - } - t = coffsetS - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - if debugMatches { - println("short match") - } - break - } - - // No match found, move forward in input. - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - // Try to find a better match by searching for a long match at the end of the current best match - if s+matched < sLimit { - nextHashL := hashLen(load6432(src, s+matched), betterLongTableBits, betterLongLen) - cv := load3232(src, s) - candidateL := e.longTable[nextHashL] - coffsetL := candidateL.offset - e.cur - matched - if coffsetL >= 0 && coffsetL < s && s-coffsetL < e.maxMatchOff && cv == load3232(src, coffsetL) { - // Found a long match, at least 4 bytes. - matchedNext := e.matchlen(s+4, coffsetL+4, src) + 4 - if matchedNext > matched { - t = coffsetL - matched = matchedNext - if debugMatches { - println("long match at end-of-match") - } - } - } - - // Check prev long... - if true { - coffsetL = candidateL.prev - e.cur - matched - if coffsetL >= 0 && coffsetL < s && s-coffsetL < e.maxMatchOff && cv == load3232(src, coffsetL) { - // Found a long match, at least 4 bytes. - matchedNext := e.matchlen(s+4, coffsetL+4, src) + 4 - if matchedNext > matched { - t = coffsetL - matched = matchedNext - if debugMatches { - println("prev long match at end-of-match") - } - } - } - } - } - // A match has been found. Update recent offsets. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the n-byte match as long as possible. - l := matched - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - - // Index match start+1 (long) -> s - 1 - off := index0 + e.cur - for index0 < s-1 { - cv0 := load6432(src, index0) - cv1 := cv0 >> 8 - h0 := hashLen(cv0, betterLongTableBits, betterLongLen) - e.longTable[h0] = prevEntry{offset: off, prev: e.longTable[h0].offset} - e.markLongShardDirty(h0) - h1 := hashLen(cv1, betterShortTableBits, betterShortLen) - e.table[h1] = tableEntry{offset: off + 1, val: uint32(cv1)} - e.markShortShardDirty(h1) - index0 += 2 - off += 2 - } - - cv = load6432(src, s) - if !canRepeat { - continue - } - - // Check offset 2 - for { - o2 := s - offset2 - if load3232(src, o2) != uint32(cv) { - // Do regular search - break - } - - // Store this, since we have it. - nextHashL := hashLen(cv, betterLongTableBits, betterLongLen) - nextHashS := hashLen(cv, betterShortTableBits, betterShortLen) - - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - e.longTable[nextHashL] = prevEntry{offset: s + e.cur, prev: e.longTable[nextHashL].offset} - e.markLongShardDirty(nextHashL) - e.table[nextHashS] = tableEntry{offset: s + e.cur, val: uint32(cv)} - e.markShortShardDirty(nextHashS) - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - // Finished - break encodeLoop - } - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *betterFastEncoder) Reset(d *dict, singleBlock bool) { - e.resetBase(d, singleBlock) - if d != nil { - panic("betterFastEncoder: Reset with dict") - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *betterFastEncoderDict) Reset(d *dict, singleBlock bool) { - e.resetBase(d, singleBlock) - if d == nil { - return - } - // Init or copy dict table - if len(e.dictTable) != len(e.table) || d.id != e.lastDictID { - if len(e.dictTable) != len(e.table) { - e.dictTable = make([]tableEntry, len(e.table)) - } - end := int32(len(d.content)) - 8 + e.maxMatchOff - for i := e.maxMatchOff; i < end; i += 4 { - const hashLog = betterShortTableBits - - cv := load6432(d.content, i-e.maxMatchOff) - nextHash := hashLen(cv, hashLog, betterShortLen) // 0 -> 4 - nextHash1 := hashLen(cv>>8, hashLog, betterShortLen) // 1 -> 5 - nextHash2 := hashLen(cv>>16, hashLog, betterShortLen) // 2 -> 6 - nextHash3 := hashLen(cv>>24, hashLog, betterShortLen) // 3 -> 7 - e.dictTable[nextHash] = tableEntry{ - val: uint32(cv), - offset: i, - } - e.dictTable[nextHash1] = tableEntry{ - val: uint32(cv >> 8), - offset: i + 1, - } - e.dictTable[nextHash2] = tableEntry{ - val: uint32(cv >> 16), - offset: i + 2, - } - e.dictTable[nextHash3] = tableEntry{ - val: uint32(cv >> 24), - offset: i + 3, - } - } - e.lastDictID = d.id - e.allDirty = true - } - - // Init or copy dict table - if len(e.dictLongTable) != len(e.longTable) || d.id != e.lastDictID { - if len(e.dictLongTable) != len(e.longTable) { - e.dictLongTable = make([]prevEntry, len(e.longTable)) - } - if len(d.content) >= 8 { - cv := load6432(d.content, 0) - h := hashLen(cv, betterLongTableBits, betterLongLen) - e.dictLongTable[h] = prevEntry{ - offset: e.maxMatchOff, - prev: e.dictLongTable[h].offset, - } - - end := int32(len(d.content)) - 8 + e.maxMatchOff - off := 8 // First to read - for i := e.maxMatchOff + 1; i < end; i++ { - cv = cv>>8 | (uint64(d.content[off]) << 56) - h := hashLen(cv, betterLongTableBits, betterLongLen) - e.dictLongTable[h] = prevEntry{ - offset: i, - prev: e.dictLongTable[h].offset, - } - off++ - } - } - e.lastDictID = d.id - e.allDirty = true - } - - // Reset table to initial state - { - dirtyShardCnt := 0 - if !e.allDirty { - for i := range e.shortTableShardDirty { - if e.shortTableShardDirty[i] { - dirtyShardCnt++ - } - } - } - const shardCnt = betterShortTableShardCnt - const shardSize = betterShortTableShardSize - if e.allDirty || dirtyShardCnt > shardCnt*4/6 { - copy(e.table[:], e.dictTable) - for i := range e.shortTableShardDirty { - e.shortTableShardDirty[i] = false - } - } else { - for i := range e.shortTableShardDirty { - if !e.shortTableShardDirty[i] { - continue - } - - copy(e.table[i*shardSize:(i+1)*shardSize], e.dictTable[i*shardSize:(i+1)*shardSize]) - e.shortTableShardDirty[i] = false - } - } - } - { - dirtyShardCnt := 0 - if !e.allDirty { - for i := range e.shortTableShardDirty { - if e.shortTableShardDirty[i] { - dirtyShardCnt++ - } - } - } - const shardCnt = betterLongTableShardCnt - const shardSize = betterLongTableShardSize - if e.allDirty || dirtyShardCnt > shardCnt*4/6 { - copy(e.longTable[:], e.dictLongTable) - for i := range e.longTableShardDirty { - e.longTableShardDirty[i] = false - } - } else { - for i := range e.longTableShardDirty { - if !e.longTableShardDirty[i] { - continue - } - - copy(e.longTable[i*shardSize:(i+1)*shardSize], e.dictLongTable[i*shardSize:(i+1)*shardSize]) - e.longTableShardDirty[i] = false - } - } - } - e.cur = e.maxMatchOff - e.allDirty = false -} - -func (e *betterFastEncoderDict) markLongShardDirty(entryNum uint32) { - e.longTableShardDirty[entryNum/betterLongTableShardSize] = true -} - -func (e *betterFastEncoderDict) markShortShardDirty(entryNum uint32) { - e.shortTableShardDirty[entryNum/betterShortTableShardSize] = true -} diff --git a/vendor/github.com/klauspost/compress/zstd/enc_dfast.go b/vendor/github.com/klauspost/compress/zstd/enc_dfast.go deleted file mode 100644 index d36be7bd8c..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/enc_dfast.go +++ /dev/null @@ -1,1123 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import "fmt" - -const ( - dFastLongTableBits = 17 // Bits used in the long match table - dFastLongTableSize = 1 << dFastLongTableBits // Size of the table - dFastLongTableMask = dFastLongTableSize - 1 // Mask for table indices. Redundant, but can eliminate bounds checks. - dFastLongLen = 8 // Bytes used for table hash - - dLongTableShardCnt = 1 << (dFastLongTableBits - dictShardBits) // Number of shards in the table - dLongTableShardSize = dFastLongTableSize / tableShardCnt // Size of an individual shard - - dFastShortTableBits = tableBits // Bits used in the short match table - dFastShortTableSize = 1 << dFastShortTableBits // Size of the table - dFastShortTableMask = dFastShortTableSize - 1 // Mask for table indices. Redundant, but can eliminate bounds checks. - dFastShortLen = 5 // Bytes used for table hash - -) - -type doubleFastEncoder struct { - fastEncoder - longTable [dFastLongTableSize]tableEntry -} - -type doubleFastEncoderDict struct { - fastEncoderDict - longTable [dFastLongTableSize]tableEntry - dictLongTable []tableEntry - longTableShardDirty [dLongTableShardCnt]bool -} - -// Encode mimmics functionality in zstd_dfast.c -func (e *doubleFastEncoder) Encode(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 2 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - e.table = [dFastShortTableSize]tableEntry{} - e.longTable = [dFastLongTableSize]tableEntry{} - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - for i := range e.longTable[:] { - v := e.longTable[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.longTable[i].offset = v - } - e.cur = e.maxMatchOff - break - } - - s := e.addBlock(src) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 1. - const stepSize = 1 - - const kSearchStrength = 8 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - var t int32 - // We allow the encoder to optionally turn off repeat offsets across blocks - canRepeat := len(blk.sequences) > 2 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - nextHashS := hashLen(cv, dFastShortTableBits, dFastShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - const repOff = 1 - repIndex := s - offset1 + repOff - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.table[nextHashS] = entry - - if canRepeat { - if repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>(repOff*8)) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+4+repOff, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + repOff - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - } - // Find the offsets of our two matches. - coffsetL := s - (candidateL.offset - e.cur) - coffsetS := s - (candidateS.offset - e.cur) - - // Check if we have a long match. - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - break - } - - // Check if we have a short match. - if coffsetS < e.maxMatchOff && uint32(cv) == candidateS.val { - // found a regular match - // See if we can find a long match at s+1 - const checkAt = 1 - cv := load6432(src, s+checkAt) - nextHashL = hashLen(cv, dFastLongTableBits, dFastLongLen) - candidateL = e.longTable[nextHashL] - coffsetL = s - (candidateL.offset - e.cur) + checkAt - - // We can store it, since we have at least a 4 byte match. - e.longTable[nextHashL] = tableEntry{offset: s + checkAt + e.cur, val: uint32(cv)} - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - s += checkAt - if debugMatches { - println("long match (after short)") - } - break - } - - t = candidateS.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - if debugMatches { - println("short match") - } - break - } - - // No match found, move forward in input. - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - - // A 4-byte match has been found. Update recent offsets. - // We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the 4-byte match as long as possible. - l := e.matchlen(s+4, t+4, src) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - - // Index match start+1 (long) and start+2 (short) - index0 := s - l + 1 - // Index match end-2 (long) and end-1 (short) - index1 := s - 2 - - cv0 := load6432(src, index0) - cv1 := load6432(src, index1) - te0 := tableEntry{offset: index0 + e.cur, val: uint32(cv0)} - te1 := tableEntry{offset: index1 + e.cur, val: uint32(cv1)} - e.longTable[hashLen(cv0, dFastLongTableBits, dFastLongLen)] = te0 - e.longTable[hashLen(cv1, dFastLongTableBits, dFastLongLen)] = te1 - cv0 >>= 8 - cv1 >>= 8 - te0.offset++ - te1.offset++ - te0.val = uint32(cv0) - te1.val = uint32(cv1) - e.table[hashLen(cv0, dFastShortTableBits, dFastShortLen)] = te0 - e.table[hashLen(cv1, dFastShortTableBits, dFastShortLen)] = te1 - - cv = load6432(src, s) - - if !canRepeat { - continue - } - - // Check offset 2 - for { - o2 := s - offset2 - if load3232(src, o2) != uint32(cv) { - // Do regular search - break - } - - // Store this, since we have it. - nextHashS := hashLen(cv, dFastShortTableBits, dFastShortLen) - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.table[nextHashS] = entry - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - // Finished - break encodeLoop - } - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// EncodeNoHist will encode a block with no history and no following blocks. -// Most notable difference is that src will not be copied for history and -// we do not need to check for max match length. -func (e *doubleFastEncoder) EncodeNoHist(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 2 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - if e.cur >= e.bufferReset { - for i := range e.table[:] { - e.table[i] = tableEntry{} - } - for i := range e.longTable[:] { - e.longTable[i] = tableEntry{} - } - e.cur = e.maxMatchOff - } - - s := int32(0) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 1. - const stepSize = 1 - - const kSearchStrength = 8 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - var t int32 - for { - - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - nextHashS := hashLen(cv, dFastShortTableBits, dFastShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - const repOff = 1 - repIndex := s - offset1 + repOff - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.table[nextHashS] = entry - - if len(blk.sequences) > 2 { - if load3232(src, repIndex) == uint32(cv>>(repOff*8)) { - // Consider history as well. - var seq seq - //length := 4 + e.matchlen(s+4+repOff, repIndex+4, src) - length := 4 + int32(matchLen(src[s+4+repOff:], src[repIndex+4:])) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + repOff - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - } - // Find the offsets of our two matches. - coffsetL := s - (candidateL.offset - e.cur) - coffsetS := s - (candidateS.offset - e.cur) - - // Check if we have a long match. - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d). cur: %d", s, t, e.cur)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - break - } - - // Check if we have a short match. - if coffsetS < e.maxMatchOff && uint32(cv) == candidateS.val { - // found a regular match - // See if we can find a long match at s+1 - const checkAt = 1 - cv := load6432(src, s+checkAt) - nextHashL = hashLen(cv, dFastLongTableBits, dFastLongLen) - candidateL = e.longTable[nextHashL] - coffsetL = s - (candidateL.offset - e.cur) + checkAt - - // We can store it, since we have at least a 4 byte match. - e.longTable[nextHashL] = tableEntry{offset: s + checkAt + e.cur, val: uint32(cv)} - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - s += checkAt - if debugMatches { - println("long match (after short)") - } - break - } - - t = candidateS.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - if debugMatches { - println("short match") - } - break - } - - // No match found, move forward in input. - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - - // A 4-byte match has been found. Update recent offsets. - // We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - // Extend the 4-byte match as long as possible. - //l := e.matchlen(s+4, t+4, src) + 4 - l := int32(matchLen(src[s+4:], src[t+4:])) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] { - s-- - t-- - l++ - } - - // Write our sequence - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - - // Index match start+1 (long) and start+2 (short) - index0 := s - l + 1 - // Index match end-2 (long) and end-1 (short) - index1 := s - 2 - - cv0 := load6432(src, index0) - cv1 := load6432(src, index1) - te0 := tableEntry{offset: index0 + e.cur, val: uint32(cv0)} - te1 := tableEntry{offset: index1 + e.cur, val: uint32(cv1)} - e.longTable[hashLen(cv0, dFastLongTableBits, dFastLongLen)] = te0 - e.longTable[hashLen(cv1, dFastLongTableBits, dFastLongLen)] = te1 - cv0 >>= 8 - cv1 >>= 8 - te0.offset++ - te1.offset++ - te0.val = uint32(cv0) - te1.val = uint32(cv1) - e.table[hashLen(cv0, dFastShortTableBits, dFastShortLen)] = te0 - e.table[hashLen(cv1, dFastShortTableBits, dFastShortLen)] = te1 - - cv = load6432(src, s) - - if len(blk.sequences) <= 2 { - continue - } - - // Check offset 2 - for { - o2 := s - offset2 - if load3232(src, o2) != uint32(cv) { - // Do regular search - break - } - - // Store this, since we have it. - nextHashS := hashLen(cv1>>8, dFastShortTableBits, dFastShortLen) - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - //l := 4 + e.matchlen(s+4, o2+4, src) - l := 4 + int32(matchLen(src[s+4:], src[o2+4:])) - - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.table[nextHashS] = entry - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - // Finished - break encodeLoop - } - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } - - // We do not store history, so we must offset e.cur to avoid false matches for next user. - if e.cur < e.bufferReset { - e.cur += int32(len(src)) - } -} - -// Encode will encode the content, with a dictionary if initialized for it. -func (e *doubleFastEncoderDict) Encode(blk *blockEnc, src []byte) { - const ( - // Input margin is the number of bytes we read (8) - // and the maximum we will read ahead (2) - inputMargin = 8 + 2 - minNonLiteralBlockSize = 16 - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - for i := range e.table[:] { - e.table[i] = tableEntry{} - } - for i := range e.longTable[:] { - e.longTable[i] = tableEntry{} - } - e.markAllShardsDirty() - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - for i := range e.longTable[:] { - v := e.longTable[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.longTable[i].offset = v - } - e.markAllShardsDirty() - e.cur = e.maxMatchOff - break - } - - s := e.addBlock(src) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 1. - const stepSize = 1 - - const kSearchStrength = 8 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - var t int32 - // We allow the encoder to optionally turn off repeat offsets across blocks - canRepeat := len(blk.sequences) > 2 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - nextHashS := hashLen(cv, dFastShortTableBits, dFastShortLen) - candidateL := e.longTable[nextHashL] - candidateS := e.table[nextHashS] - - const repOff = 1 - repIndex := s - offset1 + repOff - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.markLongShardDirty(nextHashL) - e.table[nextHashS] = entry - e.markShardDirty(nextHashS) - - if canRepeat { - if repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>(repOff*8)) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+4+repOff, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + repOff - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for repIndex > tMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch-1 { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + repOff - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - } - // Find the offsets of our two matches. - coffsetL := s - (candidateL.offset - e.cur) - coffsetS := s - (candidateS.offset - e.cur) - - // Check if we have a long match. - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugMatches { - println("long match") - } - break - } - - // Check if we have a short match. - if coffsetS < e.maxMatchOff && uint32(cv) == candidateS.val { - // found a regular match - // See if we can find a long match at s+1 - const checkAt = 1 - cv := load6432(src, s+checkAt) - nextHashL = hashLen(cv, dFastLongTableBits, dFastLongLen) - candidateL = e.longTable[nextHashL] - coffsetL = s - (candidateL.offset - e.cur) + checkAt - - // We can store it, since we have at least a 4 byte match. - e.longTable[nextHashL] = tableEntry{offset: s + checkAt + e.cur, val: uint32(cv)} - e.markLongShardDirty(nextHashL) - if coffsetL < e.maxMatchOff && uint32(cv) == candidateL.val { - // Found a long match, likely at least 8 bytes. - // Reference encoder checks all 8 bytes, we only check 4, - // but the likelihood of both the first 4 bytes and the hash matching should be enough. - t = candidateL.offset - e.cur - s += checkAt - if debugMatches { - println("long match (after short)") - } - break - } - - t = candidateS.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - if debugMatches { - println("short match") - } - break - } - - // No match found, move forward in input. - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - - // A 4-byte match has been found. Update recent offsets. - // We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the 4-byte match as long as possible. - l := e.matchlen(s+4, t+4, src) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - - // Index match start+1 (long) and start+2 (short) - index0 := s - l + 1 - // Index match end-2 (long) and end-1 (short) - index1 := s - 2 - - cv0 := load6432(src, index0) - cv1 := load6432(src, index1) - te0 := tableEntry{offset: index0 + e.cur, val: uint32(cv0)} - te1 := tableEntry{offset: index1 + e.cur, val: uint32(cv1)} - longHash1 := hashLen(cv0, dFastLongTableBits, dFastLongLen) - longHash2 := hashLen(cv1, dFastLongTableBits, dFastLongLen) - e.longTable[longHash1] = te0 - e.longTable[longHash2] = te1 - e.markLongShardDirty(longHash1) - e.markLongShardDirty(longHash2) - cv0 >>= 8 - cv1 >>= 8 - te0.offset++ - te1.offset++ - te0.val = uint32(cv0) - te1.val = uint32(cv1) - hashVal1 := hashLen(cv0, dFastShortTableBits, dFastShortLen) - hashVal2 := hashLen(cv1, dFastShortTableBits, dFastShortLen) - e.table[hashVal1] = te0 - e.markShardDirty(hashVal1) - e.table[hashVal2] = te1 - e.markShardDirty(hashVal2) - - cv = load6432(src, s) - - if !canRepeat { - continue - } - - // Check offset 2 - for { - o2 := s - offset2 - if load3232(src, o2) != uint32(cv) { - // Do regular search - break - } - - // Store this, since we have it. - nextHashL := hashLen(cv, dFastLongTableBits, dFastLongLen) - nextHashS := hashLen(cv, dFastShortTableBits, dFastShortLen) - - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - entry := tableEntry{offset: s + e.cur, val: uint32(cv)} - e.longTable[nextHashL] = entry - e.markLongShardDirty(nextHashL) - e.table[nextHashS] = entry - e.markShardDirty(nextHashS) - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - // Finished - break encodeLoop - } - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } - // If we encoded more than 64K mark all dirty. - if len(src) > 64<<10 { - e.markAllShardsDirty() - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *doubleFastEncoder) Reset(d *dict, singleBlock bool) { - e.fastEncoder.Reset(d, singleBlock) - if d != nil { - panic("doubleFastEncoder: Reset with dict not supported") - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *doubleFastEncoderDict) Reset(d *dict, singleBlock bool) { - allDirty := e.allDirty - e.fastEncoderDict.Reset(d, singleBlock) - if d == nil { - return - } - - // Init or copy dict table - if len(e.dictLongTable) != len(e.longTable) || d.id != e.lastDictID { - if len(e.dictLongTable) != len(e.longTable) { - e.dictLongTable = make([]tableEntry, len(e.longTable)) - } - if len(d.content) >= 8 { - cv := load6432(d.content, 0) - e.dictLongTable[hashLen(cv, dFastLongTableBits, dFastLongLen)] = tableEntry{ - val: uint32(cv), - offset: e.maxMatchOff, - } - end := int32(len(d.content)) - 8 + e.maxMatchOff - for i := e.maxMatchOff + 1; i < end; i++ { - cv = cv>>8 | (uint64(d.content[i-e.maxMatchOff+7]) << 56) - e.dictLongTable[hashLen(cv, dFastLongTableBits, dFastLongLen)] = tableEntry{ - val: uint32(cv), - offset: i, - } - } - } - e.lastDictID = d.id - allDirty = true - } - // Reset table to initial state - e.cur = e.maxMatchOff - - dirtyShardCnt := 0 - if !allDirty { - for i := range e.longTableShardDirty { - if e.longTableShardDirty[i] { - dirtyShardCnt++ - } - } - } - - if allDirty || dirtyShardCnt > dLongTableShardCnt/2 { - //copy(e.longTable[:], e.dictLongTable) - e.longTable = *(*[dFastLongTableSize]tableEntry)(e.dictLongTable) - for i := range e.longTableShardDirty { - e.longTableShardDirty[i] = false - } - return - } - for i := range e.longTableShardDirty { - if !e.longTableShardDirty[i] { - continue - } - - // copy(e.longTable[i*dLongTableShardSize:(i+1)*dLongTableShardSize], e.dictLongTable[i*dLongTableShardSize:(i+1)*dLongTableShardSize]) - *(*[dLongTableShardSize]tableEntry)(e.longTable[i*dLongTableShardSize:]) = *(*[dLongTableShardSize]tableEntry)(e.dictLongTable[i*dLongTableShardSize:]) - - e.longTableShardDirty[i] = false - } -} - -func (e *doubleFastEncoderDict) markLongShardDirty(entryNum uint32) { - e.longTableShardDirty[entryNum/dLongTableShardSize] = true -} diff --git a/vendor/github.com/klauspost/compress/zstd/enc_fast.go b/vendor/github.com/klauspost/compress/zstd/enc_fast.go deleted file mode 100644 index f45a3da7da..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/enc_fast.go +++ /dev/null @@ -1,891 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "fmt" -) - -const ( - tableBits = 15 // Bits used in the table - tableSize = 1 << tableBits // Size of the table - tableShardCnt = 1 << (tableBits - dictShardBits) // Number of shards in the table - tableShardSize = tableSize / tableShardCnt // Size of an individual shard - tableFastHashLen = 6 - tableMask = tableSize - 1 // Mask for table indices. Redundant, but can eliminate bounds checks. - maxMatchLength = 131074 -) - -type tableEntry struct { - val uint32 - offset int32 -} - -type fastEncoder struct { - fastBase - table [tableSize]tableEntry -} - -type fastEncoderDict struct { - fastEncoder - dictTable []tableEntry - tableShardDirty [tableShardCnt]bool - allDirty bool -} - -// Encode mimmics functionality in zstd_fast.c -func (e *fastEncoder) Encode(blk *blockEnc, src []byte) { - const ( - inputMargin = 8 - minNonLiteralBlockSize = 1 + 1 + inputMargin - ) - - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - for i := range e.table[:] { - e.table[i] = tableEntry{} - } - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - e.cur = e.maxMatchOff - break - } - - s := e.addBlock(src) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 2. - const stepSize = 2 - - // TEMPLATE - const hashLog = tableBits - // seems global, but would be nice to tweak. - const kSearchStrength = 6 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - // t will contain the match offset when we find one. - // When existing the search loop, we have already checked 4 bytes. - var t int32 - - // We will not use repeat offsets across blocks. - // By not using them for the first 3 matches - canRepeat := len(blk.sequences) > 2 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHash := hashLen(cv, hashLog, tableFastHashLen) - nextHash2 := hashLen(cv>>8, hashLog, tableFastHashLen) - candidate := e.table[nextHash] - candidate2 := e.table[nextHash2] - repIndex := s - offset1 + 2 - - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - e.table[nextHash2] = tableEntry{offset: s + e.cur + 1, val: uint32(cv >> 8)} - - if canRepeat && repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>16) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+6, repIndex+4, src) - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + 2 - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - sMin := s - e.maxMatchOff - if sMin < 0 { - sMin = 0 - } - for repIndex > sMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + 2 - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - coffset0 := s - (candidate.offset - e.cur) - coffset1 := s - (candidate2.offset - e.cur) + 1 - if coffset0 < e.maxMatchOff && uint32(cv) == candidate.val { - // found a regular match - t = candidate.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - break - } - - if coffset1 < e.maxMatchOff && uint32(cv>>8) == candidate2.val { - // found a regular match - t = candidate2.offset - e.cur - s++ - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - break - } - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - // A 4-byte match has been found. We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the 4-byte match as long as possible. - l := e.matchlen(s+4, t+4, src) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence. - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - // Don't use repeat offsets - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - - // Check offset 2 - if o2 := s - offset2; canRepeat && load3232(src, o2) == uint32(cv) { - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - // Store this, since we have it. - nextHash := hashLen(cv, hashLog, tableFastHashLen) - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - break encodeLoop - } - // Prepare next loop. - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// EncodeNoHist will encode a block with no history and no following blocks. -// Most notable difference is that src will not be copied for history and -// we do not need to check for max match length. -func (e *fastEncoder) EncodeNoHist(blk *blockEnc, src []byte) { - const ( - inputMargin = 8 - minNonLiteralBlockSize = 1 + 1 + inputMargin - ) - if debugEncoder { - if len(src) > maxCompressedBlockSize { - panic("src too big") - } - } - - // Protect against e.cur wraparound. - if e.cur >= e.bufferReset { - for i := range e.table[:] { - e.table[i] = tableEntry{} - } - e.cur = e.maxMatchOff - } - - s := int32(0) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 2. - const stepSize = 2 - - // TEMPLATE - const hashLog = tableBits - // seems global, but would be nice to tweak. - const kSearchStrength = 6 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - // t will contain the match offset when we find one. - // When existing the search loop, we have already checked 4 bytes. - var t int32 - - // We will not use repeat offsets across blocks. - // By not using them for the first 3 matches - - for { - nextHash := hashLen(cv, hashLog, tableFastHashLen) - nextHash2 := hashLen(cv>>8, hashLog, tableFastHashLen) - candidate := e.table[nextHash] - candidate2 := e.table[nextHash2] - repIndex := s - offset1 + 2 - - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - e.table[nextHash2] = tableEntry{offset: s + e.cur + 1, val: uint32(cv >> 8)} - - if len(blk.sequences) > 2 && load3232(src, repIndex) == uint32(cv>>16) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+6, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + 2 - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - sMin := s - e.maxMatchOff - if sMin < 0 { - sMin = 0 - } - for repIndex > sMin && start > startLimit && src[repIndex-1] == src[start-1] { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + 2 - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - coffset0 := s - (candidate.offset - e.cur) - coffset1 := s - (candidate2.offset - e.cur) + 1 - if coffset0 < e.maxMatchOff && uint32(cv) == candidate.val { - // found a regular match - t = candidate.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic(fmt.Sprintf("t (%d) < 0, candidate.offset: %d, e.cur: %d, coffset0: %d, e.maxMatchOff: %d", t, candidate.offset, e.cur, coffset0, e.maxMatchOff)) - } - break - } - - if coffset1 < e.maxMatchOff && uint32(cv>>8) == candidate2.val { - // found a regular match - t = candidate2.offset - e.cur - s++ - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - break - } - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - // A 4-byte match has been found. We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && t < 0 { - panic(fmt.Sprintf("t (%d) < 0 ", t)) - } - // Extend the 4-byte match as long as possible. - l := e.matchlen(s+4, t+4, src) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] { - s-- - t-- - l++ - } - - // Write our sequence. - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - // Don't use repeat offsets - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - - // Check offset 2 - if o2 := s - offset2; len(blk.sequences) > 2 && load3232(src, o2) == uint32(cv) { - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - // Store this, since we have it. - nextHash := hashLen(cv, hashLog, tableFastHashLen) - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - break encodeLoop - } - // Prepare next loop. - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } - // We do not store history, so we must offset e.cur to avoid false matches for next user. - if e.cur < e.bufferReset { - e.cur += int32(len(src)) - } -} - -// Encode will encode the content, with a dictionary if initialized for it. -func (e *fastEncoderDict) Encode(blk *blockEnc, src []byte) { - const ( - inputMargin = 8 - minNonLiteralBlockSize = 1 + 1 + inputMargin - ) - if e.allDirty || len(src) > 32<<10 { - e.fastEncoder.Encode(blk, src) - e.allDirty = true - return - } - // Protect against e.cur wraparound. - for e.cur >= e.bufferReset-int32(len(e.hist)) { - if len(e.hist) == 0 { - e.table = [tableSize]tableEntry{} - e.cur = e.maxMatchOff - break - } - // Shift down everything in the table that isn't already too far away. - minOff := e.cur + int32(len(e.hist)) - e.maxMatchOff - for i := range e.table[:] { - v := e.table[i].offset - if v < minOff { - v = 0 - } else { - v = v - e.cur + e.maxMatchOff - } - e.table[i].offset = v - } - e.cur = e.maxMatchOff - break - } - - s := e.addBlock(src) - blk.size = len(src) - if len(src) < minNonLiteralBlockSize { - blk.extraLits = len(src) - blk.literals = blk.literals[:len(src)] - copy(blk.literals, src) - return - } - - // Override src - src = e.hist - sLimit := int32(len(src)) - inputMargin - // stepSize is the number of bytes to skip on every main loop iteration. - // It should be >= 2. - const stepSize = 2 - - // TEMPLATE - const hashLog = tableBits - // seems global, but would be nice to tweak. - const kSearchStrength = 7 - - // nextEmit is where in src the next emitLiteral should start from. - nextEmit := s - cv := load6432(src, s) - - // Relative offsets - offset1 := int32(blk.recentOffsets[0]) - offset2 := int32(blk.recentOffsets[1]) - - addLiterals := func(s *seq, until int32) { - if until == nextEmit { - return - } - blk.literals = append(blk.literals, src[nextEmit:until]...) - s.litLen = uint32(until - nextEmit) - } - if debugEncoder { - println("recent offsets:", blk.recentOffsets) - } - -encodeLoop: - for { - // t will contain the match offset when we find one. - // When existing the search loop, we have already checked 4 bytes. - var t int32 - - // We will not use repeat offsets across blocks. - // By not using them for the first 3 matches - canRepeat := len(blk.sequences) > 2 - - for { - if debugAsserts && canRepeat && offset1 == 0 { - panic("offset0 was 0") - } - - nextHash := hashLen(cv, hashLog, tableFastHashLen) - nextHash2 := hashLen(cv>>8, hashLog, tableFastHashLen) - candidate := e.table[nextHash] - candidate2 := e.table[nextHash2] - repIndex := s - offset1 + 2 - - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - e.markShardDirty(nextHash) - e.table[nextHash2] = tableEntry{offset: s + e.cur + 1, val: uint32(cv >> 8)} - e.markShardDirty(nextHash2) - - if canRepeat && repIndex >= 0 && load3232(src, repIndex) == uint32(cv>>16) { - // Consider history as well. - var seq seq - length := 4 + e.matchlen(s+6, repIndex+4, src) - - seq.matchLen = uint32(length - zstdMinMatch) - - // We might be able to match backwards. - // Extend as long as we can. - start := s + 2 - // We end the search early, so we don't risk 0 literals - // and have to do special offset treatment. - startLimit := nextEmit + 1 - - sMin := s - e.maxMatchOff - if sMin < 0 { - sMin = 0 - } - for repIndex > sMin && start > startLimit && src[repIndex-1] == src[start-1] && seq.matchLen < maxMatchLength-zstdMinMatch { - repIndex-- - start-- - seq.matchLen++ - } - addLiterals(&seq, start) - - // rep 0 - seq.offset = 1 - if debugSequences { - println("repeat sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - s += length + 2 - nextEmit = s - if s >= sLimit { - if debugEncoder { - println("repeat ended", s, length) - - } - break encodeLoop - } - cv = load6432(src, s) - continue - } - coffset0 := s - (candidate.offset - e.cur) - coffset1 := s - (candidate2.offset - e.cur) + 1 - if coffset0 < e.maxMatchOff && uint32(cv) == candidate.val { - // found a regular match - t = candidate.offset - e.cur - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - break - } - - if coffset1 < e.maxMatchOff && uint32(cv>>8) == candidate2.val { - // found a regular match - t = candidate2.offset - e.cur - s++ - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - if debugAsserts && s-t > e.maxMatchOff { - panic("s - t >e.maxMatchOff") - } - if debugAsserts && t < 0 { - panic("t<0") - } - break - } - s += stepSize + ((s - nextEmit) >> (kSearchStrength - 1)) - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - } - // A 4-byte match has been found. We'll later see if more than 4 bytes. - offset2 = offset1 - offset1 = s - t - - if debugAsserts && s <= t { - panic(fmt.Sprintf("s (%d) <= t (%d)", s, t)) - } - - if debugAsserts && canRepeat && int(offset1) > len(src) { - panic("invalid offset") - } - - // Extend the 4-byte match as long as possible. - l := e.matchlen(s+4, t+4, src) + 4 - - // Extend backwards - tMin := s - e.maxMatchOff - if tMin < 0 { - tMin = 0 - } - for t > tMin && s > nextEmit && src[t-1] == src[s-1] && l < maxMatchLength { - s-- - t-- - l++ - } - - // Write our sequence. - var seq seq - seq.litLen = uint32(s - nextEmit) - seq.matchLen = uint32(l - zstdMinMatch) - if seq.litLen > 0 { - blk.literals = append(blk.literals, src[nextEmit:s]...) - } - // Don't use repeat offsets - seq.offset = uint32(s-t) + 3 - s += l - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - nextEmit = s - if s >= sLimit { - break encodeLoop - } - cv = load6432(src, s) - - // Check offset 2 - if o2 := s - offset2; canRepeat && load3232(src, o2) == uint32(cv) { - // We have at least 4 byte match. - // No need to check backwards. We come straight from a match - l := 4 + e.matchlen(s+4, o2+4, src) - - // Store this, since we have it. - nextHash := hashLen(cv, hashLog, tableFastHashLen) - e.table[nextHash] = tableEntry{offset: s + e.cur, val: uint32(cv)} - e.markShardDirty(nextHash) - seq.matchLen = uint32(l) - zstdMinMatch - seq.litLen = 0 - // Since litlen is always 0, this is offset 1. - seq.offset = 1 - s += l - nextEmit = s - if debugSequences { - println("sequence", seq, "next s:", s) - } - blk.sequences = append(blk.sequences, seq) - - // Swap offset 1 and 2. - offset1, offset2 = offset2, offset1 - if s >= sLimit { - break encodeLoop - } - // Prepare next loop. - cv = load6432(src, s) - } - } - - if int(nextEmit) < len(src) { - blk.literals = append(blk.literals, src[nextEmit:]...) - blk.extraLits = len(src) - int(nextEmit) - } - blk.recentOffsets[0] = uint32(offset1) - blk.recentOffsets[1] = uint32(offset2) - if debugEncoder { - println("returning, recent offsets:", blk.recentOffsets, "extra literals:", blk.extraLits) - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *fastEncoder) Reset(d *dict, singleBlock bool) { - e.resetBase(d, singleBlock) - if d != nil { - panic("fastEncoder: Reset with dict") - } -} - -// ResetDict will reset and set a dictionary if not nil -func (e *fastEncoderDict) Reset(d *dict, singleBlock bool) { - e.resetBase(d, singleBlock) - if d == nil { - return - } - - // Init or copy dict table - if len(e.dictTable) != len(e.table) || d.id != e.lastDictID { - if len(e.dictTable) != len(e.table) { - e.dictTable = make([]tableEntry, len(e.table)) - } - if true { - end := e.maxMatchOff + int32(len(d.content)) - 8 - for i := e.maxMatchOff; i < end; i += 2 { - const hashLog = tableBits - - cv := load6432(d.content, i-e.maxMatchOff) - nextHash := hashLen(cv, hashLog, tableFastHashLen) // 0 -> 6 - nextHash1 := hashLen(cv>>8, hashLog, tableFastHashLen) // 1 -> 7 - e.dictTable[nextHash] = tableEntry{ - val: uint32(cv), - offset: i, - } - e.dictTable[nextHash1] = tableEntry{ - val: uint32(cv >> 8), - offset: i + 1, - } - } - } - e.lastDictID = d.id - e.allDirty = true - } - - e.cur = e.maxMatchOff - dirtyShardCnt := 0 - if !e.allDirty { - for i := range e.tableShardDirty { - if e.tableShardDirty[i] { - dirtyShardCnt++ - } - } - } - - const shardCnt = tableShardCnt - const shardSize = tableShardSize - if e.allDirty || dirtyShardCnt > shardCnt*4/6 { - //copy(e.table[:], e.dictTable) - e.table = *(*[tableSize]tableEntry)(e.dictTable) - for i := range e.tableShardDirty { - e.tableShardDirty[i] = false - } - e.allDirty = false - return - } - for i := range e.tableShardDirty { - if !e.tableShardDirty[i] { - continue - } - - //copy(e.table[i*shardSize:(i+1)*shardSize], e.dictTable[i*shardSize:(i+1)*shardSize]) - *(*[shardSize]tableEntry)(e.table[i*shardSize:]) = *(*[shardSize]tableEntry)(e.dictTable[i*shardSize:]) - e.tableShardDirty[i] = false - } - e.allDirty = false -} - -func (e *fastEncoderDict) markAllShardsDirty() { - e.allDirty = true -} - -func (e *fastEncoderDict) markShardDirty(entryNum uint32) { - e.tableShardDirty[entryNum/tableShardSize] = true -} diff --git a/vendor/github.com/klauspost/compress/zstd/encoder.go b/vendor/github.com/klauspost/compress/zstd/encoder.go deleted file mode 100644 index 8f8223cd3a..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/encoder.go +++ /dev/null @@ -1,642 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "crypto/rand" - "errors" - "fmt" - "io" - "math" - rdebug "runtime/debug" - "sync" - - "github.com/klauspost/compress/zstd/internal/xxhash" -) - -// Encoder provides encoding to Zstandard. -// An Encoder can be used for either compressing a stream via the -// io.WriteCloser interface supported by the Encoder or as multiple independent -// tasks via the EncodeAll function. -// Smaller encodes are encouraged to use the EncodeAll function. -// Use NewWriter to create a new instance. -type Encoder struct { - o encoderOptions - encoders chan encoder - state encoderState - init sync.Once -} - -type encoder interface { - Encode(blk *blockEnc, src []byte) - EncodeNoHist(blk *blockEnc, src []byte) - Block() *blockEnc - CRC() *xxhash.Digest - AppendCRC([]byte) []byte - WindowSize(size int64) int32 - UseBlock(*blockEnc) - Reset(d *dict, singleBlock bool) -} - -type encoderState struct { - w io.Writer - filling []byte - current []byte - previous []byte - encoder encoder - writing *blockEnc - err error - writeErr error - nWritten int64 - nInput int64 - frameContentSize int64 - headerWritten bool - eofWritten bool - fullFrameWritten bool - - // This waitgroup indicates an encode is running. - wg sync.WaitGroup - // This waitgroup indicates we have a block encoding/writing. - wWg sync.WaitGroup -} - -// NewWriter will create a new Zstandard encoder. -// If the encoder will be used for encoding blocks a nil writer can be used. -func NewWriter(w io.Writer, opts ...EOption) (*Encoder, error) { - initPredefined() - var e Encoder - e.o.setDefault() - for _, o := range opts { - err := o(&e.o) - if err != nil { - return nil, err - } - } - if w != nil { - e.Reset(w) - } - return &e, nil -} - -func (e *Encoder) initialize() { - if e.o.concurrent == 0 { - e.o.setDefault() - } - e.encoders = make(chan encoder, e.o.concurrent) - for i := 0; i < e.o.concurrent; i++ { - enc := e.o.encoder() - e.encoders <- enc - } -} - -// Reset will re-initialize the writer and new writes will encode to the supplied writer -// as a new, independent stream. -func (e *Encoder) Reset(w io.Writer) { - s := &e.state - s.wg.Wait() - s.wWg.Wait() - if cap(s.filling) == 0 { - s.filling = make([]byte, 0, e.o.blockSize) - } - if e.o.concurrent > 1 { - if cap(s.current) == 0 { - s.current = make([]byte, 0, e.o.blockSize) - } - if cap(s.previous) == 0 { - s.previous = make([]byte, 0, e.o.blockSize) - } - s.current = s.current[:0] - s.previous = s.previous[:0] - if s.writing == nil { - s.writing = &blockEnc{lowMem: e.o.lowMem} - s.writing.init() - } - s.writing.initNewEncode() - } - if s.encoder == nil { - s.encoder = e.o.encoder() - } - s.filling = s.filling[:0] - s.encoder.Reset(e.o.dict, false) - s.headerWritten = false - s.eofWritten = false - s.fullFrameWritten = false - s.w = w - s.err = nil - s.nWritten = 0 - s.nInput = 0 - s.writeErr = nil - s.frameContentSize = 0 -} - -// ResetContentSize will reset and set a content size for the next stream. -// If the bytes written does not match the size given an error will be returned -// when calling Close(). -// This is removed when Reset is called. -// Sizes <= 0 results in no content size set. -func (e *Encoder) ResetContentSize(w io.Writer, size int64) { - e.Reset(w) - if size >= 0 { - e.state.frameContentSize = size - } -} - -// Write data to the encoder. -// Input data will be buffered and as the buffer fills up -// content will be compressed and written to the output. -// When done writing, use Close to flush the remaining output -// and write CRC if requested. -func (e *Encoder) Write(p []byte) (n int, err error) { - s := &e.state - if s.eofWritten { - return 0, ErrEncoderClosed - } - for len(p) > 0 { - if len(p)+len(s.filling) < e.o.blockSize { - if e.o.crc { - _, _ = s.encoder.CRC().Write(p) - } - s.filling = append(s.filling, p...) - return n + len(p), nil - } - add := p - if len(p)+len(s.filling) > e.o.blockSize { - add = add[:e.o.blockSize-len(s.filling)] - } - if e.o.crc { - _, _ = s.encoder.CRC().Write(add) - } - s.filling = append(s.filling, add...) - p = p[len(add):] - n += len(add) - if len(s.filling) < e.o.blockSize { - return n, nil - } - err := e.nextBlock(false) - if err != nil { - return n, err - } - if debugAsserts && len(s.filling) > 0 { - panic(len(s.filling)) - } - } - return n, nil -} - -// nextBlock will synchronize and start compressing input in e.state.filling. -// If an error has occurred during encoding it will be returned. -func (e *Encoder) nextBlock(final bool) error { - s := &e.state - // Wait for current block. - s.wg.Wait() - if s.err != nil { - return s.err - } - if len(s.filling) > e.o.blockSize { - return fmt.Errorf("block > maxStoreBlockSize") - } - if !s.headerWritten { - // If we have a single block encode, do a sync compression. - if final && len(s.filling) == 0 && !e.o.fullZero { - s.headerWritten = true - s.fullFrameWritten = true - s.eofWritten = true - return nil - } - if final && len(s.filling) > 0 { - s.current = e.encodeAll(s.encoder, s.filling, s.current[:0]) - var n2 int - n2, s.err = s.w.Write(s.current) - if s.err != nil { - return s.err - } - s.nWritten += int64(n2) - s.nInput += int64(len(s.filling)) - s.current = s.current[:0] - s.filling = s.filling[:0] - s.headerWritten = true - s.fullFrameWritten = true - s.eofWritten = true - return nil - } - - var tmp [maxHeaderSize]byte - fh := frameHeader{ - ContentSize: uint64(s.frameContentSize), - WindowSize: uint32(s.encoder.WindowSize(s.frameContentSize)), - SingleSegment: false, - Checksum: e.o.crc, - DictID: e.o.dict.ID(), - } - - dst := fh.appendTo(tmp[:0]) - s.headerWritten = true - s.wWg.Wait() - var n2 int - n2, s.err = s.w.Write(dst) - if s.err != nil { - return s.err - } - s.nWritten += int64(n2) - } - if s.eofWritten { - // Ensure we only write it once. - final = false - } - - if len(s.filling) == 0 { - // Final block, but no data. - if final { - enc := s.encoder - blk := enc.Block() - blk.reset(nil) - blk.last = true - blk.encodeRaw(nil) - s.wWg.Wait() - _, s.err = s.w.Write(blk.output) - s.nWritten += int64(len(blk.output)) - s.eofWritten = true - } - return s.err - } - - // SYNC: - if e.o.concurrent == 1 { - src := s.filling - s.nInput += int64(len(s.filling)) - if debugEncoder { - println("Adding sync block,", len(src), "bytes, final:", final) - } - enc := s.encoder - blk := enc.Block() - blk.reset(nil) - enc.Encode(blk, src) - blk.last = final - if final { - s.eofWritten = true - } - - s.err = blk.encode(src, e.o.noEntropy, !e.o.allLitEntropy) - if s.err != nil { - return s.err - } - _, s.err = s.w.Write(blk.output) - s.nWritten += int64(len(blk.output)) - s.filling = s.filling[:0] - return s.err - } - - // Move blocks forward. - s.filling, s.current, s.previous = s.previous[:0], s.filling, s.current - s.nInput += int64(len(s.current)) - s.wg.Add(1) - if final { - s.eofWritten = true - } - go func(src []byte) { - if debugEncoder { - println("Adding block,", len(src), "bytes, final:", final) - } - defer func() { - if r := recover(); r != nil { - s.err = fmt.Errorf("panic while encoding: %v", r) - rdebug.PrintStack() - } - s.wg.Done() - }() - enc := s.encoder - blk := enc.Block() - enc.Encode(blk, src) - blk.last = final - // Wait for pending writes. - s.wWg.Wait() - if s.writeErr != nil { - s.err = s.writeErr - return - } - // Transfer encoders from previous write block. - blk.swapEncoders(s.writing) - // Transfer recent offsets to next. - enc.UseBlock(s.writing) - s.writing = blk - s.wWg.Add(1) - go func() { - defer func() { - if r := recover(); r != nil { - s.writeErr = fmt.Errorf("panic while encoding/writing: %v", r) - rdebug.PrintStack() - } - s.wWg.Done() - }() - s.writeErr = blk.encode(src, e.o.noEntropy, !e.o.allLitEntropy) - if s.writeErr != nil { - return - } - _, s.writeErr = s.w.Write(blk.output) - s.nWritten += int64(len(blk.output)) - }() - }(s.current) - return nil -} - -// ReadFrom reads data from r until EOF or error. -// The return value n is the number of bytes read. -// Any error except io.EOF encountered during the read is also returned. -// -// The Copy function uses ReaderFrom if available. -func (e *Encoder) ReadFrom(r io.Reader) (n int64, err error) { - if debugEncoder { - println("Using ReadFrom") - } - - // Flush any current writes. - if len(e.state.filling) > 0 { - if err := e.nextBlock(false); err != nil { - return 0, err - } - } - e.state.filling = e.state.filling[:e.o.blockSize] - src := e.state.filling - for { - n2, err := r.Read(src) - if e.o.crc { - _, _ = e.state.encoder.CRC().Write(src[:n2]) - } - // src is now the unfilled part... - src = src[n2:] - n += int64(n2) - switch err { - case io.EOF: - e.state.filling = e.state.filling[:len(e.state.filling)-len(src)] - if debugEncoder { - println("ReadFrom: got EOF final block:", len(e.state.filling)) - } - return n, nil - case nil: - default: - if debugEncoder { - println("ReadFrom: got error:", err) - } - e.state.err = err - return n, err - } - if len(src) > 0 { - if debugEncoder { - println("ReadFrom: got space left in source:", len(src)) - } - continue - } - err = e.nextBlock(false) - if err != nil { - return n, err - } - e.state.filling = e.state.filling[:e.o.blockSize] - src = e.state.filling - } -} - -// Flush will send the currently written data to output -// and block until everything has been written. -// This should only be used on rare occasions where pushing the currently queued data is critical. -func (e *Encoder) Flush() error { - s := &e.state - if len(s.filling) > 0 { - err := e.nextBlock(false) - if err != nil { - // Ignore Flush after Close. - if errors.Is(s.err, ErrEncoderClosed) { - return nil - } - return err - } - } - s.wg.Wait() - s.wWg.Wait() - if s.err != nil { - // Ignore Flush after Close. - if errors.Is(s.err, ErrEncoderClosed) { - return nil - } - return s.err - } - return s.writeErr -} - -// Close will flush the final output and close the stream. -// The function will block until everything has been written. -// The Encoder can still be re-used after calling this. -func (e *Encoder) Close() error { - s := &e.state - if s.encoder == nil { - return nil - } - err := e.nextBlock(true) - if err != nil { - if errors.Is(s.err, ErrEncoderClosed) { - return nil - } - return err - } - if s.frameContentSize > 0 { - if s.nInput != s.frameContentSize { - return fmt.Errorf("frame content size %d given, but %d bytes was written", s.frameContentSize, s.nInput) - } - } - if e.state.fullFrameWritten { - return s.err - } - s.wg.Wait() - s.wWg.Wait() - - if s.err != nil { - return s.err - } - if s.writeErr != nil { - return s.writeErr - } - - // Write CRC - if e.o.crc && s.err == nil { - // heap alloc. - var tmp [4]byte - _, s.err = s.w.Write(s.encoder.AppendCRC(tmp[:0])) - s.nWritten += 4 - } - - // Add padding with content from crypto/rand.Reader - if s.err == nil && e.o.pad > 0 { - add := calcSkippableFrame(s.nWritten, int64(e.o.pad)) - frame, err := skippableFrame(s.filling[:0], add, rand.Reader) - if err != nil { - return err - } - _, s.err = s.w.Write(frame) - } - if s.err == nil { - s.err = ErrEncoderClosed - return nil - } - - return s.err -} - -// EncodeAll will encode all input in src and append it to dst. -// This function can be called concurrently, but each call will only run on a single goroutine. -// If empty input is given, nothing is returned, unless WithZeroFrames is specified. -// Encoded blocks can be concatenated and the result will be the combined input stream. -// Data compressed with EncodeAll can be decoded with the Decoder, -// using either a stream or DecodeAll. -func (e *Encoder) EncodeAll(src, dst []byte) []byte { - e.init.Do(e.initialize) - enc := <-e.encoders - defer func() { - e.encoders <- enc - }() - return e.encodeAll(enc, src, dst) -} - -func (e *Encoder) encodeAll(enc encoder, src, dst []byte) []byte { - if len(src) == 0 { - if e.o.fullZero { - // Add frame header. - fh := frameHeader{ - ContentSize: 0, - WindowSize: MinWindowSize, - SingleSegment: true, - // Adding a checksum would be a waste of space. - Checksum: false, - DictID: 0, - } - dst = fh.appendTo(dst) - - // Write raw block as last one only. - var blk blockHeader - blk.setSize(0) - blk.setType(blockTypeRaw) - blk.setLast(true) - dst = blk.appendTo(dst) - } - return dst - } - - // Use single segments when above minimum window and below window size. - single := len(src) <= e.o.windowSize && len(src) > MinWindowSize - if e.o.single != nil { - single = *e.o.single - } - fh := frameHeader{ - ContentSize: uint64(len(src)), - WindowSize: uint32(enc.WindowSize(int64(len(src)))), - SingleSegment: single, - Checksum: e.o.crc, - DictID: e.o.dict.ID(), - } - - // If less than 1MB, allocate a buffer up front. - if len(dst) == 0 && cap(dst) == 0 && len(src) < 1<<20 && !e.o.lowMem { - dst = make([]byte, 0, len(src)) - } - dst = fh.appendTo(dst) - - // If we can do everything in one block, prefer that. - if len(src) <= e.o.blockSize { - enc.Reset(e.o.dict, true) - // Slightly faster with no history and everything in one block. - if e.o.crc { - _, _ = enc.CRC().Write(src) - } - blk := enc.Block() - blk.last = true - if e.o.dict == nil { - enc.EncodeNoHist(blk, src) - } else { - enc.Encode(blk, src) - } - - // If we got the exact same number of literals as input, - // assume the literals cannot be compressed. - oldout := blk.output - // Output directly to dst - blk.output = dst - - err := blk.encode(src, e.o.noEntropy, !e.o.allLitEntropy) - if err != nil { - panic(err) - } - dst = blk.output - blk.output = oldout - } else { - enc.Reset(e.o.dict, false) - blk := enc.Block() - for len(src) > 0 { - todo := src - if len(todo) > e.o.blockSize { - todo = todo[:e.o.blockSize] - } - src = src[len(todo):] - if e.o.crc { - _, _ = enc.CRC().Write(todo) - } - blk.pushOffsets() - enc.Encode(blk, todo) - if len(src) == 0 { - blk.last = true - } - err := blk.encode(todo, e.o.noEntropy, !e.o.allLitEntropy) - if err != nil { - panic(err) - } - dst = append(dst, blk.output...) - blk.reset(nil) - } - } - if e.o.crc { - dst = enc.AppendCRC(dst) - } - // Add padding with content from crypto/rand.Reader - if e.o.pad > 0 { - add := calcSkippableFrame(int64(len(dst)), int64(e.o.pad)) - var err error - dst, err = skippableFrame(dst, add, rand.Reader) - if err != nil { - panic(err) - } - } - return dst -} - -// MaxEncodedSize returns the expected maximum -// size of an encoded block or stream. -func (e *Encoder) MaxEncodedSize(size int) int { - frameHeader := 4 + 2 // magic + frame header & window descriptor - if e.o.dict != nil { - frameHeader += 4 - } - // Frame content size: - if size < 256 { - frameHeader++ - } else if size < 65536+256 { - frameHeader += 2 - } else if size < math.MaxInt32 { - frameHeader += 4 - } else { - frameHeader += 8 - } - // Final crc - if e.o.crc { - frameHeader += 4 - } - - // Max overhead is 3 bytes/block. - // There cannot be 0 blocks. - blocks := (size + e.o.blockSize) / e.o.blockSize - - // Combine, add padding. - maxSz := frameHeader + 3*blocks + size - if e.o.pad > 1 { - maxSz += calcSkippableFrame(int64(maxSz), int64(e.o.pad)) - } - return maxSz -} diff --git a/vendor/github.com/klauspost/compress/zstd/encoder_options.go b/vendor/github.com/klauspost/compress/zstd/encoder_options.go deleted file mode 100644 index 20671dcb91..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/encoder_options.go +++ /dev/null @@ -1,339 +0,0 @@ -package zstd - -import ( - "errors" - "fmt" - "math" - "math/bits" - "runtime" - "strings" -) - -// EOption is an option for creating a encoder. -type EOption func(*encoderOptions) error - -// options retains accumulated state of multiple options. -type encoderOptions struct { - concurrent int - level EncoderLevel - single *bool - pad int - blockSize int - windowSize int - crc bool - fullZero bool - noEntropy bool - allLitEntropy bool - customWindow bool - customALEntropy bool - customBlockSize bool - lowMem bool - dict *dict -} - -func (o *encoderOptions) setDefault() { - *o = encoderOptions{ - concurrent: runtime.GOMAXPROCS(0), - crc: true, - single: nil, - blockSize: maxCompressedBlockSize, - windowSize: 8 << 20, - level: SpeedDefault, - allLitEntropy: false, - lowMem: false, - } -} - -// encoder returns an encoder with the selected options. -func (o encoderOptions) encoder() encoder { - switch o.level { - case SpeedFastest: - if o.dict != nil { - return &fastEncoderDict{fastEncoder: fastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}}} - } - return &fastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}} - - case SpeedDefault: - if o.dict != nil { - return &doubleFastEncoderDict{fastEncoderDict: fastEncoderDict{fastEncoder: fastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}}}} - } - return &doubleFastEncoder{fastEncoder: fastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}}} - case SpeedBetterCompression: - if o.dict != nil { - return &betterFastEncoderDict{betterFastEncoder: betterFastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}}} - } - return &betterFastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}} - case SpeedBestCompression: - return &bestFastEncoder{fastBase: fastBase{maxMatchOff: int32(o.windowSize), bufferReset: math.MaxInt32 - int32(o.windowSize*2), lowMem: o.lowMem}} - } - panic("unknown compression level") -} - -// WithEncoderCRC will add CRC value to output. -// Output will be 4 bytes larger. -func WithEncoderCRC(b bool) EOption { - return func(o *encoderOptions) error { o.crc = b; return nil } -} - -// WithEncoderConcurrency will set the concurrency, -// meaning the maximum number of encoders to run concurrently. -// The value supplied must be at least 1. -// For streams, setting a value of 1 will disable async compression. -// By default this will be set to GOMAXPROCS. -func WithEncoderConcurrency(n int) EOption { - return func(o *encoderOptions) error { - if n <= 0 { - return fmt.Errorf("concurrency must be at least 1") - } - o.concurrent = n - return nil - } -} - -// WithWindowSize will set the maximum allowed back-reference distance. -// The value must be a power of two between MinWindowSize and MaxWindowSize. -// A larger value will enable better compression but allocate more memory and, -// for above-default values, take considerably longer. -// The default value is determined by the compression level and max 8MB. -func WithWindowSize(n int) EOption { - return func(o *encoderOptions) error { - switch { - case n < MinWindowSize: - return fmt.Errorf("window size must be at least %d", MinWindowSize) - case n > MaxWindowSize: - return fmt.Errorf("window size must be at most %d", MaxWindowSize) - case (n & (n - 1)) != 0: - return errors.New("window size must be a power of 2") - } - - o.windowSize = n - o.customWindow = true - if o.blockSize > o.windowSize { - o.blockSize = o.windowSize - o.customBlockSize = true - } - return nil - } -} - -// WithEncoderPadding will add padding to all output so the size will be a multiple of n. -// This can be used to obfuscate the exact output size or make blocks of a certain size. -// The contents will be a skippable frame, so it will be invisible by the decoder. -// n must be > 0 and <= 1GB, 1<<30 bytes. -// The padded area will be filled with data from crypto/rand.Reader. -// If `EncodeAll` is used with data already in the destination, the total size will be multiple of this. -func WithEncoderPadding(n int) EOption { - return func(o *encoderOptions) error { - if n <= 0 { - return fmt.Errorf("padding must be at least 1") - } - // No need to waste our time. - if n == 1 { - n = 0 - } - if n > 1<<30 { - return fmt.Errorf("padding must less than 1GB (1<<30 bytes) ") - } - o.pad = n - return nil - } -} - -// EncoderLevel predefines encoder compression levels. -// Only use the constants made available, since the actual mapping -// of these values are very likely to change and your compression could change -// unpredictably when upgrading the library. -type EncoderLevel int - -const ( - speedNotSet EncoderLevel = iota - - // SpeedFastest will choose the fastest reasonable compression. - // This is roughly equivalent to the fastest Zstandard mode. - SpeedFastest - - // SpeedDefault is the default "pretty fast" compression option. - // This is roughly equivalent to the default Zstandard mode (level 3). - SpeedDefault - - // SpeedBetterCompression will yield better compression than the default. - // Currently it is about zstd level 7-8 with ~ 2x-3x the default CPU usage. - // By using this, notice that CPU usage may go up in the future. - SpeedBetterCompression - - // SpeedBestCompression will choose the best available compression option. - // This will offer the best compression no matter the CPU cost. - SpeedBestCompression - - // speedLast should be kept as the last actual compression option. - // The is not for external usage, but is used to keep track of the valid options. - speedLast -) - -// EncoderLevelFromString will convert a string representation of an encoding level back -// to a compression level. The compare is not case sensitive. -// If the string wasn't recognized, (false, SpeedDefault) will be returned. -func EncoderLevelFromString(s string) (bool, EncoderLevel) { - for l := speedNotSet + 1; l < speedLast; l++ { - if strings.EqualFold(s, l.String()) { - return true, l - } - } - return false, SpeedDefault -} - -// EncoderLevelFromZstd will return an encoder level that closest matches the compression -// ratio of a specific zstd compression level. -// Many input values will provide the same compression level. -func EncoderLevelFromZstd(level int) EncoderLevel { - switch { - case level < 3: - return SpeedFastest - case level >= 3 && level < 6: - return SpeedDefault - case level >= 6 && level < 10: - return SpeedBetterCompression - default: - return SpeedBestCompression - } -} - -// String provides a string representation of the compression level. -func (e EncoderLevel) String() string { - switch e { - case SpeedFastest: - return "fastest" - case SpeedDefault: - return "default" - case SpeedBetterCompression: - return "better" - case SpeedBestCompression: - return "best" - default: - return "invalid" - } -} - -// WithEncoderLevel specifies a predefined compression level. -func WithEncoderLevel(l EncoderLevel) EOption { - return func(o *encoderOptions) error { - switch { - case l <= speedNotSet || l >= speedLast: - return fmt.Errorf("unknown encoder level") - } - o.level = l - if !o.customWindow { - switch o.level { - case SpeedFastest: - o.windowSize = 4 << 20 - if !o.customBlockSize { - o.blockSize = 1 << 16 - } - case SpeedDefault: - o.windowSize = 8 << 20 - case SpeedBetterCompression: - o.windowSize = 8 << 20 - case SpeedBestCompression: - o.windowSize = 8 << 20 - } - } - if !o.customALEntropy { - o.allLitEntropy = l > SpeedDefault - } - - return nil - } -} - -// WithZeroFrames will encode 0 length input as full frames. -// This can be needed for compatibility with zstandard usage, -// but is not needed for this package. -func WithZeroFrames(b bool) EOption { - return func(o *encoderOptions) error { - o.fullZero = b - return nil - } -} - -// WithAllLitEntropyCompression will apply entropy compression if no matches are found. -// Disabling this will skip incompressible data faster, but in cases with no matches but -// skewed character distribution compression is lost. -// Default value depends on the compression level selected. -func WithAllLitEntropyCompression(b bool) EOption { - return func(o *encoderOptions) error { - o.customALEntropy = true - o.allLitEntropy = b - return nil - } -} - -// WithNoEntropyCompression will always skip entropy compression of literals. -// This can be useful if content has matches, but unlikely to benefit from entropy -// compression. Usually the slight speed improvement is not worth enabling this. -func WithNoEntropyCompression(b bool) EOption { - return func(o *encoderOptions) error { - o.noEntropy = b - return nil - } -} - -// WithSingleSegment will set the "single segment" flag when EncodeAll is used. -// If this flag is set, data must be regenerated within a single continuous memory segment. -// In this case, Window_Descriptor byte is skipped, but Frame_Content_Size is necessarily present. -// As a consequence, the decoder must allocate a memory segment of size equal or larger than size of your content. -// In order to preserve the decoder from unreasonable memory requirements, -// a decoder is allowed to reject a compressed frame which requests a memory size beyond decoder's authorized range. -// For broader compatibility, decoders are recommended to support memory sizes of at least 8 MB. -// This is only a recommendation, each decoder is free to support higher or lower limits, depending on local limitations. -// If this is not specified, block encodes will automatically choose this based on the input size and the window size. -// This setting has no effect on streamed encodes. -func WithSingleSegment(b bool) EOption { - return func(o *encoderOptions) error { - o.single = &b - return nil - } -} - -// WithLowerEncoderMem will trade in some memory cases trade less memory usage for -// slower encoding speed. -// This will not change the window size which is the primary function for reducing -// memory usage. See WithWindowSize. -func WithLowerEncoderMem(b bool) EOption { - return func(o *encoderOptions) error { - o.lowMem = b - return nil - } -} - -// WithEncoderDict allows to register a dictionary that will be used for the encode. -// -// The slice dict must be in the [dictionary format] produced by -// "zstd --train" from the Zstandard reference implementation. -// -// The encoder *may* choose to use no dictionary instead for certain payloads. -// -// [dictionary format]: https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary-format -func WithEncoderDict(dict []byte) EOption { - return func(o *encoderOptions) error { - d, err := loadDict(dict) - if err != nil { - return err - } - o.dict = d - return nil - } -} - -// WithEncoderDictRaw registers a dictionary that may be used by the encoder. -// -// The slice content may contain arbitrary data. It will be used as an initial -// history. -func WithEncoderDictRaw(id uint32, content []byte) EOption { - return func(o *encoderOptions) error { - if bits.UintSize > 32 && uint(len(content)) > dictMaxLength { - return fmt.Errorf("dictionary of size %d > 2GiB too large", len(content)) - } - o.dict = &dict{id: id, content: content, offsets: [3]int{1, 4, 8}} - return nil - } -} diff --git a/vendor/github.com/klauspost/compress/zstd/framedec.go b/vendor/github.com/klauspost/compress/zstd/framedec.go deleted file mode 100644 index e47af66e7c..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/framedec.go +++ /dev/null @@ -1,415 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "encoding/binary" - "encoding/hex" - "errors" - "io" - - "github.com/klauspost/compress/zstd/internal/xxhash" -) - -type frameDec struct { - o decoderOptions - crc *xxhash.Digest - - WindowSize uint64 - - // Frame history passed between blocks - history history - - rawInput byteBuffer - - // Byte buffer that can be reused for small input blocks. - bBuf byteBuf - - FrameContentSize uint64 - - DictionaryID uint32 - HasCheckSum bool - SingleSegment bool -} - -const ( - // MinWindowSize is the minimum Window Size, which is 1 KB. - MinWindowSize = 1 << 10 - - // MaxWindowSize is the maximum encoder window size - // and the default decoder maximum window size. - MaxWindowSize = 1 << 29 -) - -const ( - frameMagic = "\x28\xb5\x2f\xfd" - skippableFrameMagic = "\x2a\x4d\x18" -) - -func newFrameDec(o decoderOptions) *frameDec { - if o.maxWindowSize > o.maxDecodedSize { - o.maxWindowSize = o.maxDecodedSize - } - d := frameDec{ - o: o, - } - return &d -} - -// reset will read the frame header and prepare for block decoding. -// If nothing can be read from the input, io.EOF will be returned. -// Any other error indicated that the stream contained data, but -// there was a problem. -func (d *frameDec) reset(br byteBuffer) error { - d.HasCheckSum = false - d.WindowSize = 0 - var signature [4]byte - for { - var err error - // Check if we can read more... - b, err := br.readSmall(1) - switch err { - case io.EOF, io.ErrUnexpectedEOF: - return io.EOF - case nil: - signature[0] = b[0] - default: - return err - } - // Read the rest, don't allow io.ErrUnexpectedEOF - b, err = br.readSmall(3) - switch err { - case io.EOF: - return io.EOF - case nil: - copy(signature[1:], b) - default: - return err - } - - if string(signature[1:4]) != skippableFrameMagic || signature[0]&0xf0 != 0x50 { - if debugDecoder { - println("Not skippable", hex.EncodeToString(signature[:]), hex.EncodeToString([]byte(skippableFrameMagic))) - } - // Break if not skippable frame. - break - } - // Read size to skip - b, err = br.readSmall(4) - if err != nil { - if debugDecoder { - println("Reading Frame Size", err) - } - return err - } - n := uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24) - println("Skipping frame with", n, "bytes.") - err = br.skipN(int64(n)) - if err != nil { - if debugDecoder { - println("Reading discarded frame", err) - } - return err - } - } - if string(signature[:]) != frameMagic { - if debugDecoder { - println("Got magic numbers: ", signature, "want:", []byte(frameMagic)) - } - return ErrMagicMismatch - } - - // Read Frame_Header_Descriptor - fhd, err := br.readByte() - if err != nil { - if debugDecoder { - println("Reading Frame_Header_Descriptor", err) - } - return err - } - d.SingleSegment = fhd&(1<<5) != 0 - - if fhd&(1<<3) != 0 { - return errors.New("reserved bit set on frame header") - } - - // Read Window_Descriptor - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#window_descriptor - d.WindowSize = 0 - if !d.SingleSegment { - wd, err := br.readByte() - if err != nil { - if debugDecoder { - println("Reading Window_Descriptor", err) - } - return err - } - if debugDecoder { - printf("raw: %x, mantissa: %d, exponent: %d\n", wd, wd&7, wd>>3) - } - windowLog := 10 + (wd >> 3) - windowBase := uint64(1) << windowLog - windowAdd := (windowBase / 8) * uint64(wd&0x7) - d.WindowSize = windowBase + windowAdd - } - - // Read Dictionary_ID - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#dictionary_id - d.DictionaryID = 0 - if size := fhd & 3; size != 0 { - if size == 3 { - size = 4 - } - - b, err := br.readSmall(int(size)) - if err != nil { - println("Reading Dictionary_ID", err) - return err - } - var id uint32 - switch len(b) { - case 1: - id = uint32(b[0]) - case 2: - id = uint32(b[0]) | (uint32(b[1]) << 8) - case 4: - id = uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24) - } - if debugDecoder { - println("Dict size", size, "ID:", id) - } - d.DictionaryID = id - } - - // Read Frame_Content_Size - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#frame_content_size - var fcsSize int - v := fhd >> 6 - switch v { - case 0: - if d.SingleSegment { - fcsSize = 1 - } - default: - fcsSize = 1 << v - } - d.FrameContentSize = fcsUnknown - if fcsSize > 0 { - b, err := br.readSmall(fcsSize) - if err != nil { - println("Reading Frame content", err) - return err - } - switch len(b) { - case 1: - d.FrameContentSize = uint64(b[0]) - case 2: - // When FCS_Field_Size is 2, the offset of 256 is added. - d.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) + 256 - case 4: - d.FrameContentSize = uint64(b[0]) | (uint64(b[1]) << 8) | (uint64(b[2]) << 16) | (uint64(b[3]) << 24) - case 8: - d1 := uint32(b[0]) | (uint32(b[1]) << 8) | (uint32(b[2]) << 16) | (uint32(b[3]) << 24) - d2 := uint32(b[4]) | (uint32(b[5]) << 8) | (uint32(b[6]) << 16) | (uint32(b[7]) << 24) - d.FrameContentSize = uint64(d1) | (uint64(d2) << 32) - } - if debugDecoder { - println("Read FCS:", d.FrameContentSize) - } - } - - // Move this to shared. - d.HasCheckSum = fhd&(1<<2) != 0 - if d.HasCheckSum { - if d.crc == nil { - d.crc = xxhash.New() - } - d.crc.Reset() - } - - if d.WindowSize > d.o.maxWindowSize { - if debugDecoder { - printf("window size %d > max %d\n", d.WindowSize, d.o.maxWindowSize) - } - return ErrWindowSizeExceeded - } - - if d.WindowSize == 0 && d.SingleSegment { - // We may not need window in this case. - d.WindowSize = d.FrameContentSize - if d.WindowSize < MinWindowSize { - d.WindowSize = MinWindowSize - } - if d.WindowSize > d.o.maxDecodedSize { - if debugDecoder { - printf("window size %d > max %d\n", d.WindowSize, d.o.maxWindowSize) - } - return ErrDecoderSizeExceeded - } - } - - // The minimum Window_Size is 1 KB. - if d.WindowSize < MinWindowSize { - if debugDecoder { - println("got window size: ", d.WindowSize) - } - return ErrWindowSizeTooSmall - } - d.history.windowSize = int(d.WindowSize) - if !d.o.lowMem || d.history.windowSize < maxBlockSize { - // Alloc 2x window size if not low-mem, or window size below 2MB. - d.history.allocFrameBuffer = d.history.windowSize * 2 - } else { - if d.o.lowMem { - // Alloc with 1MB extra. - d.history.allocFrameBuffer = d.history.windowSize + maxBlockSize/2 - } else { - // Alloc with 2MB extra. - d.history.allocFrameBuffer = d.history.windowSize + maxBlockSize - } - } - - if debugDecoder { - println("Frame: Dict:", d.DictionaryID, "FrameContentSize:", d.FrameContentSize, "singleseg:", d.SingleSegment, "window:", d.WindowSize, "crc:", d.HasCheckSum) - } - - // history contains input - maybe we do something - d.rawInput = br - return nil -} - -// next will start decoding the next block from stream. -func (d *frameDec) next(block *blockDec) error { - if debugDecoder { - println("decoding new block") - } - err := block.reset(d.rawInput, d.WindowSize) - if err != nil { - println("block error:", err) - // Signal the frame decoder we have a problem. - block.sendErr(err) - return err - } - return nil -} - -// checkCRC will check the checksum, assuming the frame has one. -// Will return ErrCRCMismatch if crc check failed, otherwise nil. -func (d *frameDec) checkCRC() error { - // We can overwrite upper tmp now - buf, err := d.rawInput.readSmall(4) - if err != nil { - println("CRC missing?", err) - return err - } - - want := binary.LittleEndian.Uint32(buf[:4]) - got := uint32(d.crc.Sum64()) - - if got != want { - if debugDecoder { - printf("CRC check failed: got %08x, want %08x\n", got, want) - } - return ErrCRCMismatch - } - if debugDecoder { - printf("CRC ok %08x\n", got) - } - return nil -} - -// consumeCRC skips over the checksum, assuming the frame has one. -func (d *frameDec) consumeCRC() error { - _, err := d.rawInput.readSmall(4) - if err != nil { - println("CRC missing?", err) - } - return err -} - -// runDecoder will run the decoder for the remainder of the frame. -func (d *frameDec) runDecoder(dst []byte, dec *blockDec) ([]byte, error) { - saved := d.history.b - - // We use the history for output to avoid copying it. - d.history.b = dst - d.history.ignoreBuffer = len(dst) - // Store input length, so we only check new data. - crcStart := len(dst) - d.history.decoders.maxSyncLen = 0 - if d.o.limitToCap { - d.history.decoders.maxSyncLen = uint64(cap(dst) - len(dst)) - } - if d.FrameContentSize != fcsUnknown { - if !d.o.limitToCap || d.FrameContentSize+uint64(len(dst)) < d.history.decoders.maxSyncLen { - d.history.decoders.maxSyncLen = d.FrameContentSize + uint64(len(dst)) - } - if d.history.decoders.maxSyncLen > d.o.maxDecodedSize { - if debugDecoder { - println("maxSyncLen:", d.history.decoders.maxSyncLen, "> maxDecodedSize:", d.o.maxDecodedSize) - } - return dst, ErrDecoderSizeExceeded - } - if debugDecoder { - println("maxSyncLen:", d.history.decoders.maxSyncLen) - } - if !d.o.limitToCap && uint64(cap(dst)) < d.history.decoders.maxSyncLen { - // Alloc for output - dst2 := make([]byte, len(dst), d.history.decoders.maxSyncLen+compressedBlockOverAlloc) - copy(dst2, dst) - dst = dst2 - } - } - var err error - for { - err = dec.reset(d.rawInput, d.WindowSize) - if err != nil { - break - } - if debugDecoder { - println("next block:", dec) - } - err = dec.decodeBuf(&d.history) - if err != nil { - break - } - if uint64(len(d.history.b)-crcStart) > d.o.maxDecodedSize { - println("runDecoder: maxDecodedSize exceeded", uint64(len(d.history.b)-crcStart), ">", d.o.maxDecodedSize) - err = ErrDecoderSizeExceeded - break - } - if d.o.limitToCap && len(d.history.b) > cap(dst) { - println("runDecoder: cap exceeded", uint64(len(d.history.b)), ">", cap(dst)) - err = ErrDecoderSizeExceeded - break - } - if uint64(len(d.history.b)-crcStart) > d.FrameContentSize { - println("runDecoder: FrameContentSize exceeded", uint64(len(d.history.b)-crcStart), ">", d.FrameContentSize) - err = ErrFrameSizeExceeded - break - } - if dec.Last { - break - } - if debugDecoder { - println("runDecoder: FrameContentSize", uint64(len(d.history.b)-crcStart), "<=", d.FrameContentSize) - } - } - dst = d.history.b - if err == nil { - if d.FrameContentSize != fcsUnknown && uint64(len(d.history.b)-crcStart) != d.FrameContentSize { - err = ErrFrameSizeMismatch - } else if d.HasCheckSum { - if d.o.ignoreChecksum { - err = d.consumeCRC() - } else { - d.crc.Write(dst[crcStart:]) - err = d.checkCRC() - } - } - } - d.history.b = saved - return dst, err -} diff --git a/vendor/github.com/klauspost/compress/zstd/frameenc.go b/vendor/github.com/klauspost/compress/zstd/frameenc.go deleted file mode 100644 index 667ca06794..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/frameenc.go +++ /dev/null @@ -1,137 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "encoding/binary" - "fmt" - "io" - "math" - "math/bits" -) - -type frameHeader struct { - ContentSize uint64 - WindowSize uint32 - SingleSegment bool - Checksum bool - DictID uint32 -} - -const maxHeaderSize = 14 - -func (f frameHeader) appendTo(dst []byte) []byte { - dst = append(dst, frameMagic...) - var fhd uint8 - if f.Checksum { - fhd |= 1 << 2 - } - if f.SingleSegment { - fhd |= 1 << 5 - } - - var dictIDContent []byte - if f.DictID > 0 { - var tmp [4]byte - if f.DictID < 256 { - fhd |= 1 - tmp[0] = uint8(f.DictID) - dictIDContent = tmp[:1] - } else if f.DictID < 1<<16 { - fhd |= 2 - binary.LittleEndian.PutUint16(tmp[:2], uint16(f.DictID)) - dictIDContent = tmp[:2] - } else { - fhd |= 3 - binary.LittleEndian.PutUint32(tmp[:4], f.DictID) - dictIDContent = tmp[:4] - } - } - var fcs uint8 - if f.ContentSize >= 256 { - fcs++ - } - if f.ContentSize >= 65536+256 { - fcs++ - } - if f.ContentSize >= 0xffffffff { - fcs++ - } - - fhd |= fcs << 6 - - dst = append(dst, fhd) - if !f.SingleSegment { - const winLogMin = 10 - windowLog := (bits.Len32(f.WindowSize-1) - winLogMin) << 3 - dst = append(dst, uint8(windowLog)) - } - if f.DictID > 0 { - dst = append(dst, dictIDContent...) - } - switch fcs { - case 0: - if f.SingleSegment { - dst = append(dst, uint8(f.ContentSize)) - } - // Unless SingleSegment is set, framessizes < 256 are not stored. - case 1: - f.ContentSize -= 256 - dst = append(dst, uint8(f.ContentSize), uint8(f.ContentSize>>8)) - case 2: - dst = append(dst, uint8(f.ContentSize), uint8(f.ContentSize>>8), uint8(f.ContentSize>>16), uint8(f.ContentSize>>24)) - case 3: - dst = append(dst, uint8(f.ContentSize), uint8(f.ContentSize>>8), uint8(f.ContentSize>>16), uint8(f.ContentSize>>24), - uint8(f.ContentSize>>32), uint8(f.ContentSize>>40), uint8(f.ContentSize>>48), uint8(f.ContentSize>>56)) - default: - panic("invalid fcs") - } - return dst -} - -const skippableFrameHeader = 4 + 4 - -// calcSkippableFrame will return a total size to be added for written -// to be divisible by multiple. -// The value will always be > skippableFrameHeader. -// The function will panic if written < 0 or wantMultiple <= 0. -func calcSkippableFrame(written, wantMultiple int64) int { - if wantMultiple <= 0 { - panic("wantMultiple <= 0") - } - if written < 0 { - panic("written < 0") - } - leftOver := written % wantMultiple - if leftOver == 0 { - return 0 - } - toAdd := wantMultiple - leftOver - for toAdd < skippableFrameHeader { - toAdd += wantMultiple - } - return int(toAdd) -} - -// skippableFrame will add a skippable frame with a total size of bytes. -// total should be >= skippableFrameHeader and < math.MaxUint32. -func skippableFrame(dst []byte, total int, r io.Reader) ([]byte, error) { - if total == 0 { - return dst, nil - } - if total < skippableFrameHeader { - return dst, fmt.Errorf("requested skippable frame (%d) < 8", total) - } - if int64(total) > math.MaxUint32 { - return dst, fmt.Errorf("requested skippable frame (%d) > max uint32", total) - } - dst = append(dst, 0x50, 0x2a, 0x4d, 0x18) - f := uint32(total - skippableFrameHeader) - dst = append(dst, uint8(f), uint8(f>>8), uint8(f>>16), uint8(f>>24)) - start := len(dst) - dst = append(dst, make([]byte, f)...) - _, err := io.ReadFull(r, dst[start:]) - return dst, err -} diff --git a/vendor/github.com/klauspost/compress/zstd/fse_decoder.go b/vendor/github.com/klauspost/compress/zstd/fse_decoder.go deleted file mode 100644 index 2f8860a722..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_decoder.go +++ /dev/null @@ -1,307 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "encoding/binary" - "errors" - "fmt" - "io" -) - -const ( - tablelogAbsoluteMax = 9 -) - -const ( - /*!MEMORY_USAGE : - * Memory usage formula : N->2^N Bytes (examples : 10 -> 1KB; 12 -> 4KB ; 16 -> 64KB; 20 -> 1MB; etc.) - * Increasing memory usage improves compression ratio - * Reduced memory usage can improve speed, due to cache effect - * Recommended max value is 14, for 16KB, which nicely fits into Intel x86 L1 cache */ - maxMemoryUsage = tablelogAbsoluteMax + 2 - - maxTableLog = maxMemoryUsage - 2 - maxTablesize = 1 << maxTableLog - maxTableMask = (1 << maxTableLog) - 1 - minTablelog = 5 - maxSymbolValue = 255 -) - -// fseDecoder provides temporary storage for compression and decompression. -type fseDecoder struct { - dt [maxTablesize]decSymbol // Decompression table. - symbolLen uint16 // Length of active part of the symbol table. - actualTableLog uint8 // Selected tablelog. - maxBits uint8 // Maximum number of additional bits - - // used for table creation to avoid allocations. - stateTable [256]uint16 - norm [maxSymbolValue + 1]int16 - preDefined bool -} - -// tableStep returns the next table index. -func tableStep(tableSize uint32) uint32 { - return (tableSize >> 1) + (tableSize >> 3) + 3 -} - -// readNCount will read the symbol distribution so decoding tables can be constructed. -func (s *fseDecoder) readNCount(b *byteReader, maxSymbol uint16) error { - var ( - charnum uint16 - previous0 bool - ) - if b.remain() < 4 { - return errors.New("input too small") - } - bitStream := b.Uint32NC() - nbBits := uint((bitStream & 0xF) + minTablelog) // extract tableLog - if nbBits > tablelogAbsoluteMax { - println("Invalid tablelog:", nbBits) - return errors.New("tableLog too large") - } - bitStream >>= 4 - bitCount := uint(4) - - s.actualTableLog = uint8(nbBits) - remaining := int32((1 << nbBits) + 1) - threshold := int32(1 << nbBits) - gotTotal := int32(0) - nbBits++ - - for remaining > 1 && charnum <= maxSymbol { - if previous0 { - //println("prev0") - n0 := charnum - for (bitStream & 0xFFFF) == 0xFFFF { - //println("24 x 0") - n0 += 24 - if r := b.remain(); r > 5 { - b.advance(2) - // The check above should make sure we can read 32 bits - bitStream = b.Uint32NC() >> bitCount - } else { - // end of bit stream - bitStream >>= 16 - bitCount += 16 - } - } - //printf("bitstream: %d, 0b%b", bitStream&3, bitStream) - for (bitStream & 3) == 3 { - n0 += 3 - bitStream >>= 2 - bitCount += 2 - } - n0 += uint16(bitStream & 3) - bitCount += 2 - - if n0 > maxSymbolValue { - return errors.New("maxSymbolValue too small") - } - //println("inserting ", n0-charnum, "zeroes from idx", charnum, "ending before", n0) - for charnum < n0 { - s.norm[uint8(charnum)] = 0 - charnum++ - } - - if r := b.remain(); r >= 7 || r-int(bitCount>>3) >= 4 { - b.advance(bitCount >> 3) - bitCount &= 7 - // The check above should make sure we can read 32 bits - bitStream = b.Uint32NC() >> bitCount - } else { - bitStream >>= 2 - } - } - - max := (2*threshold - 1) - remaining - var count int32 - - if int32(bitStream)&(threshold-1) < max { - count = int32(bitStream) & (threshold - 1) - if debugAsserts && nbBits < 1 { - panic("nbBits underflow") - } - bitCount += nbBits - 1 - } else { - count = int32(bitStream) & (2*threshold - 1) - if count >= threshold { - count -= max - } - bitCount += nbBits - } - - // extra accuracy - count-- - if count < 0 { - // -1 means +1 - remaining += count - gotTotal -= count - } else { - remaining -= count - gotTotal += count - } - s.norm[charnum&0xff] = int16(count) - charnum++ - previous0 = count == 0 - for remaining < threshold { - nbBits-- - threshold >>= 1 - } - - if r := b.remain(); r >= 7 || r-int(bitCount>>3) >= 4 { - b.advance(bitCount >> 3) - bitCount &= 7 - // The check above should make sure we can read 32 bits - bitStream = b.Uint32NC() >> (bitCount & 31) - } else { - bitCount -= (uint)(8 * (len(b.b) - 4 - b.off)) - b.off = len(b.b) - 4 - bitStream = b.Uint32() >> (bitCount & 31) - } - } - s.symbolLen = charnum - if s.symbolLen <= 1 { - return fmt.Errorf("symbolLen (%d) too small", s.symbolLen) - } - if s.symbolLen > maxSymbolValue+1 { - return fmt.Errorf("symbolLen (%d) too big", s.symbolLen) - } - if remaining != 1 { - return fmt.Errorf("corruption detected (remaining %d != 1)", remaining) - } - if bitCount > 32 { - return fmt.Errorf("corruption detected (bitCount %d > 32)", bitCount) - } - if gotTotal != 1<> 3) - return s.buildDtable() -} - -func (s *fseDecoder) mustReadFrom(r io.Reader) { - fatalErr := func(err error) { - if err != nil { - panic(err) - } - } - // dt [maxTablesize]decSymbol // Decompression table. - // symbolLen uint16 // Length of active part of the symbol table. - // actualTableLog uint8 // Selected tablelog. - // maxBits uint8 // Maximum number of additional bits - // // used for table creation to avoid allocations. - // stateTable [256]uint16 - // norm [maxSymbolValue + 1]int16 - // preDefined bool - fatalErr(binary.Read(r, binary.LittleEndian, &s.dt)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.symbolLen)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.actualTableLog)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.maxBits)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.stateTable)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.norm)) - fatalErr(binary.Read(r, binary.LittleEndian, &s.preDefined)) -} - -// decSymbol contains information about a state entry, -// Including the state offset base, the output symbol and -// the number of bits to read for the low part of the destination state. -// Using a composite uint64 is faster than a struct with separate members. -type decSymbol uint64 - -func newDecSymbol(nbits, addBits uint8, newState uint16, baseline uint32) decSymbol { - return decSymbol(nbits) | (decSymbol(addBits) << 8) | (decSymbol(newState) << 16) | (decSymbol(baseline) << 32) -} - -func (d decSymbol) nbBits() uint8 { - return uint8(d) -} - -func (d decSymbol) addBits() uint8 { - return uint8(d >> 8) -} - -func (d decSymbol) newState() uint16 { - return uint16(d >> 16) -} - -func (d decSymbol) baselineInt() int { - return int(d >> 32) -} - -func (d *decSymbol) setNBits(nBits uint8) { - const mask = 0xffffffffffffff00 - *d = (*d & mask) | decSymbol(nBits) -} - -func (d *decSymbol) setAddBits(addBits uint8) { - const mask = 0xffffffffffff00ff - *d = (*d & mask) | (decSymbol(addBits) << 8) -} - -func (d *decSymbol) setNewState(state uint16) { - const mask = 0xffffffff0000ffff - *d = (*d & mask) | decSymbol(state)<<16 -} - -func (d *decSymbol) setExt(addBits uint8, baseline uint32) { - const mask = 0xffff00ff - *d = (*d & mask) | (decSymbol(addBits) << 8) | (decSymbol(baseline) << 32) -} - -// decSymbolValue returns the transformed decSymbol for the given symbol. -func decSymbolValue(symb uint8, t []baseOffset) (decSymbol, error) { - if int(symb) >= len(t) { - return 0, fmt.Errorf("rle symbol %d >= max %d", symb, len(t)) - } - lu := t[symb] - return newDecSymbol(0, lu.addBits, 0, lu.baseLine), nil -} - -// setRLE will set the decoder til RLE mode. -func (s *fseDecoder) setRLE(symbol decSymbol) { - s.actualTableLog = 0 - s.maxBits = symbol.addBits() - s.dt[0] = symbol -} - -// transform will transform the decoder table into a table usable for -// decoding without having to apply the transformation while decoding. -// The state will contain the base value and the number of bits to read. -func (s *fseDecoder) transform(t []baseOffset) error { - tableSize := uint16(1 << s.actualTableLog) - s.maxBits = 0 - for i, v := range s.dt[:tableSize] { - add := v.addBits() - if int(add) >= len(t) { - return fmt.Errorf("invalid decoding table entry %d, symbol %d >= max (%d)", i, v.addBits(), len(t)) - } - lu := t[add] - if lu.addBits > s.maxBits { - s.maxBits = lu.addBits - } - v.setExt(lu.addBits, lu.baseLine) - s.dt[i] = v - } - return nil -} - -type fseState struct { - dt []decSymbol - state decSymbol -} - -// Initialize and decodeAsync first state and symbol. -func (s *fseState) init(br *bitReader, tableLog uint8, dt []decSymbol) { - s.dt = dt - br.fill() - s.state = dt[br.getBits(tableLog)] -} - -// final returns the current state symbol without decoding the next. -func (s decSymbol) final() (int, uint8) { - return s.baselineInt(), s.addBits() -} diff --git a/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.go b/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.go deleted file mode 100644 index d04a829b0a..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.go +++ /dev/null @@ -1,65 +0,0 @@ -//go:build amd64 && !appengine && !noasm && gc -// +build amd64,!appengine,!noasm,gc - -package zstd - -import ( - "fmt" -) - -type buildDtableAsmContext struct { - // inputs - stateTable *uint16 - norm *int16 - dt *uint64 - - // outputs --- set by the procedure in the case of error; - // for interpretation please see the error handling part below - errParam1 uint64 - errParam2 uint64 -} - -// buildDtable_asm is an x86 assembly implementation of fseDecoder.buildDtable. -// Function returns non-zero exit code on error. -// -//go:noescape -func buildDtable_asm(s *fseDecoder, ctx *buildDtableAsmContext) int - -// please keep in sync with _generate/gen_fse.go -const ( - errorCorruptedNormalizedCounter = 1 - errorNewStateTooBig = 2 - errorNewStateNoBits = 3 -) - -// buildDtable will build the decoding table. -func (s *fseDecoder) buildDtable() error { - ctx := buildDtableAsmContext{ - stateTable: &s.stateTable[0], - norm: &s.norm[0], - dt: (*uint64)(&s.dt[0]), - } - code := buildDtable_asm(s, &ctx) - - if code != 0 { - switch code { - case errorCorruptedNormalizedCounter: - position := ctx.errParam1 - return fmt.Errorf("corrupted input (position=%d, expected 0)", position) - - case errorNewStateTooBig: - newState := decSymbol(ctx.errParam1) - size := ctx.errParam2 - return fmt.Errorf("newState (%d) outside table size (%d)", newState, size) - - case errorNewStateNoBits: - newState := decSymbol(ctx.errParam1) - oldState := decSymbol(ctx.errParam2) - return fmt.Errorf("newState (%d) == oldState (%d) and no bits", newState, oldState) - - default: - return fmt.Errorf("buildDtable_asm returned unhandled nonzero code = %d", code) - } - } - return nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.s b/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.s deleted file mode 100644 index bcde398695..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_decoder_amd64.s +++ /dev/null @@ -1,126 +0,0 @@ -// Code generated by command: go run gen_fse.go -out ../fse_decoder_amd64.s -pkg=zstd. DO NOT EDIT. - -//go:build !appengine && !noasm && gc && !noasm - -// func buildDtable_asm(s *fseDecoder, ctx *buildDtableAsmContext) int -TEXT ·buildDtable_asm(SB), $0-24 - MOVQ ctx+8(FP), CX - MOVQ s+0(FP), DI - - // Load values - MOVBQZX 4098(DI), DX - XORQ AX, AX - BTSQ DX, AX - MOVQ (CX), BX - MOVQ 16(CX), SI - LEAQ -1(AX), R8 - MOVQ 8(CX), CX - MOVWQZX 4096(DI), DI - - // End load values - // Init, lay down lowprob symbols - XORQ R9, R9 - JMP init_main_loop_condition - -init_main_loop: - MOVWQSX (CX)(R9*2), R10 - CMPW R10, $-1 - JNE do_not_update_high_threshold - MOVB R9, 1(SI)(R8*8) - DECQ R8 - MOVQ $0x0000000000000001, R10 - -do_not_update_high_threshold: - MOVW R10, (BX)(R9*2) - INCQ R9 - -init_main_loop_condition: - CMPQ R9, DI - JL init_main_loop - - // Spread symbols - // Calculate table step - MOVQ AX, R9 - SHRQ $0x01, R9 - MOVQ AX, R10 - SHRQ $0x03, R10 - LEAQ 3(R9)(R10*1), R9 - - // Fill add bits values - LEAQ -1(AX), R10 - XORQ R11, R11 - XORQ R12, R12 - JMP spread_main_loop_condition - -spread_main_loop: - XORQ R13, R13 - MOVWQSX (CX)(R12*2), R14 - JMP spread_inner_loop_condition - -spread_inner_loop: - MOVB R12, 1(SI)(R11*8) - -adjust_position: - ADDQ R9, R11 - ANDQ R10, R11 - CMPQ R11, R8 - JG adjust_position - INCQ R13 - -spread_inner_loop_condition: - CMPQ R13, R14 - JL spread_inner_loop - INCQ R12 - -spread_main_loop_condition: - CMPQ R12, DI - JL spread_main_loop - TESTQ R11, R11 - JZ spread_check_ok - MOVQ ctx+8(FP), AX - MOVQ R11, 24(AX) - MOVQ $+1, ret+16(FP) - RET - -spread_check_ok: - // Build Decoding table - XORQ DI, DI - -build_table_main_table: - MOVBQZX 1(SI)(DI*8), CX - MOVWQZX (BX)(CX*2), R8 - LEAQ 1(R8), R9 - MOVW R9, (BX)(CX*2) - MOVQ R8, R9 - BSRQ R9, R9 - MOVQ DX, CX - SUBQ R9, CX - SHLQ CL, R8 - SUBQ AX, R8 - MOVB CL, (SI)(DI*8) - MOVW R8, 2(SI)(DI*8) - CMPQ R8, AX - JLE build_table_check1_ok - MOVQ ctx+8(FP), CX - MOVQ R8, 24(CX) - MOVQ AX, 32(CX) - MOVQ $+2, ret+16(FP) - RET - -build_table_check1_ok: - TESTB CL, CL - JNZ build_table_check2_ok - CMPW R8, DI - JNE build_table_check2_ok - MOVQ ctx+8(FP), AX - MOVQ R8, 24(AX) - MOVQ DI, 32(AX) - MOVQ $+3, ret+16(FP) - RET - -build_table_check2_ok: - INCQ DI - CMPQ DI, AX - JL build_table_main_table - MOVQ $+0, ret+16(FP) - RET diff --git a/vendor/github.com/klauspost/compress/zstd/fse_decoder_generic.go b/vendor/github.com/klauspost/compress/zstd/fse_decoder_generic.go deleted file mode 100644 index 8adfebb029..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_decoder_generic.go +++ /dev/null @@ -1,73 +0,0 @@ -//go:build !amd64 || appengine || !gc || noasm -// +build !amd64 appengine !gc noasm - -package zstd - -import ( - "errors" - "fmt" -) - -// buildDtable will build the decoding table. -func (s *fseDecoder) buildDtable() error { - tableSize := uint32(1 << s.actualTableLog) - highThreshold := tableSize - 1 - symbolNext := s.stateTable[:256] - - // Init, lay down lowprob symbols - { - for i, v := range s.norm[:s.symbolLen] { - if v == -1 { - s.dt[highThreshold].setAddBits(uint8(i)) - highThreshold-- - v = 1 - } - symbolNext[i] = uint16(v) - } - } - - // Spread symbols - { - tableMask := tableSize - 1 - step := tableStep(tableSize) - position := uint32(0) - for ss, v := range s.norm[:s.symbolLen] { - for i := 0; i < int(v); i++ { - s.dt[position].setAddBits(uint8(ss)) - for { - // lowprob area - position = (position + step) & tableMask - if position <= highThreshold { - break - } - } - } - } - if position != 0 { - // position must reach all cells once, otherwise normalizedCounter is incorrect - return errors.New("corrupted input (position != 0)") - } - } - - // Build Decoding table - { - tableSize := uint16(1 << s.actualTableLog) - for u, v := range s.dt[:tableSize] { - symbol := v.addBits() - nextState := symbolNext[symbol] - symbolNext[symbol] = nextState + 1 - nBits := s.actualTableLog - byte(highBits(uint32(nextState))) - s.dt[u&maxTableMask].setNBits(nBits) - newState := (nextState << nBits) - tableSize - if newState > tableSize { - return fmt.Errorf("newState (%d) outside table size (%d)", newState, tableSize) - } - if newState == uint16(u) && nBits == 0 { - // Seems weird that this is possible with nbits > 0. - return fmt.Errorf("newState (%d) == oldState (%d) and no bits", newState, u) - } - s.dt[u&maxTableMask].setNewState(newState) - } - } - return nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/fse_encoder.go b/vendor/github.com/klauspost/compress/zstd/fse_encoder.go deleted file mode 100644 index ab26326a8f..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_encoder.go +++ /dev/null @@ -1,701 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "errors" - "fmt" - "math" -) - -const ( - // For encoding we only support up to - maxEncTableLog = 8 - maxEncTablesize = 1 << maxTableLog - maxEncTableMask = (1 << maxTableLog) - 1 - minEncTablelog = 5 - maxEncSymbolValue = maxMatchLengthSymbol -) - -// Scratch provides temporary storage for compression and decompression. -type fseEncoder struct { - symbolLen uint16 // Length of active part of the symbol table. - actualTableLog uint8 // Selected tablelog. - ct cTable // Compression tables. - maxCount int // count of the most probable symbol - zeroBits bool // no bits has prob > 50%. - clearCount bool // clear count - useRLE bool // This encoder is for RLE - preDefined bool // This encoder is predefined. - reUsed bool // Set to know when the encoder has been reused. - rleVal uint8 // RLE Symbol - maxBits uint8 // Maximum output bits after transform. - - // TODO: Technically zstd should be fine with 64 bytes. - count [256]uint32 - norm [256]int16 -} - -// cTable contains tables used for compression. -type cTable struct { - tableSymbol []byte - stateTable []uint16 - symbolTT []symbolTransform -} - -// symbolTransform contains the state transform for a symbol. -type symbolTransform struct { - deltaNbBits uint32 - deltaFindState int16 - outBits uint8 -} - -// String prints values as a human readable string. -func (s symbolTransform) String() string { - return fmt.Sprintf("{deltabits: %08x, findstate:%d outbits:%d}", s.deltaNbBits, s.deltaFindState, s.outBits) -} - -// Histogram allows to populate the histogram and skip that step in the compression, -// It otherwise allows to inspect the histogram when compression is done. -// To indicate that you have populated the histogram call HistogramFinished -// with the value of the highest populated symbol, as well as the number of entries -// in the most populated entry. These are accepted at face value. -func (s *fseEncoder) Histogram() *[256]uint32 { - return &s.count -} - -// HistogramFinished can be called to indicate that the histogram has been populated. -// maxSymbol is the index of the highest set symbol of the next data segment. -// maxCount is the number of entries in the most populated entry. -// These are accepted at face value. -func (s *fseEncoder) HistogramFinished(maxSymbol uint8, maxCount int) { - s.maxCount = maxCount - s.symbolLen = uint16(maxSymbol) + 1 - s.clearCount = maxCount != 0 -} - -// allocCtable will allocate tables needed for compression. -// If existing tables a re big enough, they are simply re-used. -func (s *fseEncoder) allocCtable() { - tableSize := 1 << s.actualTableLog - // get tableSymbol that is big enough. - if cap(s.ct.tableSymbol) < tableSize { - s.ct.tableSymbol = make([]byte, tableSize) - } - s.ct.tableSymbol = s.ct.tableSymbol[:tableSize] - - ctSize := tableSize - if cap(s.ct.stateTable) < ctSize { - s.ct.stateTable = make([]uint16, ctSize) - } - s.ct.stateTable = s.ct.stateTable[:ctSize] - - if cap(s.ct.symbolTT) < 256 { - s.ct.symbolTT = make([]symbolTransform, 256) - } - s.ct.symbolTT = s.ct.symbolTT[:256] -} - -// buildCTable will populate the compression table so it is ready to be used. -func (s *fseEncoder) buildCTable() error { - tableSize := uint32(1 << s.actualTableLog) - highThreshold := tableSize - 1 - var cumul [256]int16 - - s.allocCtable() - tableSymbol := s.ct.tableSymbol[:tableSize] - // symbol start positions - { - cumul[0] = 0 - for ui, v := range s.norm[:s.symbolLen-1] { - u := byte(ui) // one less than reference - if v == -1 { - // Low proba symbol - cumul[u+1] = cumul[u] + 1 - tableSymbol[highThreshold] = u - highThreshold-- - } else { - cumul[u+1] = cumul[u] + v - } - } - // Encode last symbol separately to avoid overflowing u - u := int(s.symbolLen - 1) - v := s.norm[s.symbolLen-1] - if v == -1 { - // Low proba symbol - cumul[u+1] = cumul[u] + 1 - tableSymbol[highThreshold] = byte(u) - highThreshold-- - } else { - cumul[u+1] = cumul[u] + v - } - if uint32(cumul[s.symbolLen]) != tableSize { - return fmt.Errorf("internal error: expected cumul[s.symbolLen] (%d) == tableSize (%d)", cumul[s.symbolLen], tableSize) - } - cumul[s.symbolLen] = int16(tableSize) + 1 - } - // Spread symbols - s.zeroBits = false - { - step := tableStep(tableSize) - tableMask := tableSize - 1 - var position uint32 - // if any symbol > largeLimit, we may have 0 bits output. - largeLimit := int16(1 << (s.actualTableLog - 1)) - for ui, v := range s.norm[:s.symbolLen] { - symbol := byte(ui) - if v > largeLimit { - s.zeroBits = true - } - for nbOccurrences := int16(0); nbOccurrences < v; nbOccurrences++ { - tableSymbol[position] = symbol - position = (position + step) & tableMask - for position > highThreshold { - position = (position + step) & tableMask - } /* Low proba area */ - } - } - - // Check if we have gone through all positions - if position != 0 { - return errors.New("position!=0") - } - } - - // Build table - table := s.ct.stateTable - { - tsi := int(tableSize) - for u, v := range tableSymbol { - // TableU16 : sorted by symbol order; gives next state value - table[cumul[v]] = uint16(tsi + u) - cumul[v]++ - } - } - - // Build Symbol Transformation Table - { - total := int16(0) - symbolTT := s.ct.symbolTT[:s.symbolLen] - tableLog := s.actualTableLog - tl := (uint32(tableLog) << 16) - (1 << tableLog) - for i, v := range s.norm[:s.symbolLen] { - switch v { - case 0: - case -1, 1: - symbolTT[i].deltaNbBits = tl - symbolTT[i].deltaFindState = total - 1 - total++ - default: - maxBitsOut := uint32(tableLog) - highBit(uint32(v-1)) - minStatePlus := uint32(v) << maxBitsOut - symbolTT[i].deltaNbBits = (maxBitsOut << 16) - minStatePlus - symbolTT[i].deltaFindState = total - v - total += v - } - } - if total != int16(tableSize) { - return fmt.Errorf("total mismatch %d (got) != %d (want)", total, tableSize) - } - } - return nil -} - -var rtbTable = [...]uint32{0, 473195, 504333, 520860, 550000, 700000, 750000, 830000} - -func (s *fseEncoder) setRLE(val byte) { - s.allocCtable() - s.actualTableLog = 0 - s.ct.stateTable = s.ct.stateTable[:1] - s.ct.symbolTT[val] = symbolTransform{ - deltaFindState: 0, - deltaNbBits: 0, - } - if debugEncoder { - println("setRLE: val", val, "symbolTT", s.ct.symbolTT[val]) - } - s.rleVal = val - s.useRLE = true -} - -// setBits will set output bits for the transform. -// if nil is provided, the number of bits is equal to the index. -func (s *fseEncoder) setBits(transform []byte) { - if s.reUsed || s.preDefined { - return - } - if s.useRLE { - if transform == nil { - s.ct.symbolTT[s.rleVal].outBits = s.rleVal - s.maxBits = s.rleVal - return - } - s.maxBits = transform[s.rleVal] - s.ct.symbolTT[s.rleVal].outBits = s.maxBits - return - } - if transform == nil { - for i := range s.ct.symbolTT[:s.symbolLen] { - s.ct.symbolTT[i].outBits = uint8(i) - } - s.maxBits = uint8(s.symbolLen - 1) - return - } - s.maxBits = 0 - for i, v := range transform[:s.symbolLen] { - s.ct.symbolTT[i].outBits = v - if v > s.maxBits { - // We could assume bits always going up, but we play safe. - s.maxBits = v - } - } -} - -// normalizeCount will normalize the count of the symbols so -// the total is equal to the table size. -// If successful, compression tables will also be made ready. -func (s *fseEncoder) normalizeCount(length int) error { - if s.reUsed { - return nil - } - s.optimalTableLog(length) - var ( - tableLog = s.actualTableLog - scale = 62 - uint64(tableLog) - step = (1 << 62) / uint64(length) - vStep = uint64(1) << (scale - 20) - stillToDistribute = int16(1 << tableLog) - largest int - largestP int16 - lowThreshold = (uint32)(length >> tableLog) - ) - if s.maxCount == length { - s.useRLE = true - return nil - } - s.useRLE = false - for i, cnt := range s.count[:s.symbolLen] { - // already handled - // if (count[s] == s.length) return 0; /* rle special case */ - - if cnt == 0 { - s.norm[i] = 0 - continue - } - if cnt <= lowThreshold { - s.norm[i] = -1 - stillToDistribute-- - } else { - proba := (int16)((uint64(cnt) * step) >> scale) - if proba < 8 { - restToBeat := vStep * uint64(rtbTable[proba]) - v := uint64(cnt)*step - (uint64(proba) << scale) - if v > restToBeat { - proba++ - } - } - if proba > largestP { - largestP = proba - largest = i - } - s.norm[i] = proba - stillToDistribute -= proba - } - } - - if -stillToDistribute >= (s.norm[largest] >> 1) { - // corner case, need another normalization method - err := s.normalizeCount2(length) - if err != nil { - return err - } - if debugAsserts { - err = s.validateNorm() - if err != nil { - return err - } - } - return s.buildCTable() - } - s.norm[largest] += stillToDistribute - if debugAsserts { - err := s.validateNorm() - if err != nil { - return err - } - } - return s.buildCTable() -} - -// Secondary normalization method. -// To be used when primary method fails. -func (s *fseEncoder) normalizeCount2(length int) error { - const notYetAssigned = -2 - var ( - distributed uint32 - total = uint32(length) - tableLog = s.actualTableLog - lowThreshold = total >> tableLog - lowOne = (total * 3) >> (tableLog + 1) - ) - for i, cnt := range s.count[:s.symbolLen] { - if cnt == 0 { - s.norm[i] = 0 - continue - } - if cnt <= lowThreshold { - s.norm[i] = -1 - distributed++ - total -= cnt - continue - } - if cnt <= lowOne { - s.norm[i] = 1 - distributed++ - total -= cnt - continue - } - s.norm[i] = notYetAssigned - } - toDistribute := (1 << tableLog) - distributed - - if (total / toDistribute) > lowOne { - // risk of rounding to zero - lowOne = (total * 3) / (toDistribute * 2) - for i, cnt := range s.count[:s.symbolLen] { - if (s.norm[i] == notYetAssigned) && (cnt <= lowOne) { - s.norm[i] = 1 - distributed++ - total -= cnt - continue - } - } - toDistribute = (1 << tableLog) - distributed - } - if distributed == uint32(s.symbolLen)+1 { - // all values are pretty poor; - // probably incompressible data (should have already been detected); - // find max, then give all remaining points to max - var maxV int - var maxC uint32 - for i, cnt := range s.count[:s.symbolLen] { - if cnt > maxC { - maxV = i - maxC = cnt - } - } - s.norm[maxV] += int16(toDistribute) - return nil - } - - if total == 0 { - // all of the symbols were low enough for the lowOne or lowThreshold - for i := uint32(0); toDistribute > 0; i = (i + 1) % (uint32(s.symbolLen)) { - if s.norm[i] > 0 { - toDistribute-- - s.norm[i]++ - } - } - return nil - } - - var ( - vStepLog = 62 - uint64(tableLog) - mid = uint64((1 << (vStepLog - 1)) - 1) - rStep = (((1 << vStepLog) * uint64(toDistribute)) + mid) / uint64(total) // scale on remaining - tmpTotal = mid - ) - for i, cnt := range s.count[:s.symbolLen] { - if s.norm[i] == notYetAssigned { - var ( - end = tmpTotal + uint64(cnt)*rStep - sStart = uint32(tmpTotal >> vStepLog) - sEnd = uint32(end >> vStepLog) - weight = sEnd - sStart - ) - if weight < 1 { - return errors.New("weight < 1") - } - s.norm[i] = int16(weight) - tmpTotal = end - } - } - return nil -} - -// optimalTableLog calculates and sets the optimal tableLog in s.actualTableLog -func (s *fseEncoder) optimalTableLog(length int) { - tableLog := uint8(maxEncTableLog) - minBitsSrc := highBit(uint32(length)) + 1 - minBitsSymbols := highBit(uint32(s.symbolLen-1)) + 2 - minBits := uint8(minBitsSymbols) - if minBitsSrc < minBitsSymbols { - minBits = uint8(minBitsSrc) - } - - maxBitsSrc := uint8(highBit(uint32(length-1))) - 2 - if maxBitsSrc < tableLog { - // Accuracy can be reduced - tableLog = maxBitsSrc - } - if minBits > tableLog { - tableLog = minBits - } - // Need a minimum to safely represent all symbol values - if tableLog < minEncTablelog { - tableLog = minEncTablelog - } - if tableLog > maxEncTableLog { - tableLog = maxEncTableLog - } - s.actualTableLog = tableLog -} - -// validateNorm validates the normalized histogram table. -func (s *fseEncoder) validateNorm() (err error) { - var total int - for _, v := range s.norm[:s.symbolLen] { - if v >= 0 { - total += int(v) - } else { - total -= int(v) - } - } - defer func() { - if err == nil { - return - } - fmt.Printf("selected TableLog: %d, Symbol length: %d\n", s.actualTableLog, s.symbolLen) - for i, v := range s.norm[:s.symbolLen] { - fmt.Printf("%3d: %5d -> %4d \n", i, s.count[i], v) - } - }() - if total != (1 << s.actualTableLog) { - return fmt.Errorf("warning: Total == %d != %d", total, 1<> 3) + 3 + 2 - - // Write Table Size - bitStream = uint32(tableLog - minEncTablelog) - bitCount = uint(4) - remaining = int16(tableSize + 1) /* +1 for extra accuracy */ - threshold = int16(tableSize) - nbBits = uint(tableLog + 1) - outP = len(out) - ) - if cap(out) < outP+maxHeaderSize { - out = append(out, make([]byte, maxHeaderSize*3)...) - out = out[:len(out)-maxHeaderSize*3] - } - out = out[:outP+maxHeaderSize] - - // stops at 1 - for remaining > 1 { - if previous0 { - start := charnum - for s.norm[charnum] == 0 { - charnum++ - } - for charnum >= start+24 { - start += 24 - bitStream += uint32(0xFFFF) << bitCount - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - } - for charnum >= start+3 { - start += 3 - bitStream += 3 << bitCount - bitCount += 2 - } - bitStream += uint32(charnum-start) << bitCount - bitCount += 2 - if bitCount > 16 { - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - bitCount -= 16 - } - } - - count := s.norm[charnum] - charnum++ - max := (2*threshold - 1) - remaining - if count < 0 { - remaining += count - } else { - remaining -= count - } - count++ // +1 for extra accuracy - if count >= threshold { - count += max // [0..max[ [max..threshold[ (...) [threshold+max 2*threshold[ - } - bitStream += uint32(count) << bitCount - bitCount += nbBits - if count < max { - bitCount-- - } - - previous0 = count == 1 - if remaining < 1 { - return nil, errors.New("internal error: remaining < 1") - } - for remaining < threshold { - nbBits-- - threshold >>= 1 - } - - if bitCount > 16 { - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += 2 - bitStream >>= 16 - bitCount -= 16 - } - } - - if outP+2 > len(out) { - return nil, fmt.Errorf("internal error: %d > %d, maxheader: %d, sl: %d, tl: %d, normcount: %v", outP+2, len(out), maxHeaderSize, s.symbolLen, int(tableLog), s.norm[:s.symbolLen]) - } - out[outP] = byte(bitStream) - out[outP+1] = byte(bitStream >> 8) - outP += int((bitCount + 7) / 8) - - if charnum > s.symbolLen { - return nil, errors.New("internal error: charnum > s.symbolLen") - } - return out[:outP], nil -} - -// Approximate symbol cost, as fractional value, using fixed-point format (accuracyLog fractional bits) -// note 1 : assume symbolValue is valid (<= maxSymbolValue) -// note 2 : if freq[symbolValue]==0, @return a fake cost of tableLog+1 bits * -func (s *fseEncoder) bitCost(symbolValue uint8, accuracyLog uint32) uint32 { - minNbBits := s.ct.symbolTT[symbolValue].deltaNbBits >> 16 - threshold := (minNbBits + 1) << 16 - if debugAsserts { - if !(s.actualTableLog < 16) { - panic("!s.actualTableLog < 16") - } - // ensure enough room for renormalization double shift - if !(uint8(accuracyLog) < 31-s.actualTableLog) { - panic("!uint8(accuracyLog) < 31-s.actualTableLog") - } - } - tableSize := uint32(1) << s.actualTableLog - deltaFromThreshold := threshold - (s.ct.symbolTT[symbolValue].deltaNbBits + tableSize) - // linear interpolation (very approximate) - normalizedDeltaFromThreshold := (deltaFromThreshold << accuracyLog) >> s.actualTableLog - bitMultiplier := uint32(1) << accuracyLog - if debugAsserts { - if s.ct.symbolTT[symbolValue].deltaNbBits+tableSize > threshold { - panic("s.ct.symbolTT[symbolValue].deltaNbBits+tableSize > threshold") - } - if normalizedDeltaFromThreshold > bitMultiplier { - panic("normalizedDeltaFromThreshold > bitMultiplier") - } - } - return (minNbBits+1)*bitMultiplier - normalizedDeltaFromThreshold -} - -// Returns the cost in bits of encoding the distribution in count using ctable. -// Histogram should only be up to the last non-zero symbol. -// Returns an -1 if ctable cannot represent all the symbols in count. -func (s *fseEncoder) approxSize(hist []uint32) uint32 { - if int(s.symbolLen) < len(hist) { - // More symbols than we have. - return math.MaxUint32 - } - if s.useRLE { - // We will never reuse RLE encoders. - return math.MaxUint32 - } - const kAccuracyLog = 8 - badCost := (uint32(s.actualTableLog) + 1) << kAccuracyLog - var cost uint32 - for i, v := range hist { - if v == 0 { - continue - } - if s.norm[i] == 0 { - return math.MaxUint32 - } - bitCost := s.bitCost(uint8(i), kAccuracyLog) - if bitCost > badCost { - return math.MaxUint32 - } - cost += v * bitCost - } - return cost >> kAccuracyLog -} - -// maxHeaderSize returns the maximum header size in bits. -// This is not exact size, but we want a penalty for new tables anyway. -func (s *fseEncoder) maxHeaderSize() uint32 { - if s.preDefined { - return 0 - } - if s.useRLE { - return 8 - } - return (((uint32(s.symbolLen) * uint32(s.actualTableLog)) >> 3) + 3) * 8 -} - -// cState contains the compression state of a stream. -type cState struct { - bw *bitWriter - stateTable []uint16 - state uint16 -} - -// init will initialize the compression state to the first symbol of the stream. -func (c *cState) init(bw *bitWriter, ct *cTable, first symbolTransform) { - c.bw = bw - c.stateTable = ct.stateTable - if len(c.stateTable) == 1 { - // RLE - c.stateTable[0] = uint16(0) - c.state = 0 - return - } - nbBitsOut := (first.deltaNbBits + (1 << 15)) >> 16 - im := int32((nbBitsOut << 16) - first.deltaNbBits) - lu := (im >> nbBitsOut) + int32(first.deltaFindState) - c.state = c.stateTable[lu] -} - -// flush will write the tablelog to the output and flush the remaining full bytes. -func (c *cState) flush(tableLog uint8) { - c.bw.flush32() - c.bw.addBits16NC(c.state, tableLog) -} diff --git a/vendor/github.com/klauspost/compress/zstd/fse_predefined.go b/vendor/github.com/klauspost/compress/zstd/fse_predefined.go deleted file mode 100644 index 474cb77d2b..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/fse_predefined.go +++ /dev/null @@ -1,158 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "fmt" - "math" - "sync" -) - -var ( - // fsePredef are the predefined fse tables as defined here: - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#default-distributions - // These values are already transformed. - fsePredef [3]fseDecoder - - // fsePredefEnc are the predefined encoder based on fse tables as defined here: - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#default-distributions - // These values are already transformed. - fsePredefEnc [3]fseEncoder - - // symbolTableX contain the transformations needed for each type as defined in - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#the-codes-for-literals-lengths-match-lengths-and-offsets - symbolTableX [3][]baseOffset - - // maxTableSymbol is the biggest supported symbol for each table type - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#the-codes-for-literals-lengths-match-lengths-and-offsets - maxTableSymbol = [3]uint8{tableLiteralLengths: maxLiteralLengthSymbol, tableOffsets: maxOffsetLengthSymbol, tableMatchLengths: maxMatchLengthSymbol} - - // bitTables is the bits table for each table. - bitTables = [3][]byte{tableLiteralLengths: llBitsTable[:], tableOffsets: nil, tableMatchLengths: mlBitsTable[:]} -) - -type tableIndex uint8 - -const ( - // indexes for fsePredef and symbolTableX - tableLiteralLengths tableIndex = 0 - tableOffsets tableIndex = 1 - tableMatchLengths tableIndex = 2 - - maxLiteralLengthSymbol = 35 - maxOffsetLengthSymbol = 30 - maxMatchLengthSymbol = 52 -) - -// baseOffset is used for calculating transformations. -type baseOffset struct { - baseLine uint32 - addBits uint8 -} - -// fillBase will precalculate base offsets with the given bit distributions. -func fillBase(dst []baseOffset, base uint32, bits ...uint8) { - if len(bits) != len(dst) { - panic(fmt.Sprintf("len(dst) (%d) != len(bits) (%d)", len(dst), len(bits))) - } - for i, bit := range bits { - if base > math.MaxInt32 { - panic("invalid decoding table, base overflows int32") - } - - dst[i] = baseOffset{ - baseLine: base, - addBits: bit, - } - base += 1 << bit - } -} - -var predef sync.Once - -func initPredefined() { - predef.Do(func() { - // Literals length codes - tmp := make([]baseOffset, 36) - for i := range tmp[:16] { - tmp[i] = baseOffset{ - baseLine: uint32(i), - addBits: 0, - } - } - fillBase(tmp[16:], 16, 1, 1, 1, 1, 2, 2, 3, 3, 4, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16) - symbolTableX[tableLiteralLengths] = tmp - - // Match length codes - tmp = make([]baseOffset, 53) - for i := range tmp[:32] { - tmp[i] = baseOffset{ - // The transformation adds the 3 length. - baseLine: uint32(i) + 3, - addBits: 0, - } - } - fillBase(tmp[32:], 35, 1, 1, 1, 1, 2, 2, 3, 3, 4, 4, 5, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16) - symbolTableX[tableMatchLengths] = tmp - - // Offset codes - tmp = make([]baseOffset, maxOffsetBits+1) - tmp[1] = baseOffset{ - baseLine: 1, - addBits: 1, - } - fillBase(tmp[2:], 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30) - symbolTableX[tableOffsets] = tmp - - // Fill predefined tables and transform them. - // https://github.com/facebook/zstd/blob/dev/doc/zstd_compression_format.md#default-distributions - for i := range fsePredef[:] { - f := &fsePredef[i] - switch tableIndex(i) { - case tableLiteralLengths: - // https://github.com/facebook/zstd/blob/ededcfca57366461021c922720878c81a5854a0a/lib/decompress/zstd_decompress_block.c#L243 - f.actualTableLog = 6 - copy(f.norm[:], []int16{4, 3, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 2, 1, 1, 1, - 2, 2, 2, 2, 2, 2, 2, 2, 2, 3, 2, 1, 1, 1, 1, 1, - -1, -1, -1, -1}) - f.symbolLen = 36 - case tableOffsets: - // https://github.com/facebook/zstd/blob/ededcfca57366461021c922720878c81a5854a0a/lib/decompress/zstd_decompress_block.c#L281 - f.actualTableLog = 5 - copy(f.norm[:], []int16{ - 1, 1, 1, 1, 1, 1, 2, 2, 2, 1, 1, 1, 1, 1, 1, 1, - 1, 1, 1, 1, 1, 1, 1, 1, -1, -1, -1, -1, -1}) - f.symbolLen = 29 - case tableMatchLengths: - //https://github.com/facebook/zstd/blob/ededcfca57366461021c922720878c81a5854a0a/lib/decompress/zstd_decompress_block.c#L304 - f.actualTableLog = 6 - copy(f.norm[:], []int16{ - 1, 4, 3, 2, 2, 2, 2, 2, 2, 1, 1, 1, 1, 1, 1, 1, - 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, - 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, 1, -1, -1, - -1, -1, -1, -1, -1}) - f.symbolLen = 53 - } - if err := f.buildDtable(); err != nil { - panic(fmt.Errorf("building table %v: %v", tableIndex(i), err)) - } - if err := f.transform(symbolTableX[i]); err != nil { - panic(fmt.Errorf("building table %v: %v", tableIndex(i), err)) - } - f.preDefined = true - - // Create encoder as well - enc := &fsePredefEnc[i] - copy(enc.norm[:], f.norm[:]) - enc.symbolLen = f.symbolLen - enc.actualTableLog = f.actualTableLog - if err := enc.buildCTable(); err != nil { - panic(fmt.Errorf("building encoding table %v: %v", tableIndex(i), err)) - } - enc.setBits(bitTables[i]) - enc.preDefined = true - } - }) -} diff --git a/vendor/github.com/klauspost/compress/zstd/hash.go b/vendor/github.com/klauspost/compress/zstd/hash.go deleted file mode 100644 index 5d73c21ebd..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/hash.go +++ /dev/null @@ -1,35 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -const ( - prime3bytes = 506832829 - prime4bytes = 2654435761 - prime5bytes = 889523592379 - prime6bytes = 227718039650203 - prime7bytes = 58295818150454627 - prime8bytes = 0xcf1bbcdcb7a56463 -) - -// hashLen returns a hash of the lowest mls bytes of with length output bits. -// mls must be >=3 and <=8. Any other value will return hash for 4 bytes. -// length should always be < 32. -// Preferably length and mls should be a constant for inlining. -func hashLen(u uint64, length, mls uint8) uint32 { - switch mls { - case 3: - return (uint32(u<<8) * prime3bytes) >> (32 - length) - case 5: - return uint32(((u << (64 - 40)) * prime5bytes) >> (64 - length)) - case 6: - return uint32(((u << (64 - 48)) * prime6bytes) >> (64 - length)) - case 7: - return uint32(((u << (64 - 56)) * prime7bytes) >> (64 - length)) - case 8: - return uint32((u * prime8bytes) >> (64 - length)) - default: - return (uint32(u) * prime4bytes) >> (32 - length) - } -} diff --git a/vendor/github.com/klauspost/compress/zstd/history.go b/vendor/github.com/klauspost/compress/zstd/history.go deleted file mode 100644 index 09164856d2..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/history.go +++ /dev/null @@ -1,116 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "github.com/klauspost/compress/huff0" -) - -// history contains the information transferred between blocks. -type history struct { - // Literal decompression - huffTree *huff0.Scratch - - // Sequence decompression - decoders sequenceDecs - recentOffsets [3]int - - // History buffer... - b []byte - - // ignoreBuffer is meant to ignore a number of bytes - // when checking for matches in history - ignoreBuffer int - - windowSize int - allocFrameBuffer int // needed? - error bool - dict *dict -} - -// reset will reset the history to initial state of a frame. -// The history must already have been initialized to the desired size. -func (h *history) reset() { - h.b = h.b[:0] - h.ignoreBuffer = 0 - h.error = false - h.recentOffsets = [3]int{1, 4, 8} - h.decoders.freeDecoders() - h.decoders = sequenceDecs{br: h.decoders.br} - h.freeHuffDecoder() - h.huffTree = nil - h.dict = nil - //printf("history created: %+v (l: %d, c: %d)", *h, len(h.b), cap(h.b)) -} - -func (h *history) freeHuffDecoder() { - if h.huffTree != nil { - if h.dict == nil || h.dict.litEnc != h.huffTree { - huffDecoderPool.Put(h.huffTree) - h.huffTree = nil - } - } -} - -func (h *history) setDict(dict *dict) { - if dict == nil { - return - } - h.dict = dict - h.decoders.litLengths = dict.llDec - h.decoders.offsets = dict.ofDec - h.decoders.matchLengths = dict.mlDec - h.decoders.dict = dict.content - h.recentOffsets = dict.offsets - h.huffTree = dict.litEnc -} - -// append bytes to history. -// This function will make sure there is space for it, -// if the buffer has been allocated with enough extra space. -func (h *history) append(b []byte) { - if len(b) >= h.windowSize { - // Discard all history by simply overwriting - h.b = h.b[:h.windowSize] - copy(h.b, b[len(b)-h.windowSize:]) - return - } - - // If there is space, append it. - if len(b) < cap(h.b)-len(h.b) { - h.b = append(h.b, b...) - return - } - - // Move data down so we only have window size left. - // We know we have less than window size in b at this point. - discard := len(b) + len(h.b) - h.windowSize - copy(h.b, h.b[discard:]) - h.b = h.b[:h.windowSize] - copy(h.b[h.windowSize-len(b):], b) -} - -// ensureBlock will ensure there is space for at least one block... -func (h *history) ensureBlock() { - if cap(h.b) < h.allocFrameBuffer { - h.b = make([]byte, 0, h.allocFrameBuffer) - return - } - - avail := cap(h.b) - len(h.b) - if avail >= h.windowSize || avail > maxCompressedBlockSize { - return - } - // Move data down so we only have window size left. - // We know we have less than window size in b at this point. - discard := len(h.b) - h.windowSize - copy(h.b, h.b[discard:]) - h.b = h.b[:h.windowSize] -} - -// append bytes to history without ever discarding anything. -func (h *history) appendKeep(b []byte) { - h.b = append(h.b, b...) -} diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/LICENSE.txt b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/LICENSE.txt deleted file mode 100644 index 24b53065f4..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/LICENSE.txt +++ /dev/null @@ -1,22 +0,0 @@ -Copyright (c) 2016 Caleb Spare - -MIT License - -Permission is hereby granted, free of charge, to any person obtaining -a copy of this software and associated documentation files (the -"Software"), to deal in the Software without restriction, including -without limitation the rights to use, copy, modify, merge, publish, -distribute, sublicense, and/or sell copies of the Software, and to -permit persons to whom the Software is furnished to do so, subject to -the following conditions: - -The above copyright notice and this permission notice shall be -included in all copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, -EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF -MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND -NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE -LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION -OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION -WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/README.md b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/README.md deleted file mode 100644 index 777290d44c..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/README.md +++ /dev/null @@ -1,71 +0,0 @@ -# xxhash - -VENDORED: Go to [github.com/cespare/xxhash](https://github.com/cespare/xxhash) for original package. - -xxhash is a Go implementation of the 64-bit [xxHash] algorithm, XXH64. This is a -high-quality hashing algorithm that is much faster than anything in the Go -standard library. - -This package provides a straightforward API: - -``` -func Sum64(b []byte) uint64 -func Sum64String(s string) uint64 -type Digest struct{ ... } - func New() *Digest -``` - -The `Digest` type implements hash.Hash64. Its key methods are: - -``` -func (*Digest) Write([]byte) (int, error) -func (*Digest) WriteString(string) (int, error) -func (*Digest) Sum64() uint64 -``` - -The package is written with optimized pure Go and also contains even faster -assembly implementations for amd64 and arm64. If desired, the `purego` build tag -opts into using the Go code even on those architectures. - -[xxHash]: http://cyan4973.github.io/xxHash/ - -## Compatibility - -This package is in a module and the latest code is in version 2 of the module. -You need a version of Go with at least "minimal module compatibility" to use -github.com/cespare/xxhash/v2: - -* 1.9.7+ for Go 1.9 -* 1.10.3+ for Go 1.10 -* Go 1.11 or later - -I recommend using the latest release of Go. - -## Benchmarks - -Here are some quick benchmarks comparing the pure-Go and assembly -implementations of Sum64. - -| input size | purego | asm | -| ---------- | --------- | --------- | -| 4 B | 1.3 GB/s | 1.2 GB/s | -| 16 B | 2.9 GB/s | 3.5 GB/s | -| 100 B | 6.9 GB/s | 8.1 GB/s | -| 4 KB | 11.7 GB/s | 16.7 GB/s | -| 10 MB | 12.0 GB/s | 17.3 GB/s | - -These numbers were generated on Ubuntu 20.04 with an Intel Xeon Platinum 8252C -CPU using the following commands under Go 1.19.2: - -``` -benchstat <(go test -tags purego -benchtime 500ms -count 15 -bench 'Sum64$') -benchstat <(go test -benchtime 500ms -count 15 -bench 'Sum64$') -``` - -## Projects using this package - -- [InfluxDB](https://github.com/influxdata/influxdb) -- [Prometheus](https://github.com/prometheus/prometheus) -- [VictoriaMetrics](https://github.com/VictoriaMetrics/VictoriaMetrics) -- [FreeCache](https://github.com/coocood/freecache) -- [FastCache](https://github.com/VictoriaMetrics/fastcache) diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash.go b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash.go deleted file mode 100644 index fc40c82001..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash.go +++ /dev/null @@ -1,230 +0,0 @@ -// Package xxhash implements the 64-bit variant of xxHash (XXH64) as described -// at http://cyan4973.github.io/xxHash/. -// THIS IS VENDORED: Go to github.com/cespare/xxhash for original package. - -package xxhash - -import ( - "encoding/binary" - "errors" - "math/bits" -) - -const ( - prime1 uint64 = 11400714785074694791 - prime2 uint64 = 14029467366897019727 - prime3 uint64 = 1609587929392839161 - prime4 uint64 = 9650029242287828579 - prime5 uint64 = 2870177450012600261 -) - -// Store the primes in an array as well. -// -// The consts are used when possible in Go code to avoid MOVs but we need a -// contiguous array of the assembly code. -var primes = [...]uint64{prime1, prime2, prime3, prime4, prime5} - -// Digest implements hash.Hash64. -type Digest struct { - v1 uint64 - v2 uint64 - v3 uint64 - v4 uint64 - total uint64 - mem [32]byte - n int // how much of mem is used -} - -// New creates a new Digest that computes the 64-bit xxHash algorithm. -func New() *Digest { - var d Digest - d.Reset() - return &d -} - -// Reset clears the Digest's state so that it can be reused. -func (d *Digest) Reset() { - d.v1 = primes[0] + prime2 - d.v2 = prime2 - d.v3 = 0 - d.v4 = -primes[0] - d.total = 0 - d.n = 0 -} - -// Size always returns 8 bytes. -func (d *Digest) Size() int { return 8 } - -// BlockSize always returns 32 bytes. -func (d *Digest) BlockSize() int { return 32 } - -// Write adds more data to d. It always returns len(b), nil. -func (d *Digest) Write(b []byte) (n int, err error) { - n = len(b) - d.total += uint64(n) - - memleft := d.mem[d.n&(len(d.mem)-1):] - - if d.n+n < 32 { - // This new data doesn't even fill the current block. - copy(memleft, b) - d.n += n - return - } - - if d.n > 0 { - // Finish off the partial block. - c := copy(memleft, b) - d.v1 = round(d.v1, u64(d.mem[0:8])) - d.v2 = round(d.v2, u64(d.mem[8:16])) - d.v3 = round(d.v3, u64(d.mem[16:24])) - d.v4 = round(d.v4, u64(d.mem[24:32])) - b = b[c:] - d.n = 0 - } - - if len(b) >= 32 { - // One or more full blocks left. - nw := writeBlocks(d, b) - b = b[nw:] - } - - // Store any remaining partial block. - copy(d.mem[:], b) - d.n = len(b) - - return -} - -// Sum appends the current hash to b and returns the resulting slice. -func (d *Digest) Sum(b []byte) []byte { - s := d.Sum64() - return append( - b, - byte(s>>56), - byte(s>>48), - byte(s>>40), - byte(s>>32), - byte(s>>24), - byte(s>>16), - byte(s>>8), - byte(s), - ) -} - -// Sum64 returns the current hash. -func (d *Digest) Sum64() uint64 { - var h uint64 - - if d.total >= 32 { - v1, v2, v3, v4 := d.v1, d.v2, d.v3, d.v4 - h = rol1(v1) + rol7(v2) + rol12(v3) + rol18(v4) - h = mergeRound(h, v1) - h = mergeRound(h, v2) - h = mergeRound(h, v3) - h = mergeRound(h, v4) - } else { - h = d.v3 + prime5 - } - - h += d.total - - b := d.mem[:d.n&(len(d.mem)-1)] - for ; len(b) >= 8; b = b[8:] { - k1 := round(0, u64(b[:8])) - h ^= k1 - h = rol27(h)*prime1 + prime4 - } - if len(b) >= 4 { - h ^= uint64(u32(b[:4])) * prime1 - h = rol23(h)*prime2 + prime3 - b = b[4:] - } - for ; len(b) > 0; b = b[1:] { - h ^= uint64(b[0]) * prime5 - h = rol11(h) * prime1 - } - - h ^= h >> 33 - h *= prime2 - h ^= h >> 29 - h *= prime3 - h ^= h >> 32 - - return h -} - -const ( - magic = "xxh\x06" - marshaledSize = len(magic) + 8*5 + 32 -) - -// MarshalBinary implements the encoding.BinaryMarshaler interface. -func (d *Digest) MarshalBinary() ([]byte, error) { - b := make([]byte, 0, marshaledSize) - b = append(b, magic...) - b = appendUint64(b, d.v1) - b = appendUint64(b, d.v2) - b = appendUint64(b, d.v3) - b = appendUint64(b, d.v4) - b = appendUint64(b, d.total) - b = append(b, d.mem[:d.n]...) - b = b[:len(b)+len(d.mem)-d.n] - return b, nil -} - -// UnmarshalBinary implements the encoding.BinaryUnmarshaler interface. -func (d *Digest) UnmarshalBinary(b []byte) error { - if len(b) < len(magic) || string(b[:len(magic)]) != magic { - return errors.New("xxhash: invalid hash state identifier") - } - if len(b) != marshaledSize { - return errors.New("xxhash: invalid hash state size") - } - b = b[len(magic):] - b, d.v1 = consumeUint64(b) - b, d.v2 = consumeUint64(b) - b, d.v3 = consumeUint64(b) - b, d.v4 = consumeUint64(b) - b, d.total = consumeUint64(b) - copy(d.mem[:], b) - d.n = int(d.total % uint64(len(d.mem))) - return nil -} - -func appendUint64(b []byte, x uint64) []byte { - var a [8]byte - binary.LittleEndian.PutUint64(a[:], x) - return append(b, a[:]...) -} - -func consumeUint64(b []byte) ([]byte, uint64) { - x := u64(b) - return b[8:], x -} - -func u64(b []byte) uint64 { return binary.LittleEndian.Uint64(b) } -func u32(b []byte) uint32 { return binary.LittleEndian.Uint32(b) } - -func round(acc, input uint64) uint64 { - acc += input * prime2 - acc = rol31(acc) - acc *= prime1 - return acc -} - -func mergeRound(acc, val uint64) uint64 { - val = round(0, val) - acc ^= val - acc = acc*prime1 + prime4 - return acc -} - -func rol1(x uint64) uint64 { return bits.RotateLeft64(x, 1) } -func rol7(x uint64) uint64 { return bits.RotateLeft64(x, 7) } -func rol11(x uint64) uint64 { return bits.RotateLeft64(x, 11) } -func rol12(x uint64) uint64 { return bits.RotateLeft64(x, 12) } -func rol18(x uint64) uint64 { return bits.RotateLeft64(x, 18) } -func rol23(x uint64) uint64 { return bits.RotateLeft64(x, 23) } -func rol27(x uint64) uint64 { return bits.RotateLeft64(x, 27) } -func rol31(x uint64) uint64 { return bits.RotateLeft64(x, 31) } diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_amd64.s b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_amd64.s deleted file mode 100644 index ddb63aa91b..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_amd64.s +++ /dev/null @@ -1,210 +0,0 @@ -//go:build !appengine && gc && !purego && !noasm -// +build !appengine -// +build gc -// +build !purego -// +build !noasm - -#include "textflag.h" - -// Registers: -#define h AX -#define d AX -#define p SI // pointer to advance through b -#define n DX -#define end BX // loop end -#define v1 R8 -#define v2 R9 -#define v3 R10 -#define v4 R11 -#define x R12 -#define prime1 R13 -#define prime2 R14 -#define prime4 DI - -#define round(acc, x) \ - IMULQ prime2, x \ - ADDQ x, acc \ - ROLQ $31, acc \ - IMULQ prime1, acc - -// round0 performs the operation x = round(0, x). -#define round0(x) \ - IMULQ prime2, x \ - ROLQ $31, x \ - IMULQ prime1, x - -// mergeRound applies a merge round on the two registers acc and x. -// It assumes that prime1, prime2, and prime4 have been loaded. -#define mergeRound(acc, x) \ - round0(x) \ - XORQ x, acc \ - IMULQ prime1, acc \ - ADDQ prime4, acc - -// blockLoop processes as many 32-byte blocks as possible, -// updating v1, v2, v3, and v4. It assumes that there is at least one block -// to process. -#define blockLoop() \ -loop: \ - MOVQ +0(p), x \ - round(v1, x) \ - MOVQ +8(p), x \ - round(v2, x) \ - MOVQ +16(p), x \ - round(v3, x) \ - MOVQ +24(p), x \ - round(v4, x) \ - ADDQ $32, p \ - CMPQ p, end \ - JLE loop - -// func Sum64(b []byte) uint64 -TEXT ·Sum64(SB), NOSPLIT|NOFRAME, $0-32 - // Load fixed primes. - MOVQ ·primes+0(SB), prime1 - MOVQ ·primes+8(SB), prime2 - MOVQ ·primes+24(SB), prime4 - - // Load slice. - MOVQ b_base+0(FP), p - MOVQ b_len+8(FP), n - LEAQ (p)(n*1), end - - // The first loop limit will be len(b)-32. - SUBQ $32, end - - // Check whether we have at least one block. - CMPQ n, $32 - JLT noBlocks - - // Set up initial state (v1, v2, v3, v4). - MOVQ prime1, v1 - ADDQ prime2, v1 - MOVQ prime2, v2 - XORQ v3, v3 - XORQ v4, v4 - SUBQ prime1, v4 - - blockLoop() - - MOVQ v1, h - ROLQ $1, h - MOVQ v2, x - ROLQ $7, x - ADDQ x, h - MOVQ v3, x - ROLQ $12, x - ADDQ x, h - MOVQ v4, x - ROLQ $18, x - ADDQ x, h - - mergeRound(h, v1) - mergeRound(h, v2) - mergeRound(h, v3) - mergeRound(h, v4) - - JMP afterBlocks - -noBlocks: - MOVQ ·primes+32(SB), h - -afterBlocks: - ADDQ n, h - - ADDQ $24, end - CMPQ p, end - JG try4 - -loop8: - MOVQ (p), x - ADDQ $8, p - round0(x) - XORQ x, h - ROLQ $27, h - IMULQ prime1, h - ADDQ prime4, h - - CMPQ p, end - JLE loop8 - -try4: - ADDQ $4, end - CMPQ p, end - JG try1 - - MOVL (p), x - ADDQ $4, p - IMULQ prime1, x - XORQ x, h - - ROLQ $23, h - IMULQ prime2, h - ADDQ ·primes+16(SB), h - -try1: - ADDQ $4, end - CMPQ p, end - JGE finalize - -loop1: - MOVBQZX (p), x - ADDQ $1, p - IMULQ ·primes+32(SB), x - XORQ x, h - ROLQ $11, h - IMULQ prime1, h - - CMPQ p, end - JL loop1 - -finalize: - MOVQ h, x - SHRQ $33, x - XORQ x, h - IMULQ prime2, h - MOVQ h, x - SHRQ $29, x - XORQ x, h - IMULQ ·primes+16(SB), h - MOVQ h, x - SHRQ $32, x - XORQ x, h - - MOVQ h, ret+24(FP) - RET - -// func writeBlocks(d *Digest, b []byte) int -TEXT ·writeBlocks(SB), NOSPLIT|NOFRAME, $0-40 - // Load fixed primes needed for round. - MOVQ ·primes+0(SB), prime1 - MOVQ ·primes+8(SB), prime2 - - // Load slice. - MOVQ b_base+8(FP), p - MOVQ b_len+16(FP), n - LEAQ (p)(n*1), end - SUBQ $32, end - - // Load vN from d. - MOVQ s+0(FP), d - MOVQ 0(d), v1 - MOVQ 8(d), v2 - MOVQ 16(d), v3 - MOVQ 24(d), v4 - - // We don't need to check the loop condition here; this function is - // always called with at least one block of data to process. - blockLoop() - - // Copy vN back to d. - MOVQ v1, 0(d) - MOVQ v2, 8(d) - MOVQ v3, 16(d) - MOVQ v4, 24(d) - - // The number of bytes written is p minus the old base pointer. - SUBQ b_base+8(FP), p - MOVQ p, ret+32(FP) - - RET diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_arm64.s b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_arm64.s deleted file mode 100644 index ae7d4d3295..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_arm64.s +++ /dev/null @@ -1,184 +0,0 @@ -//go:build !appengine && gc && !purego && !noasm -// +build !appengine -// +build gc -// +build !purego -// +build !noasm - -#include "textflag.h" - -// Registers: -#define digest R1 -#define h R2 // return value -#define p R3 // input pointer -#define n R4 // input length -#define nblocks R5 // n / 32 -#define prime1 R7 -#define prime2 R8 -#define prime3 R9 -#define prime4 R10 -#define prime5 R11 -#define v1 R12 -#define v2 R13 -#define v3 R14 -#define v4 R15 -#define x1 R20 -#define x2 R21 -#define x3 R22 -#define x4 R23 - -#define round(acc, x) \ - MADD prime2, acc, x, acc \ - ROR $64-31, acc \ - MUL prime1, acc - -// round0 performs the operation x = round(0, x). -#define round0(x) \ - MUL prime2, x \ - ROR $64-31, x \ - MUL prime1, x - -#define mergeRound(acc, x) \ - round0(x) \ - EOR x, acc \ - MADD acc, prime4, prime1, acc - -// blockLoop processes as many 32-byte blocks as possible, -// updating v1, v2, v3, and v4. It assumes that n >= 32. -#define blockLoop() \ - LSR $5, n, nblocks \ - PCALIGN $16 \ - loop: \ - LDP.P 16(p), (x1, x2) \ - LDP.P 16(p), (x3, x4) \ - round(v1, x1) \ - round(v2, x2) \ - round(v3, x3) \ - round(v4, x4) \ - SUB $1, nblocks \ - CBNZ nblocks, loop - -// func Sum64(b []byte) uint64 -TEXT ·Sum64(SB), NOSPLIT|NOFRAME, $0-32 - LDP b_base+0(FP), (p, n) - - LDP ·primes+0(SB), (prime1, prime2) - LDP ·primes+16(SB), (prime3, prime4) - MOVD ·primes+32(SB), prime5 - - CMP $32, n - CSEL LT, prime5, ZR, h // if n < 32 { h = prime5 } else { h = 0 } - BLT afterLoop - - ADD prime1, prime2, v1 - MOVD prime2, v2 - MOVD $0, v3 - NEG prime1, v4 - - blockLoop() - - ROR $64-1, v1, x1 - ROR $64-7, v2, x2 - ADD x1, x2 - ROR $64-12, v3, x3 - ROR $64-18, v4, x4 - ADD x3, x4 - ADD x2, x4, h - - mergeRound(h, v1) - mergeRound(h, v2) - mergeRound(h, v3) - mergeRound(h, v4) - -afterLoop: - ADD n, h - - TBZ $4, n, try8 - LDP.P 16(p), (x1, x2) - - round0(x1) - - // NOTE: here and below, sequencing the EOR after the ROR (using a - // rotated register) is worth a small but measurable speedup for small - // inputs. - ROR $64-27, h - EOR x1 @> 64-27, h, h - MADD h, prime4, prime1, h - - round0(x2) - ROR $64-27, h - EOR x2 @> 64-27, h, h - MADD h, prime4, prime1, h - -try8: - TBZ $3, n, try4 - MOVD.P 8(p), x1 - - round0(x1) - ROR $64-27, h - EOR x1 @> 64-27, h, h - MADD h, prime4, prime1, h - -try4: - TBZ $2, n, try2 - MOVWU.P 4(p), x2 - - MUL prime1, x2 - ROR $64-23, h - EOR x2 @> 64-23, h, h - MADD h, prime3, prime2, h - -try2: - TBZ $1, n, try1 - MOVHU.P 2(p), x3 - AND $255, x3, x1 - LSR $8, x3, x2 - - MUL prime5, x1 - ROR $64-11, h - EOR x1 @> 64-11, h, h - MUL prime1, h - - MUL prime5, x2 - ROR $64-11, h - EOR x2 @> 64-11, h, h - MUL prime1, h - -try1: - TBZ $0, n, finalize - MOVBU (p), x4 - - MUL prime5, x4 - ROR $64-11, h - EOR x4 @> 64-11, h, h - MUL prime1, h - -finalize: - EOR h >> 33, h - MUL prime2, h - EOR h >> 29, h - MUL prime3, h - EOR h >> 32, h - - MOVD h, ret+24(FP) - RET - -// func writeBlocks(s *Digest, b []byte) int -TEXT ·writeBlocks(SB), NOSPLIT|NOFRAME, $0-40 - LDP ·primes+0(SB), (prime1, prime2) - - // Load state. Assume v[1-4] are stored contiguously. - MOVD s+0(FP), digest - LDP 0(digest), (v1, v2) - LDP 16(digest), (v3, v4) - - LDP b_base+8(FP), (p, n) - - blockLoop() - - // Store updated state. - STP (v1, v2), 0(digest) - STP (v3, v4), 16(digest) - - BIC $31, n - MOVD n, ret+32(FP) - RET diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_asm.go b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_asm.go deleted file mode 100644 index d4221edf4f..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_asm.go +++ /dev/null @@ -1,16 +0,0 @@ -//go:build (amd64 || arm64) && !appengine && gc && !purego && !noasm -// +build amd64 arm64 -// +build !appengine -// +build gc -// +build !purego -// +build !noasm - -package xxhash - -// Sum64 computes the 64-bit xxHash digest of b. -// -//go:noescape -func Sum64(b []byte) uint64 - -//go:noescape -func writeBlocks(s *Digest, b []byte) int diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_other.go b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_other.go deleted file mode 100644 index 0be16cefc7..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_other.go +++ /dev/null @@ -1,76 +0,0 @@ -//go:build (!amd64 && !arm64) || appengine || !gc || purego || noasm -// +build !amd64,!arm64 appengine !gc purego noasm - -package xxhash - -// Sum64 computes the 64-bit xxHash digest of b. -func Sum64(b []byte) uint64 { - // A simpler version would be - // d := New() - // d.Write(b) - // return d.Sum64() - // but this is faster, particularly for small inputs. - - n := len(b) - var h uint64 - - if n >= 32 { - v1 := primes[0] + prime2 - v2 := prime2 - v3 := uint64(0) - v4 := -primes[0] - for len(b) >= 32 { - v1 = round(v1, u64(b[0:8:len(b)])) - v2 = round(v2, u64(b[8:16:len(b)])) - v3 = round(v3, u64(b[16:24:len(b)])) - v4 = round(v4, u64(b[24:32:len(b)])) - b = b[32:len(b):len(b)] - } - h = rol1(v1) + rol7(v2) + rol12(v3) + rol18(v4) - h = mergeRound(h, v1) - h = mergeRound(h, v2) - h = mergeRound(h, v3) - h = mergeRound(h, v4) - } else { - h = prime5 - } - - h += uint64(n) - - for ; len(b) >= 8; b = b[8:] { - k1 := round(0, u64(b[:8])) - h ^= k1 - h = rol27(h)*prime1 + prime4 - } - if len(b) >= 4 { - h ^= uint64(u32(b[:4])) * prime1 - h = rol23(h)*prime2 + prime3 - b = b[4:] - } - for ; len(b) > 0; b = b[1:] { - h ^= uint64(b[0]) * prime5 - h = rol11(h) * prime1 - } - - h ^= h >> 33 - h *= prime2 - h ^= h >> 29 - h *= prime3 - h ^= h >> 32 - - return h -} - -func writeBlocks(d *Digest, b []byte) int { - v1, v2, v3, v4 := d.v1, d.v2, d.v3, d.v4 - n := len(b) - for len(b) >= 32 { - v1 = round(v1, u64(b[0:8:len(b)])) - v2 = round(v2, u64(b[8:16:len(b)])) - v3 = round(v3, u64(b[16:24:len(b)])) - v4 = round(v4, u64(b[24:32:len(b)])) - b = b[32:len(b):len(b)] - } - d.v1, d.v2, d.v3, d.v4 = v1, v2, v3, v4 - return n - len(b) -} diff --git a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_safe.go b/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_safe.go deleted file mode 100644 index 6f3b0cb102..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/internal/xxhash/xxhash_safe.go +++ /dev/null @@ -1,11 +0,0 @@ -package xxhash - -// Sum64String computes the 64-bit xxHash digest of s. -func Sum64String(s string) uint64 { - return Sum64([]byte(s)) -} - -// WriteString adds more data to d. It always returns len(s), nil. -func (d *Digest) WriteString(s string) (n int, err error) { - return d.Write([]byte(s)) -} diff --git a/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.go b/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.go deleted file mode 100644 index f41932b7a4..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.go +++ /dev/null @@ -1,16 +0,0 @@ -//go:build amd64 && !appengine && !noasm && gc -// +build amd64,!appengine,!noasm,gc - -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. - -package zstd - -// matchLen returns how many bytes match in a and b -// -// It assumes that: -// -// len(a) <= len(b) and len(a) > 0 -// -//go:noescape -func matchLen(a []byte, b []byte) int diff --git a/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.s b/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.s deleted file mode 100644 index 0782b86e3d..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/matchlen_amd64.s +++ /dev/null @@ -1,66 +0,0 @@ -// Copied from S2 implementation. - -//go:build !appengine && !noasm && gc && !noasm - -#include "textflag.h" - -// func matchLen(a []byte, b []byte) int -TEXT ·matchLen(SB), NOSPLIT, $0-56 - MOVQ a_base+0(FP), AX - MOVQ b_base+24(FP), CX - MOVQ a_len+8(FP), DX - - // matchLen - XORL SI, SI - CMPL DX, $0x08 - JB matchlen_match4_standalone - -matchlen_loopback_standalone: - MOVQ (AX)(SI*1), BX - XORQ (CX)(SI*1), BX - JZ matchlen_loop_standalone - -#ifdef GOAMD64_v3 - TZCNTQ BX, BX -#else - BSFQ BX, BX -#endif - SHRL $0x03, BX - LEAL (SI)(BX*1), SI - JMP gen_match_len_end - -matchlen_loop_standalone: - LEAL -8(DX), DX - LEAL 8(SI), SI - CMPL DX, $0x08 - JAE matchlen_loopback_standalone - -matchlen_match4_standalone: - CMPL DX, $0x04 - JB matchlen_match2_standalone - MOVL (AX)(SI*1), BX - CMPL (CX)(SI*1), BX - JNE matchlen_match2_standalone - LEAL -4(DX), DX - LEAL 4(SI), SI - -matchlen_match2_standalone: - CMPL DX, $0x02 - JB matchlen_match1_standalone - MOVW (AX)(SI*1), BX - CMPW (CX)(SI*1), BX - JNE matchlen_match1_standalone - LEAL -2(DX), DX - LEAL 2(SI), SI - -matchlen_match1_standalone: - CMPL DX, $0x01 - JB gen_match_len_end - MOVB (AX)(SI*1), BL - CMPB (CX)(SI*1), BL - JNE gen_match_len_end - INCL SI - -gen_match_len_end: - MOVQ SI, ret+48(FP) - RET diff --git a/vendor/github.com/klauspost/compress/zstd/matchlen_generic.go b/vendor/github.com/klauspost/compress/zstd/matchlen_generic.go deleted file mode 100644 index 57b9c31c02..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/matchlen_generic.go +++ /dev/null @@ -1,33 +0,0 @@ -//go:build !amd64 || appengine || !gc || noasm -// +build !amd64 appengine !gc noasm - -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. - -package zstd - -import ( - "encoding/binary" - "math/bits" -) - -// matchLen returns the maximum common prefix length of a and b. -// a must be the shortest of the two. -func matchLen(a, b []byte) (n int) { - for ; len(a) >= 8 && len(b) >= 8; a, b = a[8:], b[8:] { - diff := binary.LittleEndian.Uint64(a) ^ binary.LittleEndian.Uint64(b) - if diff != 0 { - return n + bits.TrailingZeros64(diff)>>3 - } - n += 8 - } - - for i := range a { - if a[i] != b[i] { - break - } - n++ - } - return n - -} diff --git a/vendor/github.com/klauspost/compress/zstd/seqdec.go b/vendor/github.com/klauspost/compress/zstd/seqdec.go deleted file mode 100644 index d7fe6d82d9..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/seqdec.go +++ /dev/null @@ -1,503 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "errors" - "fmt" - "io" -) - -type seq struct { - litLen uint32 - matchLen uint32 - offset uint32 - - // Codes are stored here for the encoder - // so they only have to be looked up once. - llCode, mlCode, ofCode uint8 -} - -type seqVals struct { - ll, ml, mo int -} - -func (s seq) String() string { - if s.offset <= 3 { - if s.offset == 0 { - return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset: INVALID (0)") - } - return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset:", s.offset, " (repeat)") - } - return fmt.Sprint("litLen:", s.litLen, ", matchLen:", s.matchLen+zstdMinMatch, ", offset:", s.offset-3, " (new)") -} - -type seqCompMode uint8 - -const ( - compModePredefined seqCompMode = iota - compModeRLE - compModeFSE - compModeRepeat -) - -type sequenceDec struct { - // decoder keeps track of the current state and updates it from the bitstream. - fse *fseDecoder - state fseState - repeat bool -} - -// init the state of the decoder with input from stream. -func (s *sequenceDec) init(br *bitReader) error { - if s.fse == nil { - return errors.New("sequence decoder not defined") - } - s.state.init(br, s.fse.actualTableLog, s.fse.dt[:1< cap(s.out) { - addBytes := s.seqSize + len(s.out) - s.out = append(s.out, make([]byte, addBytes)...) - s.out = s.out[:len(s.out)-addBytes] - } - - if debugDecoder { - printf("Execute %d seqs with hist %d, dict %d, literals: %d into %d bytes\n", len(seqs), len(hist), len(s.dict), len(s.literals), s.seqSize) - } - - var t = len(s.out) - out := s.out[:t+s.seqSize] - - for _, seq := range seqs { - // Add literals - copy(out[t:], s.literals[:seq.ll]) - t += seq.ll - s.literals = s.literals[seq.ll:] - - // Copy from dictionary... - if seq.mo > t+len(hist) || seq.mo > s.windowSize { - if len(s.dict) == 0 { - return fmt.Errorf("match offset (%d) bigger than current history (%d)", seq.mo, t+len(hist)) - } - - // we may be in dictionary. - dictO := len(s.dict) - (seq.mo - (t + len(hist))) - if dictO < 0 || dictO >= len(s.dict) { - return fmt.Errorf("match offset (%d) bigger than current history+dict (%d)", seq.mo, t+len(hist)+len(s.dict)) - } - end := dictO + seq.ml - if end > len(s.dict) { - n := len(s.dict) - dictO - copy(out[t:], s.dict[dictO:]) - t += n - seq.ml -= n - } else { - copy(out[t:], s.dict[dictO:end]) - t += end - dictO - continue - } - } - - // Copy from history. - if v := seq.mo - t; v > 0 { - // v is the start position in history from end. - start := len(hist) - v - if seq.ml > v { - // Some goes into current block. - // Copy remainder of history - copy(out[t:], hist[start:]) - t += v - seq.ml -= v - } else { - copy(out[t:], hist[start:start+seq.ml]) - t += seq.ml - continue - } - } - // We must be in current buffer now - if seq.ml > 0 { - start := t - seq.mo - if seq.ml <= t-start { - // No overlap - copy(out[t:], out[start:start+seq.ml]) - t += seq.ml - continue - } else { - // Overlapping copy - // Extend destination slice and copy one byte at the time. - src := out[start : start+seq.ml] - dst := out[t:] - dst = dst[:len(src)] - t += len(src) - // Destination is the space we just added. - for i := range src { - dst[i] = src[i] - } - } - } - } - - // Add final literals - copy(out[t:], s.literals) - if debugDecoder { - t += len(s.literals) - if t != len(out) { - panic(fmt.Errorf("length mismatch, want %d, got %d, ss: %d", len(out), t, s.seqSize)) - } - } - s.out = out - - return nil -} - -// decode sequences from the stream with the provided history. -func (s *sequenceDecs) decodeSync(hist []byte) error { - supported, err := s.decodeSyncSimple(hist) - if supported { - return err - } - - br := s.br - seqs := s.nSeqs - startSize := len(s.out) - // Grab full sizes tables, to avoid bounds checks. - llTable, mlTable, ofTable := s.litLengths.fse.dt[:maxTablesize], s.matchLengths.fse.dt[:maxTablesize], s.offsets.fse.dt[:maxTablesize] - llState, mlState, ofState := s.litLengths.state.state, s.matchLengths.state.state, s.offsets.state.state - out := s.out - maxBlockSize := maxCompressedBlockSize - if s.windowSize < maxBlockSize { - maxBlockSize = s.windowSize - } - - if debugDecoder { - println("decodeSync: decoding", seqs, "sequences", br.remain(), "bits remain on stream") - } - for i := seqs - 1; i >= 0; i-- { - if br.overread() { - printf("reading sequence %d, exceeded available data. Overread by %d\n", seqs-i, -br.remain()) - return io.ErrUnexpectedEOF - } - var ll, mo, ml int - if len(br.in) > 4+((maxOffsetBits+16+16)>>3) { - // inlined function: - // ll, mo, ml = s.nextFast(br, llState, mlState, ofState) - - // Final will not read from stream. - var llB, mlB, moB uint8 - ll, llB = llState.final() - ml, mlB = mlState.final() - mo, moB = ofState.final() - - // extra bits are stored in reverse order. - br.fillFast() - mo += br.getBits(moB) - if s.maxBits > 32 { - br.fillFast() - } - ml += br.getBits(mlB) - ll += br.getBits(llB) - - if moB > 1 { - s.prevOffset[2] = s.prevOffset[1] - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = mo - } else { - // mo = s.adjustOffset(mo, ll, moB) - // Inlined for rather big speedup - if ll == 0 { - // There is an exception though, when current sequence's literals_length = 0. - // In this case, repeated offsets are shifted by one, so an offset_value of 1 means Repeated_Offset2, - // an offset_value of 2 means Repeated_Offset3, and an offset_value of 3 means Repeated_Offset1 - 1_byte. - mo++ - } - - if mo == 0 { - mo = s.prevOffset[0] - } else { - var temp int - if mo == 3 { - temp = s.prevOffset[0] - 1 - } else { - temp = s.prevOffset[mo] - } - - if temp == 0 { - // 0 is not valid; input is corrupted; force offset to 1 - println("WARNING: temp was 0") - temp = 1 - } - - if mo != 1 { - s.prevOffset[2] = s.prevOffset[1] - } - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = temp - mo = temp - } - } - br.fillFast() - } else { - ll, mo, ml = s.next(br, llState, mlState, ofState) - br.fill() - } - - if debugSequences { - println("Seq", seqs-i-1, "Litlen:", ll, "mo:", mo, "(abs) ml:", ml) - } - - if ll > len(s.literals) { - return fmt.Errorf("unexpected literal count, want %d bytes, but only %d is available", ll, len(s.literals)) - } - size := ll + ml + len(out) - if size-startSize > maxBlockSize { - return fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - if size > cap(out) { - // Not enough size, which can happen under high volume block streaming conditions - // but could be if destination slice is too small for sync operations. - // over-allocating here can create a large amount of GC pressure so we try to keep - // it as contained as possible - used := len(out) - startSize - addBytes := 256 + ll + ml + used>>2 - // Clamp to max block size. - if used+addBytes > maxBlockSize { - addBytes = maxBlockSize - used - } - out = append(out, make([]byte, addBytes)...) - out = out[:len(out)-addBytes] - } - if ml > maxMatchLen { - return fmt.Errorf("match len (%d) bigger than max allowed length", ml) - } - - // Add literals - out = append(out, s.literals[:ll]...) - s.literals = s.literals[ll:] - - if mo == 0 && ml > 0 { - return fmt.Errorf("zero matchoff and matchlen (%d) > 0", ml) - } - - if mo > len(out)+len(hist) || mo > s.windowSize { - if len(s.dict) == 0 { - return fmt.Errorf("match offset (%d) bigger than current history (%d)", mo, len(out)+len(hist)-startSize) - } - - // we may be in dictionary. - dictO := len(s.dict) - (mo - (len(out) + len(hist))) - if dictO < 0 || dictO >= len(s.dict) { - return fmt.Errorf("match offset (%d) bigger than current history (%d)", mo, len(out)+len(hist)-startSize) - } - end := dictO + ml - if end > len(s.dict) { - out = append(out, s.dict[dictO:]...) - ml -= len(s.dict) - dictO - } else { - out = append(out, s.dict[dictO:end]...) - mo = 0 - ml = 0 - } - } - - // Copy from history. - // TODO: Blocks without history could be made to ignore this completely. - if v := mo - len(out); v > 0 { - // v is the start position in history from end. - start := len(hist) - v - if ml > v { - // Some goes into current block. - // Copy remainder of history - out = append(out, hist[start:]...) - ml -= v - } else { - out = append(out, hist[start:start+ml]...) - ml = 0 - } - } - // We must be in current buffer now - if ml > 0 { - start := len(out) - mo - if ml <= len(out)-start { - // No overlap - out = append(out, out[start:start+ml]...) - } else { - // Overlapping copy - // Extend destination slice and copy one byte at the time. - out = out[:len(out)+ml] - src := out[start : start+ml] - // Destination is the space we just added. - dst := out[len(out)-ml:] - dst = dst[:len(src)] - for i := range src { - dst[i] = src[i] - } - } - } - if i == 0 { - // This is the last sequence, so we shouldn't update state. - break - } - - // Manually inlined, ~ 5-20% faster - // Update all 3 states at once. Approx 20% faster. - nBits := llState.nbBits() + mlState.nbBits() + ofState.nbBits() - if nBits == 0 { - llState = llTable[llState.newState()&maxTableMask] - mlState = mlTable[mlState.newState()&maxTableMask] - ofState = ofTable[ofState.newState()&maxTableMask] - } else { - bits := br.get32BitsFast(nBits) - - lowBits := uint16(bits >> ((ofState.nbBits() + mlState.nbBits()) & 31)) - llState = llTable[(llState.newState()+lowBits)&maxTableMask] - - lowBits = uint16(bits >> (ofState.nbBits() & 31)) - lowBits &= bitMask[mlState.nbBits()&15] - mlState = mlTable[(mlState.newState()+lowBits)&maxTableMask] - - lowBits = uint16(bits) & bitMask[ofState.nbBits()&15] - ofState = ofTable[(ofState.newState()+lowBits)&maxTableMask] - } - } - - if size := len(s.literals) + len(out) - startSize; size > maxBlockSize { - return fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - - // Add final literals - s.out = append(out, s.literals...) - return br.close() -} - -var bitMask [16]uint16 - -func init() { - for i := range bitMask[:] { - bitMask[i] = uint16((1 << uint(i)) - 1) - } -} - -func (s *sequenceDecs) next(br *bitReader, llState, mlState, ofState decSymbol) (ll, mo, ml int) { - // Final will not read from stream. - ll, llB := llState.final() - ml, mlB := mlState.final() - mo, moB := ofState.final() - - // extra bits are stored in reverse order. - br.fill() - mo += br.getBits(moB) - if s.maxBits > 32 { - br.fill() - } - // matchlength+literal length, max 32 bits - ml += br.getBits(mlB) - ll += br.getBits(llB) - mo = s.adjustOffset(mo, ll, moB) - return -} - -func (s *sequenceDecs) adjustOffset(offset, litLen int, offsetB uint8) int { - if offsetB > 1 { - s.prevOffset[2] = s.prevOffset[1] - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = offset - return offset - } - - if litLen == 0 { - // There is an exception though, when current sequence's literals_length = 0. - // In this case, repeated offsets are shifted by one, so an offset_value of 1 means Repeated_Offset2, - // an offset_value of 2 means Repeated_Offset3, and an offset_value of 3 means Repeated_Offset1 - 1_byte. - offset++ - } - - if offset == 0 { - return s.prevOffset[0] - } - var temp int - if offset == 3 { - temp = s.prevOffset[0] - 1 - } else { - temp = s.prevOffset[offset] - } - - if temp == 0 { - // 0 is not valid; input is corrupted; force offset to 1 - println("temp was 0") - temp = 1 - } - - if offset != 1 { - s.prevOffset[2] = s.prevOffset[1] - } - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = temp - return temp -} diff --git a/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.go b/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.go deleted file mode 100644 index c59f17e07a..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.go +++ /dev/null @@ -1,394 +0,0 @@ -//go:build amd64 && !appengine && !noasm && gc -// +build amd64,!appengine,!noasm,gc - -package zstd - -import ( - "fmt" - "io" - - "github.com/klauspost/compress/internal/cpuinfo" -) - -type decodeSyncAsmContext struct { - llTable []decSymbol - mlTable []decSymbol - ofTable []decSymbol - llState uint64 - mlState uint64 - ofState uint64 - iteration int - litRemain int - out []byte - outPosition int - literals []byte - litPosition int - history []byte - windowSize int - ll int // set on error (not for all errors, please refer to _generate/gen.go) - ml int // set on error (not for all errors, please refer to _generate/gen.go) - mo int // set on error (not for all errors, please refer to _generate/gen.go) -} - -// sequenceDecs_decodeSync_amd64 implements the main loop of sequenceDecs.decodeSync in x86 asm. -// -// Please refer to seqdec_generic.go for the reference implementation. -// -//go:noescape -func sequenceDecs_decodeSync_amd64(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int - -// sequenceDecs_decodeSync_bmi2 implements the main loop of sequenceDecs.decodeSync in x86 asm with BMI2 extensions. -// -//go:noescape -func sequenceDecs_decodeSync_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int - -// sequenceDecs_decodeSync_safe_amd64 does the same as above, but does not write more than output buffer. -// -//go:noescape -func sequenceDecs_decodeSync_safe_amd64(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int - -// sequenceDecs_decodeSync_safe_bmi2 does the same as above, but does not write more than output buffer. -// -//go:noescape -func sequenceDecs_decodeSync_safe_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int - -// decode sequences from the stream with the provided history but without a dictionary. -func (s *sequenceDecs) decodeSyncSimple(hist []byte) (bool, error) { - if len(s.dict) > 0 { - return false, nil - } - if s.maxSyncLen == 0 && cap(s.out)-len(s.out) < maxCompressedBlockSize { - return false, nil - } - - // FIXME: Using unsafe memory copies leads to rare, random crashes - // with fuzz testing. It is therefore disabled for now. - const useSafe = true - /* - useSafe := false - if s.maxSyncLen == 0 && cap(s.out)-len(s.out) < maxCompressedBlockSizeAlloc { - useSafe = true - } - if s.maxSyncLen > 0 && cap(s.out)-len(s.out)-compressedBlockOverAlloc < int(s.maxSyncLen) { - useSafe = true - } - if cap(s.literals) < len(s.literals)+compressedBlockOverAlloc { - useSafe = true - } - */ - - br := s.br - - maxBlockSize := maxCompressedBlockSize - if s.windowSize < maxBlockSize { - maxBlockSize = s.windowSize - } - - ctx := decodeSyncAsmContext{ - llTable: s.litLengths.fse.dt[:maxTablesize], - mlTable: s.matchLengths.fse.dt[:maxTablesize], - ofTable: s.offsets.fse.dt[:maxTablesize], - llState: uint64(s.litLengths.state.state), - mlState: uint64(s.matchLengths.state.state), - ofState: uint64(s.offsets.state.state), - iteration: s.nSeqs - 1, - litRemain: len(s.literals), - out: s.out, - outPosition: len(s.out), - literals: s.literals, - windowSize: s.windowSize, - history: hist, - } - - s.seqSize = 0 - startSize := len(s.out) - - var errCode int - if cpuinfo.HasBMI2() { - if useSafe { - errCode = sequenceDecs_decodeSync_safe_bmi2(s, br, &ctx) - } else { - errCode = sequenceDecs_decodeSync_bmi2(s, br, &ctx) - } - } else { - if useSafe { - errCode = sequenceDecs_decodeSync_safe_amd64(s, br, &ctx) - } else { - errCode = sequenceDecs_decodeSync_amd64(s, br, &ctx) - } - } - switch errCode { - case noError: - break - - case errorMatchLenOfsMismatch: - return true, fmt.Errorf("zero matchoff and matchlen (%d) > 0", ctx.ml) - - case errorMatchLenTooBig: - return true, fmt.Errorf("match len (%d) bigger than max allowed length", ctx.ml) - - case errorMatchOffTooBig: - return true, fmt.Errorf("match offset (%d) bigger than current history (%d)", - ctx.mo, ctx.outPosition+len(hist)-startSize) - - case errorNotEnoughLiterals: - return true, fmt.Errorf("unexpected literal count, want %d bytes, but only %d is available", - ctx.ll, ctx.litRemain+ctx.ll) - - case errorOverread: - return true, io.ErrUnexpectedEOF - - case errorNotEnoughSpace: - size := ctx.outPosition + ctx.ll + ctx.ml - if debugDecoder { - println("msl:", s.maxSyncLen, "cap", cap(s.out), "bef:", startSize, "sz:", size-startSize, "mbs:", maxBlockSize, "outsz:", cap(s.out)-startSize) - } - return true, fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - - default: - return true, fmt.Errorf("sequenceDecs_decode returned erroneous code %d", errCode) - } - - s.seqSize += ctx.litRemain - if s.seqSize > maxBlockSize { - return true, fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - err := br.close() - if err != nil { - printf("Closing sequences: %v, %+v\n", err, *br) - return true, err - } - - s.literals = s.literals[ctx.litPosition:] - t := ctx.outPosition - s.out = s.out[:t] - - // Add final literals - s.out = append(s.out, s.literals...) - if debugDecoder { - t += len(s.literals) - if t != len(s.out) { - panic(fmt.Errorf("length mismatch, want %d, got %d", len(s.out), t)) - } - } - - return true, nil -} - -// -------------------------------------------------------------------------------- - -type decodeAsmContext struct { - llTable []decSymbol - mlTable []decSymbol - ofTable []decSymbol - llState uint64 - mlState uint64 - ofState uint64 - iteration int - seqs []seqVals - litRemain int -} - -const noError = 0 - -// error reported when mo == 0 && ml > 0 -const errorMatchLenOfsMismatch = 1 - -// error reported when ml > maxMatchLen -const errorMatchLenTooBig = 2 - -// error reported when mo > available history or mo > s.windowSize -const errorMatchOffTooBig = 3 - -// error reported when the sum of literal lengths exeeceds the literal buffer size -const errorNotEnoughLiterals = 4 - -// error reported when capacity of `out` is too small -const errorNotEnoughSpace = 5 - -// error reported when bits are overread. -const errorOverread = 6 - -// sequenceDecs_decode implements the main loop of sequenceDecs in x86 asm. -// -// Please refer to seqdec_generic.go for the reference implementation. -// -//go:noescape -func sequenceDecs_decode_amd64(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int - -// sequenceDecs_decode implements the main loop of sequenceDecs in x86 asm. -// -// Please refer to seqdec_generic.go for the reference implementation. -// -//go:noescape -func sequenceDecs_decode_56_amd64(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int - -// sequenceDecs_decode implements the main loop of sequenceDecs in x86 asm with BMI2 extensions. -// -//go:noescape -func sequenceDecs_decode_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int - -// sequenceDecs_decode implements the main loop of sequenceDecs in x86 asm with BMI2 extensions. -// -//go:noescape -func sequenceDecs_decode_56_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int - -// decode sequences from the stream without the provided history. -func (s *sequenceDecs) decode(seqs []seqVals) error { - br := s.br - - maxBlockSize := maxCompressedBlockSize - if s.windowSize < maxBlockSize { - maxBlockSize = s.windowSize - } - - ctx := decodeAsmContext{ - llTable: s.litLengths.fse.dt[:maxTablesize], - mlTable: s.matchLengths.fse.dt[:maxTablesize], - ofTable: s.offsets.fse.dt[:maxTablesize], - llState: uint64(s.litLengths.state.state), - mlState: uint64(s.matchLengths.state.state), - ofState: uint64(s.offsets.state.state), - seqs: seqs, - iteration: len(seqs) - 1, - litRemain: len(s.literals), - } - - if debugDecoder { - println("decode: decoding", len(seqs), "sequences", br.remain(), "bits remain on stream") - } - - s.seqSize = 0 - lte56bits := s.maxBits+s.offsets.fse.actualTableLog+s.matchLengths.fse.actualTableLog+s.litLengths.fse.actualTableLog <= 56 - var errCode int - if cpuinfo.HasBMI2() { - if lte56bits { - errCode = sequenceDecs_decode_56_bmi2(s, br, &ctx) - } else { - errCode = sequenceDecs_decode_bmi2(s, br, &ctx) - } - } else { - if lte56bits { - errCode = sequenceDecs_decode_56_amd64(s, br, &ctx) - } else { - errCode = sequenceDecs_decode_amd64(s, br, &ctx) - } - } - if errCode != 0 { - i := len(seqs) - ctx.iteration - 1 - switch errCode { - case errorMatchLenOfsMismatch: - ml := ctx.seqs[i].ml - return fmt.Errorf("zero matchoff and matchlen (%d) > 0", ml) - - case errorMatchLenTooBig: - ml := ctx.seqs[i].ml - return fmt.Errorf("match len (%d) bigger than max allowed length", ml) - - case errorNotEnoughLiterals: - ll := ctx.seqs[i].ll - return fmt.Errorf("unexpected literal count, want %d bytes, but only %d is available", ll, ctx.litRemain+ll) - case errorOverread: - return io.ErrUnexpectedEOF - } - - return fmt.Errorf("sequenceDecs_decode_amd64 returned erroneous code %d", errCode) - } - - if ctx.litRemain < 0 { - return fmt.Errorf("literal count is too big: total available %d, total requested %d", - len(s.literals), len(s.literals)-ctx.litRemain) - } - - s.seqSize += ctx.litRemain - if s.seqSize > maxBlockSize { - return fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - if debugDecoder { - println("decode: ", br.remain(), "bits remain on stream. code:", errCode) - } - err := br.close() - if err != nil { - printf("Closing sequences: %v, %+v\n", err, *br) - } - return err -} - -// -------------------------------------------------------------------------------- - -type executeAsmContext struct { - seqs []seqVals - seqIndex int - out []byte - history []byte - literals []byte - outPosition int - litPosition int - windowSize int -} - -// sequenceDecs_executeSimple_amd64 implements the main loop of sequenceDecs.executeSimple in x86 asm. -// -// Returns false if a match offset is too big. -// -// Please refer to seqdec_generic.go for the reference implementation. -// -//go:noescape -func sequenceDecs_executeSimple_amd64(ctx *executeAsmContext) bool - -// Same as above, but with safe memcopies -// -//go:noescape -func sequenceDecs_executeSimple_safe_amd64(ctx *executeAsmContext) bool - -// executeSimple handles cases when dictionary is not used. -func (s *sequenceDecs) executeSimple(seqs []seqVals, hist []byte) error { - // Ensure we have enough output size... - if len(s.out)+s.seqSize+compressedBlockOverAlloc > cap(s.out) { - addBytes := s.seqSize + len(s.out) + compressedBlockOverAlloc - s.out = append(s.out, make([]byte, addBytes)...) - s.out = s.out[:len(s.out)-addBytes] - } - - if debugDecoder { - printf("Execute %d seqs with literals: %d into %d bytes\n", len(seqs), len(s.literals), s.seqSize) - } - - var t = len(s.out) - out := s.out[:t+s.seqSize] - - ctx := executeAsmContext{ - seqs: seqs, - seqIndex: 0, - out: out, - history: hist, - outPosition: t, - litPosition: 0, - literals: s.literals, - windowSize: s.windowSize, - } - var ok bool - if cap(s.literals) < len(s.literals)+compressedBlockOverAlloc { - ok = sequenceDecs_executeSimple_safe_amd64(&ctx) - } else { - ok = sequenceDecs_executeSimple_amd64(&ctx) - } - if !ok { - return fmt.Errorf("match offset (%d) bigger than current history (%d)", - seqs[ctx.seqIndex].mo, ctx.outPosition+len(hist)) - } - s.literals = s.literals[ctx.litPosition:] - t = ctx.outPosition - - // Add final literals - copy(out[t:], s.literals) - if debugDecoder { - t += len(s.literals) - if t != len(out) { - panic(fmt.Errorf("length mismatch, want %d, got %d, ss: %d", len(out), t, s.seqSize)) - } - } - s.out = out - - return nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.s b/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.s deleted file mode 100644 index f5591fa1e8..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/seqdec_amd64.s +++ /dev/null @@ -1,4151 +0,0 @@ -// Code generated by command: go run gen.go -out ../seqdec_amd64.s -pkg=zstd. DO NOT EDIT. - -//go:build !appengine && !noasm && gc && !noasm - -// func sequenceDecs_decode_amd64(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int -// Requires: CMOV -TEXT ·sequenceDecs_decode_amd64(SB), $8-32 - MOVQ br+8(FP), CX - MOVQ 24(CX), DX - MOVBQZX 32(CX), BX - MOVQ (CX), AX - MOVQ 8(CX), SI - ADDQ SI, AX - MOVQ AX, (SP) - MOVQ ctx+16(FP), AX - MOVQ 72(AX), DI - MOVQ 80(AX), R8 - MOVQ 88(AX), R9 - MOVQ 104(AX), R10 - MOVQ s+0(FP), AX - MOVQ 144(AX), R11 - MOVQ 152(AX), R12 - MOVQ 160(AX), R13 - -sequenceDecs_decode_amd64_main_loop: - MOVQ (SP), R14 - - // Fill bitreader to have enough for the offset and match length. - CMPQ SI, $0x08 - JL sequenceDecs_decode_amd64_fill_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R14 - MOVQ (R14), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decode_amd64_fill_end - -sequenceDecs_decode_amd64_fill_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decode_amd64_fill_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decode_amd64_fill_end - SHLQ $0x08, DX - SUBQ $0x01, R14 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R14), AX - ORQ AX, DX - JMP sequenceDecs_decode_amd64_fill_byte_by_byte - -sequenceDecs_decode_amd64_fill_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decode_amd64_fill_end: - // Update offset - MOVQ R9, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_amd64_of_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_amd64_of_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_amd64_of_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_amd64_of_update_zero: - MOVQ AX, 16(R10) - - // Update match length - MOVQ R8, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_amd64_ml_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_amd64_ml_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_amd64_ml_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_amd64_ml_update_zero: - MOVQ AX, 8(R10) - - // Fill bitreader to have enough for the remaining - CMPQ SI, $0x08 - JL sequenceDecs_decode_amd64_fill_2_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R14 - MOVQ (R14), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decode_amd64_fill_2_end - -sequenceDecs_decode_amd64_fill_2_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decode_amd64_fill_2_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decode_amd64_fill_2_end - SHLQ $0x08, DX - SUBQ $0x01, R14 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R14), AX - ORQ AX, DX - JMP sequenceDecs_decode_amd64_fill_2_byte_by_byte - -sequenceDecs_decode_amd64_fill_2_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decode_amd64_fill_2_end: - // Update literal length - MOVQ DI, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_amd64_ll_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_amd64_ll_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_amd64_ll_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_amd64_ll_update_zero: - MOVQ AX, (R10) - - // Fill bitreader for state updates - MOVQ R14, (SP) - MOVQ R9, AX - SHRQ $0x08, AX - MOVBQZX AL, AX - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decode_amd64_skip_update - - // Update Literal Length State - MOVBQZX DI, R14 - SHRL $0x10, DI - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, DI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(DI*8), DI - - // Update Match Length State - MOVBQZX R8, R14 - SHRL $0x10, R8 - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, R8 - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Offset State - MOVBQZX R9, R14 - SHRL $0x10, R9 - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, R9 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R9*8), R9 - -sequenceDecs_decode_amd64_skip_update: - // Adjust offset - MOVQ 16(R10), CX - CMPQ AX, $0x01 - JBE sequenceDecs_decode_amd64_adjust_offsetB_1_or_0 - MOVQ R12, R13 - MOVQ R11, R12 - MOVQ CX, R11 - JMP sequenceDecs_decode_amd64_after_adjust - -sequenceDecs_decode_amd64_adjust_offsetB_1_or_0: - CMPQ (R10), $0x00000000 - JNE sequenceDecs_decode_amd64_adjust_offset_maybezero - INCQ CX - JMP sequenceDecs_decode_amd64_adjust_offset_nonzero - -sequenceDecs_decode_amd64_adjust_offset_maybezero: - TESTQ CX, CX - JNZ sequenceDecs_decode_amd64_adjust_offset_nonzero - MOVQ R11, CX - JMP sequenceDecs_decode_amd64_after_adjust - -sequenceDecs_decode_amd64_adjust_offset_nonzero: - CMPQ CX, $0x01 - JB sequenceDecs_decode_amd64_adjust_zero - JEQ sequenceDecs_decode_amd64_adjust_one - CMPQ CX, $0x02 - JA sequenceDecs_decode_amd64_adjust_three - JMP sequenceDecs_decode_amd64_adjust_two - -sequenceDecs_decode_amd64_adjust_zero: - MOVQ R11, AX - JMP sequenceDecs_decode_amd64_adjust_test_temp_valid - -sequenceDecs_decode_amd64_adjust_one: - MOVQ R12, AX - JMP sequenceDecs_decode_amd64_adjust_test_temp_valid - -sequenceDecs_decode_amd64_adjust_two: - MOVQ R13, AX - JMP sequenceDecs_decode_amd64_adjust_test_temp_valid - -sequenceDecs_decode_amd64_adjust_three: - LEAQ -1(R11), AX - -sequenceDecs_decode_amd64_adjust_test_temp_valid: - TESTQ AX, AX - JNZ sequenceDecs_decode_amd64_adjust_temp_valid - MOVQ $0x00000001, AX - -sequenceDecs_decode_amd64_adjust_temp_valid: - CMPQ CX, $0x01 - CMOVQNE R12, R13 - MOVQ R11, R12 - MOVQ AX, R11 - MOVQ AX, CX - -sequenceDecs_decode_amd64_after_adjust: - MOVQ CX, 16(R10) - - // Check values - MOVQ 8(R10), AX - MOVQ (R10), R14 - LEAQ (AX)(R14*1), R15 - MOVQ s+0(FP), BP - ADDQ R15, 256(BP) - MOVQ ctx+16(FP), R15 - SUBQ R14, 128(R15) - JS error_not_enough_literals - CMPQ AX, $0x00020002 - JA sequenceDecs_decode_amd64_error_match_len_too_big - TESTQ CX, CX - JNZ sequenceDecs_decode_amd64_match_len_ofs_ok - TESTQ AX, AX - JNZ sequenceDecs_decode_amd64_error_match_len_ofs_mismatch - -sequenceDecs_decode_amd64_match_len_ofs_ok: - ADDQ $0x18, R10 - MOVQ ctx+16(FP), AX - DECQ 96(AX) - JNS sequenceDecs_decode_amd64_main_loop - MOVQ s+0(FP), AX - MOVQ R11, 144(AX) - MOVQ R12, 152(AX) - MOVQ R13, 160(AX) - MOVQ br+8(FP), AX - MOVQ DX, 24(AX) - MOVB BL, 32(AX) - MOVQ SI, 8(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decode_amd64_error_match_len_ofs_mismatch: - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decode_amd64_error_match_len_too_big: - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - -// func sequenceDecs_decode_56_amd64(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int -// Requires: CMOV -TEXT ·sequenceDecs_decode_56_amd64(SB), $8-32 - MOVQ br+8(FP), CX - MOVQ 24(CX), DX - MOVBQZX 32(CX), BX - MOVQ (CX), AX - MOVQ 8(CX), SI - ADDQ SI, AX - MOVQ AX, (SP) - MOVQ ctx+16(FP), AX - MOVQ 72(AX), DI - MOVQ 80(AX), R8 - MOVQ 88(AX), R9 - MOVQ 104(AX), R10 - MOVQ s+0(FP), AX - MOVQ 144(AX), R11 - MOVQ 152(AX), R12 - MOVQ 160(AX), R13 - -sequenceDecs_decode_56_amd64_main_loop: - MOVQ (SP), R14 - - // Fill bitreader to have enough for the offset and match length. - CMPQ SI, $0x08 - JL sequenceDecs_decode_56_amd64_fill_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R14 - MOVQ (R14), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decode_56_amd64_fill_end - -sequenceDecs_decode_56_amd64_fill_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decode_56_amd64_fill_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decode_56_amd64_fill_end - SHLQ $0x08, DX - SUBQ $0x01, R14 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R14), AX - ORQ AX, DX - JMP sequenceDecs_decode_56_amd64_fill_byte_by_byte - -sequenceDecs_decode_56_amd64_fill_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decode_56_amd64_fill_end: - // Update offset - MOVQ R9, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_56_amd64_of_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_56_amd64_of_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_56_amd64_of_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_56_amd64_of_update_zero: - MOVQ AX, 16(R10) - - // Update match length - MOVQ R8, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_56_amd64_ml_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_56_amd64_ml_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_56_amd64_ml_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_56_amd64_ml_update_zero: - MOVQ AX, 8(R10) - - // Update literal length - MOVQ DI, AX - MOVQ BX, CX - MOVQ DX, R15 - SHLQ CL, R15 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decode_56_amd64_ll_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decode_56_amd64_ll_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decode_56_amd64_ll_update_zero - NEGQ CX - SHRQ CL, R15 - ADDQ R15, AX - -sequenceDecs_decode_56_amd64_ll_update_zero: - MOVQ AX, (R10) - - // Fill bitreader for state updates - MOVQ R14, (SP) - MOVQ R9, AX - SHRQ $0x08, AX - MOVBQZX AL, AX - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decode_56_amd64_skip_update - - // Update Literal Length State - MOVBQZX DI, R14 - SHRL $0x10, DI - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, DI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(DI*8), DI - - // Update Match Length State - MOVBQZX R8, R14 - SHRL $0x10, R8 - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, R8 - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Offset State - MOVBQZX R9, R14 - SHRL $0x10, R9 - LEAQ (BX)(R14*1), CX - MOVQ DX, R15 - MOVQ CX, BX - ROLQ CL, R15 - MOVL $0x00000001, BP - MOVB R14, CL - SHLL CL, BP - DECL BP - ANDQ BP, R15 - ADDQ R15, R9 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R9*8), R9 - -sequenceDecs_decode_56_amd64_skip_update: - // Adjust offset - MOVQ 16(R10), CX - CMPQ AX, $0x01 - JBE sequenceDecs_decode_56_amd64_adjust_offsetB_1_or_0 - MOVQ R12, R13 - MOVQ R11, R12 - MOVQ CX, R11 - JMP sequenceDecs_decode_56_amd64_after_adjust - -sequenceDecs_decode_56_amd64_adjust_offsetB_1_or_0: - CMPQ (R10), $0x00000000 - JNE sequenceDecs_decode_56_amd64_adjust_offset_maybezero - INCQ CX - JMP sequenceDecs_decode_56_amd64_adjust_offset_nonzero - -sequenceDecs_decode_56_amd64_adjust_offset_maybezero: - TESTQ CX, CX - JNZ sequenceDecs_decode_56_amd64_adjust_offset_nonzero - MOVQ R11, CX - JMP sequenceDecs_decode_56_amd64_after_adjust - -sequenceDecs_decode_56_amd64_adjust_offset_nonzero: - CMPQ CX, $0x01 - JB sequenceDecs_decode_56_amd64_adjust_zero - JEQ sequenceDecs_decode_56_amd64_adjust_one - CMPQ CX, $0x02 - JA sequenceDecs_decode_56_amd64_adjust_three - JMP sequenceDecs_decode_56_amd64_adjust_two - -sequenceDecs_decode_56_amd64_adjust_zero: - MOVQ R11, AX - JMP sequenceDecs_decode_56_amd64_adjust_test_temp_valid - -sequenceDecs_decode_56_amd64_adjust_one: - MOVQ R12, AX - JMP sequenceDecs_decode_56_amd64_adjust_test_temp_valid - -sequenceDecs_decode_56_amd64_adjust_two: - MOVQ R13, AX - JMP sequenceDecs_decode_56_amd64_adjust_test_temp_valid - -sequenceDecs_decode_56_amd64_adjust_three: - LEAQ -1(R11), AX - -sequenceDecs_decode_56_amd64_adjust_test_temp_valid: - TESTQ AX, AX - JNZ sequenceDecs_decode_56_amd64_adjust_temp_valid - MOVQ $0x00000001, AX - -sequenceDecs_decode_56_amd64_adjust_temp_valid: - CMPQ CX, $0x01 - CMOVQNE R12, R13 - MOVQ R11, R12 - MOVQ AX, R11 - MOVQ AX, CX - -sequenceDecs_decode_56_amd64_after_adjust: - MOVQ CX, 16(R10) - - // Check values - MOVQ 8(R10), AX - MOVQ (R10), R14 - LEAQ (AX)(R14*1), R15 - MOVQ s+0(FP), BP - ADDQ R15, 256(BP) - MOVQ ctx+16(FP), R15 - SUBQ R14, 128(R15) - JS error_not_enough_literals - CMPQ AX, $0x00020002 - JA sequenceDecs_decode_56_amd64_error_match_len_too_big - TESTQ CX, CX - JNZ sequenceDecs_decode_56_amd64_match_len_ofs_ok - TESTQ AX, AX - JNZ sequenceDecs_decode_56_amd64_error_match_len_ofs_mismatch - -sequenceDecs_decode_56_amd64_match_len_ofs_ok: - ADDQ $0x18, R10 - MOVQ ctx+16(FP), AX - DECQ 96(AX) - JNS sequenceDecs_decode_56_amd64_main_loop - MOVQ s+0(FP), AX - MOVQ R11, 144(AX) - MOVQ R12, 152(AX) - MOVQ R13, 160(AX) - MOVQ br+8(FP), AX - MOVQ DX, 24(AX) - MOVB BL, 32(AX) - MOVQ SI, 8(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decode_56_amd64_error_match_len_ofs_mismatch: - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decode_56_amd64_error_match_len_too_big: - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - -// func sequenceDecs_decode_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int -// Requires: BMI, BMI2, CMOV -TEXT ·sequenceDecs_decode_bmi2(SB), $8-32 - MOVQ br+8(FP), BX - MOVQ 24(BX), AX - MOVBQZX 32(BX), DX - MOVQ (BX), CX - MOVQ 8(BX), BX - ADDQ BX, CX - MOVQ CX, (SP) - MOVQ ctx+16(FP), CX - MOVQ 72(CX), SI - MOVQ 80(CX), DI - MOVQ 88(CX), R8 - MOVQ 104(CX), R9 - MOVQ s+0(FP), CX - MOVQ 144(CX), R10 - MOVQ 152(CX), R11 - MOVQ 160(CX), R12 - -sequenceDecs_decode_bmi2_main_loop: - MOVQ (SP), R13 - - // Fill bitreader to have enough for the offset and match length. - CMPQ BX, $0x08 - JL sequenceDecs_decode_bmi2_fill_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R13 - MOVQ (R13), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decode_bmi2_fill_end - -sequenceDecs_decode_bmi2_fill_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decode_bmi2_fill_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decode_bmi2_fill_end - SHLQ $0x08, AX - SUBQ $0x01, R13 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R13), CX - ORQ CX, AX - JMP sequenceDecs_decode_bmi2_fill_byte_by_byte - -sequenceDecs_decode_bmi2_fill_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decode_bmi2_fill_end: - // Update offset - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ R8, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, 16(R9) - - // Update match length - MOVQ $0x00000808, CX - BEXTRQ CX, DI, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ DI, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, 8(R9) - - // Fill bitreader to have enough for the remaining - CMPQ BX, $0x08 - JL sequenceDecs_decode_bmi2_fill_2_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R13 - MOVQ (R13), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decode_bmi2_fill_2_end - -sequenceDecs_decode_bmi2_fill_2_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decode_bmi2_fill_2_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decode_bmi2_fill_2_end - SHLQ $0x08, AX - SUBQ $0x01, R13 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R13), CX - ORQ CX, AX - JMP sequenceDecs_decode_bmi2_fill_2_byte_by_byte - -sequenceDecs_decode_bmi2_fill_2_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decode_bmi2_fill_2_end: - // Update literal length - MOVQ $0x00000808, CX - BEXTRQ CX, SI, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ SI, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, (R9) - - // Fill bitreader for state updates - MOVQ R13, (SP) - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R13 - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decode_bmi2_skip_update - LEAQ (SI)(DI*1), R14 - ADDQ R8, R14 - MOVBQZX R14, R14 - LEAQ (DX)(R14*1), CX - MOVQ AX, R15 - MOVQ CX, DX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - - // Update Offset State - BZHIQ R8, R15, CX - SHRXQ R8, R15, R15 - SHRL $0x10, R8 - ADDQ CX, R8 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Match Length State - BZHIQ DI, R15, CX - SHRXQ DI, R15, R15 - SHRL $0x10, DI - ADDQ CX, DI - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(DI*8), DI - - // Update Literal Length State - BZHIQ SI, R15, CX - SHRL $0x10, SI - ADDQ CX, SI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(SI*8), SI - -sequenceDecs_decode_bmi2_skip_update: - // Adjust offset - MOVQ 16(R9), CX - CMPQ R13, $0x01 - JBE sequenceDecs_decode_bmi2_adjust_offsetB_1_or_0 - MOVQ R11, R12 - MOVQ R10, R11 - MOVQ CX, R10 - JMP sequenceDecs_decode_bmi2_after_adjust - -sequenceDecs_decode_bmi2_adjust_offsetB_1_or_0: - CMPQ (R9), $0x00000000 - JNE sequenceDecs_decode_bmi2_adjust_offset_maybezero - INCQ CX - JMP sequenceDecs_decode_bmi2_adjust_offset_nonzero - -sequenceDecs_decode_bmi2_adjust_offset_maybezero: - TESTQ CX, CX - JNZ sequenceDecs_decode_bmi2_adjust_offset_nonzero - MOVQ R10, CX - JMP sequenceDecs_decode_bmi2_after_adjust - -sequenceDecs_decode_bmi2_adjust_offset_nonzero: - CMPQ CX, $0x01 - JB sequenceDecs_decode_bmi2_adjust_zero - JEQ sequenceDecs_decode_bmi2_adjust_one - CMPQ CX, $0x02 - JA sequenceDecs_decode_bmi2_adjust_three - JMP sequenceDecs_decode_bmi2_adjust_two - -sequenceDecs_decode_bmi2_adjust_zero: - MOVQ R10, R13 - JMP sequenceDecs_decode_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_bmi2_adjust_one: - MOVQ R11, R13 - JMP sequenceDecs_decode_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_bmi2_adjust_two: - MOVQ R12, R13 - JMP sequenceDecs_decode_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_bmi2_adjust_three: - LEAQ -1(R10), R13 - -sequenceDecs_decode_bmi2_adjust_test_temp_valid: - TESTQ R13, R13 - JNZ sequenceDecs_decode_bmi2_adjust_temp_valid - MOVQ $0x00000001, R13 - -sequenceDecs_decode_bmi2_adjust_temp_valid: - CMPQ CX, $0x01 - CMOVQNE R11, R12 - MOVQ R10, R11 - MOVQ R13, R10 - MOVQ R13, CX - -sequenceDecs_decode_bmi2_after_adjust: - MOVQ CX, 16(R9) - - // Check values - MOVQ 8(R9), R13 - MOVQ (R9), R14 - LEAQ (R13)(R14*1), R15 - MOVQ s+0(FP), BP - ADDQ R15, 256(BP) - MOVQ ctx+16(FP), R15 - SUBQ R14, 128(R15) - JS error_not_enough_literals - CMPQ R13, $0x00020002 - JA sequenceDecs_decode_bmi2_error_match_len_too_big - TESTQ CX, CX - JNZ sequenceDecs_decode_bmi2_match_len_ofs_ok - TESTQ R13, R13 - JNZ sequenceDecs_decode_bmi2_error_match_len_ofs_mismatch - -sequenceDecs_decode_bmi2_match_len_ofs_ok: - ADDQ $0x18, R9 - MOVQ ctx+16(FP), CX - DECQ 96(CX) - JNS sequenceDecs_decode_bmi2_main_loop - MOVQ s+0(FP), CX - MOVQ R10, 144(CX) - MOVQ R11, 152(CX) - MOVQ R12, 160(CX) - MOVQ br+8(FP), CX - MOVQ AX, 24(CX) - MOVB DL, 32(CX) - MOVQ BX, 8(CX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decode_bmi2_error_match_len_ofs_mismatch: - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decode_bmi2_error_match_len_too_big: - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - -// func sequenceDecs_decode_56_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeAsmContext) int -// Requires: BMI, BMI2, CMOV -TEXT ·sequenceDecs_decode_56_bmi2(SB), $8-32 - MOVQ br+8(FP), BX - MOVQ 24(BX), AX - MOVBQZX 32(BX), DX - MOVQ (BX), CX - MOVQ 8(BX), BX - ADDQ BX, CX - MOVQ CX, (SP) - MOVQ ctx+16(FP), CX - MOVQ 72(CX), SI - MOVQ 80(CX), DI - MOVQ 88(CX), R8 - MOVQ 104(CX), R9 - MOVQ s+0(FP), CX - MOVQ 144(CX), R10 - MOVQ 152(CX), R11 - MOVQ 160(CX), R12 - -sequenceDecs_decode_56_bmi2_main_loop: - MOVQ (SP), R13 - - // Fill bitreader to have enough for the offset and match length. - CMPQ BX, $0x08 - JL sequenceDecs_decode_56_bmi2_fill_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R13 - MOVQ (R13), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decode_56_bmi2_fill_end - -sequenceDecs_decode_56_bmi2_fill_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decode_56_bmi2_fill_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decode_56_bmi2_fill_end - SHLQ $0x08, AX - SUBQ $0x01, R13 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R13), CX - ORQ CX, AX - JMP sequenceDecs_decode_56_bmi2_fill_byte_by_byte - -sequenceDecs_decode_56_bmi2_fill_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decode_56_bmi2_fill_end: - // Update offset - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ R8, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, 16(R9) - - // Update match length - MOVQ $0x00000808, CX - BEXTRQ CX, DI, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ DI, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, 8(R9) - - // Update literal length - MOVQ $0x00000808, CX - BEXTRQ CX, SI, R14 - MOVQ AX, R15 - LEAQ (DX)(R14*1), CX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - MOVQ CX, DX - MOVQ SI, CX - SHRQ $0x20, CX - ADDQ R15, CX - MOVQ CX, (R9) - - // Fill bitreader for state updates - MOVQ R13, (SP) - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R13 - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decode_56_bmi2_skip_update - LEAQ (SI)(DI*1), R14 - ADDQ R8, R14 - MOVBQZX R14, R14 - LEAQ (DX)(R14*1), CX - MOVQ AX, R15 - MOVQ CX, DX - ROLQ CL, R15 - BZHIQ R14, R15, R15 - - // Update Offset State - BZHIQ R8, R15, CX - SHRXQ R8, R15, R15 - SHRL $0x10, R8 - ADDQ CX, R8 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Match Length State - BZHIQ DI, R15, CX - SHRXQ DI, R15, R15 - SHRL $0x10, DI - ADDQ CX, DI - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(DI*8), DI - - // Update Literal Length State - BZHIQ SI, R15, CX - SHRL $0x10, SI - ADDQ CX, SI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(SI*8), SI - -sequenceDecs_decode_56_bmi2_skip_update: - // Adjust offset - MOVQ 16(R9), CX - CMPQ R13, $0x01 - JBE sequenceDecs_decode_56_bmi2_adjust_offsetB_1_or_0 - MOVQ R11, R12 - MOVQ R10, R11 - MOVQ CX, R10 - JMP sequenceDecs_decode_56_bmi2_after_adjust - -sequenceDecs_decode_56_bmi2_adjust_offsetB_1_or_0: - CMPQ (R9), $0x00000000 - JNE sequenceDecs_decode_56_bmi2_adjust_offset_maybezero - INCQ CX - JMP sequenceDecs_decode_56_bmi2_adjust_offset_nonzero - -sequenceDecs_decode_56_bmi2_adjust_offset_maybezero: - TESTQ CX, CX - JNZ sequenceDecs_decode_56_bmi2_adjust_offset_nonzero - MOVQ R10, CX - JMP sequenceDecs_decode_56_bmi2_after_adjust - -sequenceDecs_decode_56_bmi2_adjust_offset_nonzero: - CMPQ CX, $0x01 - JB sequenceDecs_decode_56_bmi2_adjust_zero - JEQ sequenceDecs_decode_56_bmi2_adjust_one - CMPQ CX, $0x02 - JA sequenceDecs_decode_56_bmi2_adjust_three - JMP sequenceDecs_decode_56_bmi2_adjust_two - -sequenceDecs_decode_56_bmi2_adjust_zero: - MOVQ R10, R13 - JMP sequenceDecs_decode_56_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_56_bmi2_adjust_one: - MOVQ R11, R13 - JMP sequenceDecs_decode_56_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_56_bmi2_adjust_two: - MOVQ R12, R13 - JMP sequenceDecs_decode_56_bmi2_adjust_test_temp_valid - -sequenceDecs_decode_56_bmi2_adjust_three: - LEAQ -1(R10), R13 - -sequenceDecs_decode_56_bmi2_adjust_test_temp_valid: - TESTQ R13, R13 - JNZ sequenceDecs_decode_56_bmi2_adjust_temp_valid - MOVQ $0x00000001, R13 - -sequenceDecs_decode_56_bmi2_adjust_temp_valid: - CMPQ CX, $0x01 - CMOVQNE R11, R12 - MOVQ R10, R11 - MOVQ R13, R10 - MOVQ R13, CX - -sequenceDecs_decode_56_bmi2_after_adjust: - MOVQ CX, 16(R9) - - // Check values - MOVQ 8(R9), R13 - MOVQ (R9), R14 - LEAQ (R13)(R14*1), R15 - MOVQ s+0(FP), BP - ADDQ R15, 256(BP) - MOVQ ctx+16(FP), R15 - SUBQ R14, 128(R15) - JS error_not_enough_literals - CMPQ R13, $0x00020002 - JA sequenceDecs_decode_56_bmi2_error_match_len_too_big - TESTQ CX, CX - JNZ sequenceDecs_decode_56_bmi2_match_len_ofs_ok - TESTQ R13, R13 - JNZ sequenceDecs_decode_56_bmi2_error_match_len_ofs_mismatch - -sequenceDecs_decode_56_bmi2_match_len_ofs_ok: - ADDQ $0x18, R9 - MOVQ ctx+16(FP), CX - DECQ 96(CX) - JNS sequenceDecs_decode_56_bmi2_main_loop - MOVQ s+0(FP), CX - MOVQ R10, 144(CX) - MOVQ R11, 152(CX) - MOVQ R12, 160(CX) - MOVQ br+8(FP), CX - MOVQ AX, 24(CX) - MOVB DL, 32(CX) - MOVQ BX, 8(CX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decode_56_bmi2_error_match_len_ofs_mismatch: - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decode_56_bmi2_error_match_len_too_big: - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - -// func sequenceDecs_executeSimple_amd64(ctx *executeAsmContext) bool -// Requires: SSE -TEXT ·sequenceDecs_executeSimple_amd64(SB), $8-9 - MOVQ ctx+0(FP), R10 - MOVQ 8(R10), CX - TESTQ CX, CX - JZ empty_seqs - MOVQ (R10), AX - MOVQ 24(R10), DX - MOVQ 32(R10), BX - MOVQ 80(R10), SI - MOVQ 104(R10), DI - MOVQ 120(R10), R8 - MOVQ 56(R10), R9 - MOVQ 64(R10), R10 - ADDQ R10, R9 - - // seqsBase += 24 * seqIndex - LEAQ (DX)(DX*2), R11 - SHLQ $0x03, R11 - ADDQ R11, AX - - // outBase += outPosition - ADDQ DI, BX - -main_loop: - MOVQ (AX), R11 - MOVQ 16(AX), R12 - MOVQ 8(AX), R13 - - // Copy literals - TESTQ R11, R11 - JZ check_offset - XORQ R14, R14 - -copy_1: - MOVUPS (SI)(R14*1), X0 - MOVUPS X0, (BX)(R14*1) - ADDQ $0x10, R14 - CMPQ R14, R11 - JB copy_1 - ADDQ R11, SI - ADDQ R11, BX - ADDQ R11, DI - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - LEAQ (DI)(R10*1), R11 - CMPQ R12, R11 - JG error_match_off_too_big - CMPQ R12, R8 - JG error_match_off_too_big - - // Copy match from history - MOVQ R12, R11 - SUBQ DI, R11 - JLS copy_match - MOVQ R9, R14 - SUBQ R11, R14 - CMPQ R13, R11 - JG copy_all_from_history - MOVQ R13, R11 - SUBQ $0x10, R11 - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (BX) - ADDQ $0x10, R14 - ADDQ $0x10, BX - SUBQ $0x10, R11 - JAE copy_4_loop - LEAQ 16(R14)(R11*1), R14 - LEAQ 16(BX)(R11*1), BX - MOVUPS -16(R14), X0 - MOVUPS X0, -16(BX) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), R11 - MOVB 2(R14), R12 - MOVW R11, (BX) - MOVB R12, 2(BX) - ADDQ R13, R14 - ADDQ R13, BX - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), R11 - MOVL -4(R14)(R13*1), R12 - MOVL R11, (BX) - MOVL R12, -4(BX)(R13*1) - ADDQ R13, R14 - ADDQ R13, BX - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), R11 - MOVQ -8(R14)(R13*1), R12 - MOVQ R11, (BX) - MOVQ R12, -8(BX)(R13*1) - ADDQ R13, R14 - ADDQ R13, BX - -copy_4_end: - ADDQ R13, DI - ADDQ $0x18, AX - INCQ DX - CMPQ DX, CX - JB main_loop - JMP loop_finished - -copy_all_from_history: - MOVQ R11, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (BX) - ADDQ $0x10, R14 - ADDQ $0x10, BX - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(BX)(R15*1), BX - MOVUPS -16(R14), X0 - MOVUPS X0, -16(BX) - JMP copy_5_end - -copy_5_small: - CMPQ R11, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ R11, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(R11*1), BP - MOVB R15, (BX) - MOVB BP, -1(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (BX) - MOVB BP, 2(BX) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(R11*1), BP - MOVL R15, (BX) - MOVL BP, -4(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(R11*1), BP - MOVQ R15, (BX) - MOVQ BP, -8(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - -copy_5_end: - ADDQ R11, DI - SUBQ R11, R13 - - // Copy match from the current buffer -copy_match: - MOVQ BX, R11 - SUBQ R12, R11 - - // ml <= mo - CMPQ R13, R12 - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, DI - MOVQ BX, R12 - ADDQ R13, BX - -copy_2: - MOVUPS (R11), X0 - MOVUPS X0, (R12) - ADDQ $0x10, R11 - ADDQ $0x10, R12 - SUBQ $0x10, R13 - JHI copy_2 - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, DI - -copy_slow_3: - MOVB (R11), R12 - MOVB R12, (BX) - INCQ R11 - INCQ BX - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - ADDQ $0x18, AX - INCQ DX - CMPQ DX, CX - JB main_loop - -loop_finished: - // Return value - MOVB $0x01, ret+8(FP) - - // Update the context - MOVQ ctx+0(FP), AX - MOVQ DX, 24(AX) - MOVQ DI, 104(AX) - SUBQ 80(AX), SI - MOVQ SI, 112(AX) - RET - -error_match_off_too_big: - // Return value - MOVB $0x00, ret+8(FP) - - // Update the context - MOVQ ctx+0(FP), AX - MOVQ DX, 24(AX) - MOVQ DI, 104(AX) - SUBQ 80(AX), SI - MOVQ SI, 112(AX) - RET - -empty_seqs: - // Return value - MOVB $0x01, ret+8(FP) - RET - -// func sequenceDecs_executeSimple_safe_amd64(ctx *executeAsmContext) bool -// Requires: SSE -TEXT ·sequenceDecs_executeSimple_safe_amd64(SB), $8-9 - MOVQ ctx+0(FP), R10 - MOVQ 8(R10), CX - TESTQ CX, CX - JZ empty_seqs - MOVQ (R10), AX - MOVQ 24(R10), DX - MOVQ 32(R10), BX - MOVQ 80(R10), SI - MOVQ 104(R10), DI - MOVQ 120(R10), R8 - MOVQ 56(R10), R9 - MOVQ 64(R10), R10 - ADDQ R10, R9 - - // seqsBase += 24 * seqIndex - LEAQ (DX)(DX*2), R11 - SHLQ $0x03, R11 - ADDQ R11, AX - - // outBase += outPosition - ADDQ DI, BX - -main_loop: - MOVQ (AX), R11 - MOVQ 16(AX), R12 - MOVQ 8(AX), R13 - - // Copy literals - TESTQ R11, R11 - JZ check_offset - MOVQ R11, R14 - SUBQ $0x10, R14 - JB copy_1_small - -copy_1_loop: - MOVUPS (SI), X0 - MOVUPS X0, (BX) - ADDQ $0x10, SI - ADDQ $0x10, BX - SUBQ $0x10, R14 - JAE copy_1_loop - LEAQ 16(SI)(R14*1), SI - LEAQ 16(BX)(R14*1), BX - MOVUPS -16(SI), X0 - MOVUPS X0, -16(BX) - JMP copy_1_end - -copy_1_small: - CMPQ R11, $0x03 - JE copy_1_move_3 - JB copy_1_move_1or2 - CMPQ R11, $0x08 - JB copy_1_move_4through7 - JMP copy_1_move_8through16 - -copy_1_move_1or2: - MOVB (SI), R14 - MOVB -1(SI)(R11*1), R15 - MOVB R14, (BX) - MOVB R15, -1(BX)(R11*1) - ADDQ R11, SI - ADDQ R11, BX - JMP copy_1_end - -copy_1_move_3: - MOVW (SI), R14 - MOVB 2(SI), R15 - MOVW R14, (BX) - MOVB R15, 2(BX) - ADDQ R11, SI - ADDQ R11, BX - JMP copy_1_end - -copy_1_move_4through7: - MOVL (SI), R14 - MOVL -4(SI)(R11*1), R15 - MOVL R14, (BX) - MOVL R15, -4(BX)(R11*1) - ADDQ R11, SI - ADDQ R11, BX - JMP copy_1_end - -copy_1_move_8through16: - MOVQ (SI), R14 - MOVQ -8(SI)(R11*1), R15 - MOVQ R14, (BX) - MOVQ R15, -8(BX)(R11*1) - ADDQ R11, SI - ADDQ R11, BX - -copy_1_end: - ADDQ R11, DI - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - LEAQ (DI)(R10*1), R11 - CMPQ R12, R11 - JG error_match_off_too_big - CMPQ R12, R8 - JG error_match_off_too_big - - // Copy match from history - MOVQ R12, R11 - SUBQ DI, R11 - JLS copy_match - MOVQ R9, R14 - SUBQ R11, R14 - CMPQ R13, R11 - JG copy_all_from_history - MOVQ R13, R11 - SUBQ $0x10, R11 - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (BX) - ADDQ $0x10, R14 - ADDQ $0x10, BX - SUBQ $0x10, R11 - JAE copy_4_loop - LEAQ 16(R14)(R11*1), R14 - LEAQ 16(BX)(R11*1), BX - MOVUPS -16(R14), X0 - MOVUPS X0, -16(BX) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), R11 - MOVB 2(R14), R12 - MOVW R11, (BX) - MOVB R12, 2(BX) - ADDQ R13, R14 - ADDQ R13, BX - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), R11 - MOVL -4(R14)(R13*1), R12 - MOVL R11, (BX) - MOVL R12, -4(BX)(R13*1) - ADDQ R13, R14 - ADDQ R13, BX - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), R11 - MOVQ -8(R14)(R13*1), R12 - MOVQ R11, (BX) - MOVQ R12, -8(BX)(R13*1) - ADDQ R13, R14 - ADDQ R13, BX - -copy_4_end: - ADDQ R13, DI - ADDQ $0x18, AX - INCQ DX - CMPQ DX, CX - JB main_loop - JMP loop_finished - -copy_all_from_history: - MOVQ R11, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (BX) - ADDQ $0x10, R14 - ADDQ $0x10, BX - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(BX)(R15*1), BX - MOVUPS -16(R14), X0 - MOVUPS X0, -16(BX) - JMP copy_5_end - -copy_5_small: - CMPQ R11, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ R11, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(R11*1), BP - MOVB R15, (BX) - MOVB BP, -1(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (BX) - MOVB BP, 2(BX) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(R11*1), BP - MOVL R15, (BX) - MOVL BP, -4(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(R11*1), BP - MOVQ R15, (BX) - MOVQ BP, -8(BX)(R11*1) - ADDQ R11, R14 - ADDQ R11, BX - -copy_5_end: - ADDQ R11, DI - SUBQ R11, R13 - - // Copy match from the current buffer -copy_match: - MOVQ BX, R11 - SUBQ R12, R11 - - // ml <= mo - CMPQ R13, R12 - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, DI - MOVQ R13, R12 - SUBQ $0x10, R12 - JB copy_2_small - -copy_2_loop: - MOVUPS (R11), X0 - MOVUPS X0, (BX) - ADDQ $0x10, R11 - ADDQ $0x10, BX - SUBQ $0x10, R12 - JAE copy_2_loop - LEAQ 16(R11)(R12*1), R11 - LEAQ 16(BX)(R12*1), BX - MOVUPS -16(R11), X0 - MOVUPS X0, -16(BX) - JMP copy_2_end - -copy_2_small: - CMPQ R13, $0x03 - JE copy_2_move_3 - JB copy_2_move_1or2 - CMPQ R13, $0x08 - JB copy_2_move_4through7 - JMP copy_2_move_8through16 - -copy_2_move_1or2: - MOVB (R11), R12 - MOVB -1(R11)(R13*1), R14 - MOVB R12, (BX) - MOVB R14, -1(BX)(R13*1) - ADDQ R13, R11 - ADDQ R13, BX - JMP copy_2_end - -copy_2_move_3: - MOVW (R11), R12 - MOVB 2(R11), R14 - MOVW R12, (BX) - MOVB R14, 2(BX) - ADDQ R13, R11 - ADDQ R13, BX - JMP copy_2_end - -copy_2_move_4through7: - MOVL (R11), R12 - MOVL -4(R11)(R13*1), R14 - MOVL R12, (BX) - MOVL R14, -4(BX)(R13*1) - ADDQ R13, R11 - ADDQ R13, BX - JMP copy_2_end - -copy_2_move_8through16: - MOVQ (R11), R12 - MOVQ -8(R11)(R13*1), R14 - MOVQ R12, (BX) - MOVQ R14, -8(BX)(R13*1) - ADDQ R13, R11 - ADDQ R13, BX - -copy_2_end: - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, DI - -copy_slow_3: - MOVB (R11), R12 - MOVB R12, (BX) - INCQ R11 - INCQ BX - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - ADDQ $0x18, AX - INCQ DX - CMPQ DX, CX - JB main_loop - -loop_finished: - // Return value - MOVB $0x01, ret+8(FP) - - // Update the context - MOVQ ctx+0(FP), AX - MOVQ DX, 24(AX) - MOVQ DI, 104(AX) - SUBQ 80(AX), SI - MOVQ SI, 112(AX) - RET - -error_match_off_too_big: - // Return value - MOVB $0x00, ret+8(FP) - - // Update the context - MOVQ ctx+0(FP), AX - MOVQ DX, 24(AX) - MOVQ DI, 104(AX) - SUBQ 80(AX), SI - MOVQ SI, 112(AX) - RET - -empty_seqs: - // Return value - MOVB $0x01, ret+8(FP) - RET - -// func sequenceDecs_decodeSync_amd64(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int -// Requires: CMOV, SSE -TEXT ·sequenceDecs_decodeSync_amd64(SB), $64-32 - MOVQ br+8(FP), CX - MOVQ 24(CX), DX - MOVBQZX 32(CX), BX - MOVQ (CX), AX - MOVQ 8(CX), SI - ADDQ SI, AX - MOVQ AX, (SP) - MOVQ ctx+16(FP), AX - MOVQ 72(AX), DI - MOVQ 80(AX), R8 - MOVQ 88(AX), R9 - XORQ CX, CX - MOVQ CX, 8(SP) - MOVQ CX, 16(SP) - MOVQ CX, 24(SP) - MOVQ 112(AX), R10 - MOVQ 128(AX), CX - MOVQ CX, 32(SP) - MOVQ 144(AX), R11 - MOVQ 136(AX), R12 - MOVQ 200(AX), CX - MOVQ CX, 56(SP) - MOVQ 176(AX), CX - MOVQ CX, 48(SP) - MOVQ 184(AX), AX - MOVQ AX, 40(SP) - MOVQ 40(SP), AX - ADDQ AX, 48(SP) - - // Calculate pointer to s.out[cap(s.out)] (a past-end pointer) - ADDQ R10, 32(SP) - - // outBase += outPosition - ADDQ R12, R10 - -sequenceDecs_decodeSync_amd64_main_loop: - MOVQ (SP), R13 - - // Fill bitreader to have enough for the offset and match length. - CMPQ SI, $0x08 - JL sequenceDecs_decodeSync_amd64_fill_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R13 - MOVQ (R13), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decodeSync_amd64_fill_end - -sequenceDecs_decodeSync_amd64_fill_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decodeSync_amd64_fill_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decodeSync_amd64_fill_end - SHLQ $0x08, DX - SUBQ $0x01, R13 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R13), AX - ORQ AX, DX - JMP sequenceDecs_decodeSync_amd64_fill_byte_by_byte - -sequenceDecs_decodeSync_amd64_fill_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_amd64_fill_end: - // Update offset - MOVQ R9, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_amd64_of_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_amd64_of_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_amd64_of_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_amd64_of_update_zero: - MOVQ AX, 8(SP) - - // Update match length - MOVQ R8, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_amd64_ml_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_amd64_ml_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_amd64_ml_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_amd64_ml_update_zero: - MOVQ AX, 16(SP) - - // Fill bitreader to have enough for the remaining - CMPQ SI, $0x08 - JL sequenceDecs_decodeSync_amd64_fill_2_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R13 - MOVQ (R13), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decodeSync_amd64_fill_2_end - -sequenceDecs_decodeSync_amd64_fill_2_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decodeSync_amd64_fill_2_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decodeSync_amd64_fill_2_end - SHLQ $0x08, DX - SUBQ $0x01, R13 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R13), AX - ORQ AX, DX - JMP sequenceDecs_decodeSync_amd64_fill_2_byte_by_byte - -sequenceDecs_decodeSync_amd64_fill_2_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_amd64_fill_2_end: - // Update literal length - MOVQ DI, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_amd64_ll_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_amd64_ll_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_amd64_ll_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_amd64_ll_update_zero: - MOVQ AX, 24(SP) - - // Fill bitreader for state updates - MOVQ R13, (SP) - MOVQ R9, AX - SHRQ $0x08, AX - MOVBQZX AL, AX - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decodeSync_amd64_skip_update - - // Update Literal Length State - MOVBQZX DI, R13 - SHRL $0x10, DI - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, DI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(DI*8), DI - - // Update Match Length State - MOVBQZX R8, R13 - SHRL $0x10, R8 - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, R8 - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Offset State - MOVBQZX R9, R13 - SHRL $0x10, R9 - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, R9 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R9*8), R9 - -sequenceDecs_decodeSync_amd64_skip_update: - // Adjust offset - MOVQ s+0(FP), CX - MOVQ 8(SP), R13 - CMPQ AX, $0x01 - JBE sequenceDecs_decodeSync_amd64_adjust_offsetB_1_or_0 - MOVUPS 144(CX), X0 - MOVQ R13, 144(CX) - MOVUPS X0, 152(CX) - JMP sequenceDecs_decodeSync_amd64_after_adjust - -sequenceDecs_decodeSync_amd64_adjust_offsetB_1_or_0: - CMPQ 24(SP), $0x00000000 - JNE sequenceDecs_decodeSync_amd64_adjust_offset_maybezero - INCQ R13 - JMP sequenceDecs_decodeSync_amd64_adjust_offset_nonzero - -sequenceDecs_decodeSync_amd64_adjust_offset_maybezero: - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_amd64_adjust_offset_nonzero - MOVQ 144(CX), R13 - JMP sequenceDecs_decodeSync_amd64_after_adjust - -sequenceDecs_decodeSync_amd64_adjust_offset_nonzero: - MOVQ R13, AX - XORQ R14, R14 - MOVQ $-1, R15 - CMPQ R13, $0x03 - CMOVQEQ R14, AX - CMOVQEQ R15, R14 - ADDQ 144(CX)(AX*8), R14 - JNZ sequenceDecs_decodeSync_amd64_adjust_temp_valid - MOVQ $0x00000001, R14 - -sequenceDecs_decodeSync_amd64_adjust_temp_valid: - CMPQ R13, $0x01 - JZ sequenceDecs_decodeSync_amd64_adjust_skip - MOVQ 152(CX), AX - MOVQ AX, 160(CX) - -sequenceDecs_decodeSync_amd64_adjust_skip: - MOVQ 144(CX), AX - MOVQ AX, 152(CX) - MOVQ R14, 144(CX) - MOVQ R14, R13 - -sequenceDecs_decodeSync_amd64_after_adjust: - MOVQ R13, 8(SP) - - // Check values - MOVQ 16(SP), AX - MOVQ 24(SP), CX - LEAQ (AX)(CX*1), R14 - MOVQ s+0(FP), R15 - ADDQ R14, 256(R15) - MOVQ ctx+16(FP), R14 - SUBQ CX, 104(R14) - JS error_not_enough_literals - CMPQ AX, $0x00020002 - JA sequenceDecs_decodeSync_amd64_error_match_len_too_big - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_amd64_match_len_ofs_ok - TESTQ AX, AX - JNZ sequenceDecs_decodeSync_amd64_error_match_len_ofs_mismatch - -sequenceDecs_decodeSync_amd64_match_len_ofs_ok: - MOVQ 24(SP), AX - MOVQ 8(SP), CX - MOVQ 16(SP), R13 - - // Check if we have enough space in s.out - LEAQ (AX)(R13*1), R14 - ADDQ R10, R14 - CMPQ R14, 32(SP) - JA error_not_enough_space - - // Copy literals - TESTQ AX, AX - JZ check_offset - XORQ R14, R14 - -copy_1: - MOVUPS (R11)(R14*1), X0 - MOVUPS X0, (R10)(R14*1) - ADDQ $0x10, R14 - CMPQ R14, AX - JB copy_1 - ADDQ AX, R11 - ADDQ AX, R10 - ADDQ AX, R12 - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - MOVQ R12, AX - ADDQ 40(SP), AX - CMPQ CX, AX - JG error_match_off_too_big - CMPQ CX, 56(SP) - JG error_match_off_too_big - - // Copy match from history - MOVQ CX, AX - SUBQ R12, AX - JLS copy_match - MOVQ 48(SP), R14 - SUBQ AX, R14 - CMPQ R13, AX - JG copy_all_from_history - MOVQ R13, AX - SUBQ $0x10, AX - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R10) - ADDQ $0x10, R14 - ADDQ $0x10, R10 - SUBQ $0x10, AX - JAE copy_4_loop - LEAQ 16(R14)(AX*1), R14 - LEAQ 16(R10)(AX*1), R10 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R10) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), AX - MOVB 2(R14), CL - MOVW AX, (R10) - MOVB CL, 2(R10) - ADDQ R13, R14 - ADDQ R13, R10 - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), AX - MOVL -4(R14)(R13*1), CX - MOVL AX, (R10) - MOVL CX, -4(R10)(R13*1) - ADDQ R13, R14 - ADDQ R13, R10 - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), AX - MOVQ -8(R14)(R13*1), CX - MOVQ AX, (R10) - MOVQ CX, -8(R10)(R13*1) - ADDQ R13, R14 - ADDQ R13, R10 - -copy_4_end: - ADDQ R13, R12 - JMP handle_loop - JMP loop_finished - -copy_all_from_history: - MOVQ AX, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R10) - ADDQ $0x10, R14 - ADDQ $0x10, R10 - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(R10)(R15*1), R10 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R10) - JMP copy_5_end - -copy_5_small: - CMPQ AX, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ AX, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(AX*1), BP - MOVB R15, (R10) - MOVB BP, -1(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (R10) - MOVB BP, 2(R10) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(AX*1), BP - MOVL R15, (R10) - MOVL BP, -4(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(AX*1), BP - MOVQ R15, (R10) - MOVQ BP, -8(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - -copy_5_end: - ADDQ AX, R12 - SUBQ AX, R13 - - // Copy match from the current buffer -copy_match: - MOVQ R10, AX - SUBQ CX, AX - - // ml <= mo - CMPQ R13, CX - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, R12 - MOVQ R10, CX - ADDQ R13, R10 - -copy_2: - MOVUPS (AX), X0 - MOVUPS X0, (CX) - ADDQ $0x10, AX - ADDQ $0x10, CX - SUBQ $0x10, R13 - JHI copy_2 - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, R12 - -copy_slow_3: - MOVB (AX), CL - MOVB CL, (R10) - INCQ AX - INCQ R10 - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - MOVQ ctx+16(FP), AX - DECQ 96(AX) - JNS sequenceDecs_decodeSync_amd64_main_loop - -loop_finished: - MOVQ br+8(FP), AX - MOVQ DX, 24(AX) - MOVB BL, 32(AX) - MOVQ SI, 8(AX) - - // Update the context - MOVQ ctx+16(FP), AX - MOVQ R12, 136(AX) - MOVQ 144(AX), CX - SUBQ CX, R11 - MOVQ R11, 168(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decodeSync_amd64_error_match_len_ofs_mismatch: - MOVQ 16(SP), AX - MOVQ ctx+16(FP), CX - MOVQ AX, 216(CX) - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decodeSync_amd64_error_match_len_too_big: - MOVQ ctx+16(FP), AX - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error -error_match_off_too_big: - MOVQ ctx+16(FP), AX - MOVQ 8(SP), CX - MOVQ CX, 224(AX) - MOVQ R12, 136(AX) - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - - // Return with not enough output space error -error_not_enough_space: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ R12, 136(AX) - MOVQ $0x00000005, ret+24(FP) - RET - -// func sequenceDecs_decodeSync_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int -// Requires: BMI, BMI2, CMOV, SSE -TEXT ·sequenceDecs_decodeSync_bmi2(SB), $64-32 - MOVQ br+8(FP), BX - MOVQ 24(BX), AX - MOVBQZX 32(BX), DX - MOVQ (BX), CX - MOVQ 8(BX), BX - ADDQ BX, CX - MOVQ CX, (SP) - MOVQ ctx+16(FP), CX - MOVQ 72(CX), SI - MOVQ 80(CX), DI - MOVQ 88(CX), R8 - XORQ R9, R9 - MOVQ R9, 8(SP) - MOVQ R9, 16(SP) - MOVQ R9, 24(SP) - MOVQ 112(CX), R9 - MOVQ 128(CX), R10 - MOVQ R10, 32(SP) - MOVQ 144(CX), R10 - MOVQ 136(CX), R11 - MOVQ 200(CX), R12 - MOVQ R12, 56(SP) - MOVQ 176(CX), R12 - MOVQ R12, 48(SP) - MOVQ 184(CX), CX - MOVQ CX, 40(SP) - MOVQ 40(SP), CX - ADDQ CX, 48(SP) - - // Calculate pointer to s.out[cap(s.out)] (a past-end pointer) - ADDQ R9, 32(SP) - - // outBase += outPosition - ADDQ R11, R9 - -sequenceDecs_decodeSync_bmi2_main_loop: - MOVQ (SP), R12 - - // Fill bitreader to have enough for the offset and match length. - CMPQ BX, $0x08 - JL sequenceDecs_decodeSync_bmi2_fill_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R12 - MOVQ (R12), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decodeSync_bmi2_fill_end - -sequenceDecs_decodeSync_bmi2_fill_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decodeSync_bmi2_fill_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decodeSync_bmi2_fill_end - SHLQ $0x08, AX - SUBQ $0x01, R12 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R12), CX - ORQ CX, AX - JMP sequenceDecs_decodeSync_bmi2_fill_byte_by_byte - -sequenceDecs_decodeSync_bmi2_fill_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_bmi2_fill_end: - // Update offset - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ R8, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 8(SP) - - // Update match length - MOVQ $0x00000808, CX - BEXTRQ CX, DI, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ DI, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 16(SP) - - // Fill bitreader to have enough for the remaining - CMPQ BX, $0x08 - JL sequenceDecs_decodeSync_bmi2_fill_2_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R12 - MOVQ (R12), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decodeSync_bmi2_fill_2_end - -sequenceDecs_decodeSync_bmi2_fill_2_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decodeSync_bmi2_fill_2_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decodeSync_bmi2_fill_2_end - SHLQ $0x08, AX - SUBQ $0x01, R12 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R12), CX - ORQ CX, AX - JMP sequenceDecs_decodeSync_bmi2_fill_2_byte_by_byte - -sequenceDecs_decodeSync_bmi2_fill_2_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_bmi2_fill_2_end: - // Update literal length - MOVQ $0x00000808, CX - BEXTRQ CX, SI, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ SI, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 24(SP) - - // Fill bitreader for state updates - MOVQ R12, (SP) - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R12 - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decodeSync_bmi2_skip_update - LEAQ (SI)(DI*1), R13 - ADDQ R8, R13 - MOVBQZX R13, R13 - LEAQ (DX)(R13*1), CX - MOVQ AX, R14 - MOVQ CX, DX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - - // Update Offset State - BZHIQ R8, R14, CX - SHRXQ R8, R14, R14 - SHRL $0x10, R8 - ADDQ CX, R8 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Match Length State - BZHIQ DI, R14, CX - SHRXQ DI, R14, R14 - SHRL $0x10, DI - ADDQ CX, DI - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(DI*8), DI - - // Update Literal Length State - BZHIQ SI, R14, CX - SHRL $0x10, SI - ADDQ CX, SI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(SI*8), SI - -sequenceDecs_decodeSync_bmi2_skip_update: - // Adjust offset - MOVQ s+0(FP), CX - MOVQ 8(SP), R13 - CMPQ R12, $0x01 - JBE sequenceDecs_decodeSync_bmi2_adjust_offsetB_1_or_0 - MOVUPS 144(CX), X0 - MOVQ R13, 144(CX) - MOVUPS X0, 152(CX) - JMP sequenceDecs_decodeSync_bmi2_after_adjust - -sequenceDecs_decodeSync_bmi2_adjust_offsetB_1_or_0: - CMPQ 24(SP), $0x00000000 - JNE sequenceDecs_decodeSync_bmi2_adjust_offset_maybezero - INCQ R13 - JMP sequenceDecs_decodeSync_bmi2_adjust_offset_nonzero - -sequenceDecs_decodeSync_bmi2_adjust_offset_maybezero: - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_bmi2_adjust_offset_nonzero - MOVQ 144(CX), R13 - JMP sequenceDecs_decodeSync_bmi2_after_adjust - -sequenceDecs_decodeSync_bmi2_adjust_offset_nonzero: - MOVQ R13, R12 - XORQ R14, R14 - MOVQ $-1, R15 - CMPQ R13, $0x03 - CMOVQEQ R14, R12 - CMOVQEQ R15, R14 - ADDQ 144(CX)(R12*8), R14 - JNZ sequenceDecs_decodeSync_bmi2_adjust_temp_valid - MOVQ $0x00000001, R14 - -sequenceDecs_decodeSync_bmi2_adjust_temp_valid: - CMPQ R13, $0x01 - JZ sequenceDecs_decodeSync_bmi2_adjust_skip - MOVQ 152(CX), R12 - MOVQ R12, 160(CX) - -sequenceDecs_decodeSync_bmi2_adjust_skip: - MOVQ 144(CX), R12 - MOVQ R12, 152(CX) - MOVQ R14, 144(CX) - MOVQ R14, R13 - -sequenceDecs_decodeSync_bmi2_after_adjust: - MOVQ R13, 8(SP) - - // Check values - MOVQ 16(SP), CX - MOVQ 24(SP), R12 - LEAQ (CX)(R12*1), R14 - MOVQ s+0(FP), R15 - ADDQ R14, 256(R15) - MOVQ ctx+16(FP), R14 - SUBQ R12, 104(R14) - JS error_not_enough_literals - CMPQ CX, $0x00020002 - JA sequenceDecs_decodeSync_bmi2_error_match_len_too_big - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_bmi2_match_len_ofs_ok - TESTQ CX, CX - JNZ sequenceDecs_decodeSync_bmi2_error_match_len_ofs_mismatch - -sequenceDecs_decodeSync_bmi2_match_len_ofs_ok: - MOVQ 24(SP), CX - MOVQ 8(SP), R12 - MOVQ 16(SP), R13 - - // Check if we have enough space in s.out - LEAQ (CX)(R13*1), R14 - ADDQ R9, R14 - CMPQ R14, 32(SP) - JA error_not_enough_space - - // Copy literals - TESTQ CX, CX - JZ check_offset - XORQ R14, R14 - -copy_1: - MOVUPS (R10)(R14*1), X0 - MOVUPS X0, (R9)(R14*1) - ADDQ $0x10, R14 - CMPQ R14, CX - JB copy_1 - ADDQ CX, R10 - ADDQ CX, R9 - ADDQ CX, R11 - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - MOVQ R11, CX - ADDQ 40(SP), CX - CMPQ R12, CX - JG error_match_off_too_big - CMPQ R12, 56(SP) - JG error_match_off_too_big - - // Copy match from history - MOVQ R12, CX - SUBQ R11, CX - JLS copy_match - MOVQ 48(SP), R14 - SUBQ CX, R14 - CMPQ R13, CX - JG copy_all_from_history - MOVQ R13, CX - SUBQ $0x10, CX - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R9) - ADDQ $0x10, R14 - ADDQ $0x10, R9 - SUBQ $0x10, CX - JAE copy_4_loop - LEAQ 16(R14)(CX*1), R14 - LEAQ 16(R9)(CX*1), R9 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R9) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), CX - MOVB 2(R14), R12 - MOVW CX, (R9) - MOVB R12, 2(R9) - ADDQ R13, R14 - ADDQ R13, R9 - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), CX - MOVL -4(R14)(R13*1), R12 - MOVL CX, (R9) - MOVL R12, -4(R9)(R13*1) - ADDQ R13, R14 - ADDQ R13, R9 - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), CX - MOVQ -8(R14)(R13*1), R12 - MOVQ CX, (R9) - MOVQ R12, -8(R9)(R13*1) - ADDQ R13, R14 - ADDQ R13, R9 - -copy_4_end: - ADDQ R13, R11 - JMP handle_loop - JMP loop_finished - -copy_all_from_history: - MOVQ CX, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R9) - ADDQ $0x10, R14 - ADDQ $0x10, R9 - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(R9)(R15*1), R9 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R9) - JMP copy_5_end - -copy_5_small: - CMPQ CX, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ CX, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(CX*1), BP - MOVB R15, (R9) - MOVB BP, -1(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (R9) - MOVB BP, 2(R9) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(CX*1), BP - MOVL R15, (R9) - MOVL BP, -4(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(CX*1), BP - MOVQ R15, (R9) - MOVQ BP, -8(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - -copy_5_end: - ADDQ CX, R11 - SUBQ CX, R13 - - // Copy match from the current buffer -copy_match: - MOVQ R9, CX - SUBQ R12, CX - - // ml <= mo - CMPQ R13, R12 - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, R11 - MOVQ R9, R12 - ADDQ R13, R9 - -copy_2: - MOVUPS (CX), X0 - MOVUPS X0, (R12) - ADDQ $0x10, CX - ADDQ $0x10, R12 - SUBQ $0x10, R13 - JHI copy_2 - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, R11 - -copy_slow_3: - MOVB (CX), R12 - MOVB R12, (R9) - INCQ CX - INCQ R9 - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - MOVQ ctx+16(FP), CX - DECQ 96(CX) - JNS sequenceDecs_decodeSync_bmi2_main_loop - -loop_finished: - MOVQ br+8(FP), CX - MOVQ AX, 24(CX) - MOVB DL, 32(CX) - MOVQ BX, 8(CX) - - // Update the context - MOVQ ctx+16(FP), AX - MOVQ R11, 136(AX) - MOVQ 144(AX), CX - SUBQ CX, R10 - MOVQ R10, 168(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decodeSync_bmi2_error_match_len_ofs_mismatch: - MOVQ 16(SP), AX - MOVQ ctx+16(FP), CX - MOVQ AX, 216(CX) - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decodeSync_bmi2_error_match_len_too_big: - MOVQ ctx+16(FP), AX - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error -error_match_off_too_big: - MOVQ ctx+16(FP), AX - MOVQ 8(SP), CX - MOVQ CX, 224(AX) - MOVQ R11, 136(AX) - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - - // Return with not enough output space error -error_not_enough_space: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ R11, 136(AX) - MOVQ $0x00000005, ret+24(FP) - RET - -// func sequenceDecs_decodeSync_safe_amd64(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int -// Requires: CMOV, SSE -TEXT ·sequenceDecs_decodeSync_safe_amd64(SB), $64-32 - MOVQ br+8(FP), CX - MOVQ 24(CX), DX - MOVBQZX 32(CX), BX - MOVQ (CX), AX - MOVQ 8(CX), SI - ADDQ SI, AX - MOVQ AX, (SP) - MOVQ ctx+16(FP), AX - MOVQ 72(AX), DI - MOVQ 80(AX), R8 - MOVQ 88(AX), R9 - XORQ CX, CX - MOVQ CX, 8(SP) - MOVQ CX, 16(SP) - MOVQ CX, 24(SP) - MOVQ 112(AX), R10 - MOVQ 128(AX), CX - MOVQ CX, 32(SP) - MOVQ 144(AX), R11 - MOVQ 136(AX), R12 - MOVQ 200(AX), CX - MOVQ CX, 56(SP) - MOVQ 176(AX), CX - MOVQ CX, 48(SP) - MOVQ 184(AX), AX - MOVQ AX, 40(SP) - MOVQ 40(SP), AX - ADDQ AX, 48(SP) - - // Calculate pointer to s.out[cap(s.out)] (a past-end pointer) - ADDQ R10, 32(SP) - - // outBase += outPosition - ADDQ R12, R10 - -sequenceDecs_decodeSync_safe_amd64_main_loop: - MOVQ (SP), R13 - - // Fill bitreader to have enough for the offset and match length. - CMPQ SI, $0x08 - JL sequenceDecs_decodeSync_safe_amd64_fill_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R13 - MOVQ (R13), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decodeSync_safe_amd64_fill_end - -sequenceDecs_decodeSync_safe_amd64_fill_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decodeSync_safe_amd64_fill_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decodeSync_safe_amd64_fill_end - SHLQ $0x08, DX - SUBQ $0x01, R13 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R13), AX - ORQ AX, DX - JMP sequenceDecs_decodeSync_safe_amd64_fill_byte_by_byte - -sequenceDecs_decodeSync_safe_amd64_fill_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_safe_amd64_fill_end: - // Update offset - MOVQ R9, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_safe_amd64_of_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_safe_amd64_of_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_safe_amd64_of_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_safe_amd64_of_update_zero: - MOVQ AX, 8(SP) - - // Update match length - MOVQ R8, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_safe_amd64_ml_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_safe_amd64_ml_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_safe_amd64_ml_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_safe_amd64_ml_update_zero: - MOVQ AX, 16(SP) - - // Fill bitreader to have enough for the remaining - CMPQ SI, $0x08 - JL sequenceDecs_decodeSync_safe_amd64_fill_2_byte_by_byte - MOVQ BX, AX - SHRQ $0x03, AX - SUBQ AX, R13 - MOVQ (R13), DX - SUBQ AX, SI - ANDQ $0x07, BX - JMP sequenceDecs_decodeSync_safe_amd64_fill_2_end - -sequenceDecs_decodeSync_safe_amd64_fill_2_byte_by_byte: - CMPQ SI, $0x00 - JLE sequenceDecs_decodeSync_safe_amd64_fill_2_check_overread - CMPQ BX, $0x07 - JLE sequenceDecs_decodeSync_safe_amd64_fill_2_end - SHLQ $0x08, DX - SUBQ $0x01, R13 - SUBQ $0x01, SI - SUBQ $0x08, BX - MOVBQZX (R13), AX - ORQ AX, DX - JMP sequenceDecs_decodeSync_safe_amd64_fill_2_byte_by_byte - -sequenceDecs_decodeSync_safe_amd64_fill_2_check_overread: - CMPQ BX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_safe_amd64_fill_2_end: - // Update literal length - MOVQ DI, AX - MOVQ BX, CX - MOVQ DX, R14 - SHLQ CL, R14 - MOVB AH, CL - SHRQ $0x20, AX - TESTQ CX, CX - JZ sequenceDecs_decodeSync_safe_amd64_ll_update_zero - ADDQ CX, BX - CMPQ BX, $0x40 - JA sequenceDecs_decodeSync_safe_amd64_ll_update_zero - CMPQ CX, $0x40 - JAE sequenceDecs_decodeSync_safe_amd64_ll_update_zero - NEGQ CX - SHRQ CL, R14 - ADDQ R14, AX - -sequenceDecs_decodeSync_safe_amd64_ll_update_zero: - MOVQ AX, 24(SP) - - // Fill bitreader for state updates - MOVQ R13, (SP) - MOVQ R9, AX - SHRQ $0x08, AX - MOVBQZX AL, AX - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decodeSync_safe_amd64_skip_update - - // Update Literal Length State - MOVBQZX DI, R13 - SHRL $0x10, DI - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, DI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(DI*8), DI - - // Update Match Length State - MOVBQZX R8, R13 - SHRL $0x10, R8 - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, R8 - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Offset State - MOVBQZX R9, R13 - SHRL $0x10, R9 - LEAQ (BX)(R13*1), CX - MOVQ DX, R14 - MOVQ CX, BX - ROLQ CL, R14 - MOVL $0x00000001, R15 - MOVB R13, CL - SHLL CL, R15 - DECL R15 - ANDQ R15, R14 - ADDQ R14, R9 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R9*8), R9 - -sequenceDecs_decodeSync_safe_amd64_skip_update: - // Adjust offset - MOVQ s+0(FP), CX - MOVQ 8(SP), R13 - CMPQ AX, $0x01 - JBE sequenceDecs_decodeSync_safe_amd64_adjust_offsetB_1_or_0 - MOVUPS 144(CX), X0 - MOVQ R13, 144(CX) - MOVUPS X0, 152(CX) - JMP sequenceDecs_decodeSync_safe_amd64_after_adjust - -sequenceDecs_decodeSync_safe_amd64_adjust_offsetB_1_or_0: - CMPQ 24(SP), $0x00000000 - JNE sequenceDecs_decodeSync_safe_amd64_adjust_offset_maybezero - INCQ R13 - JMP sequenceDecs_decodeSync_safe_amd64_adjust_offset_nonzero - -sequenceDecs_decodeSync_safe_amd64_adjust_offset_maybezero: - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_safe_amd64_adjust_offset_nonzero - MOVQ 144(CX), R13 - JMP sequenceDecs_decodeSync_safe_amd64_after_adjust - -sequenceDecs_decodeSync_safe_amd64_adjust_offset_nonzero: - MOVQ R13, AX - XORQ R14, R14 - MOVQ $-1, R15 - CMPQ R13, $0x03 - CMOVQEQ R14, AX - CMOVQEQ R15, R14 - ADDQ 144(CX)(AX*8), R14 - JNZ sequenceDecs_decodeSync_safe_amd64_adjust_temp_valid - MOVQ $0x00000001, R14 - -sequenceDecs_decodeSync_safe_amd64_adjust_temp_valid: - CMPQ R13, $0x01 - JZ sequenceDecs_decodeSync_safe_amd64_adjust_skip - MOVQ 152(CX), AX - MOVQ AX, 160(CX) - -sequenceDecs_decodeSync_safe_amd64_adjust_skip: - MOVQ 144(CX), AX - MOVQ AX, 152(CX) - MOVQ R14, 144(CX) - MOVQ R14, R13 - -sequenceDecs_decodeSync_safe_amd64_after_adjust: - MOVQ R13, 8(SP) - - // Check values - MOVQ 16(SP), AX - MOVQ 24(SP), CX - LEAQ (AX)(CX*1), R14 - MOVQ s+0(FP), R15 - ADDQ R14, 256(R15) - MOVQ ctx+16(FP), R14 - SUBQ CX, 104(R14) - JS error_not_enough_literals - CMPQ AX, $0x00020002 - JA sequenceDecs_decodeSync_safe_amd64_error_match_len_too_big - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_safe_amd64_match_len_ofs_ok - TESTQ AX, AX - JNZ sequenceDecs_decodeSync_safe_amd64_error_match_len_ofs_mismatch - -sequenceDecs_decodeSync_safe_amd64_match_len_ofs_ok: - MOVQ 24(SP), AX - MOVQ 8(SP), CX - MOVQ 16(SP), R13 - - // Check if we have enough space in s.out - LEAQ (AX)(R13*1), R14 - ADDQ R10, R14 - CMPQ R14, 32(SP) - JA error_not_enough_space - - // Copy literals - TESTQ AX, AX - JZ check_offset - MOVQ AX, R14 - SUBQ $0x10, R14 - JB copy_1_small - -copy_1_loop: - MOVUPS (R11), X0 - MOVUPS X0, (R10) - ADDQ $0x10, R11 - ADDQ $0x10, R10 - SUBQ $0x10, R14 - JAE copy_1_loop - LEAQ 16(R11)(R14*1), R11 - LEAQ 16(R10)(R14*1), R10 - MOVUPS -16(R11), X0 - MOVUPS X0, -16(R10) - JMP copy_1_end - -copy_1_small: - CMPQ AX, $0x03 - JE copy_1_move_3 - JB copy_1_move_1or2 - CMPQ AX, $0x08 - JB copy_1_move_4through7 - JMP copy_1_move_8through16 - -copy_1_move_1or2: - MOVB (R11), R14 - MOVB -1(R11)(AX*1), R15 - MOVB R14, (R10) - MOVB R15, -1(R10)(AX*1) - ADDQ AX, R11 - ADDQ AX, R10 - JMP copy_1_end - -copy_1_move_3: - MOVW (R11), R14 - MOVB 2(R11), R15 - MOVW R14, (R10) - MOVB R15, 2(R10) - ADDQ AX, R11 - ADDQ AX, R10 - JMP copy_1_end - -copy_1_move_4through7: - MOVL (R11), R14 - MOVL -4(R11)(AX*1), R15 - MOVL R14, (R10) - MOVL R15, -4(R10)(AX*1) - ADDQ AX, R11 - ADDQ AX, R10 - JMP copy_1_end - -copy_1_move_8through16: - MOVQ (R11), R14 - MOVQ -8(R11)(AX*1), R15 - MOVQ R14, (R10) - MOVQ R15, -8(R10)(AX*1) - ADDQ AX, R11 - ADDQ AX, R10 - -copy_1_end: - ADDQ AX, R12 - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - MOVQ R12, AX - ADDQ 40(SP), AX - CMPQ CX, AX - JG error_match_off_too_big - CMPQ CX, 56(SP) - JG error_match_off_too_big - - // Copy match from history - MOVQ CX, AX - SUBQ R12, AX - JLS copy_match - MOVQ 48(SP), R14 - SUBQ AX, R14 - CMPQ R13, AX - JG copy_all_from_history - MOVQ R13, AX - SUBQ $0x10, AX - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R10) - ADDQ $0x10, R14 - ADDQ $0x10, R10 - SUBQ $0x10, AX - JAE copy_4_loop - LEAQ 16(R14)(AX*1), R14 - LEAQ 16(R10)(AX*1), R10 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R10) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), AX - MOVB 2(R14), CL - MOVW AX, (R10) - MOVB CL, 2(R10) - ADDQ R13, R14 - ADDQ R13, R10 - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), AX - MOVL -4(R14)(R13*1), CX - MOVL AX, (R10) - MOVL CX, -4(R10)(R13*1) - ADDQ R13, R14 - ADDQ R13, R10 - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), AX - MOVQ -8(R14)(R13*1), CX - MOVQ AX, (R10) - MOVQ CX, -8(R10)(R13*1) - ADDQ R13, R14 - ADDQ R13, R10 - -copy_4_end: - ADDQ R13, R12 - JMP handle_loop - JMP loop_finished - -copy_all_from_history: - MOVQ AX, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R10) - ADDQ $0x10, R14 - ADDQ $0x10, R10 - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(R10)(R15*1), R10 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R10) - JMP copy_5_end - -copy_5_small: - CMPQ AX, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ AX, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(AX*1), BP - MOVB R15, (R10) - MOVB BP, -1(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (R10) - MOVB BP, 2(R10) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(AX*1), BP - MOVL R15, (R10) - MOVL BP, -4(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(AX*1), BP - MOVQ R15, (R10) - MOVQ BP, -8(R10)(AX*1) - ADDQ AX, R14 - ADDQ AX, R10 - -copy_5_end: - ADDQ AX, R12 - SUBQ AX, R13 - - // Copy match from the current buffer -copy_match: - MOVQ R10, AX - SUBQ CX, AX - - // ml <= mo - CMPQ R13, CX - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, R12 - MOVQ R13, CX - SUBQ $0x10, CX - JB copy_2_small - -copy_2_loop: - MOVUPS (AX), X0 - MOVUPS X0, (R10) - ADDQ $0x10, AX - ADDQ $0x10, R10 - SUBQ $0x10, CX - JAE copy_2_loop - LEAQ 16(AX)(CX*1), AX - LEAQ 16(R10)(CX*1), R10 - MOVUPS -16(AX), X0 - MOVUPS X0, -16(R10) - JMP copy_2_end - -copy_2_small: - CMPQ R13, $0x03 - JE copy_2_move_3 - JB copy_2_move_1or2 - CMPQ R13, $0x08 - JB copy_2_move_4through7 - JMP copy_2_move_8through16 - -copy_2_move_1or2: - MOVB (AX), CL - MOVB -1(AX)(R13*1), R14 - MOVB CL, (R10) - MOVB R14, -1(R10)(R13*1) - ADDQ R13, AX - ADDQ R13, R10 - JMP copy_2_end - -copy_2_move_3: - MOVW (AX), CX - MOVB 2(AX), R14 - MOVW CX, (R10) - MOVB R14, 2(R10) - ADDQ R13, AX - ADDQ R13, R10 - JMP copy_2_end - -copy_2_move_4through7: - MOVL (AX), CX - MOVL -4(AX)(R13*1), R14 - MOVL CX, (R10) - MOVL R14, -4(R10)(R13*1) - ADDQ R13, AX - ADDQ R13, R10 - JMP copy_2_end - -copy_2_move_8through16: - MOVQ (AX), CX - MOVQ -8(AX)(R13*1), R14 - MOVQ CX, (R10) - MOVQ R14, -8(R10)(R13*1) - ADDQ R13, AX - ADDQ R13, R10 - -copy_2_end: - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, R12 - -copy_slow_3: - MOVB (AX), CL - MOVB CL, (R10) - INCQ AX - INCQ R10 - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - MOVQ ctx+16(FP), AX - DECQ 96(AX) - JNS sequenceDecs_decodeSync_safe_amd64_main_loop - -loop_finished: - MOVQ br+8(FP), AX - MOVQ DX, 24(AX) - MOVB BL, 32(AX) - MOVQ SI, 8(AX) - - // Update the context - MOVQ ctx+16(FP), AX - MOVQ R12, 136(AX) - MOVQ 144(AX), CX - SUBQ CX, R11 - MOVQ R11, 168(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decodeSync_safe_amd64_error_match_len_ofs_mismatch: - MOVQ 16(SP), AX - MOVQ ctx+16(FP), CX - MOVQ AX, 216(CX) - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decodeSync_safe_amd64_error_match_len_too_big: - MOVQ ctx+16(FP), AX - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error -error_match_off_too_big: - MOVQ ctx+16(FP), AX - MOVQ 8(SP), CX - MOVQ CX, 224(AX) - MOVQ R12, 136(AX) - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - - // Return with not enough output space error -error_not_enough_space: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ R12, 136(AX) - MOVQ $0x00000005, ret+24(FP) - RET - -// func sequenceDecs_decodeSync_safe_bmi2(s *sequenceDecs, br *bitReader, ctx *decodeSyncAsmContext) int -// Requires: BMI, BMI2, CMOV, SSE -TEXT ·sequenceDecs_decodeSync_safe_bmi2(SB), $64-32 - MOVQ br+8(FP), BX - MOVQ 24(BX), AX - MOVBQZX 32(BX), DX - MOVQ (BX), CX - MOVQ 8(BX), BX - ADDQ BX, CX - MOVQ CX, (SP) - MOVQ ctx+16(FP), CX - MOVQ 72(CX), SI - MOVQ 80(CX), DI - MOVQ 88(CX), R8 - XORQ R9, R9 - MOVQ R9, 8(SP) - MOVQ R9, 16(SP) - MOVQ R9, 24(SP) - MOVQ 112(CX), R9 - MOVQ 128(CX), R10 - MOVQ R10, 32(SP) - MOVQ 144(CX), R10 - MOVQ 136(CX), R11 - MOVQ 200(CX), R12 - MOVQ R12, 56(SP) - MOVQ 176(CX), R12 - MOVQ R12, 48(SP) - MOVQ 184(CX), CX - MOVQ CX, 40(SP) - MOVQ 40(SP), CX - ADDQ CX, 48(SP) - - // Calculate pointer to s.out[cap(s.out)] (a past-end pointer) - ADDQ R9, 32(SP) - - // outBase += outPosition - ADDQ R11, R9 - -sequenceDecs_decodeSync_safe_bmi2_main_loop: - MOVQ (SP), R12 - - // Fill bitreader to have enough for the offset and match length. - CMPQ BX, $0x08 - JL sequenceDecs_decodeSync_safe_bmi2_fill_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R12 - MOVQ (R12), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decodeSync_safe_bmi2_fill_end - -sequenceDecs_decodeSync_safe_bmi2_fill_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decodeSync_safe_bmi2_fill_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decodeSync_safe_bmi2_fill_end - SHLQ $0x08, AX - SUBQ $0x01, R12 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R12), CX - ORQ CX, AX - JMP sequenceDecs_decodeSync_safe_bmi2_fill_byte_by_byte - -sequenceDecs_decodeSync_safe_bmi2_fill_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_safe_bmi2_fill_end: - // Update offset - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ R8, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 8(SP) - - // Update match length - MOVQ $0x00000808, CX - BEXTRQ CX, DI, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ DI, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 16(SP) - - // Fill bitreader to have enough for the remaining - CMPQ BX, $0x08 - JL sequenceDecs_decodeSync_safe_bmi2_fill_2_byte_by_byte - MOVQ DX, CX - SHRQ $0x03, CX - SUBQ CX, R12 - MOVQ (R12), AX - SUBQ CX, BX - ANDQ $0x07, DX - JMP sequenceDecs_decodeSync_safe_bmi2_fill_2_end - -sequenceDecs_decodeSync_safe_bmi2_fill_2_byte_by_byte: - CMPQ BX, $0x00 - JLE sequenceDecs_decodeSync_safe_bmi2_fill_2_check_overread - CMPQ DX, $0x07 - JLE sequenceDecs_decodeSync_safe_bmi2_fill_2_end - SHLQ $0x08, AX - SUBQ $0x01, R12 - SUBQ $0x01, BX - SUBQ $0x08, DX - MOVBQZX (R12), CX - ORQ CX, AX - JMP sequenceDecs_decodeSync_safe_bmi2_fill_2_byte_by_byte - -sequenceDecs_decodeSync_safe_bmi2_fill_2_check_overread: - CMPQ DX, $0x40 - JA error_overread - -sequenceDecs_decodeSync_safe_bmi2_fill_2_end: - // Update literal length - MOVQ $0x00000808, CX - BEXTRQ CX, SI, R13 - MOVQ AX, R14 - LEAQ (DX)(R13*1), CX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - MOVQ CX, DX - MOVQ SI, CX - SHRQ $0x20, CX - ADDQ R14, CX - MOVQ CX, 24(SP) - - // Fill bitreader for state updates - MOVQ R12, (SP) - MOVQ $0x00000808, CX - BEXTRQ CX, R8, R12 - MOVQ ctx+16(FP), CX - CMPQ 96(CX), $0x00 - JZ sequenceDecs_decodeSync_safe_bmi2_skip_update - LEAQ (SI)(DI*1), R13 - ADDQ R8, R13 - MOVBQZX R13, R13 - LEAQ (DX)(R13*1), CX - MOVQ AX, R14 - MOVQ CX, DX - ROLQ CL, R14 - BZHIQ R13, R14, R14 - - // Update Offset State - BZHIQ R8, R14, CX - SHRXQ R8, R14, R14 - SHRL $0x10, R8 - ADDQ CX, R8 - - // Load ctx.ofTable - MOVQ ctx+16(FP), CX - MOVQ 48(CX), CX - MOVQ (CX)(R8*8), R8 - - // Update Match Length State - BZHIQ DI, R14, CX - SHRXQ DI, R14, R14 - SHRL $0x10, DI - ADDQ CX, DI - - // Load ctx.mlTable - MOVQ ctx+16(FP), CX - MOVQ 24(CX), CX - MOVQ (CX)(DI*8), DI - - // Update Literal Length State - BZHIQ SI, R14, CX - SHRL $0x10, SI - ADDQ CX, SI - - // Load ctx.llTable - MOVQ ctx+16(FP), CX - MOVQ (CX), CX - MOVQ (CX)(SI*8), SI - -sequenceDecs_decodeSync_safe_bmi2_skip_update: - // Adjust offset - MOVQ s+0(FP), CX - MOVQ 8(SP), R13 - CMPQ R12, $0x01 - JBE sequenceDecs_decodeSync_safe_bmi2_adjust_offsetB_1_or_0 - MOVUPS 144(CX), X0 - MOVQ R13, 144(CX) - MOVUPS X0, 152(CX) - JMP sequenceDecs_decodeSync_safe_bmi2_after_adjust - -sequenceDecs_decodeSync_safe_bmi2_adjust_offsetB_1_or_0: - CMPQ 24(SP), $0x00000000 - JNE sequenceDecs_decodeSync_safe_bmi2_adjust_offset_maybezero - INCQ R13 - JMP sequenceDecs_decodeSync_safe_bmi2_adjust_offset_nonzero - -sequenceDecs_decodeSync_safe_bmi2_adjust_offset_maybezero: - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_safe_bmi2_adjust_offset_nonzero - MOVQ 144(CX), R13 - JMP sequenceDecs_decodeSync_safe_bmi2_after_adjust - -sequenceDecs_decodeSync_safe_bmi2_adjust_offset_nonzero: - MOVQ R13, R12 - XORQ R14, R14 - MOVQ $-1, R15 - CMPQ R13, $0x03 - CMOVQEQ R14, R12 - CMOVQEQ R15, R14 - ADDQ 144(CX)(R12*8), R14 - JNZ sequenceDecs_decodeSync_safe_bmi2_adjust_temp_valid - MOVQ $0x00000001, R14 - -sequenceDecs_decodeSync_safe_bmi2_adjust_temp_valid: - CMPQ R13, $0x01 - JZ sequenceDecs_decodeSync_safe_bmi2_adjust_skip - MOVQ 152(CX), R12 - MOVQ R12, 160(CX) - -sequenceDecs_decodeSync_safe_bmi2_adjust_skip: - MOVQ 144(CX), R12 - MOVQ R12, 152(CX) - MOVQ R14, 144(CX) - MOVQ R14, R13 - -sequenceDecs_decodeSync_safe_bmi2_after_adjust: - MOVQ R13, 8(SP) - - // Check values - MOVQ 16(SP), CX - MOVQ 24(SP), R12 - LEAQ (CX)(R12*1), R14 - MOVQ s+0(FP), R15 - ADDQ R14, 256(R15) - MOVQ ctx+16(FP), R14 - SUBQ R12, 104(R14) - JS error_not_enough_literals - CMPQ CX, $0x00020002 - JA sequenceDecs_decodeSync_safe_bmi2_error_match_len_too_big - TESTQ R13, R13 - JNZ sequenceDecs_decodeSync_safe_bmi2_match_len_ofs_ok - TESTQ CX, CX - JNZ sequenceDecs_decodeSync_safe_bmi2_error_match_len_ofs_mismatch - -sequenceDecs_decodeSync_safe_bmi2_match_len_ofs_ok: - MOVQ 24(SP), CX - MOVQ 8(SP), R12 - MOVQ 16(SP), R13 - - // Check if we have enough space in s.out - LEAQ (CX)(R13*1), R14 - ADDQ R9, R14 - CMPQ R14, 32(SP) - JA error_not_enough_space - - // Copy literals - TESTQ CX, CX - JZ check_offset - MOVQ CX, R14 - SUBQ $0x10, R14 - JB copy_1_small - -copy_1_loop: - MOVUPS (R10), X0 - MOVUPS X0, (R9) - ADDQ $0x10, R10 - ADDQ $0x10, R9 - SUBQ $0x10, R14 - JAE copy_1_loop - LEAQ 16(R10)(R14*1), R10 - LEAQ 16(R9)(R14*1), R9 - MOVUPS -16(R10), X0 - MOVUPS X0, -16(R9) - JMP copy_1_end - -copy_1_small: - CMPQ CX, $0x03 - JE copy_1_move_3 - JB copy_1_move_1or2 - CMPQ CX, $0x08 - JB copy_1_move_4through7 - JMP copy_1_move_8through16 - -copy_1_move_1or2: - MOVB (R10), R14 - MOVB -1(R10)(CX*1), R15 - MOVB R14, (R9) - MOVB R15, -1(R9)(CX*1) - ADDQ CX, R10 - ADDQ CX, R9 - JMP copy_1_end - -copy_1_move_3: - MOVW (R10), R14 - MOVB 2(R10), R15 - MOVW R14, (R9) - MOVB R15, 2(R9) - ADDQ CX, R10 - ADDQ CX, R9 - JMP copy_1_end - -copy_1_move_4through7: - MOVL (R10), R14 - MOVL -4(R10)(CX*1), R15 - MOVL R14, (R9) - MOVL R15, -4(R9)(CX*1) - ADDQ CX, R10 - ADDQ CX, R9 - JMP copy_1_end - -copy_1_move_8through16: - MOVQ (R10), R14 - MOVQ -8(R10)(CX*1), R15 - MOVQ R14, (R9) - MOVQ R15, -8(R9)(CX*1) - ADDQ CX, R10 - ADDQ CX, R9 - -copy_1_end: - ADDQ CX, R11 - - // Malformed input if seq.mo > t+len(hist) || seq.mo > s.windowSize) -check_offset: - MOVQ R11, CX - ADDQ 40(SP), CX - CMPQ R12, CX - JG error_match_off_too_big - CMPQ R12, 56(SP) - JG error_match_off_too_big - - // Copy match from history - MOVQ R12, CX - SUBQ R11, CX - JLS copy_match - MOVQ 48(SP), R14 - SUBQ CX, R14 - CMPQ R13, CX - JG copy_all_from_history - MOVQ R13, CX - SUBQ $0x10, CX - JB copy_4_small - -copy_4_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R9) - ADDQ $0x10, R14 - ADDQ $0x10, R9 - SUBQ $0x10, CX - JAE copy_4_loop - LEAQ 16(R14)(CX*1), R14 - LEAQ 16(R9)(CX*1), R9 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R9) - JMP copy_4_end - -copy_4_small: - CMPQ R13, $0x03 - JE copy_4_move_3 - CMPQ R13, $0x08 - JB copy_4_move_4through7 - JMP copy_4_move_8through16 - -copy_4_move_3: - MOVW (R14), CX - MOVB 2(R14), R12 - MOVW CX, (R9) - MOVB R12, 2(R9) - ADDQ R13, R14 - ADDQ R13, R9 - JMP copy_4_end - -copy_4_move_4through7: - MOVL (R14), CX - MOVL -4(R14)(R13*1), R12 - MOVL CX, (R9) - MOVL R12, -4(R9)(R13*1) - ADDQ R13, R14 - ADDQ R13, R9 - JMP copy_4_end - -copy_4_move_8through16: - MOVQ (R14), CX - MOVQ -8(R14)(R13*1), R12 - MOVQ CX, (R9) - MOVQ R12, -8(R9)(R13*1) - ADDQ R13, R14 - ADDQ R13, R9 - -copy_4_end: - ADDQ R13, R11 - JMP handle_loop - JMP loop_finished - -copy_all_from_history: - MOVQ CX, R15 - SUBQ $0x10, R15 - JB copy_5_small - -copy_5_loop: - MOVUPS (R14), X0 - MOVUPS X0, (R9) - ADDQ $0x10, R14 - ADDQ $0x10, R9 - SUBQ $0x10, R15 - JAE copy_5_loop - LEAQ 16(R14)(R15*1), R14 - LEAQ 16(R9)(R15*1), R9 - MOVUPS -16(R14), X0 - MOVUPS X0, -16(R9) - JMP copy_5_end - -copy_5_small: - CMPQ CX, $0x03 - JE copy_5_move_3 - JB copy_5_move_1or2 - CMPQ CX, $0x08 - JB copy_5_move_4through7 - JMP copy_5_move_8through16 - -copy_5_move_1or2: - MOVB (R14), R15 - MOVB -1(R14)(CX*1), BP - MOVB R15, (R9) - MOVB BP, -1(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_3: - MOVW (R14), R15 - MOVB 2(R14), BP - MOVW R15, (R9) - MOVB BP, 2(R9) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_4through7: - MOVL (R14), R15 - MOVL -4(R14)(CX*1), BP - MOVL R15, (R9) - MOVL BP, -4(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - JMP copy_5_end - -copy_5_move_8through16: - MOVQ (R14), R15 - MOVQ -8(R14)(CX*1), BP - MOVQ R15, (R9) - MOVQ BP, -8(R9)(CX*1) - ADDQ CX, R14 - ADDQ CX, R9 - -copy_5_end: - ADDQ CX, R11 - SUBQ CX, R13 - - // Copy match from the current buffer -copy_match: - MOVQ R9, CX - SUBQ R12, CX - - // ml <= mo - CMPQ R13, R12 - JA copy_overlapping_match - - // Copy non-overlapping match - ADDQ R13, R11 - MOVQ R13, R12 - SUBQ $0x10, R12 - JB copy_2_small - -copy_2_loop: - MOVUPS (CX), X0 - MOVUPS X0, (R9) - ADDQ $0x10, CX - ADDQ $0x10, R9 - SUBQ $0x10, R12 - JAE copy_2_loop - LEAQ 16(CX)(R12*1), CX - LEAQ 16(R9)(R12*1), R9 - MOVUPS -16(CX), X0 - MOVUPS X0, -16(R9) - JMP copy_2_end - -copy_2_small: - CMPQ R13, $0x03 - JE copy_2_move_3 - JB copy_2_move_1or2 - CMPQ R13, $0x08 - JB copy_2_move_4through7 - JMP copy_2_move_8through16 - -copy_2_move_1or2: - MOVB (CX), R12 - MOVB -1(CX)(R13*1), R14 - MOVB R12, (R9) - MOVB R14, -1(R9)(R13*1) - ADDQ R13, CX - ADDQ R13, R9 - JMP copy_2_end - -copy_2_move_3: - MOVW (CX), R12 - MOVB 2(CX), R14 - MOVW R12, (R9) - MOVB R14, 2(R9) - ADDQ R13, CX - ADDQ R13, R9 - JMP copy_2_end - -copy_2_move_4through7: - MOVL (CX), R12 - MOVL -4(CX)(R13*1), R14 - MOVL R12, (R9) - MOVL R14, -4(R9)(R13*1) - ADDQ R13, CX - ADDQ R13, R9 - JMP copy_2_end - -copy_2_move_8through16: - MOVQ (CX), R12 - MOVQ -8(CX)(R13*1), R14 - MOVQ R12, (R9) - MOVQ R14, -8(R9)(R13*1) - ADDQ R13, CX - ADDQ R13, R9 - -copy_2_end: - JMP handle_loop - - // Copy overlapping match -copy_overlapping_match: - ADDQ R13, R11 - -copy_slow_3: - MOVB (CX), R12 - MOVB R12, (R9) - INCQ CX - INCQ R9 - DECQ R13 - JNZ copy_slow_3 - -handle_loop: - MOVQ ctx+16(FP), CX - DECQ 96(CX) - JNS sequenceDecs_decodeSync_safe_bmi2_main_loop - -loop_finished: - MOVQ br+8(FP), CX - MOVQ AX, 24(CX) - MOVB DL, 32(CX) - MOVQ BX, 8(CX) - - // Update the context - MOVQ ctx+16(FP), AX - MOVQ R11, 136(AX) - MOVQ 144(AX), CX - SUBQ CX, R10 - MOVQ R10, 168(AX) - - // Return success - MOVQ $0x00000000, ret+24(FP) - RET - - // Return with match length error -sequenceDecs_decodeSync_safe_bmi2_error_match_len_ofs_mismatch: - MOVQ 16(SP), AX - MOVQ ctx+16(FP), CX - MOVQ AX, 216(CX) - MOVQ $0x00000001, ret+24(FP) - RET - - // Return with match too long error -sequenceDecs_decodeSync_safe_bmi2_error_match_len_too_big: - MOVQ ctx+16(FP), AX - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ $0x00000002, ret+24(FP) - RET - - // Return with match offset too long error -error_match_off_too_big: - MOVQ ctx+16(FP), AX - MOVQ 8(SP), CX - MOVQ CX, 224(AX) - MOVQ R11, 136(AX) - MOVQ $0x00000003, ret+24(FP) - RET - - // Return with not enough literals error -error_not_enough_literals: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ $0x00000004, ret+24(FP) - RET - - // Return with overread error -error_overread: - MOVQ $0x00000006, ret+24(FP) - RET - - // Return with not enough output space error -error_not_enough_space: - MOVQ ctx+16(FP), AX - MOVQ 24(SP), CX - MOVQ CX, 208(AX) - MOVQ 16(SP), CX - MOVQ CX, 216(AX) - MOVQ R11, 136(AX) - MOVQ $0x00000005, ret+24(FP) - RET diff --git a/vendor/github.com/klauspost/compress/zstd/seqdec_generic.go b/vendor/github.com/klauspost/compress/zstd/seqdec_generic.go deleted file mode 100644 index 2fb35b788c..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/seqdec_generic.go +++ /dev/null @@ -1,237 +0,0 @@ -//go:build !amd64 || appengine || !gc || noasm -// +build !amd64 appengine !gc noasm - -package zstd - -import ( - "fmt" - "io" -) - -// decode sequences from the stream with the provided history but without dictionary. -func (s *sequenceDecs) decodeSyncSimple(hist []byte) (bool, error) { - return false, nil -} - -// decode sequences from the stream without the provided history. -func (s *sequenceDecs) decode(seqs []seqVals) error { - br := s.br - - // Grab full sizes tables, to avoid bounds checks. - llTable, mlTable, ofTable := s.litLengths.fse.dt[:maxTablesize], s.matchLengths.fse.dt[:maxTablesize], s.offsets.fse.dt[:maxTablesize] - llState, mlState, ofState := s.litLengths.state.state, s.matchLengths.state.state, s.offsets.state.state - s.seqSize = 0 - litRemain := len(s.literals) - - maxBlockSize := maxCompressedBlockSize - if s.windowSize < maxBlockSize { - maxBlockSize = s.windowSize - } - for i := range seqs { - var ll, mo, ml int - if len(br.in) > 4+((maxOffsetBits+16+16)>>3) { - // inlined function: - // ll, mo, ml = s.nextFast(br, llState, mlState, ofState) - - // Final will not read from stream. - var llB, mlB, moB uint8 - ll, llB = llState.final() - ml, mlB = mlState.final() - mo, moB = ofState.final() - - // extra bits are stored in reverse order. - br.fillFast() - mo += br.getBits(moB) - if s.maxBits > 32 { - br.fillFast() - } - ml += br.getBits(mlB) - ll += br.getBits(llB) - - if moB > 1 { - s.prevOffset[2] = s.prevOffset[1] - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = mo - } else { - // mo = s.adjustOffset(mo, ll, moB) - // Inlined for rather big speedup - if ll == 0 { - // There is an exception though, when current sequence's literals_length = 0. - // In this case, repeated offsets are shifted by one, so an offset_value of 1 means Repeated_Offset2, - // an offset_value of 2 means Repeated_Offset3, and an offset_value of 3 means Repeated_Offset1 - 1_byte. - mo++ - } - - if mo == 0 { - mo = s.prevOffset[0] - } else { - var temp int - if mo == 3 { - temp = s.prevOffset[0] - 1 - } else { - temp = s.prevOffset[mo] - } - - if temp == 0 { - // 0 is not valid; input is corrupted; force offset to 1 - println("WARNING: temp was 0") - temp = 1 - } - - if mo != 1 { - s.prevOffset[2] = s.prevOffset[1] - } - s.prevOffset[1] = s.prevOffset[0] - s.prevOffset[0] = temp - mo = temp - } - } - br.fillFast() - } else { - if br.overread() { - if debugDecoder { - printf("reading sequence %d, exceeded available data\n", i) - } - return io.ErrUnexpectedEOF - } - ll, mo, ml = s.next(br, llState, mlState, ofState) - br.fill() - } - - if debugSequences { - println("Seq", i, "Litlen:", ll, "mo:", mo, "(abs) ml:", ml) - } - // Evaluate. - // We might be doing this async, so do it early. - if mo == 0 && ml > 0 { - return fmt.Errorf("zero matchoff and matchlen (%d) > 0", ml) - } - if ml > maxMatchLen { - return fmt.Errorf("match len (%d) bigger than max allowed length", ml) - } - s.seqSize += ll + ml - if s.seqSize > maxBlockSize { - return fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - litRemain -= ll - if litRemain < 0 { - return fmt.Errorf("unexpected literal count, want %d bytes, but only %d is available", ll, litRemain+ll) - } - seqs[i] = seqVals{ - ll: ll, - ml: ml, - mo: mo, - } - if i == len(seqs)-1 { - // This is the last sequence, so we shouldn't update state. - break - } - - // Manually inlined, ~ 5-20% faster - // Update all 3 states at once. Approx 20% faster. - nBits := llState.nbBits() + mlState.nbBits() + ofState.nbBits() - if nBits == 0 { - llState = llTable[llState.newState()&maxTableMask] - mlState = mlTable[mlState.newState()&maxTableMask] - ofState = ofTable[ofState.newState()&maxTableMask] - } else { - bits := br.get32BitsFast(nBits) - lowBits := uint16(bits >> ((ofState.nbBits() + mlState.nbBits()) & 31)) - llState = llTable[(llState.newState()+lowBits)&maxTableMask] - - lowBits = uint16(bits >> (ofState.nbBits() & 31)) - lowBits &= bitMask[mlState.nbBits()&15] - mlState = mlTable[(mlState.newState()+lowBits)&maxTableMask] - - lowBits = uint16(bits) & bitMask[ofState.nbBits()&15] - ofState = ofTable[(ofState.newState()+lowBits)&maxTableMask] - } - } - s.seqSize += litRemain - if s.seqSize > maxBlockSize { - return fmt.Errorf("output bigger than max block size (%d)", maxBlockSize) - } - err := br.close() - if err != nil { - printf("Closing sequences: %v, %+v\n", err, *br) - } - return err -} - -// executeSimple handles cases when a dictionary is not used. -func (s *sequenceDecs) executeSimple(seqs []seqVals, hist []byte) error { - // Ensure we have enough output size... - if len(s.out)+s.seqSize > cap(s.out) { - addBytes := s.seqSize + len(s.out) - s.out = append(s.out, make([]byte, addBytes)...) - s.out = s.out[:len(s.out)-addBytes] - } - - if debugDecoder { - printf("Execute %d seqs with literals: %d into %d bytes\n", len(seqs), len(s.literals), s.seqSize) - } - - var t = len(s.out) - out := s.out[:t+s.seqSize] - - for _, seq := range seqs { - // Add literals - copy(out[t:], s.literals[:seq.ll]) - t += seq.ll - s.literals = s.literals[seq.ll:] - - // Malformed input - if seq.mo > t+len(hist) || seq.mo > s.windowSize { - return fmt.Errorf("match offset (%d) bigger than current history (%d)", seq.mo, t+len(hist)) - } - - // Copy from history. - if v := seq.mo - t; v > 0 { - // v is the start position in history from end. - start := len(hist) - v - if seq.ml > v { - // Some goes into the current block. - // Copy remainder of history - copy(out[t:], hist[start:]) - t += v - seq.ml -= v - } else { - copy(out[t:], hist[start:start+seq.ml]) - t += seq.ml - continue - } - } - - // We must be in the current buffer now - if seq.ml > 0 { - start := t - seq.mo - if seq.ml <= t-start { - // No overlap - copy(out[t:], out[start:start+seq.ml]) - t += seq.ml - } else { - // Overlapping copy - // Extend destination slice and copy one byte at the time. - src := out[start : start+seq.ml] - dst := out[t:] - dst = dst[:len(src)] - t += len(src) - // Destination is the space we just added. - for i := range src { - dst[i] = src[i] - } - } - } - } - // Add final literals - copy(out[t:], s.literals) - if debugDecoder { - t += len(s.literals) - if t != len(out) { - panic(fmt.Errorf("length mismatch, want %d, got %d, ss: %d", len(out), t, s.seqSize)) - } - } - s.out = out - - return nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/seqenc.go b/vendor/github.com/klauspost/compress/zstd/seqenc.go deleted file mode 100644 index 8014174a77..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/seqenc.go +++ /dev/null @@ -1,114 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import "math/bits" - -type seqCoders struct { - llEnc, ofEnc, mlEnc *fseEncoder - llPrev, ofPrev, mlPrev *fseEncoder -} - -// swap coders with another (block). -func (s *seqCoders) swap(other *seqCoders) { - *s, *other = *other, *s -} - -// setPrev will update the previous encoders to the actually used ones -// and make sure a fresh one is in the main slot. -func (s *seqCoders) setPrev(ll, ml, of *fseEncoder) { - compareSwap := func(used *fseEncoder, current, prev **fseEncoder) { - // We used the new one, more current to history and reuse the previous history - if *current == used { - *prev, *current = *current, *prev - c := *current - p := *prev - c.reUsed = false - p.reUsed = true - return - } - if used == *prev { - return - } - // Ensure we cannot reuse by accident - prevEnc := *prev - prevEnc.symbolLen = 0 - } - compareSwap(ll, &s.llEnc, &s.llPrev) - compareSwap(ml, &s.mlEnc, &s.mlPrev) - compareSwap(of, &s.ofEnc, &s.ofPrev) -} - -func highBit(val uint32) (n uint32) { - return uint32(bits.Len32(val) - 1) -} - -var llCodeTable = [64]byte{0, 1, 2, 3, 4, 5, 6, 7, - 8, 9, 10, 11, 12, 13, 14, 15, - 16, 16, 17, 17, 18, 18, 19, 19, - 20, 20, 20, 20, 21, 21, 21, 21, - 22, 22, 22, 22, 22, 22, 22, 22, - 23, 23, 23, 23, 23, 23, 23, 23, - 24, 24, 24, 24, 24, 24, 24, 24, - 24, 24, 24, 24, 24, 24, 24, 24} - -// Up to 6 bits -const maxLLCode = 35 - -// llBitsTable translates from ll code to number of bits. -var llBitsTable = [maxLLCode + 1]byte{ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, - 1, 1, 1, 1, 2, 2, 3, 3, - 4, 6, 7, 8, 9, 10, 11, 12, - 13, 14, 15, 16} - -// llCode returns the code that represents the literal length requested. -func llCode(litLength uint32) uint8 { - const llDeltaCode = 19 - if litLength <= 63 { - // Compiler insists on bounds check (Go 1.12) - return llCodeTable[litLength&63] - } - return uint8(highBit(litLength)) + llDeltaCode -} - -var mlCodeTable = [128]byte{0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, - 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, - 32, 32, 33, 33, 34, 34, 35, 35, 36, 36, 36, 36, 37, 37, 37, 37, - 38, 38, 38, 38, 38, 38, 38, 38, 39, 39, 39, 39, 39, 39, 39, 39, - 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, 40, - 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, 41, - 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, - 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42, 42} - -// Up to 6 bits -const maxMLCode = 52 - -// mlBitsTable translates from ml code to number of bits. -var mlBitsTable = [maxMLCode + 1]byte{ - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, - 0, 0, 0, 0, 0, 0, 0, 0, - 1, 1, 1, 1, 2, 2, 3, 3, - 4, 4, 5, 7, 8, 9, 10, 11, - 12, 13, 14, 15, 16} - -// note : mlBase = matchLength - MINMATCH; -// because it's the format it's stored in seqStore->sequences -func mlCode(mlBase uint32) uint8 { - const mlDeltaCode = 36 - if mlBase <= 127 { - // Compiler insists on bounds check (Go 1.12) - return mlCodeTable[mlBase&127] - } - return uint8(highBit(mlBase)) + mlDeltaCode -} - -func ofCode(offset uint32) uint8 { - // A valid offset will always be > 0. - return uint8(bits.Len32(offset) - 1) -} diff --git a/vendor/github.com/klauspost/compress/zstd/snappy.go b/vendor/github.com/klauspost/compress/zstd/snappy.go deleted file mode 100644 index ec13594e89..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/snappy.go +++ /dev/null @@ -1,434 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. -// Based on work by Yann Collet, released under BSD License. - -package zstd - -import ( - "encoding/binary" - "errors" - "hash/crc32" - "io" - - "github.com/klauspost/compress/huff0" - snappy "github.com/klauspost/compress/internal/snapref" -) - -const ( - snappyTagLiteral = 0x00 - snappyTagCopy1 = 0x01 - snappyTagCopy2 = 0x02 - snappyTagCopy4 = 0x03 -) - -const ( - snappyChecksumSize = 4 - snappyMagicBody = "sNaPpY" - - // snappyMaxBlockSize is the maximum size of the input to encodeBlock. It is not - // part of the wire format per se, but some parts of the encoder assume - // that an offset fits into a uint16. - // - // Also, for the framing format (Writer type instead of Encode function), - // https://github.com/google/snappy/blob/master/framing_format.txt says - // that "the uncompressed data in a chunk must be no longer than 65536 - // bytes". - snappyMaxBlockSize = 65536 - - // snappyMaxEncodedLenOfMaxBlockSize equals MaxEncodedLen(snappyMaxBlockSize), but is - // hard coded to be a const instead of a variable, so that obufLen can also - // be a const. Their equivalence is confirmed by - // TestMaxEncodedLenOfMaxBlockSize. - snappyMaxEncodedLenOfMaxBlockSize = 76490 -) - -const ( - chunkTypeCompressedData = 0x00 - chunkTypeUncompressedData = 0x01 - chunkTypePadding = 0xfe - chunkTypeStreamIdentifier = 0xff -) - -var ( - // ErrSnappyCorrupt reports that the input is invalid. - ErrSnappyCorrupt = errors.New("snappy: corrupt input") - // ErrSnappyTooLarge reports that the uncompressed length is too large. - ErrSnappyTooLarge = errors.New("snappy: decoded block is too large") - // ErrSnappyUnsupported reports that the input isn't supported. - ErrSnappyUnsupported = errors.New("snappy: unsupported input") - - errUnsupportedLiteralLength = errors.New("snappy: unsupported literal length") -) - -// SnappyConverter can read SnappyConverter-compressed streams and convert them to zstd. -// Conversion is done by converting the stream directly from Snappy without intermediate -// full decoding. -// Therefore the compression ratio is much less than what can be done by a full decompression -// and compression, and a faulty Snappy stream may lead to a faulty Zstandard stream without -// any errors being generated. -// No CRC value is being generated and not all CRC values of the Snappy stream are checked. -// However, it provides really fast recompression of Snappy streams. -// The converter can be reused to avoid allocations, even after errors. -type SnappyConverter struct { - r io.Reader - err error - buf []byte - block *blockEnc -} - -// Convert the Snappy stream supplied in 'in' and write the zStandard stream to 'w'. -// If any error is detected on the Snappy stream it is returned. -// The number of bytes written is returned. -func (r *SnappyConverter) Convert(in io.Reader, w io.Writer) (int64, error) { - initPredefined() - r.err = nil - r.r = in - if r.block == nil { - r.block = &blockEnc{} - r.block.init() - } - r.block.initNewEncode() - if len(r.buf) != snappyMaxEncodedLenOfMaxBlockSize+snappyChecksumSize { - r.buf = make([]byte, snappyMaxEncodedLenOfMaxBlockSize+snappyChecksumSize) - } - r.block.litEnc.Reuse = huff0.ReusePolicyNone - var written int64 - var readHeader bool - { - header := frameHeader{WindowSize: snappyMaxBlockSize}.appendTo(r.buf[:0]) - - var n int - n, r.err = w.Write(header) - if r.err != nil { - return written, r.err - } - written += int64(n) - } - - for { - if !r.readFull(r.buf[:4], true) { - // Add empty last block - r.block.reset(nil) - r.block.last = true - err := r.block.encodeLits(r.block.literals, false) - if err != nil { - return written, err - } - n, err := w.Write(r.block.output) - if err != nil { - return written, err - } - written += int64(n) - - return written, r.err - } - chunkType := r.buf[0] - if !readHeader { - if chunkType != chunkTypeStreamIdentifier { - println("chunkType != chunkTypeStreamIdentifier", chunkType) - r.err = ErrSnappyCorrupt - return written, r.err - } - readHeader = true - } - chunkLen := int(r.buf[1]) | int(r.buf[2])<<8 | int(r.buf[3])<<16 - if chunkLen > len(r.buf) { - println("chunkLen > len(r.buf)", chunkType) - r.err = ErrSnappyUnsupported - return written, r.err - } - - // The chunk types are specified at - // https://github.com/google/snappy/blob/master/framing_format.txt - switch chunkType { - case chunkTypeCompressedData: - // Section 4.2. Compressed data (chunk type 0x00). - if chunkLen < snappyChecksumSize { - println("chunkLen < snappyChecksumSize", chunkLen, snappyChecksumSize) - r.err = ErrSnappyCorrupt - return written, r.err - } - buf := r.buf[:chunkLen] - if !r.readFull(buf, false) { - return written, r.err - } - //checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - buf = buf[snappyChecksumSize:] - - n, hdr, err := snappyDecodedLen(buf) - if err != nil { - r.err = err - return written, r.err - } - buf = buf[hdr:] - if n > snappyMaxBlockSize { - println("n > snappyMaxBlockSize", n, snappyMaxBlockSize) - r.err = ErrSnappyCorrupt - return written, r.err - } - r.block.reset(nil) - r.block.pushOffsets() - if err := decodeSnappy(r.block, buf); err != nil { - r.err = err - return written, r.err - } - if r.block.size+r.block.extraLits != n { - printf("invalid size, want %d, got %d\n", n, r.block.size+r.block.extraLits) - r.err = ErrSnappyCorrupt - return written, r.err - } - err = r.block.encode(nil, false, false) - switch err { - case errIncompressible: - r.block.popOffsets() - r.block.reset(nil) - r.block.literals, err = snappy.Decode(r.block.literals[:n], r.buf[snappyChecksumSize:chunkLen]) - if err != nil { - return written, err - } - err = r.block.encodeLits(r.block.literals, false) - if err != nil { - return written, err - } - case nil: - default: - return written, err - } - - n, r.err = w.Write(r.block.output) - if r.err != nil { - return written, err - } - written += int64(n) - continue - case chunkTypeUncompressedData: - if debugEncoder { - println("Uncompressed, chunklen", chunkLen) - } - // Section 4.3. Uncompressed data (chunk type 0x01). - if chunkLen < snappyChecksumSize { - println("chunkLen < snappyChecksumSize", chunkLen, snappyChecksumSize) - r.err = ErrSnappyCorrupt - return written, r.err - } - r.block.reset(nil) - buf := r.buf[:snappyChecksumSize] - if !r.readFull(buf, false) { - return written, r.err - } - checksum := uint32(buf[0]) | uint32(buf[1])<<8 | uint32(buf[2])<<16 | uint32(buf[3])<<24 - // Read directly into r.decoded instead of via r.buf. - n := chunkLen - snappyChecksumSize - if n > snappyMaxBlockSize { - println("n > snappyMaxBlockSize", n, snappyMaxBlockSize) - r.err = ErrSnappyCorrupt - return written, r.err - } - r.block.literals = r.block.literals[:n] - if !r.readFull(r.block.literals, false) { - return written, r.err - } - if snappyCRC(r.block.literals) != checksum { - println("literals crc mismatch") - r.err = ErrSnappyCorrupt - return written, r.err - } - err := r.block.encodeLits(r.block.literals, false) - if err != nil { - return written, err - } - n, r.err = w.Write(r.block.output) - if r.err != nil { - return written, err - } - written += int64(n) - continue - - case chunkTypeStreamIdentifier: - if debugEncoder { - println("stream id", chunkLen, len(snappyMagicBody)) - } - // Section 4.1. Stream identifier (chunk type 0xff). - if chunkLen != len(snappyMagicBody) { - println("chunkLen != len(snappyMagicBody)", chunkLen, len(snappyMagicBody)) - r.err = ErrSnappyCorrupt - return written, r.err - } - if !r.readFull(r.buf[:len(snappyMagicBody)], false) { - return written, r.err - } - for i := 0; i < len(snappyMagicBody); i++ { - if r.buf[i] != snappyMagicBody[i] { - println("r.buf[i] != snappyMagicBody[i]", r.buf[i], snappyMagicBody[i], i) - r.err = ErrSnappyCorrupt - return written, r.err - } - } - continue - } - - if chunkType <= 0x7f { - // Section 4.5. Reserved unskippable chunks (chunk types 0x02-0x7f). - println("chunkType <= 0x7f") - r.err = ErrSnappyUnsupported - return written, r.err - } - // Section 4.4 Padding (chunk type 0xfe). - // Section 4.6. Reserved skippable chunks (chunk types 0x80-0xfd). - if !r.readFull(r.buf[:chunkLen], false) { - return written, r.err - } - } -} - -// decodeSnappy writes the decoding of src to dst. It assumes that the varint-encoded -// length of the decompressed bytes has already been read. -func decodeSnappy(blk *blockEnc, src []byte) error { - //decodeRef(make([]byte, snappyMaxBlockSize), src) - var s, length int - lits := blk.extraLits - var offset uint32 - for s < len(src) { - switch src[s] & 0x03 { - case snappyTagLiteral: - x := uint32(src[s] >> 2) - switch { - case x < 60: - s++ - case x == 60: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, src) - return ErrSnappyCorrupt - } - x = uint32(src[s-1]) - case x == 61: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, src) - return ErrSnappyCorrupt - } - x = uint32(src[s-2]) | uint32(src[s-1])<<8 - case x == 62: - s += 4 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, src) - return ErrSnappyCorrupt - } - x = uint32(src[s-3]) | uint32(src[s-2])<<8 | uint32(src[s-1])<<16 - case x == 63: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, src) - return ErrSnappyCorrupt - } - x = uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24 - } - if x > snappyMaxBlockSize { - println("x > snappyMaxBlockSize", x, snappyMaxBlockSize) - return ErrSnappyCorrupt - } - length = int(x) + 1 - if length <= 0 { - println("length <= 0 ", length) - - return errUnsupportedLiteralLength - } - //if length > snappyMaxBlockSize-d || uint32(length) > len(src)-s { - // return ErrSnappyCorrupt - //} - - blk.literals = append(blk.literals, src[s:s+length]...) - //println(length, "litLen") - lits += length - s += length - continue - - case snappyTagCopy1: - s += 2 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, len(src)) - return ErrSnappyCorrupt - } - length = 4 + int(src[s-2])>>2&0x7 - offset = uint32(src[s-2])&0xe0<<3 | uint32(src[s-1]) - - case snappyTagCopy2: - s += 3 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, len(src)) - return ErrSnappyCorrupt - } - length = 1 + int(src[s-3])>>2 - offset = uint32(src[s-2]) | uint32(src[s-1])<<8 - - case snappyTagCopy4: - s += 5 - if uint(s) > uint(len(src)) { // The uint conversions catch overflow from the previous line. - println("uint(s) > uint(len(src)", s, len(src)) - return ErrSnappyCorrupt - } - length = 1 + int(src[s-5])>>2 - offset = uint32(src[s-4]) | uint32(src[s-3])<<8 | uint32(src[s-2])<<16 | uint32(src[s-1])<<24 - } - - if offset <= 0 || blk.size+lits < int(offset) /*|| length > len(blk)-d */ { - println("offset <= 0 || blk.size+lits < int(offset)", offset, blk.size+lits, int(offset), blk.size, lits) - - return ErrSnappyCorrupt - } - - // Check if offset is one of the recent offsets. - // Adjusts the output offset accordingly. - // Gives a tiny bit of compression, typically around 1%. - if false { - offset = blk.matchOffset(offset, uint32(lits)) - } else { - offset += 3 - } - - blk.sequences = append(blk.sequences, seq{ - litLen: uint32(lits), - offset: offset, - matchLen: uint32(length) - zstdMinMatch, - }) - blk.size += length + lits - lits = 0 - } - blk.extraLits = lits - return nil -} - -func (r *SnappyConverter) readFull(p []byte, allowEOF bool) (ok bool) { - if _, r.err = io.ReadFull(r.r, p); r.err != nil { - if r.err == io.ErrUnexpectedEOF || (r.err == io.EOF && !allowEOF) { - r.err = ErrSnappyCorrupt - } - return false - } - return true -} - -var crcTable = crc32.MakeTable(crc32.Castagnoli) - -// crc implements the checksum specified in section 3 of -// https://github.com/google/snappy/blob/master/framing_format.txt -func snappyCRC(b []byte) uint32 { - c := crc32.Update(0, crcTable, b) - return c>>15 | c<<17 + 0xa282ead8 -} - -// snappyDecodedLen returns the length of the decoded block and the number of bytes -// that the length header occupied. -func snappyDecodedLen(src []byte) (blockLen, headerLen int, err error) { - v, n := binary.Uvarint(src) - if n <= 0 || v > 0xffffffff { - return 0, 0, ErrSnappyCorrupt - } - - const wordSize = 32 << (^uint(0) >> 32 & 1) - if wordSize == 32 && v > 0x7fffffff { - return 0, 0, ErrSnappyTooLarge - } - return int(v), n, nil -} diff --git a/vendor/github.com/klauspost/compress/zstd/zip.go b/vendor/github.com/klauspost/compress/zstd/zip.go deleted file mode 100644 index 29c15c8c4e..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/zip.go +++ /dev/null @@ -1,141 +0,0 @@ -// Copyright 2019+ Klaus Post. All rights reserved. -// License information can be found in the LICENSE file. - -package zstd - -import ( - "errors" - "io" - "sync" -) - -// ZipMethodWinZip is the method for Zstandard compressed data inside Zip files for WinZip. -// See https://www.winzip.com/win/en/comp_info.html -const ZipMethodWinZip = 93 - -// ZipMethodPKWare is the original method number used by PKWARE to indicate Zstandard compression. -// Deprecated: This has been deprecated by PKWARE, use ZipMethodWinZip instead for compression. -// See https://pkware.cachefly.net/webdocs/APPNOTE/APPNOTE-6.3.9.TXT -const ZipMethodPKWare = 20 - -// zipReaderPool is the default reader pool. -var zipReaderPool = sync.Pool{New: func() interface{} { - z, err := NewReader(nil, WithDecoderLowmem(true), WithDecoderMaxWindow(128<<20), WithDecoderConcurrency(1)) - if err != nil { - panic(err) - } - return z -}} - -// newZipReader creates a pooled zip decompressor. -func newZipReader(opts ...DOption) func(r io.Reader) io.ReadCloser { - pool := &zipReaderPool - if len(opts) > 0 { - opts = append([]DOption{WithDecoderLowmem(true), WithDecoderMaxWindow(128 << 20)}, opts...) - // Force concurrency 1 - opts = append(opts, WithDecoderConcurrency(1)) - // Create our own pool - pool = &sync.Pool{} - } - return func(r io.Reader) io.ReadCloser { - dec, ok := pool.Get().(*Decoder) - if ok { - dec.Reset(r) - } else { - d, err := NewReader(r, opts...) - if err != nil { - panic(err) - } - dec = d - } - return &pooledZipReader{dec: dec, pool: pool} - } -} - -type pooledZipReader struct { - mu sync.Mutex // guards Close and Read - pool *sync.Pool - dec *Decoder -} - -func (r *pooledZipReader) Read(p []byte) (n int, err error) { - r.mu.Lock() - defer r.mu.Unlock() - if r.dec == nil { - return 0, errors.New("read after close or EOF") - } - dec, err := r.dec.Read(p) - if err == io.EOF { - r.dec.Reset(nil) - r.pool.Put(r.dec) - r.dec = nil - } - return dec, err -} - -func (r *pooledZipReader) Close() error { - r.mu.Lock() - defer r.mu.Unlock() - var err error - if r.dec != nil { - err = r.dec.Reset(nil) - r.pool.Put(r.dec) - r.dec = nil - } - return err -} - -type pooledZipWriter struct { - mu sync.Mutex // guards Close and Read - enc *Encoder - pool *sync.Pool -} - -func (w *pooledZipWriter) Write(p []byte) (n int, err error) { - w.mu.Lock() - defer w.mu.Unlock() - if w.enc == nil { - return 0, errors.New("Write after Close") - } - return w.enc.Write(p) -} - -func (w *pooledZipWriter) Close() error { - w.mu.Lock() - defer w.mu.Unlock() - var err error - if w.enc != nil { - err = w.enc.Close() - w.pool.Put(w.enc) - w.enc = nil - } - return err -} - -// ZipCompressor returns a compressor that can be registered with zip libraries. -// The provided encoder options will be used on all encodes. -func ZipCompressor(opts ...EOption) func(w io.Writer) (io.WriteCloser, error) { - var pool sync.Pool - return func(w io.Writer) (io.WriteCloser, error) { - enc, ok := pool.Get().(*Encoder) - if ok { - enc.Reset(w) - } else { - var err error - enc, err = NewWriter(w, opts...) - if err != nil { - return nil, err - } - } - return &pooledZipWriter{enc: enc, pool: &pool}, nil - } -} - -// ZipDecompressor returns a decompressor that can be registered with zip libraries. -// See ZipCompressor for example. -// Options can be specified. WithDecoderConcurrency(1) is forced, -// and by default a 128MB maximum decompression window is specified. -// The window size can be overridden if required. -func ZipDecompressor(opts ...DOption) func(r io.Reader) io.ReadCloser { - return newZipReader(opts...) -} diff --git a/vendor/github.com/klauspost/compress/zstd/zstd.go b/vendor/github.com/klauspost/compress/zstd/zstd.go deleted file mode 100644 index 066bef2a4f..0000000000 --- a/vendor/github.com/klauspost/compress/zstd/zstd.go +++ /dev/null @@ -1,125 +0,0 @@ -// Package zstd provides decompression of zstandard files. -// -// For advanced usage and examples, go to the README: https://github.com/klauspost/compress/tree/master/zstd#zstd -package zstd - -import ( - "bytes" - "encoding/binary" - "errors" - "log" - "math" -) - -// enable debug printing -const debug = false - -// enable encoding debug printing -const debugEncoder = debug - -// enable decoding debug printing -const debugDecoder = debug - -// Enable extra assertions. -const debugAsserts = debug || false - -// print sequence details -const debugSequences = false - -// print detailed matching information -const debugMatches = false - -// force encoder to use predefined tables. -const forcePreDef = false - -// zstdMinMatch is the minimum zstd match length. -const zstdMinMatch = 3 - -// fcsUnknown is used for unknown frame content size. -const fcsUnknown = math.MaxUint64 - -var ( - // ErrReservedBlockType is returned when a reserved block type is found. - // Typically this indicates wrong or corrupted input. - ErrReservedBlockType = errors.New("invalid input: reserved block type encountered") - - // ErrCompressedSizeTooBig is returned when a block is bigger than allowed. - // Typically this indicates wrong or corrupted input. - ErrCompressedSizeTooBig = errors.New("invalid input: compressed size too big") - - // ErrBlockTooSmall is returned when a block is too small to be decoded. - // Typically returned on invalid input. - ErrBlockTooSmall = errors.New("block too small") - - // ErrUnexpectedBlockSize is returned when a block has unexpected size. - // Typically returned on invalid input. - ErrUnexpectedBlockSize = errors.New("unexpected block size") - - // ErrMagicMismatch is returned when a "magic" number isn't what is expected. - // Typically this indicates wrong or corrupted input. - ErrMagicMismatch = errors.New("invalid input: magic number mismatch") - - // ErrWindowSizeExceeded is returned when a reference exceeds the valid window size. - // Typically this indicates wrong or corrupted input. - ErrWindowSizeExceeded = errors.New("window size exceeded") - - // ErrWindowSizeTooSmall is returned when no window size is specified. - // Typically this indicates wrong or corrupted input. - ErrWindowSizeTooSmall = errors.New("invalid input: window size was too small") - - // ErrDecoderSizeExceeded is returned if decompressed size exceeds the configured limit. - ErrDecoderSizeExceeded = errors.New("decompressed size exceeds configured limit") - - // ErrUnknownDictionary is returned if the dictionary ID is unknown. - ErrUnknownDictionary = errors.New("unknown dictionary") - - // ErrFrameSizeExceeded is returned if the stated frame size is exceeded. - // This is only returned if SingleSegment is specified on the frame. - ErrFrameSizeExceeded = errors.New("frame size exceeded") - - // ErrFrameSizeMismatch is returned if the stated frame size does not match the expected size. - // This is only returned if SingleSegment is specified on the frame. - ErrFrameSizeMismatch = errors.New("frame size does not match size on stream") - - // ErrCRCMismatch is returned if CRC mismatches. - ErrCRCMismatch = errors.New("CRC check failed") - - // ErrDecoderClosed will be returned if the Decoder was used after - // Close has been called. - ErrDecoderClosed = errors.New("decoder used after Close") - - // ErrEncoderClosed will be returned if the Encoder was used after - // Close has been called. - ErrEncoderClosed = errors.New("encoder used after Close") - - // ErrDecoderNilInput is returned when a nil Reader was provided - // and an operation other than Reset/DecodeAll/Close was attempted. - ErrDecoderNilInput = errors.New("nil input provided as reader") -) - -func println(a ...interface{}) { - if debug || debugDecoder || debugEncoder { - log.Println(a...) - } -} - -func printf(format string, a ...interface{}) { - if debug || debugDecoder || debugEncoder { - log.Printf(format, a...) - } -} - -func load3232(b []byte, i int32) uint32 { - return binary.LittleEndian.Uint32(b[:len(b):len(b)][i:]) -} - -func load6432(b []byte, i int32) uint64 { - return binary.LittleEndian.Uint64(b[:len(b):len(b)][i:]) -} - -type byter interface { - Bytes() []byte - Len() int -} - -var _ byter = &bytes.Buffer{} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/collectorfunc.go b/vendor/github.com/prometheus/client_golang/prometheus/collectorfunc.go new file mode 100644 index 0000000000..9a71a15db1 --- /dev/null +++ b/vendor/github.com/prometheus/client_golang/prometheus/collectorfunc.go @@ -0,0 +1,30 @@ +// Copyright 2025 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package prometheus + +// CollectorFunc is a convenient way to implement a Prometheus Collector +// without interface boilerplate. +// This implementation is based on DescribeByCollect method. +// familiarize yourself to it before using. +type CollectorFunc func(chan<- Metric) + +// Collect calls the defined CollectorFunc function with the provided Metrics channel +func (f CollectorFunc) Collect(ch chan<- Metric) { + f(ch) +} + +// Describe sends the descriptor information using DescribeByCollect +func (f CollectorFunc) Describe(ch chan<- *Desc) { + DescribeByCollect(f, ch) +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/desc.go b/vendor/github.com/prometheus/client_golang/prometheus/desc.go index 68ffe3c248..ad347113c0 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/desc.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/desc.go @@ -189,12 +189,15 @@ func (d *Desc) String() string { fmt.Sprintf("%s=%q", lp.GetName(), lp.GetValue()), ) } - vlStrings := make([]string, 0, len(d.variableLabels.names)) - for _, vl := range d.variableLabels.names { - if fn, ok := d.variableLabels.labelConstraints[vl]; ok && fn != nil { - vlStrings = append(vlStrings, fmt.Sprintf("c(%s)", vl)) - } else { - vlStrings = append(vlStrings, vl) + vlStrings := []string{} + if d.variableLabels != nil { + vlStrings = make([]string, 0, len(d.variableLabels.names)) + for _, vl := range d.variableLabels.names { + if fn, ok := d.variableLabels.labelConstraints[vl]; ok && fn != nil { + vlStrings = append(vlStrings, fmt.Sprintf("c(%s)", vl)) + } else { + vlStrings = append(vlStrings, vl) + } } } return fmt.Sprintf( diff --git a/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go b/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go index 5117464172..6b8684731c 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/go_collector_latest.go @@ -288,7 +288,7 @@ func NewGoCollector(opts ...func(o *internal.GoCollectorOptions)) Collector { } func attachOriginalName(desc, origName string) string { - return fmt.Sprintf("%s Sourced from %s", desc, origName) + return fmt.Sprintf("%s Sourced from %s.", desc, origName) } // Describe returns all descriptions of the collector. diff --git a/vendor/github.com/prometheus/client_golang/prometheus/histogram.go b/vendor/github.com/prometheus/client_golang/prometheus/histogram.go index 519db348a7..c453b754a7 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/histogram.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/histogram.go @@ -14,6 +14,7 @@ package prometheus import ( + "errors" "fmt" "math" "runtime" @@ -28,6 +29,11 @@ import ( "google.golang.org/protobuf/types/known/timestamppb" ) +const ( + nativeHistogramSchemaMaximum = 8 + nativeHistogramSchemaMinimum = -4 +) + // nativeHistogramBounds for the frac of observed values. Only relevant for // schema > 0. The position in the slice is the schema. (0 is never used, just // here for convenience of using the schema directly as the index.) @@ -330,11 +336,11 @@ func ExponentialBuckets(start, factor float64, count int) []float64 { // used for the Buckets field of HistogramOpts. // // The function panics if 'count' is 0 or negative, if 'min' is 0 or negative. -func ExponentialBucketsRange(min, max float64, count int) []float64 { +func ExponentialBucketsRange(minBucket, maxBucket float64, count int) []float64 { if count < 1 { panic("ExponentialBucketsRange count needs a positive count") } - if min <= 0 { + if minBucket <= 0 { panic("ExponentialBucketsRange min needs to be greater than 0") } @@ -342,12 +348,12 @@ func ExponentialBucketsRange(min, max float64, count int) []float64 { // max = min*growthFactor^(bucketCount-1) // We know max/min and highest bucket. Solve for growthFactor. - growthFactor := math.Pow(max/min, 1.0/float64(count-1)) + growthFactor := math.Pow(maxBucket/minBucket, 1.0/float64(count-1)) // Now that we know growthFactor, solve for each bucket. buckets := make([]float64, count) for i := 1; i <= count; i++ { - buckets[i-1] = min * math.Pow(growthFactor, float64(i-1)) + buckets[i-1] = minBucket * math.Pow(growthFactor, float64(i-1)) } return buckets } @@ -858,15 +864,35 @@ func (h *histogram) Write(out *dto.Metric) error { // findBucket returns the index of the bucket for the provided value, or // len(h.upperBounds) for the +Inf bucket. func (h *histogram) findBucket(v float64) int { - // TODO(beorn7): For small numbers of buckets (<30), a linear search is - // slightly faster than the binary search. If we really care, we could - // switch from one search strategy to the other depending on the number - // of buckets. - // - // Microbenchmarks (BenchmarkHistogramNoLabels): - // 11 buckets: 38.3 ns/op linear - binary 48.7 ns/op - // 100 buckets: 78.1 ns/op linear - binary 54.9 ns/op - // 300 buckets: 154 ns/op linear - binary 61.6 ns/op + n := len(h.upperBounds) + if n == 0 { + return 0 + } + + // Early exit: if v is less than or equal to the first upper bound, return 0 + if v <= h.upperBounds[0] { + return 0 + } + + // Early exit: if v is greater than the last upper bound, return len(h.upperBounds) + if v > h.upperBounds[n-1] { + return n + } + + // For small arrays, use simple linear search + // "magic number" 35 is result of tests on couple different (AWS and baremetal) servers + // see more details here: https://github.com/prometheus/client_golang/pull/1662 + if n < 35 { + for i, bound := range h.upperBounds { + if v <= bound { + return i + } + } + // If v is greater than all upper bounds, return len(h.upperBounds) + return n + } + + // For larger arrays, use stdlib's binary search return sort.SearchFloat64s(h.upperBounds, v) } @@ -1440,9 +1466,9 @@ func pickSchema(bucketFactor float64) int32 { floor := math.Floor(math.Log2(math.Log2(bucketFactor))) switch { case floor <= -8: - return 8 + return nativeHistogramSchemaMaximum case floor >= 4: - return -4 + return nativeHistogramSchemaMinimum default: return -int32(floor) } @@ -1835,3 +1861,196 @@ func (n *nativeExemplars) addExemplar(e *dto.Exemplar) { n.exemplars = append(n.exemplars[:nIdx], append([]*dto.Exemplar{e}, append(n.exemplars[nIdx:rIdx], n.exemplars[rIdx+1:]...)...)...) } } + +type constNativeHistogram struct { + desc *Desc + dto.Histogram + labelPairs []*dto.LabelPair +} + +func validateCount(sum float64, count uint64, negativeBuckets, positiveBuckets map[int]int64, zeroBucket uint64) error { + var bucketPopulationSum int64 + for _, v := range positiveBuckets { + bucketPopulationSum += v + } + for _, v := range negativeBuckets { + bucketPopulationSum += v + } + bucketPopulationSum += int64(zeroBucket) + + // If the sum of observations is NaN, the number of observations must be greater or equal to the sum of all bucket counts. + // Otherwise, the number of observations must be equal to the sum of all bucket counts . + + if math.IsNaN(sum) && bucketPopulationSum > int64(count) || + !math.IsNaN(sum) && bucketPopulationSum != int64(count) { + return errors.New("the sum of all bucket populations exceeds the count of observations") + } + return nil +} + +// NewConstNativeHistogram returns a metric representing a Prometheus native histogram with +// fixed values for the count, sum, and positive/negative/zero bucket counts. As those parameters +// cannot be changed, the returned value does not implement the Histogram +// interface (but only the Metric interface). Users of this package will not +// have much use for it in regular operations. However, when implementing custom +// OpenTelemetry Collectors, it is useful as a throw-away metric that is generated on the fly +// to send it to Prometheus in the Collect method. +// +// zeroBucket counts all (positive and negative) +// observations in the zero bucket (with an absolute value less or equal +// the current threshold). +// positiveBuckets and negativeBuckets are separate maps for negative and positive +// observations. The map's value is an int64, counting observations in +// that bucket. The map's key is the +// index of the bucket according to the used +// Schema. Index 0 is for an upper bound of 1 in positive buckets and for a lower bound of -1 in negative buckets. +// NewConstNativeHistogram returns an error if +// - the length of labelValues is not consistent with the variable labels in Desc or if Desc is invalid. +// - the schema passed is not between 8 and -4 +// - the sum of counts in all buckets including the zero bucket does not equal the count if sum is not NaN (or exceeds the count if sum is NaN) +// +// See https://opentelemetry.io/docs/specs/otel/compatibility/prometheus_and_openmetrics/#exponential-histograms for more details about the conversion from OTel to Prometheus. +func NewConstNativeHistogram( + desc *Desc, + count uint64, + sum float64, + positiveBuckets, negativeBuckets map[int]int64, + zeroBucket uint64, + schema int32, + zeroThreshold float64, + createdTimestamp time.Time, + labelValues ...string, +) (Metric, error) { + if desc.err != nil { + return nil, desc.err + } + if err := validateLabelValues(labelValues, len(desc.variableLabels.names)); err != nil { + return nil, err + } + if schema > nativeHistogramSchemaMaximum || schema < nativeHistogramSchemaMinimum { + return nil, errors.New("invalid native histogram schema") + } + if err := validateCount(sum, count, negativeBuckets, positiveBuckets, zeroBucket); err != nil { + return nil, err + } + + NegativeSpan, NegativeDelta := makeBucketsFromMap(negativeBuckets) + PositiveSpan, PositiveDelta := makeBucketsFromMap(positiveBuckets) + ret := &constNativeHistogram{ + desc: desc, + Histogram: dto.Histogram{ + CreatedTimestamp: timestamppb.New(createdTimestamp), + Schema: &schema, + ZeroThreshold: &zeroThreshold, + SampleCount: &count, + SampleSum: &sum, + + NegativeSpan: NegativeSpan, + NegativeDelta: NegativeDelta, + + PositiveSpan: PositiveSpan, + PositiveDelta: PositiveDelta, + + ZeroCount: proto.Uint64(zeroBucket), + }, + labelPairs: MakeLabelPairs(desc, labelValues), + } + if *ret.ZeroThreshold == 0 && *ret.ZeroCount == 0 && len(ret.PositiveSpan) == 0 && len(ret.NegativeSpan) == 0 { + ret.PositiveSpan = []*dto.BucketSpan{{ + Offset: proto.Int32(0), + Length: proto.Uint32(0), + }} + } + return ret, nil +} + +// MustNewConstNativeHistogram is a version of NewConstNativeHistogram that panics where +// NewConstNativeHistogram would have returned an error. +func MustNewConstNativeHistogram( + desc *Desc, + count uint64, + sum float64, + positiveBuckets, negativeBuckets map[int]int64, + zeroBucket uint64, + nativeHistogramSchema int32, + nativeHistogramZeroThreshold float64, + createdTimestamp time.Time, + labelValues ...string, +) Metric { + nativehistogram, err := NewConstNativeHistogram(desc, + count, + sum, + positiveBuckets, + negativeBuckets, + zeroBucket, + nativeHistogramSchema, + nativeHistogramZeroThreshold, + createdTimestamp, + labelValues...) + if err != nil { + panic(err) + } + return nativehistogram +} + +func (h *constNativeHistogram) Desc() *Desc { + return h.desc +} + +func (h *constNativeHistogram) Write(out *dto.Metric) error { + out.Histogram = &h.Histogram + out.Label = h.labelPairs + return nil +} + +func makeBucketsFromMap(buckets map[int]int64) ([]*dto.BucketSpan, []int64) { + if len(buckets) == 0 { + return nil, nil + } + var ii []int + for k := range buckets { + ii = append(ii, k) + } + sort.Ints(ii) + + var ( + spans []*dto.BucketSpan + deltas []int64 + prevCount int64 + nextI int + ) + + appendDelta := func(count int64) { + *spans[len(spans)-1].Length++ + deltas = append(deltas, count-prevCount) + prevCount = count + } + + for n, i := range ii { + count := buckets[i] + // Multiple spans with only small gaps in between are probably + // encoded more efficiently as one larger span with a few empty + // buckets. Needs some research to find the sweet spot. For now, + // we assume that gaps of one or two buckets should not create + // a new span. + iDelta := int32(i - nextI) + if n == 0 || iDelta > 2 { + // We have to create a new span, either because we are + // at the very beginning, or because we have found a gap + // of more than two buckets. + spans = append(spans, &dto.BucketSpan{ + Offset: proto.Int32(iDelta), + Length: proto.Uint32(0), + }) + } else { + // We have found a small gap (or no gap at all). + // Insert empty buckets as needed. + for j := int32(0); j < iDelta; j++ { + appendDelta(0) + } + } + appendDelta(count) + nextI = i + 1 + } + return spans, deltas +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go b/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go index a595a20362..8b016355ad 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/internal/difflib.go @@ -22,17 +22,18 @@ import ( "bytes" "fmt" "io" + "strconv" "strings" ) -func min(a, b int) int { +func minInt(a, b int) int { if a < b { return a } return b } -func max(a, b int) int { +func maxInt(a, b int) int { if a > b { return a } @@ -427,12 +428,12 @@ func (m *SequenceMatcher) GetGroupedOpCodes(n int) [][]OpCode { if codes[0].Tag == 'e' { c := codes[0] i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - codes[0] = OpCode{c.Tag, max(i1, i2-n), i2, max(j1, j2-n), j2} + codes[0] = OpCode{c.Tag, maxInt(i1, i2-n), i2, maxInt(j1, j2-n), j2} } if codes[len(codes)-1].Tag == 'e' { c := codes[len(codes)-1] i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - codes[len(codes)-1] = OpCode{c.Tag, i1, min(i2, i1+n), j1, min(j2, j1+n)} + codes[len(codes)-1] = OpCode{c.Tag, i1, minInt(i2, i1+n), j1, minInt(j2, j1+n)} } nn := n + n groups := [][]OpCode{} @@ -443,12 +444,12 @@ func (m *SequenceMatcher) GetGroupedOpCodes(n int) [][]OpCode { // there is a large range with no changes. if c.Tag == 'e' && i2-i1 > nn { group = append(group, OpCode{ - c.Tag, i1, min(i2, i1+n), - j1, min(j2, j1+n), + c.Tag, i1, minInt(i2, i1+n), + j1, minInt(j2, j1+n), }) groups = append(groups, group) group = []OpCode{} - i1, j1 = max(i1, i2-n), max(j1, j2-n) + i1, j1 = maxInt(i1, i2-n), maxInt(j1, j2-n) } group = append(group, OpCode{c.Tag, i1, i2, j1, j2}) } @@ -515,7 +516,7 @@ func (m *SequenceMatcher) QuickRatio() float64 { // is faster to compute than either .Ratio() or .QuickRatio(). func (m *SequenceMatcher) RealQuickRatio() float64 { la, lb := len(m.a), len(m.b) - return calculateRatio(min(la, lb), la+lb) + return calculateRatio(minInt(la, lb), la+lb) } // Convert range to the "ed" format @@ -524,7 +525,7 @@ func formatRangeUnified(start, stop int) string { beginning := start + 1 // lines start numbering with one length := stop - start if length == 1 { - return fmt.Sprintf("%d", beginning) + return strconv.Itoa(beginning) } if length == 0 { beginning-- // empty ranges begin at line just before the range diff --git a/vendor/github.com/prometheus/client_golang/prometheus/internal/go_runtime_metrics.go b/vendor/github.com/prometheus/client_golang/prometheus/internal/go_runtime_metrics.go index 97d17d6cb6..f7f97ef926 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/internal/go_runtime_metrics.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/internal/go_runtime_metrics.go @@ -66,7 +66,8 @@ func RuntimeMetricsToProm(d *metrics.Description) (string, string, string, bool) name += "_total" } - valid := model.IsValidMetricName(model.LabelValue(namespace + "_" + subsystem + "_" + name)) + // Our current conversion moves to legacy naming, so use legacy validation. + valid := model.IsValidLegacyMetricName(namespace + "_" + subsystem + "_" + name) switch d.Kind { case metrics.KindUint64: case metrics.KindFloat64: diff --git a/vendor/github.com/prometheus/client_golang/prometheus/metric.go b/vendor/github.com/prometheus/client_golang/prometheus/metric.go index 9d9b81ab44..592eec3e24 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/metric.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/metric.go @@ -108,15 +108,23 @@ func BuildFQName(namespace, subsystem, name string) string { if name == "" { return "" } - switch { - case namespace != "" && subsystem != "": - return strings.Join([]string{namespace, subsystem, name}, "_") - case namespace != "": - return strings.Join([]string{namespace, name}, "_") - case subsystem != "": - return strings.Join([]string{subsystem, name}, "_") + + sb := strings.Builder{} + sb.Grow(len(namespace) + len(subsystem) + len(name) + 2) + + if namespace != "" { + sb.WriteString(namespace) + sb.WriteString("_") } - return name + + if subsystem != "" { + sb.WriteString(subsystem) + sb.WriteString("_") + } + + sb.WriteString(name) + + return sb.String() } type invalidMetric struct { diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector.go index 62a4e7ad9a..e7bce8b58e 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/process_collector.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector.go @@ -23,6 +23,7 @@ import ( type processCollector struct { collectFn func(chan<- Metric) + describeFn func(chan<- *Desc) pidFn func() (int, error) reportErrors bool cpuTotal *Desc @@ -122,26 +123,23 @@ func NewProcessCollector(opts ProcessCollectorOpts) Collector { // Set up process metric collection if supported by the runtime. if canCollectProcess() { c.collectFn = c.processCollect + c.describeFn = c.describe } else { - c.collectFn = func(ch chan<- Metric) { - c.reportError(ch, nil, errors.New("process metrics not supported on this platform")) - } + c.collectFn = c.errorCollectFn + c.describeFn = c.errorDescribeFn } return c } -// Describe returns all descriptions of the collector. -func (c *processCollector) Describe(ch chan<- *Desc) { - ch <- c.cpuTotal - ch <- c.openFDs - ch <- c.maxFDs - ch <- c.vsize - ch <- c.maxVsize - ch <- c.rss - ch <- c.startTime - ch <- c.inBytes - ch <- c.outBytes +func (c *processCollector) errorCollectFn(ch chan<- Metric) { + c.reportError(ch, nil, errors.New("process metrics not supported on this platform")) +} + +func (c *processCollector) errorDescribeFn(ch chan<- *Desc) { + if c.reportErrors { + ch <- NewInvalidDesc(errors.New("process metrics not supported on this platform")) + } } // Collect returns the current state of all metrics of the collector. @@ -149,6 +147,11 @@ func (c *processCollector) Collect(ch chan<- Metric) { c.collectFn(ch) } +// Describe returns all descriptions of the collector. +func (c *processCollector) Describe(ch chan<- *Desc) { + c.describeFn(ch) +} + func (c *processCollector) reportError(ch chan<- Metric, desc *Desc, err error) { if !c.reportErrors { return diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go new file mode 100644 index 0000000000..0a61b98461 --- /dev/null +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_darwin.go @@ -0,0 +1,130 @@ +// Copyright 2024 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build darwin && !ios + +package prometheus + +import ( + "errors" + "fmt" + "os" + "syscall" + "time" + + "golang.org/x/sys/unix" +) + +// notImplementedErr is returned by stub functions that replace cgo functions, when cgo +// isn't available. +var notImplementedErr = errors.New("not implemented") + +type memoryInfo struct { + vsize uint64 // Virtual memory size in bytes + rss uint64 // Resident memory size in bytes +} + +func canCollectProcess() bool { + return true +} + +func getSoftLimit(which int) (uint64, error) { + rlimit := syscall.Rlimit{} + + if err := syscall.Getrlimit(which, &rlimit); err != nil { + return 0, err + } + + return rlimit.Cur, nil +} + +func getOpenFileCount() (float64, error) { + // Alternately, the undocumented proc_pidinfo(PROC_PIDLISTFDS) can be used to + // return a list of open fds, but that requires a way to call C APIs. The + // benefits, however, include fewer system calls and not failing when at the + // open file soft limit. + + if dir, err := os.Open("/dev/fd"); err != nil { + return 0.0, err + } else { + defer dir.Close() + + // Avoid ReadDir(), as it calls stat(2) on each descriptor. Not only is + // that info not used, but KQUEUE descriptors fail stat(2), which causes + // the whole method to fail. + if names, err := dir.Readdirnames(0); err != nil { + return 0.0, err + } else { + // Subtract 1 to ignore the open /dev/fd descriptor above. + return float64(len(names) - 1), nil + } + } +} + +func (c *processCollector) processCollect(ch chan<- Metric) { + if procs, err := unix.SysctlKinfoProcSlice("kern.proc.pid", os.Getpid()); err == nil { + if len(procs) == 1 { + startTime := float64(procs[0].Proc.P_starttime.Nano() / 1e9) + ch <- MustNewConstMetric(c.startTime, GaugeValue, startTime) + } else { + err = fmt.Errorf("sysctl() returned %d proc structs (expected 1)", len(procs)) + c.reportError(ch, c.startTime, err) + } + } else { + c.reportError(ch, c.startTime, err) + } + + // The proc structure returned by kern.proc.pid above has an Rusage member, + // but it is not filled in, so it needs to be fetched by getrusage(2). For + // that call, the UTime, STime, and Maxrss members are filled out, but not + // Ixrss, Idrss, or Isrss for the memory usage. Memory stats will require + // access to the C API to call task_info(TASK_BASIC_INFO). + rusage := unix.Rusage{} + + if err := unix.Getrusage(syscall.RUSAGE_SELF, &rusage); err == nil { + cpuTime := time.Duration(rusage.Stime.Nano() + rusage.Utime.Nano()).Seconds() + ch <- MustNewConstMetric(c.cpuTotal, CounterValue, cpuTime) + } else { + c.reportError(ch, c.cpuTotal, err) + } + + if memInfo, err := getMemory(); err == nil { + ch <- MustNewConstMetric(c.rss, GaugeValue, float64(memInfo.rss)) + ch <- MustNewConstMetric(c.vsize, GaugeValue, float64(memInfo.vsize)) + } else if !errors.Is(err, notImplementedErr) { + // Don't report an error when support is not compiled in. + c.reportError(ch, c.rss, err) + c.reportError(ch, c.vsize, err) + } + + if fds, err := getOpenFileCount(); err == nil { + ch <- MustNewConstMetric(c.openFDs, GaugeValue, fds) + } else { + c.reportError(ch, c.openFDs, err) + } + + if openFiles, err := getSoftLimit(syscall.RLIMIT_NOFILE); err == nil { + ch <- MustNewConstMetric(c.maxFDs, GaugeValue, float64(openFiles)) + } else { + c.reportError(ch, c.maxFDs, err) + } + + if addressSpace, err := getSoftLimit(syscall.RLIMIT_AS); err == nil { + ch <- MustNewConstMetric(c.maxVsize, GaugeValue, float64(addressSpace)) + } else { + c.reportError(ch, c.maxVsize, err) + } + + // TODO: socket(PF_SYSTEM) to fetch "com.apple.network.statistics" might + // be able to get the per-process network send/receive counts. +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.c b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.c new file mode 100644 index 0000000000..d00a24315d --- /dev/null +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.c @@ -0,0 +1,84 @@ +// Copyright 2024 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build darwin && !ios && cgo + +#include +#include +#include + +// The compiler warns that mach/shared_memory_server.h is deprecated, and to use +// mach/shared_region.h instead. But that doesn't define +// SHARED_DATA_REGION_SIZE or SHARED_TEXT_REGION_SIZE, so redefine them here and +// avoid a warning message when running tests. +#define GLOBAL_SHARED_TEXT_SEGMENT 0x90000000U +#define SHARED_DATA_REGION_SIZE 0x10000000 +#define SHARED_TEXT_REGION_SIZE 0x10000000 + + +int get_memory_info(unsigned long long *rss, unsigned long long *vsize) +{ + // This is lightly adapted from how ps(1) obtains its memory info. + // https://github.com/apple-oss-distributions/adv_cmds/blob/8744084ea0ff41ca4bb96b0f9c22407d0e48e9b7/ps/tasks.c#L109 + + kern_return_t error; + task_t task = MACH_PORT_NULL; + mach_task_basic_info_data_t info; + mach_msg_type_number_t info_count = MACH_TASK_BASIC_INFO_COUNT; + + error = task_info( + mach_task_self(), + MACH_TASK_BASIC_INFO, + (task_info_t) &info, + &info_count ); + + if( error != KERN_SUCCESS ) + { + return error; + } + + *rss = info.resident_size; + *vsize = info.virtual_size; + + { + vm_region_basic_info_data_64_t b_info; + mach_vm_address_t address = GLOBAL_SHARED_TEXT_SEGMENT; + mach_vm_size_t size; + mach_port_t object_name; + + /* + * try to determine if this task has the split libraries + * mapped in... if so, adjust its virtual size down by + * the 2 segments that are used for split libraries + */ + info_count = VM_REGION_BASIC_INFO_COUNT_64; + + error = mach_vm_region( + mach_task_self(), + &address, + &size, + VM_REGION_BASIC_INFO_64, + (vm_region_info_t) &b_info, + &info_count, + &object_name); + + if (error == KERN_SUCCESS) { + if (b_info.reserved && size == (SHARED_TEXT_REGION_SIZE) && + *vsize > (SHARED_TEXT_REGION_SIZE + SHARED_DATA_REGION_SIZE)) { + *vsize -= (SHARED_TEXT_REGION_SIZE + SHARED_DATA_REGION_SIZE); + } + } + } + + return 0; +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.go new file mode 100644 index 0000000000..9ac53f9992 --- /dev/null +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_cgo_darwin.go @@ -0,0 +1,51 @@ +// Copyright 2024 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build darwin && !ios && cgo + +package prometheus + +/* +int get_memory_info(unsigned long long *rss, unsigned long long *vs); +*/ +import "C" +import "fmt" + +func getMemory() (*memoryInfo, error) { + var rss, vsize C.ulonglong + + if err := C.get_memory_info(&rss, &vsize); err != 0 { + return nil, fmt.Errorf("task_info() failed with 0x%x", int(err)) + } + + return &memoryInfo{vsize: uint64(vsize), rss: uint64(rss)}, nil +} + +// describe returns all descriptions of the collector for Darwin. +// Ensure that this list of descriptors is kept in sync with the metrics collected +// in the processCollect method. Any changes to the metrics in processCollect +// (such as adding or removing metrics) should be reflected in this list of descriptors. +func (c *processCollector) describe(ch chan<- *Desc) { + ch <- c.cpuTotal + ch <- c.openFDs + ch <- c.maxFDs + ch <- c.maxVsize + ch <- c.startTime + ch <- c.rss + ch <- c.vsize + + /* the process could be collected but not implemented yet + ch <- c.inBytes + ch <- c.outBytes + */ +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_nocgo_darwin.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_nocgo_darwin.go new file mode 100644 index 0000000000..8ddb0995d6 --- /dev/null +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_mem_nocgo_darwin.go @@ -0,0 +1,39 @@ +// Copyright 2024 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +//go:build darwin && !ios && !cgo + +package prometheus + +func getMemory() (*memoryInfo, error) { + return nil, notImplementedErr +} + +// describe returns all descriptions of the collector for Darwin. +// Ensure that this list of descriptors is kept in sync with the metrics collected +// in the processCollect method. Any changes to the metrics in processCollect +// (such as adding or removing metrics) should be reflected in this list of descriptors. +func (c *processCollector) describe(ch chan<- *Desc) { + ch <- c.cpuTotal + ch <- c.openFDs + ch <- c.maxFDs + ch <- c.maxVsize + ch <- c.startTime + + /* the process could be collected but not implemented yet + ch <- c.rss + ch <- c.vsize + ch <- c.inBytes + ch <- c.outBytes + */ +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_wasip1.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_not_supported.go similarity index 55% rename from vendor/github.com/prometheus/client_golang/prometheus/process_collector_wasip1.go rename to vendor/github.com/prometheus/client_golang/prometheus/process_collector_not_supported.go index d8d9a6d7a2..7732b7f376 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_wasip1.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_not_supported.go @@ -11,8 +11,8 @@ // See the License for the specific language governing permissions and // limitations under the License. -//go:build wasip1 -// +build wasip1 +//go:build wasip1 || js || ios +// +build wasip1 js ios package prometheus @@ -20,7 +20,14 @@ func canCollectProcess() bool { return false } -func (*processCollector) processCollect(chan<- Metric) { - // noop on this platform - return +func (c *processCollector) processCollect(ch chan<- Metric) { + c.errorCollectFn(ch) +} + +// describe returns all descriptions of the collector for wasip1 and js. +// Ensure that this list of descriptors is kept in sync with the metrics collected +// in the processCollect method. Any changes to the metrics in processCollect +// (such as adding or removing metrics) should be reflected in this list of descriptors. +func (c *processCollector) describe(ch chan<- *Desc) { + c.errorDescribeFn(ch) } diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_other.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_procfsenabled.go similarity index 77% rename from vendor/github.com/prometheus/client_golang/prometheus/process_collector_other.go rename to vendor/github.com/prometheus/client_golang/prometheus/process_collector_procfsenabled.go index 14d56d2d06..9f4b130bef 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_other.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_procfsenabled.go @@ -11,8 +11,8 @@ // See the License for the specific language governing permissions and // limitations under the License. -//go:build !windows && !js && !wasip1 -// +build !windows,!js,!wasip1 +//go:build !windows && !js && !wasip1 && !darwin +// +build !windows,!js,!wasip1,!darwin package prometheus @@ -78,3 +78,19 @@ func (c *processCollector) processCollect(ch chan<- Metric) { c.reportError(ch, nil, err) } } + +// describe returns all descriptions of the collector for others than windows, js, wasip1 and darwin. +// Ensure that this list of descriptors is kept in sync with the metrics collected +// in the processCollect method. Any changes to the metrics in processCollect +// (such as adding or removing metrics) should be reflected in this list of descriptors. +func (c *processCollector) describe(ch chan<- *Desc) { + ch <- c.cpuTotal + ch <- c.openFDs + ch <- c.maxFDs + ch <- c.vsize + ch <- c.maxVsize + ch <- c.rss + ch <- c.startTime + ch <- c.inBytes + ch <- c.outBytes +} diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go index f973398df2..fa474289ef 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/process_collector_windows.go @@ -79,14 +79,10 @@ func getProcessHandleCount(handle windows.Handle) (uint32, error) { } func (c *processCollector) processCollect(ch chan<- Metric) { - h, err := windows.GetCurrentProcess() - if err != nil { - c.reportError(ch, nil, err) - return - } + h := windows.CurrentProcess() var startTime, exitTime, kernelTime, userTime windows.Filetime - err = windows.GetProcessTimes(h, &startTime, &exitTime, &kernelTime, &userTime) + err := windows.GetProcessTimes(h, &startTime, &exitTime, &kernelTime, &userTime) if err != nil { c.reportError(ch, nil, err) return @@ -111,6 +107,19 @@ func (c *processCollector) processCollect(ch chan<- Metric) { ch <- MustNewConstMetric(c.maxFDs, GaugeValue, float64(16*1024*1024)) // Windows has a hard-coded max limit, not per-process. } +// describe returns all descriptions of the collector for windows. +// Ensure that this list of descriptors is kept in sync with the metrics collected +// in the processCollect method. Any changes to the metrics in processCollect +// (such as adding or removing metrics) should be reflected in this list of descriptors. +func (c *processCollector) describe(ch chan<- *Desc) { + ch <- c.cpuTotal + ch <- c.openFDs + ch <- c.maxFDs + ch <- c.vsize + ch <- c.rss + ch <- c.startTime +} + func fileTimeToSeconds(ft windows.Filetime) float64 { return float64(uint64(ft.HighDateTime)<<32+uint64(ft.LowDateTime)) / 1e7 } diff --git a/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go b/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go index e598e66e68..763d99e362 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/promhttp/http.go @@ -41,11 +41,11 @@ import ( "sync" "time" - "github.com/klauspost/compress/zstd" "github.com/prometheus/common/expfmt" "github.com/prometheus/client_golang/internal/github.com/golang/gddo/httputil" "github.com/prometheus/client_golang/prometheus" + "github.com/prometheus/client_golang/prometheus/promhttp/internal" ) const ( @@ -65,7 +65,13 @@ const ( Zstd Compression = "zstd" ) -var defaultCompressionFormats = []Compression{Identity, Gzip, Zstd} +func defaultCompressionFormats() []Compression { + if internal.NewZstdWriter != nil { + return []Compression{Identity, Gzip, Zstd} + } else { + return []Compression{Identity, Gzip} + } +} var gzipPool = sync.Pool{ New: func() interface{} { @@ -138,7 +144,7 @@ func HandlerForTransactional(reg prometheus.TransactionalGatherer, opts HandlerO // Select compression formats to offer based on default or user choice. var compressions []string if !opts.DisableCompression { - offers := defaultCompressionFormats + offers := defaultCompressionFormats() if len(opts.OfferedCompressions) > 0 { offers = opts.OfferedCompressions } @@ -207,7 +213,13 @@ func HandlerForTransactional(reg prometheus.TransactionalGatherer, opts HandlerO if encodingHeader != string(Identity) { rsp.Header().Set(contentEncodingHeader, encodingHeader) } - enc := expfmt.NewEncoder(w, contentType) + + var enc expfmt.Encoder + if opts.EnableOpenMetricsTextCreatedSamples { + enc = expfmt.NewEncoder(w, contentType, expfmt.WithCreatedLines()) + } else { + enc = expfmt.NewEncoder(w, contentType) + } // handleError handles the error according to opts.ErrorHandling // and returns true if we have to abort after the handling. @@ -408,6 +420,21 @@ type HandlerOpts struct { // (which changes the identity of the resulting series on the Prometheus // server). EnableOpenMetrics bool + // EnableOpenMetricsTextCreatedSamples specifies if this handler should add, extra, synthetic + // Created Timestamps for counters, histograms and summaries, which for the current + // version of OpenMetrics are defined as extra series with the same name and "_created" + // suffix. See also the OpenMetrics specification for more details + // https://github.com/prometheus/OpenMetrics/blob/v1.0.0/specification/OpenMetrics.md#counter-1 + // + // Created timestamps are used to improve the accuracy of reset detection, + // but the way it's designed in OpenMetrics 1.0 it also dramatically increases cardinality + // if the scraper does not handle those metrics correctly (converting to created timestamp + // instead of leaving those series as-is). New OpenMetrics versions might improve + // this situation. + // + // Prometheus introduced the feature flag 'created-timestamp-zero-ingestion' + // in version 2.50.0 to handle this situation. + EnableOpenMetricsTextCreatedSamples bool // ProcessStartTime allows setting process start timevalue that will be exposed // with "Process-Start-Time-Unix" response header along with the metrics // payload. This allow callers to have efficient transformations to cumulative @@ -445,14 +472,12 @@ func negotiateEncodingWriter(r *http.Request, rw io.Writer, compressions []strin switch selected { case "zstd": - // TODO(mrueg): Replace klauspost/compress with stdlib implementation once https://github.com/golang/go/issues/62513 is implemented. - z, err := zstd.NewWriter(rw, zstd.WithEncoderLevel(zstd.SpeedFastest)) - if err != nil { - return nil, "", func() {}, err + if internal.NewZstdWriter == nil { + // The content encoding was not implemented yet. + return nil, "", func() {}, fmt.Errorf("content compression format not recognized: %s. Valid formats are: %s", selected, defaultCompressionFormats()) } - - z.Reset(rw) - return z, selected, func() { _ = z.Close() }, nil + writer, closeWriter, err := internal.NewZstdWriter(rw) + return writer, selected, closeWriter, err case "gzip": gz := gzipPool.Get().(*gzip.Writer) gz.Reset(rw) @@ -462,6 +487,6 @@ func negotiateEncodingWriter(r *http.Request, rw io.Writer, compressions []strin return rw, selected, func() {}, nil default: // The content encoding was not implemented yet. - return nil, "", func() {}, fmt.Errorf("content compression format not recognized: %s. Valid formats are: %s", selected, defaultCompressionFormats) + return nil, "", func() {}, fmt.Errorf("content compression format not recognized: %s. Valid formats are: %s", selected, defaultCompressionFormats()) } } diff --git a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_js.go b/vendor/github.com/prometheus/client_golang/prometheus/promhttp/internal/compression.go similarity index 70% rename from vendor/github.com/prometheus/client_golang/prometheus/process_collector_js.go rename to vendor/github.com/prometheus/client_golang/prometheus/promhttp/internal/compression.go index b1e363d6cf..c5039590f7 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/process_collector_js.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/promhttp/internal/compression.go @@ -1,4 +1,4 @@ -// Copyright 2019 The Prometheus Authors +// Copyright 2025 The Prometheus Authors // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. // You may obtain a copy of the License at @@ -11,16 +11,11 @@ // See the License for the specific language governing permissions and // limitations under the License. -//go:build js -// +build js +package internal -package prometheus +import ( + "io" +) -func canCollectProcess() bool { - return false -} - -func (c *processCollector) processCollect(ch chan<- Metric) { - // noop on this platform - return -} +// NewZstdWriter enables zstd write support if non-nil. +var NewZstdWriter func(rw io.Writer) (_ io.Writer, closeWriter func(), _ error) diff --git a/vendor/github.com/prometheus/client_golang/prometheus/summary.go b/vendor/github.com/prometheus/client_golang/prometheus/summary.go index 1ab0e47965..ac5203c6fa 100644 --- a/vendor/github.com/prometheus/client_golang/prometheus/summary.go +++ b/vendor/github.com/prometheus/client_golang/prometheus/summary.go @@ -243,6 +243,7 @@ func newSummary(desc *Desc, opts SummaryOpts, labelValues ...string) Summary { s := &summary{ desc: desc, + now: opts.now, objectives: opts.Objectives, sortedObjectives: make([]float64, 0, len(opts.Objectives)), @@ -280,6 +281,8 @@ type summary struct { desc *Desc + now func() time.Time + objectives map[float64]float64 sortedObjectives []float64 @@ -307,7 +310,7 @@ func (s *summary) Observe(v float64) { s.bufMtx.Lock() defer s.bufMtx.Unlock() - now := time.Now() + now := s.now() if now.After(s.hotBufExpTime) { s.asyncFlush(now) } @@ -326,7 +329,7 @@ func (s *summary) Write(out *dto.Metric) error { s.bufMtx.Lock() s.mtx.Lock() // Swap bufs even if hotBuf is empty to set new hotBufExpTime. - s.swapBufs(time.Now()) + s.swapBufs(s.now()) s.bufMtx.Unlock() s.flushColdBuf() diff --git a/vendor/github.com/prometheus/common/expfmt/text_parse.go b/vendor/github.com/prometheus/common/expfmt/text_parse.go index b4607fe4d2..4067978a17 100644 --- a/vendor/github.com/prometheus/common/expfmt/text_parse.go +++ b/vendor/github.com/prometheus/common/expfmt/text_parse.go @@ -345,8 +345,8 @@ func (p *TextParser) startLabelName() stateFn { } // Special summary/histogram treatment. Don't add 'quantile' and 'le' // labels to 'real' labels. - if !(p.currentMF.GetType() == dto.MetricType_SUMMARY && p.currentLabelPair.GetName() == model.QuantileLabel) && - !(p.currentMF.GetType() == dto.MetricType_HISTOGRAM && p.currentLabelPair.GetName() == model.BucketLabel) { + if (p.currentMF.GetType() != dto.MetricType_SUMMARY || p.currentLabelPair.GetName() != model.QuantileLabel) && + (p.currentMF.GetType() != dto.MetricType_HISTOGRAM || p.currentLabelPair.GetName() != model.BucketLabel) { p.currentLabelPairs = append(p.currentLabelPairs, p.currentLabelPair) } // Check for duplicate label names. diff --git a/vendor/github.com/prometheus/common/model/alert.go b/vendor/github.com/prometheus/common/model/alert.go index bd3a39e3e1..460f554f29 100644 --- a/vendor/github.com/prometheus/common/model/alert.go +++ b/vendor/github.com/prometheus/common/model/alert.go @@ -65,7 +65,7 @@ func (a *Alert) Resolved() bool { return a.ResolvedAt(time.Now()) } -// ResolvedAt returns true off the activity interval ended before +// ResolvedAt returns true iff the activity interval ended before // the given timestamp. func (a *Alert) ResolvedAt(ts time.Time) bool { if a.EndsAt.IsZero() { diff --git a/vendor/github.com/prometheus/common/model/labels.go b/vendor/github.com/prometheus/common/model/labels.go index 73b7aa3e60..de83afe93e 100644 --- a/vendor/github.com/prometheus/common/model/labels.go +++ b/vendor/github.com/prometheus/common/model/labels.go @@ -22,7 +22,7 @@ import ( ) const ( - // AlertNameLabel is the name of the label containing the an alert's name. + // AlertNameLabel is the name of the label containing the alert's name. AlertNameLabel = "alertname" // ExportedLabelPrefix is the prefix to prepend to the label names present in @@ -122,7 +122,8 @@ func (ln LabelName) IsValidLegacy() bool { return false } for i, b := range ln { - if !((b >= 'a' && b <= 'z') || (b >= 'A' && b <= 'Z') || b == '_' || (b >= '0' && b <= '9' && i > 0)) { + // TODO: Apply De Morgan's law. Make sure there are tests for this. + if !((b >= 'a' && b <= 'z') || (b >= 'A' && b <= 'Z') || b == '_' || (b >= '0' && b <= '9' && i > 0)) { //nolint:staticcheck return false } } diff --git a/vendor/github.com/prometheus/common/model/metric.go b/vendor/github.com/prometheus/common/model/metric.go index 5766107cf9..a6b01755bd 100644 --- a/vendor/github.com/prometheus/common/model/metric.go +++ b/vendor/github.com/prometheus/common/model/metric.go @@ -27,13 +27,25 @@ import ( ) var ( - // NameValidationScheme determines the method of name validation to be used by - // all calls to IsValidMetricName() and LabelName IsValid(). Setting UTF-8 - // mode in isolation from other components that don't support UTF-8 may result - // in bugs or other undefined behavior. This value can be set to - // LegacyValidation during startup if a binary is not UTF-8-aware binaries. To - // avoid need for locking, this value should be set once, ideally in an - // init(), before multiple goroutines are started. + // NameValidationScheme determines the global default method of the name + // validation to be used by all calls to IsValidMetricName() and LabelName + // IsValid(). + // + // Deprecated: This variable should not be used and might be removed in the + // far future. If you wish to stick to the legacy name validation use + // `IsValidLegacyMetricName()` and `LabelName.IsValidLegacy()` methods + // instead. This variable is here as an escape hatch for emergency cases, + // given the recent change from `LegacyValidation` to `UTF8Validation`, e.g., + // to delay UTF-8 migrations in time or aid in debugging unforeseen results of + // the change. In such a case, a temporary assignment to `LegacyValidation` + // value in the `init()` function in your main.go or so, could be considered. + // + // Historically we opted for a global variable for feature gating different + // validation schemes in operations that were not otherwise easily adjustable + // (e.g. Labels yaml unmarshaling). That could have been a mistake, a separate + // Labels structure or package might have been a better choice. Given the + // change was made and many upgraded the common already, we live this as-is + // with this warning and learning for the future. NameValidationScheme = UTF8Validation // NameEscapingScheme defines the default way that names will be escaped when @@ -50,7 +62,7 @@ var ( type ValidationScheme int const ( - // LegacyValidation is a setting that requirets that metric and label names + // LegacyValidation is a setting that requires that all metric and label names // conform to the original Prometheus character requirements described by // MetricNameRE and LabelNameRE. LegacyValidation ValidationScheme = iota diff --git a/vendor/github.com/prometheus/common/model/time.go b/vendor/github.com/prometheus/common/model/time.go index 5727452c1e..fed9e87b91 100644 --- a/vendor/github.com/prometheus/common/model/time.go +++ b/vendor/github.com/prometheus/common/model/time.go @@ -201,6 +201,7 @@ var unitMap = map[string]struct { // ParseDuration parses a string into a time.Duration, assuming that a year // always has 365d, a week always has 7d, and a day always has 24h. +// Negative durations are not supported. func ParseDuration(s string) (Duration, error) { switch s { case "0": @@ -253,18 +254,36 @@ func ParseDuration(s string) (Duration, error) { return 0, errors.New("duration out of range") } } + return Duration(dur), nil } +// ParseDurationAllowNegative is like ParseDuration but also accepts negative durations. +func ParseDurationAllowNegative(s string) (Duration, error) { + if s == "" || s[0] != '-' { + return ParseDuration(s) + } + + d, err := ParseDuration(s[1:]) + + return -d, err +} + func (d Duration) String() string { var ( - ms = int64(time.Duration(d) / time.Millisecond) - r = "" + ms = int64(time.Duration(d) / time.Millisecond) + r = "" + sign = "" ) + if ms == 0 { return "0s" } + if ms < 0 { + sign, ms = "-", -ms + } + f := func(unit string, mult int64, exact bool) { if exact && ms%mult != 0 { return @@ -286,7 +305,7 @@ func (d Duration) String() string { f("s", 1000, false) f("ms", 1, false) - return r + return sign + r } // MarshalJSON implements the json.Marshaler interface. diff --git a/vendor/github.com/prometheus/procfs/.golangci.yml b/vendor/github.com/prometheus/procfs/.golangci.yml index 126df9e67a..3c3bf910fd 100644 --- a/vendor/github.com/prometheus/procfs/.golangci.yml +++ b/vendor/github.com/prometheus/procfs/.golangci.yml @@ -1,22 +1,45 @@ ---- +version: "2" linters: enable: - - errcheck - - godot - - gosimple - - govet - - ineffassign - - misspell - - revive - - staticcheck - - testifylint - - unused - -linter-settings: - godot: - capital: true - exclude: - # Ignore "See: URL" - - 'See:' - misspell: - locale: US + - forbidigo + - godot + - misspell + - revive + - testifylint + settings: + forbidigo: + forbid: + - pattern: ^fmt\.Print.*$ + msg: Do not commit print statements. + godot: + exclude: + # Ignore "See: URL". + - 'See:' + capital: true + misspell: + locale: US + exclusions: + generated: lax + presets: + - comments + - common-false-positives + - legacy + - std-error-handling + paths: + - third_party$ + - builtin$ + - examples$ +formatters: + enable: + - gofmt + - goimports + settings: + goimports: + local-prefixes: + - github.com/prometheus/procfs + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ diff --git a/vendor/github.com/prometheus/procfs/Makefile.common b/vendor/github.com/prometheus/procfs/Makefile.common index 1617292350..0ed55c2ba2 100644 --- a/vendor/github.com/prometheus/procfs/Makefile.common +++ b/vendor/github.com/prometheus/procfs/Makefile.common @@ -33,7 +33,7 @@ GOHOSTOS ?= $(shell $(GO) env GOHOSTOS) GOHOSTARCH ?= $(shell $(GO) env GOHOSTARCH) GO_VERSION ?= $(shell $(GO) version) -GO_VERSION_NUMBER ?= $(word 3, $(GO_VERSION)) +GO_VERSION_NUMBER ?= $(word 3, $(GO_VERSION))Error Parsing File PRE_GO_111 ?= $(shell echo $(GO_VERSION_NUMBER) | grep -E 'go1\.(10|[0-9])\.') PROMU := $(FIRST_GOPATH)/bin/promu @@ -61,7 +61,7 @@ PROMU_URL := https://github.com/prometheus/promu/releases/download/v$(PROMU_ SKIP_GOLANGCI_LINT := GOLANGCI_LINT := GOLANGCI_LINT_OPTS ?= -GOLANGCI_LINT_VERSION ?= v1.59.0 +GOLANGCI_LINT_VERSION ?= v2.0.2 # golangci-lint only supports linux, darwin and windows platforms on i386/amd64/arm64. # windows isn't included here because of the path separator being different. ifeq ($(GOHOSTOS),$(filter $(GOHOSTOS),linux darwin)) @@ -275,3 +275,9 @@ $(1)_precheck: exit 1; \ fi endef + +govulncheck: install-govulncheck + govulncheck ./... + +install-govulncheck: + command -v govulncheck > /dev/null || go install golang.org/x/vuln/cmd/govulncheck@latest diff --git a/vendor/github.com/prometheus/procfs/README.md b/vendor/github.com/prometheus/procfs/README.md index 1224816c2a..0718239cf1 100644 --- a/vendor/github.com/prometheus/procfs/README.md +++ b/vendor/github.com/prometheus/procfs/README.md @@ -47,15 +47,15 @@ However, most of the API includes unit tests which can be run with `make test`. The procfs library includes a set of test fixtures which include many example files from the `/proc` and `/sys` filesystems. These fixtures are included as a [ttar](https://github.com/ideaship/ttar) file which is extracted automatically during testing. To add/update the test fixtures, first -ensure the `fixtures` directory is up to date by removing the existing directory and then -extracting the ttar file using `make fixtures/.unpacked` or just `make test`. +ensure the `testdata/fixtures` directory is up to date by removing the existing directory and then +extracting the ttar file using `make testdata/fixtures/.unpacked` or just `make test`. ```bash rm -rf testdata/fixtures make test ``` -Next, make the required changes to the extracted files in the `fixtures` directory. When +Next, make the required changes to the extracted files in the `testdata/fixtures` directory. When the changes are complete, run `make update_fixtures` to create a new `fixtures.ttar` file based on the updated `fixtures` directory. And finally, verify the changes using `git diff testdata/fixtures.ttar`. diff --git a/vendor/github.com/prometheus/procfs/arp.go b/vendor/github.com/prometheus/procfs/arp.go index cdcc8a7ccc..2e53344151 100644 --- a/vendor/github.com/prometheus/procfs/arp.go +++ b/vendor/github.com/prometheus/procfs/arp.go @@ -23,9 +23,9 @@ import ( // Learned from include/uapi/linux/if_arp.h. const ( - // completed entry (ha valid). + // Completed entry (ha valid). ATFComplete = 0x02 - // permanent entry. + // Permanent entry. ATFPermanent = 0x04 // Publish entry. ATFPublish = 0x08 diff --git a/vendor/github.com/prometheus/procfs/fs.go b/vendor/github.com/prometheus/procfs/fs.go index 4980c875bf..9bdaccc7c8 100644 --- a/vendor/github.com/prometheus/procfs/fs.go +++ b/vendor/github.com/prometheus/procfs/fs.go @@ -24,8 +24,14 @@ type FS struct { isReal bool } -// DefaultMountPoint is the common mount point of the proc filesystem. -const DefaultMountPoint = fs.DefaultProcMountPoint +const ( + // DefaultMountPoint is the common mount point of the proc filesystem. + DefaultMountPoint = fs.DefaultProcMountPoint + + // SectorSize represents the size of a sector in bytes. + // It is specific to Linux block I/O operations. + SectorSize = 512 +) // NewDefaultFS returns a new proc FS mounted under the default proc mountPoint. // It will error if the mount point directory can't be read or is a file. diff --git a/vendor/github.com/prometheus/procfs/fs_statfs_notype.go b/vendor/github.com/prometheus/procfs/fs_statfs_notype.go index 134767d69a..1b5bdbdf84 100644 --- a/vendor/github.com/prometheus/procfs/fs_statfs_notype.go +++ b/vendor/github.com/prometheus/procfs/fs_statfs_notype.go @@ -17,7 +17,7 @@ package procfs // isRealProc returns true on architectures that don't have a Type argument -// in their Statfs_t struct -func isRealProc(mountPoint string) (bool, error) { +// in their Statfs_t struct. +func isRealProc(_ string) (bool, error) { return true, nil } diff --git a/vendor/github.com/prometheus/procfs/fscache.go b/vendor/github.com/prometheus/procfs/fscache.go index cf2e3eaa03..7db8633077 100644 --- a/vendor/github.com/prometheus/procfs/fscache.go +++ b/vendor/github.com/prometheus/procfs/fscache.go @@ -162,7 +162,7 @@ type Fscacheinfo struct { ReleaseRequestsAgainstPagesStoredByTimeLockGranted uint64 // Number of release reqs ignored due to in-progress store ReleaseRequestsIgnoredDueToInProgressStore uint64 - // Number of page stores cancelled due to release req + // Number of page stores canceled due to release req PageStoresCancelledByReleaseRequests uint64 VmscanWaiting uint64 // Number of times async ops added to pending queues @@ -171,11 +171,11 @@ type Fscacheinfo struct { OpsRunning uint64 // Number of times async ops queued for processing OpsEnqueued uint64 - // Number of async ops cancelled + // Number of async ops canceled OpsCancelled uint64 // Number of async ops rejected due to object lookup/create failure OpsRejected uint64 - // Number of async ops initialised + // Number of async ops initialized OpsInitialised uint64 // Number of async ops queued for deferred release OpsDeferred uint64 diff --git a/vendor/github.com/prometheus/procfs/internal/fs/fs.go b/vendor/github.com/prometheus/procfs/internal/fs/fs.go index 3c18c7610e..3a43e83915 100644 --- a/vendor/github.com/prometheus/procfs/internal/fs/fs.go +++ b/vendor/github.com/prometheus/procfs/internal/fs/fs.go @@ -28,6 +28,9 @@ const ( // DefaultConfigfsMountPoint is the common mount point of the configfs. DefaultConfigfsMountPoint = "/sys/kernel/config" + + // DefaultSelinuxMountPoint is the common mount point of the selinuxfs. + DefaultSelinuxMountPoint = "/sys/fs/selinux" ) // FS represents a pseudo-filesystem, normally /proc or /sys, which provides an diff --git a/vendor/github.com/prometheus/procfs/internal/util/parse.go b/vendor/github.com/prometheus/procfs/internal/util/parse.go index 14272dc788..5a7d2df06a 100644 --- a/vendor/github.com/prometheus/procfs/internal/util/parse.go +++ b/vendor/github.com/prometheus/procfs/internal/util/parse.go @@ -14,6 +14,7 @@ package util import ( + "errors" "os" "strconv" "strings" @@ -110,3 +111,16 @@ func ParseBool(b string) *bool { } return &truth } + +// ReadHexFromFile reads a file and attempts to parse a uint64 from a hexadecimal format 0xXX. +func ReadHexFromFile(path string) (uint64, error) { + data, err := os.ReadFile(path) + if err != nil { + return 0, err + } + hexString := strings.TrimSpace(string(data)) + if !strings.HasPrefix(hexString, "0x") { + return 0, errors.New("invalid format: hex string does not start with '0x'") + } + return strconv.ParseUint(hexString[2:], 16, 64) +} diff --git a/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go b/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go index 1ab875ceec..d5404a6d72 100644 --- a/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go +++ b/vendor/github.com/prometheus/procfs/internal/util/sysreadfile.go @@ -20,6 +20,8 @@ package util import ( "bytes" "os" + "strconv" + "strings" "syscall" ) @@ -48,3 +50,21 @@ func SysReadFile(file string) (string, error) { return string(bytes.TrimSpace(b[:n])), nil } + +// SysReadUintFromFile reads a file using SysReadFile and attempts to parse a uint64 from it. +func SysReadUintFromFile(path string) (uint64, error) { + data, err := SysReadFile(path) + if err != nil { + return 0, err + } + return strconv.ParseUint(strings.TrimSpace(string(data)), 10, 64) +} + +// SysReadIntFromFile reads a file using SysReadFile and attempts to parse a int64 from it. +func SysReadIntFromFile(path string) (int64, error) { + data, err := SysReadFile(path) + if err != nil { + return 0, err + } + return strconv.ParseInt(strings.TrimSpace(string(data)), 10, 64) +} diff --git a/vendor/github.com/prometheus/procfs/mountstats.go b/vendor/github.com/prometheus/procfs/mountstats.go index 75a3b6c810..50caa73274 100644 --- a/vendor/github.com/prometheus/procfs/mountstats.go +++ b/vendor/github.com/prometheus/procfs/mountstats.go @@ -45,11 +45,11 @@ const ( fieldTransport11TCPLen = 13 fieldTransport11UDPLen = 10 - // kernel version >= 4.14 MaxLen + // Kernel version >= 4.14 MaxLen // See: https://elixir.bootlin.com/linux/v6.4.8/source/net/sunrpc/xprtrdma/xprt_rdma.h#L393 fieldTransport11RDMAMaxLen = 28 - // kernel version <= 4.2 MinLen + // Kernel version <= 4.2 MinLen // See: https://elixir.bootlin.com/linux/v4.2.8/source/net/sunrpc/xprtrdma/xprt_rdma.h#L331 fieldTransport11RDMAMinLen = 20 ) @@ -601,11 +601,12 @@ func parseNFSTransportStats(ss []string, statVersion string) (*NFSTransportStats switch statVersion { case statVersion10: var expectedLength int - if protocol == "tcp" { + switch protocol { + case "tcp": expectedLength = fieldTransport10TCPLen - } else if protocol == "udp" { + case "udp": expectedLength = fieldTransport10UDPLen - } else { + default: return nil, fmt.Errorf("%w: Invalid NFS protocol \"%s\" in stats 1.0 statement: %v", ErrFileParse, protocol, ss) } if len(ss) != expectedLength { @@ -613,13 +614,14 @@ func parseNFSTransportStats(ss []string, statVersion string) (*NFSTransportStats } case statVersion11: var expectedLength int - if protocol == "tcp" { + switch protocol { + case "tcp": expectedLength = fieldTransport11TCPLen - } else if protocol == "udp" { + case "udp": expectedLength = fieldTransport11UDPLen - } else if protocol == "rdma" { + case "rdma": expectedLength = fieldTransport11RDMAMinLen - } else { + default: return nil, fmt.Errorf("%w: invalid NFS protocol \"%s\" in stats 1.1 statement: %v", ErrFileParse, protocol, ss) } if (len(ss) != expectedLength && (protocol == "tcp" || protocol == "udp")) || @@ -655,11 +657,12 @@ func parseNFSTransportStats(ss []string, statVersion string) (*NFSTransportStats // For the udp RPC transport there is no connection count, connect idle time, // or idle time (fields #3, #4, and #5); all other fields are the same. So // we set them to 0 here. - if protocol == "udp" { + switch protocol { + case "udp": ns = append(ns[:2], append(make([]uint64, 3), ns[2:]...)...) - } else if protocol == "tcp" { + case "tcp": ns = append(ns[:fieldTransport11TCPLen], make([]uint64, fieldTransport11RDMAMaxLen-fieldTransport11TCPLen+3)...) - } else if protocol == "rdma" { + case "rdma": ns = append(ns[:fieldTransport10TCPLen], append(make([]uint64, 3), ns[fieldTransport10TCPLen:]...)...) } diff --git a/vendor/github.com/prometheus/procfs/net_dev_snmp6.go b/vendor/github.com/prometheus/procfs/net_dev_snmp6.go new file mode 100644 index 0000000000..f50b38e352 --- /dev/null +++ b/vendor/github.com/prometheus/procfs/net_dev_snmp6.go @@ -0,0 +1,96 @@ +// Copyright 2018 The Prometheus Authors +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +package procfs + +import ( + "bufio" + "errors" + "io" + "os" + "strconv" + "strings" +) + +// NetDevSNMP6 is parsed from files in /proc/net/dev_snmp6/ or /proc//net/dev_snmp6/. +// The outer map's keys are interface names and the inner map's keys are stat names. +// +// If you'd like a total across all interfaces, please use the Snmp6() method of the Proc type. +type NetDevSNMP6 map[string]map[string]uint64 + +// Returns kernel/system statistics read from interface files within the /proc/net/dev_snmp6/ +// directory. +func (fs FS) NetDevSNMP6() (NetDevSNMP6, error) { + return newNetDevSNMP6(fs.proc.Path("net/dev_snmp6")) +} + +// Returns kernel/system statistics read from interface files within the /proc//net/dev_snmp6/ +// directory. +func (p Proc) NetDevSNMP6() (NetDevSNMP6, error) { + return newNetDevSNMP6(p.path("net/dev_snmp6")) +} + +// newNetDevSNMP6 creates a new NetDevSNMP6 from the contents of the given directory. +func newNetDevSNMP6(dir string) (NetDevSNMP6, error) { + netDevSNMP6 := make(NetDevSNMP6) + + // The net/dev_snmp6 folders contain one file per interface + ifaceFiles, err := os.ReadDir(dir) + if err != nil { + // On systems with IPv6 disabled, this directory won't exist. + // Do nothing. + if errors.Is(err, os.ErrNotExist) { + return netDevSNMP6, err + } + return netDevSNMP6, err + } + + for _, iFaceFile := range ifaceFiles { + f, err := os.Open(dir + "/" + iFaceFile.Name()) + if err != nil { + return netDevSNMP6, err + } + defer f.Close() + + netDevSNMP6[iFaceFile.Name()], err = parseNetDevSNMP6Stats(f) + if err != nil { + return netDevSNMP6, err + } + } + + return netDevSNMP6, nil +} + +func parseNetDevSNMP6Stats(r io.Reader) (map[string]uint64, error) { + m := make(map[string]uint64) + + scanner := bufio.NewScanner(r) + for scanner.Scan() { + stat := strings.Fields(scanner.Text()) + if len(stat) < 2 { + continue + } + key, val := stat[0], stat[1] + + // Expect stat name to contain "6" or be "ifIndex" + if strings.Contains(key, "6") || key == "ifIndex" { + v, err := strconv.ParseUint(val, 10, 64) + if err != nil { + return m, err + } + + m[key] = v + } + } + return m, scanner.Err() +} diff --git a/vendor/github.com/prometheus/procfs/net_ip_socket.go b/vendor/github.com/prometheus/procfs/net_ip_socket.go index b70f1fc7a4..19e3378f72 100644 --- a/vendor/github.com/prometheus/procfs/net_ip_socket.go +++ b/vendor/github.com/prometheus/procfs/net_ip_socket.go @@ -25,7 +25,7 @@ import ( ) const ( - // readLimit is used by io.LimitReader while reading the content of the + // Maximum size limit used by io.LimitReader while reading the content of the // /proc/net/udp{,6} files. The number of lines inside such a file is dynamic // as each line represents a single used socket. // In theory, the number of available sockets is 65535 (2^16 - 1) per IP. @@ -50,12 +50,12 @@ type ( // UsedSockets shows the total number of parsed lines representing the // number of used sockets. UsedSockets uint64 - // Drops shows the total number of dropped packets of all UPD sockets. + // Drops shows the total number of dropped packets of all UDP sockets. Drops *uint64 } - // netIPSocketLine represents the fields parsed from a single line - // in /proc/net/{t,u}dp{,6}. Fields which are not used by IPSocket are skipped. + // A single line parser for fields from /proc/net/{t,u}dp{,6}. + // Fields which are not used by IPSocket are skipped. // Drops is non-nil for udp{,6}, but nil for tcp{,6}. // For the proc file format details, see https://linux.die.net/man/5/proc. netIPSocketLine struct { diff --git a/vendor/github.com/prometheus/procfs/net_protocols.go b/vendor/github.com/prometheus/procfs/net_protocols.go index b6c77b709f..8d4b1ac05b 100644 --- a/vendor/github.com/prometheus/procfs/net_protocols.go +++ b/vendor/github.com/prometheus/procfs/net_protocols.go @@ -115,22 +115,24 @@ func (ps NetProtocolStats) parseLine(rawLine string) (*NetProtocolStatLine, erro if err != nil { return nil, err } - if fields[4] == enabled { + switch fields[4] { + case enabled: line.Pressure = 1 - } else if fields[4] == disabled { + case disabled: line.Pressure = 0 - } else { + default: line.Pressure = -1 } line.MaxHeader, err = strconv.ParseUint(fields[5], 10, 64) if err != nil { return nil, err } - if fields[6] == enabled { + switch fields[6] { + case enabled: line.Slab = true - } else if fields[6] == disabled { + case disabled: line.Slab = false - } else { + default: return nil, fmt.Errorf("%w: capability for protocol: %s", ErrFileParse, line.Name) } line.ModuleName = fields[7] @@ -168,11 +170,12 @@ func (pc *NetProtocolCapabilities) parseCapabilities(capabilities []string) erro } for i := 0; i < len(capabilities); i++ { - if capabilities[i] == "y" { + switch capabilities[i] { + case "y": *capabilityFields[i] = true - } else if capabilities[i] == "n" { + case "n": *capabilityFields[i] = false - } else { + default: return fmt.Errorf("%w: capability block for protocol: position %d", ErrFileParse, i) } } diff --git a/vendor/github.com/prometheus/procfs/net_tcp.go b/vendor/github.com/prometheus/procfs/net_tcp.go index 5277629557..0396d72015 100644 --- a/vendor/github.com/prometheus/procfs/net_tcp.go +++ b/vendor/github.com/prometheus/procfs/net_tcp.go @@ -25,24 +25,28 @@ type ( // NetTCP returns the IPv4 kernel/networking statistics for TCP datagrams // read from /proc/net/tcp. +// Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET) instead. func (fs FS) NetTCP() (NetTCP, error) { return newNetTCP(fs.proc.Path("net/tcp")) } // NetTCP6 returns the IPv6 kernel/networking statistics for TCP datagrams // read from /proc/net/tcp6. +// Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET6) instead. func (fs FS) NetTCP6() (NetTCP, error) { return newNetTCP(fs.proc.Path("net/tcp6")) } // NetTCPSummary returns already computed statistics like the total queue lengths // for TCP datagrams read from /proc/net/tcp. +// Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET) instead. func (fs FS) NetTCPSummary() (*NetTCPSummary, error) { return newNetTCPSummary(fs.proc.Path("net/tcp")) } // NetTCP6Summary returns already computed statistics like the total queue lengths // for TCP datagrams read from /proc/net/tcp6. +// Deprecated: Use github.com/mdlayher/netlink#Conn (with syscall.AF_INET6) instead. func (fs FS) NetTCP6Summary() (*NetTCPSummary, error) { return newNetTCPSummary(fs.proc.Path("net/tcp6")) } diff --git a/vendor/github.com/prometheus/procfs/net_unix.go b/vendor/github.com/prometheus/procfs/net_unix.go index d868cebdaa..d7e0cacb4c 100644 --- a/vendor/github.com/prometheus/procfs/net_unix.go +++ b/vendor/github.com/prometheus/procfs/net_unix.go @@ -121,12 +121,12 @@ func parseNetUNIX(r io.Reader) (*NetUNIX, error) { return &nu, nil } -func (u *NetUNIX) parseLine(line string, hasInode bool, min int) (*NetUNIXLine, error) { +func (u *NetUNIX) parseLine(line string, hasInode bool, minFields int) (*NetUNIXLine, error) { fields := strings.Fields(line) l := len(fields) - if l < min { - return nil, fmt.Errorf("%w: expected at least %d fields but got %d", ErrFileParse, min, l) + if l < minFields { + return nil, fmt.Errorf("%w: expected at least %d fields but got %d", ErrFileParse, minFields, l) } // Field offsets are as follows: @@ -172,7 +172,7 @@ func (u *NetUNIX) parseLine(line string, hasInode bool, min int) (*NetUNIXLine, } // Path field is optional. - if l > min { + if l > minFields { // Path occurs at either index 6 or 7 depending on whether inode is // already present. pathIdx := 7 diff --git a/vendor/github.com/prometheus/procfs/proc.go b/vendor/github.com/prometheus/procfs/proc.go index 142796368f..368187fa88 100644 --- a/vendor/github.com/prometheus/procfs/proc.go +++ b/vendor/github.com/prometheus/procfs/proc.go @@ -37,9 +37,9 @@ type Proc struct { type Procs []Proc var ( - ErrFileParse = errors.New("Error Parsing File") - ErrFileRead = errors.New("Error Reading File") - ErrMountPoint = errors.New("Error Accessing Mount point") + ErrFileParse = errors.New("error parsing file") + ErrFileRead = errors.New("error reading file") + ErrMountPoint = errors.New("error accessing mount point") ) func (p Procs) Len() int { return len(p) } @@ -79,7 +79,7 @@ func (fs FS) Self() (Proc, error) { if err != nil { return Proc{}, err } - pid, err := strconv.Atoi(strings.Replace(p, string(fs.proc), "", -1)) + pid, err := strconv.Atoi(strings.ReplaceAll(p, string(fs.proc), "")) if err != nil { return Proc{}, err } diff --git a/vendor/github.com/prometheus/procfs/proc_cgroup.go b/vendor/github.com/prometheus/procfs/proc_cgroup.go index daeed7f571..4a64347c03 100644 --- a/vendor/github.com/prometheus/procfs/proc_cgroup.go +++ b/vendor/github.com/prometheus/procfs/proc_cgroup.go @@ -24,7 +24,7 @@ import ( ) // Cgroup models one line from /proc/[pid]/cgroup. Each Cgroup struct describes the placement of a PID inside a -// specific control hierarchy. The kernel has two cgroup APIs, v1 and v2. v1 has one hierarchy per available resource +// specific control hierarchy. The kernel has two cgroup APIs, v1 and v2. The v1 has one hierarchy per available resource // controller, while v2 has one unified hierarchy shared by all controllers. Regardless of v1 or v2, all hierarchies // contain all running processes, so the question answerable with a Cgroup struct is 'where is this process in // this hierarchy' (where==what path on the specific cgroupfs). By prefixing this path with the mount point of diff --git a/vendor/github.com/prometheus/procfs/proc_io.go b/vendor/github.com/prometheus/procfs/proc_io.go index 776f349717..d15b66ddb6 100644 --- a/vendor/github.com/prometheus/procfs/proc_io.go +++ b/vendor/github.com/prometheus/procfs/proc_io.go @@ -50,7 +50,7 @@ func (p Proc) IO() (ProcIO, error) { ioFormat := "rchar: %d\nwchar: %d\nsyscr: %d\nsyscw: %d\n" + "read_bytes: %d\nwrite_bytes: %d\n" + - "cancelled_write_bytes: %d\n" + "cancelled_write_bytes: %d\n" //nolint:misspell _, err = fmt.Sscanf(string(data), ioFormat, &pio.RChar, &pio.WChar, &pio.SyscR, &pio.SyscW, &pio.ReadBytes, &pio.WriteBytes, &pio.CancelledWriteBytes) diff --git a/vendor/github.com/prometheus/procfs/proc_netstat.go b/vendor/github.com/prometheus/procfs/proc_netstat.go index 8e3ff4d794..4248c1716e 100644 --- a/vendor/github.com/prometheus/procfs/proc_netstat.go +++ b/vendor/github.com/prometheus/procfs/proc_netstat.go @@ -209,232 +209,232 @@ func parseProcNetstat(r io.Reader, fileName string) (ProcNetstat, error) { case "TcpExt": switch key { case "SyncookiesSent": - procNetstat.TcpExt.SyncookiesSent = &value + procNetstat.SyncookiesSent = &value case "SyncookiesRecv": - procNetstat.TcpExt.SyncookiesRecv = &value + procNetstat.SyncookiesRecv = &value case "SyncookiesFailed": - procNetstat.TcpExt.SyncookiesFailed = &value + procNetstat.SyncookiesFailed = &value case "EmbryonicRsts": - procNetstat.TcpExt.EmbryonicRsts = &value + procNetstat.EmbryonicRsts = &value case "PruneCalled": - procNetstat.TcpExt.PruneCalled = &value + procNetstat.PruneCalled = &value case "RcvPruned": - procNetstat.TcpExt.RcvPruned = &value + procNetstat.RcvPruned = &value case "OfoPruned": - procNetstat.TcpExt.OfoPruned = &value + procNetstat.OfoPruned = &value case "OutOfWindowIcmps": - procNetstat.TcpExt.OutOfWindowIcmps = &value + procNetstat.OutOfWindowIcmps = &value case "LockDroppedIcmps": - procNetstat.TcpExt.LockDroppedIcmps = &value + procNetstat.LockDroppedIcmps = &value case "ArpFilter": - procNetstat.TcpExt.ArpFilter = &value + procNetstat.ArpFilter = &value case "TW": - procNetstat.TcpExt.TW = &value + procNetstat.TW = &value case "TWRecycled": - procNetstat.TcpExt.TWRecycled = &value + procNetstat.TWRecycled = &value case "TWKilled": - procNetstat.TcpExt.TWKilled = &value + procNetstat.TWKilled = &value case "PAWSActive": - procNetstat.TcpExt.PAWSActive = &value + procNetstat.PAWSActive = &value case "PAWSEstab": - procNetstat.TcpExt.PAWSEstab = &value + procNetstat.PAWSEstab = &value case "DelayedACKs": - procNetstat.TcpExt.DelayedACKs = &value + procNetstat.DelayedACKs = &value case "DelayedACKLocked": - procNetstat.TcpExt.DelayedACKLocked = &value + procNetstat.DelayedACKLocked = &value case "DelayedACKLost": - procNetstat.TcpExt.DelayedACKLost = &value + procNetstat.DelayedACKLost = &value case "ListenOverflows": - procNetstat.TcpExt.ListenOverflows = &value + procNetstat.ListenOverflows = &value case "ListenDrops": - procNetstat.TcpExt.ListenDrops = &value + procNetstat.ListenDrops = &value case "TCPHPHits": - procNetstat.TcpExt.TCPHPHits = &value + procNetstat.TCPHPHits = &value case "TCPPureAcks": - procNetstat.TcpExt.TCPPureAcks = &value + procNetstat.TCPPureAcks = &value case "TCPHPAcks": - procNetstat.TcpExt.TCPHPAcks = &value + procNetstat.TCPHPAcks = &value case "TCPRenoRecovery": - procNetstat.TcpExt.TCPRenoRecovery = &value + procNetstat.TCPRenoRecovery = &value case "TCPSackRecovery": - procNetstat.TcpExt.TCPSackRecovery = &value + procNetstat.TCPSackRecovery = &value case "TCPSACKReneging": - procNetstat.TcpExt.TCPSACKReneging = &value + procNetstat.TCPSACKReneging = &value case "TCPSACKReorder": - procNetstat.TcpExt.TCPSACKReorder = &value + procNetstat.TCPSACKReorder = &value case "TCPRenoReorder": - procNetstat.TcpExt.TCPRenoReorder = &value + procNetstat.TCPRenoReorder = &value case "TCPTSReorder": - procNetstat.TcpExt.TCPTSReorder = &value + procNetstat.TCPTSReorder = &value case "TCPFullUndo": - procNetstat.TcpExt.TCPFullUndo = &value + procNetstat.TCPFullUndo = &value case "TCPPartialUndo": - procNetstat.TcpExt.TCPPartialUndo = &value + procNetstat.TCPPartialUndo = &value case "TCPDSACKUndo": - procNetstat.TcpExt.TCPDSACKUndo = &value + procNetstat.TCPDSACKUndo = &value case "TCPLossUndo": - procNetstat.TcpExt.TCPLossUndo = &value + procNetstat.TCPLossUndo = &value case "TCPLostRetransmit": - procNetstat.TcpExt.TCPLostRetransmit = &value + procNetstat.TCPLostRetransmit = &value case "TCPRenoFailures": - procNetstat.TcpExt.TCPRenoFailures = &value + procNetstat.TCPRenoFailures = &value case "TCPSackFailures": - procNetstat.TcpExt.TCPSackFailures = &value + procNetstat.TCPSackFailures = &value case "TCPLossFailures": - procNetstat.TcpExt.TCPLossFailures = &value + procNetstat.TCPLossFailures = &value case "TCPFastRetrans": - procNetstat.TcpExt.TCPFastRetrans = &value + procNetstat.TCPFastRetrans = &value case "TCPSlowStartRetrans": - procNetstat.TcpExt.TCPSlowStartRetrans = &value + procNetstat.TCPSlowStartRetrans = &value case "TCPTimeouts": - procNetstat.TcpExt.TCPTimeouts = &value + procNetstat.TCPTimeouts = &value case "TCPLossProbes": - procNetstat.TcpExt.TCPLossProbes = &value + procNetstat.TCPLossProbes = &value case "TCPLossProbeRecovery": - procNetstat.TcpExt.TCPLossProbeRecovery = &value + procNetstat.TCPLossProbeRecovery = &value case "TCPRenoRecoveryFail": - procNetstat.TcpExt.TCPRenoRecoveryFail = &value + procNetstat.TCPRenoRecoveryFail = &value case "TCPSackRecoveryFail": - procNetstat.TcpExt.TCPSackRecoveryFail = &value + procNetstat.TCPSackRecoveryFail = &value case "TCPRcvCollapsed": - procNetstat.TcpExt.TCPRcvCollapsed = &value + procNetstat.TCPRcvCollapsed = &value case "TCPDSACKOldSent": - procNetstat.TcpExt.TCPDSACKOldSent = &value + procNetstat.TCPDSACKOldSent = &value case "TCPDSACKOfoSent": - procNetstat.TcpExt.TCPDSACKOfoSent = &value + procNetstat.TCPDSACKOfoSent = &value case "TCPDSACKRecv": - procNetstat.TcpExt.TCPDSACKRecv = &value + procNetstat.TCPDSACKRecv = &value case "TCPDSACKOfoRecv": - procNetstat.TcpExt.TCPDSACKOfoRecv = &value + procNetstat.TCPDSACKOfoRecv = &value case "TCPAbortOnData": - procNetstat.TcpExt.TCPAbortOnData = &value + procNetstat.TCPAbortOnData = &value case "TCPAbortOnClose": - procNetstat.TcpExt.TCPAbortOnClose = &value + procNetstat.TCPAbortOnClose = &value case "TCPDeferAcceptDrop": - procNetstat.TcpExt.TCPDeferAcceptDrop = &value + procNetstat.TCPDeferAcceptDrop = &value case "IPReversePathFilter": - procNetstat.TcpExt.IPReversePathFilter = &value + procNetstat.IPReversePathFilter = &value case "TCPTimeWaitOverflow": - procNetstat.TcpExt.TCPTimeWaitOverflow = &value + procNetstat.TCPTimeWaitOverflow = &value case "TCPReqQFullDoCookies": - procNetstat.TcpExt.TCPReqQFullDoCookies = &value + procNetstat.TCPReqQFullDoCookies = &value case "TCPReqQFullDrop": - procNetstat.TcpExt.TCPReqQFullDrop = &value + procNetstat.TCPReqQFullDrop = &value case "TCPRetransFail": - procNetstat.TcpExt.TCPRetransFail = &value + procNetstat.TCPRetransFail = &value case "TCPRcvCoalesce": - procNetstat.TcpExt.TCPRcvCoalesce = &value + procNetstat.TCPRcvCoalesce = &value case "TCPRcvQDrop": - procNetstat.TcpExt.TCPRcvQDrop = &value + procNetstat.TCPRcvQDrop = &value case "TCPOFOQueue": - procNetstat.TcpExt.TCPOFOQueue = &value + procNetstat.TCPOFOQueue = &value case "TCPOFODrop": - procNetstat.TcpExt.TCPOFODrop = &value + procNetstat.TCPOFODrop = &value case "TCPOFOMerge": - procNetstat.TcpExt.TCPOFOMerge = &value + procNetstat.TCPOFOMerge = &value case "TCPChallengeACK": - procNetstat.TcpExt.TCPChallengeACK = &value + procNetstat.TCPChallengeACK = &value case "TCPSYNChallenge": - procNetstat.TcpExt.TCPSYNChallenge = &value + procNetstat.TCPSYNChallenge = &value case "TCPFastOpenActive": - procNetstat.TcpExt.TCPFastOpenActive = &value + procNetstat.TCPFastOpenActive = &value case "TCPFastOpenActiveFail": - procNetstat.TcpExt.TCPFastOpenActiveFail = &value + procNetstat.TCPFastOpenActiveFail = &value case "TCPFastOpenPassive": - procNetstat.TcpExt.TCPFastOpenPassive = &value + procNetstat.TCPFastOpenPassive = &value case "TCPFastOpenPassiveFail": - procNetstat.TcpExt.TCPFastOpenPassiveFail = &value + procNetstat.TCPFastOpenPassiveFail = &value case "TCPFastOpenListenOverflow": - procNetstat.TcpExt.TCPFastOpenListenOverflow = &value + procNetstat.TCPFastOpenListenOverflow = &value case "TCPFastOpenCookieReqd": - procNetstat.TcpExt.TCPFastOpenCookieReqd = &value + procNetstat.TCPFastOpenCookieReqd = &value case "TCPFastOpenBlackhole": - procNetstat.TcpExt.TCPFastOpenBlackhole = &value + procNetstat.TCPFastOpenBlackhole = &value case "TCPSpuriousRtxHostQueues": - procNetstat.TcpExt.TCPSpuriousRtxHostQueues = &value + procNetstat.TCPSpuriousRtxHostQueues = &value case "BusyPollRxPackets": - procNetstat.TcpExt.BusyPollRxPackets = &value + procNetstat.BusyPollRxPackets = &value case "TCPAutoCorking": - procNetstat.TcpExt.TCPAutoCorking = &value + procNetstat.TCPAutoCorking = &value case "TCPFromZeroWindowAdv": - procNetstat.TcpExt.TCPFromZeroWindowAdv = &value + procNetstat.TCPFromZeroWindowAdv = &value case "TCPToZeroWindowAdv": - procNetstat.TcpExt.TCPToZeroWindowAdv = &value + procNetstat.TCPToZeroWindowAdv = &value case "TCPWantZeroWindowAdv": - procNetstat.TcpExt.TCPWantZeroWindowAdv = &value + procNetstat.TCPWantZeroWindowAdv = &value case "TCPSynRetrans": - procNetstat.TcpExt.TCPSynRetrans = &value + procNetstat.TCPSynRetrans = &value case "TCPOrigDataSent": - procNetstat.TcpExt.TCPOrigDataSent = &value + procNetstat.TCPOrigDataSent = &value case "TCPHystartTrainDetect": - procNetstat.TcpExt.TCPHystartTrainDetect = &value + procNetstat.TCPHystartTrainDetect = &value case "TCPHystartTrainCwnd": - procNetstat.TcpExt.TCPHystartTrainCwnd = &value + procNetstat.TCPHystartTrainCwnd = &value case "TCPHystartDelayDetect": - procNetstat.TcpExt.TCPHystartDelayDetect = &value + procNetstat.TCPHystartDelayDetect = &value case "TCPHystartDelayCwnd": - procNetstat.TcpExt.TCPHystartDelayCwnd = &value + procNetstat.TCPHystartDelayCwnd = &value case "TCPACKSkippedSynRecv": - procNetstat.TcpExt.TCPACKSkippedSynRecv = &value + procNetstat.TCPACKSkippedSynRecv = &value case "TCPACKSkippedPAWS": - procNetstat.TcpExt.TCPACKSkippedPAWS = &value + procNetstat.TCPACKSkippedPAWS = &value case "TCPACKSkippedSeq": - procNetstat.TcpExt.TCPACKSkippedSeq = &value + procNetstat.TCPACKSkippedSeq = &value case "TCPACKSkippedFinWait2": - procNetstat.TcpExt.TCPACKSkippedFinWait2 = &value + procNetstat.TCPACKSkippedFinWait2 = &value case "TCPACKSkippedTimeWait": - procNetstat.TcpExt.TCPACKSkippedTimeWait = &value + procNetstat.TCPACKSkippedTimeWait = &value case "TCPACKSkippedChallenge": - procNetstat.TcpExt.TCPACKSkippedChallenge = &value + procNetstat.TCPACKSkippedChallenge = &value case "TCPWinProbe": - procNetstat.TcpExt.TCPWinProbe = &value + procNetstat.TCPWinProbe = &value case "TCPKeepAlive": - procNetstat.TcpExt.TCPKeepAlive = &value + procNetstat.TCPKeepAlive = &value case "TCPMTUPFail": - procNetstat.TcpExt.TCPMTUPFail = &value + procNetstat.TCPMTUPFail = &value case "TCPMTUPSuccess": - procNetstat.TcpExt.TCPMTUPSuccess = &value + procNetstat.TCPMTUPSuccess = &value case "TCPWqueueTooBig": - procNetstat.TcpExt.TCPWqueueTooBig = &value + procNetstat.TCPWqueueTooBig = &value } case "IpExt": switch key { case "InNoRoutes": - procNetstat.IpExt.InNoRoutes = &value + procNetstat.InNoRoutes = &value case "InTruncatedPkts": - procNetstat.IpExt.InTruncatedPkts = &value + procNetstat.InTruncatedPkts = &value case "InMcastPkts": - procNetstat.IpExt.InMcastPkts = &value + procNetstat.InMcastPkts = &value case "OutMcastPkts": - procNetstat.IpExt.OutMcastPkts = &value + procNetstat.OutMcastPkts = &value case "InBcastPkts": - procNetstat.IpExt.InBcastPkts = &value + procNetstat.InBcastPkts = &value case "OutBcastPkts": - procNetstat.IpExt.OutBcastPkts = &value + procNetstat.OutBcastPkts = &value case "InOctets": - procNetstat.IpExt.InOctets = &value + procNetstat.InOctets = &value case "OutOctets": - procNetstat.IpExt.OutOctets = &value + procNetstat.OutOctets = &value case "InMcastOctets": - procNetstat.IpExt.InMcastOctets = &value + procNetstat.InMcastOctets = &value case "OutMcastOctets": - procNetstat.IpExt.OutMcastOctets = &value + procNetstat.OutMcastOctets = &value case "InBcastOctets": - procNetstat.IpExt.InBcastOctets = &value + procNetstat.InBcastOctets = &value case "OutBcastOctets": - procNetstat.IpExt.OutBcastOctets = &value + procNetstat.OutBcastOctets = &value case "InCsumErrors": - procNetstat.IpExt.InCsumErrors = &value + procNetstat.InCsumErrors = &value case "InNoECTPkts": - procNetstat.IpExt.InNoECTPkts = &value + procNetstat.InNoECTPkts = &value case "InECT1Pkts": - procNetstat.IpExt.InECT1Pkts = &value + procNetstat.InECT1Pkts = &value case "InECT0Pkts": - procNetstat.IpExt.InECT0Pkts = &value + procNetstat.InECT0Pkts = &value case "InCEPkts": - procNetstat.IpExt.InCEPkts = &value + procNetstat.InCEPkts = &value case "ReasmOverlaps": - procNetstat.IpExt.ReasmOverlaps = &value + procNetstat.ReasmOverlaps = &value } } } diff --git a/vendor/github.com/prometheus/procfs/proc_smaps.go b/vendor/github.com/prometheus/procfs/proc_smaps.go index 09060e8208..9a297afcf8 100644 --- a/vendor/github.com/prometheus/procfs/proc_smaps.go +++ b/vendor/github.com/prometheus/procfs/proc_smaps.go @@ -19,7 +19,6 @@ package procfs import ( "bufio" "errors" - "fmt" "os" "regexp" "strconv" @@ -29,7 +28,7 @@ import ( ) var ( - // match the header line before each mapped zone in `/proc/pid/smaps`. + // Match the header line before each mapped zone in `/proc/pid/smaps`. procSMapsHeaderLine = regexp.MustCompile(`^[a-f0-9].*$`) ) @@ -117,7 +116,6 @@ func (p Proc) procSMapsRollupManual() (ProcSMapsRollup, error) { func (s *ProcSMapsRollup) parseLine(line string) error { kv := strings.SplitN(line, ":", 2) if len(kv) != 2 { - fmt.Println(line) return errors.New("invalid net/dev line, missing colon") } diff --git a/vendor/github.com/prometheus/procfs/proc_snmp.go b/vendor/github.com/prometheus/procfs/proc_snmp.go index b9d2cf642a..4bdc90b07e 100644 --- a/vendor/github.com/prometheus/procfs/proc_snmp.go +++ b/vendor/github.com/prometheus/procfs/proc_snmp.go @@ -173,138 +173,138 @@ func parseSnmp(r io.Reader, fileName string) (ProcSnmp, error) { case "Ip": switch key { case "Forwarding": - procSnmp.Ip.Forwarding = &value + procSnmp.Forwarding = &value case "DefaultTTL": - procSnmp.Ip.DefaultTTL = &value + procSnmp.DefaultTTL = &value case "InReceives": - procSnmp.Ip.InReceives = &value + procSnmp.InReceives = &value case "InHdrErrors": - procSnmp.Ip.InHdrErrors = &value + procSnmp.InHdrErrors = &value case "InAddrErrors": - procSnmp.Ip.InAddrErrors = &value + procSnmp.InAddrErrors = &value case "ForwDatagrams": - procSnmp.Ip.ForwDatagrams = &value + procSnmp.ForwDatagrams = &value case "InUnknownProtos": - procSnmp.Ip.InUnknownProtos = &value + procSnmp.InUnknownProtos = &value case "InDiscards": - procSnmp.Ip.InDiscards = &value + procSnmp.InDiscards = &value case "InDelivers": - procSnmp.Ip.InDelivers = &value + procSnmp.InDelivers = &value case "OutRequests": - procSnmp.Ip.OutRequests = &value + procSnmp.OutRequests = &value case "OutDiscards": - procSnmp.Ip.OutDiscards = &value + procSnmp.OutDiscards = &value case "OutNoRoutes": - procSnmp.Ip.OutNoRoutes = &value + procSnmp.OutNoRoutes = &value case "ReasmTimeout": - procSnmp.Ip.ReasmTimeout = &value + procSnmp.ReasmTimeout = &value case "ReasmReqds": - procSnmp.Ip.ReasmReqds = &value + procSnmp.ReasmReqds = &value case "ReasmOKs": - procSnmp.Ip.ReasmOKs = &value + procSnmp.ReasmOKs = &value case "ReasmFails": - procSnmp.Ip.ReasmFails = &value + procSnmp.ReasmFails = &value case "FragOKs": - procSnmp.Ip.FragOKs = &value + procSnmp.FragOKs = &value case "FragFails": - procSnmp.Ip.FragFails = &value + procSnmp.FragFails = &value case "FragCreates": - procSnmp.Ip.FragCreates = &value + procSnmp.FragCreates = &value } case "Icmp": switch key { case "InMsgs": - procSnmp.Icmp.InMsgs = &value + procSnmp.InMsgs = &value case "InErrors": procSnmp.Icmp.InErrors = &value case "InCsumErrors": procSnmp.Icmp.InCsumErrors = &value case "InDestUnreachs": - procSnmp.Icmp.InDestUnreachs = &value + procSnmp.InDestUnreachs = &value case "InTimeExcds": - procSnmp.Icmp.InTimeExcds = &value + procSnmp.InTimeExcds = &value case "InParmProbs": - procSnmp.Icmp.InParmProbs = &value + procSnmp.InParmProbs = &value case "InSrcQuenchs": - procSnmp.Icmp.InSrcQuenchs = &value + procSnmp.InSrcQuenchs = &value case "InRedirects": - procSnmp.Icmp.InRedirects = &value + procSnmp.InRedirects = &value case "InEchos": - procSnmp.Icmp.InEchos = &value + procSnmp.InEchos = &value case "InEchoReps": - procSnmp.Icmp.InEchoReps = &value + procSnmp.InEchoReps = &value case "InTimestamps": - procSnmp.Icmp.InTimestamps = &value + procSnmp.InTimestamps = &value case "InTimestampReps": - procSnmp.Icmp.InTimestampReps = &value + procSnmp.InTimestampReps = &value case "InAddrMasks": - procSnmp.Icmp.InAddrMasks = &value + procSnmp.InAddrMasks = &value case "InAddrMaskReps": - procSnmp.Icmp.InAddrMaskReps = &value + procSnmp.InAddrMaskReps = &value case "OutMsgs": - procSnmp.Icmp.OutMsgs = &value + procSnmp.OutMsgs = &value case "OutErrors": - procSnmp.Icmp.OutErrors = &value + procSnmp.OutErrors = &value case "OutDestUnreachs": - procSnmp.Icmp.OutDestUnreachs = &value + procSnmp.OutDestUnreachs = &value case "OutTimeExcds": - procSnmp.Icmp.OutTimeExcds = &value + procSnmp.OutTimeExcds = &value case "OutParmProbs": - procSnmp.Icmp.OutParmProbs = &value + procSnmp.OutParmProbs = &value case "OutSrcQuenchs": - procSnmp.Icmp.OutSrcQuenchs = &value + procSnmp.OutSrcQuenchs = &value case "OutRedirects": - procSnmp.Icmp.OutRedirects = &value + procSnmp.OutRedirects = &value case "OutEchos": - procSnmp.Icmp.OutEchos = &value + procSnmp.OutEchos = &value case "OutEchoReps": - procSnmp.Icmp.OutEchoReps = &value + procSnmp.OutEchoReps = &value case "OutTimestamps": - procSnmp.Icmp.OutTimestamps = &value + procSnmp.OutTimestamps = &value case "OutTimestampReps": - procSnmp.Icmp.OutTimestampReps = &value + procSnmp.OutTimestampReps = &value case "OutAddrMasks": - procSnmp.Icmp.OutAddrMasks = &value + procSnmp.OutAddrMasks = &value case "OutAddrMaskReps": - procSnmp.Icmp.OutAddrMaskReps = &value + procSnmp.OutAddrMaskReps = &value } case "IcmpMsg": switch key { case "InType3": - procSnmp.IcmpMsg.InType3 = &value + procSnmp.InType3 = &value case "OutType3": - procSnmp.IcmpMsg.OutType3 = &value + procSnmp.OutType3 = &value } case "Tcp": switch key { case "RtoAlgorithm": - procSnmp.Tcp.RtoAlgorithm = &value + procSnmp.RtoAlgorithm = &value case "RtoMin": - procSnmp.Tcp.RtoMin = &value + procSnmp.RtoMin = &value case "RtoMax": - procSnmp.Tcp.RtoMax = &value + procSnmp.RtoMax = &value case "MaxConn": - procSnmp.Tcp.MaxConn = &value + procSnmp.MaxConn = &value case "ActiveOpens": - procSnmp.Tcp.ActiveOpens = &value + procSnmp.ActiveOpens = &value case "PassiveOpens": - procSnmp.Tcp.PassiveOpens = &value + procSnmp.PassiveOpens = &value case "AttemptFails": - procSnmp.Tcp.AttemptFails = &value + procSnmp.AttemptFails = &value case "EstabResets": - procSnmp.Tcp.EstabResets = &value + procSnmp.EstabResets = &value case "CurrEstab": - procSnmp.Tcp.CurrEstab = &value + procSnmp.CurrEstab = &value case "InSegs": - procSnmp.Tcp.InSegs = &value + procSnmp.InSegs = &value case "OutSegs": - procSnmp.Tcp.OutSegs = &value + procSnmp.OutSegs = &value case "RetransSegs": - procSnmp.Tcp.RetransSegs = &value + procSnmp.RetransSegs = &value case "InErrs": - procSnmp.Tcp.InErrs = &value + procSnmp.InErrs = &value case "OutRsts": - procSnmp.Tcp.OutRsts = &value + procSnmp.OutRsts = &value case "InCsumErrors": procSnmp.Tcp.InCsumErrors = &value } diff --git a/vendor/github.com/prometheus/procfs/proc_snmp6.go b/vendor/github.com/prometheus/procfs/proc_snmp6.go index 3059cc6a13..fb7fd3995b 100644 --- a/vendor/github.com/prometheus/procfs/proc_snmp6.go +++ b/vendor/github.com/prometheus/procfs/proc_snmp6.go @@ -182,161 +182,161 @@ func parseSNMP6Stats(r io.Reader) (ProcSnmp6, error) { case "Ip6": switch key { case "InReceives": - procSnmp6.Ip6.InReceives = &value + procSnmp6.InReceives = &value case "InHdrErrors": - procSnmp6.Ip6.InHdrErrors = &value + procSnmp6.InHdrErrors = &value case "InTooBigErrors": - procSnmp6.Ip6.InTooBigErrors = &value + procSnmp6.InTooBigErrors = &value case "InNoRoutes": - procSnmp6.Ip6.InNoRoutes = &value + procSnmp6.InNoRoutes = &value case "InAddrErrors": - procSnmp6.Ip6.InAddrErrors = &value + procSnmp6.InAddrErrors = &value case "InUnknownProtos": - procSnmp6.Ip6.InUnknownProtos = &value + procSnmp6.InUnknownProtos = &value case "InTruncatedPkts": - procSnmp6.Ip6.InTruncatedPkts = &value + procSnmp6.InTruncatedPkts = &value case "InDiscards": - procSnmp6.Ip6.InDiscards = &value + procSnmp6.InDiscards = &value case "InDelivers": - procSnmp6.Ip6.InDelivers = &value + procSnmp6.InDelivers = &value case "OutForwDatagrams": - procSnmp6.Ip6.OutForwDatagrams = &value + procSnmp6.OutForwDatagrams = &value case "OutRequests": - procSnmp6.Ip6.OutRequests = &value + procSnmp6.OutRequests = &value case "OutDiscards": - procSnmp6.Ip6.OutDiscards = &value + procSnmp6.OutDiscards = &value case "OutNoRoutes": - procSnmp6.Ip6.OutNoRoutes = &value + procSnmp6.OutNoRoutes = &value case "ReasmTimeout": - procSnmp6.Ip6.ReasmTimeout = &value + procSnmp6.ReasmTimeout = &value case "ReasmReqds": - procSnmp6.Ip6.ReasmReqds = &value + procSnmp6.ReasmReqds = &value case "ReasmOKs": - procSnmp6.Ip6.ReasmOKs = &value + procSnmp6.ReasmOKs = &value case "ReasmFails": - procSnmp6.Ip6.ReasmFails = &value + procSnmp6.ReasmFails = &value case "FragOKs": - procSnmp6.Ip6.FragOKs = &value + procSnmp6.FragOKs = &value case "FragFails": - procSnmp6.Ip6.FragFails = &value + procSnmp6.FragFails = &value case "FragCreates": - procSnmp6.Ip6.FragCreates = &value + procSnmp6.FragCreates = &value case "InMcastPkts": - procSnmp6.Ip6.InMcastPkts = &value + procSnmp6.InMcastPkts = &value case "OutMcastPkts": - procSnmp6.Ip6.OutMcastPkts = &value + procSnmp6.OutMcastPkts = &value case "InOctets": - procSnmp6.Ip6.InOctets = &value + procSnmp6.InOctets = &value case "OutOctets": - procSnmp6.Ip6.OutOctets = &value + procSnmp6.OutOctets = &value case "InMcastOctets": - procSnmp6.Ip6.InMcastOctets = &value + procSnmp6.InMcastOctets = &value case "OutMcastOctets": - procSnmp6.Ip6.OutMcastOctets = &value + procSnmp6.OutMcastOctets = &value case "InBcastOctets": - procSnmp6.Ip6.InBcastOctets = &value + procSnmp6.InBcastOctets = &value case "OutBcastOctets": - procSnmp6.Ip6.OutBcastOctets = &value + procSnmp6.OutBcastOctets = &value case "InNoECTPkts": - procSnmp6.Ip6.InNoECTPkts = &value + procSnmp6.InNoECTPkts = &value case "InECT1Pkts": - procSnmp6.Ip6.InECT1Pkts = &value + procSnmp6.InECT1Pkts = &value case "InECT0Pkts": - procSnmp6.Ip6.InECT0Pkts = &value + procSnmp6.InECT0Pkts = &value case "InCEPkts": - procSnmp6.Ip6.InCEPkts = &value + procSnmp6.InCEPkts = &value } case "Icmp6": switch key { case "InMsgs": - procSnmp6.Icmp6.InMsgs = &value + procSnmp6.InMsgs = &value case "InErrors": procSnmp6.Icmp6.InErrors = &value case "OutMsgs": - procSnmp6.Icmp6.OutMsgs = &value + procSnmp6.OutMsgs = &value case "OutErrors": - procSnmp6.Icmp6.OutErrors = &value + procSnmp6.OutErrors = &value case "InCsumErrors": procSnmp6.Icmp6.InCsumErrors = &value case "InDestUnreachs": - procSnmp6.Icmp6.InDestUnreachs = &value + procSnmp6.InDestUnreachs = &value case "InPktTooBigs": - procSnmp6.Icmp6.InPktTooBigs = &value + procSnmp6.InPktTooBigs = &value case "InTimeExcds": - procSnmp6.Icmp6.InTimeExcds = &value + procSnmp6.InTimeExcds = &value case "InParmProblems": - procSnmp6.Icmp6.InParmProblems = &value + procSnmp6.InParmProblems = &value case "InEchos": - procSnmp6.Icmp6.InEchos = &value + procSnmp6.InEchos = &value case "InEchoReplies": - procSnmp6.Icmp6.InEchoReplies = &value + procSnmp6.InEchoReplies = &value case "InGroupMembQueries": - procSnmp6.Icmp6.InGroupMembQueries = &value + procSnmp6.InGroupMembQueries = &value case "InGroupMembResponses": - procSnmp6.Icmp6.InGroupMembResponses = &value + procSnmp6.InGroupMembResponses = &value case "InGroupMembReductions": - procSnmp6.Icmp6.InGroupMembReductions = &value + procSnmp6.InGroupMembReductions = &value case "InRouterSolicits": - procSnmp6.Icmp6.InRouterSolicits = &value + procSnmp6.InRouterSolicits = &value case "InRouterAdvertisements": - procSnmp6.Icmp6.InRouterAdvertisements = &value + procSnmp6.InRouterAdvertisements = &value case "InNeighborSolicits": - procSnmp6.Icmp6.InNeighborSolicits = &value + procSnmp6.InNeighborSolicits = &value case "InNeighborAdvertisements": - procSnmp6.Icmp6.InNeighborAdvertisements = &value + procSnmp6.InNeighborAdvertisements = &value case "InRedirects": - procSnmp6.Icmp6.InRedirects = &value + procSnmp6.InRedirects = &value case "InMLDv2Reports": - procSnmp6.Icmp6.InMLDv2Reports = &value + procSnmp6.InMLDv2Reports = &value case "OutDestUnreachs": - procSnmp6.Icmp6.OutDestUnreachs = &value + procSnmp6.OutDestUnreachs = &value case "OutPktTooBigs": - procSnmp6.Icmp6.OutPktTooBigs = &value + procSnmp6.OutPktTooBigs = &value case "OutTimeExcds": - procSnmp6.Icmp6.OutTimeExcds = &value + procSnmp6.OutTimeExcds = &value case "OutParmProblems": - procSnmp6.Icmp6.OutParmProblems = &value + procSnmp6.OutParmProblems = &value case "OutEchos": - procSnmp6.Icmp6.OutEchos = &value + procSnmp6.OutEchos = &value case "OutEchoReplies": - procSnmp6.Icmp6.OutEchoReplies = &value + procSnmp6.OutEchoReplies = &value case "OutGroupMembQueries": - procSnmp6.Icmp6.OutGroupMembQueries = &value + procSnmp6.OutGroupMembQueries = &value case "OutGroupMembResponses": - procSnmp6.Icmp6.OutGroupMembResponses = &value + procSnmp6.OutGroupMembResponses = &value case "OutGroupMembReductions": - procSnmp6.Icmp6.OutGroupMembReductions = &value + procSnmp6.OutGroupMembReductions = &value case "OutRouterSolicits": - procSnmp6.Icmp6.OutRouterSolicits = &value + procSnmp6.OutRouterSolicits = &value case "OutRouterAdvertisements": - procSnmp6.Icmp6.OutRouterAdvertisements = &value + procSnmp6.OutRouterAdvertisements = &value case "OutNeighborSolicits": - procSnmp6.Icmp6.OutNeighborSolicits = &value + procSnmp6.OutNeighborSolicits = &value case "OutNeighborAdvertisements": - procSnmp6.Icmp6.OutNeighborAdvertisements = &value + procSnmp6.OutNeighborAdvertisements = &value case "OutRedirects": - procSnmp6.Icmp6.OutRedirects = &value + procSnmp6.OutRedirects = &value case "OutMLDv2Reports": - procSnmp6.Icmp6.OutMLDv2Reports = &value + procSnmp6.OutMLDv2Reports = &value case "InType1": - procSnmp6.Icmp6.InType1 = &value + procSnmp6.InType1 = &value case "InType134": - procSnmp6.Icmp6.InType134 = &value + procSnmp6.InType134 = &value case "InType135": - procSnmp6.Icmp6.InType135 = &value + procSnmp6.InType135 = &value case "InType136": - procSnmp6.Icmp6.InType136 = &value + procSnmp6.InType136 = &value case "InType143": - procSnmp6.Icmp6.InType143 = &value + procSnmp6.InType143 = &value case "OutType133": - procSnmp6.Icmp6.OutType133 = &value + procSnmp6.OutType133 = &value case "OutType135": - procSnmp6.Icmp6.OutType135 = &value + procSnmp6.OutType135 = &value case "OutType136": - procSnmp6.Icmp6.OutType136 = &value + procSnmp6.OutType136 = &value case "OutType143": - procSnmp6.Icmp6.OutType143 = &value + procSnmp6.OutType143 = &value } case "Udp6": switch key { @@ -355,7 +355,7 @@ func parseSNMP6Stats(r io.Reader) (ProcSnmp6, error) { case "InCsumErrors": procSnmp6.Udp6.InCsumErrors = &value case "IgnoredMulti": - procSnmp6.Udp6.IgnoredMulti = &value + procSnmp6.IgnoredMulti = &value } case "UdpLite6": switch key { diff --git a/vendor/github.com/prometheus/procfs/proc_status.go b/vendor/github.com/prometheus/procfs/proc_status.go index a055197c63..dd8aa56885 100644 --- a/vendor/github.com/prometheus/procfs/proc_status.go +++ b/vendor/github.com/prometheus/procfs/proc_status.go @@ -146,7 +146,11 @@ func (s *ProcStatus) fillStatus(k string, vString string, vUint uint64, vUintByt } } case "NSpid": - s.NSpids = calcNSPidsList(vString) + nspids, err := calcNSPidsList(vString) + if err != nil { + return err + } + s.NSpids = nspids case "VmPeak": s.VmPeak = vUintBytes case "VmSize": @@ -222,17 +226,17 @@ func calcCpusAllowedList(cpuString string) []uint64 { return g } -func calcNSPidsList(nspidsString string) []uint64 { - s := strings.Split(nspidsString, " ") +func calcNSPidsList(nspidsString string) ([]uint64, error) { + s := strings.Split(nspidsString, "\t") var nspids []uint64 for _, nspid := range s { - nspid, _ := strconv.ParseUint(nspid, 10, 64) - if nspid == 0 { - continue + nspid, err := strconv.ParseUint(nspid, 10, 64) + if err != nil { + return nil, err } nspids = append(nspids, nspid) } - return nspids + return nspids, nil } diff --git a/vendor/github.com/prometheus/procfs/proc_sys.go b/vendor/github.com/prometheus/procfs/proc_sys.go index 5eefbe2ef8..3810d1ac99 100644 --- a/vendor/github.com/prometheus/procfs/proc_sys.go +++ b/vendor/github.com/prometheus/procfs/proc_sys.go @@ -21,7 +21,7 @@ import ( ) func sysctlToPath(sysctl string) string { - return strings.Replace(sysctl, ".", "/", -1) + return strings.ReplaceAll(sysctl, ".", "/") } func (fs FS) SysctlStrings(sysctl string) ([]string, error) { diff --git a/vendor/github.com/prometheus/procfs/softirqs.go b/vendor/github.com/prometheus/procfs/softirqs.go index 28708e0745..403e6ae708 100644 --- a/vendor/github.com/prometheus/procfs/softirqs.go +++ b/vendor/github.com/prometheus/procfs/softirqs.go @@ -68,8 +68,8 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { if len(parts) < 2 { continue } - switch { - case parts[0] == "HI:": + switch parts[0] { + case "HI:": perCPU := parts[1:] softirqs.Hi = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -77,7 +77,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (HI%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "TIMER:": + case "TIMER:": perCPU := parts[1:] softirqs.Timer = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -85,7 +85,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (TIMER%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "NET_TX:": + case "NET_TX:": perCPU := parts[1:] softirqs.NetTx = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -93,7 +93,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (NET_TX%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "NET_RX:": + case "NET_RX:": perCPU := parts[1:] softirqs.NetRx = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -101,7 +101,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (NET_RX%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "BLOCK:": + case "BLOCK:": perCPU := parts[1:] softirqs.Block = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -109,7 +109,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (BLOCK%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "IRQ_POLL:": + case "IRQ_POLL:": perCPU := parts[1:] softirqs.IRQPoll = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -117,7 +117,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (IRQ_POLL%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "TASKLET:": + case "TASKLET:": perCPU := parts[1:] softirqs.Tasklet = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -125,7 +125,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (TASKLET%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "SCHED:": + case "SCHED:": perCPU := parts[1:] softirqs.Sched = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -133,7 +133,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (SCHED%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "HRTIMER:": + case "HRTIMER:": perCPU := parts[1:] softirqs.HRTimer = make([]uint64, len(perCPU)) for i, count := range perCPU { @@ -141,7 +141,7 @@ func parseSoftirqs(r io.Reader) (Softirqs, error) { return Softirqs{}, fmt.Errorf("%w: couldn't parse %q (HRTIMER%d): %w", ErrFileParse, count, i, err) } } - case parts[0] == "RCU:": + case "RCU:": perCPU := parts[1:] softirqs.RCU = make([]uint64, len(perCPU)) for i, count := range perCPU { diff --git a/vendor/go.opentelemetry.io/auto/sdk/CONTRIBUTING.md b/vendor/go.opentelemetry.io/auto/sdk/CONTRIBUTING.md new file mode 100644 index 0000000000..773c9b6431 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/CONTRIBUTING.md @@ -0,0 +1,27 @@ +# Contributing to go.opentelemetry.io/auto/sdk + +The `go.opentelemetry.io/auto/sdk` module is a purpose built OpenTelemetry SDK. +It is designed to be: + +0. An OpenTelemetry compliant SDK +1. Instrumented by auto-instrumentation (serializable into OTLP JSON) +2. Lightweight +3. User-friendly + +These design choices are listed in the order of their importance. + +The primary design goal of this module is to be an OpenTelemetry SDK. +This means that it needs to implement the Go APIs found in `go.opentelemetry.io/otel`. + +Having met the requirement of SDK compliance, this module needs to provide code that the `go.opentelemetry.io/auto` module can instrument. +The chosen approach to meet this goal is to ensure the telemetry from the SDK is serializable into JSON encoded OTLP. +This ensures then that the serialized form is compatible with other OpenTelemetry systems, and the auto-instrumentation can use these systems to deserialize any telemetry it is sent. + +Outside of these first two goals, the intended use becomes relevant. +This package is intended to be used in the `go.opentelemetry.io/otel` global API as a default when the auto-instrumentation is running. +Because of this, this package needs to not add unnecessary dependencies to that API. +Ideally, it adds none. +It also needs to operate efficiently. + +Finally, this module is designed to be user-friendly to Go development. +It hides complexity in order to provide simpler APIs when the previous goals can all still be met. diff --git a/vendor/github.com/klauspost/compress/LICENSE b/vendor/go.opentelemetry.io/auto/sdk/LICENSE similarity index 67% rename from vendor/github.com/klauspost/compress/LICENSE rename to vendor/go.opentelemetry.io/auto/sdk/LICENSE index 87d5574777..261eeb9e9f 100644 --- a/vendor/github.com/klauspost/compress/LICENSE +++ b/vendor/go.opentelemetry.io/auto/sdk/LICENSE @@ -1,36 +1,3 @@ -Copyright (c) 2012 The Go Authors. All rights reserved. -Copyright (c) 2019 Klaus Post. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - ------------------- - -Files: gzhttp/* - Apache License Version 2.0, January 2004 http://www.apache.org/licenses/ @@ -219,7 +186,7 @@ Files: gzhttp/* same "printed page" as the copyright notice for easier identification within third-party archives. - Copyright 2016-2017 The New York Times Company + Copyright [yyyy] [name of copyright owner] Licensed under the Apache License, Version 2.0 (the "License"); you may not use this file except in compliance with the License. @@ -232,73 +199,3 @@ Files: gzhttp/* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the License for the specific language governing permissions and limitations under the License. - ------------------- - -Files: s2/cmd/internal/readahead/* - -The MIT License (MIT) - -Copyright (c) 2015 Klaus Post - -Permission is hereby granted, free of charge, to any person obtaining a copy -of this software and associated documentation files (the "Software"), to deal -in the Software without restriction, including without limitation the rights -to use, copy, modify, merge, publish, distribute, sublicense, and/or sell -copies of the Software, and to permit persons to whom the Software is -furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all -copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR -IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, -FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE -AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER -LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, -OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE -SOFTWARE. - ---------------------- -Files: snappy/* -Files: internal/snapref/* - -Copyright (c) 2011 The Snappy-Go Authors. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. - ------------------ - -Files: s2/cmd/internal/filepathx/* - -Copyright 2016 The filepathx Authors - -Permission is hereby granted, free of charge, to any person obtaining a copy of this software and associated documentation files (the "Software"), to deal in the Software without restriction, including without limitation the rights to use, copy, modify, merge, publish, distribute, sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is furnished to do so, subject to the following conditions: - -The above copyright notice and this permission notice shall be included in all copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/vendor/go.opentelemetry.io/auto/sdk/VERSIONING.md b/vendor/go.opentelemetry.io/auto/sdk/VERSIONING.md new file mode 100644 index 0000000000..088d19a6ce --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/VERSIONING.md @@ -0,0 +1,15 @@ +# Versioning + +This document describes the versioning policy for this module. +This policy is designed so the following goals can be achieved. + +**Users are provided a codebase of value that is stable and secure.** + +## Policy + +* Versioning of this module will be idiomatic of a Go project using [Go modules](https://github.com/golang/go/wiki/Modules). + * [Semantic import versioning](https://github.com/golang/go/wiki/Modules#semantic-import-versioning) will be used. + * Versions will comply with [semver 2.0](https://semver.org/spec/v2.0.0.html). + * Any `v2` or higher version of this module will be included as a `/vN` at the end of the module path used in `go.mod` files and in the package import path. + +* GitHub releases will be made for all releases. diff --git a/vendor/go.opentelemetry.io/auto/sdk/doc.go b/vendor/go.opentelemetry.io/auto/sdk/doc.go new file mode 100644 index 0000000000..ad73d8cb9d --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/doc.go @@ -0,0 +1,14 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package sdk provides an auto-instrumentable OpenTelemetry SDK. + +An [go.opentelemetry.io/auto.Instrumentation] can be configured to target the +process running this SDK. In that case, all telemetry the SDK produces will be +processed and handled by that [go.opentelemetry.io/auto.Instrumentation]. + +By default, if there is no [go.opentelemetry.io/auto.Instrumentation] set to +auto-instrument the SDK, the SDK will not generate any telemetry. +*/ +package sdk diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/attr.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/attr.go new file mode 100644 index 0000000000..af6ef171f6 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/attr.go @@ -0,0 +1,58 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +// Attr is a key-value pair. +type Attr struct { + Key string `json:"key,omitempty"` + Value Value `json:"value,omitempty"` +} + +// String returns an Attr for a string value. +func String(key, value string) Attr { + return Attr{key, StringValue(value)} +} + +// Int64 returns an Attr for an int64 value. +func Int64(key string, value int64) Attr { + return Attr{key, Int64Value(value)} +} + +// Int returns an Attr for an int value. +func Int(key string, value int) Attr { + return Int64(key, int64(value)) +} + +// Float64 returns an Attr for a float64 value. +func Float64(key string, value float64) Attr { + return Attr{key, Float64Value(value)} +} + +// Bool returns an Attr for a bool value. +func Bool(key string, value bool) Attr { + return Attr{key, BoolValue(value)} +} + +// Bytes returns an Attr for a []byte value. +// The passed slice must not be changed after it is passed. +func Bytes(key string, value []byte) Attr { + return Attr{key, BytesValue(value)} +} + +// Slice returns an Attr for a []Value value. +// The passed slice must not be changed after it is passed. +func Slice(key string, value ...Value) Attr { + return Attr{key, SliceValue(value...)} +} + +// Map returns an Attr for a map value. +// The passed slice must not be changed after it is passed. +func Map(key string, value ...Attr) Attr { + return Attr{key, MapValue(value...)} +} + +// Equal returns if a is equal to b. +func (a Attr) Equal(b Attr) bool { + return a.Key == b.Key && a.Value.Equal(b.Value) +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/doc.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/doc.go new file mode 100644 index 0000000000..949e2165c0 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/doc.go @@ -0,0 +1,8 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package telemetry provides a lightweight representations of OpenTelemetry +telemetry that is compatible with the OTLP JSON protobuf encoding. +*/ +package telemetry diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/id.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/id.go new file mode 100644 index 0000000000..e854d7e84e --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/id.go @@ -0,0 +1,103 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "encoding/hex" + "errors" + "fmt" +) + +const ( + traceIDSize = 16 + spanIDSize = 8 +) + +// TraceID is a custom data type that is used for all trace IDs. +type TraceID [traceIDSize]byte + +// String returns the hex string representation form of a TraceID. +func (tid TraceID) String() string { + return hex.EncodeToString(tid[:]) +} + +// IsEmpty returns false if id contains at least one non-zero byte. +func (tid TraceID) IsEmpty() bool { + return tid == [traceIDSize]byte{} +} + +// MarshalJSON converts the trace ID into a hex string enclosed in quotes. +func (tid TraceID) MarshalJSON() ([]byte, error) { + if tid.IsEmpty() { + return []byte(`""`), nil + } + return marshalJSON(tid[:]) +} + +// UnmarshalJSON inflates the trace ID from hex string, possibly enclosed in +// quotes. +func (tid *TraceID) UnmarshalJSON(data []byte) error { + *tid = [traceIDSize]byte{} + return unmarshalJSON(tid[:], data) +} + +// SpanID is a custom data type that is used for all span IDs. +type SpanID [spanIDSize]byte + +// String returns the hex string representation form of a SpanID. +func (sid SpanID) String() string { + return hex.EncodeToString(sid[:]) +} + +// IsEmpty returns true if the span ID contains at least one non-zero byte. +func (sid SpanID) IsEmpty() bool { + return sid == [spanIDSize]byte{} +} + +// MarshalJSON converts span ID into a hex string enclosed in quotes. +func (sid SpanID) MarshalJSON() ([]byte, error) { + if sid.IsEmpty() { + return []byte(`""`), nil + } + return marshalJSON(sid[:]) +} + +// UnmarshalJSON decodes span ID from hex string, possibly enclosed in quotes. +func (sid *SpanID) UnmarshalJSON(data []byte) error { + *sid = [spanIDSize]byte{} + return unmarshalJSON(sid[:], data) +} + +// marshalJSON converts id into a hex string enclosed in quotes. +func marshalJSON(id []byte) ([]byte, error) { + // Plus 2 quote chars at the start and end. + hexLen := hex.EncodedLen(len(id)) + 2 + + b := make([]byte, hexLen) + hex.Encode(b[1:hexLen-1], id) + b[0], b[hexLen-1] = '"', '"' + + return b, nil +} + +// unmarshalJSON inflates trace id from hex string, possibly enclosed in quotes. +func unmarshalJSON(dst []byte, src []byte) error { + if l := len(src); l >= 2 && src[0] == '"' && src[l-1] == '"' { + src = src[1 : l-1] + } + nLen := len(src) + if nLen == 0 { + return nil + } + + if len(dst) != hex.DecodedLen(nLen) { + return errors.New("invalid length for ID") + } + + _, err := hex.Decode(dst, src) + if err != nil { + return fmt.Errorf("cannot unmarshal ID from string '%s': %w", string(src), err) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/number.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/number.go new file mode 100644 index 0000000000..29e629d667 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/number.go @@ -0,0 +1,67 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "encoding/json" + "strconv" +) + +// protoInt64 represents the protobuf encoding of integers which can be either +// strings or integers. +type protoInt64 int64 + +// Int64 returns the protoInt64 as an int64. +func (i *protoInt64) Int64() int64 { return int64(*i) } + +// UnmarshalJSON decodes both strings and integers. +func (i *protoInt64) UnmarshalJSON(data []byte) error { + if data[0] == '"' { + var str string + if err := json.Unmarshal(data, &str); err != nil { + return err + } + parsedInt, err := strconv.ParseInt(str, 10, 64) + if err != nil { + return err + } + *i = protoInt64(parsedInt) + } else { + var parsedInt int64 + if err := json.Unmarshal(data, &parsedInt); err != nil { + return err + } + *i = protoInt64(parsedInt) + } + return nil +} + +// protoUint64 represents the protobuf encoding of integers which can be either +// strings or integers. +type protoUint64 uint64 + +// Int64 returns the protoUint64 as a uint64. +func (i *protoUint64) Uint64() uint64 { return uint64(*i) } + +// UnmarshalJSON decodes both strings and integers. +func (i *protoUint64) UnmarshalJSON(data []byte) error { + if data[0] == '"' { + var str string + if err := json.Unmarshal(data, &str); err != nil { + return err + } + parsedUint, err := strconv.ParseUint(str, 10, 64) + if err != nil { + return err + } + *i = protoUint64(parsedUint) + } else { + var parsedUint uint64 + if err := json.Unmarshal(data, &parsedUint); err != nil { + return err + } + *i = protoUint64(parsedUint) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/resource.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/resource.go new file mode 100644 index 0000000000..cecad8bae3 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/resource.go @@ -0,0 +1,66 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Resource information. +type Resource struct { + // Attrs are the set of attributes that describe the resource. Attribute + // keys MUST be unique (it is not allowed to have more than one attribute + // with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // DroppedAttrs is the number of dropped attributes. If the value + // is 0, then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into r. +func (r *Resource) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Resource type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Resource field: %#v", keyIface) + } + + switch key { + case "attributes": + err = decoder.Decode(&r.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&r.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/scope.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/scope.go new file mode 100644 index 0000000000..b6f2e28d40 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/scope.go @@ -0,0 +1,67 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Scope is the identifying values of the instrumentation scope. +type Scope struct { + Name string `json:"name,omitempty"` + Version string `json:"version,omitempty"` + Attrs []Attr `json:"attributes,omitempty"` + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into r. +func (s *Scope) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Scope type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Scope field: %#v", keyIface) + } + + switch key { + case "name": + err = decoder.Decode(&s.Name) + case "version": + err = decoder.Decode(&s.Version) + case "attributes": + err = decoder.Decode(&s.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&s.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/span.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/span.go new file mode 100644 index 0000000000..a13a6b733d --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/span.go @@ -0,0 +1,456 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "bytes" + "encoding/hex" + "encoding/json" + "errors" + "fmt" + "io" + "time" +) + +// A Span represents a single operation performed by a single component of the +// system. +type Span struct { + // A unique identifier for a trace. All spans from the same trace share + // the same `trace_id`. The ID is a 16-byte array. An ID with all zeroes OR + // of length other than 16 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + TraceID TraceID `json:"traceId,omitempty"` + // A unique identifier for a span within a trace, assigned when the span + // is created. The ID is an 8-byte array. An ID with all zeroes OR of length + // other than 8 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + SpanID SpanID `json:"spanId,omitempty"` + // trace_state conveys information about request position in multiple distributed tracing graphs. + // It is a trace_state in w3c-trace-context format: https://www.w3.org/TR/trace-context/#tracestate-header + // See also https://github.com/w3c/distributed-tracing for more details about this field. + TraceState string `json:"traceState,omitempty"` + // The `span_id` of this span's parent span. If this is a root span, then this + // field must be empty. The ID is an 8-byte array. + ParentSpanID SpanID `json:"parentSpanId,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether a span's parent + // is remote. The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the span is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // When creating span messages, if the message is logically forwarded from another source + // with an equivalent flags fields (i.e., usually another OTLP span message), the field SHOULD + // be copied as-is. If creating from a source that does not have an equivalent flags field + // (such as a runtime representation of an OpenTelemetry span), the high 22 bits MUST + // be set to zero. + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // + // [Optional]. + Flags uint32 `json:"flags,omitempty"` + // A description of the span's operation. + // + // For example, the name can be a qualified method name or a file name + // and a line number where the operation is called. A best practice is to use + // the same display name at the same call point in an application. + // This makes it easier to correlate spans in different traces. + // + // This field is semantically required to be set to non-empty string. + // Empty value is equivalent to an unknown span name. + // + // This field is required. + Name string `json:"name"` + // Distinguishes between spans generated in a particular context. For example, + // two spans with the same name may be distinguished using `CLIENT` (caller) + // and `SERVER` (callee) to identify queueing latency associated with the span. + Kind SpanKind `json:"kind,omitempty"` + // start_time_unix_nano is the start time of the span. On the client side, this is the time + // kept by the local machine where the span execution starts. On the server side, this + // is the time when the server's application handler starts running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + StartTime time.Time `json:"startTimeUnixNano,omitempty"` + // end_time_unix_nano is the end time of the span. On the client side, this is the time + // kept by the local machine where the span execution ends. On the server side, this + // is the time when the server application handler stops running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + EndTime time.Time `json:"endTimeUnixNano,omitempty"` + // attributes is a collection of key/value pairs. Note, global attributes + // like server name can be set using the resource API. Examples of attributes: + // + // "/http/user_agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_14_2) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/71.0.3578.98 Safari/537.36" + // "/http/server_latency": 300 + // "example.com/myattribute": true + // "example.com/score": 10.239 + // + // The OpenTelemetry API specification further restricts the allowed value types: + // https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/common/README.md#attribute + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of attributes that were discarded. Attributes + // can be discarded because their keys are too long or because there are too many + // attributes. If this value is 0, then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` + // events is a collection of Event items. + Events []*SpanEvent `json:"events,omitempty"` + // dropped_events_count is the number of dropped events. If the value is 0, then no + // events were dropped. + DroppedEvents uint32 `json:"droppedEventsCount,omitempty"` + // links is a collection of Links, which are references from this span to a span + // in the same or different trace. + Links []*SpanLink `json:"links,omitempty"` + // dropped_links_count is the number of dropped links after the maximum size was + // enforced. If this value is 0, then no links were dropped. + DroppedLinks uint32 `json:"droppedLinksCount,omitempty"` + // An optional final status for this span. Semantically when Status isn't set, it means + // span's status code is unset, i.e. assume STATUS_CODE_UNSET (code = 0). + Status *Status `json:"status,omitempty"` +} + +// MarshalJSON encodes s into OTLP formatted JSON. +func (s Span) MarshalJSON() ([]byte, error) { + startT := s.StartTime.UnixNano() + if s.StartTime.IsZero() || startT < 0 { + startT = 0 + } + + endT := s.EndTime.UnixNano() + if s.EndTime.IsZero() || endT < 0 { + endT = 0 + } + + // Override non-empty default SpanID marshal and omitempty. + var parentSpanId string + if !s.ParentSpanID.IsEmpty() { + b := make([]byte, hex.EncodedLen(spanIDSize)) + hex.Encode(b, s.ParentSpanID[:]) + parentSpanId = string(b) + } + + type Alias Span + return json.Marshal(struct { + Alias + ParentSpanID string `json:"parentSpanId,omitempty"` + StartTime uint64 `json:"startTimeUnixNano,omitempty"` + EndTime uint64 `json:"endTimeUnixNano,omitempty"` + }{ + Alias: Alias(s), + ParentSpanID: parentSpanId, + StartTime: uint64(startT), + EndTime: uint64(endT), + }) +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into s. +func (s *Span) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Span type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Span field: %#v", keyIface) + } + + switch key { + case "traceId", "trace_id": + err = decoder.Decode(&s.TraceID) + case "spanId", "span_id": + err = decoder.Decode(&s.SpanID) + case "traceState", "trace_state": + err = decoder.Decode(&s.TraceState) + case "parentSpanId", "parent_span_id": + err = decoder.Decode(&s.ParentSpanID) + case "flags": + err = decoder.Decode(&s.Flags) + case "name": + err = decoder.Decode(&s.Name) + case "kind": + err = decoder.Decode(&s.Kind) + case "startTimeUnixNano", "start_time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + s.StartTime = time.Unix(0, int64(val.Uint64())) + case "endTimeUnixNano", "end_time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + s.EndTime = time.Unix(0, int64(val.Uint64())) + case "attributes": + err = decoder.Decode(&s.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&s.DroppedAttrs) + case "events": + err = decoder.Decode(&s.Events) + case "droppedEventsCount", "dropped_events_count": + err = decoder.Decode(&s.DroppedEvents) + case "links": + err = decoder.Decode(&s.Links) + case "droppedLinksCount", "dropped_links_count": + err = decoder.Decode(&s.DroppedLinks) + case "status": + err = decoder.Decode(&s.Status) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// SpanFlags represents constants used to interpret the +// Span.flags field, which is protobuf 'fixed32' type and is to +// be used as bit-fields. Each non-zero value defined in this enum is +// a bit-mask. To extract the bit-field, for example, use an +// expression like: +// +// (span.flags & SPAN_FLAGS_TRACE_FLAGS_MASK) +// +// See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. +// +// Note that Span flags were introduced in version 1.1 of the +// OpenTelemetry protocol. Older Span producers do not set this +// field, consequently consumers should not rely on the absence of a +// particular flag bit to indicate the presence of a particular feature. +type SpanFlags int32 + +const ( + // Bits 0-7 are used for trace flags. + SpanFlagsTraceFlagsMask SpanFlags = 255 + // Bits 8 and 9 are used to indicate that the parent span or link span is remote. + // Bit 8 (`HAS_IS_REMOTE`) indicates whether the value is known. + // Bit 9 (`IS_REMOTE`) indicates whether the span or link is remote. + SpanFlagsContextHasIsRemoteMask SpanFlags = 256 + // SpanFlagsContextHasIsRemoteMask indicates the Span is remote. + SpanFlagsContextIsRemoteMask SpanFlags = 512 +) + +// SpanKind is the type of span. Can be used to specify additional relationships between spans +// in addition to a parent/child relationship. +type SpanKind int32 + +const ( + // Indicates that the span represents an internal operation within an application, + // as opposed to an operation happening at the boundaries. Default value. + SpanKindInternal SpanKind = 1 + // Indicates that the span covers server-side handling of an RPC or other + // remote network request. + SpanKindServer SpanKind = 2 + // Indicates that the span describes a request to some remote service. + SpanKindClient SpanKind = 3 + // Indicates that the span describes a producer sending a message to a broker. + // Unlike CLIENT and SERVER, there is often no direct critical path latency relationship + // between producer and consumer spans. A PRODUCER span ends when the message was accepted + // by the broker while the logical processing of the message might span a much longer time. + SpanKindProducer SpanKind = 4 + // Indicates that the span describes consumer receiving a message from a broker. + // Like the PRODUCER kind, there is often no direct critical path latency relationship + // between producer and consumer spans. + SpanKindConsumer SpanKind = 5 +) + +// Event is a time-stamped annotation of the span, consisting of user-supplied +// text description and key-value pairs. +type SpanEvent struct { + // time_unix_nano is the time the event occurred. + Time time.Time `json:"timeUnixNano,omitempty"` + // name of the event. + // This field is semantically required to be set to non-empty string. + Name string `json:"name,omitempty"` + // attributes is a collection of attribute key/value pairs on the event. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// MarshalJSON encodes e into OTLP formatted JSON. +func (e SpanEvent) MarshalJSON() ([]byte, error) { + t := e.Time.UnixNano() + if e.Time.IsZero() || t < 0 { + t = 0 + } + + type Alias SpanEvent + return json.Marshal(struct { + Alias + Time uint64 `json:"timeUnixNano,omitempty"` + }{ + Alias: Alias(e), + Time: uint64(t), + }) +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into se. +func (se *SpanEvent) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid SpanEvent type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid SpanEvent field: %#v", keyIface) + } + + switch key { + case "timeUnixNano", "time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + se.Time = time.Unix(0, int64(val.Uint64())) + case "name": + err = decoder.Decode(&se.Name) + case "attributes": + err = decoder.Decode(&se.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&se.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// A pointer from the current span to another span in the same trace or in a +// different trace. For example, this can be used in batching operations, +// where a single batch handler processes multiple requests from different +// traces or when the handler receives a request from a different project. +type SpanLink struct { + // A unique identifier of a trace that this linked span is part of. The ID is a + // 16-byte array. + TraceID TraceID `json:"traceId,omitempty"` + // A unique identifier for the linked span. The ID is an 8-byte array. + SpanID SpanID `json:"spanId,omitempty"` + // The trace_state associated with the link. + TraceState string `json:"traceState,omitempty"` + // attributes is a collection of attribute key/value pairs on the link. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether the link is remote. + // The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the link is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // When creating new spans, bits 10-31 (most-significant 22-bits) MUST be zero. + // + // [Optional]. + Flags uint32 `json:"flags,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into sl. +func (sl *SpanLink) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid SpanLink type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid SpanLink field: %#v", keyIface) + } + + switch key { + case "traceId", "trace_id": + err = decoder.Decode(&sl.TraceID) + case "spanId", "span_id": + err = decoder.Decode(&sl.SpanID) + case "traceState", "trace_state": + err = decoder.Decode(&sl.TraceState) + case "attributes": + err = decoder.Decode(&sl.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&sl.DroppedAttrs) + case "flags": + err = decoder.Decode(&sl.Flags) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/status.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/status.go new file mode 100644 index 0000000000..1217776ead --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/status.go @@ -0,0 +1,40 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +// For the semantics of status codes see +// https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/trace/api.md#set-status +type StatusCode int32 + +const ( + // The default status. + StatusCodeUnset StatusCode = 0 + // The Span has been validated by an Application developer or Operator to + // have completed successfully. + StatusCodeOK StatusCode = 1 + // The Span contains an error. + StatusCodeError StatusCode = 2 +) + +var statusCodeStrings = []string{ + "Unset", + "OK", + "Error", +} + +func (s StatusCode) String() string { + if s >= 0 && int(s) < len(statusCodeStrings) { + return statusCodeStrings[s] + } + return "" +} + +// The Status type defines a logical error model that is suitable for different +// programming environments, including REST APIs and RPC APIs. +type Status struct { + // A developer-facing human readable error message. + Message string `json:"message,omitempty"` + // The status code. + Code StatusCode `json:"code,omitempty"` +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/traces.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/traces.go new file mode 100644 index 0000000000..69a348f0f0 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/traces.go @@ -0,0 +1,189 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Traces represents the traces data that can be stored in a persistent storage, +// OR can be embedded by other protocols that transfer OTLP traces data but do +// not implement the OTLP protocol. +// +// The main difference between this message and collector protocol is that +// in this message there will not be any "control" or "metadata" specific to +// OTLP protocol. +// +// When new fields are added into this message, the OTLP request MUST be updated +// as well. +type Traces struct { + // An array of ResourceSpans. + // For data coming from a single resource this array will typically contain + // one element. Intermediary nodes that receive data from multiple origins + // typically batch the data before forwarding further and in that case this + // array will contain multiple elements. + ResourceSpans []*ResourceSpans `json:"resourceSpans,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into td. +func (td *Traces) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid TracesData type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid TracesData field: %#v", keyIface) + } + + switch key { + case "resourceSpans", "resource_spans": + err = decoder.Decode(&td.ResourceSpans) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// A collection of ScopeSpans from a Resource. +type ResourceSpans struct { + // The resource for the spans in this message. + // If this field is not set then no resource info is known. + Resource Resource `json:"resource"` + // A list of ScopeSpans that originate from a resource. + ScopeSpans []*ScopeSpans `json:"scopeSpans,omitempty"` + // This schema_url applies to the data in the "resource" field. It does not apply + // to the data in the "scope_spans" field which have their own schema_url field. + SchemaURL string `json:"schemaUrl,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into rs. +func (rs *ResourceSpans) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid ResourceSpans type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid ResourceSpans field: %#v", keyIface) + } + + switch key { + case "resource": + err = decoder.Decode(&rs.Resource) + case "scopeSpans", "scope_spans": + err = decoder.Decode(&rs.ScopeSpans) + case "schemaUrl", "schema_url": + err = decoder.Decode(&rs.SchemaURL) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// A collection of Spans produced by an InstrumentationScope. +type ScopeSpans struct { + // The instrumentation scope information for the spans in this message. + // Semantically when InstrumentationScope isn't set, it is equivalent with + // an empty instrumentation scope name (unknown). + Scope *Scope `json:"scope"` + // A list of Spans that originate from an instrumentation scope. + Spans []*Span `json:"spans,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the span data + // is recorded in. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to all spans and span events in the "spans" field. + SchemaURL string `json:"schemaUrl,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into ss. +func (ss *ScopeSpans) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid ScopeSpans type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid ScopeSpans field: %#v", keyIface) + } + + switch key { + case "scope": + err = decoder.Decode(&ss.Scope) + case "spans": + err = decoder.Decode(&ss.Spans) + case "schemaUrl", "schema_url": + err = decoder.Decode(&ss.SchemaURL) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/value.go b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/value.go new file mode 100644 index 0000000000..0dd01b063a --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/internal/telemetry/value.go @@ -0,0 +1,452 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:generate stringer -type=ValueKind -trimprefix=ValueKind + +package telemetry + +import ( + "bytes" + "cmp" + "encoding/base64" + "encoding/json" + "errors" + "fmt" + "io" + "math" + "slices" + "strconv" + "unsafe" +) + +// A Value represents a structured value. +// A zero value is valid and represents an empty value. +type Value struct { + // Ensure forward compatibility by explicitly making this not comparable. + noCmp [0]func() //nolint: unused // This is indeed used. + + // num holds the value for Int64, Float64, and Bool. It holds the length + // for String, Bytes, Slice, Map. + num uint64 + // any holds either the KindBool, KindInt64, KindFloat64, stringptr, + // bytesptr, sliceptr, or mapptr. If KindBool, KindInt64, or KindFloat64 + // then the value of Value is in num as described above. Otherwise, it + // contains the value wrapped in the appropriate type. + any any +} + +type ( + // sliceptr represents a value in Value.any for KindString Values. + stringptr *byte + // bytesptr represents a value in Value.any for KindBytes Values. + bytesptr *byte + // sliceptr represents a value in Value.any for KindSlice Values. + sliceptr *Value + // mapptr represents a value in Value.any for KindMap Values. + mapptr *Attr +) + +// ValueKind is the kind of a [Value]. +type ValueKind int + +// ValueKind values. +const ( + ValueKindEmpty ValueKind = iota + ValueKindBool + ValueKindFloat64 + ValueKindInt64 + ValueKindString + ValueKindBytes + ValueKindSlice + ValueKindMap +) + +var valueKindStrings = []string{ + "Empty", + "Bool", + "Float64", + "Int64", + "String", + "Bytes", + "Slice", + "Map", +} + +func (k ValueKind) String() string { + if k >= 0 && int(k) < len(valueKindStrings) { + return valueKindStrings[k] + } + return "" +} + +// StringValue returns a new [Value] for a string. +func StringValue(v string) Value { + return Value{ + num: uint64(len(v)), + any: stringptr(unsafe.StringData(v)), + } +} + +// IntValue returns a [Value] for an int. +func IntValue(v int) Value { return Int64Value(int64(v)) } + +// Int64Value returns a [Value] for an int64. +func Int64Value(v int64) Value { + return Value{num: uint64(v), any: ValueKindInt64} +} + +// Float64Value returns a [Value] for a float64. +func Float64Value(v float64) Value { + return Value{num: math.Float64bits(v), any: ValueKindFloat64} +} + +// BoolValue returns a [Value] for a bool. +func BoolValue(v bool) Value { //nolint:revive // Not a control flag. + var n uint64 + if v { + n = 1 + } + return Value{num: n, any: ValueKindBool} +} + +// BytesValue returns a [Value] for a byte slice. The passed slice must not be +// changed after it is passed. +func BytesValue(v []byte) Value { + return Value{ + num: uint64(len(v)), + any: bytesptr(unsafe.SliceData(v)), + } +} + +// SliceValue returns a [Value] for a slice of [Value]. The passed slice must +// not be changed after it is passed. +func SliceValue(vs ...Value) Value { + return Value{ + num: uint64(len(vs)), + any: sliceptr(unsafe.SliceData(vs)), + } +} + +// MapValue returns a new [Value] for a slice of key-value pairs. The passed +// slice must not be changed after it is passed. +func MapValue(kvs ...Attr) Value { + return Value{ + num: uint64(len(kvs)), + any: mapptr(unsafe.SliceData(kvs)), + } +} + +// AsString returns the value held by v as a string. +func (v Value) AsString() string { + if sp, ok := v.any.(stringptr); ok { + return unsafe.String(sp, v.num) + } + // TODO: error handle + return "" +} + +// asString returns the value held by v as a string. It will panic if the Value +// is not KindString. +func (v Value) asString() string { + return unsafe.String(v.any.(stringptr), v.num) +} + +// AsInt64 returns the value held by v as an int64. +func (v Value) AsInt64() int64 { + if v.Kind() != ValueKindInt64 { + // TODO: error handle + return 0 + } + return v.asInt64() +} + +// asInt64 returns the value held by v as an int64. If v is not of KindInt64, +// this will return garbage. +func (v Value) asInt64() int64 { + // Assumes v.num was a valid int64 (overflow not checked). + return int64(v.num) // nolint: gosec +} + +// AsBool returns the value held by v as a bool. +func (v Value) AsBool() bool { + if v.Kind() != ValueKindBool { + // TODO: error handle + return false + } + return v.asBool() +} + +// asBool returns the value held by v as a bool. If v is not of KindBool, this +// will return garbage. +func (v Value) asBool() bool { return v.num == 1 } + +// AsFloat64 returns the value held by v as a float64. +func (v Value) AsFloat64() float64 { + if v.Kind() != ValueKindFloat64 { + // TODO: error handle + return 0 + } + return v.asFloat64() +} + +// asFloat64 returns the value held by v as a float64. If v is not of +// KindFloat64, this will return garbage. +func (v Value) asFloat64() float64 { return math.Float64frombits(v.num) } + +// AsBytes returns the value held by v as a []byte. +func (v Value) AsBytes() []byte { + if sp, ok := v.any.(bytesptr); ok { + return unsafe.Slice((*byte)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asBytes returns the value held by v as a []byte. It will panic if the Value +// is not KindBytes. +func (v Value) asBytes() []byte { + return unsafe.Slice((*byte)(v.any.(bytesptr)), v.num) +} + +// AsSlice returns the value held by v as a []Value. +func (v Value) AsSlice() []Value { + if sp, ok := v.any.(sliceptr); ok { + return unsafe.Slice((*Value)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asSlice returns the value held by v as a []Value. It will panic if the Value +// is not KindSlice. +func (v Value) asSlice() []Value { + return unsafe.Slice((*Value)(v.any.(sliceptr)), v.num) +} + +// AsMap returns the value held by v as a []Attr. +func (v Value) AsMap() []Attr { + if sp, ok := v.any.(mapptr); ok { + return unsafe.Slice((*Attr)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asMap returns the value held by v as a []Attr. It will panic if the +// Value is not KindMap. +func (v Value) asMap() []Attr { + return unsafe.Slice((*Attr)(v.any.(mapptr)), v.num) +} + +// Kind returns the Kind of v. +func (v Value) Kind() ValueKind { + switch x := v.any.(type) { + case ValueKind: + return x + case stringptr: + return ValueKindString + case bytesptr: + return ValueKindBytes + case sliceptr: + return ValueKindSlice + case mapptr: + return ValueKindMap + default: + return ValueKindEmpty + } +} + +// Empty returns if v does not hold any value. +func (v Value) Empty() bool { return v.Kind() == ValueKindEmpty } + +// Equal returns if v is equal to w. +func (v Value) Equal(w Value) bool { + k1 := v.Kind() + k2 := w.Kind() + if k1 != k2 { + return false + } + switch k1 { + case ValueKindInt64, ValueKindBool: + return v.num == w.num + case ValueKindString: + return v.asString() == w.asString() + case ValueKindFloat64: + return v.asFloat64() == w.asFloat64() + case ValueKindSlice: + return slices.EqualFunc(v.asSlice(), w.asSlice(), Value.Equal) + case ValueKindMap: + sv := sortMap(v.asMap()) + sw := sortMap(w.asMap()) + return slices.EqualFunc(sv, sw, Attr.Equal) + case ValueKindBytes: + return bytes.Equal(v.asBytes(), w.asBytes()) + case ValueKindEmpty: + return true + default: + // TODO: error handle + return false + } +} + +func sortMap(m []Attr) []Attr { + sm := make([]Attr, len(m)) + copy(sm, m) + slices.SortFunc(sm, func(a, b Attr) int { + return cmp.Compare(a.Key, b.Key) + }) + + return sm +} + +// String returns Value's value as a string, formatted like [fmt.Sprint]. +// +// The returned string is meant for debugging; +// the string representation is not stable. +func (v Value) String() string { + switch v.Kind() { + case ValueKindString: + return v.asString() + case ValueKindInt64: + // Assumes v.num was a valid int64 (overflow not checked). + return strconv.FormatInt(int64(v.num), 10) // nolint: gosec + case ValueKindFloat64: + return strconv.FormatFloat(v.asFloat64(), 'g', -1, 64) + case ValueKindBool: + return strconv.FormatBool(v.asBool()) + case ValueKindBytes: + return fmt.Sprint(v.asBytes()) + case ValueKindMap: + return fmt.Sprint(v.asMap()) + case ValueKindSlice: + return fmt.Sprint(v.asSlice()) + case ValueKindEmpty: + return "" + default: + // Try to handle this as gracefully as possible. + // + // Don't panic here. The goal here is to have developers find this + // first if a slog.Kind is is not handled. It is + // preferable to have user's open issue asking why their attributes + // have a "unhandled: " prefix than say that their code is panicking. + return fmt.Sprintf("", v.Kind()) + } +} + +// MarshalJSON encodes v into OTLP formatted JSON. +func (v *Value) MarshalJSON() ([]byte, error) { + switch v.Kind() { + case ValueKindString: + return json.Marshal(struct { + Value string `json:"stringValue"` + }{v.asString()}) + case ValueKindInt64: + return json.Marshal(struct { + Value string `json:"intValue"` + }{strconv.FormatInt(int64(v.num), 10)}) + case ValueKindFloat64: + return json.Marshal(struct { + Value float64 `json:"doubleValue"` + }{v.asFloat64()}) + case ValueKindBool: + return json.Marshal(struct { + Value bool `json:"boolValue"` + }{v.asBool()}) + case ValueKindBytes: + return json.Marshal(struct { + Value []byte `json:"bytesValue"` + }{v.asBytes()}) + case ValueKindMap: + return json.Marshal(struct { + Value struct { + Values []Attr `json:"values"` + } `json:"kvlistValue"` + }{struct { + Values []Attr `json:"values"` + }{v.asMap()}}) + case ValueKindSlice: + return json.Marshal(struct { + Value struct { + Values []Value `json:"values"` + } `json:"arrayValue"` + }{struct { + Values []Value `json:"values"` + }{v.asSlice()}}) + case ValueKindEmpty: + return nil, nil + default: + return nil, fmt.Errorf("unknown Value kind: %s", v.Kind().String()) + } +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into v. +func (v *Value) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Value type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Value key: %#v", keyIface) + } + + switch key { + case "stringValue", "string_value": + var val string + err = decoder.Decode(&val) + *v = StringValue(val) + case "boolValue", "bool_value": + var val bool + err = decoder.Decode(&val) + *v = BoolValue(val) + case "intValue", "int_value": + var val protoInt64 + err = decoder.Decode(&val) + *v = Int64Value(val.Int64()) + case "doubleValue", "double_value": + var val float64 + err = decoder.Decode(&val) + *v = Float64Value(val) + case "bytesValue", "bytes_value": + var val64 string + if err := decoder.Decode(&val64); err != nil { + return err + } + var val []byte + val, err = base64.StdEncoding.DecodeString(val64) + *v = BytesValue(val) + case "arrayValue", "array_value": + var val struct{ Values []Value } + err = decoder.Decode(&val) + *v = SliceValue(val.Values...) + case "kvlistValue", "kvlist_value": + var val struct{ Values []Attr } + err = decoder.Decode(&val) + *v = MapValue(val.Values...) + default: + // Skip unknown. + continue + } + // Use first valid. Ignore the rest. + return err + } + + // Only unknown fields. Return nil without unmarshaling any value. + return nil +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/limit.go b/vendor/go.opentelemetry.io/auto/sdk/limit.go new file mode 100644 index 0000000000..86babf1a88 --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/limit.go @@ -0,0 +1,94 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package sdk + +import ( + "log/slog" + "os" + "strconv" +) + +// maxSpan are the span limits resolved during startup. +var maxSpan = newSpanLimits() + +type spanLimits struct { + // Attrs is the number of allowed attributes for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT key if it exists. Otherwise, the + // environment variable value for OTEL_ATTRIBUTE_COUNT_LIMIT, or 128 if + // that is not set, is used. + Attrs int + // AttrValueLen is the maximum attribute value length allowed for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT key if it exists. Otherwise, the + // environment variable value for OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT, or -1 + // if that is not set, is used. + AttrValueLen int + // Events is the number of allowed events for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_EVENT_COUNT_LIMIT key, or 128 is used if that is not set. + Events int + // EventAttrs is the number of allowed attributes for a span event. + // + // The is resolved from the environment variable value for the + // OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT key, or 128 is used if that is not set. + EventAttrs int + // Links is the number of allowed Links for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_LINK_COUNT_LIMIT, or 128 is used if that is not set. + Links int + // LinkAttrs is the number of allowed attributes for a span link. + // + // This is resolved from the environment variable value for the + // OTEL_LINK_ATTRIBUTE_COUNT_LIMIT, or 128 is used if that is not set. + LinkAttrs int +} + +func newSpanLimits() spanLimits { + return spanLimits{ + Attrs: firstEnv( + 128, + "OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT", + "OTEL_ATTRIBUTE_COUNT_LIMIT", + ), + AttrValueLen: firstEnv( + -1, // Unlimited. + "OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT", + "OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT", + ), + Events: firstEnv(128, "OTEL_SPAN_EVENT_COUNT_LIMIT"), + EventAttrs: firstEnv(128, "OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT"), + Links: firstEnv(128, "OTEL_SPAN_LINK_COUNT_LIMIT"), + LinkAttrs: firstEnv(128, "OTEL_LINK_ATTRIBUTE_COUNT_LIMIT"), + } +} + +// firstEnv returns the parsed integer value of the first matching environment +// variable from keys. The defaultVal is returned if the value is not an +// integer or no match is found. +func firstEnv(defaultVal int, keys ...string) int { + for _, key := range keys { + strV := os.Getenv(key) + if strV == "" { + continue + } + + v, err := strconv.Atoi(strV) + if err == nil { + return v + } + slog.Warn( + "invalid limit environment variable", + "error", err, + "key", key, + "value", strV, + ) + } + + return defaultVal +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/span.go b/vendor/go.opentelemetry.io/auto/sdk/span.go new file mode 100644 index 0000000000..6ebea12a9e --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/span.go @@ -0,0 +1,432 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package sdk + +import ( + "encoding/json" + "fmt" + "reflect" + "runtime" + "strings" + "sync" + "sync/atomic" + "time" + "unicode/utf8" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + semconv "go.opentelemetry.io/otel/semconv/v1.26.0" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/noop" + + "go.opentelemetry.io/auto/sdk/internal/telemetry" +) + +type span struct { + noop.Span + + spanContext trace.SpanContext + sampled atomic.Bool + + mu sync.Mutex + traces *telemetry.Traces + span *telemetry.Span +} + +func (s *span) SpanContext() trace.SpanContext { + if s == nil { + return trace.SpanContext{} + } + // s.spanContext is immutable, do not acquire lock s.mu. + return s.spanContext +} + +func (s *span) IsRecording() bool { + if s == nil { + return false + } + + return s.sampled.Load() +} + +func (s *span) SetStatus(c codes.Code, msg string) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + if s.span.Status == nil { + s.span.Status = new(telemetry.Status) + } + + s.span.Status.Message = msg + + switch c { + case codes.Unset: + s.span.Status.Code = telemetry.StatusCodeUnset + case codes.Error: + s.span.Status.Code = telemetry.StatusCodeError + case codes.Ok: + s.span.Status.Code = telemetry.StatusCodeOK + } +} + +func (s *span) SetAttributes(attrs ...attribute.KeyValue) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + limit := maxSpan.Attrs + if limit == 0 { + // No attributes allowed. + s.span.DroppedAttrs += uint32(len(attrs)) + return + } + + m := make(map[string]int) + for i, a := range s.span.Attrs { + m[a.Key] = i + } + + for _, a := range attrs { + val := convAttrValue(a.Value) + if val.Empty() { + s.span.DroppedAttrs++ + continue + } + + if idx, ok := m[string(a.Key)]; ok { + s.span.Attrs[idx] = telemetry.Attr{ + Key: string(a.Key), + Value: val, + } + } else if limit < 0 || len(s.span.Attrs) < limit { + s.span.Attrs = append(s.span.Attrs, telemetry.Attr{ + Key: string(a.Key), + Value: val, + }) + m[string(a.Key)] = len(s.span.Attrs) - 1 + } else { + s.span.DroppedAttrs++ + } + } +} + +// convCappedAttrs converts up to limit attrs into a []telemetry.Attr. The +// number of dropped attributes is also returned. +func convCappedAttrs(limit int, attrs []attribute.KeyValue) ([]telemetry.Attr, uint32) { + if limit == 0 { + return nil, uint32(len(attrs)) + } + + if limit < 0 { + // Unlimited. + return convAttrs(attrs), 0 + } + + limit = min(len(attrs), limit) + return convAttrs(attrs[:limit]), uint32(len(attrs) - limit) +} + +func convAttrs(attrs []attribute.KeyValue) []telemetry.Attr { + if len(attrs) == 0 { + // Avoid allocations if not necessary. + return nil + } + + out := make([]telemetry.Attr, 0, len(attrs)) + for _, attr := range attrs { + key := string(attr.Key) + val := convAttrValue(attr.Value) + if val.Empty() { + continue + } + out = append(out, telemetry.Attr{Key: key, Value: val}) + } + return out +} + +func convAttrValue(value attribute.Value) telemetry.Value { + switch value.Type() { + case attribute.BOOL: + return telemetry.BoolValue(value.AsBool()) + case attribute.INT64: + return telemetry.Int64Value(value.AsInt64()) + case attribute.FLOAT64: + return telemetry.Float64Value(value.AsFloat64()) + case attribute.STRING: + v := truncate(maxSpan.AttrValueLen, value.AsString()) + return telemetry.StringValue(v) + case attribute.BOOLSLICE: + slice := value.AsBoolSlice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.BoolValue(v)) + } + return telemetry.SliceValue(out...) + case attribute.INT64SLICE: + slice := value.AsInt64Slice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.Int64Value(v)) + } + return telemetry.SliceValue(out...) + case attribute.FLOAT64SLICE: + slice := value.AsFloat64Slice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.Float64Value(v)) + } + return telemetry.SliceValue(out...) + case attribute.STRINGSLICE: + slice := value.AsStringSlice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + v = truncate(maxSpan.AttrValueLen, v) + out = append(out, telemetry.StringValue(v)) + } + return telemetry.SliceValue(out...) + } + return telemetry.Value{} +} + +// truncate returns a truncated version of s such that it contains less than +// the limit number of characters. Truncation is applied by returning the limit +// number of valid characters contained in s. +// +// If limit is negative, it returns the original string. +// +// UTF-8 is supported. When truncating, all invalid characters are dropped +// before applying truncation. +// +// If s already contains less than the limit number of bytes, it is returned +// unchanged. No invalid characters are removed. +func truncate(limit int, s string) string { + // This prioritize performance in the following order based on the most + // common expected use-cases. + // + // - Short values less than the default limit (128). + // - Strings with valid encodings that exceed the limit. + // - No limit. + // - Strings with invalid encodings that exceed the limit. + if limit < 0 || len(s) <= limit { + return s + } + + // Optimistically, assume all valid UTF-8. + var b strings.Builder + count := 0 + for i, c := range s { + if c != utf8.RuneError { + count++ + if count > limit { + return s[:i] + } + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // Invalid encoding. + b.Grow(len(s) - 1) + _, _ = b.WriteString(s[:i]) + s = s[i:] + break + } + } + + // Fast-path, no invalid input. + if b.Cap() == 0 { + return s + } + + // Truncate while validating UTF-8. + for i := 0; i < len(s) && count < limit; { + c := s[i] + if c < utf8.RuneSelf { + // Optimization for single byte runes (common case). + _ = b.WriteByte(c) + i++ + count++ + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // We checked for all 1-byte runes above, this is a RuneError. + i++ + continue + } + + _, _ = b.WriteString(s[i : i+size]) + i += size + count++ + } + + return b.String() +} + +func (s *span) End(opts ...trace.SpanEndOption) { + if s == nil || !s.sampled.Swap(false) { + return + } + + // s.end exists so the lock (s.mu) is not held while s.ended is called. + s.ended(s.end(opts)) +} + +func (s *span) end(opts []trace.SpanEndOption) []byte { + s.mu.Lock() + defer s.mu.Unlock() + + cfg := trace.NewSpanEndConfig(opts...) + if t := cfg.Timestamp(); !t.IsZero() { + s.span.EndTime = cfg.Timestamp() + } else { + s.span.EndTime = time.Now() + } + + b, _ := json.Marshal(s.traces) // TODO: do not ignore this error. + return b +} + +// Expected to be implemented in eBPF. +// +//go:noinline +func (*span) ended(buf []byte) { ended(buf) } + +// ended is used for testing. +var ended = func([]byte) {} + +func (s *span) RecordError(err error, opts ...trace.EventOption) { + if s == nil || err == nil || !s.sampled.Load() { + return + } + + cfg := trace.NewEventConfig(opts...) + + attrs := cfg.Attributes() + attrs = append(attrs, + semconv.ExceptionType(typeStr(err)), + semconv.ExceptionMessage(err.Error()), + ) + if cfg.StackTrace() { + buf := make([]byte, 2048) + n := runtime.Stack(buf, false) + attrs = append(attrs, semconv.ExceptionStacktrace(string(buf[0:n]))) + } + + s.mu.Lock() + defer s.mu.Unlock() + + s.addEvent(semconv.ExceptionEventName, cfg.Timestamp(), attrs) +} + +func typeStr(i any) string { + t := reflect.TypeOf(i) + if t.PkgPath() == "" && t.Name() == "" { + // Likely a builtin type. + return t.String() + } + return fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()) +} + +func (s *span) AddEvent(name string, opts ...trace.EventOption) { + if s == nil || !s.sampled.Load() { + return + } + + cfg := trace.NewEventConfig(opts...) + + s.mu.Lock() + defer s.mu.Unlock() + + s.addEvent(name, cfg.Timestamp(), cfg.Attributes()) +} + +// addEvent adds an event with name and attrs at tStamp to the span. The span +// lock (s.mu) needs to be held by the caller. +func (s *span) addEvent(name string, tStamp time.Time, attrs []attribute.KeyValue) { + limit := maxSpan.Events + + if limit == 0 { + s.span.DroppedEvents++ + return + } + + if limit > 0 && len(s.span.Events) == limit { + // Drop head while avoiding allocation of more capacity. + copy(s.span.Events[:limit-1], s.span.Events[1:]) + s.span.Events = s.span.Events[:limit-1] + s.span.DroppedEvents++ + } + + e := &telemetry.SpanEvent{Time: tStamp, Name: name} + e.Attrs, e.DroppedAttrs = convCappedAttrs(maxSpan.EventAttrs, attrs) + + s.span.Events = append(s.span.Events, e) +} + +func (s *span) AddLink(link trace.Link) { + if s == nil || !s.sampled.Load() { + return + } + + l := maxSpan.Links + + s.mu.Lock() + defer s.mu.Unlock() + + if l == 0 { + s.span.DroppedLinks++ + return + } + + if l > 0 && len(s.span.Links) == l { + // Drop head while avoiding allocation of more capacity. + copy(s.span.Links[:l-1], s.span.Links[1:]) + s.span.Links = s.span.Links[:l-1] + s.span.DroppedLinks++ + } + + s.span.Links = append(s.span.Links, convLink(link)) +} + +func convLinks(links []trace.Link) []*telemetry.SpanLink { + out := make([]*telemetry.SpanLink, 0, len(links)) + for _, link := range links { + out = append(out, convLink(link)) + } + return out +} + +func convLink(link trace.Link) *telemetry.SpanLink { + l := &telemetry.SpanLink{ + TraceID: telemetry.TraceID(link.SpanContext.TraceID()), + SpanID: telemetry.SpanID(link.SpanContext.SpanID()), + TraceState: link.SpanContext.TraceState().String(), + Flags: uint32(link.SpanContext.TraceFlags()), + } + l.Attrs, l.DroppedAttrs = convCappedAttrs(maxSpan.LinkAttrs, link.Attributes) + + return l +} + +func (s *span) SetName(name string) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + s.span.Name = name +} + +func (*span) TracerProvider() trace.TracerProvider { return TracerProvider() } diff --git a/vendor/go.opentelemetry.io/auto/sdk/tracer.go b/vendor/go.opentelemetry.io/auto/sdk/tracer.go new file mode 100644 index 0000000000..cbcfabde3b --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/tracer.go @@ -0,0 +1,124 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package sdk + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/noop" + + "go.opentelemetry.io/auto/sdk/internal/telemetry" +) + +type tracer struct { + noop.Tracer + + name, schemaURL, version string +} + +var _ trace.Tracer = tracer{} + +func (t tracer) Start(ctx context.Context, name string, opts ...trace.SpanStartOption) (context.Context, trace.Span) { + var psc trace.SpanContext + sampled := true + span := new(span) + + // Ask eBPF for sampling decision and span context info. + t.start(ctx, span, &psc, &sampled, &span.spanContext) + + span.sampled.Store(sampled) + + ctx = trace.ContextWithSpan(ctx, span) + + if sampled { + // Only build traces if sampled. + cfg := trace.NewSpanStartConfig(opts...) + span.traces, span.span = t.traces(name, cfg, span.spanContext, psc) + } + + return ctx, span +} + +// Expected to be implemented in eBPF. +// +//go:noinline +func (t *tracer) start( + ctx context.Context, + spanPtr *span, + psc *trace.SpanContext, + sampled *bool, + sc *trace.SpanContext, +) { + start(ctx, spanPtr, psc, sampled, sc) +} + +// start is used for testing. +var start = func(context.Context, *span, *trace.SpanContext, *bool, *trace.SpanContext) {} + +func (t tracer) traces(name string, cfg trace.SpanConfig, sc, psc trace.SpanContext) (*telemetry.Traces, *telemetry.Span) { + span := &telemetry.Span{ + TraceID: telemetry.TraceID(sc.TraceID()), + SpanID: telemetry.SpanID(sc.SpanID()), + Flags: uint32(sc.TraceFlags()), + TraceState: sc.TraceState().String(), + ParentSpanID: telemetry.SpanID(psc.SpanID()), + Name: name, + Kind: spanKind(cfg.SpanKind()), + } + + span.Attrs, span.DroppedAttrs = convCappedAttrs(maxSpan.Attrs, cfg.Attributes()) + + links := cfg.Links() + if limit := maxSpan.Links; limit == 0 { + span.DroppedLinks = uint32(len(links)) + } else { + if limit > 0 { + n := max(len(links)-limit, 0) + span.DroppedLinks = uint32(n) + links = links[n:] + } + span.Links = convLinks(links) + } + + if t := cfg.Timestamp(); !t.IsZero() { + span.StartTime = cfg.Timestamp() + } else { + span.StartTime = time.Now() + } + + return &telemetry.Traces{ + ResourceSpans: []*telemetry.ResourceSpans{ + { + ScopeSpans: []*telemetry.ScopeSpans{ + { + Scope: &telemetry.Scope{ + Name: t.name, + Version: t.version, + }, + Spans: []*telemetry.Span{span}, + SchemaURL: t.schemaURL, + }, + }, + }, + }, + }, span +} + +func spanKind(kind trace.SpanKind) telemetry.SpanKind { + switch kind { + case trace.SpanKindInternal: + return telemetry.SpanKindInternal + case trace.SpanKindServer: + return telemetry.SpanKindServer + case trace.SpanKindClient: + return telemetry.SpanKindClient + case trace.SpanKindProducer: + return telemetry.SpanKindProducer + case trace.SpanKindConsumer: + return telemetry.SpanKindConsumer + } + return telemetry.SpanKind(0) // undefined. +} diff --git a/vendor/go.opentelemetry.io/auto/sdk/tracer_provider.go b/vendor/go.opentelemetry.io/auto/sdk/tracer_provider.go new file mode 100644 index 0000000000..dbc477a59a --- /dev/null +++ b/vendor/go.opentelemetry.io/auto/sdk/tracer_provider.go @@ -0,0 +1,33 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package sdk + +import ( + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/noop" +) + +// TracerProvider returns an auto-instrumentable [trace.TracerProvider]. +// +// If an [go.opentelemetry.io/auto.Instrumentation] is configured to instrument +// the process using the returned TracerProvider, all of the telemetry it +// produces will be processed and handled by that Instrumentation. By default, +// if no Instrumentation instruments the TracerProvider it will not generate +// any trace telemetry. +func TracerProvider() trace.TracerProvider { return tracerProviderInstance } + +var tracerProviderInstance = new(tracerProvider) + +type tracerProvider struct{ noop.TracerProvider } + +var _ trace.TracerProvider = tracerProvider{} + +func (p tracerProvider) Tracer(name string, opts ...trace.TracerOption) trace.Tracer { + cfg := trace.NewTracerConfig(opts...) + return tracer{ + name: name, + version: cfg.InstrumentationVersion(), + schemaURL: cfg.SchemaURL(), + } +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/LICENSE b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/client.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/client.go new file mode 100644 index 0000000000..b25641c55d --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/client.go @@ -0,0 +1,50 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "context" + "io" + "net/http" + "net/url" + "strings" +) + +// DefaultClient is the default Client and is used by Get, Head, Post and PostForm. +// Please be careful of initialization order - for example, if you change +// the global propagator, the DefaultClient might still be using the old one. +var DefaultClient = &http.Client{Transport: NewTransport(http.DefaultTransport)} + +// Get is a convenient replacement for http.Get that adds a span around the request. +func Get(ctx context.Context, targetURL string) (resp *http.Response, err error) { + req, err := http.NewRequestWithContext(ctx, http.MethodGet, targetURL, nil) + if err != nil { + return nil, err + } + return DefaultClient.Do(req) +} + +// Head is a convenient replacement for http.Head that adds a span around the request. +func Head(ctx context.Context, targetURL string) (resp *http.Response, err error) { + req, err := http.NewRequestWithContext(ctx, http.MethodHead, targetURL, nil) + if err != nil { + return nil, err + } + return DefaultClient.Do(req) +} + +// Post is a convenient replacement for http.Post that adds a span around the request. +func Post(ctx context.Context, targetURL, contentType string, body io.Reader) (resp *http.Response, err error) { + req, err := http.NewRequestWithContext(ctx, http.MethodPost, targetURL, body) + if err != nil { + return nil, err + } + req.Header.Set("Content-Type", contentType) + return DefaultClient.Do(req) +} + +// PostForm is a convenient replacement for http.PostForm that adds a span around the request. +func PostForm(ctx context.Context, targetURL string, data url.Values) (resp *http.Response, err error) { + return Post(ctx, targetURL, "application/x-www-form-urlencoded", strings.NewReader(data.Encode())) +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go new file mode 100644 index 0000000000..a83a026274 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/common.go @@ -0,0 +1,27 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "net/http" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/trace" +) + +// Attribute keys that can be added to a span. +const ( + ReadBytesKey = attribute.Key("http.read_bytes") // if anything was read from the request body, the total number of bytes read + ReadErrorKey = attribute.Key("http.read_error") // If an error occurred while reading a request, the string of the error (io.EOF is not recorded) + WroteBytesKey = attribute.Key("http.wrote_bytes") // if anything was written to the response writer, the total number of bytes written + WriteErrorKey = attribute.Key("http.write_error") // if an error occurred while writing a reply, the string of the error (io.EOF is not recorded) +) + +// Filter is a predicate used to determine whether a given http.request should +// be traced. A Filter must return true if the request should be traced. +type Filter func(*http.Request) bool + +func newTracer(tp trace.TracerProvider) trace.Tracer { + return tp.Tracer(ScopeName, trace.WithInstrumentationVersion(Version())) +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go new file mode 100644 index 0000000000..6bd50d4c9b --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/config.go @@ -0,0 +1,211 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "context" + "net/http" + "net/http/httptrace" + + "go.opentelemetry.io/otel/attribute" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/propagation" + "go.opentelemetry.io/otel/trace" +) + +// ScopeName is the instrumentation scope name. +const ScopeName = "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +// config represents the configuration options available for the http.Handler +// and http.Transport types. +type config struct { + ServerName string + Tracer trace.Tracer + Meter metric.Meter + Propagators propagation.TextMapPropagator + SpanStartOptions []trace.SpanStartOption + PublicEndpoint bool + PublicEndpointFn func(*http.Request) bool + ReadEvent bool + WriteEvent bool + Filters []Filter + SpanNameFormatter func(string, *http.Request) string + ClientTrace func(context.Context) *httptrace.ClientTrace + + TracerProvider trace.TracerProvider + MeterProvider metric.MeterProvider + MetricAttributesFn func(*http.Request) []attribute.KeyValue +} + +// Option interface used for setting optional config properties. +type Option interface { + apply(*config) +} + +type optionFunc func(*config) + +func (o optionFunc) apply(c *config) { + o(c) +} + +// newConfig creates a new config struct and applies opts to it. +func newConfig(opts ...Option) *config { + c := &config{ + Propagators: otel.GetTextMapPropagator(), + MeterProvider: otel.GetMeterProvider(), + } + for _, opt := range opts { + opt.apply(c) + } + + // Tracer is only initialized if manually specified. Otherwise, can be passed with the tracing context. + if c.TracerProvider != nil { + c.Tracer = newTracer(c.TracerProvider) + } + + c.Meter = c.MeterProvider.Meter( + ScopeName, + metric.WithInstrumentationVersion(Version()), + ) + + return c +} + +// WithTracerProvider specifies a tracer provider to use for creating a tracer. +// If none is specified, the global provider is used. +func WithTracerProvider(provider trace.TracerProvider) Option { + return optionFunc(func(cfg *config) { + if provider != nil { + cfg.TracerProvider = provider + } + }) +} + +// WithMeterProvider specifies a meter provider to use for creating a meter. +// If none is specified, the global provider is used. +func WithMeterProvider(provider metric.MeterProvider) Option { + return optionFunc(func(cfg *config) { + if provider != nil { + cfg.MeterProvider = provider + } + }) +} + +// WithPublicEndpoint configures the Handler to link the span with an incoming +// span context. If this option is not provided, then the association is a child +// association instead of a link. +func WithPublicEndpoint() Option { + return optionFunc(func(c *config) { + c.PublicEndpoint = true + }) +} + +// WithPublicEndpointFn runs with every request, and allows conditionally +// configuring the Handler to link the span with an incoming span context. If +// this option is not provided or returns false, then the association is a +// child association instead of a link. +// Note: WithPublicEndpoint takes precedence over WithPublicEndpointFn. +func WithPublicEndpointFn(fn func(*http.Request) bool) Option { + return optionFunc(func(c *config) { + c.PublicEndpointFn = fn + }) +} + +// WithPropagators configures specific propagators. If this +// option isn't specified, then the global TextMapPropagator is used. +func WithPropagators(ps propagation.TextMapPropagator) Option { + return optionFunc(func(c *config) { + if ps != nil { + c.Propagators = ps + } + }) +} + +// WithSpanOptions configures an additional set of +// trace.SpanOptions, which are applied to each new span. +func WithSpanOptions(opts ...trace.SpanStartOption) Option { + return optionFunc(func(c *config) { + c.SpanStartOptions = append(c.SpanStartOptions, opts...) + }) +} + +// WithFilter adds a filter to the list of filters used by the handler. +// If any filter indicates to exclude a request then the request will not be +// traced. All filters must allow a request to be traced for a Span to be created. +// If no filters are provided then all requests are traced. +// Filters will be invoked for each processed request, it is advised to make them +// simple and fast. +func WithFilter(f Filter) Option { + return optionFunc(func(c *config) { + c.Filters = append(c.Filters, f) + }) +} + +type event int + +// Different types of events that can be recorded, see WithMessageEvents. +const ( + ReadEvents event = iota + WriteEvents +) + +// WithMessageEvents configures the Handler to record the specified events +// (span.AddEvent) on spans. By default only summary attributes are added at the +// end of the request. +// +// Valid events are: +// - ReadEvents: Record the number of bytes read after every http.Request.Body.Read +// using the ReadBytesKey +// - WriteEvents: Record the number of bytes written after every http.ResponeWriter.Write +// using the WriteBytesKey +func WithMessageEvents(events ...event) Option { + return optionFunc(func(c *config) { + for _, e := range events { + switch e { + case ReadEvents: + c.ReadEvent = true + case WriteEvents: + c.WriteEvent = true + } + } + }) +} + +// WithSpanNameFormatter takes a function that will be called on every +// request and the returned string will become the Span Name. +// +// When using [http.ServeMux] (or any middleware that sets the Pattern of [http.Request]), +// the span name formatter will run twice. Once when the span is created, and +// second time after the middleware, so the pattern can be used. +func WithSpanNameFormatter(f func(operation string, r *http.Request) string) Option { + return optionFunc(func(c *config) { + c.SpanNameFormatter = f + }) +} + +// WithClientTrace takes a function that returns client trace instance that will be +// applied to the requests sent through the otelhttp Transport. +func WithClientTrace(f func(context.Context) *httptrace.ClientTrace) Option { + return optionFunc(func(c *config) { + c.ClientTrace = f + }) +} + +// WithServerName returns an Option that sets the name of the (virtual) server +// handling requests. +func WithServerName(server string) Option { + return optionFunc(func(c *config) { + c.ServerName = server + }) +} + +// WithMetricAttributesFn returns an Option to set a function that maps an HTTP request to a slice of attribute.KeyValue. +// These attributes will be included in metrics for every request. +func WithMetricAttributesFn(metricAttributesFn func(r *http.Request) []attribute.KeyValue) Option { + return optionFunc(func(c *config) { + c.MetricAttributesFn = metricAttributesFn + }) +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go new file mode 100644 index 0000000000..56b24b982a --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/doc.go @@ -0,0 +1,7 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package otelhttp provides an http.Handler and functions that are intended +// to be used to add tracing by wrapping existing handlers (with Handler) and +// routes WithRouteTag. +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go new file mode 100644 index 0000000000..937f9b4e73 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/handler.go @@ -0,0 +1,238 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "net/http" + "time" + + "github.com/felixge/httpsnoop" + + "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" + "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/propagation" + "go.opentelemetry.io/otel/trace" +) + +// middleware is an http middleware which wraps the next handler in a span. +type middleware struct { + operation string + server string + + tracer trace.Tracer + propagators propagation.TextMapPropagator + spanStartOptions []trace.SpanStartOption + readEvent bool + writeEvent bool + filters []Filter + spanNameFormatter func(string, *http.Request) string + publicEndpoint bool + publicEndpointFn func(*http.Request) bool + metricAttributesFn func(*http.Request) []attribute.KeyValue + + semconv semconv.HTTPServer +} + +func defaultHandlerFormatter(operation string, _ *http.Request) string { + return operation +} + +// NewHandler wraps the passed handler in a span named after the operation and +// enriches it with metrics. +func NewHandler(handler http.Handler, operation string, opts ...Option) http.Handler { + return NewMiddleware(operation, opts...)(handler) +} + +// NewMiddleware returns a tracing and metrics instrumentation middleware. +// The handler returned by the middleware wraps a handler +// in a span named after the operation and enriches it with metrics. +func NewMiddleware(operation string, opts ...Option) func(http.Handler) http.Handler { + h := middleware{ + operation: operation, + } + + defaultOpts := []Option{ + WithSpanOptions(trace.WithSpanKind(trace.SpanKindServer)), + WithSpanNameFormatter(defaultHandlerFormatter), + } + + c := newConfig(append(defaultOpts, opts...)...) + h.configure(c) + + return func(next http.Handler) http.Handler { + return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { + h.serveHTTP(w, r, next) + }) + } +} + +func (h *middleware) configure(c *config) { + h.tracer = c.Tracer + h.propagators = c.Propagators + h.spanStartOptions = c.SpanStartOptions + h.readEvent = c.ReadEvent + h.writeEvent = c.WriteEvent + h.filters = c.Filters + h.spanNameFormatter = c.SpanNameFormatter + h.publicEndpoint = c.PublicEndpoint + h.publicEndpointFn = c.PublicEndpointFn + h.server = c.ServerName + h.semconv = semconv.NewHTTPServer(c.Meter) + h.metricAttributesFn = c.MetricAttributesFn +} + +// serveHTTP sets up tracing and calls the given next http.Handler with the span +// context injected into the request context. +func (h *middleware) serveHTTP(w http.ResponseWriter, r *http.Request, next http.Handler) { + requestStartTime := time.Now() + for _, f := range h.filters { + if !f(r) { + // Simply pass through to the handler if a filter rejects the request + next.ServeHTTP(w, r) + return + } + } + + ctx := h.propagators.Extract(r.Context(), propagation.HeaderCarrier(r.Header)) + opts := []trace.SpanStartOption{ + trace.WithAttributes(h.semconv.RequestTraceAttrs(h.server, r, semconv.RequestTraceAttrsOpts{})...), + } + + opts = append(opts, h.spanStartOptions...) + if h.publicEndpoint || (h.publicEndpointFn != nil && h.publicEndpointFn(r.WithContext(ctx))) { + opts = append(opts, trace.WithNewRoot()) + // Linking incoming span context if any for public endpoint. + if s := trace.SpanContextFromContext(ctx); s.IsValid() && s.IsRemote() { + opts = append(opts, trace.WithLinks(trace.Link{SpanContext: s})) + } + } + + tracer := h.tracer + + if tracer == nil { + if span := trace.SpanFromContext(r.Context()); span.SpanContext().IsValid() { + tracer = newTracer(span.TracerProvider()) + } else { + tracer = newTracer(otel.GetTracerProvider()) + } + } + + if startTime := StartTimeFromContext(ctx); !startTime.IsZero() { + opts = append(opts, trace.WithTimestamp(startTime)) + requestStartTime = startTime + } + + ctx, span := tracer.Start(ctx, h.spanNameFormatter(h.operation, r), opts...) + defer span.End() + + readRecordFunc := func(int64) {} + if h.readEvent { + readRecordFunc = func(n int64) { + span.AddEvent("read", trace.WithAttributes(ReadBytesKey.Int64(n))) + } + } + + // if request body is nil or NoBody, we don't want to mutate the body as it + // will affect the identity of it in an unforeseeable way because we assert + // ReadCloser fulfills a certain interface and it is indeed nil or NoBody. + bw := request.NewBodyWrapper(r.Body, readRecordFunc) + if r.Body != nil && r.Body != http.NoBody { + r.Body = bw + } + + writeRecordFunc := func(int64) {} + if h.writeEvent { + writeRecordFunc = func(n int64) { + span.AddEvent("write", trace.WithAttributes(WroteBytesKey.Int64(n))) + } + } + + rww := request.NewRespWriterWrapper(w, writeRecordFunc) + + // Wrap w to use our ResponseWriter methods while also exposing + // other interfaces that w may implement (http.CloseNotifier, + // http.Flusher, http.Hijacker, http.Pusher, io.ReaderFrom). + + w = httpsnoop.Wrap(w, httpsnoop.Hooks{ + Header: func(httpsnoop.HeaderFunc) httpsnoop.HeaderFunc { + return rww.Header + }, + Write: func(httpsnoop.WriteFunc) httpsnoop.WriteFunc { + return rww.Write + }, + WriteHeader: func(httpsnoop.WriteHeaderFunc) httpsnoop.WriteHeaderFunc { + return rww.WriteHeader + }, + Flush: func(httpsnoop.FlushFunc) httpsnoop.FlushFunc { + return rww.Flush + }, + }) + + labeler, found := LabelerFromContext(ctx) + if !found { + ctx = ContextWithLabeler(ctx, labeler) + } + + r = r.WithContext(ctx) + next.ServeHTTP(w, r) + + if r.Pattern != "" { + span.SetName(h.spanNameFormatter(h.operation, r)) + } + + statusCode := rww.StatusCode() + bytesWritten := rww.BytesWritten() + span.SetStatus(h.semconv.Status(statusCode)) + span.SetAttributes(h.semconv.ResponseTraceAttrs(semconv.ResponseTelemetry{ + StatusCode: statusCode, + ReadBytes: bw.BytesRead(), + ReadError: bw.Error(), + WriteBytes: bytesWritten, + WriteError: rww.Error(), + })...) + + // Use floating point division here for higher precision (instead of Millisecond method). + elapsedTime := float64(time.Since(requestStartTime)) / float64(time.Millisecond) + + metricAttributes := semconv.MetricAttributes{ + Req: r, + StatusCode: statusCode, + AdditionalAttributes: append(labeler.Get(), h.metricAttributesFromRequest(r)...), + } + + h.semconv.RecordMetrics(ctx, semconv.ServerMetricData{ + ServerName: h.server, + ResponseSize: bytesWritten, + MetricAttributes: metricAttributes, + MetricData: semconv.MetricData{ + RequestSize: bw.BytesRead(), + ElapsedTime: elapsedTime, + }, + }) +} + +func (h *middleware) metricAttributesFromRequest(r *http.Request) []attribute.KeyValue { + var attributeForRequest []attribute.KeyValue + if h.metricAttributesFn != nil { + attributeForRequest = h.metricAttributesFn(r) + } + return attributeForRequest +} + +// WithRouteTag annotates spans and metrics with the provided route name +// with HTTP route attribute. +func WithRouteTag(route string, h http.Handler) http.Handler { + attr := semconv.NewHTTPServer(nil).Route(route) + return http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) { + span := trace.SpanFromContext(r.Context()) + span.SetAttributes(attr) + + labeler, _ := LabelerFromContext(r.Context()) + labeler.Add(attr) + + h.ServeHTTP(w, r) + }) +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go new file mode 100644 index 0000000000..d032aa841b --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/body_wrapper.go @@ -0,0 +1,80 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/request/body_wrapper.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package request provides types and functionality to handle HTTP request +// handling. +package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" + +import ( + "io" + "sync" +) + +var _ io.ReadCloser = &BodyWrapper{} + +// BodyWrapper wraps a http.Request.Body (an io.ReadCloser) to track the number +// of bytes read and the last error. +type BodyWrapper struct { + io.ReadCloser + OnRead func(n int64) // must not be nil + + mu sync.Mutex + read int64 + err error +} + +// NewBodyWrapper creates a new BodyWrapper. +// +// The onRead attribute is a callback that will be called every time the data +// is read, with the number of bytes being read. +func NewBodyWrapper(body io.ReadCloser, onRead func(int64)) *BodyWrapper { + return &BodyWrapper{ + ReadCloser: body, + OnRead: onRead, + } +} + +// Read reads the data from the io.ReadCloser, and stores the number of bytes +// read and the error. +func (w *BodyWrapper) Read(b []byte) (int, error) { + n, err := w.ReadCloser.Read(b) + n1 := int64(n) + + w.updateReadData(n1, err) + w.OnRead(n1) + return n, err +} + +func (w *BodyWrapper) updateReadData(n int64, err error) { + w.mu.Lock() + defer w.mu.Unlock() + + w.read += n + if err != nil { + w.err = err + } +} + +// Close closes the io.ReadCloser. +func (w *BodyWrapper) Close() error { + return w.ReadCloser.Close() +} + +// BytesRead returns the number of bytes read up to this point. +func (w *BodyWrapper) BytesRead() int64 { + w.mu.Lock() + defer w.mu.Unlock() + + return w.read +} + +// Error returns the last error. +func (w *BodyWrapper) Error() error { + w.mu.Lock() + defer w.mu.Unlock() + + return w.err +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go new file mode 100644 index 0000000000..9e00dd2fce --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/gen.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" + +// Generate request package: +//go:generate gotmpl --body=../../../../../../internal/shared/request/body_wrapper.go.tmpl "--data={}" --out=body_wrapper.go +//go:generate gotmpl --body=../../../../../../internal/shared/request/body_wrapper_test.go.tmpl "--data={}" --out=body_wrapper_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/request/resp_writer_wrapper.go.tmpl "--data={}" --out=resp_writer_wrapper.go +//go:generate gotmpl --body=../../../../../../internal/shared/request/resp_writer_wrapper_test.go.tmpl "--data={}" --out=resp_writer_wrapper_test.go diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go new file mode 100644 index 0000000000..ca2e4c14c7 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request/resp_writer_wrapper.go @@ -0,0 +1,122 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/request/resp_writer_wrapper.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package request // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" + +import ( + "net/http" + "sync" +) + +var _ http.ResponseWriter = &RespWriterWrapper{} + +// RespWriterWrapper wraps a http.ResponseWriter in order to track the number of +// bytes written, the last error, and to catch the first written statusCode. +// TODO: The wrapped http.ResponseWriter doesn't implement any of the optional +// types (http.Hijacker, http.Pusher, http.CloseNotifier, etc) +// that may be useful when using it in real life situations. +type RespWriterWrapper struct { + http.ResponseWriter + OnWrite func(n int64) // must not be nil + + mu sync.RWMutex + written int64 + statusCode int + err error + wroteHeader bool +} + +// NewRespWriterWrapper creates a new RespWriterWrapper. +// +// The onWrite attribute is a callback that will be called every time the data +// is written, with the number of bytes that were written. +func NewRespWriterWrapper(w http.ResponseWriter, onWrite func(int64)) *RespWriterWrapper { + return &RespWriterWrapper{ + ResponseWriter: w, + OnWrite: onWrite, + statusCode: http.StatusOK, // default status code in case the Handler doesn't write anything + } +} + +// Write writes the bytes array into the [ResponseWriter], and tracks the +// number of bytes written and last error. +func (w *RespWriterWrapper) Write(p []byte) (int, error) { + w.mu.Lock() + defer w.mu.Unlock() + + if !w.wroteHeader { + w.writeHeader(http.StatusOK) + } + + n, err := w.ResponseWriter.Write(p) + n1 := int64(n) + w.OnWrite(n1) + w.written += n1 + w.err = err + return n, err +} + +// WriteHeader persists initial statusCode for span attribution. +// All calls to WriteHeader will be propagated to the underlying ResponseWriter +// and will persist the statusCode from the first call. +// Blocking consecutive calls to WriteHeader alters expected behavior and will +// remove warning logs from net/http where developers will notice incorrect handler implementations. +func (w *RespWriterWrapper) WriteHeader(statusCode int) { + w.mu.Lock() + defer w.mu.Unlock() + + w.writeHeader(statusCode) +} + +// writeHeader persists the status code for span attribution, and propagates +// the call to the underlying ResponseWriter. +// It does not acquire a lock, and therefore assumes that is being handled by a +// parent method. +func (w *RespWriterWrapper) writeHeader(statusCode int) { + if !w.wroteHeader { + w.wroteHeader = true + w.statusCode = statusCode + } + w.ResponseWriter.WriteHeader(statusCode) +} + +// Flush implements [http.Flusher]. +func (w *RespWriterWrapper) Flush() { + w.mu.Lock() + defer w.mu.Unlock() + + if !w.wroteHeader { + w.writeHeader(http.StatusOK) + } + + if f, ok := w.ResponseWriter.(http.Flusher); ok { + f.Flush() + } +} + +// BytesWritten returns the number of bytes written. +func (w *RespWriterWrapper) BytesWritten() int64 { + w.mu.RLock() + defer w.mu.RUnlock() + + return w.written +} + +// StatusCode returns the HTTP status code that was sent. +func (w *RespWriterWrapper) StatusCode() int { + w.mu.RLock() + defer w.mu.RUnlock() + + return w.statusCode +} + +// Error returns the last error. +func (w *RespWriterWrapper) Error() error { + w.mu.RLock() + defer w.mu.RUnlock() + + return w.err +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/env.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/env.go new file mode 100644 index 0000000000..7edc8d10ff --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/env.go @@ -0,0 +1,343 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconv/env.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + +import ( + "context" + "fmt" + "net/http" + "os" + "strings" + "sync" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/semconv/v1.34.0/httpconv" +) + +// OTelSemConvStabilityOptIn is an environment variable. +// That can be set to "http/dup" to keep getting the old HTTP semantic conventions. +const OTelSemConvStabilityOptIn = "OTEL_SEMCONV_STABILITY_OPT_IN" + +type ResponseTelemetry struct { + StatusCode int + ReadBytes int64 + ReadError error + WriteBytes int64 + WriteError error +} + +type HTTPServer struct { + duplicate bool + + // Old metrics + requestBytesCounter metric.Int64Counter + responseBytesCounter metric.Int64Counter + serverLatencyMeasure metric.Float64Histogram + + // New metrics + requestBodySizeHistogram httpconv.ServerRequestBodySize + responseBodySizeHistogram httpconv.ServerResponseBodySize + requestDurationHistogram httpconv.ServerRequestDuration +} + +// RequestTraceAttrs returns trace attributes for an HTTP request received by a +// server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +func (s HTTPServer) RequestTraceAttrs(server string, req *http.Request, opts RequestTraceAttrsOpts) []attribute.KeyValue { + attrs := CurrentHTTPServer{}.RequestTraceAttrs(server, req, opts) + if s.duplicate { + return OldHTTPServer{}.RequestTraceAttrs(server, req, attrs) + } + return attrs +} + +func (s HTTPServer) NetworkTransportAttr(network string) []attribute.KeyValue { + if s.duplicate { + return []attribute.KeyValue{ + OldHTTPServer{}.NetworkTransportAttr(network), + CurrentHTTPServer{}.NetworkTransportAttr(network), + } + } + return []attribute.KeyValue{ + CurrentHTTPServer{}.NetworkTransportAttr(network), + } +} + +// ResponseTraceAttrs returns trace attributes for telemetry from an HTTP response. +// +// If any of the fields in the ResponseTelemetry are not set the attribute will be omitted. +func (s HTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyValue { + attrs := CurrentHTTPServer{}.ResponseTraceAttrs(resp) + if s.duplicate { + return OldHTTPServer{}.ResponseTraceAttrs(resp, attrs) + } + return attrs +} + +// Route returns the attribute for the route. +func (s HTTPServer) Route(route string) attribute.KeyValue { + return CurrentHTTPServer{}.Route(route) +} + +// Status returns a span status code and message for an HTTP status code +// value returned by a server. Status codes in the 400-499 range are not +// returned as errors. +func (s HTTPServer) Status(code int) (codes.Code, string) { + if code < 100 || code >= 600 { + return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) + } + if code >= 500 { + return codes.Error, "" + } + return codes.Unset, "" +} + +type ServerMetricData struct { + ServerName string + ResponseSize int64 + + MetricData + MetricAttributes +} + +type MetricAttributes struct { + Req *http.Request + StatusCode int + AdditionalAttributes []attribute.KeyValue +} + +type MetricData struct { + RequestSize int64 + + // The request duration, in milliseconds + ElapsedTime float64 +} + +var ( + metricAddOptionPool = &sync.Pool{ + New: func() interface{} { + return &[]metric.AddOption{} + }, + } + + metricRecordOptionPool = &sync.Pool{ + New: func() interface{} { + return &[]metric.RecordOption{} + }, + } +) + +func (s HTTPServer) RecordMetrics(ctx context.Context, md ServerMetricData) { + attributes := CurrentHTTPServer{}.MetricAttributes(md.ServerName, md.Req, md.StatusCode, md.AdditionalAttributes) + o := metric.WithAttributeSet(attribute.NewSet(attributes...)) + recordOpts := metricRecordOptionPool.Get().(*[]metric.RecordOption) + *recordOpts = append(*recordOpts, o) + s.requestBodySizeHistogram.Inst().Record(ctx, md.RequestSize, *recordOpts...) + s.responseBodySizeHistogram.Inst().Record(ctx, md.ResponseSize, *recordOpts...) + s.requestDurationHistogram.Inst().Record(ctx, md.ElapsedTime/1000.0, o) + *recordOpts = (*recordOpts)[:0] + metricRecordOptionPool.Put(recordOpts) + + if s.duplicate && s.requestBytesCounter != nil && s.responseBytesCounter != nil && s.serverLatencyMeasure != nil { + attributes := OldHTTPServer{}.MetricAttributes(md.ServerName, md.Req, md.StatusCode, md.AdditionalAttributes) + o := metric.WithAttributeSet(attribute.NewSet(attributes...)) + addOpts := metricAddOptionPool.Get().(*[]metric.AddOption) + *addOpts = append(*addOpts, o) + s.requestBytesCounter.Add(ctx, md.RequestSize, *addOpts...) + s.responseBytesCounter.Add(ctx, md.ResponseSize, *addOpts...) + s.serverLatencyMeasure.Record(ctx, md.ElapsedTime, o) + *addOpts = (*addOpts)[:0] + metricAddOptionPool.Put(addOpts) + } +} + +// hasOptIn returns true if the comma-separated version string contains the +// exact optIn value. +func hasOptIn(version, optIn string) bool { + for _, v := range strings.Split(version, ",") { + if strings.TrimSpace(v) == optIn { + return true + } + } + return false +} + +func NewHTTPServer(meter metric.Meter) HTTPServer { + env := strings.ToLower(os.Getenv(OTelSemConvStabilityOptIn)) + duplicate := hasOptIn(env, "http/dup") + server := HTTPServer{ + duplicate: duplicate, + } + + var err error + server.requestBodySizeHistogram, err = httpconv.NewServerRequestBodySize(meter) + handleErr(err) + + server.responseBodySizeHistogram, err = httpconv.NewServerResponseBodySize(meter) + handleErr(err) + + server.requestDurationHistogram, err = httpconv.NewServerRequestDuration( + meter, + metric.WithExplicitBucketBoundaries( + 0.005, 0.01, 0.025, 0.05, 0.075, 0.1, + 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10, + ), + ) + handleErr(err) + + if duplicate { + server.requestBytesCounter, server.responseBytesCounter, server.serverLatencyMeasure = OldHTTPServer{}.createMeasures(meter) + } + return server +} + +type HTTPClient struct { + duplicate bool + + // old metrics + requestBytesCounter metric.Int64Counter + responseBytesCounter metric.Int64Counter + latencyMeasure metric.Float64Histogram + + // new metrics + requestBodySize httpconv.ClientRequestBodySize + requestDuration httpconv.ClientRequestDuration +} + +func NewHTTPClient(meter metric.Meter) HTTPClient { + env := strings.ToLower(os.Getenv(OTelSemConvStabilityOptIn)) + duplicate := hasOptIn(env, "http/dup") + client := HTTPClient{ + duplicate: duplicate, + } + + var err error + client.requestBodySize, err = httpconv.NewClientRequestBodySize(meter) + handleErr(err) + + client.requestDuration, err = httpconv.NewClientRequestDuration( + meter, + metric.WithExplicitBucketBoundaries(0.005, 0.01, 0.025, 0.05, 0.075, 0.1, 0.25, 0.5, 0.75, 1, 2.5, 5, 7.5, 10), + ) + handleErr(err) + + if duplicate { + client.requestBytesCounter, client.responseBytesCounter, client.latencyMeasure = OldHTTPClient{}.createMeasures(meter) + } + + return client +} + +// RequestTraceAttrs returns attributes for an HTTP request made by a client. +func (c HTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { + attrs := CurrentHTTPClient{}.RequestTraceAttrs(req) + if c.duplicate { + return OldHTTPClient{}.RequestTraceAttrs(req, attrs) + } + return attrs +} + +// ResponseTraceAttrs returns metric attributes for an HTTP request made by a client. +func (c HTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue { + attrs := CurrentHTTPClient{}.ResponseTraceAttrs(resp) + if c.duplicate { + return OldHTTPClient{}.ResponseTraceAttrs(resp, attrs) + } + return attrs +} + +func (c HTTPClient) Status(code int) (codes.Code, string) { + if code < 100 || code >= 600 { + return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) + } + if code >= 400 { + return codes.Error, "" + } + return codes.Unset, "" +} + +func (c HTTPClient) ErrorType(err error) attribute.KeyValue { + return CurrentHTTPClient{}.ErrorType(err) +} + +type MetricOpts struct { + measurement metric.MeasurementOption + addOptions metric.AddOption +} + +func (o MetricOpts) MeasurementOption() metric.MeasurementOption { + return o.measurement +} + +func (o MetricOpts) AddOptions() metric.AddOption { + return o.addOptions +} + +func (c HTTPClient) MetricOptions(ma MetricAttributes) map[string]MetricOpts { + opts := map[string]MetricOpts{} + + attributes := CurrentHTTPClient{}.MetricAttributes(ma.Req, ma.StatusCode, ma.AdditionalAttributes) + set := metric.WithAttributeSet(attribute.NewSet(attributes...)) + opts["new"] = MetricOpts{ + measurement: set, + addOptions: set, + } + + if c.duplicate { + attributes := OldHTTPClient{}.MetricAttributes(ma.Req, ma.StatusCode, ma.AdditionalAttributes) + set := metric.WithAttributeSet(attribute.NewSet(attributes...)) + opts["old"] = MetricOpts{ + measurement: set, + addOptions: set, + } + } + + return opts +} + +func (s HTTPClient) RecordMetrics(ctx context.Context, md MetricData, opts map[string]MetricOpts) { + s.requestBodySize.Inst().Record(ctx, md.RequestSize, opts["new"].MeasurementOption()) + s.requestDuration.Inst().Record(ctx, md.ElapsedTime/1000, opts["new"].MeasurementOption()) + + if s.duplicate { + s.requestBytesCounter.Add(ctx, md.RequestSize, opts["old"].AddOptions()) + s.latencyMeasure.Record(ctx, md.ElapsedTime, opts["old"].MeasurementOption()) + } +} + +func (s HTTPClient) RecordResponseSize(ctx context.Context, responseData int64, opts map[string]MetricOpts) { + if s.responseBytesCounter == nil { + // This will happen if an HTTPClient{} is used instead of NewHTTPClient(). + return + } + + s.responseBytesCounter.Add(ctx, responseData, opts["old"].AddOptions()) +} + +func (s HTTPClient) TraceAttributes(host string) []attribute.KeyValue { + attrs := CurrentHTTPClient{}.TraceAttributes(host) + if s.duplicate { + return OldHTTPClient{}.TraceAttributes(host, attrs) + } + + return attrs +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go new file mode 100644 index 0000000000..b4036dd906 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/gen.go @@ -0,0 +1,16 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + +// Generate semconv package: +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/bench_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=bench_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/common_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=common_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/env.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=env.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/env_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=env_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/httpconv.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=httpconv.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/httpconv_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=httpconv_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/httpconvtest_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=httpconvtest_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/util.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=util.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/util_test.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=util_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconv/v1.20.0.go.tmpl "--data={ \"pkg\": \"go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp\" }" --out=v1.20.0.go diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/httpconv.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/httpconv.go new file mode 100644 index 0000000000..9766f3ac85 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/httpconv.go @@ -0,0 +1,517 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconv/httpconv.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconv provides OpenTelemetry semantic convention types and +// functionality. +package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + +import ( + "fmt" + "net/http" + "reflect" + "slices" + "strconv" + "strings" + + "go.opentelemetry.io/otel/attribute" + semconvNew "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type RequestTraceAttrsOpts struct { + // If set, this is used as value for the "http.client_ip" attribute. + HTTPClientIP string +} + +type CurrentHTTPServer struct{} + +// RequestTraceAttrs returns trace attributes for an HTTP request received by a +// server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +func (n CurrentHTTPServer) RequestTraceAttrs(server string, req *http.Request, opts RequestTraceAttrsOpts) []attribute.KeyValue { + count := 3 // ServerAddress, Method, Scheme + + var host string + var p int + if server == "" { + host, p = SplitHostPort(req.Host) + } else { + // Prioritize the primary server name. + host, p = SplitHostPort(server) + if p < 0 { + _, p = SplitHostPort(req.Host) + } + } + + hostPort := requiredHTTPPort(req.TLS != nil, p) + if hostPort > 0 { + count++ + } + + method, methodOriginal := n.method(req.Method) + if methodOriginal != (attribute.KeyValue{}) { + count++ + } + + scheme := n.scheme(req.TLS != nil) + + peer, peerPort := SplitHostPort(req.RemoteAddr) + if peer != "" { + // The Go HTTP server sets RemoteAddr to "IP:port", this will not be a + // file-path that would be interpreted with a sock family. + count++ + if peerPort > 0 { + count++ + } + } + + useragent := req.UserAgent() + if useragent != "" { + count++ + } + + // For client IP, use, in order: + // 1. The value passed in the options + // 2. The value in the X-Forwarded-For header + // 3. The peer address + clientIP := opts.HTTPClientIP + if clientIP == "" { + clientIP = serverClientIP(req.Header.Get("X-Forwarded-For")) + if clientIP == "" { + clientIP = peer + } + } + if clientIP != "" { + count++ + } + + if req.URL != nil && req.URL.Path != "" { + count++ + } + + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" && protoName != "http" { + count++ + } + if protoVersion != "" { + count++ + } + + route := httpRoute(req.Pattern) + if route != "" { + count++ + } + + attrs := make([]attribute.KeyValue, 0, count) + attrs = append(attrs, + semconvNew.ServerAddress(host), + method, + scheme, + ) + + if hostPort > 0 { + attrs = append(attrs, semconvNew.ServerPort(hostPort)) + } + if methodOriginal != (attribute.KeyValue{}) { + attrs = append(attrs, methodOriginal) + } + + if peer, peerPort := SplitHostPort(req.RemoteAddr); peer != "" { + // The Go HTTP server sets RemoteAddr to "IP:port", this will not be a + // file-path that would be interpreted with a sock family. + attrs = append(attrs, semconvNew.NetworkPeerAddress(peer)) + if peerPort > 0 { + attrs = append(attrs, semconvNew.NetworkPeerPort(peerPort)) + } + } + + if useragent != "" { + attrs = append(attrs, semconvNew.UserAgentOriginal(useragent)) + } + + if clientIP != "" { + attrs = append(attrs, semconvNew.ClientAddress(clientIP)) + } + + if req.URL != nil && req.URL.Path != "" { + attrs = append(attrs, semconvNew.URLPath(req.URL.Path)) + } + + if protoName != "" && protoName != "http" { + attrs = append(attrs, semconvNew.NetworkProtocolName(protoName)) + } + if protoVersion != "" { + attrs = append(attrs, semconvNew.NetworkProtocolVersion(protoVersion)) + } + + if route != "" { + attrs = append(attrs, n.Route(route)) + } + + return attrs +} + +func (n CurrentHTTPServer) NetworkTransportAttr(network string) attribute.KeyValue { + switch network { + case "tcp", "tcp4", "tcp6": + return semconvNew.NetworkTransportTCP + case "udp", "udp4", "udp6": + return semconvNew.NetworkTransportUDP + case "unix", "unixgram", "unixpacket": + return semconvNew.NetworkTransportUnix + default: + return semconvNew.NetworkTransportPipe + } +} + +func (n CurrentHTTPServer) method(method string) (attribute.KeyValue, attribute.KeyValue) { + if method == "" { + return semconvNew.HTTPRequestMethodGet, attribute.KeyValue{} + } + if attr, ok := methodLookup[method]; ok { + return attr, attribute.KeyValue{} + } + + orig := semconvNew.HTTPRequestMethodOriginal(method) + if attr, ok := methodLookup[strings.ToUpper(method)]; ok { + return attr, orig + } + return semconvNew.HTTPRequestMethodGet, orig +} + +func (n CurrentHTTPServer) scheme(https bool) attribute.KeyValue { // nolint:revive + if https { + return semconvNew.URLScheme("https") + } + return semconvNew.URLScheme("http") +} + +// ResponseTraceAttrs returns trace attributes for telemetry from an HTTP +// response. +// +// If any of the fields in the ResponseTelemetry are not set the attribute will +// be omitted. +func (n CurrentHTTPServer) ResponseTraceAttrs(resp ResponseTelemetry) []attribute.KeyValue { + var count int + + if resp.ReadBytes > 0 { + count++ + } + if resp.WriteBytes > 0 { + count++ + } + if resp.StatusCode > 0 { + count++ + } + + attributes := make([]attribute.KeyValue, 0, count) + + if resp.ReadBytes > 0 { + attributes = append(attributes, + semconvNew.HTTPRequestBodySize(int(resp.ReadBytes)), + ) + } + if resp.WriteBytes > 0 { + attributes = append(attributes, + semconvNew.HTTPResponseBodySize(int(resp.WriteBytes)), + ) + } + if resp.StatusCode > 0 { + attributes = append(attributes, + semconvNew.HTTPResponseStatusCode(resp.StatusCode), + ) + } + + return attributes +} + +// Route returns the attribute for the route. +func (n CurrentHTTPServer) Route(route string) attribute.KeyValue { + return semconvNew.HTTPRoute(route) +} + +func (n CurrentHTTPServer) MetricAttributes(server string, req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { + num := len(additionalAttributes) + 3 + var host string + var p int + if server == "" { + host, p = SplitHostPort(req.Host) + } else { + // Prioritize the primary server name. + host, p = SplitHostPort(server) + if p < 0 { + _, p = SplitHostPort(req.Host) + } + } + hostPort := requiredHTTPPort(req.TLS != nil, p) + if hostPort > 0 { + num++ + } + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" { + num++ + } + if protoVersion != "" { + num++ + } + + if statusCode > 0 { + num++ + } + + attributes := slices.Grow(additionalAttributes, num) + attributes = append(attributes, + semconvNew.HTTPRequestMethodKey.String(standardizeHTTPMethod(req.Method)), + n.scheme(req.TLS != nil), + semconvNew.ServerAddress(host)) + + if hostPort > 0 { + attributes = append(attributes, semconvNew.ServerPort(hostPort)) + } + if protoName != "" { + attributes = append(attributes, semconvNew.NetworkProtocolName(protoName)) + } + if protoVersion != "" { + attributes = append(attributes, semconvNew.NetworkProtocolVersion(protoVersion)) + } + + if statusCode > 0 { + attributes = append(attributes, semconvNew.HTTPResponseStatusCode(statusCode)) + } + return attributes +} + +type CurrentHTTPClient struct{} + +// RequestTraceAttrs returns trace attributes for an HTTP request made by a client. +func (n CurrentHTTPClient) RequestTraceAttrs(req *http.Request) []attribute.KeyValue { + /* + below attributes are returned: + - http.request.method + - http.request.method.original + - url.full + - server.address + - server.port + - network.protocol.name + - network.protocol.version + */ + numOfAttributes := 3 // URL, server address, proto, and method. + + var urlHost string + if req.URL != nil { + urlHost = req.URL.Host + } + var requestHost string + var requestPort int + for _, hostport := range []string{urlHost, req.Header.Get("Host")} { + requestHost, requestPort = SplitHostPort(hostport) + if requestHost != "" || requestPort > 0 { + break + } + } + + eligiblePort := requiredHTTPPort(req.URL != nil && req.URL.Scheme == "https", requestPort) + if eligiblePort > 0 { + numOfAttributes++ + } + useragent := req.UserAgent() + if useragent != "" { + numOfAttributes++ + } + + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" && protoName != "http" { + numOfAttributes++ + } + if protoVersion != "" { + numOfAttributes++ + } + + method, originalMethod := n.method(req.Method) + if originalMethod != (attribute.KeyValue{}) { + numOfAttributes++ + } + + attrs := make([]attribute.KeyValue, 0, numOfAttributes) + + attrs = append(attrs, method) + if originalMethod != (attribute.KeyValue{}) { + attrs = append(attrs, originalMethod) + } + + var u string + if req.URL != nil { + // Remove any username/password info that may be in the URL. + userinfo := req.URL.User + req.URL.User = nil + u = req.URL.String() + // Restore any username/password info that was removed. + req.URL.User = userinfo + } + attrs = append(attrs, semconvNew.URLFull(u)) + + attrs = append(attrs, semconvNew.ServerAddress(requestHost)) + if eligiblePort > 0 { + attrs = append(attrs, semconvNew.ServerPort(eligiblePort)) + } + + if protoName != "" && protoName != "http" { + attrs = append(attrs, semconvNew.NetworkProtocolName(protoName)) + } + if protoVersion != "" { + attrs = append(attrs, semconvNew.NetworkProtocolVersion(protoVersion)) + } + + return attrs +} + +// ResponseTraceAttrs returns trace attributes for an HTTP response made by a client. +func (n CurrentHTTPClient) ResponseTraceAttrs(resp *http.Response) []attribute.KeyValue { + /* + below attributes are returned: + - http.response.status_code + - error.type + */ + var count int + if resp.StatusCode > 0 { + count++ + } + + if isErrorStatusCode(resp.StatusCode) { + count++ + } + + attrs := make([]attribute.KeyValue, 0, count) + if resp.StatusCode > 0 { + attrs = append(attrs, semconvNew.HTTPResponseStatusCode(resp.StatusCode)) + } + + if isErrorStatusCode(resp.StatusCode) { + errorType := strconv.Itoa(resp.StatusCode) + attrs = append(attrs, semconvNew.ErrorTypeKey.String(errorType)) + } + return attrs +} + +func (n CurrentHTTPClient) ErrorType(err error) attribute.KeyValue { + t := reflect.TypeOf(err) + var value string + if t.PkgPath() == "" && t.Name() == "" { + // Likely a builtin type. + value = t.String() + } else { + value = fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()) + } + + if value == "" { + return semconvNew.ErrorTypeOther + } + + return semconvNew.ErrorTypeKey.String(value) +} + +func (n CurrentHTTPClient) method(method string) (attribute.KeyValue, attribute.KeyValue) { + if method == "" { + return semconvNew.HTTPRequestMethodGet, attribute.KeyValue{} + } + if attr, ok := methodLookup[method]; ok { + return attr, attribute.KeyValue{} + } + + orig := semconvNew.HTTPRequestMethodOriginal(method) + if attr, ok := methodLookup[strings.ToUpper(method)]; ok { + return attr, orig + } + return semconvNew.HTTPRequestMethodGet, orig +} + +func (n CurrentHTTPClient) MetricAttributes(req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { + num := len(additionalAttributes) + 2 + var h string + if req.URL != nil { + h = req.URL.Host + } + var requestHost string + var requestPort int + for _, hostport := range []string{h, req.Header.Get("Host")} { + requestHost, requestPort = SplitHostPort(hostport) + if requestHost != "" || requestPort > 0 { + break + } + } + + port := requiredHTTPPort(req.URL != nil && req.URL.Scheme == "https", requestPort) + if port > 0 { + num++ + } + + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" { + num++ + } + if protoVersion != "" { + num++ + } + + if statusCode > 0 { + num++ + } + + attributes := slices.Grow(additionalAttributes, num) + attributes = append(attributes, + semconvNew.HTTPRequestMethodKey.String(standardizeHTTPMethod(req.Method)), + semconvNew.ServerAddress(requestHost), + n.scheme(req), + ) + + if port > 0 { + attributes = append(attributes, semconvNew.ServerPort(port)) + } + if protoName != "" { + attributes = append(attributes, semconvNew.NetworkProtocolName(protoName)) + } + if protoVersion != "" { + attributes = append(attributes, semconvNew.NetworkProtocolVersion(protoVersion)) + } + + if statusCode > 0 { + attributes = append(attributes, semconvNew.HTTPResponseStatusCode(statusCode)) + } + return attributes +} + +// TraceAttributes returns attributes for httptrace. +func (n CurrentHTTPClient) TraceAttributes(host string) []attribute.KeyValue { + return []attribute.KeyValue{ + semconvNew.ServerAddress(host), + } +} + +func (n CurrentHTTPClient) scheme(req *http.Request) attribute.KeyValue { + if req.URL != nil && req.URL.Scheme != "" { + return semconvNew.URLScheme(req.URL.Scheme) + } + if req.TLS != nil { + return semconvNew.URLScheme("https") + } + return semconvNew.URLScheme("http") +} + +func isErrorStatusCode(code int) bool { + return code >= 400 || code < 100 +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go new file mode 100644 index 0000000000..e4ebf85814 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/util.go @@ -0,0 +1,127 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconv/util.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + +import ( + "net" + "net/http" + "strconv" + "strings" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + semconvNew "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +// SplitHostPort splits a network address hostport of the form "host", +// "host%zone", "[host]", "[host%zone], "host:port", "host%zone:port", +// "[host]:port", "[host%zone]:port", or ":port" into host or host%zone and +// port. +// +// An empty host is returned if it is not provided or unparsable. A negative +// port is returned if it is not provided or unparsable. +func SplitHostPort(hostport string) (host string, port int) { + port = -1 + + if strings.HasPrefix(hostport, "[") { + addrEnd := strings.LastIndexByte(hostport, ']') + if addrEnd < 0 { + // Invalid hostport. + return + } + if i := strings.LastIndexByte(hostport[addrEnd:], ':'); i < 0 { + host = hostport[1:addrEnd] + return + } + } else { + if i := strings.LastIndexByte(hostport, ':'); i < 0 { + host = hostport + return + } + } + + host, pStr, err := net.SplitHostPort(hostport) + if err != nil { + return + } + + p, err := strconv.ParseUint(pStr, 10, 16) + if err != nil { + return + } + return host, int(p) // nolint: gosec // Byte size checked 16 above. +} + +func requiredHTTPPort(https bool, port int) int { // nolint:revive + if https { + if port > 0 && port != 443 { + return port + } + } else { + if port > 0 && port != 80 { + return port + } + } + return -1 +} + +func serverClientIP(xForwardedFor string) string { + if idx := strings.IndexByte(xForwardedFor, ','); idx >= 0 { + xForwardedFor = xForwardedFor[:idx] + } + return xForwardedFor +} + +func httpRoute(pattern string) string { + if idx := strings.IndexByte(pattern, '/'); idx >= 0 { + return pattern[idx:] + } + return "" +} + +func netProtocol(proto string) (name string, version string) { + name, version, _ = strings.Cut(proto, "/") + switch name { + case "HTTP": + name = "http" + case "QUIC": + name = "quic" + case "SPDY": + name = "spdy" + default: + name = strings.ToLower(name) + } + return name, version +} + +var methodLookup = map[string]attribute.KeyValue{ + http.MethodConnect: semconvNew.HTTPRequestMethodConnect, + http.MethodDelete: semconvNew.HTTPRequestMethodDelete, + http.MethodGet: semconvNew.HTTPRequestMethodGet, + http.MethodHead: semconvNew.HTTPRequestMethodHead, + http.MethodOptions: semconvNew.HTTPRequestMethodOptions, + http.MethodPatch: semconvNew.HTTPRequestMethodPatch, + http.MethodPost: semconvNew.HTTPRequestMethodPost, + http.MethodPut: semconvNew.HTTPRequestMethodPut, + http.MethodTrace: semconvNew.HTTPRequestMethodTrace, +} + +func handleErr(err error) { + if err != nil { + otel.Handle(err) + } +} + +func standardizeHTTPMethod(method string) string { + method = strings.ToUpper(method) + switch method { + case http.MethodConnect, http.MethodDelete, http.MethodGet, http.MethodHead, http.MethodOptions, http.MethodPatch, http.MethodPost, http.MethodPut, http.MethodTrace: + default: + method = "_OTHER" + } + return method +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/v1.20.0.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/v1.20.0.go new file mode 100644 index 0000000000..ba7fccf1ef --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv/v1.20.0.go @@ -0,0 +1,273 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconv/v120.0.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + +import ( + "errors" + "io" + "net/http" + "slices" + + "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" + semconv "go.opentelemetry.io/otel/semconv/v1.20.0" +) + +type OldHTTPServer struct{} + +// RequestTraceAttrs returns trace attributes for an HTTP request received by a +// server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +func (o OldHTTPServer) RequestTraceAttrs(server string, req *http.Request, attrs []attribute.KeyValue) []attribute.KeyValue { + return semconvutil.HTTPServerRequest(server, req, semconvutil.HTTPServerRequestOptions{}, attrs) +} + +func (o OldHTTPServer) NetworkTransportAttr(network string) attribute.KeyValue { + return semconvutil.NetTransport(network) +} + +// ResponseTraceAttrs returns trace attributes for telemetry from an HTTP response. +// +// If any of the fields in the ResponseTelemetry are not set the attribute will be omitted. +func (o OldHTTPServer) ResponseTraceAttrs(resp ResponseTelemetry, attributes []attribute.KeyValue) []attribute.KeyValue { + if resp.ReadBytes > 0 { + attributes = append(attributes, semconv.HTTPRequestContentLength(int(resp.ReadBytes))) + } + if resp.ReadError != nil && !errors.Is(resp.ReadError, io.EOF) { + // This is not in the semantic conventions, but is historically provided + attributes = append(attributes, attribute.String("http.read_error", resp.ReadError.Error())) + } + if resp.WriteBytes > 0 { + attributes = append(attributes, semconv.HTTPResponseContentLength(int(resp.WriteBytes))) + } + if resp.StatusCode > 0 { + attributes = append(attributes, semconv.HTTPStatusCode(resp.StatusCode)) + } + if resp.WriteError != nil && !errors.Is(resp.WriteError, io.EOF) { + // This is not in the semantic conventions, but is historically provided + attributes = append(attributes, attribute.String("http.write_error", resp.WriteError.Error())) + } + + return attributes +} + +// Route returns the attribute for the route. +func (o OldHTTPServer) Route(route string) attribute.KeyValue { + return semconv.HTTPRoute(route) +} + +// HTTPStatusCode returns the attribute for the HTTP status code. +// This is a temporary function needed by metrics. This will be removed when MetricsRequest is added. +func HTTPStatusCode(status int) attribute.KeyValue { + return semconv.HTTPStatusCode(status) +} + +// Server HTTP metrics. +const ( + serverRequestSize = "http.server.request.size" // Incoming request bytes total + serverResponseSize = "http.server.response.size" // Incoming response bytes total + serverDuration = "http.server.duration" // Incoming end to end duration, milliseconds +) + +func (h OldHTTPServer) createMeasures(meter metric.Meter) (metric.Int64Counter, metric.Int64Counter, metric.Float64Histogram) { + if meter == nil { + return noop.Int64Counter{}, noop.Int64Counter{}, noop.Float64Histogram{} + } + var err error + requestBytesCounter, err := meter.Int64Counter( + serverRequestSize, + metric.WithUnit("By"), + metric.WithDescription("Measures the size of HTTP request messages."), + ) + handleErr(err) + + responseBytesCounter, err := meter.Int64Counter( + serverResponseSize, + metric.WithUnit("By"), + metric.WithDescription("Measures the size of HTTP response messages."), + ) + handleErr(err) + + serverLatencyMeasure, err := meter.Float64Histogram( + serverDuration, + metric.WithUnit("ms"), + metric.WithDescription("Measures the duration of inbound HTTP requests."), + ) + handleErr(err) + + return requestBytesCounter, responseBytesCounter, serverLatencyMeasure +} + +func (o OldHTTPServer) MetricAttributes(server string, req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { + n := len(additionalAttributes) + 3 + var host string + var p int + if server == "" { + host, p = SplitHostPort(req.Host) + } else { + // Prioritize the primary server name. + host, p = SplitHostPort(server) + if p < 0 { + _, p = SplitHostPort(req.Host) + } + } + hostPort := requiredHTTPPort(req.TLS != nil, p) + if hostPort > 0 { + n++ + } + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" { + n++ + } + if protoVersion != "" { + n++ + } + + if statusCode > 0 { + n++ + } + + attributes := slices.Grow(additionalAttributes, n) + attributes = append(attributes, + semconv.HTTPMethod(standardizeHTTPMethod(req.Method)), + o.scheme(req.TLS != nil), + semconv.NetHostName(host)) + + if hostPort > 0 { + attributes = append(attributes, semconv.NetHostPort(hostPort)) + } + if protoName != "" { + attributes = append(attributes, semconv.NetProtocolName(protoName)) + } + if protoVersion != "" { + attributes = append(attributes, semconv.NetProtocolVersion(protoVersion)) + } + + if statusCode > 0 { + attributes = append(attributes, semconv.HTTPStatusCode(statusCode)) + } + return attributes +} + +func (o OldHTTPServer) scheme(https bool) attribute.KeyValue { // nolint:revive + if https { + return semconv.HTTPSchemeHTTPS + } + return semconv.HTTPSchemeHTTP +} + +type OldHTTPClient struct{} + +func (o OldHTTPClient) RequestTraceAttrs(req *http.Request, attrs []attribute.KeyValue) []attribute.KeyValue { + return semconvutil.HTTPClientRequest(req, attrs) +} + +func (o OldHTTPClient) ResponseTraceAttrs(resp *http.Response, attrs []attribute.KeyValue) []attribute.KeyValue { + return semconvutil.HTTPClientResponse(resp, attrs) +} + +func (o OldHTTPClient) MetricAttributes(req *http.Request, statusCode int, additionalAttributes []attribute.KeyValue) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.method string + http.status_code int + net.peer.name string + net.peer.port int + */ + + n := 2 // method, peer name. + var h string + if req.URL != nil { + h = req.URL.Host + } + var requestHost string + var requestPort int + for _, hostport := range []string{h, req.Header.Get("Host")} { + requestHost, requestPort = SplitHostPort(hostport) + if requestHost != "" || requestPort > 0 { + break + } + } + + port := requiredHTTPPort(req.URL != nil && req.URL.Scheme == "https", requestPort) + if port > 0 { + n++ + } + + if statusCode > 0 { + n++ + } + + attributes := slices.Grow(additionalAttributes, n) + attributes = append(attributes, + semconv.HTTPMethod(standardizeHTTPMethod(req.Method)), + semconv.NetPeerName(requestHost), + ) + + if port > 0 { + attributes = append(attributes, semconv.NetPeerPort(port)) + } + + if statusCode > 0 { + attributes = append(attributes, semconv.HTTPStatusCode(statusCode)) + } + return attributes +} + +// Client HTTP metrics. +const ( + clientRequestSize = "http.client.request.size" // Incoming request bytes total + clientResponseSize = "http.client.response.size" // Incoming response bytes total + clientDuration = "http.client.duration" // Incoming end to end duration, milliseconds +) + +func (o OldHTTPClient) createMeasures(meter metric.Meter) (metric.Int64Counter, metric.Int64Counter, metric.Float64Histogram) { + if meter == nil { + return noop.Int64Counter{}, noop.Int64Counter{}, noop.Float64Histogram{} + } + requestBytesCounter, err := meter.Int64Counter( + clientRequestSize, + metric.WithUnit("By"), + metric.WithDescription("Measures the size of HTTP request messages."), + ) + handleErr(err) + + responseBytesCounter, err := meter.Int64Counter( + clientResponseSize, + metric.WithUnit("By"), + metric.WithDescription("Measures the size of HTTP response messages."), + ) + handleErr(err) + + latencyMeasure, err := meter.Float64Histogram( + clientDuration, + metric.WithUnit("ms"), + metric.WithDescription("Measures the duration of outbound HTTP requests."), + ) + handleErr(err) + + return requestBytesCounter, responseBytesCounter, latencyMeasure +} + +// TraceAttributes returns attributes for httptrace. +func (c OldHTTPClient) TraceAttributes(host string, attrs []attribute.KeyValue) []attribute.KeyValue { + return append(attrs, semconv.NetHostName(host)) +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/gen.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/gen.go new file mode 100644 index 0000000000..7aa5f99e81 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/gen.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconvutil // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil" + +// Generate semconvutil package: +//go:generate gotmpl --body=../../../../../../internal/shared/semconvutil/httpconv_test.go.tmpl "--data={}" --out=httpconv_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconvutil/httpconv.go.tmpl "--data={}" --out=httpconv.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconvutil/netconv_test.go.tmpl "--data={}" --out=netconv_test.go +//go:generate gotmpl --body=../../../../../../internal/shared/semconvutil/netconv.go.tmpl "--data={}" --out=netconv.go diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/httpconv.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/httpconv.go new file mode 100644 index 0000000000..b997354793 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/httpconv.go @@ -0,0 +1,594 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconvutil/httpconv.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconvutil provides OpenTelemetry semantic convention utilities. +package semconvutil // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil" + +import ( + "fmt" + "net/http" + "slices" + "strings" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + semconv "go.opentelemetry.io/otel/semconv/v1.20.0" +) + +type HTTPServerRequestOptions struct { + // If set, this is used as value for the "http.client_ip" attribute. + HTTPClientIP string +} + +// HTTPClientResponse returns trace attributes for an HTTP response received by a +// client from a server. It will return the following attributes if the related +// values are defined in resp: "http.status.code", +// "http.response_content_length". +// +// This does not add all OpenTelemetry required attributes for an HTTP event, +// it assumes ClientRequest was used to create the span with a complete set of +// attributes. If a complete set of attributes can be generated using the +// request contained in resp. For example: +// +// HTTPClientResponse(resp, ClientRequest(resp.Request))) +func HTTPClientResponse(resp *http.Response, attrs []attribute.KeyValue) []attribute.KeyValue { + return hc.ClientResponse(resp, attrs) +} + +// HTTPClientRequest returns trace attributes for an HTTP request made by a client. +// The following attributes are always returned: "http.url", "http.method", +// "net.peer.name". The following attributes are returned if the related values +// are defined in req: "net.peer.port", "user_agent.original", +// "http.request_content_length". +func HTTPClientRequest(req *http.Request, attrs []attribute.KeyValue) []attribute.KeyValue { + return hc.ClientRequest(req, attrs) +} + +// HTTPClientRequestMetrics returns metric attributes for an HTTP request made by a client. +// The following attributes are always returned: "http.method", "net.peer.name". +// The following attributes are returned if the +// related values are defined in req: "net.peer.port". +func HTTPClientRequestMetrics(req *http.Request) []attribute.KeyValue { + return hc.ClientRequestMetrics(req) +} + +// HTTPClientStatus returns a span status code and message for an HTTP status code +// value received by a client. +func HTTPClientStatus(code int) (codes.Code, string) { + return hc.ClientStatus(code) +} + +// HTTPServerRequest returns trace attributes for an HTTP request received by a +// server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +// +// The following attributes are always returned: "http.method", "http.scheme", +// "http.target", "net.host.name". The following attributes are returned if +// they related values are defined in req: "net.host.port", "net.sock.peer.addr", +// "net.sock.peer.port", "user_agent.original", "http.client_ip". +func HTTPServerRequest(server string, req *http.Request, opts HTTPServerRequestOptions, attrs []attribute.KeyValue) []attribute.KeyValue { + return hc.ServerRequest(server, req, opts, attrs) +} + +// HTTPServerRequestMetrics returns metric attributes for an HTTP request received by a +// server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +// +// The following attributes are always returned: "http.method", "http.scheme", +// "net.host.name". The following attributes are returned if they related +// values are defined in req: "net.host.port". +func HTTPServerRequestMetrics(server string, req *http.Request) []attribute.KeyValue { + return hc.ServerRequestMetrics(server, req) +} + +// HTTPServerStatus returns a span status code and message for an HTTP status code +// value returned by a server. Status codes in the 400-499 range are not +// returned as errors. +func HTTPServerStatus(code int) (codes.Code, string) { + return hc.ServerStatus(code) +} + +// httpConv are the HTTP semantic convention attributes defined for a version +// of the OpenTelemetry specification. +type httpConv struct { + NetConv *netConv + + HTTPClientIPKey attribute.Key + HTTPMethodKey attribute.Key + HTTPRequestContentLengthKey attribute.Key + HTTPResponseContentLengthKey attribute.Key + HTTPRouteKey attribute.Key + HTTPSchemeHTTP attribute.KeyValue + HTTPSchemeHTTPS attribute.KeyValue + HTTPStatusCodeKey attribute.Key + HTTPTargetKey attribute.Key + HTTPURLKey attribute.Key + UserAgentOriginalKey attribute.Key +} + +var hc = &httpConv{ + NetConv: nc, + + HTTPClientIPKey: semconv.HTTPClientIPKey, + HTTPMethodKey: semconv.HTTPMethodKey, + HTTPRequestContentLengthKey: semconv.HTTPRequestContentLengthKey, + HTTPResponseContentLengthKey: semconv.HTTPResponseContentLengthKey, + HTTPRouteKey: semconv.HTTPRouteKey, + HTTPSchemeHTTP: semconv.HTTPSchemeHTTP, + HTTPSchemeHTTPS: semconv.HTTPSchemeHTTPS, + HTTPStatusCodeKey: semconv.HTTPStatusCodeKey, + HTTPTargetKey: semconv.HTTPTargetKey, + HTTPURLKey: semconv.HTTPURLKey, + UserAgentOriginalKey: semconv.UserAgentOriginalKey, +} + +// ClientResponse returns attributes for an HTTP response received by a client +// from a server. The following attributes are returned if the related values +// are defined in resp: "http.status.code", "http.response_content_length". +// +// This does not add all OpenTelemetry required attributes for an HTTP event, +// it assumes ClientRequest was used to create the span with a complete set of +// attributes. If a complete set of attributes can be generated using the +// request contained in resp. For example: +// +// ClientResponse(resp, ClientRequest(resp.Request)) +func (c *httpConv) ClientResponse(resp *http.Response, attrs []attribute.KeyValue) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.status_code int + http.response_content_length int + */ + var n int + if resp.StatusCode > 0 { + n++ + } + if resp.ContentLength > 0 { + n++ + } + if n == 0 { + return attrs + } + + attrs = slices.Grow(attrs, n) + if resp.StatusCode > 0 { + attrs = append(attrs, c.HTTPStatusCodeKey.Int(resp.StatusCode)) + } + if resp.ContentLength > 0 { + attrs = append(attrs, c.HTTPResponseContentLengthKey.Int(int(resp.ContentLength))) + } + return attrs +} + +// ClientRequest returns attributes for an HTTP request made by a client. The +// following attributes are always returned: "http.url", "http.method", +// "net.peer.name". The following attributes are returned if the related values +// are defined in req: "net.peer.port", "user_agent.original", +// "http.request_content_length", "user_agent.original". +func (c *httpConv) ClientRequest(req *http.Request, attrs []attribute.KeyValue) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.method string + user_agent.original string + http.url string + net.peer.name string + net.peer.port int + http.request_content_length int + */ + + /* The following semantic conventions are not returned: + http.status_code This requires the response. See ClientResponse. + http.response_content_length This requires the response. See ClientResponse. + net.sock.family This requires the socket used. + net.sock.peer.addr This requires the socket used. + net.sock.peer.name This requires the socket used. + net.sock.peer.port This requires the socket used. + http.resend_count This is something outside of a single request. + net.protocol.name The value is the Request is ignored, and the go client will always use "http". + net.protocol.version The value in the Request is ignored, and the go client will always use 1.1 or 2.0. + */ + n := 3 // URL, peer name, proto, and method. + var h string + if req.URL != nil { + h = req.URL.Host + } + peer, p := firstHostPort(h, req.Header.Get("Host")) + port := requiredHTTPPort(req.URL != nil && req.URL.Scheme == "https", p) + if port > 0 { + n++ + } + useragent := req.UserAgent() + if useragent != "" { + n++ + } + if req.ContentLength > 0 { + n++ + } + + attrs = slices.Grow(attrs, n) + attrs = append(attrs, c.method(req.Method)) + + var u string + if req.URL != nil { + // Remove any username/password info that may be in the URL. + userinfo := req.URL.User + req.URL.User = nil + u = req.URL.String() + // Restore any username/password info that was removed. + req.URL.User = userinfo + } + attrs = append(attrs, c.HTTPURLKey.String(u)) + + attrs = append(attrs, c.NetConv.PeerName(peer)) + if port > 0 { + attrs = append(attrs, c.NetConv.PeerPort(port)) + } + + if useragent != "" { + attrs = append(attrs, c.UserAgentOriginalKey.String(useragent)) + } + + if l := req.ContentLength; l > 0 { + attrs = append(attrs, c.HTTPRequestContentLengthKey.Int64(l)) + } + + return attrs +} + +// ClientRequestMetrics returns metric attributes for an HTTP request made by a client. The +// following attributes are always returned: "http.method", "net.peer.name". +// The following attributes are returned if the related values +// are defined in req: "net.peer.port". +func (c *httpConv) ClientRequestMetrics(req *http.Request) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.method string + net.peer.name string + net.peer.port int + */ + + n := 2 // method, peer name. + var h string + if req.URL != nil { + h = req.URL.Host + } + peer, p := firstHostPort(h, req.Header.Get("Host")) + port := requiredHTTPPort(req.URL != nil && req.URL.Scheme == "https", p) + if port > 0 { + n++ + } + + attrs := make([]attribute.KeyValue, 0, n) + attrs = append(attrs, c.method(req.Method), c.NetConv.PeerName(peer)) + + if port > 0 { + attrs = append(attrs, c.NetConv.PeerPort(port)) + } + + return attrs +} + +// ServerRequest returns attributes for an HTTP request received by a server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +// +// The following attributes are always returned: "http.method", "http.scheme", +// "http.target", "net.host.name". The following attributes are returned if they +// related values are defined in req: "net.host.port", "net.sock.peer.addr", +// "net.sock.peer.port", "user_agent.original", "http.client_ip", +// "net.protocol.name", "net.protocol.version". +func (c *httpConv) ServerRequest(server string, req *http.Request, opts HTTPServerRequestOptions, attrs []attribute.KeyValue) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.method string + http.scheme string + net.host.name string + net.host.port int + net.sock.peer.addr string + net.sock.peer.port int + user_agent.original string + http.client_ip string + net.protocol.name string Note: not set if the value is "http". + net.protocol.version string + http.target string Note: doesn't include the query parameter. + */ + + /* The following semantic conventions are not returned: + http.status_code This requires the response. + http.request_content_length This requires the len() of body, which can mutate it. + http.response_content_length This requires the response. + http.route This is not available. + net.sock.peer.name This would require a DNS lookup. + net.sock.host.addr The request doesn't have access to the underlying socket. + net.sock.host.port The request doesn't have access to the underlying socket. + + */ + n := 4 // Method, scheme, proto, and host name. + var host string + var p int + if server == "" { + host, p = splitHostPort(req.Host) + } else { + // Prioritize the primary server name. + host, p = splitHostPort(server) + if p < 0 { + _, p = splitHostPort(req.Host) + } + } + hostPort := requiredHTTPPort(req.TLS != nil, p) + if hostPort > 0 { + n++ + } + peer, peerPort := splitHostPort(req.RemoteAddr) + if peer != "" { + n++ + if peerPort > 0 { + n++ + } + } + useragent := req.UserAgent() + if useragent != "" { + n++ + } + + // For client IP, use, in order: + // 1. The value passed in the options + // 2. The value in the X-Forwarded-For header + // 3. The peer address + clientIP := opts.HTTPClientIP + if clientIP == "" { + clientIP = serverClientIP(req.Header.Get("X-Forwarded-For")) + if clientIP == "" { + clientIP = peer + } + } + if clientIP != "" { + n++ + } + + var target string + if req.URL != nil { + target = req.URL.Path + if target != "" { + n++ + } + } + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" && protoName != "http" { + n++ + } + if protoVersion != "" { + n++ + } + + attrs = slices.Grow(attrs, n) + + attrs = append(attrs, c.method(req.Method)) + attrs = append(attrs, c.scheme(req.TLS != nil)) + attrs = append(attrs, c.NetConv.HostName(host)) + + if hostPort > 0 { + attrs = append(attrs, c.NetConv.HostPort(hostPort)) + } + + if peer != "" { + // The Go HTTP server sets RemoteAddr to "IP:port", this will not be a + // file-path that would be interpreted with a sock family. + attrs = append(attrs, c.NetConv.SockPeerAddr(peer)) + if peerPort > 0 { + attrs = append(attrs, c.NetConv.SockPeerPort(peerPort)) + } + } + + if useragent != "" { + attrs = append(attrs, c.UserAgentOriginalKey.String(useragent)) + } + + if clientIP != "" { + attrs = append(attrs, c.HTTPClientIPKey.String(clientIP)) + } + + if target != "" { + attrs = append(attrs, c.HTTPTargetKey.String(target)) + } + + if protoName != "" && protoName != "http" { + attrs = append(attrs, c.NetConv.NetProtocolName.String(protoName)) + } + if protoVersion != "" { + attrs = append(attrs, c.NetConv.NetProtocolVersion.String(protoVersion)) + } + + return attrs +} + +// ServerRequestMetrics returns metric attributes for an HTTP request received +// by a server. +// +// The server must be the primary server name if it is known. For example this +// would be the ServerName directive +// (https://httpd.apache.org/docs/2.4/mod/core.html#servername) for an Apache +// server, and the server_name directive +// (http://nginx.org/en/docs/http/ngx_http_core_module.html#server_name) for an +// nginx server. More generically, the primary server name would be the host +// header value that matches the default virtual host of an HTTP server. It +// should include the host identifier and if a port is used to route to the +// server that port identifier should be included as an appropriate port +// suffix. +// +// If the primary server name is not known, server should be an empty string. +// The req Host will be used to determine the server instead. +// +// The following attributes are always returned: "http.method", "http.scheme", +// "net.host.name". The following attributes are returned if they related +// values are defined in req: "net.host.port". +func (c *httpConv) ServerRequestMetrics(server string, req *http.Request) []attribute.KeyValue { + /* The following semantic conventions are returned if present: + http.scheme string + http.route string + http.method string + http.status_code int + net.host.name string + net.host.port int + net.protocol.name string Note: not set if the value is "http". + net.protocol.version string + */ + + n := 3 // Method, scheme, and host name. + var host string + var p int + if server == "" { + host, p = splitHostPort(req.Host) + } else { + // Prioritize the primary server name. + host, p = splitHostPort(server) + if p < 0 { + _, p = splitHostPort(req.Host) + } + } + hostPort := requiredHTTPPort(req.TLS != nil, p) + if hostPort > 0 { + n++ + } + protoName, protoVersion := netProtocol(req.Proto) + if protoName != "" { + n++ + } + if protoVersion != "" { + n++ + } + + attrs := make([]attribute.KeyValue, 0, n) + + attrs = append(attrs, c.methodMetric(req.Method)) + attrs = append(attrs, c.scheme(req.TLS != nil)) + attrs = append(attrs, c.NetConv.HostName(host)) + + if hostPort > 0 { + attrs = append(attrs, c.NetConv.HostPort(hostPort)) + } + if protoName != "" { + attrs = append(attrs, c.NetConv.NetProtocolName.String(protoName)) + } + if protoVersion != "" { + attrs = append(attrs, c.NetConv.NetProtocolVersion.String(protoVersion)) + } + + return attrs +} + +func (c *httpConv) method(method string) attribute.KeyValue { + if method == "" { + return c.HTTPMethodKey.String(http.MethodGet) + } + return c.HTTPMethodKey.String(method) +} + +func (c *httpConv) methodMetric(method string) attribute.KeyValue { + method = strings.ToUpper(method) + switch method { + case http.MethodConnect, http.MethodDelete, http.MethodGet, http.MethodHead, http.MethodOptions, http.MethodPatch, http.MethodPost, http.MethodPut, http.MethodTrace: + default: + method = "_OTHER" + } + return c.HTTPMethodKey.String(method) +} + +func (c *httpConv) scheme(https bool) attribute.KeyValue { // nolint:revive + if https { + return c.HTTPSchemeHTTPS + } + return c.HTTPSchemeHTTP +} + +func serverClientIP(xForwardedFor string) string { + if idx := strings.Index(xForwardedFor, ","); idx >= 0 { + xForwardedFor = xForwardedFor[:idx] + } + return xForwardedFor +} + +func requiredHTTPPort(https bool, port int) int { // nolint:revive + if https { + if port > 0 && port != 443 { + return port + } + } else { + if port > 0 && port != 80 { + return port + } + } + return -1 +} + +// Return the request host and port from the first non-empty source. +func firstHostPort(source ...string) (host string, port int) { + for _, hostport := range source { + host, port = splitHostPort(hostport) + if host != "" || port > 0 { + break + } + } + return +} + +// ClientStatus returns a span status code and message for an HTTP status code +// value received by a client. +func (c *httpConv) ClientStatus(code int) (codes.Code, string) { + if code < 100 || code >= 600 { + return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) + } + if code >= 400 { + return codes.Error, "" + } + return codes.Unset, "" +} + +// ServerStatus returns a span status code and message for an HTTP status code +// value returned by a server. Status codes in the 400-499 range are not +// returned as errors. +func (c *httpConv) ServerStatus(code int) (codes.Code, string) { + if code < 100 || code >= 600 { + return codes.Error, fmt.Sprintf("Invalid HTTP status code %d", code) + } + if code >= 500 { + return codes.Error, "" + } + return codes.Unset, "" +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/netconv.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/netconv.go new file mode 100644 index 0000000000..df97255e41 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil/netconv.go @@ -0,0 +1,214 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/semconvutil/netconv.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconvutil // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconvutil" + +import ( + "net" + "strconv" + "strings" + + "go.opentelemetry.io/otel/attribute" + semconv "go.opentelemetry.io/otel/semconv/v1.20.0" +) + +// NetTransport returns a trace attribute describing the transport protocol of the +// passed network. See the net.Dial for information about acceptable network +// values. +func NetTransport(network string) attribute.KeyValue { + return nc.Transport(network) +} + +// netConv are the network semantic convention attributes defined for a version +// of the OpenTelemetry specification. +type netConv struct { + NetHostNameKey attribute.Key + NetHostPortKey attribute.Key + NetPeerNameKey attribute.Key + NetPeerPortKey attribute.Key + NetProtocolName attribute.Key + NetProtocolVersion attribute.Key + NetSockFamilyKey attribute.Key + NetSockPeerAddrKey attribute.Key + NetSockPeerPortKey attribute.Key + NetSockHostAddrKey attribute.Key + NetSockHostPortKey attribute.Key + NetTransportOther attribute.KeyValue + NetTransportTCP attribute.KeyValue + NetTransportUDP attribute.KeyValue + NetTransportInProc attribute.KeyValue +} + +var nc = &netConv{ + NetHostNameKey: semconv.NetHostNameKey, + NetHostPortKey: semconv.NetHostPortKey, + NetPeerNameKey: semconv.NetPeerNameKey, + NetPeerPortKey: semconv.NetPeerPortKey, + NetProtocolName: semconv.NetProtocolNameKey, + NetProtocolVersion: semconv.NetProtocolVersionKey, + NetSockFamilyKey: semconv.NetSockFamilyKey, + NetSockPeerAddrKey: semconv.NetSockPeerAddrKey, + NetSockPeerPortKey: semconv.NetSockPeerPortKey, + NetSockHostAddrKey: semconv.NetSockHostAddrKey, + NetSockHostPortKey: semconv.NetSockHostPortKey, + NetTransportOther: semconv.NetTransportOther, + NetTransportTCP: semconv.NetTransportTCP, + NetTransportUDP: semconv.NetTransportUDP, + NetTransportInProc: semconv.NetTransportInProc, +} + +func (c *netConv) Transport(network string) attribute.KeyValue { + switch network { + case "tcp", "tcp4", "tcp6": + return c.NetTransportTCP + case "udp", "udp4", "udp6": + return c.NetTransportUDP + case "unix", "unixgram", "unixpacket": + return c.NetTransportInProc + default: + // "ip:*", "ip4:*", and "ip6:*" all are considered other. + return c.NetTransportOther + } +} + +// Host returns attributes for a network host address. +func (c *netConv) Host(address string) []attribute.KeyValue { + h, p := splitHostPort(address) + var n int + if h != "" { + n++ + if p > 0 { + n++ + } + } + + if n == 0 { + return nil + } + + attrs := make([]attribute.KeyValue, 0, n) + attrs = append(attrs, c.HostName(h)) + if p > 0 { + attrs = append(attrs, c.HostPort(p)) + } + return attrs +} + +func (c *netConv) HostName(name string) attribute.KeyValue { + return c.NetHostNameKey.String(name) +} + +func (c *netConv) HostPort(port int) attribute.KeyValue { + return c.NetHostPortKey.Int(port) +} + +func family(network, address string) string { + switch network { + case "unix", "unixgram", "unixpacket": + return "unix" + default: + if ip := net.ParseIP(address); ip != nil { + if ip.To4() == nil { + return "inet6" + } + return "inet" + } + } + return "" +} + +// Peer returns attributes for a network peer address. +func (c *netConv) Peer(address string) []attribute.KeyValue { + h, p := splitHostPort(address) + var n int + if h != "" { + n++ + if p > 0 { + n++ + } + } + + if n == 0 { + return nil + } + + attrs := make([]attribute.KeyValue, 0, n) + attrs = append(attrs, c.PeerName(h)) + if p > 0 { + attrs = append(attrs, c.PeerPort(p)) + } + return attrs +} + +func (c *netConv) PeerName(name string) attribute.KeyValue { + return c.NetPeerNameKey.String(name) +} + +func (c *netConv) PeerPort(port int) attribute.KeyValue { + return c.NetPeerPortKey.Int(port) +} + +func (c *netConv) SockPeerAddr(addr string) attribute.KeyValue { + return c.NetSockPeerAddrKey.String(addr) +} + +func (c *netConv) SockPeerPort(port int) attribute.KeyValue { + return c.NetSockPeerPortKey.Int(port) +} + +// splitHostPort splits a network address hostport of the form "host", +// "host%zone", "[host]", "[host%zone], "host:port", "host%zone:port", +// "[host]:port", "[host%zone]:port", or ":port" into host or host%zone and +// port. +// +// An empty host is returned if it is not provided or unparsable. A negative +// port is returned if it is not provided or unparsable. +func splitHostPort(hostport string) (host string, port int) { + port = -1 + + if strings.HasPrefix(hostport, "[") { + addrEnd := strings.LastIndex(hostport, "]") + if addrEnd < 0 { + // Invalid hostport. + return + } + if i := strings.LastIndex(hostport[addrEnd:], ":"); i < 0 { + host = hostport[1:addrEnd] + return + } + } else { + if i := strings.LastIndex(hostport, ":"); i < 0 { + host = hostport + return + } + } + + host, pStr, err := net.SplitHostPort(hostport) + if err != nil { + return + } + + p, err := strconv.ParseUint(pStr, 10, 16) + if err != nil { + return + } + return host, int(p) // nolint: gosec // Bitsize checked to be 16 above. +} + +func netProtocol(proto string) (name string, version string) { + name, version, _ = strings.Cut(proto, "/") + switch name { + case "HTTP": + name = "http" + case "QUIC": + name = "quic" + case "SPDY": + name = "spdy" + default: + name = strings.ToLower(name) + } + return name, version +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go new file mode 100644 index 0000000000..d62ce44b00 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/labeler.go @@ -0,0 +1,58 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/attribute" +) + +// Labeler is used to allow instrumented HTTP handlers to add custom attributes to +// the metrics recorded by the net/http instrumentation. +type Labeler struct { + mu sync.Mutex + attributes []attribute.KeyValue +} + +// Add attributes to a Labeler. +func (l *Labeler) Add(ls ...attribute.KeyValue) { + l.mu.Lock() + defer l.mu.Unlock() + l.attributes = append(l.attributes, ls...) +} + +// Get returns a copy of the attributes added to the Labeler. +func (l *Labeler) Get() []attribute.KeyValue { + l.mu.Lock() + defer l.mu.Unlock() + ret := make([]attribute.KeyValue, len(l.attributes)) + copy(ret, l.attributes) + return ret +} + +type labelerContextKeyType int + +const labelerContextKey labelerContextKeyType = 0 + +// ContextWithLabeler returns a new context with the provided Labeler instance. +// Attributes added to the specified labeler will be injected into metrics +// emitted by the instrumentation. Only one labeller can be injected into the +// context. Injecting it multiple times will override the previous calls. +func ContextWithLabeler(parent context.Context, l *Labeler) context.Context { + return context.WithValue(parent, labelerContextKey, l) +} + +// LabelerFromContext retrieves a Labeler instance from the provided context if +// one is available. If no Labeler was found in the provided context a new, empty +// Labeler is returned and the second return value is false. In this case it is +// safe to use the Labeler but any attributes added to it will not be used. +func LabelerFromContext(ctx context.Context) (*Labeler, bool) { + l, ok := ctx.Value(labelerContextKey).(*Labeler) + if !ok { + l = &Labeler{} + } + return l, ok +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go new file mode 100644 index 0000000000..9476ef01b0 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/start_time_context.go @@ -0,0 +1,29 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "context" + "time" +) + +type startTimeContextKeyType int + +const startTimeContextKey startTimeContextKeyType = 0 + +// ContextWithStartTime returns a new context with the provided start time. The +// start time will be used for metrics and traces emitted by the +// instrumentation. Only one labeller can be injected into the context. +// Injecting it multiple times will override the previous calls. +func ContextWithStartTime(parent context.Context, start time.Time) context.Context { + return context.WithValue(parent, startTimeContextKey, start) +} + +// StartTimeFromContext retrieves a time.Time from the provided context if one +// is available. If no start time was found in the provided context, a new, +// zero start time is returned and the second return value is false. +func StartTimeFromContext(ctx context.Context) time.Time { + t, _ := ctx.Value(startTimeContextKey).(time.Time) + return t +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go new file mode 100644 index 0000000000..e4c02a4296 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/transport.go @@ -0,0 +1,279 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +import ( + "context" + "io" + "net/http" + "net/http/httptrace" + "sync/atomic" + "time" + + "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/request" + "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/internal/semconv" + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/propagation" + + "go.opentelemetry.io/otel/trace" +) + +// Transport implements the http.RoundTripper interface and wraps +// outbound HTTP(S) requests with a span and enriches it with metrics. +type Transport struct { + rt http.RoundTripper + + tracer trace.Tracer + propagators propagation.TextMapPropagator + spanStartOptions []trace.SpanStartOption + filters []Filter + spanNameFormatter func(string, *http.Request) string + clientTrace func(context.Context) *httptrace.ClientTrace + metricAttributesFn func(*http.Request) []attribute.KeyValue + + semconv semconv.HTTPClient +} + +var _ http.RoundTripper = &Transport{} + +// NewTransport wraps the provided http.RoundTripper with one that +// starts a span, injects the span context into the outbound request headers, +// and enriches it with metrics. +// +// If the provided http.RoundTripper is nil, http.DefaultTransport will be used +// as the base http.RoundTripper. +func NewTransport(base http.RoundTripper, opts ...Option) *Transport { + if base == nil { + base = http.DefaultTransport + } + + t := Transport{ + rt: base, + } + + defaultOpts := []Option{ + WithSpanOptions(trace.WithSpanKind(trace.SpanKindClient)), + WithSpanNameFormatter(defaultTransportFormatter), + } + + c := newConfig(append(defaultOpts, opts...)...) + t.applyConfig(c) + + return &t +} + +func (t *Transport) applyConfig(c *config) { + t.tracer = c.Tracer + t.propagators = c.Propagators + t.spanStartOptions = c.SpanStartOptions + t.filters = c.Filters + t.spanNameFormatter = c.SpanNameFormatter + t.clientTrace = c.ClientTrace + t.semconv = semconv.NewHTTPClient(c.Meter) + t.metricAttributesFn = c.MetricAttributesFn +} + +func defaultTransportFormatter(_ string, r *http.Request) string { + return "HTTP " + r.Method +} + +// RoundTrip creates a Span and propagates its context via the provided request's headers +// before handing the request to the configured base RoundTripper. The created span will +// end when the response body is closed or when a read from the body returns io.EOF. +func (t *Transport) RoundTrip(r *http.Request) (*http.Response, error) { + requestStartTime := time.Now() + for _, f := range t.filters { + if !f(r) { + // Simply pass through to the base RoundTripper if a filter rejects the request + return t.rt.RoundTrip(r) + } + } + + tracer := t.tracer + + if tracer == nil { + if span := trace.SpanFromContext(r.Context()); span.SpanContext().IsValid() { + tracer = newTracer(span.TracerProvider()) + } else { + tracer = newTracer(otel.GetTracerProvider()) + } + } + + opts := append([]trace.SpanStartOption{}, t.spanStartOptions...) // start with the configured options + + ctx, span := tracer.Start(r.Context(), t.spanNameFormatter("", r), opts...) + + if t.clientTrace != nil { + ctx = httptrace.WithClientTrace(ctx, t.clientTrace(ctx)) + } + + labeler, found := LabelerFromContext(ctx) + if !found { + ctx = ContextWithLabeler(ctx, labeler) + } + + r = r.Clone(ctx) // According to RoundTripper spec, we shouldn't modify the origin request. + + // if request body is nil or NoBody, we don't want to mutate the body as it + // will affect the identity of it in an unforeseeable way because we assert + // ReadCloser fulfills a certain interface and it is indeed nil or NoBody. + bw := request.NewBodyWrapper(r.Body, func(int64) {}) + if r.Body != nil && r.Body != http.NoBody { + r.Body = bw + } + + span.SetAttributes(t.semconv.RequestTraceAttrs(r)...) + t.propagators.Inject(ctx, propagation.HeaderCarrier(r.Header)) + + res, err := t.rt.RoundTrip(r) + + // Defer metrics recording function to record the metrics on error or no error. + defer func() { + metricAttributes := semconv.MetricAttributes{ + Req: r, + AdditionalAttributes: append(labeler.Get(), t.metricAttributesFromRequest(r)...), + } + + if err == nil { + metricAttributes.StatusCode = res.StatusCode + } + + metricOpts := t.semconv.MetricOptions(metricAttributes) + + metricData := semconv.MetricData{ + RequestSize: bw.BytesRead(), + } + + if err == nil { + // For handling response bytes we leverage a callback when the client reads the http response + readRecordFunc := func(n int64) { + t.semconv.RecordResponseSize(ctx, n, metricOpts) + } + + res.Body = newWrappedBody(span, readRecordFunc, res.Body) + } + + // Use floating point division here for higher precision (instead of Millisecond method). + elapsedTime := float64(time.Since(requestStartTime)) / float64(time.Millisecond) + + metricData.ElapsedTime = elapsedTime + + t.semconv.RecordMetrics(ctx, metricData, metricOpts) + }() + + if err != nil { + // set error type attribute if the error is part of the predefined + // error types. + // otherwise, record it as an exception + if errType := t.semconv.ErrorType(err); errType.Valid() { + span.SetAttributes(errType) + } else { + span.RecordError(err) + } + + span.SetStatus(codes.Error, err.Error()) + span.End() + + return res, err + } + + // traces + span.SetAttributes(t.semconv.ResponseTraceAttrs(res)...) + span.SetStatus(t.semconv.Status(res.StatusCode)) + + return res, nil +} + +func (t *Transport) metricAttributesFromRequest(r *http.Request) []attribute.KeyValue { + var attributeForRequest []attribute.KeyValue + if t.metricAttributesFn != nil { + attributeForRequest = t.metricAttributesFn(r) + } + return attributeForRequest +} + +// newWrappedBody returns a new and appropriately scoped *wrappedBody as an +// io.ReadCloser. If the passed body implements io.Writer, the returned value +// will implement io.ReadWriteCloser. +func newWrappedBody(span trace.Span, record func(n int64), body io.ReadCloser) io.ReadCloser { + // The successful protocol switch responses will have a body that + // implement an io.ReadWriteCloser. Ensure this interface type continues + // to be satisfied if that is the case. + if _, ok := body.(io.ReadWriteCloser); ok { + return &wrappedBody{span: span, record: record, body: body} + } + + // Remove the implementation of the io.ReadWriteCloser and only implement + // the io.ReadCloser. + return struct{ io.ReadCloser }{&wrappedBody{span: span, record: record, body: body}} +} + +// wrappedBody is the response body type returned by the transport +// instrumentation to complete a span. Errors encountered when using the +// response body are recorded in span tracking the response. +// +// The span tracking the response is ended when this body is closed. +// +// If the response body implements the io.Writer interface (i.e. for +// successful protocol switches), the wrapped body also will. +type wrappedBody struct { + span trace.Span + recorded atomic.Bool + record func(n int64) + body io.ReadCloser + read atomic.Int64 +} + +var _ io.ReadWriteCloser = &wrappedBody{} + +func (wb *wrappedBody) Write(p []byte) (int, error) { + // This will not panic given the guard in newWrappedBody. + n, err := wb.body.(io.Writer).Write(p) + if err != nil { + wb.span.RecordError(err) + wb.span.SetStatus(codes.Error, err.Error()) + } + return n, err +} + +func (wb *wrappedBody) Read(b []byte) (int, error) { + n, err := wb.body.Read(b) + // Record the number of bytes read + wb.read.Add(int64(n)) + + switch err { + case nil: + // nothing to do here but fall through to the return + case io.EOF: + wb.recordBytesRead() + wb.span.End() + default: + wb.span.RecordError(err) + wb.span.SetStatus(codes.Error, err.Error()) + } + return n, err +} + +// recordBytesRead is a function that ensures the number of bytes read is recorded once and only once. +func (wb *wrappedBody) recordBytesRead() { + // note: it is more performant (and equally correct) to use atomic.Bool over sync.Once here. In the event that + // two goroutines are racing to call this method, the number of bytes read will no longer increase. Using + // CompareAndSwap allows later goroutines to return quickly and not block waiting for the race winner to finish + // calling wb.record(wb.read.Load()). + if wb.recorded.CompareAndSwap(false, true) { + // Record the total number of bytes read + wb.record(wb.read.Load()) + } +} + +func (wb *wrappedBody) Close() error { + wb.recordBytesRead() + wb.span.End() + if wb.body != nil { + return wb.body.Close() + } + return nil +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go new file mode 100644 index 0000000000..2fe5a13618 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp/version.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otelhttp // import "go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp" + +// Version is the current release version of the otelhttp instrumentation. +func Version() string { + return "0.62.0" + // This string is updated by the pre_release.sh script during release +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/LICENSE b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/doc.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/doc.go new file mode 100644 index 0000000000..fabf952c46 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/doc.go @@ -0,0 +1,34 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package runtime implements the conventional runtime metrics specified by OpenTelemetry. +// +// The metric events produced are: +// +// go.memory.used By Memory used by the Go runtime. +// go.memory.limit By Go runtime memory limit configured by the user, if a limit exists. +// go.memory.allocated By Memory allocated to the heap by the application. +// go.memory.allocations {allocation} Count of allocations to the heap by the application. +// go.memory.gc.goal By Heap size target for the end of the GC cycle. +// go.goroutine.count {goroutine} Count of live goroutines. +// go.processor.limit {thread} The number of OS threads that can execute user-level Go code simultaneously. +// go.config.gogc % Heap size target percentage configured by the user, otherwise 100. +// +// When the OTEL_GO_X_DEPRECATED_RUNTIME_METRICS environment variable is set to +// true, the following deprecated metrics are produced: +// +// runtime.go.cgo.calls - Number of cgo calls made by the current process +// runtime.go.gc.count - Number of completed garbage collection cycles +// runtime.go.gc.pause_ns (ns) Amount of nanoseconds in GC stop-the-world pauses +// runtime.go.gc.pause_total_ns (ns) Cumulative nanoseconds in GC stop-the-world pauses since the program started +// runtime.go.goroutines - Number of goroutines that currently exist +// runtime.go.lookups - Number of pointer lookups performed by the runtime +// runtime.go.mem.heap_alloc (bytes) Bytes of allocated heap objects +// runtime.go.mem.heap_idle (bytes) Bytes in idle (unused) spans +// runtime.go.mem.heap_inuse (bytes) Bytes in in-use spans +// runtime.go.mem.heap_objects - Number of allocated heap objects +// runtime.go.mem.heap_released (bytes) Bytes of idle spans whose physical memory has been returned to the OS +// runtime.go.mem.heap_sys (bytes) Bytes of heap memory obtained from the OS +// runtime.go.mem.live_objects - Number of live objects is the number of cumulative Mallocs - Frees +// runtime.uptime (ms) Milliseconds since application was initialized +package runtime // import "go.opentelemetry.io/contrib/instrumentation/runtime" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/doc.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/doc.go new file mode 100644 index 0000000000..9fb44efa8d --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/doc.go @@ -0,0 +1,22 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package deprecatedruntime implements the deprecated runtime metrics for OpenTelemetry. +// +// The metric events produced are: +// +// runtime.go.cgo.calls - Number of cgo calls made by the current process +// runtime.go.gc.count - Number of completed garbage collection cycles +// runtime.go.gc.pause_ns (ns) Amount of nanoseconds in GC stop-the-world pauses +// runtime.go.gc.pause_total_ns (ns) Cumulative nanoseconds in GC stop-the-world pauses since the program started +// runtime.go.goroutines - Number of goroutines that currently exist +// runtime.go.lookups - Number of pointer lookups performed by the runtime +// runtime.go.mem.heap_alloc (bytes) Bytes of allocated heap objects +// runtime.go.mem.heap_idle (bytes) Bytes in idle (unused) spans +// runtime.go.mem.heap_inuse (bytes) Bytes in in-use spans +// runtime.go.mem.heap_objects - Number of allocated heap objects +// runtime.go.mem.heap_released (bytes) Bytes of idle spans whose physical memory has been returned to the OS +// runtime.go.mem.heap_sys (bytes) Bytes of heap memory obtained from the OS +// runtime.go.mem.live_objects - Number of live objects is the number of cumulative Mallocs - Frees +// runtime.uptime (ms) Milliseconds since application was initialized +package deprecatedruntime // import "go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime" diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/runtime.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/runtime.go new file mode 100644 index 0000000000..86c7c9e34a --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime/runtime.go @@ -0,0 +1,296 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package deprecatedruntime // import "go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime" + +import ( + "context" + "math" + goruntime "runtime" + "sync" + "time" + + "go.opentelemetry.io/otel/metric" +) + +// Runtime reports the work-in-progress conventional runtime metrics specified by OpenTelemetry. +type runtime struct { + minimumReadMemStatsInterval time.Duration + meter metric.Meter +} + +// Start initializes reporting of runtime metrics using the supplied config. +func Start(meter metric.Meter, minimumReadMemStatsInterval time.Duration) error { + r := &runtime{ + meter: meter, + minimumReadMemStatsInterval: minimumReadMemStatsInterval, + } + return r.register() +} + +func (r *runtime) register() error { + startTime := time.Now() + uptime, err := r.meter.Int64ObservableCounter( + "runtime.uptime", + metric.WithUnit("ms"), + metric.WithDescription("Milliseconds since application was initialized"), + ) + if err != nil { + return err + } + + goroutines, err := r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.goroutines", + metric.WithDescription("Number of goroutines that currently exist"), + ) + if err != nil { + return err + } + + cgoCalls, err := r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.cgo.calls", + metric.WithDescription("Number of cgo calls made by the current process"), + ) + if err != nil { + return err + } + + _, err = r.meter.RegisterCallback( + func(ctx context.Context, o metric.Observer) error { + o.ObserveInt64(uptime, time.Since(startTime).Milliseconds()) + o.ObserveInt64(goroutines, int64(goruntime.NumGoroutine())) + o.ObserveInt64(cgoCalls, goruntime.NumCgoCall()) + return nil + }, + uptime, + goroutines, + cgoCalls, + ) + if err != nil { + return err + } + + return r.registerMemStats() +} + +func (r *runtime) registerMemStats() error { + var ( + err error + + heapAlloc metric.Int64ObservableUpDownCounter + heapIdle metric.Int64ObservableUpDownCounter + heapInuse metric.Int64ObservableUpDownCounter + heapObjects metric.Int64ObservableUpDownCounter + heapReleased metric.Int64ObservableUpDownCounter + heapSys metric.Int64ObservableUpDownCounter + liveObjects metric.Int64ObservableUpDownCounter + + // TODO: is ptrLookups useful? I've not seen a value + // other than zero. + ptrLookups metric.Int64ObservableCounter + + gcCount metric.Int64ObservableCounter + pauseTotalNs metric.Int64ObservableCounter + gcPauseNs metric.Int64Histogram + + lastNumGC uint32 + lastMemStats time.Time + memStats goruntime.MemStats + + // lock prevents a race between batch observer and instrument registration. + lock sync.Mutex + ) + + lock.Lock() + defer lock.Unlock() + + if heapAlloc, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_alloc", + metric.WithUnit("By"), + metric.WithDescription("Bytes of allocated heap objects"), + ); err != nil { + return err + } + + if heapIdle, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_idle", + metric.WithUnit("By"), + metric.WithDescription("Bytes in idle (unused) spans"), + ); err != nil { + return err + } + + if heapInuse, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_inuse", + metric.WithUnit("By"), + metric.WithDescription("Bytes in in-use spans"), + ); err != nil { + return err + } + + if heapObjects, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_objects", + metric.WithDescription("Number of allocated heap objects"), + ); err != nil { + return err + } + + // FYI see https://github.com/golang/go/issues/32284 to help + // understand the meaning of this value. + if heapReleased, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_released", + metric.WithUnit("By"), + metric.WithDescription("Bytes of idle spans whose physical memory has been returned to the OS"), + ); err != nil { + return err + } + + if heapSys, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.heap_sys", + metric.WithUnit("By"), + metric.WithDescription("Bytes of heap memory obtained from the OS"), + ); err != nil { + return err + } + + if ptrLookups, err = r.meter.Int64ObservableCounter( + "process.runtime.go.mem.lookups", + metric.WithDescription("Number of pointer lookups performed by the runtime"), + ); err != nil { + return err + } + + if liveObjects, err = r.meter.Int64ObservableUpDownCounter( + "process.runtime.go.mem.live_objects", + metric.WithDescription("Number of live objects is the number of cumulative Mallocs - Frees"), + ); err != nil { + return err + } + + if gcCount, err = r.meter.Int64ObservableCounter( + "process.runtime.go.gc.count", + metric.WithDescription("Number of completed garbage collection cycles"), + ); err != nil { + return err + } + + // Note that the following could be derived as a sum of + // individual pauses, but we may lose individual pauses if the + // observation interval is too slow. + if pauseTotalNs, err = r.meter.Int64ObservableCounter( + "process.runtime.go.gc.pause_total_ns", + // TODO: nanoseconds units + metric.WithDescription("Cumulative nanoseconds in GC stop-the-world pauses since the program started"), + ); err != nil { + return err + } + + if gcPauseNs, err = r.meter.Int64Histogram( + "process.runtime.go.gc.pause_ns", + // TODO: nanoseconds units + metric.WithDescription("Amount of nanoseconds in GC stop-the-world pauses"), + ); err != nil { + return err + } + + _, err = r.meter.RegisterCallback( + func(ctx context.Context, o metric.Observer) error { + lock.Lock() + defer lock.Unlock() + + now := time.Now() + if now.Sub(lastMemStats) >= r.minimumReadMemStatsInterval { + goruntime.ReadMemStats(&memStats) + lastMemStats = now + } + + o.ObserveInt64(heapAlloc, clampUint64(memStats.HeapAlloc)) + o.ObserveInt64(heapIdle, clampUint64(memStats.HeapIdle)) + o.ObserveInt64(heapInuse, clampUint64(memStats.HeapInuse)) + o.ObserveInt64(heapObjects, clampUint64(memStats.HeapObjects)) + o.ObserveInt64(heapReleased, clampUint64(memStats.HeapReleased)) + o.ObserveInt64(heapSys, clampUint64(memStats.HeapSys)) + o.ObserveInt64(liveObjects, clampUint64(memStats.Mallocs-memStats.Frees)) + o.ObserveInt64(ptrLookups, clampUint64(memStats.Lookups)) + o.ObserveInt64(gcCount, int64(memStats.NumGC)) + o.ObserveInt64(pauseTotalNs, clampUint64(memStats.PauseTotalNs)) + + computeGCPauses(ctx, gcPauseNs, memStats.PauseNs[:], lastNumGC, memStats.NumGC) + + lastNumGC = memStats.NumGC + + return nil + }, + heapAlloc, + heapIdle, + heapInuse, + heapObjects, + heapReleased, + heapSys, + liveObjects, + + ptrLookups, + + gcCount, + pauseTotalNs, + ) + if err != nil { + return err + } + return nil +} + +func clampUint64(v uint64) int64 { + if v > math.MaxInt64 { + return math.MaxInt64 + } + return int64(v) // nolint: gosec // Overflow checked above. +} + +func computeGCPauses( + ctx context.Context, + recorder metric.Int64Histogram, + circular []uint64, + lastNumGC, currentNumGC uint32, +) { + delta := int(int64(currentNumGC) - int64(lastNumGC)) + + if delta == 0 { + return + } + + if delta >= len(circular) { + // There were > 256 collections, some may have been lost. + recordGCPauses(ctx, recorder, circular) + return + } + + n := len(circular) + if n < 0 { + // Only the case in error situations. + return + } + + length := uint64(n) // nolint: gosec // n >= 0 + + i := uint64(lastNumGC) % length + j := uint64(currentNumGC) % length + + if j < i { // wrap around the circular buffer + recordGCPauses(ctx, recorder, circular[i:]) + recordGCPauses(ctx, recorder, circular[:j]) + return + } + + recordGCPauses(ctx, recorder, circular[i:j]) +} + +func recordGCPauses( + ctx context.Context, + recorder metric.Int64Histogram, + pauses []uint64, +) { + for _, pause := range pauses { + recorder.Record(ctx, clampUint64(pause)) + } +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/README.md b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/README.md new file mode 100644 index 0000000000..00170e1a68 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/README.md @@ -0,0 +1,29 @@ +# Feature Gates + +The runtime package contains a feature gate used to ease the migration +from the [previous runtime metrics conventions] to the new [OpenTelemetry Go +Runtime conventions]. + +Note that the new runtime metrics conventions are still experimental, and may +change in backwards incompatible ways as feedback is applied. + +## Features + +- [Include Deprecated Metrics](#include-deprecated-metrics) + +### Include Deprecated Metrics + +To temporarily re-enable the deprecated metrics: + +```console +export OTEL_GO_X_DEPRECATED_RUNTIME_METRICS=true +``` + +Eventually, the deprecated runtime metrics will be removed, +and setting the environment variable will no longer have any effect. + +The value set must be the case-insensitive string of `"true"` to enable the +feature, and `"false"` to disable the feature. All other values are ignored. + +[previous runtime metrics conventions]: https://pkg.go.dev/go.opentelemetry.io/contrib/instrumentation/runtime@v0.52.0 +[OpenTelemetry Go Runtime conventions]: https://github.com/open-telemetry/semantic-conventions/blob/main/docs/runtime/go-metrics.md diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/x.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/x.go new file mode 100644 index 0000000000..95a05d5993 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/internal/x/x.go @@ -0,0 +1,53 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package x contains support for OTel runtime instrumentation experimental features. +// +// This package should only be used for features defined in the specification. +// It should not be used for experiments or new project ideas. +package x // import "go.opentelemetry.io/contrib/instrumentation/runtime/internal/x" + +import ( + "os" + "strconv" +) + +// DeprecatedRuntimeMetrics is an experimental feature flag that defines if the deprecated +// runtime metrics should be produced. During development of the new +// conventions, it is enabled by default. +// +// To enable this feature set the OTEL_GO_X_DEPRECATED_RUNTIME_METRICS environment variable +// to the case-insensitive string value of "true" (i.e. "True" and "TRUE" +// will also enable this). +var DeprecatedRuntimeMetrics = newFeature("DEPRECATED_RUNTIME_METRICS", false) + +// BoolFeature is an experimental feature control flag. It provides a uniform way +// to interact with these feature flags and parse their values. +type BoolFeature struct { + key string + defaultVal bool +} + +func newFeature(suffix string, defaultVal bool) BoolFeature { + const envKeyRoot = "OTEL_GO_X_" + return BoolFeature{ + key: envKeyRoot + suffix, + defaultVal: defaultVal, + } +} + +// Key returns the environment variable key that needs to be set to enable the +// feature. +func (f BoolFeature) Key() string { return f.key } + +// Enabled returns if the feature is enabled. +func (f BoolFeature) Enabled() bool { + v := os.Getenv(f.key) + + val, err := strconv.ParseBool(v) + if err != nil { + return f.defaultVal + } + + return val +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/options.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/options.go new file mode 100644 index 0000000000..580dc5dcd5 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/options.go @@ -0,0 +1,99 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package runtime // import "go.opentelemetry.io/contrib/instrumentation/runtime" + +import ( + "time" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/metric" +) + +// config contains optional settings for reporting runtime metrics. +type config struct { + // MinimumReadMemStatsInterval sets the minimum interval + // between calls to runtime.ReadMemStats(). Negative values + // are ignored. + MinimumReadMemStatsInterval time.Duration + + // MeterProvider sets the metric.MeterProvider. If nil, the global + // Provider will be used. + MeterProvider metric.MeterProvider +} + +// Option supports configuring optional settings for runtime metrics. +type Option interface { + apply(*config) +} + +// ProducerOption supports configuring optional settings for runtime metrics using a +// metric producer in addition to standard instrumentation. +type ProducerOption interface { + Option + applyProducer(*config) +} + +// DefaultMinimumReadMemStatsInterval is the default minimum interval +// between calls to runtime.ReadMemStats(). Use the +// WithMinimumReadMemStatsInterval() option to modify this setting in +// Start(). +const DefaultMinimumReadMemStatsInterval time.Duration = 15 * time.Second + +// WithMinimumReadMemStatsInterval sets a minimum interval between calls to +// runtime.ReadMemStats(), which is a relatively expensive call to make +// frequently. This setting is ignored when `d` is negative. +func WithMinimumReadMemStatsInterval(d time.Duration) Option { + return minimumReadMemStatsIntervalOption(d) +} + +type minimumReadMemStatsIntervalOption time.Duration + +func (o minimumReadMemStatsIntervalOption) apply(c *config) { + if o >= 0 { + c.MinimumReadMemStatsInterval = time.Duration(o) + } +} + +func (o minimumReadMemStatsIntervalOption) applyProducer(c *config) { o.apply(c) } + +// WithMeterProvider sets the Metric implementation to use for +// reporting. If this option is not used, the global metric.MeterProvider +// will be used. `provider` must be non-nil. +func WithMeterProvider(provider metric.MeterProvider) Option { + return metricProviderOption{provider} +} + +type metricProviderOption struct{ metric.MeterProvider } + +func (o metricProviderOption) apply(c *config) { + if o.MeterProvider != nil { + c.MeterProvider = o.MeterProvider + } +} + +// newConfig computes a config from the supplied Options. +func newConfig(opts ...Option) config { + c := config{ + MeterProvider: otel.GetMeterProvider(), + } + for _, opt := range opts { + opt.apply(&c) + } + if c.MinimumReadMemStatsInterval <= 0 { + c.MinimumReadMemStatsInterval = DefaultMinimumReadMemStatsInterval + } + return c +} + +// newConfig computes a config from the supplied ProducerOptions. +func newProducerConfig(opts ...ProducerOption) config { + c := config{} + for _, opt := range opts { + opt.applyProducer(&c) + } + if c.MinimumReadMemStatsInterval <= 0 { + c.MinimumReadMemStatsInterval = DefaultMinimumReadMemStatsInterval + } + return c +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/producer.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/producer.go new file mode 100644 index 0000000000..82426b3f2a --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/producer.go @@ -0,0 +1,120 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package runtime // import "go.opentelemetry.io/contrib/instrumentation/runtime" + +import ( + "context" + "errors" + "math" + "runtime/metrics" + "sync" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +var startTime time.Time + +func init() { + startTime = time.Now() +} + +var histogramMetrics = []string{goSchedLatencies} + +// Producer is a metric.Producer, which provides precomputed histogram metrics from the go runtime. +type Producer struct { + lock sync.Mutex + collector *goCollector +} + +var _ metric.Producer = (*Producer)(nil) + +// NewProducer creates a Producer which provides precomputed histogram metrics from the go runtime. +func NewProducer(opts ...ProducerOption) *Producer { + c := newProducerConfig(opts...) + return &Producer{ + collector: newCollector(c.MinimumReadMemStatsInterval, histogramMetrics), + } +} + +// Produce returns precomputed histogram metrics from the go runtime, or an error if unsuccessful. +func (p *Producer) Produce(context.Context) ([]metricdata.ScopeMetrics, error) { + p.lock.Lock() + p.collector.refresh() + schedHist := p.collector.getHistogram(goSchedLatencies) + p.lock.Unlock() + // Use the last collection time (which may or may not be now) for the timestamp. + histDp := convertRuntimeHistogram(schedHist, p.collector.lastCollect) + if len(histDp) == 0 { + return nil, errors.New("unable to obtain go.schedule.duration metric from the runtime") + } + return []metricdata.ScopeMetrics{ + { + Scope: instrumentation.Scope{ + Name: ScopeName, + Version: Version(), + }, + Metrics: []metricdata.Metrics{ + { + Name: "go.schedule.duration", + Description: "The time goroutines have spent in the scheduler in a runnable state before actually running.", + Unit: "s", + Data: metricdata.Histogram[float64]{ + Temporality: metricdata.CumulativeTemporality, + DataPoints: histDp, + }, + }, + }, + }, + }, nil +} + +var emptySet = attribute.EmptySet() + +func convertRuntimeHistogram(runtimeHist *metrics.Float64Histogram, ts time.Time) []metricdata.HistogramDataPoint[float64] { + if runtimeHist == nil { + return nil + } + bounds := runtimeHist.Buckets + counts := runtimeHist.Counts + if len(bounds) < 2 { + // runtime histograms are guaranteed to have at least two bucket boundaries. + return nil + } + // trim the first bucket since it is a lower bound. OTel histogram boundaries only have an upper bound. + bounds = bounds[1:] + if bounds[len(bounds)-1] == math.Inf(1) { + // trim the last bucket if it is +Inf, since the +Inf boundary is implicit in OTel. + bounds = bounds[:len(bounds)-1] + } else { + // if the last bucket is not +Inf, append an extra zero count since + // the implicit +Inf bucket won't have any observations. + counts = append(counts, 0) + } + count := uint64(0) + sum := float64(0) + for i, c := range counts { + count += c + // This computed sum is an underestimate, since it assumes each + // observation happens at the bucket's lower bound. + if i > 0 && count != 0 { + sum += bounds[i-1] * float64(count) + } + } + + return []metricdata.HistogramDataPoint[float64]{ + { + StartTime: startTime, + Count: count, + Sum: sum, + Time: ts, + Bounds: bounds, + BucketCounts: counts, + Attributes: *emptySet, + }, + } +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/runtime.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/runtime.go new file mode 100644 index 0000000000..fec833b573 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/runtime.go @@ -0,0 +1,200 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package runtime // import "go.opentelemetry.io/contrib/instrumentation/runtime" + +import ( + "context" + "math" + "runtime/metrics" + "sync" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/semconv/v1.34.0/goconv" + + "go.opentelemetry.io/contrib/instrumentation/runtime/internal/deprecatedruntime" + "go.opentelemetry.io/contrib/instrumentation/runtime/internal/x" +) + +// ScopeName is the instrumentation scope name. +const ScopeName = "go.opentelemetry.io/contrib/instrumentation/runtime" + +const ( + goTotalMemory = "/memory/classes/total:bytes" + goMemoryReleased = "/memory/classes/heap/released:bytes" + goHeapMemory = "/memory/classes/heap/stacks:bytes" + goMemoryLimit = "/gc/gomemlimit:bytes" + goMemoryAllocated = "/gc/heap/allocs:bytes" + goMemoryAllocations = "/gc/heap/allocs:objects" + goMemoryGoal = "/gc/heap/goal:bytes" + goGoroutines = "/sched/goroutines:goroutines" + goMaxProcs = "/sched/gomaxprocs:threads" + goConfigGC = "/gc/gogc:percent" + goSchedLatencies = "/sched/latencies:seconds" +) + +// Start initializes reporting of runtime metrics using the supplied config. +// For goroutine scheduling metrics, additionally see [NewProducer]. +func Start(opts ...Option) error { + c := newConfig(opts...) + meter := c.MeterProvider.Meter( + ScopeName, + metric.WithInstrumentationVersion(Version()), + ) + if x.DeprecatedRuntimeMetrics.Enabled() { + if err := deprecatedruntime.Start(meter, c.MinimumReadMemStatsInterval); err != nil { + return err + } + } + memoryUsed, err := goconv.NewMemoryUsed(meter) + if err != nil { + return err + } + memoryLimit, err := goconv.NewMemoryLimit(meter) + if err != nil { + return err + } + memoryAllocated, err := goconv.NewMemoryAllocated(meter) + if err != nil { + return err + } + memoryAllocations, err := goconv.NewMemoryAllocations(meter) + if err != nil { + return err + } + memoryGCGoal, err := goconv.NewMemoryGCGoal(meter) + if err != nil { + return err + } + goroutineCount, err := goconv.NewGoroutineCount(meter) + if err != nil { + return err + } + processorLimit, err := goconv.NewProcessorLimit(meter) + if err != nil { + return err + } + configGogc, err := goconv.NewConfigGogc(meter) + if err != nil { + return err + } + + otherMemoryOpt := metric.WithAttributeSet( + attribute.NewSet(memoryUsed.AttrMemoryType(goconv.MemoryTypeOther)), + ) + stackMemoryOpt := metric.WithAttributeSet( + attribute.NewSet(memoryUsed.AttrMemoryType(goconv.MemoryTypeStack)), + ) + collector := newCollector(c.MinimumReadMemStatsInterval, runtimeMetrics) + var lock sync.Mutex + _, err = meter.RegisterCallback( + func(ctx context.Context, o metric.Observer) error { + lock.Lock() + defer lock.Unlock() + collector.refresh() + stackMemory := collector.getInt(goHeapMemory) + o.ObserveInt64(memoryUsed.Inst(), stackMemory, stackMemoryOpt) + totalMemory := collector.getInt(goTotalMemory) - collector.getInt(goMemoryReleased) + otherMemory := totalMemory - stackMemory + o.ObserveInt64(memoryUsed.Inst(), otherMemory, otherMemoryOpt) + // Only observe the limit metric if a limit exists + if limit := collector.getInt(goMemoryLimit); limit != math.MaxInt64 { + o.ObserveInt64(memoryLimit.Inst(), limit) + } + o.ObserveInt64(memoryAllocated.Inst(), collector.getInt(goMemoryAllocated)) + o.ObserveInt64(memoryAllocations.Inst(), collector.getInt(goMemoryAllocations)) + o.ObserveInt64(memoryGCGoal.Inst(), collector.getInt(goMemoryGoal)) + o.ObserveInt64(goroutineCount.Inst(), collector.getInt(goGoroutines)) + o.ObserveInt64(processorLimit.Inst(), collector.getInt(goMaxProcs)) + o.ObserveInt64(configGogc.Inst(), collector.getInt(goConfigGC)) + return nil + }, + memoryUsed.Inst(), + memoryLimit.Inst(), + memoryAllocated.Inst(), + memoryAllocations.Inst(), + memoryGCGoal.Inst(), + goroutineCount.Inst(), + processorLimit.Inst(), + configGogc.Inst(), + ) + if err != nil { + return err + } + return nil +} + +// These are the metrics we actually fetch from the go runtime. +var runtimeMetrics = []string{ + goTotalMemory, + goMemoryReleased, + goHeapMemory, + goMemoryLimit, + goMemoryAllocated, + goMemoryAllocations, + goMemoryGoal, + goGoroutines, + goMaxProcs, + goConfigGC, +} + +type goCollector struct { + // now is used to replace the implementation of time.Now for testing + now func() time.Time + // lastCollect tracks the last time metrics were refreshed + lastCollect time.Time + // minimumInterval is the minimum amount of time between calls to metrics.Read + minimumInterval time.Duration + // sampleBuffer is populated by runtime/metrics + sampleBuffer []metrics.Sample + // sampleMap allows us to easily get the value of a single metric + sampleMap map[string]*metrics.Sample +} + +func newCollector(minimumInterval time.Duration, metricNames []string) *goCollector { + g := &goCollector{ + sampleBuffer: make([]metrics.Sample, 0, len(metricNames)), + sampleMap: make(map[string]*metrics.Sample, len(metricNames)), + minimumInterval: minimumInterval, + now: time.Now, + } + for _, metricName := range metricNames { + g.sampleBuffer = append(g.sampleBuffer, metrics.Sample{Name: metricName}) + // sampleMap references a position in the sampleBuffer slice. If an + // element is appended to sampleBuffer, it must be added to sampleMap + // for the sample to be accessible in sampleMap. + g.sampleMap[metricName] = &g.sampleBuffer[len(g.sampleBuffer)-1] + } + return g +} + +func (g *goCollector) refresh() { + now := g.now() + if now.Sub(g.lastCollect) < g.minimumInterval { + // refresh was invoked more frequently than allowed by the minimum + // interval. Do nothing. + return + } + metrics.Read(g.sampleBuffer) + g.lastCollect = now +} + +func (g *goCollector) getInt(name string) int64 { + if s, ok := g.sampleMap[name]; ok && s.Value.Kind() == metrics.KindUint64 { + v := s.Value.Uint64() + if v > math.MaxInt64 { + return math.MaxInt64 + } + return int64(v) // nolint: gosec // Overflow checked above. + } + return 0 +} + +func (g *goCollector) getHistogram(name string) *metrics.Float64Histogram { + if s, ok := g.sampleMap[name]; ok && s.Value.Kind() == metrics.KindFloat64Histogram { + return s.Value.Float64Histogram() + } + return nil +} diff --git a/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/version.go b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/version.go new file mode 100644 index 0000000000..2d1da25495 --- /dev/null +++ b/vendor/go.opentelemetry.io/contrib/instrumentation/runtime/version.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package runtime // import "go.opentelemetry.io/contrib/instrumentation/runtime" + +// Version is the current release version of the runtime instrumentation. +func Version() string { + return "0.62.0" + // This string is updated by the pre_release.sh script during release +} diff --git a/vendor/go.opentelemetry.io/otel/.clomonitor.yml b/vendor/go.opentelemetry.io/otel/.clomonitor.yml new file mode 100644 index 0000000000..128d61a226 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.clomonitor.yml @@ -0,0 +1,3 @@ +exemptions: + - check: artifacthub_badge + reason: "Artifact Hub doesn't support Go packages" diff --git a/vendor/go.opentelemetry.io/otel/.codespellignore b/vendor/go.opentelemetry.io/otel/.codespellignore new file mode 100644 index 0000000000..6bf3abc41e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.codespellignore @@ -0,0 +1,9 @@ +ot +fo +te +collison +consequentially +ans +nam +valu +thirdparty diff --git a/vendor/go.opentelemetry.io/otel/.codespellrc b/vendor/go.opentelemetry.io/otel/.codespellrc new file mode 100644 index 0000000000..e2cb3ea944 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.codespellrc @@ -0,0 +1,10 @@ +# https://github.com/codespell-project/codespell +[codespell] +builtin = clear,rare,informal +check-filenames = +check-hidden = +ignore-words = .codespellignore +interactive = 1 +skip = .git,go.mod,go.sum,go.work,go.work.sum,semconv,venv,.tools +uri-ignore-words-list = * +write = diff --git a/vendor/go.opentelemetry.io/otel/.gitattributes b/vendor/go.opentelemetry.io/otel/.gitattributes new file mode 100644 index 0000000000..314766e91b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.gitattributes @@ -0,0 +1,3 @@ +* text=auto eol=lf +*.{cmd,[cC][mM][dD]} text eol=crlf +*.{bat,[bB][aA][tT]} text eol=crlf diff --git a/vendor/go.opentelemetry.io/otel/.gitignore b/vendor/go.opentelemetry.io/otel/.gitignore new file mode 100644 index 0000000000..749e8e881b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.gitignore @@ -0,0 +1,15 @@ +.DS_Store +Thumbs.db + +.cache/ +.tools/ +venv/ +.idea/ +.vscode/ +*.iml +*.so +coverage.* +go.work +go.work.sum + +gen/ diff --git a/vendor/go.opentelemetry.io/otel/.golangci.yml b/vendor/go.opentelemetry.io/otel/.golangci.yml new file mode 100644 index 0000000000..5f69cc027c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.golangci.yml @@ -0,0 +1,250 @@ +version: "2" +run: + issues-exit-code: 1 + tests: true +linters: + default: none + enable: + - asasalint + - bodyclose + - depguard + - errcheck + - errorlint + - godot + - gosec + - govet + - ineffassign + - misspell + - perfsprint + - revive + - staticcheck + - testifylint + - unconvert + - unparam + - unused + - usestdlibvars + - usetesting + settings: + depguard: + rules: + auto/sdk: + files: + - '!internal/global/trace.go' + - ~internal/global/trace_test.go + deny: + - pkg: go.opentelemetry.io/auto/sdk + desc: Do not use SDK from automatic instrumentation. + non-tests: + files: + - '!$test' + - '!**/*test/*.go' + - '!**/internal/matchers/*.go' + deny: + - pkg: testing + - pkg: github.com/stretchr/testify + - pkg: crypto/md5 + - pkg: crypto/sha1 + - pkg: crypto/**/pkix + otel-internal: + files: + - '**/sdk/*.go' + - '**/sdk/**/*.go' + - '**/exporters/*.go' + - '**/exporters/**/*.go' + - '**/schema/*.go' + - '**/schema/**/*.go' + - '**/metric/*.go' + - '**/metric/**/*.go' + - '**/bridge/*.go' + - '**/bridge/**/*.go' + - '**/trace/*.go' + - '**/trace/**/*.go' + - '**/log/*.go' + - '**/log/**/*.go' + deny: + - pkg: go.opentelemetry.io/otel/internal$ + desc: Do not use cross-module internal packages. + - pkg: go.opentelemetry.io/otel/internal/internaltest + desc: Do not use cross-module internal packages. + otlp-internal: + files: + - '!**/exporters/otlp/internal/**/*.go' + deny: + - pkg: go.opentelemetry.io/otel/exporters/otlp/internal + desc: Do not use cross-module internal packages. + otlpmetric-internal: + files: + - '!**/exporters/otlp/otlpmetric/internal/*.go' + - '!**/exporters/otlp/otlpmetric/internal/**/*.go' + deny: + - pkg: go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal + desc: Do not use cross-module internal packages. + otlptrace-internal: + files: + - '!**/exporters/otlp/otlptrace/*.go' + - '!**/exporters/otlp/otlptrace/internal/**.go' + deny: + - pkg: go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal + desc: Do not use cross-module internal packages. + godot: + exclude: + # Exclude links. + - '^ *\[[^]]+\]:' + # Exclude sentence fragments for lists. + - ^[ ]*[-•] + # Exclude sentences prefixing a list. + - :$ + misspell: + locale: US + ignore-rules: + - cancelled + perfsprint: + int-conversion: true + err-error: true + errorf: true + sprintf1: true + strconcat: true + revive: + confidence: 0.01 + rules: + - name: blank-imports + - name: bool-literal-in-expr + - name: constant-logical-expr + - name: context-as-argument + arguments: + - allowTypesBefore: '*testing.T' + disabled: true + - name: context-keys-type + - name: deep-exit + - name: defer + arguments: + - - call-chain + - loop + - name: dot-imports + - name: duplicated-imports + - name: early-return + arguments: + - preserveScope + - name: empty-block + - name: empty-lines + - name: error-naming + - name: error-return + - name: error-strings + - name: errorf + - name: exported + arguments: + - sayRepetitiveInsteadOfStutters + - name: flag-parameter + - name: identical-branches + - name: if-return + - name: import-shadowing + - name: increment-decrement + - name: indent-error-flow + arguments: + - preserveScope + - name: package-comments + - name: range + - name: range-val-in-closure + - name: range-val-address + - name: redefines-builtin-id + - name: string-format + arguments: + - - panic + - /^[^\n]*$/ + - must not contain line breaks + - name: struct-tag + - name: superfluous-else + arguments: + - preserveScope + - name: time-equal + - name: unconditional-recursion + - name: unexported-return + - name: unhandled-error + arguments: + - fmt.Fprint + - fmt.Fprintf + - fmt.Fprintln + - fmt.Print + - fmt.Printf + - fmt.Println + - name: unnecessary-stmt + - name: useless-break + - name: var-declaration + - name: var-naming + arguments: + - ["ID"] # AllowList + - ["Otel", "Aws", "Gcp"] # DenyList + - name: waitgroup-by-value + testifylint: + enable-all: true + disable: + - float-compare + - go-require + - require-error + exclusions: + generated: lax + presets: + - common-false-positives + - legacy + - std-error-handling + rules: + - linters: + - revive + path: schema/v.*/types/.* + text: avoid meaningless package names + # TODO: Having appropriate comments for exported objects helps development, + # even for objects in internal packages. Appropriate comments for all + # exported objects should be added and this exclusion removed. + - linters: + - revive + path: .*internal/.* + text: exported (method|function|type|const) (.+) should have comment or be unexported + # Yes, they are, but it's okay in a test. + - linters: + - revive + path: _test\.go + text: exported func.*returns unexported type.*which can be annoying to use + # Example test functions should be treated like main. + - linters: + - revive + path: example.*_test\.go + text: calls to (.+) only in main[(][)] or init[(][)] functions + # It's okay to not run gosec and perfsprint in a test. + - linters: + - gosec + - perfsprint + path: _test\.go + # Ignoring gosec G404: Use of weak random number generator (math/rand instead of crypto/rand) + # as we commonly use it in tests and examples. + - linters: + - gosec + text: 'G404:' + # Ignoring gosec G402: TLS MinVersion too low + # as the https://pkg.go.dev/crypto/tls#Config handles MinVersion default well. + - linters: + - gosec + text: 'G402: TLS MinVersion too low.' + paths: + - third_party$ + - builtin$ + - examples$ +issues: + max-issues-per-linter: 0 + max-same-issues: 0 +formatters: + enable: + - gofumpt + - goimports + - golines + settings: + goimports: + local-prefixes: + - go.opentelemetry.io + golines: + max-len: 120 + exclusions: + generated: lax + paths: + - third_party$ + - builtin$ + - examples$ diff --git a/vendor/go.opentelemetry.io/otel/.lycheeignore b/vendor/go.opentelemetry.io/otel/.lycheeignore new file mode 100644 index 0000000000..40d62fa2eb --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.lycheeignore @@ -0,0 +1,6 @@ +http://localhost +http://jaeger-collector +https://github.com/open-telemetry/opentelemetry-go/milestone/ +https://github.com/open-telemetry/opentelemetry-go/projects +file:///home/runner/work/opentelemetry-go/opentelemetry-go/libraries +file:///home/runner/work/opentelemetry-go/opentelemetry-go/manual diff --git a/vendor/go.opentelemetry.io/otel/.markdownlint.yaml b/vendor/go.opentelemetry.io/otel/.markdownlint.yaml new file mode 100644 index 0000000000..3202496c35 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/.markdownlint.yaml @@ -0,0 +1,29 @@ +# Default state for all rules +default: true + +# ul-style +MD004: false + +# hard-tabs +MD010: false + +# line-length +MD013: false + +# no-duplicate-header +MD024: + siblings_only: true + +#single-title +MD025: false + +# ol-prefix +MD029: + style: ordered + +# no-inline-html +MD033: false + +# fenced-code-language +MD040: false + diff --git a/vendor/go.opentelemetry.io/otel/CHANGELOG.md b/vendor/go.opentelemetry.io/otel/CHANGELOG.md new file mode 100644 index 0000000000..4acc75701b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/CHANGELOG.md @@ -0,0 +1,3454 @@ +# Changelog + +All notable changes to this project will be documented in this file. + +The format is based on [Keep a Changelog](https://keepachangelog.com/en/1.0.0/). + +This project adheres to [Semantic Versioning](https://semver.org/spec/v2.0.0.html). + +## [Unreleased] + + + + +## [1.37.0/0.59.0/0.13.0] 2025-06-25 + +### Added + +- The `go.opentelemetry.io/otel/semconv/v1.33.0` package. + The package contains semantic conventions from the `v1.33.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.33.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.32.0.`(#6799) +- The `go.opentelemetry.io/otel/semconv/v1.34.0` package. + The package contains semantic conventions from the `v1.34.0` version of the OpenTelemetry Semantic Conventions. (#6812) +- Add metric's schema URL as `otel_scope_schema_url` label in `go.opentelemetry.io/otel/exporters/prometheus`. (#5947) +- Add metric's scope attributes as `otel_scope_[attribute]` labels in `go.opentelemetry.io/otel/exporters/prometheus`. (#5947) +- Add `EventName` to `EnabledParameters` in `go.opentelemetry.io/otel/log`. (#6825) +- Add `EventName` to `EnabledParameters` in `go.opentelemetry.io/otel/sdk/log`. (#6825) +- Changed handling of `go.opentelemetry.io/otel/exporters/prometheus` metric renaming to add unit suffixes when it doesn't match one of the pre-defined values in the unit suffix map. (#6839) + +### Changed + +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/bridge/opentracing`. (#6827) +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/exporters/zipkin`. (#6829) +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/metric`. (#6832) +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/sdk/resource`. (#6834) +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/sdk/trace`. (#6835) +- The semantic conventions have been upgraded from `v1.26.0` to `v1.34.0` in `go.opentelemetry.io/otel/trace`. (#6836) +- `Record.Resource` now returns `*resource.Resource` instead of `resource.Resource` in `go.opentelemetry.io/otel/sdk/log`. (#6864) +- Retry now shows error cause for context timeout in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`, `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`, `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#6898) + +### Fixed + +- Stop stripping trailing slashes from configured endpoint URL in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#6710) +- Stop stripping trailing slashes from configured endpoint URL in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#6710) +- Stop stripping trailing slashes from configured endpoint URL in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#6710) +- Stop stripping trailing slashes from configured endpoint URL in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#6710) +- Validate exponential histogram scale range for Prometheus compatibility in `go.opentelemetry.io/otel/exporters/prometheus`. (#6822) +- Context cancellation during metric pipeline produce does not corrupt data in `go.opentelemetry.io/otel/sdk/metric`. (#6914) + +### Removed + +- `go.opentelemetry.io/otel/exporters/prometheus` no longer exports `otel_scope_info` metric. (#6770) + +## [0.12.2] 2025-05-22 + +### Fixed + +- Retract `v0.12.0` release of `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc` module that contains invalid dependencies. (#6804) +- Retract `v0.12.0` release of `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` module that contains invalid dependencies. (#6804) +- Retract `v0.12.0` release of `go.opentelemetry.io/otel/exporters/stdout/stdoutlog` module that contains invalid dependencies. (#6804) + +## [0.12.1] 2025-05-21 + +### Fixes + +- Use the proper dependency version of `go.opentelemetry.io/otel/sdk/log/logtest` in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#6800) +- Use the proper dependency version of `go.opentelemetry.io/otel/sdk/log/logtest` in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#6800) +- Use the proper dependency version of `go.opentelemetry.io/otel/sdk/log/logtest` in `go.opentelemetry.io/otel/exporters/stdout/stdoutlog`. (#6800) + +## [1.36.0/0.58.0/0.12.0] 2025-05-20 + +### Added + +- Add exponential histogram support in `go.opentelemetry.io/otel/exporters/prometheus`. (#6421) +- The `go.opentelemetry.io/otel/semconv/v1.31.0` package. + The package contains semantic conventions from the `v1.31.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.31.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.30.0`. (#6479) +- Add `Recording`, `Scope`, and `Record` types in `go.opentelemetry.io/otel/log/logtest`. (#6507) +- Add `WithHTTPClient` option to configure the `http.Client` used by `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#6751) +- Add `WithHTTPClient` option to configure the `http.Client` used by `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#6752) +- Add `WithHTTPClient` option to configure the `http.Client` used by `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#6688) +- Add `ValuesGetter` in `go.opentelemetry.io/otel/propagation`, a `TextMapCarrier` that supports retrieving multiple values for a single key. (#5973) +- Add `Values` method to `HeaderCarrier` to implement the new `ValuesGetter` interface in `go.opentelemetry.io/otel/propagation`. (#5973) +- Update `Baggage` in `go.opentelemetry.io/otel/propagation` to retrieve multiple values for a key when the carrier implements `ValuesGetter`. (#5973) +- Add `AssertEqual` function in `go.opentelemetry.io/otel/log/logtest`. (#6662) +- The `go.opentelemetry.io/otel/semconv/v1.32.0` package. + The package contains semantic conventions from the `v1.32.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.32.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.31.0`(#6782) +- Add `Transform` option in `go.opentelemetry.io/otel/log/logtest`. (#6794) +- Add `Desc` option in `go.opentelemetry.io/otel/log/logtest`. (#6796) + +### Removed + +- Drop support for [Go 1.22]. (#6381, #6418) +- Remove `Resource` field from `EnabledParameters` in `go.opentelemetry.io/otel/sdk/log`. (#6494) +- Remove `RecordFactory` type from `go.opentelemetry.io/otel/log/logtest`. (#6492) +- Remove `ScopeRecords`, `EmittedRecord`, and `RecordFactory` types from `go.opentelemetry.io/otel/log/logtest`. (#6507) +- Remove `AssertRecordEqual` function in `go.opentelemetry.io/otel/log/logtest`, use `AssertEqual` instead. (#6662) + +### Changed + +- ⚠️ Update `github.com/prometheus/client_golang` to `v1.21.1`, which changes the `NameValidationScheme` to `UTF8Validation`. + This allows metrics names to keep original delimiters (e.g. `.`), rather than replacing with underscores. + This can be reverted by setting `github.com/prometheus/common/model.NameValidationScheme` to `LegacyValidation` in `github.com/prometheus/common/model`. (#6433) +- Initialize map with `len(keys)` in `NewAllowKeysFilter` and `NewDenyKeysFilter` to avoid unnecessary allocations in `go.opentelemetry.io/otel/attribute`. (#6455) +- `go.opentelemetry.io/otel/log/logtest` is now a separate Go module. (#6465) +- `go.opentelemetry.io/otel/sdk/log/logtest` is now a separate Go module. (#6466) +- `Recorder` in `go.opentelemetry.io/otel/log/logtest` no longer separately stores records emitted by loggers with the same instrumentation scope. (#6507) +- Improve performance of `BatchProcessor` in `go.opentelemetry.io/otel/sdk/log` by not exporting when exporter cannot accept more. (#6569, #6641) + +### Deprecated + +- Deprecate support for `model.LegacyValidation` for `go.opentelemetry.io/otel/exporters/prometheus`. (#6449) + +### Fixes + +- Stop percent encoding header environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#6392) +- Ensure the `noopSpan.tracerProvider` method is not inlined in `go.opentelemetry.io/otel/trace` so the `go.opentelemetry.io/auto` instrumentation can instrument non-recording spans. (#6456) +- Use a `sync.Pool` instead of allocating `metricdata.ResourceMetrics` in `go.opentelemetry.io/otel/exporters/prometheus`. (#6472) + +## [1.35.0/0.57.0/0.11.0] 2025-03-05 + +This release is the last to support [Go 1.22]. +The next release will require at least [Go 1.23]. + +### Added + +- Add `ValueFromAttribute` and `KeyValueFromAttribute` in `go.opentelemetry.io/otel/log`. (#6180) +- Add `EventName` and `SetEventName` to `Record` in `go.opentelemetry.io/otel/log`. (#6187) +- Add `EventName` to `RecordFactory` in `go.opentelemetry.io/otel/log/logtest`. (#6187) +- `AssertRecordEqual` in `go.opentelemetry.io/otel/log/logtest` checks `Record.EventName`. (#6187) +- Add `EventName` and `SetEventName` to `Record` in `go.opentelemetry.io/otel/sdk/log`. (#6193) +- Add `EventName` to `RecordFactory` in `go.opentelemetry.io/otel/sdk/log/logtest`. (#6193) +- Emit `Record.EventName` field in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#6211) +- Emit `Record.EventName` field in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#6211) +- Emit `Record.EventName` field in `go.opentelemetry.io/otel/exporters/stdout/stdoutlog` (#6210) +- The `go.opentelemetry.io/otel/semconv/v1.28.0` package. + The package contains semantic conventions from the `v1.28.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.28.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.27.0`(#6236) +- The `go.opentelemetry.io/otel/semconv/v1.30.0` package. + The package contains semantic conventions from the `v1.30.0` version of the OpenTelemetry Semantic Conventions. + See the [migration documentation](./semconv/v1.30.0/MIGRATION.md) for information on how to upgrade from `go.opentelemetry.io/otel/semconv/v1.28.0`(#6240) +- Document the pitfalls of using `Resource` as a comparable type. + `Resource.Equal` and `Resource.Equivalent` should be used instead. (#6272) +- Support [Go 1.24]. (#6304) +- Add `FilterProcessor` and `EnabledParameters` in `go.opentelemetry.io/otel/sdk/log`. + It replaces `go.opentelemetry.io/otel/sdk/log/internal/x.FilterProcessor`. + Compared to previous version it additionally gives the possibility to filter by resource and instrumentation scope. (#6317) + +### Changed + +- Update `github.com/prometheus/common` to `v0.62.0`, which changes the `NameValidationScheme` to `NoEscaping`. + This allows metrics names to keep original delimiters (e.g. `.`), rather than replacing with underscores. + This is controlled by the `Content-Type` header, or can be reverted by setting `NameValidationScheme` to `LegacyValidation` in `github.com/prometheus/common/model`. (#6198) + +### Fixes + +- Eliminate goroutine leak for the processor returned by `NewSimpleSpanProcessor` in `go.opentelemetry.io/otel/sdk/trace` when `Shutdown` is called and the passed `ctx` is canceled and `SpanExporter.Shutdown` has not returned. (#6368) +- Eliminate goroutine leak for the processor returned by `NewBatchSpanProcessor` in `go.opentelemetry.io/otel/sdk/trace` when `ForceFlush` is called and the passed `ctx` is canceled and `SpanExporter.Export` has not returned. (#6369) + +## [1.34.0/0.56.0/0.10.0] 2025-01-17 + +### Changed + +- Remove the notices from `Logger` to make the whole Logs API user-facing in `go.opentelemetry.io/otel/log`. (#6167) + +### Fixed + +- Relax minimum Go version to 1.22.0 in various modules. (#6073) +- The `Type` name logged for the `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` client is corrected from `otlphttpgrpc` to `otlptracegrpc`. (#6143) +- The `Type` name logged for the `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlphttpgrpc` client is corrected from `otlphttphttp` to `otlptracehttp`. (#6143) + +## [1.33.0/0.55.0/0.9.0/0.0.12] 2024-12-12 + +### Added + +- Add `Reset` method to `SpanRecorder` in `go.opentelemetry.io/otel/sdk/trace/tracetest`. (#5994) +- Add `EnabledInstrument` interface in `go.opentelemetry.io/otel/sdk/metric/internal/x`. + This is an experimental interface that is implemented by synchronous instruments provided by `go.opentelemetry.io/otel/sdk/metric`. + Users can use it to avoid performing computationally expensive operations when recording measurements. + It does not fall within the scope of the OpenTelemetry Go versioning and stability [policy](./VERSIONING.md) and it may be changed in backwards incompatible ways or removed in feature releases. (#6016) + +### Changed + +- The default global API now supports full auto-instrumentation from the `go.opentelemetry.io/auto` package. + See that package for more information. (#5920) +- Propagate non-retryable error messages to client in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#5929) +- Propagate non-retryable error messages to client in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#5929) +- Propagate non-retryable error messages to client in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#5929) +- Performance improvements for attribute value `AsStringSlice`, `AsFloat64Slice`, `AsInt64Slice`, `AsBoolSlice`. (#6011) +- Change `EnabledParameters` to have a `Severity` field instead of a getter and setter in `go.opentelemetry.io/otel/log`. (#6009) + +### Fixed + +- Fix inconsistent request body closing in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#5954) +- Fix inconsistent request body closing in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#5954) +- Fix inconsistent request body closing in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#5954) +- Fix invalid exemplar keys in `go.opentelemetry.io/otel/exporters/prometheus`. (#5995) +- Fix attribute value truncation in `go.opentelemetry.io/otel/sdk/trace`. (#5997) +- Fix attribute value truncation in `go.opentelemetry.io/otel/sdk/log`. (#6032) + +## [1.32.0/0.54.0/0.8.0/0.0.11] 2024-11-08 + +### Added + +- Add `go.opentelemetry.io/otel/sdk/metric/exemplar.AlwaysOffFilter`, which can be used to disable exemplar recording. (#5850) +- Add `go.opentelemetry.io/otel/sdk/metric.WithExemplarFilter`, which can be used to configure the exemplar filter used by the metrics SDK. (#5850) +- Add `ExemplarReservoirProviderSelector` and `DefaultExemplarReservoirProviderSelector` to `go.opentelemetry.io/otel/sdk/metric`, which defines the exemplar reservoir to use based on the aggregation of the metric. (#5861) +- Add `ExemplarReservoirProviderSelector` to `go.opentelemetry.io/otel/sdk/metric.Stream` to allow using views to configure the exemplar reservoir to use for a metric. (#5861) +- Add `ReservoirProvider`, `HistogramReservoirProvider` and `FixedSizeReservoirProvider` to `go.opentelemetry.io/otel/sdk/metric/exemplar` to make it convenient to use providers of Reservoirs. (#5861) +- The `go.opentelemetry.io/otel/semconv/v1.27.0` package. + The package contains semantic conventions from the `v1.27.0` version of the OpenTelemetry Semantic Conventions. (#5894) +- Add `Attributes attribute.Set` field to `Scope` in `go.opentelemetry.io/otel/sdk/instrumentation`. (#5903) +- Add `Attributes attribute.Set` field to `ScopeRecords` in `go.opentelemetry.io/otel/log/logtest`. (#5927) +- `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` adds instrumentation scope attributes. (#5934) +- `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` adds instrumentation scope attributes. (#5934) +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` adds instrumentation scope attributes. (#5935) +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` adds instrumentation scope attributes. (#5935) +- `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc` adds instrumentation scope attributes. (#5933) +- `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` adds instrumentation scope attributes. (#5933) +- `go.opentelemetry.io/otel/exporters/prometheus` adds instrumentation scope attributes in `otel_scope_info` metric as labels. (#5932) + +### Changed + +- Support scope attributes and make them as identifying for `Tracer` in `go.opentelemetry.io/otel` and `go.opentelemetry.io/otel/sdk/trace`. (#5924) +- Support scope attributes and make them as identifying for `Meter` in `go.opentelemetry.io/otel` and `go.opentelemetry.io/otel/sdk/metric`. (#5926) +- Support scope attributes and make them as identifying for `Logger` in `go.opentelemetry.io/otel` and `go.opentelemetry.io/otel/sdk/log`. (#5925) +- Make schema URL and scope attributes as identifying for `Tracer` in `go.opentelemetry.io/otel/bridge/opentracing`. (#5931) +- Clear unneeded slice elements to allow GC to collect the objects in `go.opentelemetry.io/otel/sdk/metric` and `go.opentelemetry.io/otel/sdk/trace`. (#5804) + +### Fixed + +- Global MeterProvider registration unwraps global instrument Observers, the undocumented Unwrap() methods are now private. (#5881) +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` now keeps the metadata already present in the context when `WithHeaders` is used. (#5892) +- `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc` now keeps the metadata already present in the context when `WithHeaders` is used. (#5911) +- `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` now keeps the metadata already present in the context when `WithHeaders` is used. (#5915) +- Fix `go.opentelemetry.io/otel/exporters/prometheus` trying to add exemplars to Gauge metrics, which is unsupported. (#5912) +- Fix `WithEndpointURL` to always use a secure connection when an https URL is passed in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#5944) +- Fix `WithEndpointURL` to always use a secure connection when an https URL is passed in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#5944) +- Fix `WithEndpointURL` to always use a secure connection when an https URL is passed in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#5944) +- Fix `WithEndpointURL` to always use a secure connection when an https URL is passed in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#5944) +- Fix incorrect metrics generated from callbacks when multiple readers are used in `go.opentelemetry.io/otel/sdk/metric`. (#5900) + +### Removed + +- Remove all examples under `go.opentelemetry.io/otel/example` as they are moved to [Contrib repository](https://github.com/open-telemetry/opentelemetry-go-contrib/tree/main/examples). (#5930) + +## [1.31.0/0.53.0/0.7.0/0.0.10] 2024-10-11 + +### Added + +- Add `go.opentelemetry.io/otel/sdk/metric/exemplar` package which includes `Exemplar`, `Filter`, `TraceBasedFilter`, `AlwaysOnFilter`, `HistogramReservoir`, `FixedSizeReservoir`, `Reservoir`, `Value` and `ValueType` types. These will be used for configuring the exemplar reservoir for the metrics sdk. (#5747, #5862) +- Add `WithExportBufferSize` option to log batch processor.(#5877) + +### Changed + +- Enable exemplars by default in `go.opentelemetry.io/otel/sdk/metric`. Exemplars can be disabled by setting `OTEL_METRICS_EXEMPLAR_FILTER=always_off` (#5778) +- `Logger.Enabled` in `go.opentelemetry.io/otel/log` now accepts a newly introduced `EnabledParameters` type instead of `Record`. (#5791) +- `FilterProcessor.Enabled` in `go.opentelemetry.io/otel/sdk/log/internal/x` now accepts `EnabledParameters` instead of `Record`. (#5791) +- The `Record` type in `go.opentelemetry.io/otel/log` is no longer comparable. (#5847) +- Performance improvements for the trace SDK `SetAttributes` method in `Span`. (#5864) +- Reduce memory allocations for the `Event` and `Link` lists in `Span`. (#5858) +- Performance improvements for the trace SDK `AddEvent`, `AddLink`, `RecordError` and `End` methods in `Span`. (#5874) + +### Deprecated + +- Deprecate all examples under `go.opentelemetry.io/otel/example` as they are moved to [Contrib repository](https://github.com/open-telemetry/opentelemetry-go-contrib/tree/main/examples). (#5854) + +### Fixed + +- The race condition for multiple `FixedSize` exemplar reservoirs identified in #5814 is resolved. (#5819) +- Fix log records duplication in case of heterogeneous resource attributes by correctly mapping each log record to it's resource and scope. (#5803) +- Fix timer channel drain to avoid hanging on Go 1.23. (#5868) +- Fix delegation for global meter providers, and panic when calling otel.SetMeterProvider. (#5827) +- Change the `reflect.TypeOf` to use a nil pointer to not allocate on the heap unless necessary. (#5827) + +## [1.30.0/0.52.0/0.6.0/0.0.9] 2024-09-09 + +### Added + +- Support `OTEL_EXPORTER_OTLP_LOGS_INSECURE` and `OTEL_EXPORTER_OTLP_INSECURE` environments in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. (#5739) +- The `WithResource` option for `NewMeterProvider` now merges the provided resources with the ones from environment variables. (#5773) +- The `WithResource` option for `NewLoggerProvider` now merges the provided resources with the ones from environment variables. (#5773) +- Add UTF-8 support to `go.opentelemetry.io/otel/exporters/prometheus`. (#5755) + +### Fixed + +- Fix memory leak in the global `MeterProvider` when identical instruments are repeatedly created. (#5754) +- Fix panic on instruments creation when setting meter provider. (#5758) +- Fix an issue where `SetMeterProvider` in `go.opentelemetry.io/otel` might miss the delegation for instruments and registries. (#5780) + +### Removed + +- Drop support for [Go 1.21]. (#5736, #5740, #5800) + +## [1.29.0/0.51.0/0.5.0] 2024-08-23 + +This release is the last to support [Go 1.21]. +The next release will require at least [Go 1.22]. + +### Added + +- Add MacOS ARM64 platform to the compatibility testing suite. (#5577) +- Add `InstrumentationScope` field to `SpanStub` in `go.opentelemetry.io/otel/sdk/trace/tracetest`, as a replacement for the deprecated `InstrumentationLibrary`. (#5627) +- Make the initial release of `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc`. + This new module contains an OTLP exporter that transmits log telemetry using gRPC. + This module is unstable and breaking changes may be introduced. + See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. (#5629) +- Add `Walk` function to `TraceState` in `go.opentelemetry.io/otel/trace` to iterate all the key-value pairs. (#5651) +- Bridge the trace state in `go.opentelemetry.io/otel/bridge/opencensus`. (#5651) +- Zero value of `SimpleProcessor` in `go.opentelemetry.io/otel/sdk/log` no longer panics. (#5665) +- The `FilterProcessor` interface type is added in `go.opentelemetry.io/otel/sdk/log/internal/x`. + This is an optional and experimental interface that log `Processor`s can implement to instruct the `Logger` if a `Record` will be processed or not. + It replaces the existing `Enabled` method that is removed from the `Processor` interface itself. + It does not fall within the scope of the OpenTelemetry Go versioning and stability [policy](./VERSIONING.md) and it may be changed in backwards incompatible ways or removed in feature releases. (#5692) +- Support [Go 1.23]. (#5720) + +### Changed + +- `NewMemberRaw`, `NewKeyProperty` and `NewKeyValuePropertyRaw` in `go.opentelemetry.io/otel/baggage` allow UTF-8 string in key. (#5132) +- `Processor.OnEmit` in `go.opentelemetry.io/otel/sdk/log` now accepts a pointer to `Record` instead of a value so that the record modifications done in a processor are propagated to subsequent registered processors. (#5636) +- `SimpleProcessor.Enabled` in `go.opentelemetry.io/otel/sdk/log` now returns `false` if the exporter is `nil`. (#5665) +- Update the concurrency requirements of `Exporter` in `go.opentelemetry.io/otel/sdk/log`. (#5666) +- `SimpleProcessor` in `go.opentelemetry.io/otel/sdk/log` synchronizes `OnEmit` calls. (#5666) +- The `Processor` interface in `go.opentelemetry.io/otel/sdk/log` no longer includes the `Enabled` method. + See the `FilterProcessor` interface type added in `go.opentelemetry.io/otel/sdk/log/internal/x` to continue providing this functionality. (#5692) +- The `SimpleProcessor` type in `go.opentelemetry.io/otel/sdk/log` is no longer comparable. (#5693) +- The `BatchProcessor` type in `go.opentelemetry.io/otel/sdk/log` is no longer comparable. (#5693) + +### Fixed + +- Correct comments for the priority of the `WithEndpoint` and `WithEndpointURL` options and their corresponding environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#5584) +- Pass the underlying error rather than a generic retry-able failure in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`, `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` and `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#5541) +- Correct the `Tracer`, `Meter`, and `Logger` names used in `go.opentelemetry.io/otel/example/dice`. (#5612) +- Correct the `Tracer` names used in `go.opentelemetry.io/otel/example/namedtracer`. (#5612) +- Correct the `Tracer` name used in `go.opentelemetry.io/otel/example/opencensus`. (#5612) +- Correct the `Tracer` and `Meter` names used in `go.opentelemetry.io/otel/example/otel-collector`. (#5612) +- Correct the `Tracer` names used in `go.opentelemetry.io/otel/example/passthrough`. (#5612) +- Correct the `Meter` name used in `go.opentelemetry.io/otel/example/prometheus`. (#5612) +- Correct the `Tracer` names used in `go.opentelemetry.io/otel/example/zipkin`. (#5612) +- Correct comments for the priority of the `WithEndpoint` and `WithEndpointURL` options and their corresponding environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#5641) +- Correct comments for the priority of the `WithEndpoint` and `WithEndpointURL` options and their corresponding environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#5650) +- Stop percent encoding header environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`, `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` (#5705) +- Remove invalid environment variable header keys in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`, `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`, `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` (#5705) + +### Removed + +- The `Enabled` method of the `SimpleProcessor` in `go.opentelemetry.io/otel/sdk/log` is removed. (#5692) +- The `Enabled` method of the `BatchProcessor` in `go.opentelemetry.io/otel/sdk/log` is removed. (#5692) + +## [1.28.0/0.50.0/0.4.0] 2024-07-02 + +### Added + +- The `IsEmpty` method is added to the `Instrument` type in `go.opentelemetry.io/otel/sdk/metric`. + This method is used to check if an `Instrument` instance is a zero-value. (#5431) +- Store and provide the emitted `context.Context` in `ScopeRecords` of `go.opentelemetry.io/otel/sdk/log/logtest`. (#5468) +- The `go.opentelemetry.io/otel/semconv/v1.26.0` package. + The package contains semantic conventions from the `v1.26.0` version of the OpenTelemetry Semantic Conventions. (#5476) +- The `AssertRecordEqual` method to `go.opentelemetry.io/otel/log/logtest` to allow comparison of two log records in tests. (#5499) +- The `WithHeaders` option to `go.opentelemetry.io/otel/exporters/zipkin` to allow configuring custom http headers while exporting spans. (#5530) + +### Changed + +- `Tracer.Start` in `go.opentelemetry.io/otel/trace/noop` no longer allocates a span for empty span context. (#5457) +- Upgrade `go.opentelemetry.io/otel/semconv/v1.25.0` to `go.opentelemetry.io/otel/semconv/v1.26.0` in `go.opentelemetry.io/otel/example/otel-collector`. (#5490) +- Upgrade `go.opentelemetry.io/otel/semconv/v1.25.0` to `go.opentelemetry.io/otel/semconv/v1.26.0` in `go.opentelemetry.io/otel/example/zipkin`. (#5490) +- Upgrade `go.opentelemetry.io/otel/semconv/v1.25.0` to `go.opentelemetry.io/otel/semconv/v1.26.0` in `go.opentelemetry.io/otel/exporters/zipkin`. (#5490) + - The exporter no longer exports the deprecated "otel.library.name" or "otel.library.version" attributes. +- Upgrade `go.opentelemetry.io/otel/semconv/v1.25.0` to `go.opentelemetry.io/otel/semconv/v1.26.0` in `go.opentelemetry.io/otel/sdk/resource`. (#5490) +- Upgrade `go.opentelemetry.io/otel/semconv/v1.25.0` to `go.opentelemetry.io/otel/semconv/v1.26.0` in `go.opentelemetry.io/otel/sdk/trace`. (#5490) +- `SimpleProcessor.OnEmit` in `go.opentelemetry.io/otel/sdk/log` no longer allocates a slice which makes it possible to have a zero-allocation log processing using `SimpleProcessor`. (#5493) +- Use non-generic functions in the `Start` method of `"go.opentelemetry.io/otel/sdk/trace".Trace` to reduce memory allocation. (#5497) +- `service.instance.id` is populated for a `Resource` created with `"go.opentelemetry.io/otel/sdk/resource".Default` with a default value when `OTEL_GO_X_RESOURCE` is set. (#5520) +- Improve performance of metric instruments in `go.opentelemetry.io/otel/sdk/metric` by removing unnecessary calls to `time.Now`. (#5545) + +### Fixed + +- Log a warning to the OpenTelemetry internal logger when a `Record` in `go.opentelemetry.io/otel/sdk/log` drops an attribute due to a limit being reached. (#5376) +- Identify the `Tracer` returned from the global `TracerProvider` in `go.opentelemetry.io/otel/global` with its schema URL. (#5426) +- Identify the `Meter` returned from the global `MeterProvider` in `go.opentelemetry.io/otel/global` with its schema URL. (#5426) +- Log a warning to the OpenTelemetry internal logger when a `Span` in `go.opentelemetry.io/otel/sdk/trace` drops an attribute, event, or link due to a limit being reached. (#5434) +- Document instrument name requirements in `go.opentelemetry.io/otel/metric`. (#5435) +- Prevent random number generation data-race for experimental rand exemplars in `go.opentelemetry.io/otel/sdk/metric`. (#5456) +- Fix counting number of dropped attributes of `Record` in `go.opentelemetry.io/otel/sdk/log`. (#5464) +- Fix panic in baggage creation when a member contains `0x80` char in key or value. (#5494) +- Correct comments for the priority of the `WithEndpoint` and `WithEndpointURL` options and their corresponding environment variables in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#5508) +- Retry trace and span ID generation if it generated an invalid one in `go.opentelemetry.io/otel/sdk/trace`. (#5514) +- Fix stale timestamps reported by the last-value aggregation. (#5517) +- Indicate the `Exporter` in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp` must be created by the `New` method. (#5521) +- Improved performance in all `{Bool,Int64,Float64,String}SliceValue` functions of `go.opentelemetry.io/attributes` by reducing the number of allocations. (#5549) +- Replace invalid percent-encoded octet sequences with replacement char in `go.opentelemetry.io/otel/baggage`. (#5528) + +## [1.27.0/0.49.0/0.3.0] 2024-05-21 + +### Added + +- Add example for `go.opentelemetry.io/otel/exporters/stdout/stdoutlog`. (#5242) +- Add `RecordFactory` in `go.opentelemetry.io/otel/sdk/log/logtest` to facilitate testing exporter and processor implementations. (#5258) +- Add `RecordFactory` in `go.opentelemetry.io/otel/log/logtest` to facilitate testing bridge implementations. (#5263) +- The count of dropped records from the `BatchProcessor` in `go.opentelemetry.io/otel/sdk/log` is logged. (#5276) +- Add metrics in the `otel-collector` example. (#5283) +- Add the synchronous gauge instrument to `go.opentelemetry.io/otel/metric`. (#5304) + - An `int64` or `float64` synchronous gauge instrument can now be created from a `Meter`. + - All implementations of the API (`go.opentelemetry.io/otel/metric/noop`, `go.opentelemetry.io/otel/sdk/metric`) are updated to support this instrument. +- Add logs to `go.opentelemetry.io/otel/example/dice`. (#5349) + +### Changed + +- The `Shutdown` method of `Exporter` in `go.opentelemetry.io/otel/exporters/stdout/stdouttrace` ignores the context cancellation and always returns `nil`. (#5189) +- The `ForceFlush` and `Shutdown` methods of the exporter returned by `New` in `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` ignore the context cancellation and always return `nil`. (#5189) +- Apply the value length limits to `Record` attributes in `go.opentelemetry.io/otel/sdk/log`. (#5230) +- De-duplicate map attributes added to a `Record` in `go.opentelemetry.io/otel/sdk/log`. (#5230) +- `go.opentelemetry.io/otel/exporters/stdout/stdoutlog` won't print timestamps when `WithoutTimestamps` option is set. (#5241) +- The `go.opentelemetry.io/otel/exporters/stdout/stdoutlog` exporter won't print `AttributeValueLengthLimit` and `AttributeCountLimit` fields now, instead it prints the `DroppedAttributes` field. (#5272) +- Improved performance in the `Stringer` implementation of `go.opentelemetry.io/otel/baggage.Member` by reducing the number of allocations. (#5286) +- Set the start time for last-value aggregates in `go.opentelemetry.io/otel/sdk/metric`. (#5305) +- The `Span` in `go.opentelemetry.io/otel/sdk/trace` will record links without span context if either non-empty `TraceState` or attributes are provided. (#5315) +- Upgrade all dependencies of `go.opentelemetry.io/otel/semconv/v1.24.0` to `go.opentelemetry.io/otel/semconv/v1.25.0`. (#5374) + +### Fixed + +- Comparison of unordered maps for `go.opentelemetry.io/otel/log.KeyValue` and `go.opentelemetry.io/otel/log.Value`. (#5306) +- Fix the empty output of `go.opentelemetry.io/otel/log.Value` in `go.opentelemetry.io/otel/exporters/stdout/stdoutlog`. (#5311) +- Split the behavior of `Recorder` in `go.opentelemetry.io/otel/log/logtest` so it behaves as a `LoggerProvider` only. (#5365) +- Fix wrong package name of the error message when parsing endpoint URL in `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. (#5371) +- Identify the `Logger` returned from the global `LoggerProvider` in `go.opentelemetry.io/otel/log/global` with its schema URL. (#5375) + +## [1.26.0/0.48.0/0.2.0-alpha] 2024-04-24 + +### Added + +- Add `Recorder` in `go.opentelemetry.io/otel/log/logtest` to facilitate testing the log bridge implementations. (#5134) +- Add span flags to OTLP spans and links exported by `go.opentelemetry.io/otel/exporters/otlp/otlptrace`. (#5194) +- Make the initial alpha release of `go.opentelemetry.io/otel/sdk/log`. + This new module contains the Go implementation of the OpenTelemetry Logs SDK. + This module is unstable and breaking changes may be introduced. + See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. (#5240) +- Make the initial alpha release of `go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp`. + This new module contains an OTLP exporter that transmits log telemetry using HTTP. + This module is unstable and breaking changes may be introduced. + See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. (#5240) +- Make the initial alpha release of `go.opentelemetry.io/otel/exporters/stdout/stdoutlog`. + This new module contains an exporter prints log records to STDOUT. + This module is unstable and breaking changes may be introduced. + See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. (#5240) +- The `go.opentelemetry.io/otel/semconv/v1.25.0` package. + The package contains semantic conventions from the `v1.25.0` version of the OpenTelemetry Semantic Conventions. (#5254) + +### Changed + +- Update `go.opentelemetry.io/proto/otlp` from v1.1.0 to v1.2.0. (#5177) +- Improve performance of baggage member character validation in `go.opentelemetry.io/otel/baggage`. (#5214) +- The `otel-collector` example now uses docker compose to bring up services instead of kubernetes. (#5244) + +### Fixed + +- Slice attribute values in `go.opentelemetry.io/otel/attribute` are now emitted as their JSON representation. (#5159) + +## [1.25.0/0.47.0/0.0.8/0.1.0-alpha] 2024-04-05 + +### Added + +- Add `WithProxy` option in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4906) +- Add `WithProxy` option in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlptracehttp`. (#4906) +- Add `AddLink` method to the `Span` interface in `go.opentelemetry.io/otel/trace`. (#5032) +- The `Enabled` method is added to the `Logger` interface in `go.opentelemetry.io/otel/log`. + This method is used to notify users if a log record will be emitted or not. (#5071) +- Add `SeverityUndefined` `const` to `go.opentelemetry.io/otel/log`. + This value represents an unset severity level. (#5072) +- Add `Empty` function in `go.opentelemetry.io/otel/log` to return a `KeyValue` for an empty value. (#5076) +- Add `go.opentelemetry.io/otel/log/global` to manage the global `LoggerProvider`. + This package is provided with the anticipation that all functionality will be migrate to `go.opentelemetry.io/otel` when `go.opentelemetry.io/otel/log` stabilizes. + At which point, users will be required to migrage their code, and this package will be deprecated then removed. (#5085) +- Add support for `Summary` metrics in the `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` exporters. (#5100) +- Add `otel.scope.name` and `otel.scope.version` tags to spans exported by `go.opentelemetry.io/otel/exporters/zipkin`. (#5108) +- Add support for `AddLink` to `go.opentelemetry.io/otel/bridge/opencensus`. (#5116) +- Add `String` method to `Value` and `KeyValue` in `go.opentelemetry.io/otel/log`. (#5117) +- Add Exemplar support to `go.opentelemetry.io/otel/exporters/prometheus`. (#5111) +- Add metric semantic conventions to `go.opentelemetry.io/otel/semconv/v1.24.0`. Future `semconv` packages will include metric semantic conventions as well. (#4528) + +### Changed + +- `SpanFromContext` and `SpanContextFromContext` in `go.opentelemetry.io/otel/trace` no longer make a heap allocation when the passed context has no span. (#5049) +- `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` now create a gRPC client in idle mode and with "dns" as the default resolver using [`grpc.NewClient`](https://pkg.go.dev/google.golang.org/grpc#NewClient). (#5151) + Because of that `WithDialOption` ignores [`grpc.WithBlock`](https://pkg.go.dev/google.golang.org/grpc#WithBlock), [`grpc.WithTimeout`](https://pkg.go.dev/google.golang.org/grpc#WithTimeout), and [`grpc.WithReturnConnectionError`](https://pkg.go.dev/google.golang.org/grpc#WithReturnConnectionError). + Notice that [`grpc.DialContext`](https://pkg.go.dev/google.golang.org/grpc#DialContext) which was used before is now deprecated. + +### Fixed + +- Clarify the documentation about equivalence guarantees for the `Set` and `Distinct` types in `go.opentelemetry.io/otel/attribute`. (#5027) +- Prevent default `ErrorHandler` self-delegation. (#5137) +- Update all dependencies to address [GO-2024-2687]. (#5139) + +### Removed + +- Drop support for [Go 1.20]. (#4967) + +### Deprecated + +- Deprecate `go.opentelemetry.io/otel/attribute.Sortable` type. (#4734) +- Deprecate `go.opentelemetry.io/otel/attribute.NewSetWithSortable` function. (#4734) +- Deprecate `go.opentelemetry.io/otel/attribute.NewSetWithSortableFiltered` function. (#4734) + +## [1.24.0/0.46.0/0.0.1-alpha] 2024-02-23 + +This release is the last to support [Go 1.20]. +The next release will require at least [Go 1.21]. + +### Added + +- Support [Go 1.22]. (#4890) +- Add exemplar support to `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#4900) +- Add exemplar support to `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4900) +- The `go.opentelemetry.io/otel/log` module is added. + This module includes OpenTelemetry Go's implementation of the Logs Bridge API. + This module is in an alpha state, it is subject to breaking changes. + See our [versioning policy](./VERSIONING.md) for more info. (#4961) +- Add ARM64 platform to the compatibility testing suite. (#4994) + +### Fixed + +- Fix registration of multiple callbacks when using the global meter provider from `go.opentelemetry.io/otel`. (#4945) +- Fix negative buckets in output of exponential histograms. (#4956) + +## [1.23.1] 2024-02-07 + +### Fixed + +- Register all callbacks passed during observable instrument creation instead of just the last one multiple times in `go.opentelemetry.io/otel/sdk/metric`. (#4888) + +## [1.23.0] 2024-02-06 + +This release contains the first stable, `v1`, release of the following modules: + +- `go.opentelemetry.io/otel/bridge/opencensus` +- `go.opentelemetry.io/otel/bridge/opencensus/test` +- `go.opentelemetry.io/otel/example/opencensus` +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` +- `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` + +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Added + +- Add `WithEndpointURL` option to the `exporters/otlp/otlpmetric/otlpmetricgrpc`, `exporters/otlp/otlpmetric/otlpmetrichttp`, `exporters/otlp/otlptrace/otlptracegrpc` and `exporters/otlp/otlptrace/otlptracehttp` packages. (#4808) +- Experimental exemplar exporting is added to the metric SDK. + See [metric documentation](./sdk/metric/internal/x/README.md#exemplars) for more information about this feature and how to enable it. (#4871) +- `ErrSchemaURLConflict` is added to `go.opentelemetry.io/otel/sdk/resource`. + This error is returned when a merge of two `Resource`s with different (non-empty) schema URL is attempted. (#4876) + +### Changed + +- The `Merge` and `New` functions in `go.opentelemetry.io/otel/sdk/resource` now returns a partial result if there is a schema URL merge conflict. + Instead of returning `nil` when two `Resource`s with different (non-empty) schema URLs are merged the merged `Resource`, along with the new `ErrSchemaURLConflict` error, is returned. + It is up to the user to decide if they want to use the returned `Resource` or not. + It may have desired attributes overwritten or include stale semantic conventions. (#4876) + +### Fixed + +- Fix `ContainerID` resource detection on systemd when cgroup path has a colon. (#4449) +- Fix `go.opentelemetry.io/otel/sdk/metric` to cache instruments to avoid leaking memory when the same instrument is created multiple times. (#4820) +- Fix missing `Mix` and `Max` values for `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` by introducing `MarshalText` and `MarshalJSON` for the `Extrema` type in `go.opentelemetry.io/sdk/metric/metricdata`. (#4827) + +## [1.23.0-rc.1] 2024-01-18 + +This is a release candidate for the v1.23.0 release. +That release is expected to include the `v1` release of the following modules: + +- `go.opentelemetry.io/otel/bridge/opencensus` +- `go.opentelemetry.io/otel/bridge/opencensus/test` +- `go.opentelemetry.io/otel/example/opencensus` +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` +- `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` + +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +## [1.22.0/0.45.0] 2024-01-17 + +### Added + +- The `go.opentelemetry.io/otel/semconv/v1.22.0` package. + The package contains semantic conventions from the `v1.22.0` version of the OpenTelemetry Semantic Conventions. (#4735) +- The `go.opentelemetry.io/otel/semconv/v1.23.0` package. + The package contains semantic conventions from the `v1.23.0` version of the OpenTelemetry Semantic Conventions. (#4746) +- The `go.opentelemetry.io/otel/semconv/v1.23.1` package. + The package contains semantic conventions from the `v1.23.1` version of the OpenTelemetry Semantic Conventions. (#4749) +- The `go.opentelemetry.io/otel/semconv/v1.24.0` package. + The package contains semantic conventions from the `v1.24.0` version of the OpenTelemetry Semantic Conventions. (#4770) +- Add `WithResourceAsConstantLabels` option to apply resource attributes for every metric emitted by the Prometheus exporter. (#4733) +- Experimental cardinality limiting is added to the metric SDK. + See [metric documentation](./sdk/metric/internal/x/README.md#cardinality-limit) for more information about this feature and how to enable it. (#4457) +- Add `NewMemberRaw` and `NewKeyValuePropertyRaw` in `go.opentelemetry.io/otel/baggage`. (#4804) + +### Changed + +- Upgrade all use of `go.opentelemetry.io/otel/semconv` to use `v1.24.0`. (#4754) +- Update transformations in `go.opentelemetry.io/otel/exporters/zipkin` to follow `v1.24.0` version of the OpenTelemetry specification. (#4754) +- Record synchronous measurements when the passed context is canceled instead of dropping in `go.opentelemetry.io/otel/sdk/metric`. + If you do not want to make a measurement when the context is cancelled, you need to handle it yourself (e.g `if ctx.Err() != nil`). (#4671) +- Improve `go.opentelemetry.io/otel/trace.TraceState`'s performance. (#4722) +- Improve `go.opentelemetry.io/otel/propagation.TraceContext`'s performance. (#4721) +- Improve `go.opentelemetry.io/otel/baggage` performance. (#4743) +- Improve performance of the `(*Set).Filter` method in `go.opentelemetry.io/otel/attribute` when the passed filter does not filter out any attributes from the set. (#4774) +- `Member.String` in `go.opentelemetry.io/otel/baggage` percent-encodes only when necessary. (#4775) +- Improve `go.opentelemetry.io/otel/trace.Span`'s performance when adding multiple attributes. (#4818) +- `Property.Value` in `go.opentelemetry.io/otel/baggage` now returns a raw string instead of a percent-encoded value. (#4804) + +### Fixed + +- Fix `Parse` in `go.opentelemetry.io/otel/baggage` to validate member value before percent-decoding. (#4755) +- Fix whitespace encoding of `Member.String` in `go.opentelemetry.io/otel/baggage`. (#4756) +- Fix observable not registered error when the asynchronous instrument has a drop aggregation in `go.opentelemetry.io/otel/sdk/metric`. (#4772) +- Fix baggage item key so that it is not canonicalized in `go.opentelemetry.io/otel/bridge/opentracing`. (#4776) +- Fix `go.opentelemetry.io/otel/bridge/opentracing` to properly handle baggage values that requires escaping during propagation. (#4804) +- Fix a bug where using multiple readers resulted in incorrect asynchronous counter values in `go.opentelemetry.io/otel/sdk/metric`. (#4742) + +## [1.21.0/0.44.0] 2023-11-16 + +### Removed + +- Remove the deprecated `go.opentelemetry.io/otel/bridge/opencensus.NewTracer`. (#4706) +- Remove the deprecated `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` module. (#4707) +- Remove the deprecated `go.opentelemetry.io/otel/example/view` module. (#4708) +- Remove the deprecated `go.opentelemetry.io/otel/example/fib` module. (#4723) + +### Fixed + +- Do not parse non-protobuf responses in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4719) +- Do not parse non-protobuf responses in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#4719) + +## [1.20.0/0.43.0] 2023-11-10 + +This release brings a breaking change for custom trace API implementations. Some interfaces (`TracerProvider`, `Tracer`, `Span`) now embed the `go.opentelemetry.io/otel/trace/embedded` types. Implementers need to update their implementations based on what they want the default behavior to be. See the "API Implementations" section of the [trace API] package documentation for more information about how to accomplish this. + +### Added + +- Add `go.opentelemetry.io/otel/bridge/opencensus.InstallTraceBridge`, which installs the OpenCensus trace bridge, and replaces `opencensus.NewTracer`. (#4567) +- Add scope version to trace and metric bridges in `go.opentelemetry.io/otel/bridge/opencensus`. (#4584) +- Add the `go.opentelemetry.io/otel/trace/embedded` package to be embedded in the exported trace API interfaces. (#4620) +- Add the `go.opentelemetry.io/otel/trace/noop` package as a default no-op implementation of the trace API. (#4620) +- Add context propagation in `go.opentelemetry.io/otel/example/dice`. (#4644) +- Add view configuration to `go.opentelemetry.io/otel/example/prometheus`. (#4649) +- Add `go.opentelemetry.io/otel/metric.WithExplicitBucketBoundaries`, which allows defining default explicit bucket boundaries when creating histogram instruments. (#4603) +- Add `Version` function in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#4660) +- Add `Version` function in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4660) +- Add Summary, SummaryDataPoint, and QuantileValue to `go.opentelemetry.io/sdk/metric/metricdata`. (#4622) +- `go.opentelemetry.io/otel/bridge/opencensus.NewMetricProducer` now supports exemplars from OpenCensus. (#4585) +- Add support for `WithExplicitBucketBoundaries` in `go.opentelemetry.io/otel/sdk/metric`. (#4605) +- Add support for Summary metrics in `go.opentelemetry.io/otel/bridge/opencensus`. (#4668) + +### Deprecated + +- Deprecate `go.opentelemetry.io/otel/bridge/opencensus.NewTracer` in favor of `opencensus.InstallTraceBridge`. (#4567) +- Deprecate `go.opentelemetry.io/otel/example/fib` package is in favor of `go.opentelemetry.io/otel/example/dice`. (#4618) +- Deprecate `go.opentelemetry.io/otel/trace.NewNoopTracerProvider`. + Use the added `NewTracerProvider` function in `go.opentelemetry.io/otel/trace/noop` instead. (#4620) +- Deprecate `go.opentelemetry.io/otel/example/view` package in favor of `go.opentelemetry.io/otel/example/prometheus`. (#4649) +- Deprecate `go.opentelemetry.io/otel/exporters/otlp/otlpmetric`. (#4693) + +### Changed + +- `go.opentelemetry.io/otel/bridge/opencensus.NewMetricProducer` returns a `*MetricProducer` struct instead of the metric.Producer interface. (#4583) +- The `TracerProvider` in `go.opentelemetry.io/otel/trace` now embeds the `go.opentelemetry.io/otel/trace/embedded.TracerProvider` type. + This extends the `TracerProvider` interface and is is a breaking change for any existing implementation. + Implementers need to update their implementations based on what they want the default behavior of the interface to be. + See the "API Implementations" section of the `go.opentelemetry.io/otel/trace` package documentation for more information about how to accomplish this. (#4620) +- The `Tracer` in `go.opentelemetry.io/otel/trace` now embeds the `go.opentelemetry.io/otel/trace/embedded.Tracer` type. + This extends the `Tracer` interface and is is a breaking change for any existing implementation. + Implementers need to update their implementations based on what they want the default behavior of the interface to be. + See the "API Implementations" section of the `go.opentelemetry.io/otel/trace` package documentation for more information about how to accomplish this. (#4620) +- The `Span` in `go.opentelemetry.io/otel/trace` now embeds the `go.opentelemetry.io/otel/trace/embedded.Span` type. + This extends the `Span` interface and is is a breaking change for any existing implementation. + Implementers need to update their implementations based on what they want the default behavior of the interface to be. + See the "API Implementations" section of the `go.opentelemetry.io/otel/trace` package documentation for more information about how to accomplish this. (#4620) +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` does no longer depend on `go.opentelemetry.io/otel/exporters/otlp/otlpmetric`. (#4660) +- `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` does no longer depend on `go.opentelemetry.io/otel/exporters/otlp/otlpmetric`. (#4660) +- Retry for `502 Bad Gateway` and `504 Gateway Timeout` HTTP statuses in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4670) +- Retry for `502 Bad Gateway` and `504 Gateway Timeout` HTTP statuses in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#4670) +- Retry for `RESOURCE_EXHAUSTED` only if RetryInfo is returned in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#4669) +- Retry for `RESOURCE_EXHAUSTED` only if RetryInfo is returned in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#4669) +- Retry temporary HTTP request failures in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4679) +- Retry temporary HTTP request failures in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#4679) + +### Fixed + +- Fix improper parsing of characters such us `+`, `/` by `Parse` in `go.opentelemetry.io/otel/baggage` as they were rendered as a whitespace. (#4667) +- Fix improper parsing of characters such us `+`, `/` passed via `OTEL_RESOURCE_ATTRIBUTES` in `go.opentelemetry.io/otel/sdk/resource` as they were rendered as a whitespace. (#4699) +- Fix improper parsing of characters such us `+`, `/` passed via `OTEL_EXPORTER_OTLP_HEADERS` and `OTEL_EXPORTER_OTLP_METRICS_HEADERS` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` as they were rendered as a whitespace. (#4699) +- Fix improper parsing of characters such us `+`, `/` passed via `OTEL_EXPORTER_OTLP_HEADERS` and `OTEL_EXPORTER_OTLP_METRICS_HEADERS` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` as they were rendered as a whitespace. (#4699) +- Fix improper parsing of characters such us `+`, `/` passed via `OTEL_EXPORTER_OTLP_HEADERS` and `OTEL_EXPORTER_OTLP_TRACES_HEADERS` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlptracegrpc` as they were rendered as a whitespace. (#4699) +- Fix improper parsing of characters such us `+`, `/` passed via `OTEL_EXPORTER_OTLP_HEADERS` and `OTEL_EXPORTER_OTLP_TRACES_HEADERS` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlptracehttp` as they were rendered as a whitespace. (#4699) +- In `go.opentelemetry.op/otel/exporters/prometheus`, the exporter no longer `Collect`s metrics after `Shutdown` is invoked. (#4648) +- Fix documentation for `WithCompressor` in `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc`. (#4695) +- Fix documentation for `WithCompressor` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#4695) + +## [1.19.0/0.42.0/0.0.7] 2023-09-28 + +This release contains the first stable release of the OpenTelemetry Go [metric SDK]. +Our project stability guarantees now apply to the `go.opentelemetry.io/otel/sdk/metric` package. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Added + +- Add the "Roll the dice" getting started application example in `go.opentelemetry.io/otel/example/dice`. (#4539) +- The `WithWriter` and `WithPrettyPrint` options to `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` to set a custom `io.Writer`, and allow displaying the output in human-readable JSON. (#4507) + +### Changed + +- Allow '/' characters in metric instrument names. (#4501) +- The exporter in `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` does not prettify its output by default anymore. (#4507) +- Upgrade `gopkg.io/yaml` from `v2` to `v3` in `go.opentelemetry.io/otel/schema`. (#4535) + +### Fixed + +- In `go.opentelemetry.op/otel/exporters/prometheus`, don't try to create the Prometheus metric on every `Collect` if we know the scope is invalid. (#4499) + +### Removed + +- Remove `"go.opentelemetry.io/otel/bridge/opencensus".NewMetricExporter`, which is replaced by `NewMetricProducer`. (#4566) + +## [1.19.0-rc.1/0.42.0-rc.1] 2023-09-14 + +This is a release candidate for the v1.19.0/v0.42.0 release. +That release is expected to include the `v1` release of the OpenTelemetry Go metric SDK and will provide stability guarantees of that SDK. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Changed + +- Allow '/' characters in metric instrument names. (#4501) + +### Fixed + +- In `go.opentelemetry.op/otel/exporters/prometheus`, don't try to create the prometheus metric on every `Collect` if we know the scope is invalid. (#4499) + +## [1.18.0/0.41.0/0.0.6] 2023-09-12 + +This release drops the compatibility guarantee of [Go 1.19]. + +### Added + +- Add `WithProducer` option in `go.opentelemetry.op/otel/exporters/prometheus` to restore the ability to register producers on the prometheus exporter's manual reader. (#4473) +- Add `IgnoreValue` option in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest` to allow ignoring values when comparing metrics. (#4447) + +### Changed + +- Use a `TestingT` interface instead of `*testing.T` struct in `go.opentelemetry.io/otel/sdk/metric/metricdata/metricdatatest`. (#4483) + +### Deprecated + +- The `NewMetricExporter` in `go.opentelemetry.io/otel/bridge/opencensus` was deprecated in `v0.35.0` (#3541). + The deprecation notice format for the function has been corrected to trigger Go documentation and build tooling. (#4470) + +### Removed + +- Removed the deprecated `go.opentelemetry.io/otel/exporters/jaeger` package. (#4467) +- Removed the deprecated `go.opentelemetry.io/otel/example/jaeger` package. (#4467) +- Removed the deprecated `go.opentelemetry.io/otel/sdk/metric/aggregation` package. (#4468) +- Removed the deprecated internal packages in `go.opentelemetry.io/otel/exporters/otlp` and its sub-packages. (#4469) +- Dropped guaranteed support for versions of Go less than 1.20. (#4481) + +## [1.17.0/0.40.0/0.0.5] 2023-08-28 + +### Added + +- Export the `ManualReader` struct in `go.opentelemetry.io/otel/sdk/metric`. (#4244) +- Export the `PeriodicReader` struct in `go.opentelemetry.io/otel/sdk/metric`. (#4244) +- Add support for exponential histogram aggregations. + A histogram can be configured as an exponential histogram using a view with `"go.opentelemetry.io/otel/sdk/metric".ExponentialHistogram` as the aggregation. (#4245) +- Export the `Exporter` struct in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc`. (#4272) +- Export the `Exporter` struct in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#4272) +- The exporters in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` now support the `OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE` environment variable. (#4287) +- Add `WithoutCounterSuffixes` option in `go.opentelemetry.io/otel/exporters/prometheus` to disable addition of `_total` suffixes. (#4306) +- Add info and debug logging to the metric SDK in `go.opentelemetry.io/otel/sdk/metric`. (#4315) +- The `go.opentelemetry.io/otel/semconv/v1.21.0` package. + The package contains semantic conventions from the `v1.21.0` version of the OpenTelemetry Semantic Conventions. (#4362) +- Accept 201 to 299 HTTP status as success in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` and `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp`. (#4365) +- Document the `Temporality` and `Aggregation` methods of the `"go.opentelemetry.io/otel/sdk/metric".Exporter"` need to be concurrent safe. (#4381) +- Expand the set of units supported by the Prometheus exporter, and don't add unit suffixes if they are already present in `go.opentelemetry.op/otel/exporters/prometheus` (#4374) +- Move the `Aggregation` interface and its implementations from `go.opentelemetry.io/otel/sdk/metric/aggregation` to `go.opentelemetry.io/otel/sdk/metric`. (#4435) +- The exporters in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` now support the `OTEL_EXPORTER_OTLP_METRICS_DEFAULT_HISTOGRAM_AGGREGATION` environment variable. (#4437) +- Add the `NewAllowKeysFilter` and `NewDenyKeysFilter` functions to `go.opentelemetry.io/otel/attribute` to allow convenient creation of allow-keys and deny-keys filters. (#4444) +- Support Go 1.21. (#4463) + +### Changed + +- Starting from `v1.21.0` of semantic conventions, `go.opentelemetry.io/otel/semconv/{version}/httpconv` and `go.opentelemetry.io/otel/semconv/{version}/netconv` packages will no longer be published. (#4145) +- Log duplicate instrument conflict at a warning level instead of info in `go.opentelemetry.io/otel/sdk/metric`. (#4202) +- Return an error on the creation of new instruments in `go.opentelemetry.io/otel/sdk/metric` if their name doesn't pass regexp validation. (#4210) +- `NewManualReader` in `go.opentelemetry.io/otel/sdk/metric` returns `*ManualReader` instead of `Reader`. (#4244) +- `NewPeriodicReader` in `go.opentelemetry.io/otel/sdk/metric` returns `*PeriodicReader` instead of `Reader`. (#4244) +- Count the Collect time in the `PeriodicReader` timeout in `go.opentelemetry.io/otel/sdk/metric`. (#4221) +- The function `New` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` returns `*Exporter` instead of `"go.opentelemetry.io/otel/sdk/metric".Exporter`. (#4272) +- The function `New` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` returns `*Exporter` instead of `"go.opentelemetry.io/otel/sdk/metric".Exporter`. (#4272) +- If an attribute set is omitted from an async callback, the previous value will no longer be exported in `go.opentelemetry.io/otel/sdk/metric`. (#4290) +- If an attribute set is observed multiple times in an async callback in `go.opentelemetry.io/otel/sdk/metric`, the values will be summed instead of the last observation winning. (#4289) +- Allow the explicit bucket histogram aggregation to be used for the up-down counter, observable counter, observable up-down counter, and observable gauge in the `go.opentelemetry.io/otel/sdk/metric` package. (#4332) +- Restrict `Meter`s in `go.opentelemetry.io/otel/sdk/metric` to only register and collect instruments it created. (#4333) +- `PeriodicReader.Shutdown` and `PeriodicReader.ForceFlush` in `go.opentelemetry.io/otel/sdk/metric` now apply the periodic reader's timeout to the operation if the user provided context does not contain a deadline. (#4356, #4377) +- Upgrade all use of `go.opentelemetry.io/otel/semconv` to use `v1.21.0`. (#4408) +- Increase instrument name maximum length from 63 to 255 characters in `go.opentelemetry.io/otel/sdk/metric`. (#4434) +- Add `go.opentelemetry.op/otel/sdk/metric.WithProducer` as an `Option` for `"go.opentelemetry.io/otel/sdk/metric".NewManualReader` and `"go.opentelemetry.io/otel/sdk/metric".NewPeriodicReader`. (#4346) + +### Removed + +- Remove `Reader.RegisterProducer` in `go.opentelemetry.io/otel/metric`. + Use the added `WithProducer` option instead. (#4346) +- Remove `Reader.ForceFlush` in `go.opentelemetry.io/otel/metric`. + Notice that `PeriodicReader.ForceFlush` is still available. (#4375) + +### Fixed + +- Correctly format log messages from the `go.opentelemetry.io/otel/exporters/zipkin` exporter. (#4143) +- Log an error for calls to `NewView` in `go.opentelemetry.io/otel/sdk/metric` that have empty criteria. (#4307) +- Fix `"go.opentelemetry.io/otel/sdk/resource".WithHostID()` to not set an empty `host.id`. (#4317) +- Use the instrument identifying fields to cache aggregators and determine duplicate instrument registrations in `go.opentelemetry.io/otel/sdk/metric`. (#4337) +- Detect duplicate instruments for case-insensitive names in `go.opentelemetry.io/otel/sdk/metric`. (#4338) +- The `ManualReader` will not panic if `AggregationSelector` returns `nil` in `go.opentelemetry.io/otel/sdk/metric`. (#4350) +- If a `Reader`'s `AggregationSelector` returns `nil` or `DefaultAggregation` the pipeline will use the default aggregation. (#4350) +- Log a suggested view that fixes instrument conflicts in `go.opentelemetry.io/otel/sdk/metric`. (#4349) +- Fix possible panic, deadlock and race condition in batch span processor in `go.opentelemetry.io/otel/sdk/trace`. (#4353) +- Improve context cancellation handling in batch span processor's `ForceFlush` in `go.opentelemetry.io/otel/sdk/trace`. (#4369) +- Decouple `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal` from `go.opentelemetry.io/otel/exporters/otlp/internal` using gotmpl. (#4397, #3846) +- Decouple `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal` from `go.opentelemetry.io/otel/exporters/otlp/internal` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal` using gotmpl. (#4404, #3846) +- Decouple `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal` from `go.opentelemetry.io/otel/exporters/otlp/internal` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal` using gotmpl. (#4407, #3846) +- Decouple `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal` from `go.opentelemetry.io/otel/exporters/otlp/internal` and `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal` using gotmpl. (#4400, #3846) +- Decouple `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal` from `go.opentelemetry.io/otel/exporters/otlp/internal` and `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal` using gotmpl. (#4401, #3846) +- Do not block the metric SDK when OTLP metric exports are blocked in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp`. (#3925, #4395) +- Do not append `_total` if the counter already has that suffix for the Prometheus exproter in `go.opentelemetry.io/otel/exporter/prometheus`. (#4373) +- Fix resource detection data race in `go.opentelemetry.io/otel/sdk/resource`. (#4409) +- Use the first-seen instrument name during instrument name conflicts in `go.opentelemetry.io/otel/sdk/metric`. (#4428) + +### Deprecated + +- The `go.opentelemetry.io/otel/exporters/jaeger` package is deprecated. + OpenTelemetry dropped support for Jaeger exporter in July 2023. + Use `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` + or `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` instead. (#4423) +- The `go.opentelemetry.io/otel/example/jaeger` package is deprecated. (#4423) +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal` package is deprecated. (#4420) +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal/oconf` package is deprecated. (#4420) +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal/otest` package is deprecated. (#4420) +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/internal/transform` package is deprecated. (#4420) +- The `go.opentelemetry.io/otel/exporters/otlp/internal` package is deprecated. (#4421) +- The `go.opentelemetry.io/otel/exporters/otlp/internal/envconfig` package is deprecated. (#4421) +- The `go.opentelemetry.io/otel/exporters/otlp/internal/retry` package is deprecated. (#4421) +- The `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal` package is deprecated. (#4425) +- The `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/envconfig` package is deprecated. (#4425) +- The `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/otlpconfig` package is deprecated. (#4425) +- The `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/otlptracetest` package is deprecated. (#4425) +- The `go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/retry` package is deprecated. (#4425) +- The `go.opentelemetry.io/otel/sdk/metric/aggregation` package is deprecated. + Use the aggregation types added to `go.opentelemetry.io/otel/sdk/metric` instead. (#4435) + +## [1.16.0/0.39.0] 2023-05-18 + +This release contains the first stable release of the OpenTelemetry Go [metric API]. +Our project stability guarantees now apply to the `go.opentelemetry.io/otel/metric` package. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Added + +- The `go.opentelemetry.io/otel/semconv/v1.19.0` package. + The package contains semantic conventions from the `v1.19.0` version of the OpenTelemetry specification. (#3848) +- The `go.opentelemetry.io/otel/semconv/v1.20.0` package. + The package contains semantic conventions from the `v1.20.0` version of the OpenTelemetry specification. (#4078) +- The Exponential Histogram data types in `go.opentelemetry.io/otel/sdk/metric/metricdata`. (#4165) +- OTLP metrics exporter now supports the Exponential Histogram Data Type. (#4222) +- Fix serialization of `time.Time` zero values in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp` packages. (#4271) + +### Changed + +- Use `strings.Cut()` instead of `string.SplitN()` for better readability and memory use. (#4049) +- `MeterProvider` returns noop meters once it has been shutdown. (#4154) + +### Removed + +- The deprecated `go.opentelemetry.io/otel/metric/instrument` package is removed. + Use `go.opentelemetry.io/otel/metric` instead. (#4055) + +### Fixed + +- Fix build for BSD based systems in `go.opentelemetry.io/otel/sdk/resource`. (#4077) + +## [1.16.0-rc.1/0.39.0-rc.1] 2023-05-03 + +This is a release candidate for the v1.16.0/v0.39.0 release. +That release is expected to include the `v1` release of the OpenTelemetry Go metric API and will provide stability guarantees of that API. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Added + +- Support global `MeterProvider` in `go.opentelemetry.io/otel`. (#4039) + - Use `Meter` for a `metric.Meter` from the global `metric.MeterProvider`. + - Use `GetMeterProivder` for a global `metric.MeterProvider`. + - Use `SetMeterProivder` to set the global `metric.MeterProvider`. + +### Changed + +- Move the `go.opentelemetry.io/otel/metric` module to the `stable-v1` module set. + This stages the metric API to be released as a stable module. (#4038) + +### Removed + +- The `go.opentelemetry.io/otel/metric/global` package is removed. + Use `go.opentelemetry.io/otel` instead. (#4039) + +## [1.15.1/0.38.1] 2023-05-02 + +### Fixed + +- Remove unused imports from `sdk/resource/host_id_bsd.go` which caused build failures. (#4040, #4041) + +## [1.15.0/0.38.0] 2023-04-27 + +### Added + +- The `go.opentelemetry.io/otel/metric/embedded` package. (#3916) +- The `Version` function to `go.opentelemetry.io/otel/sdk` to return the SDK version. (#3949) +- Add a `WithNamespace` option to `go.opentelemetry.io/otel/exporters/prometheus` to allow users to prefix metrics with a namespace. (#3970) +- The following configuration types were added to `go.opentelemetry.io/otel/metric/instrument` to be used in the configuration of measurement methods. (#3971) + - The `AddConfig` used to hold configuration for addition measurements + - `NewAddConfig` used to create a new `AddConfig` + - `AddOption` used to configure an `AddConfig` + - The `RecordConfig` used to hold configuration for recorded measurements + - `NewRecordConfig` used to create a new `RecordConfig` + - `RecordOption` used to configure a `RecordConfig` + - The `ObserveConfig` used to hold configuration for observed measurements + - `NewObserveConfig` used to create a new `ObserveConfig` + - `ObserveOption` used to configure an `ObserveConfig` +- `WithAttributeSet` and `WithAttributes` are added to `go.opentelemetry.io/otel/metric/instrument`. + They return an option used during a measurement that defines the attribute Set associated with the measurement. (#3971) +- The `Version` function to `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` to return the OTLP metrics client version. (#3956) +- The `Version` function to `go.opentelemetry.io/otel/exporters/otlp/otlptrace` to return the OTLP trace client version. (#3956) + +### Changed + +- The `Extrema` in `go.opentelemetry.io/otel/sdk/metric/metricdata` is redefined with a generic argument of `[N int64 | float64]`. (#3870) +- Update all exported interfaces from `go.opentelemetry.io/otel/metric` to embed their corresponding interface from `go.opentelemetry.io/otel/metric/embedded`. + This adds an implementation requirement to set the interface default behavior for unimplemented methods. (#3916) +- Move No-Op implementation from `go.opentelemetry.io/otel/metric` into its own package `go.opentelemetry.io/otel/metric/noop`. (#3941) + - `metric.NewNoopMeterProvider` is replaced with `noop.NewMeterProvider` +- Add all the methods from `"go.opentelemetry.io/otel/trace".SpanContext` to `bridgeSpanContext` by embedding `otel.SpanContext` in `bridgeSpanContext`. (#3966) +- Wrap `UploadMetrics` error in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/` to improve error message when encountering generic grpc errors. (#3974) +- The measurement methods for all instruments in `go.opentelemetry.io/otel/metric/instrument` accept an option instead of the variadic `"go.opentelemetry.io/otel/attribute".KeyValue`. (#3971) + - The `Int64Counter.Add` method now accepts `...AddOption` + - The `Float64Counter.Add` method now accepts `...AddOption` + - The `Int64UpDownCounter.Add` method now accepts `...AddOption` + - The `Float64UpDownCounter.Add` method now accepts `...AddOption` + - The `Int64Histogram.Record` method now accepts `...RecordOption` + - The `Float64Histogram.Record` method now accepts `...RecordOption` + - The `Int64Observer.Observe` method now accepts `...ObserveOption` + - The `Float64Observer.Observe` method now accepts `...ObserveOption` +- The `Observer` methods in `go.opentelemetry.io/otel/metric` accept an option instead of the variadic `"go.opentelemetry.io/otel/attribute".KeyValue`. (#3971) + - The `Observer.ObserveInt64` method now accepts `...ObserveOption` + - The `Observer.ObserveFloat64` method now accepts `...ObserveOption` +- Move global metric back to `go.opentelemetry.io/otel/metric/global` from `go.opentelemetry.io/otel`. (#3986) + +### Fixed + +- `TracerProvider` allows calling `Tracer()` while it's shutting down. + It used to deadlock. (#3924) +- Use the SDK version for the Telemetry SDK resource detector in `go.opentelemetry.io/otel/sdk/resource`. (#3949) +- Fix a data race in `SpanProcessor` returned by `NewSimpleSpanProcessor` in `go.opentelemetry.io/otel/sdk/trace`. (#3951) +- Automatically figure out the default aggregation with `aggregation.Default`. (#3967) + +### Deprecated + +- The `go.opentelemetry.io/otel/metric/instrument` package is deprecated. + Use the equivalent types added to `go.opentelemetry.io/otel/metric` instead. (#4018) + +## [1.15.0-rc.2/0.38.0-rc.2] 2023-03-23 + +This is a release candidate for the v1.15.0/v0.38.0 release. +That release will include the `v1` release of the OpenTelemetry Go metric API and will provide stability guarantees of that API. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +### Added + +- The `WithHostID` option to `go.opentelemetry.io/otel/sdk/resource`. (#3812) +- The `WithoutTimestamps` option to `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` to sets all timestamps to zero. (#3828) +- The new `Exemplar` type is added to `go.opentelemetry.io/otel/sdk/metric/metricdata`. + Both the `DataPoint` and `HistogramDataPoint` types from that package have a new field of `Exemplars` containing the sampled exemplars for their timeseries. (#3849) +- Configuration for each metric instrument in `go.opentelemetry.io/otel/sdk/metric/instrument`. (#3895) +- The internal logging introduces a warning level verbosity equal to `V(1)`. (#3900) +- Added a log message warning about usage of `SimpleSpanProcessor` in production environments. (#3854) + +### Changed + +- Optimize memory allocation when creation a new `Set` using `NewSet` or `NewSetWithFiltered` in `go.opentelemetry.io/otel/attribute`. (#3832) +- Optimize memory allocation when creation new metric instruments in `go.opentelemetry.io/otel/sdk/metric`. (#3832) +- Avoid creating new objects on all calls to `WithDeferredSetup` and `SkipContextSetup` in OpenTracing bridge. (#3833) +- The `New` and `Detect` functions from `go.opentelemetry.io/otel/sdk/resource` return errors that wrap underlying errors instead of just containing the underlying error strings. (#3844) +- Both the `Histogram` and `HistogramDataPoint` are redefined with a generic argument of `[N int64 | float64]` in `go.opentelemetry.io/otel/sdk/metric/metricdata`. (#3849) +- The metric `Export` interface from `go.opentelemetry.io/otel/sdk/metric` accepts a `*ResourceMetrics` instead of `ResourceMetrics`. (#3853) +- Rename `Asynchronous` to `Observable` in `go.opentelemetry.io/otel/metric/instrument`. (#3892) +- Rename `Int64ObserverOption` to `Int64ObservableOption` in `go.opentelemetry.io/otel/metric/instrument`. (#3895) +- Rename `Float64ObserverOption` to `Float64ObservableOption` in `go.opentelemetry.io/otel/metric/instrument`. (#3895) +- The internal logging changes the verbosity level of info to `V(4)`, the verbosity level of debug to `V(8)`. (#3900) + +### Fixed + +- `TracerProvider` consistently doesn't allow to register a `SpanProcessor` after shutdown. (#3845) + +### Removed + +- The deprecated `go.opentelemetry.io/otel/metric/global` package is removed. (#3829) +- The unneeded `Synchronous` interface in `go.opentelemetry.io/otel/metric/instrument` was removed. (#3892) +- The `Float64ObserverConfig` and `NewFloat64ObserverConfig` in `go.opentelemetry.io/otel/sdk/metric/instrument`. + Use the added `float64` instrument configuration instead. (#3895) +- The `Int64ObserverConfig` and `NewInt64ObserverConfig` in `go.opentelemetry.io/otel/sdk/metric/instrument`. + Use the added `int64` instrument configuration instead. (#3895) +- The `NewNoopMeter` function in `go.opentelemetry.io/otel/metric`, use `NewMeterProvider().Meter("")` instead. (#3893) + +## [1.15.0-rc.1/0.38.0-rc.1] 2023-03-01 + +This is a release candidate for the v1.15.0/v0.38.0 release. +That release will include the `v1` release of the OpenTelemetry Go metric API and will provide stability guarantees of that API. +See our [versioning policy](VERSIONING.md) for more information about these stability guarantees. + +This release drops the compatibility guarantee of [Go 1.18]. + +### Added + +- Support global `MeterProvider` in `go.opentelemetry.io/otel`. (#3818) + - Use `Meter` for a `metric.Meter` from the global `metric.MeterProvider`. + - Use `GetMeterProivder` for a global `metric.MeterProvider`. + - Use `SetMeterProivder` to set the global `metric.MeterProvider`. + +### Changed + +- Dropped compatibility testing for [Go 1.18]. + The project no longer guarantees support for this version of Go. (#3813) + +### Fixed + +- Handle empty environment variable as it they were not set. (#3764) +- Clarify the `httpconv` and `netconv` packages in `go.opentelemetry.io/otel/semconv/*` provide tracing semantic conventions. (#3823) +- Fix race conditions in `go.opentelemetry.io/otel/exporters/metric/prometheus` that could cause a panic. (#3899) +- Fix sending nil `scopeInfo` to metrics channel in `go.opentelemetry.io/otel/exporters/metric/prometheus` that could cause a panic in `github.com/prometheus/client_golang/prometheus`. (#3899) + +### Deprecated + +- The `go.opentelemetry.io/otel/metric/global` package is deprecated. + Use `go.opentelemetry.io/otel` instead. (#3818) + +### Removed + +- The deprecated `go.opentelemetry.io/otel/metric/unit` package is removed. (#3814) + +## [1.14.0/0.37.0/0.0.4] 2023-02-27 + +This release is the last to support [Go 1.18]. +The next release will require at least [Go 1.19]. + +### Added + +- The `event` type semantic conventions are added to `go.opentelemetry.io/otel/semconv/v1.17.0`. (#3697) +- Support [Go 1.20]. (#3693) +- The `go.opentelemetry.io/otel/semconv/v1.18.0` package. + The package contains semantic conventions from the `v1.18.0` version of the OpenTelemetry specification. (#3719) + - The following `const` renames from `go.opentelemetry.io/otel/semconv/v1.17.0` are included: + - `OtelScopeNameKey` -> `OTelScopeNameKey` + - `OtelScopeVersionKey` -> `OTelScopeVersionKey` + - `OtelLibraryNameKey` -> `OTelLibraryNameKey` + - `OtelLibraryVersionKey` -> `OTelLibraryVersionKey` + - `OtelStatusCodeKey` -> `OTelStatusCodeKey` + - `OtelStatusDescriptionKey` -> `OTelStatusDescriptionKey` + - `OtelStatusCodeOk` -> `OTelStatusCodeOk` + - `OtelStatusCodeError` -> `OTelStatusCodeError` + - The following `func` renames from `go.opentelemetry.io/otel/semconv/v1.17.0` are included: + - `OtelScopeName` -> `OTelScopeName` + - `OtelScopeVersion` -> `OTelScopeVersion` + - `OtelLibraryName` -> `OTelLibraryName` + - `OtelLibraryVersion` -> `OTelLibraryVersion` + - `OtelStatusDescription` -> `OTelStatusDescription` +- A `IsSampled` method is added to the `SpanContext` implementation in `go.opentelemetry.io/otel/bridge/opentracing` to expose the span sampled state. + See the [README](./bridge/opentracing/README.md) for more information. (#3570) +- The `WithInstrumentationAttributes` option to `go.opentelemetry.io/otel/metric`. (#3738) +- The `WithInstrumentationAttributes` option to `go.opentelemetry.io/otel/trace`. (#3739) +- The following environment variables are supported by the periodic `Reader` in `go.opentelemetry.io/otel/sdk/metric`. (#3763) + - `OTEL_METRIC_EXPORT_INTERVAL` sets the time between collections and exports. + - `OTEL_METRIC_EXPORT_TIMEOUT` sets the timeout an export is attempted. + +### Changed + +- Fall-back to `TextMapCarrier` when it's not `HttpHeader`s in `go.opentelemetry.io/otel/bridge/opentracing`. (#3679) +- The `Collect` method of the `"go.opentelemetry.io/otel/sdk/metric".Reader` interface is updated to accept the `metricdata.ResourceMetrics` value the collection will be made into. + This change is made to enable memory reuse by SDK users. (#3732) +- The `WithUnit` option in `go.opentelemetry.io/otel/sdk/metric/instrument` is updated to accept a `string` for the unit value. (#3776) + +### Fixed + +- Ensure `go.opentelemetry.io/otel` does not use generics. (#3723, #3725) +- Multi-reader `MeterProvider`s now export metrics for all readers, instead of just the first reader. (#3720, #3724) +- Remove use of deprecated `"math/rand".Seed` in `go.opentelemetry.io/otel/example/prometheus`. (#3733) +- Do not silently drop unknown schema data with `Parse` in `go.opentelemetry.io/otel/schema/v1.1`. (#3743) +- Data race issue in OTLP exporter retry mechanism. (#3755, #3756) +- Wrapping empty errors when exporting in `go.opentelemetry.io/otel/sdk/metric`. (#3698, #3772) +- Incorrect "all" and "resource" definition for schema files in `go.opentelemetry.io/otel/schema/v1.1`. (#3777) + +### Deprecated + +- The `go.opentelemetry.io/otel/metric/unit` package is deprecated. + Use the equivalent unit string instead. (#3776) + - Use `"1"` instead of `unit.Dimensionless` + - Use `"By"` instead of `unit.Bytes` + - Use `"ms"` instead of `unit.Milliseconds` + +## [1.13.0/0.36.0] 2023-02-07 + +### Added + +- Attribute `KeyValue` creations functions to `go.opentelemetry.io/otel/semconv/v1.17.0` for all non-enum semantic conventions. + These functions ensure semantic convention type correctness. (#3675) + +### Fixed + +- Removed the `http.target` attribute from being added by `ServerRequest` in the following packages. (#3687) + - `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv` + - `go.opentelemetry.io/otel/semconv/v1.14.0/httpconv` + - `go.opentelemetry.io/otel/semconv/v1.15.0/httpconv` + - `go.opentelemetry.io/otel/semconv/v1.16.0/httpconv` + - `go.opentelemetry.io/otel/semconv/v1.17.0/httpconv` + +### Removed + +- The deprecated `go.opentelemetry.io/otel/metric/instrument/asyncfloat64` package is removed. (#3631) +- The deprecated `go.opentelemetry.io/otel/metric/instrument/asyncint64` package is removed. (#3631) +- The deprecated `go.opentelemetry.io/otel/metric/instrument/syncfloat64` package is removed. (#3631) +- The deprecated `go.opentelemetry.io/otel/metric/instrument/syncint64` package is removed. (#3631) + +## [1.12.0/0.35.0] 2023-01-28 + +### Added + +- The `WithInt64Callback` option to `go.opentelemetry.io/otel/metric/instrument`. + This options is used to configure `int64` Observer callbacks during their creation. (#3507) +- The `WithFloat64Callback` option to `go.opentelemetry.io/otel/metric/instrument`. + This options is used to configure `float64` Observer callbacks during their creation. (#3507) +- The `Producer` interface and `Reader.RegisterProducer(Producer)` to `go.opentelemetry.io/otel/sdk/metric`. + These additions are used to enable external metric Producers. (#3524) +- The `Callback` function type to `go.opentelemetry.io/otel/metric`. + This new named function type is registered with a `Meter`. (#3564) +- The `go.opentelemetry.io/otel/semconv/v1.13.0` package. + The package contains semantic conventions from the `v1.13.0` version of the OpenTelemetry specification. (#3499) + - The `EndUserAttributesFromHTTPRequest` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is merged into `ClientRequest` and `ServerRequest` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `HTTPAttributesFromHTTPStatusCode` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is merged into `ClientResponse` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `HTTPClientAttributesFromHTTPRequest` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is replaced by `ClientRequest` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `HTTPServerAttributesFromHTTPRequest` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is replaced by `ServerRequest` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `HTTPServerMetricAttributesFromHTTPRequest` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is replaced by `ServerRequest` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `NetAttributesFromHTTPRequest` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is split into `Transport` in `go.opentelemetry.io/otel/semconv/v1.13.0/netconv` and `ClientRequest` or `ServerRequest` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `SpanStatusFromHTTPStatusCode` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is replaced by `ClientStatus` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `SpanStatusFromHTTPStatusCodeAndSpanKind` function in `go.opentelemetry.io/otel/semconv/v1.12.0` is split into `ClientStatus` and `ServerStatus` in `go.opentelemetry.io/otel/semconv/v1.13.0/httpconv`. + - The `Client` function is included in `go.opentelemetry.io/otel/semconv/v1.13.0/netconv` to generate attributes for a `net.Conn`. + - The `Server` function is included in `go.opentelemetry.io/otel/semconv/v1.13.0/netconv` to generate attributes for a `net.Listener`. +- The `go.opentelemetry.io/otel/semconv/v1.14.0` package. + The package contains semantic conventions from the `v1.14.0` version of the OpenTelemetry specification. (#3566) +- The `go.opentelemetry.io/otel/semconv/v1.15.0` package. + The package contains semantic conventions from the `v1.15.0` version of the OpenTelemetry specification. (#3578) +- The `go.opentelemetry.io/otel/semconv/v1.16.0` package. + The package contains semantic conventions from the `v1.16.0` version of the OpenTelemetry specification. (#3579) +- Metric instruments to `go.opentelemetry.io/otel/metric/instrument`. + These instruments are use as replacements of the deprecated `go.opentelemetry.io/otel/metric/instrument/{asyncfloat64,asyncint64,syncfloat64,syncint64}` packages.(#3575, #3586) + - `Float64ObservableCounter` replaces the `asyncfloat64.Counter` + - `Float64ObservableUpDownCounter` replaces the `asyncfloat64.UpDownCounter` + - `Float64ObservableGauge` replaces the `asyncfloat64.Gauge` + - `Int64ObservableCounter` replaces the `asyncint64.Counter` + - `Int64ObservableUpDownCounter` replaces the `asyncint64.UpDownCounter` + - `Int64ObservableGauge` replaces the `asyncint64.Gauge` + - `Float64Counter` replaces the `syncfloat64.Counter` + - `Float64UpDownCounter` replaces the `syncfloat64.UpDownCounter` + - `Float64Histogram` replaces the `syncfloat64.Histogram` + - `Int64Counter` replaces the `syncint64.Counter` + - `Int64UpDownCounter` replaces the `syncint64.UpDownCounter` + - `Int64Histogram` replaces the `syncint64.Histogram` +- `NewTracerProvider` to `go.opentelemetry.io/otel/bridge/opentracing`. + This is used to create `WrapperTracer` instances from a `TracerProvider`. (#3116) +- The `Extrema` type to `go.opentelemetry.io/otel/sdk/metric/metricdata`. + This type is used to represent min/max values and still be able to distinguish unset and zero values. (#3487) +- The `go.opentelemetry.io/otel/semconv/v1.17.0` package. + The package contains semantic conventions from the `v1.17.0` version of the OpenTelemetry specification. (#3599) + +### Changed + +- Jaeger and Zipkin exporter use `github.com/go-logr/logr` as the logging interface, and add the `WithLogr` option. (#3497, #3500) +- Instrument configuration in `go.opentelemetry.io/otel/metric/instrument` is split into specific options and configuration based on the instrument type. (#3507) + - Use the added `Int64Option` type to configure instruments from `go.opentelemetry.io/otel/metric/instrument/syncint64`. + - Use the added `Float64Option` type to configure instruments from `go.opentelemetry.io/otel/metric/instrument/syncfloat64`. + - Use the added `Int64ObserverOption` type to configure instruments from `go.opentelemetry.io/otel/metric/instrument/asyncint64`. + - Use the added `Float64ObserverOption` type to configure instruments from `go.opentelemetry.io/otel/metric/instrument/asyncfloat64`. +- Return a `Registration` from the `RegisterCallback` method of a `Meter` in the `go.opentelemetry.io/otel/metric` package. + This `Registration` can be used to unregister callbacks. (#3522) +- Global error handler uses an atomic value instead of a mutex. (#3543) +- Add `NewMetricProducer` to `go.opentelemetry.io/otel/bridge/opencensus`, which can be used to pass OpenCensus metrics to an OpenTelemetry Reader. (#3541) +- Global logger uses an atomic value instead of a mutex. (#3545) +- The `Shutdown` method of the `"go.opentelemetry.io/otel/sdk/trace".TracerProvider` releases all computational resources when called the first time. (#3551) +- The `Sampler` returned from `TraceIDRatioBased` `go.opentelemetry.io/otel/sdk/trace` now uses the rightmost bits for sampling decisions. + This fixes random sampling when using ID generators like `xray.IDGenerator` and increasing parity with other language implementations. (#3557) +- Errors from `go.opentelemetry.io/otel/exporters/otlp/otlptrace` exporters are wrapped in errors identifying their signal name. + Existing users of the exporters attempting to identify specific errors will need to use `errors.Unwrap()` to get the underlying error. (#3516) +- Exporters from `go.opentelemetry.io/otel/exporters/otlp` will print the final retryable error message when attempts to retry time out. (#3514) +- The instrument kind names in `go.opentelemetry.io/otel/sdk/metric` are updated to match the API. (#3562) + - `InstrumentKindSyncCounter` is renamed to `InstrumentKindCounter` + - `InstrumentKindSyncUpDownCounter` is renamed to `InstrumentKindUpDownCounter` + - `InstrumentKindSyncHistogram` is renamed to `InstrumentKindHistogram` + - `InstrumentKindAsyncCounter` is renamed to `InstrumentKindObservableCounter` + - `InstrumentKindAsyncUpDownCounter` is renamed to `InstrumentKindObservableUpDownCounter` + - `InstrumentKindAsyncGauge` is renamed to `InstrumentKindObservableGauge` +- The `RegisterCallback` method of the `Meter` in `go.opentelemetry.io/otel/metric` changed. + - The named `Callback` replaces the inline function parameter. (#3564) + - `Callback` is required to return an error. (#3576) + - `Callback` accepts the added `Observer` parameter added. + This new parameter is used by `Callback` implementations to observe values for asynchronous instruments instead of calling the `Observe` method of the instrument directly. (#3584) + - The slice of `instrument.Asynchronous` is now passed as a variadic argument. (#3587) +- The exporter from `go.opentelemetry.io/otel/exporters/zipkin` is updated to use the `v1.16.0` version of semantic conventions. + This means it no longer uses the removed `net.peer.ip` or `http.host` attributes to determine the remote endpoint. + Instead it uses the `net.sock.peer` attributes. (#3581) +- The `Min` and `Max` fields of the `HistogramDataPoint` in `go.opentelemetry.io/otel/sdk/metric/metricdata` are now defined with the added `Extrema` type instead of a `*float64`. (#3487) + +### Fixed + +- Asynchronous instruments that use sum aggregators and attribute filters correctly add values from equivalent attribute sets that have been filtered. (#3439, #3549) +- The `RegisterCallback` method of the `Meter` from `go.opentelemetry.io/otel/sdk/metric` only registers a callback for instruments created by that meter. + Trying to register a callback with instruments from a different meter will result in an error being returned. (#3584) + +### Deprecated + +- The `NewMetricExporter` in `go.opentelemetry.io/otel/bridge/opencensus` is deprecated. + Use `NewMetricProducer` instead. (#3541) +- The `go.opentelemetry.io/otel/metric/instrument/asyncfloat64` package is deprecated. + Use the instruments from `go.opentelemetry.io/otel/metric/instrument` instead. (#3575) +- The `go.opentelemetry.io/otel/metric/instrument/asyncint64` package is deprecated. + Use the instruments from `go.opentelemetry.io/otel/metric/instrument` instead. (#3575) +- The `go.opentelemetry.io/otel/metric/instrument/syncfloat64` package is deprecated. + Use the instruments from `go.opentelemetry.io/otel/metric/instrument` instead. (#3575) +- The `go.opentelemetry.io/otel/metric/instrument/syncint64` package is deprecated. + Use the instruments from `go.opentelemetry.io/otel/metric/instrument` instead. (#3575) +- The `NewWrappedTracerProvider` in `go.opentelemetry.io/otel/bridge/opentracing` is now deprecated. + Use `NewTracerProvider` instead. (#3116) + +### Removed + +- The deprecated `go.opentelemetry.io/otel/sdk/metric/view` package is removed. (#3520) +- The `InstrumentProvider` from `go.opentelemetry.io/otel/sdk/metric/asyncint64` is removed. + Use the new creation methods of the `Meter` in `go.opentelemetry.io/otel/sdk/metric` instead. (#3530) + - The `Counter` method is replaced by `Meter.Int64ObservableCounter` + - The `UpDownCounter` method is replaced by `Meter.Int64ObservableUpDownCounter` + - The `Gauge` method is replaced by `Meter.Int64ObservableGauge` +- The `InstrumentProvider` from `go.opentelemetry.io/otel/sdk/metric/asyncfloat64` is removed. + Use the new creation methods of the `Meter` in `go.opentelemetry.io/otel/sdk/metric` instead. (#3530) + - The `Counter` method is replaced by `Meter.Float64ObservableCounter` + - The `UpDownCounter` method is replaced by `Meter.Float64ObservableUpDownCounter` + - The `Gauge` method is replaced by `Meter.Float64ObservableGauge` +- The `InstrumentProvider` from `go.opentelemetry.io/otel/sdk/metric/syncint64` is removed. + Use the new creation methods of the `Meter` in `go.opentelemetry.io/otel/sdk/metric` instead. (#3530) + - The `Counter` method is replaced by `Meter.Int64Counter` + - The `UpDownCounter` method is replaced by `Meter.Int64UpDownCounter` + - The `Histogram` method is replaced by `Meter.Int64Histogram` +- The `InstrumentProvider` from `go.opentelemetry.io/otel/sdk/metric/syncfloat64` is removed. + Use the new creation methods of the `Meter` in `go.opentelemetry.io/otel/sdk/metric` instead. (#3530) + - The `Counter` method is replaced by `Meter.Float64Counter` + - The `UpDownCounter` method is replaced by `Meter.Float64UpDownCounter` + - The `Histogram` method is replaced by `Meter.Float64Histogram` + +## [1.11.2/0.34.0] 2022-12-05 + +### Added + +- The `WithView` `Option` is added to the `go.opentelemetry.io/otel/sdk/metric` package. + This option is used to configure the view(s) a `MeterProvider` will use for all `Reader`s that are registered with it. (#3387) +- Add Instrumentation Scope and Version as info metric and label in Prometheus exporter. + This can be disabled using the `WithoutScopeInfo()` option added to that package.(#3273, #3357) +- OTLP exporters now recognize: (#3363) + - `OTEL_EXPORTER_OTLP_INSECURE` + - `OTEL_EXPORTER_OTLP_TRACES_INSECURE` + - `OTEL_EXPORTER_OTLP_METRICS_INSECURE` + - `OTEL_EXPORTER_OTLP_CLIENT_KEY` + - `OTEL_EXPORTER_OTLP_TRACES_CLIENT_KEY` + - `OTEL_EXPORTER_OTLP_METRICS_CLIENT_KEY` + - `OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE` + - `OTEL_EXPORTER_OTLP_TRACES_CLIENT_CERTIFICATE` + - `OTEL_EXPORTER_OTLP_METRICS_CLIENT_CERTIFICATE` +- The `View` type and related `NewView` function to create a view according to the OpenTelemetry specification are added to `go.opentelemetry.io/otel/sdk/metric`. + These additions are replacements for the `View` type and `New` function from `go.opentelemetry.io/otel/sdk/metric/view`. (#3459) +- The `Instrument` and `InstrumentKind` type are added to `go.opentelemetry.io/otel/sdk/metric`. + These additions are replacements for the `Instrument` and `InstrumentKind` types from `go.opentelemetry.io/otel/sdk/metric/view`. (#3459) +- The `Stream` type is added to `go.opentelemetry.io/otel/sdk/metric` to define a metric data stream a view will produce. (#3459) +- The `AssertHasAttributes` allows instrument authors to test that datapoints returned have appropriate attributes. (#3487) + +### Changed + +- The `"go.opentelemetry.io/otel/sdk/metric".WithReader` option no longer accepts views to associate with the `Reader`. + Instead, views are now registered directly with the `MeterProvider` via the new `WithView` option. + The views registered with the `MeterProvider` apply to all `Reader`s. (#3387) +- The `Temporality(view.InstrumentKind) metricdata.Temporality` and `Aggregation(view.InstrumentKind) aggregation.Aggregation` methods are added to the `"go.opentelemetry.io/otel/sdk/metric".Exporter` interface. (#3260) +- The `Temporality(view.InstrumentKind) metricdata.Temporality` and `Aggregation(view.InstrumentKind) aggregation.Aggregation` methods are added to the `"go.opentelemetry.io/otel/exporters/otlp/otlpmetric".Client` interface. (#3260) +- The `WithTemporalitySelector` and `WithAggregationSelector` `ReaderOption`s have been changed to `ManualReaderOption`s in the `go.opentelemetry.io/otel/sdk/metric` package. (#3260) +- The periodic reader in the `go.opentelemetry.io/otel/sdk/metric` package now uses the temporality and aggregation selectors from its configured exporter instead of accepting them as options. (#3260) + +### Fixed + +- The `go.opentelemetry.io/otel/exporters/prometheus` exporter fixes duplicated `_total` suffixes. (#3369) +- Remove comparable requirement for `Reader`s. (#3387) +- Cumulative metrics from the OpenCensus bridge (`go.opentelemetry.io/otel/bridge/opencensus`) are defined as monotonic sums, instead of non-monotonic. (#3389) +- Asynchronous counters (`Counter` and `UpDownCounter`) from the metric SDK now produce delta sums when configured with delta temporality. (#3398) +- Exported `Status` codes in the `go.opentelemetry.io/otel/exporters/zipkin` exporter are now exported as all upper case values. (#3340) +- `Aggregation`s from `go.opentelemetry.io/otel/sdk/metric` with no data are not exported. (#3394, #3436) +- Re-enabled Attribute Filters in the Metric SDK. (#3396) +- Asynchronous callbacks are only called if they are registered with at least one instrument that does not use drop aggregation. (#3408) +- Do not report empty partial-success responses in the `go.opentelemetry.io/otel/exporters/otlp` exporters. (#3438, #3432) +- Handle partial success responses in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` exporters. (#3162, #3440) +- Prevent duplicate Prometheus description, unit, and type. (#3469) +- Prevents panic when using incorrect `attribute.Value.As[Type]Slice()`. (#3489) + +### Removed + +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric.Client` interface is removed. (#3486) +- The `go.opentelemetry.io/otel/exporters/otlp/otlpmetric.New` function is removed. Use the `otlpmetric[http|grpc].New` directly. (#3486) + +### Deprecated + +- The `go.opentelemetry.io/otel/sdk/metric/view` package is deprecated. + Use `Instrument`, `InstrumentKind`, `View`, and `NewView` in `go.opentelemetry.io/otel/sdk/metric` instead. (#3476) + +## [1.11.1/0.33.0] 2022-10-19 + +### Added + +- The Prometheus exporter in `go.opentelemetry.io/otel/exporters/prometheus` registers with a Prometheus registerer on creation. + By default, it will register with the default Prometheus registerer. + A non-default registerer can be used by passing the `WithRegisterer` option. (#3239) +- Added the `WithAggregationSelector` option to the `go.opentelemetry.io/otel/exporters/prometheus` package to change the default `AggregationSelector` used. (#3341) +- The Prometheus exporter in `go.opentelemetry.io/otel/exporters/prometheus` converts the `Resource` associated with metric exports into a `target_info` metric. (#3285) + +### Changed + +- The `"go.opentelemetry.io/otel/exporters/prometheus".New` function is updated to return an error. + It will return an error if the exporter fails to register with Prometheus. (#3239) + +### Fixed + +- The URL-encoded values from the `OTEL_RESOURCE_ATTRIBUTES` environment variable are decoded. (#2963) +- The `baggage.NewMember` function decodes the `value` parameter instead of directly using it. + This fixes the implementation to be compliant with the W3C specification. (#3226) +- Slice attributes of the `attribute` package are now comparable based on their value, not instance. (#3108 #3252) +- The `Shutdown` and `ForceFlush` methods of the `"go.opentelemetry.io/otel/sdk/trace".TraceProvider` no longer return an error when no processor is registered. (#3268) +- The Prometheus exporter in `go.opentelemetry.io/otel/exporters/prometheus` cumulatively sums histogram buckets. (#3281) +- The sum of each histogram data point is now uniquely exported by the `go.opentelemetry.io/otel/exporters/otlpmetric` exporters. (#3284, #3293) +- Recorded values for asynchronous counters (`Counter` and `UpDownCounter`) are interpreted as exact, not incremental, sum values by the metric SDK. (#3350, #3278) +- `UpDownCounters` are now correctly output as Prometheus gauges in the `go.opentelemetry.io/otel/exporters/prometheus` exporter. (#3358) +- The Prometheus exporter in `go.opentelemetry.io/otel/exporters/prometheus` no longer describes the metrics it will send to Prometheus on startup. + Instead the exporter is defined as an "unchecked" collector for Prometheus. + This fixes the `reader is not registered` warning currently emitted on startup. (#3291 #3342) +- The `go.opentelemetry.io/otel/exporters/prometheus` exporter now correctly adds `_total` suffixes to counter metrics. (#3360) +- The `go.opentelemetry.io/otel/exporters/prometheus` exporter now adds a unit suffix to metric names. + This can be disabled using the `WithoutUnits()` option added to that package. (#3352) + +## [1.11.0/0.32.3] 2022-10-12 + +### Added + +- Add default User-Agent header to OTLP exporter requests (`go.opentelemetry.io/otel/exporters/otlptrace/otlptracegrpc` and `go.opentelemetry.io/otel/exporters/otlptrace/otlptracehttp`). (#3261) + +### Changed + +- `span.SetStatus` has been updated such that calls that lower the status are now no-ops. (#3214) +- Upgrade `golang.org/x/sys/unix` from `v0.0.0-20210423185535-09eb48e85fd7` to `v0.0.0-20220919091848-fb04ddd9f9c8`. + This addresses [GO-2022-0493](https://pkg.go.dev/vuln/GO-2022-0493). (#3235) + +## [0.32.2] Metric SDK (Alpha) - 2022-10-11 + +### Added + +- Added an example of using metric views to customize instruments. (#3177) +- Add default User-Agent header to OTLP exporter requests (`go.opentelemetry.io/otel/exporters/otlpmetric/otlpmetricgrpc` and `go.opentelemetry.io/otel/exporters/otlpmetric/otlpmetrichttp`). (#3261) + +### Changed + +- Flush pending measurements with the `PeriodicReader` in the `go.opentelemetry.io/otel/sdk/metric` when `ForceFlush` or `Shutdown` are called. (#3220) +- Update histogram default bounds to match the requirements of the latest specification. (#3222) +- Encode the HTTP status code in the OpenTracing bridge (`go.opentelemetry.io/otel/bridge/opentracing`) as an integer. (#3265) + +### Fixed + +- Use default view if instrument does not match any registered view of a reader. (#3224, #3237) +- Return the same instrument every time a user makes the exact same instrument creation call. (#3229, #3251) +- Return the existing instrument when a view transforms a creation call to match an existing instrument. (#3240, #3251) +- Log a warning when a conflicting instrument (e.g. description, unit, data-type) is created instead of returning an error. (#3251) +- The OpenCensus bridge no longer sends empty batches of metrics. (#3263) + +## [0.32.1] Metric SDK (Alpha) - 2022-09-22 + +### Changed + +- The Prometheus exporter sanitizes OpenTelemetry instrument names when exporting. + Invalid characters are replaced with `_`. (#3212) + +### Added + +- The metric portion of the OpenCensus bridge (`go.opentelemetry.io/otel/bridge/opencensus`) has been reintroduced. (#3192) +- The OpenCensus bridge example (`go.opentelemetry.io/otel/example/opencensus`) has been reintroduced. (#3206) + +### Fixed + +- Updated go.mods to point to valid versions of the sdk. (#3216) +- Set the `MeterProvider` resource on all exported metric data. (#3218) + +## [0.32.0] Revised Metric SDK (Alpha) - 2022-09-18 + +### Changed + +- The metric SDK in `go.opentelemetry.io/otel/sdk/metric` is completely refactored to comply with the OpenTelemetry specification. + Please see the package documentation for how the new SDK is initialized and configured. (#3175) +- Update the minimum supported go version to go1.18. Removes support for go1.17 (#3179) + +### Removed + +- The metric portion of the OpenCensus bridge (`go.opentelemetry.io/otel/bridge/opencensus`) has been removed. + A new bridge compliant with the revised metric SDK will be added back in a future release. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/aggregator/aggregatortest` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/aggregator/histogram` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/aggregator/lastvalue` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/aggregator/sum` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/aggregator` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/controller/basic` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/controller/controllertest` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/controller/time` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/export/aggregation` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/export` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/metrictest` package is removed. + A replacement package that supports the new metric SDK will be added back in a future release. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/number` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/processor/basic` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/processor/processortest` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/processor/reducer` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/registry` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/sdkapi` package is removed, see the new metric SDK. (#3175) +- The `go.opentelemetry.io/otel/sdk/metric/selector/simple` package is removed, see the new metric SDK. (#3175) +- The `"go.opentelemetry.io/otel/sdk/metric".ErrUninitializedInstrument` variable was removed. (#3175) +- The `"go.opentelemetry.io/otel/sdk/metric".ErrBadInstrument` variable was removed. (#3175) +- The `"go.opentelemetry.io/otel/sdk/metric".Accumulator` type was removed, see the `MeterProvider`in the new metric SDK. (#3175) +- The `"go.opentelemetry.io/otel/sdk/metric".NewAccumulator` function was removed, see `NewMeterProvider`in the new metric SDK. (#3175) +- The deprecated `"go.opentelemetry.io/otel/sdk/metric".AtomicFieldOffsets` function was removed. (#3175) + +## [1.10.0] - 2022-09-09 + +### Added + +- Support Go 1.19. (#3077) + Include compatibility testing and document support. (#3077) +- Support the OTLP ExportTracePartialSuccess response; these are passed to the registered error handler. (#3106) +- Upgrade go.opentelemetry.io/proto/otlp from v0.18.0 to v0.19.0 (#3107) + +### Changed + +- Fix misidentification of OpenTelemetry `SpanKind` in OpenTracing bridge (`go.opentelemetry.io/otel/bridge/opentracing`). (#3096) +- Attempting to start a span with a nil `context` will no longer cause a panic. (#3110) +- All exporters will be shutdown even if one reports an error (#3091) +- Ensure valid UTF-8 when truncating over-length attribute values. (#3156) + +## [1.9.0/0.0.3] - 2022-08-01 + +### Added + +- Add support for Schema Files format 1.1.x (metric "split" transform) with the new `go.opentelemetry.io/otel/schema/v1.1` package. (#2999) +- Add the `go.opentelemetry.io/otel/semconv/v1.11.0` package. + The package contains semantic conventions from the `v1.11.0` version of the OpenTelemetry specification. (#3009) +- Add the `go.opentelemetry.io/otel/semconv/v1.12.0` package. + The package contains semantic conventions from the `v1.12.0` version of the OpenTelemetry specification. (#3010) +- Add the `http.method` attribute to HTTP server metric from all `go.opentelemetry.io/otel/semconv/*` packages. (#3018) + +### Fixed + +- Invalid warning for context setup being deferred in `go.opentelemetry.io/otel/bridge/opentracing` package. (#3029) + +## [1.8.0/0.31.0] - 2022-07-08 + +### Added + +- Add support for `opentracing.TextMap` format in the `Inject` and `Extract` methods +of the `"go.opentelemetry.io/otel/bridge/opentracing".BridgeTracer` type. (#2911) + +### Changed + +- The `crosslink` make target has been updated to use the `go.opentelemetry.io/build-tools/crosslink` package. (#2886) +- In the `go.opentelemetry.io/otel/sdk/instrumentation` package rename `Library` to `Scope` and alias `Library` as `Scope` (#2976) +- Move metric no-op implementation form `nonrecording` to `metric` package. (#2866) + +### Removed + +- Support for go1.16. Support is now only for go1.17 and go1.18 (#2917) + +### Deprecated + +- The `Library` struct in the `go.opentelemetry.io/otel/sdk/instrumentation` package is deprecated. + Use the equivalent `Scope` struct instead. (#2977) +- The `ReadOnlySpan.InstrumentationLibrary` method from the `go.opentelemetry.io/otel/sdk/trace` package is deprecated. + Use the equivalent `ReadOnlySpan.InstrumentationScope` method instead. (#2977) + +## [1.7.0/0.30.0] - 2022-04-28 + +### Added + +- Add the `go.opentelemetry.io/otel/semconv/v1.8.0` package. + The package contains semantic conventions from the `v1.8.0` version of the OpenTelemetry specification. (#2763) +- Add the `go.opentelemetry.io/otel/semconv/v1.9.0` package. + The package contains semantic conventions from the `v1.9.0` version of the OpenTelemetry specification. (#2792) +- Add the `go.opentelemetry.io/otel/semconv/v1.10.0` package. + The package contains semantic conventions from the `v1.10.0` version of the OpenTelemetry specification. (#2842) +- Added an in-memory exporter to metrictest to aid testing with a full SDK. (#2776) + +### Fixed + +- Globally delegated instruments are unwrapped before delegating asynchronous callbacks. (#2784) +- Remove import of `testing` package in non-tests builds of the `go.opentelemetry.io/otel` package. (#2786) + +### Changed + +- The `WithLabelEncoder` option from the `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` package is renamed to `WithAttributeEncoder`. (#2790) +- The `LabelFilterSelector` interface from `go.opentelemetry.io/otel/sdk/metric/processor/reducer` is renamed to `AttributeFilterSelector`. + The method included in the renamed interface also changed from `LabelFilterFor` to `AttributeFilterFor`. (#2790) +- The `Metadata.Labels` method from the `go.opentelemetry.io/otel/sdk/metric/export` package is renamed to `Metadata.Attributes`. + Consequentially, the `Record` type from the same package also has had the embedded method renamed. (#2790) + +### Deprecated + +- The `Iterator.Label` method in the `go.opentelemetry.io/otel/attribute` package is deprecated. + Use the equivalent `Iterator.Attribute` method instead. (#2790) +- The `Iterator.IndexedLabel` method in the `go.opentelemetry.io/otel/attribute` package is deprecated. + Use the equivalent `Iterator.IndexedAttribute` method instead. (#2790) +- The `MergeIterator.Label` method in the `go.opentelemetry.io/otel/attribute` package is deprecated. + Use the equivalent `MergeIterator.Attribute` method instead. (#2790) + +### Removed + +- Removed the `Batch` type from the `go.opentelemetry.io/otel/sdk/metric/metrictest` package. (#2864) +- Removed the `Measurement` type from the `go.opentelemetry.io/otel/sdk/metric/metrictest` package. (#2864) + +## [0.29.0] - 2022-04-11 + +### Added + +- The metrics global package was added back into several test files. (#2764) +- The `Meter` function is added back to the `go.opentelemetry.io/otel/metric/global` package. + This function is a convenience function equivalent to calling `global.MeterProvider().Meter(...)`. (#2750) + +### Removed + +- Removed module the `go.opentelemetry.io/otel/sdk/export/metric`. + Use the `go.opentelemetry.io/otel/sdk/metric` module instead. (#2720) + +### Changed + +- Don't panic anymore when setting a global MeterProvider to itself. (#2749) +- Upgrade `go.opentelemetry.io/proto/otlp` in `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` from `v0.12.1` to `v0.15.0`. + This replaces the use of the now deprecated `InstrumentationLibrary` and `InstrumentationLibraryMetrics` types and fields in the proto library with the equivalent `InstrumentationScope` and `ScopeMetrics`. (#2748) + +## [1.6.3] - 2022-04-07 + +### Fixed + +- Allow non-comparable global `MeterProvider`, `TracerProvider`, and `TextMapPropagator` types to be set. (#2772, #2773) + +## [1.6.2] - 2022-04-06 + +### Changed + +- Don't panic anymore when setting a global TracerProvider or TextMapPropagator to itself. (#2749) +- Upgrade `go.opentelemetry.io/proto/otlp` in `go.opentelemetry.io/otel/exporters/otlp/otlptrace` from `v0.12.1` to `v0.15.0`. + This replaces the use of the now deprecated `InstrumentationLibrary` and `InstrumentationLibrarySpans` types and fields in the proto library with the equivalent `InstrumentationScope` and `ScopeSpans`. (#2748) + +## [1.6.1] - 2022-03-28 + +### Fixed + +- The `go.opentelemetry.io/otel/schema/*` packages now use the correct schema URL for their `SchemaURL` constant. + Instead of using `"https://opentelemetry.io/schemas/v"` they now use the correct URL without a `v` prefix, `"https://opentelemetry.io/schemas/"`. (#2743, #2744) + +### Security + +- Upgrade `go.opentelemetry.io/proto/otlp` from `v0.12.0` to `v0.12.1`. + This includes an indirect upgrade of `github.com/grpc-ecosystem/grpc-gateway` which resolves [a vulnerability](https://nvd.nist.gov/vuln/detail/CVE-2019-11254) from `gopkg.in/yaml.v2` in version `v2.2.3`. (#2724, #2728) + +## [1.6.0/0.28.0] - 2022-03-23 + +### ⚠️ Notice ⚠️ + +This update is a breaking change of the unstable Metrics API. +Code instrumented with the `go.opentelemetry.io/otel/metric` will need to be modified. + +### Added + +- Add metrics exponential histogram support. + New mapping functions have been made available in `sdk/metric/aggregator/exponential/mapping` for other OpenTelemetry projects to take dependencies on. (#2502) +- Add Go 1.18 to our compatibility tests. (#2679) +- Allow configuring the Sampler with the `OTEL_TRACES_SAMPLER` and `OTEL_TRACES_SAMPLER_ARG` environment variables. (#2305, #2517) +- Add the `metric/global` for obtaining and setting the global `MeterProvider`. (#2660) + +### Changed + +- The metrics API has been significantly changed to match the revised OpenTelemetry specification. + High-level changes include: + + - Synchronous and asynchronous instruments are now handled by independent `InstrumentProvider`s. + These `InstrumentProvider`s are managed with a `Meter`. + - Synchronous and asynchronous instruments are grouped into their own packages based on value types. + - Asynchronous callbacks can now be registered with a `Meter`. + + Be sure to check out the metric module documentation for more information on how to use the revised API. (#2587, #2660) + +### Fixed + +- Fallback to general attribute limits when span specific ones are not set in the environment. (#2675, #2677) + +## [1.5.0] - 2022-03-16 + +### Added + +- Log the Exporters configuration in the TracerProviders message. (#2578) +- Added support to configure the span limits with environment variables. + The following environment variables are supported. (#2606, #2637) + - `OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT` + - `OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT` + - `OTEL_SPAN_EVENT_COUNT_LIMIT` + - `OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT` + - `OTEL_SPAN_LINK_COUNT_LIMIT` + - `OTEL_LINK_ATTRIBUTE_COUNT_LIMIT` + + If the provided environment variables are invalid (negative), the default values would be used. +- Rename the `gc` runtime name to `go` (#2560) +- Add resource container ID detection. (#2418) +- Add span attribute value length limit. + The new `AttributeValueLengthLimit` field is added to the `"go.opentelemetry.io/otel/sdk/trace".SpanLimits` type to configure this limit for a `TracerProvider`. + The default limit for this resource is "unlimited". (#2637) +- Add the `WithRawSpanLimits` option to `go.opentelemetry.io/otel/sdk/trace`. + This option replaces the `WithSpanLimits` option. + Zero or negative values will not be changed to the default value like `WithSpanLimits` does. + Setting a limit to zero will effectively disable the related resource it limits and setting to a negative value will mean that resource is unlimited. + Consequentially, limits should be constructed using `NewSpanLimits` and updated accordingly. (#2637) + +### Changed + +- Drop oldest tracestate `Member` when capacity is reached. (#2592) +- Add event and link drop counts to the exported data from the `oltptrace` exporter. (#2601) +- Unify path cleaning functionally in the `otlpmetric` and `otlptrace` configuration. (#2639) +- Change the debug message from the `sdk/trace.BatchSpanProcessor` to reflect the count is cumulative. (#2640) +- Introduce new internal `envconfig` package for OTLP exporters. (#2608) +- If `http.Request.Host` is empty, fall back to use `URL.Host` when populating `http.host` in the `semconv` packages. (#2661) + +### Fixed + +- Remove the OTLP trace exporter limit of SpanEvents when exporting. (#2616) +- Default to port `4318` instead of `4317` for the `otlpmetrichttp` and `otlptracehttp` client. (#2614, #2625) +- Unlimited span limits are now supported (negative values). (#2636, #2637) + +### Deprecated + +- Deprecated `"go.opentelemetry.io/otel/sdk/trace".WithSpanLimits`. + Use `WithRawSpanLimits` instead. + That option allows setting unlimited and zero limits, this option does not. + This option will be kept until the next major version incremented release. (#2637) + +## [1.4.1] - 2022-02-16 + +### Fixed + +- Fix race condition in reading the dropped spans number for the `BatchSpanProcessor`. (#2615) + +## [1.4.0] - 2022-02-11 + +### Added + +- Use `OTEL_EXPORTER_ZIPKIN_ENDPOINT` environment variable to specify zipkin collector endpoint. (#2490) +- Log the configuration of `TracerProvider`s, and `Tracer`s for debugging. + To enable use a logger with Verbosity (V level) `>=1`. (#2500) +- Added support to configure the batch span-processor with environment variables. + The following environment variables are used. (#2515) + - `OTEL_BSP_SCHEDULE_DELAY` + - `OTEL_BSP_EXPORT_TIMEOUT` + - `OTEL_BSP_MAX_QUEUE_SIZE`. + - `OTEL_BSP_MAX_EXPORT_BATCH_SIZE` + +### Changed + +- Zipkin exporter exports `Resource` attributes in the `Tags` field. (#2589) + +### Deprecated + +- Deprecate module the `go.opentelemetry.io/otel/sdk/export/metric`. + Use the `go.opentelemetry.io/otel/sdk/metric` module instead. (#2382) +- Deprecate `"go.opentelemetry.io/otel/sdk/metric".AtomicFieldOffsets`. (#2445) + +### Fixed + +- Fixed the instrument kind for noop async instruments to correctly report an implementation. (#2461) +- Fix UDP packets overflowing with Jaeger payloads. (#2489, #2512) +- Change the `otlpmetric.Client` interface's `UploadMetrics` method to accept a single `ResourceMetrics` instead of a slice of them. (#2491) +- Specify explicit buckets in Prometheus example, fixing issue where example only has `+inf` bucket. (#2419, #2493) +- W3C baggage will now decode urlescaped values. (#2529) +- Baggage members are now only validated once, when calling `NewMember` and not also when adding it to the baggage itself. (#2522) +- The order attributes are dropped from spans in the `go.opentelemetry.io/otel/sdk/trace` package when capacity is reached is fixed to be in compliance with the OpenTelemetry specification. + Instead of dropping the least-recently-used attribute, the last added attribute is dropped. + This drop order still only applies to attributes with unique keys not already contained in the span. + If an attribute is added with a key already contained in the span, that attribute is updated to the new value being added. (#2576) + +### Removed + +- Updated `go.opentelemetry.io/proto/otlp` from `v0.11.0` to `v0.12.0`. This version removes a number of deprecated methods. (#2546) + - [`Metric.GetIntGauge()`](https://pkg.go.dev/go.opentelemetry.io/proto/otlp@v0.11.0/metrics/v1#Metric.GetIntGauge) + - [`Metric.GetIntHistogram()`](https://pkg.go.dev/go.opentelemetry.io/proto/otlp@v0.11.0/metrics/v1#Metric.GetIntHistogram) + - [`Metric.GetIntSum()`](https://pkg.go.dev/go.opentelemetry.io/proto/otlp@v0.11.0/metrics/v1#Metric.GetIntSum) + +## [1.3.0] - 2021-12-10 + +### ⚠️ Notice ⚠️ + +We have updated the project minimum supported Go version to 1.16 + +### Added + +- Added an internal Logger. + This can be used by the SDK and API to provide users with feedback of the internal state. + To enable verbose logs configure the logger which will print V(1) logs. For debugging information configure to print V(5) logs. (#2343) +- Add the `WithRetry` `Option` and the `RetryConfig` type to the `go.opentelemetry.io/otel/exporter/otel/otlpmetric/otlpmetrichttp` package to specify retry behavior consistently. (#2425) +- Add `SpanStatusFromHTTPStatusCodeAndSpanKind` to all `semconv` packages to return a span status code similar to `SpanStatusFromHTTPStatusCode`, but exclude `4XX` HTTP errors as span errors if the span is of server kind. (#2296) + +### Changed + +- The `"go.opentelemetry.io/otel/exporter/otel/otlptrace/otlptracegrpc".Client` now uses the underlying gRPC `ClientConn` to handle name resolution, TCP connection establishment (with retries and backoff) and TLS handshakes, and handling errors on established connections by re-resolving the name and reconnecting. (#2329) +- The `"go.opentelemetry.io/otel/exporter/otel/otlpmetric/otlpmetricgrpc".Client` now uses the underlying gRPC `ClientConn` to handle name resolution, TCP connection establishment (with retries and backoff) and TLS handshakes, and handling errors on established connections by re-resolving the name and reconnecting. (#2425) +- The `"go.opentelemetry.io/otel/exporter/otel/otlpmetric/otlpmetricgrpc".RetrySettings` type is renamed to `RetryConfig`. (#2425) +- The `go.opentelemetry.io/otel/exporter/otel/*` gRPC exporters now default to using the host's root CA set if none are provided by the user and `WithInsecure` is not specified. (#2432) +- Change `resource.Default` to be evaluated the first time it is called, rather than on import. This allows the caller the option to update `OTEL_RESOURCE_ATTRIBUTES` first, such as with `os.Setenv`. (#2371) + +### Fixed + +- The `go.opentelemetry.io/otel/exporter/otel/*` exporters are updated to handle per-signal and universal endpoints according to the OpenTelemetry specification. + Any per-signal endpoint set via an `OTEL_EXPORTER_OTLP__ENDPOINT` environment variable is now used without modification of the path. + When `OTEL_EXPORTER_OTLP_ENDPOINT` is set, if it contains a path, that path is used as a base path which per-signal paths are appended to. (#2433) +- Basic metric controller updated to use sync.Map to avoid blocking calls (#2381) +- The `go.opentelemetry.io/otel/exporter/jaeger` correctly sets the `otel.status_code` value to be a string of `ERROR` or `OK` instead of an integer code. (#2439, #2440) + +### Deprecated + +- Deprecated the `"go.opentelemetry.io/otel/exporter/otel/otlpmetric/otlpmetrichttp".WithMaxAttempts` `Option`, use the new `WithRetry` `Option` instead. (#2425) +- Deprecated the `"go.opentelemetry.io/otel/exporter/otel/otlpmetric/otlpmetrichttp".WithBackoff` `Option`, use the new `WithRetry` `Option` instead. (#2425) + +### Removed + +- Remove the metric Processor's ability to convert cumulative to delta aggregation temporality. (#2350) +- Remove the metric Bound Instruments interface and implementations. (#2399) +- Remove the metric MinMaxSumCount kind aggregation and the corresponding OTLP export path. (#2423) +- Metric SDK removes the "exact" aggregator for histogram instruments, as it performed a non-standard aggregation for OTLP export (creating repeated Gauge points) and worked its way into a number of confusing examples. (#2348) + +## [1.2.0] - 2021-11-12 + +### Changed + +- Metric SDK `export.ExportKind`, `export.ExportKindSelector` types have been renamed to `aggregation.Temporality` and `aggregation.TemporalitySelector` respectively to keep in line with current specification and protocol along with built-in selectors (e.g., `aggregation.CumulativeTemporalitySelector`, ...). (#2274) +- The Metric `Exporter` interface now requires a `TemporalitySelector` method instead of an `ExportKindSelector`. (#2274) +- Metrics API cleanup. The `metric/sdkapi` package has been created to relocate the API-to-SDK interface: + - The following interface types simply moved from `metric` to `metric/sdkapi`: `Descriptor`, `MeterImpl`, `InstrumentImpl`, `SyncImpl`, `BoundSyncImpl`, `AsyncImpl`, `AsyncRunner`, `AsyncSingleRunner`, and `AsyncBatchRunner` + - The following struct types moved and are replaced with type aliases, since they are exposed to the user: `Observation`, `Measurement`. + - The No-op implementations of sync and async instruments are no longer exported, new functions `sdkapi.NewNoopAsyncInstrument()` and `sdkapi.NewNoopSyncInstrument()` are provided instead. (#2271) +- Update the SDK `BatchSpanProcessor` to export all queued spans when `ForceFlush` is called. (#2080, #2335) + +### Added + +- Add the `"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc".WithGRPCConn` option so the exporter can reuse an existing gRPC connection. (#2002) +- Added a new `schema` module to help parse Schema Files in OTEP 0152 format. (#2267) +- Added a new `MapCarrier` to the `go.opentelemetry.io/otel/propagation` package to hold propagated cross-cutting concerns as a `map[string]string` held in memory. (#2334) + +## [1.1.0] - 2021-10-27 + +### Added + +- Add the `"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc".WithGRPCConn` option so the exporter can reuse an existing gRPC connection. (#2002) +- Add the `go.opentelemetry.io/otel/semconv/v1.7.0` package. + The package contains semantic conventions from the `v1.7.0` version of the OpenTelemetry specification. (#2320) +- Add the `go.opentelemetry.io/otel/semconv/v1.6.1` package. + The package contains semantic conventions from the `v1.6.1` version of the OpenTelemetry specification. (#2321) +- Add the `go.opentelemetry.io/otel/semconv/v1.5.0` package. + The package contains semantic conventions from the `v1.5.0` version of the OpenTelemetry specification. (#2322) + - When upgrading from the `semconv/v1.4.0` package note the following name changes: + - `K8SReplicasetUIDKey` -> `K8SReplicaSetUIDKey` + - `K8SReplicasetNameKey` -> `K8SReplicaSetNameKey` + - `K8SStatefulsetUIDKey` -> `K8SStatefulSetUIDKey` + - `k8SStatefulsetNameKey` -> `K8SStatefulSetNameKey` + - `K8SDaemonsetUIDKey` -> `K8SDaemonSetUIDKey` + - `K8SDaemonsetNameKey` -> `K8SDaemonSetNameKey` + +### Changed + +- Links added to a span will be dropped by the SDK if they contain an invalid span context (#2275). + +### Fixed + +- The `"go.opentelemetry.io/otel/semconv/v1.4.0".HTTPServerAttributesFromHTTPRequest` now correctly only sets the HTTP client IP attribute even if the connection was routed with proxies and there are multiple addresses in the `X-Forwarded-For` header. (#2282, #2284) +- The `"go.opentelemetry.io/otel/semconv/v1.4.0".NetAttributesFromHTTPRequest` function correctly handles IPv6 addresses as IP addresses and sets the correct net peer IP instead of the net peer hostname attribute. (#2283, #2285) +- The simple span processor shutdown method deterministically returns the exporter error status if it simultaneously finishes when the deadline is reached. (#2290, #2289) + +## [1.0.1] - 2021-10-01 + +### Fixed + +- json stdout exporter no longer crashes due to concurrency bug. (#2265) + +## [Metrics 0.24.0] - 2021-10-01 + +### Changed + +- NoopMeterProvider is now private and NewNoopMeterProvider must be used to obtain a noopMeterProvider. (#2237) +- The Metric SDK `Export()` function takes a new two-level reader interface for iterating over results one instrumentation library at a time. (#2197) + - The former `"go.opentelemetry.io/otel/sdk/export/metric".CheckpointSet` is renamed `Reader`. + - The new interface is named `"go.opentelemetry.io/otel/sdk/export/metric".InstrumentationLibraryReader`. + +## [1.0.0] - 2021-09-20 + +This is the first stable release for the project. +This release includes an API and SDK for the tracing signal that will comply with the stability guarantees defined by the projects [versioning policy](./VERSIONING.md). + +### Added + +- OTLP trace exporter now sets the `SchemaURL` field in the exported telemetry if the Tracer has `WithSchemaURL` option. (#2242) + +### Fixed + +- Slice-valued attributes can correctly be used as map keys. (#2223) + +### Removed + +- Removed the `"go.opentelemetry.io/otel/exporters/zipkin".WithSDKOptions` function. (#2248) +- Removed the deprecated package `go.opentelemetry.io/otel/oteltest`. (#2234) +- Removed the deprecated package `go.opentelemetry.io/otel/bridge/opencensus/utils`. (#2233) +- Removed deprecated functions, types, and methods from `go.opentelemetry.io/otel/attribute` package. + Use the typed functions and methods added to the package instead. (#2235) + - The `Key.Array` method is removed. + - The `Array` function is removed. + - The `Any` function is removed. + - The `ArrayValue` function is removed. + - The `AsArray` function is removed. + +## [1.0.0-RC3] - 2021-09-02 + +### Added + +- Added `ErrorHandlerFunc` to use a function as an `"go.opentelemetry.io/otel".ErrorHandler`. (#2149) +- Added `"go.opentelemetry.io/otel/trace".WithStackTrace` option to add a stack trace when using `span.RecordError` or when panic is handled in `span.End`. (#2163) +- Added typed slice attribute types and functionality to the `go.opentelemetry.io/otel/attribute` package to replace the existing array type and functions. (#2162) + - `BoolSlice`, `IntSlice`, `Int64Slice`, `Float64Slice`, and `StringSlice` replace the use of the `Array` function in the package. +- Added the `go.opentelemetry.io/otel/example/fib` example package. + Included is an example application that computes Fibonacci numbers. (#2203) + +### Changed + +- Metric instruments have been renamed to match the (feature-frozen) metric API specification: + - ValueRecorder becomes Histogram + - ValueObserver becomes Gauge + - SumObserver becomes CounterObserver + - UpDownSumObserver becomes UpDownCounterObserver + The API exported from this project is still considered experimental. (#2202) +- Metric SDK/API implementation type `InstrumentKind` moves into `sdkapi` sub-package. (#2091) +- The Metrics SDK export record no longer contains a Resource pointer, the SDK `"go.opentelemetry.io/otel/sdk/trace/export/metric".Exporter.Export()` function for push-based exporters now takes a single Resource argument, pull-based exporters use `"go.opentelemetry.io/otel/sdk/metric/controller/basic".Controller.Resource()`. (#2120) +- The JSON output of the `go.opentelemetry.io/otel/exporters/stdout/stdouttrace` is harmonized now such that the output is "plain" JSON objects after each other of the form `{ ... } { ... } { ... }`. Earlier the JSON objects describing a span were wrapped in a slice for each `Exporter.ExportSpans` call, like `[ { ... } ][ { ... } { ... } ]`. Outputting JSON object directly after each other is consistent with JSON loggers, and a bit easier to parse and read. (#2196) +- Update the `NewTracerConfig`, `NewSpanStartConfig`, `NewSpanEndConfig`, and `NewEventConfig` function in the `go.opentelemetry.io/otel/trace` package to return their respective configurations as structs instead of pointers to the struct. (#2212) + +### Deprecated + +- The `go.opentelemetry.io/otel/bridge/opencensus/utils` package is deprecated. + All functionality from this package now exists in the `go.opentelemetry.io/otel/bridge/opencensus` package. + The functions from that package should be used instead. (#2166) +- The `"go.opentelemetry.io/otel/attribute".Array` function and the related `ARRAY` value type is deprecated. + Use the typed `*Slice` functions and types added to the package instead. (#2162) +- The `"go.opentelemetry.io/otel/attribute".Any` function is deprecated. + Use the typed functions instead. (#2181) +- The `go.opentelemetry.io/otel/oteltest` package is deprecated. + The `"go.opentelemetry.io/otel/sdk/trace/tracetest".SpanRecorder` can be registered with the default SDK (`go.opentelemetry.io/otel/sdk/trace`) as a `SpanProcessor` and used as a replacement for this deprecated package. (#2188) + +### Removed + +- Removed metrics test package `go.opentelemetry.io/otel/sdk/export/metric/metrictest`. (#2105) + +### Fixed + +- The `fromEnv` detector no longer throws an error when `OTEL_RESOURCE_ATTRIBUTES` environment variable is not set or empty. (#2138) +- Setting the global `ErrorHandler` with `"go.opentelemetry.io/otel".SetErrorHandler` multiple times is now supported. (#2160, #2140) +- The `"go.opentelemetry.io/otel/attribute".Any` function now supports `int32` values. (#2169) +- Multiple calls to `"go.opentelemetry.io/otel/sdk/metric/controller/basic".WithResource()` are handled correctly, and when no resources are provided `"go.opentelemetry.io/otel/sdk/resource".Default()` is used. (#2120) +- The `WithoutTimestamps` option for the `go.opentelemetry.io/otel/exporters/stdout/stdouttrace` exporter causes the exporter to correctly omit timestamps. (#2195) +- Fixed typos in resources.go. (#2201) + +## [1.0.0-RC2] - 2021-07-26 + +### Added + +- Added `WithOSDescription` resource configuration option to set OS (Operating System) description resource attribute (`os.description`). (#1840) +- Added `WithOS` resource configuration option to set all OS (Operating System) resource attributes at once. (#1840) +- Added the `WithRetry` option to the `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` package. + This option is a replacement for the removed `WithMaxAttempts` and `WithBackoff` options. (#2095) +- Added API `LinkFromContext` to return Link which encapsulates SpanContext from provided context and also encapsulates attributes. (#2115) +- Added a new `Link` type under the SDK `otel/sdk/trace` package that counts the number of attributes that were dropped for surpassing the `AttributePerLinkCountLimit` configured in the Span's `SpanLimits`. + This new type replaces the equal-named API `Link` type found in the `otel/trace` package for most usages within the SDK. + For example, instances of this type are now returned by the `Links()` function of `ReadOnlySpan`s provided in places like the `OnEnd` function of `SpanProcessor` implementations. (#2118) +- Added the `SpanRecorder` type to the `go.opentelemetry.io/otel/skd/trace/tracetest` package. + This type can be used with the default SDK as a `SpanProcessor` during testing. (#2132) + +### Changed + +- The `SpanModels` function is now exported from the `go.opentelemetry.io/otel/exporters/zipkin` package to convert OpenTelemetry spans into Zipkin model spans. (#2027) +- Rename the `"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc".RetrySettings` to `RetryConfig`. (#2095) + +### Deprecated + +- The `TextMapCarrier` and `TextMapPropagator` from the `go.opentelemetry.io/otel/oteltest` package and their associated creation functions (`TextMapCarrier`, `NewTextMapPropagator`) are deprecated. (#2114) +- The `Harness` type from the `go.opentelemetry.io/otel/oteltest` package and its associated creation function, `NewHarness` are deprecated and will be removed in the next release. (#2123) +- The `TraceStateFromKeyValues` function from the `go.opentelemetry.io/otel/oteltest` package is deprecated. + Use the `trace.ParseTraceState` function instead. (#2122) + +### Removed + +- Removed the deprecated package `go.opentelemetry.io/otel/exporters/trace/jaeger`. (#2020) +- Removed the deprecated package `go.opentelemetry.io/otel/exporters/trace/zipkin`. (#2020) +- Removed the `"go.opentelemetry.io/otel/sdk/resource".WithBuiltinDetectors` function. + The explicit `With*` options for every built-in detector should be used instead. (#2026 #2097) +- Removed the `WithMaxAttempts` and `WithBackoff` options from the `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` package. + The retry logic of the package has been updated to match the `otlptracegrpc` package and accordingly a `WithRetry` option is added that should be used instead. (#2095) +- Removed `DroppedAttributeCount` field from `otel/trace.Link` struct. (#2118) + +### Fixed + +- When using WithNewRoot, don't use the parent context for making sampling decisions. (#2032) +- `oteltest.Tracer` now creates a valid `SpanContext` when using `WithNewRoot`. (#2073) +- OS type detector now sets the correct `dragonflybsd` value for DragonFly BSD. (#2092) +- The OTel span status is correctly transformed into the OTLP status in the `go.opentelemetry.io/otel/exporters/otlp/otlptrace` package. + This fix will by default set the status to `Unset` if it is not explicitly set to `Ok` or `Error`. (#2099 #2102) +- The `Inject` method for the `"go.opentelemetry.io/otel/propagation".TraceContext` type no longer injects empty `tracestate` values. (#2108) +- Use `6831` as default Jaeger agent port instead of `6832`. (#2131) + +## [Experimental Metrics v0.22.0] - 2021-07-19 + +### Added + +- Adds HTTP support for OTLP metrics exporter. (#2022) + +### Removed + +- Removed the deprecated package `go.opentelemetry.io/otel/exporters/metric/prometheus`. (#2020) + +## [1.0.0-RC1] / 0.21.0 - 2021-06-18 + +With this release we are introducing a split in module versions. The tracing API and SDK are entering the `v1.0.0` Release Candidate phase with `v1.0.0-RC1` +while the experimental metrics API and SDK continue with `v0.x` releases at `v0.21.0`. Modules at major version 1 or greater will not depend on modules +with major version 0. + +### Added + +- Adds `otlpgrpc.WithRetry`option for configuring the retry policy for transient errors on the otlp/gRPC exporter. (#1832) + - The following status codes are defined as transient errors: + | gRPC Status Code | Description | + | ---------------- | ----------- | + | 1 | Cancelled | + | 4 | Deadline Exceeded | + | 8 | Resource Exhausted | + | 10 | Aborted | + | 10 | Out of Range | + | 14 | Unavailable | + | 15 | Data Loss | +- Added `Status` type to the `go.opentelemetry.io/otel/sdk/trace` package to represent the status of a span. (#1874) +- Added `SpanStub` type and its associated functions to the `go.opentelemetry.io/otel/sdk/trace/tracetest` package. + This type can be used as a testing replacement for the `SpanSnapshot` that was removed from the `go.opentelemetry.io/otel/sdk/trace` package. (#1873) +- Adds support for scheme in `OTEL_EXPORTER_OTLP_ENDPOINT` according to the spec. (#1886) +- Adds `trace.WithSchemaURL` option for configuring the tracer with a Schema URL. (#1889) +- Added an example of using OpenTelemetry Go as a trace context forwarder. (#1912) +- `ParseTraceState` is added to the `go.opentelemetry.io/otel/trace` package. + It can be used to decode a `TraceState` from a `tracestate` header string value. (#1937) +- Added `Len` method to the `TraceState` type in the `go.opentelemetry.io/otel/trace` package. + This method returns the number of list-members the `TraceState` holds. (#1937) +- Creates package `go.opentelemetry.io/otel/exporters/otlp/otlptrace` that defines a trace exporter that uses a `otlptrace.Client` to send data. + Creates package `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc` implementing a gRPC `otlptrace.Client` and offers convenience functions, `NewExportPipeline` and `InstallNewPipeline`, to setup and install a `otlptrace.Exporter` in tracing .(#1922) +- Added `Baggage`, `Member`, and `Property` types to the `go.opentelemetry.io/otel/baggage` package along with their related functions. (#1967) +- Added `ContextWithBaggage`, `ContextWithoutBaggage`, and `FromContext` functions to the `go.opentelemetry.io/otel/baggage` package. + These functions replace the `Set`, `Value`, `ContextWithValue`, `ContextWithoutValue`, and `ContextWithEmpty` functions from that package and directly work with the new `Baggage` type. (#1967) +- The `OTEL_SERVICE_NAME` environment variable is the preferred source for `service.name`, used by the environment resource detector if a service name is present both there and in `OTEL_RESOURCE_ATTRIBUTES`. (#1969) +- Creates package `go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp` implementing an HTTP `otlptrace.Client` and offers convenience functions, `NewExportPipeline` and `InstallNewPipeline`, to setup and install a `otlptrace.Exporter` in tracing. (#1963) +- Changes `go.opentelemetry.io/otel/sdk/resource.NewWithAttributes` to require a schema URL. The old function is still available as `resource.NewSchemaless`. This is a breaking change. (#1938) +- Several builtin resource detectors now correctly populate the schema URL. (#1938) +- Creates package `go.opentelemetry.io/otel/exporters/otlp/otlpmetric` that defines a metrics exporter that uses a `otlpmetric.Client` to send data. +- Creates package `go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc` implementing a gRPC `otlpmetric.Client` and offers convenience functions, `New` and `NewUnstarted`, to create an `otlpmetric.Exporter`.(#1991) +- Added `go.opentelemetry.io/otel/exporters/stdout/stdouttrace` exporter. (#2005) +- Added `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` exporter. (#2005) +- Added a `TracerProvider()` method to the `"go.opentelemetry.io/otel/trace".Span` interface. This can be used to obtain a `TracerProvider` from a given span that utilizes the same trace processing pipeline. (#2009) + +### Changed + +- Make `NewSplitDriver` from `go.opentelemetry.io/otel/exporters/otlp` take variadic arguments instead of a `SplitConfig` item. + `NewSplitDriver` now automatically implements an internal `noopDriver` for `SplitConfig` fields that are not initialized. (#1798) +- `resource.New()` now creates a Resource without builtin detectors. Previous behavior is now achieved by using `WithBuiltinDetectors` Option. (#1810) +- Move the `Event` type from the `go.opentelemetry.io/otel` package to the `go.opentelemetry.io/otel/sdk/trace` package. (#1846) +- CI builds validate against last two versions of Go, dropping 1.14 and adding 1.16. (#1865) +- BatchSpanProcessor now report export failures when calling `ForceFlush()` method. (#1860) +- `Set.Encoded(Encoder)` no longer caches the result of an encoding. (#1855) +- Renamed `CloudZoneKey` to `CloudAvailabilityZoneKey` in Resource semantic conventions according to spec. (#1871) +- The `StatusCode` and `StatusMessage` methods of the `ReadOnlySpan` interface and the `Span` produced by the `go.opentelemetry.io/otel/sdk/trace` package have been replaced with a single `Status` method. + This method returns the status of a span using the new `Status` type. (#1874) +- Updated `ExportSpans` method of the`SpanExporter` interface type to accept `ReadOnlySpan`s instead of the removed `SpanSnapshot`. + This brings the export interface into compliance with the specification in that it now accepts an explicitly immutable type instead of just an implied one. (#1873) +- Unembed `SpanContext` in `Link`. (#1877) +- Generate Semantic conventions from the specification YAML. (#1891) +- Spans created by the global `Tracer` obtained from `go.opentelemetry.io/otel`, prior to a functioning `TracerProvider` being set, now propagate the span context from their parent if one exists. (#1901) +- The `"go.opentelemetry.io/otel".Tracer` function now accepts tracer options. (#1902) +- Move the `go.opentelemetry.io/otel/unit` package to `go.opentelemetry.io/otel/metric/unit`. (#1903) +- Changed `go.opentelemetry.io/otel/trace.TracerConfig` to conform to the [Contributing guidelines](CONTRIBUTING.md#config.) (#1921) +- Changed `go.opentelemetry.io/otel/trace.SpanConfig` to conform to the [Contributing guidelines](CONTRIBUTING.md#config). (#1921) +- Changed `span.End()` now only accepts Options that are allowed at `End()`. (#1921) +- Changed `go.opentelemetry.io/otel/metric.InstrumentConfig` to conform to the [Contributing guidelines](CONTRIBUTING.md#config). (#1921) +- Changed `go.opentelemetry.io/otel/metric.MeterConfig` to conform to the [Contributing guidelines](CONTRIBUTING.md#config). (#1921) +- Refactored option types according to the contribution style guide. (#1882) +- Move the `go.opentelemetry.io/otel/trace.TraceStateFromKeyValues` function to the `go.opentelemetry.io/otel/oteltest` package. + This function is preserved for testing purposes where it may be useful to create a `TraceState` from `attribute.KeyValue`s, but it is not intended for production use. + The new `ParseTraceState` function should be used to create a `TraceState`. (#1931) +- Updated `MarshalJSON` method of the `go.opentelemetry.io/otel/trace.TraceState` type to marshal the type into the string representation of the `TraceState`. (#1931) +- The `TraceState.Delete` method from the `go.opentelemetry.io/otel/trace` package no longer returns an error in addition to a `TraceState`. (#1931) +- Updated `Get` method of the `TraceState` type from the `go.opentelemetry.io/otel/trace` package to accept a `string` instead of an `attribute.Key` type. (#1931) +- Updated `Insert` method of the `TraceState` type from the `go.opentelemetry.io/otel/trace` package to accept a pair of `string`s instead of an `attribute.KeyValue` type. (#1931) +- Updated `Delete` method of the `TraceState` type from the `go.opentelemetry.io/otel/trace` package to accept a `string` instead of an `attribute.Key` type. (#1931) +- Renamed `NewExporter` to `New` in the `go.opentelemetry.io/otel/exporters/stdout` package. (#1985) +- Renamed `NewExporter` to `New` in the `go.opentelemetry.io/otel/exporters/metric/prometheus` package. (#1985) +- Renamed `NewExporter` to `New` in the `go.opentelemetry.io/otel/exporters/trace/jaeger` package. (#1985) +- Renamed `NewExporter` to `New` in the `go.opentelemetry.io/otel/exporters/trace/zipkin` package. (#1985) +- Renamed `NewExporter` to `New` in the `go.opentelemetry.io/otel/exporters/otlp` package. (#1985) +- Renamed `NewUnstartedExporter` to `NewUnstarted` in the `go.opentelemetry.io/otel/exporters/otlp` package. (#1985) +- The `go.opentelemetry.io/otel/semconv` package has been moved to `go.opentelemetry.io/otel/semconv/v1.4.0` to allow for multiple [telemetry schema](https://github.com/open-telemetry/oteps/blob/main/text/0152-telemetry-schemas.md) versions to be used concurrently. (#1987) +- Metrics test helpers in `go.opentelemetry.io/otel/oteltest` have been moved to `go.opentelemetry.io/otel/metric/metrictest`. (#1988) + +### Deprecated + +- The `go.opentelemetry.io/otel/exporters/metric/prometheus` is deprecated, use `go.opentelemetry.io/otel/exporters/prometheus` instead. (#1993) +- The `go.opentelemetry.io/otel/exporters/trace/jaeger` is deprecated, use `go.opentelemetry.io/otel/exporters/jaeger` instead. (#1993) +- The `go.opentelemetry.io/otel/exporters/trace/zipkin` is deprecated, use `go.opentelemetry.io/otel/exporters/zipkin` instead. (#1993) + +### Removed + +- Removed `resource.WithoutBuiltin()`. Use `resource.New()`. (#1810) +- Unexported types `resource.FromEnv`, `resource.Host`, and `resource.TelemetrySDK`, Use the corresponding `With*()` to use individually. (#1810) +- Removed the `Tracer` and `IsRecording` method from the `ReadOnlySpan` in the `go.opentelemetry.io/otel/sdk/trace`. + The `Tracer` method is not a required to be included in this interface and given the mutable nature of the tracer that is associated with a span, this method is not appropriate. + The `IsRecording` method returns if the span is recording or not. + A read-only span value does not need to know if updates to it will be recorded or not. + By definition, it cannot be updated so there is no point in communicating if an update is recorded. (#1873) +- Removed the `SpanSnapshot` type from the `go.opentelemetry.io/otel/sdk/trace` package. + The use of this type has been replaced with the use of the explicitly immutable `ReadOnlySpan` type. + When a concrete representation of a read-only span is needed for testing, the newly added `SpanStub` in the `go.opentelemetry.io/otel/sdk/trace/tracetest` package should be used. (#1873) +- Removed the `Tracer` method from the `Span` interface in the `go.opentelemetry.io/otel/trace` package. + Using the same tracer that created a span introduces the error where an instrumentation library's `Tracer` is used by other code instead of their own. + The `"go.opentelemetry.io/otel".Tracer` function or a `TracerProvider` should be used to acquire a library specific `Tracer` instead. (#1900) + - The `TracerProvider()` method on the `Span` interface may also be used to obtain a `TracerProvider` using the same trace processing pipeline. (#2009) +- The `http.url` attribute generated by `HTTPClientAttributesFromHTTPRequest` will no longer include username or password information. (#1919) +- Removed `IsEmpty` method of the `TraceState` type in the `go.opentelemetry.io/otel/trace` package in favor of using the added `TraceState.Len` method. (#1931) +- Removed `Set`, `Value`, `ContextWithValue`, `ContextWithoutValue`, and `ContextWithEmpty` functions in the `go.opentelemetry.io/otel/baggage` package. + Handling of baggage is now done using the added `Baggage` type and related context functions (`ContextWithBaggage`, `ContextWithoutBaggage`, and `FromContext`) in that package. (#1967) +- The `InstallNewPipeline` and `NewExportPipeline` creation functions in all the exporters (prometheus, otlp, stdout, jaeger, and zipkin) have been removed. + These functions were deemed premature attempts to provide convenience that did not achieve this aim. (#1985) +- The `go.opentelemetry.io/otel/exporters/otlp` exporter has been removed. Use `go.opentelemetry.io/otel/exporters/otlp/otlptrace` instead. (#1990) +- The `go.opentelemetry.io/otel/exporters/stdout` exporter has been removed. Use `go.opentelemetry.io/otel/exporters/stdout/stdouttrace` or `go.opentelemetry.io/otel/exporters/stdout/stdoutmetric` instead. (#2005) + +### Fixed + +- Only report errors from the `"go.opentelemetry.io/otel/sdk/resource".Environment` function when they are not `nil`. (#1850, #1851) +- The `Shutdown` method of the simple `SpanProcessor` in the `go.opentelemetry.io/otel/sdk/trace` package now honors the context deadline or cancellation. (#1616, #1856) +- BatchSpanProcessor now drops span batches that failed to be exported. (#1860) +- Use `http://localhost:14268/api/traces` as default Jaeger collector endpoint instead of `http://localhost:14250`. (#1898) +- Allow trailing and leading whitespace in the parsing of a `tracestate` header. (#1931) +- Add logic to determine if the channel is closed to fix Jaeger exporter test panic with close closed channel. (#1870, #1973) +- Avoid transport security when OTLP endpoint is a Unix socket. (#2001) + +### Security + +## [0.20.0] - 2021-04-23 + +### Added + +- The OTLP exporter now has two new convenience functions, `NewExportPipeline` and `InstallNewPipeline`, setup and install the exporter in tracing and metrics pipelines. (#1373) +- Adds semantic conventions for exceptions. (#1492) +- Added Jaeger Environment variables: `OTEL_EXPORTER_JAEGER_AGENT_HOST`, `OTEL_EXPORTER_JAEGER_AGENT_PORT` + These environment variables can be used to override Jaeger agent hostname and port (#1752) +- Option `ExportTimeout` was added to batch span processor. (#1755) +- `trace.TraceFlags` is now a defined type over `byte` and `WithSampled(bool) TraceFlags` and `IsSampled() bool` methods have been added to it. (#1770) +- The `Event` and `Link` struct types from the `go.opentelemetry.io/otel` package now include a `DroppedAttributeCount` field to record the number of attributes that were not recorded due to configured limits being reached. (#1771) +- The Jaeger exporter now reports dropped attributes for a Span event in the exported log. (#1771) +- Adds test to check BatchSpanProcessor ignores `OnEnd` and `ForceFlush` post `Shutdown`. (#1772) +- Extract resource attributes from the `OTEL_RESOURCE_ATTRIBUTES` environment variable and merge them with the `resource.Default` resource as well as resources provided to the `TracerProvider` and metric `Controller`. (#1785) +- Added `WithOSType` resource configuration option to set OS (Operating System) type resource attribute (`os.type`). (#1788) +- Added `WithProcess*` resource configuration options to set Process resource attributes. (#1788) + - `process.pid` + - `process.executable.name` + - `process.executable.path` + - `process.command_args` + - `process.owner` + - `process.runtime.name` + - `process.runtime.version` + - `process.runtime.description` +- Adds `k8s.node.name` and `k8s.node.uid` attribute keys to the `semconv` package. (#1789) +- Added support for configuring OTLP/HTTP and OTLP/gRPC Endpoints, TLS Certificates, Headers, Compression and Timeout via Environment Variables. (#1758, #1769 and #1811) + - `OTEL_EXPORTER_OTLP_ENDPOINT` + - `OTEL_EXPORTER_OTLP_TRACES_ENDPOINT` + - `OTEL_EXPORTER_OTLP_METRICS_ENDPOINT` + - `OTEL_EXPORTER_OTLP_HEADERS` + - `OTEL_EXPORTER_OTLP_TRACES_HEADERS` + - `OTEL_EXPORTER_OTLP_METRICS_HEADERS` + - `OTEL_EXPORTER_OTLP_COMPRESSION` + - `OTEL_EXPORTER_OTLP_TRACES_COMPRESSION` + - `OTEL_EXPORTER_OTLP_METRICS_COMPRESSION` + - `OTEL_EXPORTER_OTLP_TIMEOUT` + - `OTEL_EXPORTER_OTLP_TRACES_TIMEOUT` + - `OTEL_EXPORTER_OTLP_METRICS_TIMEOUT` + - `OTEL_EXPORTER_OTLP_CERTIFICATE` + - `OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE` + - `OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE` +- Adds `otlpgrpc.WithTimeout` option for configuring timeout to the otlp/gRPC exporter. (#1821) +- Adds `jaeger.WithMaxPacketSize` option for configuring maximum UDP packet size used when connecting to the Jaeger agent. (#1853) + +### Fixed + +- The `Span.IsRecording` implementation from `go.opentelemetry.io/otel/sdk/trace` always returns false when not being sampled. (#1750) +- The Jaeger exporter now correctly sets tags for the Span status code and message. + This means it uses the correct tag keys (`"otel.status_code"`, `"otel.status_description"`) and does not set the status message as a tag unless it is set on the span. (#1761) +- The Jaeger exporter now correctly records Span event's names using the `"event"` key for a tag. + Additionally, this tag is overridden, as specified in the OTel specification, if the event contains an attribute with that key. (#1768) +- Zipkin Exporter: Ensure mapping between OTel and Zipkin span data complies with the specification. (#1688) +- Fixed typo for default service name in Jaeger Exporter. (#1797) +- Fix flaky OTLP for the reconnnection of the client connection. (#1527, #1814) +- Fix Jaeger exporter dropping of span batches that exceed the UDP packet size limit. + Instead, the exporter now splits the batch into smaller sendable batches. (#1828) + +### Changed + +- Span `RecordError` now records an `exception` event to comply with the semantic convention specification. (#1492) +- Jaeger exporter was updated to use thrift v0.14.1. (#1712) +- Migrate from using internally built and maintained version of the OTLP to the one hosted at `go.opentelemetry.io/proto/otlp`. (#1713) +- Migrate from using `github.com/gogo/protobuf` to `google.golang.org/protobuf` to match `go.opentelemetry.io/proto/otlp`. (#1713) +- The storage of a local or remote Span in a `context.Context` using its SpanContext is unified to store just the current Span. + The Span's SpanContext can now self-identify as being remote or not. + This means that `"go.opentelemetry.io/otel/trace".ContextWithRemoteSpanContext` will now overwrite any existing current Span, not just existing remote Spans, and make it the current Span in a `context.Context`. (#1731) +- Improve OTLP/gRPC exporter connection errors. (#1737) +- Information about a parent span context in a `"go.opentelemetry.io/otel/export/trace".SpanSnapshot` is unified in a new `Parent` field. + The existing `ParentSpanID` and `HasRemoteParent` fields are removed in favor of this. (#1748) +- The `ParentContext` field of the `"go.opentelemetry.io/otel/sdk/trace".SamplingParameters` is updated to hold a `context.Context` containing the parent span. + This changes it to make `SamplingParameters` conform with the OpenTelemetry specification. (#1749) +- Updated Jaeger Environment Variables: `JAEGER_ENDPOINT`, `JAEGER_USER`, `JAEGER_PASSWORD` + to `OTEL_EXPORTER_JAEGER_ENDPOINT`, `OTEL_EXPORTER_JAEGER_USER`, `OTEL_EXPORTER_JAEGER_PASSWORD` in compliance with OTel specification. (#1752) +- Modify `BatchSpanProcessor.ForceFlush` to abort after timeout/cancellation. (#1757) +- The `DroppedAttributeCount` field of the `Span` in the `go.opentelemetry.io/otel` package now only represents the number of attributes dropped for the span itself. + It no longer is a conglomerate of itself, events, and link attributes that have been dropped. (#1771) +- Make `ExportSpans` in Jaeger Exporter honor context deadline. (#1773) +- Modify Zipkin Exporter default service name, use default resource's serviceName instead of empty. (#1777) +- The `go.opentelemetry.io/otel/sdk/export/trace` package is merged into the `go.opentelemetry.io/otel/sdk/trace` package. (#1778) +- The prometheus.InstallNewPipeline example is moved from comment to example test (#1796) +- The convenience functions for the stdout exporter have been updated to return the `TracerProvider` implementation and enable the shutdown of the exporter. (#1800) +- Replace the flush function returned from the Jaeger exporter's convenience creation functions (`InstallNewPipeline` and `NewExportPipeline`) with the `TracerProvider` implementation they create. + This enables the caller to shutdown and flush using the related `TracerProvider` methods. (#1822) +- Updated the Jaeger exporter to have a default endpoint, `http://localhost:14250`, for the collector. (#1824) +- Changed the function `WithCollectorEndpoint` in the Jaeger exporter to no longer accept an endpoint as an argument. + The endpoint can be passed with the `CollectorEndpointOption` using the `WithEndpoint` function or by setting the `OTEL_EXPORTER_JAEGER_ENDPOINT` environment variable value appropriately. (#1824) +- The Jaeger exporter no longer batches exported spans itself, instead it relies on the SDK's `BatchSpanProcessor` for this functionality. (#1830) +- The Jaeger exporter creation functions (`NewRawExporter`, `NewExportPipeline`, and `InstallNewPipeline`) no longer accept the removed `Option` type as a variadic argument. (#1830) + +### Removed + +- Removed Jaeger Environment variables: `JAEGER_SERVICE_NAME`, `JAEGER_DISABLED`, `JAEGER_TAGS` + These environment variables will no longer be used to override values of the Jaeger exporter (#1752) +- No longer set the links for a `Span` in `go.opentelemetry.io/otel/sdk/trace` that is configured to be a new root. + This is unspecified behavior that the OpenTelemetry community plans to standardize in the future. + To prevent backwards incompatible changes when it is specified, these links are removed. (#1726) +- Setting error status while recording error with Span from oteltest package. (#1729) +- The concept of a remote and local Span stored in a context is unified to just the current Span. + Because of this `"go.opentelemetry.io/otel/trace".RemoteSpanContextFromContext` is removed as it is no longer needed. + Instead, `"go.opentelemetry.io/otel/trace".SpanContextFromContext` can be used to return the current Span. + If needed, that Span's `SpanContext.IsRemote()` can then be used to determine if it is remote or not. (#1731) +- The `HasRemoteParent` field of the `"go.opentelemetry.io/otel/sdk/trace".SamplingParameters` is removed. + This field is redundant to the information returned from the `Remote` method of the `SpanContext` held in the `ParentContext` field. (#1749) +- The `trace.FlagsDebug` and `trace.FlagsDeferred` constants have been removed and will be localized to the B3 propagator. (#1770) +- Remove `Process` configuration, `WithProcessFromEnv` and `ProcessFromEnv`, and type from the Jaeger exporter package. + The information that could be configured in the `Process` struct should be configured in a `Resource` instead. (#1776, #1804) +- Remove the `WithDisabled` option from the Jaeger exporter. + To disable the exporter unregister it from the `TracerProvider` or use a no-operation `TracerProvider`. (#1806) +- Removed the functions `CollectorEndpointFromEnv` and `WithCollectorEndpointOptionFromEnv` from the Jaeger exporter. + These functions for retrieving specific environment variable values are redundant of other internal functions and + are not intended for end user use. (#1824) +- Removed the Jaeger exporter `WithSDKOptions` `Option`. + This option was used to set SDK options for the exporter creation convenience functions. + These functions are provided as a way to easily setup or install the exporter with what are deemed reasonable SDK settings for common use cases. + If the SDK needs to be configured differently, the `NewRawExporter` function and direct setup of the SDK with the desired settings should be used. (#1825) +- The `WithBufferMaxCount` and `WithBatchMaxCount` `Option`s from the Jaeger exporter are removed. + The exporter no longer batches exports, instead relying on the SDK's `BatchSpanProcessor` for this functionality. (#1830) +- The Jaeger exporter `Option` type is removed. + The type is no longer used by the exporter to configure anything. + All the previous configurations these options provided were duplicates of SDK configuration. + They have been removed in favor of using the SDK configuration and focuses the exporter configuration to be only about the endpoints it will send telemetry to. (#1830) + +## [0.19.0] - 2021-03-18 + +### Added + +- Added `Marshaler` config option to `otlphttp` to enable otlp over json or protobufs. (#1586) +- A `ForceFlush` method to the `"go.opentelemetry.io/otel/sdk/trace".TracerProvider` to flush all registered `SpanProcessor`s. (#1608) +- Added `WithSampler` and `WithSpanLimits` to tracer provider. (#1633, #1702) +- `"go.opentelemetry.io/otel/trace".SpanContext` now has a `remote` property, and `IsRemote()` predicate, that is true when the `SpanContext` has been extracted from remote context data. (#1701) +- A `Valid` method to the `"go.opentelemetry.io/otel/attribute".KeyValue` type. (#1703) + +### Changed + +- `trace.SpanContext` is now immutable and has no exported fields. (#1573) + - `trace.NewSpanContext()` can be used in conjunction with the `trace.SpanContextConfig` struct to initialize a new `SpanContext` where all values are known. +- Update the `ForceFlush` method signature to the `"go.opentelemetry.io/otel/sdk/trace".SpanProcessor` to accept a `context.Context` and return an error. (#1608) +- Update the `Shutdown` method to the `"go.opentelemetry.io/otel/sdk/trace".TracerProvider` return an error on shutdown failure. (#1608) +- The SimpleSpanProcessor will now shut down the enclosed `SpanExporter` and gracefully ignore subsequent calls to `OnEnd` after `Shutdown` is called. (#1612) +- `"go.opentelemetry.io/sdk/metric/controller.basic".WithPusher` is replaced with `WithExporter` to provide consistent naming across project. (#1656) +- Added non-empty string check for trace `Attribute` keys. (#1659) +- Add `description` to SpanStatus only when `StatusCode` is set to error. (#1662) +- Jaeger exporter falls back to `resource.Default`'s `service.name` if the exported Span does not have one. (#1673) +- Jaeger exporter populates Jaeger's Span Process from Resource. (#1673) +- Renamed the `LabelSet` method of `"go.opentelemetry.io/otel/sdk/resource".Resource` to `Set`. (#1692) +- Changed `WithSDK` to `WithSDKOptions` to accept variadic arguments of `TracerProviderOption` type in `go.opentelemetry.io/otel/exporters/trace/jaeger` package. (#1693) +- Changed `WithSDK` to `WithSDKOptions` to accept variadic arguments of `TracerProviderOption` type in `go.opentelemetry.io/otel/exporters/trace/zipkin` package. (#1693) + +### Removed + +- Removed `serviceName` parameter from Zipkin exporter and uses resource instead. (#1549) +- Removed `WithConfig` from tracer provider to avoid overriding configuration. (#1633) +- Removed the exported `SimpleSpanProcessor` and `BatchSpanProcessor` structs. + These are now returned as a SpanProcessor interface from their respective constructors. (#1638) +- Removed `WithRecord()` from `trace.SpanOption` when creating a span. (#1660) +- Removed setting status to `Error` while recording an error as a span event in `RecordError`. (#1663) +- Removed `jaeger.WithProcess` configuration option. (#1673) +- Removed `ApplyConfig` method from `"go.opentelemetry.io/otel/sdk/trace".TracerProvider` and the now unneeded `Config` struct. (#1693) + +### Fixed + +- Jaeger Exporter: Ensure mapping between OTEL and Jaeger span data complies with the specification. (#1626) +- `SamplingResult.TraceState` is correctly propagated to a newly created span's `SpanContext`. (#1655) +- The `otel-collector` example now correctly flushes metric events prior to shutting down the exporter. (#1678) +- Do not set span status message in `SpanStatusFromHTTPStatusCode` if it can be inferred from `http.status_code`. (#1681) +- Synchronization issues in global trace delegate implementation. (#1686) +- Reduced excess memory usage by global `TracerProvider`. (#1687) + +## [0.18.0] - 2021-03-03 + +### Added + +- Added `resource.Default()` for use with meter and tracer providers. (#1507) +- `AttributePerEventCountLimit` and `AttributePerLinkCountLimit` for `SpanLimits`. (#1535) +- Added `Keys()` method to `propagation.TextMapCarrier` and `propagation.HeaderCarrier` to adapt `http.Header` to this interface. (#1544) +- Added `code` attributes to `go.opentelemetry.io/otel/semconv` package. (#1558) +- Compatibility testing suite in the CI system for the following systems. (#1567) + | OS | Go Version | Architecture | + | ------- | ---------- | ------------ | + | Ubuntu | 1.15 | amd64 | + | Ubuntu | 1.14 | amd64 | + | Ubuntu | 1.15 | 386 | + | Ubuntu | 1.14 | 386 | + | MacOS | 1.15 | amd64 | + | MacOS | 1.14 | amd64 | + | Windows | 1.15 | amd64 | + | Windows | 1.14 | amd64 | + | Windows | 1.15 | 386 | + | Windows | 1.14 | 386 | + +### Changed + +- Replaced interface `oteltest.SpanRecorder` with its existing implementation + `StandardSpanRecorder`. (#1542) +- Default span limit values to 128. (#1535) +- Rename `MaxEventsPerSpan`, `MaxAttributesPerSpan` and `MaxLinksPerSpan` to `EventCountLimit`, `AttributeCountLimit` and `LinkCountLimit`, and move these fields into `SpanLimits`. (#1535) +- Renamed the `otel/label` package to `otel/attribute`. (#1541) +- Vendor the Jaeger exporter's dependency on Apache Thrift. (#1551) +- Parallelize the CI linting and testing. (#1567) +- Stagger timestamps in exact aggregator tests. (#1569) +- Changed all examples to use `WithBatchTimeout(5 * time.Second)` rather than `WithBatchTimeout(5)`. (#1621) +- Prevent end-users from implementing some interfaces (#1575) + + ``` + "otel/exporters/otlp/otlphttp".Option + "otel/exporters/stdout".Option + "otel/oteltest".Option + "otel/trace".TracerOption + "otel/trace".SpanOption + "otel/trace".EventOption + "otel/trace".LifeCycleOption + "otel/trace".InstrumentationOption + "otel/sdk/resource".Option + "otel/sdk/trace".ParentBasedSamplerOption + "otel/sdk/trace".ReadOnlySpan + "otel/sdk/trace".ReadWriteSpan + ``` + +### Removed + +- Removed attempt to resample spans upon changing the span name with `span.SetName()`. (#1545) +- The `test-benchmark` is no longer a dependency of the `precommit` make target. (#1567) +- Removed the `test-386` make target. + This was replaced with a full compatibility testing suite (i.e. multi OS/arch) in the CI system. (#1567) + +### Fixed + +- The sequential timing check of timestamps in the stdout exporter are now setup explicitly to be sequential (#1571). (#1572) +- Windows build of Jaeger tests now compiles with OS specific functions (#1576). (#1577) +- The sequential timing check of timestamps of go.opentelemetry.io/otel/sdk/metric/aggregator/lastvalue are now setup explicitly to be sequential (#1578). (#1579) +- Validate tracestate header keys with vendors according to the W3C TraceContext specification (#1475). (#1581) +- The OTLP exporter includes related labels for translations of a GaugeArray (#1563). (#1570) + +## [0.17.0] - 2021-02-12 + +### Changed + +- Rename project default branch from `master` to `main`. (#1505) +- Reverse order in which `Resource` attributes are merged, per change in spec. (#1501) +- Add tooling to maintain "replace" directives in go.mod files automatically. (#1528) +- Create new modules: otel/metric, otel/trace, otel/oteltest, otel/sdk/export/metric, otel/sdk/metric (#1528) +- Move metric-related public global APIs from otel to otel/metric/global. (#1528) + +## Fixed + +- Fixed otlpgrpc reconnection issue. +- The example code in the README.md of `go.opentelemetry.io/otel/exporters/otlp` is moved to a compiled example test and used the new `WithAddress` instead of `WithEndpoint`. (#1513) +- The otel-collector example now uses the default OTLP receiver port of the collector. + +## [0.16.0] - 2021-01-13 + +### Added + +- Add the `ReadOnlySpan` and `ReadWriteSpan` interfaces to provide better control for accessing span data. (#1360) +- `NewGRPCDriver` function returns a `ProtocolDriver` that maintains a single gRPC connection to the collector. (#1369) +- Added documentation about the project's versioning policy. (#1388) +- Added `NewSplitDriver` for OTLP exporter that allows sending traces and metrics to different endpoints. (#1418) +- Added codeql workflow to GitHub Actions (#1428) +- Added Gosec workflow to GitHub Actions (#1429) +- Add new HTTP driver for OTLP exporter in `exporters/otlp/otlphttp`. Currently it only supports the binary protobuf payloads. (#1420) +- Add an OpenCensus exporter bridge. (#1444) + +### Changed + +- Rename `internal/testing` to `internal/internaltest`. (#1449) +- Rename `export.SpanData` to `export.SpanSnapshot` and use it only for exporting spans. (#1360) +- Store the parent's full `SpanContext` rather than just its span ID in the `span` struct. (#1360) +- Improve span duration accuracy. (#1360) +- Migrated CI/CD from CircleCI to GitHub Actions (#1382) +- Remove duplicate checkout from GitHub Actions workflow (#1407) +- Metric `array` aggregator renamed `exact` to match its `aggregation.Kind` (#1412) +- Metric `exact` aggregator includes per-point timestamps (#1412) +- Metric stdout exporter uses MinMaxSumCount aggregator for ValueRecorder instruments (#1412) +- `NewExporter` from `exporters/otlp` now takes a `ProtocolDriver` as a parameter. (#1369) +- Many OTLP Exporter options became gRPC ProtocolDriver options. (#1369) +- Unify endpoint API that related to OTel exporter. (#1401) +- Optimize metric histogram aggregator to reuse its slice of buckets. (#1435) +- Metric aggregator Count() and histogram Bucket.Counts are consistently `uint64`. (1430) +- Histogram aggregator accepts functional options, uses default boundaries if none given. (#1434) +- `SamplingResult` now passed a `Tracestate` from the parent `SpanContext` (#1432) +- Moved gRPC driver for OTLP exporter to `exporters/otlp/otlpgrpc`. (#1420) +- The `TraceContext` propagator now correctly propagates `TraceState` through the `SpanContext`. (#1447) +- Metric Push and Pull Controller components are combined into a single "basic" Controller: + - `WithExporter()` and `Start()` to configure Push behavior + - `Start()` is optional; use `Collect()` and `ForEach()` for Pull behavior + - `Start()` and `Stop()` accept Context. (#1378) +- The `Event` type is moved from the `otel/sdk/export/trace` package to the `otel/trace` API package. (#1452) + +### Removed + +- Remove `errUninitializedSpan` as its only usage is now obsolete. (#1360) +- Remove Metric export functionality related to quantiles and summary data points: this is not specified (#1412) +- Remove DDSketch metric aggregator; our intention is to re-introduce this as an option of the histogram aggregator after [new OTLP histogram data types](https://github.com/open-telemetry/opentelemetry-proto/pull/226) are released (#1412) + +### Fixed + +- `BatchSpanProcessor.Shutdown()` will now shutdown underlying `export.SpanExporter`. (#1443) + +## [0.15.0] - 2020-12-10 + +### Added + +- The `WithIDGenerator` `TracerProviderOption` is added to the `go.opentelemetry.io/otel/trace` package to configure an `IDGenerator` for the `TracerProvider`. (#1363) + +### Changed + +- The Zipkin exporter now uses the Span status code to determine. (#1328) +- `NewExporter` and `Start` functions in `go.opentelemetry.io/otel/exporters/otlp` now receive `context.Context` as a first parameter. (#1357) +- Move the OpenCensus example into `example` directory. (#1359) +- Moved the SDK's `internal.IDGenerator` interface in to the `sdk/trace` package to enable support for externally-defined ID generators. (#1363) +- Bump `github.com/google/go-cmp` from 0.5.3 to 0.5.4 (#1374) +- Bump `github.com/golangci/golangci-lint` in `/internal/tools` (#1375) + +### Fixed + +- Metric SDK `SumObserver` and `UpDownSumObserver` instruments correctness fixes. (#1381) + +## [0.14.0] - 2020-11-19 + +### Added + +- An `EventOption` and the related `NewEventConfig` function are added to the `go.opentelemetry.io/otel` package to configure Span events. (#1254) +- A `TextMapPropagator` and associated `TextMapCarrier` are added to the `go.opentelemetry.io/otel/oteltest` package to test `TextMap` type propagators and their use. (#1259) +- `SpanContextFromContext` returns `SpanContext` from context. (#1255) +- `TraceState` has been added to `SpanContext`. (#1340) +- `DeploymentEnvironmentKey` added to `go.opentelemetry.io/otel/semconv` package. (#1323) +- Add an OpenCensus to OpenTelemetry tracing bridge. (#1305) +- Add a parent context argument to `SpanProcessor.OnStart` to follow the specification. (#1333) +- Add missing tests for `sdk/trace/attributes_map.go`. (#1337) + +### Changed + +- Move the `go.opentelemetry.io/otel/api/trace` package into `go.opentelemetry.io/otel/trace` with the following changes. (#1229) (#1307) + - `ID` has been renamed to `TraceID`. + - `IDFromHex` has been renamed to `TraceIDFromHex`. + - `EmptySpanContext` is removed. +- Move the `go.opentelemetry.io/otel/api/trace/tracetest` package into `go.opentelemetry.io/otel/oteltest`. (#1229) +- OTLP Exporter updates: + - supports OTLP v0.6.0 (#1230, #1354) + - supports configurable aggregation temporality (default: Cumulative, optional: Stateless). (#1296) +- The Sampler is now called on local child spans. (#1233) +- The `Kind` type from the `go.opentelemetry.io/otel/api/metric` package was renamed to `InstrumentKind` to more specifically describe what it is and avoid semantic ambiguity. (#1240) +- The `MetricKind` method of the `Descriptor` type in the `go.opentelemetry.io/otel/api/metric` package was renamed to `Descriptor.InstrumentKind`. + This matches the returned type and fixes misuse of the term metric. (#1240) +- Move test harness from the `go.opentelemetry.io/otel/api/apitest` package into `go.opentelemetry.io/otel/oteltest`. (#1241) +- Move the `go.opentelemetry.io/otel/api/metric/metrictest` package into `go.opentelemetry.io/oteltest` as part of #964. (#1252) +- Move the `go.opentelemetry.io/otel/api/metric` package into `go.opentelemetry.io/otel/metric` as part of #1303. (#1321) +- Move the `go.opentelemetry.io/otel/api/metric/registry` package into `go.opentelemetry.io/otel/metric/registry` as a part of #1303. (#1316) +- Move the `Number` type (together with related functions) from `go.opentelemetry.io/otel/api/metric` package into `go.opentelemetry.io/otel/metric/number` as a part of #1303. (#1316) +- The function signature of the Span `AddEvent` method in `go.opentelemetry.io/otel` is updated to no longer take an unused context and instead take a required name and a variable number of `EventOption`s. (#1254) +- The function signature of the Span `RecordError` method in `go.opentelemetry.io/otel` is updated to no longer take an unused context and instead take a required error value and a variable number of `EventOption`s. (#1254) +- Move the `go.opentelemetry.io/otel/api/global` package to `go.opentelemetry.io/otel`. (#1262) (#1330) +- Move the `Version` function from `go.opentelemetry.io/otel/sdk` to `go.opentelemetry.io/otel`. (#1330) +- Rename correlation context header from `"otcorrelations"` to `"baggage"` to match the OpenTelemetry specification. (#1267) +- Fix `Code.UnmarshalJSON` to work with valid JSON only. (#1276) +- The `resource.New()` method changes signature to support builtin attributes and functional options, including `telemetry.sdk.*` and + `host.name` semantic conventions; the former method is renamed `resource.NewWithAttributes`. (#1235) +- The Prometheus exporter now exports non-monotonic counters (i.e. `UpDownCounter`s) as gauges. (#1210) +- Correct the `Span.End` method documentation in the `otel` API to state updates are not allowed on a span after it has ended. (#1310) +- Updated span collection limits for attribute, event and link counts to 1000 (#1318) +- Renamed `semconv.HTTPUrlKey` to `semconv.HTTPURLKey`. (#1338) + +### Removed + +- The `ErrInvalidHexID`, `ErrInvalidTraceIDLength`, `ErrInvalidSpanIDLength`, `ErrInvalidSpanIDLength`, or `ErrNilSpanID` from the `go.opentelemetry.io/otel` package are unexported now. (#1243) +- The `AddEventWithTimestamp` method on the `Span` interface in `go.opentelemetry.io/otel` is removed due to its redundancy. + It is replaced by using the `AddEvent` method with a `WithTimestamp` option. (#1254) +- The `MockSpan` and `MockTracer` types are removed from `go.opentelemetry.io/otel/oteltest`. + `Tracer` and `Span` from the same module should be used in their place instead. (#1306) +- `WorkerCount` option is removed from `go.opentelemetry.io/otel/exporters/otlp`. (#1350) +- Remove the following labels types: INT32, UINT32, UINT64 and FLOAT32. (#1314) + +### Fixed + +- Rename `MergeItererator` to `MergeIterator` in the `go.opentelemetry.io/otel/label` package. (#1244) +- The `go.opentelemetry.io/otel/api/global` packages global TextMapPropagator now delegates functionality to a globally set delegate for all previously returned propagators. (#1258) +- Fix condition in `label.Any`. (#1299) +- Fix global `TracerProvider` to pass options to its configured provider. (#1329) +- Fix missing handler for `ExactKind` aggregator in OTLP metrics transformer (#1309) + +## [0.13.0] - 2020-10-08 + +### Added + +- OTLP Metric exporter supports Histogram aggregation. (#1209) +- The `Code` struct from the `go.opentelemetry.io/otel/codes` package now supports JSON marshaling and unmarshaling as well as implements the `Stringer` interface. (#1214) +- A Baggage API to implement the OpenTelemetry specification. (#1217) +- Add Shutdown method to sdk/trace/provider, shutdown processors in the order they were registered. (#1227) + +### Changed + +- Set default propagator to no-op propagator. (#1184) +- The `HTTPSupplier`, `HTTPExtractor`, `HTTPInjector`, and `HTTPPropagator` from the `go.opentelemetry.io/otel/api/propagation` package were replaced with unified `TextMapCarrier` and `TextMapPropagator` in the `go.opentelemetry.io/otel/propagation` package. (#1212) (#1325) +- The `New` function from the `go.opentelemetry.io/otel/api/propagation` package was replaced with `NewCompositeTextMapPropagator` in the `go.opentelemetry.io/otel` package. (#1212) +- The status codes of the `go.opentelemetry.io/otel/codes` package have been updated to match the latest OpenTelemetry specification. + They now are `Unset`, `Error`, and `Ok`. + They no longer track the gRPC codes. (#1214) +- The `StatusCode` field of the `SpanData` struct in the `go.opentelemetry.io/otel/sdk/export/trace` package now uses the codes package from this package instead of the gRPC project. (#1214) +- Move the `go.opentelemetry.io/otel/api/baggage` package into `go.opentelemetry.io/otel/baggage`. (#1217) (#1325) +- A `Shutdown` method of `SpanProcessor` and all its implementations receives a context and returns an error. (#1264) + +### Fixed + +- Copies of data from arrays and slices passed to `go.opentelemetry.io/otel/label.ArrayValue()` are now used in the returned `Value` instead of using the mutable data itself. (#1226) + +### Removed + +- The `ExtractHTTP` and `InjectHTTP` functions from the `go.opentelemetry.io/otel/api/propagation` package were removed. (#1212) +- The `Propagators` interface from the `go.opentelemetry.io/otel/api/propagation` package was removed to conform to the OpenTelemetry specification. + The explicit `TextMapPropagator` type can be used in its place as this is the `Propagator` type the specification defines. (#1212) +- The `SetAttribute` method of the `Span` from the `go.opentelemetry.io/otel/api/trace` package was removed given its redundancy with the `SetAttributes` method. (#1216) +- The internal implementation of Baggage storage is removed in favor of using the new Baggage API functionality. (#1217) +- Remove duplicate hostname key `HostHostNameKey` in Resource semantic conventions. (#1219) +- Nested array/slice support has been removed. (#1226) + +## [0.12.0] - 2020-09-24 + +### Added + +- A `SpanConfigure` function in `go.opentelemetry.io/otel/api/trace` to create a new `SpanConfig` from `SpanOption`s. (#1108) +- In the `go.opentelemetry.io/otel/api/trace` package, `NewTracerConfig` was added to construct new `TracerConfig`s. + This addition was made to conform with our project option conventions. (#1155) +- Instrumentation library information was added to the Zipkin exporter. (#1119) +- The `SpanProcessor` interface now has a `ForceFlush()` method. (#1166) +- More semantic conventions for k8s as resource attributes. (#1167) + +### Changed + +- Add reconnecting udp connection type to Jaeger exporter. + This change adds a new optional implementation of the udp conn interface used to detect changes to an agent's host dns record. + It then adopts the new destination address to ensure the exporter doesn't get stuck. This change was ported from jaegertracing/jaeger-client-go#520. (#1063) +- Replace `StartOption` and `EndOption` in `go.opentelemetry.io/otel/api/trace` with `SpanOption`. + This change is matched by replacing the `StartConfig` and `EndConfig` with a unified `SpanConfig`. (#1108) +- Replace the `LinkedTo` span option in `go.opentelemetry.io/otel/api/trace` with `WithLinks`. + This is be more consistent with our other option patterns, i.e. passing the item to be configured directly instead of its component parts, and provides a cleaner function signature. (#1108) +- The `go.opentelemetry.io/otel/api/trace` `TracerOption` was changed to an interface to conform to project option conventions. (#1109) +- Move the `B3` and `TraceContext` from within the `go.opentelemetry.io/otel/api/trace` package to their own `go.opentelemetry.io/otel/propagators` package. + This removal of the propagators is reflective of the OpenTelemetry specification for these propagators as well as cleans up the `go.opentelemetry.io/otel/api/trace` API. (#1118) +- Rename Jaeger tags used for instrumentation library information to reflect changes in OpenTelemetry specification. (#1119) +- Rename `ProbabilitySampler` to `TraceIDRatioBased` and change semantics to ignore parent span sampling status. (#1115) +- Move `tools` package under `internal`. (#1141) +- Move `go.opentelemetry.io/otel/api/correlation` package to `go.opentelemetry.io/otel/api/baggage`. (#1142) + The `correlation.CorrelationContext` propagator has been renamed `baggage.Baggage`. Other exported functions and types are unchanged. +- Rename `ParentOrElse` sampler to `ParentBased` and allow setting samplers depending on parent span. (#1153) +- In the `go.opentelemetry.io/otel/api/trace` package, `SpanConfigure` was renamed to `NewSpanConfig`. (#1155) +- Change `dependabot.yml` to add a `Skip Changelog` label to dependabot-sourced PRs. (#1161) +- The [configuration style guide](https://github.com/open-telemetry/opentelemetry-go/blob/master/CONTRIBUTING.md#config) has been updated to + recommend the use of `newConfig()` instead of `configure()`. (#1163) +- The `otlp.Config` type has been unexported and changed to `otlp.config`, along with its initializer. (#1163) +- Ensure exported interface types include parameter names and update the + Style Guide to reflect this styling rule. (#1172) +- Don't consider unset environment variable for resource detection to be an error. (#1170) +- Rename `go.opentelemetry.io/otel/api/metric.ConfigureInstrument` to `NewInstrumentConfig` and + `go.opentelemetry.io/otel/api/metric.ConfigureMeter` to `NewMeterConfig`. +- ValueObserver instruments use LastValue aggregator by default. (#1165) +- OTLP Metric exporter supports LastValue aggregation. (#1165) +- Move the `go.opentelemetry.io/otel/api/unit` package to `go.opentelemetry.io/otel/unit`. (#1185) +- Rename `Provider` to `MeterProvider` in the `go.opentelemetry.io/otel/api/metric` package. (#1190) +- Rename `NoopProvider` to `NoopMeterProvider` in the `go.opentelemetry.io/otel/api/metric` package. (#1190) +- Rename `NewProvider` to `NewMeterProvider` in the `go.opentelemetry.io/otel/api/metric/metrictest` package. (#1190) +- Rename `Provider` to `MeterProvider` in the `go.opentelemetry.io/otel/api/metric/registry` package. (#1190) +- Rename `NewProvider` to `NewMeterProvider` in the `go.opentelemetry.io/otel/api/metri/registryc` package. (#1190) +- Rename `Provider` to `TracerProvider` in the `go.opentelemetry.io/otel/api/trace` package. (#1190) +- Rename `NoopProvider` to `NoopTracerProvider` in the `go.opentelemetry.io/otel/api/trace` package. (#1190) +- Rename `Provider` to `TracerProvider` in the `go.opentelemetry.io/otel/api/trace/tracetest` package. (#1190) +- Rename `NewProvider` to `NewTracerProvider` in the `go.opentelemetry.io/otel/api/trace/tracetest` package. (#1190) +- Rename `WrapperProvider` to `WrapperTracerProvider` in the `go.opentelemetry.io/otel/bridge/opentracing` package. (#1190) +- Rename `NewWrapperProvider` to `NewWrapperTracerProvider` in the `go.opentelemetry.io/otel/bridge/opentracing` package. (#1190) +- Rename `Provider` method of the pull controller to `MeterProvider` in the `go.opentelemetry.io/otel/sdk/metric/controller/pull` package. (#1190) +- Rename `Provider` method of the push controller to `MeterProvider` in the `go.opentelemetry.io/otel/sdk/metric/controller/push` package. (#1190) +- Rename `ProviderOptions` to `TracerProviderConfig` in the `go.opentelemetry.io/otel/sdk/trace` package. (#1190) +- Rename `ProviderOption` to `TracerProviderOption` in the `go.opentelemetry.io/otel/sdk/trace` package. (#1190) +- Rename `Provider` to `TracerProvider` in the `go.opentelemetry.io/otel/sdk/trace` package. (#1190) +- Rename `NewProvider` to `NewTracerProvider` in the `go.opentelemetry.io/otel/sdk/trace` package. (#1190) +- Renamed `SamplingDecision` values to comply with OpenTelemetry specification change. (#1192) +- Renamed Zipkin attribute names from `ot.status_code & ot.status_description` to `otel.status_code & otel.status_description`. (#1201) +- The default SDK now invokes registered `SpanProcessor`s in the order they were registered with the `TracerProvider`. (#1195) +- Add test of spans being processed by the `SpanProcessor`s in the order they were registered. (#1203) + +### Removed + +- Remove the B3 propagator from `go.opentelemetry.io/otel/propagators`. It is now located in the + `go.opentelemetry.io/contrib/propagators/` module. (#1191) +- Remove the semantic convention for HTTP status text, `HTTPStatusTextKey` from package `go.opentelemetry.io/otel/semconv`. (#1194) + +### Fixed + +- Zipkin example no longer mentions `ParentSampler`, corrected to `ParentBased`. (#1171) +- Fix missing shutdown processor in otel-collector example. (#1186) +- Fix missing shutdown processor in basic and namedtracer examples. (#1197) + +## [0.11.0] - 2020-08-24 + +### Added + +- Support for exporting array-valued attributes via OTLP. (#992) +- `Noop` and `InMemory` `SpanBatcher` implementations to help with testing integrations. (#994) +- Support for filtering metric label sets. (#1047) +- A dimensionality-reducing metric Processor. (#1057) +- Integration tests for more OTel Collector Attribute types. (#1062) +- A new `WithSpanProcessor` `ProviderOption` is added to the `go.opentelemetry.io/otel/sdk/trace` package to create a `Provider` and automatically register the `SpanProcessor`. (#1078) + +### Changed + +- Rename `sdk/metric/processor/test` to `sdk/metric/processor/processortest`. (#1049) +- Rename `sdk/metric/controller/test` to `sdk/metric/controller/controllertest`. (#1049) +- Rename `api/testharness` to `api/apitest`. (#1049) +- Rename `api/trace/testtrace` to `api/trace/tracetest`. (#1049) +- Change Metric Processor to merge multiple observations. (#1024) +- The `go.opentelemetry.io/otel/bridge/opentracing` bridge package has been made into its own module. + This removes the package dependencies of this bridge from the rest of the OpenTelemetry based project. (#1038) +- Renamed `go.opentelemetry.io/otel/api/standard` package to `go.opentelemetry.io/otel/semconv` to avoid the ambiguous and generic name `standard` and better describe the package as containing OpenTelemetry semantic conventions. (#1016) +- The environment variable used for resource detection has been changed from `OTEL_RESOURCE_LABELS` to `OTEL_RESOURCE_ATTRIBUTES` (#1042) +- Replace `WithSyncer` with `WithBatcher` in examples. (#1044) +- Replace the `google.golang.org/grpc/codes` dependency in the API with an equivalent `go.opentelemetry.io/otel/codes` package. (#1046) +- Merge the `go.opentelemetry.io/otel/api/label` and `go.opentelemetry.io/otel/api/kv` into the new `go.opentelemetry.io/otel/label` package. (#1060) +- Unify Callback Function Naming. + Rename `*Callback` with `*Func`. (#1061) +- CI builds validate against last two versions of Go, dropping 1.13 and adding 1.15. (#1064) +- The `go.opentelemetry.io/otel/sdk/export/trace` interfaces `SpanSyncer` and `SpanBatcher` have been replaced with a specification compliant `Exporter` interface. + This interface still supports the export of `SpanData`, but only as a slice. + Implementation are also required now to return any error from `ExportSpans` if one occurs as well as implement a `Shutdown` method for exporter clean-up. (#1078) +- The `go.opentelemetry.io/otel/sdk/trace` `NewBatchSpanProcessor` function no longer returns an error. + If a `nil` exporter is passed as an argument to this function, instead of it returning an error, it now returns a `BatchSpanProcessor` that handles the export of `SpanData` by not taking any action. (#1078) +- The `go.opentelemetry.io/otel/sdk/trace` `NewProvider` function to create a `Provider` no longer returns an error, instead only a `*Provider`. + This change is related to `NewBatchSpanProcessor` not returning an error which was the only error this function would return. (#1078) + +### Removed + +- Duplicate, unused API sampler interface. (#999) + Use the [`Sampler` interface](https://github.com/open-telemetry/opentelemetry-go/blob/v0.11.0/sdk/trace/sampling.go) provided by the SDK instead. +- The `grpctrace` instrumentation was moved to the `go.opentelemetry.io/contrib` repository and out of this repository. + This move includes moving the `grpc` example to the `go.opentelemetry.io/contrib` as well. (#1027) +- The `WithSpan` method of the `Tracer` interface. + The functionality this method provided was limited compared to what a user can provide themselves. + It was removed with the understanding that if there is sufficient user need it can be added back based on actual user usage. (#1043) +- The `RegisterSpanProcessor` and `UnregisterSpanProcessor` functions. + These were holdovers from an approach prior to the TracerProvider design. They were not used anymore. (#1077) +- The `oterror` package. (#1026) +- The `othttp` and `httptrace` instrumentations were moved to `go.opentelemetry.io/contrib`. (#1032) + +### Fixed + +- The `semconv.HTTPServerMetricAttributesFromHTTPRequest()` function no longer generates the high-cardinality `http.request.content.length` label. (#1031) +- Correct instrumentation version tag in Jaeger exporter. (#1037) +- The SDK span will now set an error event if the `End` method is called during a panic (i.e. it was deferred). (#1043) +- Move internally generated protobuf code from the `go.opentelemetry.io/otel` to the OTLP exporter to reduce dependency overhead. (#1050) +- The `otel-collector` example referenced outdated collector processors. (#1006) + +## [0.10.0] - 2020-07-29 + +This release migrates the default OpenTelemetry SDK into its own Go module, decoupling the SDK from the API and reducing dependencies for instrumentation packages. + +### Added + +- The Zipkin exporter now has `NewExportPipeline` and `InstallNewPipeline` constructor functions to match the common pattern. + These function build a new exporter with default SDK options and register the exporter with the `global` package respectively. (#944) +- Add propagator option for gRPC instrumentation. (#986) +- The `testtrace` package now tracks the `trace.SpanKind` for each span. (#987) + +### Changed + +- Replace the `RegisterGlobal` `Option` in the Jaeger exporter with an `InstallNewPipeline` constructor function. + This matches the other exporter constructor patterns and will register a new exporter after building it with default configuration. (#944) +- The trace (`go.opentelemetry.io/otel/exporters/trace/stdout`) and metric (`go.opentelemetry.io/otel/exporters/metric/stdout`) `stdout` exporters are now merged into a single exporter at `go.opentelemetry.io/otel/exporters/stdout`. + This new exporter was made into its own Go module to follow the pattern of all exporters and decouple it from the `go.opentelemetry.io/otel` module. (#956, #963) +- Move the `go.opentelemetry.io/otel/exporters/test` test package to `go.opentelemetry.io/otel/sdk/export/metric/metrictest`. (#962) +- The `go.opentelemetry.io/otel/api/kv/value` package was merged into the parent `go.opentelemetry.io/otel/api/kv` package. (#968) + - `value.Bool` was replaced with `kv.BoolValue`. + - `value.Int64` was replaced with `kv.Int64Value`. + - `value.Uint64` was replaced with `kv.Uint64Value`. + - `value.Float64` was replaced with `kv.Float64Value`. + - `value.Int32` was replaced with `kv.Int32Value`. + - `value.Uint32` was replaced with `kv.Uint32Value`. + - `value.Float32` was replaced with `kv.Float32Value`. + - `value.String` was replaced with `kv.StringValue`. + - `value.Int` was replaced with `kv.IntValue`. + - `value.Uint` was replaced with `kv.UintValue`. + - `value.Array` was replaced with `kv.ArrayValue`. +- Rename `Infer` to `Any` in the `go.opentelemetry.io/otel/api/kv` package. (#972) +- Change `othttp` to use the `httpsnoop` package to wrap the `ResponseWriter` so that optional interfaces (`http.Hijacker`, `http.Flusher`, etc.) that are implemented by the original `ResponseWriter`are also implemented by the wrapped `ResponseWriter`. (#979) +- Rename `go.opentelemetry.io/otel/sdk/metric/aggregator/test` package to `go.opentelemetry.io/otel/sdk/metric/aggregator/aggregatortest`. (#980) +- Make the SDK into its own Go module called `go.opentelemetry.io/otel/sdk`. (#985) +- Changed the default trace `Sampler` from `AlwaysOn` to `ParentOrElse(AlwaysOn)`. (#989) + +### Removed + +- The `IndexedAttribute` function from the `go.opentelemetry.io/otel/api/label` package was removed in favor of `IndexedLabel` which it was synonymous with. (#970) + +### Fixed + +- Bump github.com/golangci/golangci-lint from 1.28.3 to 1.29.0 in /tools. (#953) +- Bump github.com/google/go-cmp from 0.5.0 to 0.5.1. (#957) +- Use `global.Handle` for span export errors in the OTLP exporter. (#946) +- Correct Go language formatting in the README documentation. (#961) +- Remove default SDK dependencies from the `go.opentelemetry.io/otel/api` package. (#977) +- Remove default SDK dependencies from the `go.opentelemetry.io/otel/instrumentation` package. (#983) +- Move documented examples for `go.opentelemetry.io/otel/instrumentation/grpctrace` interceptors into Go example tests. (#984) + +## [0.9.0] - 2020-07-20 + +### Added + +- A new Resource Detector interface is included to allow resources to be automatically detected and included. (#939) +- A Detector to automatically detect resources from an environment variable. (#939) +- Github action to generate protobuf Go bindings locally in `internal/opentelemetry-proto-gen`. (#938) +- OTLP .proto files from `open-telemetry/opentelemetry-proto` imported as a git submodule under `internal/opentelemetry-proto`. + References to `github.com/open-telemetry/opentelemetry-proto` changed to `go.opentelemetry.io/otel/internal/opentelemetry-proto-gen`. (#942) + +### Changed + +- Non-nil value `struct`s for key-value pairs will be marshalled using JSON rather than `Sprintf`. (#948) + +### Removed + +- Removed dependency on `github.com/open-telemetry/opentelemetry-collector`. (#943) + +## [0.8.0] - 2020-07-09 + +### Added + +- The `B3Encoding` type to represent the B3 encoding(s) the B3 propagator can inject. + A value for HTTP supported encodings (Multiple Header: `MultipleHeader`, Single Header: `SingleHeader`) are included. (#882) +- The `FlagsDeferred` trace flag to indicate if the trace sampling decision has been deferred. (#882) +- The `FlagsDebug` trace flag to indicate if the trace is a debug trace. (#882) +- Add `peer.service` semantic attribute. (#898) +- Add database-specific semantic attributes. (#899) +- Add semantic convention for `faas.coldstart` and `container.id`. (#909) +- Add http content size semantic conventions. (#905) +- Include `http.request_content_length` in HTTP request basic attributes. (#905) +- Add semantic conventions for operating system process resource attribute keys. (#919) +- The Jaeger exporter now has a `WithBatchMaxCount` option to specify the maximum number of spans sent in a batch. (#931) + +### Changed + +- Update `CONTRIBUTING.md` to ask for updates to `CHANGELOG.md` with each pull request. (#879) +- Use lowercase header names for B3 Multiple Headers. (#881) +- The B3 propagator `SingleHeader` field has been replaced with `InjectEncoding`. + This new field can be set to combinations of the `B3Encoding` bitmasks and will inject trace information in these encodings. + If no encoding is set, the propagator will default to `MultipleHeader` encoding. (#882) +- The B3 propagator now extracts from either HTTP encoding of B3 (Single Header or Multiple Header) based on what is contained in the header. + Preference is given to Single Header encoding with Multiple Header being the fallback if Single Header is not found or is invalid. + This behavior change is made to dynamically support all correctly encoded traces received instead of having to guess the expected encoding prior to receiving. (#882) +- Extend semantic conventions for RPC. (#900) +- To match constant naming conventions in the `api/standard` package, the `FaaS*` key names are appended with a suffix of `Key`. (#920) + - `"api/standard".FaaSName` -> `FaaSNameKey` + - `"api/standard".FaaSID` -> `FaaSIDKey` + - `"api/standard".FaaSVersion` -> `FaaSVersionKey` + - `"api/standard".FaaSInstance` -> `FaaSInstanceKey` + +### Removed + +- The `FlagsUnused` trace flag is removed. + The purpose of this flag was to act as the inverse of `FlagsSampled`, the inverse of `FlagsSampled` is used instead. (#882) +- The B3 header constants (`B3SingleHeader`, `B3DebugFlagHeader`, `B3TraceIDHeader`, `B3SpanIDHeader`, `B3SampledHeader`, `B3ParentSpanIDHeader`) are removed. + If B3 header keys are needed [the authoritative OpenZipkin package constants](https://pkg.go.dev/github.com/openzipkin/zipkin-go@v0.2.2/propagation/b3?tab=doc#pkg-constants) should be used instead. (#882) + +### Fixed + +- The B3 Single Header name is now correctly `b3` instead of the previous `X-B3`. (#881) +- The B3 propagator now correctly supports sampling only values (`b3: 0`, `b3: 1`, or `b3: d`) for a Single B3 Header. (#882) +- The B3 propagator now propagates the debug flag. + This removes the behavior of changing the debug flag into a set sampling bit. + Instead, this now follow the B3 specification and omits the `X-B3-Sampling` header. (#882) +- The B3 propagator now tracks "unset" sampling state (meaning "defer the decision") and does not set the `X-B3-Sampling` header when injecting. (#882) +- Bump github.com/itchyny/gojq from 0.10.3 to 0.10.4 in /tools. (#883) +- Bump github.com/opentracing/opentracing-go from v1.1.1-0.20190913142402-a7454ce5950e to v1.2.0. (#885) +- The tracing time conversion for OTLP spans is now correctly set to `UnixNano`. (#896) +- Ensure span status is not set to `Unknown` when no HTTP status code is provided as it is assumed to be `200 OK`. (#908) +- Ensure `httptrace.clientTracer` closes `http.headers` span. (#912) +- Prometheus exporter will not apply stale updates or forget inactive metrics. (#903) +- Add test for api.standard `HTTPClientAttributesFromHTTPRequest`. (#905) +- Bump github.com/golangci/golangci-lint from 1.27.0 to 1.28.1 in /tools. (#901, #913) +- Update otel-collector example to use the v0.5.0 collector. (#915) +- The `grpctrace` instrumentation uses a span name conforming to the OpenTelemetry semantic conventions (does not contain a leading slash (`/`)). (#922) +- The `grpctrace` instrumentation includes an `rpc.method` attribute now set to the gRPC method name. (#900, #922) +- The `grpctrace` instrumentation `rpc.service` attribute now contains the package name if one exists. + This is in accordance with OpenTelemetry semantic conventions. (#922) +- Correlation Context extractor will no longer insert an empty map into the returned context when no valid values are extracted. (#923) +- Bump google.golang.org/api from 0.28.0 to 0.29.0 in /exporters/trace/jaeger. (#925) +- Bump github.com/itchyny/gojq from 0.10.4 to 0.11.0 in /tools. (#926) +- Bump github.com/golangci/golangci-lint from 1.28.1 to 1.28.2 in /tools. (#930) + +## [0.7.0] - 2020-06-26 + +This release implements the v0.5.0 version of the OpenTelemetry specification. + +### Added + +- The othttp instrumentation now includes default metrics. (#861) +- This CHANGELOG file to track all changes in the project going forward. +- Support for array type attributes. (#798) +- Apply transitive dependabot go.mod dependency updates as part of a new automatic Github workflow. (#844) +- Timestamps are now passed to exporters for each export. (#835) +- Add new `Accumulation` type to metric SDK to transport telemetry from `Accumulator`s to `Processor`s. + This replaces the prior `Record` `struct` use for this purpose. (#835) +- New dependabot integration to automate package upgrades. (#814) +- `Meter` and `Tracer` implementations accept instrumentation version version as an optional argument. + This instrumentation version is passed on to exporters. (#811) (#805) (#802) +- The OTLP exporter includes the instrumentation version in telemetry it exports. (#811) +- Environment variables for Jaeger exporter are supported. (#796) +- New `aggregation.Kind` in the export metric API. (#808) +- New example that uses OTLP and the collector. (#790) +- Handle errors in the span `SetName` during span initialization. (#791) +- Default service config to enable retries for retry-able failed requests in the OTLP exporter and an option to override this default. (#777) +- New `go.opentelemetry.io/otel/api/oterror` package to uniformly support error handling and definitions for the project. (#778) +- New `global` default implementation of the `go.opentelemetry.io/otel/api/oterror.Handler` interface to be used to handle errors prior to an user defined `Handler`. + There is also functionality for the user to register their `Handler` as well as a convenience function `Handle` to handle an error with this global `Handler`(#778) +- Options to specify propagators for httptrace and grpctrace instrumentation. (#784) +- The required `application/json` header for the Zipkin exporter is included in all exports. (#774) +- Integrate HTTP semantics helpers from the contrib repository into the `api/standard` package. #769 + +### Changed + +- Rename `Integrator` to `Processor` in the metric SDK. (#863) +- Rename `AggregationSelector` to `AggregatorSelector`. (#859) +- Rename `SynchronizedCopy` to `SynchronizedMove`. (#858) +- Rename `simple` integrator to `basic` integrator. (#857) +- Merge otlp collector examples. (#841) +- Change the metric SDK to support cumulative, delta, and pass-through exporters directly. + With these changes, cumulative and delta specific exporters are able to request the correct kind of aggregation from the SDK. (#840) +- The `Aggregator.Checkpoint` API is renamed to `SynchronizedCopy` and adds an argument, a different `Aggregator` into which the copy is stored. (#812) +- The `export.Aggregator` contract is that `Update()` and `SynchronizedCopy()` are synchronized with each other. + All the aggregation interfaces (`Sum`, `LastValue`, ...) are not meant to be synchronized, as the caller is expected to synchronize aggregators at a higher level after the `Accumulator`. + Some of the `Aggregators` used unnecessary locking and that has been cleaned up. (#812) +- Use of `metric.Number` was replaced by `int64` now that we use `sync.Mutex` in the `MinMaxSumCount` and `Histogram` `Aggregators`. (#812) +- Replace `AlwaysParentSample` with `ParentSample(fallback)` to match the OpenTelemetry v0.5.0 specification. (#810) +- Rename `sdk/export/metric/aggregator` to `sdk/export/metric/aggregation`. #808 +- Send configured headers with every request in the OTLP exporter, instead of just on connection creation. (#806) +- Update error handling for any one off error handlers, replacing, instead, with the `global.Handle` function. (#791) +- Rename `plugin` directory to `instrumentation` to match the OpenTelemetry specification. (#779) +- Makes the argument order to Histogram and DDSketch `New()` consistent. (#781) + +### Removed + +- `Uint64NumberKind` and related functions from the API. (#864) +- Context arguments from `Aggregator.Checkpoint` and `Integrator.Process` as they were unused. (#803) +- `SpanID` is no longer included in parameters for sampling decision to match the OpenTelemetry specification. (#775) + +### Fixed + +- Upgrade OTLP exporter to opentelemetry-proto matching the opentelemetry-collector v0.4.0 release. (#866) +- Allow changes to `go.sum` and `go.mod` when running dependabot tidy-up. (#871) +- Bump github.com/stretchr/testify from 1.4.0 to 1.6.1. (#824) +- Bump github.com/prometheus/client_golang from 1.7.0 to 1.7.1 in /exporters/metric/prometheus. (#867) +- Bump google.golang.org/grpc from 1.29.1 to 1.30.0 in /exporters/trace/jaeger. (#853) +- Bump google.golang.org/grpc from 1.29.1 to 1.30.0 in /exporters/trace/zipkin. (#854) +- Bumps github.com/golang/protobuf from 1.3.2 to 1.4.2 (#848) +- Bump github.com/stretchr/testify from 1.4.0 to 1.6.1 in /exporters/otlp (#817) +- Bump github.com/golangci/golangci-lint from 1.25.1 to 1.27.0 in /tools (#828) +- Bump github.com/prometheus/client_golang from 1.5.0 to 1.7.0 in /exporters/metric/prometheus (#838) +- Bump github.com/stretchr/testify from 1.4.0 to 1.6.1 in /exporters/trace/jaeger (#829) +- Bump github.com/benbjohnson/clock from 1.0.0 to 1.0.3 (#815) +- Bump github.com/stretchr/testify from 1.4.0 to 1.6.1 in /exporters/trace/zipkin (#823) +- Bump github.com/itchyny/gojq from 0.10.1 to 0.10.3 in /tools (#830) +- Bump github.com/stretchr/testify from 1.4.0 to 1.6.1 in /exporters/metric/prometheus (#822) +- Bump google.golang.org/grpc from 1.27.1 to 1.29.1 in /exporters/trace/zipkin (#820) +- Bump google.golang.org/grpc from 1.27.1 to 1.29.1 in /exporters/trace/jaeger (#831) +- Bump github.com/google/go-cmp from 0.4.0 to 0.5.0 (#836) +- Bump github.com/google/go-cmp from 0.4.0 to 0.5.0 in /exporters/trace/jaeger (#837) +- Bump github.com/google/go-cmp from 0.4.0 to 0.5.0 in /exporters/otlp (#839) +- Bump google.golang.org/api from 0.20.0 to 0.28.0 in /exporters/trace/jaeger (#843) +- Set span status from HTTP status code in the othttp instrumentation. (#832) +- Fixed typo in push controller comment. (#834) +- The `Aggregator` testing has been updated and cleaned. (#812) +- `metric.Number(0)` expressions are replaced by `0` where possible. (#812) +- Fixed `global` `handler_test.go` test failure. #804 +- Fixed `BatchSpanProcessor.Shutdown` to wait until all spans are processed. (#766) +- Fixed OTLP example's accidental early close of exporter. (#807) +- Ensure zipkin exporter reads and closes response body. (#788) +- Update instrumentation to use `api/standard` keys instead of custom keys. (#782) +- Clean up tools and RELEASING documentation. (#762) + +## [0.6.0] - 2020-05-21 + +### Added + +- Support for `Resource`s in the prometheus exporter. (#757) +- New pull controller. (#751) +- New `UpDownSumObserver` instrument. (#750) +- OpenTelemetry collector demo. (#711) +- New `SumObserver` instrument. (#747) +- New `UpDownCounter` instrument. (#745) +- New timeout `Option` and configuration function `WithTimeout` to the push controller. (#742) +- New `api/standards` package to implement semantic conventions and standard key-value generation. (#731) + +### Changed + +- Rename `Register*` functions in the metric API to `New*` for all `Observer` instruments. (#761) +- Use `[]float64` for histogram boundaries, not `[]metric.Number`. (#758) +- Change OTLP example to use exporter as a trace `Syncer` instead of as an unneeded `Batcher`. (#756) +- Replace `WithResourceAttributes()` with `WithResource()` in the trace SDK. (#754) +- The prometheus exporter now uses the new pull controller. (#751) +- Rename `ScheduleDelayMillis` to `BatchTimeout` in the trace `BatchSpanProcessor`.(#752) +- Support use of synchronous instruments in asynchronous callbacks (#725) +- Move `Resource` from the `Export` method parameter into the metric export `Record`. (#739) +- Rename `Observer` instrument to `ValueObserver`. (#734) +- The push controller now has a method (`Provider()`) to return a `metric.Provider` instead of the old `Meter` method that acted as a `metric.Provider`. (#738) +- Replace `Measure` instrument by `ValueRecorder` instrument. (#732) +- Rename correlation context header from `"Correlation-Context"` to `"otcorrelations"` to match the OpenTelemetry specification. (#727) + +### Fixed + +- Ensure gRPC `ClientStream` override methods do not panic in grpctrace package. (#755) +- Disable parts of `BatchSpanProcessor` test until a fix is found. (#743) +- Fix `string` case in `kv` `Infer` function. (#746) +- Fix panic in grpctrace client interceptors. (#740) +- Refactor the `api/metrics` push controller and add `CheckpointSet` synchronization. (#737) +- Rewrite span batch process queue batching logic. (#719) +- Remove the push controller named Meter map. (#738) +- Fix Histogram aggregator initial state (fix #735). (#736) +- Ensure golang alpine image is running `golang-1.14` for examples. (#733) +- Added test for grpctrace `UnaryInterceptorClient`. (#695) +- Rearrange `api/metric` code layout. (#724) + +## [0.5.0] - 2020-05-13 + +### Added + +- Batch `Observer` callback support. (#717) +- Alias `api` types to root package of project. (#696) +- Create basic `othttp.Transport` for simple client instrumentation. (#678) +- `SetAttribute(string, interface{})` to the trace API. (#674) +- Jaeger exporter option that allows user to specify custom http client. (#671) +- `Stringer` and `Infer` methods to `key`s. (#662) + +### Changed + +- Rename `NewKey` in the `kv` package to just `Key`. (#721) +- Move `core` and `key` to `kv` package. (#720) +- Make the metric API `Meter` a `struct` so the abstract `MeterImpl` can be passed and simplify implementation. (#709) +- Rename SDK `Batcher` to `Integrator` to match draft OpenTelemetry SDK specification. (#710) +- Rename SDK `Ungrouped` integrator to `simple.Integrator` to match draft OpenTelemetry SDK specification. (#710) +- Rename SDK `SDK` `struct` to `Accumulator` to match draft OpenTelemetry SDK specification. (#710) +- Move `Number` from `core` to `api/metric` package. (#706) +- Move `SpanContext` from `core` to `trace` package. (#692) +- Change traceparent header from `Traceparent` to `traceparent` to implement the W3C specification. (#681) + +### Fixed + +- Update tooling to run generators in all submodules. (#705) +- gRPC interceptor regexp to match methods without a service name. (#683) +- Use a `const` for padding 64-bit B3 trace IDs. (#701) +- Update `mockZipkin` listen address from `:0` to `127.0.0.1:0`. (#700) +- Left-pad 64-bit B3 trace IDs with zero. (#698) +- Propagate at least the first W3C tracestate header. (#694) +- Remove internal `StateLocker` implementation. (#688) +- Increase instance size CI system uses. (#690) +- Add a `key` benchmark and use reflection in `key.Infer()`. (#679) +- Fix internal `global` test by using `global.Meter` with `RecordBatch()`. (#680) +- Reimplement histogram using mutex instead of `StateLocker`. (#669) +- Switch `MinMaxSumCount` to a mutex lock implementation instead of `StateLocker`. (#667) +- Update documentation to not include any references to `WithKeys`. (#672) +- Correct misspelling. (#668) +- Fix clobbering of the span context if extraction fails. (#656) +- Bump `golangci-lint` and work around the corrupting bug. (#666) (#670) + +## [0.4.3] - 2020-04-24 + +### Added + +- `Dockerfile` and `docker-compose.yml` to run example code. (#635) +- New `grpctrace` package that provides gRPC client and server interceptors for both unary and stream connections. (#621) +- New `api/label` package, providing common label set implementation. (#651) +- Support for JSON marshaling of `Resources`. (#654) +- `TraceID` and `SpanID` implementations for `Stringer` interface. (#642) +- `RemoteAddrKey` in the othttp plugin to include the HTTP client address in top-level spans. (#627) +- `WithSpanFormatter` option to the othttp plugin. (#617) +- Updated README to include section for compatible libraries and include reference to the contrib repository. (#612) +- The prometheus exporter now supports exporting histograms. (#601) +- A `String` method to the `Resource` to return a hashable identifier for a now unique resource. (#613) +- An `Iter` method to the `Resource` to return an array `AttributeIterator`. (#613) +- An `Equal` method to the `Resource` test the equivalence of resources. (#613) +- An iterable structure (`AttributeIterator`) for `Resource` attributes. + +### Changed + +- zipkin export's `NewExporter` now requires a `serviceName` argument to ensure this needed values is provided. (#644) +- Pass `Resources` through the metrics export pipeline. (#659) + +### Removed + +- `WithKeys` option from the metric API. (#639) + +### Fixed + +- Use the `label.Set.Equivalent` value instead of an encoding in the batcher. (#658) +- Correct typo `trace.Exporter` to `trace.SpanSyncer` in comments. (#653) +- Use type names for return values in jaeger exporter. (#648) +- Increase the visibility of the `api/key` package by updating comments and fixing usages locally. (#650) +- `Checkpoint` only after `Update`; Keep records in the `sync.Map` longer. (#647) +- Do not cache `reflect.ValueOf()` in metric Labels. (#649) +- Batch metrics exported from the OTLP exporter based on `Resource` and labels. (#626) +- Add error wrapping to the prometheus exporter. (#631) +- Update the OTLP exporter batching of traces to use a unique `string` representation of an associated `Resource` as the batching key. (#623) +- Update OTLP `SpanData` transform to only include the `ParentSpanID` if one exists. (#614) +- Update `Resource` internal representation to uniquely and reliably identify resources. (#613) +- Check return value from `CheckpointSet.ForEach` in prometheus exporter. (#622) +- Ensure spans created by httptrace client tracer reflect operation structure. (#618) +- Create a new recorder rather than reuse when multiple observations in same epoch for asynchronous instruments. #610 +- The default port the OTLP exporter uses to connect to the OpenTelemetry collector is updated to match the one the collector listens on by default. (#611) + +## [0.4.2] - 2020-03-31 + +### Fixed + +- Fix `pre_release.sh` to update version in `sdk/opentelemetry.go`. (#607) +- Fix time conversion from internal to OTLP in OTLP exporter. (#606) + +## [0.4.1] - 2020-03-31 + +### Fixed + +- Update `tag.sh` to create signed tags. (#604) + +## [0.4.0] - 2020-03-30 + +### Added + +- New API package `api/metric/registry` that exposes a `MeterImpl` wrapper for use by SDKs to generate unique instruments. (#580) +- Script to verify examples after a new release. (#579) + +### Removed + +- The dogstatsd exporter due to lack of support. + This additionally removes support for statsd. (#591) +- `LabelSet` from the metric API. + This is replaced by a `[]core.KeyValue` slice. (#595) +- `Labels` from the metric API's `Meter` interface. (#595) + +### Changed + +- The metric `export.Labels` became an interface which the SDK implements and the `export` package provides a simple, immutable implementation of this interface intended for testing purposes. (#574) +- Renamed `internal/metric.Meter` to `MeterImpl`. (#580) +- Renamed `api/global/internal.obsImpl` to `asyncImpl`. (#580) + +### Fixed + +- Corrected missing return in mock span. (#582) +- Update License header for all source files to match CNCF guidelines and include a test to ensure it is present. (#586) (#596) +- Update to v0.3.0 of the OTLP in the OTLP exporter. (#588) +- Update pre-release script to be compatible between GNU and BSD based systems. (#592) +- Add a `RecordBatch` benchmark. (#594) +- Moved span transforms of the OTLP exporter to the internal package. (#593) +- Build both go-1.13 and go-1.14 in circleci to test for all supported versions of Go. (#569) +- Removed unneeded allocation on empty labels in OLTP exporter. (#597) +- Update `BatchedSpanProcessor` to process the queue until no data but respect max batch size. (#599) +- Update project documentation godoc.org links to pkg.go.dev. (#602) + +## [0.3.0] - 2020-03-21 + +This is a first official beta release, which provides almost fully complete metrics, tracing, and context propagation functionality. +There is still a possibility of breaking changes. + +### Added + +- Add `Observer` metric instrument. (#474) +- Add global `Propagators` functionality to enable deferred initialization for propagators registered before the first Meter SDK is installed. (#494) +- Simplified export setup pipeline for the jaeger exporter to match other exporters. (#459) +- The zipkin trace exporter. (#495) +- The OTLP exporter to export metric and trace telemetry to the OpenTelemetry collector. (#497) (#544) (#545) +- Add `StatusMessage` field to the trace `Span`. (#524) +- Context propagation in OpenTracing bridge in terms of OpenTelemetry context propagation. (#525) +- The `Resource` type was added to the SDK. (#528) +- The global API now supports a `Tracer` and `Meter` function as shortcuts to getting a global `*Provider` and calling these methods directly. (#538) +- The metric API now defines a generic `MeterImpl` interface to support general purpose `Meter` construction. + Additionally, `SyncImpl` and `AsyncImpl` are added to support general purpose instrument construction. (#560) +- A metric `Kind` is added to represent the `MeasureKind`, `ObserverKind`, and `CounterKind`. (#560) +- Scripts to better automate the release process. (#576) + +### Changed + +- Default to to use `AlwaysSampler` instead of `ProbabilitySampler` to match OpenTelemetry specification. (#506) +- Renamed `AlwaysSampleSampler` to `AlwaysOnSampler` in the trace API. (#511) +- Renamed `NeverSampleSampler` to `AlwaysOffSampler` in the trace API. (#511) +- The `Status` field of the `Span` was changed to `StatusCode` to disambiguate with the added `StatusMessage`. (#524) +- Updated the trace `Sampler` interface conform to the OpenTelemetry specification. (#531) +- Rename metric API `Options` to `Config`. (#541) +- Rename metric `Counter` aggregator to be `Sum`. (#541) +- Unify metric options into `Option` from instrument specific options. (#541) +- The trace API's `TraceProvider` now support `Resource`s. (#545) +- Correct error in zipkin module name. (#548) +- The jaeger trace exporter now supports `Resource`s. (#551) +- Metric SDK now supports `Resource`s. + The `WithResource` option was added to configure a `Resource` on creation and the `Resource` method was added to the metric `Descriptor` to return the associated `Resource`. (#552) +- Replace `ErrNoLastValue` and `ErrEmptyDataSet` by `ErrNoData` in the metric SDK. (#557) +- The stdout trace exporter now supports `Resource`s. (#558) +- The metric `Descriptor` is now included at the API instead of the SDK. (#560) +- Replace `Ordered` with an iterator in `export.Labels`. (#567) + +### Removed + +- The vendor specific Stackdriver. It is now hosted on 3rd party vendor infrastructure. (#452) +- The `Unregister` method for metric observers as it is not in the OpenTelemetry specification. (#560) +- `GetDescriptor` from the metric SDK. (#575) +- The `Gauge` instrument from the metric API. (#537) + +### Fixed + +- Make histogram aggregator checkpoint consistent. (#438) +- Update README with import instructions and how to build and test. (#505) +- The default label encoding was updated to be unique. (#508) +- Use `NewRoot` in the othttp plugin for public endpoints. (#513) +- Fix data race in `BatchedSpanProcessor`. (#518) +- Skip test-386 for Mac OS 10.15.x (Catalina and upwards). #521 +- Use a variable-size array to represent ordered labels in maps. (#523) +- Update the OTLP protobuf and update changed import path. (#532) +- Use `StateLocker` implementation in `MinMaxSumCount`. (#546) +- Eliminate goroutine leak in histogram stress test. (#547) +- Update OTLP exporter with latest protobuf. (#550) +- Add filters to the othttp plugin. (#556) +- Provide an implementation of the `Header*` filters that do not depend on Go 1.14. (#565) +- Encode labels once during checkpoint. + The checkpoint function is executed in a single thread so we can do the encoding lazily before passing the encoded version of labels to the exporter. + This is a cheap and quick way to avoid encoding the labels on every collection interval. (#572) +- Run coverage over all packages in `COVERAGE_MOD_DIR`. (#573) + +## [0.2.3] - 2020-03-04 + +### Added + +- `RecordError` method on `Span`s in the trace API to Simplify adding error events to spans. (#473) +- Configurable push frequency for exporters setup pipeline. (#504) + +### Changed + +- Rename the `exporter` directory to `exporters`. + The `go.opentelemetry.io/otel/exporter/trace/jaeger` package was mistakenly released with a `v1.0.0` tag instead of `v0.1.0`. + This resulted in all subsequent releases not becoming the default latest. + A consequence of this was that all `go get`s pulled in the incompatible `v0.1.0` release of that package when pulling in more recent packages from other otel packages. + Renaming the `exporter` directory to `exporters` fixes this issue by renaming the package and therefore clearing any existing dependency tags. + Consequentially, this action also renames *all* exporter packages. (#502) + +### Removed + +- The `CorrelationContextHeader` constant in the `correlation` package is no longer exported. (#503) + +## [0.2.2] - 2020-02-27 + +### Added + +- `HTTPSupplier` interface in the propagation API to specify methods to retrieve and store a single value for a key to be associated with a carrier. (#467) +- `HTTPExtractor` interface in the propagation API to extract information from an `HTTPSupplier` into a context. (#467) +- `HTTPInjector` interface in the propagation API to inject information into an `HTTPSupplier.` (#467) +- `Config` and configuring `Option` to the propagator API. (#467) +- `Propagators` interface in the propagation API to contain the set of injectors and extractors for all supported carrier formats. (#467) +- `HTTPPropagator` interface in the propagation API to inject and extract from an `HTTPSupplier.` (#467) +- `WithInjectors` and `WithExtractors` functions to the propagator API to configure injectors and extractors to use. (#467) +- `ExtractHTTP` and `InjectHTTP` functions to apply configured HTTP extractors and injectors to a passed context. (#467) +- Histogram aggregator. (#433) +- `DefaultPropagator` function and have it return `trace.TraceContext` as the default context propagator. (#456) +- `AlwaysParentSample` sampler to the trace API. (#455) +- `WithNewRoot` option function to the trace API to specify the created span should be considered a root span. (#451) + +### Changed + +- Renamed `WithMap` to `ContextWithMap` in the correlation package. (#481) +- Renamed `FromContext` to `MapFromContext` in the correlation package. (#481) +- Move correlation context propagation to correlation package. (#479) +- Do not default to putting remote span context into links. (#480) +- `Tracer.WithSpan` updated to accept `StartOptions`. (#472) +- Renamed `MetricKind` to `Kind` to not stutter in the type usage. (#432) +- Renamed the `export` package to `metric` to match directory structure. (#432) +- Rename the `api/distributedcontext` package to `api/correlation`. (#444) +- Rename the `api/propagators` package to `api/propagation`. (#444) +- Move the propagators from the `propagators` package into the `trace` API package. (#444) +- Update `Float64Gauge`, `Int64Gauge`, `Float64Counter`, `Int64Counter`, `Float64Measure`, and `Int64Measure` metric methods to use value receivers instead of pointers. (#462) +- Moved all dependencies of tools package to a tools directory. (#466) + +### Removed + +- Binary propagators. (#467) +- NOOP propagator. (#467) + +### Fixed + +- Upgraded `github.com/golangci/golangci-lint` from `v1.21.0` to `v1.23.6` in `tools/`. (#492) +- Fix a possible nil-dereference crash (#478) +- Correct comments for `InstallNewPipeline` in the stdout exporter. (#483) +- Correct comments for `InstallNewPipeline` in the dogstatsd exporter. (#484) +- Correct comments for `InstallNewPipeline` in the prometheus exporter. (#482) +- Initialize `onError` based on `Config` in prometheus exporter. (#486) +- Correct module name in prometheus exporter README. (#475) +- Removed tracer name prefix from span names. (#430) +- Fix `aggregator_test.go` import package comment. (#431) +- Improved detail in stdout exporter. (#436) +- Fix a dependency issue (generate target should depend on stringer, not lint target) in Makefile. (#442) +- Reorders the Makefile targets within `precommit` target so we generate files and build the code before doing linting, so we can get much nicer errors about syntax errors from the compiler. (#442) +- Reword function documentation in gRPC plugin. (#446) +- Send the `span.kind` tag to Jaeger from the jaeger exporter. (#441) +- Fix `metadataSupplier` in the jaeger exporter to overwrite the header if existing instead of appending to it. (#441) +- Upgraded to Go 1.13 in CI. (#465) +- Correct opentelemetry.io URL in trace SDK documentation. (#464) +- Refactored reference counting logic in SDK determination of stale records. (#468) +- Add call to `runtime.Gosched` in instrument `acquireHandle` logic to not block the collector. (#469) + +## [0.2.1.1] - 2020-01-13 + +### Fixed + +- Use stateful batcher on Prometheus exporter fixing regression introduced in #395. (#428) + +## [0.2.1] - 2020-01-08 + +### Added + +- Global meter forwarding implementation. + This enables deferred initialization for metric instruments registered before the first Meter SDK is installed. (#392) +- Global trace forwarding implementation. + This enables deferred initialization for tracers registered before the first Trace SDK is installed. (#406) +- Standardize export pipeline creation in all exporters. (#395) +- A testing, organization, and comments for 64-bit field alignment. (#418) +- Script to tag all modules in the project. (#414) + +### Changed + +- Renamed `propagation` package to `propagators`. (#362) +- Renamed `B3Propagator` propagator to `B3`. (#362) +- Renamed `TextFormatPropagator` propagator to `TextFormat`. (#362) +- Renamed `BinaryPropagator` propagator to `Binary`. (#362) +- Renamed `BinaryFormatPropagator` propagator to `BinaryFormat`. (#362) +- Renamed `NoopTextFormatPropagator` propagator to `NoopTextFormat`. (#362) +- Renamed `TraceContextPropagator` propagator to `TraceContext`. (#362) +- Renamed `SpanOption` to `StartOption` in the trace API. (#369) +- Renamed `StartOptions` to `StartConfig` in the trace API. (#369) +- Renamed `EndOptions` to `EndConfig` in the trace API. (#369) +- `Number` now has a pointer receiver for its methods. (#375) +- Renamed `CurrentSpan` to `SpanFromContext` in the trace API. (#379) +- Renamed `SetCurrentSpan` to `ContextWithSpan` in the trace API. (#379) +- Renamed `Message` in Event to `Name` in the trace API. (#389) +- Prometheus exporter no longer aggregates metrics, instead it only exports them. (#385) +- Renamed `HandleImpl` to `BoundInstrumentImpl` in the metric API. (#400) +- Renamed `Float64CounterHandle` to `Float64CounterBoundInstrument` in the metric API. (#400) +- Renamed `Int64CounterHandle` to `Int64CounterBoundInstrument` in the metric API. (#400) +- Renamed `Float64GaugeHandle` to `Float64GaugeBoundInstrument` in the metric API. (#400) +- Renamed `Int64GaugeHandle` to `Int64GaugeBoundInstrument` in the metric API. (#400) +- Renamed `Float64MeasureHandle` to `Float64MeasureBoundInstrument` in the metric API. (#400) +- Renamed `Int64MeasureHandle` to `Int64MeasureBoundInstrument` in the metric API. (#400) +- Renamed `Release` method for bound instruments in the metric API to `Unbind`. (#400) +- Renamed `AcquireHandle` method for bound instruments in the metric API to `Bind`. (#400) +- Renamed the `File` option in the stdout exporter to `Writer`. (#404) +- Renamed all `Options` to `Config` for all metric exports where this wasn't already the case. + +### Fixed + +- Aggregator import path corrected. (#421) +- Correct links in README. (#368) +- The README was updated to match latest code changes in its examples. (#374) +- Don't capitalize error statements. (#375) +- Fix ignored errors. (#375) +- Fix ambiguous variable naming. (#375) +- Removed unnecessary type casting. (#375) +- Use named parameters. (#375) +- Updated release schedule. (#378) +- Correct http-stackdriver example module name. (#394) +- Removed the `http.request` span in `httptrace` package. (#397) +- Add comments in the metrics SDK (#399) +- Initialize checkpoint when creating ddsketch aggregator to prevent panic when merging into a empty one. (#402) (#403) +- Add documentation of compatible exporters in the README. (#405) +- Typo fix. (#408) +- Simplify span check logic in SDK tracer implementation. (#419) + +## [0.2.0] - 2019-12-03 + +### Added + +- Unary gRPC tracing example. (#351) +- Prometheus exporter. (#334) +- Dogstatsd metrics exporter. (#326) + +### Changed + +- Rename `MaxSumCount` aggregation to `MinMaxSumCount` and add the `Min` interface for this aggregation. (#352) +- Rename `GetMeter` to `Meter`. (#357) +- Rename `HTTPTraceContextPropagator` to `TraceContextPropagator`. (#355) +- Rename `HTTPB3Propagator` to `B3Propagator`. (#355) +- Rename `HTTPTraceContextPropagator` to `TraceContextPropagator`. (#355) +- Move `/global` package to `/api/global`. (#356) +- Rename `GetTracer` to `Tracer`. (#347) + +### Removed + +- `SetAttribute` from the `Span` interface in the trace API. (#361) +- `AddLink` from the `Span` interface in the trace API. (#349) +- `Link` from the `Span` interface in the trace API. (#349) + +### Fixed + +- Exclude example directories from coverage report. (#365) +- Lint make target now implements automatic fixes with `golangci-lint` before a second run to report the remaining issues. (#360) +- Drop `GO111MODULE` environment variable in Makefile as Go 1.13 is the project specified minimum version and this is environment variable is not needed for that version of Go. (#359) +- Run the race checker for all test. (#354) +- Redundant commands in the Makefile are removed. (#354) +- Split the `generate` and `lint` targets of the Makefile. (#354) +- Renames `circle-ci` target to more generic `ci` in Makefile. (#354) +- Add example Prometheus binary to gitignore. (#358) +- Support negative numbers with the `MaxSumCount`. (#335) +- Resolve race conditions in `push_test.go` identified in #339. (#340) +- Use `/usr/bin/env bash` as a shebang in scripts rather than `/bin/bash`. (#336) +- Trace benchmark now tests both `AlwaysSample` and `NeverSample`. + Previously it was testing `AlwaysSample` twice. (#325) +- Trace benchmark now uses a `[]byte` for `TraceID` to fix failing test. (#325) +- Added a trace benchmark to test variadic functions in `setAttribute` vs `setAttributes` (#325) +- The `defaultkeys` batcher was only using the encoded label set as its map key while building a checkpoint. + This allowed distinct label sets through, but any metrics sharing a label set could be overwritten or merged incorrectly. + This was corrected. (#333) + +## [0.1.2] - 2019-11-18 + +### Fixed + +- Optimized the `simplelru` map for attributes to reduce the number of allocations. (#328) +- Removed unnecessary unslicing of parameters that are already a slice. (#324) + +## [0.1.1] - 2019-11-18 + +This release contains a Metrics SDK with stdout exporter and supports basic aggregations such as counter, gauges, array, maxsumcount, and ddsketch. + +### Added + +- Metrics stdout export pipeline. (#265) +- Array aggregation for raw measure metrics. (#282) +- The core.Value now have a `MarshalJSON` method. (#281) + +### Removed + +- `WithService`, `WithResources`, and `WithComponent` methods of tracers. (#314) +- Prefix slash in `Tracer.Start()` for the Jaeger example. (#292) + +### Changed + +- Allocation in LabelSet construction to reduce GC overhead. (#318) +- `trace.WithAttributes` to append values instead of replacing (#315) +- Use a formula for tolerance in sampling tests. (#298) +- Move export types into trace and metric-specific sub-directories. (#289) +- `SpanKind` back to being based on an `int` type. (#288) + +### Fixed + +- URL to OpenTelemetry website in README. (#323) +- Name of othttp default tracer. (#321) +- `ExportSpans` for the stackdriver exporter now handles `nil` context. (#294) +- CI modules cache to correctly restore/save from/to the cache. (#316) +- Fix metric SDK race condition between `LoadOrStore` and the assignment `rec.recorder = i.meter.exporter.AggregatorFor(rec)`. (#293) +- README now reflects the new code structure introduced with these changes. (#291) +- Make the basic example work. (#279) + +## [0.1.0] - 2019-11-04 + +This is the first release of open-telemetry go library. +It contains api and sdk for trace and meter. + +### Added + +- Initial OpenTelemetry trace and metric API prototypes. +- Initial OpenTelemetry trace, metric, and export SDK packages. +- A wireframe bridge to support compatibility with OpenTracing. +- Example code for a basic, http-stackdriver, http, jaeger, and named tracer setup. +- Exporters for Jaeger, Stackdriver, and stdout. +- Propagators for binary, B3, and trace-context protocols. +- Project information and guidelines in the form of a README and CONTRIBUTING. +- Tools to build the project and a Makefile to automate the process. +- Apache-2.0 license. +- CircleCI build CI manifest files. +- CODEOWNERS file to track owners of this project. + +[Unreleased]: https://github.com/open-telemetry/opentelemetry-go/compare/v1.37.0...HEAD +[1.37.0/0.59.0/0.13.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.37.0 +[0.12.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/log/v0.12.2 +[0.12.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/log/v0.12.1 +[1.36.0/0.58.0/0.12.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.36.0 +[1.35.0/0.57.0/0.11.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.35.0 +[1.34.0/0.56.0/0.10.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.34.0 +[1.33.0/0.55.0/0.9.0/0.0.12]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.33.0 +[1.32.0/0.54.0/0.8.0/0.0.11]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.32.0 +[1.31.0/0.53.0/0.7.0/0.0.10]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.31.0 +[1.30.0/0.52.0/0.6.0/0.0.9]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.30.0 +[1.29.0/0.51.0/0.5.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.29.0 +[1.28.0/0.50.0/0.4.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.28.0 +[1.27.0/0.49.0/0.3.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.27.0 +[1.26.0/0.48.0/0.2.0-alpha]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.26.0 +[1.25.0/0.47.0/0.0.8/0.1.0-alpha]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.25.0 +[1.24.0/0.46.0/0.0.1-alpha]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.24.0 +[1.23.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.23.1 +[1.23.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.23.0 +[1.23.0-rc.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.23.0-rc.1 +[1.22.0/0.45.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.22.0 +[1.21.0/0.44.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.21.0 +[1.20.0/0.43.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.20.0 +[1.19.0/0.42.0/0.0.7]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.19.0 +[1.19.0-rc.1/0.42.0-rc.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.19.0-rc.1 +[1.18.0/0.41.0/0.0.6]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.18.0 +[1.17.0/0.40.0/0.0.5]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.17.0 +[1.16.0/0.39.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.16.0 +[1.16.0-rc.1/0.39.0-rc.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.16.0-rc.1 +[1.15.1/0.38.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.15.1 +[1.15.0/0.38.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.15.0 +[1.15.0-rc.2/0.38.0-rc.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.15.0-rc.2 +[1.15.0-rc.1/0.38.0-rc.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.15.0-rc.1 +[1.14.0/0.37.0/0.0.4]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.14.0 +[1.13.0/0.36.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.13.0 +[1.12.0/0.35.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.12.0 +[1.11.2/0.34.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.11.2 +[1.11.1/0.33.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.11.1 +[1.11.0/0.32.3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.11.0 +[0.32.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/sdk/metric/v0.32.2 +[0.32.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/sdk/metric/v0.32.1 +[0.32.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/sdk/metric/v0.32.0 +[1.10.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.10.0 +[1.9.0/0.0.3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.9.0 +[1.8.0/0.31.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.8.0 +[1.7.0/0.30.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.7.0 +[0.29.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/metric/v0.29.0 +[1.6.3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.6.3 +[1.6.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.6.2 +[1.6.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.6.1 +[1.6.0/0.28.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.6.0 +[1.5.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.5.0 +[1.4.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.4.1 +[1.4.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.4.0 +[1.3.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.3.0 +[1.2.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.2.0 +[1.1.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.1.0 +[1.0.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.0.1 +[Metrics 0.24.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/metric/v0.24.0 +[1.0.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.0.0 +[1.0.0-RC3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.0.0-RC3 +[1.0.0-RC2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.0.0-RC2 +[Experimental Metrics v0.22.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/metric/v0.22.0 +[1.0.0-RC1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v1.0.0-RC1 +[0.20.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.20.0 +[0.19.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.19.0 +[0.18.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.18.0 +[0.17.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.17.0 +[0.16.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.16.0 +[0.15.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.15.0 +[0.14.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.14.0 +[0.13.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.13.0 +[0.12.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.12.0 +[0.11.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.11.0 +[0.10.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.10.0 +[0.9.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.9.0 +[0.8.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.8.0 +[0.7.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.7.0 +[0.6.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.6.0 +[0.5.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.5.0 +[0.4.3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.4.3 +[0.4.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.4.2 +[0.4.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.4.1 +[0.4.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.4.0 +[0.3.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.3.0 +[0.2.3]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.2.3 +[0.2.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.2.2 +[0.2.1.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.2.1.1 +[0.2.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.2.1 +[0.2.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.2.0 +[0.1.2]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.1.2 +[0.1.1]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.1.1 +[0.1.0]: https://github.com/open-telemetry/opentelemetry-go/releases/tag/v0.1.0 + + + +[Go 1.24]: https://go.dev/doc/go1.24 +[Go 1.23]: https://go.dev/doc/go1.23 +[Go 1.22]: https://go.dev/doc/go1.22 +[Go 1.21]: https://go.dev/doc/go1.21 +[Go 1.20]: https://go.dev/doc/go1.20 +[Go 1.19]: https://go.dev/doc/go1.19 +[Go 1.18]: https://go.dev/doc/go1.18 + +[metric API]:https://pkg.go.dev/go.opentelemetry.io/otel/metric +[metric SDK]:https://pkg.go.dev/go.opentelemetry.io/otel/sdk/metric +[trace API]:https://pkg.go.dev/go.opentelemetry.io/otel/trace + +[GO-2024-2687]: https://pkg.go.dev/vuln/GO-2024-2687 diff --git a/vendor/go.opentelemetry.io/otel/CODEOWNERS b/vendor/go.opentelemetry.io/otel/CODEOWNERS new file mode 100644 index 0000000000..945a07d2b0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/CODEOWNERS @@ -0,0 +1,17 @@ +##################################################### +# +# List of approvers for this repository +# +##################################################### +# +# Learn about membership in OpenTelemetry community: +# https://github.com/open-telemetry/community/blob/main/guides/contributor/membership.md +# +# +# Learn about CODEOWNERS file format: +# https://help.github.com/en/articles/about-code-owners +# + +* @MrAlias @XSAM @dashpole @pellared @dmathieu + +CODEOWNERS @MrAlias @pellared @dashpole @XSAM @dmathieu diff --git a/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md b/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md new file mode 100644 index 0000000000..f9ddc281fc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/CONTRIBUTING.md @@ -0,0 +1,676 @@ +# Contributing to opentelemetry-go + +The Go special interest group (SIG) meets regularly. See the +OpenTelemetry +[community](https://github.com/open-telemetry/community#golang-sdk) +repo for information on this and other language SIGs. + +See the [public meeting +notes](https://docs.google.com/document/d/1E5e7Ld0NuU1iVvf-42tOBpu2VBBLYnh73GJuITGJTTU/edit) +for a summary description of past meetings. To request edit access, +join the meeting or get in touch on +[Slack](https://cloud-native.slack.com/archives/C01NPAXACKT). + +## Development + +You can view and edit the source code by cloning this repository: + +```sh +git clone https://github.com/open-telemetry/opentelemetry-go.git +``` + +Run `make test` to run the tests instead of `go test`. + +There are some generated files checked into the repo. To make sure +that the generated files are up-to-date, run `make` (or `make +precommit` - the `precommit` target is the default). + +The `precommit` target also fixes the formatting of the code and +checks the status of the go module files. + +Additionally, there is a `codespell` target that checks for common +typos in the code. It is not run by default, but you can run it +manually with `make codespell`. It will set up a virtual environment +in `venv` and install `codespell` there. + +If after running `make precommit` the output of `git status` contains +`nothing to commit, working tree clean` then it means that everything +is up-to-date and properly formatted. + +## Pull Requests + +### How to Send Pull Requests + +Everyone is welcome to contribute code to `opentelemetry-go` via +GitHub pull requests (PRs). + +To create a new PR, fork the project in GitHub and clone the upstream +repo: + +```sh +go get -d go.opentelemetry.io/otel +``` + +(This may print some warning about "build constraints exclude all Go +files", just ignore it.) + +This will put the project in `${GOPATH}/src/go.opentelemetry.io/otel`. You +can alternatively use `git` directly with: + +```sh +git clone https://github.com/open-telemetry/opentelemetry-go +``` + +(Note that `git clone` is *not* using the `go.opentelemetry.io/otel` name - +that name is a kind of a redirector to GitHub that `go get` can +understand, but `git` does not.) + +This would put the project in the `opentelemetry-go` directory in +current working directory. + +Enter the newly created directory and add your fork as a new remote: + +```sh +git remote add git@github.com:/opentelemetry-go +``` + +Check out a new branch, make modifications, run linters and tests, update +`CHANGELOG.md`, and push the branch to your fork: + +```sh +git checkout -b +# edit files +# update changelog +make precommit +git add -p +git commit +git push +``` + +Open a pull request against the main `opentelemetry-go` repo. Be sure to add the pull +request ID to the entry you added to `CHANGELOG.md`. + +Avoid rebasing and force-pushing to your branch to facilitate reviewing the pull request. +Rewriting Git history makes it difficult to keep track of iterations during code review. +All pull requests are squashed to a single commit upon merge to `main`. + +### How to Receive Comments + +* If the PR is not ready for review, please put `[WIP]` in the title, + tag it as `work-in-progress`, or mark it as + [`draft`](https://github.blog/2019-02-14-introducing-draft-pull-requests/). +* Make sure CLA is signed and CI is clear. + +### How to Get PRs Merged + +A PR is considered **ready to merge** when: + +* It has received two qualified approvals[^1]. + + This is not enforced through automation, but needs to be validated by the + maintainer merging. + * At least one of the qualified approvals need to be from an + [Approver]/[Maintainer] affiliated with a different company than the author + of the PR. + * PRs introducing changes that have already been discussed and consensus + reached only need one qualified approval. The discussion and resolution + needs to be linked to the PR. + * Trivial changes[^2] only need one qualified approval. + +* All feedback has been addressed. + * All PR comments and suggestions are resolved. + * All GitHub Pull Request reviews with a status of "Request changes" have + been addressed. Another review by the objecting reviewer with a different + status can be submitted to clear the original review, or the review can be + dismissed by a [Maintainer] when the issues from the original review have + been addressed. + * Any comments or reviews that cannot be resolved between the PR author and + reviewers can be submitted to the community [Approver]s and [Maintainer]s + during the weekly SIG meeting. If consensus is reached among the + [Approver]s and [Maintainer]s during the SIG meeting the objections to the + PR may be dismissed or resolved or the PR closed by a [Maintainer]. + * Any substantive changes to the PR require existing Approval reviews be + cleared unless the approver explicitly states that their approval persists + across changes. This includes changes resulting from other feedback. + [Approver]s and [Maintainer]s can help in clearing reviews and they should + be consulted if there are any questions. + +* The PR branch is up to date with the base branch it is merging into. + * To ensure this does not block the PR, it should be configured to allow + maintainers to update it. + +* It has been open for review for at least one working day. This gives people + reasonable time to review. + * Trivial changes[^2] do not have to wait for one day and may be merged with + a single [Maintainer]'s approval. + +* All required GitHub workflows have succeeded. +* Urgent fix can take exception as long as it has been actively communicated + among [Maintainer]s. + +Any [Maintainer] can merge the PR once the above criteria have been met. + +[^1]: A qualified approval is a GitHub Pull Request review with "Approve" + status from an OpenTelemetry Go [Approver] or [Maintainer]. +[^2]: Trivial changes include: typo corrections, cosmetic non-substantive + changes, documentation corrections or updates, dependency updates, etc. + +## Design Choices + +As with other OpenTelemetry clients, opentelemetry-go follows the +[OpenTelemetry Specification](https://opentelemetry.io/docs/specs/otel). + +It's especially valuable to read through the [library +guidelines](https://opentelemetry.io/docs/specs/otel/library-guidelines). + +### Focus on Capabilities, Not Structure Compliance + +OpenTelemetry is an evolving specification, one where the desires and +use cases are clear, but the method to satisfy those uses cases are +not. + +As such, Contributions should provide functionality and behavior that +conforms to the specification, but the interface and structure is +flexible. + +It is preferable to have contributions follow the idioms of the +language rather than conform to specific API names or argument +patterns in the spec. + +For a deeper discussion, see +[this](https://github.com/open-telemetry/opentelemetry-specification/issues/165). + +## Tests + +Each functionality should be covered by tests. + +Performance-critical functionality should also be covered by benchmarks. + +- Pull requests adding a performance-critical functionality +should have `go test -bench` output in their description. +- Pull requests changing a performance-critical functionality +should have [`benchstat`](https://pkg.go.dev/golang.org/x/perf/cmd/benchstat) +output in their description. + +## Documentation + +Each (non-internal, non-test) package must be documented using +[Go Doc Comments](https://go.dev/doc/comment), +preferably in a `doc.go` file. + +Prefer using [Examples](https://pkg.go.dev/testing#hdr-Examples) +instead of putting code snippets in Go doc comments. +In some cases, you can even create [Testable Examples](https://go.dev/blog/examples). + +You can install and run a "local Go Doc site" in the following way: + + ```sh + go install golang.org/x/pkgsite/cmd/pkgsite@latest + pkgsite + ``` + +[`go.opentelemetry.io/otel/metric`](https://pkg.go.dev/go.opentelemetry.io/otel/metric) +is an example of a very well-documented package. + +### README files + +Each (non-internal, non-test, non-documentation) package must contain a +`README.md` file containing at least a title, and a `pkg.go.dev` badge. + +The README should not be a repetition of Go doc comments. + +You can verify the presence of all README files with the `make verify-readmes` +command. + +## Style Guide + +One of the primary goals of this project is that it is actually used by +developers. With this goal in mind the project strives to build +user-friendly and idiomatic Go code adhering to the Go community's best +practices. + +For a non-comprehensive but foundational overview of these best practices +the [Effective Go](https://golang.org/doc/effective_go.html) documentation +is an excellent starting place. + +As a convenience for developers building this project the `make precommit` +will format, lint, validate, and in some cases fix the changes you plan to +submit. This check will need to pass for your changes to be able to be +merged. + +In addition to idiomatic Go, the project has adopted certain standards for +implementations of common patterns. These standards should be followed as a +default, and if they are not followed documentation needs to be included as +to the reasons why. + +### Configuration + +When creating an instantiation function for a complex `type T struct`, it is +useful to allow variable number of options to be applied. However, the strong +type system of Go restricts the function design options. There are a few ways +to solve this problem, but we have landed on the following design. + +#### `config` + +Configuration should be held in a `struct` named `config`, or prefixed with +specific type name this Configuration applies to if there are multiple +`config` in the package. This type must contain configuration options. + +```go +// config contains configuration options for a thing. +type config struct { + // options ... +} +``` + +In general the `config` type will not need to be used externally to the +package and should be unexported. If, however, it is expected that the user +will likely want to build custom options for the configuration, the `config` +should be exported. Please, include in the documentation for the `config` +how the user can extend the configuration. + +It is important that internal `config` are not shared across package boundaries. +Meaning a `config` from one package should not be directly used by another. The +one exception is the API packages. The configs from the base API, eg. +`go.opentelemetry.io/otel/trace.TracerConfig` and +`go.opentelemetry.io/otel/metric.InstrumentConfig`, are intended to be consumed +by the SDK therefore it is expected that these are exported. + +When a config is exported we want to maintain forward and backward +compatibility, to achieve this no fields should be exported but should +instead be accessed by methods. + +Optionally, it is common to include a `newConfig` function (with the same +naming scheme). This function wraps any defaults setting and looping over +all options to create a configured `config`. + +```go +// newConfig returns an appropriately configured config. +func newConfig(options ...Option) config { + // Set default values for config. + config := config{/* […] */} + for _, option := range options { + config = option.apply(config) + } + // Perform any validation here. + return config +} +``` + +If validation of the `config` options is also performed this can return an +error as well that is expected to be handled by the instantiation function +or propagated to the user. + +Given the design goal of not having the user need to work with the `config`, +the `newConfig` function should also be unexported. + +#### `Option` + +To set the value of the options a `config` contains, a corresponding +`Option` interface type should be used. + +```go +type Option interface { + apply(config) config +} +``` + +Having `apply` unexported makes sure that it will not be used externally. +Moreover, the interface becomes sealed so the user cannot easily implement +the interface on its own. + +The `apply` method should return a modified version of the passed config. +This approach, instead of passing a pointer, is used to prevent the config from being allocated to the heap. + +The name of the interface should be prefixed in the same way the +corresponding `config` is (if at all). + +#### Options + +All user configurable options for a `config` must have a related unexported +implementation of the `Option` interface and an exported configuration +function that wraps this implementation. + +The wrapping function name should be prefixed with `With*` (or in the +special case of a boolean options `Without*`) and should have the following +function signature. + +```go +func With*(…) Option { … } +``` + +##### `bool` Options + +```go +type defaultFalseOption bool + +func (o defaultFalseOption) apply(c config) config { + c.Bool = bool(o) + return c +} + +// WithOption sets a T to have an option included. +func WithOption() Option { + return defaultFalseOption(true) +} +``` + +```go +type defaultTrueOption bool + +func (o defaultTrueOption) apply(c config) config { + c.Bool = bool(o) + return c +} + +// WithoutOption sets a T to have Bool option excluded. +func WithoutOption() Option { + return defaultTrueOption(false) +} +``` + +##### Declared Type Options + +```go +type myTypeOption struct { + MyType MyType +} + +func (o myTypeOption) apply(c config) config { + c.MyType = o.MyType + return c +} + +// WithMyType sets T to have include MyType. +func WithMyType(t MyType) Option { + return myTypeOption{t} +} +``` + +##### Functional Options + +```go +type optionFunc func(config) config + +func (fn optionFunc) apply(c config) config { + return fn(c) +} + +// WithMyType sets t as MyType. +func WithMyType(t MyType) Option { + return optionFunc(func(c config) config { + c.MyType = t + return c + }) +} +``` + +#### Instantiation + +Using this configuration pattern to configure instantiation with a `NewT` +function. + +```go +func NewT(options ...Option) T {…} +``` + +Any required parameters can be declared before the variadic `options`. + +#### Dealing with Overlap + +Sometimes there are multiple complex `struct` that share common +configuration and also have distinct configuration. To avoid repeated +portions of `config`s, a common `config` can be used with the union of +options being handled with the `Option` interface. + +For example. + +```go +// config holds options for all animals. +type config struct { + Weight float64 + Color string + MaxAltitude float64 +} + +// DogOption apply Dog specific options. +type DogOption interface { + applyDog(config) config +} + +// BirdOption apply Bird specific options. +type BirdOption interface { + applyBird(config) config +} + +// Option apply options for all animals. +type Option interface { + BirdOption + DogOption +} + +type weightOption float64 + +func (o weightOption) applyDog(c config) config { + c.Weight = float64(o) + return c +} + +func (o weightOption) applyBird(c config) config { + c.Weight = float64(o) + return c +} + +func WithWeight(w float64) Option { return weightOption(w) } + +type furColorOption string + +func (o furColorOption) applyDog(c config) config { + c.Color = string(o) + return c +} + +func WithFurColor(c string) DogOption { return furColorOption(c) } + +type maxAltitudeOption float64 + +func (o maxAltitudeOption) applyBird(c config) config { + c.MaxAltitude = float64(o) + return c +} + +func WithMaxAltitude(a float64) BirdOption { return maxAltitudeOption(a) } + +func NewDog(name string, o ...DogOption) Dog {…} +func NewBird(name string, o ...BirdOption) Bird {…} +``` + +### Interfaces + +To allow other developers to better comprehend the code, it is important +to ensure it is sufficiently documented. One simple measure that contributes +to this aim is self-documenting by naming method parameters. Therefore, +where appropriate, methods of every exported interface type should have +their parameters appropriately named. + +#### Interface Stability + +All exported stable interfaces that include the following warning in their +documentation are allowed to be extended with additional methods. + +> Warning: methods may be added to this interface in minor releases. + +These interfaces are defined by the OpenTelemetry specification and will be +updated as the specification evolves. + +Otherwise, stable interfaces MUST NOT be modified. + +#### How to Change Specification Interfaces + +When an API change must be made, we will update the SDK with the new method one +release before the API change. This will allow the SDK one version before the +API change to work seamlessly with the new API. + +If an incompatible version of the SDK is used with the new API the application +will fail to compile. + +#### How Not to Change Specification Interfaces + +We have explored using a v2 of the API to change interfaces and found that there +was no way to introduce a v2 and have it work seamlessly with the v1 of the API. +Problems happened with libraries that upgraded to v2 when an application did not, +and would not produce any telemetry. + +More detail of the approaches considered and their limitations can be found in +the [Use a V2 API to evolve interfaces](https://github.com/open-telemetry/opentelemetry-go/issues/3920) +issue. + +#### How to Change Other Interfaces + +If new functionality is needed for an interface that cannot be changed it MUST +be added by including an additional interface. That added interface can be a +simple interface for the specific functionality that you want to add or it can +be a super-set of the original interface. For example, if you wanted to a +`Close` method to the `Exporter` interface: + +```go +type Exporter interface { + Export() +} +``` + +A new interface, `Closer`, can be added: + +```go +type Closer interface { + Close() +} +``` + +Code that is passed the `Exporter` interface can now check to see if the passed +value also satisfies the new interface. E.g. + +```go +func caller(e Exporter) { + /* ... */ + if c, ok := e.(Closer); ok { + c.Close() + } + /* ... */ +} +``` + +Alternatively, a new type that is the super-set of an `Exporter` can be created. + +```go +type ClosingExporter struct { + Exporter + Close() +} +``` + +This new type can be used similar to the simple interface above in that a +passed `Exporter` type can be asserted to satisfy the `ClosingExporter` type +and the `Close` method called. + +This super-set approach can be useful if there is explicit behavior that needs +to be coupled with the original type and passed as a unified type to a new +function, but, because of this coupling, it also limits the applicability of +the added functionality. If there exist other interfaces where this +functionality should be added, each one will need their own super-set +interfaces and will duplicate the pattern. For this reason, the simple targeted +interface that defines the specific functionality should be preferred. + +See also: +[Keeping Your Modules Compatible: Working with interfaces](https://go.dev/blog/module-compatibility#working-with-interfaces). + +### Testing + +The tests should never leak goroutines. + +Use the term `ConcurrentSafe` in the test name when it aims to verify the +absence of race conditions. The top-level tests with this term will be run +many times in the `test-concurrent-safe` CI job to increase the chance of +catching concurrency issues. This does not apply to subtests when this term +is not in their root name. + +### Internal packages + +The use of internal packages should be scoped to a single module. A sub-module +should never import from a parent internal package. This creates a coupling +between the two modules where a user can upgrade the parent without the child +and if the internal package API has changed it will fail to upgrade[^3]. + +There are two known exceptions to this rule: + +- `go.opentelemetry.io/otel/internal/global` + - This package manages global state for all of opentelemetry-go. It needs to + be a single package in order to ensure the uniqueness of the global state. +- `go.opentelemetry.io/otel/internal/baggage` + - This package provides values in a `context.Context` that need to be + recognized by `go.opentelemetry.io/otel/baggage` and + `go.opentelemetry.io/otel/bridge/opentracing` but remain private. + +If you have duplicate code in multiple modules, make that code into a Go +template stored in `go.opentelemetry.io/otel/internal/shared` and use [gotmpl] +to render the templates in the desired locations. See [#4404] for an example of +this. + +[^3]: https://github.com/open-telemetry/opentelemetry-go/issues/3548 + +### Ignoring context cancellation + +OpenTelemetry API implementations need to ignore the cancellation of the context that are +passed when recording a value (e.g. starting a span, recording a measurement, emitting a log). +Recording methods should not return an error describing the cancellation state of the context +when they complete, nor should they abort any work. + +This rule may not apply if the OpenTelemetry specification defines a timeout mechanism for +the method. In that case the context cancellation can be used for the timeout with the +restriction that this behavior is documented for the method. Otherwise, timeouts +are expected to be handled by the user calling the API, not the implementation. + +Stoppage of the telemetry pipeline is handled by calling the appropriate `Shutdown` method +of a provider. It is assumed the context passed from a user is not used for this purpose. + +Outside of the direct recording of telemetry from the API (e.g. exporting telemetry, +force flushing telemetry, shutting down a signal provider) the context cancellation +should be honored. This means all work done on behalf of the user provided context +should be canceled. + +## Approvers and Maintainers + +### Triagers + +- [Alex Kats](https://github.com/akats7), Capital One +- [Cheng-Zhen Yang](https://github.com/scorpionknifes), Independent + +### Approvers + +### Maintainers + +- [Damien Mathieu](https://github.com/dmathieu), Elastic ([GPG](https://keys.openpgp.org/search?q=5A126B972A81A6CE443E5E1B408B8E44F0873832)) +- [David Ashpole](https://github.com/dashpole), Google ([GPG](https://keys.openpgp.org/search?q=C0D1BDDCAAEAE573673085F176327DA4D864DC70)) +- [Robert Pająk](https://github.com/pellared), Splunk ([GPG](https://keys.openpgp.org/search?q=CDAD3A60476A3DE599AA5092E5F7C35A4DBE90C2)) +- [Sam Xie](https://github.com/XSAM), Splunk ([GPG](https://keys.openpgp.org/search?q=AEA033782371ABB18EE39188B8044925D6FEEBEA)) +- [Tyler Yahn](https://github.com/MrAlias), Splunk ([GPG](https://keys.openpgp.org/search?q=0x46B0F3E1A8B1BA5A)) + +### Emeritus + +- [Aaron Clawson](https://github.com/MadVikingGod) +- [Anthony Mirabella](https://github.com/Aneurysm9) +- [Chester Cheung](https://github.com/hanyuancheung) +- [Evan Torrie](https://github.com/evantorrie) +- [Gustavo Silva Paiva](https://github.com/paivagustavo) +- [Josh MacDonald](https://github.com/jmacd) +- [Liz Fong-Jones](https://github.com/lizthegrey) + +### Become an Approver or a Maintainer + +See the [community membership document in OpenTelemetry community +repo](https://github.com/open-telemetry/community/blob/main/guides/contributor/membership.md). + +[Approver]: #approvers +[Maintainer]: #maintainers +[gotmpl]: https://pkg.go.dev/go.opentelemetry.io/build-tools/gotmpl +[#4404]: https://github.com/open-telemetry/opentelemetry-go/pull/4404 diff --git a/vendor/go.opentelemetry.io/otel/LICENSE b/vendor/go.opentelemetry.io/otel/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/Makefile b/vendor/go.opentelemetry.io/otel/Makefile new file mode 100644 index 0000000000..4fa423ca02 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/Makefile @@ -0,0 +1,329 @@ +# Copyright The OpenTelemetry Authors +# SPDX-License-Identifier: Apache-2.0 + +TOOLS_MOD_DIR := ./internal/tools + +ALL_DOCS := $(shell find . -name '*.md' -type f | sort) +ALL_GO_MOD_DIRS := $(shell find . -type f -name 'go.mod' -exec dirname {} \; | sort) +OTEL_GO_MOD_DIRS := $(filter-out $(TOOLS_MOD_DIR), $(ALL_GO_MOD_DIRS)) +ALL_COVERAGE_MOD_DIRS := $(shell find . -type f -name 'go.mod' -exec dirname {} \; | grep -E -v '^./example|^$(TOOLS_MOD_DIR)' | sort) + +GO = go +TIMEOUT = 60 + +# User to run as in docker images. +DOCKER_USER=$(shell id -u):$(shell id -g) +DEPENDENCIES_DOCKERFILE=./dependencies.Dockerfile + +.DEFAULT_GOAL := precommit + +.PHONY: precommit ci +precommit: generate toolchain-check license-check misspell go-mod-tidy golangci-lint-fix verify-readmes verify-mods test-default +ci: generate toolchain-check license-check lint vanity-import-check verify-readmes verify-mods build test-default check-clean-work-tree test-coverage + +# Tools + +TOOLS = $(CURDIR)/.tools + +$(TOOLS): + @mkdir -p $@ +$(TOOLS)/%: $(TOOLS_MOD_DIR)/go.mod | $(TOOLS) + cd $(TOOLS_MOD_DIR) && \ + $(GO) build -o $@ $(PACKAGE) + +MULTIMOD = $(TOOLS)/multimod +$(TOOLS)/multimod: PACKAGE=go.opentelemetry.io/build-tools/multimod + +SEMCONVGEN = $(TOOLS)/semconvgen +$(TOOLS)/semconvgen: PACKAGE=go.opentelemetry.io/build-tools/semconvgen + +CROSSLINK = $(TOOLS)/crosslink +$(TOOLS)/crosslink: PACKAGE=go.opentelemetry.io/build-tools/crosslink + +SEMCONVKIT = $(TOOLS)/semconvkit +$(TOOLS)/semconvkit: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/semconvkit + +VERIFYREADMES = $(TOOLS)/verifyreadmes +$(TOOLS)/verifyreadmes: PACKAGE=go.opentelemetry.io/otel/$(TOOLS_MOD_DIR)/verifyreadmes + +GOLANGCI_LINT = $(TOOLS)/golangci-lint +$(TOOLS)/golangci-lint: PACKAGE=github.com/golangci/golangci-lint/v2/cmd/golangci-lint + +MISSPELL = $(TOOLS)/misspell +$(TOOLS)/misspell: PACKAGE=github.com/client9/misspell/cmd/misspell + +GOCOVMERGE = $(TOOLS)/gocovmerge +$(TOOLS)/gocovmerge: PACKAGE=github.com/wadey/gocovmerge + +STRINGER = $(TOOLS)/stringer +$(TOOLS)/stringer: PACKAGE=golang.org/x/tools/cmd/stringer + +PORTO = $(TOOLS)/porto +$(TOOLS)/porto: PACKAGE=github.com/jcchavezs/porto/cmd/porto + +GOTMPL = $(TOOLS)/gotmpl +$(GOTMPL): PACKAGE=go.opentelemetry.io/build-tools/gotmpl + +GORELEASE = $(TOOLS)/gorelease +$(GORELEASE): PACKAGE=golang.org/x/exp/cmd/gorelease + +GOVULNCHECK = $(TOOLS)/govulncheck +$(TOOLS)/govulncheck: PACKAGE=golang.org/x/vuln/cmd/govulncheck + +.PHONY: tools +tools: $(CROSSLINK) $(GOLANGCI_LINT) $(MISSPELL) $(GOCOVMERGE) $(STRINGER) $(PORTO) $(SEMCONVGEN) $(VERIFYREADMES) $(MULTIMOD) $(SEMCONVKIT) $(GOTMPL) $(GORELEASE) + +# Virtualized python tools via docker + +# The directory where the virtual environment is created. +VENVDIR := venv + +# The directory where the python tools are installed. +PYTOOLS := $(VENVDIR)/bin + +# The pip executable in the virtual environment. +PIP := $(PYTOOLS)/pip + +# The directory in the docker image where the current directory is mounted. +WORKDIR := /workdir + +# The python image to use for the virtual environment. +PYTHONIMAGE := $(shell awk '$$4=="python" {print $$2}' $(DEPENDENCIES_DOCKERFILE)) + +# Run the python image with the current directory mounted. +DOCKERPY := docker run --rm -u $(DOCKER_USER) -v "$(CURDIR):$(WORKDIR)" -w $(WORKDIR) $(PYTHONIMAGE) + +# Create a virtual environment for Python tools. +$(PYTOOLS): +# The `--upgrade` flag is needed to ensure that the virtual environment is +# created with the latest pip version. + @$(DOCKERPY) bash -c "python3 -m venv $(VENVDIR) && $(PIP) install --upgrade --cache-dir=$(WORKDIR)/.cache/pip pip" + +# Install python packages into the virtual environment. +$(PYTOOLS)/%: $(PYTOOLS) + @$(DOCKERPY) $(PIP) install --cache-dir=$(WORKDIR)/.cache/pip -r requirements.txt + +CODESPELL = $(PYTOOLS)/codespell +$(CODESPELL): PACKAGE=codespell + +# Generate + +.PHONY: generate +generate: go-generate vanity-import-fix + +.PHONY: go-generate +go-generate: $(OTEL_GO_MOD_DIRS:%=go-generate/%) +go-generate/%: DIR=$* +go-generate/%: $(STRINGER) $(GOTMPL) + @echo "$(GO) generate $(DIR)/..." \ + && cd $(DIR) \ + && PATH="$(TOOLS):$${PATH}" $(GO) generate ./... + +.PHONY: vanity-import-fix +vanity-import-fix: $(PORTO) + @$(PORTO) --include-internal -w . + +# Generate go.work file for local development. +.PHONY: go-work +go-work: $(CROSSLINK) + $(CROSSLINK) work --root=$(shell pwd) --go=1.22.7 + +# Build + +.PHONY: build + +build: $(OTEL_GO_MOD_DIRS:%=build/%) $(OTEL_GO_MOD_DIRS:%=build-tests/%) +build/%: DIR=$* +build/%: + @echo "$(GO) build $(DIR)/..." \ + && cd $(DIR) \ + && $(GO) build ./... + +build-tests/%: DIR=$* +build-tests/%: + @echo "$(GO) build tests $(DIR)/..." \ + && cd $(DIR) \ + && $(GO) list ./... \ + | grep -v third_party \ + | xargs $(GO) test -vet=off -run xxxxxMatchNothingxxxxx >/dev/null + +# Tests + +TEST_TARGETS := test-default test-bench test-short test-verbose test-race test-concurrent-safe +.PHONY: $(TEST_TARGETS) test +test-default test-race: ARGS=-race +test-bench: ARGS=-run=xxxxxMatchNothingxxxxx -test.benchtime=1ms -bench=. +test-short: ARGS=-short +test-verbose: ARGS=-v -race +test-concurrent-safe: ARGS=-run=ConcurrentSafe -count=100 -race +test-concurrent-safe: TIMEOUT=120 +$(TEST_TARGETS): test +test: $(OTEL_GO_MOD_DIRS:%=test/%) +test/%: DIR=$* +test/%: + @echo "$(GO) test -timeout $(TIMEOUT)s $(ARGS) $(DIR)/..." \ + && cd $(DIR) \ + && $(GO) list ./... \ + | grep -v third_party \ + | xargs $(GO) test -timeout $(TIMEOUT)s $(ARGS) + +COVERAGE_MODE = atomic +COVERAGE_PROFILE = coverage.out +.PHONY: test-coverage +test-coverage: $(GOCOVMERGE) + @set -e; \ + printf "" > coverage.txt; \ + for dir in $(ALL_COVERAGE_MOD_DIRS); do \ + echo "$(GO) test -coverpkg=go.opentelemetry.io/otel/... -covermode=$(COVERAGE_MODE) -coverprofile="$(COVERAGE_PROFILE)" $${dir}/..."; \ + (cd "$${dir}" && \ + $(GO) list ./... \ + | grep -v third_party \ + | grep -v 'semconv/v.*' \ + | xargs $(GO) test -coverpkg=./... -covermode=$(COVERAGE_MODE) -coverprofile="$(COVERAGE_PROFILE)" && \ + $(GO) tool cover -html=coverage.out -o coverage.html); \ + done; \ + $(GOCOVMERGE) $$(find . -name coverage.out) > coverage.txt + +.PHONY: benchmark +benchmark: $(OTEL_GO_MOD_DIRS:%=benchmark/%) +benchmark/%: + @echo "$(GO) test -run=xxxxxMatchNothingxxxxx -bench=. $*..." \ + && cd $* \ + && $(GO) list ./... \ + | grep -v third_party \ + | xargs $(GO) test -run=xxxxxMatchNothingxxxxx -bench=. + +.PHONY: golangci-lint golangci-lint-fix +golangci-lint-fix: ARGS=--fix +golangci-lint-fix: golangci-lint +golangci-lint: $(OTEL_GO_MOD_DIRS:%=golangci-lint/%) +golangci-lint/%: DIR=$* +golangci-lint/%: $(GOLANGCI_LINT) + @echo 'golangci-lint $(if $(ARGS),$(ARGS) ,)$(DIR)' \ + && cd $(DIR) \ + && $(GOLANGCI_LINT) run --allow-serial-runners $(ARGS) + +.PHONY: crosslink +crosslink: $(CROSSLINK) + @echo "Updating intra-repository dependencies in all go modules" \ + && $(CROSSLINK) --root=$(shell pwd) --prune + +.PHONY: go-mod-tidy +go-mod-tidy: $(ALL_GO_MOD_DIRS:%=go-mod-tidy/%) +go-mod-tidy/%: DIR=$* +go-mod-tidy/%: crosslink + @echo "$(GO) mod tidy in $(DIR)" \ + && cd $(DIR) \ + && $(GO) mod tidy -compat=1.21 + +.PHONY: lint +lint: misspell go-mod-tidy golangci-lint govulncheck + +.PHONY: vanity-import-check +vanity-import-check: $(PORTO) + @$(PORTO) --include-internal -l . || ( echo "(run: make vanity-import-fix)"; exit 1 ) + +.PHONY: misspell +misspell: $(MISSPELL) + @$(MISSPELL) -w $(ALL_DOCS) + +.PHONY: govulncheck +govulncheck: $(OTEL_GO_MOD_DIRS:%=govulncheck/%) +govulncheck/%: DIR=$* +govulncheck/%: $(GOVULNCHECK) + @echo "govulncheck ./... in $(DIR)" \ + && cd $(DIR) \ + && $(GOVULNCHECK) ./... + +.PHONY: codespell +codespell: $(CODESPELL) + @$(DOCKERPY) $(CODESPELL) + +.PHONY: toolchain-check +toolchain-check: + @toolchainRes=$$(for f in $(ALL_GO_MOD_DIRS); do \ + awk '/^toolchain/ { found=1; next } END { if (found) print FILENAME }' $$f/go.mod; \ + done); \ + if [ -n "$${toolchainRes}" ]; then \ + echo "toolchain checking failed:"; echo "$${toolchainRes}"; \ + exit 1; \ + fi + +.PHONY: license-check +license-check: + @licRes=$$(for f in $$(find . -type f \( -iname '*.go' -o -iname '*.sh' \) ! -path '**/third_party/*' ! -path './.git/*' ) ; do \ + awk '/Copyright The OpenTelemetry Authors|generated|GENERATED/ && NR<=4 { found=1; next } END { if (!found) print FILENAME }' $$f; \ + done); \ + if [ -n "$${licRes}" ]; then \ + echo "license header checking failed:"; echo "$${licRes}"; \ + exit 1; \ + fi + +.PHONY: check-clean-work-tree +check-clean-work-tree: + @if ! git diff --quiet; then \ + echo; \ + echo 'Working tree is not clean, did you forget to run "make precommit"?'; \ + echo; \ + git status; \ + exit 1; \ + fi + +# The weaver docker image to use for semconv-generate. +WEAVER_IMAGE := $(shell awk '$$4=="weaver" {print $$2}' $(DEPENDENCIES_DOCKERFILE)) + +SEMCONVPKG ?= "semconv/" +.PHONY: semconv-generate +semconv-generate: $(SEMCONVKIT) + [ "$(TAG)" ] || ( echo "TAG unset: missing opentelemetry semantic-conventions tag"; exit 1 ) + # Ensure the target directory for source code is available. + mkdir -p $(PWD)/$(SEMCONVPKG)/${TAG} + # Note: We mount a home directory for downloading/storing the semconv repository. + # Weaver will automatically clean the cache when finished, but the directories will remain. + mkdir -p ~/.weaver + docker run --rm \ + -u $(DOCKER_USER) \ + --env HOME=/tmp/weaver \ + --mount 'type=bind,source=$(PWD)/semconv,target=/home/weaver/templates/registry/go,readonly' \ + --mount 'type=bind,source=$(PWD)/semconv/${TAG},target=/home/weaver/target' \ + --mount 'type=bind,source=$(HOME)/.weaver,target=/tmp/weaver/.weaver' \ + $(WEAVER_IMAGE) registry generate \ + --registry=https://github.com/open-telemetry/semantic-conventions/archive/refs/tags/$(TAG).zip[model] \ + --templates=/home/weaver/templates \ + --param tag=$(TAG) \ + go \ + /home/weaver/target + $(SEMCONVKIT) -semconv "$(SEMCONVPKG)" -tag "$(TAG)" + +.PHONY: gorelease +gorelease: $(OTEL_GO_MOD_DIRS:%=gorelease/%) +gorelease/%: DIR=$* +gorelease/%:| $(GORELEASE) + @echo "gorelease in $(DIR):" \ + && cd $(DIR) \ + && $(GORELEASE) \ + || echo "" + +.PHONY: verify-mods +verify-mods: $(MULTIMOD) + $(MULTIMOD) verify + +.PHONY: prerelease +prerelease: verify-mods + @[ "${MODSET}" ] || ( echo ">> env var MODSET is not set"; exit 1 ) + $(MULTIMOD) prerelease -m ${MODSET} + +COMMIT ?= "HEAD" +.PHONY: add-tags +add-tags: verify-mods + @[ "${MODSET}" ] || ( echo ">> env var MODSET is not set"; exit 1 ) + $(MULTIMOD) tag -m ${MODSET} -c ${COMMIT} + +MARKDOWNIMAGE := $(shell awk '$$4=="markdown" {print $$2}' $(DEPENDENCIES_DOCKERFILE)) +.PHONY: lint-markdown +lint-markdown: + docker run --rm -u $(DOCKER_USER) -v "$(CURDIR):$(WORKDIR)" $(MARKDOWNIMAGE) -c $(WORKDIR)/.markdownlint.yaml $(WORKDIR)/**/*.md + +.PHONY: verify-readmes +verify-readmes: $(VERIFYREADMES) + $(VERIFYREADMES) diff --git a/vendor/go.opentelemetry.io/otel/README.md b/vendor/go.opentelemetry.io/otel/README.md new file mode 100644 index 0000000000..5fa1b75c60 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/README.md @@ -0,0 +1,115 @@ +# OpenTelemetry-Go + +[![ci](https://github.com/open-telemetry/opentelemetry-go/actions/workflows/ci.yml/badge.svg?branch=main)](https://github.com/open-telemetry/opentelemetry-go/actions/workflows/ci.yml) +[![codecov.io](https://codecov.io/gh/open-telemetry/opentelemetry-go/coverage.svg?branch=main)](https://app.codecov.io/gh/open-telemetry/opentelemetry-go?branch=main) +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel)](https://pkg.go.dev/go.opentelemetry.io/otel) +[![Go Report Card](https://goreportcard.com/badge/go.opentelemetry.io/otel)](https://goreportcard.com/report/go.opentelemetry.io/otel) +[![OpenSSF Scorecard](https://api.scorecard.dev/projects/github.com/open-telemetry/opentelemetry-go/badge)](https://scorecard.dev/viewer/?uri=github.com/open-telemetry/opentelemetry-go) +[![OpenSSF Best Practices](https://www.bestpractices.dev/projects/9996/badge)](https://www.bestpractices.dev/projects/9996) +[![Fuzzing Status](https://oss-fuzz-build-logs.storage.googleapis.com/badges/opentelemetry-go.svg)](https://issues.oss-fuzz.com/issues?q=project:opentelemetry-go) +[![FOSSA Status](https://app.fossa.com/api/projects/custom%2B162%2Fgithub.com%2Fopen-telemetry%2Fopentelemetry-go.svg?type=shield&issueType=license)](https://app.fossa.com/projects/custom%2B162%2Fgithub.com%2Fopen-telemetry%2Fopentelemetry-go?ref=badge_shield&issueType=license) +[![Slack](https://img.shields.io/badge/slack-@cncf/otel--go-brightgreen.svg?logo=slack)](https://cloud-native.slack.com/archives/C01NPAXACKT) + +OpenTelemetry-Go is the [Go](https://golang.org/) implementation of [OpenTelemetry](https://opentelemetry.io/). +It provides a set of APIs to directly measure performance and behavior of your software and send this data to observability platforms. + +## Project Status + +| Signal | Status | +|---------|--------------------| +| Traces | Stable | +| Metrics | Stable | +| Logs | Beta[^1] | + +Progress and status specific to this repository is tracked in our +[project boards](https://github.com/open-telemetry/opentelemetry-go/projects) +and +[milestones](https://github.com/open-telemetry/opentelemetry-go/milestones). + +Project versioning information and stability guarantees can be found in the +[versioning documentation](VERSIONING.md). + +[^1]: https://github.com/orgs/open-telemetry/projects/43 + +### Compatibility + +OpenTelemetry-Go ensures compatibility with the current supported versions of +the [Go language](https://golang.org/doc/devel/release#policy): + +> Each major Go release is supported until there are two newer major releases. +> For example, Go 1.5 was supported until the Go 1.7 release, and Go 1.6 was supported until the Go 1.8 release. + +For versions of Go that are no longer supported upstream, opentelemetry-go will +stop ensuring compatibility with these versions in the following manner: + +- A minor release of opentelemetry-go will be made to add support for the new + supported release of Go. +- The following minor release of opentelemetry-go will remove compatibility + testing for the oldest (now archived upstream) version of Go. This, and + future, releases of opentelemetry-go may include features only supported by + the currently supported versions of Go. + +Currently, this project supports the following environments. + +| OS | Go Version | Architecture | +|----------|------------|--------------| +| Ubuntu | 1.24 | amd64 | +| Ubuntu | 1.23 | amd64 | +| Ubuntu | 1.24 | 386 | +| Ubuntu | 1.23 | 386 | +| Ubuntu | 1.24 | arm64 | +| Ubuntu | 1.23 | arm64 | +| macOS 13 | 1.24 | amd64 | +| macOS 13 | 1.23 | amd64 | +| macOS | 1.24 | arm64 | +| macOS | 1.23 | arm64 | +| Windows | 1.24 | amd64 | +| Windows | 1.23 | amd64 | +| Windows | 1.24 | 386 | +| Windows | 1.23 | 386 | + +While this project should work for other systems, no compatibility guarantees +are made for those systems currently. + +## Getting Started + +You can find a getting started guide on [opentelemetry.io](https://opentelemetry.io/docs/languages/go/getting-started/). + +OpenTelemetry's goal is to provide a single set of APIs to capture distributed +traces and metrics from your application and send them to an observability +platform. This project allows you to do just that for applications written in +Go. There are two steps to this process: instrument your application, and +configure an exporter. + +### Instrumentation + +To start capturing distributed traces and metric events from your application +it first needs to be instrumented. The easiest way to do this is by using an +instrumentation library for your code. Be sure to check out [the officially +supported instrumentation +libraries](https://github.com/open-telemetry/opentelemetry-go-contrib/tree/main/instrumentation). + +If you need to extend the telemetry an instrumentation library provides or want +to build your own instrumentation for your application directly you will need +to use the +[Go otel](https://pkg.go.dev/go.opentelemetry.io/otel) +package. The [examples](https://github.com/open-telemetry/opentelemetry-go-contrib/tree/main/examples) +are a good way to see some practical uses of this process. + +### Export + +Now that your application is instrumented to collect telemetry, it needs an +export pipeline to send that telemetry to an observability platform. + +All officially supported exporters for the OpenTelemetry project are contained in the [exporters directory](./exporters). + +| Exporter | Logs | Metrics | Traces | +|---------------------------------------|:----:|:-------:|:------:| +| [OTLP](./exporters/otlp/) | ✓ | ✓ | ✓ | +| [Prometheus](./exporters/prometheus/) | | ✓ | | +| [stdout](./exporters/stdout/) | ✓ | ✓ | ✓ | +| [Zipkin](./exporters/zipkin/) | | | ✓ | + +## Contributing + +See the [contributing documentation](CONTRIBUTING.md). diff --git a/vendor/go.opentelemetry.io/otel/RELEASING.md b/vendor/go.opentelemetry.io/otel/RELEASING.md new file mode 100644 index 0000000000..1ddcdef039 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/RELEASING.md @@ -0,0 +1,173 @@ +# Release Process + +## Create a `Version Release` issue + +Create a `Version Release` issue to track the release process. + +## Semantic Convention Generation + +New versions of the [OpenTelemetry Semantic Conventions] mean new versions of the `semconv` package need to be generated. +The `semconv-generate` make target is used for this. + +1. Set the `TAG` environment variable to the semantic convention tag you want to generate. +2. Run the `make semconv-generate ...` target from this repository. + +For example, + +```sh +export TAG="v1.30.0" # Change to the release version you are generating. +make semconv-generate # Uses the exported TAG. +``` + +This should create a new sub-package of [`semconv`](./semconv). +Ensure things look correct before submitting a pull request to include the addition. + +## Breaking changes validation + +You can run `make gorelease` that runs [gorelease](https://pkg.go.dev/golang.org/x/exp/cmd/gorelease) to ensure that there are no unwanted changes done in the public API. + +You can check/report problems with `gorelease` [here](https://golang.org/issues/26420). + +## Verify changes for contrib repository + +If the changes in the main repository are going to affect the contrib repository, it is important to verify that the changes are compatible with the contrib repository. + +Follow [the steps](https://github.com/open-telemetry/opentelemetry-go-contrib/blob/main/RELEASING.md#verify-otel-changes) in the contrib repository to verify OTel changes. + +## Pre-Release + +First, decide which module sets will be released and update their versions +in `versions.yaml`. Commit this change to a new branch. + +Update go.mod for submodules to depend on the new release which will happen in the next step. + +1. Run the `prerelease` make target. It creates a branch + `prerelease__` that will contain all release changes. + + ``` + make prerelease MODSET= + ``` + +2. Verify the changes. + + ``` + git diff ...prerelease__ + ``` + + This should have changed the version for all modules to be ``. + If these changes look correct, merge them into your pre-release branch: + + ```go + git merge prerelease__ + ``` + +3. Update the [Changelog](./CHANGELOG.md). + - Make sure all relevant changes for this release are included and are in language that non-contributors to the project can understand. + To verify this, you can look directly at the commits since the ``. + + ``` + git --no-pager log --pretty=oneline "..HEAD" + ``` + + - Move all the `Unreleased` changes into a new section following the title scheme (`[] - `). + - Make sure the new section is under the comment for released section, like ``, so it is protected from being overwritten in the future. + - Update all the appropriate links at the bottom. + +4. Push the changes to upstream and create a Pull Request on GitHub. + Be sure to include the curated changes from the [Changelog](./CHANGELOG.md) in the description. + +## Tag + +Once the Pull Request with all the version changes has been approved and merged it is time to tag the merged commit. + +***IMPORTANT***: It is critical you use the same tag that you used in the Pre-Release step! +Failure to do so will leave things in a broken state. As long as you do not +change `versions.yaml` between pre-release and this step, things should be fine. + +***IMPORTANT***: [There is currently no way to remove an incorrectly tagged version of a Go module](https://github.com/golang/go/issues/34189). +It is critical you make sure the version you push upstream is correct. +[Failure to do so will lead to minor emergencies and tough to work around](https://github.com/open-telemetry/opentelemetry-go/issues/331). + +1. For each module set that will be released, run the `add-tags` make target + using the `` of the commit on the main branch for the merged Pull Request. + + ``` + make add-tags MODSET= COMMIT= + ``` + + It should only be necessary to provide an explicit `COMMIT` value if the + current `HEAD` of your working directory is not the correct commit. + +2. Push tags to the upstream remote (not your fork: `github.com/open-telemetry/opentelemetry-go.git`). + Make sure you push all sub-modules as well. + + ``` + git push upstream + git push upstream + ... + ``` + +## Release + +Finally create a Release for the new `` on GitHub. +The release body should include all the release notes from the Changelog for this release. + +### Sign the Release Artifact + +To ensure we comply with CNCF best practices, we need to sign the release artifact. +The tarball attached to the GitHub release needs to be signed with your GPG key. + +Follow [these steps] to sign the release artifact and upload it to GitHub. +You can use [this script] to verify the contents of the tarball before signing it. + +Be sure to use the correct GPG key when signing the release artifact. + +```terminal +gpg --local-user --armor --detach-sign opentelemetry-go-.tar.gz +``` + +You can verify the signature with: + +```terminal +gpg --verify opentelemetry-go-.tar.gz.asc opentelemetry-go-.tar.gz +``` + +[these steps]: https://wiki.debian.org/Creating%20signed%20GitHub%20releases +[this script]: https://github.com/MrAlias/attest-sh + +## Post-Release + +### Contrib Repository + +Once verified be sure to [make a release for the `contrib` repository](https://github.com/open-telemetry/opentelemetry-go-contrib/blob/main/RELEASING.md) that uses this release. + +### Website Documentation + +Update the [Go instrumentation documentation] in the OpenTelemetry website under [content/en/docs/languages/go]. +Importantly, bump any package versions referenced to be the latest one you just released and ensure all code examples still compile and are accurate. + +[OpenTelemetry Semantic Conventions]: https://github.com/open-telemetry/semantic-conventions +[Go instrumentation documentation]: https://opentelemetry.io/docs/languages/go/ +[content/en/docs/languages/go]: https://github.com/open-telemetry/opentelemetry.io/tree/main/content/en/docs/languages/go + +### Close the milestone + +Once a release is made, ensure all issues that were fixed and PRs that were merged as part of this release are added to the corresponding milestone. +This helps track what changes were included in each release. + +- To find issues that haven't been included in a milestone, use this [GitHub search query](https://github.com/open-telemetry/opentelemetry-go/issues?q=is%3Aissue%20no%3Amilestone%20is%3Aclosed%20sort%3Aupdated-desc%20reason%3Acompleted%20-label%3AStale%20linked%3Apr) +- To find merged PRs that haven't been included in a milestone, use this [GitHub search query](https://github.com/open-telemetry/opentelemetry-go/pulls?q=is%3Apr+no%3Amilestone+is%3Amerged). + +Once all related issues and PRs have been added to the milestone, close the milestone. + +### Demo Repository + +Bump the dependencies in the following Go services: + +- [`accounting`](https://github.com/open-telemetry/opentelemetry-demo/tree/main/src/accounting) +- [`checkoutservice`](https://github.com/open-telemetry/opentelemetry-demo/tree/main/src/checkout) +- [`productcatalogservice`](https://github.com/open-telemetry/opentelemetry-demo/tree/main/src/product-catalog) + +### Close the `Version Release` issue + +Once the todo list in the `Version Release` issue is complete, close the issue. diff --git a/vendor/go.opentelemetry.io/otel/VERSIONING.md b/vendor/go.opentelemetry.io/otel/VERSIONING.md new file mode 100644 index 0000000000..b8cb605c16 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/VERSIONING.md @@ -0,0 +1,224 @@ +# Versioning + +This document describes the versioning policy for this repository. This policy +is designed so the following goals can be achieved. + +**Users are provided a codebase of value that is stable and secure.** + +## Policy + +* Versioning of this project will be idiomatic of a Go project using [Go + modules](https://github.com/golang/go/wiki/Modules). + * [Semantic import + versioning](https://github.com/golang/go/wiki/Modules#semantic-import-versioning) + will be used. + * Versions will comply with [semver + 2.0](https://semver.org/spec/v2.0.0.html) with the following exceptions. + * New methods may be added to exported API interfaces. All exported + interfaces that fall within this exception will include the following + paragraph in their public documentation. + + > Warning: methods may be added to this interface in minor releases. + + * If a module is version `v2` or higher, the major version of the module + must be included as a `/vN` at the end of the module paths used in + `go.mod` files (e.g., `module go.opentelemetry.io/otel/v2`, `require + go.opentelemetry.io/otel/v2 v2.0.1`) and in the package import path + (e.g., `import "go.opentelemetry.io/otel/v2/trace"`). This includes the + paths used in `go get` commands (e.g., `go get + go.opentelemetry.io/otel/v2@v2.0.1`). Note there is both a `/v2` and a + `@v2.0.1` in that example. One way to think about it is that the module + name now includes the `/v2`, so include `/v2` whenever you are using the + module name). + * If a module is version `v0` or `v1`, do not include the major version in + either the module path or the import path. + * Modules will be used to encapsulate signals and components. + * Experimental modules still under active development will be versioned at + `v0` to imply the stability guarantee defined by + [semver](https://semver.org/spec/v2.0.0.html#spec-item-4). + + > Major version zero (0.y.z) is for initial development. Anything MAY + > change at any time. The public API SHOULD NOT be considered stable. + + * Mature modules for which we guarantee a stable public API will be versioned + with a major version greater than `v0`. + * The decision to make a module stable will be made on a case-by-case + basis by the maintainers of this project. + * Experimental modules will start their versioning at `v0.0.0` and will + increment their minor version when backwards incompatible changes are + released and increment their patch version when backwards compatible + changes are released. + * All stable modules that use the same major version number will use the + same entire version number. + * Stable modules may be released with an incremented minor or patch + version even though that module has not been changed, but rather so + that it will remain at the same version as other stable modules that + did undergo change. + * When an experimental module becomes stable a new stable module version + will be released and will include this now stable module. The new + stable module version will be an increment of the minor version number + and will be applied to all existing stable modules as well as the newly + stable module being released. +* Versioning of the associated [contrib + repository](https://github.com/open-telemetry/opentelemetry-go-contrib) of + this project will be idiomatic of a Go project using [Go + modules](https://github.com/golang/go/wiki/Modules). + * [Semantic import + versioning](https://github.com/golang/go/wiki/Modules#semantic-import-versioning) + will be used. + * Versions will comply with [semver 2.0](https://semver.org/spec/v2.0.0.html). + * If a module is version `v2` or higher, the + major version of the module must be included as a `/vN` at the end of the + module paths used in `go.mod` files (e.g., `module + go.opentelemetry.io/contrib/instrumentation/host/v2`, `require + go.opentelemetry.io/contrib/instrumentation/host/v2 v2.0.1`) and in the + package import path (e.g., `import + "go.opentelemetry.io/contrib/instrumentation/host/v2"`). This includes + the paths used in `go get` commands (e.g., `go get + go.opentelemetry.io/contrib/instrumentation/host/v2@v2.0.1`. Note there + is both a `/v2` and a `@v2.0.1` in that example. One way to think about + it is that the module name now includes the `/v2`, so include `/v2` + whenever you are using the module name). + * If a module is version `v0` or `v1`, do not include the major version + in either the module path or the import path. + * In addition to public APIs, telemetry produced by stable instrumentation + will remain stable and backwards compatible. This is to avoid breaking + alerts and dashboard. + * Modules will be used to encapsulate instrumentation, detectors, exporters, + propagators, and any other independent sets of related components. + * Experimental modules still under active development will be versioned at + `v0` to imply the stability guarantee defined by + [semver](https://semver.org/spec/v2.0.0.html#spec-item-4). + + > Major version zero (0.y.z) is for initial development. Anything MAY + > change at any time. The public API SHOULD NOT be considered stable. + + * Mature modules for which we guarantee a stable public API and telemetry will + be versioned with a major version greater than `v0`. + * Experimental modules will start their versioning at `v0.0.0` and will + increment their minor version when backwards incompatible changes are + released and increment their patch version when backwards compatible + changes are released. + * Stable contrib modules cannot depend on experimental modules from this + project. + * All stable contrib modules of the same major version with this project + will use the same entire version as this project. + * Stable modules may be released with an incremented minor or patch + version even though that module's code has not been changed. Instead + the only change that will have been included is to have updated that + modules dependency on this project's stable APIs. + * When an experimental module in contrib becomes stable a new stable + module version will be released and will include this now stable + module. The new stable module version will be an increment of the minor + version number and will be applied to all existing stable contrib + modules, this project's modules, and the newly stable module being + released. + * Contrib modules will be kept up to date with this project's releases. + * Due to the dependency contrib modules will implicitly have on this + project's modules the release of stable contrib modules to match the + released version number will be staggered after this project's release. + There is no explicit time guarantee for how long after this projects + release the contrib release will be. Effort should be made to keep them + as close in time as possible. + * No additional stable release in this project can be made until the + contrib repository has a matching stable release. + * No release can be made in the contrib repository after this project's + stable release except for a stable release of the contrib repository. +* GitHub releases will be made for all releases. +* Go modules will be made available at Go package mirrors. + +## Example Versioning Lifecycle + +To better understand the implementation of the above policy the following +example is provided. This project is simplified to include only the following +modules and their versions: + +* `otel`: `v0.14.0` +* `otel/trace`: `v0.14.0` +* `otel/metric`: `v0.14.0` +* `otel/baggage`: `v0.14.0` +* `otel/sdk/trace`: `v0.14.0` +* `otel/sdk/metric`: `v0.14.0` + +These modules have been developed to a point where the `otel/trace`, +`otel/baggage`, and `otel/sdk/trace` modules have reached a point that they +should be considered for a stable release. The `otel/metric` and +`otel/sdk/metric` are still under active development and the `otel` module +depends on both `otel/trace` and `otel/metric`. + +The `otel` package is refactored to remove its dependencies on `otel/metric` so +it can be released as stable as well. With that done the following release +candidates are made: + +* `otel`: `v1.0.0-RC1` +* `otel/trace`: `v1.0.0-RC1` +* `otel/baggage`: `v1.0.0-RC1` +* `otel/sdk/trace`: `v1.0.0-RC1` + +The `otel/metric` and `otel/sdk/metric` modules remain at `v0.14.0`. + +A few minor issues are discovered in the `otel/trace` package. These issues are +resolved with some minor, but backwards incompatible, changes and are released +as a second release candidate: + +* `otel`: `v1.0.0-RC2` +* `otel/trace`: `v1.0.0-RC2` +* `otel/baggage`: `v1.0.0-RC2` +* `otel/sdk/trace`: `v1.0.0-RC2` + +Notice that all module version numbers are incremented to adhere to our +versioning policy. + +After these release candidates have been evaluated to satisfaction, they are +released as version `v1.0.0`. + +* `otel`: `v1.0.0` +* `otel/trace`: `v1.0.0` +* `otel/baggage`: `v1.0.0` +* `otel/sdk/trace`: `v1.0.0` + +Since both the `go` utility and the Go module system support [the semantic +versioning definition of +precedence](https://semver.org/spec/v2.0.0.html#spec-item-11), this release +will correctly be interpreted as the successor to the previous release +candidates. + +Active development of this project continues. The `otel/metric` module now has +backwards incompatible changes to its API that need to be released and the +`otel/baggage` module has a minor bug fix that needs to be released. The +following release is made: + +* `otel`: `v1.0.1` +* `otel/trace`: `v1.0.1` +* `otel/metric`: `v0.15.0` +* `otel/baggage`: `v1.0.1` +* `otel/sdk/trace`: `v1.0.1` +* `otel/sdk/metric`: `v0.15.0` + +Notice that, again, all stable module versions are incremented in unison and +the `otel/sdk/metric` package, which depends on the `otel/metric` package, also +bumped its version. This bump of the `otel/sdk/metric` package makes sense +given their coupling, though it is not explicitly required by our versioning +policy. + +As we progress, the `otel/metric` and `otel/sdk/metric` packages have reached a +point where they should be evaluated for stability. The `otel` module is +reintegrated with the `otel/metric` package and the following release is made: + +* `otel`: `v1.1.0-RC1` +* `otel/trace`: `v1.1.0-RC1` +* `otel/metric`: `v1.1.0-RC1` +* `otel/baggage`: `v1.1.0-RC1` +* `otel/sdk/trace`: `v1.1.0-RC1` +* `otel/sdk/metric`: `v1.1.0-RC1` + +All the modules are evaluated and determined to a viable stable release. They +are then released as version `v1.1.0` (the minor version is incremented to +indicate the addition of new signal). + +* `otel`: `v1.1.0` +* `otel/trace`: `v1.1.0` +* `otel/metric`: `v1.1.0` +* `otel/baggage`: `v1.1.0` +* `otel/sdk/trace`: `v1.1.0` +* `otel/sdk/metric`: `v1.1.0` diff --git a/vendor/go.opentelemetry.io/otel/attribute/README.md b/vendor/go.opentelemetry.io/otel/attribute/README.md new file mode 100644 index 0000000000..5b3da8f14c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/README.md @@ -0,0 +1,3 @@ +# Attribute + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/attribute)](https://pkg.go.dev/go.opentelemetry.io/otel/attribute) diff --git a/vendor/go.opentelemetry.io/otel/attribute/doc.go b/vendor/go.opentelemetry.io/otel/attribute/doc.go new file mode 100644 index 0000000000..eef51ebc2a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/doc.go @@ -0,0 +1,5 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package attribute provides key and value attributes. +package attribute // import "go.opentelemetry.io/otel/attribute" diff --git a/vendor/go.opentelemetry.io/otel/attribute/encoder.go b/vendor/go.opentelemetry.io/otel/attribute/encoder.go new file mode 100644 index 0000000000..318e42fcab --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/encoder.go @@ -0,0 +1,135 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +import ( + "bytes" + "sync" + "sync/atomic" +) + +type ( + // Encoder is a mechanism for serializing an attribute set into a specific + // string representation that supports caching, to avoid repeated + // serialization. An example could be an exporter encoding the attribute + // set into a wire representation. + Encoder interface { + // Encode returns the serialized encoding of the attribute set using + // its Iterator. This result may be cached by a attribute.Set. + Encode(iterator Iterator) string + + // ID returns a value that is unique for each class of attribute + // encoder. Attribute encoders allocate these using `NewEncoderID`. + ID() EncoderID + } + + // EncoderID is used to identify distinct Encoder + // implementations, for caching encoded results. + EncoderID struct { + value uint64 + } + + // defaultAttrEncoder uses a sync.Pool of buffers to reduce the number of + // allocations used in encoding attributes. This implementation encodes a + // comma-separated list of key=value, with '/'-escaping of '=', ',', and + // '\'. + defaultAttrEncoder struct { + // pool is a pool of attribute set builders. The buffers in this pool + // grow to a size that most attribute encodings will not allocate new + // memory. + pool sync.Pool // *bytes.Buffer + } +) + +// escapeChar is used to ensure uniqueness of the attribute encoding where +// keys or values contain either '=' or ','. Since there is no parser needed +// for this encoding and its only requirement is to be unique, this choice is +// arbitrary. Users will see these in some exporters (e.g., stdout), so the +// backslash ('\') is used as a conventional choice. +const escapeChar = '\\' + +var ( + _ Encoder = &defaultAttrEncoder{} + + // encoderIDCounter is for generating IDs for other attribute encoders. + encoderIDCounter uint64 + + defaultEncoderOnce sync.Once + defaultEncoderID = NewEncoderID() + defaultEncoderInstance *defaultAttrEncoder +) + +// NewEncoderID returns a unique attribute encoder ID. It should be called +// once per each type of attribute encoder. Preferably in init() or in var +// definition. +func NewEncoderID() EncoderID { + return EncoderID{value: atomic.AddUint64(&encoderIDCounter, 1)} +} + +// DefaultEncoder returns an attribute encoder that encodes attributes in such +// a way that each escaped attribute's key is followed by an equal sign and +// then by an escaped attribute's value. All key-value pairs are separated by +// a comma. +// +// Escaping is done by prepending a backslash before either a backslash, equal +// sign or a comma. +func DefaultEncoder() Encoder { + defaultEncoderOnce.Do(func() { + defaultEncoderInstance = &defaultAttrEncoder{ + pool: sync.Pool{ + New: func() interface{} { + return &bytes.Buffer{} + }, + }, + } + }) + return defaultEncoderInstance +} + +// Encode is a part of an implementation of the AttributeEncoder interface. +func (d *defaultAttrEncoder) Encode(iter Iterator) string { + buf := d.pool.Get().(*bytes.Buffer) + defer d.pool.Put(buf) + buf.Reset() + + for iter.Next() { + i, keyValue := iter.IndexedAttribute() + if i > 0 { + _, _ = buf.WriteRune(',') + } + copyAndEscape(buf, string(keyValue.Key)) + + _, _ = buf.WriteRune('=') + + if keyValue.Value.Type() == STRING { + copyAndEscape(buf, keyValue.Value.AsString()) + } else { + _, _ = buf.WriteString(keyValue.Value.Emit()) + } + } + return buf.String() +} + +// ID is a part of an implementation of the AttributeEncoder interface. +func (*defaultAttrEncoder) ID() EncoderID { + return defaultEncoderID +} + +// copyAndEscape escapes `=`, `,` and its own escape character (`\`), +// making the default encoding unique. +func copyAndEscape(buf *bytes.Buffer, val string) { + for _, ch := range val { + switch ch { + case '=', ',', escapeChar: + _, _ = buf.WriteRune(escapeChar) + } + _, _ = buf.WriteRune(ch) + } +} + +// Valid returns true if this encoder ID was allocated by +// `NewEncoderID`. Invalid encoder IDs will not be cached. +func (id EncoderID) Valid() bool { + return id.value != 0 +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/filter.go b/vendor/go.opentelemetry.io/otel/attribute/filter.go new file mode 100644 index 0000000000..3eeaa5d442 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/filter.go @@ -0,0 +1,49 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +// Filter supports removing certain attributes from attribute sets. When +// the filter returns true, the attribute will be kept in the filtered +// attribute set. When the filter returns false, the attribute is excluded +// from the filtered attribute set, and the attribute instead appears in +// the removed list of excluded attributes. +type Filter func(KeyValue) bool + +// NewAllowKeysFilter returns a Filter that only allows attributes with one of +// the provided keys. +// +// If keys is empty a deny-all filter is returned. +func NewAllowKeysFilter(keys ...Key) Filter { + if len(keys) <= 0 { + return func(kv KeyValue) bool { return false } + } + + allowed := make(map[Key]struct{}, len(keys)) + for _, k := range keys { + allowed[k] = struct{}{} + } + return func(kv KeyValue) bool { + _, ok := allowed[kv.Key] + return ok + } +} + +// NewDenyKeysFilter returns a Filter that only allows attributes +// that do not have one of the provided keys. +// +// If keys is empty an allow-all filter is returned. +func NewDenyKeysFilter(keys ...Key) Filter { + if len(keys) <= 0 { + return func(kv KeyValue) bool { return true } + } + + forbid := make(map[Key]struct{}, len(keys)) + for _, k := range keys { + forbid[k] = struct{}{} + } + return func(kv KeyValue) bool { + _, ok := forbid[kv.Key] + return !ok + } +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go b/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go new file mode 100644 index 0000000000..b76d2bbfdb --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/internal/attribute.go @@ -0,0 +1,96 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package attribute provide several helper functions for some commonly used +logic of processing attributes. +*/ +package attribute // import "go.opentelemetry.io/otel/attribute/internal" + +import ( + "reflect" +) + +// BoolSliceValue converts a bool slice into an array with same elements as slice. +func BoolSliceValue(v []bool) interface{} { + var zero bool + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeOf(zero))).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() +} + +// Int64SliceValue converts an int64 slice into an array with same elements as slice. +func Int64SliceValue(v []int64) interface{} { + var zero int64 + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeOf(zero))).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() +} + +// Float64SliceValue converts a float64 slice into an array with same elements as slice. +func Float64SliceValue(v []float64) interface{} { + var zero float64 + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeOf(zero))).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() +} + +// StringSliceValue converts a string slice into an array with same elements as slice. +func StringSliceValue(v []string) interface{} { + var zero string + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeOf(zero))).Elem() + reflect.Copy(cp, reflect.ValueOf(v)) + return cp.Interface() +} + +// AsBoolSlice converts a bool array into a slice into with same elements as array. +func AsBoolSlice(v interface{}) []bool { + rv := reflect.ValueOf(v) + if rv.Type().Kind() != reflect.Array { + return nil + } + cpy := make([]bool, rv.Len()) + if len(cpy) > 0 { + _ = reflect.Copy(reflect.ValueOf(cpy), rv) + } + return cpy +} + +// AsInt64Slice converts an int64 array into a slice into with same elements as array. +func AsInt64Slice(v interface{}) []int64 { + rv := reflect.ValueOf(v) + if rv.Type().Kind() != reflect.Array { + return nil + } + cpy := make([]int64, rv.Len()) + if len(cpy) > 0 { + _ = reflect.Copy(reflect.ValueOf(cpy), rv) + } + return cpy +} + +// AsFloat64Slice converts a float64 array into a slice into with same elements as array. +func AsFloat64Slice(v interface{}) []float64 { + rv := reflect.ValueOf(v) + if rv.Type().Kind() != reflect.Array { + return nil + } + cpy := make([]float64, rv.Len()) + if len(cpy) > 0 { + _ = reflect.Copy(reflect.ValueOf(cpy), rv) + } + return cpy +} + +// AsStringSlice converts a string array into a slice into with same elements as array. +func AsStringSlice(v interface{}) []string { + rv := reflect.ValueOf(v) + if rv.Type().Kind() != reflect.Array { + return nil + } + cpy := make([]string, rv.Len()) + if len(cpy) > 0 { + _ = reflect.Copy(reflect.ValueOf(cpy), rv) + } + return cpy +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/iterator.go b/vendor/go.opentelemetry.io/otel/attribute/iterator.go new file mode 100644 index 0000000000..f2ba89ce4b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/iterator.go @@ -0,0 +1,150 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +// Iterator allows iterating over the set of attributes in order, sorted by +// key. +type Iterator struct { + storage *Set + idx int +} + +// MergeIterator supports iterating over two sets of attributes while +// eliminating duplicate values from the combined set. The first iterator +// value takes precedence. +type MergeIterator struct { + one oneIterator + two oneIterator + current KeyValue +} + +type oneIterator struct { + iter Iterator + done bool + attr KeyValue +} + +// Next moves the iterator to the next position. Returns false if there are no +// more attributes. +func (i *Iterator) Next() bool { + i.idx++ + return i.idx < i.Len() +} + +// Label returns current KeyValue. Must be called only after Next returns +// true. +// +// Deprecated: Use Attribute instead. +func (i *Iterator) Label() KeyValue { + return i.Attribute() +} + +// Attribute returns the current KeyValue of the Iterator. It must be called +// only after Next returns true. +func (i *Iterator) Attribute() KeyValue { + kv, _ := i.storage.Get(i.idx) + return kv +} + +// IndexedLabel returns current index and attribute. Must be called only +// after Next returns true. +// +// Deprecated: Use IndexedAttribute instead. +func (i *Iterator) IndexedLabel() (int, KeyValue) { + return i.idx, i.Attribute() +} + +// IndexedAttribute returns current index and attribute. Must be called only +// after Next returns true. +func (i *Iterator) IndexedAttribute() (int, KeyValue) { + return i.idx, i.Attribute() +} + +// Len returns a number of attributes in the iterated set. +func (i *Iterator) Len() int { + return i.storage.Len() +} + +// ToSlice is a convenience function that creates a slice of attributes from +// the passed iterator. The iterator is set up to start from the beginning +// before creating the slice. +func (i *Iterator) ToSlice() []KeyValue { + l := i.Len() + if l == 0 { + return nil + } + i.idx = -1 + slice := make([]KeyValue, 0, l) + for i.Next() { + slice = append(slice, i.Attribute()) + } + return slice +} + +// NewMergeIterator returns a MergeIterator for merging two attribute sets. +// Duplicates are resolved by taking the value from the first set. +func NewMergeIterator(s1, s2 *Set) MergeIterator { + mi := MergeIterator{ + one: makeOne(s1.Iter()), + two: makeOne(s2.Iter()), + } + return mi +} + +func makeOne(iter Iterator) oneIterator { + oi := oneIterator{ + iter: iter, + } + oi.advance() + return oi +} + +func (oi *oneIterator) advance() { + if oi.done = !oi.iter.Next(); !oi.done { + oi.attr = oi.iter.Attribute() + } +} + +// Next returns true if there is another attribute available. +func (m *MergeIterator) Next() bool { + if m.one.done && m.two.done { + return false + } + if m.one.done { + m.current = m.two.attr + m.two.advance() + return true + } + if m.two.done { + m.current = m.one.attr + m.one.advance() + return true + } + if m.one.attr.Key == m.two.attr.Key { + m.current = m.one.attr // first iterator attribute value wins + m.one.advance() + m.two.advance() + return true + } + if m.one.attr.Key < m.two.attr.Key { + m.current = m.one.attr + m.one.advance() + return true + } + m.current = m.two.attr + m.two.advance() + return true +} + +// Label returns the current value after Next() returns true. +// +// Deprecated: Use Attribute instead. +func (m *MergeIterator) Label() KeyValue { + return m.current +} + +// Attribute returns the current value after Next() returns true. +func (m *MergeIterator) Attribute() KeyValue { + return m.current +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/key.go b/vendor/go.opentelemetry.io/otel/attribute/key.go new file mode 100644 index 0000000000..d9a22c6502 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/key.go @@ -0,0 +1,123 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +// Key represents the key part in key-value pairs. It's a string. The +// allowed character set in the key depends on the use of the key. +type Key string + +// Bool creates a KeyValue instance with a BOOL Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Bool(name, value). +func (k Key) Bool(v bool) KeyValue { + return KeyValue{ + Key: k, + Value: BoolValue(v), + } +} + +// BoolSlice creates a KeyValue instance with a BOOLSLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- BoolSlice(name, value). +func (k Key) BoolSlice(v []bool) KeyValue { + return KeyValue{ + Key: k, + Value: BoolSliceValue(v), + } +} + +// Int creates a KeyValue instance with an INT64 Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Int(name, value). +func (k Key) Int(v int) KeyValue { + return KeyValue{ + Key: k, + Value: IntValue(v), + } +} + +// IntSlice creates a KeyValue instance with an INT64SLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- IntSlice(name, value). +func (k Key) IntSlice(v []int) KeyValue { + return KeyValue{ + Key: k, + Value: IntSliceValue(v), + } +} + +// Int64 creates a KeyValue instance with an INT64 Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Int64(name, value). +func (k Key) Int64(v int64) KeyValue { + return KeyValue{ + Key: k, + Value: Int64Value(v), + } +} + +// Int64Slice creates a KeyValue instance with an INT64SLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Int64Slice(name, value). +func (k Key) Int64Slice(v []int64) KeyValue { + return KeyValue{ + Key: k, + Value: Int64SliceValue(v), + } +} + +// Float64 creates a KeyValue instance with a FLOAT64 Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Float64(name, value). +func (k Key) Float64(v float64) KeyValue { + return KeyValue{ + Key: k, + Value: Float64Value(v), + } +} + +// Float64Slice creates a KeyValue instance with a FLOAT64SLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- Float64(name, value). +func (k Key) Float64Slice(v []float64) KeyValue { + return KeyValue{ + Key: k, + Value: Float64SliceValue(v), + } +} + +// String creates a KeyValue instance with a STRING Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- String(name, value). +func (k Key) String(v string) KeyValue { + return KeyValue{ + Key: k, + Value: StringValue(v), + } +} + +// StringSlice creates a KeyValue instance with a STRINGSLICE Value. +// +// If creating both a key and value at the same time, use the provided +// convenience function instead -- StringSlice(name, value). +func (k Key) StringSlice(v []string) KeyValue { + return KeyValue{ + Key: k, + Value: StringSliceValue(v), + } +} + +// Defined returns true for non-empty keys. +func (k Key) Defined() bool { + return len(k) != 0 +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/kv.go b/vendor/go.opentelemetry.io/otel/attribute/kv.go new file mode 100644 index 0000000000..3028f9a40f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/kv.go @@ -0,0 +1,75 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +import ( + "fmt" +) + +// KeyValue holds a key and value pair. +type KeyValue struct { + Key Key + Value Value +} + +// Valid returns if kv is a valid OpenTelemetry attribute. +func (kv KeyValue) Valid() bool { + return kv.Key.Defined() && kv.Value.Type() != INVALID +} + +// Bool creates a KeyValue with a BOOL Value type. +func Bool(k string, v bool) KeyValue { + return Key(k).Bool(v) +} + +// BoolSlice creates a KeyValue with a BOOLSLICE Value type. +func BoolSlice(k string, v []bool) KeyValue { + return Key(k).BoolSlice(v) +} + +// Int creates a KeyValue with an INT64 Value type. +func Int(k string, v int) KeyValue { + return Key(k).Int(v) +} + +// IntSlice creates a KeyValue with an INT64SLICE Value type. +func IntSlice(k string, v []int) KeyValue { + return Key(k).IntSlice(v) +} + +// Int64 creates a KeyValue with an INT64 Value type. +func Int64(k string, v int64) KeyValue { + return Key(k).Int64(v) +} + +// Int64Slice creates a KeyValue with an INT64SLICE Value type. +func Int64Slice(k string, v []int64) KeyValue { + return Key(k).Int64Slice(v) +} + +// Float64 creates a KeyValue with a FLOAT64 Value type. +func Float64(k string, v float64) KeyValue { + return Key(k).Float64(v) +} + +// Float64Slice creates a KeyValue with a FLOAT64SLICE Value type. +func Float64Slice(k string, v []float64) KeyValue { + return Key(k).Float64Slice(v) +} + +// String creates a KeyValue with a STRING Value type. +func String(k, v string) KeyValue { + return Key(k).String(v) +} + +// StringSlice creates a KeyValue with a STRINGSLICE Value type. +func StringSlice(k string, v []string) KeyValue { + return Key(k).StringSlice(v) +} + +// Stringer creates a new key-value pair with a passed name and a string +// value generated by the passed Stringer interface. +func Stringer(k string, v fmt.Stringer) KeyValue { + return Key(k).String(v.String()) +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/rawhelpers.go b/vendor/go.opentelemetry.io/otel/attribute/rawhelpers.go new file mode 100644 index 0000000000..5791c6e7aa --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/rawhelpers.go @@ -0,0 +1,37 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +import ( + "math" +) + +func boolToRaw(b bool) uint64 { // nolint:revive // b is not a control flag. + if b { + return 1 + } + return 0 +} + +func rawToBool(r uint64) bool { + return r != 0 +} + +func int64ToRaw(i int64) uint64 { + // Assumes original was a valid int64 (overflow not checked). + return uint64(i) // nolint: gosec +} + +func rawToInt64(r uint64) int64 { + // Assumes original was a valid int64 (overflow not checked). + return int64(r) // nolint: gosec +} + +func float64ToRaw(f float64) uint64 { + return math.Float64bits(f) +} + +func rawToFloat64(r uint64) float64 { + return math.Float64frombits(r) +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/set.go b/vendor/go.opentelemetry.io/otel/attribute/set.go new file mode 100644 index 0000000000..6cbefceadf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/set.go @@ -0,0 +1,411 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +import ( + "cmp" + "encoding/json" + "reflect" + "slices" + "sort" +) + +type ( + // Set is the representation for a distinct attribute set. It manages an + // immutable set of attributes, with an internal cache for storing + // attribute encodings. + // + // This type will remain comparable for backwards compatibility. The + // equivalence of Sets across versions is not guaranteed to be stable. + // Prior versions may find two Sets to be equal or not when compared + // directly (i.e. ==), but subsequent versions may not. Users should use + // the Equals method to ensure stable equivalence checking. + // + // Users should also use the Distinct returned from Equivalent as a map key + // instead of a Set directly. In addition to that type providing guarantees + // on stable equivalence, it may also provide performance improvements. + Set struct { + equivalent Distinct + } + + // Distinct is a unique identifier of a Set. + // + // Distinct is designed to be ensures equivalence stability: comparisons + // will return the save value across versions. For this reason, Distinct + // should always be used as a map key instead of a Set. + Distinct struct { + iface interface{} + } + + // Sortable implements sort.Interface, used for sorting KeyValue. + // + // Deprecated: This type is no longer used. It was added as a performance + // optimization for Go < 1.21 that is no longer needed (Go < 1.21 is no + // longer supported by the module). + Sortable []KeyValue +) + +var ( + // keyValueType is used in computeDistinctReflect. + keyValueType = reflect.TypeOf(KeyValue{}) + + // emptySet is returned for empty attribute sets. + emptySet = &Set{ + equivalent: Distinct{ + iface: [0]KeyValue{}, + }, + } +) + +// EmptySet returns a reference to a Set with no elements. +// +// This is a convenience provided for optimized calling utility. +func EmptySet() *Set { + return emptySet +} + +// reflectValue abbreviates reflect.ValueOf(d). +func (d Distinct) reflectValue() reflect.Value { + return reflect.ValueOf(d.iface) +} + +// Valid returns true if this value refers to a valid Set. +func (d Distinct) Valid() bool { + return d.iface != nil +} + +// Len returns the number of attributes in this set. +func (l *Set) Len() int { + if l == nil || !l.equivalent.Valid() { + return 0 + } + return l.equivalent.reflectValue().Len() +} + +// Get returns the KeyValue at ordered position idx in this set. +func (l *Set) Get(idx int) (KeyValue, bool) { + if l == nil || !l.equivalent.Valid() { + return KeyValue{}, false + } + value := l.equivalent.reflectValue() + + if idx >= 0 && idx < value.Len() { + // Note: The Go compiler successfully avoids an allocation for + // the interface{} conversion here: + return value.Index(idx).Interface().(KeyValue), true + } + + return KeyValue{}, false +} + +// Value returns the value of a specified key in this set. +func (l *Set) Value(k Key) (Value, bool) { + if l == nil || !l.equivalent.Valid() { + return Value{}, false + } + rValue := l.equivalent.reflectValue() + vlen := rValue.Len() + + idx := sort.Search(vlen, func(idx int) bool { + return rValue.Index(idx).Interface().(KeyValue).Key >= k + }) + if idx >= vlen { + return Value{}, false + } + keyValue := rValue.Index(idx).Interface().(KeyValue) + if k == keyValue.Key { + return keyValue.Value, true + } + return Value{}, false +} + +// HasValue tests whether a key is defined in this set. +func (l *Set) HasValue(k Key) bool { + if l == nil { + return false + } + _, ok := l.Value(k) + return ok +} + +// Iter returns an iterator for visiting the attributes in this set. +func (l *Set) Iter() Iterator { + return Iterator{ + storage: l, + idx: -1, + } +} + +// ToSlice returns the set of attributes belonging to this set, sorted, where +// keys appear no more than once. +func (l *Set) ToSlice() []KeyValue { + iter := l.Iter() + return iter.ToSlice() +} + +// Equivalent returns a value that may be used as a map key. The Distinct type +// guarantees that the result will equal the equivalent. Distinct value of any +// attribute set with the same elements as this, where sets are made unique by +// choosing the last value in the input for any given key. +func (l *Set) Equivalent() Distinct { + if l == nil || !l.equivalent.Valid() { + return emptySet.equivalent + } + return l.equivalent +} + +// Equals returns true if the argument set is equivalent to this set. +func (l *Set) Equals(o *Set) bool { + return l.Equivalent() == o.Equivalent() +} + +// Encoded returns the encoded form of this set, according to encoder. +func (l *Set) Encoded(encoder Encoder) string { + if l == nil || encoder == nil { + return "" + } + + return encoder.Encode(l.Iter()) +} + +func empty() Set { + return Set{ + equivalent: emptySet.equivalent, + } +} + +// NewSet returns a new Set. See the documentation for +// NewSetWithSortableFiltered for more details. +// +// Except for empty sets, this method adds an additional allocation compared +// with calls that include a Sortable. +func NewSet(kvs ...KeyValue) Set { + s, _ := NewSetWithFiltered(kvs, nil) + return s +} + +// NewSetWithSortable returns a new Set. See the documentation for +// NewSetWithSortableFiltered for more details. +// +// This call includes a Sortable option as a memory optimization. +// +// Deprecated: Use [NewSet] instead. +func NewSetWithSortable(kvs []KeyValue, _ *Sortable) Set { + s, _ := NewSetWithFiltered(kvs, nil) + return s +} + +// NewSetWithFiltered returns a new Set. See the documentation for +// NewSetWithSortableFiltered for more details. +// +// This call includes a Filter to include/exclude attribute keys from the +// return value. Excluded keys are returned as a slice of attribute values. +func NewSetWithFiltered(kvs []KeyValue, filter Filter) (Set, []KeyValue) { + // Check for empty set. + if len(kvs) == 0 { + return empty(), nil + } + + // Stable sort so the following de-duplication can implement + // last-value-wins semantics. + slices.SortStableFunc(kvs, func(a, b KeyValue) int { + return cmp.Compare(a.Key, b.Key) + }) + + position := len(kvs) - 1 + offset := position - 1 + + // The requirements stated above require that the stable + // result be placed in the end of the input slice, while + // overwritten values are swapped to the beginning. + // + // De-duplicate with last-value-wins semantics. Preserve + // duplicate values at the beginning of the input slice. + for ; offset >= 0; offset-- { + if kvs[offset].Key == kvs[position].Key { + continue + } + position-- + kvs[offset], kvs[position] = kvs[position], kvs[offset] + } + kvs = kvs[position:] + + if filter != nil { + if div := filteredToFront(kvs, filter); div != 0 { + return Set{equivalent: computeDistinct(kvs[div:])}, kvs[:div] + } + } + return Set{equivalent: computeDistinct(kvs)}, nil +} + +// NewSetWithSortableFiltered returns a new Set. +// +// Duplicate keys are eliminated by taking the last value. This +// re-orders the input slice so that unique last-values are contiguous +// at the end of the slice. +// +// This ensures the following: +// +// - Last-value-wins semantics +// - Caller sees the reordering, but doesn't lose values +// - Repeated call preserve last-value wins. +// +// Note that methods are defined on Set, although this returns Set. Callers +// can avoid memory allocations by: +// +// - allocating a Sortable for use as a temporary in this method +// - allocating a Set for storing the return value of this constructor. +// +// The result maintains a cache of encoded attributes, by attribute.EncoderID. +// This value should not be copied after its first use. +// +// The second []KeyValue return value is a list of attributes that were +// excluded by the Filter (if non-nil). +// +// Deprecated: Use [NewSetWithFiltered] instead. +func NewSetWithSortableFiltered(kvs []KeyValue, _ *Sortable, filter Filter) (Set, []KeyValue) { + return NewSetWithFiltered(kvs, filter) +} + +// filteredToFront filters slice in-place using keep function. All KeyValues that need to +// be removed are moved to the front. All KeyValues that need to be kept are +// moved (in-order) to the back. The index for the first KeyValue to be kept is +// returned. +func filteredToFront(slice []KeyValue, keep Filter) int { + n := len(slice) + j := n + for i := n - 1; i >= 0; i-- { + if keep(slice[i]) { + j-- + slice[i], slice[j] = slice[j], slice[i] + } + } + return j +} + +// Filter returns a filtered copy of this Set. See the documentation for +// NewSetWithSortableFiltered for more details. +func (l *Set) Filter(re Filter) (Set, []KeyValue) { + if re == nil { + return *l, nil + } + + // Iterate in reverse to the first attribute that will be filtered out. + n := l.Len() + first := n - 1 + for ; first >= 0; first-- { + kv, _ := l.Get(first) + if !re(kv) { + break + } + } + + // No attributes will be dropped, return the immutable Set l and nil. + if first < 0 { + return *l, nil + } + + // Copy now that we know we need to return a modified set. + // + // Do not do this in-place on the underlying storage of *Set l. Sets are + // immutable and filtering should not change this. + slice := l.ToSlice() + + // Don't re-iterate the slice if only slice[0] is filtered. + if first == 0 { + // It is safe to assume len(slice) >= 1 given we found at least one + // attribute above that needs to be filtered out. + return Set{equivalent: computeDistinct(slice[1:])}, slice[:1] + } + + // Move the filtered slice[first] to the front (preserving order). + kv := slice[first] + copy(slice[1:first+1], slice[:first]) + slice[0] = kv + + // Do not re-evaluate re(slice[first+1:]). + div := filteredToFront(slice[1:first+1], re) + 1 + return Set{equivalent: computeDistinct(slice[div:])}, slice[:div] +} + +// computeDistinct returns a Distinct using either the fixed- or +// reflect-oriented code path, depending on the size of the input. The input +// slice is assumed to already be sorted and de-duplicated. +func computeDistinct(kvs []KeyValue) Distinct { + iface := computeDistinctFixed(kvs) + if iface == nil { + iface = computeDistinctReflect(kvs) + } + return Distinct{ + iface: iface, + } +} + +// computeDistinctFixed computes a Distinct for small slices. It returns nil +// if the input is too large for this code path. +func computeDistinctFixed(kvs []KeyValue) interface{} { + switch len(kvs) { + case 1: + return [1]KeyValue(kvs) + case 2: + return [2]KeyValue(kvs) + case 3: + return [3]KeyValue(kvs) + case 4: + return [4]KeyValue(kvs) + case 5: + return [5]KeyValue(kvs) + case 6: + return [6]KeyValue(kvs) + case 7: + return [7]KeyValue(kvs) + case 8: + return [8]KeyValue(kvs) + case 9: + return [9]KeyValue(kvs) + case 10: + return [10]KeyValue(kvs) + default: + return nil + } +} + +// computeDistinctReflect computes a Distinct using reflection, works for any +// size input. +func computeDistinctReflect(kvs []KeyValue) interface{} { + at := reflect.New(reflect.ArrayOf(len(kvs), keyValueType)).Elem() + for i, keyValue := range kvs { + *(at.Index(i).Addr().Interface().(*KeyValue)) = keyValue + } + return at.Interface() +} + +// MarshalJSON returns the JSON encoding of the Set. +func (l *Set) MarshalJSON() ([]byte, error) { + return json.Marshal(l.equivalent.iface) +} + +// MarshalLog is the marshaling function used by the logging system to represent this Set. +func (l Set) MarshalLog() interface{} { + kvs := make(map[string]string) + for _, kv := range l.ToSlice() { + kvs[string(kv.Key)] = kv.Value.Emit() + } + return kvs +} + +// Len implements sort.Interface. +func (l *Sortable) Len() int { + return len(*l) +} + +// Swap implements sort.Interface. +func (l *Sortable) Swap(i, j int) { + (*l)[i], (*l)[j] = (*l)[j], (*l)[i] +} + +// Less implements sort.Interface. +func (l *Sortable) Less(i, j int) bool { + return (*l)[i].Key < (*l)[j].Key +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/type_string.go b/vendor/go.opentelemetry.io/otel/attribute/type_string.go new file mode 100644 index 0000000000..e584b24776 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/type_string.go @@ -0,0 +1,31 @@ +// Code generated by "stringer -type=Type"; DO NOT EDIT. + +package attribute + +import "strconv" + +func _() { + // An "invalid array index" compiler error signifies that the constant values have changed. + // Re-run the stringer command to generate them again. + var x [1]struct{} + _ = x[INVALID-0] + _ = x[BOOL-1] + _ = x[INT64-2] + _ = x[FLOAT64-3] + _ = x[STRING-4] + _ = x[BOOLSLICE-5] + _ = x[INT64SLICE-6] + _ = x[FLOAT64SLICE-7] + _ = x[STRINGSLICE-8] +} + +const _Type_name = "INVALIDBOOLINT64FLOAT64STRINGBOOLSLICEINT64SLICEFLOAT64SLICESTRINGSLICE" + +var _Type_index = [...]uint8{0, 7, 11, 16, 23, 29, 38, 48, 60, 71} + +func (i Type) String() string { + if i < 0 || i >= Type(len(_Type_index)-1) { + return "Type(" + strconv.FormatInt(int64(i), 10) + ")" + } + return _Type_name[_Type_index[i]:_Type_index[i+1]] +} diff --git a/vendor/go.opentelemetry.io/otel/attribute/value.go b/vendor/go.opentelemetry.io/otel/attribute/value.go new file mode 100644 index 0000000000..817eecacf1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/attribute/value.go @@ -0,0 +1,270 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package attribute // import "go.opentelemetry.io/otel/attribute" + +import ( + "encoding/json" + "fmt" + "reflect" + "strconv" + + attribute "go.opentelemetry.io/otel/attribute/internal" +) + +//go:generate stringer -type=Type + +// Type describes the type of the data Value holds. +type Type int // nolint: revive // redefines builtin Type. + +// Value represents the value part in key-value pairs. +type Value struct { + vtype Type + numeric uint64 + stringly string + slice interface{} +} + +const ( + // INVALID is used for a Value with no value set. + INVALID Type = iota + // BOOL is a boolean Type Value. + BOOL + // INT64 is a 64-bit signed integral Type Value. + INT64 + // FLOAT64 is a 64-bit floating point Type Value. + FLOAT64 + // STRING is a string Type Value. + STRING + // BOOLSLICE is a slice of booleans Type Value. + BOOLSLICE + // INT64SLICE is a slice of 64-bit signed integral numbers Type Value. + INT64SLICE + // FLOAT64SLICE is a slice of 64-bit floating point numbers Type Value. + FLOAT64SLICE + // STRINGSLICE is a slice of strings Type Value. + STRINGSLICE +) + +// BoolValue creates a BOOL Value. +func BoolValue(v bool) Value { + return Value{ + vtype: BOOL, + numeric: boolToRaw(v), + } +} + +// BoolSliceValue creates a BOOLSLICE Value. +func BoolSliceValue(v []bool) Value { + return Value{vtype: BOOLSLICE, slice: attribute.BoolSliceValue(v)} +} + +// IntValue creates an INT64 Value. +func IntValue(v int) Value { + return Int64Value(int64(v)) +} + +// IntSliceValue creates an INTSLICE Value. +func IntSliceValue(v []int) Value { + var int64Val int64 + cp := reflect.New(reflect.ArrayOf(len(v), reflect.TypeOf(int64Val))) + for i, val := range v { + cp.Elem().Index(i).SetInt(int64(val)) + } + return Value{ + vtype: INT64SLICE, + slice: cp.Elem().Interface(), + } +} + +// Int64Value creates an INT64 Value. +func Int64Value(v int64) Value { + return Value{ + vtype: INT64, + numeric: int64ToRaw(v), + } +} + +// Int64SliceValue creates an INT64SLICE Value. +func Int64SliceValue(v []int64) Value { + return Value{vtype: INT64SLICE, slice: attribute.Int64SliceValue(v)} +} + +// Float64Value creates a FLOAT64 Value. +func Float64Value(v float64) Value { + return Value{ + vtype: FLOAT64, + numeric: float64ToRaw(v), + } +} + +// Float64SliceValue creates a FLOAT64SLICE Value. +func Float64SliceValue(v []float64) Value { + return Value{vtype: FLOAT64SLICE, slice: attribute.Float64SliceValue(v)} +} + +// StringValue creates a STRING Value. +func StringValue(v string) Value { + return Value{ + vtype: STRING, + stringly: v, + } +} + +// StringSliceValue creates a STRINGSLICE Value. +func StringSliceValue(v []string) Value { + return Value{vtype: STRINGSLICE, slice: attribute.StringSliceValue(v)} +} + +// Type returns a type of the Value. +func (v Value) Type() Type { + return v.vtype +} + +// AsBool returns the bool value. Make sure that the Value's type is +// BOOL. +func (v Value) AsBool() bool { + return rawToBool(v.numeric) +} + +// AsBoolSlice returns the []bool value. Make sure that the Value's type is +// BOOLSLICE. +func (v Value) AsBoolSlice() []bool { + if v.vtype != BOOLSLICE { + return nil + } + return v.asBoolSlice() +} + +func (v Value) asBoolSlice() []bool { + return attribute.AsBoolSlice(v.slice) +} + +// AsInt64 returns the int64 value. Make sure that the Value's type is +// INT64. +func (v Value) AsInt64() int64 { + return rawToInt64(v.numeric) +} + +// AsInt64Slice returns the []int64 value. Make sure that the Value's type is +// INT64SLICE. +func (v Value) AsInt64Slice() []int64 { + if v.vtype != INT64SLICE { + return nil + } + return v.asInt64Slice() +} + +func (v Value) asInt64Slice() []int64 { + return attribute.AsInt64Slice(v.slice) +} + +// AsFloat64 returns the float64 value. Make sure that the Value's +// type is FLOAT64. +func (v Value) AsFloat64() float64 { + return rawToFloat64(v.numeric) +} + +// AsFloat64Slice returns the []float64 value. Make sure that the Value's type is +// FLOAT64SLICE. +func (v Value) AsFloat64Slice() []float64 { + if v.vtype != FLOAT64SLICE { + return nil + } + return v.asFloat64Slice() +} + +func (v Value) asFloat64Slice() []float64 { + return attribute.AsFloat64Slice(v.slice) +} + +// AsString returns the string value. Make sure that the Value's type +// is STRING. +func (v Value) AsString() string { + return v.stringly +} + +// AsStringSlice returns the []string value. Make sure that the Value's type is +// STRINGSLICE. +func (v Value) AsStringSlice() []string { + if v.vtype != STRINGSLICE { + return nil + } + return v.asStringSlice() +} + +func (v Value) asStringSlice() []string { + return attribute.AsStringSlice(v.slice) +} + +type unknownValueType struct{} + +// AsInterface returns Value's data as interface{}. +func (v Value) AsInterface() interface{} { + switch v.Type() { + case BOOL: + return v.AsBool() + case BOOLSLICE: + return v.asBoolSlice() + case INT64: + return v.AsInt64() + case INT64SLICE: + return v.asInt64Slice() + case FLOAT64: + return v.AsFloat64() + case FLOAT64SLICE: + return v.asFloat64Slice() + case STRING: + return v.stringly + case STRINGSLICE: + return v.asStringSlice() + } + return unknownValueType{} +} + +// Emit returns a string representation of Value's data. +func (v Value) Emit() string { + switch v.Type() { + case BOOLSLICE: + return fmt.Sprint(v.asBoolSlice()) + case BOOL: + return strconv.FormatBool(v.AsBool()) + case INT64SLICE: + j, err := json.Marshal(v.asInt64Slice()) + if err != nil { + return fmt.Sprintf("invalid: %v", v.asInt64Slice()) + } + return string(j) + case INT64: + return strconv.FormatInt(v.AsInt64(), 10) + case FLOAT64SLICE: + j, err := json.Marshal(v.asFloat64Slice()) + if err != nil { + return fmt.Sprintf("invalid: %v", v.asFloat64Slice()) + } + return string(j) + case FLOAT64: + return fmt.Sprint(v.AsFloat64()) + case STRINGSLICE: + j, err := json.Marshal(v.asStringSlice()) + if err != nil { + return fmt.Sprintf("invalid: %v", v.asStringSlice()) + } + return string(j) + case STRING: + return v.stringly + default: + return "unknown" + } +} + +// MarshalJSON returns the JSON encoding of the Value. +func (v Value) MarshalJSON() ([]byte, error) { + var jsonVal struct { + Type string + Value interface{} + } + jsonVal.Type = v.Type().String() + jsonVal.Value = v.AsInterface() + return json.Marshal(jsonVal) +} diff --git a/vendor/go.opentelemetry.io/otel/baggage/README.md b/vendor/go.opentelemetry.io/otel/baggage/README.md new file mode 100644 index 0000000000..7d798435e1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/baggage/README.md @@ -0,0 +1,3 @@ +# Baggage + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/baggage)](https://pkg.go.dev/go.opentelemetry.io/otel/baggage) diff --git a/vendor/go.opentelemetry.io/otel/baggage/baggage.go b/vendor/go.opentelemetry.io/otel/baggage/baggage.go new file mode 100644 index 0000000000..0e1fe24220 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/baggage/baggage.go @@ -0,0 +1,1018 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package baggage // import "go.opentelemetry.io/otel/baggage" + +import ( + "errors" + "fmt" + "net/url" + "strings" + "unicode/utf8" + + "go.opentelemetry.io/otel/internal/baggage" +) + +const ( + maxMembers = 180 + maxBytesPerMembers = 4096 + maxBytesPerBaggageString = 8192 + + listDelimiter = "," + keyValueDelimiter = "=" + propertyDelimiter = ";" +) + +var ( + errInvalidKey = errors.New("invalid key") + errInvalidValue = errors.New("invalid value") + errInvalidProperty = errors.New("invalid baggage list-member property") + errInvalidMember = errors.New("invalid baggage list-member") + errMemberNumber = errors.New("too many list-members in baggage-string") + errMemberBytes = errors.New("list-member too large") + errBaggageBytes = errors.New("baggage-string too large") +) + +// Property is an additional metadata entry for a baggage list-member. +type Property struct { + key, value string + + // hasValue indicates if a zero-value value means the property does not + // have a value or if it was the zero-value. + hasValue bool +} + +// NewKeyProperty returns a new Property for key. +// +// The passed key must be valid, non-empty UTF-8 string. +// If key is invalid, an error will be returned. +// However, the specific Propagators that are used to transmit baggage entries across +// component boundaries may impose their own restrictions on Property key. +// For example, the W3C Baggage specification restricts the Property keys to strings that +// satisfy the token definition from RFC7230, Section 3.2.6. +// For maximum compatibility, alphanumeric value are strongly recommended to be used as Property key. +func NewKeyProperty(key string) (Property, error) { + if !validateBaggageName(key) { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidKey, key) + } + + p := Property{key: key} + return p, nil +} + +// NewKeyValueProperty returns a new Property for key with value. +// +// The passed key must be compliant with W3C Baggage specification. +// The passed value must be percent-encoded as defined in W3C Baggage specification. +// +// Notice: Consider using [NewKeyValuePropertyRaw] instead +// that does not require percent-encoding of the value. +func NewKeyValueProperty(key, value string) (Property, error) { + if !validateKey(key) { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidKey, key) + } + + if !validateValue(value) { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidValue, value) + } + decodedValue, err := url.PathUnescape(value) + if err != nil { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidValue, value) + } + return NewKeyValuePropertyRaw(key, decodedValue) +} + +// NewKeyValuePropertyRaw returns a new Property for key with value. +// +// The passed key must be valid, non-empty UTF-8 string. +// The passed value must be valid UTF-8 string. +// However, the specific Propagators that are used to transmit baggage entries across +// component boundaries may impose their own restrictions on Property key. +// For example, the W3C Baggage specification restricts the Property keys to strings that +// satisfy the token definition from RFC7230, Section 3.2.6. +// For maximum compatibility, alphanumeric value are strongly recommended to be used as Property key. +func NewKeyValuePropertyRaw(key, value string) (Property, error) { + if !validateBaggageName(key) { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidKey, key) + } + if !validateBaggageValue(value) { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidValue, value) + } + + p := Property{ + key: key, + value: value, + hasValue: true, + } + return p, nil +} + +func newInvalidProperty() Property { + return Property{} +} + +// parseProperty attempts to decode a Property from the passed string. It +// returns an error if the input is invalid according to the W3C Baggage +// specification. +func parseProperty(property string) (Property, error) { + if property == "" { + return newInvalidProperty(), nil + } + + p, ok := parsePropertyInternal(property) + if !ok { + return newInvalidProperty(), fmt.Errorf("%w: %q", errInvalidProperty, property) + } + + return p, nil +} + +// validate ensures p conforms to the W3C Baggage specification, returning an +// error otherwise. +func (p Property) validate() error { + errFunc := func(err error) error { + return fmt.Errorf("invalid property: %w", err) + } + + if !validateBaggageName(p.key) { + return errFunc(fmt.Errorf("%w: %q", errInvalidKey, p.key)) + } + if !p.hasValue && p.value != "" { + return errFunc(errors.New("inconsistent value")) + } + if p.hasValue && !validateBaggageValue(p.value) { + return errFunc(fmt.Errorf("%w: %q", errInvalidValue, p.value)) + } + return nil +} + +// Key returns the Property key. +func (p Property) Key() string { + return p.key +} + +// Value returns the Property value. Additionally, a boolean value is returned +// indicating if the returned value is the empty if the Property has a value +// that is empty or if the value is not set. +func (p Property) Value() (string, bool) { + return p.value, p.hasValue +} + +// String encodes Property into a header string compliant with the W3C Baggage +// specification. +// It would return empty string if the key is invalid with the W3C Baggage +// specification. This could happen for a UTF-8 key, as it may contain +// invalid characters. +func (p Property) String() string { + // W3C Baggage specification does not allow percent-encoded keys. + if !validateKey(p.key) { + return "" + } + + if p.hasValue { + return fmt.Sprintf("%s%s%v", p.key, keyValueDelimiter, valueEscape(p.value)) + } + return p.key +} + +type properties []Property + +func fromInternalProperties(iProps []baggage.Property) properties { + if len(iProps) == 0 { + return nil + } + + props := make(properties, len(iProps)) + for i, p := range iProps { + props[i] = Property{ + key: p.Key, + value: p.Value, + hasValue: p.HasValue, + } + } + return props +} + +func (p properties) asInternal() []baggage.Property { + if len(p) == 0 { + return nil + } + + iProps := make([]baggage.Property, len(p)) + for i, prop := range p { + iProps[i] = baggage.Property{ + Key: prop.key, + Value: prop.value, + HasValue: prop.hasValue, + } + } + return iProps +} + +func (p properties) Copy() properties { + if len(p) == 0 { + return nil + } + + props := make(properties, len(p)) + copy(props, p) + return props +} + +// validate ensures each Property in p conforms to the W3C Baggage +// specification, returning an error otherwise. +func (p properties) validate() error { + for _, prop := range p { + if err := prop.validate(); err != nil { + return err + } + } + return nil +} + +// String encodes properties into a header string compliant with the W3C Baggage +// specification. +func (p properties) String() string { + props := make([]string, 0, len(p)) + for _, prop := range p { + s := prop.String() + + // Ignored empty properties. + if s != "" { + props = append(props, s) + } + } + return strings.Join(props, propertyDelimiter) +} + +// Member is a list-member of a baggage-string as defined by the W3C Baggage +// specification. +type Member struct { + key, value string + properties properties + + // hasData indicates whether the created property contains data or not. + // Properties that do not contain data are invalid with no other check + // required. + hasData bool +} + +// NewMember returns a new Member from the passed arguments. +// +// The passed key must be compliant with W3C Baggage specification. +// The passed value must be percent-encoded as defined in W3C Baggage specification. +// +// Notice: Consider using [NewMemberRaw] instead +// that does not require percent-encoding of the value. +func NewMember(key, value string, props ...Property) (Member, error) { + if !validateKey(key) { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidKey, key) + } + + if !validateValue(value) { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidValue, value) + } + decodedValue, err := url.PathUnescape(value) + if err != nil { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidValue, value) + } + return NewMemberRaw(key, decodedValue, props...) +} + +// NewMemberRaw returns a new Member from the passed arguments. +// +// The passed key must be valid, non-empty UTF-8 string. +// The passed value must be valid UTF-8 string. +// However, the specific Propagators that are used to transmit baggage entries across +// component boundaries may impose their own restrictions on baggage key. +// For example, the W3C Baggage specification restricts the baggage keys to strings that +// satisfy the token definition from RFC7230, Section 3.2.6. +// For maximum compatibility, alphanumeric value are strongly recommended to be used as baggage key. +func NewMemberRaw(key, value string, props ...Property) (Member, error) { + m := Member{ + key: key, + value: value, + properties: properties(props).Copy(), + hasData: true, + } + if err := m.validate(); err != nil { + return newInvalidMember(), err + } + return m, nil +} + +func newInvalidMember() Member { + return Member{} +} + +// parseMember attempts to decode a Member from the passed string. It returns +// an error if the input is invalid according to the W3C Baggage +// specification. +func parseMember(member string) (Member, error) { + if n := len(member); n > maxBytesPerMembers { + return newInvalidMember(), fmt.Errorf("%w: %d", errMemberBytes, n) + } + + var props properties + keyValue, properties, found := strings.Cut(member, propertyDelimiter) + if found { + // Parse the member properties. + for _, pStr := range strings.Split(properties, propertyDelimiter) { + p, err := parseProperty(pStr) + if err != nil { + return newInvalidMember(), err + } + props = append(props, p) + } + } + // Parse the member key/value pair. + + // Take into account a value can contain equal signs (=). + k, v, found := strings.Cut(keyValue, keyValueDelimiter) + if !found { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidMember, member) + } + // "Leading and trailing whitespaces are allowed but MUST be trimmed + // when converting the header into a data structure." + key := strings.TrimSpace(k) + if !validateKey(key) { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidKey, key) + } + + rawVal := strings.TrimSpace(v) + if !validateValue(rawVal) { + return newInvalidMember(), fmt.Errorf("%w: %q", errInvalidValue, v) + } + + // Decode a percent-encoded value. + unescapeVal, err := url.PathUnescape(rawVal) + if err != nil { + return newInvalidMember(), fmt.Errorf("%w: %w", errInvalidValue, err) + } + + value := replaceInvalidUTF8Sequences(len(rawVal), unescapeVal) + return Member{key: key, value: value, properties: props, hasData: true}, nil +} + +// replaceInvalidUTF8Sequences replaces invalid UTF-8 sequences with '�'. +func replaceInvalidUTF8Sequences(c int, unescapeVal string) string { + if utf8.ValidString(unescapeVal) { + return unescapeVal + } + // W3C baggage spec: + // https://github.com/w3c/baggage/blob/8c215efbeebd3fa4b1aceb937a747e56444f22f3/baggage/HTTP_HEADER_FORMAT.md?plain=1#L69 + + var b strings.Builder + b.Grow(c) + for i := 0; i < len(unescapeVal); { + r, size := utf8.DecodeRuneInString(unescapeVal[i:]) + if r == utf8.RuneError && size == 1 { + // Invalid UTF-8 sequence found, replace it with '�' + _, _ = b.WriteString("�") + } else { + _, _ = b.WriteRune(r) + } + i += size + } + + return b.String() +} + +// validate ensures m conforms to the W3C Baggage specification. +// A key must be an ASCII string, returning an error otherwise. +func (m Member) validate() error { + if !m.hasData { + return fmt.Errorf("%w: %q", errInvalidMember, m) + } + + if !validateBaggageName(m.key) { + return fmt.Errorf("%w: %q", errInvalidKey, m.key) + } + if !validateBaggageValue(m.value) { + return fmt.Errorf("%w: %q", errInvalidValue, m.value) + } + return m.properties.validate() +} + +// Key returns the Member key. +func (m Member) Key() string { return m.key } + +// Value returns the Member value. +func (m Member) Value() string { return m.value } + +// Properties returns a copy of the Member properties. +func (m Member) Properties() []Property { return m.properties.Copy() } + +// String encodes Member into a header string compliant with the W3C Baggage +// specification. +// It would return empty string if the key is invalid with the W3C Baggage +// specification. This could happen for a UTF-8 key, as it may contain +// invalid characters. +func (m Member) String() string { + // W3C Baggage specification does not allow percent-encoded keys. + if !validateKey(m.key) { + return "" + } + + s := m.key + keyValueDelimiter + valueEscape(m.value) + if len(m.properties) > 0 { + s += propertyDelimiter + m.properties.String() + } + return s +} + +// Baggage is a list of baggage members representing the baggage-string as +// defined by the W3C Baggage specification. +type Baggage struct { //nolint:golint + list baggage.List +} + +// New returns a new valid Baggage. It returns an error if it results in a +// Baggage exceeding limits set in that specification. +// +// It expects all the provided members to have already been validated. +func New(members ...Member) (Baggage, error) { + if len(members) == 0 { + return Baggage{}, nil + } + + b := make(baggage.List) + for _, m := range members { + if !m.hasData { + return Baggage{}, errInvalidMember + } + + // OpenTelemetry resolves duplicates by last-one-wins. + b[m.key] = baggage.Item{ + Value: m.value, + Properties: m.properties.asInternal(), + } + } + + // Check member numbers after deduplication. + if len(b) > maxMembers { + return Baggage{}, errMemberNumber + } + + bag := Baggage{b} + if n := len(bag.String()); n > maxBytesPerBaggageString { + return Baggage{}, fmt.Errorf("%w: %d", errBaggageBytes, n) + } + + return bag, nil +} + +// Parse attempts to decode a baggage-string from the passed string. It +// returns an error if the input is invalid according to the W3C Baggage +// specification. +// +// If there are duplicate list-members contained in baggage, the last one +// defined (reading left-to-right) will be the only one kept. This diverges +// from the W3C Baggage specification which allows duplicate list-members, but +// conforms to the OpenTelemetry Baggage specification. +func Parse(bStr string) (Baggage, error) { + if bStr == "" { + return Baggage{}, nil + } + + if n := len(bStr); n > maxBytesPerBaggageString { + return Baggage{}, fmt.Errorf("%w: %d", errBaggageBytes, n) + } + + b := make(baggage.List) + for _, memberStr := range strings.Split(bStr, listDelimiter) { + m, err := parseMember(memberStr) + if err != nil { + return Baggage{}, err + } + // OpenTelemetry resolves duplicates by last-one-wins. + b[m.key] = baggage.Item{ + Value: m.value, + Properties: m.properties.asInternal(), + } + } + + // OpenTelemetry does not allow for duplicate list-members, but the W3C + // specification does. Now that we have deduplicated, ensure the baggage + // does not exceed list-member limits. + if len(b) > maxMembers { + return Baggage{}, errMemberNumber + } + + return Baggage{b}, nil +} + +// Member returns the baggage list-member identified by key. +// +// If there is no list-member matching the passed key the returned Member will +// be a zero-value Member. +// The returned member is not validated, as we assume the validation happened +// when it was added to the Baggage. +func (b Baggage) Member(key string) Member { + v, ok := b.list[key] + if !ok { + // We do not need to worry about distinguishing between the situation + // where a zero-valued Member is included in the Baggage because a + // zero-valued Member is invalid according to the W3C Baggage + // specification (it has an empty key). + return newInvalidMember() + } + + return Member{ + key: key, + value: v.Value, + properties: fromInternalProperties(v.Properties), + hasData: true, + } +} + +// Members returns all the baggage list-members. +// The order of the returned list-members is not significant. +// +// The returned members are not validated, as we assume the validation happened +// when they were added to the Baggage. +func (b Baggage) Members() []Member { + if len(b.list) == 0 { + return nil + } + + members := make([]Member, 0, len(b.list)) + for k, v := range b.list { + members = append(members, Member{ + key: k, + value: v.Value, + properties: fromInternalProperties(v.Properties), + hasData: true, + }) + } + return members +} + +// SetMember returns a copy of the Baggage with the member included. If the +// baggage contains a Member with the same key, the existing Member is +// replaced. +// +// If member is invalid according to the W3C Baggage specification, an error +// is returned with the original Baggage. +func (b Baggage) SetMember(member Member) (Baggage, error) { + if !member.hasData { + return b, errInvalidMember + } + + n := len(b.list) + if _, ok := b.list[member.key]; !ok { + n++ + } + list := make(baggage.List, n) + + for k, v := range b.list { + // Do not copy if we are just going to overwrite. + if k == member.key { + continue + } + list[k] = v + } + + list[member.key] = baggage.Item{ + Value: member.value, + Properties: member.properties.asInternal(), + } + + return Baggage{list: list}, nil +} + +// DeleteMember returns a copy of the Baggage with the list-member identified +// by key removed. +func (b Baggage) DeleteMember(key string) Baggage { + n := len(b.list) + if _, ok := b.list[key]; ok { + n-- + } + list := make(baggage.List, n) + + for k, v := range b.list { + if k == key { + continue + } + list[k] = v + } + + return Baggage{list: list} +} + +// Len returns the number of list-members in the Baggage. +func (b Baggage) Len() int { + return len(b.list) +} + +// String encodes Baggage into a header string compliant with the W3C Baggage +// specification. +// It would ignore members where the member key is invalid with the W3C Baggage +// specification. This could happen for a UTF-8 key, as it may contain +// invalid characters. +func (b Baggage) String() string { + members := make([]string, 0, len(b.list)) + for k, v := range b.list { + s := Member{ + key: k, + value: v.Value, + properties: fromInternalProperties(v.Properties), + }.String() + + // Ignored empty members. + if s != "" { + members = append(members, s) + } + } + return strings.Join(members, listDelimiter) +} + +// parsePropertyInternal attempts to decode a Property from the passed string. +// It follows the spec at https://www.w3.org/TR/baggage/#definition. +func parsePropertyInternal(s string) (p Property, ok bool) { + // For the entire function we will use " key = value " as an example. + // Attempting to parse the key. + // First skip spaces at the beginning "< >key = value " (they could be empty). + index := skipSpace(s, 0) + + // Parse the key: " = value ". + keyStart := index + keyEnd := index + for _, c := range s[keyStart:] { + if !validateKeyChar(c) { + break + } + keyEnd++ + } + + // If we couldn't find any valid key character, + // it means the key is either empty or invalid. + if keyStart == keyEnd { + return + } + + // Skip spaces after the key: " key< >= value ". + index = skipSpace(s, keyEnd) + + if index == len(s) { + // A key can have no value, like: " key ". + ok = true + p.key = s[keyStart:keyEnd] + return + } + + // If we have not reached the end and we can't find the '=' delimiter, + // it means the property is invalid. + if s[index] != keyValueDelimiter[0] { + return + } + + // Attempting to parse the value. + // Match: " key =< >value ". + index = skipSpace(s, index+1) + + // Match the value string: " key = ". + // A valid property can be: " key =". + // Therefore, we don't have to check if the value is empty. + valueStart := index + valueEnd := index + for _, c := range s[valueStart:] { + if !validateValueChar(c) { + break + } + valueEnd++ + } + + // Skip all trailing whitespaces: " key = value< >". + index = skipSpace(s, valueEnd) + + // If after looking for the value and skipping whitespaces + // we have not reached the end, it means the property is + // invalid, something like: " key = value value1". + if index != len(s) { + return + } + + // Decode a percent-encoded value. + rawVal := s[valueStart:valueEnd] + unescapeVal, err := url.PathUnescape(rawVal) + if err != nil { + return + } + value := replaceInvalidUTF8Sequences(len(rawVal), unescapeVal) + + ok = true + p.key = s[keyStart:keyEnd] + p.hasValue = true + + p.value = value + return +} + +func skipSpace(s string, offset int) int { + i := offset + for ; i < len(s); i++ { + c := s[i] + if c != ' ' && c != '\t' { + break + } + } + return i +} + +var safeKeyCharset = [utf8.RuneSelf]bool{ + // 0x23 to 0x27 + '#': true, + '$': true, + '%': true, + '&': true, + '\'': true, + + // 0x30 to 0x39 + '0': true, + '1': true, + '2': true, + '3': true, + '4': true, + '5': true, + '6': true, + '7': true, + '8': true, + '9': true, + + // 0x41 to 0x5a + 'A': true, + 'B': true, + 'C': true, + 'D': true, + 'E': true, + 'F': true, + 'G': true, + 'H': true, + 'I': true, + 'J': true, + 'K': true, + 'L': true, + 'M': true, + 'N': true, + 'O': true, + 'P': true, + 'Q': true, + 'R': true, + 'S': true, + 'T': true, + 'U': true, + 'V': true, + 'W': true, + 'X': true, + 'Y': true, + 'Z': true, + + // 0x5e to 0x7a + '^': true, + '_': true, + '`': true, + 'a': true, + 'b': true, + 'c': true, + 'd': true, + 'e': true, + 'f': true, + 'g': true, + 'h': true, + 'i': true, + 'j': true, + 'k': true, + 'l': true, + 'm': true, + 'n': true, + 'o': true, + 'p': true, + 'q': true, + 'r': true, + 's': true, + 't': true, + 'u': true, + 'v': true, + 'w': true, + 'x': true, + 'y': true, + 'z': true, + + // remainder + '!': true, + '*': true, + '+': true, + '-': true, + '.': true, + '|': true, + '~': true, +} + +// validateBaggageName checks if the string is a valid OpenTelemetry Baggage name. +// Baggage name is a valid, non-empty UTF-8 string. +func validateBaggageName(s string) bool { + if len(s) == 0 { + return false + } + + return utf8.ValidString(s) +} + +// validateBaggageValue checks if the string is a valid OpenTelemetry Baggage value. +// Baggage value is a valid UTF-8 strings. +// Empty string is also a valid UTF-8 string. +func validateBaggageValue(s string) bool { + return utf8.ValidString(s) +} + +// validateKey checks if the string is a valid W3C Baggage key. +func validateKey(s string) bool { + if len(s) == 0 { + return false + } + + for _, c := range s { + if !validateKeyChar(c) { + return false + } + } + + return true +} + +func validateKeyChar(c int32) bool { + return c >= 0 && c < int32(utf8.RuneSelf) && safeKeyCharset[c] +} + +// validateValue checks if the string is a valid W3C Baggage value. +func validateValue(s string) bool { + for _, c := range s { + if !validateValueChar(c) { + return false + } + } + + return true +} + +var safeValueCharset = [utf8.RuneSelf]bool{ + '!': true, // 0x21 + + // 0x23 to 0x2b + '#': true, + '$': true, + '%': true, + '&': true, + '\'': true, + '(': true, + ')': true, + '*': true, + '+': true, + + // 0x2d to 0x3a + '-': true, + '.': true, + '/': true, + '0': true, + '1': true, + '2': true, + '3': true, + '4': true, + '5': true, + '6': true, + '7': true, + '8': true, + '9': true, + ':': true, + + // 0x3c to 0x5b + '<': true, // 0x3C + '=': true, // 0x3D + '>': true, // 0x3E + '?': true, // 0x3F + '@': true, // 0x40 + 'A': true, // 0x41 + 'B': true, // 0x42 + 'C': true, // 0x43 + 'D': true, // 0x44 + 'E': true, // 0x45 + 'F': true, // 0x46 + 'G': true, // 0x47 + 'H': true, // 0x48 + 'I': true, // 0x49 + 'J': true, // 0x4A + 'K': true, // 0x4B + 'L': true, // 0x4C + 'M': true, // 0x4D + 'N': true, // 0x4E + 'O': true, // 0x4F + 'P': true, // 0x50 + 'Q': true, // 0x51 + 'R': true, // 0x52 + 'S': true, // 0x53 + 'T': true, // 0x54 + 'U': true, // 0x55 + 'V': true, // 0x56 + 'W': true, // 0x57 + 'X': true, // 0x58 + 'Y': true, // 0x59 + 'Z': true, // 0x5A + '[': true, // 0x5B + + // 0x5d to 0x7e + ']': true, // 0x5D + '^': true, // 0x5E + '_': true, // 0x5F + '`': true, // 0x60 + 'a': true, // 0x61 + 'b': true, // 0x62 + 'c': true, // 0x63 + 'd': true, // 0x64 + 'e': true, // 0x65 + 'f': true, // 0x66 + 'g': true, // 0x67 + 'h': true, // 0x68 + 'i': true, // 0x69 + 'j': true, // 0x6A + 'k': true, // 0x6B + 'l': true, // 0x6C + 'm': true, // 0x6D + 'n': true, // 0x6E + 'o': true, // 0x6F + 'p': true, // 0x70 + 'q': true, // 0x71 + 'r': true, // 0x72 + 's': true, // 0x73 + 't': true, // 0x74 + 'u': true, // 0x75 + 'v': true, // 0x76 + 'w': true, // 0x77 + 'x': true, // 0x78 + 'y': true, // 0x79 + 'z': true, // 0x7A + '{': true, // 0x7B + '|': true, // 0x7C + '}': true, // 0x7D + '~': true, // 0x7E +} + +func validateValueChar(c int32) bool { + return c >= 0 && c < int32(utf8.RuneSelf) && safeValueCharset[c] +} + +// valueEscape escapes the string so it can be safely placed inside a baggage value, +// replacing special characters with %XX sequences as needed. +// +// The implementation is based on: +// https://github.com/golang/go/blob/f6509cf5cdbb5787061b784973782933c47f1782/src/net/url/url.go#L285. +func valueEscape(s string) string { + hexCount := 0 + for i := 0; i < len(s); i++ { + c := s[i] + if shouldEscape(c) { + hexCount++ + } + } + + if hexCount == 0 { + return s + } + + var buf [64]byte + var t []byte + + required := len(s) + 2*hexCount + if required <= len(buf) { + t = buf[:required] + } else { + t = make([]byte, required) + } + + j := 0 + for i := 0; i < len(s); i++ { + c := s[i] + if shouldEscape(s[i]) { + const upperhex = "0123456789ABCDEF" + t[j] = '%' + t[j+1] = upperhex[c>>4] + t[j+2] = upperhex[c&15] + j += 3 + } else { + t[j] = c + j++ + } + } + + return string(t) +} + +// shouldEscape returns true if the specified byte should be escaped when +// appearing in a baggage value string. +func shouldEscape(c byte) bool { + if c == '%' { + // The percent character must be encoded so that percent-encoding can work. + return true + } + return !validateValueChar(int32(c)) +} diff --git a/vendor/go.opentelemetry.io/otel/baggage/context.go b/vendor/go.opentelemetry.io/otel/baggage/context.go new file mode 100644 index 0000000000..a572461a05 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/baggage/context.go @@ -0,0 +1,28 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package baggage // import "go.opentelemetry.io/otel/baggage" + +import ( + "context" + + "go.opentelemetry.io/otel/internal/baggage" +) + +// ContextWithBaggage returns a copy of parent with baggage. +func ContextWithBaggage(parent context.Context, b Baggage) context.Context { + // Delegate so any hooks for the OpenTracing bridge are handled. + return baggage.ContextWithList(parent, b.list) +} + +// ContextWithoutBaggage returns a copy of parent with no baggage. +func ContextWithoutBaggage(parent context.Context) context.Context { + // Delegate so any hooks for the OpenTracing bridge are handled. + return baggage.ContextWithList(parent, nil) +} + +// FromContext returns the baggage contained in ctx. +func FromContext(ctx context.Context) Baggage { + // Delegate so any hooks for the OpenTracing bridge are handled. + return Baggage{list: baggage.ListFromContext(ctx)} +} diff --git a/vendor/go.opentelemetry.io/otel/baggage/doc.go b/vendor/go.opentelemetry.io/otel/baggage/doc.go new file mode 100644 index 0000000000..b51d87cab7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/baggage/doc.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package baggage provides functionality for storing and retrieving +baggage items in Go context. For propagating the baggage, see the +go.opentelemetry.io/otel/propagation package. +*/ +package baggage // import "go.opentelemetry.io/otel/baggage" diff --git a/vendor/go.opentelemetry.io/otel/codes/README.md b/vendor/go.opentelemetry.io/otel/codes/README.md new file mode 100644 index 0000000000..24c52b387d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/codes/README.md @@ -0,0 +1,3 @@ +# Codes + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/codes)](https://pkg.go.dev/go.opentelemetry.io/otel/codes) diff --git a/vendor/go.opentelemetry.io/otel/codes/codes.go b/vendor/go.opentelemetry.io/otel/codes/codes.go new file mode 100644 index 0000000000..49a35b1225 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/codes/codes.go @@ -0,0 +1,106 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package codes // import "go.opentelemetry.io/otel/codes" + +import ( + "encoding/json" + "errors" + "fmt" + "strconv" +) + +const ( + // Unset is the default status code. + Unset Code = 0 + + // Error indicates the operation contains an error. + // + // NOTE: The error code in OTLP is 2. + // The value of this enum is only relevant to the internals + // of the Go SDK. + Error Code = 1 + + // Ok indicates operation has been validated by an Application developers + // or Operator to have completed successfully, or contain no error. + // + // NOTE: The Ok code in OTLP is 1. + // The value of this enum is only relevant to the internals + // of the Go SDK. + Ok Code = 2 + + maxCode = 3 +) + +// Code is an 32-bit representation of a status state. +type Code uint32 + +var codeToStr = map[Code]string{ + Unset: "Unset", + Error: "Error", + Ok: "Ok", +} + +var strToCode = map[string]Code{ + `"Unset"`: Unset, + `"Error"`: Error, + `"Ok"`: Ok, +} + +// String returns the Code as a string. +func (c Code) String() string { + return codeToStr[c] +} + +// UnmarshalJSON unmarshals b into the Code. +// +// This is based on the functionality in the gRPC codes package: +// https://github.com/grpc/grpc-go/blob/bb64fee312b46ebee26be43364a7a966033521b1/codes/codes.go#L218-L244 +func (c *Code) UnmarshalJSON(b []byte) error { + // From json.Unmarshaler: By convention, to approximate the behavior of + // Unmarshal itself, Unmarshalers implement UnmarshalJSON([]byte("null")) as + // a no-op. + if string(b) == "null" { + return nil + } + if c == nil { + return errors.New("nil receiver passed to UnmarshalJSON") + } + + var x interface{} + if err := json.Unmarshal(b, &x); err != nil { + return err + } + switch x.(type) { + case string: + if jc, ok := strToCode[string(b)]; ok { + *c = jc + return nil + } + return fmt.Errorf("invalid code: %q", string(b)) + case float64: + if ci, err := strconv.ParseUint(string(b), 10, 32); err == nil { + if ci >= maxCode { + return fmt.Errorf("invalid code: %q", ci) + } + + *c = Code(ci) // nolint: gosec // Bit size of 32 check above. + return nil + } + return fmt.Errorf("invalid code: %q", string(b)) + default: + return fmt.Errorf("invalid code: %q", string(b)) + } +} + +// MarshalJSON returns c as the JSON encoding of c. +func (c *Code) MarshalJSON() ([]byte, error) { + if c == nil { + return []byte("null"), nil + } + str, ok := codeToStr[*c] + if !ok { + return nil, fmt.Errorf("invalid code: %d", *c) + } + return []byte(fmt.Sprintf("%q", str)), nil +} diff --git a/vendor/go.opentelemetry.io/otel/codes/doc.go b/vendor/go.opentelemetry.io/otel/codes/doc.go new file mode 100644 index 0000000000..ee8db448b8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/codes/doc.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package codes defines the canonical error codes used by OpenTelemetry. + +It conforms to [the OpenTelemetry +specification](https://github.com/open-telemetry/opentelemetry-specification/blob/v1.20.0/specification/trace/api.md#set-status). +*/ +package codes // import "go.opentelemetry.io/otel/codes" diff --git a/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile b/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile new file mode 100644 index 0000000000..935bd48763 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/dependencies.Dockerfile @@ -0,0 +1,4 @@ +# This is a renovate-friendly source of Docker images. +FROM python:3.13.5-slim-bullseye@sha256:5b9fc0d8ef79cfb5f300e61cb516e0c668067bbf77646762c38c94107e230dbc AS python +FROM otel/weaver:v0.15.2@sha256:b13acea09f721774daba36344861f689ac4bb8d6ecd94c4600b4d590c8fb34b9 AS weaver +FROM avtodev/markdown-lint:v1@sha256:6aeedc2f49138ce7a1cd0adffc1b1c0321b841dc2102408967d9301c031949ee AS markdown diff --git a/vendor/go.opentelemetry.io/otel/doc.go b/vendor/go.opentelemetry.io/otel/doc.go new file mode 100644 index 0000000000..921f85961a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/doc.go @@ -0,0 +1,25 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otel provides global access to the OpenTelemetry API. The subpackages of +the otel package provide an implementation of the OpenTelemetry API. + +The provided API is used to instrument code and measure data about that code's +performance and operation. The measured data, by default, is not processed or +transmitted anywhere. An implementation of the OpenTelemetry SDK, like the +default SDK implementation (go.opentelemetry.io/otel/sdk), and associated +exporters are used to process and transport this data. + +To read the getting started guide, see https://opentelemetry.io/docs/languages/go/getting-started/. + +To read more about tracing, see go.opentelemetry.io/otel/trace. + +To read more about metrics, see go.opentelemetry.io/otel/metric. + +To read more about logs, see go.opentelemetry.io/otel/log. + +To read more about propagation, see go.opentelemetry.io/otel/propagation and +go.opentelemetry.io/otel/baggage. +*/ +package otel // import "go.opentelemetry.io/otel" diff --git a/vendor/go.opentelemetry.io/otel/error_handler.go b/vendor/go.opentelemetry.io/otel/error_handler.go new file mode 100644 index 0000000000..67414c71e0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/error_handler.go @@ -0,0 +1,27 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +// ErrorHandler handles irremediable events. +type ErrorHandler interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Handle handles any error deemed irremediable by an OpenTelemetry + // component. + Handle(error) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// ErrorHandlerFunc is a convenience adapter to allow the use of a function +// as an ErrorHandler. +type ErrorHandlerFunc func(error) + +var _ ErrorHandler = ErrorHandlerFunc(nil) + +// Handle handles the irremediable error by calling the ErrorHandlerFunc itself. +func (f ErrorHandlerFunc) Handle(err error) { + f(err) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/README.md b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/README.md new file mode 100644 index 0000000000..9184068d89 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/README.md @@ -0,0 +1,3 @@ +# OTLP Metric gRPC Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/client.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/client.go new file mode 100644 index 0000000000..82a4c2c2a1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/client.go @@ -0,0 +1,206 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetricgrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc" + +import ( + "context" + "errors" + "time" + + "google.golang.org/genproto/googleapis/rpc/errdetails" + "google.golang.org/grpc" + "google.golang.org/grpc/codes" + "google.golang.org/grpc/metadata" + "google.golang.org/grpc/status" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry" + colmetricpb "go.opentelemetry.io/proto/otlp/collector/metrics/v1" + metricpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +type client struct { + metadata metadata.MD + exportTimeout time.Duration + requestFunc retry.RequestFunc + + // ourConn keeps track of where conn was created: true if created here in + // NewClient, or false if passed with an option. This is important on + // Shutdown as the conn should only be closed if we created it. Otherwise, + // it is up to the processes that passed the conn to close it. + ourConn bool + conn *grpc.ClientConn + msc colmetricpb.MetricsServiceClient +} + +// newClient creates a new gRPC metric client. +func newClient(_ context.Context, cfg oconf.Config) (*client, error) { + c := &client{ + exportTimeout: cfg.Metrics.Timeout, + requestFunc: cfg.RetryConfig.RequestFunc(retryable), + conn: cfg.GRPCConn, + } + + if len(cfg.Metrics.Headers) > 0 { + c.metadata = metadata.New(cfg.Metrics.Headers) + } + + if c.conn == nil { + // If the caller did not provide a ClientConn when the client was + // created, create one using the configuration they did provide. + userAgent := "OTel Go OTLP over gRPC metrics exporter/" + Version() + dialOpts := []grpc.DialOption{grpc.WithUserAgent(userAgent)} + dialOpts = append(dialOpts, cfg.DialOptions...) + + conn, err := grpc.NewClient(cfg.Metrics.Endpoint, dialOpts...) + if err != nil { + return nil, err + } + // Keep track that we own the lifecycle of this conn and need to close + // it on Shutdown. + c.ourConn = true + c.conn = conn + } + + c.msc = colmetricpb.NewMetricsServiceClient(c.conn) + + return c, nil +} + +// Shutdown shuts down the client, freeing all resource. +// +// Any active connections to a remote endpoint are closed if they were created +// by the client. Any gRPC connection passed during creation using +// WithGRPCConn will not be closed. It is the caller's responsibility to +// handle cleanup of that resource. +func (c *client) Shutdown(ctx context.Context) error { + // The otlpmetric.Exporter synchronizes access to client methods and + // ensures this is called only once. The only thing that needs to be done + // here is to release any computational resources the client holds. + + c.metadata = nil + c.requestFunc = nil + c.msc = nil + + err := ctx.Err() + if c.ourConn { + closeErr := c.conn.Close() + // A context timeout error takes precedence over this error. + if err == nil && closeErr != nil { + err = closeErr + } + } + c.conn = nil + return err +} + +// UploadMetrics sends protoMetrics to connected endpoint. +// +// Retryable errors from the server will be handled according to any +// RetryConfig the client was created with. +func (c *client) UploadMetrics(ctx context.Context, protoMetrics *metricpb.ResourceMetrics) error { + // The otlpmetric.Exporter synchronizes access to client methods, and + // ensures this is not called after the Exporter is shutdown. Only thing + // to do here is send data. + + select { + case <-ctx.Done(): + // Do not upload if the context is already expired. + return ctx.Err() + default: + } + + ctx, cancel := c.exportContext(ctx) + defer cancel() + + return c.requestFunc(ctx, func(iCtx context.Context) error { + resp, err := c.msc.Export(iCtx, &colmetricpb.ExportMetricsServiceRequest{ + ResourceMetrics: []*metricpb.ResourceMetrics{protoMetrics}, + }) + if resp != nil && resp.PartialSuccess != nil { + msg := resp.PartialSuccess.GetErrorMessage() + n := resp.PartialSuccess.GetRejectedDataPoints() + if n != 0 || msg != "" { + err := internal.MetricPartialSuccessError(n, msg) + otel.Handle(err) + } + } + // nil is converted to OK. + if status.Code(err) == codes.OK { + // Success. + return nil + } + return err + }) +} + +// exportContext returns a copy of parent with an appropriate deadline and +// cancellation function based on the clients configured export timeout. +// +// It is the callers responsibility to cancel the returned context once its +// use is complete, via the parent or directly with the returned CancelFunc, to +// ensure all resources are correctly released. +func (c *client) exportContext(parent context.Context) (context.Context, context.CancelFunc) { + var ( + ctx context.Context + cancel context.CancelFunc + ) + + if c.exportTimeout > 0 { + ctx, cancel = context.WithTimeoutCause(parent, c.exportTimeout, errors.New("exporter export timeout")) + } else { + ctx, cancel = context.WithCancel(parent) + } + + if c.metadata.Len() > 0 { + md := c.metadata + if outMD, ok := metadata.FromOutgoingContext(ctx); ok { + md = metadata.Join(md, outMD) + } + + ctx = metadata.NewOutgoingContext(ctx, md) + } + + return ctx, cancel +} + +// retryable returns if err identifies a request that can be retried and a +// duration to wait for if an explicit throttle time is included in err. +func retryable(err error) (bool, time.Duration) { + s := status.Convert(err) + return retryableGRPCStatus(s) +} + +func retryableGRPCStatus(s *status.Status) (bool, time.Duration) { + switch s.Code() { + case codes.Canceled, + codes.DeadlineExceeded, + codes.Aborted, + codes.OutOfRange, + codes.Unavailable, + codes.DataLoss: + // Additionally, handle RetryInfo. + _, d := throttleDelay(s) + return true, d + case codes.ResourceExhausted: + // Retry only if the server signals that the recovery from resource exhaustion is possible. + return throttleDelay(s) + } + + // Not a retry-able error. + return false, 0 +} + +// throttleDelay returns if the status is RetryInfo +// and the duration to wait for if an explicit throttle time is included. +func throttleDelay(s *status.Status) (bool, time.Duration) { + for _, detail := range s.Details() { + if t, ok := detail.(*errdetails.RetryInfo); ok { + return true, t.RetryDelay.AsDuration() + } + } + return false, 0 +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/config.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/config.go new file mode 100644 index 0000000000..c831bb60b6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/config.go @@ -0,0 +1,267 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetricgrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc" + +import ( + "fmt" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/credentials" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry" + "go.opentelemetry.io/otel/sdk/metric" +) + +// Option applies a configuration option to the Exporter. +type Option interface { + applyGRPCOption(oconf.Config) oconf.Config +} + +func asGRPCOptions(opts []Option) []oconf.GRPCOption { + converted := make([]oconf.GRPCOption, len(opts)) + for i, o := range opts { + converted[i] = oconf.NewGRPCOption(o.applyGRPCOption) + } + return converted +} + +// RetryConfig defines configuration for retrying the export of metric data +// that failed. +// +// This configuration does not define any network retry strategy. That is +// entirely handled by the gRPC ClientConn. +type RetryConfig retry.Config + +type wrappedOption struct { + oconf.GRPCOption +} + +func (w wrappedOption) applyGRPCOption(cfg oconf.Config) oconf.Config { + return w.ApplyGRPCOption(cfg) +} + +// WithInsecure disables client transport security for the Exporter's gRPC +// connection, just like grpc.WithInsecure() +// (https://pkg.go.dev/google.golang.org/grpc#WithInsecure) does. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used to determine client security. If the endpoint has a +// scheme of "http" or "unix" client security will be disabled. If both are +// set, OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, client security will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithInsecure() Option { + return wrappedOption{oconf.WithInsecure()} +} + +// WithEndpoint sets the target endpoint the Exporter will connect to. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpointURL are used, the last used option will +// take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4317" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpoint(endpoint string) Option { + return wrappedOption{oconf.WithEndpoint(endpoint)} +} + +// WithEndpointURL sets the target endpoint URL the Exporter will connect to. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpoint are used, the last used option will +// take precedence. +// +// If an invalid URL is provided, the default value will be kept. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4317" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpointURL(u string) Option { + return wrappedOption{oconf.WithEndpointURL(u)} +} + +// WithReconnectionPeriod set the minimum amount of time between connection +// attempts to the target endpoint. +// +// This option has no effect if WithGRPCConn is used. +func WithReconnectionPeriod(rp time.Duration) Option { + return wrappedOption{oconf.NewGRPCOption(func(cfg oconf.Config) oconf.Config { + cfg.ReconnectionPeriod = rp + return cfg + })} +} + +func compressorToCompression(compressor string) oconf.Compression { + if compressor == "gzip" { + return oconf.GzipCompression + } + + otel.Handle(fmt.Errorf("invalid compression type: '%s', using no compression as default", compressor)) + return oconf.NoCompression +} + +// WithCompressor sets the compressor the gRPC client uses. +// Supported compressor values: "gzip". +// +// If the OTEL_EXPORTER_OTLP_COMPRESSION or +// OTEL_EXPORTER_OTLP_METRICS_COMPRESSION environment variable is set, and +// this option is not passed, that variable value will be used. That value can +// be either "none" or "gzip". If both are set, +// OTEL_EXPORTER_OTLP_METRICS_COMPRESSION will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, no compressor will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithCompressor(compressor string) Option { + return wrappedOption{oconf.WithCompression(compressorToCompression(compressor))} +} + +// WithHeaders will send the provided headers with each gRPC requests. +// +// If the OTEL_EXPORTER_OTLP_HEADERS or OTEL_EXPORTER_OTLP_METRICS_HEADERS +// environment variable is set, and this option is not passed, that variable +// value will be used. The value will be parsed as a list of key value pairs. +// These pairs are expected to be in the W3C Correlation-Context format +// without additional semi-colon delimited metadata (i.e. "k1=v1,k2=v2"). If +// both are set, OTEL_EXPORTER_OTLP_METRICS_HEADERS will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, no user headers will be set. +func WithHeaders(headers map[string]string) Option { + return wrappedOption{oconf.WithHeaders(headers)} +} + +// WithTLSCredentials sets the gRPC connection to use creds. +// +// If the OTEL_EXPORTER_OTLP_CERTIFICATE or +// OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE environment variable is set, and +// this option is not passed, that variable value will be used. The value will +// be parsed the filepath of the TLS certificate chain to use. If both are +// set, OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, no TLS credentials will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithTLSCredentials(creds credentials.TransportCredentials) Option { + return wrappedOption{oconf.NewGRPCOption(func(cfg oconf.Config) oconf.Config { + cfg.Metrics.GRPCCredentials = creds + return cfg + })} +} + +// WithServiceConfig defines the default gRPC service config used. +// +// This option has no effect if WithGRPCConn is used. +func WithServiceConfig(serviceConfig string) Option { + return wrappedOption{oconf.NewGRPCOption(func(cfg oconf.Config) oconf.Config { + cfg.ServiceConfig = serviceConfig + return cfg + })} +} + +// WithDialOption sets explicit grpc.DialOptions to use when establishing a +// gRPC connection. The options here are appended to the internal grpc.DialOptions +// used so they will take precedence over any other internal grpc.DialOptions +// they might conflict with. +// The [grpc.WithBlock], [grpc.WithTimeout], and [grpc.WithReturnConnectionError] +// grpc.DialOptions are ignored. +// +// This option has no effect if WithGRPCConn is used. +func WithDialOption(opts ...grpc.DialOption) Option { + return wrappedOption{oconf.NewGRPCOption(func(cfg oconf.Config) oconf.Config { + cfg.DialOptions = opts + return cfg + })} +} + +// WithGRPCConn sets conn as the gRPC ClientConn used for all communication. +// +// This option takes precedence over any other option that relates to +// establishing or persisting a gRPC connection to a target endpoint. Any +// other option of those types passed will be ignored. +// +// It is the callers responsibility to close the passed conn. The Exporter +// Shutdown method will not close this connection. +func WithGRPCConn(conn *grpc.ClientConn) Option { + return wrappedOption{oconf.NewGRPCOption(func(cfg oconf.Config) oconf.Config { + cfg.GRPCConn = conn + return cfg + })} +} + +// WithTimeout sets the max amount of time an Exporter will attempt an export. +// +// This takes precedence over any retry settings defined by WithRetry. Once +// this time limit has been reached the export is abandoned and the metric +// data is dropped. +// +// If the OTEL_EXPORTER_OTLP_TIMEOUT or OTEL_EXPORTER_OTLP_METRICS_TIMEOUT +// environment variable is set, and this option is not passed, that variable +// value will be used. The value will be parsed as an integer representing the +// timeout in milliseconds. If both are set, +// OTEL_EXPORTER_OTLP_METRICS_TIMEOUT will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, a timeout of 10 seconds will be used. +func WithTimeout(duration time.Duration) Option { + return wrappedOption{oconf.WithTimeout(duration)} +} + +// WithRetry sets the retry policy for transient retryable errors that are +// returned by the target endpoint. +// +// If the target endpoint responds with not only a retryable error, but +// explicitly returns a backoff time in the response, that time will take +// precedence over these settings. +// +// These settings define the retry strategy implemented by the exporter. +// These settings do not define any network retry strategy. +// That is handled by the gRPC ClientConn. +// +// If unset, the default retry policy will be used. It will retry the export +// 5 seconds after receiving a retryable error and increase exponentially +// after each error for no more than a total time of 1 minute. +func WithRetry(settings RetryConfig) Option { + return wrappedOption{oconf.WithRetry(retry.Config(settings))} +} + +// WithTemporalitySelector sets the TemporalitySelector the client will use to +// determine the Temporality of an instrument based on its kind. If this option +// is not used, the client will use the DefaultTemporalitySelector from the +// go.opentelemetry.io/otel/sdk/metric package. +func WithTemporalitySelector(selector metric.TemporalitySelector) Option { + return wrappedOption{oconf.WithTemporalitySelector(selector)} +} + +// WithAggregationSelector sets the AggregationSelector the client will use to +// determine the aggregation to use for an instrument based on its kind. If +// this option is not used, the reader will use the DefaultAggregationSelector +// from the go.opentelemetry.io/otel/sdk/metric package, or the aggregation +// explicitly passed for a view matching an instrument. +func WithAggregationSelector(selector metric.AggregationSelector) Option { + return wrappedOption{oconf.WithAggregationSelector(selector)} +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/doc.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/doc.go new file mode 100644 index 0000000000..dcd8de5df4 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/doc.go @@ -0,0 +1,84 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otlpmetricgrpc provides an OTLP metrics exporter using gRPC. +By default the telemetry is sent to https://localhost:4317. + +Exporter should be created using [New] and used with a [metric.PeriodicReader]. + +The environment variables described below can be used for configuration. + +OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_METRICS_ENDPOINT (default: "https://localhost:4317") - +target to which the exporter sends telemetry. +The target syntax is defined in https://github.com/grpc/grpc/blob/master/doc/naming.md. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port, and a path. +The value should not contain a query string or fragment. +OTEL_EXPORTER_OTLP_METRICS_ENDPOINT takes precedence over OTEL_EXPORTER_OTLP_ENDPOINT. +The configuration can be overridden by [WithEndpoint], [WithEndpointURL], [WithInsecure], and [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_INSECURE, OTEL_EXPORTER_OTLP_METRICS_INSECURE (default: "false") - +setting "true" disables client transport security for the exporter's gRPC connection. +You can use this only when an endpoint is provided without the http or https scheme. +OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_METRICS_ENDPOINT setting overrides +the scheme defined via OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_METRICS_ENDPOINT. +OTEL_EXPORTER_OTLP_METRICS_INSECURE takes precedence over OTEL_EXPORTER_OTLP_INSECURE. +The configuration can be overridden by [WithInsecure], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_HEADERS, OTEL_EXPORTER_OTLP_METRICS_HEADERS (default: none) - +key-value pairs used as gRPC metadata associated with gRPC requests. +The value is expected to be represented in a format matching the [W3C Baggage HTTP Header Content Format], +except that additional semi-colon delimited metadata is not supported. +Example value: "key1=value1,key2=value2". +OTEL_EXPORTER_OTLP_METRICS_HEADERS takes precedence over OTEL_EXPORTER_OTLP_HEADERS. +The configuration can be overridden by [WithHeaders] option. + +OTEL_EXPORTER_OTLP_TIMEOUT, OTEL_EXPORTER_OTLP_METRICS_TIMEOUT (default: "10000") - +maximum time in milliseconds the OTLP exporter waits for each batch export. +OTEL_EXPORTER_OTLP_METRICS_TIMEOUT takes precedence over OTEL_EXPORTER_OTLP_TIMEOUT. +The configuration can be overridden by [WithTimeout] option. + +OTEL_EXPORTER_OTLP_COMPRESSION, OTEL_EXPORTER_OTLP_METRICS_COMPRESSION (default: none) - +the gRPC compressor the exporter uses. +Supported value: "gzip". +OTEL_EXPORTER_OTLP_METRICS_COMPRESSION takes precedence over OTEL_EXPORTER_OTLP_COMPRESSION. +The configuration can be overridden by [WithCompressor], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CERTIFICATE, OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE (default: none) - +the filepath to the trusted certificate to use when verifying a server's TLS credentials. +OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CERTIFICATE. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE, OTEL_EXPORTER_OTLP_METRICS_CLIENT_CERTIFICATE (default: none) - +the filepath to the client certificate/chain trust for client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_METRICS_CLIENT_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CLIENT_KEY, OTEL_EXPORTER_OTLP_METRICS_CLIENT_KEY (default: none) - +the filepath to the client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_METRICS_CLIENT_KEY takes precedence over OTEL_EXPORTER_OTLP_CLIENT_KEY. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] option. + +OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE (default: "cumulative") - +aggregation temporality to use on the basis of instrument kind. Supported values: + - "cumulative" - Cumulative aggregation temporality for all instrument kinds, + - "delta" - Delta aggregation temporality for Counter, Asynchronous Counter and Histogram instrument kinds; + Cumulative aggregation for UpDownCounter and Asynchronous UpDownCounter instrument kinds, + - "lowmemory" - Delta aggregation temporality for Synchronous Counter and Histogram instrument kinds; + Cumulative aggregation temporality for Synchronous UpDownCounter, Asynchronous Counter, and Asynchronous UpDownCounter instrument kinds. + +The configuration can be overridden by [WithTemporalitySelector] option. + +OTEL_EXPORTER_OTLP_METRICS_DEFAULT_HISTOGRAM_AGGREGATION (default: "explicit_bucket_histogram") - +default aggregation to use for histogram instruments. Supported values: + - "explicit_bucket_histogram" - [Explicit Bucket Histogram Aggregation], + - "base2_exponential_bucket_histogram" - [Base2 Exponential Bucket Histogram Aggregation]. + +The configuration can be overridden by [WithAggregationSelector] option. + +[W3C Baggage HTTP Header Content Format]: https://www.w3.org/TR/baggage/#header-content +[Explicit Bucket Histogram Aggregation]: https://github.com/open-telemetry/opentelemetry-specification/blob/v1.26.0/specification/metrics/sdk.md#explicit-bucket-histogram-aggregation +[Base2 Exponential Bucket Histogram Aggregation]: https://github.com/open-telemetry/opentelemetry-specification/blob/v1.26.0/specification/metrics/sdk.md#base2-exponential-bucket-histogram-aggregation +*/ +package otlpmetricgrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc" diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/exporter.go new file mode 100644 index 0000000000..3977c1f8a6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/exporter.go @@ -0,0 +1,157 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetricgrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc" + +import ( + "context" + "errors" + "fmt" + "sync" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" + metricpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +// Exporter is a OpenTelemetry metric Exporter using gRPC. +type Exporter struct { + // Ensure synchronous access to the client across all functionality. + clientMu sync.Mutex + client interface { + UploadMetrics(context.Context, *metricpb.ResourceMetrics) error + Shutdown(context.Context) error + } + + temporalitySelector metric.TemporalitySelector + aggregationSelector metric.AggregationSelector + + shutdownOnce sync.Once +} + +func newExporter(c *client, cfg oconf.Config) (*Exporter, error) { + ts := cfg.Metrics.TemporalitySelector + if ts == nil { + ts = func(metric.InstrumentKind) metricdata.Temporality { + return metricdata.CumulativeTemporality + } + } + + as := cfg.Metrics.AggregationSelector + if as == nil { + as = metric.DefaultAggregationSelector + } + + return &Exporter{ + client: c, + + temporalitySelector: ts, + aggregationSelector: as, + }, nil +} + +// Temporality returns the Temporality to use for an instrument kind. +func (e *Exporter) Temporality(k metric.InstrumentKind) metricdata.Temporality { + return e.temporalitySelector(k) +} + +// Aggregation returns the Aggregation to use for an instrument kind. +func (e *Exporter) Aggregation(k metric.InstrumentKind) metric.Aggregation { + return e.aggregationSelector(k) +} + +// Export transforms and transmits metric data to an OTLP receiver. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +func (e *Exporter) Export(ctx context.Context, rm *metricdata.ResourceMetrics) error { + defer global.Debug("OTLP/gRPC exporter export", "Data", rm) + + otlpRm, err := transform.ResourceMetrics(rm) + // Best effort upload of transformable metrics. + e.clientMu.Lock() + upErr := e.client.UploadMetrics(ctx, otlpRm) + e.clientMu.Unlock() + if upErr != nil { + if err == nil { + return fmt.Errorf("failed to upload metrics: %w", upErr) + } + // Merge the two errors. + return fmt.Errorf("failed to upload incomplete metrics (%w): %w", err, upErr) + } + return err +} + +// ForceFlush flushes any metric data held by an exporter. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +// +// This method is safe to call concurrently. +func (e *Exporter) ForceFlush(ctx context.Context) error { + // The exporter and client hold no state, nothing to flush. + return ctx.Err() +} + +// Shutdown flushes all metric data held by an exporter and releases any held +// computational resources. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +// +// This method is safe to call concurrently. +func (e *Exporter) Shutdown(ctx context.Context) error { + err := errShutdown + e.shutdownOnce.Do(func() { + e.clientMu.Lock() + client := e.client + e.client = shutdownClient{} + e.clientMu.Unlock() + err = client.Shutdown(ctx) + }) + return err +} + +var errShutdown = errors.New("gRPC exporter is shutdown") + +type shutdownClient struct{} + +func (c shutdownClient) err(ctx context.Context) error { + if err := ctx.Err(); err != nil { + return err + } + return errShutdown +} + +func (c shutdownClient) UploadMetrics(ctx context.Context, _ *metricpb.ResourceMetrics) error { + return c.err(ctx) +} + +func (c shutdownClient) Shutdown(ctx context.Context) error { + return c.err(ctx) +} + +// MarshalLog returns logging data about the Exporter. +func (e *Exporter) MarshalLog() interface{} { + return struct{ Type string }{Type: "OTLP/gRPC"} +} + +// New returns an OpenTelemetry metric Exporter. The Exporter can be used with +// a PeriodicReader to export OpenTelemetry metric data to an OTLP receiving +// endpoint using gRPC. +// +// If an already established gRPC ClientConn is not passed in options using +// WithGRPCConn, a connection to the OTLP endpoint will be established based +// on options. If a connection cannot be establishes in the lifetime of ctx, +// an error will be returned. +func New(ctx context.Context, options ...Option) (*Exporter, error) { + cfg := oconf.NewGRPCConfig(asGRPCOptions(options)...) + c, err := newClient(ctx, cfg) + if err != nil { + return nil, err + } + return newExporter(c, cfg) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig/envconfig.go new file mode 100644 index 0000000000..2cd98b929e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig/envconfig.go @@ -0,0 +1,217 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/envconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package envconfig provides functionality to parse configuration from +// environment variables. +package envconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "fmt" + "net/url" + "strconv" + "strings" + "time" + "unicode" + + "go.opentelemetry.io/otel/internal/global" +) + +// ConfigFn is the generic function used to set a config. +type ConfigFn func(*EnvOptionsReader) + +// EnvOptionsReader reads the required environment variables. +type EnvOptionsReader struct { + GetEnv func(string) string + ReadFile func(string) ([]byte, error) + Namespace string +} + +// Apply runs every ConfigFn. +func (e *EnvOptionsReader) Apply(opts ...ConfigFn) { + for _, o := range opts { + o(e) + } +} + +// GetEnvValue gets an OTLP environment variable value of the specified key +// using the GetEnv function. +// This function prepends the OTLP specified namespace to all key lookups. +func (e *EnvOptionsReader) GetEnvValue(key string) (string, bool) { + v := strings.TrimSpace(e.GetEnv(keyWithNamespace(e.Namespace, key))) + return v, v != "" +} + +// WithString retrieves the specified config and passes it to ConfigFn as a string. +func WithString(n string, fn func(string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(v) + } + } +} + +// WithBool returns a ConfigFn that reads the environment variable n and if it exists passes its parsed bool value to fn. +func WithBool(n string, fn func(bool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b := strings.ToLower(v) == "true" + fn(b) + } + } +} + +// WithDuration retrieves the specified config and passes it to ConfigFn as a duration. +func WithDuration(n string, fn func(time.Duration)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + d, err := strconv.Atoi(v) + if err != nil { + global.Error(err, "parse duration", "input", v) + return + } + fn(time.Duration(d) * time.Millisecond) + } + } +} + +// WithHeaders retrieves the specified config and passes it to ConfigFn as a map of HTTP headers. +func WithHeaders(n string, fn func(map[string]string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(stringToHeader(v)) + } + } +} + +// WithURL retrieves the specified config and passes it to ConfigFn as a net/url.URL. +func WithURL(n string, fn func(*url.URL)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "parse url", "input", v) + return + } + fn(u) + } + } +} + +// WithCertPool returns a ConfigFn that reads the environment variable n as a filepath to a TLS certificate pool. If it exists, it is parsed as a crypto/x509.CertPool and it is passed to fn. +func WithCertPool(n string, fn func(*x509.CertPool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b, err := e.ReadFile(v) + if err != nil { + global.Error(err, "read tls ca cert file", "file", v) + return + } + c, err := createCertPool(b) + if err != nil { + global.Error(err, "create tls cert pool") + return + } + fn(c) + } + } +} + +// WithClientCert returns a ConfigFn that reads the environment variable nc and nk as filepaths to a client certificate and key pair. If they exists, they are parsed as a crypto/tls.Certificate and it is passed to fn. +func WithClientCert(nc, nk string, fn func(tls.Certificate)) ConfigFn { + return func(e *EnvOptionsReader) { + vc, okc := e.GetEnvValue(nc) + vk, okk := e.GetEnvValue(nk) + if !okc || !okk { + return + } + cert, err := e.ReadFile(vc) + if err != nil { + global.Error(err, "read tls client cert", "file", vc) + return + } + key, err := e.ReadFile(vk) + if err != nil { + global.Error(err, "read tls client key", "file", vk) + return + } + crt, err := tls.X509KeyPair(cert, key) + if err != nil { + global.Error(err, "create tls client key pair") + return + } + fn(crt) + } +} + +func keyWithNamespace(ns, key string) string { + if ns == "" { + return key + } + return fmt.Sprintf("%s_%s", ns, key) +} + +func stringToHeader(value string) map[string]string { + headersPairs := strings.Split(value, ",") + headers := make(map[string]string) + + for _, header := range headersPairs { + n, v, found := strings.Cut(header, "=") + if !found { + global.Error(errors.New("missing '="), "parse headers", "input", header) + continue + } + + trimmedName := strings.TrimSpace(n) + + // Validate the key. + if !isValidHeaderKey(trimmedName) { + global.Error(errors.New("invalid header key"), "parse headers", "key", trimmedName) + continue + } + + // Only decode the value. + value, err := url.PathUnescape(v) + if err != nil { + global.Error(err, "escape header value", "value", v) + continue + } + trimmedValue := strings.TrimSpace(value) + + headers[trimmedName] = trimmedValue + } + + return headers +} + +func createCertPool(certBytes []byte) (*x509.CertPool, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + return cp, nil +} + +func isValidHeaderKey(key string) bool { + if key == "" { + return false + } + for _, c := range key { + if !isTokenChar(c) { + return false + } + } + return true +} + +func isTokenChar(c rune) bool { + return c <= unicode.MaxASCII && (unicode.IsLetter(c) || + unicode.IsDigit(c) || + c == '!' || c == '#' || c == '$' || c == '%' || c == '&' || c == '\'' || c == '*' || + c == '+' || c == '-' || c == '.' || c == '^' || c == '_' || c == '`' || c == '|' || c == '~') +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/gen.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/gen.go new file mode 100644 index 0000000000..b29cd11a66 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/gen.go @@ -0,0 +1,32 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionally for the otlpmetricgrpc package. +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal" + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess.go.tmpl "--data={}" --out=partialsuccess.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess_test.go.tmpl "--data={}" --out=partialsuccess_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry.go.tmpl "--data={}" --out=retry/retry.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry_test.go.tmpl "--data={}" --out=retry/retry_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig.go.tmpl "--data={}" --out=envconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig_test.go.tmpl "--data={}" --out=envconfig/envconfig_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/envconfig.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig\"}" --out=oconf/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/envconfig_test.go.tmpl "--data={}" --out=oconf/envconfig_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/options.go.tmpl "--data={\"retryImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry\"}" --out=oconf/options.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/options_test.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig\"}" --out=oconf/options_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/optiontypes.go.tmpl "--data={}" --out=oconf/optiontypes.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/tls.go.tmpl "--data={}" --out=oconf/tls.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/client.go.tmpl "--data={}" --out=otest/client.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/client_test.go.tmpl "--data={\"internalImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal\"}" --out=otest/client_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/collector.go.tmpl "--data={\"oconfImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf\"}" --out=otest/collector.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/attribute.go.tmpl "--data={}" --out=transform/attribute.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/attribute_test.go.tmpl "--data={}" --out=transform/attribute_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/error.go.tmpl "--data={}" --out=transform/error.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/error_test.go.tmpl "--data={}" --out=transform/error_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/metricdata.go.tmpl "--data={}" --out=transform/metricdata.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/metricdata_test.go.tmpl "--data={}" --out=transform/metricdata_test.go diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/envconfig.go new file mode 100644 index 0000000000..b54a173b6e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/envconfig.go @@ -0,0 +1,232 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + +import ( + "crypto/tls" + "crypto/x509" + "net/url" + "os" + "path" + "strings" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/envconfig" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// DefaultEnvOptionsReader is the default environments reader. +var DefaultEnvOptionsReader = envconfig.EnvOptionsReader{ + GetEnv: os.Getenv, + ReadFile: os.ReadFile, + Namespace: "OTEL_EXPORTER_OTLP", +} + +// ApplyGRPCEnvConfigs applies the env configurations for gRPC. +func ApplyGRPCEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + return cfg +} + +// ApplyHTTPEnvConfigs applies the env configurations for HTTP. +func ApplyHTTPEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + return cfg +} + +func getOptionsFromEnv() []GenericOption { + opts := []GenericOption{} + + tlsConf := &tls.Config{} + DefaultEnvOptionsReader.Apply( + envconfig.WithURL("ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = u.Host + // For OTLP/HTTP endpoint URLs without a per-signal + // configuration, the passed endpoint is used as a base URL + // and the signals are sent to these paths relative to that. + cfg.Metrics.URLPath = path.Join(u.Path, DefaultMetricsPath) + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithURL("METRICS_ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = u.Host + // For endpoint URLs for OTLP/HTTP per-signal variables, the + // URL MUST be used as-is without any modification. The only + // exception is that if an URL contains no path part, the root + // path / MUST be used. + path := u.Path + if path == "" { + path = "/" + } + cfg.Metrics.URLPath = path + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithCertPool("CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithCertPool("METRICS_CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithClientCert( + "CLIENT_CERTIFICATE", + "CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithClientCert( + "METRICS_CLIENT_CERTIFICATE", + "METRICS_CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithBool("INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithBool("METRICS_INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + withTLSConfig(tlsConf, func(c *tls.Config) { opts = append(opts, WithTLSClientConfig(c)) }), + envconfig.WithHeaders("HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + envconfig.WithHeaders("METRICS_HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + WithEnvCompression("COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + WithEnvCompression("METRICS_COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + envconfig.WithDuration("TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + envconfig.WithDuration("METRICS_TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + withEnvTemporalityPreference( + "METRICS_TEMPORALITY_PREFERENCE", + func(t metric.TemporalitySelector) { opts = append(opts, WithTemporalitySelector(t)) }, + ), + withEnvAggPreference( + "METRICS_DEFAULT_HISTOGRAM_AGGREGATION", + func(a metric.AggregationSelector) { opts = append(opts, WithAggregationSelector(a)) }, + ), + ) + + return opts +} + +func withEndpointForGRPC(u *url.URL) func(cfg Config) Config { + return func(cfg Config) Config { + // For OTLP/gRPC endpoints, this is the target to which the + // exporter is going to send telemetry. + cfg.Metrics.Endpoint = path.Join(u.Host, u.Path) + return cfg + } +} + +// WithEnvCompression retrieves the specified config and passes it to ConfigFn as a Compression. +func WithEnvCompression(n string, fn func(Compression)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + cp := NoCompression + if v == "gzip" { + cp = GzipCompression + } + + fn(cp) + } + } +} + +func withEndpointScheme(u *url.URL) GenericOption { + switch strings.ToLower(u.Scheme) { + case "http", "unix": + return WithInsecure() + default: + return WithSecure() + } +} + +// revive:disable-next-line:flag-parameter +func withInsecure(b bool) GenericOption { + if b { + return WithInsecure() + } + return WithSecure() +} + +func withTLSConfig(c *tls.Config, fn func(*tls.Config)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if c.RootCAs != nil || len(c.Certificates) > 0 { + fn(c) + } + } +} + +func withEnvTemporalityPreference(n string, fn func(metric.TemporalitySelector)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if s, ok := e.GetEnvValue(n); ok { + switch strings.ToLower(s) { + case "cumulative": + fn(cumulativeTemporality) + case "delta": + fn(deltaTemporality) + case "lowmemory": + fn(lowMemory) + default: + global.Warn( + "OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE is set to an invalid value, ignoring.", + "value", + s, + ) + } + } + } +} + +func cumulativeTemporality(metric.InstrumentKind) metricdata.Temporality { + return metricdata.CumulativeTemporality +} + +func deltaTemporality(ik metric.InstrumentKind) metricdata.Temporality { + switch ik { + case metric.InstrumentKindCounter, metric.InstrumentKindHistogram, metric.InstrumentKindObservableCounter: + return metricdata.DeltaTemporality + default: + return metricdata.CumulativeTemporality + } +} + +func lowMemory(ik metric.InstrumentKind) metricdata.Temporality { + switch ik { + case metric.InstrumentKindCounter, metric.InstrumentKindHistogram: + return metricdata.DeltaTemporality + default: + return metricdata.CumulativeTemporality + } +} + +func withEnvAggPreference(n string, fn func(metric.AggregationSelector)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if s, ok := e.GetEnvValue(n); ok { + switch strings.ToLower(s) { + case "explicit_bucket_histogram": + fn(metric.DefaultAggregationSelector) + case "base2_exponential_bucket_histogram": + fn(func(kind metric.InstrumentKind) metric.Aggregation { + if kind == metric.InstrumentKindHistogram { + return metric.AggregationBase2ExponentialHistogram{ + MaxSize: 160, + MaxScale: 20, + NoMinMax: false, + } + } + return metric.DefaultAggregationSelector(kind) + }) + default: + global.Warn( + "OTEL_EXPORTER_OTLP_METRICS_DEFAULT_HISTOGRAM_AGGREGATION is set to an invalid value, ignoring.", + "value", + s, + ) + } + } + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/options.go new file mode 100644 index 0000000000..758d1ea32d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/options.go @@ -0,0 +1,383 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/options.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package oconf provides configuration for the otlpmetric exporters. +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + +import ( + "crypto/tls" + "fmt" + "net/http" + "net/url" + "path" + "strings" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/backoff" + "google.golang.org/grpc/credentials" + "google.golang.org/grpc/credentials/insecure" + "google.golang.org/grpc/encoding/gzip" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" +) + +const ( + // DefaultMaxAttempts describes how many times the driver + // should retry the sending of the payload in case of a + // retryable error. + DefaultMaxAttempts int = 5 + // DefaultMetricsPath is a default URL path for endpoint that + // receives metrics. + DefaultMetricsPath string = "/v1/metrics" + // DefaultBackoff is a default base backoff time used in the + // exponential backoff strategy. + DefaultBackoff time.Duration = 300 * time.Millisecond + // DefaultTimeout is a default max waiting time for the backend to process + // each span or metrics batch. + DefaultTimeout time.Duration = 10 * time.Second +) + +type ( + // HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. + // This type is compatible with `http.Transport.Proxy` and can be used to set a custom proxy function to the OTLP HTTP client. + HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + + SignalConfig struct { + Endpoint string + Insecure bool + TLSCfg *tls.Config + Headers map[string]string + Compression Compression + Timeout time.Duration + URLPath string + + TemporalitySelector metric.TemporalitySelector + AggregationSelector metric.AggregationSelector + + // gRPC configurations + GRPCCredentials credentials.TransportCredentials + + // HTTP configurations + Proxy HTTPTransportProxyFunc + HTTPClient *http.Client + } + + Config struct { + // Signal specific configurations + Metrics SignalConfig + + RetryConfig retry.Config + + // gRPC configurations + ReconnectionPeriod time.Duration + ServiceConfig string + DialOptions []grpc.DialOption + GRPCConn *grpc.ClientConn + } +) + +// NewHTTPConfig returns a new Config with all settings applied from opts and +// any unset setting using the default HTTP config values. +func NewHTTPConfig(opts ...HTTPOption) Config { + cfg := Config{ + Metrics: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), + URLPath: DefaultMetricsPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + + TemporalitySelector: metric.DefaultTemporalitySelector, + AggregationSelector: metric.DefaultAggregationSelector, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyHTTPEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + cfg.Metrics.URLPath = cleanPath(cfg.Metrics.URLPath, DefaultMetricsPath) + return cfg +} + +// cleanPath returns a path with all spaces trimmed. If urlPath is empty, +// defaultPath is returned instead. +func cleanPath(urlPath string, defaultPath string) string { + tmp := strings.TrimSpace(urlPath) + if tmp == "" || tmp == "." { + return defaultPath + } + if !path.IsAbs(tmp) { + tmp = "/" + tmp + } + return tmp +} + +// NewGRPCConfig returns a new Config with all settings applied from opts and +// any unset setting using the default gRPC config values. +func NewGRPCConfig(opts ...GRPCOption) Config { + cfg := Config{ + Metrics: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), + URLPath: DefaultMetricsPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + + TemporalitySelector: metric.DefaultTemporalitySelector, + AggregationSelector: metric.DefaultAggregationSelector, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyGRPCEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + + if cfg.ServiceConfig != "" { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultServiceConfig(cfg.ServiceConfig)) + } + // Prioritize GRPCCredentials over Insecure (passing both is an error). + if cfg.Metrics.GRPCCredentials != nil { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(cfg.Metrics.GRPCCredentials)) + } else if cfg.Metrics.Insecure { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(insecure.NewCredentials())) + } else { + // Default to using the host's root CA. + creds := credentials.NewTLS(nil) + cfg.Metrics.GRPCCredentials = creds + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(creds)) + } + if cfg.Metrics.Compression == GzipCompression { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultCallOptions(grpc.UseCompressor(gzip.Name))) + } + if cfg.ReconnectionPeriod != 0 { + p := grpc.ConnectParams{ + Backoff: backoff.DefaultConfig, + MinConnectTimeout: cfg.ReconnectionPeriod, + } + cfg.DialOptions = append(cfg.DialOptions, grpc.WithConnectParams(p)) + } + + return cfg +} + +type ( + // GenericOption applies an option to the HTTP or gRPC driver. + GenericOption interface { + ApplyHTTPOption(Config) Config + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // HTTPOption applies an option to the HTTP driver. + HTTPOption interface { + ApplyHTTPOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // GRPCOption applies an option to the gRPC driver. + GRPCOption interface { + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } +) + +// genericOption is an option that applies the same logic +// for both gRPC and HTTP. +type genericOption struct { + fn func(Config) Config +} + +func (g *genericOption) ApplyGRPCOption(cfg Config) Config { + return g.fn(cfg) +} + +func (g *genericOption) ApplyHTTPOption(cfg Config) Config { + return g.fn(cfg) +} + +func (genericOption) private() {} + +func newGenericOption(fn func(cfg Config) Config) GenericOption { + return &genericOption{fn: fn} +} + +// splitOption is an option that applies different logics +// for gRPC and HTTP. +type splitOption struct { + httpFn func(Config) Config + grpcFn func(Config) Config +} + +func (g *splitOption) ApplyGRPCOption(cfg Config) Config { + return g.grpcFn(cfg) +} + +func (g *splitOption) ApplyHTTPOption(cfg Config) Config { + return g.httpFn(cfg) +} + +func (splitOption) private() {} + +func newSplitOption(httpFn func(cfg Config) Config, grpcFn func(cfg Config) Config) GenericOption { + return &splitOption{httpFn: httpFn, grpcFn: grpcFn} +} + +// httpOption is an option that is only applied to the HTTP driver. +type httpOption struct { + fn func(Config) Config +} + +func (h *httpOption) ApplyHTTPOption(cfg Config) Config { + return h.fn(cfg) +} + +func (httpOption) private() {} + +func NewHTTPOption(fn func(cfg Config) Config) HTTPOption { + return &httpOption{fn: fn} +} + +// grpcOption is an option that is only applied to the gRPC driver. +type grpcOption struct { + fn func(Config) Config +} + +func (h *grpcOption) ApplyGRPCOption(cfg Config) Config { + return h.fn(cfg) +} + +func (grpcOption) private() {} + +func NewGRPCOption(fn func(cfg Config) Config) GRPCOption { + return &grpcOption{fn: fn} +} + +// Generic Options + +func WithEndpoint(endpoint string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = endpoint + return cfg + }) +} + +func WithEndpointURL(v string) GenericOption { + return newGenericOption(func(cfg Config) Config { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "otlpmetric: parse endpoint url", "url", v) + return cfg + } + + cfg.Metrics.Endpoint = u.Host + cfg.Metrics.URLPath = u.Path + cfg.Metrics.Insecure = u.Scheme != "https" + + return cfg + }) +} + +func WithCompression(compression Compression) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Compression = compression + return cfg + }) +} + +func WithURLPath(urlPath string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.URLPath = urlPath + return cfg + }) +} + +func WithRetry(rc retry.Config) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.RetryConfig = rc + return cfg + }) +} + +func WithTLSClientConfig(tlsCfg *tls.Config) GenericOption { + return newSplitOption(func(cfg Config) Config { + cfg.Metrics.TLSCfg = tlsCfg.Clone() + return cfg + }, func(cfg Config) Config { + cfg.Metrics.GRPCCredentials = credentials.NewTLS(tlsCfg) + return cfg + }) +} + +func WithInsecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Insecure = true + return cfg + }) +} + +func WithSecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Insecure = false + return cfg + }) +} + +func WithHeaders(headers map[string]string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Headers = headers + return cfg + }) +} + +func WithTimeout(duration time.Duration) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Timeout = duration + return cfg + }) +} + +func WithTemporalitySelector(selector metric.TemporalitySelector) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.TemporalitySelector = selector + return cfg + }) +} + +func WithAggregationSelector(selector metric.AggregationSelector) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.AggregationSelector = selector + return cfg + }) +} + +func WithProxy(pf HTTPTransportProxyFunc) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Proxy = pf + return cfg + }) +} + +func WithHTTPClient(c *http.Client) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.HTTPClient = c + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/optiontypes.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/optiontypes.go new file mode 100644 index 0000000000..c18a6b1f2a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/optiontypes.go @@ -0,0 +1,47 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/optiontypes.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + +import "time" + +const ( + // DefaultCollectorGRPCPort is the default gRPC port of the collector. + DefaultCollectorGRPCPort uint16 = 4317 + // DefaultCollectorHTTPPort is the default HTTP port of the collector. + DefaultCollectorHTTPPort uint16 = 4318 + // DefaultCollectorHost is the host address the Exporter will attempt + // connect to if no collector address is provided. + DefaultCollectorHost string = "localhost" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression int + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression Compression = iota + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression +) + +// RetrySettings defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type RetrySettings struct { + // Enabled indicates whether to not retry sending batches in case of export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is reached the delay between + // consecutive retries will always be `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent trying to send a request/batch. + // Once this value is reached, the data is discarded. + MaxElapsedTime time.Duration +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/tls.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/tls.go new file mode 100644 index 0000000000..e4547b3a63 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf/tls.go @@ -0,0 +1,38 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/tls.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/oconf" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "os" +) + +// ReadTLSConfigFromFile reads a PEM certificate file and creates +// a tls.Config that will use this certificate to verify a server certificate. +func ReadTLSConfigFromFile(path string) (*tls.Config, error) { + b, err := os.ReadFile(path) + if err != nil { + return nil, err + } + + return CreateTLSConfig(b) +} + +// CreateTLSConfig creates a tls.Config from a raw certificate bytes +// to verify a server certificate. +func CreateTLSConfig(certBytes []byte) (*tls.Config, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + + return &tls.Config{ + RootCAs: cp, + }, nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/partialsuccess.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/partialsuccess.go new file mode 100644 index 0000000000..6af5591ea7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/partialsuccess.go @@ -0,0 +1,56 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/partialsuccess.go + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal" + +import "fmt" + +// PartialSuccess represents the underlying error for all handling +// OTLP partial success messages. Use `errors.Is(err, +// PartialSuccess{})` to test whether an error passed to the OTel +// error handler belongs to this category. +type PartialSuccess struct { + ErrorMessage string + RejectedItems int64 + RejectedKind string +} + +var _ error = PartialSuccess{} + +// Error implements the error interface. +func (ps PartialSuccess) Error() string { + msg := ps.ErrorMessage + if msg == "" { + msg = "empty message" + } + return fmt.Sprintf("OTLP partial success: %s (%d %s rejected)", msg, ps.RejectedItems, ps.RejectedKind) +} + +// Is supports the errors.Is() interface. +func (ps PartialSuccess) Is(err error) bool { + _, ok := err.(PartialSuccess) + return ok +} + +// TracePartialSuccessError returns an error describing a partial success +// response for the trace signal. +func TracePartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "spans", + } +} + +// MetricPartialSuccessError returns an error describing a partial success +// response for the metric signal. +func MetricPartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "metric data points", + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry/retry.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry/retry.go new file mode 100644 index 0000000000..80691ac3a9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry/retry.go @@ -0,0 +1,141 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/retry/retry.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package retry provides request retry functionality that can perform +// configurable exponential backoff for transient errors and honor any +// explicit throttle responses received. +package retry // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/retry" + +import ( + "context" + "fmt" + "time" + + "github.com/cenkalti/backoff/v5" +) + +// DefaultConfig are the recommended defaults to use. +var DefaultConfig = Config{ + Enabled: true, + InitialInterval: 5 * time.Second, + MaxInterval: 30 * time.Second, + MaxElapsedTime: time.Minute, +} + +// Config defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type Config struct { + // Enabled indicates whether to not retry sending batches in case of + // export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before + // retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is + // reached the delay between consecutive retries will always be + // `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent + // trying to send a request/batch. Once this value is reached, the data + // is discarded. + MaxElapsedTime time.Duration +} + +// RequestFunc wraps a request with retry logic. +type RequestFunc func(context.Context, func(context.Context) error) error + +// EvaluateFunc returns if an error is retry-able and if an explicit throttle +// duration should be honored that was included in the error. +// +// The function must return true if the error argument is retry-able, +// otherwise it must return false for the first return parameter. +// +// The function must return a non-zero time.Duration if the error contains +// explicit throttle duration that should be honored, otherwise it must return +// a zero valued time.Duration. +type EvaluateFunc func(error) (bool, time.Duration) + +// RequestFunc returns a RequestFunc using the evaluate function to determine +// if requests can be retried and based on the exponential backoff +// configuration of c. +func (c Config) RequestFunc(evaluate EvaluateFunc) RequestFunc { + if !c.Enabled { + return func(ctx context.Context, fn func(context.Context) error) error { + return fn(ctx) + } + } + + return func(ctx context.Context, fn func(context.Context) error) error { + // Do not use NewExponentialBackOff since it calls Reset and the code here + // must call Reset after changing the InitialInterval (this saves an + // unnecessary call to Now). + b := &backoff.ExponentialBackOff{ + InitialInterval: c.InitialInterval, + RandomizationFactor: backoff.DefaultRandomizationFactor, + Multiplier: backoff.DefaultMultiplier, + MaxInterval: c.MaxInterval, + } + b.Reset() + + maxElapsedTime := c.MaxElapsedTime + startTime := time.Now() + + for { + err := fn(ctx) + if err == nil { + return nil + } + + retryable, throttle := evaluate(err) + if !retryable { + return err + } + + if maxElapsedTime != 0 && time.Since(startTime) > maxElapsedTime { + return fmt.Errorf("max retry time elapsed: %w", err) + } + + // Wait for the greater of the backoff or throttle delay. + bOff := b.NextBackOff() + delay := max(throttle, bOff) + + elapsed := time.Since(startTime) + if maxElapsedTime != 0 && elapsed+throttle > maxElapsedTime { + return fmt.Errorf("max retry time would elapse: %w", err) + } + + if ctxErr := waitFunc(ctx, delay); ctxErr != nil { + return fmt.Errorf("%w: %w", ctxErr, err) + } + } + } +} + +// Allow override for testing. +var waitFunc = wait + +// wait takes the caller's context, and the amount of time to wait. It will +// return nil if the timer fires before or at the same time as the context's +// deadline. This indicates that the call can be retried. +func wait(ctx context.Context, delay time.Duration) error { + timer := time.NewTimer(delay) + defer timer.Stop() + + select { + case <-ctx.Done(): + // Handle the case where the timer and context deadline end + // simultaneously by prioritizing the timer expiration nil value + // response. + select { + case <-timer.C: + default: + return context.Cause(ctx) + } + case <-timer.C: + } + + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/attribute.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/attribute.go new file mode 100644 index 0000000000..cb70a9c416 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/attribute.go @@ -0,0 +1,144 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/attribute.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform" + +import ( + "go.opentelemetry.io/otel/attribute" + cpb "go.opentelemetry.io/proto/otlp/common/v1" +) + +// AttrIter transforms an attribute iterator into OTLP key-values. +func AttrIter(iter attribute.Iterator) []*cpb.KeyValue { + l := iter.Len() + if l == 0 { + return nil + } + + out := make([]*cpb.KeyValue, 0, l) + for iter.Next() { + out = append(out, KeyValue(iter.Attribute())) + } + return out +} + +// KeyValues transforms a slice of attribute KeyValues into OTLP key-values. +func KeyValues(attrs []attribute.KeyValue) []*cpb.KeyValue { + if len(attrs) == 0 { + return nil + } + + out := make([]*cpb.KeyValue, 0, len(attrs)) + for _, kv := range attrs { + out = append(out, KeyValue(kv)) + } + return out +} + +// KeyValue transforms an attribute KeyValue into an OTLP key-value. +func KeyValue(kv attribute.KeyValue) *cpb.KeyValue { + return &cpb.KeyValue{Key: string(kv.Key), Value: Value(kv.Value)} +} + +// Value transforms an attribute Value into an OTLP AnyValue. +func Value(v attribute.Value) *cpb.AnyValue { + av := new(cpb.AnyValue) + switch v.Type() { + case attribute.BOOL: + av.Value = &cpb.AnyValue_BoolValue{ + BoolValue: v.AsBool(), + } + case attribute.BOOLSLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: boolSliceValues(v.AsBoolSlice()), + }, + } + case attribute.INT64: + av.Value = &cpb.AnyValue_IntValue{ + IntValue: v.AsInt64(), + } + case attribute.INT64SLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: int64SliceValues(v.AsInt64Slice()), + }, + } + case attribute.FLOAT64: + av.Value = &cpb.AnyValue_DoubleValue{ + DoubleValue: v.AsFloat64(), + } + case attribute.FLOAT64SLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: float64SliceValues(v.AsFloat64Slice()), + }, + } + case attribute.STRING: + av.Value = &cpb.AnyValue_StringValue{ + StringValue: v.AsString(), + } + case attribute.STRINGSLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: stringSliceValues(v.AsStringSlice()), + }, + } + default: + av.Value = &cpb.AnyValue_StringValue{ + StringValue: "INVALID", + } + } + return av +} + +func boolSliceValues(vals []bool) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_BoolValue{ + BoolValue: v, + }, + } + } + return converted +} + +func int64SliceValues(vals []int64) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_IntValue{ + IntValue: v, + }, + } + } + return converted +} + +func float64SliceValues(vals []float64) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_DoubleValue{ + DoubleValue: v, + }, + } + } + return converted +} + +func stringSliceValues(vals []string) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_StringValue{ + StringValue: v, + }, + } + } + return converted +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/error.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/error.go new file mode 100644 index 0000000000..f03bfec419 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/error.go @@ -0,0 +1,103 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/error.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform" + +import ( + "errors" + "fmt" + "strings" + + mpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +var ( + errUnknownAggregation = errors.New("unknown aggregation") + errUnknownTemporality = errors.New("unknown temporality") +) + +type errMetric struct { + m *mpb.Metric + err error +} + +func (e errMetric) Unwrap() error { + return e.err +} + +func (e errMetric) Error() string { + format := "invalid metric (name: %q, description: %q, unit: %q): %s" + return fmt.Sprintf(format, e.m.Name, e.m.Description, e.m.Unit, e.err) +} + +func (e errMetric) Is(target error) bool { + return errors.Is(e.err, target) +} + +// multiErr is used by the data-type transform functions to wrap multiple +// errors into a single return value. The error message will show all errors +// as a list and scope them by the datatype name that is returning them. +type multiErr struct { + datatype string + errs []error +} + +// errOrNil returns nil if e contains no errors, otherwise it returns e. +func (e *multiErr) errOrNil() error { + if len(e.errs) == 0 { + return nil + } + return e +} + +// append adds err to e. If err is a multiErr, its errs are flattened into e. +func (e *multiErr) append(err error) { + // Do not use errors.As here, this should only be flattened one layer. If + // there is a *multiErr several steps down the chain, all the errors above + // it will be discarded if errors.As is used instead. + switch other := err.(type) { //nolint:errorlint + case *multiErr: + // Flatten err errors into e. + e.errs = append(e.errs, other.errs...) + default: + e.errs = append(e.errs, err) + } +} + +func (e *multiErr) Error() string { + es := make([]string, len(e.errs)) + for i, err := range e.errs { + es[i] = fmt.Sprintf("* %s", err) + } + + format := "%d errors occurred transforming %s:\n\t%s" + return fmt.Sprintf(format, len(es), e.datatype, strings.Join(es, "\n\t")) +} + +func (e *multiErr) Unwrap() error { + switch len(e.errs) { + case 0: + return nil + case 1: + return e.errs[0] + } + + // Return a multiErr without the leading error. + cp := &multiErr{ + datatype: e.datatype, + errs: make([]error, len(e.errs)-1), + } + copy(cp.errs, e.errs[1:]) + return cp +} + +func (e *multiErr) Is(target error) bool { + if len(e.errs) == 0 { + return false + } + // Check if the first error is target. + return errors.Is(e.errs[0], target) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/metricdata.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/metricdata.go new file mode 100644 index 0000000000..9c156e91b1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform/metricdata.go @@ -0,0 +1,356 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/metricdata.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package transform provides transformation functionality from the +// sdk/metric/metricdata data-types into OTLP data-types. +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/internal/transform" + +import ( + "fmt" + "time" + + "go.opentelemetry.io/otel/sdk/metric/metricdata" + cpb "go.opentelemetry.io/proto/otlp/common/v1" + mpb "go.opentelemetry.io/proto/otlp/metrics/v1" + rpb "go.opentelemetry.io/proto/otlp/resource/v1" +) + +// ResourceMetrics returns an OTLP ResourceMetrics generated from rm. If rm +// contains invalid ScopeMetrics, an error will be returned along with an OTLP +// ResourceMetrics that contains partial OTLP ScopeMetrics. +func ResourceMetrics(rm *metricdata.ResourceMetrics) (*mpb.ResourceMetrics, error) { + sms, err := ScopeMetrics(rm.ScopeMetrics) + return &mpb.ResourceMetrics{ + Resource: &rpb.Resource{ + Attributes: AttrIter(rm.Resource.Iter()), + }, + ScopeMetrics: sms, + SchemaUrl: rm.Resource.SchemaURL(), + }, err +} + +// ScopeMetrics returns a slice of OTLP ScopeMetrics generated from sms. If +// sms contains invalid metric values, an error will be returned along with a +// slice that contains partial OTLP ScopeMetrics. +func ScopeMetrics(sms []metricdata.ScopeMetrics) ([]*mpb.ScopeMetrics, error) { + errs := &multiErr{datatype: "ScopeMetrics"} + out := make([]*mpb.ScopeMetrics, 0, len(sms)) + for _, sm := range sms { + ms, err := Metrics(sm.Metrics) + if err != nil { + errs.append(err) + } + + out = append(out, &mpb.ScopeMetrics{ + Scope: &cpb.InstrumentationScope{ + Name: sm.Scope.Name, + Version: sm.Scope.Version, + Attributes: AttrIter(sm.Scope.Attributes.Iter()), + }, + Metrics: ms, + SchemaUrl: sm.Scope.SchemaURL, + }) + } + return out, errs.errOrNil() +} + +// Metrics returns a slice of OTLP Metric generated from ms. If ms contains +// invalid metric values, an error will be returned along with a slice that +// contains partial OTLP Metrics. +func Metrics(ms []metricdata.Metrics) ([]*mpb.Metric, error) { + errs := &multiErr{datatype: "Metrics"} + out := make([]*mpb.Metric, 0, len(ms)) + for _, m := range ms { + o, err := metric(m) + if err != nil { + // Do not include invalid data. Drop the metric, report the error. + errs.append(errMetric{m: o, err: err}) + continue + } + out = append(out, o) + } + return out, errs.errOrNil() +} + +func metric(m metricdata.Metrics) (*mpb.Metric, error) { + var err error + out := &mpb.Metric{ + Name: m.Name, + Description: m.Description, + Unit: m.Unit, + } + switch a := m.Data.(type) { + case metricdata.Gauge[int64]: + out.Data = Gauge(a) + case metricdata.Gauge[float64]: + out.Data = Gauge(a) + case metricdata.Sum[int64]: + out.Data, err = Sum(a) + case metricdata.Sum[float64]: + out.Data, err = Sum(a) + case metricdata.Histogram[int64]: + out.Data, err = Histogram(a) + case metricdata.Histogram[float64]: + out.Data, err = Histogram(a) + case metricdata.ExponentialHistogram[int64]: + out.Data, err = ExponentialHistogram(a) + case metricdata.ExponentialHistogram[float64]: + out.Data, err = ExponentialHistogram(a) + case metricdata.Summary: + out.Data = Summary(a) + default: + return out, fmt.Errorf("%w: %T", errUnknownAggregation, a) + } + return out, err +} + +// Gauge returns an OTLP Metric_Gauge generated from g. +func Gauge[N int64 | float64](g metricdata.Gauge[N]) *mpb.Metric_Gauge { + return &mpb.Metric_Gauge{ + Gauge: &mpb.Gauge{ + DataPoints: DataPoints(g.DataPoints), + }, + } +} + +// Sum returns an OTLP Metric_Sum generated from s. An error is returned +// if the temporality of s is unknown. +func Sum[N int64 | float64](s metricdata.Sum[N]) (*mpb.Metric_Sum, error) { + t, err := Temporality(s.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_Sum{ + Sum: &mpb.Sum{ + AggregationTemporality: t, + IsMonotonic: s.IsMonotonic, + DataPoints: DataPoints(s.DataPoints), + }, + }, nil +} + +// DataPoints returns a slice of OTLP NumberDataPoint generated from dPts. +func DataPoints[N int64 | float64](dPts []metricdata.DataPoint[N]) []*mpb.NumberDataPoint { + out := make([]*mpb.NumberDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + ndp := &mpb.NumberDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Exemplars: Exemplars(dPt.Exemplars), + } + switch v := any(dPt.Value).(type) { + case int64: + ndp.Value = &mpb.NumberDataPoint_AsInt{ + AsInt: v, + } + case float64: + ndp.Value = &mpb.NumberDataPoint_AsDouble{ + AsDouble: v, + } + } + out = append(out, ndp) + } + return out +} + +// Histogram returns an OTLP Metric_Histogram generated from h. An error is +// returned if the temporality of h is unknown. +func Histogram[N int64 | float64](h metricdata.Histogram[N]) (*mpb.Metric_Histogram, error) { + t, err := Temporality(h.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_Histogram{ + Histogram: &mpb.Histogram{ + AggregationTemporality: t, + DataPoints: HistogramDataPoints(h.DataPoints), + }, + }, nil +} + +// HistogramDataPoints returns a slice of OTLP HistogramDataPoint generated +// from dPts. +func HistogramDataPoints[N int64 | float64](dPts []metricdata.HistogramDataPoint[N]) []*mpb.HistogramDataPoint { + out := make([]*mpb.HistogramDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sum := float64(dPt.Sum) + hdp := &mpb.HistogramDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: &sum, + BucketCounts: dPt.BucketCounts, + ExplicitBounds: dPt.Bounds, + Exemplars: Exemplars(dPt.Exemplars), + } + if v, ok := dPt.Min.Value(); ok { + vF64 := float64(v) + hdp.Min = &vF64 + } + if v, ok := dPt.Max.Value(); ok { + vF64 := float64(v) + hdp.Max = &vF64 + } + out = append(out, hdp) + } + return out +} + +// ExponentialHistogram returns an OTLP Metric_ExponentialHistogram generated from h. An error is +// returned if the temporality of h is unknown. +func ExponentialHistogram[N int64 | float64]( + h metricdata.ExponentialHistogram[N], +) (*mpb.Metric_ExponentialHistogram, error) { + t, err := Temporality(h.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_ExponentialHistogram{ + ExponentialHistogram: &mpb.ExponentialHistogram{ + AggregationTemporality: t, + DataPoints: ExponentialHistogramDataPoints(h.DataPoints), + }, + }, nil +} + +// ExponentialHistogramDataPoints returns a slice of OTLP ExponentialHistogramDataPoint generated +// from dPts. +func ExponentialHistogramDataPoints[N int64 | float64]( + dPts []metricdata.ExponentialHistogramDataPoint[N], +) []*mpb.ExponentialHistogramDataPoint { + out := make([]*mpb.ExponentialHistogramDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sum := float64(dPt.Sum) + ehdp := &mpb.ExponentialHistogramDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: &sum, + Scale: dPt.Scale, + ZeroCount: dPt.ZeroCount, + Exemplars: Exemplars(dPt.Exemplars), + + Positive: ExponentialHistogramDataPointBuckets(dPt.PositiveBucket), + Negative: ExponentialHistogramDataPointBuckets(dPt.NegativeBucket), + } + if v, ok := dPt.Min.Value(); ok { + vF64 := float64(v) + ehdp.Min = &vF64 + } + if v, ok := dPt.Max.Value(); ok { + vF64 := float64(v) + ehdp.Max = &vF64 + } + out = append(out, ehdp) + } + return out +} + +// ExponentialHistogramDataPointBuckets returns an OTLP ExponentialHistogramDataPoint_Buckets generated +// from bucket. +func ExponentialHistogramDataPointBuckets( + bucket metricdata.ExponentialBucket, +) *mpb.ExponentialHistogramDataPoint_Buckets { + return &mpb.ExponentialHistogramDataPoint_Buckets{ + Offset: bucket.Offset, + BucketCounts: bucket.Counts, + } +} + +// Temporality returns an OTLP AggregationTemporality generated from t. If t +// is unknown, an error is returned along with the invalid +// AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED. +func Temporality(t metricdata.Temporality) (mpb.AggregationTemporality, error) { + switch t { + case metricdata.DeltaTemporality: + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_DELTA, nil + case metricdata.CumulativeTemporality: + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_CUMULATIVE, nil + default: + err := fmt.Errorf("%w: %s", errUnknownTemporality, t) + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED, err + } +} + +// timeUnixNano returns t as a Unix time, the number of nanoseconds elapsed +// since January 1, 1970 UTC as uint64. +// The result is undefined if the Unix time +// in nanoseconds cannot be represented by an int64 +// (a date before the year 1678 or after 2262). +// timeUnixNano on the zero Time returns 0. +// The result does not depend on the location associated with t. +func timeUnixNano(t time.Time) uint64 { + return uint64(max(0, t.UnixNano())) // nolint:gosec // Overflow checked. +} + +// Exemplars returns a slice of OTLP Exemplars generated from exemplars. +func Exemplars[N int64 | float64](exemplars []metricdata.Exemplar[N]) []*mpb.Exemplar { + out := make([]*mpb.Exemplar, 0, len(exemplars)) + for _, exemplar := range exemplars { + e := &mpb.Exemplar{ + FilteredAttributes: KeyValues(exemplar.FilteredAttributes), + TimeUnixNano: timeUnixNano(exemplar.Time), + SpanId: exemplar.SpanID, + TraceId: exemplar.TraceID, + } + switch v := any(exemplar.Value).(type) { + case int64: + e.Value = &mpb.Exemplar_AsInt{ + AsInt: v, + } + case float64: + e.Value = &mpb.Exemplar_AsDouble{ + AsDouble: v, + } + } + out = append(out, e) + } + return out +} + +// Summary returns an OTLP Metric_Summary generated from s. +func Summary(s metricdata.Summary) *mpb.Metric_Summary { + return &mpb.Metric_Summary{ + Summary: &mpb.Summary{ + DataPoints: SummaryDataPoints(s.DataPoints), + }, + } +} + +// SummaryDataPoints returns a slice of OTLP SummaryDataPoint generated from +// dPts. +func SummaryDataPoints(dPts []metricdata.SummaryDataPoint) []*mpb.SummaryDataPoint { + out := make([]*mpb.SummaryDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sdp := &mpb.SummaryDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: dPt.Sum, + QuantileValues: QuantileValues(dPt.QuantileValues), + } + out = append(out, sdp) + } + return out +} + +// QuantileValues returns a slice of OTLP SummaryDataPoint_ValueAtQuantile +// generated from quantiles. +func QuantileValues(quantiles []metricdata.QuantileValue) []*mpb.SummaryDataPoint_ValueAtQuantile { + out := make([]*mpb.SummaryDataPoint_ValueAtQuantile, 0, len(quantiles)) + for _, q := range quantiles { + quantile := &mpb.SummaryDataPoint_ValueAtQuantile{ + Quantile: q.Quantile, + Value: q.Value, + } + out = append(out, quantile) + } + return out +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/version.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/version.go new file mode 100644 index 0000000000..b34d35b0b8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetricgrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc" + +// Version is the current release version of the OpenTelemetry OTLP over gRPC metrics exporter in use. +func Version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/README.md b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/README.md new file mode 100644 index 0000000000..b02cdcbbed --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/README.md @@ -0,0 +1,3 @@ +# OTLP Metric HTTP Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/client.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/client.go new file mode 100644 index 0000000000..23f1f00317 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/client.go @@ -0,0 +1,349 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetrichttp // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp" + +import ( + "bytes" + "compress/gzip" + "context" + "errors" + "fmt" + "io" + "net" + "net/http" + "net/url" + "strconv" + "strings" + "sync" + "time" + + "google.golang.org/protobuf/proto" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry" + colmetricpb "go.opentelemetry.io/proto/otlp/collector/metrics/v1" + metricpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +type client struct { + // req is cloned for every upload the client makes. + req *http.Request + compression Compression + requestFunc retry.RequestFunc + httpClient *http.Client +} + +// Keep it in sync with golang's DefaultTransport from net/http! We +// have our own copy to avoid handling a situation where the +// DefaultTransport is overwritten with some different implementation +// of http.RoundTripper or it's modified by another package. +var ourTransport = &http.Transport{ + Proxy: http.ProxyFromEnvironment, + DialContext: (&net.Dialer{ + Timeout: 30 * time.Second, + KeepAlive: 30 * time.Second, + }).DialContext, + ForceAttemptHTTP2: true, + MaxIdleConns: 100, + IdleConnTimeout: 90 * time.Second, + TLSHandshakeTimeout: 10 * time.Second, + ExpectContinueTimeout: 1 * time.Second, +} + +// newClient creates a new HTTP metric client. +func newClient(cfg oconf.Config) (*client, error) { + httpClient := cfg.Metrics.HTTPClient + if httpClient == nil { + httpClient = &http.Client{ + Transport: ourTransport, + Timeout: cfg.Metrics.Timeout, + } + + if cfg.Metrics.TLSCfg != nil || cfg.Metrics.Proxy != nil { + clonedTransport := ourTransport.Clone() + httpClient.Transport = clonedTransport + + if cfg.Metrics.TLSCfg != nil { + clonedTransport.TLSClientConfig = cfg.Metrics.TLSCfg + } + if cfg.Metrics.Proxy != nil { + clonedTransport.Proxy = cfg.Metrics.Proxy + } + } + } + + u := &url.URL{ + Scheme: "https", + Host: cfg.Metrics.Endpoint, + Path: cfg.Metrics.URLPath, + } + if cfg.Metrics.Insecure { + u.Scheme = "http" + } + // Body is set when this is cloned during upload. + req, err := http.NewRequest(http.MethodPost, u.String(), http.NoBody) + if err != nil { + return nil, err + } + + userAgent := "OTel Go OTLP over HTTP/protobuf metrics exporter/" + Version() + req.Header.Set("User-Agent", userAgent) + + if n := len(cfg.Metrics.Headers); n > 0 { + for k, v := range cfg.Metrics.Headers { + req.Header.Set(k, v) + } + } + req.Header.Set("Content-Type", "application/x-protobuf") + + return &client{ + compression: Compression(cfg.Metrics.Compression), + req: req, + requestFunc: cfg.RetryConfig.RequestFunc(evaluate), + httpClient: httpClient, + }, nil +} + +// Shutdown shuts down the client, freeing all resources. +func (c *client) Shutdown(ctx context.Context) error { + // The otlpmetric.Exporter synchronizes access to client methods and + // ensures this is called only once. The only thing that needs to be done + // here is to release any computational resources the client holds. + + c.requestFunc = nil + c.httpClient = nil + return ctx.Err() +} + +// UploadMetrics sends protoMetrics to the connected endpoint. +// +// Retryable errors from the server will be handled according to any +// RetryConfig the client was created with. +func (c *client) UploadMetrics(ctx context.Context, protoMetrics *metricpb.ResourceMetrics) error { + // The otlpmetric.Exporter synchronizes access to client methods, and + // ensures this is not called after the Exporter is shutdown. Only thing + // to do here is send data. + + pbRequest := &colmetricpb.ExportMetricsServiceRequest{ + ResourceMetrics: []*metricpb.ResourceMetrics{protoMetrics}, + } + body, err := proto.Marshal(pbRequest) + if err != nil { + return err + } + request, err := c.newRequest(ctx, body) + if err != nil { + return err + } + + return c.requestFunc(ctx, func(iCtx context.Context) error { + select { + case <-iCtx.Done(): + return iCtx.Err() + default: + } + + request.reset(iCtx) + resp, err := c.httpClient.Do(request.Request) + var urlErr *url.Error + if errors.As(err, &urlErr) && urlErr.Temporary() { + return newResponseError(http.Header{}, err) + } + if err != nil { + return err + } + if resp != nil && resp.Body != nil { + defer func() { + if err := resp.Body.Close(); err != nil { + otel.Handle(err) + } + }() + } + + if sc := resp.StatusCode; sc >= 200 && sc <= 299 { + // Success, do not retry. + + // Read the partial success message, if any. + var respData bytes.Buffer + if _, err := io.Copy(&respData, resp.Body); err != nil { + return err + } + if respData.Len() == 0 { + return nil + } + + if resp.Header.Get("Content-Type") == "application/x-protobuf" { + var respProto colmetricpb.ExportMetricsServiceResponse + if err := proto.Unmarshal(respData.Bytes(), &respProto); err != nil { + return err + } + + if respProto.PartialSuccess != nil { + msg := respProto.PartialSuccess.GetErrorMessage() + n := respProto.PartialSuccess.GetRejectedDataPoints() + if n != 0 || msg != "" { + err := internal.MetricPartialSuccessError(n, msg) + otel.Handle(err) + } + } + } + return nil + } + // Error cases. + + // server may return a message with the response + // body, so we read it to include in the error + // message to be returned. It will help in + // debugging the actual issue. + var respData bytes.Buffer + if _, err := io.Copy(&respData, resp.Body); err != nil { + return err + } + respStr := strings.TrimSpace(respData.String()) + if len(respStr) == 0 { + respStr = "(empty)" + } + bodyErr := fmt.Errorf("body: %s", respStr) + + switch resp.StatusCode { + case http.StatusTooManyRequests, + http.StatusBadGateway, + http.StatusServiceUnavailable, + http.StatusGatewayTimeout: + // Retryable failure. + return newResponseError(resp.Header, bodyErr) + default: + // Non-retryable failure. + return fmt.Errorf("failed to send metrics to %s: %s (%w)", request.URL, resp.Status, bodyErr) + } + }) +} + +var gzPool = sync.Pool{ + New: func() interface{} { + w := gzip.NewWriter(io.Discard) + return w + }, +} + +func (c *client) newRequest(ctx context.Context, body []byte) (request, error) { + r := c.req.Clone(ctx) + req := request{Request: r} + + switch c.compression { + case NoCompression: + r.ContentLength = (int64)(len(body)) + req.bodyReader = bodyReader(body) + case GzipCompression: + // Ensure the content length is not used. + r.ContentLength = -1 + r.Header.Set("Content-Encoding", "gzip") + + gz := gzPool.Get().(*gzip.Writer) + defer gzPool.Put(gz) + + var b bytes.Buffer + gz.Reset(&b) + + if _, err := gz.Write(body); err != nil { + return req, err + } + // Close needs to be called to ensure body is fully written. + if err := gz.Close(); err != nil { + return req, err + } + + req.bodyReader = bodyReader(b.Bytes()) + } + + return req, nil +} + +// bodyReader returns a closure returning a new reader for buf. +func bodyReader(buf []byte) func() io.ReadCloser { + return func() io.ReadCloser { + return io.NopCloser(bytes.NewReader(buf)) + } +} + +// request wraps an http.Request with a resettable body reader. +type request struct { + *http.Request + + // bodyReader allows the same body to be used for multiple requests. + bodyReader func() io.ReadCloser +} + +// reset reinitializes the request Body and uses ctx for the request. +func (r *request) reset(ctx context.Context) { + r.Body = r.bodyReader() + r.Request = r.WithContext(ctx) +} + +// retryableError represents a request failure that can be retried. +type retryableError struct { + throttle int64 + err error +} + +// newResponseError returns a retryableError and will extract any explicit +// throttle delay contained in headers. The returned error wraps wrapped +// if it is not nil. +func newResponseError(header http.Header, wrapped error) error { + var rErr retryableError + if v := header.Get("Retry-After"); v != "" { + if t, err := strconv.ParseInt(v, 10, 64); err == nil { + rErr.throttle = t + } + } + + rErr.err = wrapped + return rErr +} + +func (e retryableError) Error() string { + if e.err != nil { + return "retry-able request failure: " + e.err.Error() + } + + return "retry-able request failure" +} + +func (e retryableError) Unwrap() error { + return e.err +} + +func (e retryableError) As(target interface{}) bool { + if e.err == nil { + return false + } + + switch v := target.(type) { + case **retryableError: + *v = &e + return true + default: + return false + } +} + +// evaluate returns if err is retry-able. If it is and it includes an explicit +// throttling delay, that delay is also returned. +func evaluate(err error) (bool, time.Duration) { + if err == nil { + return false, 0 + } + + // Do not use errors.As here, this should only be flattened one layer. If + // there are several chained errors, all the errors above it will be + // discarded if errors.As is used instead. + rErr, ok := err.(retryableError) //nolint:errorlint + if !ok { + return false, 0 + } + + return true, time.Duration(rErr.throttle) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/config.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/config.go new file mode 100644 index 0000000000..2b144f7eb5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/config.go @@ -0,0 +1,240 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetrichttp // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp" + +import ( + "crypto/tls" + "net/http" + "net/url" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry" + "go.opentelemetry.io/otel/sdk/metric" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression oconf.Compression + +// HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. +// This type is compatible with http.Transport.Proxy and can be used to set a custom proxy function +// to the OTLP HTTP client. +type HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression = Compression(oconf.NoCompression) + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression = Compression(oconf.GzipCompression) +) + +// Option applies an option to the Exporter. +type Option interface { + applyHTTPOption(oconf.Config) oconf.Config +} + +func asHTTPOptions(opts []Option) []oconf.HTTPOption { + converted := make([]oconf.HTTPOption, len(opts)) + for i, o := range opts { + converted[i] = oconf.NewHTTPOption(o.applyHTTPOption) + } + return converted +} + +// RetryConfig defines configuration for retrying the export of metric data +// that failed. +type RetryConfig retry.Config + +type wrappedOption struct { + oconf.HTTPOption +} + +func (w wrappedOption) applyHTTPOption(cfg oconf.Config) oconf.Config { + return w.ApplyHTTPOption(cfg) +} + +// WithEndpoint sets the target endpoint the Exporter will connect to. This +// endpoint is specified as a host and optional port, no path or scheme should +// be included (see WithInsecure and WithURLPath). +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4318" will be used. +func WithEndpoint(endpoint string) Option { + return wrappedOption{oconf.WithEndpoint(endpoint)} +} + +// WithEndpointURL sets the target endpoint URL the Exporter will connect to. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpoint are used, the last used option will +// take precedence. +// +// If an invalid URL is provided, the default value will be kept. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4318" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpointURL(u string) Option { + return wrappedOption{oconf.WithEndpointURL(u)} +} + +// WithCompression sets the compression strategy the Exporter will use to +// compress the HTTP body. +// +// If the OTEL_EXPORTER_OTLP_COMPRESSION or +// OTEL_EXPORTER_OTLP_METRICS_COMPRESSION environment variable is set, and +// this option is not passed, that variable value will be used. That value can +// be either "none" or "gzip". If both are set, +// OTEL_EXPORTER_OTLP_METRICS_COMPRESSION will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, no compression strategy will be used. +func WithCompression(compression Compression) Option { + return wrappedOption{oconf.WithCompression(oconf.Compression(compression))} +} + +// WithURLPath sets the URL path the Exporter will send requests to. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, the path +// contained in that variable value will be used. If both are set, +// OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, "/v1/metrics" will be used. +func WithURLPath(urlPath string) Option { + return wrappedOption{oconf.WithURLPath(urlPath)} +} + +// WithTLSClientConfig sets the TLS configuration the Exporter will use for +// HTTP requests. +// +// If the OTEL_EXPORTER_OTLP_CERTIFICATE or +// OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE environment variable is set, and +// this option is not passed, that variable value will be used. The value will +// be parsed the filepath of the TLS certificate chain to use. If both are +// set, OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, the system default configuration is used. +func WithTLSClientConfig(tlsCfg *tls.Config) Option { + return wrappedOption{oconf.WithTLSClientConfig(tlsCfg)} +} + +// WithInsecure disables client transport security for the Exporter's HTTP +// connection. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used to determine client security. If the endpoint has a +// scheme of "http" or "unix" client security will be disabled. If both are +// set, OTEL_EXPORTER_OTLP_METRICS_ENDPOINT will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, client security will be used. +func WithInsecure() Option { + return wrappedOption{oconf.WithInsecure()} +} + +// WithHeaders will send the provided headers with each HTTP requests. +// +// If the OTEL_EXPORTER_OTLP_HEADERS or OTEL_EXPORTER_OTLP_METRICS_HEADERS +// environment variable is set, and this option is not passed, that variable +// value will be used. The value will be parsed as a list of key value pairs. +// These pairs are expected to be in the W3C Correlation-Context format +// without additional semi-colon delimited metadata (i.e. "k1=v1,k2=v2"). If +// both are set, OTEL_EXPORTER_OTLP_METRICS_HEADERS will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, no user headers will be set. +func WithHeaders(headers map[string]string) Option { + return wrappedOption{oconf.WithHeaders(headers)} +} + +// WithTimeout sets the max amount of time an Exporter will attempt an export. +// +// This takes precedence over any retry settings defined by WithRetry. Once +// this time limit has been reached the export is abandoned and the metric +// data is dropped. +// +// If the OTEL_EXPORTER_OTLP_TIMEOUT or OTEL_EXPORTER_OTLP_METRICS_TIMEOUT +// environment variable is set, and this option is not passed, that variable +// value will be used. The value will be parsed as an integer representing the +// timeout in milliseconds. If both are set, +// OTEL_EXPORTER_OTLP_METRICS_TIMEOUT will take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, a timeout of 10 seconds will be used. +func WithTimeout(duration time.Duration) Option { + return wrappedOption{oconf.WithTimeout(duration)} +} + +// WithRetry sets the retry policy for transient retryable errors that are +// returned by the target endpoint. +// +// If the target endpoint responds with not only a retryable error, but +// explicitly returns a backoff time in the response, that time will take +// precedence over these settings. +// +// If unset, the default retry policy will be used. It will retry the export +// 5 seconds after receiving a retryable error and increase exponentially +// after each error for no more than a total time of 1 minute. +func WithRetry(rc RetryConfig) Option { + return wrappedOption{oconf.WithRetry(retry.Config(rc))} +} + +// WithTemporalitySelector sets the TemporalitySelector the client will use to +// determine the Temporality of an instrument based on its kind. If this option +// is not used, the client will use the DefaultTemporalitySelector from the +// go.opentelemetry.io/otel/sdk/metric package. +func WithTemporalitySelector(selector metric.TemporalitySelector) Option { + return wrappedOption{oconf.WithTemporalitySelector(selector)} +} + +// WithAggregationSelector sets the AggregationSelector the client will use to +// determine the aggregation to use for an instrument based on its kind. If +// this option is not used, the reader will use the DefaultAggregationSelector +// from the go.opentelemetry.io/otel/sdk/metric package, or the aggregation +// explicitly passed for a view matching an instrument. +func WithAggregationSelector(selector metric.AggregationSelector) Option { + return wrappedOption{oconf.WithAggregationSelector(selector)} +} + +// WithProxy sets the Proxy function the client will use to determine the +// proxy to use for an HTTP request. If this option is not used, the client +// will use [http.ProxyFromEnvironment]. +func WithProxy(pf HTTPTransportProxyFunc) Option { + return wrappedOption{oconf.WithProxy(oconf.HTTPTransportProxyFunc(pf))} +} + +// WithHTTPClient sets the HTTP client to used by the exporter. +// +// This option will take precedence over [WithProxy], [WithTimeout], +// [WithTLSClientConfig] options as well as OTEL_EXPORTER_OTLP_CERTIFICATE, +// OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE, OTEL_EXPORTER_OTLP_TIMEOUT, +// OTEL_EXPORTER_OTLP_METRICS_TIMEOUT environment variables. +// +// Timeout and all other fields of the passed [http.Client] are left intact. +// +// Be aware that passing an HTTP client with transport like +// [go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp.NewTransport] can +// cause the client to be instrumented twice and cause infinite recursion. +func WithHTTPClient(c *http.Client) Option { + return wrappedOption{oconf.WithHTTPClient(c)} +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/doc.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/doc.go new file mode 100644 index 0000000000..de9e71a6e3 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/doc.go @@ -0,0 +1,82 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otlpmetrichttp provides an OTLP metrics exporter using HTTP with protobuf payloads. +By default the telemetry is sent to https://localhost:4318/v1/metrics. + +Exporter should be created using [New] and used with a [metric.PeriodicReader]. + +The environment variables described below can be used for configuration. + +OTEL_EXPORTER_OTLP_ENDPOINT (default: "https://localhost:4318") - +target base URL ("/v1/metrics" is appended) to which the exporter sends telemetry. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port and a path. +The value should not contain a query string or fragment. +The configuration can be overridden by OTEL_EXPORTER_OTLP_METRICS_ENDPOINT +environment variable and by [WithEndpoint], [WithEndpointURL], and [WithInsecure] options. + +OTEL_EXPORTER_OTLP_METRICS_ENDPOINT (default: "https://localhost:4318/v1/metrics") - +target URL to which the exporter sends telemetry. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port and a path. +The value should not contain a query string or fragment. +The configuration can be overridden by [WithEndpoint], [WithEndpointURL], [WithInsecure], and [WithURLPath] options. + +OTEL_EXPORTER_OTLP_HEADERS, OTEL_EXPORTER_OTLP_METRICS_HEADERS (default: none) - +key-value pairs used as headers associated with HTTP requests. +The value is expected to be represented in a format matching the [W3C Baggage HTTP Header Content Format], +except that additional semi-colon delimited metadata is not supported. +Example value: "key1=value1,key2=value2". +OTEL_EXPORTER_OTLP_METRICS_HEADERS takes precedence over OTEL_EXPORTER_OTLP_HEADERS. +The configuration can be overridden by [WithHeaders] option. + +OTEL_EXPORTER_OTLP_TIMEOUT, OTEL_EXPORTER_OTLP_METRICS_TIMEOUT (default: "10000") - +maximum time in milliseconds the OTLP exporter waits for each batch export. +OTEL_EXPORTER_OTLP_METRICS_TIMEOUT takes precedence over OTEL_EXPORTER_OTLP_TIMEOUT. +The configuration can be overridden by [WithTimeout] option. + +OTEL_EXPORTER_OTLP_COMPRESSION, OTEL_EXPORTER_OTLP_METRICS_COMPRESSION (default: none) - +compression strategy the exporter uses to compress the HTTP body. +Supported values: "gzip". +OTEL_EXPORTER_OTLP_METRICS_COMPRESSION takes precedence over OTEL_EXPORTER_OTLP_COMPRESSION. +The configuration can be overridden by [WithCompression] option. + +OTEL_EXPORTER_OTLP_CERTIFICATE, OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE (default: none) - +filepath to the trusted certificate to use when verifying a server's TLS credentials. +OTEL_EXPORTER_OTLP_METRICS_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CERTIFICATE. +The configuration can be overridden by [WithTLSClientConfig] option. + +OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE, OTEL_EXPORTER_OTLP_METRICS_CLIENT_CERTIFICATE (default: none) - +filepath to the client certificate/chain trust for client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_METRICS_CLIENT_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE. +The configuration can be overridden by [WithTLSClientConfig] option. + +OTEL_EXPORTER_OTLP_CLIENT_KEY, OTEL_EXPORTER_OTLP_METRICS_CLIENT_KEY (default: none) - +filepath to the client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_METRICS_CLIENT_KEY takes precedence over OTEL_EXPORTER_OTLP_CLIENT_KEY. +The configuration can be overridden by [WithTLSClientConfig] option. + +OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE (default: "cumulative") - +aggregation temporality to use on the basis of instrument kind. Supported values: + - "cumulative" - Cumulative aggregation temporality for all instrument kinds, + - "delta" - Delta aggregation temporality for Counter, Asynchronous Counter and Histogram instrument kinds; + Cumulative aggregation for UpDownCounter and Asynchronous UpDownCounter instrument kinds, + - "lowmemory" - Delta aggregation temporality for Synchronous Counter and Histogram instrument kinds; + Cumulative aggregation temporality for Synchronous UpDownCounter, Asynchronous Counter, and Asynchronous UpDownCounter instrument kinds. + +The configuration can be overridden by [WithTemporalitySelector] option. + +OTEL_EXPORTER_OTLP_METRICS_DEFAULT_HISTOGRAM_AGGREGATION (default: "explicit_bucket_histogram") - +default aggregation to use for histogram instruments. Supported values: + - "explicit_bucket_histogram" - [Explicit Bucket Histogram Aggregation], + - "base2_exponential_bucket_histogram" - [Base2 Exponential Bucket Histogram Aggregation]. + +The configuration can be overridden by [WithAggregationSelector] option. + +[W3C Baggage HTTP Header Content Format]: https://www.w3.org/TR/baggage/#header-content +[Explicit Bucket Histogram Aggregation]: https://github.com/open-telemetry/opentelemetry-specification/blob/v1.26.0/specification/metrics/sdk.md#explicit-bucket-histogram-aggregation +[Base2 Exponential Bucket Histogram Aggregation]: https://github.com/open-telemetry/opentelemetry-specification/blob/v1.26.0/specification/metrics/sdk.md#base2-exponential-bucket-histogram-aggregation +*/ +package otlpmetrichttp // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp" diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/exporter.go new file mode 100644 index 0000000000..50ac8f86ea --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/exporter.go @@ -0,0 +1,152 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetrichttp // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp" + +import ( + "context" + "errors" + "fmt" + "sync" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" + metricpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +// Exporter is a OpenTelemetry metric Exporter using protobufs over HTTP. +type Exporter struct { + // Ensure synchronous access to the client across all functionality. + clientMu sync.Mutex + client interface { + UploadMetrics(context.Context, *metricpb.ResourceMetrics) error + Shutdown(context.Context) error + } + + temporalitySelector metric.TemporalitySelector + aggregationSelector metric.AggregationSelector + + shutdownOnce sync.Once +} + +func newExporter(c *client, cfg oconf.Config) (*Exporter, error) { + ts := cfg.Metrics.TemporalitySelector + if ts == nil { + ts = func(metric.InstrumentKind) metricdata.Temporality { + return metricdata.CumulativeTemporality + } + } + + as := cfg.Metrics.AggregationSelector + if as == nil { + as = metric.DefaultAggregationSelector + } + + return &Exporter{ + client: c, + + temporalitySelector: ts, + aggregationSelector: as, + }, nil +} + +// Temporality returns the Temporality to use for an instrument kind. +func (e *Exporter) Temporality(k metric.InstrumentKind) metricdata.Temporality { + return e.temporalitySelector(k) +} + +// Aggregation returns the Aggregation to use for an instrument kind. +func (e *Exporter) Aggregation(k metric.InstrumentKind) metric.Aggregation { + return e.aggregationSelector(k) +} + +// Export transforms and transmits metric data to an OTLP receiver. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +func (e *Exporter) Export(ctx context.Context, rm *metricdata.ResourceMetrics) error { + defer global.Debug("OTLP/HTTP exporter export", "Data", rm) + + otlpRm, err := transform.ResourceMetrics(rm) + // Best effort upload of transformable metrics. + e.clientMu.Lock() + upErr := e.client.UploadMetrics(ctx, otlpRm) + e.clientMu.Unlock() + if upErr != nil { + if err == nil { + return fmt.Errorf("failed to upload metrics: %w", upErr) + } + // Merge the two errors. + return fmt.Errorf("failed to upload incomplete metrics (%w): %w", err, upErr) + } + return err +} + +// ForceFlush flushes any metric data held by an exporter. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +// +// This method is safe to call concurrently. +func (e *Exporter) ForceFlush(ctx context.Context) error { + // The exporter and client hold no state, nothing to flush. + return ctx.Err() +} + +// Shutdown flushes all metric data held by an exporter and releases any held +// computational resources. +// +// This method returns an error if called after Shutdown. +// This method returns an error if the method is canceled by the passed context. +// +// This method is safe to call concurrently. +func (e *Exporter) Shutdown(ctx context.Context) error { + err := errShutdown + e.shutdownOnce.Do(func() { + e.clientMu.Lock() + client := e.client + e.client = shutdownClient{} + e.clientMu.Unlock() + err = client.Shutdown(ctx) + }) + return err +} + +var errShutdown = errors.New("HTTP exporter is shutdown") + +type shutdownClient struct{} + +func (c shutdownClient) err(ctx context.Context) error { + if err := ctx.Err(); err != nil { + return err + } + return errShutdown +} + +func (c shutdownClient) UploadMetrics(ctx context.Context, _ *metricpb.ResourceMetrics) error { + return c.err(ctx) +} + +func (c shutdownClient) Shutdown(ctx context.Context) error { + return c.err(ctx) +} + +// MarshalLog returns logging data about the Exporter. +func (e *Exporter) MarshalLog() interface{} { + return struct{ Type string }{Type: "OTLP/HTTP"} +} + +// New returns an OpenTelemetry metric Exporter. The Exporter can be used with +// a PeriodicReader to export OpenTelemetry metric data to an OTLP receiving +// endpoint using protobufs over HTTP. +func New(_ context.Context, opts ...Option) (*Exporter, error) { + cfg := oconf.NewHTTPConfig(asHTTPOptions(opts)...) + c, err := newClient(cfg) + if err != nil { + return nil, err + } + return newExporter(c, cfg) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig/envconfig.go new file mode 100644 index 0000000000..8be035fcab --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig/envconfig.go @@ -0,0 +1,217 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/envconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package envconfig provides functionality to parse configuration from +// environment variables. +package envconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "fmt" + "net/url" + "strconv" + "strings" + "time" + "unicode" + + "go.opentelemetry.io/otel/internal/global" +) + +// ConfigFn is the generic function used to set a config. +type ConfigFn func(*EnvOptionsReader) + +// EnvOptionsReader reads the required environment variables. +type EnvOptionsReader struct { + GetEnv func(string) string + ReadFile func(string) ([]byte, error) + Namespace string +} + +// Apply runs every ConfigFn. +func (e *EnvOptionsReader) Apply(opts ...ConfigFn) { + for _, o := range opts { + o(e) + } +} + +// GetEnvValue gets an OTLP environment variable value of the specified key +// using the GetEnv function. +// This function prepends the OTLP specified namespace to all key lookups. +func (e *EnvOptionsReader) GetEnvValue(key string) (string, bool) { + v := strings.TrimSpace(e.GetEnv(keyWithNamespace(e.Namespace, key))) + return v, v != "" +} + +// WithString retrieves the specified config and passes it to ConfigFn as a string. +func WithString(n string, fn func(string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(v) + } + } +} + +// WithBool returns a ConfigFn that reads the environment variable n and if it exists passes its parsed bool value to fn. +func WithBool(n string, fn func(bool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b := strings.ToLower(v) == "true" + fn(b) + } + } +} + +// WithDuration retrieves the specified config and passes it to ConfigFn as a duration. +func WithDuration(n string, fn func(time.Duration)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + d, err := strconv.Atoi(v) + if err != nil { + global.Error(err, "parse duration", "input", v) + return + } + fn(time.Duration(d) * time.Millisecond) + } + } +} + +// WithHeaders retrieves the specified config and passes it to ConfigFn as a map of HTTP headers. +func WithHeaders(n string, fn func(map[string]string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(stringToHeader(v)) + } + } +} + +// WithURL retrieves the specified config and passes it to ConfigFn as a net/url.URL. +func WithURL(n string, fn func(*url.URL)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "parse url", "input", v) + return + } + fn(u) + } + } +} + +// WithCertPool returns a ConfigFn that reads the environment variable n as a filepath to a TLS certificate pool. If it exists, it is parsed as a crypto/x509.CertPool and it is passed to fn. +func WithCertPool(n string, fn func(*x509.CertPool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b, err := e.ReadFile(v) + if err != nil { + global.Error(err, "read tls ca cert file", "file", v) + return + } + c, err := createCertPool(b) + if err != nil { + global.Error(err, "create tls cert pool") + return + } + fn(c) + } + } +} + +// WithClientCert returns a ConfigFn that reads the environment variable nc and nk as filepaths to a client certificate and key pair. If they exists, they are parsed as a crypto/tls.Certificate and it is passed to fn. +func WithClientCert(nc, nk string, fn func(tls.Certificate)) ConfigFn { + return func(e *EnvOptionsReader) { + vc, okc := e.GetEnvValue(nc) + vk, okk := e.GetEnvValue(nk) + if !okc || !okk { + return + } + cert, err := e.ReadFile(vc) + if err != nil { + global.Error(err, "read tls client cert", "file", vc) + return + } + key, err := e.ReadFile(vk) + if err != nil { + global.Error(err, "read tls client key", "file", vk) + return + } + crt, err := tls.X509KeyPair(cert, key) + if err != nil { + global.Error(err, "create tls client key pair") + return + } + fn(crt) + } +} + +func keyWithNamespace(ns, key string) string { + if ns == "" { + return key + } + return fmt.Sprintf("%s_%s", ns, key) +} + +func stringToHeader(value string) map[string]string { + headersPairs := strings.Split(value, ",") + headers := make(map[string]string) + + for _, header := range headersPairs { + n, v, found := strings.Cut(header, "=") + if !found { + global.Error(errors.New("missing '="), "parse headers", "input", header) + continue + } + + trimmedName := strings.TrimSpace(n) + + // Validate the key. + if !isValidHeaderKey(trimmedName) { + global.Error(errors.New("invalid header key"), "parse headers", "key", trimmedName) + continue + } + + // Only decode the value. + value, err := url.PathUnescape(v) + if err != nil { + global.Error(err, "escape header value", "value", v) + continue + } + trimmedValue := strings.TrimSpace(value) + + headers[trimmedName] = trimmedValue + } + + return headers +} + +func createCertPool(certBytes []byte) (*x509.CertPool, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + return cp, nil +} + +func isValidHeaderKey(key string) bool { + if key == "" { + return false + } + for _, c := range key { + if !isTokenChar(c) { + return false + } + } + return true +} + +func isTokenChar(c rune) bool { + return c <= unicode.MaxASCII && (unicode.IsLetter(c) || + unicode.IsDigit(c) || + c == '!' || c == '#' || c == '$' || c == '%' || c == '&' || c == '\'' || c == '*' || + c == '+' || c == '-' || c == '.' || c == '^' || c == '_' || c == '`' || c == '|' || c == '~') +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/gen.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/gen.go new file mode 100644 index 0000000000..8849f341ad --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/gen.go @@ -0,0 +1,32 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionally for the otlpmetrichttp package. +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal" + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess.go.tmpl "--data={}" --out=partialsuccess.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess_test.go.tmpl "--data={}" --out=partialsuccess_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry.go.tmpl "--data={}" --out=retry/retry.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry_test.go.tmpl "--data={}" --out=retry/retry_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig.go.tmpl "--data={}" --out=envconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig_test.go.tmpl "--data={}" --out=envconfig/envconfig_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/envconfig.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig\"}" --out=oconf/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/envconfig_test.go.tmpl "--data={}" --out=oconf/envconfig_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/options.go.tmpl "--data={\"retryImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry\"}" --out=oconf/options.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/options_test.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig\"}" --out=oconf/options_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/optiontypes.go.tmpl "--data={}" --out=oconf/optiontypes.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/oconf/tls.go.tmpl "--data={}" --out=oconf/tls.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/client.go.tmpl "--data={}" --out=otest/client.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/client_test.go.tmpl "--data={\"internalImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal\"}" --out=otest/client_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/otest/collector.go.tmpl "--data={\"oconfImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf\"}" --out=otest/collector.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/attribute.go.tmpl "--data={}" --out=transform/attribute.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/attribute_test.go.tmpl "--data={}" --out=transform/attribute_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/error.go.tmpl "--data={}" --out=transform/error.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/error_test.go.tmpl "--data={}" --out=transform/error_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/metricdata.go.tmpl "--data={}" --out=transform/metricdata.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlpmetric/transform/metricdata_test.go.tmpl "--data={}" --out=transform/metricdata_test.go diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/envconfig.go new file mode 100644 index 0000000000..ef318ac676 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/envconfig.go @@ -0,0 +1,232 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + +import ( + "crypto/tls" + "crypto/x509" + "net/url" + "os" + "path" + "strings" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/envconfig" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// DefaultEnvOptionsReader is the default environments reader. +var DefaultEnvOptionsReader = envconfig.EnvOptionsReader{ + GetEnv: os.Getenv, + ReadFile: os.ReadFile, + Namespace: "OTEL_EXPORTER_OTLP", +} + +// ApplyGRPCEnvConfigs applies the env configurations for gRPC. +func ApplyGRPCEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + return cfg +} + +// ApplyHTTPEnvConfigs applies the env configurations for HTTP. +func ApplyHTTPEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + return cfg +} + +func getOptionsFromEnv() []GenericOption { + opts := []GenericOption{} + + tlsConf := &tls.Config{} + DefaultEnvOptionsReader.Apply( + envconfig.WithURL("ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = u.Host + // For OTLP/HTTP endpoint URLs without a per-signal + // configuration, the passed endpoint is used as a base URL + // and the signals are sent to these paths relative to that. + cfg.Metrics.URLPath = path.Join(u.Path, DefaultMetricsPath) + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithURL("METRICS_ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = u.Host + // For endpoint URLs for OTLP/HTTP per-signal variables, the + // URL MUST be used as-is without any modification. The only + // exception is that if an URL contains no path part, the root + // path / MUST be used. + path := u.Path + if path == "" { + path = "/" + } + cfg.Metrics.URLPath = path + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithCertPool("CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithCertPool("METRICS_CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithClientCert( + "CLIENT_CERTIFICATE", + "CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithClientCert( + "METRICS_CLIENT_CERTIFICATE", + "METRICS_CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithBool("INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithBool("METRICS_INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + withTLSConfig(tlsConf, func(c *tls.Config) { opts = append(opts, WithTLSClientConfig(c)) }), + envconfig.WithHeaders("HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + envconfig.WithHeaders("METRICS_HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + WithEnvCompression("COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + WithEnvCompression("METRICS_COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + envconfig.WithDuration("TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + envconfig.WithDuration("METRICS_TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + withEnvTemporalityPreference( + "METRICS_TEMPORALITY_PREFERENCE", + func(t metric.TemporalitySelector) { opts = append(opts, WithTemporalitySelector(t)) }, + ), + withEnvAggPreference( + "METRICS_DEFAULT_HISTOGRAM_AGGREGATION", + func(a metric.AggregationSelector) { opts = append(opts, WithAggregationSelector(a)) }, + ), + ) + + return opts +} + +func withEndpointForGRPC(u *url.URL) func(cfg Config) Config { + return func(cfg Config) Config { + // For OTLP/gRPC endpoints, this is the target to which the + // exporter is going to send telemetry. + cfg.Metrics.Endpoint = path.Join(u.Host, u.Path) + return cfg + } +} + +// WithEnvCompression retrieves the specified config and passes it to ConfigFn as a Compression. +func WithEnvCompression(n string, fn func(Compression)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + cp := NoCompression + if v == "gzip" { + cp = GzipCompression + } + + fn(cp) + } + } +} + +func withEndpointScheme(u *url.URL) GenericOption { + switch strings.ToLower(u.Scheme) { + case "http", "unix": + return WithInsecure() + default: + return WithSecure() + } +} + +// revive:disable-next-line:flag-parameter +func withInsecure(b bool) GenericOption { + if b { + return WithInsecure() + } + return WithSecure() +} + +func withTLSConfig(c *tls.Config, fn func(*tls.Config)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if c.RootCAs != nil || len(c.Certificates) > 0 { + fn(c) + } + } +} + +func withEnvTemporalityPreference(n string, fn func(metric.TemporalitySelector)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if s, ok := e.GetEnvValue(n); ok { + switch strings.ToLower(s) { + case "cumulative": + fn(cumulativeTemporality) + case "delta": + fn(deltaTemporality) + case "lowmemory": + fn(lowMemory) + default: + global.Warn( + "OTEL_EXPORTER_OTLP_METRICS_TEMPORALITY_PREFERENCE is set to an invalid value, ignoring.", + "value", + s, + ) + } + } + } +} + +func cumulativeTemporality(metric.InstrumentKind) metricdata.Temporality { + return metricdata.CumulativeTemporality +} + +func deltaTemporality(ik metric.InstrumentKind) metricdata.Temporality { + switch ik { + case metric.InstrumentKindCounter, metric.InstrumentKindHistogram, metric.InstrumentKindObservableCounter: + return metricdata.DeltaTemporality + default: + return metricdata.CumulativeTemporality + } +} + +func lowMemory(ik metric.InstrumentKind) metricdata.Temporality { + switch ik { + case metric.InstrumentKindCounter, metric.InstrumentKindHistogram: + return metricdata.DeltaTemporality + default: + return metricdata.CumulativeTemporality + } +} + +func withEnvAggPreference(n string, fn func(metric.AggregationSelector)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if s, ok := e.GetEnvValue(n); ok { + switch strings.ToLower(s) { + case "explicit_bucket_histogram": + fn(metric.DefaultAggregationSelector) + case "base2_exponential_bucket_histogram": + fn(func(kind metric.InstrumentKind) metric.Aggregation { + if kind == metric.InstrumentKindHistogram { + return metric.AggregationBase2ExponentialHistogram{ + MaxSize: 160, + MaxScale: 20, + NoMinMax: false, + } + } + return metric.DefaultAggregationSelector(kind) + }) + default: + global.Warn( + "OTEL_EXPORTER_OTLP_METRICS_DEFAULT_HISTOGRAM_AGGREGATION is set to an invalid value, ignoring.", + "value", + s, + ) + } + } + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/options.go new file mode 100644 index 0000000000..ed66bb0682 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/options.go @@ -0,0 +1,383 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/options.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package oconf provides configuration for the otlpmetric exporters. +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + +import ( + "crypto/tls" + "fmt" + "net/http" + "net/url" + "path" + "strings" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/backoff" + "google.golang.org/grpc/credentials" + "google.golang.org/grpc/credentials/insecure" + "google.golang.org/grpc/encoding/gzip" + + "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" +) + +const ( + // DefaultMaxAttempts describes how many times the driver + // should retry the sending of the payload in case of a + // retryable error. + DefaultMaxAttempts int = 5 + // DefaultMetricsPath is a default URL path for endpoint that + // receives metrics. + DefaultMetricsPath string = "/v1/metrics" + // DefaultBackoff is a default base backoff time used in the + // exponential backoff strategy. + DefaultBackoff time.Duration = 300 * time.Millisecond + // DefaultTimeout is a default max waiting time for the backend to process + // each span or metrics batch. + DefaultTimeout time.Duration = 10 * time.Second +) + +type ( + // HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. + // This type is compatible with `http.Transport.Proxy` and can be used to set a custom proxy function to the OTLP HTTP client. + HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + + SignalConfig struct { + Endpoint string + Insecure bool + TLSCfg *tls.Config + Headers map[string]string + Compression Compression + Timeout time.Duration + URLPath string + + TemporalitySelector metric.TemporalitySelector + AggregationSelector metric.AggregationSelector + + // gRPC configurations + GRPCCredentials credentials.TransportCredentials + + // HTTP configurations + Proxy HTTPTransportProxyFunc + HTTPClient *http.Client + } + + Config struct { + // Signal specific configurations + Metrics SignalConfig + + RetryConfig retry.Config + + // gRPC configurations + ReconnectionPeriod time.Duration + ServiceConfig string + DialOptions []grpc.DialOption + GRPCConn *grpc.ClientConn + } +) + +// NewHTTPConfig returns a new Config with all settings applied from opts and +// any unset setting using the default HTTP config values. +func NewHTTPConfig(opts ...HTTPOption) Config { + cfg := Config{ + Metrics: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), + URLPath: DefaultMetricsPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + + TemporalitySelector: metric.DefaultTemporalitySelector, + AggregationSelector: metric.DefaultAggregationSelector, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyHTTPEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + cfg.Metrics.URLPath = cleanPath(cfg.Metrics.URLPath, DefaultMetricsPath) + return cfg +} + +// cleanPath returns a path with all spaces trimmed. If urlPath is empty, +// defaultPath is returned instead. +func cleanPath(urlPath string, defaultPath string) string { + tmp := strings.TrimSpace(urlPath) + if tmp == "" || tmp == "." { + return defaultPath + } + if !path.IsAbs(tmp) { + tmp = "/" + tmp + } + return tmp +} + +// NewGRPCConfig returns a new Config with all settings applied from opts and +// any unset setting using the default gRPC config values. +func NewGRPCConfig(opts ...GRPCOption) Config { + cfg := Config{ + Metrics: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), + URLPath: DefaultMetricsPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + + TemporalitySelector: metric.DefaultTemporalitySelector, + AggregationSelector: metric.DefaultAggregationSelector, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyGRPCEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + + if cfg.ServiceConfig != "" { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultServiceConfig(cfg.ServiceConfig)) + } + // Prioritize GRPCCredentials over Insecure (passing both is an error). + if cfg.Metrics.GRPCCredentials != nil { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(cfg.Metrics.GRPCCredentials)) + } else if cfg.Metrics.Insecure { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(insecure.NewCredentials())) + } else { + // Default to using the host's root CA. + creds := credentials.NewTLS(nil) + cfg.Metrics.GRPCCredentials = creds + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(creds)) + } + if cfg.Metrics.Compression == GzipCompression { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultCallOptions(grpc.UseCompressor(gzip.Name))) + } + if cfg.ReconnectionPeriod != 0 { + p := grpc.ConnectParams{ + Backoff: backoff.DefaultConfig, + MinConnectTimeout: cfg.ReconnectionPeriod, + } + cfg.DialOptions = append(cfg.DialOptions, grpc.WithConnectParams(p)) + } + + return cfg +} + +type ( + // GenericOption applies an option to the HTTP or gRPC driver. + GenericOption interface { + ApplyHTTPOption(Config) Config + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // HTTPOption applies an option to the HTTP driver. + HTTPOption interface { + ApplyHTTPOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // GRPCOption applies an option to the gRPC driver. + GRPCOption interface { + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } +) + +// genericOption is an option that applies the same logic +// for both gRPC and HTTP. +type genericOption struct { + fn func(Config) Config +} + +func (g *genericOption) ApplyGRPCOption(cfg Config) Config { + return g.fn(cfg) +} + +func (g *genericOption) ApplyHTTPOption(cfg Config) Config { + return g.fn(cfg) +} + +func (genericOption) private() {} + +func newGenericOption(fn func(cfg Config) Config) GenericOption { + return &genericOption{fn: fn} +} + +// splitOption is an option that applies different logics +// for gRPC and HTTP. +type splitOption struct { + httpFn func(Config) Config + grpcFn func(Config) Config +} + +func (g *splitOption) ApplyGRPCOption(cfg Config) Config { + return g.grpcFn(cfg) +} + +func (g *splitOption) ApplyHTTPOption(cfg Config) Config { + return g.httpFn(cfg) +} + +func (splitOption) private() {} + +func newSplitOption(httpFn func(cfg Config) Config, grpcFn func(cfg Config) Config) GenericOption { + return &splitOption{httpFn: httpFn, grpcFn: grpcFn} +} + +// httpOption is an option that is only applied to the HTTP driver. +type httpOption struct { + fn func(Config) Config +} + +func (h *httpOption) ApplyHTTPOption(cfg Config) Config { + return h.fn(cfg) +} + +func (httpOption) private() {} + +func NewHTTPOption(fn func(cfg Config) Config) HTTPOption { + return &httpOption{fn: fn} +} + +// grpcOption is an option that is only applied to the gRPC driver. +type grpcOption struct { + fn func(Config) Config +} + +func (h *grpcOption) ApplyGRPCOption(cfg Config) Config { + return h.fn(cfg) +} + +func (grpcOption) private() {} + +func NewGRPCOption(fn func(cfg Config) Config) GRPCOption { + return &grpcOption{fn: fn} +} + +// Generic Options + +func WithEndpoint(endpoint string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Endpoint = endpoint + return cfg + }) +} + +func WithEndpointURL(v string) GenericOption { + return newGenericOption(func(cfg Config) Config { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "otlpmetric: parse endpoint url", "url", v) + return cfg + } + + cfg.Metrics.Endpoint = u.Host + cfg.Metrics.URLPath = u.Path + cfg.Metrics.Insecure = u.Scheme != "https" + + return cfg + }) +} + +func WithCompression(compression Compression) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Compression = compression + return cfg + }) +} + +func WithURLPath(urlPath string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.URLPath = urlPath + return cfg + }) +} + +func WithRetry(rc retry.Config) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.RetryConfig = rc + return cfg + }) +} + +func WithTLSClientConfig(tlsCfg *tls.Config) GenericOption { + return newSplitOption(func(cfg Config) Config { + cfg.Metrics.TLSCfg = tlsCfg.Clone() + return cfg + }, func(cfg Config) Config { + cfg.Metrics.GRPCCredentials = credentials.NewTLS(tlsCfg) + return cfg + }) +} + +func WithInsecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Insecure = true + return cfg + }) +} + +func WithSecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Insecure = false + return cfg + }) +} + +func WithHeaders(headers map[string]string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Headers = headers + return cfg + }) +} + +func WithTimeout(duration time.Duration) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Timeout = duration + return cfg + }) +} + +func WithTemporalitySelector(selector metric.TemporalitySelector) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.TemporalitySelector = selector + return cfg + }) +} + +func WithAggregationSelector(selector metric.AggregationSelector) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.AggregationSelector = selector + return cfg + }) +} + +func WithProxy(pf HTTPTransportProxyFunc) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.Proxy = pf + return cfg + }) +} + +func WithHTTPClient(c *http.Client) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Metrics.HTTPClient = c + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/optiontypes.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/optiontypes.go new file mode 100644 index 0000000000..d7b005c97d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/optiontypes.go @@ -0,0 +1,47 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/optiontypes.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + +import "time" + +const ( + // DefaultCollectorGRPCPort is the default gRPC port of the collector. + DefaultCollectorGRPCPort uint16 = 4317 + // DefaultCollectorHTTPPort is the default HTTP port of the collector. + DefaultCollectorHTTPPort uint16 = 4318 + // DefaultCollectorHost is the host address the Exporter will attempt + // connect to if no collector address is provided. + DefaultCollectorHost string = "localhost" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression int + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression Compression = iota + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression +) + +// RetrySettings defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type RetrySettings struct { + // Enabled indicates whether to not retry sending batches in case of export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is reached the delay between + // consecutive retries will always be `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent trying to send a request/batch. + // Once this value is reached, the data is discarded. + MaxElapsedTime time.Duration +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/tls.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/tls.go new file mode 100644 index 0000000000..e335cbd090 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf/tls.go @@ -0,0 +1,38 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/oconf/tls.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package oconf // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/oconf" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "os" +) + +// ReadTLSConfigFromFile reads a PEM certificate file and creates +// a tls.Config that will use this certificate to verify a server certificate. +func ReadTLSConfigFromFile(path string) (*tls.Config, error) { + b, err := os.ReadFile(path) + if err != nil { + return nil, err + } + + return CreateTLSConfig(b) +} + +// CreateTLSConfig creates a tls.Config from a raw certificate bytes +// to verify a server certificate. +func CreateTLSConfig(certBytes []byte) (*tls.Config, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + + return &tls.Config{ + RootCAs: cp, + }, nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/partialsuccess.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/partialsuccess.go new file mode 100644 index 0000000000..c3b57c57cf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/partialsuccess.go @@ -0,0 +1,56 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/partialsuccess.go + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal" + +import "fmt" + +// PartialSuccess represents the underlying error for all handling +// OTLP partial success messages. Use `errors.Is(err, +// PartialSuccess{})` to test whether an error passed to the OTel +// error handler belongs to this category. +type PartialSuccess struct { + ErrorMessage string + RejectedItems int64 + RejectedKind string +} + +var _ error = PartialSuccess{} + +// Error implements the error interface. +func (ps PartialSuccess) Error() string { + msg := ps.ErrorMessage + if msg == "" { + msg = "empty message" + } + return fmt.Sprintf("OTLP partial success: %s (%d %s rejected)", msg, ps.RejectedItems, ps.RejectedKind) +} + +// Is supports the errors.Is() interface. +func (ps PartialSuccess) Is(err error) bool { + _, ok := err.(PartialSuccess) + return ok +} + +// TracePartialSuccessError returns an error describing a partial success +// response for the trace signal. +func TracePartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "spans", + } +} + +// MetricPartialSuccessError returns an error describing a partial success +// response for the metric signal. +func MetricPartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "metric data points", + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry/retry.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry/retry.go new file mode 100644 index 0000000000..8a5fa80eac --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry/retry.go @@ -0,0 +1,141 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/retry/retry.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package retry provides request retry functionality that can perform +// configurable exponential backoff for transient errors and honor any +// explicit throttle responses received. +package retry // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/retry" + +import ( + "context" + "fmt" + "time" + + "github.com/cenkalti/backoff/v5" +) + +// DefaultConfig are the recommended defaults to use. +var DefaultConfig = Config{ + Enabled: true, + InitialInterval: 5 * time.Second, + MaxInterval: 30 * time.Second, + MaxElapsedTime: time.Minute, +} + +// Config defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type Config struct { + // Enabled indicates whether to not retry sending batches in case of + // export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before + // retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is + // reached the delay between consecutive retries will always be + // `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent + // trying to send a request/batch. Once this value is reached, the data + // is discarded. + MaxElapsedTime time.Duration +} + +// RequestFunc wraps a request with retry logic. +type RequestFunc func(context.Context, func(context.Context) error) error + +// EvaluateFunc returns if an error is retry-able and if an explicit throttle +// duration should be honored that was included in the error. +// +// The function must return true if the error argument is retry-able, +// otherwise it must return false for the first return parameter. +// +// The function must return a non-zero time.Duration if the error contains +// explicit throttle duration that should be honored, otherwise it must return +// a zero valued time.Duration. +type EvaluateFunc func(error) (bool, time.Duration) + +// RequestFunc returns a RequestFunc using the evaluate function to determine +// if requests can be retried and based on the exponential backoff +// configuration of c. +func (c Config) RequestFunc(evaluate EvaluateFunc) RequestFunc { + if !c.Enabled { + return func(ctx context.Context, fn func(context.Context) error) error { + return fn(ctx) + } + } + + return func(ctx context.Context, fn func(context.Context) error) error { + // Do not use NewExponentialBackOff since it calls Reset and the code here + // must call Reset after changing the InitialInterval (this saves an + // unnecessary call to Now). + b := &backoff.ExponentialBackOff{ + InitialInterval: c.InitialInterval, + RandomizationFactor: backoff.DefaultRandomizationFactor, + Multiplier: backoff.DefaultMultiplier, + MaxInterval: c.MaxInterval, + } + b.Reset() + + maxElapsedTime := c.MaxElapsedTime + startTime := time.Now() + + for { + err := fn(ctx) + if err == nil { + return nil + } + + retryable, throttle := evaluate(err) + if !retryable { + return err + } + + if maxElapsedTime != 0 && time.Since(startTime) > maxElapsedTime { + return fmt.Errorf("max retry time elapsed: %w", err) + } + + // Wait for the greater of the backoff or throttle delay. + bOff := b.NextBackOff() + delay := max(throttle, bOff) + + elapsed := time.Since(startTime) + if maxElapsedTime != 0 && elapsed+throttle > maxElapsedTime { + return fmt.Errorf("max retry time would elapse: %w", err) + } + + if ctxErr := waitFunc(ctx, delay); ctxErr != nil { + return fmt.Errorf("%w: %w", ctxErr, err) + } + } + } +} + +// Allow override for testing. +var waitFunc = wait + +// wait takes the caller's context, and the amount of time to wait. It will +// return nil if the timer fires before or at the same time as the context's +// deadline. This indicates that the call can be retried. +func wait(ctx context.Context, delay time.Duration) error { + timer := time.NewTimer(delay) + defer timer.Stop() + + select { + case <-ctx.Done(): + // Handle the case where the timer and context deadline end + // simultaneously by prioritizing the timer expiration nil value + // response. + select { + case <-timer.C: + default: + return context.Cause(ctx) + } + case <-timer.C: + } + + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/attribute.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/attribute.go new file mode 100644 index 0000000000..6c97871899 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/attribute.go @@ -0,0 +1,144 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/attribute.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform" + +import ( + "go.opentelemetry.io/otel/attribute" + cpb "go.opentelemetry.io/proto/otlp/common/v1" +) + +// AttrIter transforms an attribute iterator into OTLP key-values. +func AttrIter(iter attribute.Iterator) []*cpb.KeyValue { + l := iter.Len() + if l == 0 { + return nil + } + + out := make([]*cpb.KeyValue, 0, l) + for iter.Next() { + out = append(out, KeyValue(iter.Attribute())) + } + return out +} + +// KeyValues transforms a slice of attribute KeyValues into OTLP key-values. +func KeyValues(attrs []attribute.KeyValue) []*cpb.KeyValue { + if len(attrs) == 0 { + return nil + } + + out := make([]*cpb.KeyValue, 0, len(attrs)) + for _, kv := range attrs { + out = append(out, KeyValue(kv)) + } + return out +} + +// KeyValue transforms an attribute KeyValue into an OTLP key-value. +func KeyValue(kv attribute.KeyValue) *cpb.KeyValue { + return &cpb.KeyValue{Key: string(kv.Key), Value: Value(kv.Value)} +} + +// Value transforms an attribute Value into an OTLP AnyValue. +func Value(v attribute.Value) *cpb.AnyValue { + av := new(cpb.AnyValue) + switch v.Type() { + case attribute.BOOL: + av.Value = &cpb.AnyValue_BoolValue{ + BoolValue: v.AsBool(), + } + case attribute.BOOLSLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: boolSliceValues(v.AsBoolSlice()), + }, + } + case attribute.INT64: + av.Value = &cpb.AnyValue_IntValue{ + IntValue: v.AsInt64(), + } + case attribute.INT64SLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: int64SliceValues(v.AsInt64Slice()), + }, + } + case attribute.FLOAT64: + av.Value = &cpb.AnyValue_DoubleValue{ + DoubleValue: v.AsFloat64(), + } + case attribute.FLOAT64SLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: float64SliceValues(v.AsFloat64Slice()), + }, + } + case attribute.STRING: + av.Value = &cpb.AnyValue_StringValue{ + StringValue: v.AsString(), + } + case attribute.STRINGSLICE: + av.Value = &cpb.AnyValue_ArrayValue{ + ArrayValue: &cpb.ArrayValue{ + Values: stringSliceValues(v.AsStringSlice()), + }, + } + default: + av.Value = &cpb.AnyValue_StringValue{ + StringValue: "INVALID", + } + } + return av +} + +func boolSliceValues(vals []bool) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_BoolValue{ + BoolValue: v, + }, + } + } + return converted +} + +func int64SliceValues(vals []int64) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_IntValue{ + IntValue: v, + }, + } + } + return converted +} + +func float64SliceValues(vals []float64) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_DoubleValue{ + DoubleValue: v, + }, + } + } + return converted +} + +func stringSliceValues(vals []string) []*cpb.AnyValue { + converted := make([]*cpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &cpb.AnyValue{ + Value: &cpb.AnyValue_StringValue{ + StringValue: v, + }, + } + } + return converted +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/error.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/error.go new file mode 100644 index 0000000000..f65c87cbfd --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/error.go @@ -0,0 +1,103 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/error.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform" + +import ( + "errors" + "fmt" + "strings" + + mpb "go.opentelemetry.io/proto/otlp/metrics/v1" +) + +var ( + errUnknownAggregation = errors.New("unknown aggregation") + errUnknownTemporality = errors.New("unknown temporality") +) + +type errMetric struct { + m *mpb.Metric + err error +} + +func (e errMetric) Unwrap() error { + return e.err +} + +func (e errMetric) Error() string { + format := "invalid metric (name: %q, description: %q, unit: %q): %s" + return fmt.Sprintf(format, e.m.Name, e.m.Description, e.m.Unit, e.err) +} + +func (e errMetric) Is(target error) bool { + return errors.Is(e.err, target) +} + +// multiErr is used by the data-type transform functions to wrap multiple +// errors into a single return value. The error message will show all errors +// as a list and scope them by the datatype name that is returning them. +type multiErr struct { + datatype string + errs []error +} + +// errOrNil returns nil if e contains no errors, otherwise it returns e. +func (e *multiErr) errOrNil() error { + if len(e.errs) == 0 { + return nil + } + return e +} + +// append adds err to e. If err is a multiErr, its errs are flattened into e. +func (e *multiErr) append(err error) { + // Do not use errors.As here, this should only be flattened one layer. If + // there is a *multiErr several steps down the chain, all the errors above + // it will be discarded if errors.As is used instead. + switch other := err.(type) { //nolint:errorlint + case *multiErr: + // Flatten err errors into e. + e.errs = append(e.errs, other.errs...) + default: + e.errs = append(e.errs, err) + } +} + +func (e *multiErr) Error() string { + es := make([]string, len(e.errs)) + for i, err := range e.errs { + es[i] = fmt.Sprintf("* %s", err) + } + + format := "%d errors occurred transforming %s:\n\t%s" + return fmt.Sprintf(format, len(es), e.datatype, strings.Join(es, "\n\t")) +} + +func (e *multiErr) Unwrap() error { + switch len(e.errs) { + case 0: + return nil + case 1: + return e.errs[0] + } + + // Return a multiErr without the leading error. + cp := &multiErr{ + datatype: e.datatype, + errs: make([]error, len(e.errs)-1), + } + copy(cp.errs, e.errs[1:]) + return cp +} + +func (e *multiErr) Is(target error) bool { + if len(e.errs) == 0 { + return false + } + // Check if the first error is target. + return errors.Is(e.errs[0], target) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/metricdata.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/metricdata.go new file mode 100644 index 0000000000..5e5f26aa40 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform/metricdata.go @@ -0,0 +1,356 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlpmetric/transform/metricdata.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package transform provides transformation functionality from the +// sdk/metric/metricdata data-types into OTLP data-types. +package transform // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/internal/transform" + +import ( + "fmt" + "time" + + "go.opentelemetry.io/otel/sdk/metric/metricdata" + cpb "go.opentelemetry.io/proto/otlp/common/v1" + mpb "go.opentelemetry.io/proto/otlp/metrics/v1" + rpb "go.opentelemetry.io/proto/otlp/resource/v1" +) + +// ResourceMetrics returns an OTLP ResourceMetrics generated from rm. If rm +// contains invalid ScopeMetrics, an error will be returned along with an OTLP +// ResourceMetrics that contains partial OTLP ScopeMetrics. +func ResourceMetrics(rm *metricdata.ResourceMetrics) (*mpb.ResourceMetrics, error) { + sms, err := ScopeMetrics(rm.ScopeMetrics) + return &mpb.ResourceMetrics{ + Resource: &rpb.Resource{ + Attributes: AttrIter(rm.Resource.Iter()), + }, + ScopeMetrics: sms, + SchemaUrl: rm.Resource.SchemaURL(), + }, err +} + +// ScopeMetrics returns a slice of OTLP ScopeMetrics generated from sms. If +// sms contains invalid metric values, an error will be returned along with a +// slice that contains partial OTLP ScopeMetrics. +func ScopeMetrics(sms []metricdata.ScopeMetrics) ([]*mpb.ScopeMetrics, error) { + errs := &multiErr{datatype: "ScopeMetrics"} + out := make([]*mpb.ScopeMetrics, 0, len(sms)) + for _, sm := range sms { + ms, err := Metrics(sm.Metrics) + if err != nil { + errs.append(err) + } + + out = append(out, &mpb.ScopeMetrics{ + Scope: &cpb.InstrumentationScope{ + Name: sm.Scope.Name, + Version: sm.Scope.Version, + Attributes: AttrIter(sm.Scope.Attributes.Iter()), + }, + Metrics: ms, + SchemaUrl: sm.Scope.SchemaURL, + }) + } + return out, errs.errOrNil() +} + +// Metrics returns a slice of OTLP Metric generated from ms. If ms contains +// invalid metric values, an error will be returned along with a slice that +// contains partial OTLP Metrics. +func Metrics(ms []metricdata.Metrics) ([]*mpb.Metric, error) { + errs := &multiErr{datatype: "Metrics"} + out := make([]*mpb.Metric, 0, len(ms)) + for _, m := range ms { + o, err := metric(m) + if err != nil { + // Do not include invalid data. Drop the metric, report the error. + errs.append(errMetric{m: o, err: err}) + continue + } + out = append(out, o) + } + return out, errs.errOrNil() +} + +func metric(m metricdata.Metrics) (*mpb.Metric, error) { + var err error + out := &mpb.Metric{ + Name: m.Name, + Description: m.Description, + Unit: m.Unit, + } + switch a := m.Data.(type) { + case metricdata.Gauge[int64]: + out.Data = Gauge(a) + case metricdata.Gauge[float64]: + out.Data = Gauge(a) + case metricdata.Sum[int64]: + out.Data, err = Sum(a) + case metricdata.Sum[float64]: + out.Data, err = Sum(a) + case metricdata.Histogram[int64]: + out.Data, err = Histogram(a) + case metricdata.Histogram[float64]: + out.Data, err = Histogram(a) + case metricdata.ExponentialHistogram[int64]: + out.Data, err = ExponentialHistogram(a) + case metricdata.ExponentialHistogram[float64]: + out.Data, err = ExponentialHistogram(a) + case metricdata.Summary: + out.Data = Summary(a) + default: + return out, fmt.Errorf("%w: %T", errUnknownAggregation, a) + } + return out, err +} + +// Gauge returns an OTLP Metric_Gauge generated from g. +func Gauge[N int64 | float64](g metricdata.Gauge[N]) *mpb.Metric_Gauge { + return &mpb.Metric_Gauge{ + Gauge: &mpb.Gauge{ + DataPoints: DataPoints(g.DataPoints), + }, + } +} + +// Sum returns an OTLP Metric_Sum generated from s. An error is returned +// if the temporality of s is unknown. +func Sum[N int64 | float64](s metricdata.Sum[N]) (*mpb.Metric_Sum, error) { + t, err := Temporality(s.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_Sum{ + Sum: &mpb.Sum{ + AggregationTemporality: t, + IsMonotonic: s.IsMonotonic, + DataPoints: DataPoints(s.DataPoints), + }, + }, nil +} + +// DataPoints returns a slice of OTLP NumberDataPoint generated from dPts. +func DataPoints[N int64 | float64](dPts []metricdata.DataPoint[N]) []*mpb.NumberDataPoint { + out := make([]*mpb.NumberDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + ndp := &mpb.NumberDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Exemplars: Exemplars(dPt.Exemplars), + } + switch v := any(dPt.Value).(type) { + case int64: + ndp.Value = &mpb.NumberDataPoint_AsInt{ + AsInt: v, + } + case float64: + ndp.Value = &mpb.NumberDataPoint_AsDouble{ + AsDouble: v, + } + } + out = append(out, ndp) + } + return out +} + +// Histogram returns an OTLP Metric_Histogram generated from h. An error is +// returned if the temporality of h is unknown. +func Histogram[N int64 | float64](h metricdata.Histogram[N]) (*mpb.Metric_Histogram, error) { + t, err := Temporality(h.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_Histogram{ + Histogram: &mpb.Histogram{ + AggregationTemporality: t, + DataPoints: HistogramDataPoints(h.DataPoints), + }, + }, nil +} + +// HistogramDataPoints returns a slice of OTLP HistogramDataPoint generated +// from dPts. +func HistogramDataPoints[N int64 | float64](dPts []metricdata.HistogramDataPoint[N]) []*mpb.HistogramDataPoint { + out := make([]*mpb.HistogramDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sum := float64(dPt.Sum) + hdp := &mpb.HistogramDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: &sum, + BucketCounts: dPt.BucketCounts, + ExplicitBounds: dPt.Bounds, + Exemplars: Exemplars(dPt.Exemplars), + } + if v, ok := dPt.Min.Value(); ok { + vF64 := float64(v) + hdp.Min = &vF64 + } + if v, ok := dPt.Max.Value(); ok { + vF64 := float64(v) + hdp.Max = &vF64 + } + out = append(out, hdp) + } + return out +} + +// ExponentialHistogram returns an OTLP Metric_ExponentialHistogram generated from h. An error is +// returned if the temporality of h is unknown. +func ExponentialHistogram[N int64 | float64]( + h metricdata.ExponentialHistogram[N], +) (*mpb.Metric_ExponentialHistogram, error) { + t, err := Temporality(h.Temporality) + if err != nil { + return nil, err + } + return &mpb.Metric_ExponentialHistogram{ + ExponentialHistogram: &mpb.ExponentialHistogram{ + AggregationTemporality: t, + DataPoints: ExponentialHistogramDataPoints(h.DataPoints), + }, + }, nil +} + +// ExponentialHistogramDataPoints returns a slice of OTLP ExponentialHistogramDataPoint generated +// from dPts. +func ExponentialHistogramDataPoints[N int64 | float64]( + dPts []metricdata.ExponentialHistogramDataPoint[N], +) []*mpb.ExponentialHistogramDataPoint { + out := make([]*mpb.ExponentialHistogramDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sum := float64(dPt.Sum) + ehdp := &mpb.ExponentialHistogramDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: &sum, + Scale: dPt.Scale, + ZeroCount: dPt.ZeroCount, + Exemplars: Exemplars(dPt.Exemplars), + + Positive: ExponentialHistogramDataPointBuckets(dPt.PositiveBucket), + Negative: ExponentialHistogramDataPointBuckets(dPt.NegativeBucket), + } + if v, ok := dPt.Min.Value(); ok { + vF64 := float64(v) + ehdp.Min = &vF64 + } + if v, ok := dPt.Max.Value(); ok { + vF64 := float64(v) + ehdp.Max = &vF64 + } + out = append(out, ehdp) + } + return out +} + +// ExponentialHistogramDataPointBuckets returns an OTLP ExponentialHistogramDataPoint_Buckets generated +// from bucket. +func ExponentialHistogramDataPointBuckets( + bucket metricdata.ExponentialBucket, +) *mpb.ExponentialHistogramDataPoint_Buckets { + return &mpb.ExponentialHistogramDataPoint_Buckets{ + Offset: bucket.Offset, + BucketCounts: bucket.Counts, + } +} + +// Temporality returns an OTLP AggregationTemporality generated from t. If t +// is unknown, an error is returned along with the invalid +// AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED. +func Temporality(t metricdata.Temporality) (mpb.AggregationTemporality, error) { + switch t { + case metricdata.DeltaTemporality: + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_DELTA, nil + case metricdata.CumulativeTemporality: + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_CUMULATIVE, nil + default: + err := fmt.Errorf("%w: %s", errUnknownTemporality, t) + return mpb.AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED, err + } +} + +// timeUnixNano returns t as a Unix time, the number of nanoseconds elapsed +// since January 1, 1970 UTC as uint64. +// The result is undefined if the Unix time +// in nanoseconds cannot be represented by an int64 +// (a date before the year 1678 or after 2262). +// timeUnixNano on the zero Time returns 0. +// The result does not depend on the location associated with t. +func timeUnixNano(t time.Time) uint64 { + return uint64(max(0, t.UnixNano())) // nolint:gosec // Overflow checked. +} + +// Exemplars returns a slice of OTLP Exemplars generated from exemplars. +func Exemplars[N int64 | float64](exemplars []metricdata.Exemplar[N]) []*mpb.Exemplar { + out := make([]*mpb.Exemplar, 0, len(exemplars)) + for _, exemplar := range exemplars { + e := &mpb.Exemplar{ + FilteredAttributes: KeyValues(exemplar.FilteredAttributes), + TimeUnixNano: timeUnixNano(exemplar.Time), + SpanId: exemplar.SpanID, + TraceId: exemplar.TraceID, + } + switch v := any(exemplar.Value).(type) { + case int64: + e.Value = &mpb.Exemplar_AsInt{ + AsInt: v, + } + case float64: + e.Value = &mpb.Exemplar_AsDouble{ + AsDouble: v, + } + } + out = append(out, e) + } + return out +} + +// Summary returns an OTLP Metric_Summary generated from s. +func Summary(s metricdata.Summary) *mpb.Metric_Summary { + return &mpb.Metric_Summary{ + Summary: &mpb.Summary{ + DataPoints: SummaryDataPoints(s.DataPoints), + }, + } +} + +// SummaryDataPoints returns a slice of OTLP SummaryDataPoint generated from +// dPts. +func SummaryDataPoints(dPts []metricdata.SummaryDataPoint) []*mpb.SummaryDataPoint { + out := make([]*mpb.SummaryDataPoint, 0, len(dPts)) + for _, dPt := range dPts { + sdp := &mpb.SummaryDataPoint{ + Attributes: AttrIter(dPt.Attributes.Iter()), + StartTimeUnixNano: timeUnixNano(dPt.StartTime), + TimeUnixNano: timeUnixNano(dPt.Time), + Count: dPt.Count, + Sum: dPt.Sum, + QuantileValues: QuantileValues(dPt.QuantileValues), + } + out = append(out, sdp) + } + return out +} + +// QuantileValues returns a slice of OTLP SummaryDataPoint_ValueAtQuantile +// generated from quantiles. +func QuantileValues(quantiles []metricdata.QuantileValue) []*mpb.SummaryDataPoint_ValueAtQuantile { + out := make([]*mpb.SummaryDataPoint_ValueAtQuantile, 0, len(quantiles)) + for _, q := range quantiles { + quantile := &mpb.SummaryDataPoint_ValueAtQuantile{ + Quantile: q.Quantile, + Value: q.Value, + } + out = append(out, quantile) + } + return out +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/version.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/version.go new file mode 100644 index 0000000000..1175a65755 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpmetrichttp // import "go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp" + +// Version is the current release version of the OpenTelemetry OTLP over HTTP/protobuf metrics exporter in use. +func Version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/README.md b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/README.md new file mode 100644 index 0000000000..50802d5aee --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/README.md @@ -0,0 +1,3 @@ +# OTLP Trace Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/otlp/otlptrace)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/otlp/otlptrace) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/clients.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/clients.go new file mode 100644 index 0000000000..3c1a625c06 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/clients.go @@ -0,0 +1,43 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptrace // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + +import ( + "context" + + tracepb "go.opentelemetry.io/proto/otlp/trace/v1" +) + +// Client manages connections to the collector, handles the +// transformation of data into wire format, and the transmission of that +// data to the collector. +type Client interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Start should establish connection(s) to endpoint(s). It is + // called just once by the exporter, so the implementation + // does not need to worry about idempotence and locking. + Start(ctx context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Stop should close the connections. The function is called + // only once by the exporter, so the implementation does not + // need to worry about idempotence, but it may be called + // concurrently with UploadTraces, so proper + // locking is required. The function serves as a + // synchronization point - after the function returns, the + // process of closing connections is assumed to be finished. + Stop(ctx context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // UploadTraces should transform the passed traces to the wire + // format and send it to the collector. May be called + // concurrently. + UploadTraces(ctx context.Context, protoSpans []*tracepb.ResourceSpans) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/doc.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/doc.go new file mode 100644 index 0000000000..09ad5eadb6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/doc.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otlptrace contains abstractions for OTLP span exporters. +See the official OTLP span exporter implementations: + - [go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc], + - [go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp]. +*/ +package otlptrace // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace" diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/exporter.go new file mode 100644 index 0000000000..3f0a518ae0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/exporter.go @@ -0,0 +1,105 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptrace // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + +import ( + "context" + "errors" + "fmt" + "sync" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform" + tracesdk "go.opentelemetry.io/otel/sdk/trace" +) + +var errAlreadyStarted = errors.New("already started") + +// Exporter exports trace data in the OTLP wire format. +type Exporter struct { + client Client + + mu sync.RWMutex + started bool + + startOnce sync.Once + stopOnce sync.Once +} + +// ExportSpans exports a batch of spans. +func (e *Exporter) ExportSpans(ctx context.Context, ss []tracesdk.ReadOnlySpan) error { + protoSpans := tracetransform.Spans(ss) + if len(protoSpans) == 0 { + return nil + } + + err := e.client.UploadTraces(ctx, protoSpans) + if err != nil { + return fmt.Errorf("traces export: %w", err) + } + return nil +} + +// Start establishes a connection to the receiving endpoint. +func (e *Exporter) Start(ctx context.Context) error { + err := errAlreadyStarted + e.startOnce.Do(func() { + e.mu.Lock() + e.started = true + e.mu.Unlock() + err = e.client.Start(ctx) + }) + + return err +} + +// Shutdown flushes all exports and closes all connections to the receiving endpoint. +func (e *Exporter) Shutdown(ctx context.Context) error { + e.mu.RLock() + started := e.started + e.mu.RUnlock() + + if !started { + return nil + } + + var err error + + e.stopOnce.Do(func() { + err = e.client.Stop(ctx) + e.mu.Lock() + e.started = false + e.mu.Unlock() + }) + + return err +} + +var _ tracesdk.SpanExporter = (*Exporter)(nil) + +// New constructs a new Exporter and starts it. +func New(ctx context.Context, client Client) (*Exporter, error) { + exp := NewUnstarted(client) + if err := exp.Start(ctx); err != nil { + return nil, err + } + return exp, nil +} + +// NewUnstarted constructs a new Exporter and does not start it. +func NewUnstarted(client Client) *Exporter { + return &Exporter{ + client: client, + } +} + +// MarshalLog is the marshaling function used by the logging system to represent this Exporter. +func (e *Exporter) MarshalLog() interface{} { + return struct { + Type string + Client Client + }{ + Type: "otlptrace", + Client: e.client, + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go new file mode 100644 index 0000000000..ca4544f0da --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/attribute.go @@ -0,0 +1,149 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package tracetransform provides conversion functionality for the otlptrace +// exporters. +package tracetransform // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform" + +import ( + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/resource" + commonpb "go.opentelemetry.io/proto/otlp/common/v1" +) + +// KeyValues transforms a slice of attribute KeyValues into OTLP key-values. +func KeyValues(attrs []attribute.KeyValue) []*commonpb.KeyValue { + if len(attrs) == 0 { + return nil + } + + out := make([]*commonpb.KeyValue, 0, len(attrs)) + for _, kv := range attrs { + out = append(out, KeyValue(kv)) + } + return out +} + +// Iterator transforms an attribute iterator into OTLP key-values. +func Iterator(iter attribute.Iterator) []*commonpb.KeyValue { + l := iter.Len() + if l == 0 { + return nil + } + + out := make([]*commonpb.KeyValue, 0, l) + for iter.Next() { + out = append(out, KeyValue(iter.Attribute())) + } + return out +} + +// ResourceAttributes transforms a Resource OTLP key-values. +func ResourceAttributes(res *resource.Resource) []*commonpb.KeyValue { + return Iterator(res.Iter()) +} + +// KeyValue transforms an attribute KeyValue into an OTLP key-value. +func KeyValue(kv attribute.KeyValue) *commonpb.KeyValue { + return &commonpb.KeyValue{Key: string(kv.Key), Value: Value(kv.Value)} +} + +// Value transforms an attribute Value into an OTLP AnyValue. +func Value(v attribute.Value) *commonpb.AnyValue { + av := new(commonpb.AnyValue) + switch v.Type() { + case attribute.BOOL: + av.Value = &commonpb.AnyValue_BoolValue{ + BoolValue: v.AsBool(), + } + case attribute.BOOLSLICE: + av.Value = &commonpb.AnyValue_ArrayValue{ + ArrayValue: &commonpb.ArrayValue{ + Values: boolSliceValues(v.AsBoolSlice()), + }, + } + case attribute.INT64: + av.Value = &commonpb.AnyValue_IntValue{ + IntValue: v.AsInt64(), + } + case attribute.INT64SLICE: + av.Value = &commonpb.AnyValue_ArrayValue{ + ArrayValue: &commonpb.ArrayValue{ + Values: int64SliceValues(v.AsInt64Slice()), + }, + } + case attribute.FLOAT64: + av.Value = &commonpb.AnyValue_DoubleValue{ + DoubleValue: v.AsFloat64(), + } + case attribute.FLOAT64SLICE: + av.Value = &commonpb.AnyValue_ArrayValue{ + ArrayValue: &commonpb.ArrayValue{ + Values: float64SliceValues(v.AsFloat64Slice()), + }, + } + case attribute.STRING: + av.Value = &commonpb.AnyValue_StringValue{ + StringValue: v.AsString(), + } + case attribute.STRINGSLICE: + av.Value = &commonpb.AnyValue_ArrayValue{ + ArrayValue: &commonpb.ArrayValue{ + Values: stringSliceValues(v.AsStringSlice()), + }, + } + default: + av.Value = &commonpb.AnyValue_StringValue{ + StringValue: "INVALID", + } + } + return av +} + +func boolSliceValues(vals []bool) []*commonpb.AnyValue { + converted := make([]*commonpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &commonpb.AnyValue{ + Value: &commonpb.AnyValue_BoolValue{ + BoolValue: v, + }, + } + } + return converted +} + +func int64SliceValues(vals []int64) []*commonpb.AnyValue { + converted := make([]*commonpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &commonpb.AnyValue{ + Value: &commonpb.AnyValue_IntValue{ + IntValue: v, + }, + } + } + return converted +} + +func float64SliceValues(vals []float64) []*commonpb.AnyValue { + converted := make([]*commonpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &commonpb.AnyValue{ + Value: &commonpb.AnyValue_DoubleValue{ + DoubleValue: v, + }, + } + } + return converted +} + +func stringSliceValues(vals []string) []*commonpb.AnyValue { + converted := make([]*commonpb.AnyValue, len(vals)) + for i, v := range vals { + converted[i] = &commonpb.AnyValue{ + Value: &commonpb.AnyValue_StringValue{ + StringValue: v, + }, + } + } + return converted +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/instrumentation.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/instrumentation.go new file mode 100644 index 0000000000..2e7690e43a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/instrumentation.go @@ -0,0 +1,20 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package tracetransform // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform" + +import ( + "go.opentelemetry.io/otel/sdk/instrumentation" + commonpb "go.opentelemetry.io/proto/otlp/common/v1" +) + +func InstrumentationScope(il instrumentation.Scope) *commonpb.InstrumentationScope { + if il == (instrumentation.Scope{}) { + return nil + } + return &commonpb.InstrumentationScope{ + Name: il.Name, + Version: il.Version, + Attributes: Iterator(il.Attributes.Iter()), + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/resource.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/resource.go new file mode 100644 index 0000000000..db7b698a56 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/resource.go @@ -0,0 +1,17 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package tracetransform // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform" + +import ( + "go.opentelemetry.io/otel/sdk/resource" + resourcepb "go.opentelemetry.io/proto/otlp/resource/v1" +) + +// Resource transforms a Resource into an OTLP Resource. +func Resource(r *resource.Resource) *resourcepb.Resource { + if r == nil { + return nil + } + return &resourcepb.Resource{Attributes: ResourceAttributes(r)} +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/span.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/span.go new file mode 100644 index 0000000000..bf27ef0220 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform/span.go @@ -0,0 +1,219 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package tracetransform // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/internal/tracetransform" + +import ( + "math" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/sdk/instrumentation" + tracesdk "go.opentelemetry.io/otel/sdk/trace" + "go.opentelemetry.io/otel/trace" + tracepb "go.opentelemetry.io/proto/otlp/trace/v1" +) + +// Spans transforms a slice of OpenTelemetry spans into a slice of OTLP +// ResourceSpans. +func Spans(sdl []tracesdk.ReadOnlySpan) []*tracepb.ResourceSpans { + if len(sdl) == 0 { + return nil + } + + rsm := make(map[attribute.Distinct]*tracepb.ResourceSpans) + + type key struct { + r attribute.Distinct + is instrumentation.Scope + } + ssm := make(map[key]*tracepb.ScopeSpans) + + var resources int + for _, sd := range sdl { + if sd == nil { + continue + } + + rKey := sd.Resource().Equivalent() + k := key{ + r: rKey, + is: sd.InstrumentationScope(), + } + scopeSpan, iOk := ssm[k] + if !iOk { + // Either the resource or instrumentation scope were unknown. + scopeSpan = &tracepb.ScopeSpans{ + Scope: InstrumentationScope(sd.InstrumentationScope()), + Spans: []*tracepb.Span{}, + SchemaUrl: sd.InstrumentationScope().SchemaURL, + } + } + scopeSpan.Spans = append(scopeSpan.Spans, span(sd)) + ssm[k] = scopeSpan + + rs, rOk := rsm[rKey] + if !rOk { + resources++ + // The resource was unknown. + rs = &tracepb.ResourceSpans{ + Resource: Resource(sd.Resource()), + ScopeSpans: []*tracepb.ScopeSpans{scopeSpan}, + SchemaUrl: sd.Resource().SchemaURL(), + } + rsm[rKey] = rs + continue + } + + // The resource has been seen before. Check if the instrumentation + // library lookup was unknown because if so we need to add it to the + // ResourceSpans. Otherwise, the instrumentation library has already + // been seen and the append we did above will be included it in the + // ScopeSpans reference. + if !iOk { + rs.ScopeSpans = append(rs.ScopeSpans, scopeSpan) + } + } + + // Transform the categorized map into a slice + rss := make([]*tracepb.ResourceSpans, 0, resources) + for _, rs := range rsm { + rss = append(rss, rs) + } + return rss +} + +// span transforms a Span into an OTLP span. +func span(sd tracesdk.ReadOnlySpan) *tracepb.Span { + if sd == nil { + return nil + } + + tid := sd.SpanContext().TraceID() + sid := sd.SpanContext().SpanID() + + s := &tracepb.Span{ + TraceId: tid[:], + SpanId: sid[:], + TraceState: sd.SpanContext().TraceState().String(), + Status: status(sd.Status().Code, sd.Status().Description), + StartTimeUnixNano: uint64(max(0, sd.StartTime().UnixNano())), // nolint:gosec // Overflow checked. + EndTimeUnixNano: uint64(max(0, sd.EndTime().UnixNano())), // nolint:gosec // Overflow checked. + Links: links(sd.Links()), + Kind: spanKind(sd.SpanKind()), + Name: sd.Name(), + Attributes: KeyValues(sd.Attributes()), + Events: spanEvents(sd.Events()), + DroppedAttributesCount: clampUint32(sd.DroppedAttributes()), + DroppedEventsCount: clampUint32(sd.DroppedEvents()), + DroppedLinksCount: clampUint32(sd.DroppedLinks()), + } + + if psid := sd.Parent().SpanID(); psid.IsValid() { + s.ParentSpanId = psid[:] + } + s.Flags = buildSpanFlags(sd.Parent()) + + return s +} + +func clampUint32(v int) uint32 { + if v < 0 { + return 0 + } + if int64(v) > math.MaxUint32 { + return math.MaxUint32 + } + return uint32(v) // nolint: gosec // Overflow/Underflow checked. +} + +// status transform a span code and message into an OTLP span status. +func status(status codes.Code, message string) *tracepb.Status { + var c tracepb.Status_StatusCode + switch status { + case codes.Ok: + c = tracepb.Status_STATUS_CODE_OK + case codes.Error: + c = tracepb.Status_STATUS_CODE_ERROR + default: + c = tracepb.Status_STATUS_CODE_UNSET + } + return &tracepb.Status{ + Code: c, + Message: message, + } +} + +// links transforms span Links to OTLP span links. +func links(links []tracesdk.Link) []*tracepb.Span_Link { + if len(links) == 0 { + return nil + } + + sl := make([]*tracepb.Span_Link, 0, len(links)) + for _, otLink := range links { + // This redefinition is necessary to prevent otLink.*ID[:] copies + // being reused -- in short we need a new otLink per iteration. + otLink := otLink + + tid := otLink.SpanContext.TraceID() + sid := otLink.SpanContext.SpanID() + + flags := buildSpanFlags(otLink.SpanContext) + + sl = append(sl, &tracepb.Span_Link{ + TraceId: tid[:], + SpanId: sid[:], + Attributes: KeyValues(otLink.Attributes), + DroppedAttributesCount: clampUint32(otLink.DroppedAttributeCount), + Flags: flags, + }) + } + return sl +} + +func buildSpanFlags(sc trace.SpanContext) uint32 { + flags := tracepb.SpanFlags_SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK + if sc.IsRemote() { + flags |= tracepb.SpanFlags_SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK + } + + return uint32(flags) // nolint:gosec // Flags is a bitmask and can't be negative +} + +// spanEvents transforms span Events to an OTLP span events. +func spanEvents(es []tracesdk.Event) []*tracepb.Span_Event { + if len(es) == 0 { + return nil + } + + events := make([]*tracepb.Span_Event, len(es)) + // Transform message events + for i := 0; i < len(es); i++ { + events[i] = &tracepb.Span_Event{ + Name: es[i].Name, + TimeUnixNano: uint64(max(0, es[i].Time.UnixNano())), // nolint:gosec // Overflow checked. + Attributes: KeyValues(es[i].Attributes), + DroppedAttributesCount: clampUint32(es[i].DroppedAttributeCount), + } + } + return events +} + +// spanKind transforms a SpanKind to an OTLP span kind. +func spanKind(kind trace.SpanKind) tracepb.Span_SpanKind { + switch kind { + case trace.SpanKindInternal: + return tracepb.Span_SPAN_KIND_INTERNAL + case trace.SpanKindClient: + return tracepb.Span_SPAN_KIND_CLIENT + case trace.SpanKindServer: + return tracepb.Span_SPAN_KIND_SERVER + case trace.SpanKindProducer: + return tracepb.Span_SPAN_KIND_PRODUCER + case trace.SpanKindConsumer: + return tracepb.Span_SPAN_KIND_CONSUMER + default: + return tracepb.Span_SPAN_KIND_UNSPECIFIED + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/README.md b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/README.md new file mode 100644 index 0000000000..5309bb7cb1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/README.md @@ -0,0 +1,3 @@ +# OTLP Trace gRPC Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go new file mode 100644 index 0000000000..8236c995a9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/client.go @@ -0,0 +1,300 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracegrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc" + +import ( + "context" + "errors" + "sync" + "time" + + "google.golang.org/genproto/googleapis/rpc/errdetails" + "google.golang.org/grpc" + "google.golang.org/grpc/codes" + "google.golang.org/grpc/metadata" + "google.golang.org/grpc/status" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry" + coltracepb "go.opentelemetry.io/proto/otlp/collector/trace/v1" + tracepb "go.opentelemetry.io/proto/otlp/trace/v1" +) + +type client struct { + endpoint string + dialOpts []grpc.DialOption + metadata metadata.MD + exportTimeout time.Duration + requestFunc retry.RequestFunc + + // stopCtx is used as a parent context for all exports. Therefore, when it + // is canceled with the stopFunc all exports are canceled. + stopCtx context.Context + // stopFunc cancels stopCtx, stopping any active exports. + stopFunc context.CancelFunc + + // ourConn keeps track of where conn was created: true if created here on + // Start, or false if passed with an option. This is important on Shutdown + // as the conn should only be closed if created here on start. Otherwise, + // it is up to the processes that passed the conn to close it. + ourConn bool + conn *grpc.ClientConn + tscMu sync.RWMutex + tsc coltracepb.TraceServiceClient +} + +// Compile time check *client implements otlptrace.Client. +var _ otlptrace.Client = (*client)(nil) + +// NewClient creates a new gRPC trace client. +func NewClient(opts ...Option) otlptrace.Client { + return newClient(opts...) +} + +func newClient(opts ...Option) *client { + cfg := otlpconfig.NewGRPCConfig(asGRPCOptions(opts)...) + + ctx, cancel := context.WithCancel(context.Background()) + + c := &client{ + endpoint: cfg.Traces.Endpoint, + exportTimeout: cfg.Traces.Timeout, + requestFunc: cfg.RetryConfig.RequestFunc(retryable), + dialOpts: cfg.DialOptions, + stopCtx: ctx, + stopFunc: cancel, + conn: cfg.GRPCConn, + } + + if len(cfg.Traces.Headers) > 0 { + c.metadata = metadata.New(cfg.Traces.Headers) + } + + return c +} + +// Start establishes a gRPC connection to the collector. +func (c *client) Start(context.Context) error { + if c.conn == nil { + // If the caller did not provide a ClientConn when the client was + // created, create one using the configuration they did provide. + conn, err := grpc.NewClient(c.endpoint, c.dialOpts...) + if err != nil { + return err + } + // Keep track that we own the lifecycle of this conn and need to close + // it on Shutdown. + c.ourConn = true + c.conn = conn + } + + // The otlptrace.Client interface states this method is called just once, + // so no need to check if already started. + c.tscMu.Lock() + c.tsc = coltracepb.NewTraceServiceClient(c.conn) + c.tscMu.Unlock() + + return nil +} + +var errAlreadyStopped = errors.New("the client is already stopped") + +// Stop shuts down the client. +// +// Any active connections to a remote endpoint are closed if they were created +// by the client. Any gRPC connection passed during creation using +// WithGRPCConn will not be closed. It is the caller's responsibility to +// handle cleanup of that resource. +// +// This method synchronizes with the UploadTraces method of the client. It +// will wait for any active calls to that method to complete unimpeded, or it +// will cancel any active calls if ctx expires. If ctx expires, the context +// error will be forwarded as the returned error. All client held resources +// will still be released in this situation. +// +// If the client has already stopped, an error will be returned describing +// this. +func (c *client) Stop(ctx context.Context) error { + // Make sure to return context error if the context is done when calling this method. + err := ctx.Err() + + // Acquire the c.tscMu lock within the ctx lifetime. + acquired := make(chan struct{}) + go func() { + c.tscMu.Lock() + close(acquired) + }() + + select { + case <-ctx.Done(): + // The Stop timeout is reached. Kill any remaining exports to force + // the clear of the lock and save the timeout error to return and + // signal the shutdown timed out before cleanly stopping. + c.stopFunc() + err = ctx.Err() + + // To ensure the client is not left in a dirty state c.tsc needs to be + // set to nil. To avoid the race condition when doing this, ensure + // that all the exports are killed (initiated by c.stopFunc). + <-acquired + case <-acquired: + } + // Hold the tscMu lock for the rest of the function to ensure no new + // exports are started. + defer c.tscMu.Unlock() + + // The otlptrace.Client interface states this method is called only + // once, but there is no guarantee it is called after Start. Ensure the + // client is started before doing anything and let the called know if they + // made a mistake. + if c.tsc == nil { + return errAlreadyStopped + } + + // Clear c.tsc to signal the client is stopped. + c.tsc = nil + + if c.ourConn { + closeErr := c.conn.Close() + // A context timeout error takes precedence over this error. + if err == nil && closeErr != nil { + err = closeErr + } + } + return err +} + +var errShutdown = errors.New("the client is shutdown") + +// UploadTraces sends a batch of spans. +// +// Retryable errors from the server will be handled according to any +// RetryConfig the client was created with. +func (c *client) UploadTraces(ctx context.Context, protoSpans []*tracepb.ResourceSpans) error { + // Hold a read lock to ensure a shut down initiated after this starts does + // not abandon the export. This read lock acquire has less priority than a + // write lock acquire (i.e. Stop), meaning if the client is shutting down + // this will come after the shut down. + c.tscMu.RLock() + defer c.tscMu.RUnlock() + + if c.tsc == nil { + return errShutdown + } + + ctx, cancel := c.exportContext(ctx) + defer cancel() + + return c.requestFunc(ctx, func(iCtx context.Context) error { + resp, err := c.tsc.Export(iCtx, &coltracepb.ExportTraceServiceRequest{ + ResourceSpans: protoSpans, + }) + if resp != nil && resp.PartialSuccess != nil { + msg := resp.PartialSuccess.GetErrorMessage() + n := resp.PartialSuccess.GetRejectedSpans() + if n != 0 || msg != "" { + err := internal.TracePartialSuccessError(n, msg) + otel.Handle(err) + } + } + // nil is converted to OK. + if status.Code(err) == codes.OK { + // Success. + return nil + } + return err + }) +} + +// exportContext returns a copy of parent with an appropriate deadline and +// cancellation function. +// +// It is the callers responsibility to cancel the returned context once its +// use is complete, via the parent or directly with the returned CancelFunc, to +// ensure all resources are correctly released. +func (c *client) exportContext(parent context.Context) (context.Context, context.CancelFunc) { + var ( + ctx context.Context + cancel context.CancelFunc + ) + + if c.exportTimeout > 0 { + ctx, cancel = context.WithTimeoutCause(parent, c.exportTimeout, errors.New("exporter export timeout")) + } else { + ctx, cancel = context.WithCancel(parent) + } + + if c.metadata.Len() > 0 { + md := c.metadata + if outMD, ok := metadata.FromOutgoingContext(ctx); ok { + md = metadata.Join(md, outMD) + } + + ctx = metadata.NewOutgoingContext(ctx, md) + } + + // Unify the client stopCtx with the parent. + go func() { + select { + case <-ctx.Done(): + case <-c.stopCtx.Done(): + // Cancel the export as the shutdown has timed out. + cancel() + } + }() + + return ctx, cancel +} + +// retryable returns if err identifies a request that can be retried and a +// duration to wait for if an explicit throttle time is included in err. +func retryable(err error) (bool, time.Duration) { + s := status.Convert(err) + return retryableGRPCStatus(s) +} + +func retryableGRPCStatus(s *status.Status) (bool, time.Duration) { + switch s.Code() { + case codes.Canceled, + codes.DeadlineExceeded, + codes.Aborted, + codes.OutOfRange, + codes.Unavailable, + codes.DataLoss: + // Additionally handle RetryInfo. + _, d := throttleDelay(s) + return true, d + case codes.ResourceExhausted: + // Retry only if the server signals that the recovery from resource exhaustion is possible. + return throttleDelay(s) + } + + // Not a retry-able error. + return false, 0 +} + +// throttleDelay returns of the status is RetryInfo +// and the its duration to wait for if an explicit throttle time. +func throttleDelay(s *status.Status) (bool, time.Duration) { + for _, detail := range s.Details() { + if t, ok := detail.(*errdetails.RetryInfo); ok { + return true, t.RetryDelay.AsDuration() + } + } + return false, 0 +} + +// MarshalLog is the marshaling function used by the logging system to represent this Client. +func (c *client) MarshalLog() interface{} { + return struct { + Type string + Endpoint string + }{ + Type: "otlptracegrpc", + Endpoint: c.endpoint, + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/doc.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/doc.go new file mode 100644 index 0000000000..b7bd429ffd --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/doc.go @@ -0,0 +1,65 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otlptracegrpc provides an OTLP span exporter using gRPC. +By default the telemetry is sent to https://localhost:4317. + +Exporter should be created using [New]. + +The environment variables described below can be used for configuration. + +OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_TRACES_ENDPOINT (default: "https://localhost:4317") - +target to which the exporter sends telemetry. +The target syntax is defined in https://github.com/grpc/grpc/blob/master/doc/naming.md. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port, and a path. +The value should not contain a query string or fragment. +OTEL_EXPORTER_OTLP_TRACES_ENDPOINT takes precedence over OTEL_EXPORTER_OTLP_ENDPOINT. +The configuration can be overridden by [WithEndpoint], [WithEndpointURL], [WithInsecure], and [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_INSECURE, OTEL_EXPORTER_OTLP_TRACES_INSECURE (default: "false") - +setting "true" disables client transport security for the exporter's gRPC connection. +You can use this only when an endpoint is provided without the http or https scheme. +OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_TRACES_ENDPOINT setting overrides +the scheme defined via OTEL_EXPORTER_OTLP_ENDPOINT, OTEL_EXPORTER_OTLP_TRACES_ENDPOINT. +OTEL_EXPORTER_OTLP_TRACES_INSECURE takes precedence over OTEL_EXPORTER_OTLP_INSECURE. +The configuration can be overridden by [WithInsecure], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_HEADERS, OTEL_EXPORTER_OTLP_TRACES_HEADERS (default: none) - +key-value pairs used as gRPC metadata associated with gRPC requests. +The value is expected to be represented in a format matching the [W3C Baggage HTTP Header Content Format], +except that additional semi-colon delimited metadata is not supported. +Example value: "key1=value1,key2=value2". +OTEL_EXPORTER_OTLP_TRACES_HEADERS takes precedence over OTEL_EXPORTER_OTLP_HEADERS. +The configuration can be overridden by [WithHeaders] option. + +OTEL_EXPORTER_OTLP_TIMEOUT, OTEL_EXPORTER_OTLP_TRACES_TIMEOUT (default: "10000") - +maximum time in milliseconds the OTLP exporter waits for each batch export. +OTEL_EXPORTER_OTLP_TRACES_TIMEOUT takes precedence over OTEL_EXPORTER_OTLP_TIMEOUT. +The configuration can be overridden by [WithTimeout] option. + +OTEL_EXPORTER_OTLP_COMPRESSION, OTEL_EXPORTER_OTLP_TRACES_COMPRESSION (default: none) - +the gRPC compressor the exporter uses. +Supported value: "gzip". +OTEL_EXPORTER_OTLP_TRACES_COMPRESSION takes precedence over OTEL_EXPORTER_OTLP_COMPRESSION. +The configuration can be overridden by [WithCompressor], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CERTIFICATE, OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE (default: none) - +the filepath to the trusted certificate to use when verifying a server's TLS credentials. +OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CERTIFICATE. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE, OTEL_EXPORTER_OTLP_TRACES_CLIENT_CERTIFICATE (default: none) - +the filepath to the client certificate/chain trust for client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_TRACES_CLIENT_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] options. + +OTEL_EXPORTER_OTLP_CLIENT_KEY, OTEL_EXPORTER_OTLP_TRACES_CLIENT_KEY (default: none) - +the filepath to the client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_TRACES_CLIENT_KEY takes precedence over OTEL_EXPORTER_OTLP_CLIENT_KEY. +The configuration can be overridden by [WithTLSCredentials], [WithGRPCConn] option. + +[W3C Baggage HTTP Header Content Format]: https://www.w3.org/TR/baggage/#header-content +*/ +package otlptracegrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc" diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/exporter.go new file mode 100644 index 0000000000..b826b84247 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/exporter.go @@ -0,0 +1,20 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracegrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc" + +import ( + "context" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" +) + +// New constructs a new Exporter and starts it. +func New(ctx context.Context, opts ...Option) (*otlptrace.Exporter, error) { + return otlptrace.New(ctx, NewClient(opts...)) +} + +// NewUnstarted constructs a new Exporter and does not start it. +func NewUnstarted(opts ...Option) *otlptrace.Exporter { + return otlptrace.NewUnstarted(NewClient(opts...)) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig/envconfig.go new file mode 100644 index 0000000000..6eacdf311d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig/envconfig.go @@ -0,0 +1,217 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/envconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package envconfig provides functionality to parse configuration from +// environment variables. +package envconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "fmt" + "net/url" + "strconv" + "strings" + "time" + "unicode" + + "go.opentelemetry.io/otel/internal/global" +) + +// ConfigFn is the generic function used to set a config. +type ConfigFn func(*EnvOptionsReader) + +// EnvOptionsReader reads the required environment variables. +type EnvOptionsReader struct { + GetEnv func(string) string + ReadFile func(string) ([]byte, error) + Namespace string +} + +// Apply runs every ConfigFn. +func (e *EnvOptionsReader) Apply(opts ...ConfigFn) { + for _, o := range opts { + o(e) + } +} + +// GetEnvValue gets an OTLP environment variable value of the specified key +// using the GetEnv function. +// This function prepends the OTLP specified namespace to all key lookups. +func (e *EnvOptionsReader) GetEnvValue(key string) (string, bool) { + v := strings.TrimSpace(e.GetEnv(keyWithNamespace(e.Namespace, key))) + return v, v != "" +} + +// WithString retrieves the specified config and passes it to ConfigFn as a string. +func WithString(n string, fn func(string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(v) + } + } +} + +// WithBool returns a ConfigFn that reads the environment variable n and if it exists passes its parsed bool value to fn. +func WithBool(n string, fn func(bool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b := strings.ToLower(v) == "true" + fn(b) + } + } +} + +// WithDuration retrieves the specified config and passes it to ConfigFn as a duration. +func WithDuration(n string, fn func(time.Duration)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + d, err := strconv.Atoi(v) + if err != nil { + global.Error(err, "parse duration", "input", v) + return + } + fn(time.Duration(d) * time.Millisecond) + } + } +} + +// WithHeaders retrieves the specified config and passes it to ConfigFn as a map of HTTP headers. +func WithHeaders(n string, fn func(map[string]string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(stringToHeader(v)) + } + } +} + +// WithURL retrieves the specified config and passes it to ConfigFn as a net/url.URL. +func WithURL(n string, fn func(*url.URL)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "parse url", "input", v) + return + } + fn(u) + } + } +} + +// WithCertPool returns a ConfigFn that reads the environment variable n as a filepath to a TLS certificate pool. If it exists, it is parsed as a crypto/x509.CertPool and it is passed to fn. +func WithCertPool(n string, fn func(*x509.CertPool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b, err := e.ReadFile(v) + if err != nil { + global.Error(err, "read tls ca cert file", "file", v) + return + } + c, err := createCertPool(b) + if err != nil { + global.Error(err, "create tls cert pool") + return + } + fn(c) + } + } +} + +// WithClientCert returns a ConfigFn that reads the environment variable nc and nk as filepaths to a client certificate and key pair. If they exists, they are parsed as a crypto/tls.Certificate and it is passed to fn. +func WithClientCert(nc, nk string, fn func(tls.Certificate)) ConfigFn { + return func(e *EnvOptionsReader) { + vc, okc := e.GetEnvValue(nc) + vk, okk := e.GetEnvValue(nk) + if !okc || !okk { + return + } + cert, err := e.ReadFile(vc) + if err != nil { + global.Error(err, "read tls client cert", "file", vc) + return + } + key, err := e.ReadFile(vk) + if err != nil { + global.Error(err, "read tls client key", "file", vk) + return + } + crt, err := tls.X509KeyPair(cert, key) + if err != nil { + global.Error(err, "create tls client key pair") + return + } + fn(crt) + } +} + +func keyWithNamespace(ns, key string) string { + if ns == "" { + return key + } + return fmt.Sprintf("%s_%s", ns, key) +} + +func stringToHeader(value string) map[string]string { + headersPairs := strings.Split(value, ",") + headers := make(map[string]string) + + for _, header := range headersPairs { + n, v, found := strings.Cut(header, "=") + if !found { + global.Error(errors.New("missing '="), "parse headers", "input", header) + continue + } + + trimmedName := strings.TrimSpace(n) + + // Validate the key. + if !isValidHeaderKey(trimmedName) { + global.Error(errors.New("invalid header key"), "parse headers", "key", trimmedName) + continue + } + + // Only decode the value. + value, err := url.PathUnescape(v) + if err != nil { + global.Error(err, "escape header value", "value", v) + continue + } + trimmedValue := strings.TrimSpace(value) + + headers[trimmedName] = trimmedValue + } + + return headers +} + +func createCertPool(certBytes []byte) (*x509.CertPool, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + return cp, nil +} + +func isValidHeaderKey(key string) bool { + if key == "" { + return false + } + for _, c := range key { + if !isTokenChar(c) { + return false + } + } + return true +} + +func isTokenChar(c rune) bool { + return c <= unicode.MaxASCII && (unicode.IsLetter(c) || + unicode.IsDigit(c) || + c == '!' || c == '#' || c == '$' || c == '%' || c == '&' || c == '\'' || c == '*' || + c == '+' || c == '-' || c == '.' || c == '^' || c == '_' || c == '`' || c == '|' || c == '~') +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/gen.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/gen.go new file mode 100644 index 0000000000..b6e6b10fbf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/gen.go @@ -0,0 +1,25 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionally for the otlptracegrpc package. +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal" + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess.go.tmpl "--data={}" --out=partialsuccess.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess_test.go.tmpl "--data={}" --out=partialsuccess_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry.go.tmpl "--data={}" --out=retry/retry.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry_test.go.tmpl "--data={}" --out=retry/retry_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig.go.tmpl "--data={}" --out=envconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig_test.go.tmpl "--data={}" --out=envconfig/envconfig_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/envconfig.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig\"}" --out=otlpconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/options.go.tmpl "--data={\"retryImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry\"}" --out=otlpconfig/options.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/options_test.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig\"}" --out=otlpconfig/options_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/optiontypes.go.tmpl "--data={}" --out=otlpconfig/optiontypes.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/tls.go.tmpl "--data={}" --out=otlpconfig/tls.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/client.go.tmpl "--data={}" --out=otlptracetest/client.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/collector.go.tmpl "--data={}" --out=otlptracetest/collector.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/data.go.tmpl "--data={}" --out=otlptracetest/data.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/otlptest.go.tmpl "--data={}" --out=otlptracetest/otlptest.go diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/envconfig.go new file mode 100644 index 0000000000..1d840be205 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/envconfig.go @@ -0,0 +1,150 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + +import ( + "crypto/tls" + "crypto/x509" + "net/url" + "os" + "path" + "strings" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/envconfig" +) + +// DefaultEnvOptionsReader is the default environments reader. +var DefaultEnvOptionsReader = envconfig.EnvOptionsReader{ + GetEnv: os.Getenv, + ReadFile: os.ReadFile, + Namespace: "OTEL_EXPORTER_OTLP", +} + +// ApplyGRPCEnvConfigs applies the env configurations for gRPC. +func ApplyGRPCEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + return cfg +} + +// ApplyHTTPEnvConfigs applies the env configurations for HTTP. +func ApplyHTTPEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + return cfg +} + +func getOptionsFromEnv() []GenericOption { + opts := []GenericOption{} + + tlsConf := &tls.Config{} + DefaultEnvOptionsReader.Apply( + envconfig.WithURL("ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Traces.Endpoint = u.Host + // For OTLP/HTTP endpoint URLs without a per-signal + // configuration, the passed endpoint is used as a base URL + // and the signals are sent to these paths relative to that. + cfg.Traces.URLPath = path.Join(u.Path, DefaultTracesPath) + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithURL("TRACES_ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Traces.Endpoint = u.Host + // For endpoint URLs for OTLP/HTTP per-signal variables, the + // URL MUST be used as-is without any modification. The only + // exception is that if an URL contains no path part, the root + // path / MUST be used. + path := u.Path + if path == "" { + path = "/" + } + cfg.Traces.URLPath = path + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithCertPool("CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithCertPool("TRACES_CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithClientCert( + "CLIENT_CERTIFICATE", + "CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithClientCert( + "TRACES_CLIENT_CERTIFICATE", + "TRACES_CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + withTLSConfig(tlsConf, func(c *tls.Config) { opts = append(opts, WithTLSClientConfig(c)) }), + envconfig.WithBool("INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithBool("TRACES_INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithHeaders("HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + envconfig.WithHeaders("TRACES_HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + WithEnvCompression("COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + WithEnvCompression("TRACES_COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + envconfig.WithDuration("TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + envconfig.WithDuration("TRACES_TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + ) + + return opts +} + +func withEndpointScheme(u *url.URL) GenericOption { + switch strings.ToLower(u.Scheme) { + case "http", "unix": + return WithInsecure() + default: + return WithSecure() + } +} + +func withEndpointForGRPC(u *url.URL) func(cfg Config) Config { + return func(cfg Config) Config { + // For OTLP/gRPC endpoints, this is the target to which the + // exporter is going to send telemetry. + cfg.Traces.Endpoint = path.Join(u.Host, u.Path) + return cfg + } +} + +// WithEnvCompression retrieves the specified config and passes it to ConfigFn as a Compression. +func WithEnvCompression(n string, fn func(Compression)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + cp := NoCompression + if v == "gzip" { + cp = GzipCompression + } + + fn(cp) + } + } +} + +// revive:disable-next-line:flag-parameter +func withInsecure(b bool) GenericOption { + if b { + return WithInsecure() + } + return WithSecure() +} + +func withTLSConfig(c *tls.Config, fn func(*tls.Config)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if c.RootCAs != nil || len(c.Certificates) > 0 { + fn(c) + } + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go new file mode 100644 index 0000000000..4f47117a58 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/options.go @@ -0,0 +1,360 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/options.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package otlpconfig provides configuration for the otlptrace exporters. +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + +import ( + "crypto/tls" + "fmt" + "net/http" + "net/url" + "path" + "strings" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/backoff" + "google.golang.org/grpc/credentials" + "google.golang.org/grpc/credentials/insecure" + "google.golang.org/grpc/encoding/gzip" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry" + "go.opentelemetry.io/otel/internal/global" +) + +const ( + // DefaultTracesPath is a default URL path for endpoint that + // receives spans. + DefaultTracesPath string = "/v1/traces" + // DefaultTimeout is a default max waiting time for the backend to process + // each span batch. + DefaultTimeout time.Duration = 10 * time.Second +) + +type ( + // HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. + // This type is compatible with `http.Transport.Proxy` and can be used to set a custom proxy function to the OTLP HTTP client. + HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + + SignalConfig struct { + Endpoint string + Insecure bool + TLSCfg *tls.Config + Headers map[string]string + Compression Compression + Timeout time.Duration + URLPath string + + // gRPC configurations + GRPCCredentials credentials.TransportCredentials + + // HTTP configurations + Proxy HTTPTransportProxyFunc + HTTPClient *http.Client + } + + Config struct { + // Signal specific configurations + Traces SignalConfig + + RetryConfig retry.Config + + // gRPC configurations + ReconnectionPeriod time.Duration + ServiceConfig string + DialOptions []grpc.DialOption + GRPCConn *grpc.ClientConn + } +) + +// NewHTTPConfig returns a new Config with all settings applied from opts and +// any unset setting using the default HTTP config values. +func NewHTTPConfig(opts ...HTTPOption) Config { + cfg := Config{ + Traces: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyHTTPEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + cfg.Traces.URLPath = cleanPath(cfg.Traces.URLPath, DefaultTracesPath) + return cfg +} + +// cleanPath returns a path with all spaces trimmed. If urlPath is empty, +// defaultPath is returned instead. +func cleanPath(urlPath string, defaultPath string) string { + tmp := strings.TrimSpace(urlPath) + if tmp == "" || tmp == "." { + return defaultPath + } + if !path.IsAbs(tmp) { + tmp = "/" + tmp + } + return tmp +} + +// NewGRPCConfig returns a new Config with all settings applied from opts and +// any unset setting using the default gRPC config values. +func NewGRPCConfig(opts ...GRPCOption) Config { + userAgent := "OTel OTLP Exporter Go/" + otlptrace.Version() + cfg := Config{ + Traces: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + }, + RetryConfig: retry.DefaultConfig, + DialOptions: []grpc.DialOption{grpc.WithUserAgent(userAgent)}, + } + cfg = ApplyGRPCEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + + if cfg.ServiceConfig != "" { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultServiceConfig(cfg.ServiceConfig)) + } + // Prioritize GRPCCredentials over Insecure (passing both is an error). + if cfg.Traces.GRPCCredentials != nil { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(cfg.Traces.GRPCCredentials)) + } else if cfg.Traces.Insecure { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(insecure.NewCredentials())) + } else { + // Default to using the host's root CA. + creds := credentials.NewTLS(nil) + cfg.Traces.GRPCCredentials = creds + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(creds)) + } + if cfg.Traces.Compression == GzipCompression { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultCallOptions(grpc.UseCompressor(gzip.Name))) + } + if cfg.ReconnectionPeriod != 0 { + p := grpc.ConnectParams{ + Backoff: backoff.DefaultConfig, + MinConnectTimeout: cfg.ReconnectionPeriod, + } + cfg.DialOptions = append(cfg.DialOptions, grpc.WithConnectParams(p)) + } + + return cfg +} + +type ( + // GenericOption applies an option to the HTTP or gRPC driver. + GenericOption interface { + ApplyHTTPOption(Config) Config + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // HTTPOption applies an option to the HTTP driver. + HTTPOption interface { + ApplyHTTPOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // GRPCOption applies an option to the gRPC driver. + GRPCOption interface { + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } +) + +// genericOption is an option that applies the same logic +// for both gRPC and HTTP. +type genericOption struct { + fn func(Config) Config +} + +func (g *genericOption) ApplyGRPCOption(cfg Config) Config { + return g.fn(cfg) +} + +func (g *genericOption) ApplyHTTPOption(cfg Config) Config { + return g.fn(cfg) +} + +func (genericOption) private() {} + +func newGenericOption(fn func(cfg Config) Config) GenericOption { + return &genericOption{fn: fn} +} + +// splitOption is an option that applies different logics +// for gRPC and HTTP. +type splitOption struct { + httpFn func(Config) Config + grpcFn func(Config) Config +} + +func (g *splitOption) ApplyGRPCOption(cfg Config) Config { + return g.grpcFn(cfg) +} + +func (g *splitOption) ApplyHTTPOption(cfg Config) Config { + return g.httpFn(cfg) +} + +func (splitOption) private() {} + +func newSplitOption(httpFn func(cfg Config) Config, grpcFn func(cfg Config) Config) GenericOption { + return &splitOption{httpFn: httpFn, grpcFn: grpcFn} +} + +// httpOption is an option that is only applied to the HTTP driver. +type httpOption struct { + fn func(Config) Config +} + +func (h *httpOption) ApplyHTTPOption(cfg Config) Config { + return h.fn(cfg) +} + +func (httpOption) private() {} + +func NewHTTPOption(fn func(cfg Config) Config) HTTPOption { + return &httpOption{fn: fn} +} + +// grpcOption is an option that is only applied to the gRPC driver. +type grpcOption struct { + fn func(Config) Config +} + +func (h *grpcOption) ApplyGRPCOption(cfg Config) Config { + return h.fn(cfg) +} + +func (grpcOption) private() {} + +func NewGRPCOption(fn func(cfg Config) Config) GRPCOption { + return &grpcOption{fn: fn} +} + +// Generic Options + +// WithEndpoint configures the trace host and port only; endpoint should +// resemble "example.com" or "localhost:4317". To configure the scheme and path, +// use WithEndpointURL. +func WithEndpoint(endpoint string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Endpoint = endpoint + return cfg + }) +} + +// WithEndpointURL configures the trace scheme, host, port, and path; the +// provided value should resemble "https://example.com:4318/v1/traces". +func WithEndpointURL(v string) GenericOption { + return newGenericOption(func(cfg Config) Config { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "otlptrace: parse endpoint url", "url", v) + return cfg + } + + cfg.Traces.Endpoint = u.Host + cfg.Traces.URLPath = u.Path + cfg.Traces.Insecure = u.Scheme != "https" + + return cfg + }) +} + +func WithCompression(compression Compression) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Compression = compression + return cfg + }) +} + +func WithURLPath(urlPath string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.URLPath = urlPath + return cfg + }) +} + +func WithRetry(rc retry.Config) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.RetryConfig = rc + return cfg + }) +} + +func WithTLSClientConfig(tlsCfg *tls.Config) GenericOption { + return newSplitOption(func(cfg Config) Config { + cfg.Traces.TLSCfg = tlsCfg.Clone() + return cfg + }, func(cfg Config) Config { + cfg.Traces.GRPCCredentials = credentials.NewTLS(tlsCfg) + return cfg + }) +} + +func WithInsecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Insecure = true + return cfg + }) +} + +func WithSecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Insecure = false + return cfg + }) +} + +func WithHeaders(headers map[string]string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Headers = headers + return cfg + }) +} + +func WithTimeout(duration time.Duration) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Timeout = duration + return cfg + }) +} + +func WithProxy(pf HTTPTransportProxyFunc) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Proxy = pf + return cfg + }) +} + +func WithHTTPClient(c *http.Client) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.HTTPClient = c + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/optiontypes.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/optiontypes.go new file mode 100644 index 0000000000..9184903872 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/optiontypes.go @@ -0,0 +1,40 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/optiontypes.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + +const ( + // DefaultCollectorGRPCPort is the default gRPC port of the collector. + DefaultCollectorGRPCPort uint16 = 4317 + // DefaultCollectorHTTPPort is the default HTTP port of the collector. + DefaultCollectorHTTPPort uint16 = 4318 + // DefaultCollectorHost is the host address the Exporter will attempt + // connect to if no collector address is provided. + DefaultCollectorHost string = "localhost" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression int + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression Compression = iota + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression +) + +// Marshaler describes the kind of message format sent to the collector. +type Marshaler int + +const ( + // MarshalProto tells the driver to send using the protobuf binary format. + MarshalProto Marshaler = iota + // MarshalJSON tells the driver to send using json format. + MarshalJSON +) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/tls.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/tls.go new file mode 100644 index 0000000000..ba6e411835 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig/tls.go @@ -0,0 +1,26 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/tls.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" +) + +// CreateTLSConfig creates a tls.Config from a raw certificate bytes +// to verify a server certificate. +func CreateTLSConfig(certBytes []byte) (*tls.Config, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + + return &tls.Config{ + RootCAs: cp, + }, nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/partialsuccess.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/partialsuccess.go new file mode 100644 index 0000000000..1c46594233 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/partialsuccess.go @@ -0,0 +1,56 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/partialsuccess.go + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal" + +import "fmt" + +// PartialSuccess represents the underlying error for all handling +// OTLP partial success messages. Use `errors.Is(err, +// PartialSuccess{})` to test whether an error passed to the OTel +// error handler belongs to this category. +type PartialSuccess struct { + ErrorMessage string + RejectedItems int64 + RejectedKind string +} + +var _ error = PartialSuccess{} + +// Error implements the error interface. +func (ps PartialSuccess) Error() string { + msg := ps.ErrorMessage + if msg == "" { + msg = "empty message" + } + return fmt.Sprintf("OTLP partial success: %s (%d %s rejected)", msg, ps.RejectedItems, ps.RejectedKind) +} + +// Is supports the errors.Is() interface. +func (ps PartialSuccess) Is(err error) bool { + _, ok := err.(PartialSuccess) + return ok +} + +// TracePartialSuccessError returns an error describing a partial success +// response for the trace signal. +func TracePartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "spans", + } +} + +// MetricPartialSuccessError returns an error describing a partial success +// response for the metric signal. +func MetricPartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "metric data points", + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry/retry.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry/retry.go new file mode 100644 index 0000000000..259a898ae7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry/retry.go @@ -0,0 +1,141 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/retry/retry.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package retry provides request retry functionality that can perform +// configurable exponential backoff for transient errors and honor any +// explicit throttle responses received. +package retry // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry" + +import ( + "context" + "fmt" + "time" + + "github.com/cenkalti/backoff/v5" +) + +// DefaultConfig are the recommended defaults to use. +var DefaultConfig = Config{ + Enabled: true, + InitialInterval: 5 * time.Second, + MaxInterval: 30 * time.Second, + MaxElapsedTime: time.Minute, +} + +// Config defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type Config struct { + // Enabled indicates whether to not retry sending batches in case of + // export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before + // retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is + // reached the delay between consecutive retries will always be + // `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent + // trying to send a request/batch. Once this value is reached, the data + // is discarded. + MaxElapsedTime time.Duration +} + +// RequestFunc wraps a request with retry logic. +type RequestFunc func(context.Context, func(context.Context) error) error + +// EvaluateFunc returns if an error is retry-able and if an explicit throttle +// duration should be honored that was included in the error. +// +// The function must return true if the error argument is retry-able, +// otherwise it must return false for the first return parameter. +// +// The function must return a non-zero time.Duration if the error contains +// explicit throttle duration that should be honored, otherwise it must return +// a zero valued time.Duration. +type EvaluateFunc func(error) (bool, time.Duration) + +// RequestFunc returns a RequestFunc using the evaluate function to determine +// if requests can be retried and based on the exponential backoff +// configuration of c. +func (c Config) RequestFunc(evaluate EvaluateFunc) RequestFunc { + if !c.Enabled { + return func(ctx context.Context, fn func(context.Context) error) error { + return fn(ctx) + } + } + + return func(ctx context.Context, fn func(context.Context) error) error { + // Do not use NewExponentialBackOff since it calls Reset and the code here + // must call Reset after changing the InitialInterval (this saves an + // unnecessary call to Now). + b := &backoff.ExponentialBackOff{ + InitialInterval: c.InitialInterval, + RandomizationFactor: backoff.DefaultRandomizationFactor, + Multiplier: backoff.DefaultMultiplier, + MaxInterval: c.MaxInterval, + } + b.Reset() + + maxElapsedTime := c.MaxElapsedTime + startTime := time.Now() + + for { + err := fn(ctx) + if err == nil { + return nil + } + + retryable, throttle := evaluate(err) + if !retryable { + return err + } + + if maxElapsedTime != 0 && time.Since(startTime) > maxElapsedTime { + return fmt.Errorf("max retry time elapsed: %w", err) + } + + // Wait for the greater of the backoff or throttle delay. + bOff := b.NextBackOff() + delay := max(throttle, bOff) + + elapsed := time.Since(startTime) + if maxElapsedTime != 0 && elapsed+throttle > maxElapsedTime { + return fmt.Errorf("max retry time would elapse: %w", err) + } + + if ctxErr := waitFunc(ctx, delay); ctxErr != nil { + return fmt.Errorf("%w: %w", ctxErr, err) + } + } + } +} + +// Allow override for testing. +var waitFunc = wait + +// wait takes the caller's context, and the amount of time to wait. It will +// return nil if the timer fires before or at the same time as the context's +// deadline. This indicates that the call can be retried. +func wait(ctx context.Context, delay time.Duration) error { + timer := time.NewTimer(delay) + defer timer.Stop() + + select { + case <-ctx.Done(): + // Handle the case where the timer and context deadline end + // simultaneously by prioritizing the timer expiration nil value + // response. + select { + case <-timer.C: + default: + return context.Cause(ctx) + } + case <-timer.C: + } + + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go new file mode 100644 index 0000000000..2da2298701 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/options.go @@ -0,0 +1,211 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracegrpc // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc" + +import ( + "fmt" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/credentials" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/otlpconfig" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc/internal/retry" +) + +// Option applies an option to the gRPC driver. +type Option interface { + applyGRPCOption(otlpconfig.Config) otlpconfig.Config +} + +func asGRPCOptions(opts []Option) []otlpconfig.GRPCOption { + converted := make([]otlpconfig.GRPCOption, len(opts)) + for i, o := range opts { + converted[i] = otlpconfig.NewGRPCOption(o.applyGRPCOption) + } + return converted +} + +// RetryConfig defines configuration for retrying export of span batches that +// failed to be received by the target endpoint. +// +// This configuration does not define any network retry strategy. That is +// entirely handled by the gRPC ClientConn. +type RetryConfig retry.Config + +type wrappedOption struct { + otlpconfig.GRPCOption +} + +func (w wrappedOption) applyGRPCOption(cfg otlpconfig.Config) otlpconfig.Config { + return w.ApplyGRPCOption(cfg) +} + +// WithInsecure disables client transport security for the exporter's gRPC +// connection just like grpc.WithInsecure() +// (https://pkg.go.dev/google.golang.org/grpc#WithInsecure) does. Note, by +// default, client security is required unless WithInsecure is used. +// +// This option has no effect if WithGRPCConn is used. +func WithInsecure() Option { + return wrappedOption{otlpconfig.WithInsecure()} +} + +// WithEndpoint sets the target endpoint (host and port) the Exporter will +// connect to. The provided endpoint should resemble "example.com:4317" (no +// scheme or path). +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_TRACES_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_TRACES_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpointURL are used, the last used option will +// take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4317" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpoint(endpoint string) Option { + return wrappedOption{otlpconfig.WithEndpoint(endpoint)} +} + +// WithEndpointURL sets the target endpoint URL (scheme, host, port, path) +// the Exporter will connect to. The provided endpoint URL should resemble +// "https://example.com:4318/v1/traces". +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_TRACES_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_TRACES_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpoint are used, the last used option will +// take precedence. +// +// If an invalid URL is provided, the default value will be kept. +// +// By default, if an environment variable is not set, and this option is not +// passed, "https://localhost:4317/v1/traces" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpointURL(u string) Option { + return wrappedOption{otlpconfig.WithEndpointURL(u)} +} + +// WithReconnectionPeriod set the minimum amount of time between connection +// attempts to the target endpoint. +// +// This option has no effect if WithGRPCConn is used. +func WithReconnectionPeriod(rp time.Duration) Option { + return wrappedOption{otlpconfig.NewGRPCOption(func(cfg otlpconfig.Config) otlpconfig.Config { + cfg.ReconnectionPeriod = rp + return cfg + })} +} + +func compressorToCompression(compressor string) otlpconfig.Compression { + if compressor == "gzip" { + return otlpconfig.GzipCompression + } + + otel.Handle(fmt.Errorf("invalid compression type: '%s', using no compression as default", compressor)) + return otlpconfig.NoCompression +} + +// WithCompressor sets the compressor for the gRPC client to use when sending +// requests. Supported compressor values: "gzip". +func WithCompressor(compressor string) Option { + return wrappedOption{otlpconfig.WithCompression(compressorToCompression(compressor))} +} + +// WithHeaders will send the provided headers with each gRPC requests. +func WithHeaders(headers map[string]string) Option { + return wrappedOption{otlpconfig.WithHeaders(headers)} +} + +// WithTLSCredentials allows the connection to use TLS credentials when +// talking to the server. It takes in grpc.TransportCredentials instead of say +// a Certificate file or a tls.Certificate, because the retrieving of these +// credentials can be done in many ways e.g. plain file, in code tls.Config or +// by certificate rotation, so it is up to the caller to decide what to use. +// +// This option has no effect if WithGRPCConn is used. +func WithTLSCredentials(creds credentials.TransportCredentials) Option { + return wrappedOption{otlpconfig.NewGRPCOption(func(cfg otlpconfig.Config) otlpconfig.Config { + cfg.Traces.GRPCCredentials = creds + return cfg + })} +} + +// WithServiceConfig defines the default gRPC service config used. +// +// This option has no effect if WithGRPCConn is used. +func WithServiceConfig(serviceConfig string) Option { + return wrappedOption{otlpconfig.NewGRPCOption(func(cfg otlpconfig.Config) otlpconfig.Config { + cfg.ServiceConfig = serviceConfig + return cfg + })} +} + +// WithDialOption sets explicit grpc.DialOptions to use when making a +// connection. The options here are appended to the internal grpc.DialOptions +// used so they will take precedence over any other internal grpc.DialOptions +// they might conflict with. +// The [grpc.WithBlock], [grpc.WithTimeout], and [grpc.WithReturnConnectionError] +// grpc.DialOptions are ignored. +// +// This option has no effect if WithGRPCConn is used. +func WithDialOption(opts ...grpc.DialOption) Option { + return wrappedOption{otlpconfig.NewGRPCOption(func(cfg otlpconfig.Config) otlpconfig.Config { + cfg.DialOptions = opts + return cfg + })} +} + +// WithGRPCConn sets conn as the gRPC ClientConn used for all communication. +// +// This option takes precedence over any other option that relates to +// establishing or persisting a gRPC connection to a target endpoint. Any +// other option of those types passed will be ignored. +// +// It is the callers responsibility to close the passed conn. The client +// Shutdown method will not close this connection. +func WithGRPCConn(conn *grpc.ClientConn) Option { + return wrappedOption{otlpconfig.NewGRPCOption(func(cfg otlpconfig.Config) otlpconfig.Config { + cfg.GRPCConn = conn + return cfg + })} +} + +// WithTimeout sets the max amount of time a client will attempt to export a +// batch of spans. This takes precedence over any retry settings defined with +// WithRetry, once this time limit has been reached the export is abandoned +// and the batch of spans is dropped. +// +// If unset, the default timeout will be set to 10 seconds. +func WithTimeout(duration time.Duration) Option { + return wrappedOption{otlpconfig.WithTimeout(duration)} +} + +// WithRetry sets the retry policy for transient retryable errors that may be +// returned by the target endpoint when exporting a batch of spans. +// +// If the target endpoint responds with not only a retryable error, but +// explicitly returns a backoff time in the response. That time will take +// precedence over these settings. +// +// These settings define the retry strategy implemented by the exporter. +// These settings do not define any network retry strategy. +// That is handled by the gRPC ClientConn. +// +// If unset, the default retry policy will be used. It will retry the export +// 5 seconds after receiving a retryable error and increase exponentially +// after each error for no more than a total time of 1 minute. +func WithRetry(settings RetryConfig) Option { + return wrappedOption{otlpconfig.WithRetry(retry.Config(settings))} +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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In no event and under no legal theory, + whether in tort (including negligence), contract, or otherwise, + unless required by applicable law (such as deliberate and grossly + negligent acts) or agreed to in writing, shall any Contributor be + liable to You for damages, including any direct, indirect, special, + incidental, or consequential damages of any character arising as a + result of this License or out of the use or inability to use the + Work (including but not limited to damages for loss of goodwill, + work stoppage, computer failure or malfunction, or any and all + other commercial damages or losses), even if such Contributor + has been advised of the possibility of such damages. + + 9. Accepting Warranty or Additional Liability. While redistributing + the Work or Derivative Works thereof, You may choose to offer, + and charge a fee for, acceptance of support, warranty, indemnity, + or other liability obligations and/or rights consistent with this + License. However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/README.md b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/README.md new file mode 100644 index 0000000000..3652640094 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/README.md @@ -0,0 +1,3 @@ +# OTLP Trace HTTP Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/client.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/client.go new file mode 100644 index 0000000000..583a8f8675 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/client.go @@ -0,0 +1,396 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracehttp // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp" + +import ( + "bytes" + "compress/gzip" + "context" + "errors" + "fmt" + "io" + "net" + "net/http" + "net/url" + "strconv" + "strings" + "sync" + "time" + + "google.golang.org/protobuf/proto" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry" + coltracepb "go.opentelemetry.io/proto/otlp/collector/trace/v1" + tracepb "go.opentelemetry.io/proto/otlp/trace/v1" +) + +const contentTypeProto = "application/x-protobuf" + +var gzPool = sync.Pool{ + New: func() interface{} { + w := gzip.NewWriter(io.Discard) + return w + }, +} + +// Keep it in sync with golang's DefaultTransport from net/http! We +// have our own copy to avoid handling a situation where the +// DefaultTransport is overwritten with some different implementation +// of http.RoundTripper or it's modified by other package. +var ourTransport = &http.Transport{ + Proxy: http.ProxyFromEnvironment, + DialContext: (&net.Dialer{ + Timeout: 30 * time.Second, + KeepAlive: 30 * time.Second, + }).DialContext, + ForceAttemptHTTP2: true, + MaxIdleConns: 100, + IdleConnTimeout: 90 * time.Second, + TLSHandshakeTimeout: 10 * time.Second, + ExpectContinueTimeout: 1 * time.Second, +} + +type client struct { + name string + cfg otlpconfig.SignalConfig + generalCfg otlpconfig.Config + requestFunc retry.RequestFunc + client *http.Client + stopCh chan struct{} + stopOnce sync.Once +} + +var _ otlptrace.Client = (*client)(nil) + +// NewClient creates a new HTTP trace client. +func NewClient(opts ...Option) otlptrace.Client { + cfg := otlpconfig.NewHTTPConfig(asHTTPOptions(opts)...) + + httpClient := cfg.Traces.HTTPClient + + if httpClient == nil { + httpClient = &http.Client{ + Transport: ourTransport, + Timeout: cfg.Traces.Timeout, + } + + if cfg.Traces.TLSCfg != nil || cfg.Traces.Proxy != nil { + clonedTransport := ourTransport.Clone() + httpClient.Transport = clonedTransport + + if cfg.Traces.TLSCfg != nil { + clonedTransport.TLSClientConfig = cfg.Traces.TLSCfg + } + if cfg.Traces.Proxy != nil { + clonedTransport.Proxy = cfg.Traces.Proxy + } + } + } + + stopCh := make(chan struct{}) + return &client{ + name: "traces", + cfg: cfg.Traces, + generalCfg: cfg, + requestFunc: cfg.RetryConfig.RequestFunc(evaluate), + stopCh: stopCh, + client: httpClient, + } +} + +// Start does nothing in a HTTP client. +func (d *client) Start(ctx context.Context) error { + // nothing to do + select { + case <-ctx.Done(): + return ctx.Err() + default: + } + return nil +} + +// Stop shuts down the client and interrupt any in-flight request. +func (d *client) Stop(ctx context.Context) error { + d.stopOnce.Do(func() { + close(d.stopCh) + }) + select { + case <-ctx.Done(): + return ctx.Err() + default: + } + return nil +} + +// UploadTraces sends a batch of spans to the collector. +func (d *client) UploadTraces(ctx context.Context, protoSpans []*tracepb.ResourceSpans) error { + pbRequest := &coltracepb.ExportTraceServiceRequest{ + ResourceSpans: protoSpans, + } + rawRequest, err := proto.Marshal(pbRequest) + if err != nil { + return err + } + + ctx, cancel := d.contextWithStop(ctx) + defer cancel() + + request, err := d.newRequest(rawRequest) + if err != nil { + return err + } + + return d.requestFunc(ctx, func(ctx context.Context) error { + select { + case <-ctx.Done(): + return ctx.Err() + default: + } + + request.reset(ctx) + resp, err := d.client.Do(request.Request) + var urlErr *url.Error + if errors.As(err, &urlErr) && urlErr.Temporary() { + return newResponseError(http.Header{}, err) + } + if err != nil { + return err + } + + if resp != nil && resp.Body != nil { + defer func() { + if err := resp.Body.Close(); err != nil { + otel.Handle(err) + } + }() + } + + if sc := resp.StatusCode; sc >= 200 && sc <= 299 { + // Success, do not retry. + // Read the partial success message, if any. + var respData bytes.Buffer + if _, err := io.Copy(&respData, resp.Body); err != nil { + return err + } + if respData.Len() == 0 { + return nil + } + + if resp.Header.Get("Content-Type") == "application/x-protobuf" { + var respProto coltracepb.ExportTraceServiceResponse + if err := proto.Unmarshal(respData.Bytes(), &respProto); err != nil { + return err + } + + if respProto.PartialSuccess != nil { + msg := respProto.PartialSuccess.GetErrorMessage() + n := respProto.PartialSuccess.GetRejectedSpans() + if n != 0 || msg != "" { + err := internal.TracePartialSuccessError(n, msg) + otel.Handle(err) + } + } + } + return nil + } + // Error cases. + + // server may return a message with the response + // body, so we read it to include in the error + // message to be returned. It will help in + // debugging the actual issue. + var respData bytes.Buffer + if _, err := io.Copy(&respData, resp.Body); err != nil { + return err + } + respStr := strings.TrimSpace(respData.String()) + if len(respStr) == 0 { + respStr = "(empty)" + } + bodyErr := fmt.Errorf("body: %s", respStr) + + switch resp.StatusCode { + case http.StatusTooManyRequests, + http.StatusBadGateway, + http.StatusServiceUnavailable, + http.StatusGatewayTimeout: + // Retryable failure. + return newResponseError(resp.Header, bodyErr) + default: + // Non-retryable failure. + return fmt.Errorf("failed to send to %s: %s (%w)", request.URL, resp.Status, bodyErr) + } + }) +} + +func (d *client) newRequest(body []byte) (request, error) { + u := url.URL{Scheme: d.getScheme(), Host: d.cfg.Endpoint, Path: d.cfg.URLPath} + r, err := http.NewRequest(http.MethodPost, u.String(), nil) + if err != nil { + return request{Request: r}, err + } + + userAgent := "OTel OTLP Exporter Go/" + otlptrace.Version() + r.Header.Set("User-Agent", userAgent) + + for k, v := range d.cfg.Headers { + r.Header.Set(k, v) + } + r.Header.Set("Content-Type", contentTypeProto) + + req := request{Request: r} + switch Compression(d.cfg.Compression) { + case NoCompression: + r.ContentLength = (int64)(len(body)) + req.bodyReader = bodyReader(body) + case GzipCompression: + // Ensure the content length is not used. + r.ContentLength = -1 + r.Header.Set("Content-Encoding", "gzip") + + gz := gzPool.Get().(*gzip.Writer) + defer gzPool.Put(gz) + + var b bytes.Buffer + gz.Reset(&b) + + if _, err := gz.Write(body); err != nil { + return req, err + } + // Close needs to be called to ensure body is fully written. + if err := gz.Close(); err != nil { + return req, err + } + + req.bodyReader = bodyReader(b.Bytes()) + } + + return req, nil +} + +// MarshalLog is the marshaling function used by the logging system to represent this Client. +func (d *client) MarshalLog() interface{} { + return struct { + Type string + Endpoint string + Insecure bool + }{ + Type: "otlptracehttp", + Endpoint: d.cfg.Endpoint, + Insecure: d.cfg.Insecure, + } +} + +// bodyReader returns a closure returning a new reader for buf. +func bodyReader(buf []byte) func() io.ReadCloser { + return func() io.ReadCloser { + return io.NopCloser(bytes.NewReader(buf)) + } +} + +// request wraps an http.Request with a resettable body reader. +type request struct { + *http.Request + + // bodyReader allows the same body to be used for multiple requests. + bodyReader func() io.ReadCloser +} + +// reset reinitializes the request Body and uses ctx for the request. +func (r *request) reset(ctx context.Context) { + r.Body = r.bodyReader() + r.Request = r.WithContext(ctx) +} + +// retryableError represents a request failure that can be retried. +type retryableError struct { + throttle int64 + err error +} + +// newResponseError returns a retryableError and will extract any explicit +// throttle delay contained in headers. The returned error wraps wrapped +// if it is not nil. +func newResponseError(header http.Header, wrapped error) error { + var rErr retryableError + if s, ok := header["Retry-After"]; ok { + if t, err := strconv.ParseInt(s[0], 10, 64); err == nil { + rErr.throttle = t + } + } + + rErr.err = wrapped + return rErr +} + +func (e retryableError) Error() string { + if e.err != nil { + return "retry-able request failure: " + e.err.Error() + } + + return "retry-able request failure" +} + +func (e retryableError) Unwrap() error { + return e.err +} + +func (e retryableError) As(target interface{}) bool { + if e.err == nil { + return false + } + + switch v := target.(type) { + case **retryableError: + *v = &e + return true + default: + return false + } +} + +// evaluate returns if err is retry-able. If it is and it includes an explicit +// throttling delay, that delay is also returned. +func evaluate(err error) (bool, time.Duration) { + if err == nil { + return false, 0 + } + + // Do not use errors.As here, this should only be flattened one layer. If + // there are several chained errors, all the errors above it will be + // discarded if errors.As is used instead. + rErr, ok := err.(retryableError) //nolint:errorlint + if !ok { + return false, 0 + } + + return true, time.Duration(rErr.throttle) +} + +func (d *client) getScheme() string { + if d.cfg.Insecure { + return "http" + } + return "https" +} + +func (d *client) contextWithStop(ctx context.Context) (context.Context, context.CancelFunc) { + // Unify the parent context Done signal with the client's stop + // channel. + ctx, cancel := context.WithCancel(ctx) + go func(ctx context.Context, cancel context.CancelFunc) { + select { + case <-ctx.Done(): + // Nothing to do, either cancelled or deadline + // happened. + case <-d.stopCh: + cancel() + } + }(ctx, cancel) + return ctx, cancel +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/doc.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/doc.go new file mode 100644 index 0000000000..9fea75ad19 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/doc.go @@ -0,0 +1,63 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package otlptracehttp provides an OTLP span exporter using HTTP with protobuf payloads. +By default the telemetry is sent to https://localhost:4318/v1/traces. + +Exporter should be created using [New]. + +The environment variables described below can be used for configuration. + +OTEL_EXPORTER_OTLP_ENDPOINT (default: "https://localhost:4318") - +target base URL ("/v1/traces" is appended) to which the exporter sends telemetry. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port and a path. +The value should not contain a query string or fragment. +The configuration can be overridden by OTEL_EXPORTER_OTLP_TRACES_ENDPOINT +environment variable and by [WithEndpoint], [WithEndpointURL], [WithInsecure] options. + +OTEL_EXPORTER_OTLP_TRACES_ENDPOINT (default: "https://localhost:4318/v1/traces") - +target URL to which the exporter sends telemetry. +The value must contain a scheme ("http" or "https") and host. +The value may additionally contain a port and a path. +The value should not contain a query string or fragment. +The configuration can be overridden by [WithEndpoint], [WithEndpointURL], [WithInsecure], and [WithURLPath] options. + +OTEL_EXPORTER_OTLP_HEADERS, OTEL_EXPORTER_OTLP_TRACES_HEADERS (default: none) - +key-value pairs used as headers associated with HTTP requests. +The value is expected to be represented in a format matching the [W3C Baggage HTTP Header Content Format], +except that additional semi-colon delimited metadata is not supported. +Example value: "key1=value1,key2=value2". +OTEL_EXPORTER_OTLP_TRACES_HEADERS takes precedence over OTEL_EXPORTER_OTLP_HEADERS. +The configuration can be overridden by [WithHeaders] option. + +OTEL_EXPORTER_OTLP_TIMEOUT, OTEL_EXPORTER_OTLP_TRACES_TIMEOUT (default: "10000") - +maximum time in milliseconds the OTLP exporter waits for each batch export. +OTEL_EXPORTER_OTLP_TRACES_TIMEOUT takes precedence over OTEL_EXPORTER_OTLP_TIMEOUT. +The configuration can be overridden by [WithTimeout] option. + +OTEL_EXPORTER_OTLP_COMPRESSION, OTEL_EXPORTER_OTLP_TRACES_COMPRESSION (default: none) - +the compression strategy the exporter uses to compress the HTTP body. +Supported value: "gzip". +OTEL_EXPORTER_OTLP_TRACES_COMPRESSION takes precedence over OTEL_EXPORTER_OTLP_COMPRESSION. +The configuration can be overridden by [WithCompression] option. + +OTEL_EXPORTER_OTLP_CERTIFICATE, OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE (default: none) - +the filepath to the trusted certificate to use when verifying a server's TLS credentials. +OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CERTIFICATE. +The configuration can be overridden by [WithTLSClientConfig] option. + +OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE, OTEL_EXPORTER_OTLP_TRACES_CLIENT_CERTIFICATE (default: none) - +the filepath to the client certificate/chain trust for client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_TRACES_CLIENT_CERTIFICATE takes precedence over OTEL_EXPORTER_OTLP_CLIENT_CERTIFICATE. +The configuration can be overridden by [WithTLSClientConfig] option. + +OTEL_EXPORTER_OTLP_CLIENT_KEY, OTEL_EXPORTER_OTLP_TRACES_CLIENT_KEY (default: none) - +the filepath to the client's private key to use in mTLS communication in PEM format. +OTEL_EXPORTER_OTLP_TRACES_CLIENT_KEY takes precedence over OTEL_EXPORTER_OTLP_CLIENT_KEY. +The configuration can be overridden by [WithTLSClientConfig] option. + +[W3C Baggage HTTP Header Content Format]: https://www.w3.org/TR/baggage/#header-content +*/ +package otlptracehttp // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp" diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/exporter.go new file mode 100644 index 0000000000..fae89ea4fe --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/exporter.go @@ -0,0 +1,20 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracehttp // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp" + +import ( + "context" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" +) + +// New constructs a new Exporter and starts it. +func New(ctx context.Context, opts ...Option) (*otlptrace.Exporter, error) { + return otlptrace.New(ctx, NewClient(opts...)) +} + +// NewUnstarted constructs a new Exporter and does not start it. +func NewUnstarted(opts ...Option) *otlptrace.Exporter { + return otlptrace.NewUnstarted(NewClient(opts...)) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig/envconfig.go new file mode 100644 index 0000000000..f4385fb4e9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig/envconfig.go @@ -0,0 +1,217 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/envconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package envconfig provides functionality to parse configuration from +// environment variables. +package envconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" + "fmt" + "net/url" + "strconv" + "strings" + "time" + "unicode" + + "go.opentelemetry.io/otel/internal/global" +) + +// ConfigFn is the generic function used to set a config. +type ConfigFn func(*EnvOptionsReader) + +// EnvOptionsReader reads the required environment variables. +type EnvOptionsReader struct { + GetEnv func(string) string + ReadFile func(string) ([]byte, error) + Namespace string +} + +// Apply runs every ConfigFn. +func (e *EnvOptionsReader) Apply(opts ...ConfigFn) { + for _, o := range opts { + o(e) + } +} + +// GetEnvValue gets an OTLP environment variable value of the specified key +// using the GetEnv function. +// This function prepends the OTLP specified namespace to all key lookups. +func (e *EnvOptionsReader) GetEnvValue(key string) (string, bool) { + v := strings.TrimSpace(e.GetEnv(keyWithNamespace(e.Namespace, key))) + return v, v != "" +} + +// WithString retrieves the specified config and passes it to ConfigFn as a string. +func WithString(n string, fn func(string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(v) + } + } +} + +// WithBool returns a ConfigFn that reads the environment variable n and if it exists passes its parsed bool value to fn. +func WithBool(n string, fn func(bool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b := strings.ToLower(v) == "true" + fn(b) + } + } +} + +// WithDuration retrieves the specified config and passes it to ConfigFn as a duration. +func WithDuration(n string, fn func(time.Duration)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + d, err := strconv.Atoi(v) + if err != nil { + global.Error(err, "parse duration", "input", v) + return + } + fn(time.Duration(d) * time.Millisecond) + } + } +} + +// WithHeaders retrieves the specified config and passes it to ConfigFn as a map of HTTP headers. +func WithHeaders(n string, fn func(map[string]string)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + fn(stringToHeader(v)) + } + } +} + +// WithURL retrieves the specified config and passes it to ConfigFn as a net/url.URL. +func WithURL(n string, fn func(*url.URL)) func(e *EnvOptionsReader) { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "parse url", "input", v) + return + } + fn(u) + } + } +} + +// WithCertPool returns a ConfigFn that reads the environment variable n as a filepath to a TLS certificate pool. If it exists, it is parsed as a crypto/x509.CertPool and it is passed to fn. +func WithCertPool(n string, fn func(*x509.CertPool)) ConfigFn { + return func(e *EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + b, err := e.ReadFile(v) + if err != nil { + global.Error(err, "read tls ca cert file", "file", v) + return + } + c, err := createCertPool(b) + if err != nil { + global.Error(err, "create tls cert pool") + return + } + fn(c) + } + } +} + +// WithClientCert returns a ConfigFn that reads the environment variable nc and nk as filepaths to a client certificate and key pair. If they exists, they are parsed as a crypto/tls.Certificate and it is passed to fn. +func WithClientCert(nc, nk string, fn func(tls.Certificate)) ConfigFn { + return func(e *EnvOptionsReader) { + vc, okc := e.GetEnvValue(nc) + vk, okk := e.GetEnvValue(nk) + if !okc || !okk { + return + } + cert, err := e.ReadFile(vc) + if err != nil { + global.Error(err, "read tls client cert", "file", vc) + return + } + key, err := e.ReadFile(vk) + if err != nil { + global.Error(err, "read tls client key", "file", vk) + return + } + crt, err := tls.X509KeyPair(cert, key) + if err != nil { + global.Error(err, "create tls client key pair") + return + } + fn(crt) + } +} + +func keyWithNamespace(ns, key string) string { + if ns == "" { + return key + } + return fmt.Sprintf("%s_%s", ns, key) +} + +func stringToHeader(value string) map[string]string { + headersPairs := strings.Split(value, ",") + headers := make(map[string]string) + + for _, header := range headersPairs { + n, v, found := strings.Cut(header, "=") + if !found { + global.Error(errors.New("missing '="), "parse headers", "input", header) + continue + } + + trimmedName := strings.TrimSpace(n) + + // Validate the key. + if !isValidHeaderKey(trimmedName) { + global.Error(errors.New("invalid header key"), "parse headers", "key", trimmedName) + continue + } + + // Only decode the value. + value, err := url.PathUnescape(v) + if err != nil { + global.Error(err, "escape header value", "value", v) + continue + } + trimmedValue := strings.TrimSpace(value) + + headers[trimmedName] = trimmedValue + } + + return headers +} + +func createCertPool(certBytes []byte) (*x509.CertPool, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + return cp, nil +} + +func isValidHeaderKey(key string) bool { + if key == "" { + return false + } + for _, c := range key { + if !isTokenChar(c) { + return false + } + } + return true +} + +func isTokenChar(c rune) bool { + return c <= unicode.MaxASCII && (unicode.IsLetter(c) || + unicode.IsDigit(c) || + c == '!' || c == '#' || c == '$' || c == '%' || c == '&' || c == '\'' || c == '*' || + c == '+' || c == '-' || c == '.' || c == '^' || c == '_' || c == '`' || c == '|' || c == '~') +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/gen.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/gen.go new file mode 100644 index 0000000000..3d344dc85e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/gen.go @@ -0,0 +1,25 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionally for the otlptracehttp package. +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal" + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess.go.tmpl "--data={}" --out=partialsuccess.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/partialsuccess_test.go.tmpl "--data={}" --out=partialsuccess_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry.go.tmpl "--data={}" --out=retry/retry.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/retry/retry_test.go.tmpl "--data={}" --out=retry/retry_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig.go.tmpl "--data={}" --out=envconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/envconfig/envconfig_test.go.tmpl "--data={}" --out=envconfig/envconfig_test.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/envconfig.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig\"}" --out=otlpconfig/envconfig.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/options.go.tmpl "--data={\"retryImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry\"}" --out=otlpconfig/options.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/options_test.go.tmpl "--data={\"envconfigImportPath\": \"go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig\"}" --out=otlpconfig/options_test.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/optiontypes.go.tmpl "--data={}" --out=otlpconfig/optiontypes.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlpconfig/tls.go.tmpl "--data={}" --out=otlpconfig/tls.go + +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/client.go.tmpl "--data={}" --out=otlptracetest/client.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/collector.go.tmpl "--data={}" --out=otlptracetest/collector.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/data.go.tmpl "--data={}" --out=otlptracetest/data.go +//go:generate gotmpl --body=../../../../../internal/shared/otlp/otlptrace/otlptracetest/otlptest.go.tmpl "--data={}" --out=otlptracetest/otlptest.go diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/envconfig.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/envconfig.go new file mode 100644 index 0000000000..121b02f5cd --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/envconfig.go @@ -0,0 +1,150 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/envconfig.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + +import ( + "crypto/tls" + "crypto/x509" + "net/url" + "os" + "path" + "strings" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/envconfig" +) + +// DefaultEnvOptionsReader is the default environments reader. +var DefaultEnvOptionsReader = envconfig.EnvOptionsReader{ + GetEnv: os.Getenv, + ReadFile: os.ReadFile, + Namespace: "OTEL_EXPORTER_OTLP", +} + +// ApplyGRPCEnvConfigs applies the env configurations for gRPC. +func ApplyGRPCEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + return cfg +} + +// ApplyHTTPEnvConfigs applies the env configurations for HTTP. +func ApplyHTTPEnvConfigs(cfg Config) Config { + opts := getOptionsFromEnv() + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + return cfg +} + +func getOptionsFromEnv() []GenericOption { + opts := []GenericOption{} + + tlsConf := &tls.Config{} + DefaultEnvOptionsReader.Apply( + envconfig.WithURL("ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Traces.Endpoint = u.Host + // For OTLP/HTTP endpoint URLs without a per-signal + // configuration, the passed endpoint is used as a base URL + // and the signals are sent to these paths relative to that. + cfg.Traces.URLPath = path.Join(u.Path, DefaultTracesPath) + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithURL("TRACES_ENDPOINT", func(u *url.URL) { + opts = append(opts, withEndpointScheme(u)) + opts = append(opts, newSplitOption(func(cfg Config) Config { + cfg.Traces.Endpoint = u.Host + // For endpoint URLs for OTLP/HTTP per-signal variables, the + // URL MUST be used as-is without any modification. The only + // exception is that if an URL contains no path part, the root + // path / MUST be used. + path := u.Path + if path == "" { + path = "/" + } + cfg.Traces.URLPath = path + return cfg + }, withEndpointForGRPC(u))) + }), + envconfig.WithCertPool("CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithCertPool("TRACES_CERTIFICATE", func(p *x509.CertPool) { tlsConf.RootCAs = p }), + envconfig.WithClientCert( + "CLIENT_CERTIFICATE", + "CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + envconfig.WithClientCert( + "TRACES_CLIENT_CERTIFICATE", + "TRACES_CLIENT_KEY", + func(c tls.Certificate) { tlsConf.Certificates = []tls.Certificate{c} }, + ), + withTLSConfig(tlsConf, func(c *tls.Config) { opts = append(opts, WithTLSClientConfig(c)) }), + envconfig.WithBool("INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithBool("TRACES_INSECURE", func(b bool) { opts = append(opts, withInsecure(b)) }), + envconfig.WithHeaders("HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + envconfig.WithHeaders("TRACES_HEADERS", func(h map[string]string) { opts = append(opts, WithHeaders(h)) }), + WithEnvCompression("COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + WithEnvCompression("TRACES_COMPRESSION", func(c Compression) { opts = append(opts, WithCompression(c)) }), + envconfig.WithDuration("TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + envconfig.WithDuration("TRACES_TIMEOUT", func(d time.Duration) { opts = append(opts, WithTimeout(d)) }), + ) + + return opts +} + +func withEndpointScheme(u *url.URL) GenericOption { + switch strings.ToLower(u.Scheme) { + case "http", "unix": + return WithInsecure() + default: + return WithSecure() + } +} + +func withEndpointForGRPC(u *url.URL) func(cfg Config) Config { + return func(cfg Config) Config { + // For OTLP/gRPC endpoints, this is the target to which the + // exporter is going to send telemetry. + cfg.Traces.Endpoint = path.Join(u.Host, u.Path) + return cfg + } +} + +// WithEnvCompression retrieves the specified config and passes it to ConfigFn as a Compression. +func WithEnvCompression(n string, fn func(Compression)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if v, ok := e.GetEnvValue(n); ok { + cp := NoCompression + if v == "gzip" { + cp = GzipCompression + } + + fn(cp) + } + } +} + +// revive:disable-next-line:flag-parameter +func withInsecure(b bool) GenericOption { + if b { + return WithInsecure() + } + return WithSecure() +} + +func withTLSConfig(c *tls.Config, fn func(*tls.Config)) func(e *envconfig.EnvOptionsReader) { + return func(e *envconfig.EnvOptionsReader) { + if c.RootCAs != nil || len(c.Certificates) > 0 { + fn(c) + } + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/options.go new file mode 100644 index 0000000000..e415feea6e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/options.go @@ -0,0 +1,360 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/options.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package otlpconfig provides configuration for the otlptrace exporters. +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + +import ( + "crypto/tls" + "fmt" + "net/http" + "net/url" + "path" + "strings" + "time" + + "google.golang.org/grpc" + "google.golang.org/grpc/backoff" + "google.golang.org/grpc/credentials" + "google.golang.org/grpc/credentials/insecure" + "google.golang.org/grpc/encoding/gzip" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry" + "go.opentelemetry.io/otel/internal/global" +) + +const ( + // DefaultTracesPath is a default URL path for endpoint that + // receives spans. + DefaultTracesPath string = "/v1/traces" + // DefaultTimeout is a default max waiting time for the backend to process + // each span batch. + DefaultTimeout time.Duration = 10 * time.Second +) + +type ( + // HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. + // This type is compatible with `http.Transport.Proxy` and can be used to set a custom proxy function to the OTLP HTTP client. + HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + + SignalConfig struct { + Endpoint string + Insecure bool + TLSCfg *tls.Config + Headers map[string]string + Compression Compression + Timeout time.Duration + URLPath string + + // gRPC configurations + GRPCCredentials credentials.TransportCredentials + + // HTTP configurations + Proxy HTTPTransportProxyFunc + HTTPClient *http.Client + } + + Config struct { + // Signal specific configurations + Traces SignalConfig + + RetryConfig retry.Config + + // gRPC configurations + ReconnectionPeriod time.Duration + ServiceConfig string + DialOptions []grpc.DialOption + GRPCConn *grpc.ClientConn + } +) + +// NewHTTPConfig returns a new Config with all settings applied from opts and +// any unset setting using the default HTTP config values. +func NewHTTPConfig(opts ...HTTPOption) Config { + cfg := Config{ + Traces: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorHTTPPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + }, + RetryConfig: retry.DefaultConfig, + } + cfg = ApplyHTTPEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyHTTPOption(cfg) + } + cfg.Traces.URLPath = cleanPath(cfg.Traces.URLPath, DefaultTracesPath) + return cfg +} + +// cleanPath returns a path with all spaces trimmed. If urlPath is empty, +// defaultPath is returned instead. +func cleanPath(urlPath string, defaultPath string) string { + tmp := strings.TrimSpace(urlPath) + if tmp == "" || tmp == "." { + return defaultPath + } + if !path.IsAbs(tmp) { + tmp = "/" + tmp + } + return tmp +} + +// NewGRPCConfig returns a new Config with all settings applied from opts and +// any unset setting using the default gRPC config values. +func NewGRPCConfig(opts ...GRPCOption) Config { + userAgent := "OTel OTLP Exporter Go/" + otlptrace.Version() + cfg := Config{ + Traces: SignalConfig{ + Endpoint: fmt.Sprintf("%s:%d", DefaultCollectorHost, DefaultCollectorGRPCPort), + URLPath: DefaultTracesPath, + Compression: NoCompression, + Timeout: DefaultTimeout, + }, + RetryConfig: retry.DefaultConfig, + DialOptions: []grpc.DialOption{grpc.WithUserAgent(userAgent)}, + } + cfg = ApplyGRPCEnvConfigs(cfg) + for _, opt := range opts { + cfg = opt.ApplyGRPCOption(cfg) + } + + if cfg.ServiceConfig != "" { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultServiceConfig(cfg.ServiceConfig)) + } + // Prioritize GRPCCredentials over Insecure (passing both is an error). + if cfg.Traces.GRPCCredentials != nil { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(cfg.Traces.GRPCCredentials)) + } else if cfg.Traces.Insecure { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(insecure.NewCredentials())) + } else { + // Default to using the host's root CA. + creds := credentials.NewTLS(nil) + cfg.Traces.GRPCCredentials = creds + cfg.DialOptions = append(cfg.DialOptions, grpc.WithTransportCredentials(creds)) + } + if cfg.Traces.Compression == GzipCompression { + cfg.DialOptions = append(cfg.DialOptions, grpc.WithDefaultCallOptions(grpc.UseCompressor(gzip.Name))) + } + if cfg.ReconnectionPeriod != 0 { + p := grpc.ConnectParams{ + Backoff: backoff.DefaultConfig, + MinConnectTimeout: cfg.ReconnectionPeriod, + } + cfg.DialOptions = append(cfg.DialOptions, grpc.WithConnectParams(p)) + } + + return cfg +} + +type ( + // GenericOption applies an option to the HTTP or gRPC driver. + GenericOption interface { + ApplyHTTPOption(Config) Config + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // HTTPOption applies an option to the HTTP driver. + HTTPOption interface { + ApplyHTTPOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } + + // GRPCOption applies an option to the gRPC driver. + GRPCOption interface { + ApplyGRPCOption(Config) Config + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() + } +) + +// genericOption is an option that applies the same logic +// for both gRPC and HTTP. +type genericOption struct { + fn func(Config) Config +} + +func (g *genericOption) ApplyGRPCOption(cfg Config) Config { + return g.fn(cfg) +} + +func (g *genericOption) ApplyHTTPOption(cfg Config) Config { + return g.fn(cfg) +} + +func (genericOption) private() {} + +func newGenericOption(fn func(cfg Config) Config) GenericOption { + return &genericOption{fn: fn} +} + +// splitOption is an option that applies different logics +// for gRPC and HTTP. +type splitOption struct { + httpFn func(Config) Config + grpcFn func(Config) Config +} + +func (g *splitOption) ApplyGRPCOption(cfg Config) Config { + return g.grpcFn(cfg) +} + +func (g *splitOption) ApplyHTTPOption(cfg Config) Config { + return g.httpFn(cfg) +} + +func (splitOption) private() {} + +func newSplitOption(httpFn func(cfg Config) Config, grpcFn func(cfg Config) Config) GenericOption { + return &splitOption{httpFn: httpFn, grpcFn: grpcFn} +} + +// httpOption is an option that is only applied to the HTTP driver. +type httpOption struct { + fn func(Config) Config +} + +func (h *httpOption) ApplyHTTPOption(cfg Config) Config { + return h.fn(cfg) +} + +func (httpOption) private() {} + +func NewHTTPOption(fn func(cfg Config) Config) HTTPOption { + return &httpOption{fn: fn} +} + +// grpcOption is an option that is only applied to the gRPC driver. +type grpcOption struct { + fn func(Config) Config +} + +func (h *grpcOption) ApplyGRPCOption(cfg Config) Config { + return h.fn(cfg) +} + +func (grpcOption) private() {} + +func NewGRPCOption(fn func(cfg Config) Config) GRPCOption { + return &grpcOption{fn: fn} +} + +// Generic Options + +// WithEndpoint configures the trace host and port only; endpoint should +// resemble "example.com" or "localhost:4317". To configure the scheme and path, +// use WithEndpointURL. +func WithEndpoint(endpoint string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Endpoint = endpoint + return cfg + }) +} + +// WithEndpointURL configures the trace scheme, host, port, and path; the +// provided value should resemble "https://example.com:4318/v1/traces". +func WithEndpointURL(v string) GenericOption { + return newGenericOption(func(cfg Config) Config { + u, err := url.Parse(v) + if err != nil { + global.Error(err, "otlptrace: parse endpoint url", "url", v) + return cfg + } + + cfg.Traces.Endpoint = u.Host + cfg.Traces.URLPath = u.Path + cfg.Traces.Insecure = u.Scheme != "https" + + return cfg + }) +} + +func WithCompression(compression Compression) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Compression = compression + return cfg + }) +} + +func WithURLPath(urlPath string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.URLPath = urlPath + return cfg + }) +} + +func WithRetry(rc retry.Config) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.RetryConfig = rc + return cfg + }) +} + +func WithTLSClientConfig(tlsCfg *tls.Config) GenericOption { + return newSplitOption(func(cfg Config) Config { + cfg.Traces.TLSCfg = tlsCfg.Clone() + return cfg + }, func(cfg Config) Config { + cfg.Traces.GRPCCredentials = credentials.NewTLS(tlsCfg) + return cfg + }) +} + +func WithInsecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Insecure = true + return cfg + }) +} + +func WithSecure() GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Insecure = false + return cfg + }) +} + +func WithHeaders(headers map[string]string) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Headers = headers + return cfg + }) +} + +func WithTimeout(duration time.Duration) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Timeout = duration + return cfg + }) +} + +func WithProxy(pf HTTPTransportProxyFunc) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.Proxy = pf + return cfg + }) +} + +func WithHTTPClient(c *http.Client) GenericOption { + return newGenericOption(func(cfg Config) Config { + cfg.Traces.HTTPClient = c + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/optiontypes.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/optiontypes.go new file mode 100644 index 0000000000..6a52b58cc0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/optiontypes.go @@ -0,0 +1,40 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/optiontypes.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + +const ( + // DefaultCollectorGRPCPort is the default gRPC port of the collector. + DefaultCollectorGRPCPort uint16 = 4317 + // DefaultCollectorHTTPPort is the default HTTP port of the collector. + DefaultCollectorHTTPPort uint16 = 4318 + // DefaultCollectorHost is the host address the Exporter will attempt + // connect to if no collector address is provided. + DefaultCollectorHost string = "localhost" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression int + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression Compression = iota + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression +) + +// Marshaler describes the kind of message format sent to the collector. +type Marshaler int + +const ( + // MarshalProto tells the driver to send using the protobuf binary format. + MarshalProto Marshaler = iota + // MarshalJSON tells the driver to send using json format. + MarshalJSON +) diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/tls.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/tls.go new file mode 100644 index 0000000000..5b389cb03f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig/tls.go @@ -0,0 +1,26 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/otlptrace/otlpconfig/tls.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlpconfig // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + +import ( + "crypto/tls" + "crypto/x509" + "errors" +) + +// CreateTLSConfig creates a tls.Config from a raw certificate bytes +// to verify a server certificate. +func CreateTLSConfig(certBytes []byte) (*tls.Config, error) { + cp := x509.NewCertPool() + if ok := cp.AppendCertsFromPEM(certBytes); !ok { + return nil, errors.New("failed to append certificate to the cert pool") + } + + return &tls.Config{ + RootCAs: cp, + }, nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/partialsuccess.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/partialsuccess.go new file mode 100644 index 0000000000..418e66428a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/partialsuccess.go @@ -0,0 +1,56 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/partialsuccess.go + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package internal // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal" + +import "fmt" + +// PartialSuccess represents the underlying error for all handling +// OTLP partial success messages. Use `errors.Is(err, +// PartialSuccess{})` to test whether an error passed to the OTel +// error handler belongs to this category. +type PartialSuccess struct { + ErrorMessage string + RejectedItems int64 + RejectedKind string +} + +var _ error = PartialSuccess{} + +// Error implements the error interface. +func (ps PartialSuccess) Error() string { + msg := ps.ErrorMessage + if msg == "" { + msg = "empty message" + } + return fmt.Sprintf("OTLP partial success: %s (%d %s rejected)", msg, ps.RejectedItems, ps.RejectedKind) +} + +// Is supports the errors.Is() interface. +func (ps PartialSuccess) Is(err error) bool { + _, ok := err.(PartialSuccess) + return ok +} + +// TracePartialSuccessError returns an error describing a partial success +// response for the trace signal. +func TracePartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "spans", + } +} + +// MetricPartialSuccessError returns an error describing a partial success +// response for the metric signal. +func MetricPartialSuccessError(itemsRejected int64, errorMessage string) error { + return PartialSuccess{ + ErrorMessage: errorMessage, + RejectedItems: itemsRejected, + RejectedKind: "metric data points", + } +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry/retry.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry/retry.go new file mode 100644 index 0000000000..107428fa6c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry/retry.go @@ -0,0 +1,141 @@ +// Code generated by gotmpl. DO NOT MODIFY. +// source: internal/shared/otlp/retry/retry.go.tmpl + +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package retry provides request retry functionality that can perform +// configurable exponential backoff for transient errors and honor any +// explicit throttle responses received. +package retry // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry" + +import ( + "context" + "fmt" + "time" + + "github.com/cenkalti/backoff/v5" +) + +// DefaultConfig are the recommended defaults to use. +var DefaultConfig = Config{ + Enabled: true, + InitialInterval: 5 * time.Second, + MaxInterval: 30 * time.Second, + MaxElapsedTime: time.Minute, +} + +// Config defines configuration for retrying batches in case of export failure +// using an exponential backoff. +type Config struct { + // Enabled indicates whether to not retry sending batches in case of + // export failure. + Enabled bool + // InitialInterval the time to wait after the first failure before + // retrying. + InitialInterval time.Duration + // MaxInterval is the upper bound on backoff interval. Once this value is + // reached the delay between consecutive retries will always be + // `MaxInterval`. + MaxInterval time.Duration + // MaxElapsedTime is the maximum amount of time (including retries) spent + // trying to send a request/batch. Once this value is reached, the data + // is discarded. + MaxElapsedTime time.Duration +} + +// RequestFunc wraps a request with retry logic. +type RequestFunc func(context.Context, func(context.Context) error) error + +// EvaluateFunc returns if an error is retry-able and if an explicit throttle +// duration should be honored that was included in the error. +// +// The function must return true if the error argument is retry-able, +// otherwise it must return false for the first return parameter. +// +// The function must return a non-zero time.Duration if the error contains +// explicit throttle duration that should be honored, otherwise it must return +// a zero valued time.Duration. +type EvaluateFunc func(error) (bool, time.Duration) + +// RequestFunc returns a RequestFunc using the evaluate function to determine +// if requests can be retried and based on the exponential backoff +// configuration of c. +func (c Config) RequestFunc(evaluate EvaluateFunc) RequestFunc { + if !c.Enabled { + return func(ctx context.Context, fn func(context.Context) error) error { + return fn(ctx) + } + } + + return func(ctx context.Context, fn func(context.Context) error) error { + // Do not use NewExponentialBackOff since it calls Reset and the code here + // must call Reset after changing the InitialInterval (this saves an + // unnecessary call to Now). + b := &backoff.ExponentialBackOff{ + InitialInterval: c.InitialInterval, + RandomizationFactor: backoff.DefaultRandomizationFactor, + Multiplier: backoff.DefaultMultiplier, + MaxInterval: c.MaxInterval, + } + b.Reset() + + maxElapsedTime := c.MaxElapsedTime + startTime := time.Now() + + for { + err := fn(ctx) + if err == nil { + return nil + } + + retryable, throttle := evaluate(err) + if !retryable { + return err + } + + if maxElapsedTime != 0 && time.Since(startTime) > maxElapsedTime { + return fmt.Errorf("max retry time elapsed: %w", err) + } + + // Wait for the greater of the backoff or throttle delay. + bOff := b.NextBackOff() + delay := max(throttle, bOff) + + elapsed := time.Since(startTime) + if maxElapsedTime != 0 && elapsed+throttle > maxElapsedTime { + return fmt.Errorf("max retry time would elapse: %w", err) + } + + if ctxErr := waitFunc(ctx, delay); ctxErr != nil { + return fmt.Errorf("%w: %w", ctxErr, err) + } + } + } +} + +// Allow override for testing. +var waitFunc = wait + +// wait takes the caller's context, and the amount of time to wait. It will +// return nil if the timer fires before or at the same time as the context's +// deadline. This indicates that the call can be retried. +func wait(ctx context.Context, delay time.Duration) error { + timer := time.NewTimer(delay) + defer timer.Stop() + + select { + case <-ctx.Done(): + // Handle the case where the timer and context deadline end + // simultaneously by prioritizing the timer expiration nil value + // response. + select { + case <-timer.C: + default: + return context.Cause(ctx) + } + case <-timer.C: + } + + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/options.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/options.go new file mode 100644 index 0000000000..cfe21dbfb0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/options.go @@ -0,0 +1,171 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptracehttp // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp" + +import ( + "crypto/tls" + "net/http" + "net/url" + "time" + + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/otlpconfig" + "go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp/internal/retry" +) + +// Compression describes the compression used for payloads sent to the +// collector. +type Compression otlpconfig.Compression + +// HTTPTransportProxyFunc is a function that resolves which URL to use as proxy for a given request. +// This type is compatible with http.Transport.Proxy and can be used to set a custom proxy function +// to the OTLP HTTP client. +type HTTPTransportProxyFunc func(*http.Request) (*url.URL, error) + +const ( + // NoCompression tells the driver to send payloads without + // compression. + NoCompression = Compression(otlpconfig.NoCompression) + // GzipCompression tells the driver to send payloads after + // compressing them with gzip. + GzipCompression = Compression(otlpconfig.GzipCompression) +) + +// Option applies an option to the HTTP client. +type Option interface { + applyHTTPOption(otlpconfig.Config) otlpconfig.Config +} + +func asHTTPOptions(opts []Option) []otlpconfig.HTTPOption { + converted := make([]otlpconfig.HTTPOption, len(opts)) + for i, o := range opts { + converted[i] = otlpconfig.NewHTTPOption(o.applyHTTPOption) + } + return converted +} + +// RetryConfig defines configuration for retrying batches in case of export +// failure using an exponential backoff. +type RetryConfig retry.Config + +type wrappedOption struct { + otlpconfig.HTTPOption +} + +func (w wrappedOption) applyHTTPOption(cfg otlpconfig.Config) otlpconfig.Config { + return w.ApplyHTTPOption(cfg) +} + +// WithEndpoint sets the target endpoint (host and port) the Exporter will +// connect to. The provided endpoint should resemble "example.com:4318" (no +// scheme or path). +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_TRACES_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_TRACES_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// Note, both environment variables include the full +// scheme and path, while WithEndpoint sets only the host and port. +// +// If both this option and WithEndpointURL are used, the last used option will +// take precedence. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4318" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpoint(endpoint string) Option { + return wrappedOption{otlpconfig.WithEndpoint(endpoint)} +} + +// WithEndpointURL sets the target endpoint URL (scheme, host, port, path) the +// Exporter will connect to. +// +// If the OTEL_EXPORTER_OTLP_ENDPOINT or OTEL_EXPORTER_OTLP_TRACES_ENDPOINT +// environment variable is set, and this option is not passed, that variable +// value will be used. If both environment variables are set, +// OTEL_EXPORTER_OTLP_TRACES_ENDPOINT will take precedence. If an environment +// variable is set, and this option is passed, this option will take precedence. +// +// If both this option and WithEndpoint are used, the last used option will +// take precedence. +// +// If an invalid URL is provided, the default value will be kept. +// +// By default, if an environment variable is not set, and this option is not +// passed, "localhost:4318" will be used. +// +// This option has no effect if WithGRPCConn is used. +func WithEndpointURL(u string) Option { + return wrappedOption{otlpconfig.WithEndpointURL(u)} +} + +// WithCompression tells the driver to compress the sent data. +func WithCompression(compression Compression) Option { + return wrappedOption{otlpconfig.WithCompression(otlpconfig.Compression(compression))} +} + +// WithURLPath allows one to override the default URL path used +// for sending traces. If unset, default ("/v1/traces") will be used. +func WithURLPath(urlPath string) Option { + return wrappedOption{otlpconfig.WithURLPath(urlPath)} +} + +// WithTLSClientConfig can be used to set up a custom TLS +// configuration for the client used to send payloads to the +// collector. Use it if you want to use a custom certificate. +func WithTLSClientConfig(tlsCfg *tls.Config) Option { + return wrappedOption{otlpconfig.WithTLSClientConfig(tlsCfg)} +} + +// WithInsecure tells the driver to connect to the collector using the +// HTTP scheme, instead of HTTPS. +func WithInsecure() Option { + return wrappedOption{otlpconfig.WithInsecure()} +} + +// WithHeaders allows one to tell the driver to send additional HTTP +// headers with the payloads. Specifying headers like Content-Length, +// Content-Encoding and Content-Type may result in a broken driver. +func WithHeaders(headers map[string]string) Option { + return wrappedOption{otlpconfig.WithHeaders(headers)} +} + +// WithTimeout tells the driver the max waiting time for the backend to process +// each spans batch. If unset, the default will be 10 seconds. +func WithTimeout(duration time.Duration) Option { + return wrappedOption{otlpconfig.WithTimeout(duration)} +} + +// WithRetry configures the retry policy for transient errors that may occurs +// when exporting traces. An exponential back-off algorithm is used to ensure +// endpoints are not overwhelmed with retries. If unset, the default retry +// policy will retry after 5 seconds and increase exponentially after each +// error for a total of 1 minute. +func WithRetry(rc RetryConfig) Option { + return wrappedOption{otlpconfig.WithRetry(retry.Config(rc))} +} + +// WithProxy sets the Proxy function the client will use to determine the +// proxy to use for an HTTP request. If this option is not used, the client +// will use [http.ProxyFromEnvironment]. +func WithProxy(pf HTTPTransportProxyFunc) Option { + return wrappedOption{otlpconfig.WithProxy(otlpconfig.HTTPTransportProxyFunc(pf))} +} + +// WithHTTPClient sets the HTTP client to used by the exporter. +// +// This option will take precedence over [WithProxy], [WithTimeout], +// [WithTLSClientConfig] options as well as OTEL_EXPORTER_OTLP_CERTIFICATE, +// OTEL_EXPORTER_OTLP_TRACES_CERTIFICATE, OTEL_EXPORTER_OTLP_TIMEOUT, +// OTEL_EXPORTER_OTLP_TRACES_TIMEOUT environment variables. +// +// Timeout and all other fields of the passed [http.Client] are left intact. +// +// Be aware that passing an HTTP client with transport like +// [go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp.NewTransport] can +// cause the client to be instrumented twice and cause infinite recursion. +func WithHTTPClient(c *http.Client) Option { + return wrappedOption{otlpconfig.WithHTTPClient(c)} +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go new file mode 100644 index 0000000000..ed2ddce718 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/otlp/otlptrace/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otlptrace // import "go.opentelemetry.io/otel/exporters/otlp/otlptrace" + +// Version is the current release version of the OpenTelemetry OTLP trace exporter in use. +func Version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/prometheus/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/prometheus/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/prometheus/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/prometheus/README.md b/vendor/go.opentelemetry.io/otel/exporters/prometheus/README.md new file mode 100644 index 0000000000..f4dc09d386 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/prometheus/README.md @@ -0,0 +1,3 @@ +# Prometheus Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/prometheus)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/prometheus) diff --git a/vendor/go.opentelemetry.io/otel/exporters/prometheus/config.go b/vendor/go.opentelemetry.io/otel/exporters/prometheus/config.go new file mode 100644 index 0000000000..5218388402 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/prometheus/config.go @@ -0,0 +1,167 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package prometheus // import "go.opentelemetry.io/otel/exporters/prometheus" + +import ( + "strings" + "sync" + + "github.com/prometheus/client_golang/prometheus" + "github.com/prometheus/common/model" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" +) + +// config contains options for the exporter. +type config struct { + registerer prometheus.Registerer + disableTargetInfo bool + withoutUnits bool + withoutCounterSuffixes bool + readerOpts []metric.ManualReaderOption + disableScopeInfo bool + namespace string + resourceAttributesFilter attribute.Filter +} + +var logDeprecatedLegacyScheme = sync.OnceFunc(func() { + global.Warn( + "prometheus exporter legacy scheme deprecated: support for the legacy NameValidationScheme will be removed in a future release", + ) +}) + +// newConfig creates a validated config configured with options. +func newConfig(opts ...Option) config { + cfg := config{} + for _, opt := range opts { + cfg = opt.apply(cfg) + } + + if cfg.registerer == nil { + cfg.registerer = prometheus.DefaultRegisterer + } + + return cfg +} + +// Option sets exporter option values. +type Option interface { + apply(config) config +} + +type optionFunc func(config) config + +func (fn optionFunc) apply(cfg config) config { + return fn(cfg) +} + +// WithRegisterer configures which prometheus Registerer the Exporter will +// register with. If no registerer is used the prometheus DefaultRegisterer is +// used. +func WithRegisterer(reg prometheus.Registerer) Option { + return optionFunc(func(cfg config) config { + cfg.registerer = reg + return cfg + }) +} + +// WithAggregationSelector configure the Aggregation Selector the exporter will +// use. If no AggregationSelector is provided the DefaultAggregationSelector is +// used. +func WithAggregationSelector(agg metric.AggregationSelector) Option { + return optionFunc(func(cfg config) config { + cfg.readerOpts = append(cfg.readerOpts, metric.WithAggregationSelector(agg)) + return cfg + }) +} + +// WithProducer configure the metric Producer the exporter will use as a source +// of external metric data. +func WithProducer(producer metric.Producer) Option { + return optionFunc(func(cfg config) config { + cfg.readerOpts = append(cfg.readerOpts, metric.WithProducer(producer)) + return cfg + }) +} + +// WithoutTargetInfo configures the Exporter to not export the resource target_info metric. +// If not specified, the Exporter will create a target_info metric containing +// the metrics' resource.Resource attributes. +func WithoutTargetInfo() Option { + return optionFunc(func(cfg config) config { + cfg.disableTargetInfo = true + return cfg + }) +} + +// WithoutUnits disables exporter's addition of unit suffixes to metric names, +// and will also prevent unit comments from being added in OpenMetrics once +// unit comments are supported. +// +// By default, metric names include a unit suffix to follow Prometheus naming +// conventions. For example, the counter metric request.duration, with unit +// milliseconds would become request_duration_milliseconds_total. +// With this option set, the name would instead be request_duration_total. +func WithoutUnits() Option { + return optionFunc(func(cfg config) config { + cfg.withoutUnits = true + return cfg + }) +} + +// WithoutCounterSuffixes disables exporter's addition _total suffixes on counters. +// +// By default, metric names include a _total suffix to follow Prometheus naming +// conventions. For example, the counter metric happy.people would become +// happy_people_total. With this option set, the name would instead be +// happy_people. +func WithoutCounterSuffixes() Option { + return optionFunc(func(cfg config) config { + cfg.withoutCounterSuffixes = true + return cfg + }) +} + +// WithoutScopeInfo configures the Exporter to not export +// labels about Instrumentation Scope to all metric points. +func WithoutScopeInfo() Option { + return optionFunc(func(cfg config) config { + cfg.disableScopeInfo = true + return cfg + }) +} + +// WithNamespace configures the Exporter to prefix metric with the given namespace. +// Metadata metrics such as target_info are not prefixed since these +// have special behavior based on their name. +func WithNamespace(ns string) Option { + return optionFunc(func(cfg config) config { + if model.NameValidationScheme != model.UTF8Validation { // nolint:staticcheck // We need this check to keep supporting the legacy scheme. + logDeprecatedLegacyScheme() + // Only sanitize if prometheus does not support UTF-8. + ns = model.EscapeName(ns, model.NameEscapingScheme) + } + if !strings.HasSuffix(ns, "_") { + // namespace and metric names should be separated with an underscore, + // adds a trailing underscore if there is not one already. + ns = ns + "_" + } + + cfg.namespace = ns + return cfg + }) +} + +// WithResourceAsConstantLabels configures the Exporter to add the resource attributes the +// resourceFilter returns true for as attributes on all exported metrics. +// +// The does not affect the target info generated from resource attributes. +func WithResourceAsConstantLabels(resourceFilter attribute.Filter) Option { + return optionFunc(func(cfg config) config { + cfg.resourceAttributesFilter = resourceFilter + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/prometheus/doc.go b/vendor/go.opentelemetry.io/otel/exporters/prometheus/doc.go new file mode 100644 index 0000000000..e9b77869ea --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/prometheus/doc.go @@ -0,0 +1,7 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package prometheus provides a Prometheus Exporter that converts +// OTLP metrics into the Prometheus exposition format and implements +// prometheus.Collector to provide a handler for these metrics. +package prometheus // import "go.opentelemetry.io/otel/exporters/prometheus" diff --git a/vendor/go.opentelemetry.io/otel/exporters/prometheus/exporter.go b/vendor/go.opentelemetry.io/otel/exporters/prometheus/exporter.go new file mode 100644 index 0000000000..7b44c12c54 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/prometheus/exporter.go @@ -0,0 +1,684 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package prometheus // import "go.opentelemetry.io/otel/exporters/prometheus" + +import ( + "context" + "encoding/hex" + "errors" + "fmt" + "math" + "slices" + "strings" + "sync" + + "github.com/prometheus/client_golang/prometheus" + dto "github.com/prometheus/client_model/go" + "github.com/prometheus/common/model" + "google.golang.org/protobuf/proto" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric" + "go.opentelemetry.io/otel/sdk/metric/metricdata" + "go.opentelemetry.io/otel/sdk/resource" +) + +const ( + targetInfoMetricName = "target_info" + targetInfoDescription = "Target metadata" + + scopeLabelPrefix = "otel_scope_" + scopeNameLabel = scopeLabelPrefix + "name" + scopeVersionLabel = scopeLabelPrefix + "version" + scopeSchemaLabel = scopeLabelPrefix + "schema_url" + + traceIDExemplarKey = "trace_id" + spanIDExemplarKey = "span_id" +) + +var metricsPool = sync.Pool{ + New: func() interface{} { + return &metricdata.ResourceMetrics{} + }, +} + +// Exporter is a Prometheus Exporter that embeds the OTel metric.Reader +// interface for easy instantiation with a MeterProvider. +type Exporter struct { + metric.Reader +} + +// MarshalLog returns logging data about the Exporter. +func (e *Exporter) MarshalLog() interface{} { + const t = "Prometheus exporter" + + if r, ok := e.Reader.(*metric.ManualReader); ok { + under := r.MarshalLog() + if data, ok := under.(struct { + Type string + Registered bool + Shutdown bool + }); ok { + data.Type = t + return data + } + } + + return struct{ Type string }{Type: t} +} + +var _ metric.Reader = &Exporter{} + +// keyVals is used to store resource attribute key value pairs. +type keyVals struct { + keys []string + vals []string +} + +// collector is used to implement prometheus.Collector. +type collector struct { + reader metric.Reader + + withoutUnits bool + withoutCounterSuffixes bool + disableScopeInfo bool + namespace string + resourceAttributesFilter attribute.Filter + + mu sync.Mutex // mu protects all members below from the concurrent access. + disableTargetInfo bool + targetInfo prometheus.Metric + metricFamilies map[string]*dto.MetricFamily + resourceKeyVals keyVals +} + +// prometheus counters MUST have a _total suffix by default: +// https://github.com/open-telemetry/opentelemetry-specification/blob/v1.20.0/specification/compatibility/prometheus_and_openmetrics.md +const counterSuffix = "total" + +// New returns a Prometheus Exporter. +func New(opts ...Option) (*Exporter, error) { + cfg := newConfig(opts...) + + // this assumes that the default temporality selector will always return cumulative. + // we only support cumulative temporality, so building our own reader enforces this. + // TODO (#3244): Enable some way to configure the reader, but not change temporality. + reader := metric.NewManualReader(cfg.readerOpts...) + + collector := &collector{ + reader: reader, + disableTargetInfo: cfg.disableTargetInfo, + withoutUnits: cfg.withoutUnits, + withoutCounterSuffixes: cfg.withoutCounterSuffixes, + disableScopeInfo: cfg.disableScopeInfo, + metricFamilies: make(map[string]*dto.MetricFamily), + namespace: cfg.namespace, + resourceAttributesFilter: cfg.resourceAttributesFilter, + } + + if err := cfg.registerer.Register(collector); err != nil { + return nil, fmt.Errorf("cannot register the collector: %w", err) + } + + e := &Exporter{ + Reader: reader, + } + + return e, nil +} + +// Describe implements prometheus.Collector. +func (c *collector) Describe(ch chan<- *prometheus.Desc) { + // The Opentelemetry SDK doesn't have information on which will exist when the collector + // is registered. By returning nothing we are an "unchecked" collector in Prometheus, + // and assume responsibility for consistency of the metrics produced. + // + // See https://pkg.go.dev/github.com/prometheus/client_golang@v1.13.0/prometheus#hdr-Custom_Collectors_and_constant_Metrics +} + +// Collect implements prometheus.Collector. +// +// This method is safe to call concurrently. +func (c *collector) Collect(ch chan<- prometheus.Metric) { + metrics := metricsPool.Get().(*metricdata.ResourceMetrics) + defer metricsPool.Put(metrics) + err := c.reader.Collect(context.TODO(), metrics) + if err != nil { + if errors.Is(err, metric.ErrReaderShutdown) { + return + } + otel.Handle(err) + if errors.Is(err, metric.ErrReaderNotRegistered) { + return + } + } + + global.Debug("Prometheus exporter export", "Data", metrics) + + // Initialize (once) targetInfo and disableTargetInfo. + func() { + c.mu.Lock() + defer c.mu.Unlock() + + if c.targetInfo == nil && !c.disableTargetInfo { + targetInfo, err := createInfoMetric(targetInfoMetricName, targetInfoDescription, metrics.Resource) + if err != nil { + // If the target info metric is invalid, disable sending it. + c.disableTargetInfo = true + otel.Handle(err) + return + } + + c.targetInfo = targetInfo + } + }() + + if !c.disableTargetInfo { + ch <- c.targetInfo + } + + if c.resourceAttributesFilter != nil && len(c.resourceKeyVals.keys) == 0 { + c.createResourceAttributes(metrics.Resource) + } + + for _, scopeMetrics := range metrics.ScopeMetrics { + n := len(c.resourceKeyVals.keys) + 2 // resource attrs + scope name + scope version + kv := keyVals{ + keys: make([]string, 0, n), + vals: make([]string, 0, n), + } + + if !c.disableScopeInfo { + kv.keys = append(kv.keys, scopeNameLabel, scopeVersionLabel, scopeSchemaLabel) + kv.vals = append(kv.vals, scopeMetrics.Scope.Name, scopeMetrics.Scope.Version, scopeMetrics.Scope.SchemaURL) + + attrKeys, attrVals := getAttrs(scopeMetrics.Scope.Attributes) + for i := range attrKeys { + attrKeys[i] = scopeLabelPrefix + attrKeys[i] + } + kv.keys = append(kv.keys, attrKeys...) + kv.vals = append(kv.vals, attrVals...) + } + + kv.keys = append(kv.keys, c.resourceKeyVals.keys...) + kv.vals = append(kv.vals, c.resourceKeyVals.vals...) + + for _, m := range scopeMetrics.Metrics { + typ := c.metricType(m) + if typ == nil { + continue + } + name := c.getName(m, typ) + + drop, help := c.validateMetrics(name, m.Description, typ) + if drop { + continue + } + + if help != "" { + m.Description = help + } + + switch v := m.Data.(type) { + case metricdata.Histogram[int64]: + addHistogramMetric(ch, v, m, name, kv) + case metricdata.Histogram[float64]: + addHistogramMetric(ch, v, m, name, kv) + case metricdata.ExponentialHistogram[int64]: + addExponentialHistogramMetric(ch, v, m, name, kv) + case metricdata.ExponentialHistogram[float64]: + addExponentialHistogramMetric(ch, v, m, name, kv) + case metricdata.Sum[int64]: + addSumMetric(ch, v, m, name, kv) + case metricdata.Sum[float64]: + addSumMetric(ch, v, m, name, kv) + case metricdata.Gauge[int64]: + addGaugeMetric(ch, v, m, name, kv) + case metricdata.Gauge[float64]: + addGaugeMetric(ch, v, m, name, kv) + } + } + } +} + +// downscaleExponentialBucket re-aggregates bucket counts when downscaling to a coarser resolution. +func downscaleExponentialBucket(bucket metricdata.ExponentialBucket, scaleDelta int32) metricdata.ExponentialBucket { + if len(bucket.Counts) == 0 || scaleDelta < 1 { + return metricdata.ExponentialBucket{ + Offset: bucket.Offset >> scaleDelta, + Counts: append([]uint64(nil), bucket.Counts...), // copy slice + } + } + + // The new offset is scaled down + newOffset := bucket.Offset >> scaleDelta + + // Pre-calculate the new bucket count to avoid growing slice + // Each group of 2^scaleDelta buckets will merge into one bucket + //nolint:gosec // Length is bounded by slice allocation + lastBucketIdx := bucket.Offset + int32(len(bucket.Counts)) - 1 + lastNewIdx := lastBucketIdx >> scaleDelta + newBucketCount := int(lastNewIdx - newOffset + 1) + + if newBucketCount <= 0 { + return metricdata.ExponentialBucket{ + Offset: newOffset, + Counts: []uint64{}, + } + } + + newCounts := make([]uint64, newBucketCount) + + // Merge buckets according to the scale difference + for i, count := range bucket.Counts { + if count == 0 { + continue + } + + // Calculate which new bucket this count belongs to + //nolint:gosec // Index is bounded by loop iteration + originalIdx := bucket.Offset + int32(i) + newIdx := originalIdx >> scaleDelta + + // Calculate the position in the new counts array + position := newIdx - newOffset + //nolint:gosec // Length is bounded by allocation + if position >= 0 && position < int32(len(newCounts)) { + newCounts[position] += count + } + } + + return metricdata.ExponentialBucket{ + Offset: newOffset, + Counts: newCounts, + } +} + +func addExponentialHistogramMetric[N int64 | float64]( + ch chan<- prometheus.Metric, + histogram metricdata.ExponentialHistogram[N], + m metricdata.Metrics, + name string, + kv keyVals, +) { + for _, dp := range histogram.DataPoints { + keys, values := getAttrs(dp.Attributes) + keys = append(keys, kv.keys...) + values = append(values, kv.vals...) + + desc := prometheus.NewDesc(name, m.Description, keys, nil) + + // Prometheus native histograms support scales in the range [-4, 8] + scale := dp.Scale + if scale < -4 { + // Reject scales below -4 as they cannot be represented in Prometheus + otel.Handle(fmt.Errorf( + "exponential histogram scale %d is below minimum supported scale -4, skipping data point", + scale)) + continue + } + + // If scale > 8, we need to downscale the buckets to match the clamped scale + positiveBucket := dp.PositiveBucket + negativeBucket := dp.NegativeBucket + if scale > 8 { + scaleDelta := scale - 8 + positiveBucket = downscaleExponentialBucket(dp.PositiveBucket, scaleDelta) + negativeBucket = downscaleExponentialBucket(dp.NegativeBucket, scaleDelta) + scale = 8 + } + + // From spec: note that Prometheus Native Histograms buckets are indexed by upper boundary while Exponential Histograms are indexed by lower boundary, the result being that the Offset fields are different-by-one. + positiveBuckets := make(map[int]int64) + for i, c := range positiveBucket.Counts { + if c > math.MaxInt64 { + otel.Handle(fmt.Errorf("positive count %d is too large to be represented as int64", c)) + continue + } + positiveBuckets[int(positiveBucket.Offset)+i+1] = int64(c) // nolint: gosec // Size check above. + } + + negativeBuckets := make(map[int]int64) + for i, c := range negativeBucket.Counts { + if c > math.MaxInt64 { + otel.Handle(fmt.Errorf("negative count %d is too large to be represented as int64", c)) + continue + } + negativeBuckets[int(negativeBucket.Offset)+i+1] = int64(c) // nolint: gosec // Size check above. + } + + m, err := prometheus.NewConstNativeHistogram( + desc, + dp.Count, + float64(dp.Sum), + positiveBuckets, + negativeBuckets, + dp.ZeroCount, + scale, + dp.ZeroThreshold, + dp.StartTime, + values...) + if err != nil { + otel.Handle(err) + continue + } + + // TODO(GiedriusS): add exemplars here after https://github.com/prometheus/client_golang/pull/1654#pullrequestreview-2434669425 is done. + ch <- m + } +} + +func addHistogramMetric[N int64 | float64]( + ch chan<- prometheus.Metric, + histogram metricdata.Histogram[N], + m metricdata.Metrics, + name string, + kv keyVals, +) { + for _, dp := range histogram.DataPoints { + keys, values := getAttrs(dp.Attributes) + keys = append(keys, kv.keys...) + values = append(values, kv.vals...) + + desc := prometheus.NewDesc(name, m.Description, keys, nil) + buckets := make(map[float64]uint64, len(dp.Bounds)) + + cumulativeCount := uint64(0) + for i, bound := range dp.Bounds { + cumulativeCount += dp.BucketCounts[i] + buckets[bound] = cumulativeCount + } + m, err := prometheus.NewConstHistogram(desc, dp.Count, float64(dp.Sum), buckets, values...) + if err != nil { + otel.Handle(err) + continue + } + m = addExemplars(m, dp.Exemplars) + ch <- m + } +} + +func addSumMetric[N int64 | float64]( + ch chan<- prometheus.Metric, + sum metricdata.Sum[N], + m metricdata.Metrics, + name string, + kv keyVals, +) { + valueType := prometheus.CounterValue + if !sum.IsMonotonic { + valueType = prometheus.GaugeValue + } + + for _, dp := range sum.DataPoints { + keys, values := getAttrs(dp.Attributes) + keys = append(keys, kv.keys...) + values = append(values, kv.vals...) + + desc := prometheus.NewDesc(name, m.Description, keys, nil) + m, err := prometheus.NewConstMetric(desc, valueType, float64(dp.Value), values...) + if err != nil { + otel.Handle(err) + continue + } + // GaugeValues don't support Exemplars at this time + // https://github.com/prometheus/client_golang/blob/aef8aedb4b6e1fb8ac1c90790645169125594096/prometheus/metric.go#L199 + if valueType != prometheus.GaugeValue { + m = addExemplars(m, dp.Exemplars) + } + ch <- m + } +} + +func addGaugeMetric[N int64 | float64]( + ch chan<- prometheus.Metric, + gauge metricdata.Gauge[N], + m metricdata.Metrics, + name string, + kv keyVals, +) { + for _, dp := range gauge.DataPoints { + keys, values := getAttrs(dp.Attributes) + keys = append(keys, kv.keys...) + values = append(values, kv.vals...) + + desc := prometheus.NewDesc(name, m.Description, keys, nil) + m, err := prometheus.NewConstMetric(desc, prometheus.GaugeValue, float64(dp.Value), values...) + if err != nil { + otel.Handle(err) + continue + } + ch <- m + } +} + +// getAttrs converts the attribute.Set to two lists of matching Prometheus-style +// keys and values. +func getAttrs(attrs attribute.Set) ([]string, []string) { + keys := make([]string, 0, attrs.Len()) + values := make([]string, 0, attrs.Len()) + itr := attrs.Iter() + + if model.NameValidationScheme == model.UTF8Validation { // nolint:staticcheck // We need this check to keep supporting the legacy scheme. + // Do not perform sanitization if prometheus supports UTF-8. + for itr.Next() { + kv := itr.Attribute() + keys = append(keys, string(kv.Key)) + values = append(values, kv.Value.Emit()) + } + } else { + // It sanitizes invalid characters and handles duplicate keys + // (due to sanitization) by sorting and concatenating the values following the spec. + keysMap := make(map[string][]string) + for itr.Next() { + kv := itr.Attribute() + key := model.EscapeName(string(kv.Key), model.NameEscapingScheme) + if _, ok := keysMap[key]; !ok { + keysMap[key] = []string{kv.Value.Emit()} + } else { + // if the sanitized key is a duplicate, append to the list of keys + keysMap[key] = append(keysMap[key], kv.Value.Emit()) + } + } + for key, vals := range keysMap { + keys = append(keys, key) + slices.Sort(vals) + values = append(values, strings.Join(vals, ";")) + } + } + return keys, values +} + +func createInfoMetric(name, description string, res *resource.Resource) (prometheus.Metric, error) { + keys, values := getAttrs(*res.Set()) + desc := prometheus.NewDesc(name, description, keys, nil) + return prometheus.NewConstMetric(desc, prometheus.GaugeValue, float64(1), values...) +} + +func unitMapGetOrDefault(unit string) string { + if promUnit, ok := unitSuffixes[unit]; ok { + return promUnit + } + return unit +} + +var unitSuffixes = map[string]string{ + // Time + "d": "days", + "h": "hours", + "min": "minutes", + "s": "seconds", + "ms": "milliseconds", + "us": "microseconds", + "ns": "nanoseconds", + + // Bytes + "By": "bytes", + "KiBy": "kibibytes", + "MiBy": "mebibytes", + "GiBy": "gibibytes", + "TiBy": "tibibytes", + "KBy": "kilobytes", + "MBy": "megabytes", + "GBy": "gigabytes", + "TBy": "terabytes", + + // SI + "m": "meters", + "V": "volts", + "A": "amperes", + "J": "joules", + "W": "watts", + "g": "grams", + + // Misc + "Cel": "celsius", + "Hz": "hertz", + "1": "ratio", + "%": "percent", +} + +// getName returns the sanitized name, prefixed with the namespace and suffixed with unit. +func (c *collector) getName(m metricdata.Metrics, typ *dto.MetricType) string { + name := m.Name + if model.NameValidationScheme != model.UTF8Validation { // nolint:staticcheck // We need this check to keep supporting the legacy scheme. + // Only sanitize if prometheus does not support UTF-8. + logDeprecatedLegacyScheme() + name = model.EscapeName(name, model.NameEscapingScheme) + } + addCounterSuffix := !c.withoutCounterSuffixes && *typ == dto.MetricType_COUNTER + if addCounterSuffix { + // Remove the _total suffix here, as we will re-add the total suffix + // later, and it needs to come after the unit suffix. + name = strings.TrimSuffix(name, counterSuffix) + // If the last character is an underscore, or would be converted to an underscore, trim it from the name. + // an underscore will be added back in later. + if convertsToUnderscore(rune(name[len(name)-1])) { + name = name[:len(name)-1] + } + } + if c.namespace != "" { + name = c.namespace + name + } + if suffix := unitMapGetOrDefault(m.Unit); suffix != "" && !c.withoutUnits && !strings.HasSuffix(name, suffix) { + name += "_" + suffix + } + if addCounterSuffix { + name += "_" + counterSuffix + } + return name +} + +// convertsToUnderscore returns true if the character would be converted to an +// underscore when the escaping scheme is underscore escaping. This is meant to +// capture any character that should be considered a "delimiter". +func convertsToUnderscore(b rune) bool { + return (b < 'a' || b > 'z') && (b < 'A' || b > 'Z') && b != ':' && (b < '0' || b > '9') +} + +func (c *collector) metricType(m metricdata.Metrics) *dto.MetricType { + switch v := m.Data.(type) { + case metricdata.ExponentialHistogram[int64], metricdata.ExponentialHistogram[float64]: + return dto.MetricType_HISTOGRAM.Enum() + case metricdata.Histogram[int64], metricdata.Histogram[float64]: + return dto.MetricType_HISTOGRAM.Enum() + case metricdata.Sum[float64]: + if v.IsMonotonic { + return dto.MetricType_COUNTER.Enum() + } + return dto.MetricType_GAUGE.Enum() + case metricdata.Sum[int64]: + if v.IsMonotonic { + return dto.MetricType_COUNTER.Enum() + } + return dto.MetricType_GAUGE.Enum() + case metricdata.Gauge[int64], metricdata.Gauge[float64]: + return dto.MetricType_GAUGE.Enum() + } + return nil +} + +func (c *collector) createResourceAttributes(res *resource.Resource) { + c.mu.Lock() + defer c.mu.Unlock() + + resourceAttrs, _ := res.Set().Filter(c.resourceAttributesFilter) + resourceKeys, resourceValues := getAttrs(resourceAttrs) + c.resourceKeyVals = keyVals{keys: resourceKeys, vals: resourceValues} +} + +func (c *collector) validateMetrics(name, description string, metricType *dto.MetricType) (drop bool, help string) { + c.mu.Lock() + defer c.mu.Unlock() + + emf, exist := c.metricFamilies[name] + + if !exist { + c.metricFamilies[name] = &dto.MetricFamily{ + Name: proto.String(name), + Help: proto.String(description), + Type: metricType, + } + return false, "" + } + + if emf.GetType() != *metricType { + global.Error( + errors.New("instrument type conflict"), + "Using existing type definition.", + "instrument", name, + "existing", emf.GetType(), + "dropped", *metricType, + ) + return true, "" + } + if emf.GetHelp() != description { + global.Info( + "Instrument description conflict, using existing", + "instrument", name, + "existing", emf.GetHelp(), + "dropped", description, + ) + return false, emf.GetHelp() + } + + return false, "" +} + +func addExemplars[N int64 | float64](m prometheus.Metric, exemplars []metricdata.Exemplar[N]) prometheus.Metric { + if len(exemplars) == 0 { + return m + } + promExemplars := make([]prometheus.Exemplar, len(exemplars)) + for i, exemplar := range exemplars { + labels := attributesToLabels(exemplar.FilteredAttributes) + // Overwrite any existing trace ID or span ID attributes + labels[traceIDExemplarKey] = hex.EncodeToString(exemplar.TraceID[:]) + labels[spanIDExemplarKey] = hex.EncodeToString(exemplar.SpanID[:]) + promExemplars[i] = prometheus.Exemplar{ + Value: float64(exemplar.Value), + Timestamp: exemplar.Time, + Labels: labels, + } + } + metricWithExemplar, err := prometheus.NewMetricWithExemplars(m, promExemplars...) + if err != nil { + // If there are errors creating the metric with exemplars, just warn + // and return the metric without exemplars. + otel.Handle(err) + return m + } + return metricWithExemplar +} + +func attributesToLabels(attrs []attribute.KeyValue) prometheus.Labels { + labels := make(map[string]string) + for _, attr := range attrs { + key := model.EscapeName(string(attr.Key), model.NameEscapingScheme) + labels[key] = attr.Value.Emit() + } + return labels +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/LICENSE b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/README.md b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/README.md new file mode 100644 index 0000000000..f84dee7ee4 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/README.md @@ -0,0 +1,3 @@ +# STDOUT Trace Exporter + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/exporters/stdout/stdouttrace)](https://pkg.go.dev/go.opentelemetry.io/otel/exporters/stdout/stdouttrace) diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go new file mode 100644 index 0000000000..0ba3424e29 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/config.go @@ -0,0 +1,85 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" + +import ( + "io" + "os" +) + +var ( + defaultWriter = os.Stdout + defaultPrettyPrint = false + defaultTimestamps = true +) + +// config contains options for the STDOUT exporter. +type config struct { + // Writer is the destination. If not set, os.Stdout is used. + Writer io.Writer + + // PrettyPrint will encode the output into readable JSON. Default is + // false. + PrettyPrint bool + + // Timestamps specifies if timestamps should be printed. Default is + // true. + Timestamps bool +} + +// newConfig creates a validated Config configured with options. +func newConfig(options ...Option) config { + cfg := config{ + Writer: defaultWriter, + PrettyPrint: defaultPrettyPrint, + Timestamps: defaultTimestamps, + } + for _, opt := range options { + cfg = opt.apply(cfg) + } + return cfg +} + +// Option sets the value of an option for a Config. +type Option interface { + apply(config) config +} + +// WithWriter sets the export stream destination. +func WithWriter(w io.Writer) Option { + return writerOption{w} +} + +type writerOption struct { + W io.Writer +} + +func (o writerOption) apply(cfg config) config { + cfg.Writer = o.W + return cfg +} + +// WithPrettyPrint prettifies the emitted output. +func WithPrettyPrint() Option { + return prettyPrintOption(true) +} + +type prettyPrintOption bool + +func (o prettyPrintOption) apply(cfg config) config { + cfg.PrettyPrint = bool(o) + return cfg +} + +// WithoutTimestamps sets the export stream to not include timestamps. +func WithoutTimestamps() Option { + return timestampsOption(false) +} + +type timestampsOption bool + +func (o timestampsOption) apply(cfg config) config { + cfg.Timestamps = bool(o) + return cfg +} diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go new file mode 100644 index 0000000000..eff7730cdc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/doc.go @@ -0,0 +1,6 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package stdouttrace contains an OpenTelemetry exporter for tracing +// telemetry to be written to an output destination as JSON. +package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" diff --git a/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go new file mode 100644 index 0000000000..bdb915ba80 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/exporters/stdout/stdouttrace/trace.go @@ -0,0 +1,103 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package stdouttrace // import "go.opentelemetry.io/otel/exporters/stdout/stdouttrace" + +import ( + "context" + "encoding/json" + "sync" + "time" + + "go.opentelemetry.io/otel/sdk/trace" + "go.opentelemetry.io/otel/sdk/trace/tracetest" +) + +var zeroTime time.Time + +var _ trace.SpanExporter = &Exporter{} + +// New creates an Exporter with the passed options. +func New(options ...Option) (*Exporter, error) { + cfg := newConfig(options...) + + enc := json.NewEncoder(cfg.Writer) + if cfg.PrettyPrint { + enc.SetIndent("", "\t") + } + + return &Exporter{ + encoder: enc, + timestamps: cfg.Timestamps, + }, nil +} + +// Exporter is an implementation of trace.SpanSyncer that writes spans to stdout. +type Exporter struct { + encoder *json.Encoder + encoderMu sync.Mutex + timestamps bool + + stoppedMu sync.RWMutex + stopped bool +} + +// ExportSpans writes spans in json format to stdout. +func (e *Exporter) ExportSpans(ctx context.Context, spans []trace.ReadOnlySpan) error { + if err := ctx.Err(); err != nil { + return err + } + e.stoppedMu.RLock() + stopped := e.stopped + e.stoppedMu.RUnlock() + if stopped { + return nil + } + + if len(spans) == 0 { + return nil + } + + stubs := tracetest.SpanStubsFromReadOnlySpans(spans) + + e.encoderMu.Lock() + defer e.encoderMu.Unlock() + for i := range stubs { + stub := &stubs[i] + // Remove timestamps + if !e.timestamps { + stub.StartTime = zeroTime + stub.EndTime = zeroTime + for j := range stub.Events { + ev := &stub.Events[j] + ev.Time = zeroTime + } + } + + // Encode span stubs, one by one + if err := e.encoder.Encode(stub); err != nil { + return err + } + } + return nil +} + +// Shutdown is called to stop the exporter, it performs no action. +func (e *Exporter) Shutdown(ctx context.Context) error { + e.stoppedMu.Lock() + e.stopped = true + e.stoppedMu.Unlock() + + return nil +} + +// MarshalLog is the marshaling function used by the logging system to represent this Exporter. +func (e *Exporter) MarshalLog() interface{} { + return struct { + Type string + WithTimestamps bool + }{ + Type: "stdout", + WithTimestamps: e.timestamps, + } +} diff --git a/vendor/go.opentelemetry.io/otel/handler.go b/vendor/go.opentelemetry.io/otel/handler.go new file mode 100644 index 0000000000..07623b6791 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/handler.go @@ -0,0 +1,33 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +import ( + "go.opentelemetry.io/otel/internal/global" +) + +// Compile-time check global.ErrDelegator implements ErrorHandler. +var _ ErrorHandler = (*global.ErrDelegator)(nil) + +// GetErrorHandler returns the global ErrorHandler instance. +// +// The default ErrorHandler instance returned will log all errors to STDERR +// until an override ErrorHandler is set with SetErrorHandler. All +// ErrorHandler returned prior to this will automatically forward errors to +// the set instance instead of logging. +// +// Subsequent calls to SetErrorHandler after the first will not forward errors +// to the new ErrorHandler for prior returned instances. +func GetErrorHandler() ErrorHandler { return global.GetErrorHandler() } + +// SetErrorHandler sets the global ErrorHandler to h. +// +// The first time this is called all ErrorHandler previously returned from +// GetErrorHandler will send errors to h instead of the default logging +// ErrorHandler. Subsequent calls will set the global ErrorHandler, but not +// delegate errors to h. +func SetErrorHandler(h ErrorHandler) { global.SetErrorHandler(h) } + +// Handle is a convenience function for GetErrorHandler().Handle(err). +func Handle(err error) { global.GetErrorHandler().Handle(err) } diff --git a/vendor/go.opentelemetry.io/otel/internal/baggage/baggage.go b/vendor/go.opentelemetry.io/otel/internal/baggage/baggage.go new file mode 100644 index 0000000000..b4f85f44a9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/baggage/baggage.go @@ -0,0 +1,32 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package baggage provides base types and functionality to store and retrieve +baggage in Go context. This package exists because the OpenTracing bridge to +OpenTelemetry needs to synchronize state whenever baggage for a context is +modified and that context contains an OpenTracing span. If it were not for +this need this package would not need to exist and the +`go.opentelemetry.io/otel/baggage` package would be the singular place where +W3C baggage is handled. +*/ +package baggage // import "go.opentelemetry.io/otel/internal/baggage" + +// List is the collection of baggage members. The W3C allows for duplicates, +// but OpenTelemetry does not, therefore, this is represented as a map. +type List map[string]Item + +// Item is the value and metadata properties part of a list-member. +type Item struct { + Value string + Properties []Property +} + +// Property is a metadata entry for a list-member. +type Property struct { + Key, Value string + + // HasValue indicates if a zero-value value means the property does not + // have a value or if it was the zero-value. + HasValue bool +} diff --git a/vendor/go.opentelemetry.io/otel/internal/baggage/context.go b/vendor/go.opentelemetry.io/otel/internal/baggage/context.go new file mode 100644 index 0000000000..3aea9c491f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/baggage/context.go @@ -0,0 +1,81 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package baggage // import "go.opentelemetry.io/otel/internal/baggage" + +import "context" + +type baggageContextKeyType int + +const baggageKey baggageContextKeyType = iota + +// SetHookFunc is a callback called when storing baggage in the context. +type SetHookFunc func(context.Context, List) context.Context + +// GetHookFunc is a callback called when getting baggage from the context. +type GetHookFunc func(context.Context, List) List + +type baggageState struct { + list List + + setHook SetHookFunc + getHook GetHookFunc +} + +// ContextWithSetHook returns a copy of parent with hook configured to be +// invoked every time ContextWithBaggage is called. +// +// Passing nil SetHookFunc creates a context with no set hook to call. +func ContextWithSetHook(parent context.Context, hook SetHookFunc) context.Context { + var s baggageState + if v, ok := parent.Value(baggageKey).(baggageState); ok { + s = v + } + + s.setHook = hook + return context.WithValue(parent, baggageKey, s) +} + +// ContextWithGetHook returns a copy of parent with hook configured to be +// invoked every time FromContext is called. +// +// Passing nil GetHookFunc creates a context with no get hook to call. +func ContextWithGetHook(parent context.Context, hook GetHookFunc) context.Context { + var s baggageState + if v, ok := parent.Value(baggageKey).(baggageState); ok { + s = v + } + + s.getHook = hook + return context.WithValue(parent, baggageKey, s) +} + +// ContextWithList returns a copy of parent with baggage. Passing nil list +// returns a context without any baggage. +func ContextWithList(parent context.Context, list List) context.Context { + var s baggageState + if v, ok := parent.Value(baggageKey).(baggageState); ok { + s = v + } + + s.list = list + ctx := context.WithValue(parent, baggageKey, s) + if s.setHook != nil { + ctx = s.setHook(ctx, list) + } + + return ctx +} + +// ListFromContext returns the baggage contained in ctx. +func ListFromContext(ctx context.Context) List { + switch v := ctx.Value(baggageKey).(type) { + case baggageState: + if v.getHook != nil { + return v.getHook(ctx, v.list) + } + return v.list + default: + return nil + } +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/handler.go b/vendor/go.opentelemetry.io/otel/internal/global/handler.go new file mode 100644 index 0000000000..2e47b2964c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/handler.go @@ -0,0 +1,37 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package global provides the OpenTelemetry global API. +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "log" + "sync/atomic" +) + +// ErrorHandler handles irremediable events. +type ErrorHandler interface { + // Handle handles any error deemed irremediable by an OpenTelemetry + // component. + Handle(error) +} + +type ErrDelegator struct { + delegate atomic.Pointer[ErrorHandler] +} + +// Compile-time check that delegator implements ErrorHandler. +var _ ErrorHandler = (*ErrDelegator)(nil) + +func (d *ErrDelegator) Handle(err error) { + if eh := d.delegate.Load(); eh != nil { + (*eh).Handle(err) + return + } + log.Print(err) +} + +// setDelegate sets the ErrorHandler delegate. +func (d *ErrDelegator) setDelegate(eh ErrorHandler) { + d.delegate.Store(&eh) +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/instruments.go b/vendor/go.opentelemetry.io/otel/internal/global/instruments.go new file mode 100644 index 0000000000..ae92a42516 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/instruments.go @@ -0,0 +1,412 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "context" + "sync/atomic" + + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" +) + +// unwrapper unwraps to return the underlying instrument implementation. +type unwrapper interface { + unwrap() metric.Observable +} + +type afCounter struct { + embedded.Float64ObservableCounter + metric.Float64Observable + + name string + opts []metric.Float64ObservableCounterOption + + delegate atomic.Value // metric.Float64ObservableCounter +} + +var ( + _ unwrapper = (*afCounter)(nil) + _ metric.Float64ObservableCounter = (*afCounter)(nil) +) + +func (i *afCounter) setDelegate(m metric.Meter) { + ctr, err := m.Float64ObservableCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *afCounter) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Float64ObservableCounter) + } + return nil +} + +type afUpDownCounter struct { + embedded.Float64ObservableUpDownCounter + metric.Float64Observable + + name string + opts []metric.Float64ObservableUpDownCounterOption + + delegate atomic.Value // metric.Float64ObservableUpDownCounter +} + +var ( + _ unwrapper = (*afUpDownCounter)(nil) + _ metric.Float64ObservableUpDownCounter = (*afUpDownCounter)(nil) +) + +func (i *afUpDownCounter) setDelegate(m metric.Meter) { + ctr, err := m.Float64ObservableUpDownCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *afUpDownCounter) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Float64ObservableUpDownCounter) + } + return nil +} + +type afGauge struct { + embedded.Float64ObservableGauge + metric.Float64Observable + + name string + opts []metric.Float64ObservableGaugeOption + + delegate atomic.Value // metric.Float64ObservableGauge +} + +var ( + _ unwrapper = (*afGauge)(nil) + _ metric.Float64ObservableGauge = (*afGauge)(nil) +) + +func (i *afGauge) setDelegate(m metric.Meter) { + ctr, err := m.Float64ObservableGauge(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *afGauge) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Float64ObservableGauge) + } + return nil +} + +type aiCounter struct { + embedded.Int64ObservableCounter + metric.Int64Observable + + name string + opts []metric.Int64ObservableCounterOption + + delegate atomic.Value // metric.Int64ObservableCounter +} + +var ( + _ unwrapper = (*aiCounter)(nil) + _ metric.Int64ObservableCounter = (*aiCounter)(nil) +) + +func (i *aiCounter) setDelegate(m metric.Meter) { + ctr, err := m.Int64ObservableCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *aiCounter) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Int64ObservableCounter) + } + return nil +} + +type aiUpDownCounter struct { + embedded.Int64ObservableUpDownCounter + metric.Int64Observable + + name string + opts []metric.Int64ObservableUpDownCounterOption + + delegate atomic.Value // metric.Int64ObservableUpDownCounter +} + +var ( + _ unwrapper = (*aiUpDownCounter)(nil) + _ metric.Int64ObservableUpDownCounter = (*aiUpDownCounter)(nil) +) + +func (i *aiUpDownCounter) setDelegate(m metric.Meter) { + ctr, err := m.Int64ObservableUpDownCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *aiUpDownCounter) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Int64ObservableUpDownCounter) + } + return nil +} + +type aiGauge struct { + embedded.Int64ObservableGauge + metric.Int64Observable + + name string + opts []metric.Int64ObservableGaugeOption + + delegate atomic.Value // metric.Int64ObservableGauge +} + +var ( + _ unwrapper = (*aiGauge)(nil) + _ metric.Int64ObservableGauge = (*aiGauge)(nil) +) + +func (i *aiGauge) setDelegate(m metric.Meter) { + ctr, err := m.Int64ObservableGauge(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *aiGauge) unwrap() metric.Observable { + if ctr := i.delegate.Load(); ctr != nil { + return ctr.(metric.Int64ObservableGauge) + } + return nil +} + +// Sync Instruments. +type sfCounter struct { + embedded.Float64Counter + + name string + opts []metric.Float64CounterOption + + delegate atomic.Value // metric.Float64Counter +} + +var _ metric.Float64Counter = (*sfCounter)(nil) + +func (i *sfCounter) setDelegate(m metric.Meter) { + ctr, err := m.Float64Counter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *sfCounter) Add(ctx context.Context, incr float64, opts ...metric.AddOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Float64Counter).Add(ctx, incr, opts...) + } +} + +type sfUpDownCounter struct { + embedded.Float64UpDownCounter + + name string + opts []metric.Float64UpDownCounterOption + + delegate atomic.Value // metric.Float64UpDownCounter +} + +var _ metric.Float64UpDownCounter = (*sfUpDownCounter)(nil) + +func (i *sfUpDownCounter) setDelegate(m metric.Meter) { + ctr, err := m.Float64UpDownCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *sfUpDownCounter) Add(ctx context.Context, incr float64, opts ...metric.AddOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Float64UpDownCounter).Add(ctx, incr, opts...) + } +} + +type sfHistogram struct { + embedded.Float64Histogram + + name string + opts []metric.Float64HistogramOption + + delegate atomic.Value // metric.Float64Histogram +} + +var _ metric.Float64Histogram = (*sfHistogram)(nil) + +func (i *sfHistogram) setDelegate(m metric.Meter) { + ctr, err := m.Float64Histogram(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *sfHistogram) Record(ctx context.Context, x float64, opts ...metric.RecordOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Float64Histogram).Record(ctx, x, opts...) + } +} + +type sfGauge struct { + embedded.Float64Gauge + + name string + opts []metric.Float64GaugeOption + + delegate atomic.Value // metric.Float64Gauge +} + +var _ metric.Float64Gauge = (*sfGauge)(nil) + +func (i *sfGauge) setDelegate(m metric.Meter) { + ctr, err := m.Float64Gauge(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *sfGauge) Record(ctx context.Context, x float64, opts ...metric.RecordOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Float64Gauge).Record(ctx, x, opts...) + } +} + +type siCounter struct { + embedded.Int64Counter + + name string + opts []metric.Int64CounterOption + + delegate atomic.Value // metric.Int64Counter +} + +var _ metric.Int64Counter = (*siCounter)(nil) + +func (i *siCounter) setDelegate(m metric.Meter) { + ctr, err := m.Int64Counter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *siCounter) Add(ctx context.Context, x int64, opts ...metric.AddOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Int64Counter).Add(ctx, x, opts...) + } +} + +type siUpDownCounter struct { + embedded.Int64UpDownCounter + + name string + opts []metric.Int64UpDownCounterOption + + delegate atomic.Value // metric.Int64UpDownCounter +} + +var _ metric.Int64UpDownCounter = (*siUpDownCounter)(nil) + +func (i *siUpDownCounter) setDelegate(m metric.Meter) { + ctr, err := m.Int64UpDownCounter(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *siUpDownCounter) Add(ctx context.Context, x int64, opts ...metric.AddOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Int64UpDownCounter).Add(ctx, x, opts...) + } +} + +type siHistogram struct { + embedded.Int64Histogram + + name string + opts []metric.Int64HistogramOption + + delegate atomic.Value // metric.Int64Histogram +} + +var _ metric.Int64Histogram = (*siHistogram)(nil) + +func (i *siHistogram) setDelegate(m metric.Meter) { + ctr, err := m.Int64Histogram(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *siHistogram) Record(ctx context.Context, x int64, opts ...metric.RecordOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Int64Histogram).Record(ctx, x, opts...) + } +} + +type siGauge struct { + embedded.Int64Gauge + + name string + opts []metric.Int64GaugeOption + + delegate atomic.Value // metric.Int64Gauge +} + +var _ metric.Int64Gauge = (*siGauge)(nil) + +func (i *siGauge) setDelegate(m metric.Meter) { + ctr, err := m.Int64Gauge(i.name, i.opts...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + i.delegate.Store(ctr) +} + +func (i *siGauge) Record(ctx context.Context, x int64, opts ...metric.RecordOption) { + if ctr := i.delegate.Load(); ctr != nil { + ctr.(metric.Int64Gauge).Record(ctx, x, opts...) + } +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/internal_logging.go b/vendor/go.opentelemetry.io/otel/internal/global/internal_logging.go new file mode 100644 index 0000000000..adbca7d347 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/internal_logging.go @@ -0,0 +1,62 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "log" + "os" + "sync/atomic" + + "github.com/go-logr/logr" + "github.com/go-logr/stdr" +) + +// globalLogger holds a reference to the [logr.Logger] used within +// go.opentelemetry.io/otel. +// +// The default logger uses stdr which is backed by the standard `log.Logger` +// interface. This logger will only show messages at the Error Level. +var globalLogger = func() *atomic.Pointer[logr.Logger] { + l := stdr.New(log.New(os.Stderr, "", log.LstdFlags|log.Lshortfile)) + + p := new(atomic.Pointer[logr.Logger]) + p.Store(&l) + return p +}() + +// SetLogger sets the global Logger to l. +// +// To see Warn messages use a logger with `l.V(1).Enabled() == true` +// To see Info messages use a logger with `l.V(4).Enabled() == true` +// To see Debug messages use a logger with `l.V(8).Enabled() == true`. +func SetLogger(l logr.Logger) { + globalLogger.Store(&l) +} + +// GetLogger returns the global logger. +func GetLogger() logr.Logger { + return *globalLogger.Load() +} + +// Info prints messages about the general state of the API or SDK. +// This should usually be less than 5 messages a minute. +func Info(msg string, keysAndValues ...interface{}) { + GetLogger().V(4).Info(msg, keysAndValues...) +} + +// Error prints messages about exceptional states of the API or SDK. +func Error(err error, msg string, keysAndValues ...interface{}) { + GetLogger().Error(err, msg, keysAndValues...) +} + +// Debug prints messages about all internal changes in the API or SDK. +func Debug(msg string, keysAndValues ...interface{}) { + GetLogger().V(8).Info(msg, keysAndValues...) +} + +// Warn prints messages about warnings in the API or SDK. +// Not an error but is likely more important than an informational event. +func Warn(msg string, keysAndValues ...interface{}) { + GetLogger().V(1).Info(msg, keysAndValues...) +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/meter.go b/vendor/go.opentelemetry.io/otel/internal/global/meter.go new file mode 100644 index 0000000000..adb37b5b0e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/meter.go @@ -0,0 +1,625 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "container/list" + "context" + "reflect" + "sync" + + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" +) + +// meterProvider is a placeholder for a configured SDK MeterProvider. +// +// All MeterProvider functionality is forwarded to a delegate once +// configured. +type meterProvider struct { + embedded.MeterProvider + + mtx sync.Mutex + meters map[il]*meter + + delegate metric.MeterProvider +} + +// setDelegate configures p to delegate all MeterProvider functionality to +// provider. +// +// All Meters provided prior to this function call are switched out to be +// Meters provided by provider. All instruments and callbacks are recreated and +// delegated. +// +// It is guaranteed by the caller that this happens only once. +func (p *meterProvider) setDelegate(provider metric.MeterProvider) { + p.mtx.Lock() + defer p.mtx.Unlock() + + p.delegate = provider + + if len(p.meters) == 0 { + return + } + + for _, meter := range p.meters { + meter.setDelegate(provider) + } + + p.meters = nil +} + +// Meter implements MeterProvider. +func (p *meterProvider) Meter(name string, opts ...metric.MeterOption) metric.Meter { + p.mtx.Lock() + defer p.mtx.Unlock() + + if p.delegate != nil { + return p.delegate.Meter(name, opts...) + } + + // At this moment it is guaranteed that no sdk is installed, save the meter in the meters map. + + c := metric.NewMeterConfig(opts...) + key := il{ + name: name, + version: c.InstrumentationVersion(), + schema: c.SchemaURL(), + attrs: c.InstrumentationAttributes(), + } + + if p.meters == nil { + p.meters = make(map[il]*meter) + } + + if val, ok := p.meters[key]; ok { + return val + } + + t := &meter{name: name, opts: opts, instruments: make(map[instID]delegatedInstrument)} + p.meters[key] = t + return t +} + +// meter is a placeholder for a metric.Meter. +// +// All Meter functionality is forwarded to a delegate once configured. +// Otherwise, all functionality is forwarded to a NoopMeter. +type meter struct { + embedded.Meter + + name string + opts []metric.MeterOption + + mtx sync.Mutex + instruments map[instID]delegatedInstrument + + registry list.List + + delegate metric.Meter +} + +type delegatedInstrument interface { + setDelegate(metric.Meter) +} + +// instID are the identifying properties of a instrument. +type instID struct { + // name is the name of the stream. + name string + // description is the description of the stream. + description string + // kind defines the functional group of the instrument. + kind reflect.Type + // unit is the unit of the stream. + unit string +} + +// setDelegate configures m to delegate all Meter functionality to Meters +// created by provider. +// +// All subsequent calls to the Meter methods will be passed to the delegate. +// +// It is guaranteed by the caller that this happens only once. +func (m *meter) setDelegate(provider metric.MeterProvider) { + m.mtx.Lock() + defer m.mtx.Unlock() + + meter := provider.Meter(m.name, m.opts...) + m.delegate = meter + + for _, inst := range m.instruments { + inst.setDelegate(meter) + } + + var n *list.Element + for e := m.registry.Front(); e != nil; e = n { + r := e.Value.(*registration) + r.setDelegate(meter) + n = e.Next() + m.registry.Remove(e) + } + + m.instruments = nil + m.registry.Init() +} + +func (m *meter) Int64Counter(name string, options ...metric.Int64CounterOption) (metric.Int64Counter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64Counter(name, options...) + } + + cfg := metric.NewInt64CounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*siCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64Counter), nil + } + i := &siCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64UpDownCounter( + name string, + options ...metric.Int64UpDownCounterOption, +) (metric.Int64UpDownCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64UpDownCounter(name, options...) + } + + cfg := metric.NewInt64UpDownCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*siUpDownCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64UpDownCounter), nil + } + i := &siUpDownCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64Histogram(name string, options ...metric.Int64HistogramOption) (metric.Int64Histogram, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64Histogram(name, options...) + } + + cfg := metric.NewInt64HistogramConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*siHistogram)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64Histogram), nil + } + i := &siHistogram{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64Gauge(name string, options ...metric.Int64GaugeOption) (metric.Int64Gauge, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64Gauge(name, options...) + } + + cfg := metric.NewInt64GaugeConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*siGauge)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64Gauge), nil + } + i := &siGauge{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64ObservableCounter( + name string, + options ...metric.Int64ObservableCounterOption, +) (metric.Int64ObservableCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64ObservableCounter(name, options...) + } + + cfg := metric.NewInt64ObservableCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*aiCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64ObservableCounter), nil + } + i := &aiCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64ObservableUpDownCounter( + name string, + options ...metric.Int64ObservableUpDownCounterOption, +) (metric.Int64ObservableUpDownCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64ObservableUpDownCounter(name, options...) + } + + cfg := metric.NewInt64ObservableUpDownCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*aiUpDownCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64ObservableUpDownCounter), nil + } + i := &aiUpDownCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Int64ObservableGauge( + name string, + options ...metric.Int64ObservableGaugeOption, +) (metric.Int64ObservableGauge, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Int64ObservableGauge(name, options...) + } + + cfg := metric.NewInt64ObservableGaugeConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*aiGauge)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Int64ObservableGauge), nil + } + i := &aiGauge{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64Counter(name string, options ...metric.Float64CounterOption) (metric.Float64Counter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64Counter(name, options...) + } + + cfg := metric.NewFloat64CounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*sfCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64Counter), nil + } + i := &sfCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64UpDownCounter( + name string, + options ...metric.Float64UpDownCounterOption, +) (metric.Float64UpDownCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64UpDownCounter(name, options...) + } + + cfg := metric.NewFloat64UpDownCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*sfUpDownCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64UpDownCounter), nil + } + i := &sfUpDownCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64Histogram( + name string, + options ...metric.Float64HistogramOption, +) (metric.Float64Histogram, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64Histogram(name, options...) + } + + cfg := metric.NewFloat64HistogramConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*sfHistogram)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64Histogram), nil + } + i := &sfHistogram{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64Gauge(name string, options ...metric.Float64GaugeOption) (metric.Float64Gauge, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64Gauge(name, options...) + } + + cfg := metric.NewFloat64GaugeConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*sfGauge)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64Gauge), nil + } + i := &sfGauge{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64ObservableCounter( + name string, + options ...metric.Float64ObservableCounterOption, +) (metric.Float64ObservableCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64ObservableCounter(name, options...) + } + + cfg := metric.NewFloat64ObservableCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*afCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64ObservableCounter), nil + } + i := &afCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64ObservableUpDownCounter( + name string, + options ...metric.Float64ObservableUpDownCounterOption, +) (metric.Float64ObservableUpDownCounter, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64ObservableUpDownCounter(name, options...) + } + + cfg := metric.NewFloat64ObservableUpDownCounterConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*afUpDownCounter)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64ObservableUpDownCounter), nil + } + i := &afUpDownCounter{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +func (m *meter) Float64ObservableGauge( + name string, + options ...metric.Float64ObservableGaugeOption, +) (metric.Float64ObservableGauge, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.Float64ObservableGauge(name, options...) + } + + cfg := metric.NewFloat64ObservableGaugeConfig(options...) + id := instID{ + name: name, + kind: reflect.TypeOf((*afGauge)(nil)), + description: cfg.Description(), + unit: cfg.Unit(), + } + if f, ok := m.instruments[id]; ok { + return f.(metric.Float64ObservableGauge), nil + } + i := &afGauge{name: name, opts: options} + m.instruments[id] = i + return i, nil +} + +// RegisterCallback captures the function that will be called during Collect. +func (m *meter) RegisterCallback(f metric.Callback, insts ...metric.Observable) (metric.Registration, error) { + m.mtx.Lock() + defer m.mtx.Unlock() + + if m.delegate != nil { + return m.delegate.RegisterCallback(unwrapCallback(f), unwrapInstruments(insts)...) + } + + reg := ®istration{instruments: insts, function: f} + e := m.registry.PushBack(reg) + reg.unreg = func() error { + m.mtx.Lock() + _ = m.registry.Remove(e) + m.mtx.Unlock() + return nil + } + return reg, nil +} + +func unwrapInstruments(instruments []metric.Observable) []metric.Observable { + out := make([]metric.Observable, 0, len(instruments)) + + for _, inst := range instruments { + if in, ok := inst.(unwrapper); ok { + out = append(out, in.unwrap()) + } else { + out = append(out, inst) + } + } + + return out +} + +type registration struct { + embedded.Registration + + instruments []metric.Observable + function metric.Callback + + unreg func() error + unregMu sync.Mutex +} + +type unwrapObs struct { + embedded.Observer + obs metric.Observer +} + +// unwrapFloat64Observable returns an expected metric.Float64Observable after +// unwrapping the global object. +func unwrapFloat64Observable(inst metric.Float64Observable) metric.Float64Observable { + if unwrapped, ok := inst.(unwrapper); ok { + if floatObs, ok := unwrapped.unwrap().(metric.Float64Observable); ok { + // Note: if the unwrapped object does not + // unwrap as an observable for either of the + // predicates here, it means an internal bug in + // this package. We avoid logging an error in + // this case, because the SDK has to try its + // own type conversion on the object. The SDK + // will see this and be forced to respond with + // its own error. + // + // This code uses a double-nested if statement + // to avoid creating a branch that is + // impossible to cover. + inst = floatObs + } + } + return inst +} + +// unwrapInt64Observable returns an expected metric.Int64Observable after +// unwrapping the global object. +func unwrapInt64Observable(inst metric.Int64Observable) metric.Int64Observable { + if unwrapped, ok := inst.(unwrapper); ok { + if unint, ok := unwrapped.unwrap().(metric.Int64Observable); ok { + // See the comment in unwrapFloat64Observable(). + inst = unint + } + } + return inst +} + +func (uo *unwrapObs) ObserveFloat64(inst metric.Float64Observable, value float64, opts ...metric.ObserveOption) { + uo.obs.ObserveFloat64(unwrapFloat64Observable(inst), value, opts...) +} + +func (uo *unwrapObs) ObserveInt64(inst metric.Int64Observable, value int64, opts ...metric.ObserveOption) { + uo.obs.ObserveInt64(unwrapInt64Observable(inst), value, opts...) +} + +func unwrapCallback(f metric.Callback) metric.Callback { + return func(ctx context.Context, obs metric.Observer) error { + return f(ctx, &unwrapObs{obs: obs}) + } +} + +func (c *registration) setDelegate(m metric.Meter) { + c.unregMu.Lock() + defer c.unregMu.Unlock() + + if c.unreg == nil { + // Unregister already called. + return + } + + reg, err := m.RegisterCallback(unwrapCallback(c.function), unwrapInstruments(c.instruments)...) + if err != nil { + GetErrorHandler().Handle(err) + return + } + + c.unreg = reg.Unregister +} + +func (c *registration) Unregister() error { + c.unregMu.Lock() + defer c.unregMu.Unlock() + if c.unreg == nil { + // Unregister already called. + return nil + } + + var err error + err, c.unreg = c.unreg(), nil + return err +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/propagator.go b/vendor/go.opentelemetry.io/otel/internal/global/propagator.go new file mode 100644 index 0000000000..38560ff991 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/propagator.go @@ -0,0 +1,71 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/propagation" +) + +// textMapPropagator is a default TextMapPropagator that delegates calls to a +// registered delegate if one is set, otherwise it defaults to delegating the +// calls to a the default no-op propagation.TextMapPropagator. +type textMapPropagator struct { + mtx sync.Mutex + once sync.Once + delegate propagation.TextMapPropagator + noop propagation.TextMapPropagator +} + +// Compile-time guarantee that textMapPropagator implements the +// propagation.TextMapPropagator interface. +var _ propagation.TextMapPropagator = (*textMapPropagator)(nil) + +func newTextMapPropagator() *textMapPropagator { + return &textMapPropagator{ + noop: propagation.NewCompositeTextMapPropagator(), + } +} + +// SetDelegate sets a delegate propagation.TextMapPropagator that all calls are +// forwarded to. Delegation can only be performed once, all subsequent calls +// perform no delegation. +func (p *textMapPropagator) SetDelegate(delegate propagation.TextMapPropagator) { + if delegate == nil { + return + } + + p.mtx.Lock() + p.once.Do(func() { p.delegate = delegate }) + p.mtx.Unlock() +} + +// effectiveDelegate returns the current delegate of p if one is set, +// otherwise the default noop TextMapPropagator is returned. This method +// can be called concurrently. +func (p *textMapPropagator) effectiveDelegate() propagation.TextMapPropagator { + p.mtx.Lock() + defer p.mtx.Unlock() + if p.delegate != nil { + return p.delegate + } + return p.noop +} + +// Inject set cross-cutting concerns from the Context into the carrier. +func (p *textMapPropagator) Inject(ctx context.Context, carrier propagation.TextMapCarrier) { + p.effectiveDelegate().Inject(ctx, carrier) +} + +// Extract reads cross-cutting concerns from the carrier into a Context. +func (p *textMapPropagator) Extract(ctx context.Context, carrier propagation.TextMapCarrier) context.Context { + return p.effectiveDelegate().Extract(ctx, carrier) +} + +// Fields returns the keys whose values are set with Inject. +func (p *textMapPropagator) Fields() []string { + return p.effectiveDelegate().Fields() +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/state.go b/vendor/go.opentelemetry.io/otel/internal/global/state.go new file mode 100644 index 0000000000..204ea142a5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/state.go @@ -0,0 +1,199 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +import ( + "errors" + "sync" + "sync/atomic" + + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/propagation" + "go.opentelemetry.io/otel/trace" +) + +type ( + errorHandlerHolder struct { + eh ErrorHandler + } + + tracerProviderHolder struct { + tp trace.TracerProvider + } + + propagatorsHolder struct { + tm propagation.TextMapPropagator + } + + meterProviderHolder struct { + mp metric.MeterProvider + } +) + +var ( + globalErrorHandler = defaultErrorHandler() + globalTracer = defaultTracerValue() + globalPropagators = defaultPropagatorsValue() + globalMeterProvider = defaultMeterProvider() + + delegateErrorHandlerOnce sync.Once + delegateTraceOnce sync.Once + delegateTextMapPropagatorOnce sync.Once + delegateMeterOnce sync.Once +) + +// GetErrorHandler returns the global ErrorHandler instance. +// +// The default ErrorHandler instance returned will log all errors to STDERR +// until an override ErrorHandler is set with SetErrorHandler. All +// ErrorHandler returned prior to this will automatically forward errors to +// the set instance instead of logging. +// +// Subsequent calls to SetErrorHandler after the first will not forward errors +// to the new ErrorHandler for prior returned instances. +func GetErrorHandler() ErrorHandler { + return globalErrorHandler.Load().(errorHandlerHolder).eh +} + +// SetErrorHandler sets the global ErrorHandler to h. +// +// The first time this is called all ErrorHandler previously returned from +// GetErrorHandler will send errors to h instead of the default logging +// ErrorHandler. Subsequent calls will set the global ErrorHandler, but not +// delegate errors to h. +func SetErrorHandler(h ErrorHandler) { + current := GetErrorHandler() + + if _, cOk := current.(*ErrDelegator); cOk { + if _, ehOk := h.(*ErrDelegator); ehOk && current == h { + // Do not assign to the delegate of the default ErrDelegator to be + // itself. + Error( + errors.New("no ErrorHandler delegate configured"), + "ErrorHandler remains its current value.", + ) + return + } + } + + delegateErrorHandlerOnce.Do(func() { + if def, ok := current.(*ErrDelegator); ok { + def.setDelegate(h) + } + }) + globalErrorHandler.Store(errorHandlerHolder{eh: h}) +} + +// TracerProvider is the internal implementation for global.TracerProvider. +func TracerProvider() trace.TracerProvider { + return globalTracer.Load().(tracerProviderHolder).tp +} + +// SetTracerProvider is the internal implementation for global.SetTracerProvider. +func SetTracerProvider(tp trace.TracerProvider) { + current := TracerProvider() + + if _, cOk := current.(*tracerProvider); cOk { + if _, tpOk := tp.(*tracerProvider); tpOk && current == tp { + // Do not assign the default delegating TracerProvider to delegate + // to itself. + Error( + errors.New("no delegate configured in tracer provider"), + "Setting tracer provider to its current value. No delegate will be configured", + ) + return + } + } + + delegateTraceOnce.Do(func() { + if def, ok := current.(*tracerProvider); ok { + def.setDelegate(tp) + } + }) + globalTracer.Store(tracerProviderHolder{tp: tp}) +} + +// TextMapPropagator is the internal implementation for global.TextMapPropagator. +func TextMapPropagator() propagation.TextMapPropagator { + return globalPropagators.Load().(propagatorsHolder).tm +} + +// SetTextMapPropagator is the internal implementation for global.SetTextMapPropagator. +func SetTextMapPropagator(p propagation.TextMapPropagator) { + current := TextMapPropagator() + + if _, cOk := current.(*textMapPropagator); cOk { + if _, pOk := p.(*textMapPropagator); pOk && current == p { + // Do not assign the default delegating TextMapPropagator to + // delegate to itself. + Error( + errors.New("no delegate configured in text map propagator"), + "Setting text map propagator to its current value. No delegate will be configured", + ) + return + } + } + + // For the textMapPropagator already returned by TextMapPropagator + // delegate to p. + delegateTextMapPropagatorOnce.Do(func() { + if def, ok := current.(*textMapPropagator); ok { + def.SetDelegate(p) + } + }) + // Return p when subsequent calls to TextMapPropagator are made. + globalPropagators.Store(propagatorsHolder{tm: p}) +} + +// MeterProvider is the internal implementation for global.MeterProvider. +func MeterProvider() metric.MeterProvider { + return globalMeterProvider.Load().(meterProviderHolder).mp +} + +// SetMeterProvider is the internal implementation for global.SetMeterProvider. +func SetMeterProvider(mp metric.MeterProvider) { + current := MeterProvider() + if _, cOk := current.(*meterProvider); cOk { + if _, mpOk := mp.(*meterProvider); mpOk && current == mp { + // Do not assign the default delegating MeterProvider to delegate + // to itself. + Error( + errors.New("no delegate configured in meter provider"), + "Setting meter provider to its current value. No delegate will be configured", + ) + return + } + } + + delegateMeterOnce.Do(func() { + if def, ok := current.(*meterProvider); ok { + def.setDelegate(mp) + } + }) + globalMeterProvider.Store(meterProviderHolder{mp: mp}) +} + +func defaultErrorHandler() *atomic.Value { + v := &atomic.Value{} + v.Store(errorHandlerHolder{eh: &ErrDelegator{}}) + return v +} + +func defaultTracerValue() *atomic.Value { + v := &atomic.Value{} + v.Store(tracerProviderHolder{tp: &tracerProvider{}}) + return v +} + +func defaultPropagatorsValue() *atomic.Value { + v := &atomic.Value{} + v.Store(propagatorsHolder{tm: newTextMapPropagator()}) + return v +} + +func defaultMeterProvider() *atomic.Value { + v := &atomic.Value{} + v.Store(meterProviderHolder{mp: &meterProvider{}}) + return v +} diff --git a/vendor/go.opentelemetry.io/otel/internal/global/trace.go b/vendor/go.opentelemetry.io/otel/internal/global/trace.go new file mode 100644 index 0000000000..49e4ac4faa --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal/global/trace.go @@ -0,0 +1,231 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package global // import "go.opentelemetry.io/otel/internal/global" + +/* +This file contains the forwarding implementation of the TracerProvider used as +the default global instance. Prior to initialization of an SDK, Tracers +returned by the global TracerProvider will provide no-op functionality. This +means that all Span created prior to initialization are no-op Spans. + +Once an SDK has been initialized, all provided no-op Tracers are swapped for +Tracers provided by the SDK defined TracerProvider. However, any Span started +prior to this initialization does not change its behavior. Meaning, the Span +remains a no-op Span. + +The implementation to track and swap Tracers locks all new Tracer creation +until the swap is complete. This assumes that this operation is not +performance-critical. If that assumption is incorrect, be sure to configure an +SDK prior to any Tracer creation. +*/ + +import ( + "context" + "sync" + "sync/atomic" + + "go.opentelemetry.io/auto/sdk" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/embedded" +) + +// tracerProvider is a placeholder for a configured SDK TracerProvider. +// +// All TracerProvider functionality is forwarded to a delegate once +// configured. +type tracerProvider struct { + embedded.TracerProvider + + mtx sync.Mutex + tracers map[il]*tracer + delegate trace.TracerProvider +} + +// Compile-time guarantee that tracerProvider implements the TracerProvider +// interface. +var _ trace.TracerProvider = &tracerProvider{} + +// setDelegate configures p to delegate all TracerProvider functionality to +// provider. +// +// All Tracers provided prior to this function call are switched out to be +// Tracers provided by provider. +// +// It is guaranteed by the caller that this happens only once. +func (p *tracerProvider) setDelegate(provider trace.TracerProvider) { + p.mtx.Lock() + defer p.mtx.Unlock() + + p.delegate = provider + + if len(p.tracers) == 0 { + return + } + + for _, t := range p.tracers { + t.setDelegate(provider) + } + + p.tracers = nil +} + +// Tracer implements TracerProvider. +func (p *tracerProvider) Tracer(name string, opts ...trace.TracerOption) trace.Tracer { + p.mtx.Lock() + defer p.mtx.Unlock() + + if p.delegate != nil { + return p.delegate.Tracer(name, opts...) + } + + // At this moment it is guaranteed that no sdk is installed, save the tracer in the tracers map. + + c := trace.NewTracerConfig(opts...) + key := il{ + name: name, + version: c.InstrumentationVersion(), + schema: c.SchemaURL(), + attrs: c.InstrumentationAttributes(), + } + + if p.tracers == nil { + p.tracers = make(map[il]*tracer) + } + + if val, ok := p.tracers[key]; ok { + return val + } + + t := &tracer{name: name, opts: opts, provider: p} + p.tracers[key] = t + return t +} + +type il struct { + name string + version string + schema string + attrs attribute.Set +} + +// tracer is a placeholder for a trace.Tracer. +// +// All Tracer functionality is forwarded to a delegate once configured. +// Otherwise, all functionality is forwarded to a NoopTracer. +type tracer struct { + embedded.Tracer + + name string + opts []trace.TracerOption + provider *tracerProvider + + delegate atomic.Value +} + +// Compile-time guarantee that tracer implements the trace.Tracer interface. +var _ trace.Tracer = &tracer{} + +// setDelegate configures t to delegate all Tracer functionality to Tracers +// created by provider. +// +// All subsequent calls to the Tracer methods will be passed to the delegate. +// +// It is guaranteed by the caller that this happens only once. +func (t *tracer) setDelegate(provider trace.TracerProvider) { + t.delegate.Store(provider.Tracer(t.name, t.opts...)) +} + +// Start implements trace.Tracer by forwarding the call to t.delegate if +// set, otherwise it forwards the call to a NoopTracer. +func (t *tracer) Start(ctx context.Context, name string, opts ...trace.SpanStartOption) (context.Context, trace.Span) { + delegate := t.delegate.Load() + if delegate != nil { + return delegate.(trace.Tracer).Start(ctx, name, opts...) + } + + return t.newSpan(ctx, autoInstEnabled, name, opts) +} + +// autoInstEnabled determines if the auto-instrumentation SDK span is returned +// from the tracer when not backed by a delegate and auto-instrumentation has +// attached to this process. +// +// The auto-instrumentation is expected to overwrite this value to true when it +// attaches. By default, this will point to false and mean a tracer will return +// a nonRecordingSpan by default. +var autoInstEnabled = new(bool) + +// newSpan is called by tracer.Start so auto-instrumentation can attach an eBPF +// uprobe to this code. +// +// "noinline" pragma prevents the method from ever being inlined. +// +//go:noinline +func (t *tracer) newSpan( + ctx context.Context, + autoSpan *bool, + name string, + opts []trace.SpanStartOption, +) (context.Context, trace.Span) { + // autoInstEnabled is passed to newSpan via the autoSpan parameter. This is + // so the auto-instrumentation can define a uprobe for (*t).newSpan and be + // provided with the address of the bool autoInstEnabled points to. It + // needs to be a parameter so that pointer can be reliably determined, it + // should not be read from the global. + + if *autoSpan { + tracer := sdk.TracerProvider().Tracer(t.name, t.opts...) + return tracer.Start(ctx, name, opts...) + } + + s := nonRecordingSpan{sc: trace.SpanContextFromContext(ctx), tracer: t} + ctx = trace.ContextWithSpan(ctx, s) + return ctx, s +} + +// nonRecordingSpan is a minimal implementation of a Span that wraps a +// SpanContext. It performs no operations other than to return the wrapped +// SpanContext. +type nonRecordingSpan struct { + embedded.Span + + sc trace.SpanContext + tracer *tracer +} + +var _ trace.Span = nonRecordingSpan{} + +// SpanContext returns the wrapped SpanContext. +func (s nonRecordingSpan) SpanContext() trace.SpanContext { return s.sc } + +// IsRecording always returns false. +func (nonRecordingSpan) IsRecording() bool { return false } + +// SetStatus does nothing. +func (nonRecordingSpan) SetStatus(codes.Code, string) {} + +// SetError does nothing. +func (nonRecordingSpan) SetError(bool) {} + +// SetAttributes does nothing. +func (nonRecordingSpan) SetAttributes(...attribute.KeyValue) {} + +// End does nothing. +func (nonRecordingSpan) End(...trace.SpanEndOption) {} + +// RecordError does nothing. +func (nonRecordingSpan) RecordError(error, ...trace.EventOption) {} + +// AddEvent does nothing. +func (nonRecordingSpan) AddEvent(string, ...trace.EventOption) {} + +// AddLink does nothing. +func (nonRecordingSpan) AddLink(trace.Link) {} + +// SetName does nothing. +func (nonRecordingSpan) SetName(string) {} + +func (s nonRecordingSpan) TracerProvider() trace.TracerProvider { return s.tracer.provider } diff --git a/vendor/go.opentelemetry.io/otel/internal_logging.go b/vendor/go.opentelemetry.io/otel/internal_logging.go new file mode 100644 index 0000000000..6de7f2e4d8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/internal_logging.go @@ -0,0 +1,15 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +import ( + "github.com/go-logr/logr" + + "go.opentelemetry.io/otel/internal/global" +) + +// SetLogger configures the logger used internally to opentelemetry. +func SetLogger(logger logr.Logger) { + global.SetLogger(logger) +} diff --git a/vendor/go.opentelemetry.io/otel/metric.go b/vendor/go.opentelemetry.io/otel/metric.go new file mode 100644 index 0000000000..1e6473b32f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric.go @@ -0,0 +1,42 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +import ( + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/metric" +) + +// Meter returns a Meter from the global MeterProvider. The name must be the +// name of the library providing instrumentation. This name may be the same as +// the instrumented code only if that code provides built-in instrumentation. +// If the name is empty, then a implementation defined default name will be +// used instead. +// +// If this is called before a global MeterProvider is registered the returned +// Meter will be a No-op implementation of a Meter. When a global MeterProvider +// is registered for the first time, the returned Meter, and all the +// instruments it has created or will create, are recreated automatically from +// the new MeterProvider. +// +// This is short for GetMeterProvider().Meter(name). +func Meter(name string, opts ...metric.MeterOption) metric.Meter { + return GetMeterProvider().Meter(name, opts...) +} + +// GetMeterProvider returns the registered global meter provider. +// +// If no global GetMeterProvider has been registered, a No-op GetMeterProvider +// implementation is returned. When a global GetMeterProvider is registered for +// the first time, the returned GetMeterProvider, and all the Meters it has +// created or will create, are recreated automatically from the new +// GetMeterProvider. +func GetMeterProvider() metric.MeterProvider { + return global.MeterProvider() +} + +// SetMeterProvider registers mp as the global MeterProvider. +func SetMeterProvider(mp metric.MeterProvider) { + global.SetMeterProvider(mp) +} diff --git a/vendor/go.opentelemetry.io/otel/metric/LICENSE b/vendor/go.opentelemetry.io/otel/metric/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/metric/README.md b/vendor/go.opentelemetry.io/otel/metric/README.md new file mode 100644 index 0000000000..0cf902e01f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/README.md @@ -0,0 +1,3 @@ +# Metric API + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/metric)](https://pkg.go.dev/go.opentelemetry.io/otel/metric) diff --git a/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go b/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go new file mode 100644 index 0000000000..b7fc973a66 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/asyncfloat64.go @@ -0,0 +1,266 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import ( + "context" + + "go.opentelemetry.io/otel/metric/embedded" +) + +// Float64Observable describes a set of instruments used asynchronously to +// record float64 measurements once per collection cycle. Observations of +// these instruments are only made within a callback. +// +// Warning: Methods may be added to this interface in minor releases. +type Float64Observable interface { + Observable + + float64Observable() +} + +// Float64ObservableCounter is an instrument used to asynchronously record +// increasing float64 measurements once per collection cycle. Observations are +// only made within a callback for this instrument. The value observed is +// assumed the to be the cumulative sum of the count. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for +// unimplemented methods. +type Float64ObservableCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64ObservableCounter + + Float64Observable +} + +// Float64ObservableCounterConfig contains options for asynchronous counter +// instruments that record float64 values. +type Float64ObservableCounterConfig struct { + description string + unit string + callbacks []Float64Callback +} + +// NewFloat64ObservableCounterConfig returns a new +// [Float64ObservableCounterConfig] with all opts applied. +func NewFloat64ObservableCounterConfig(opts ...Float64ObservableCounterOption) Float64ObservableCounterConfig { + var config Float64ObservableCounterConfig + for _, o := range opts { + config = o.applyFloat64ObservableCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Float64ObservableCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64ObservableCounterConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Float64ObservableCounterConfig) Callbacks() []Float64Callback { + return c.callbacks +} + +// Float64ObservableCounterOption applies options to a +// [Float64ObservableCounterConfig]. See [Float64ObservableOption] and +// [InstrumentOption] for other options that can be used as a +// Float64ObservableCounterOption. +type Float64ObservableCounterOption interface { + applyFloat64ObservableCounter(Float64ObservableCounterConfig) Float64ObservableCounterConfig +} + +// Float64ObservableUpDownCounter is an instrument used to asynchronously +// record float64 measurements once per collection cycle. Observations are only +// made within a callback for this instrument. The value observed is assumed +// the to be the cumulative sum of the count. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64ObservableUpDownCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64ObservableUpDownCounter + + Float64Observable +} + +// Float64ObservableUpDownCounterConfig contains options for asynchronous +// counter instruments that record float64 values. +type Float64ObservableUpDownCounterConfig struct { + description string + unit string + callbacks []Float64Callback +} + +// NewFloat64ObservableUpDownCounterConfig returns a new +// [Float64ObservableUpDownCounterConfig] with all opts applied. +func NewFloat64ObservableUpDownCounterConfig( + opts ...Float64ObservableUpDownCounterOption, +) Float64ObservableUpDownCounterConfig { + var config Float64ObservableUpDownCounterConfig + for _, o := range opts { + config = o.applyFloat64ObservableUpDownCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Float64ObservableUpDownCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64ObservableUpDownCounterConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Float64ObservableUpDownCounterConfig) Callbacks() []Float64Callback { + return c.callbacks +} + +// Float64ObservableUpDownCounterOption applies options to a +// [Float64ObservableUpDownCounterConfig]. See [Float64ObservableOption] and +// [InstrumentOption] for other options that can be used as a +// Float64ObservableUpDownCounterOption. +type Float64ObservableUpDownCounterOption interface { + applyFloat64ObservableUpDownCounter(Float64ObservableUpDownCounterConfig) Float64ObservableUpDownCounterConfig +} + +// Float64ObservableGauge is an instrument used to asynchronously record +// instantaneous float64 measurements once per collection cycle. Observations +// are only made within a callback for this instrument. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64ObservableGauge interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64ObservableGauge + + Float64Observable +} + +// Float64ObservableGaugeConfig contains options for asynchronous counter +// instruments that record float64 values. +type Float64ObservableGaugeConfig struct { + description string + unit string + callbacks []Float64Callback +} + +// NewFloat64ObservableGaugeConfig returns a new [Float64ObservableGaugeConfig] +// with all opts applied. +func NewFloat64ObservableGaugeConfig(opts ...Float64ObservableGaugeOption) Float64ObservableGaugeConfig { + var config Float64ObservableGaugeConfig + for _, o := range opts { + config = o.applyFloat64ObservableGauge(config) + } + return config +} + +// Description returns the configured description. +func (c Float64ObservableGaugeConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64ObservableGaugeConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Float64ObservableGaugeConfig) Callbacks() []Float64Callback { + return c.callbacks +} + +// Float64ObservableGaugeOption applies options to a +// [Float64ObservableGaugeConfig]. See [Float64ObservableOption] and +// [InstrumentOption] for other options that can be used as a +// Float64ObservableGaugeOption. +type Float64ObservableGaugeOption interface { + applyFloat64ObservableGauge(Float64ObservableGaugeConfig) Float64ObservableGaugeConfig +} + +// Float64Observer is a recorder of float64 measurements. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64Observer interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64Observer + + // Observe records the float64 value. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Observe(value float64, options ...ObserveOption) +} + +// Float64Callback is a function registered with a Meter that makes +// observations for a Float64Observable instrument it is registered with. +// Calls to the Float64Observer record measurement values for the +// Float64Observable. +// +// The function needs to complete in a finite amount of time and the deadline +// of the passed context is expected to be honored. +// +// The function needs to make unique observations across all registered +// Float64Callbacks. Meaning, it should not report measurements with the same +// attributes as another Float64Callbacks also registered for the same +// instrument. +// +// The function needs to be concurrent safe. +type Float64Callback func(context.Context, Float64Observer) error + +// Float64ObservableOption applies options to float64 Observer instruments. +type Float64ObservableOption interface { + Float64ObservableCounterOption + Float64ObservableUpDownCounterOption + Float64ObservableGaugeOption +} + +type float64CallbackOpt struct { + cback Float64Callback +} + +func (o float64CallbackOpt) applyFloat64ObservableCounter( + cfg Float64ObservableCounterConfig, +) Float64ObservableCounterConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +func (o float64CallbackOpt) applyFloat64ObservableUpDownCounter( + cfg Float64ObservableUpDownCounterConfig, +) Float64ObservableUpDownCounterConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +func (o float64CallbackOpt) applyFloat64ObservableGauge(cfg Float64ObservableGaugeConfig) Float64ObservableGaugeConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +// WithFloat64Callback adds callback to be called for an instrument. +func WithFloat64Callback(callback Float64Callback) Float64ObservableOption { + return float64CallbackOpt{callback} +} diff --git a/vendor/go.opentelemetry.io/otel/metric/asyncint64.go b/vendor/go.opentelemetry.io/otel/metric/asyncint64.go new file mode 100644 index 0000000000..4404b71a22 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/asyncint64.go @@ -0,0 +1,262 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import ( + "context" + + "go.opentelemetry.io/otel/metric/embedded" +) + +// Int64Observable describes a set of instruments used asynchronously to record +// int64 measurements once per collection cycle. Observations of these +// instruments are only made within a callback. +// +// Warning: Methods may be added to this interface in minor releases. +type Int64Observable interface { + Observable + + int64Observable() +} + +// Int64ObservableCounter is an instrument used to asynchronously record +// increasing int64 measurements once per collection cycle. Observations are +// only made within a callback for this instrument. The value observed is +// assumed the to be the cumulative sum of the count. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64ObservableCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64ObservableCounter + + Int64Observable +} + +// Int64ObservableCounterConfig contains options for asynchronous counter +// instruments that record int64 values. +type Int64ObservableCounterConfig struct { + description string + unit string + callbacks []Int64Callback +} + +// NewInt64ObservableCounterConfig returns a new [Int64ObservableCounterConfig] +// with all opts applied. +func NewInt64ObservableCounterConfig(opts ...Int64ObservableCounterOption) Int64ObservableCounterConfig { + var config Int64ObservableCounterConfig + for _, o := range opts { + config = o.applyInt64ObservableCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Int64ObservableCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64ObservableCounterConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Int64ObservableCounterConfig) Callbacks() []Int64Callback { + return c.callbacks +} + +// Int64ObservableCounterOption applies options to a +// [Int64ObservableCounterConfig]. See [Int64ObservableOption] and +// [InstrumentOption] for other options that can be used as an +// Int64ObservableCounterOption. +type Int64ObservableCounterOption interface { + applyInt64ObservableCounter(Int64ObservableCounterConfig) Int64ObservableCounterConfig +} + +// Int64ObservableUpDownCounter is an instrument used to asynchronously record +// int64 measurements once per collection cycle. Observations are only made +// within a callback for this instrument. The value observed is assumed the to +// be the cumulative sum of the count. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64ObservableUpDownCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64ObservableUpDownCounter + + Int64Observable +} + +// Int64ObservableUpDownCounterConfig contains options for asynchronous counter +// instruments that record int64 values. +type Int64ObservableUpDownCounterConfig struct { + description string + unit string + callbacks []Int64Callback +} + +// NewInt64ObservableUpDownCounterConfig returns a new +// [Int64ObservableUpDownCounterConfig] with all opts applied. +func NewInt64ObservableUpDownCounterConfig( + opts ...Int64ObservableUpDownCounterOption, +) Int64ObservableUpDownCounterConfig { + var config Int64ObservableUpDownCounterConfig + for _, o := range opts { + config = o.applyInt64ObservableUpDownCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Int64ObservableUpDownCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64ObservableUpDownCounterConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Int64ObservableUpDownCounterConfig) Callbacks() []Int64Callback { + return c.callbacks +} + +// Int64ObservableUpDownCounterOption applies options to a +// [Int64ObservableUpDownCounterConfig]. See [Int64ObservableOption] and +// [InstrumentOption] for other options that can be used as an +// Int64ObservableUpDownCounterOption. +type Int64ObservableUpDownCounterOption interface { + applyInt64ObservableUpDownCounter(Int64ObservableUpDownCounterConfig) Int64ObservableUpDownCounterConfig +} + +// Int64ObservableGauge is an instrument used to asynchronously record +// instantaneous int64 measurements once per collection cycle. Observations are +// only made within a callback for this instrument. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64ObservableGauge interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64ObservableGauge + + Int64Observable +} + +// Int64ObservableGaugeConfig contains options for asynchronous counter +// instruments that record int64 values. +type Int64ObservableGaugeConfig struct { + description string + unit string + callbacks []Int64Callback +} + +// NewInt64ObservableGaugeConfig returns a new [Int64ObservableGaugeConfig] +// with all opts applied. +func NewInt64ObservableGaugeConfig(opts ...Int64ObservableGaugeOption) Int64ObservableGaugeConfig { + var config Int64ObservableGaugeConfig + for _, o := range opts { + config = o.applyInt64ObservableGauge(config) + } + return config +} + +// Description returns the configured description. +func (c Int64ObservableGaugeConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64ObservableGaugeConfig) Unit() string { + return c.unit +} + +// Callbacks returns the configured callbacks. +func (c Int64ObservableGaugeConfig) Callbacks() []Int64Callback { + return c.callbacks +} + +// Int64ObservableGaugeOption applies options to a +// [Int64ObservableGaugeConfig]. See [Int64ObservableOption] and +// [InstrumentOption] for other options that can be used as an +// Int64ObservableGaugeOption. +type Int64ObservableGaugeOption interface { + applyInt64ObservableGauge(Int64ObservableGaugeConfig) Int64ObservableGaugeConfig +} + +// Int64Observer is a recorder of int64 measurements. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64Observer interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64Observer + + // Observe records the int64 value. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Observe(value int64, options ...ObserveOption) +} + +// Int64Callback is a function registered with a Meter that makes observations +// for an Int64Observable instrument it is registered with. Calls to the +// Int64Observer record measurement values for the Int64Observable. +// +// The function needs to complete in a finite amount of time and the deadline +// of the passed context is expected to be honored. +// +// The function needs to make unique observations across all registered +// Int64Callbacks. Meaning, it should not report measurements with the same +// attributes as another Int64Callbacks also registered for the same +// instrument. +// +// The function needs to be concurrent safe. +type Int64Callback func(context.Context, Int64Observer) error + +// Int64ObservableOption applies options to int64 Observer instruments. +type Int64ObservableOption interface { + Int64ObservableCounterOption + Int64ObservableUpDownCounterOption + Int64ObservableGaugeOption +} + +type int64CallbackOpt struct { + cback Int64Callback +} + +func (o int64CallbackOpt) applyInt64ObservableCounter(cfg Int64ObservableCounterConfig) Int64ObservableCounterConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +func (o int64CallbackOpt) applyInt64ObservableUpDownCounter( + cfg Int64ObservableUpDownCounterConfig, +) Int64ObservableUpDownCounterConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +func (o int64CallbackOpt) applyInt64ObservableGauge(cfg Int64ObservableGaugeConfig) Int64ObservableGaugeConfig { + cfg.callbacks = append(cfg.callbacks, o.cback) + return cfg +} + +// WithInt64Callback adds callback to be called for an instrument. +func WithInt64Callback(callback Int64Callback) Int64ObservableOption { + return int64CallbackOpt{callback} +} diff --git a/vendor/go.opentelemetry.io/otel/metric/config.go b/vendor/go.opentelemetry.io/otel/metric/config.go new file mode 100644 index 0000000000..d9e3b13e4d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/config.go @@ -0,0 +1,81 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import "go.opentelemetry.io/otel/attribute" + +// MeterConfig contains options for Meters. +type MeterConfig struct { + instrumentationVersion string + schemaURL string + attrs attribute.Set + + // Ensure forward compatibility by explicitly making this not comparable. + noCmp [0]func() //nolint: unused // This is indeed used. +} + +// InstrumentationVersion returns the version of the library providing +// instrumentation. +func (cfg MeterConfig) InstrumentationVersion() string { + return cfg.instrumentationVersion +} + +// InstrumentationAttributes returns the attributes associated with the library +// providing instrumentation. +func (cfg MeterConfig) InstrumentationAttributes() attribute.Set { + return cfg.attrs +} + +// SchemaURL is the schema_url of the library providing instrumentation. +func (cfg MeterConfig) SchemaURL() string { + return cfg.schemaURL +} + +// MeterOption is an interface for applying Meter options. +type MeterOption interface { + // applyMeter is used to set a MeterOption value of a MeterConfig. + applyMeter(MeterConfig) MeterConfig +} + +// NewMeterConfig creates a new MeterConfig and applies +// all the given options. +func NewMeterConfig(opts ...MeterOption) MeterConfig { + var config MeterConfig + for _, o := range opts { + config = o.applyMeter(config) + } + return config +} + +type meterOptionFunc func(MeterConfig) MeterConfig + +func (fn meterOptionFunc) applyMeter(cfg MeterConfig) MeterConfig { + return fn(cfg) +} + +// WithInstrumentationVersion sets the instrumentation version. +func WithInstrumentationVersion(version string) MeterOption { + return meterOptionFunc(func(config MeterConfig) MeterConfig { + config.instrumentationVersion = version + return config + }) +} + +// WithInstrumentationAttributes sets the instrumentation attributes. +// +// The passed attributes will be de-duplicated. +func WithInstrumentationAttributes(attr ...attribute.KeyValue) MeterOption { + return meterOptionFunc(func(config MeterConfig) MeterConfig { + config.attrs = attribute.NewSet(attr...) + return config + }) +} + +// WithSchemaURL sets the schema URL. +func WithSchemaURL(schemaURL string) MeterOption { + return meterOptionFunc(func(config MeterConfig) MeterConfig { + config.schemaURL = schemaURL + return config + }) +} diff --git a/vendor/go.opentelemetry.io/otel/metric/doc.go b/vendor/go.opentelemetry.io/otel/metric/doc.go new file mode 100644 index 0000000000..f153745b00 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/doc.go @@ -0,0 +1,177 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package metric provides the OpenTelemetry API used to measure metrics about +source code operation. + +This API is separate from its implementation so the instrumentation built from +it is reusable. See [go.opentelemetry.io/otel/sdk/metric] for the official +OpenTelemetry implementation of this API. + +All measurements made with this package are made via instruments. These +instruments are created by a [Meter] which itself is created by a +[MeterProvider]. Applications need to accept a [MeterProvider] implementation +as a starting point when instrumenting. This can be done directly, or by using +the OpenTelemetry global MeterProvider via [GetMeterProvider]. Using an +appropriately named [Meter] from the accepted [MeterProvider], instrumentation +can then be built from the [Meter]'s instruments. + +# Instruments + +Each instrument is designed to make measurements of a particular type. Broadly, +all instruments fall into two overlapping logical categories: asynchronous or +synchronous, and int64 or float64. + +All synchronous instruments ([Int64Counter], [Int64UpDownCounter], +[Int64Histogram], [Float64Counter], [Float64UpDownCounter], and +[Float64Histogram]) are used to measure the operation and performance of source +code during the source code execution. These instruments only make measurements +when the source code they instrument is run. + +All asynchronous instruments ([Int64ObservableCounter], +[Int64ObservableUpDownCounter], [Int64ObservableGauge], +[Float64ObservableCounter], [Float64ObservableUpDownCounter], and +[Float64ObservableGauge]) are used to measure metrics outside of the execution +of source code. They are said to make "observations" via a callback function +called once every measurement collection cycle. + +Each instrument is also grouped by the value type it measures. Either int64 or +float64. The value being measured will dictate which instrument in these +categories to use. + +Outside of these two broad categories, instruments are described by the +function they are designed to serve. All Counters ([Int64Counter], +[Float64Counter], [Int64ObservableCounter], and [Float64ObservableCounter]) are +designed to measure values that never decrease in value, but instead only +incrementally increase in value. UpDownCounters ([Int64UpDownCounter], +[Float64UpDownCounter], [Int64ObservableUpDownCounter], and +[Float64ObservableUpDownCounter]) on the other hand, are designed to measure +values that can increase and decrease. When more information needs to be +conveyed about all the synchronous measurements made during a collection cycle, +a Histogram ([Int64Histogram] and [Float64Histogram]) should be used. Finally, +when just the most recent measurement needs to be conveyed about an +asynchronous measurement, a Gauge ([Int64ObservableGauge] and +[Float64ObservableGauge]) should be used. + +See the [OpenTelemetry documentation] for more information about instruments +and their intended use. + +# Instrument Name + +OpenTelemetry defines an [instrument name syntax] that restricts what +instrument names are allowed. + +Instrument names should ... + + - Not be empty. + - Have an alphabetic character as their first letter. + - Have any letter after the first be an alphanumeric character, ‘_’, ‘.’, + ‘-’, or ‘/’. + - Have a maximum length of 255 letters. + +To ensure compatibility with observability platforms, all instruments created +need to conform to this syntax. Not all implementations of the API will validate +these names, it is the callers responsibility to ensure compliance. + +# Measurements + +Measurements are made by recording values and information about the values with +an instrument. How these measurements are recorded depends on the instrument. + +Measurements for synchronous instruments ([Int64Counter], [Int64UpDownCounter], +[Int64Histogram], [Float64Counter], [Float64UpDownCounter], and +[Float64Histogram]) are recorded using the instrument methods directly. All +counter instruments have an Add method that is used to measure an increment +value, and all histogram instruments have a Record method to measure a data +point. + +Asynchronous instruments ([Int64ObservableCounter], +[Int64ObservableUpDownCounter], [Int64ObservableGauge], +[Float64ObservableCounter], [Float64ObservableUpDownCounter], and +[Float64ObservableGauge]) record measurements within a callback function. The +callback is registered with the Meter which ensures the callback is called once +per collection cycle. A callback can be registered two ways: during the +instrument's creation using an option, or later using the RegisterCallback +method of the [Meter] that created the instrument. + +If the following criteria are met, an option ([WithInt64Callback] or +[WithFloat64Callback]) can be used during the asynchronous instrument's +creation to register a callback ([Int64Callback] or [Float64Callback], +respectively): + + - The measurement process is known when the instrument is created + - Only that instrument will make a measurement within the callback + - The callback never needs to be unregistered + +If the criteria are not met, use the RegisterCallback method of the [Meter] that +created the instrument to register a [Callback]. + +# API Implementations + +This package does not conform to the standard Go versioning policy, all of its +interfaces may have methods added to them without a package major version bump. +This non-standard API evolution could surprise an uninformed implementation +author. They could unknowingly build their implementation in a way that would +result in a runtime panic for their users that update to the new API. + +The API is designed to help inform an instrumentation author about this +non-standard API evolution. It requires them to choose a default behavior for +unimplemented interface methods. There are three behavior choices they can +make: + + - Compilation failure + - Panic + - Default to another implementation + +All interfaces in this API embed a corresponding interface from +[go.opentelemetry.io/otel/metric/embedded]. If an author wants the default +behavior of their implementations to be a compilation failure, signaling to +their users they need to update to the latest version of that implementation, +they need to embed the corresponding interface from +[go.opentelemetry.io/otel/metric/embedded] in their implementation. For +example, + + import "go.opentelemetry.io/otel/metric/embedded" + + type MeterProvider struct { + embedded.MeterProvider + // ... + } + +If an author wants the default behavior of their implementations to a panic, +they need to embed the API interface directly. + + import "go.opentelemetry.io/otel/metric" + + type MeterProvider struct { + metric.MeterProvider + // ... + } + +This is not a recommended behavior as it could lead to publishing packages that +contain runtime panics when users update other package that use newer versions +of [go.opentelemetry.io/otel/metric]. + +Finally, an author can embed another implementation in theirs. The embedded +implementation will be used for methods not defined by the author. For example, +an author who wants to default to silently dropping the call can use +[go.opentelemetry.io/otel/metric/noop]: + + import "go.opentelemetry.io/otel/metric/noop" + + type MeterProvider struct { + noop.MeterProvider + // ... + } + +It is strongly recommended that authors only embed +[go.opentelemetry.io/otel/metric/noop] if they choose this default behavior. +That implementation is the only one OpenTelemetry authors can guarantee will +fully implement all the API interfaces when a user updates their API. + +[instrument name syntax]: https://opentelemetry.io/docs/specs/otel/metrics/api/#instrument-name-syntax +[OpenTelemetry documentation]: https://opentelemetry.io/docs/concepts/signals/metrics/ +[GetMeterProvider]: https://pkg.go.dev/go.opentelemetry.io/otel#GetMeterProvider +*/ +package metric // import "go.opentelemetry.io/otel/metric" diff --git a/vendor/go.opentelemetry.io/otel/metric/embedded/README.md b/vendor/go.opentelemetry.io/otel/metric/embedded/README.md new file mode 100644 index 0000000000..1f6e0efa73 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/embedded/README.md @@ -0,0 +1,3 @@ +# Metric Embedded + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/metric/embedded)](https://pkg.go.dev/go.opentelemetry.io/otel/metric/embedded) diff --git a/vendor/go.opentelemetry.io/otel/metric/embedded/embedded.go b/vendor/go.opentelemetry.io/otel/metric/embedded/embedded.go new file mode 100644 index 0000000000..1a9dc68093 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/embedded/embedded.go @@ -0,0 +1,243 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package embedded provides interfaces embedded within the [OpenTelemetry +// metric API]. +// +// Implementers of the [OpenTelemetry metric API] can embed the relevant type +// from this package into their implementation directly. Doing so will result +// in a compilation error for users when the [OpenTelemetry metric API] is +// extended (which is something that can happen without a major version bump of +// the API package). +// +// [OpenTelemetry metric API]: https://pkg.go.dev/go.opentelemetry.io/otel/metric +package embedded // import "go.opentelemetry.io/otel/metric/embedded" + +// MeterProvider is embedded in +// [go.opentelemetry.io/otel/metric.MeterProvider]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.MeterProvider] if you want users to +// experience a compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.MeterProvider] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type MeterProvider interface{ meterProvider() } + +// Meter is embedded in [go.opentelemetry.io/otel/metric.Meter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Meter] if you want users to experience a +// compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.Meter] interface +// is extended (which is something that can happen without a major version bump +// of the API package). +type Meter interface{ meter() } + +// Float64Observer is embedded in +// [go.opentelemetry.io/otel/metric.Float64Observer]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64Observer] if you want +// users to experience a compilation error, signaling they need to update to +// your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64Observer] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Float64Observer interface{ float64Observer() } + +// Int64Observer is embedded in +// [go.opentelemetry.io/otel/metric.Int64Observer]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64Observer] if you want users +// to experience a compilation error, signaling they need to update to your +// latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64Observer] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Int64Observer interface{ int64Observer() } + +// Observer is embedded in [go.opentelemetry.io/otel/metric.Observer]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Observer] if you want users to experience a +// compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.Observer] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Observer interface{ observer() } + +// Registration is embedded in [go.opentelemetry.io/otel/metric.Registration]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Registration] if you want users to +// experience a compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.Registration] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Registration interface{ registration() } + +// Float64Counter is embedded in +// [go.opentelemetry.io/otel/metric.Float64Counter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64Counter] if you want +// users to experience a compilation error, signaling they need to update to +// your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64Counter] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Float64Counter interface{ float64Counter() } + +// Float64Histogram is embedded in +// [go.opentelemetry.io/otel/metric.Float64Histogram]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64Histogram] if you want +// users to experience a compilation error, signaling they need to update to +// your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64Histogram] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Float64Histogram interface{ float64Histogram() } + +// Float64Gauge is embedded in [go.opentelemetry.io/otel/metric.Float64Gauge]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64Gauge] if you want users to +// experience a compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.Float64Gauge] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Float64Gauge interface{ float64Gauge() } + +// Float64ObservableCounter is embedded in +// [go.opentelemetry.io/otel/metric.Float64ObservableCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64ObservableCounter] if you +// want users to experience a compilation error, signaling they need to update +// to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64ObservableCounter] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Float64ObservableCounter interface{ float64ObservableCounter() } + +// Float64ObservableGauge is embedded in +// [go.opentelemetry.io/otel/metric.Float64ObservableGauge]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64ObservableGauge] if you +// want users to experience a compilation error, signaling they need to update +// to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64ObservableGauge] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Float64ObservableGauge interface{ float64ObservableGauge() } + +// Float64ObservableUpDownCounter is embedded in +// [go.opentelemetry.io/otel/metric.Float64ObservableUpDownCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64ObservableUpDownCounter] +// if you want users to experience a compilation error, signaling they need to +// update to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64ObservableUpDownCounter] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Float64ObservableUpDownCounter interface{ float64ObservableUpDownCounter() } + +// Float64UpDownCounter is embedded in +// [go.opentelemetry.io/otel/metric.Float64UpDownCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Float64UpDownCounter] if you +// want users to experience a compilation error, signaling they need to update +// to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Float64UpDownCounter] interface +// is extended (which is something that can happen without a major version bump +// of the API package). +type Float64UpDownCounter interface{ float64UpDownCounter() } + +// Int64Counter is embedded in +// [go.opentelemetry.io/otel/metric.Int64Counter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64Counter] if you want users +// to experience a compilation error, signaling they need to update to your +// latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64Counter] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Int64Counter interface{ int64Counter() } + +// Int64Histogram is embedded in +// [go.opentelemetry.io/otel/metric.Int64Histogram]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64Histogram] if you want +// users to experience a compilation error, signaling they need to update to +// your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64Histogram] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Int64Histogram interface{ int64Histogram() } + +// Int64Gauge is embedded in [go.opentelemetry.io/otel/metric.Int64Gauge]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64Gauge] if you want users to experience +// a compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/metric.Int64Gauge] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Int64Gauge interface{ int64Gauge() } + +// Int64ObservableCounter is embedded in +// [go.opentelemetry.io/otel/metric.Int64ObservableCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64ObservableCounter] if you +// want users to experience a compilation error, signaling they need to update +// to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64ObservableCounter] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Int64ObservableCounter interface{ int64ObservableCounter() } + +// Int64ObservableGauge is embedded in +// [go.opentelemetry.io/otel/metric.Int64ObservableGauge]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64ObservableGauge] if you +// want users to experience a compilation error, signaling they need to update +// to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64ObservableGauge] interface +// is extended (which is something that can happen without a major version bump +// of the API package). +type Int64ObservableGauge interface{ int64ObservableGauge() } + +// Int64ObservableUpDownCounter is embedded in +// [go.opentelemetry.io/otel/metric.Int64ObservableUpDownCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64ObservableUpDownCounter] if +// you want users to experience a compilation error, signaling they need to +// update to your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64ObservableUpDownCounter] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type Int64ObservableUpDownCounter interface{ int64ObservableUpDownCounter() } + +// Int64UpDownCounter is embedded in +// [go.opentelemetry.io/otel/metric.Int64UpDownCounter]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/metric.Int64UpDownCounter] if you want +// users to experience a compilation error, signaling they need to update to +// your latest implementation, when the +// [go.opentelemetry.io/otel/metric.Int64UpDownCounter] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Int64UpDownCounter interface{ int64UpDownCounter() } diff --git a/vendor/go.opentelemetry.io/otel/metric/instrument.go b/vendor/go.opentelemetry.io/otel/metric/instrument.go new file mode 100644 index 0000000000..9f48d5f117 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/instrument.go @@ -0,0 +1,376 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import "go.opentelemetry.io/otel/attribute" + +// Observable is used as a grouping mechanism for all instruments that are +// updated within a Callback. +type Observable interface { + observable() +} + +// InstrumentOption applies options to all instruments. +type InstrumentOption interface { + Int64CounterOption + Int64UpDownCounterOption + Int64HistogramOption + Int64GaugeOption + Int64ObservableCounterOption + Int64ObservableUpDownCounterOption + Int64ObservableGaugeOption + + Float64CounterOption + Float64UpDownCounterOption + Float64HistogramOption + Float64GaugeOption + Float64ObservableCounterOption + Float64ObservableUpDownCounterOption + Float64ObservableGaugeOption +} + +// HistogramOption applies options to histogram instruments. +type HistogramOption interface { + Int64HistogramOption + Float64HistogramOption +} + +type descOpt string + +func (o descOpt) applyFloat64Counter(c Float64CounterConfig) Float64CounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64UpDownCounter(c Float64UpDownCounterConfig) Float64UpDownCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64Histogram(c Float64HistogramConfig) Float64HistogramConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64Gauge(c Float64GaugeConfig) Float64GaugeConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64ObservableCounter(c Float64ObservableCounterConfig) Float64ObservableCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64ObservableUpDownCounter( + c Float64ObservableUpDownCounterConfig, +) Float64ObservableUpDownCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyFloat64ObservableGauge(c Float64ObservableGaugeConfig) Float64ObservableGaugeConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64Counter(c Int64CounterConfig) Int64CounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64UpDownCounter(c Int64UpDownCounterConfig) Int64UpDownCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64Histogram(c Int64HistogramConfig) Int64HistogramConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64Gauge(c Int64GaugeConfig) Int64GaugeConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64ObservableCounter(c Int64ObservableCounterConfig) Int64ObservableCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64ObservableUpDownCounter( + c Int64ObservableUpDownCounterConfig, +) Int64ObservableUpDownCounterConfig { + c.description = string(o) + return c +} + +func (o descOpt) applyInt64ObservableGauge(c Int64ObservableGaugeConfig) Int64ObservableGaugeConfig { + c.description = string(o) + return c +} + +// WithDescription sets the instrument description. +func WithDescription(desc string) InstrumentOption { return descOpt(desc) } + +type unitOpt string + +func (o unitOpt) applyFloat64Counter(c Float64CounterConfig) Float64CounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64UpDownCounter(c Float64UpDownCounterConfig) Float64UpDownCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64Histogram(c Float64HistogramConfig) Float64HistogramConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64Gauge(c Float64GaugeConfig) Float64GaugeConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64ObservableCounter(c Float64ObservableCounterConfig) Float64ObservableCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64ObservableUpDownCounter( + c Float64ObservableUpDownCounterConfig, +) Float64ObservableUpDownCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyFloat64ObservableGauge(c Float64ObservableGaugeConfig) Float64ObservableGaugeConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64Counter(c Int64CounterConfig) Int64CounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64UpDownCounter(c Int64UpDownCounterConfig) Int64UpDownCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64Histogram(c Int64HistogramConfig) Int64HistogramConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64Gauge(c Int64GaugeConfig) Int64GaugeConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64ObservableCounter(c Int64ObservableCounterConfig) Int64ObservableCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64ObservableUpDownCounter( + c Int64ObservableUpDownCounterConfig, +) Int64ObservableUpDownCounterConfig { + c.unit = string(o) + return c +} + +func (o unitOpt) applyInt64ObservableGauge(c Int64ObservableGaugeConfig) Int64ObservableGaugeConfig { + c.unit = string(o) + return c +} + +// WithUnit sets the instrument unit. +// +// The unit u should be defined using the appropriate [UCUM](https://ucum.org) case-sensitive code. +func WithUnit(u string) InstrumentOption { return unitOpt(u) } + +// WithExplicitBucketBoundaries sets the instrument explicit bucket boundaries. +// +// This option is considered "advisory", and may be ignored by API implementations. +func WithExplicitBucketBoundaries(bounds ...float64) HistogramOption { return bucketOpt(bounds) } + +type bucketOpt []float64 + +func (o bucketOpt) applyFloat64Histogram(c Float64HistogramConfig) Float64HistogramConfig { + c.explicitBucketBoundaries = o + return c +} + +func (o bucketOpt) applyInt64Histogram(c Int64HistogramConfig) Int64HistogramConfig { + c.explicitBucketBoundaries = o + return c +} + +// AddOption applies options to an addition measurement. See +// [MeasurementOption] for other options that can be used as an AddOption. +type AddOption interface { + applyAdd(AddConfig) AddConfig +} + +// AddConfig contains options for an addition measurement. +type AddConfig struct { + attrs attribute.Set +} + +// NewAddConfig returns a new [AddConfig] with all opts applied. +func NewAddConfig(opts []AddOption) AddConfig { + config := AddConfig{attrs: *attribute.EmptySet()} + for _, o := range opts { + config = o.applyAdd(config) + } + return config +} + +// Attributes returns the configured attribute set. +func (c AddConfig) Attributes() attribute.Set { + return c.attrs +} + +// RecordOption applies options to an addition measurement. See +// [MeasurementOption] for other options that can be used as a RecordOption. +type RecordOption interface { + applyRecord(RecordConfig) RecordConfig +} + +// RecordConfig contains options for a recorded measurement. +type RecordConfig struct { + attrs attribute.Set +} + +// NewRecordConfig returns a new [RecordConfig] with all opts applied. +func NewRecordConfig(opts []RecordOption) RecordConfig { + config := RecordConfig{attrs: *attribute.EmptySet()} + for _, o := range opts { + config = o.applyRecord(config) + } + return config +} + +// Attributes returns the configured attribute set. +func (c RecordConfig) Attributes() attribute.Set { + return c.attrs +} + +// ObserveOption applies options to an addition measurement. See +// [MeasurementOption] for other options that can be used as a ObserveOption. +type ObserveOption interface { + applyObserve(ObserveConfig) ObserveConfig +} + +// ObserveConfig contains options for an observed measurement. +type ObserveConfig struct { + attrs attribute.Set +} + +// NewObserveConfig returns a new [ObserveConfig] with all opts applied. +func NewObserveConfig(opts []ObserveOption) ObserveConfig { + config := ObserveConfig{attrs: *attribute.EmptySet()} + for _, o := range opts { + config = o.applyObserve(config) + } + return config +} + +// Attributes returns the configured attribute set. +func (c ObserveConfig) Attributes() attribute.Set { + return c.attrs +} + +// MeasurementOption applies options to all instrument measurement. +type MeasurementOption interface { + AddOption + RecordOption + ObserveOption +} + +type attrOpt struct { + set attribute.Set +} + +// mergeSets returns the union of keys between a and b. Any duplicate keys will +// use the value associated with b. +func mergeSets(a, b attribute.Set) attribute.Set { + // NewMergeIterator uses the first value for any duplicates. + iter := attribute.NewMergeIterator(&b, &a) + merged := make([]attribute.KeyValue, 0, a.Len()+b.Len()) + for iter.Next() { + merged = append(merged, iter.Attribute()) + } + return attribute.NewSet(merged...) +} + +func (o attrOpt) applyAdd(c AddConfig) AddConfig { + switch { + case o.set.Len() == 0: + case c.attrs.Len() == 0: + c.attrs = o.set + default: + c.attrs = mergeSets(c.attrs, o.set) + } + return c +} + +func (o attrOpt) applyRecord(c RecordConfig) RecordConfig { + switch { + case o.set.Len() == 0: + case c.attrs.Len() == 0: + c.attrs = o.set + default: + c.attrs = mergeSets(c.attrs, o.set) + } + return c +} + +func (o attrOpt) applyObserve(c ObserveConfig) ObserveConfig { + switch { + case o.set.Len() == 0: + case c.attrs.Len() == 0: + c.attrs = o.set + default: + c.attrs = mergeSets(c.attrs, o.set) + } + return c +} + +// WithAttributeSet sets the attribute Set associated with a measurement is +// made with. +// +// If multiple WithAttributeSet or WithAttributes options are passed the +// attributes will be merged together in the order they are passed. Attributes +// with duplicate keys will use the last value passed. +func WithAttributeSet(attributes attribute.Set) MeasurementOption { + return attrOpt{set: attributes} +} + +// WithAttributes converts attributes into an attribute Set and sets the Set to +// be associated with a measurement. This is shorthand for: +// +// cp := make([]attribute.KeyValue, len(attributes)) +// copy(cp, attributes) +// WithAttributeSet(attribute.NewSet(cp...)) +// +// [attribute.NewSet] may modify the passed attributes so this will make a copy +// of attributes before creating a set in order to ensure this function is +// concurrent safe. This makes this option function less optimized in +// comparison to [WithAttributeSet]. Therefore, [WithAttributeSet] should be +// preferred for performance sensitive code. +// +// See [WithAttributeSet] for information about how multiple WithAttributes are +// merged. +func WithAttributes(attributes ...attribute.KeyValue) MeasurementOption { + cp := make([]attribute.KeyValue, len(attributes)) + copy(cp, attributes) + return attrOpt{set: attribute.NewSet(cp...)} +} diff --git a/vendor/go.opentelemetry.io/otel/metric/meter.go b/vendor/go.opentelemetry.io/otel/metric/meter.go new file mode 100644 index 0000000000..fdd2a7011c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/meter.go @@ -0,0 +1,284 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import ( + "context" + + "go.opentelemetry.io/otel/metric/embedded" +) + +// MeterProvider provides access to named Meter instances, for instrumenting +// an application or package. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type MeterProvider interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.MeterProvider + + // Meter returns a new Meter with the provided name and configuration. + // + // A Meter should be scoped at most to a single package. The name needs to + // be unique so it does not collide with other names used by + // an application, nor other applications. To achieve this, the import path + // of the instrumentation package is recommended to be used as name. + // + // If the name is empty, then an implementation defined default name will + // be used instead. + Meter(name string, opts ...MeterOption) Meter +} + +// Meter provides access to instrument instances for recording metrics. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Meter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Meter + + // Int64Counter returns a new Int64Counter instrument identified by name + // and configured with options. The instrument is used to synchronously + // record increasing int64 measurements during a computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64Counter(name string, options ...Int64CounterOption) (Int64Counter, error) + + // Int64UpDownCounter returns a new Int64UpDownCounter instrument + // identified by name and configured with options. The instrument is used + // to synchronously record int64 measurements during a computational + // operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64UpDownCounter(name string, options ...Int64UpDownCounterOption) (Int64UpDownCounter, error) + + // Int64Histogram returns a new Int64Histogram instrument identified by + // name and configured with options. The instrument is used to + // synchronously record the distribution of int64 measurements during a + // computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64Histogram(name string, options ...Int64HistogramOption) (Int64Histogram, error) + + // Int64Gauge returns a new Int64Gauge instrument identified by name and + // configured with options. The instrument is used to synchronously record + // instantaneous int64 measurements during a computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64Gauge(name string, options ...Int64GaugeOption) (Int64Gauge, error) + + // Int64ObservableCounter returns a new Int64ObservableCounter identified + // by name and configured with options. The instrument is used to + // asynchronously record increasing int64 measurements once per a + // measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithInt64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64ObservableCounter(name string, options ...Int64ObservableCounterOption) (Int64ObservableCounter, error) + + // Int64ObservableUpDownCounter returns a new Int64ObservableUpDownCounter + // instrument identified by name and configured with options. The + // instrument is used to asynchronously record int64 measurements once per + // a measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithInt64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64ObservableUpDownCounter( + name string, + options ...Int64ObservableUpDownCounterOption, + ) (Int64ObservableUpDownCounter, error) + + // Int64ObservableGauge returns a new Int64ObservableGauge instrument + // identified by name and configured with options. The instrument is used + // to asynchronously record instantaneous int64 measurements once per a + // measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithInt64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Int64ObservableGauge(name string, options ...Int64ObservableGaugeOption) (Int64ObservableGauge, error) + + // Float64Counter returns a new Float64Counter instrument identified by + // name and configured with options. The instrument is used to + // synchronously record increasing float64 measurements during a + // computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64Counter(name string, options ...Float64CounterOption) (Float64Counter, error) + + // Float64UpDownCounter returns a new Float64UpDownCounter instrument + // identified by name and configured with options. The instrument is used + // to synchronously record float64 measurements during a computational + // operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64UpDownCounter(name string, options ...Float64UpDownCounterOption) (Float64UpDownCounter, error) + + // Float64Histogram returns a new Float64Histogram instrument identified by + // name and configured with options. The instrument is used to + // synchronously record the distribution of float64 measurements during a + // computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64Histogram(name string, options ...Float64HistogramOption) (Float64Histogram, error) + + // Float64Gauge returns a new Float64Gauge instrument identified by name and + // configured with options. The instrument is used to synchronously record + // instantaneous float64 measurements during a computational operation. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64Gauge(name string, options ...Float64GaugeOption) (Float64Gauge, error) + + // Float64ObservableCounter returns a new Float64ObservableCounter + // instrument identified by name and configured with options. The + // instrument is used to asynchronously record increasing float64 + // measurements once per a measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithFloat64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64ObservableCounter(name string, options ...Float64ObservableCounterOption) (Float64ObservableCounter, error) + + // Float64ObservableUpDownCounter returns a new + // Float64ObservableUpDownCounter instrument identified by name and + // configured with options. The instrument is used to asynchronously record + // float64 measurements once per a measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithFloat64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64ObservableUpDownCounter( + name string, + options ...Float64ObservableUpDownCounterOption, + ) (Float64ObservableUpDownCounter, error) + + // Float64ObservableGauge returns a new Float64ObservableGauge instrument + // identified by name and configured with options. The instrument is used + // to asynchronously record instantaneous float64 measurements once per a + // measurement collection cycle. + // + // Measurements for the returned instrument are made via a callback. Use + // the WithFloat64Callback option to register the callback here, or use the + // RegisterCallback method of this Meter to register one later. See the + // Measurements section of the package documentation for more information. + // + // The name needs to conform to the OpenTelemetry instrument name syntax. + // See the Instrument Name section of the package documentation for more + // information. + Float64ObservableGauge(name string, options ...Float64ObservableGaugeOption) (Float64ObservableGauge, error) + + // RegisterCallback registers f to be called during the collection of a + // measurement cycle. + // + // If Unregister of the returned Registration is called, f needs to be + // unregistered and not called during collection. + // + // The instruments f is registered with are the only instruments that f may + // observe values for. + // + // If no instruments are passed, f should not be registered nor called + // during collection. + // + // The function f needs to be concurrent safe. + RegisterCallback(f Callback, instruments ...Observable) (Registration, error) +} + +// Callback is a function registered with a Meter that makes observations for +// the set of instruments it is registered with. The Observer parameter is used +// to record measurement observations for these instruments. +// +// The function needs to complete in a finite amount of time and the deadline +// of the passed context is expected to be honored. +// +// The function needs to make unique observations across all registered +// Callbacks. Meaning, it should not report measurements for an instrument with +// the same attributes as another Callback will report. +// +// The function needs to be concurrent safe. +type Callback func(context.Context, Observer) error + +// Observer records measurements for multiple instruments in a Callback. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Observer interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Observer + + // ObserveFloat64 records the float64 value for obsrv. + ObserveFloat64(obsrv Float64Observable, value float64, opts ...ObserveOption) + + // ObserveInt64 records the int64 value for obsrv. + ObserveInt64(obsrv Int64Observable, value int64, opts ...ObserveOption) +} + +// Registration is an token representing the unique registration of a callback +// for a set of instruments with a Meter. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Registration interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Registration + + // Unregister removes the callback registration from a Meter. + // + // This method needs to be idempotent and concurrent safe. + Unregister() error +} diff --git a/vendor/go.opentelemetry.io/otel/metric/noop/README.md b/vendor/go.opentelemetry.io/otel/metric/noop/README.md new file mode 100644 index 0000000000..bb89694356 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/noop/README.md @@ -0,0 +1,3 @@ +# Metric Noop + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/metric/noop)](https://pkg.go.dev/go.opentelemetry.io/otel/metric/noop) diff --git a/vendor/go.opentelemetry.io/otel/metric/noop/noop.go b/vendor/go.opentelemetry.io/otel/metric/noop/noop.go new file mode 100644 index 0000000000..9afb69e583 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/noop/noop.go @@ -0,0 +1,296 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package noop provides an implementation of the OpenTelemetry metric API that +// produces no telemetry and minimizes used computation resources. +// +// Using this package to implement the OpenTelemetry metric API will +// effectively disable OpenTelemetry. +// +// This implementation can be embedded in other implementations of the +// OpenTelemetry metric API. Doing so will mean the implementation defaults to +// no operation for methods it does not implement. +package noop // import "go.opentelemetry.io/otel/metric/noop" + +import ( + "context" + + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" +) + +var ( + // Compile-time check this implements the OpenTelemetry API. + + _ metric.MeterProvider = MeterProvider{} + _ metric.Meter = Meter{} + _ metric.Observer = Observer{} + _ metric.Registration = Registration{} + _ metric.Int64Counter = Int64Counter{} + _ metric.Float64Counter = Float64Counter{} + _ metric.Int64UpDownCounter = Int64UpDownCounter{} + _ metric.Float64UpDownCounter = Float64UpDownCounter{} + _ metric.Int64Histogram = Int64Histogram{} + _ metric.Float64Histogram = Float64Histogram{} + _ metric.Int64Gauge = Int64Gauge{} + _ metric.Float64Gauge = Float64Gauge{} + _ metric.Int64ObservableCounter = Int64ObservableCounter{} + _ metric.Float64ObservableCounter = Float64ObservableCounter{} + _ metric.Int64ObservableGauge = Int64ObservableGauge{} + _ metric.Float64ObservableGauge = Float64ObservableGauge{} + _ metric.Int64ObservableUpDownCounter = Int64ObservableUpDownCounter{} + _ metric.Float64ObservableUpDownCounter = Float64ObservableUpDownCounter{} + _ metric.Int64Observer = Int64Observer{} + _ metric.Float64Observer = Float64Observer{} +) + +// MeterProvider is an OpenTelemetry No-Op MeterProvider. +type MeterProvider struct{ embedded.MeterProvider } + +// NewMeterProvider returns a MeterProvider that does not record any telemetry. +func NewMeterProvider() MeterProvider { + return MeterProvider{} +} + +// Meter returns an OpenTelemetry Meter that does not record any telemetry. +func (MeterProvider) Meter(string, ...metric.MeterOption) metric.Meter { + return Meter{} +} + +// Meter is an OpenTelemetry No-Op Meter. +type Meter struct{ embedded.Meter } + +// Int64Counter returns a Counter used to record int64 measurements that +// produces no telemetry. +func (Meter) Int64Counter(string, ...metric.Int64CounterOption) (metric.Int64Counter, error) { + return Int64Counter{}, nil +} + +// Int64UpDownCounter returns an UpDownCounter used to record int64 +// measurements that produces no telemetry. +func (Meter) Int64UpDownCounter(string, ...metric.Int64UpDownCounterOption) (metric.Int64UpDownCounter, error) { + return Int64UpDownCounter{}, nil +} + +// Int64Histogram returns a Histogram used to record int64 measurements that +// produces no telemetry. +func (Meter) Int64Histogram(string, ...metric.Int64HistogramOption) (metric.Int64Histogram, error) { + return Int64Histogram{}, nil +} + +// Int64Gauge returns a Gauge used to record int64 measurements that +// produces no telemetry. +func (Meter) Int64Gauge(string, ...metric.Int64GaugeOption) (metric.Int64Gauge, error) { + return Int64Gauge{}, nil +} + +// Int64ObservableCounter returns an ObservableCounter used to record int64 +// measurements that produces no telemetry. +func (Meter) Int64ObservableCounter( + string, + ...metric.Int64ObservableCounterOption, +) (metric.Int64ObservableCounter, error) { + return Int64ObservableCounter{}, nil +} + +// Int64ObservableUpDownCounter returns an ObservableUpDownCounter used to +// record int64 measurements that produces no telemetry. +func (Meter) Int64ObservableUpDownCounter( + string, + ...metric.Int64ObservableUpDownCounterOption, +) (metric.Int64ObservableUpDownCounter, error) { + return Int64ObservableUpDownCounter{}, nil +} + +// Int64ObservableGauge returns an ObservableGauge used to record int64 +// measurements that produces no telemetry. +func (Meter) Int64ObservableGauge(string, ...metric.Int64ObservableGaugeOption) (metric.Int64ObservableGauge, error) { + return Int64ObservableGauge{}, nil +} + +// Float64Counter returns a Counter used to record int64 measurements that +// produces no telemetry. +func (Meter) Float64Counter(string, ...metric.Float64CounterOption) (metric.Float64Counter, error) { + return Float64Counter{}, nil +} + +// Float64UpDownCounter returns an UpDownCounter used to record int64 +// measurements that produces no telemetry. +func (Meter) Float64UpDownCounter(string, ...metric.Float64UpDownCounterOption) (metric.Float64UpDownCounter, error) { + return Float64UpDownCounter{}, nil +} + +// Float64Histogram returns a Histogram used to record int64 measurements that +// produces no telemetry. +func (Meter) Float64Histogram(string, ...metric.Float64HistogramOption) (metric.Float64Histogram, error) { + return Float64Histogram{}, nil +} + +// Float64Gauge returns a Gauge used to record float64 measurements that +// produces no telemetry. +func (Meter) Float64Gauge(string, ...metric.Float64GaugeOption) (metric.Float64Gauge, error) { + return Float64Gauge{}, nil +} + +// Float64ObservableCounter returns an ObservableCounter used to record int64 +// measurements that produces no telemetry. +func (Meter) Float64ObservableCounter( + string, + ...metric.Float64ObservableCounterOption, +) (metric.Float64ObservableCounter, error) { + return Float64ObservableCounter{}, nil +} + +// Float64ObservableUpDownCounter returns an ObservableUpDownCounter used to +// record int64 measurements that produces no telemetry. +func (Meter) Float64ObservableUpDownCounter( + string, + ...metric.Float64ObservableUpDownCounterOption, +) (metric.Float64ObservableUpDownCounter, error) { + return Float64ObservableUpDownCounter{}, nil +} + +// Float64ObservableGauge returns an ObservableGauge used to record int64 +// measurements that produces no telemetry. +func (Meter) Float64ObservableGauge( + string, + ...metric.Float64ObservableGaugeOption, +) (metric.Float64ObservableGauge, error) { + return Float64ObservableGauge{}, nil +} + +// RegisterCallback performs no operation. +func (Meter) RegisterCallback(metric.Callback, ...metric.Observable) (metric.Registration, error) { + return Registration{}, nil +} + +// Observer acts as a recorder of measurements for multiple instruments in a +// Callback, it performing no operation. +type Observer struct{ embedded.Observer } + +// ObserveFloat64 performs no operation. +func (Observer) ObserveFloat64(metric.Float64Observable, float64, ...metric.ObserveOption) { +} + +// ObserveInt64 performs no operation. +func (Observer) ObserveInt64(metric.Int64Observable, int64, ...metric.ObserveOption) { +} + +// Registration is the registration of a Callback with a No-Op Meter. +type Registration struct{ embedded.Registration } + +// Unregister unregisters the Callback the Registration represents with the +// No-Op Meter. This will always return nil because the No-Op Meter performs no +// operation, including hold any record of registrations. +func (Registration) Unregister() error { return nil } + +// Int64Counter is an OpenTelemetry Counter used to record int64 measurements. +// It produces no telemetry. +type Int64Counter struct{ embedded.Int64Counter } + +// Add performs no operation. +func (Int64Counter) Add(context.Context, int64, ...metric.AddOption) {} + +// Float64Counter is an OpenTelemetry Counter used to record float64 +// measurements. It produces no telemetry. +type Float64Counter struct{ embedded.Float64Counter } + +// Add performs no operation. +func (Float64Counter) Add(context.Context, float64, ...metric.AddOption) {} + +// Int64UpDownCounter is an OpenTelemetry UpDownCounter used to record int64 +// measurements. It produces no telemetry. +type Int64UpDownCounter struct{ embedded.Int64UpDownCounter } + +// Add performs no operation. +func (Int64UpDownCounter) Add(context.Context, int64, ...metric.AddOption) {} + +// Float64UpDownCounter is an OpenTelemetry UpDownCounter used to record +// float64 measurements. It produces no telemetry. +type Float64UpDownCounter struct{ embedded.Float64UpDownCounter } + +// Add performs no operation. +func (Float64UpDownCounter) Add(context.Context, float64, ...metric.AddOption) {} + +// Int64Histogram is an OpenTelemetry Histogram used to record int64 +// measurements. It produces no telemetry. +type Int64Histogram struct{ embedded.Int64Histogram } + +// Record performs no operation. +func (Int64Histogram) Record(context.Context, int64, ...metric.RecordOption) {} + +// Float64Histogram is an OpenTelemetry Histogram used to record float64 +// measurements. It produces no telemetry. +type Float64Histogram struct{ embedded.Float64Histogram } + +// Record performs no operation. +func (Float64Histogram) Record(context.Context, float64, ...metric.RecordOption) {} + +// Int64Gauge is an OpenTelemetry Gauge used to record instantaneous int64 +// measurements. It produces no telemetry. +type Int64Gauge struct{ embedded.Int64Gauge } + +// Record performs no operation. +func (Int64Gauge) Record(context.Context, int64, ...metric.RecordOption) {} + +// Float64Gauge is an OpenTelemetry Gauge used to record instantaneous float64 +// measurements. It produces no telemetry. +type Float64Gauge struct{ embedded.Float64Gauge } + +// Record performs no operation. +func (Float64Gauge) Record(context.Context, float64, ...metric.RecordOption) {} + +// Int64ObservableCounter is an OpenTelemetry ObservableCounter used to record +// int64 measurements. It produces no telemetry. +type Int64ObservableCounter struct { + metric.Int64Observable + embedded.Int64ObservableCounter +} + +// Float64ObservableCounter is an OpenTelemetry ObservableCounter used to record +// float64 measurements. It produces no telemetry. +type Float64ObservableCounter struct { + metric.Float64Observable + embedded.Float64ObservableCounter +} + +// Int64ObservableGauge is an OpenTelemetry ObservableGauge used to record +// int64 measurements. It produces no telemetry. +type Int64ObservableGauge struct { + metric.Int64Observable + embedded.Int64ObservableGauge +} + +// Float64ObservableGauge is an OpenTelemetry ObservableGauge used to record +// float64 measurements. It produces no telemetry. +type Float64ObservableGauge struct { + metric.Float64Observable + embedded.Float64ObservableGauge +} + +// Int64ObservableUpDownCounter is an OpenTelemetry ObservableUpDownCounter +// used to record int64 measurements. It produces no telemetry. +type Int64ObservableUpDownCounter struct { + metric.Int64Observable + embedded.Int64ObservableUpDownCounter +} + +// Float64ObservableUpDownCounter is an OpenTelemetry ObservableUpDownCounter +// used to record float64 measurements. It produces no telemetry. +type Float64ObservableUpDownCounter struct { + metric.Float64Observable + embedded.Float64ObservableUpDownCounter +} + +// Int64Observer is a recorder of int64 measurements that performs no operation. +type Int64Observer struct{ embedded.Int64Observer } + +// Observe performs no operation. +func (Int64Observer) Observe(int64, ...metric.ObserveOption) {} + +// Float64Observer is a recorder of float64 measurements that performs no +// operation. +type Float64Observer struct{ embedded.Float64Observer } + +// Observe performs no operation. +func (Float64Observer) Observe(float64, ...metric.ObserveOption) {} diff --git a/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go b/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go new file mode 100644 index 0000000000..8403a4bad2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/syncfloat64.go @@ -0,0 +1,226 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import ( + "context" + + "go.opentelemetry.io/otel/metric/embedded" +) + +// Float64Counter is an instrument that records increasing float64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64Counter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64Counter + + // Add records a change to the counter. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Add(ctx context.Context, incr float64, options ...AddOption) +} + +// Float64CounterConfig contains options for synchronous counter instruments that +// record float64 values. +type Float64CounterConfig struct { + description string + unit string +} + +// NewFloat64CounterConfig returns a new [Float64CounterConfig] with all opts +// applied. +func NewFloat64CounterConfig(opts ...Float64CounterOption) Float64CounterConfig { + var config Float64CounterConfig + for _, o := range opts { + config = o.applyFloat64Counter(config) + } + return config +} + +// Description returns the configured description. +func (c Float64CounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64CounterConfig) Unit() string { + return c.unit +} + +// Float64CounterOption applies options to a [Float64CounterConfig]. See +// [InstrumentOption] for other options that can be used as a +// Float64CounterOption. +type Float64CounterOption interface { + applyFloat64Counter(Float64CounterConfig) Float64CounterConfig +} + +// Float64UpDownCounter is an instrument that records increasing or decreasing +// float64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64UpDownCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64UpDownCounter + + // Add records a change to the counter. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Add(ctx context.Context, incr float64, options ...AddOption) +} + +// Float64UpDownCounterConfig contains options for synchronous counter +// instruments that record float64 values. +type Float64UpDownCounterConfig struct { + description string + unit string +} + +// NewFloat64UpDownCounterConfig returns a new [Float64UpDownCounterConfig] +// with all opts applied. +func NewFloat64UpDownCounterConfig(opts ...Float64UpDownCounterOption) Float64UpDownCounterConfig { + var config Float64UpDownCounterConfig + for _, o := range opts { + config = o.applyFloat64UpDownCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Float64UpDownCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64UpDownCounterConfig) Unit() string { + return c.unit +} + +// Float64UpDownCounterOption applies options to a +// [Float64UpDownCounterConfig]. See [InstrumentOption] for other options that +// can be used as a Float64UpDownCounterOption. +type Float64UpDownCounterOption interface { + applyFloat64UpDownCounter(Float64UpDownCounterConfig) Float64UpDownCounterConfig +} + +// Float64Histogram is an instrument that records a distribution of float64 +// values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64Histogram interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64Histogram + + // Record adds an additional value to the distribution. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Record(ctx context.Context, incr float64, options ...RecordOption) +} + +// Float64HistogramConfig contains options for synchronous histogram +// instruments that record float64 values. +type Float64HistogramConfig struct { + description string + unit string + explicitBucketBoundaries []float64 +} + +// NewFloat64HistogramConfig returns a new [Float64HistogramConfig] with all +// opts applied. +func NewFloat64HistogramConfig(opts ...Float64HistogramOption) Float64HistogramConfig { + var config Float64HistogramConfig + for _, o := range opts { + config = o.applyFloat64Histogram(config) + } + return config +} + +// Description returns the configured description. +func (c Float64HistogramConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64HistogramConfig) Unit() string { + return c.unit +} + +// ExplicitBucketBoundaries returns the configured explicit bucket boundaries. +func (c Float64HistogramConfig) ExplicitBucketBoundaries() []float64 { + return c.explicitBucketBoundaries +} + +// Float64HistogramOption applies options to a [Float64HistogramConfig]. See +// [InstrumentOption] for other options that can be used as a +// Float64HistogramOption. +type Float64HistogramOption interface { + applyFloat64Histogram(Float64HistogramConfig) Float64HistogramConfig +} + +// Float64Gauge is an instrument that records instantaneous float64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Float64Gauge interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Float64Gauge + + // Record records the instantaneous value. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Record(ctx context.Context, value float64, options ...RecordOption) +} + +// Float64GaugeConfig contains options for synchronous gauge instruments that +// record float64 values. +type Float64GaugeConfig struct { + description string + unit string +} + +// NewFloat64GaugeConfig returns a new [Float64GaugeConfig] with all opts +// applied. +func NewFloat64GaugeConfig(opts ...Float64GaugeOption) Float64GaugeConfig { + var config Float64GaugeConfig + for _, o := range opts { + config = o.applyFloat64Gauge(config) + } + return config +} + +// Description returns the configured description. +func (c Float64GaugeConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Float64GaugeConfig) Unit() string { + return c.unit +} + +// Float64GaugeOption applies options to a [Float64GaugeConfig]. See +// [InstrumentOption] for other options that can be used as a +// Float64GaugeOption. +type Float64GaugeOption interface { + applyFloat64Gauge(Float64GaugeConfig) Float64GaugeConfig +} diff --git a/vendor/go.opentelemetry.io/otel/metric/syncint64.go b/vendor/go.opentelemetry.io/otel/metric/syncint64.go new file mode 100644 index 0000000000..783fdfba77 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/metric/syncint64.go @@ -0,0 +1,226 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/metric" + +import ( + "context" + + "go.opentelemetry.io/otel/metric/embedded" +) + +// Int64Counter is an instrument that records increasing int64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64Counter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64Counter + + // Add records a change to the counter. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Add(ctx context.Context, incr int64, options ...AddOption) +} + +// Int64CounterConfig contains options for synchronous counter instruments that +// record int64 values. +type Int64CounterConfig struct { + description string + unit string +} + +// NewInt64CounterConfig returns a new [Int64CounterConfig] with all opts +// applied. +func NewInt64CounterConfig(opts ...Int64CounterOption) Int64CounterConfig { + var config Int64CounterConfig + for _, o := range opts { + config = o.applyInt64Counter(config) + } + return config +} + +// Description returns the configured description. +func (c Int64CounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64CounterConfig) Unit() string { + return c.unit +} + +// Int64CounterOption applies options to a [Int64CounterConfig]. See +// [InstrumentOption] for other options that can be used as an +// Int64CounterOption. +type Int64CounterOption interface { + applyInt64Counter(Int64CounterConfig) Int64CounterConfig +} + +// Int64UpDownCounter is an instrument that records increasing or decreasing +// int64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64UpDownCounter interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64UpDownCounter + + // Add records a change to the counter. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Add(ctx context.Context, incr int64, options ...AddOption) +} + +// Int64UpDownCounterConfig contains options for synchronous counter +// instruments that record int64 values. +type Int64UpDownCounterConfig struct { + description string + unit string +} + +// NewInt64UpDownCounterConfig returns a new [Int64UpDownCounterConfig] with +// all opts applied. +func NewInt64UpDownCounterConfig(opts ...Int64UpDownCounterOption) Int64UpDownCounterConfig { + var config Int64UpDownCounterConfig + for _, o := range opts { + config = o.applyInt64UpDownCounter(config) + } + return config +} + +// Description returns the configured description. +func (c Int64UpDownCounterConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64UpDownCounterConfig) Unit() string { + return c.unit +} + +// Int64UpDownCounterOption applies options to a [Int64UpDownCounterConfig]. +// See [InstrumentOption] for other options that can be used as an +// Int64UpDownCounterOption. +type Int64UpDownCounterOption interface { + applyInt64UpDownCounter(Int64UpDownCounterConfig) Int64UpDownCounterConfig +} + +// Int64Histogram is an instrument that records a distribution of int64 +// values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64Histogram interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64Histogram + + // Record adds an additional value to the distribution. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Record(ctx context.Context, incr int64, options ...RecordOption) +} + +// Int64HistogramConfig contains options for synchronous histogram instruments +// that record int64 values. +type Int64HistogramConfig struct { + description string + unit string + explicitBucketBoundaries []float64 +} + +// NewInt64HistogramConfig returns a new [Int64HistogramConfig] with all opts +// applied. +func NewInt64HistogramConfig(opts ...Int64HistogramOption) Int64HistogramConfig { + var config Int64HistogramConfig + for _, o := range opts { + config = o.applyInt64Histogram(config) + } + return config +} + +// Description returns the configured description. +func (c Int64HistogramConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64HistogramConfig) Unit() string { + return c.unit +} + +// ExplicitBucketBoundaries returns the configured explicit bucket boundaries. +func (c Int64HistogramConfig) ExplicitBucketBoundaries() []float64 { + return c.explicitBucketBoundaries +} + +// Int64HistogramOption applies options to a [Int64HistogramConfig]. See +// [InstrumentOption] for other options that can be used as an +// Int64HistogramOption. +type Int64HistogramOption interface { + applyInt64Histogram(Int64HistogramConfig) Int64HistogramConfig +} + +// Int64Gauge is an instrument that records instantaneous int64 values. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Int64Gauge interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Int64Gauge + + // Record records the instantaneous value. + // + // Use the WithAttributeSet (or, if performance is not a concern, + // the WithAttributes) option to include measurement attributes. + Record(ctx context.Context, value int64, options ...RecordOption) +} + +// Int64GaugeConfig contains options for synchronous gauge instruments that +// record int64 values. +type Int64GaugeConfig struct { + description string + unit string +} + +// NewInt64GaugeConfig returns a new [Int64GaugeConfig] with all opts +// applied. +func NewInt64GaugeConfig(opts ...Int64GaugeOption) Int64GaugeConfig { + var config Int64GaugeConfig + for _, o := range opts { + config = o.applyInt64Gauge(config) + } + return config +} + +// Description returns the configured description. +func (c Int64GaugeConfig) Description() string { + return c.description +} + +// Unit returns the configured unit. +func (c Int64GaugeConfig) Unit() string { + return c.unit +} + +// Int64GaugeOption applies options to a [Int64GaugeConfig]. See +// [InstrumentOption] for other options that can be used as a +// Int64GaugeOption. +type Int64GaugeOption interface { + applyInt64Gauge(Int64GaugeConfig) Int64GaugeConfig +} diff --git a/vendor/go.opentelemetry.io/otel/propagation.go b/vendor/go.opentelemetry.io/otel/propagation.go new file mode 100644 index 0000000000..2fd9497338 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation.go @@ -0,0 +1,20 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +import ( + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/propagation" +) + +// GetTextMapPropagator returns the global TextMapPropagator. If none has been +// set, a No-Op TextMapPropagator is returned. +func GetTextMapPropagator() propagation.TextMapPropagator { + return global.TextMapPropagator() +} + +// SetTextMapPropagator sets propagator as the global TextMapPropagator. +func SetTextMapPropagator(propagator propagation.TextMapPropagator) { + global.SetTextMapPropagator(propagator) +} diff --git a/vendor/go.opentelemetry.io/otel/propagation/README.md b/vendor/go.opentelemetry.io/otel/propagation/README.md new file mode 100644 index 0000000000..e2959ac747 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation/README.md @@ -0,0 +1,3 @@ +# Propagation + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/propagation)](https://pkg.go.dev/go.opentelemetry.io/otel/propagation) diff --git a/vendor/go.opentelemetry.io/otel/propagation/baggage.go b/vendor/go.opentelemetry.io/otel/propagation/baggage.go new file mode 100644 index 0000000000..ebda5026d6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation/baggage.go @@ -0,0 +1,77 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package propagation // import "go.opentelemetry.io/otel/propagation" + +import ( + "context" + + "go.opentelemetry.io/otel/baggage" +) + +const baggageHeader = "baggage" + +// Baggage is a propagator that supports the W3C Baggage format. +// +// This propagates user-defined baggage associated with a trace. The complete +// specification is defined at https://www.w3.org/TR/baggage/. +type Baggage struct{} + +var _ TextMapPropagator = Baggage{} + +// Inject sets baggage key-values from ctx into the carrier. +func (b Baggage) Inject(ctx context.Context, carrier TextMapCarrier) { + bStr := baggage.FromContext(ctx).String() + if bStr != "" { + carrier.Set(baggageHeader, bStr) + } +} + +// Extract returns a copy of parent with the baggage from the carrier added. +// If carrier implements [ValuesGetter] (e.g. [HeaderCarrier]), Values is invoked +// for multiple values extraction. Otherwise, Get is called. +func (b Baggage) Extract(parent context.Context, carrier TextMapCarrier) context.Context { + if multiCarrier, ok := carrier.(ValuesGetter); ok { + return extractMultiBaggage(parent, multiCarrier) + } + return extractSingleBaggage(parent, carrier) +} + +// Fields returns the keys who's values are set with Inject. +func (b Baggage) Fields() []string { + return []string{baggageHeader} +} + +func extractSingleBaggage(parent context.Context, carrier TextMapCarrier) context.Context { + bStr := carrier.Get(baggageHeader) + if bStr == "" { + return parent + } + + bag, err := baggage.Parse(bStr) + if err != nil { + return parent + } + return baggage.ContextWithBaggage(parent, bag) +} + +func extractMultiBaggage(parent context.Context, carrier ValuesGetter) context.Context { + bVals := carrier.Values(baggageHeader) + if len(bVals) == 0 { + return parent + } + var members []baggage.Member + for _, bStr := range bVals { + currBag, err := baggage.Parse(bStr) + if err != nil { + continue + } + members = append(members, currBag.Members()...) + } + + b, err := baggage.New(members...) + if err != nil || b.Len() == 0 { + return parent + } + return baggage.ContextWithBaggage(parent, b) +} diff --git a/vendor/go.opentelemetry.io/otel/propagation/doc.go b/vendor/go.opentelemetry.io/otel/propagation/doc.go new file mode 100644 index 0000000000..33a3baf15f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation/doc.go @@ -0,0 +1,13 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package propagation contains OpenTelemetry context propagators. + +OpenTelemetry propagators are used to extract and inject context data from and +into messages exchanged by applications. The propagator supported by this +package is the W3C Trace Context encoding +(https://www.w3.org/TR/trace-context/), and W3C Baggage +(https://www.w3.org/TR/baggage/). +*/ +package propagation // import "go.opentelemetry.io/otel/propagation" diff --git a/vendor/go.opentelemetry.io/otel/propagation/propagation.go b/vendor/go.opentelemetry.io/otel/propagation/propagation.go new file mode 100644 index 0000000000..5c8c26ea2e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation/propagation.go @@ -0,0 +1,168 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package propagation // import "go.opentelemetry.io/otel/propagation" + +import ( + "context" + "net/http" +) + +// TextMapCarrier is the storage medium used by a TextMapPropagator. +// See ValuesGetter for how a TextMapCarrier can get multiple values for a key. +type TextMapCarrier interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Get returns the value associated with the passed key. + Get(key string) string + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Set stores the key-value pair. + Set(key string, value string) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Keys lists the keys stored in this carrier. + Keys() []string + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// ValuesGetter can return multiple values for a single key, +// with contrast to TextMapCarrier.Get which returns a single value. +type ValuesGetter interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Values returns all values associated with the passed key. + Values(key string) []string + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// MapCarrier is a TextMapCarrier that uses a map held in memory as a storage +// medium for propagated key-value pairs. +type MapCarrier map[string]string + +// Compile time check that MapCarrier implements the TextMapCarrier. +var _ TextMapCarrier = MapCarrier{} + +// Get returns the value associated with the passed key. +func (c MapCarrier) Get(key string) string { + return c[key] +} + +// Set stores the key-value pair. +func (c MapCarrier) Set(key, value string) { + c[key] = value +} + +// Keys lists the keys stored in this carrier. +func (c MapCarrier) Keys() []string { + keys := make([]string, 0, len(c)) + for k := range c { + keys = append(keys, k) + } + return keys +} + +// HeaderCarrier adapts http.Header to satisfy the TextMapCarrier and ValuesGetter interfaces. +type HeaderCarrier http.Header + +// Compile time check that HeaderCarrier implements ValuesGetter. +var _ TextMapCarrier = HeaderCarrier{} + +// Compile time check that HeaderCarrier implements TextMapCarrier. +var _ ValuesGetter = HeaderCarrier{} + +// Get returns the first value associated with the passed key. +func (hc HeaderCarrier) Get(key string) string { + return http.Header(hc).Get(key) +} + +// Values returns all values associated with the passed key. +func (hc HeaderCarrier) Values(key string) []string { + return http.Header(hc).Values(key) +} + +// Set stores the key-value pair. +func (hc HeaderCarrier) Set(key string, value string) { + http.Header(hc).Set(key, value) +} + +// Keys lists the keys stored in this carrier. +func (hc HeaderCarrier) Keys() []string { + keys := make([]string, 0, len(hc)) + for k := range hc { + keys = append(keys, k) + } + return keys +} + +// TextMapPropagator propagates cross-cutting concerns as key-value text +// pairs within a carrier that travels in-band across process boundaries. +type TextMapPropagator interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Inject set cross-cutting concerns from the Context into the carrier. + Inject(ctx context.Context, carrier TextMapCarrier) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Extract reads cross-cutting concerns from the carrier into a Context. + // Implementations may check if the carrier implements ValuesGetter, + // to support extraction of multiple values per key. + Extract(ctx context.Context, carrier TextMapCarrier) context.Context + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Fields returns the keys whose values are set with Inject. + Fields() []string + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +type compositeTextMapPropagator []TextMapPropagator + +func (p compositeTextMapPropagator) Inject(ctx context.Context, carrier TextMapCarrier) { + for _, i := range p { + i.Inject(ctx, carrier) + } +} + +func (p compositeTextMapPropagator) Extract(ctx context.Context, carrier TextMapCarrier) context.Context { + for _, i := range p { + ctx = i.Extract(ctx, carrier) + } + return ctx +} + +func (p compositeTextMapPropagator) Fields() []string { + unique := make(map[string]struct{}) + for _, i := range p { + for _, k := range i.Fields() { + unique[k] = struct{}{} + } + } + + fields := make([]string, 0, len(unique)) + for k := range unique { + fields = append(fields, k) + } + return fields +} + +// NewCompositeTextMapPropagator returns a unified TextMapPropagator from the +// group of passed TextMapPropagator. This allows different cross-cutting +// concerns to be propagates in a unified manner. +// +// The returned TextMapPropagator will inject and extract cross-cutting +// concerns in the order the TextMapPropagators were provided. Additionally, +// the Fields method will return a de-duplicated slice of the keys that are +// set with the Inject method. +func NewCompositeTextMapPropagator(p ...TextMapPropagator) TextMapPropagator { + return compositeTextMapPropagator(p) +} diff --git a/vendor/go.opentelemetry.io/otel/propagation/trace_context.go b/vendor/go.opentelemetry.io/otel/propagation/trace_context.go new file mode 100644 index 0000000000..6870e316dc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/propagation/trace_context.go @@ -0,0 +1,156 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package propagation // import "go.opentelemetry.io/otel/propagation" + +import ( + "context" + "encoding/hex" + "fmt" + "strings" + + "go.opentelemetry.io/otel/trace" +) + +const ( + supportedVersion = 0 + maxVersion = 254 + traceparentHeader = "traceparent" + tracestateHeader = "tracestate" + delimiter = "-" +) + +// TraceContext is a propagator that supports the W3C Trace Context format +// (https://www.w3.org/TR/trace-context/) +// +// This propagator will propagate the traceparent and tracestate headers to +// guarantee traces are not broken. It is up to the users of this propagator +// to choose if they want to participate in a trace by modifying the +// traceparent header and relevant parts of the tracestate header containing +// their proprietary information. +type TraceContext struct{} + +var ( + _ TextMapPropagator = TraceContext{} + versionPart = fmt.Sprintf("%.2X", supportedVersion) +) + +// Inject injects the trace context from ctx into carrier. +func (tc TraceContext) Inject(ctx context.Context, carrier TextMapCarrier) { + sc := trace.SpanContextFromContext(ctx) + if !sc.IsValid() { + return + } + + if ts := sc.TraceState().String(); ts != "" { + carrier.Set(tracestateHeader, ts) + } + + // Clear all flags other than the trace-context supported sampling bit. + flags := sc.TraceFlags() & trace.FlagsSampled + + var sb strings.Builder + sb.Grow(2 + 32 + 16 + 2 + 3) + _, _ = sb.WriteString(versionPart) + traceID := sc.TraceID() + spanID := sc.SpanID() + flagByte := [1]byte{byte(flags)} + var buf [32]byte + for _, src := range [][]byte{traceID[:], spanID[:], flagByte[:]} { + _ = sb.WriteByte(delimiter[0]) + n := hex.Encode(buf[:], src) + _, _ = sb.Write(buf[:n]) + } + carrier.Set(traceparentHeader, sb.String()) +} + +// Extract reads tracecontext from the carrier into a returned Context. +// +// The returned Context will be a copy of ctx and contain the extracted +// tracecontext as the remote SpanContext. If the extracted tracecontext is +// invalid, the passed ctx will be returned directly instead. +func (tc TraceContext) Extract(ctx context.Context, carrier TextMapCarrier) context.Context { + sc := tc.extract(carrier) + if !sc.IsValid() { + return ctx + } + return trace.ContextWithRemoteSpanContext(ctx, sc) +} + +func (tc TraceContext) extract(carrier TextMapCarrier) trace.SpanContext { + h := carrier.Get(traceparentHeader) + if h == "" { + return trace.SpanContext{} + } + + var ver [1]byte + if !extractPart(ver[:], &h, 2) { + return trace.SpanContext{} + } + version := int(ver[0]) + if version > maxVersion { + return trace.SpanContext{} + } + + var scc trace.SpanContextConfig + if !extractPart(scc.TraceID[:], &h, 32) { + return trace.SpanContext{} + } + if !extractPart(scc.SpanID[:], &h, 16) { + return trace.SpanContext{} + } + + var opts [1]byte + if !extractPart(opts[:], &h, 2) { + return trace.SpanContext{} + } + if version == 0 && (h != "" || opts[0] > 2) { + // version 0 not allow extra + // version 0 not allow other flag + return trace.SpanContext{} + } + + // Clear all flags other than the trace-context supported sampling bit. + scc.TraceFlags = trace.TraceFlags(opts[0]) & trace.FlagsSampled + + // Ignore the error returned here. Failure to parse tracestate MUST NOT + // affect the parsing of traceparent according to the W3C tracecontext + // specification. + scc.TraceState, _ = trace.ParseTraceState(carrier.Get(tracestateHeader)) + scc.Remote = true + + sc := trace.NewSpanContext(scc) + if !sc.IsValid() { + return trace.SpanContext{} + } + + return sc +} + +// upperHex detect hex is upper case Unicode characters. +func upperHex(v string) bool { + for _, c := range v { + if c >= 'A' && c <= 'F' { + return true + } + } + return false +} + +func extractPart(dst []byte, h *string, n int) bool { + part, left, _ := strings.Cut(*h, delimiter) + *h = left + // hex.Decode decodes unsupported upper-case characters, so exclude explicitly. + if len(part) != n || upperHex(part) { + return false + } + if p, err := hex.Decode(dst, []byte(part)); err != nil || p != n/2 { + return false + } + return true +} + +// Fields returns the keys who's values are set with Inject. +func (tc TraceContext) Fields() []string { + return []string{traceparentHeader, tracestateHeader} +} diff --git a/vendor/go.opentelemetry.io/otel/renovate.json b/vendor/go.opentelemetry.io/otel/renovate.json new file mode 100644 index 0000000000..fa5acf2d3b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/renovate.json @@ -0,0 +1,35 @@ +{ + "$schema": "https://docs.renovatebot.com/renovate-schema.json", + "extends": [ + "config:best-practices", + "helpers:pinGitHubActionDigestsToSemver" + ], + "ignorePaths": [], + "labels": ["Skip Changelog", "dependencies"], + "postUpdateOptions" : [ + "gomodTidy" + ], + "packageRules": [ + { + "matchManagers": ["gomod"], + "matchDepTypes": ["indirect"], + "enabled": true + }, + { + "matchPackageNames": ["go.opentelemetry.io/build-tools/**"], + "groupName": "build-tools" + }, + { + "matchPackageNames": ["google.golang.org/genproto/googleapis/**"], + "groupName": "googleapis" + }, + { + "matchPackageNames": ["golang.org/x/**"], + "groupName": "golang.org/x" + }, + { + "matchPackageNames": ["go.opentelemetry.io/otel/sdk/log/logtest"], + "enabled": false + } + ] +} diff --git a/vendor/go.opentelemetry.io/otel/requirements.txt b/vendor/go.opentelemetry.io/otel/requirements.txt new file mode 100644 index 0000000000..1bb55fb1cc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/requirements.txt @@ -0,0 +1 @@ +codespell==2.4.1 diff --git a/vendor/go.opentelemetry.io/otel/sdk/LICENSE b/vendor/go.opentelemetry.io/otel/sdk/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. 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The contents + of the NOTICE file are for informational purposes only and + do not modify the License. You may add Your own attribution + notices within Derivative Works that You distribute, alongside + or as an addendum to the NOTICE text from the Work, provided + that such additional attribution notices cannot be construed + as modifying the License. + + You may add Your own copyright statement to Your modifications and + may provide additional or different license terms and conditions + for use, reproduction, or distribution of Your modifications, or + for any such Derivative Works as a whole, provided Your use, + reproduction, and distribution of the Work otherwise complies with + the conditions stated in this License. + + 5. Submission of Contributions. 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However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "[]" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/sdk/README.md b/vendor/go.opentelemetry.io/otel/sdk/README.md new file mode 100644 index 0000000000..f81b1576ad --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/README.md @@ -0,0 +1,3 @@ +# SDK + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk) diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/README.md b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/README.md new file mode 100644 index 0000000000..06e6d86854 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/README.md @@ -0,0 +1,3 @@ +# SDK Instrumentation + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/instrumentation)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/instrumentation) diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go new file mode 100644 index 0000000000..a4faa6a03d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/doc.go @@ -0,0 +1,13 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package instrumentation provides types to represent the code libraries that +// provide OpenTelemetry instrumentation. These types are used in the +// OpenTelemetry signal pipelines to identify the source of telemetry. +// +// See +// https://github.com/open-telemetry/oteps/blob/d226b677d73a785523fe9b9701be13225ebc528d/text/0083-component.md +// and +// https://github.com/open-telemetry/oteps/blob/d226b677d73a785523fe9b9701be13225ebc528d/text/0201-scope-attributes.md +// for more information. +package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go new file mode 100644 index 0000000000..f2cdf3c651 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/library.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" + +// Library represents the instrumentation library. +// +// Deprecated: use [Scope] instead. +type Library = Scope diff --git a/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go new file mode 100644 index 0000000000..34852a47b2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/instrumentation/scope.go @@ -0,0 +1,19 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package instrumentation // import "go.opentelemetry.io/otel/sdk/instrumentation" + +import "go.opentelemetry.io/otel/attribute" + +// Scope represents the instrumentation scope. +type Scope struct { + // Name is the name of the instrumentation scope. This should be the + // Go package name of that scope. + Name string + // Version is the version of the instrumentation scope. + Version string + // SchemaURL of the telemetry emitted by the scope. + SchemaURL string + // Attributes of the telemetry emitted by the scope. + Attributes attribute.Set +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go b/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go new file mode 100644 index 0000000000..e3309231d4 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/env/env.go @@ -0,0 +1,168 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package env provides types and functionality for environment variable support +// in the OpenTelemetry SDK. +package env // import "go.opentelemetry.io/otel/sdk/internal/env" + +import ( + "os" + "strconv" + + "go.opentelemetry.io/otel/internal/global" +) + +// Environment variable names. +const ( + // BatchSpanProcessorScheduleDelayKey is the delay interval between two + // consecutive exports (i.e. 5000). + BatchSpanProcessorScheduleDelayKey = "OTEL_BSP_SCHEDULE_DELAY" + // BatchSpanProcessorExportTimeoutKey is the maximum allowed time to + // export data (i.e. 3000). + BatchSpanProcessorExportTimeoutKey = "OTEL_BSP_EXPORT_TIMEOUT" + // BatchSpanProcessorMaxQueueSizeKey is the maximum queue size (i.e. 2048). + BatchSpanProcessorMaxQueueSizeKey = "OTEL_BSP_MAX_QUEUE_SIZE" + // BatchSpanProcessorMaxExportBatchSizeKey is the maximum batch size (i.e. + // 512). Note: it must be less than or equal to + // BatchSpanProcessorMaxQueueSize. + BatchSpanProcessorMaxExportBatchSizeKey = "OTEL_BSP_MAX_EXPORT_BATCH_SIZE" + + // AttributeValueLengthKey is the maximum allowed attribute value size. + AttributeValueLengthKey = "OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT" + + // AttributeCountKey is the maximum allowed span attribute count. + AttributeCountKey = "OTEL_ATTRIBUTE_COUNT_LIMIT" + + // SpanAttributeValueLengthKey is the maximum allowed attribute value size + // for a span. + SpanAttributeValueLengthKey = "OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT" + + // SpanAttributeCountKey is the maximum allowed span attribute count for a + // span. + SpanAttributeCountKey = "OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT" + + // SpanEventCountKey is the maximum allowed span event count. + SpanEventCountKey = "OTEL_SPAN_EVENT_COUNT_LIMIT" + + // SpanEventAttributeCountKey is the maximum allowed attribute per span + // event count. + SpanEventAttributeCountKey = "OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT" + + // SpanLinkCountKey is the maximum allowed span link count. + SpanLinkCountKey = "OTEL_SPAN_LINK_COUNT_LIMIT" + + // SpanLinkAttributeCountKey is the maximum allowed attribute per span + // link count. + SpanLinkAttributeCountKey = "OTEL_LINK_ATTRIBUTE_COUNT_LIMIT" +) + +// firstInt returns the value of the first matching environment variable from +// keys. If the value is not an integer or no match is found, defaultValue is +// returned. +func firstInt(defaultValue int, keys ...string) int { + for _, key := range keys { + value := os.Getenv(key) + if value == "" { + continue + } + + intValue, err := strconv.Atoi(value) + if err != nil { + global.Info("Got invalid value, number value expected.", key, value) + return defaultValue + } + + return intValue + } + + return defaultValue +} + +// IntEnvOr returns the int value of the environment variable with name key if +// it exists, it is not empty, and the value is an int. Otherwise, defaultValue is returned. +func IntEnvOr(key string, defaultValue int) int { + value := os.Getenv(key) + if value == "" { + return defaultValue + } + + intValue, err := strconv.Atoi(value) + if err != nil { + global.Info("Got invalid value, number value expected.", key, value) + return defaultValue + } + + return intValue +} + +// BatchSpanProcessorScheduleDelay returns the environment variable value for +// the OTEL_BSP_SCHEDULE_DELAY key if it exists, otherwise defaultValue is +// returned. +func BatchSpanProcessorScheduleDelay(defaultValue int) int { + return IntEnvOr(BatchSpanProcessorScheduleDelayKey, defaultValue) +} + +// BatchSpanProcessorExportTimeout returns the environment variable value for +// the OTEL_BSP_EXPORT_TIMEOUT key if it exists, otherwise defaultValue is +// returned. +func BatchSpanProcessorExportTimeout(defaultValue int) int { + return IntEnvOr(BatchSpanProcessorExportTimeoutKey, defaultValue) +} + +// BatchSpanProcessorMaxQueueSize returns the environment variable value for +// the OTEL_BSP_MAX_QUEUE_SIZE key if it exists, otherwise defaultValue is +// returned. +func BatchSpanProcessorMaxQueueSize(defaultValue int) int { + return IntEnvOr(BatchSpanProcessorMaxQueueSizeKey, defaultValue) +} + +// BatchSpanProcessorMaxExportBatchSize returns the environment variable value for +// the OTEL_BSP_MAX_EXPORT_BATCH_SIZE key if it exists, otherwise defaultValue +// is returned. +func BatchSpanProcessorMaxExportBatchSize(defaultValue int) int { + return IntEnvOr(BatchSpanProcessorMaxExportBatchSizeKey, defaultValue) +} + +// SpanAttributeValueLength returns the environment variable value for the +// OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT key if it exists. Otherwise, the +// environment variable value for OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT is +// returned or defaultValue if that is not set. +func SpanAttributeValueLength(defaultValue int) int { + return firstInt(defaultValue, SpanAttributeValueLengthKey, AttributeValueLengthKey) +} + +// SpanAttributeCount returns the environment variable value for the +// OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT key if it exists. Otherwise, the +// environment variable value for OTEL_ATTRIBUTE_COUNT_LIMIT is returned or +// defaultValue if that is not set. +func SpanAttributeCount(defaultValue int) int { + return firstInt(defaultValue, SpanAttributeCountKey, AttributeCountKey) +} + +// SpanEventCount returns the environment variable value for the +// OTEL_SPAN_EVENT_COUNT_LIMIT key if it exists, otherwise defaultValue is +// returned. +func SpanEventCount(defaultValue int) int { + return IntEnvOr(SpanEventCountKey, defaultValue) +} + +// SpanEventAttributeCount returns the environment variable value for the +// OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue +// is returned. +func SpanEventAttributeCount(defaultValue int) int { + return IntEnvOr(SpanEventAttributeCountKey, defaultValue) +} + +// SpanLinkCount returns the environment variable value for the +// OTEL_SPAN_LINK_COUNT_LIMIT key if it exists, otherwise defaultValue is +// returned. +func SpanLinkCount(defaultValue int) int { + return IntEnvOr(SpanLinkCountKey, defaultValue) +} + +// SpanLinkAttributeCount returns the environment variable value for the +// OTEL_LINK_ATTRIBUTE_COUNT_LIMIT key if it exists, otherwise defaultValue is +// returned. +func SpanLinkAttributeCount(defaultValue int) int { + return IntEnvOr(SpanLinkAttributeCountKey, defaultValue) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/x/README.md b/vendor/go.opentelemetry.io/otel/sdk/internal/x/README.md new file mode 100644 index 0000000000..fab61647c2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/README.md @@ -0,0 +1,46 @@ +# Experimental Features + +The SDK contains features that have not yet stabilized in the OpenTelemetry specification. +These features are added to the OpenTelemetry Go SDK prior to stabilization in the specification so that users can start experimenting with them and provide feedback. + +These feature may change in backwards incompatible ways as feedback is applied. +See the [Compatibility and Stability](#compatibility-and-stability) section for more information. + +## Features + +- [Resource](#resource) + +### Resource + +[OpenTelemetry resource semantic conventions] include many attribute definitions that are defined as experimental. +To have experimental semantic conventions be added by [resource detectors] set the `OTEL_GO_X_RESOURCE` environment variable. +The value set must be the case-insensitive string of `"true"` to enable the feature. +All other values are ignored. + + + +[OpenTelemetry resource semantic conventions]: https://opentelemetry.io/docs/specs/semconv/resource/ +[resource detectors]: https://pkg.go.dev/go.opentelemetry.io/otel/sdk/resource#Detector + +#### Examples + +Enable experimental resource semantic conventions. + +```console +export OTEL_GO_X_RESOURCE=true +``` + +Disable experimental resource semantic conventions. + +```console +unset OTEL_GO_X_RESOURCE +``` + +## Compatibility and Stability + +Experimental features do not fall within the scope of the OpenTelemetry Go versioning and stability [policy](../../../VERSIONING.md). +These features may be removed or modified in successive version releases, including patch versions. + +When an experimental feature is promoted to a stable feature, a migration path will be included in the changelog entry of the release. +There is no guarantee that any environment variable feature flags that enabled the experimental feature will be supported by the stable version. +If they are supported, they may be accompanied with a deprecation notice stating a timeline for the removal of that support. diff --git a/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go b/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go new file mode 100644 index 0000000000..68d296cbed --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/internal/x/x.go @@ -0,0 +1,66 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package x contains support for OTel SDK experimental features. +// +// This package should only be used for features defined in the specification. +// It should not be used for experiments or new project ideas. +package x // import "go.opentelemetry.io/otel/sdk/internal/x" + +import ( + "os" + "strings" +) + +// Resource is an experimental feature flag that defines if resource detectors +// should be included experimental semantic conventions. +// +// To enable this feature set the OTEL_GO_X_RESOURCE environment variable +// to the case-insensitive string value of "true" (i.e. "True" and "TRUE" +// will also enable this). +var Resource = newFeature("RESOURCE", func(v string) (string, bool) { + if strings.ToLower(v) == "true" { + return v, true + } + return "", false +}) + +// Feature is an experimental feature control flag. It provides a uniform way +// to interact with these feature flags and parse their values. +type Feature[T any] struct { + key string + parse func(v string) (T, bool) +} + +func newFeature[T any](suffix string, parse func(string) (T, bool)) Feature[T] { + const envKeyRoot = "OTEL_GO_X_" + return Feature[T]{ + key: envKeyRoot + suffix, + parse: parse, + } +} + +// Key returns the environment variable key that needs to be set to enable the +// feature. +func (f Feature[T]) Key() string { return f.key } + +// Lookup returns the user configured value for the feature and true if the +// user has enabled the feature. Otherwise, if the feature is not enabled, a +// zero-value and false are returned. +func (f Feature[T]) Lookup() (v T, ok bool) { + // https://github.com/open-telemetry/opentelemetry-specification/blob/62effed618589a0bec416a87e559c0a9d96289bb/specification/configuration/sdk-environment-variables.md#parsing-empty-value + // + // > The SDK MUST interpret an empty value of an environment variable the + // > same way as when the variable is unset. + vRaw := os.Getenv(f.key) + if vRaw == "" { + return v, ok + } + return f.parse(vRaw) +} + +// Enabled returns if the feature is enabled. +func (f Feature[T]) Enabled() bool { + _, ok := f.Lookup() + return ok +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/LICENSE b/vendor/go.opentelemetry.io/otel/sdk/metric/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. For the purposes + of this License, Derivative Works shall not include works that remain + separable from, or merely link (or bind by name) to the interfaces of, + the Work and Derivative Works thereof. + + "Contribution" shall mean any work of authorship, including + the original version of the Work and any modifications or additions + to that Work or Derivative Works thereof, that is intentionally + submitted to Licensor for inclusion in the Work by the copyright owner + or by an individual or Legal Entity authorized to submit on behalf of + the copyright owner. For the purposes of this definition, "submitted" + means any form of electronic, verbal, or written communication sent + to the Licensor or its representatives, including but not limited to + communication on electronic mailing lists, source code control systems, + and issue tracking systems that are managed by, or on behalf of, the + Licensor for the purpose of discussing and improving the Work, but + excluding communication that is conspicuously marked or otherwise + designated in writing by the copyright owner as "Not a Contribution." + + "Contributor" shall mean Licensor and any individual or Legal Entity + on behalf of whom a Contribution has been received by Licensor and + subsequently incorporated within the Work. + + 2. Grant of Copyright License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + copyright license to reproduce, prepare Derivative Works of, + publicly display, publicly perform, sublicense, and distribute the + Work and such Derivative Works in Source or Object form. + + 3. Grant of Patent License. Subject to the terms and conditions of + this License, each Contributor hereby grants to You a perpetual, + worldwide, non-exclusive, no-charge, royalty-free, irrevocable + (except as stated in this section) patent license to make, have made, + use, offer to sell, sell, import, and otherwise transfer the Work, + where such license applies only to those patent claims licensable + by such Contributor that are necessarily infringed by their + Contribution(s) alone or by combination of their Contribution(s) + with the Work to which such Contribution(s) was submitted. If You + institute patent litigation against any entity (including a + cross-claim or counterclaim in a lawsuit) alleging that the Work + or a Contribution incorporated within the Work constitutes direct + or contributory patent infringement, then any patent licenses + granted to You under this License for that Work shall terminate + as of the date such litigation is filed. + + 4. Redistribution. You may reproduce and distribute copies of the + Work or Derivative Works thereof in any medium, with or without + modifications, and in Source or Object form, provided that You + meet the following conditions: + + (a) You must give any other recipients of the Work or + Derivative Works a copy of this License; and + + (b) You must cause any modified files to carry prominent notices + stating that You changed the files; and + + (c) You must retain, in the Source form of any Derivative Works + that You distribute, all copyright, patent, trademark, and + attribution notices from the Source form of the Work, + excluding those notices that do not pertain to any part of + the Derivative Works; and + + (d) If the Work includes a "NOTICE" text file as part of its + distribution, then any Derivative Works that You distribute must + include a readable copy of the attribution notices contained + within such NOTICE file, excluding those notices that do not + pertain to any part of the Derivative Works, in at least one + of the following places: within a NOTICE text file distributed + as part of the Derivative Works; within the Source form or + documentation, if provided along with the Derivative Works; or, + within a display generated by the Derivative Works, if and + wherever such third-party notices normally appear. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/README.md b/vendor/go.opentelemetry.io/otel/sdk/metric/README.md new file mode 100644 index 0000000000..017f072a51 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/README.md @@ -0,0 +1,3 @@ +# Metric SDK + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/metric)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/metric) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go b/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go new file mode 100644 index 0000000000..e6f5cfb2ad --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/aggregation.go @@ -0,0 +1,189 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "errors" + "fmt" + "slices" +) + +// errAgg is wrapped by misconfigured aggregations. +var errAgg = errors.New("aggregation") + +// Aggregation is the aggregation used to summarize recorded measurements. +type Aggregation interface { + // copy returns a deep copy of the Aggregation. + copy() Aggregation + + // err returns an error for any misconfigured Aggregation. + err() error +} + +// AggregationDrop is an Aggregation that drops all recorded data. +type AggregationDrop struct{} // AggregationDrop has no parameters. + +var _ Aggregation = AggregationDrop{} + +// copy returns a deep copy of d. +func (d AggregationDrop) copy() Aggregation { return d } + +// err returns an error for any misconfiguration. A drop aggregation has no +// parameters and cannot be misconfigured, therefore this always returns nil. +func (AggregationDrop) err() error { return nil } + +// AggregationDefault is an Aggregation that uses the default instrument kind selection +// mapping to select another Aggregation. A metric reader can be configured to +// make an aggregation selection based on instrument kind that differs from +// the default. This Aggregation ensures the default is used. +// +// See the [DefaultAggregationSelector] for information about the default +// instrument kind selection mapping. +type AggregationDefault struct{} // AggregationDefault has no parameters. + +var _ Aggregation = AggregationDefault{} + +// copy returns a deep copy of d. +func (d AggregationDefault) copy() Aggregation { return d } + +// err returns an error for any misconfiguration. A default aggregation has no +// parameters and cannot be misconfigured, therefore this always returns nil. +func (AggregationDefault) err() error { return nil } + +// AggregationSum is an Aggregation that summarizes a set of measurements as their +// arithmetic sum. +type AggregationSum struct{} // AggregationSum has no parameters. + +var _ Aggregation = AggregationSum{} + +// copy returns a deep copy of s. +func (s AggregationSum) copy() Aggregation { return s } + +// err returns an error for any misconfiguration. A sum aggregation has no +// parameters and cannot be misconfigured, therefore this always returns nil. +func (AggregationSum) err() error { return nil } + +// AggregationLastValue is an Aggregation that summarizes a set of measurements as the +// last one made. +type AggregationLastValue struct{} // AggregationLastValue has no parameters. + +var _ Aggregation = AggregationLastValue{} + +// copy returns a deep copy of l. +func (l AggregationLastValue) copy() Aggregation { return l } + +// err returns an error for any misconfiguration. A last-value aggregation has +// no parameters and cannot be misconfigured, therefore this always returns +// nil. +func (AggregationLastValue) err() error { return nil } + +// AggregationExplicitBucketHistogram is an Aggregation that summarizes a set of +// measurements as an histogram with explicitly defined buckets. +type AggregationExplicitBucketHistogram struct { + // Boundaries are the increasing bucket boundary values. Boundary values + // define bucket upper bounds. Buckets are exclusive of their lower + // boundary and inclusive of their upper bound (except at positive + // infinity). A measurement is defined to fall into the greatest-numbered + // bucket with a boundary that is greater than or equal to the + // measurement. As an example, boundaries defined as: + // + // []float64{0, 5, 10, 25, 50, 75, 100, 250, 500, 1000} + // + // Will define these buckets: + // + // (-∞, 0], (0, 5.0], (5.0, 10.0], (10.0, 25.0], (25.0, 50.0], + // (50.0, 75.0], (75.0, 100.0], (100.0, 250.0], (250.0, 500.0], + // (500.0, 1000.0], (1000.0, +∞) + Boundaries []float64 + // NoMinMax indicates whether to not record the min and max of the + // distribution. By default, these extrema are recorded. + // + // Recording these extrema for cumulative data is expected to have little + // value, they will represent the entire life of the instrument instead of + // just the current collection cycle. It is recommended to set this to true + // for that type of data to avoid computing the low-value extrema. + NoMinMax bool +} + +var _ Aggregation = AggregationExplicitBucketHistogram{} + +// errHist is returned by misconfigured ExplicitBucketHistograms. +var errHist = fmt.Errorf("%w: explicit bucket histogram", errAgg) + +// err returns an error for any misconfiguration. +func (h AggregationExplicitBucketHistogram) err() error { + if len(h.Boundaries) <= 1 { + return nil + } + + // Check boundaries are monotonic. + i := h.Boundaries[0] + for _, j := range h.Boundaries[1:] { + if i >= j { + return fmt.Errorf("%w: non-monotonic boundaries: %v", errHist, h.Boundaries) + } + i = j + } + + return nil +} + +// copy returns a deep copy of h. +func (h AggregationExplicitBucketHistogram) copy() Aggregation { + return AggregationExplicitBucketHistogram{ + Boundaries: slices.Clone(h.Boundaries), + NoMinMax: h.NoMinMax, + } +} + +// AggregationBase2ExponentialHistogram is an Aggregation that summarizes a set of +// measurements as an histogram with bucket widths that grow exponentially. +type AggregationBase2ExponentialHistogram struct { + // MaxSize is the maximum number of buckets to use for the histogram. + MaxSize int32 + // MaxScale is the maximum resolution scale to use for the histogram. + // + // MaxScale has a maximum value of 20. Using a value of 20 means the + // maximum number of buckets that can fit within the range of a + // signed 32-bit integer index could be used. + // + // MaxScale has a minimum value of -10. Using a value of -10 means only + // two buckets will be used. + MaxScale int32 + + // NoMinMax indicates whether to not record the min and max of the + // distribution. By default, these extrema are recorded. + // + // Recording these extrema for cumulative data is expected to have little + // value, they will represent the entire life of the instrument instead of + // just the current collection cycle. It is recommended to set this to true + // for that type of data to avoid computing the low-value extrema. + NoMinMax bool +} + +var _ Aggregation = AggregationBase2ExponentialHistogram{} + +// copy returns a deep copy of the Aggregation. +func (e AggregationBase2ExponentialHistogram) copy() Aggregation { + return e +} + +const ( + expoMaxScale = 20 + expoMinScale = -10 +) + +// errExpoHist is returned by misconfigured Base2ExponentialBucketHistograms. +var errExpoHist = fmt.Errorf("%w: exponential histogram", errAgg) + +// err returns an error for any misconfigured Aggregation. +func (e AggregationBase2ExponentialHistogram) err() error { + if e.MaxScale > expoMaxScale { + return fmt.Errorf("%w: max size %d is greater than maximum scale %d", errExpoHist, e.MaxSize, expoMaxScale) + } + if e.MaxSize <= 0 { + return fmt.Errorf("%w: max size %d is less than or equal to zero", errExpoHist, e.MaxSize) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go b/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go new file mode 100644 index 0000000000..63b88f0866 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/cache.go @@ -0,0 +1,83 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "sync" +) + +// cache is a locking storage used to quickly return already computed values. +// +// The zero value of a cache is empty and ready to use. +// +// A cache must not be copied after first use. +// +// All methods of a cache are safe to call concurrently. +type cache[K comparable, V any] struct { + sync.Mutex + data map[K]V +} + +// Lookup returns the value stored in the cache with the associated key if it +// exists. Otherwise, f is called and its returned value is set in the cache +// for key and returned. +// +// Lookup is safe to call concurrently. It will hold the cache lock, so f +// should not block excessively. +func (c *cache[K, V]) Lookup(key K, f func() V) V { + c.Lock() + defer c.Unlock() + + if c.data == nil { + val := f() + c.data = map[K]V{key: val} + return val + } + if v, ok := c.data[key]; ok { + return v + } + val := f() + c.data[key] = val + return val +} + +// HasKey returns true if Lookup has previously been called with that key +// +// HasKey is safe to call concurrently. +func (c *cache[K, V]) HasKey(key K) bool { + c.Lock() + defer c.Unlock() + _, ok := c.data[key] + return ok +} + +// cacheWithErr is a locking storage used to quickly return already computed values and an error. +// +// The zero value of a cacheWithErr is empty and ready to use. +// +// A cacheWithErr must not be copied after first use. +// +// All methods of a cacheWithErr are safe to call concurrently. +type cacheWithErr[K comparable, V any] struct { + cache[K, valAndErr[V]] +} + +type valAndErr[V any] struct { + val V + err error +} + +// Lookup returns the value stored in the cacheWithErr with the associated key +// if it exists. Otherwise, f is called and its returned value is set in the +// cacheWithErr for key and returned. +// +// Lookup is safe to call concurrently. It will hold the cacheWithErr lock, so f +// should not block excessively. +func (c *cacheWithErr[K, V]) Lookup(key K, f func() (V, error)) (V, error) { + combined := c.cache.Lookup(key, func() valAndErr[V] { + val, err := f() + return valAndErr[V]{val: val, err: err} + }) + return combined.val, combined.err +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/config.go b/vendor/go.opentelemetry.io/otel/sdk/metric/config.go new file mode 100644 index 0000000000..203cd9d650 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/config.go @@ -0,0 +1,172 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + "os" + "strings" + "sync" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/sdk/metric/exemplar" + "go.opentelemetry.io/otel/sdk/resource" +) + +// config contains configuration options for a MeterProvider. +type config struct { + res *resource.Resource + readers []Reader + views []View + exemplarFilter exemplar.Filter +} + +// readerSignals returns a force-flush and shutdown function for a +// MeterProvider to call in their respective options. All Readers c contains +// will have their force-flush and shutdown methods unified into returned +// single functions. +func (c config) readerSignals() (forceFlush, shutdown func(context.Context) error) { + var fFuncs, sFuncs []func(context.Context) error + for _, r := range c.readers { + sFuncs = append(sFuncs, r.Shutdown) + if f, ok := r.(interface{ ForceFlush(context.Context) error }); ok { + fFuncs = append(fFuncs, f.ForceFlush) + } + } + + return unify(fFuncs), unifyShutdown(sFuncs) +} + +// unify unifies calling all of funcs into a single function call. All errors +// returned from calls to funcs will be unify into a single error return +// value. +func unify(funcs []func(context.Context) error) func(context.Context) error { + return func(ctx context.Context) error { + var err error + for _, f := range funcs { + if e := f(ctx); e != nil { + err = errors.Join(err, e) + } + } + return err + } +} + +// unifyShutdown unifies calling all of funcs once for a shutdown. If called +// more than once, an ErrReaderShutdown error is returned. +func unifyShutdown(funcs []func(context.Context) error) func(context.Context) error { + f := unify(funcs) + var once sync.Once + return func(ctx context.Context) error { + err := ErrReaderShutdown + once.Do(func() { err = f(ctx) }) + return err + } +} + +// newConfig returns a config configured with options. +func newConfig(options []Option) config { + conf := config{ + res: resource.Default(), + exemplarFilter: exemplar.TraceBasedFilter, + } + for _, o := range meterProviderOptionsFromEnv() { + conf = o.apply(conf) + } + for _, o := range options { + conf = o.apply(conf) + } + return conf +} + +// Option applies a configuration option value to a MeterProvider. +type Option interface { + apply(config) config +} + +// optionFunc applies a set of options to a config. +type optionFunc func(config) config + +// apply returns a config with option(s) applied. +func (o optionFunc) apply(conf config) config { + return o(conf) +} + +// WithResource associates a Resource with a MeterProvider. This Resource +// represents the entity producing telemetry and is associated with all Meters +// the MeterProvider will create. +// +// By default, if this Option is not used, the default Resource from the +// go.opentelemetry.io/otel/sdk/resource package will be used. +func WithResource(res *resource.Resource) Option { + return optionFunc(func(conf config) config { + var err error + conf.res, err = resource.Merge(resource.Environment(), res) + if err != nil { + otel.Handle(err) + } + return conf + }) +} + +// WithReader associates Reader r with a MeterProvider. +// +// By default, if this option is not used, the MeterProvider will perform no +// operations; no data will be exported without a Reader. +func WithReader(r Reader) Option { + return optionFunc(func(cfg config) config { + if r == nil { + return cfg + } + cfg.readers = append(cfg.readers, r) + return cfg + }) +} + +// WithView associates views with a MeterProvider. +// +// Views are appended to existing ones in a MeterProvider if this option is +// used multiple times. +// +// By default, if this option is not used, the MeterProvider will use the +// default view. +func WithView(views ...View) Option { + return optionFunc(func(cfg config) config { + cfg.views = append(cfg.views, views...) + return cfg + }) +} + +// WithExemplarFilter configures the exemplar filter. +// +// The exemplar filter determines which measurements are offered to the +// exemplar reservoir, but the exemplar reservoir makes the final decision of +// whether to store an exemplar. +// +// By default, the [exemplar.SampledFilter] +// is used. Exemplars can be entirely disabled by providing the +// [exemplar.AlwaysOffFilter]. +func WithExemplarFilter(filter exemplar.Filter) Option { + return optionFunc(func(cfg config) config { + cfg.exemplarFilter = filter + return cfg + }) +} + +func meterProviderOptionsFromEnv() []Option { + var opts []Option + // https://github.com/open-telemetry/opentelemetry-specification/blob/d4b241f451674e8f611bb589477680341006ad2b/specification/configuration/sdk-environment-variables.md#exemplar + const filterEnvKey = "OTEL_METRICS_EXEMPLAR_FILTER" + + switch strings.ToLower(strings.TrimSpace(os.Getenv(filterEnvKey))) { + case "always_on": + opts = append(opts, WithExemplarFilter(exemplar.AlwaysOnFilter)) + case "always_off": + opts = append(opts, WithExemplarFilter(exemplar.AlwaysOffFilter)) + case "trace_based": + opts = append(opts, WithExemplarFilter(exemplar.TraceBasedFilter)) + } + return opts +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go new file mode 100644 index 0000000000..90a4ae16c1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/doc.go @@ -0,0 +1,47 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package metric provides an implementation of the OpenTelemetry metrics SDK. +// +// See https://opentelemetry.io/docs/concepts/signals/metrics/ for information +// about the concept of OpenTelemetry metrics and +// https://opentelemetry.io/docs/concepts/components/ for more information +// about OpenTelemetry SDKs. +// +// The entry point for the metric package is the MeterProvider. It is the +// object that all API calls use to create Meters, instruments, and ultimately +// make metric measurements. Also, it is an object that should be used to +// control the life-cycle (start, flush, and shutdown) of the SDK. +// +// A MeterProvider needs to be configured to export the measured data, this is +// done by configuring it with a Reader implementation (using the WithReader +// MeterProviderOption). Readers take two forms: ones that push to an endpoint +// (NewPeriodicReader), and ones that an endpoint pulls from. See +// [go.opentelemetry.io/otel/exporters] for exporters that can be used as +// or with these Readers. +// +// Each Reader, when registered with the MeterProvider, can be augmented with a +// View. Views allow users that run OpenTelemetry instrumented code to modify +// the generated data of that instrumentation. +// +// The data generated by a MeterProvider needs to include information about its +// origin. A MeterProvider needs to be configured with a Resource, using the +// WithResource MeterProviderOption, to include this information. This Resource +// should be used to describe the unique runtime environment instrumented code +// is being run on. That way when multiple instances of the code are collected +// at a single endpoint their origin is decipherable. +// +// To avoid leaking memory, the SDK returns the same instrument for calls to +// create new instruments with the same Name, Unit, and Description. +// Importantly, callbacks provided using metric.WithFloat64Callback or +// metric.WithInt64Callback will only apply for the first instrument created +// with a given Name, Unit, and Description. Instead, use +// Meter.RegisterCallback and Registration.Unregister to add and remove +// callbacks without leaking memory. +// +// See [go.opentelemetry.io/otel/metric] for more information about +// the metric API. +// +// See [go.opentelemetry.io/otel/sdk/metric/internal/x] for information about +// the experimental features. +package metric // import "go.opentelemetry.io/otel/sdk/metric" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/env.go b/vendor/go.opentelemetry.io/otel/sdk/metric/env.go new file mode 100644 index 0000000000..a6c403797f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/env.go @@ -0,0 +1,39 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "os" + "strconv" + "time" + + "go.opentelemetry.io/otel/internal/global" +) + +// Environment variable names. +const ( + // The time interval (in milliseconds) between the start of two export attempts. + envInterval = "OTEL_METRIC_EXPORT_INTERVAL" + // Maximum allowed time (in milliseconds) to export data. + envTimeout = "OTEL_METRIC_EXPORT_TIMEOUT" +) + +// envDuration returns an environment variable's value as duration in milliseconds if it is exists, +// or the defaultValue if the environment variable is not defined or the value is not valid. +func envDuration(key string, defaultValue time.Duration) time.Duration { + v := os.Getenv(key) + if v == "" { + return defaultValue + } + d, err := strconv.Atoi(v) + if err != nil { + global.Error(err, "parse duration", "environment variable", key, "value", v) + return defaultValue + } + if d <= 0 { + global.Error(errNonPositiveDuration, "non-positive duration", "environment variable", key, "value", v) + return defaultValue + } + return time.Duration(d) * time.Millisecond +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go new file mode 100644 index 0000000000..549d3bd5f9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar.go @@ -0,0 +1,80 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "runtime" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/exemplar" + "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +) + +// ExemplarReservoirProviderSelector selects the +// [exemplar.ReservoirProvider] to use +// based on the [Aggregation] of the metric. +type ExemplarReservoirProviderSelector func(Aggregation) exemplar.ReservoirProvider + +// reservoirFunc returns the appropriately configured exemplar reservoir +// creation func based on the passed InstrumentKind and filter configuration. +func reservoirFunc[N int64 | float64]( + provider exemplar.ReservoirProvider, + filter exemplar.Filter, +) func(attribute.Set) aggregate.FilteredExemplarReservoir[N] { + return func(attrs attribute.Set) aggregate.FilteredExemplarReservoir[N] { + return aggregate.NewFilteredExemplarReservoir[N](filter, provider(attrs)) + } +} + +// DefaultExemplarReservoirProviderSelector returns the default +// [exemplar.ReservoirProvider] for the +// provided [Aggregation]. +// +// For explicit bucket histograms with more than 1 bucket, it uses the +// [exemplar.HistogramReservoirProvider]. +// For exponential histograms, it uses the +// [exemplar.FixedSizeReservoirProvider] +// with a size of min(20, max_buckets). +// For all other aggregations, it uses the +// [exemplar.FixedSizeReservoirProvider] +// with a size equal to the number of CPUs. +// +// Exemplar default reservoirs MAY change in a minor version bump. No +// guarantees are made on the shape or statistical properties of returned +// exemplars. +func DefaultExemplarReservoirProviderSelector(agg Aggregation) exemplar.ReservoirProvider { + // https://github.com/open-telemetry/opentelemetry-specification/blob/d4b241f451674e8f611bb589477680341006ad2b/specification/metrics/sdk.md#exemplar-defaults + // Explicit bucket histogram aggregation with more than 1 bucket will + // use AlignedHistogramBucketExemplarReservoir. + a, ok := agg.(AggregationExplicitBucketHistogram) + if ok && len(a.Boundaries) > 0 { + return exemplar.HistogramReservoirProvider(a.Boundaries) + } + + var n int + if a, ok := agg.(AggregationBase2ExponentialHistogram); ok { + // Base2 Exponential Histogram Aggregation SHOULD use a + // SimpleFixedSizeExemplarReservoir with a reservoir equal to the + // smaller of the maximum number of buckets configured on the + // aggregation or twenty (e.g. min(20, max_buckets)). + n = int(a.MaxSize) + if n > 20 { + n = 20 + } + } else { + // https://github.com/open-telemetry/opentelemetry-specification/blob/e94af89e3d0c01de30127a0f423e912f6cda7bed/specification/metrics/sdk.md#simplefixedsizeexemplarreservoir + // This Exemplar reservoir MAY take a configuration parameter for + // the size of the reservoir. If no size configuration is + // provided, the default size MAY be the number of possible + // concurrent threads (e.g. number of CPUs) to help reduce + // contention. Otherwise, a default size of 1 SHOULD be used. + n = runtime.NumCPU() + if n < 1 { + // Should never be the case, but be defensive. + n = 1 + } + } + + return exemplar.FixedSizeReservoirProvider(n) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/README.md b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/README.md new file mode 100644 index 0000000000..d1025f5eb8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/README.md @@ -0,0 +1,3 @@ +# Metric SDK Exemplars + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/metric/exemplar)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/metric/exemplar) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go new file mode 100644 index 0000000000..9f23893768 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/doc.go @@ -0,0 +1,6 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package exemplar provides an implementation of the OpenTelemetry exemplar +// reservoir to be used in metric collection pipelines. +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go new file mode 100644 index 0000000000..1ab6946786 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/exemplar.go @@ -0,0 +1,29 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// Exemplar is a measurement sampled from a timeseries providing a typical +// example. +type Exemplar struct { + // FilteredAttributes are the attributes recorded with the measurement but + // filtered out of the timeseries' aggregated data. + FilteredAttributes []attribute.KeyValue + // Time is the time when the measurement was recorded. + Time time.Time + // Value is the measured value. + Value Value + // SpanID is the ID of the span that was active during the measurement. If + // no span was active or the span was not sampled this will be empty. + SpanID []byte `json:",omitempty"` + // TraceID is the ID of the trace the active span belonged to during the + // measurement. If no span was active or the span was not sampled this will + // be empty. + TraceID []byte `json:",omitempty"` +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go new file mode 100644 index 0000000000..b595e2acef --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/filter.go @@ -0,0 +1,34 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "context" + + "go.opentelemetry.io/otel/trace" +) + +// Filter determines if a measurement should be offered. +// +// The passed ctx needs to contain any baggage or span that were active +// when the measurement was made. This information may be used by the +// Reservoir in making a sampling decision. +type Filter func(context.Context) bool + +// TraceBasedFilter is a [Filter] that will only offer measurements +// if the passed context associated with the measurement contains a sampled +// [go.opentelemetry.io/otel/trace.SpanContext]. +func TraceBasedFilter(ctx context.Context) bool { + return trace.SpanContextFromContext(ctx).IsSampled() +} + +// AlwaysOnFilter is a [Filter] that always offers measurements. +func AlwaysOnFilter(ctx context.Context) bool { + return true +} + +// AlwaysOffFilter is a [Filter] that never offers measurements. +func AlwaysOffFilter(ctx context.Context) bool { + return false +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go new file mode 100644 index 0000000000..1fb1e0095f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/fixed_size_reservoir.go @@ -0,0 +1,199 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "context" + "math" + "math/rand/v2" + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// FixedSizeReservoirProvider returns a provider of [FixedSizeReservoir]. +func FixedSizeReservoirProvider(k int) ReservoirProvider { + return func(_ attribute.Set) Reservoir { + return NewFixedSizeReservoir(k) + } +} + +// NewFixedSizeReservoir returns a [FixedSizeReservoir] that samples at most +// k exemplars. If there are k or less measurements made, the Reservoir will +// sample each one. If there are more than k, the Reservoir will then randomly +// sample all additional measurement with a decreasing probability. +func NewFixedSizeReservoir(k int) *FixedSizeReservoir { + return newFixedSizeReservoir(newStorage(k)) +} + +var _ Reservoir = &FixedSizeReservoir{} + +// FixedSizeReservoir is a [Reservoir] that samples at most k exemplars. If +// there are k or less measurements made, the Reservoir will sample each one. +// If there are more than k, the Reservoir will then randomly sample all +// additional measurement with a decreasing probability. +type FixedSizeReservoir struct { + *storage + + // count is the number of measurement seen. + count int64 + // next is the next count that will store a measurement at a random index + // once the reservoir has been filled. + next int64 + // w is the largest random number in a distribution that is used to compute + // the next next. + w float64 +} + +func newFixedSizeReservoir(s *storage) *FixedSizeReservoir { + r := &FixedSizeReservoir{ + storage: s, + } + r.reset() + return r +} + +// randomFloat64 returns, as a float64, a uniform pseudo-random number in the +// open interval (0.0,1.0). +func (r *FixedSizeReservoir) randomFloat64() float64 { + // TODO: Use an algorithm that avoids rejection sampling. For example: + // + // const precision = 1 << 53 // 2^53 + // // Generate an integer in [1, 2^53 - 1] + // v := rand.Uint64() % (precision - 1) + 1 + // return float64(v) / float64(precision) + f := rand.Float64() + for f == 0 { + f = rand.Float64() + } + return f +} + +// Offer accepts the parameters associated with a measurement. The +// parameters will be stored as an exemplar if the Reservoir decides to +// sample the measurement. +// +// The passed ctx needs to contain any baggage or span that were active +// when the measurement was made. This information may be used by the +// Reservoir in making a sampling decision. +// +// The time t is the time when the measurement was made. The v and a +// parameters are the value and dropped (filtered) attributes of the +// measurement respectively. +func (r *FixedSizeReservoir) Offer(ctx context.Context, t time.Time, n Value, a []attribute.KeyValue) { + // The following algorithm is "Algorithm L" from Li, Kim-Hung (4 December + // 1994). "Reservoir-Sampling Algorithms of Time Complexity + // O(n(1+log(N/n)))". ACM Transactions on Mathematical Software. 20 (4): + // 481–493 (https://dl.acm.org/doi/10.1145/198429.198435). + // + // A high-level overview of "Algorithm L": + // 0) Pre-calculate the random count greater than the storage size when + // an exemplar will be replaced. + // 1) Accept all measurements offered until the configured storage size is + // reached. + // 2) Loop: + // a) When the pre-calculate count is reached, replace a random + // existing exemplar with the offered measurement. + // b) Calculate the next random count greater than the existing one + // which will replace another exemplars + // + // The way a "replacement" count is computed is by looking at `n` number of + // independent random numbers each corresponding to an offered measurement. + // Of these numbers the smallest `k` (the same size as the storage + // capacity) of them are kept as a subset. The maximum value in this + // subset, called `w` is used to weight another random number generation + // for the next count that will be considered. + // + // By weighting the next count computation like described, it is able to + // perform a uniformly-weighted sampling algorithm based on the number of + // samples the reservoir has seen so far. The sampling will "slow down" as + // more and more samples are offered so as to reduce a bias towards those + // offered just prior to the end of the collection. + // + // This algorithm is preferred because of its balance of simplicity and + // performance. It will compute three random numbers (the bulk of + // computation time) for each item that becomes part of the reservoir, but + // it does not spend any time on items that do not. In particular it has an + // asymptotic runtime of O(k(1 + log(n/k)) where n is the number of + // measurements offered and k is the reservoir size. + // + // See https://en.wikipedia.org/wiki/Reservoir_sampling for an overview of + // this and other reservoir sampling algorithms. See + // https://github.com/MrAlias/reservoir-sampling for a performance + // comparison of reservoir sampling algorithms. + + if int(r.count) < cap(r.store) { + r.store[r.count] = newMeasurement(ctx, t, n, a) + } else { + if r.count == r.next { + // Overwrite a random existing measurement with the one offered. + idx := int(rand.Int64N(int64(cap(r.store)))) + r.store[idx] = newMeasurement(ctx, t, n, a) + r.advance() + } + } + r.count++ +} + +// reset resets r to the initial state. +func (r *FixedSizeReservoir) reset() { + // This resets the number of exemplars known. + r.count = 0 + // Random index inserts should only happen after the storage is full. + r.next = int64(cap(r.store)) + + // Initial random number in the series used to generate r.next. + // + // This is set before r.advance to reset or initialize the random number + // series. Without doing so it would always be 0 or never restart a new + // random number series. + // + // This maps the uniform random number in (0,1) to a geometric distribution + // over the same interval. The mean of the distribution is inversely + // proportional to the storage capacity. + r.w = math.Exp(math.Log(r.randomFloat64()) / float64(cap(r.store))) + + r.advance() +} + +// advance updates the count at which the offered measurement will overwrite an +// existing exemplar. +func (r *FixedSizeReservoir) advance() { + // Calculate the next value in the random number series. + // + // The current value of r.w is based on the max of a distribution of random + // numbers (i.e. `w = max(u_1,u_2,...,u_k)` for `k` equal to the capacity + // of the storage and each `u` in the interval (0,w)). To calculate the + // next r.w we use the fact that when the next exemplar is selected to be + // included in the storage an existing one will be dropped, and the + // corresponding random number in the set used to calculate r.w will also + // be replaced. The replacement random number will also be within (0,w), + // therefore the next r.w will be based on the same distribution (i.e. + // `max(u_1,u_2,...,u_k)`). Therefore, we can sample the next r.w by + // computing the next random number `u` and take r.w as `w * u^(1/k)`. + r.w *= math.Exp(math.Log(r.randomFloat64()) / float64(cap(r.store))) + // Use the new random number in the series to calculate the count of the + // next measurement that will be stored. + // + // Given 0 < r.w < 1, each iteration will result in subsequent r.w being + // smaller. This translates here into the next next being selected against + // a distribution with a higher mean (i.e. the expected value will increase + // and replacements become less likely) + // + // Important to note, the new r.next will always be at least 1 more than + // the last r.next. + r.next += int64(math.Log(r.randomFloat64())/math.Log(1-r.w)) + 1 +} + +// Collect returns all the held exemplars. +// +// The Reservoir state is preserved after this call. +func (r *FixedSizeReservoir) Collect(dest *[]Exemplar) { + r.storage.Collect(dest) + // Call reset here even though it will reset r.count and restart the random + // number series. This will persist any old exemplars as long as no new + // measurements are offered, but it will also prioritize those new + // measurements that are made over the older collection cycle ones. + r.reset() +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go new file mode 100644 index 0000000000..3b76cf305a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/histogram_reservoir.go @@ -0,0 +1,70 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "context" + "slices" + "sort" + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// HistogramReservoirProvider is a provider of [HistogramReservoir]. +func HistogramReservoirProvider(bounds []float64) ReservoirProvider { + cp := slices.Clone(bounds) + slices.Sort(cp) + return func(_ attribute.Set) Reservoir { + return NewHistogramReservoir(cp) + } +} + +// NewHistogramReservoir returns a [HistogramReservoir] that samples the last +// measurement that falls within a histogram bucket. The histogram bucket +// upper-boundaries are define by bounds. +// +// The passed bounds must be sorted before calling this function. +func NewHistogramReservoir(bounds []float64) *HistogramReservoir { + return &HistogramReservoir{ + bounds: bounds, + storage: newStorage(len(bounds) + 1), + } +} + +var _ Reservoir = &HistogramReservoir{} + +// HistogramReservoir is a [Reservoir] that samples the last measurement that +// falls within a histogram bucket. The histogram bucket upper-boundaries are +// define by bounds. +type HistogramReservoir struct { + *storage + + // bounds are bucket bounds in ascending order. + bounds []float64 +} + +// Offer accepts the parameters associated with a measurement. The +// parameters will be stored as an exemplar if the Reservoir decides to +// sample the measurement. +// +// The passed ctx needs to contain any baggage or span that were active +// when the measurement was made. This information may be used by the +// Reservoir in making a sampling decision. +// +// The time t is the time when the measurement was made. The v and a +// parameters are the value and dropped (filtered) attributes of the +// measurement respectively. +func (r *HistogramReservoir) Offer(ctx context.Context, t time.Time, v Value, a []attribute.KeyValue) { + var x float64 + switch v.Type() { + case Int64ValueType: + x = float64(v.Int64()) + case Float64ValueType: + x = v.Float64() + default: + panic("unknown value type") + } + r.store[sort.SearchFloat64s(r.bounds, x)] = newMeasurement(ctx, t, v, a) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go new file mode 100644 index 0000000000..ba5cd1a6b3 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/reservoir.go @@ -0,0 +1,40 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// Reservoir holds the sampled exemplar of measurements made. +type Reservoir interface { + // Offer accepts the parameters associated with a measurement. The + // parameters will be stored as an exemplar if the Reservoir decides to + // sample the measurement. + // + // The passed ctx needs to contain any baggage or span that were active + // when the measurement was made. This information may be used by the + // Reservoir in making a sampling decision. + // + // The time t is the time when the measurement was made. The val and attr + // parameters are the value and dropped (filtered) attributes of the + // measurement respectively. + Offer(ctx context.Context, t time.Time, val Value, attr []attribute.KeyValue) + + // Collect returns all the held exemplars. + // + // The Reservoir state is preserved after this call. + Collect(dest *[]Exemplar) +} + +// ReservoirProvider creates new [Reservoir]s. +// +// The attributes provided are attributes which are kept by the aggregation, and +// are exclusive with attributes passed to Offer. The combination of these +// attributes and the attributes passed to Offer is the complete set of +// attributes a measurement was made with. +type ReservoirProvider func(attr attribute.Set) Reservoir diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go new file mode 100644 index 0000000000..0e2e26dfb1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/storage.go @@ -0,0 +1,95 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/trace" +) + +// storage is an exemplar storage for [Reservoir] implementations. +type storage struct { + // store are the measurements sampled. + // + // This does not use []metricdata.Exemplar because it potentially would + // require an allocation for trace and span IDs in the hot path of Offer. + store []measurement +} + +func newStorage(n int) *storage { + return &storage{store: make([]measurement, n)} +} + +// Collect returns all the held exemplars. +// +// The Reservoir state is preserved after this call. +func (r *storage) Collect(dest *[]Exemplar) { + *dest = reset(*dest, len(r.store), len(r.store)) + var n int + for _, m := range r.store { + if !m.valid { + continue + } + + m.exemplar(&(*dest)[n]) + n++ + } + *dest = (*dest)[:n] +} + +// measurement is a measurement made by a telemetry system. +type measurement struct { + // FilteredAttributes are the attributes dropped during the measurement. + FilteredAttributes []attribute.KeyValue + // Time is the time when the measurement was made. + Time time.Time + // Value is the value of the measurement. + Value Value + // SpanContext is the SpanContext active when a measurement was made. + SpanContext trace.SpanContext + + valid bool +} + +// newMeasurement returns a new non-empty Measurement. +func newMeasurement(ctx context.Context, ts time.Time, v Value, droppedAttr []attribute.KeyValue) measurement { + return measurement{ + FilteredAttributes: droppedAttr, + Time: ts, + Value: v, + SpanContext: trace.SpanContextFromContext(ctx), + valid: true, + } +} + +// exemplar returns m as an [Exemplar]. +func (m measurement) exemplar(dest *Exemplar) { + dest.FilteredAttributes = m.FilteredAttributes + dest.Time = m.Time + dest.Value = m.Value + + if m.SpanContext.HasTraceID() { + traceID := m.SpanContext.TraceID() + dest.TraceID = traceID[:] + } else { + dest.TraceID = dest.TraceID[:0] + } + + if m.SpanContext.HasSpanID() { + spanID := m.SpanContext.SpanID() + dest.SpanID = spanID[:] + } else { + dest.SpanID = dest.SpanID[:0] + } +} + +func reset[T any](s []T, length, capacity int) []T { + if cap(s) < capacity { + return make([]T, length, capacity) + } + return s[:length] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go new file mode 100644 index 0000000000..590b089a80 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exemplar/value.go @@ -0,0 +1,59 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package exemplar // import "go.opentelemetry.io/otel/sdk/metric/exemplar" + +import "math" + +// ValueType identifies the type of value used in exemplar data. +type ValueType uint8 + +const ( + // UnknownValueType should not be used. It represents a misconfigured + // Value. + UnknownValueType ValueType = 0 + // Int64ValueType represents a Value with int64 data. + Int64ValueType ValueType = 1 + // Float64ValueType represents a Value with float64 data. + Float64ValueType ValueType = 2 +) + +// Value is the value of data held by an exemplar. +type Value struct { + t ValueType + val uint64 +} + +// NewValue returns a new [Value] for the provided value. +func NewValue[N int64 | float64](value N) Value { + switch v := any(value).(type) { + case int64: + // This can be later converted back to int64 (overflow not checked). + return Value{t: Int64ValueType, val: uint64(v)} // nolint:gosec + case float64: + return Value{t: Float64ValueType, val: math.Float64bits(v)} + } + return Value{} +} + +// Type returns the [ValueType] of data held by v. +func (v Value) Type() ValueType { return v.t } + +// Int64 returns the value of v as an int64. If the ValueType of v is not an +// Int64ValueType, 0 is returned. +func (v Value) Int64() int64 { + if v.t == Int64ValueType { + // Assumes the correct int64 was stored in v.val based on type. + return int64(v.val) // nolint: gosec + } + return 0 +} + +// Float64 returns the value of v as an float64. If the ValueType of v is not +// an Float64ValueType, 0 is returned. +func (v Value) Float64() float64 { + if v.t == Float64ValueType { + return math.Float64frombits(v.val) + } + return 0 +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go new file mode 100644 index 0000000000..1969cb42cf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/exporter.go @@ -0,0 +1,77 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// ErrExporterShutdown is returned if Export or Shutdown are called after an +// Exporter has been Shutdown. +var ErrExporterShutdown = errors.New("exporter is shutdown") + +// Exporter handles the delivery of metric data to external receivers. This is +// the final component in the metric push pipeline. +type Exporter interface { + // Temporality returns the Temporality to use for an instrument kind. + // + // This method needs to be concurrent safe with itself and all the other + // Exporter methods. + Temporality(InstrumentKind) metricdata.Temporality + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Aggregation returns the Aggregation to use for an instrument kind. + // + // This method needs to be concurrent safe with itself and all the other + // Exporter methods. + Aggregation(InstrumentKind) Aggregation + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Export serializes and transmits metric data to a receiver. + // + // This is called synchronously, there is no concurrency safety + // requirement. Because of this, it is critical that all timeouts and + // cancellations of the passed context be honored. + // + // All retry logic must be contained in this function. The SDK does not + // implement any retry logic. All errors returned by this function are + // considered unrecoverable and will be reported to a configured error + // Handler. + // + // The passed ResourceMetrics may be reused when the call completes. If an + // exporter needs to hold this data after it returns, it needs to make a + // copy. + Export(context.Context, *metricdata.ResourceMetrics) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // ForceFlush flushes any metric data held by an exporter. + // + // The deadline or cancellation of the passed context must be honored. An + // appropriate error should be returned in these situations. + // + // This method needs to be concurrent safe. + ForceFlush(context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Shutdown flushes all metric data held by an exporter and releases any + // held computational resources. + // + // The deadline or cancellation of the passed context must be honored. An + // appropriate error should be returned in these situations. + // + // After Shutdown is called, calls to Export will perform no operation and + // instead will return an error indicating the shutdown state. + // + // This method needs to be concurrent safe. + Shutdown(context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go b/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go new file mode 100644 index 0000000000..18891ed5b1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/instrument.go @@ -0,0 +1,368 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:generate stringer -type=InstrumentKind -trimprefix=InstrumentKind + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + "fmt" + "strings" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + "go.opentelemetry.io/otel/sdk/metric/internal/x" +) + +var zeroScope instrumentation.Scope + +// InstrumentKind is the identifier of a group of instruments that all +// performing the same function. +type InstrumentKind uint8 + +const ( + // instrumentKindUndefined is an undefined instrument kind, it should not + // be used by any initialized type. + instrumentKindUndefined InstrumentKind = 0 // nolint:unused + // InstrumentKindCounter identifies a group of instruments that record + // increasing values synchronously with the code path they are measuring. + InstrumentKindCounter InstrumentKind = 1 + // InstrumentKindUpDownCounter identifies a group of instruments that + // record increasing and decreasing values synchronously with the code path + // they are measuring. + InstrumentKindUpDownCounter InstrumentKind = 2 + // InstrumentKindHistogram identifies a group of instruments that record a + // distribution of values synchronously with the code path they are + // measuring. + InstrumentKindHistogram InstrumentKind = 3 + // InstrumentKindObservableCounter identifies a group of instruments that + // record increasing values in an asynchronous callback. + InstrumentKindObservableCounter InstrumentKind = 4 + // InstrumentKindObservableUpDownCounter identifies a group of instruments + // that record increasing and decreasing values in an asynchronous + // callback. + InstrumentKindObservableUpDownCounter InstrumentKind = 5 + // InstrumentKindObservableGauge identifies a group of instruments that + // record current values in an asynchronous callback. + InstrumentKindObservableGauge InstrumentKind = 6 + // InstrumentKindGauge identifies a group of instruments that record + // instantaneous values synchronously with the code path they are + // measuring. + InstrumentKindGauge InstrumentKind = 7 +) + +type nonComparable [0]func() // nolint: unused // This is indeed used. + +// Instrument describes properties an instrument is created with. +type Instrument struct { + // Name is the human-readable identifier of the instrument. + Name string + // Description describes the purpose of the instrument. + Description string + // Kind defines the functional group of the instrument. + Kind InstrumentKind + // Unit is the unit of measurement recorded by the instrument. + Unit string + // Scope identifies the instrumentation that created the instrument. + Scope instrumentation.Scope + + // Ensure forward compatibility if non-comparable fields need to be added. + nonComparable // nolint: unused +} + +// IsEmpty returns if all Instrument fields are their zero-value. +func (i Instrument) IsEmpty() bool { + return i.Name == "" && + i.Description == "" && + i.Kind == instrumentKindUndefined && + i.Unit == "" && + i.Scope == zeroScope +} + +// matches returns whether all the non-zero-value fields of i match the +// corresponding fields of other. If i is empty it will match all other, and +// true will always be returned. +func (i Instrument) matches(other Instrument) bool { + return i.matchesName(other) && + i.matchesDescription(other) && + i.matchesKind(other) && + i.matchesUnit(other) && + i.matchesScope(other) +} + +// matchesName returns true if the Name of i is "" or it equals the Name of +// other, otherwise false. +func (i Instrument) matchesName(other Instrument) bool { + return i.Name == "" || i.Name == other.Name +} + +// matchesDescription returns true if the Description of i is "" or it equals +// the Description of other, otherwise false. +func (i Instrument) matchesDescription(other Instrument) bool { + return i.Description == "" || i.Description == other.Description +} + +// matchesKind returns true if the Kind of i is its zero-value or it equals the +// Kind of other, otherwise false. +func (i Instrument) matchesKind(other Instrument) bool { + return i.Kind == instrumentKindUndefined || i.Kind == other.Kind +} + +// matchesUnit returns true if the Unit of i is its zero-value or it equals the +// Unit of other, otherwise false. +func (i Instrument) matchesUnit(other Instrument) bool { + return i.Unit == "" || i.Unit == other.Unit +} + +// matchesScope returns true if the Scope of i is its zero-value or it equals +// the Scope of other, otherwise false. +func (i Instrument) matchesScope(other Instrument) bool { + return (i.Scope.Name == "" || i.Scope.Name == other.Scope.Name) && + (i.Scope.Version == "" || i.Scope.Version == other.Scope.Version) && + (i.Scope.SchemaURL == "" || i.Scope.SchemaURL == other.Scope.SchemaURL) +} + +// Stream describes the stream of data an instrument produces. +type Stream struct { + // Name is the human-readable identifier of the stream. + Name string + // Description describes the purpose of the data. + Description string + // Unit is the unit of measurement recorded. + Unit string + // Aggregation the stream uses for an instrument. + Aggregation Aggregation + // AttributeFilter is an attribute Filter applied to the attributes + // recorded for an instrument's measurement. If the filter returns false + // the attribute will not be recorded, otherwise, if it returns true, it + // will record the attribute. + // + // Use NewAllowKeysFilter from "go.opentelemetry.io/otel/attribute" to + // provide an allow-list of attribute keys here. + AttributeFilter attribute.Filter + // ExemplarReservoirProvider selects the + // [go.opentelemetry.io/otel/sdk/metric/exemplar.ReservoirProvider] based + // on the [Aggregation]. + // + // If unspecified, [DefaultExemplarReservoirProviderSelector] is used. + ExemplarReservoirProviderSelector ExemplarReservoirProviderSelector +} + +// instID are the identifying properties of a instrument. +type instID struct { + // Name is the name of the stream. + Name string + // Description is the description of the stream. + Description string + // Kind defines the functional group of the instrument. + Kind InstrumentKind + // Unit is the unit of the stream. + Unit string + // Number is the number type of the stream. + Number string +} + +// Returns a normalized copy of the instID i. +// +// Instrument names are considered case-insensitive. Standardize the instrument +// name to always be lowercase for the returned instID so it can be compared +// without the name casing affecting the comparison. +func (i instID) normalize() instID { + i.Name = strings.ToLower(i.Name) + return i +} + +type int64Inst struct { + measures []aggregate.Measure[int64] + + embedded.Int64Counter + embedded.Int64UpDownCounter + embedded.Int64Histogram + embedded.Int64Gauge +} + +var ( + _ metric.Int64Counter = (*int64Inst)(nil) + _ metric.Int64UpDownCounter = (*int64Inst)(nil) + _ metric.Int64Histogram = (*int64Inst)(nil) + _ metric.Int64Gauge = (*int64Inst)(nil) + _ x.EnabledInstrument = (*int64Inst)(nil) +) + +func (i *int64Inst) Add(ctx context.Context, val int64, opts ...metric.AddOption) { + c := metric.NewAddConfig(opts) + i.aggregate(ctx, val, c.Attributes()) +} + +func (i *int64Inst) Record(ctx context.Context, val int64, opts ...metric.RecordOption) { + c := metric.NewRecordConfig(opts) + i.aggregate(ctx, val, c.Attributes()) +} + +func (i *int64Inst) Enabled(_ context.Context) bool { + return len(i.measures) != 0 +} + +func (i *int64Inst) aggregate( + ctx context.Context, + val int64, + s attribute.Set, +) { // nolint:revive // okay to shadow pkg with method. + for _, in := range i.measures { + in(ctx, val, s) + } +} + +type float64Inst struct { + measures []aggregate.Measure[float64] + + embedded.Float64Counter + embedded.Float64UpDownCounter + embedded.Float64Histogram + embedded.Float64Gauge +} + +var ( + _ metric.Float64Counter = (*float64Inst)(nil) + _ metric.Float64UpDownCounter = (*float64Inst)(nil) + _ metric.Float64Histogram = (*float64Inst)(nil) + _ metric.Float64Gauge = (*float64Inst)(nil) + _ x.EnabledInstrument = (*float64Inst)(nil) +) + +func (i *float64Inst) Add(ctx context.Context, val float64, opts ...metric.AddOption) { + c := metric.NewAddConfig(opts) + i.aggregate(ctx, val, c.Attributes()) +} + +func (i *float64Inst) Record(ctx context.Context, val float64, opts ...metric.RecordOption) { + c := metric.NewRecordConfig(opts) + i.aggregate(ctx, val, c.Attributes()) +} + +func (i *float64Inst) Enabled(_ context.Context) bool { + return len(i.measures) != 0 +} + +func (i *float64Inst) aggregate(ctx context.Context, val float64, s attribute.Set) { + for _, in := range i.measures { + in(ctx, val, s) + } +} + +// observableID is a comparable unique identifier of an observable. +type observableID[N int64 | float64] struct { + name string + description string + kind InstrumentKind + unit string + scope instrumentation.Scope +} + +type float64Observable struct { + metric.Float64Observable + *observable[float64] + + embedded.Float64ObservableCounter + embedded.Float64ObservableUpDownCounter + embedded.Float64ObservableGauge +} + +var ( + _ metric.Float64ObservableCounter = float64Observable{} + _ metric.Float64ObservableUpDownCounter = float64Observable{} + _ metric.Float64ObservableGauge = float64Observable{} +) + +func newFloat64Observable(m *meter, kind InstrumentKind, name, desc, u string) float64Observable { + return float64Observable{ + observable: newObservable[float64](m, kind, name, desc, u), + } +} + +type int64Observable struct { + metric.Int64Observable + *observable[int64] + + embedded.Int64ObservableCounter + embedded.Int64ObservableUpDownCounter + embedded.Int64ObservableGauge +} + +var ( + _ metric.Int64ObservableCounter = int64Observable{} + _ metric.Int64ObservableUpDownCounter = int64Observable{} + _ metric.Int64ObservableGauge = int64Observable{} +) + +func newInt64Observable(m *meter, kind InstrumentKind, name, desc, u string) int64Observable { + return int64Observable{ + observable: newObservable[int64](m, kind, name, desc, u), + } +} + +type observable[N int64 | float64] struct { + metric.Observable + observableID[N] + + meter *meter + measures measures[N] + dropAggregation bool +} + +func newObservable[N int64 | float64](m *meter, kind InstrumentKind, name, desc, u string) *observable[N] { + return &observable[N]{ + observableID: observableID[N]{ + name: name, + description: desc, + kind: kind, + unit: u, + scope: m.scope, + }, + meter: m, + } +} + +// observe records the val for the set of attrs. +func (o *observable[N]) observe(val N, s attribute.Set) { + o.measures.observe(val, s) +} + +func (o *observable[N]) appendMeasures(meas []aggregate.Measure[N]) { + o.measures = append(o.measures, meas...) +} + +type measures[N int64 | float64] []aggregate.Measure[N] + +// observe records the val for the set of attrs. +func (m measures[N]) observe(val N, s attribute.Set) { + for _, in := range m { + in(context.Background(), val, s) + } +} + +var errEmptyAgg = errors.New("no aggregators for observable instrument") + +// registerable returns an error if the observable o should not be registered, +// and nil if it should. An errEmptyAgg error is returned if o is effectively a +// no-op because it does not have any aggregators. Also, an error is returned +// if scope defines a Meter other than the one o was created by. +func (o *observable[N]) registerable(m *meter) error { + if len(o.measures) == 0 { + return errEmptyAgg + } + if m != o.meter { + return fmt.Errorf( + "invalid registration: observable %q from Meter %q, registered with Meter %q", + o.name, + o.scope.Name, + m.scope.Name, + ) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/instrumentkind_string.go b/vendor/go.opentelemetry.io/otel/sdk/metric/instrumentkind_string.go new file mode 100644 index 0000000000..25ea6244e5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/instrumentkind_string.go @@ -0,0 +1,30 @@ +// Code generated by "stringer -type=InstrumentKind -trimprefix=InstrumentKind"; DO NOT EDIT. + +package metric + +import "strconv" + +func _() { + // An "invalid array index" compiler error signifies that the constant values have changed. + // Re-run the stringer command to generate them again. + var x [1]struct{} + _ = x[instrumentKindUndefined-0] + _ = x[InstrumentKindCounter-1] + _ = x[InstrumentKindUpDownCounter-2] + _ = x[InstrumentKindHistogram-3] + _ = x[InstrumentKindObservableCounter-4] + _ = x[InstrumentKindObservableUpDownCounter-5] + _ = x[InstrumentKindObservableGauge-6] + _ = x[InstrumentKindGauge-7] +} + +const _InstrumentKind_name = "instrumentKindUndefinedCounterUpDownCounterHistogramObservableCounterObservableUpDownCounterObservableGaugeGauge" + +var _InstrumentKind_index = [...]uint8{0, 23, 30, 43, 52, 69, 92, 107, 112} + +func (i InstrumentKind) String() string { + if i >= InstrumentKind(len(_InstrumentKind_index)-1) { + return "InstrumentKind(" + strconv.FormatInt(int64(i), 10) + ")" + } + return _InstrumentKind_name[_InstrumentKind_index[i]:_InstrumentKind_index[i+1]] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go new file mode 100644 index 0000000000..0321da6815 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/aggregate.go @@ -0,0 +1,159 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// now is used to return the current local time while allowing tests to +// override the default time.Now function. +var now = time.Now + +// Measure receives measurements to be aggregated. +type Measure[N int64 | float64] func(context.Context, N, attribute.Set) + +// ComputeAggregation stores the aggregate of measurements into dest and +// returns the number of aggregate data-points output. +type ComputeAggregation func(dest *metricdata.Aggregation) int + +// Builder builds an aggregate function. +type Builder[N int64 | float64] struct { + // Temporality is the temporality used for the returned aggregate function. + // + // If this is not provided a default of cumulative will be used (except for + // the last-value aggregate function where delta is the only appropriate + // temporality). + Temporality metricdata.Temporality + // Filter is the attribute filter the aggregate function will use on the + // input of measurements. + Filter attribute.Filter + // ReservoirFunc is the factory function used by aggregate functions to + // create new exemplar reservoirs for a new seen attribute set. + // + // If this is not provided a default factory function that returns an + // dropReservoir reservoir will be used. + ReservoirFunc func(attribute.Set) FilteredExemplarReservoir[N] + // AggregationLimit is the cardinality limit of measurement attributes. Any + // measurement for new attributes once the limit has been reached will be + // aggregated into a single aggregate for the "otel.metric.overflow" + // attribute. + // + // If AggregationLimit is less than or equal to zero there will not be an + // aggregation limit imposed (i.e. unlimited attribute sets). + AggregationLimit int +} + +func (b Builder[N]) resFunc() func(attribute.Set) FilteredExemplarReservoir[N] { + if b.ReservoirFunc != nil { + return b.ReservoirFunc + } + + return dropReservoir +} + +type fltrMeasure[N int64 | float64] func(ctx context.Context, value N, fltrAttr attribute.Set, droppedAttr []attribute.KeyValue) + +func (b Builder[N]) filter(f fltrMeasure[N]) Measure[N] { + if b.Filter != nil { + fltr := b.Filter // Copy to make it immutable after assignment. + return func(ctx context.Context, n N, a attribute.Set) { + fAttr, dropped := a.Filter(fltr) + f(ctx, n, fAttr, dropped) + } + } + return func(ctx context.Context, n N, a attribute.Set) { + f(ctx, n, a, nil) + } +} + +// LastValue returns a last-value aggregate function input and output. +func (b Builder[N]) LastValue() (Measure[N], ComputeAggregation) { + lv := newLastValue[N](b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(lv.measure), lv.delta + default: + return b.filter(lv.measure), lv.cumulative + } +} + +// PrecomputedLastValue returns a last-value aggregate function input and +// output. The aggregation returned from the returned ComputeAggregation +// function will always only return values from the previous collection cycle. +func (b Builder[N]) PrecomputedLastValue() (Measure[N], ComputeAggregation) { + lv := newPrecomputedLastValue[N](b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(lv.measure), lv.delta + default: + return b.filter(lv.measure), lv.cumulative + } +} + +// PrecomputedSum returns a sum aggregate function input and output. The +// arguments passed to the input are expected to be the precomputed sum values. +func (b Builder[N]) PrecomputedSum(monotonic bool) (Measure[N], ComputeAggregation) { + s := newPrecomputedSum[N](monotonic, b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(s.measure), s.delta + default: + return b.filter(s.measure), s.cumulative + } +} + +// Sum returns a sum aggregate function input and output. +func (b Builder[N]) Sum(monotonic bool) (Measure[N], ComputeAggregation) { + s := newSum[N](monotonic, b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(s.measure), s.delta + default: + return b.filter(s.measure), s.cumulative + } +} + +// ExplicitBucketHistogram returns a histogram aggregate function input and +// output. +func (b Builder[N]) ExplicitBucketHistogram( + boundaries []float64, + noMinMax, noSum bool, +) (Measure[N], ComputeAggregation) { + h := newHistogram[N](boundaries, noMinMax, noSum, b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(h.measure), h.delta + default: + return b.filter(h.measure), h.cumulative + } +} + +// ExponentialBucketHistogram returns a histogram aggregate function input and +// output. +func (b Builder[N]) ExponentialBucketHistogram( + maxSize, maxScale int32, + noMinMax, noSum bool, +) (Measure[N], ComputeAggregation) { + h := newExponentialHistogram[N](maxSize, maxScale, noMinMax, noSum, b.AggregationLimit, b.resFunc()) + switch b.Temporality { + case metricdata.DeltaTemporality: + return b.filter(h.measure), h.delta + default: + return b.filter(h.measure), h.cumulative + } +} + +// reset ensures s has capacity and sets it length. If the capacity of s too +// small, a new slice is returned with the specified capacity and length. +func reset[T any](s []T, length, capacity int) []T { + if cap(s) < capacity { + return make([]T, length, capacity) + } + return s[:length] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go new file mode 100644 index 0000000000..7b7225e6ef --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/doc.go @@ -0,0 +1,7 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package aggregate provides aggregate types used compute aggregations and +// cycle the state of metric measurements made by the SDK. These types and +// functionality are meant only for internal SDK use. +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go new file mode 100644 index 0000000000..8396faaa4a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/drop.go @@ -0,0 +1,27 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/exemplar" +) + +// dropReservoir returns a [FilteredReservoir] that drops all measurements it is offered. +func dropReservoir[N int64 | float64](attribute.Set) FilteredExemplarReservoir[N] { + return &dropRes[N]{} +} + +type dropRes[N int64 | float64] struct{} + +// Offer does nothing, all measurements offered will be dropped. +func (r *dropRes[N]) Offer(context.Context, N, []attribute.KeyValue) {} + +// Collect resets dest. No exemplars will ever be returned. +func (r *dropRes[N]) Collect(dest *[]exemplar.Exemplar) { + clear(*dest) // Erase elements to let GC collect objects + *dest = (*dest)[:0] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go new file mode 100644 index 0000000000..25d709948e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exemplar.go @@ -0,0 +1,43 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "sync" + + "go.opentelemetry.io/otel/sdk/metric/exemplar" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +var exemplarPool = sync.Pool{ + New: func() any { return new([]exemplar.Exemplar) }, +} + +func collectExemplars[N int64 | float64](out *[]metricdata.Exemplar[N], f func(*[]exemplar.Exemplar)) { + dest := exemplarPool.Get().(*[]exemplar.Exemplar) + defer func() { + clear(*dest) // Erase elements to let GC collect objects. + *dest = (*dest)[:0] + exemplarPool.Put(dest) + }() + + *dest = reset(*dest, len(*out), cap(*out)) + + f(dest) + + *out = reset(*out, len(*dest), cap(*dest)) + for i, e := range *dest { + (*out)[i].FilteredAttributes = e.FilteredAttributes + (*out)[i].Time = e.Time + (*out)[i].SpanID = e.SpanID + (*out)[i].TraceID = e.TraceID + + switch e.Value.Type() { + case exemplar.Int64ValueType: + (*out)[i].Value = N(e.Value.Int64()) + case exemplar.Float64ValueType: + (*out)[i].Value = N(e.Value.Float64()) + } + } +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go new file mode 100644 index 0000000000..ae1f593440 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/exponential_histogram.go @@ -0,0 +1,474 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "errors" + "math" + "sync" + "time" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +const ( + expoMaxScale = 20 + expoMinScale = -10 + + smallestNonZeroNormalFloat64 = 0x1p-1022 + + // These redefine the Math constants with a type, so the compiler won't coerce + // them into an int on 32 bit platforms. + maxInt64 int64 = math.MaxInt64 + minInt64 int64 = math.MinInt64 +) + +// expoHistogramDataPoint is a single data point in an exponential histogram. +type expoHistogramDataPoint[N int64 | float64] struct { + attrs attribute.Set + res FilteredExemplarReservoir[N] + + count uint64 + min N + max N + sum N + + maxSize int + noMinMax bool + noSum bool + + scale int32 + + posBuckets expoBuckets + negBuckets expoBuckets + zeroCount uint64 +} + +func newExpoHistogramDataPoint[N int64 | float64]( + attrs attribute.Set, + maxSize int, + maxScale int32, + noMinMax, noSum bool, +) *expoHistogramDataPoint[N] { // nolint:revive // we need this control flag + f := math.MaxFloat64 + ma := N(f) // if N is int64, max will overflow to -9223372036854775808 + mi := N(-f) + if N(maxInt64) > N(f) { + ma = N(maxInt64) + mi = N(minInt64) + } + return &expoHistogramDataPoint[N]{ + attrs: attrs, + min: ma, + max: mi, + maxSize: maxSize, + noMinMax: noMinMax, + noSum: noSum, + scale: maxScale, + } +} + +// record adds a new measurement to the histogram. It will rescale the buckets if needed. +func (p *expoHistogramDataPoint[N]) record(v N) { + p.count++ + + if !p.noMinMax { + if v < p.min { + p.min = v + } + if v > p.max { + p.max = v + } + } + if !p.noSum { + p.sum += v + } + + absV := math.Abs(float64(v)) + + if float64(absV) == 0.0 { + p.zeroCount++ + return + } + + bin := p.getBin(absV) + + bucket := &p.posBuckets + if v < 0 { + bucket = &p.negBuckets + } + + // If the new bin would make the counts larger than maxScale, we need to + // downscale current measurements. + if scaleDelta := p.scaleChange(bin, bucket.startBin, len(bucket.counts)); scaleDelta > 0 { + if p.scale-scaleDelta < expoMinScale { + // With a scale of -10 there is only two buckets for the whole range of float64 values. + // This can only happen if there is a max size of 1. + otel.Handle(errors.New("exponential histogram scale underflow")) + return + } + // Downscale + p.scale -= scaleDelta + p.posBuckets.downscale(scaleDelta) + p.negBuckets.downscale(scaleDelta) + + bin = p.getBin(absV) + } + + bucket.record(bin) +} + +// getBin returns the bin v should be recorded into. +func (p *expoHistogramDataPoint[N]) getBin(v float64) int32 { + frac, expInt := math.Frexp(v) + // 11-bit exponential. + exp := int32(expInt) // nolint: gosec + if p.scale <= 0 { + // Because of the choice of fraction is always 1 power of two higher than we want. + var correction int32 = 1 + if frac == .5 { + // If v is an exact power of two the frac will be .5 and the exp + // will be one higher than we want. + correction = 2 + } + return (exp - correction) >> (-p.scale) + } + return exp<= bin { + low = int(bin) + high = int(startBin) + length - 1 + } + + var count int32 + for high-low >= p.maxSize { + low = low >> 1 + high = high >> 1 + count++ + if count > expoMaxScale-expoMinScale { + return count + } + } + return count +} + +// expoBuckets is a set of buckets in an exponential histogram. +type expoBuckets struct { + startBin int32 + counts []uint64 +} + +// record increments the count for the given bin, and expands the buckets if needed. +// Size changes must be done before calling this function. +func (b *expoBuckets) record(bin int32) { + if len(b.counts) == 0 { + b.counts = []uint64{1} + b.startBin = bin + return + } + + endBin := int(b.startBin) + len(b.counts) - 1 + + // if the new bin is inside the current range + if bin >= b.startBin && int(bin) <= endBin { + b.counts[bin-b.startBin]++ + return + } + // if the new bin is before the current start add spaces to the counts + if bin < b.startBin { + origLen := len(b.counts) + newLength := endBin - int(bin) + 1 + shift := b.startBin - bin + + if newLength > cap(b.counts) { + b.counts = append(b.counts, make([]uint64, newLength-len(b.counts))...) + } + + copy(b.counts[shift:origLen+int(shift)], b.counts[:]) + b.counts = b.counts[:newLength] + for i := 1; i < int(shift); i++ { + b.counts[i] = 0 + } + b.startBin = bin + b.counts[0] = 1 + return + } + // if the new is after the end add spaces to the end + if int(bin) > endBin { + if int(bin-b.startBin) < cap(b.counts) { + b.counts = b.counts[:bin-b.startBin+1] + for i := endBin + 1 - int(b.startBin); i < len(b.counts); i++ { + b.counts[i] = 0 + } + b.counts[bin-b.startBin] = 1 + return + } + + end := make([]uint64, int(bin-b.startBin)-len(b.counts)+1) + b.counts = append(b.counts, end...) + b.counts[bin-b.startBin] = 1 + } +} + +// downscale shrinks a bucket by a factor of 2*s. It will sum counts into the +// correct lower resolution bucket. +func (b *expoBuckets) downscale(delta int32) { + // Example + // delta = 2 + // Original offset: -6 + // Counts: [ 3, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10] + // bins: -6 -5, -4, -3, -2, -1, 0, 1, 2, 3, 4 + // new bins:-2, -2, -1, -1, -1, -1, 0, 0, 0, 0, 1 + // new Offset: -2 + // new Counts: [4, 14, 30, 10] + + if len(b.counts) <= 1 || delta < 1 { + b.startBin = b.startBin >> delta + return + } + + steps := int32(1) << delta + offset := b.startBin % steps + offset = (offset + steps) % steps // to make offset positive + for i := 1; i < len(b.counts); i++ { + idx := i + int(offset) + if idx%int(steps) == 0 { + b.counts[idx/int(steps)] = b.counts[i] + continue + } + b.counts[idx/int(steps)] += b.counts[i] + } + + lastIdx := (len(b.counts) - 1 + int(offset)) / int(steps) + b.counts = b.counts[:lastIdx+1] + b.startBin = b.startBin >> delta +} + +// newExponentialHistogram returns an Aggregator that summarizes a set of +// measurements as an exponential histogram. Each histogram is scoped by attributes +// and the aggregation cycle the measurements were made in. +func newExponentialHistogram[N int64 | float64]( + maxSize, maxScale int32, + noMinMax, noSum bool, + limit int, + r func(attribute.Set) FilteredExemplarReservoir[N], +) *expoHistogram[N] { + return &expoHistogram[N]{ + noSum: noSum, + noMinMax: noMinMax, + maxSize: int(maxSize), + maxScale: maxScale, + + newRes: r, + limit: newLimiter[*expoHistogramDataPoint[N]](limit), + values: make(map[attribute.Distinct]*expoHistogramDataPoint[N]), + + start: now(), + } +} + +// expoHistogram summarizes a set of measurements as an histogram with exponentially +// defined buckets. +type expoHistogram[N int64 | float64] struct { + noSum bool + noMinMax bool + maxSize int + maxScale int32 + + newRes func(attribute.Set) FilteredExemplarReservoir[N] + limit limiter[*expoHistogramDataPoint[N]] + values map[attribute.Distinct]*expoHistogramDataPoint[N] + valuesMu sync.Mutex + + start time.Time +} + +func (e *expoHistogram[N]) measure( + ctx context.Context, + value N, + fltrAttr attribute.Set, + droppedAttr []attribute.KeyValue, +) { + // Ignore NaN and infinity. + if math.IsInf(float64(value), 0) || math.IsNaN(float64(value)) { + return + } + + e.valuesMu.Lock() + defer e.valuesMu.Unlock() + + attr := e.limit.Attributes(fltrAttr, e.values) + v, ok := e.values[attr.Equivalent()] + if !ok { + v = newExpoHistogramDataPoint[N](attr, e.maxSize, e.maxScale, e.noMinMax, e.noSum) + v.res = e.newRes(attr) + + e.values[attr.Equivalent()] = v + } + v.record(value) + v.res.Offer(ctx, value, droppedAttr) +} + +func (e *expoHistogram[N]) delta(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.ExponentialHistogram, memory reuse is missed. + // In that case, use the zero-value h and hope for better alignment next cycle. + h, _ := (*dest).(metricdata.ExponentialHistogram[N]) + h.Temporality = metricdata.DeltaTemporality + + e.valuesMu.Lock() + defer e.valuesMu.Unlock() + + n := len(e.values) + hDPts := reset(h.DataPoints, n, n) + + var i int + for _, val := range e.values { + hDPts[i].Attributes = val.attrs + hDPts[i].StartTime = e.start + hDPts[i].Time = t + hDPts[i].Count = val.count + hDPts[i].Scale = val.scale + hDPts[i].ZeroCount = val.zeroCount + hDPts[i].ZeroThreshold = 0.0 + + hDPts[i].PositiveBucket.Offset = val.posBuckets.startBin + hDPts[i].PositiveBucket.Counts = reset( + hDPts[i].PositiveBucket.Counts, + len(val.posBuckets.counts), + len(val.posBuckets.counts), + ) + copy(hDPts[i].PositiveBucket.Counts, val.posBuckets.counts) + + hDPts[i].NegativeBucket.Offset = val.negBuckets.startBin + hDPts[i].NegativeBucket.Counts = reset( + hDPts[i].NegativeBucket.Counts, + len(val.negBuckets.counts), + len(val.negBuckets.counts), + ) + copy(hDPts[i].NegativeBucket.Counts, val.negBuckets.counts) + + if !e.noSum { + hDPts[i].Sum = val.sum + } + if !e.noMinMax { + hDPts[i].Min = metricdata.NewExtrema(val.min) + hDPts[i].Max = metricdata.NewExtrema(val.max) + } + + collectExemplars(&hDPts[i].Exemplars, val.res.Collect) + + i++ + } + // Unused attribute sets do not report. + clear(e.values) + + e.start = t + h.DataPoints = hDPts + *dest = h + return n +} + +func (e *expoHistogram[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.ExponentialHistogram, memory reuse is missed. + // In that case, use the zero-value h and hope for better alignment next cycle. + h, _ := (*dest).(metricdata.ExponentialHistogram[N]) + h.Temporality = metricdata.CumulativeTemporality + + e.valuesMu.Lock() + defer e.valuesMu.Unlock() + + n := len(e.values) + hDPts := reset(h.DataPoints, n, n) + + var i int + for _, val := range e.values { + hDPts[i].Attributes = val.attrs + hDPts[i].StartTime = e.start + hDPts[i].Time = t + hDPts[i].Count = val.count + hDPts[i].Scale = val.scale + hDPts[i].ZeroCount = val.zeroCount + hDPts[i].ZeroThreshold = 0.0 + + hDPts[i].PositiveBucket.Offset = val.posBuckets.startBin + hDPts[i].PositiveBucket.Counts = reset( + hDPts[i].PositiveBucket.Counts, + len(val.posBuckets.counts), + len(val.posBuckets.counts), + ) + copy(hDPts[i].PositiveBucket.Counts, val.posBuckets.counts) + + hDPts[i].NegativeBucket.Offset = val.negBuckets.startBin + hDPts[i].NegativeBucket.Counts = reset( + hDPts[i].NegativeBucket.Counts, + len(val.negBuckets.counts), + len(val.negBuckets.counts), + ) + copy(hDPts[i].NegativeBucket.Counts, val.negBuckets.counts) + + if !e.noSum { + hDPts[i].Sum = val.sum + } + if !e.noMinMax { + hDPts[i].Min = metricdata.NewExtrema(val.min) + hDPts[i].Max = metricdata.NewExtrema(val.max) + } + + collectExemplars(&hDPts[i].Exemplars, val.res.Collect) + + i++ + // TODO (#3006): This will use an unbounded amount of memory if there + // are unbounded number of attribute sets being aggregated. Attribute + // sets that become "stale" need to be forgotten so this will not + // overload the system. + } + + h.DataPoints = hDPts + *dest = h + return n +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go new file mode 100644 index 0000000000..d4c41642d7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/filtered_reservoir.go @@ -0,0 +1,53 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/exemplar" +) + +// FilteredExemplarReservoir wraps a [exemplar.Reservoir] with a filter. +type FilteredExemplarReservoir[N int64 | float64] interface { + // Offer accepts the parameters associated with a measurement. The + // parameters will be stored as an exemplar if the filter decides to + // sample the measurement. + // + // The passed ctx needs to contain any baggage or span that were active + // when the measurement was made. This information may be used by the + // Reservoir in making a sampling decision. + Offer(ctx context.Context, val N, attr []attribute.KeyValue) + // Collect returns all the held exemplars in the reservoir. + Collect(dest *[]exemplar.Exemplar) +} + +// filteredExemplarReservoir handles the pre-sampled exemplar of measurements made. +type filteredExemplarReservoir[N int64 | float64] struct { + filter exemplar.Filter + reservoir exemplar.Reservoir +} + +// NewFilteredExemplarReservoir creates a [FilteredExemplarReservoir] which only offers values +// that are allowed by the filter. +func NewFilteredExemplarReservoir[N int64 | float64]( + f exemplar.Filter, + r exemplar.Reservoir, +) FilteredExemplarReservoir[N] { + return &filteredExemplarReservoir[N]{ + filter: f, + reservoir: r, + } +} + +func (f *filteredExemplarReservoir[N]) Offer(ctx context.Context, val N, attr []attribute.KeyValue) { + if f.filter(ctx) { + // only record the current time if we are sampling this measurement. + f.reservoir.Offer(ctx, time.Now(), exemplar.NewValue(val), attr) + } +} + +func (f *filteredExemplarReservoir[N]) Collect(dest *[]exemplar.Exemplar) { f.reservoir.Collect(dest) } diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go new file mode 100644 index 0000000000..d3068484cf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/histogram.go @@ -0,0 +1,247 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "slices" + "sort" + "sync" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +type buckets[N int64 | float64] struct { + attrs attribute.Set + res FilteredExemplarReservoir[N] + + counts []uint64 + count uint64 + total N + min, max N +} + +// newBuckets returns buckets with n bins. +func newBuckets[N int64 | float64](attrs attribute.Set, n int) *buckets[N] { + return &buckets[N]{attrs: attrs, counts: make([]uint64, n)} +} + +func (b *buckets[N]) sum(value N) { b.total += value } + +func (b *buckets[N]) bin(idx int, value N) { + b.counts[idx]++ + b.count++ + if value < b.min { + b.min = value + } else if value > b.max { + b.max = value + } +} + +// histValues summarizes a set of measurements as an histValues with +// explicitly defined buckets. +type histValues[N int64 | float64] struct { + noSum bool + bounds []float64 + + newRes func(attribute.Set) FilteredExemplarReservoir[N] + limit limiter[*buckets[N]] + values map[attribute.Distinct]*buckets[N] + valuesMu sync.Mutex +} + +func newHistValues[N int64 | float64]( + bounds []float64, + noSum bool, + limit int, + r func(attribute.Set) FilteredExemplarReservoir[N], +) *histValues[N] { + // The responsibility of keeping all buckets correctly associated with the + // passed boundaries is ultimately this type's responsibility. Make a copy + // here so we can always guarantee this. Or, in the case of failure, have + // complete control over the fix. + b := slices.Clone(bounds) + slices.Sort(b) + return &histValues[N]{ + noSum: noSum, + bounds: b, + newRes: r, + limit: newLimiter[*buckets[N]](limit), + values: make(map[attribute.Distinct]*buckets[N]), + } +} + +// Aggregate records the measurement value, scoped by attr, and aggregates it +// into a histogram. +func (s *histValues[N]) measure( + ctx context.Context, + value N, + fltrAttr attribute.Set, + droppedAttr []attribute.KeyValue, +) { + // This search will return an index in the range [0, len(s.bounds)], where + // it will return len(s.bounds) if value is greater than the last element + // of s.bounds. This aligns with the buckets in that the length of buckets + // is len(s.bounds)+1, with the last bucket representing: + // (s.bounds[len(s.bounds)-1], +∞). + idx := sort.SearchFloat64s(s.bounds, float64(value)) + + s.valuesMu.Lock() + defer s.valuesMu.Unlock() + + attr := s.limit.Attributes(fltrAttr, s.values) + b, ok := s.values[attr.Equivalent()] + if !ok { + // N+1 buckets. For example: + // + // bounds = [0, 5, 10] + // + // Then, + // + // buckets = (-∞, 0], (0, 5.0], (5.0, 10.0], (10.0, +∞) + b = newBuckets[N](attr, len(s.bounds)+1) + b.res = s.newRes(attr) + + // Ensure min and max are recorded values (not zero), for new buckets. + b.min, b.max = value, value + s.values[attr.Equivalent()] = b + } + b.bin(idx, value) + if !s.noSum { + b.sum(value) + } + b.res.Offer(ctx, value, droppedAttr) +} + +// newHistogram returns an Aggregator that summarizes a set of measurements as +// an histogram. +func newHistogram[N int64 | float64]( + boundaries []float64, + noMinMax, noSum bool, + limit int, + r func(attribute.Set) FilteredExemplarReservoir[N], +) *histogram[N] { + return &histogram[N]{ + histValues: newHistValues[N](boundaries, noSum, limit, r), + noMinMax: noMinMax, + start: now(), + } +} + +// histogram summarizes a set of measurements as an histogram with explicitly +// defined buckets. +type histogram[N int64 | float64] struct { + *histValues[N] + + noMinMax bool + start time.Time +} + +func (s *histogram[N]) delta(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.Histogram, memory reuse is missed. In that + // case, use the zero-value h and hope for better alignment next cycle. + h, _ := (*dest).(metricdata.Histogram[N]) + h.Temporality = metricdata.DeltaTemporality + + s.valuesMu.Lock() + defer s.valuesMu.Unlock() + + // Do not allow modification of our copy of bounds. + bounds := slices.Clone(s.bounds) + + n := len(s.values) + hDPts := reset(h.DataPoints, n, n) + + var i int + for _, val := range s.values { + hDPts[i].Attributes = val.attrs + hDPts[i].StartTime = s.start + hDPts[i].Time = t + hDPts[i].Count = val.count + hDPts[i].Bounds = bounds + hDPts[i].BucketCounts = val.counts + + if !s.noSum { + hDPts[i].Sum = val.total + } + + if !s.noMinMax { + hDPts[i].Min = metricdata.NewExtrema(val.min) + hDPts[i].Max = metricdata.NewExtrema(val.max) + } + + collectExemplars(&hDPts[i].Exemplars, val.res.Collect) + + i++ + } + // Unused attribute sets do not report. + clear(s.values) + // The delta collection cycle resets. + s.start = t + + h.DataPoints = hDPts + *dest = h + + return n +} + +func (s *histogram[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.Histogram, memory reuse is missed. In that + // case, use the zero-value h and hope for better alignment next cycle. + h, _ := (*dest).(metricdata.Histogram[N]) + h.Temporality = metricdata.CumulativeTemporality + + s.valuesMu.Lock() + defer s.valuesMu.Unlock() + + // Do not allow modification of our copy of bounds. + bounds := slices.Clone(s.bounds) + + n := len(s.values) + hDPts := reset(h.DataPoints, n, n) + + var i int + for _, val := range s.values { + hDPts[i].Attributes = val.attrs + hDPts[i].StartTime = s.start + hDPts[i].Time = t + hDPts[i].Count = val.count + hDPts[i].Bounds = bounds + + // The HistogramDataPoint field values returned need to be copies of + // the buckets value as we will keep updating them. + // + // TODO (#3047): Making copies for bounds and counts incurs a large + // memory allocation footprint. Alternatives should be explored. + hDPts[i].BucketCounts = slices.Clone(val.counts) + + if !s.noSum { + hDPts[i].Sum = val.total + } + + if !s.noMinMax { + hDPts[i].Min = metricdata.NewExtrema(val.min) + hDPts[i].Max = metricdata.NewExtrema(val.max) + } + + collectExemplars(&hDPts[i].Exemplars, val.res.Collect) + + i++ + // TODO (#3006): This will use an unbounded amount of memory if there + // are unbounded number of attribute sets being aggregated. Attribute + // sets that become "stale" need to be forgotten so this will not + // overload the system. + } + + h.DataPoints = hDPts + *dest = h + + return n +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go new file mode 100644 index 0000000000..350ccebdcb --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/lastvalue.go @@ -0,0 +1,164 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "sync" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// datapoint is timestamped measurement data. +type datapoint[N int64 | float64] struct { + attrs attribute.Set + value N + res FilteredExemplarReservoir[N] +} + +func newLastValue[N int64 | float64](limit int, r func(attribute.Set) FilteredExemplarReservoir[N]) *lastValue[N] { + return &lastValue[N]{ + newRes: r, + limit: newLimiter[datapoint[N]](limit), + values: make(map[attribute.Distinct]datapoint[N]), + start: now(), + } +} + +// lastValue summarizes a set of measurements as the last one made. +type lastValue[N int64 | float64] struct { + sync.Mutex + + newRes func(attribute.Set) FilteredExemplarReservoir[N] + limit limiter[datapoint[N]] + values map[attribute.Distinct]datapoint[N] + start time.Time +} + +func (s *lastValue[N]) measure(ctx context.Context, value N, fltrAttr attribute.Set, droppedAttr []attribute.KeyValue) { + s.Lock() + defer s.Unlock() + + attr := s.limit.Attributes(fltrAttr, s.values) + d, ok := s.values[attr.Equivalent()] + if !ok { + d.res = s.newRes(attr) + } + + d.attrs = attr + d.value = value + d.res.Offer(ctx, value, droppedAttr) + + s.values[attr.Equivalent()] = d +} + +func (s *lastValue[N]) delta(dest *metricdata.Aggregation) int { + t := now() + // Ignore if dest is not a metricdata.Gauge. The chance for memory reuse of + // the DataPoints is missed (better luck next time). + gData, _ := (*dest).(metricdata.Gauge[N]) + + s.Lock() + defer s.Unlock() + + n := s.copyDpts(&gData.DataPoints, t) + // Do not report stale values. + clear(s.values) + // Update start time for delta temporality. + s.start = t + + *dest = gData + + return n +} + +func (s *lastValue[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + // Ignore if dest is not a metricdata.Gauge. The chance for memory reuse of + // the DataPoints is missed (better luck next time). + gData, _ := (*dest).(metricdata.Gauge[N]) + + s.Lock() + defer s.Unlock() + + n := s.copyDpts(&gData.DataPoints, t) + // TODO (#3006): This will use an unbounded amount of memory if there + // are unbounded number of attribute sets being aggregated. Attribute + // sets that become "stale" need to be forgotten so this will not + // overload the system. + *dest = gData + + return n +} + +// copyDpts copies the datapoints held by s into dest. The number of datapoints +// copied is returned. +func (s *lastValue[N]) copyDpts(dest *[]metricdata.DataPoint[N], t time.Time) int { + n := len(s.values) + *dest = reset(*dest, n, n) + + var i int + for _, v := range s.values { + (*dest)[i].Attributes = v.attrs + (*dest)[i].StartTime = s.start + (*dest)[i].Time = t + (*dest)[i].Value = v.value + collectExemplars(&(*dest)[i].Exemplars, v.res.Collect) + i++ + } + return n +} + +// newPrecomputedLastValue returns an aggregator that summarizes a set of +// observations as the last one made. +func newPrecomputedLastValue[N int64 | float64]( + limit int, + r func(attribute.Set) FilteredExemplarReservoir[N], +) *precomputedLastValue[N] { + return &precomputedLastValue[N]{lastValue: newLastValue[N](limit, r)} +} + +// precomputedLastValue summarizes a set of observations as the last one made. +type precomputedLastValue[N int64 | float64] struct { + *lastValue[N] +} + +func (s *precomputedLastValue[N]) delta(dest *metricdata.Aggregation) int { + t := now() + // Ignore if dest is not a metricdata.Gauge. The chance for memory reuse of + // the DataPoints is missed (better luck next time). + gData, _ := (*dest).(metricdata.Gauge[N]) + + s.Lock() + defer s.Unlock() + + n := s.copyDpts(&gData.DataPoints, t) + // Do not report stale values. + clear(s.values) + // Update start time for delta temporality. + s.start = t + + *dest = gData + + return n +} + +func (s *precomputedLastValue[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + // Ignore if dest is not a metricdata.Gauge. The chance for memory reuse of + // the DataPoints is missed (better luck next time). + gData, _ := (*dest).(metricdata.Gauge[N]) + + s.Lock() + defer s.Unlock() + + n := s.copyDpts(&gData.DataPoints, t) + // Do not report stale values. + clear(s.values) + *dest = gData + + return n +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go new file mode 100644 index 0000000000..9ea0251edd --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/limit.go @@ -0,0 +1,42 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import "go.opentelemetry.io/otel/attribute" + +// overflowSet is the attribute set used to record a measurement when adding +// another distinct attribute set to the aggregate would exceed the aggregate +// limit. +var overflowSet = attribute.NewSet(attribute.Bool("otel.metric.overflow", true)) + +// limiter limits aggregate values. +type limiter[V any] struct { + // aggLimit is the maximum number of metric streams that can be aggregated. + // + // Any metric stream with attributes distinct from any set already + // aggregated once the aggLimit will be meet will instead be aggregated + // into an "overflow" metric stream. That stream will only contain the + // "otel.metric.overflow"=true attribute. + aggLimit int +} + +// newLimiter returns a new Limiter with the provided aggregation limit. +func newLimiter[V any](aggregation int) limiter[V] { + return limiter[V]{aggLimit: aggregation} +} + +// Attributes checks if adding a measurement for attrs will exceed the +// aggregation cardinality limit for the existing measurements. If it will, +// overflowSet is returned. Otherwise, if it will not exceed the limit, or the +// limit is not set (limit <= 0), attr is returned. +func (l limiter[V]) Attributes(attrs attribute.Set, measurements map[attribute.Distinct]V) attribute.Set { + if l.aggLimit > 0 { + _, exists := measurements[attrs.Equivalent()] + if !exists && len(measurements) >= l.aggLimit-1 { + return overflowSet + } + } + + return attrs +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go new file mode 100644 index 0000000000..612cde4327 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/aggregate/sum.go @@ -0,0 +1,241 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package aggregate // import "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + +import ( + "context" + "sync" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +type sumValue[N int64 | float64] struct { + n N + res FilteredExemplarReservoir[N] + attrs attribute.Set +} + +// valueMap is the storage for sums. +type valueMap[N int64 | float64] struct { + sync.Mutex + newRes func(attribute.Set) FilteredExemplarReservoir[N] + limit limiter[sumValue[N]] + values map[attribute.Distinct]sumValue[N] +} + +func newValueMap[N int64 | float64](limit int, r func(attribute.Set) FilteredExemplarReservoir[N]) *valueMap[N] { + return &valueMap[N]{ + newRes: r, + limit: newLimiter[sumValue[N]](limit), + values: make(map[attribute.Distinct]sumValue[N]), + } +} + +func (s *valueMap[N]) measure(ctx context.Context, value N, fltrAttr attribute.Set, droppedAttr []attribute.KeyValue) { + s.Lock() + defer s.Unlock() + + attr := s.limit.Attributes(fltrAttr, s.values) + v, ok := s.values[attr.Equivalent()] + if !ok { + v.res = s.newRes(attr) + } + + v.attrs = attr + v.n += value + v.res.Offer(ctx, value, droppedAttr) + + s.values[attr.Equivalent()] = v +} + +// newSum returns an aggregator that summarizes a set of measurements as their +// arithmetic sum. Each sum is scoped by attributes and the aggregation cycle +// the measurements were made in. +func newSum[N int64 | float64](monotonic bool, limit int, r func(attribute.Set) FilteredExemplarReservoir[N]) *sum[N] { + return &sum[N]{ + valueMap: newValueMap[N](limit, r), + monotonic: monotonic, + start: now(), + } +} + +// sum summarizes a set of measurements made as their arithmetic sum. +type sum[N int64 | float64] struct { + *valueMap[N] + + monotonic bool + start time.Time +} + +func (s *sum[N]) delta(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.Sum, memory reuse is missed. In that case, + // use the zero-value sData and hope for better alignment next cycle. + sData, _ := (*dest).(metricdata.Sum[N]) + sData.Temporality = metricdata.DeltaTemporality + sData.IsMonotonic = s.monotonic + + s.Lock() + defer s.Unlock() + + n := len(s.values) + dPts := reset(sData.DataPoints, n, n) + + var i int + for _, val := range s.values { + dPts[i].Attributes = val.attrs + dPts[i].StartTime = s.start + dPts[i].Time = t + dPts[i].Value = val.n + collectExemplars(&dPts[i].Exemplars, val.res.Collect) + i++ + } + // Do not report stale values. + clear(s.values) + // The delta collection cycle resets. + s.start = t + + sData.DataPoints = dPts + *dest = sData + + return n +} + +func (s *sum[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.Sum, memory reuse is missed. In that case, + // use the zero-value sData and hope for better alignment next cycle. + sData, _ := (*dest).(metricdata.Sum[N]) + sData.Temporality = metricdata.CumulativeTemporality + sData.IsMonotonic = s.monotonic + + s.Lock() + defer s.Unlock() + + n := len(s.values) + dPts := reset(sData.DataPoints, n, n) + + var i int + for _, value := range s.values { + dPts[i].Attributes = value.attrs + dPts[i].StartTime = s.start + dPts[i].Time = t + dPts[i].Value = value.n + collectExemplars(&dPts[i].Exemplars, value.res.Collect) + // TODO (#3006): This will use an unbounded amount of memory if there + // are unbounded number of attribute sets being aggregated. Attribute + // sets that become "stale" need to be forgotten so this will not + // overload the system. + i++ + } + + sData.DataPoints = dPts + *dest = sData + + return n +} + +// newPrecomputedSum returns an aggregator that summarizes a set of +// observations as their arithmetic sum. Each sum is scoped by attributes and +// the aggregation cycle the measurements were made in. +func newPrecomputedSum[N int64 | float64]( + monotonic bool, + limit int, + r func(attribute.Set) FilteredExemplarReservoir[N], +) *precomputedSum[N] { + return &precomputedSum[N]{ + valueMap: newValueMap[N](limit, r), + monotonic: monotonic, + start: now(), + } +} + +// precomputedSum summarizes a set of observations as their arithmetic sum. +type precomputedSum[N int64 | float64] struct { + *valueMap[N] + + monotonic bool + start time.Time + + reported map[attribute.Distinct]N +} + +func (s *precomputedSum[N]) delta(dest *metricdata.Aggregation) int { + t := now() + newReported := make(map[attribute.Distinct]N) + + // If *dest is not a metricdata.Sum, memory reuse is missed. In that case, + // use the zero-value sData and hope for better alignment next cycle. + sData, _ := (*dest).(metricdata.Sum[N]) + sData.Temporality = metricdata.DeltaTemporality + sData.IsMonotonic = s.monotonic + + s.Lock() + defer s.Unlock() + + n := len(s.values) + dPts := reset(sData.DataPoints, n, n) + + var i int + for key, value := range s.values { + delta := value.n - s.reported[key] + + dPts[i].Attributes = value.attrs + dPts[i].StartTime = s.start + dPts[i].Time = t + dPts[i].Value = delta + collectExemplars(&dPts[i].Exemplars, value.res.Collect) + + newReported[key] = value.n + i++ + } + // Unused attribute sets do not report. + clear(s.values) + s.reported = newReported + // The delta collection cycle resets. + s.start = t + + sData.DataPoints = dPts + *dest = sData + + return n +} + +func (s *precomputedSum[N]) cumulative(dest *metricdata.Aggregation) int { + t := now() + + // If *dest is not a metricdata.Sum, memory reuse is missed. In that case, + // use the zero-value sData and hope for better alignment next cycle. + sData, _ := (*dest).(metricdata.Sum[N]) + sData.Temporality = metricdata.CumulativeTemporality + sData.IsMonotonic = s.monotonic + + s.Lock() + defer s.Unlock() + + n := len(s.values) + dPts := reset(sData.DataPoints, n, n) + + var i int + for _, val := range s.values { + dPts[i].Attributes = val.attrs + dPts[i].StartTime = s.start + dPts[i].Time = t + dPts[i].Value = val.n + collectExemplars(&dPts[i].Exemplars, val.res.Collect) + + i++ + } + // Unused attribute sets do not report. + clear(s.values) + + sData.DataPoints = dPts + *dest = sData + + return n +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go new file mode 100644 index 0000000000..ea452be6c2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/reuse_slice.go @@ -0,0 +1,14 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package internal provides internal functionality for the metric package. +package internal // import "go.opentelemetry.io/otel/sdk/metric/internal" + +// ReuseSlice returns a zeroed view of slice if its capacity is greater than or +// equal to n. Otherwise, it returns a new []T with capacity equal to n. +func ReuseSlice[T any](slice []T, n int) []T { + if cap(slice) >= n { + return slice[:n] + } + return make([]T, n) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/README.md b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/README.md new file mode 100644 index 0000000000..59f736b733 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/README.md @@ -0,0 +1,131 @@ +# Experimental Features + +The metric SDK contains features that have not yet stabilized in the OpenTelemetry specification. +These features are added to the OpenTelemetry Go metric SDK prior to stabilization in the specification so that users can start experimenting with them and provide feedback. + +These feature may change in backwards incompatible ways as feedback is applied. +See the [Compatibility and Stability](#compatibility-and-stability) section for more information. + +## Features + +- [Cardinality Limit](#cardinality-limit) +- [Exemplars](#exemplars) +- [Instrument Enabled](#instrument-enabled) + +### Cardinality Limit + +The cardinality limit is the hard limit on the number of metric streams that can be collected for a single instrument. + +This experimental feature can be enabled by setting the `OTEL_GO_X_CARDINALITY_LIMIT` environment value. +The value must be an integer value. +All other values are ignored. + +If the value set is less than or equal to `0`, no limit will be applied. + +#### Examples + +Set the cardinality limit to 2000. + +```console +export OTEL_GO_X_CARDINALITY_LIMIT=2000 +``` + +Set an infinite cardinality limit (functionally equivalent to disabling the feature). + +```console +export OTEL_GO_X_CARDINALITY_LIMIT=-1 +``` + +Disable the cardinality limit. + +```console +unset OTEL_GO_X_CARDINALITY_LIMIT +``` + +### Exemplars + +A sample of measurements made may be exported directly as a set of exemplars. + +This experimental feature can be enabled by setting the `OTEL_GO_X_EXEMPLAR` environment variable. +The value of must be the case-insensitive string of `"true"` to enable the feature. +All other values are ignored. + +Exemplar filters are a supported. +The exemplar filter applies to all measurements made. +They filter these measurements, only allowing certain measurements to be passed to the underlying exemplar reservoir. + +To change the exemplar filter from the default `"trace_based"` filter set the `OTEL_METRICS_EXEMPLAR_FILTER` environment variable. +The value must be the case-sensitive string defined by the [OpenTelemetry specification]. + +- `"always_on"`: allows all measurements +- `"always_off"`: denies all measurements +- `"trace_based"`: allows only sampled measurements + +All values other than these will result in the default, `"trace_based"`, exemplar filter being used. + +[OpenTelemetry specification]: https://github.com/open-telemetry/opentelemetry-specification/blob/a6ca2fd484c9e76fe1d8e1c79c99f08f4745b5ee/specification/configuration/sdk-environment-variables.md#exemplar + +#### Examples + +Enable exemplars to be exported. + +```console +export OTEL_GO_X_EXEMPLAR=true +``` + +Disable exemplars from being exported. + +```console +unset OTEL_GO_X_EXEMPLAR +``` + +Set the exemplar filter to allow all measurements. + +```console +export OTEL_METRICS_EXEMPLAR_FILTER=always_on +``` + +Set the exemplar filter to deny all measurements. + +```console +export OTEL_METRICS_EXEMPLAR_FILTER=always_off +``` + +Set the exemplar filter to only allow sampled measurements. + +```console +export OTEL_METRICS_EXEMPLAR_FILTER=trace_based +``` + +Revert to the default exemplar filter (`"trace_based"`) + +```console +unset OTEL_METRICS_EXEMPLAR_FILTER +``` + +### Instrument Enabled + +To help users avoid performing computationally expensive operations when recording measurements, synchronous instruments provide an `Enabled` method. + +#### Examples + +The following code shows an example of how to check if an instrument implements the `EnabledInstrument` interface before using the `Enabled` function to avoid doing an expensive computation: + +```go +type enabledInstrument interface { Enabled(context.Context) bool } + +ctr, err := m.Int64Counter("expensive-counter") +c, ok := ctr.(enabledInstrument) +if !ok || c.Enabled(context.Background()) { + c.Add(expensiveComputation()) +} +``` + +## Compatibility and Stability + +Experimental features do not fall within the scope of the OpenTelemetry Go versioning and stability [policy](../../../../VERSIONING.md). +These features may be removed or modified in successive version releases, including patch versions. + +When an experimental feature is promoted to a stable feature, a migration path will be included in the changelog entry of the release. +There is no guarantee that any environment variable feature flags that enabled the experimental feature will be supported by the stable version. +If they are supported, they may be accompanied with a deprecation notice stating a timeline for the removal of that support. diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go new file mode 100644 index 0000000000..a98606238a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/internal/x/x.go @@ -0,0 +1,81 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package x contains support for OTel metric SDK experimental features. +// +// This package should only be used for features defined in the specification. +// It should not be used for experiments or new project ideas. +package x // import "go.opentelemetry.io/otel/sdk/metric/internal/x" + +import ( + "context" + "os" + "strconv" +) + +// CardinalityLimit is an experimental feature flag that defines if +// cardinality limits should be applied to the recorded metric data-points. +// +// To enable this feature set the OTEL_GO_X_CARDINALITY_LIMIT environment +// variable to the integer limit value you want to use. +// +// Setting OTEL_GO_X_CARDINALITY_LIMIT to a value less than or equal to 0 +// will disable the cardinality limits. +var CardinalityLimit = newFeature("CARDINALITY_LIMIT", func(v string) (int, bool) { + n, err := strconv.Atoi(v) + if err != nil { + return 0, false + } + return n, true +}) + +// Feature is an experimental feature control flag. It provides a uniform way +// to interact with these feature flags and parse their values. +type Feature[T any] struct { + key string + parse func(v string) (T, bool) +} + +func newFeature[T any](suffix string, parse func(string) (T, bool)) Feature[T] { + const envKeyRoot = "OTEL_GO_X_" + return Feature[T]{ + key: envKeyRoot + suffix, + parse: parse, + } +} + +// Key returns the environment variable key that needs to be set to enable the +// feature. +func (f Feature[T]) Key() string { return f.key } + +// Lookup returns the user configured value for the feature and true if the +// user has enabled the feature. Otherwise, if the feature is not enabled, a +// zero-value and false are returned. +func (f Feature[T]) Lookup() (v T, ok bool) { + // https://github.com/open-telemetry/opentelemetry-specification/blob/62effed618589a0bec416a87e559c0a9d96289bb/specification/configuration/sdk-environment-variables.md#parsing-empty-value + // + // > The SDK MUST interpret an empty value of an environment variable the + // > same way as when the variable is unset. + vRaw := os.Getenv(f.key) + if vRaw == "" { + return v, ok + } + return f.parse(vRaw) +} + +// Enabled returns if the feature is enabled. +func (f Feature[T]) Enabled() bool { + _, ok := f.Lookup() + return ok +} + +// EnabledInstrument informs whether the instrument is enabled. +// +// EnabledInstrument interface is implemented by synchronous instruments. +type EnabledInstrument interface { + // Enabled returns whether the instrument will process measurements for the given context. + // + // This function can be used in places where measuring an instrument + // would result in computationally expensive operations. + Enabled(context.Context) bool +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go new file mode 100644 index 0000000000..96e7790866 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/manual_reader.go @@ -0,0 +1,204 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + "fmt" + "sync" + "sync/atomic" + + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// ManualReader is a simple Reader that allows an application to +// read metrics on demand. +type ManualReader struct { + sdkProducer atomic.Value + shutdownOnce sync.Once + + mu sync.Mutex + isShutdown bool + externalProducers atomic.Value + + temporalitySelector TemporalitySelector + aggregationSelector AggregationSelector +} + +// Compile time check the manualReader implements Reader and is comparable. +var _ = map[Reader]struct{}{&ManualReader{}: {}} + +// NewManualReader returns a Reader which is directly called to collect metrics. +func NewManualReader(opts ...ManualReaderOption) *ManualReader { + cfg := newManualReaderConfig(opts) + r := &ManualReader{ + temporalitySelector: cfg.temporalitySelector, + aggregationSelector: cfg.aggregationSelector, + } + r.externalProducers.Store(cfg.producers) + return r +} + +// register stores the sdkProducer which enables the caller +// to read metrics from the SDK on demand. +func (mr *ManualReader) register(p sdkProducer) { + // Only register once. If producer is already set, do nothing. + if !mr.sdkProducer.CompareAndSwap(nil, produceHolder{produce: p.produce}) { + msg := "did not register manual reader" + global.Error(errDuplicateRegister, msg) + } +} + +// temporality reports the Temporality for the instrument kind provided. +func (mr *ManualReader) temporality(kind InstrumentKind) metricdata.Temporality { + return mr.temporalitySelector(kind) +} + +// aggregation returns what Aggregation to use for kind. +func (mr *ManualReader) aggregation( + kind InstrumentKind, +) Aggregation { // nolint:revive // import-shadow for method scoped by type. + return mr.aggregationSelector(kind) +} + +// Shutdown closes any connections and frees any resources used by the reader. +// +// This method is safe to call concurrently. +func (mr *ManualReader) Shutdown(context.Context) error { + err := ErrReaderShutdown + mr.shutdownOnce.Do(func() { + // Any future call to Collect will now return ErrReaderShutdown. + mr.sdkProducer.Store(produceHolder{ + produce: shutdownProducer{}.produce, + }) + mr.mu.Lock() + defer mr.mu.Unlock() + mr.isShutdown = true + // release references to Producer(s) + mr.externalProducers.Store([]Producer{}) + err = nil + }) + return err +} + +// Collect gathers all metric data related to the Reader from +// the SDK and other Producers and stores the result in rm. +// +// Collect will return an error if called after shutdown. +// Collect will return an error if rm is a nil ResourceMetrics. +// Collect will return an error if the context's Done channel is closed. +// +// This method is safe to call concurrently. +func (mr *ManualReader) Collect(ctx context.Context, rm *metricdata.ResourceMetrics) error { + if rm == nil { + return errors.New("manual reader: *metricdata.ResourceMetrics is nil") + } + p := mr.sdkProducer.Load() + if p == nil { + return ErrReaderNotRegistered + } + + ph, ok := p.(produceHolder) + if !ok { + // The atomic.Value is entirely in the periodicReader's control so + // this should never happen. In the unforeseen case that this does + // happen, return an error instead of panicking so a users code does + // not halt in the processes. + err := fmt.Errorf("manual reader: invalid producer: %T", p) + return err + } + + err := ph.produce(ctx, rm) + if err != nil { + return err + } + for _, producer := range mr.externalProducers.Load().([]Producer) { + externalMetrics, e := producer.Produce(ctx) + if e != nil { + err = errors.Join(err, e) + } + rm.ScopeMetrics = append(rm.ScopeMetrics, externalMetrics...) + } + + global.Debug("ManualReader collection", "Data", rm) + + return err +} + +// MarshalLog returns logging data about the ManualReader. +func (r *ManualReader) MarshalLog() interface{} { + r.mu.Lock() + down := r.isShutdown + r.mu.Unlock() + return struct { + Type string + Registered bool + Shutdown bool + }{ + Type: "ManualReader", + Registered: r.sdkProducer.Load() != nil, + Shutdown: down, + } +} + +// manualReaderConfig contains configuration options for a ManualReader. +type manualReaderConfig struct { + temporalitySelector TemporalitySelector + aggregationSelector AggregationSelector + producers []Producer +} + +// newManualReaderConfig returns a manualReaderConfig configured with options. +func newManualReaderConfig(opts []ManualReaderOption) manualReaderConfig { + cfg := manualReaderConfig{ + temporalitySelector: DefaultTemporalitySelector, + aggregationSelector: DefaultAggregationSelector, + } + for _, opt := range opts { + cfg = opt.applyManual(cfg) + } + return cfg +} + +// ManualReaderOption applies a configuration option value to a ManualReader. +type ManualReaderOption interface { + applyManual(manualReaderConfig) manualReaderConfig +} + +// WithTemporalitySelector sets the TemporalitySelector a reader will use to +// determine the Temporality of an instrument based on its kind. If this +// option is not used, the reader will use the DefaultTemporalitySelector. +func WithTemporalitySelector(selector TemporalitySelector) ManualReaderOption { + return temporalitySelectorOption{selector: selector} +} + +type temporalitySelectorOption struct { + selector func(instrument InstrumentKind) metricdata.Temporality +} + +// applyManual returns a manualReaderConfig with option applied. +func (t temporalitySelectorOption) applyManual(mrc manualReaderConfig) manualReaderConfig { + mrc.temporalitySelector = t.selector + return mrc +} + +// WithAggregationSelector sets the AggregationSelector a reader will use to +// determine the aggregation to use for an instrument based on its kind. If +// this option is not used, the reader will use the DefaultAggregationSelector +// or the aggregation explicitly passed for a view matching an instrument. +func WithAggregationSelector(selector AggregationSelector) ManualReaderOption { + return aggregationSelectorOption{selector: selector} +} + +type aggregationSelectorOption struct { + selector AggregationSelector +} + +// applyManual returns a manualReaderConfig with option applied. +func (t aggregationSelectorOption) applyManual(c manualReaderConfig) manualReaderConfig { + c.aggregationSelector = t.selector + return c +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go b/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go new file mode 100644 index 0000000000..c500fd9f2a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/meter.go @@ -0,0 +1,774 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + "fmt" + + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" + "go.opentelemetry.io/otel/sdk/instrumentation" + + "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" +) + +// ErrInstrumentName indicates the created instrument has an invalid name. +// Valid names must consist of 255 or fewer characters including alphanumeric, _, ., -, / and start with a letter. +var ErrInstrumentName = errors.New("invalid instrument name") + +// meter handles the creation and coordination of all metric instruments. A +// meter represents a single instrumentation scope; all metric telemetry +// produced by an instrumentation scope will use metric instruments from a +// single meter. +type meter struct { + embedded.Meter + + scope instrumentation.Scope + pipes pipelines + + int64Insts *cacheWithErr[instID, *int64Inst] + float64Insts *cacheWithErr[instID, *float64Inst] + int64ObservableInsts *cacheWithErr[instID, int64Observable] + float64ObservableInsts *cacheWithErr[instID, float64Observable] + + int64Resolver resolver[int64] + float64Resolver resolver[float64] +} + +func newMeter(s instrumentation.Scope, p pipelines) *meter { + // viewCache ensures instrument conflicts, including number conflicts, this + // meter is asked to create are logged to the user. + var viewCache cache[string, instID] + + var int64Insts cacheWithErr[instID, *int64Inst] + var float64Insts cacheWithErr[instID, *float64Inst] + var int64ObservableInsts cacheWithErr[instID, int64Observable] + var float64ObservableInsts cacheWithErr[instID, float64Observable] + + return &meter{ + scope: s, + pipes: p, + int64Insts: &int64Insts, + float64Insts: &float64Insts, + int64ObservableInsts: &int64ObservableInsts, + float64ObservableInsts: &float64ObservableInsts, + int64Resolver: newResolver[int64](p, &viewCache), + float64Resolver: newResolver[float64](p, &viewCache), + } +} + +// Compile-time check meter implements metric.Meter. +var _ metric.Meter = (*meter)(nil) + +// Int64Counter returns a new instrument identified by name and configured with +// options. The instrument is used to synchronously record increasing int64 +// measurements during a computational operation. +func (m *meter) Int64Counter(name string, options ...metric.Int64CounterOption) (metric.Int64Counter, error) { + cfg := metric.NewInt64CounterConfig(options...) + const kind = InstrumentKindCounter + p := int64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Int64UpDownCounter returns a new instrument identified by name and +// configured with options. The instrument is used to synchronously record +// int64 measurements during a computational operation. +func (m *meter) Int64UpDownCounter( + name string, + options ...metric.Int64UpDownCounterOption, +) (metric.Int64UpDownCounter, error) { + cfg := metric.NewInt64UpDownCounterConfig(options...) + const kind = InstrumentKindUpDownCounter + p := int64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Int64Histogram returns a new instrument identified by name and configured +// with options. The instrument is used to synchronously record the +// distribution of int64 measurements during a computational operation. +func (m *meter) Int64Histogram(name string, options ...metric.Int64HistogramOption) (metric.Int64Histogram, error) { + cfg := metric.NewInt64HistogramConfig(options...) + p := int64InstProvider{m} + i, err := p.lookupHistogram(name, cfg) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Int64Gauge returns a new instrument identified by name and configured +// with options. The instrument is used to synchronously record the +// distribution of int64 measurements during a computational operation. +func (m *meter) Int64Gauge(name string, options ...metric.Int64GaugeOption) (metric.Int64Gauge, error) { + cfg := metric.NewInt64GaugeConfig(options...) + const kind = InstrumentKindGauge + p := int64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// int64ObservableInstrument returns a new observable identified by the Instrument. +// It registers callbacks for each reader's pipeline. +func (m *meter) int64ObservableInstrument(id Instrument, callbacks []metric.Int64Callback) (int64Observable, error) { + key := instID{ + Name: id.Name, + Description: id.Description, + Unit: id.Unit, + Kind: id.Kind, + } + if m.int64ObservableInsts.HasKey(key) && len(callbacks) > 0 { + warnRepeatedObservableCallbacks(id) + } + return m.int64ObservableInsts.Lookup(key, func() (int64Observable, error) { + inst := newInt64Observable(m, id.Kind, id.Name, id.Description, id.Unit) + for _, insert := range m.int64Resolver.inserters { + // Connect the measure functions for instruments in this pipeline with the + // callbacks for this pipeline. + in, err := insert.Instrument(id, insert.readerDefaultAggregation(id.Kind)) + if err != nil { + return inst, err + } + // Drop aggregation + if len(in) == 0 { + inst.dropAggregation = true + continue + } + inst.appendMeasures(in) + + // Add the measures to the pipeline. It is required to maintain + // measures per pipeline to avoid calling the measure that + // is not part of the pipeline. + insert.pipeline.addInt64Measure(inst.observableID, in) + for _, cback := range callbacks { + inst := int64Observer{measures: in} + fn := cback + insert.addCallback(func(ctx context.Context) error { return fn(ctx, inst) }) + } + } + return inst, validateInstrumentName(id.Name) + }) +} + +// Int64ObservableCounter returns a new instrument identified by name and +// configured with options. The instrument is used to asynchronously record +// increasing int64 measurements once per a measurement collection cycle. +// Only the measurements recorded during the collection cycle are exported. +// +// If Int64ObservableCounter is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Int64ObservableCounter( + name string, + options ...metric.Int64ObservableCounterOption, +) (metric.Int64ObservableCounter, error) { + cfg := metric.NewInt64ObservableCounterConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableCounter, + Scope: m.scope, + } + return m.int64ObservableInstrument(id, cfg.Callbacks()) +} + +// Int64ObservableUpDownCounter returns a new instrument identified by name and +// configured with options. The instrument is used to asynchronously record +// int64 measurements once per a measurement collection cycle. Only the +// measurements recorded during the collection cycle are exported. +// +// If Int64ObservableUpDownCounter is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Int64ObservableUpDownCounter( + name string, + options ...metric.Int64ObservableUpDownCounterOption, +) (metric.Int64ObservableUpDownCounter, error) { + cfg := metric.NewInt64ObservableUpDownCounterConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableUpDownCounter, + Scope: m.scope, + } + return m.int64ObservableInstrument(id, cfg.Callbacks()) +} + +// Int64ObservableGauge returns a new instrument identified by name and +// configured with options. The instrument is used to asynchronously record +// instantaneous int64 measurements once per a measurement collection cycle. +// Only the measurements recorded during the collection cycle are exported. +// +// If Int64ObservableGauge is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Int64ObservableGauge( + name string, + options ...metric.Int64ObservableGaugeOption, +) (metric.Int64ObservableGauge, error) { + cfg := metric.NewInt64ObservableGaugeConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableGauge, + Scope: m.scope, + } + return m.int64ObservableInstrument(id, cfg.Callbacks()) +} + +// Float64Counter returns a new instrument identified by name and configured +// with options. The instrument is used to synchronously record increasing +// float64 measurements during a computational operation. +func (m *meter) Float64Counter(name string, options ...metric.Float64CounterOption) (metric.Float64Counter, error) { + cfg := metric.NewFloat64CounterConfig(options...) + const kind = InstrumentKindCounter + p := float64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Float64UpDownCounter returns a new instrument identified by name and +// configured with options. The instrument is used to synchronously record +// float64 measurements during a computational operation. +func (m *meter) Float64UpDownCounter( + name string, + options ...metric.Float64UpDownCounterOption, +) (metric.Float64UpDownCounter, error) { + cfg := metric.NewFloat64UpDownCounterConfig(options...) + const kind = InstrumentKindUpDownCounter + p := float64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Float64Histogram returns a new instrument identified by name and configured +// with options. The instrument is used to synchronously record the +// distribution of float64 measurements during a computational operation. +func (m *meter) Float64Histogram( + name string, + options ...metric.Float64HistogramOption, +) (metric.Float64Histogram, error) { + cfg := metric.NewFloat64HistogramConfig(options...) + p := float64InstProvider{m} + i, err := p.lookupHistogram(name, cfg) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// Float64Gauge returns a new instrument identified by name and configured +// with options. The instrument is used to synchronously record the +// distribution of float64 measurements during a computational operation. +func (m *meter) Float64Gauge(name string, options ...metric.Float64GaugeOption) (metric.Float64Gauge, error) { + cfg := metric.NewFloat64GaugeConfig(options...) + const kind = InstrumentKindGauge + p := float64InstProvider{m} + i, err := p.lookup(kind, name, cfg.Description(), cfg.Unit()) + if err != nil { + return i, err + } + + return i, validateInstrumentName(name) +} + +// float64ObservableInstrument returns a new observable identified by the Instrument. +// It registers callbacks for each reader's pipeline. +func (m *meter) float64ObservableInstrument( + id Instrument, + callbacks []metric.Float64Callback, +) (float64Observable, error) { + key := instID{ + Name: id.Name, + Description: id.Description, + Unit: id.Unit, + Kind: id.Kind, + } + if m.int64ObservableInsts.HasKey(key) && len(callbacks) > 0 { + warnRepeatedObservableCallbacks(id) + } + return m.float64ObservableInsts.Lookup(key, func() (float64Observable, error) { + inst := newFloat64Observable(m, id.Kind, id.Name, id.Description, id.Unit) + for _, insert := range m.float64Resolver.inserters { + // Connect the measure functions for instruments in this pipeline with the + // callbacks for this pipeline. + in, err := insert.Instrument(id, insert.readerDefaultAggregation(id.Kind)) + if err != nil { + return inst, err + } + // Drop aggregation + if len(in) == 0 { + inst.dropAggregation = true + continue + } + inst.appendMeasures(in) + + // Add the measures to the pipeline. It is required to maintain + // measures per pipeline to avoid calling the measure that + // is not part of the pipeline. + insert.pipeline.addFloat64Measure(inst.observableID, in) + for _, cback := range callbacks { + inst := float64Observer{measures: in} + fn := cback + insert.addCallback(func(ctx context.Context) error { return fn(ctx, inst) }) + } + } + return inst, validateInstrumentName(id.Name) + }) +} + +// Float64ObservableCounter returns a new instrument identified by name and +// configured with options. The instrument is used to asynchronously record +// increasing float64 measurements once per a measurement collection cycle. +// Only the measurements recorded during the collection cycle are exported. +// +// If Float64ObservableCounter is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Float64ObservableCounter( + name string, + options ...metric.Float64ObservableCounterOption, +) (metric.Float64ObservableCounter, error) { + cfg := metric.NewFloat64ObservableCounterConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableCounter, + Scope: m.scope, + } + return m.float64ObservableInstrument(id, cfg.Callbacks()) +} + +// Float64ObservableUpDownCounter returns a new instrument identified by name +// and configured with options. The instrument is used to asynchronously record +// float64 measurements once per a measurement collection cycle. Only the +// measurements recorded during the collection cycle are exported. +// +// If Float64ObservableUpDownCounter is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Float64ObservableUpDownCounter( + name string, + options ...metric.Float64ObservableUpDownCounterOption, +) (metric.Float64ObservableUpDownCounter, error) { + cfg := metric.NewFloat64ObservableUpDownCounterConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableUpDownCounter, + Scope: m.scope, + } + return m.float64ObservableInstrument(id, cfg.Callbacks()) +} + +// Float64ObservableGauge returns a new instrument identified by name and +// configured with options. The instrument is used to asynchronously record +// instantaneous float64 measurements once per a measurement collection cycle. +// Only the measurements recorded during the collection cycle are exported. +// +// If Float64ObservableGauge is invoked repeatedly with the same Name, +// Description, and Unit, only the first set of callbacks provided are used. +// Use meter.RegisterCallback and Registration.Unregister to manage callbacks +// if instrumentation can be created multiple times with different callbacks. +func (m *meter) Float64ObservableGauge( + name string, + options ...metric.Float64ObservableGaugeOption, +) (metric.Float64ObservableGauge, error) { + cfg := metric.NewFloat64ObservableGaugeConfig(options...) + id := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindObservableGauge, + Scope: m.scope, + } + return m.float64ObservableInstrument(id, cfg.Callbacks()) +} + +func validateInstrumentName(name string) error { + if len(name) == 0 { + return fmt.Errorf("%w: %s: is empty", ErrInstrumentName, name) + } + if len(name) > 255 { + return fmt.Errorf("%w: %s: longer than 255 characters", ErrInstrumentName, name) + } + if !isAlpha([]rune(name)[0]) { + return fmt.Errorf("%w: %s: must start with a letter", ErrInstrumentName, name) + } + if len(name) == 1 { + return nil + } + for _, c := range name[1:] { + if !isAlphanumeric(c) && c != '_' && c != '.' && c != '-' && c != '/' { + return fmt.Errorf("%w: %s: must only contain [A-Za-z0-9_.-/]", ErrInstrumentName, name) + } + } + return nil +} + +func isAlpha(c rune) bool { + return ('a' <= c && c <= 'z') || ('A' <= c && c <= 'Z') +} + +func isAlphanumeric(c rune) bool { + return isAlpha(c) || ('0' <= c && c <= '9') +} + +func warnRepeatedObservableCallbacks(id Instrument) { + inst := fmt.Sprintf( + "Instrument{Name: %q, Description: %q, Kind: %q, Unit: %q}", + id.Name, id.Description, "InstrumentKind"+id.Kind.String(), id.Unit, + ) + global.Warn( + "Repeated observable instrument creation with callbacks. Ignoring new callbacks. Use meter.RegisterCallback and Registration.Unregister to manage callbacks.", + "instrument", + inst, + ) +} + +// RegisterCallback registers f to be called each collection cycle so it will +// make observations for insts during those cycles. +// +// The only instruments f can make observations for are insts. All other +// observations will be dropped and an error will be logged. +// +// Only instruments from this meter can be registered with f, an error is +// returned if other instrument are provided. +// +// Only observations made in the callback will be exported. Unlike synchronous +// instruments, asynchronous callbacks can "forget" attribute sets that are no +// longer relevant by omitting the observation during the callback. +// +// The returned Registration can be used to unregister f. +func (m *meter) RegisterCallback(f metric.Callback, insts ...metric.Observable) (metric.Registration, error) { + if len(insts) == 0 { + // Don't allocate a observer if not needed. + return noopRegister{}, nil + } + + var err error + validInstruments := make([]metric.Observable, 0, len(insts)) + for _, inst := range insts { + switch o := inst.(type) { + case int64Observable: + if e := o.registerable(m); e != nil { + if !errors.Is(e, errEmptyAgg) { + err = errors.Join(err, e) + } + continue + } + + validInstruments = append(validInstruments, inst) + case float64Observable: + if e := o.registerable(m); e != nil { + if !errors.Is(e, errEmptyAgg) { + err = errors.Join(err, e) + } + continue + } + + validInstruments = append(validInstruments, inst) + default: + // Instrument external to the SDK. + return nil, errors.New("invalid observable: from different implementation") + } + } + + if len(validInstruments) == 0 { + // All insts use drop aggregation or are invalid. + return noopRegister{}, err + } + + unregs := make([]func(), len(m.pipes)) + for ix, pipe := range m.pipes { + reg := newObserver(pipe) + for _, inst := range validInstruments { + switch o := inst.(type) { + case int64Observable: + reg.registerInt64(o.observableID) + case float64Observable: + reg.registerFloat64(o.observableID) + } + } + + // Some or all instruments were valid. + cBack := func(ctx context.Context) error { return f(ctx, reg) } + unregs[ix] = pipe.addMultiCallback(cBack) + } + + return unregisterFuncs{f: unregs}, err +} + +type observer struct { + embedded.Observer + + pipe *pipeline + float64 map[observableID[float64]]struct{} + int64 map[observableID[int64]]struct{} +} + +func newObserver(p *pipeline) observer { + return observer{ + pipe: p, + float64: make(map[observableID[float64]]struct{}), + int64: make(map[observableID[int64]]struct{}), + } +} + +func (r observer) registerFloat64(id observableID[float64]) { + r.float64[id] = struct{}{} +} + +func (r observer) registerInt64(id observableID[int64]) { + r.int64[id] = struct{}{} +} + +var ( + errUnknownObserver = errors.New("unknown observable instrument") + errUnregObserver = errors.New("observable instrument not registered for callback") +) + +func (r observer) ObserveFloat64(o metric.Float64Observable, v float64, opts ...metric.ObserveOption) { + var oImpl float64Observable + switch conv := o.(type) { + case float64Observable: + oImpl = conv + default: + global.Error(errUnknownObserver, "failed to record") + return + } + + if _, registered := r.float64[oImpl.observableID]; !registered { + if !oImpl.dropAggregation { + global.Error(errUnregObserver, "failed to record", + "name", oImpl.name, + "description", oImpl.description, + "unit", oImpl.unit, + "number", fmt.Sprintf("%T", float64(0)), + ) + } + return + } + c := metric.NewObserveConfig(opts) + // Access to r.pipe.float64Measure is already guarded by a lock in pipeline.produce. + // TODO (#5946): Refactor pipeline and observable measures. + measures := r.pipe.float64Measures[oImpl.observableID] + for _, m := range measures { + m(context.Background(), v, c.Attributes()) + } +} + +func (r observer) ObserveInt64(o metric.Int64Observable, v int64, opts ...metric.ObserveOption) { + var oImpl int64Observable + switch conv := o.(type) { + case int64Observable: + oImpl = conv + default: + global.Error(errUnknownObserver, "failed to record") + return + } + + if _, registered := r.int64[oImpl.observableID]; !registered { + if !oImpl.dropAggregation { + global.Error(errUnregObserver, "failed to record", + "name", oImpl.name, + "description", oImpl.description, + "unit", oImpl.unit, + "number", fmt.Sprintf("%T", int64(0)), + ) + } + return + } + c := metric.NewObserveConfig(opts) + // Access to r.pipe.int64Measures is already guarded b a lock in pipeline.produce. + // TODO (#5946): Refactor pipeline and observable measures. + measures := r.pipe.int64Measures[oImpl.observableID] + for _, m := range measures { + m(context.Background(), v, c.Attributes()) + } +} + +type noopRegister struct{ embedded.Registration } + +func (noopRegister) Unregister() error { + return nil +} + +// int64InstProvider provides int64 OpenTelemetry instruments. +type int64InstProvider struct{ *meter } + +func (p int64InstProvider) aggs(kind InstrumentKind, name, desc, u string) ([]aggregate.Measure[int64], error) { + inst := Instrument{ + Name: name, + Description: desc, + Unit: u, + Kind: kind, + Scope: p.scope, + } + return p.int64Resolver.Aggregators(inst) +} + +func (p int64InstProvider) histogramAggs( + name string, + cfg metric.Int64HistogramConfig, +) ([]aggregate.Measure[int64], error) { + boundaries := cfg.ExplicitBucketBoundaries() + aggError := AggregationExplicitBucketHistogram{Boundaries: boundaries}.err() + if aggError != nil { + // If boundaries are invalid, ignore them. + boundaries = nil + } + inst := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindHistogram, + Scope: p.scope, + } + measures, err := p.int64Resolver.HistogramAggregators(inst, boundaries) + return measures, errors.Join(aggError, err) +} + +// lookup returns the resolved instrumentImpl. +func (p int64InstProvider) lookup(kind InstrumentKind, name, desc, u string) (*int64Inst, error) { + return p.int64Insts.Lookup(instID{ + Name: name, + Description: desc, + Unit: u, + Kind: kind, + }, func() (*int64Inst, error) { + aggs, err := p.aggs(kind, name, desc, u) + return &int64Inst{measures: aggs}, err + }) +} + +// lookupHistogram returns the resolved instrumentImpl. +func (p int64InstProvider) lookupHistogram(name string, cfg metric.Int64HistogramConfig) (*int64Inst, error) { + return p.int64Insts.Lookup(instID{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindHistogram, + }, func() (*int64Inst, error) { + aggs, err := p.histogramAggs(name, cfg) + return &int64Inst{measures: aggs}, err + }) +} + +// float64InstProvider provides float64 OpenTelemetry instruments. +type float64InstProvider struct{ *meter } + +func (p float64InstProvider) aggs(kind InstrumentKind, name, desc, u string) ([]aggregate.Measure[float64], error) { + inst := Instrument{ + Name: name, + Description: desc, + Unit: u, + Kind: kind, + Scope: p.scope, + } + return p.float64Resolver.Aggregators(inst) +} + +func (p float64InstProvider) histogramAggs( + name string, + cfg metric.Float64HistogramConfig, +) ([]aggregate.Measure[float64], error) { + boundaries := cfg.ExplicitBucketBoundaries() + aggError := AggregationExplicitBucketHistogram{Boundaries: boundaries}.err() + if aggError != nil { + // If boundaries are invalid, ignore them. + boundaries = nil + } + inst := Instrument{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindHistogram, + Scope: p.scope, + } + measures, err := p.float64Resolver.HistogramAggregators(inst, boundaries) + return measures, errors.Join(aggError, err) +} + +// lookup returns the resolved instrumentImpl. +func (p float64InstProvider) lookup(kind InstrumentKind, name, desc, u string) (*float64Inst, error) { + return p.float64Insts.Lookup(instID{ + Name: name, + Description: desc, + Unit: u, + Kind: kind, + }, func() (*float64Inst, error) { + aggs, err := p.aggs(kind, name, desc, u) + return &float64Inst{measures: aggs}, err + }) +} + +// lookupHistogram returns the resolved instrumentImpl. +func (p float64InstProvider) lookupHistogram(name string, cfg metric.Float64HistogramConfig) (*float64Inst, error) { + return p.float64Insts.Lookup(instID{ + Name: name, + Description: cfg.Description(), + Unit: cfg.Unit(), + Kind: InstrumentKindHistogram, + }, func() (*float64Inst, error) { + aggs, err := p.histogramAggs(name, cfg) + return &float64Inst{measures: aggs}, err + }) +} + +type int64Observer struct { + embedded.Int64Observer + measures[int64] +} + +func (o int64Observer) Observe(val int64, opts ...metric.ObserveOption) { + c := metric.NewObserveConfig(opts) + o.observe(val, c.Attributes()) +} + +type float64Observer struct { + embedded.Float64Observer + measures[float64] +} + +func (o float64Observer) Observe(val float64, opts ...metric.ObserveOption) { + c := metric.NewObserveConfig(opts) + o.observe(val, c.Attributes()) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/README.md b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/README.md new file mode 100644 index 0000000000..d1390df1b5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/README.md @@ -0,0 +1,3 @@ +# SDK Metric data + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/metric/metricdata)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/metric/metricdata) diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go new file mode 100644 index 0000000000..af835e9d99 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/data.go @@ -0,0 +1,297 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package metricdata provides types for the metric SDK data model. +package metricdata // import "go.opentelemetry.io/otel/sdk/metric/metricdata" + +import ( + "encoding/json" + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/resource" +) + +// ResourceMetrics is a collection of ScopeMetrics and the associated Resource +// that created them. +type ResourceMetrics struct { + // Resource represents the entity that collected the metrics. + Resource *resource.Resource + // ScopeMetrics are the collection of metrics with unique Scopes. + ScopeMetrics []ScopeMetrics +} + +// ScopeMetrics is a collection of Metrics Produces by a Meter. +type ScopeMetrics struct { + // Scope is the Scope that the Meter was created with. + Scope instrumentation.Scope + // Metrics are a list of aggregations created by the Meter. + Metrics []Metrics +} + +// Metrics is a collection of one or more aggregated timeseries from an Instrument. +type Metrics struct { + // Name is the name of the Instrument that created this data. + Name string + // Description is the description of the Instrument, which can be used in documentation. + Description string + // Unit is the unit in which the Instrument reports. + Unit string + // Data is the aggregated data from an Instrument. + Data Aggregation +} + +// Aggregation is the store of data reported by an Instrument. +// It will be one of: Gauge, Sum, Histogram. +type Aggregation interface { + privateAggregation() +} + +// Gauge represents a measurement of the current value of an instrument. +type Gauge[N int64 | float64] struct { + // DataPoints are the individual aggregated measurements with unique + // Attributes. + DataPoints []DataPoint[N] +} + +func (Gauge[N]) privateAggregation() {} + +// Sum represents the sum of all measurements of values from an instrument. +type Sum[N int64 | float64] struct { + // DataPoints are the individual aggregated measurements with unique + // Attributes. + DataPoints []DataPoint[N] + // Temporality describes if the aggregation is reported as the change from the + // last report time, or the cumulative changes since a fixed start time. + Temporality Temporality + // IsMonotonic represents if this aggregation only increases or decreases. + IsMonotonic bool +} + +func (Sum[N]) privateAggregation() {} + +// DataPoint is a single data point in a timeseries. +type DataPoint[N int64 | float64] struct { + // Attributes is the set of key value pairs that uniquely identify the + // timeseries. + Attributes attribute.Set + // StartTime is when the timeseries was started. (optional) + StartTime time.Time `json:",omitempty"` + // Time is the time when the timeseries was recorded. (optional) + Time time.Time `json:",omitempty"` + // Value is the value of this data point. + Value N + + // Exemplars is the sampled Exemplars collected during the timeseries. + Exemplars []Exemplar[N] `json:",omitempty"` +} + +// Histogram represents the histogram of all measurements of values from an instrument. +type Histogram[N int64 | float64] struct { + // DataPoints are the individual aggregated measurements with unique + // Attributes. + DataPoints []HistogramDataPoint[N] + // Temporality describes if the aggregation is reported as the change from the + // last report time, or the cumulative changes since a fixed start time. + Temporality Temporality +} + +func (Histogram[N]) privateAggregation() {} + +// HistogramDataPoint is a single histogram data point in a timeseries. +type HistogramDataPoint[N int64 | float64] struct { + // Attributes is the set of key value pairs that uniquely identify the + // timeseries. + Attributes attribute.Set + // StartTime is when the timeseries was started. + StartTime time.Time + // Time is the time when the timeseries was recorded. + Time time.Time + + // Count is the number of updates this histogram has been calculated with. + Count uint64 + // Bounds are the upper bounds of the buckets of the histogram. Because the + // last boundary is +infinity this one is implied. + Bounds []float64 + // BucketCounts is the count of each of the buckets. + BucketCounts []uint64 + + // Min is the minimum value recorded. (optional) + Min Extrema[N] + // Max is the maximum value recorded. (optional) + Max Extrema[N] + // Sum is the sum of the values recorded. + Sum N + + // Exemplars is the sampled Exemplars collected during the timeseries. + Exemplars []Exemplar[N] `json:",omitempty"` +} + +// ExponentialHistogram represents the histogram of all measurements of values from an instrument. +type ExponentialHistogram[N int64 | float64] struct { + // DataPoints are the individual aggregated measurements with unique + // attributes. + DataPoints []ExponentialHistogramDataPoint[N] + // Temporality describes if the aggregation is reported as the change from the + // last report time, or the cumulative changes since a fixed start time. + Temporality Temporality +} + +func (ExponentialHistogram[N]) privateAggregation() {} + +// ExponentialHistogramDataPoint is a single exponential histogram data point in a timeseries. +type ExponentialHistogramDataPoint[N int64 | float64] struct { + // Attributes is the set of key value pairs that uniquely identify the + // timeseries. + Attributes attribute.Set + // StartTime is when the timeseries was started. + StartTime time.Time + // Time is the time when the timeseries was recorded. + Time time.Time + + // Count is the number of updates this histogram has been calculated with. + Count uint64 + // Min is the minimum value recorded. (optional) + Min Extrema[N] + // Max is the maximum value recorded. (optional) + Max Extrema[N] + // Sum is the sum of the values recorded. + Sum N + + // Scale describes the resolution of the histogram. Boundaries are + // located at powers of the base, where: + // + // base = 2 ^ (2 ^ -Scale) + Scale int32 + // ZeroCount is the number of values whose absolute value + // is less than or equal to [ZeroThreshold]. + // When ZeroThreshold is 0, this is the number of values that + // cannot be expressed using the standard exponential formula + // as well as values that have been rounded to zero. + // ZeroCount represents the special zero count bucket. + ZeroCount uint64 + + // PositiveBucket is range of positive value bucket counts. + PositiveBucket ExponentialBucket + // NegativeBucket is range of negative value bucket counts. + NegativeBucket ExponentialBucket + + // ZeroThreshold is the width of the zero region. Where the zero region is + // defined as the closed interval [-ZeroThreshold, ZeroThreshold]. + ZeroThreshold float64 + + // Exemplars is the sampled Exemplars collected during the timeseries. + Exemplars []Exemplar[N] `json:",omitempty"` +} + +// ExponentialBucket are a set of bucket counts, encoded in a contiguous array +// of counts. +type ExponentialBucket struct { + // Offset is the bucket index of the first entry in the Counts slice. + Offset int32 + // Counts is an slice where Counts[i] carries the count of the bucket at + // index (Offset+i). Counts[i] is the count of values greater than + // base^(Offset+i) and less than or equal to base^(Offset+i+1). + Counts []uint64 +} + +// Extrema is the minimum or maximum value of a dataset. +type Extrema[N int64 | float64] struct { + value N + valid bool +} + +// MarshalText converts the Extrema value to text. +func (e Extrema[N]) MarshalText() ([]byte, error) { + if !e.valid { + return json.Marshal(nil) + } + return json.Marshal(e.value) +} + +// MarshalJSON converts the Extrema value to JSON number. +func (e *Extrema[N]) MarshalJSON() ([]byte, error) { + return e.MarshalText() +} + +// NewExtrema returns an Extrema set to v. +func NewExtrema[N int64 | float64](v N) Extrema[N] { + return Extrema[N]{value: v, valid: true} +} + +// Value returns the Extrema value and true if the Extrema is defined. +// Otherwise, if the Extrema is its zero-value, defined will be false. +func (e Extrema[N]) Value() (v N, defined bool) { + return e.value, e.valid +} + +// Exemplar is a measurement sampled from a timeseries providing a typical +// example. +type Exemplar[N int64 | float64] struct { + // FilteredAttributes are the attributes recorded with the measurement but + // filtered out of the timeseries' aggregated data. + FilteredAttributes []attribute.KeyValue + // Time is the time when the measurement was recorded. + Time time.Time + // Value is the measured value. + Value N + // SpanID is the ID of the span that was active during the measurement. If + // no span was active or the span was not sampled this will be empty. + SpanID []byte `json:",omitempty"` + // TraceID is the ID of the trace the active span belonged to during the + // measurement. If no span was active or the span was not sampled this will + // be empty. + TraceID []byte `json:",omitempty"` +} + +// Summary metric data are used to convey quantile summaries, +// a Prometheus (see: https://prometheus.io/docs/concepts/metric_types/#summary) +// data type. +// +// These data points cannot always be merged in a meaningful way. The Summary +// type is only used by bridges from other metrics libraries, and cannot be +// produced using OpenTelemetry instrumentation. +type Summary struct { + // DataPoints are the individual aggregated measurements with unique + // attributes. + DataPoints []SummaryDataPoint +} + +func (Summary) privateAggregation() {} + +// SummaryDataPoint is a single data point in a timeseries that describes the +// time-varying values of a Summary metric. +type SummaryDataPoint struct { + // Attributes is the set of key value pairs that uniquely identify the + // timeseries. + Attributes attribute.Set + + // StartTime is when the timeseries was started. + StartTime time.Time + // Time is the time when the timeseries was recorded. + Time time.Time + + // Count is the number of updates this summary has been calculated with. + Count uint64 + + // Sum is the sum of the values recorded. + Sum float64 + + // (Optional) list of values at different quantiles of the distribution calculated + // from the current snapshot. The quantiles must be strictly increasing. + QuantileValues []QuantileValue +} + +// QuantileValue is the value at a given quantile of a summary. +type QuantileValue struct { + // Quantile is the quantile of this value. + // + // Must be in the interval [0.0, 1.0]. + Quantile float64 + + // Value is the value at the given quantile of a summary. + // + // Quantile values must NOT be negative. + Value float64 +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go new file mode 100644 index 0000000000..2ac840ff35 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality.go @@ -0,0 +1,30 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:generate stringer -type=Temporality + +package metricdata // import "go.opentelemetry.io/otel/sdk/metric/metricdata" + +// Temporality defines the window that an aggregation was calculated over. +type Temporality uint8 + +const ( + // undefinedTemporality represents an unset Temporality. + //nolint:unused + undefinedTemporality Temporality = iota + + // CumulativeTemporality defines a measurement interval that continues to + // expand forward in time from a starting point. New measurements are + // added to all previous measurements since a start time. + CumulativeTemporality + + // DeltaTemporality defines a measurement interval that resets each cycle. + // Measurements from one cycle are recorded independently, measurements + // from other cycles do not affect them. + DeltaTemporality +) + +// MarshalText returns the byte encoded of t. +func (t Temporality) MarshalText() ([]byte, error) { + return []byte(t.String()), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality_string.go b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality_string.go new file mode 100644 index 0000000000..4da833cdce --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/metricdata/temporality_string.go @@ -0,0 +1,25 @@ +// Code generated by "stringer -type=Temporality"; DO NOT EDIT. + +package metricdata + +import "strconv" + +func _() { + // An "invalid array index" compiler error signifies that the constant values have changed. + // Re-run the stringer command to generate them again. + var x [1]struct{} + _ = x[undefinedTemporality-0] + _ = x[CumulativeTemporality-1] + _ = x[DeltaTemporality-2] +} + +const _Temporality_name = "undefinedTemporalityCumulativeTemporalityDeltaTemporality" + +var _Temporality_index = [...]uint8{0, 20, 41, 57} + +func (i Temporality) String() string { + if i >= Temporality(len(_Temporality_index)-1) { + return "Temporality(" + strconv.FormatInt(int64(i), 10) + ")" + } + return _Temporality_name[_Temporality_index[i]:_Temporality_index[i+1]] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go new file mode 100644 index 0000000000..0a48aed74d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/periodic_reader.go @@ -0,0 +1,371 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + "fmt" + "sync" + "sync/atomic" + "time" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// Default periodic reader timing. +const ( + defaultTimeout = time.Millisecond * 30000 + defaultInterval = time.Millisecond * 60000 +) + +// periodicReaderConfig contains configuration options for a PeriodicReader. +type periodicReaderConfig struct { + interval time.Duration + timeout time.Duration + producers []Producer +} + +// newPeriodicReaderConfig returns a periodicReaderConfig configured with +// options. +func newPeriodicReaderConfig(options []PeriodicReaderOption) periodicReaderConfig { + c := periodicReaderConfig{ + interval: envDuration(envInterval, defaultInterval), + timeout: envDuration(envTimeout, defaultTimeout), + } + for _, o := range options { + c = o.applyPeriodic(c) + } + return c +} + +// PeriodicReaderOption applies a configuration option value to a PeriodicReader. +type PeriodicReaderOption interface { + applyPeriodic(periodicReaderConfig) periodicReaderConfig +} + +// periodicReaderOptionFunc applies a set of options to a periodicReaderConfig. +type periodicReaderOptionFunc func(periodicReaderConfig) periodicReaderConfig + +// applyPeriodic returns a periodicReaderConfig with option(s) applied. +func (o periodicReaderOptionFunc) applyPeriodic(conf periodicReaderConfig) periodicReaderConfig { + return o(conf) +} + +// WithTimeout configures the time a PeriodicReader waits for an export to +// complete before canceling it. This includes an export which occurs as part +// of Shutdown or ForceFlush if the user passed context does not have a +// deadline. If the user passed context does have a deadline, it will be used +// instead. +// +// This option overrides any value set for the +// OTEL_METRIC_EXPORT_TIMEOUT environment variable. +// +// If this option is not used or d is less than or equal to zero, 30 seconds +// is used as the default. +func WithTimeout(d time.Duration) PeriodicReaderOption { + return periodicReaderOptionFunc(func(conf periodicReaderConfig) periodicReaderConfig { + if d <= 0 { + return conf + } + conf.timeout = d + return conf + }) +} + +// WithInterval configures the intervening time between exports for a +// PeriodicReader. +// +// This option overrides any value set for the +// OTEL_METRIC_EXPORT_INTERVAL environment variable. +// +// If this option is not used or d is less than or equal to zero, 60 seconds +// is used as the default. +func WithInterval(d time.Duration) PeriodicReaderOption { + return periodicReaderOptionFunc(func(conf periodicReaderConfig) periodicReaderConfig { + if d <= 0 { + return conf + } + conf.interval = d + return conf + }) +} + +// NewPeriodicReader returns a Reader that collects and exports metric data to +// the exporter at a defined interval. By default, the returned Reader will +// collect and export data every 60 seconds, and will cancel any attempts that +// exceed 30 seconds, collect and export combined. The collect and export time +// are not counted towards the interval between attempts. +// +// The Collect method of the returned Reader continues to gather and return +// metric data to the user. It will not automatically send that data to the +// exporter. That is left to the user to accomplish. +func NewPeriodicReader(exporter Exporter, options ...PeriodicReaderOption) *PeriodicReader { + conf := newPeriodicReaderConfig(options) + ctx, cancel := context.WithCancel(context.Background()) + r := &PeriodicReader{ + interval: conf.interval, + timeout: conf.timeout, + exporter: exporter, + flushCh: make(chan chan error), + cancel: cancel, + done: make(chan struct{}), + rmPool: sync.Pool{ + New: func() interface{} { + return &metricdata.ResourceMetrics{} + }, + }, + } + r.externalProducers.Store(conf.producers) + + go func() { + defer func() { close(r.done) }() + r.run(ctx, conf.interval) + }() + + return r +} + +// PeriodicReader is a Reader that continuously collects and exports metric +// data at a set interval. +type PeriodicReader struct { + sdkProducer atomic.Value + + mu sync.Mutex + isShutdown bool + externalProducers atomic.Value + + interval time.Duration + timeout time.Duration + exporter Exporter + flushCh chan chan error + + done chan struct{} + cancel context.CancelFunc + shutdownOnce sync.Once + + rmPool sync.Pool +} + +// Compile time check the periodicReader implements Reader and is comparable. +var _ = map[Reader]struct{}{&PeriodicReader{}: {}} + +// newTicker allows testing override. +var newTicker = time.NewTicker + +// run continuously collects and exports metric data at the specified +// interval. This will run until ctx is canceled or times out. +func (r *PeriodicReader) run(ctx context.Context, interval time.Duration) { + ticker := newTicker(interval) + defer ticker.Stop() + + for { + select { + case <-ticker.C: + err := r.collectAndExport(ctx) + if err != nil { + otel.Handle(err) + } + case errCh := <-r.flushCh: + errCh <- r.collectAndExport(ctx) + ticker.Reset(interval) + case <-ctx.Done(): + return + } + } +} + +// register registers p as the producer of this reader. +func (r *PeriodicReader) register(p sdkProducer) { + // Only register once. If producer is already set, do nothing. + if !r.sdkProducer.CompareAndSwap(nil, produceHolder{produce: p.produce}) { + msg := "did not register periodic reader" + global.Error(errDuplicateRegister, msg) + } +} + +// temporality reports the Temporality for the instrument kind provided. +func (r *PeriodicReader) temporality(kind InstrumentKind) metricdata.Temporality { + return r.exporter.Temporality(kind) +} + +// aggregation returns what Aggregation to use for kind. +func (r *PeriodicReader) aggregation( + kind InstrumentKind, +) Aggregation { // nolint:revive // import-shadow for method scoped by type. + return r.exporter.Aggregation(kind) +} + +// collectAndExport gather all metric data related to the periodicReader r from +// the SDK and exports it with r's exporter. +func (r *PeriodicReader) collectAndExport(ctx context.Context) error { + ctx, cancel := context.WithTimeoutCause(ctx, r.timeout, errors.New("reader collect and export timeout")) + defer cancel() + + // TODO (#3047): Use a sync.Pool or persistent pointer instead of allocating rm every Collect. + rm := r.rmPool.Get().(*metricdata.ResourceMetrics) + err := r.Collect(ctx, rm) + if err == nil { + err = r.export(ctx, rm) + } + r.rmPool.Put(rm) + return err +} + +// Collect gathers all metric data related to the Reader from +// the SDK and other Producers and stores the result in rm. The metric +// data is not exported to the configured exporter, it is left to the caller to +// handle that if desired. +// +// Collect will return an error if called after shutdown. +// Collect will return an error if rm is a nil ResourceMetrics. +// Collect will return an error if the context's Done channel is closed. +// +// This method is safe to call concurrently. +func (r *PeriodicReader) Collect(ctx context.Context, rm *metricdata.ResourceMetrics) error { + if rm == nil { + return errors.New("periodic reader: *metricdata.ResourceMetrics is nil") + } + // TODO (#3047): When collect is updated to accept output as param, pass rm. + return r.collect(ctx, r.sdkProducer.Load(), rm) +} + +// collect unwraps p as a produceHolder and returns its produce results. +func (r *PeriodicReader) collect(ctx context.Context, p interface{}, rm *metricdata.ResourceMetrics) error { + if p == nil { + return ErrReaderNotRegistered + } + + ph, ok := p.(produceHolder) + if !ok { + // The atomic.Value is entirely in the periodicReader's control so + // this should never happen. In the unforeseen case that this does + // happen, return an error instead of panicking so a users code does + // not halt in the processes. + err := fmt.Errorf("periodic reader: invalid producer: %T", p) + return err + } + + err := ph.produce(ctx, rm) + if err != nil { + return err + } + for _, producer := range r.externalProducers.Load().([]Producer) { + externalMetrics, e := producer.Produce(ctx) + if e != nil { + err = errors.Join(err, e) + } + rm.ScopeMetrics = append(rm.ScopeMetrics, externalMetrics...) + } + + global.Debug("PeriodicReader collection", "Data", rm) + + return err +} + +// export exports metric data m using r's exporter. +func (r *PeriodicReader) export(ctx context.Context, m *metricdata.ResourceMetrics) error { + return r.exporter.Export(ctx, m) +} + +// ForceFlush flushes pending telemetry. +// +// This method is safe to call concurrently. +func (r *PeriodicReader) ForceFlush(ctx context.Context) error { + // Prioritize the ctx timeout if it is set. + if _, ok := ctx.Deadline(); !ok { + var cancel context.CancelFunc + ctx, cancel = context.WithTimeoutCause(ctx, r.timeout, errors.New("reader force flush timeout")) + defer cancel() + } + + errCh := make(chan error, 1) + select { + case r.flushCh <- errCh: + select { + case err := <-errCh: + if err != nil { + return err + } + close(errCh) + case <-ctx.Done(): + return ctx.Err() + } + case <-r.done: + return ErrReaderShutdown + case <-ctx.Done(): + return ctx.Err() + } + return r.exporter.ForceFlush(ctx) +} + +// Shutdown flushes pending telemetry and then stops the export pipeline. +// +// This method is safe to call concurrently. +func (r *PeriodicReader) Shutdown(ctx context.Context) error { + err := ErrReaderShutdown + r.shutdownOnce.Do(func() { + // Prioritize the ctx timeout if it is set. + if _, ok := ctx.Deadline(); !ok { + var cancel context.CancelFunc + ctx, cancel = context.WithTimeoutCause(ctx, r.timeout, errors.New("reader shutdown timeout")) + defer cancel() + } + + // Stop the run loop. + r.cancel() + <-r.done + + // Any future call to Collect will now return ErrReaderShutdown. + ph := r.sdkProducer.Swap(produceHolder{ + produce: shutdownProducer{}.produce, + }) + + if ph != nil { // Reader was registered. + // Flush pending telemetry. + m := r.rmPool.Get().(*metricdata.ResourceMetrics) + err = r.collect(ctx, ph, m) + if err == nil { + err = r.export(ctx, m) + } + r.rmPool.Put(m) + } + + sErr := r.exporter.Shutdown(ctx) + if err == nil || errors.Is(err, ErrReaderShutdown) { + err = sErr + } + + r.mu.Lock() + defer r.mu.Unlock() + r.isShutdown = true + // release references to Producer(s) + r.externalProducers.Store([]Producer{}) + }) + return err +} + +// MarshalLog returns logging data about the PeriodicReader. +func (r *PeriodicReader) MarshalLog() interface{} { + r.mu.Lock() + down := r.isShutdown + r.mu.Unlock() + return struct { + Type string + Exporter Exporter + Registered bool + Shutdown bool + Interval time.Duration + Timeout time.Duration + }{ + Type: "PeriodicReader", + Exporter: r.exporter, + Registered: r.sdkProducer.Load() != nil, + Shutdown: down, + Interval: r.interval, + Timeout: r.timeout, + } +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go b/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go new file mode 100644 index 0000000000..7bdb699cae --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/pipeline.go @@ -0,0 +1,666 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "container/list" + "context" + "errors" + "fmt" + "sync" + "sync/atomic" + + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/metric/embedded" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/metric/exemplar" + "go.opentelemetry.io/otel/sdk/metric/internal" + "go.opentelemetry.io/otel/sdk/metric/internal/aggregate" + "go.opentelemetry.io/otel/sdk/metric/internal/x" + "go.opentelemetry.io/otel/sdk/metric/metricdata" + "go.opentelemetry.io/otel/sdk/resource" +) + +var ( + errCreatingAggregators = errors.New("could not create all aggregators") + errIncompatibleAggregation = errors.New("incompatible aggregation") + errUnknownAggregation = errors.New("unrecognized aggregation") +) + +// instrumentSync is a synchronization point between a pipeline and an +// instrument's aggregate function. +type instrumentSync struct { + name string + description string + unit string + compAgg aggregate.ComputeAggregation +} + +func newPipeline(res *resource.Resource, reader Reader, views []View, exemplarFilter exemplar.Filter) *pipeline { + if res == nil { + res = resource.Empty() + } + return &pipeline{ + resource: res, + reader: reader, + views: views, + int64Measures: map[observableID[int64]][]aggregate.Measure[int64]{}, + float64Measures: map[observableID[float64]][]aggregate.Measure[float64]{}, + exemplarFilter: exemplarFilter, + // aggregations is lazy allocated when needed. + } +} + +// pipeline connects all of the instruments created by a meter provider to a Reader. +// This is the object that will be `Reader.register()` when a meter provider is created. +// +// As instruments are created the instrument should be checked if it exists in +// the views of a the Reader, and if so each aggregate function should be added +// to the pipeline. +type pipeline struct { + resource *resource.Resource + + reader Reader + views []View + + sync.Mutex + int64Measures map[observableID[int64]][]aggregate.Measure[int64] + float64Measures map[observableID[float64]][]aggregate.Measure[float64] + aggregations map[instrumentation.Scope][]instrumentSync + callbacks []func(context.Context) error + multiCallbacks list.List + exemplarFilter exemplar.Filter +} + +// addInt64Measure adds a new int64 measure to the pipeline for each observer. +func (p *pipeline) addInt64Measure(id observableID[int64], m []aggregate.Measure[int64]) { + p.Lock() + defer p.Unlock() + p.int64Measures[id] = m +} + +// addFloat64Measure adds a new float64 measure to the pipeline for each observer. +func (p *pipeline) addFloat64Measure(id observableID[float64], m []aggregate.Measure[float64]) { + p.Lock() + defer p.Unlock() + p.float64Measures[id] = m +} + +// addSync adds the instrumentSync to pipeline p with scope. This method is not +// idempotent. Duplicate calls will result in duplicate additions, it is the +// callers responsibility to ensure this is called with unique values. +func (p *pipeline) addSync(scope instrumentation.Scope, iSync instrumentSync) { + p.Lock() + defer p.Unlock() + if p.aggregations == nil { + p.aggregations = map[instrumentation.Scope][]instrumentSync{ + scope: {iSync}, + } + return + } + p.aggregations[scope] = append(p.aggregations[scope], iSync) +} + +type multiCallback func(context.Context) error + +// addMultiCallback registers a multi-instrument callback to be run when +// `produce()` is called. +func (p *pipeline) addMultiCallback(c multiCallback) (unregister func()) { + p.Lock() + defer p.Unlock() + e := p.multiCallbacks.PushBack(c) + return func() { + p.Lock() + p.multiCallbacks.Remove(e) + p.Unlock() + } +} + +// produce returns aggregated metrics from a single collection. +// +// This method is safe to call concurrently. +func (p *pipeline) produce(ctx context.Context, rm *metricdata.ResourceMetrics) error { + // Only check if context is already cancelled before starting, not inside or after callback loops. + // If this method returns after executing some callbacks but before running all aggregations, + // internal aggregation state can be corrupted and result in incorrect data returned + // by future produce calls. + if err := ctx.Err(); err != nil { + return err + } + + p.Lock() + defer p.Unlock() + + var err error + for _, c := range p.callbacks { + // TODO make the callbacks parallel. ( #3034 ) + if e := c(ctx); e != nil { + err = errors.Join(err, e) + } + } + for e := p.multiCallbacks.Front(); e != nil; e = e.Next() { + // TODO make the callbacks parallel. ( #3034 ) + f := e.Value.(multiCallback) + if e := f(ctx); e != nil { + err = errors.Join(err, e) + } + } + + rm.Resource = p.resource + rm.ScopeMetrics = internal.ReuseSlice(rm.ScopeMetrics, len(p.aggregations)) + + i := 0 + for scope, instruments := range p.aggregations { + rm.ScopeMetrics[i].Metrics = internal.ReuseSlice(rm.ScopeMetrics[i].Metrics, len(instruments)) + j := 0 + for _, inst := range instruments { + data := rm.ScopeMetrics[i].Metrics[j].Data + if n := inst.compAgg(&data); n > 0 { + rm.ScopeMetrics[i].Metrics[j].Name = inst.name + rm.ScopeMetrics[i].Metrics[j].Description = inst.description + rm.ScopeMetrics[i].Metrics[j].Unit = inst.unit + rm.ScopeMetrics[i].Metrics[j].Data = data + j++ + } + } + rm.ScopeMetrics[i].Metrics = rm.ScopeMetrics[i].Metrics[:j] + if len(rm.ScopeMetrics[i].Metrics) > 0 { + rm.ScopeMetrics[i].Scope = scope + i++ + } + } + + rm.ScopeMetrics = rm.ScopeMetrics[:i] + + return err +} + +// inserter facilitates inserting of new instruments from a single scope into a +// pipeline. +type inserter[N int64 | float64] struct { + // aggregators is a cache that holds aggregate function inputs whose + // outputs have been inserted into the underlying reader pipeline. This + // cache ensures no duplicate aggregate functions are inserted into the + // reader pipeline and if a new request during an instrument creation asks + // for the same aggregate function input the same instance is returned. + aggregators *cache[instID, aggVal[N]] + + // views is a cache that holds instrument identifiers for all the + // instruments a Meter has created, it is provided from the Meter that owns + // this inserter. This cache ensures during the creation of instruments + // with the same name but different options (e.g. description, unit) a + // warning message is logged. + views *cache[string, instID] + + pipeline *pipeline +} + +func newInserter[N int64 | float64](p *pipeline, vc *cache[string, instID]) *inserter[N] { + if vc == nil { + vc = &cache[string, instID]{} + } + return &inserter[N]{ + aggregators: &cache[instID, aggVal[N]]{}, + views: vc, + pipeline: p, + } +} + +// Instrument inserts the instrument inst with instUnit into a pipeline. All +// views the pipeline contains are matched against, and any matching view that +// creates a unique aggregate function will have its output inserted into the +// pipeline and its input included in the returned slice. +// +// The returned aggregate function inputs are ensured to be deduplicated and +// unique. If another view in another pipeline that is cached by this +// inserter's cache has already inserted the same aggregate function for the +// same instrument, that functions input instance is returned. +// +// If another instrument has already been inserted by this inserter, or any +// other using the same cache, and it conflicts with the instrument being +// inserted in this call, an aggregate function input matching the arguments +// will still be returned but an Info level log message will also be logged to +// the OTel global logger. +// +// If the passed instrument would result in an incompatible aggregate function, +// an error is returned and that aggregate function output is not inserted nor +// is its input returned. +// +// If an instrument is determined to use a Drop aggregation, that instrument is +// not inserted nor returned. +func (i *inserter[N]) Instrument(inst Instrument, readerAggregation Aggregation) ([]aggregate.Measure[N], error) { + var ( + matched bool + measures []aggregate.Measure[N] + ) + + var err error + seen := make(map[uint64]struct{}) + for _, v := range i.pipeline.views { + stream, match := v(inst) + if !match { + continue + } + matched = true + in, id, e := i.cachedAggregator(inst.Scope, inst.Kind, stream, readerAggregation) + if e != nil { + err = errors.Join(err, e) + } + if in == nil { // Drop aggregation. + continue + } + if _, ok := seen[id]; ok { + // This aggregate function has already been added. + continue + } + seen[id] = struct{}{} + measures = append(measures, in) + } + + if err != nil { + err = errors.Join(errCreatingAggregators, err) + } + + if matched { + return measures, err + } + + // Apply implicit default view if no explicit matched. + stream := Stream{ + Name: inst.Name, + Description: inst.Description, + Unit: inst.Unit, + } + in, _, e := i.cachedAggregator(inst.Scope, inst.Kind, stream, readerAggregation) + if e != nil { + if err == nil { + err = errCreatingAggregators + } + err = errors.Join(err, e) + } + if in != nil { + // Ensured to have not seen given matched was false. + measures = append(measures, in) + } + return measures, err +} + +// addCallback registers a single instrument callback to be run when +// `produce()` is called. +func (i *inserter[N]) addCallback(cback func(context.Context) error) { + i.pipeline.Lock() + defer i.pipeline.Unlock() + i.pipeline.callbacks = append(i.pipeline.callbacks, cback) +} + +var aggIDCount uint64 + +// aggVal is the cached value in an aggregators cache. +type aggVal[N int64 | float64] struct { + ID uint64 + Measure aggregate.Measure[N] + Err error +} + +// readerDefaultAggregation returns the default aggregation for the instrument +// kind based on the reader's aggregation preferences. This is used unless the +// aggregation is overridden with a view. +func (i *inserter[N]) readerDefaultAggregation(kind InstrumentKind) Aggregation { + aggregation := i.pipeline.reader.aggregation(kind) + switch aggregation.(type) { + case nil, AggregationDefault: + // If the reader returns default or nil use the default selector. + aggregation = DefaultAggregationSelector(kind) + default: + // Deep copy and validate before using. + aggregation = aggregation.copy() + if err := aggregation.err(); err != nil { + orig := aggregation + aggregation = DefaultAggregationSelector(kind) + global.Error( + err, "using default aggregation instead", + "aggregation", orig, + "replacement", aggregation, + ) + } + } + return aggregation +} + +// cachedAggregator returns the appropriate aggregate input and output +// functions for an instrument configuration. If the exact instrument has been +// created within the inst.Scope, those aggregate function instances will be +// returned. Otherwise, new computed aggregate functions will be cached and +// returned. +// +// If the instrument configuration conflicts with an instrument that has +// already been created (e.g. description, unit, data type) a warning will be +// logged at the "Info" level with the global OTel logger. Valid new aggregate +// functions for the instrument configuration will still be returned without an +// error. +// +// If the instrument defines an unknown or incompatible aggregation, an error +// is returned. +func (i *inserter[N]) cachedAggregator( + scope instrumentation.Scope, + kind InstrumentKind, + stream Stream, + readerAggregation Aggregation, +) (meas aggregate.Measure[N], aggID uint64, err error) { + switch stream.Aggregation.(type) { + case nil: + // The aggregation was not overridden with a view. Use the aggregation + // provided by the reader. + stream.Aggregation = readerAggregation + case AggregationDefault: + // The view explicitly requested the default aggregation. + stream.Aggregation = DefaultAggregationSelector(kind) + } + if stream.ExemplarReservoirProviderSelector == nil { + stream.ExemplarReservoirProviderSelector = DefaultExemplarReservoirProviderSelector + } + + if err := isAggregatorCompatible(kind, stream.Aggregation); err != nil { + return nil, 0, fmt.Errorf( + "creating aggregator with instrumentKind: %d, aggregation %v: %w", + kind, stream.Aggregation, err, + ) + } + + id := i.instID(kind, stream) + // If there is a conflict, the specification says the view should + // still be applied and a warning should be logged. + i.logConflict(id) + + // If there are requests for the same instrument with different name + // casing, the first-seen needs to be returned. Use a normalize ID for the + // cache lookup to ensure the correct comparison. + normID := id.normalize() + cv := i.aggregators.Lookup(normID, func() aggVal[N] { + b := aggregate.Builder[N]{ + Temporality: i.pipeline.reader.temporality(kind), + ReservoirFunc: reservoirFunc[N]( + stream.ExemplarReservoirProviderSelector(stream.Aggregation), + i.pipeline.exemplarFilter, + ), + } + b.Filter = stream.AttributeFilter + // A value less than or equal to zero will disable the aggregation + // limits for the builder (an all the created aggregates). + // CardinalityLimit.Lookup returns 0 by default if unset (or + // unrecognized input). Use that value directly. + b.AggregationLimit, _ = x.CardinalityLimit.Lookup() + + in, out, err := i.aggregateFunc(b, stream.Aggregation, kind) + if err != nil { + return aggVal[N]{0, nil, err} + } + if in == nil { // Drop aggregator. + return aggVal[N]{0, nil, nil} + } + i.pipeline.addSync(scope, instrumentSync{ + // Use the first-seen name casing for this and all subsequent + // requests of this instrument. + name: stream.Name, + description: stream.Description, + unit: stream.Unit, + compAgg: out, + }) + id := atomic.AddUint64(&aggIDCount, 1) + return aggVal[N]{id, in, err} + }) + return cv.Measure, cv.ID, cv.Err +} + +// logConflict validates if an instrument with the same case-insensitive name +// as id has already been created. If that instrument conflicts with id, a +// warning is logged. +func (i *inserter[N]) logConflict(id instID) { + // The API specification defines names as case-insensitive. If there is a + // different casing of a name it needs to be a conflict. + name := id.normalize().Name + existing := i.views.Lookup(name, func() instID { return id }) + if id == existing { + return + } + + const msg = "duplicate metric stream definitions" + args := []interface{}{ + "names", fmt.Sprintf("%q, %q", existing.Name, id.Name), + "descriptions", fmt.Sprintf("%q, %q", existing.Description, id.Description), + "kinds", fmt.Sprintf("%s, %s", existing.Kind, id.Kind), + "units", fmt.Sprintf("%s, %s", existing.Unit, id.Unit), + "numbers", fmt.Sprintf("%s, %s", existing.Number, id.Number), + } + + // The specification recommends logging a suggested view to resolve + // conflicts if possible. + // + // https://github.com/open-telemetry/opentelemetry-specification/blob/v1.21.0/specification/metrics/sdk.md#duplicate-instrument-registration + if id.Unit != existing.Unit || id.Number != existing.Number { + // There is no view resolution for these, don't make a suggestion. + global.Warn(msg, args...) + return + } + + var stream string + if id.Name != existing.Name || id.Kind != existing.Kind { + stream = `Stream{Name: "{{NEW_NAME}}"}` + } else if id.Description != existing.Description { + stream = fmt.Sprintf("Stream{Description: %q}", existing.Description) + } + + inst := fmt.Sprintf( + "Instrument{Name: %q, Description: %q, Kind: %q, Unit: %q}", + id.Name, id.Description, "InstrumentKind"+id.Kind.String(), id.Unit, + ) + args = append(args, "suggested.view", fmt.Sprintf("NewView(%s, %s)", inst, stream)) + + global.Warn(msg, args...) +} + +func (i *inserter[N]) instID(kind InstrumentKind, stream Stream) instID { + var zero N + return instID{ + Name: stream.Name, + Description: stream.Description, + Unit: stream.Unit, + Kind: kind, + Number: fmt.Sprintf("%T", zero), + } +} + +// aggregateFunc returns new aggregate functions matching agg, kind, and +// monotonic. If the agg is unknown or temporality is invalid, an error is +// returned. +func (i *inserter[N]) aggregateFunc( + b aggregate.Builder[N], + agg Aggregation, + kind InstrumentKind, +) (meas aggregate.Measure[N], comp aggregate.ComputeAggregation, err error) { + switch a := agg.(type) { + case AggregationDefault: + return i.aggregateFunc(b, DefaultAggregationSelector(kind), kind) + case AggregationDrop: + // Return nil in and out to signify the drop aggregator. + case AggregationLastValue: + switch kind { + case InstrumentKindGauge: + meas, comp = b.LastValue() + case InstrumentKindObservableGauge: + meas, comp = b.PrecomputedLastValue() + } + case AggregationSum: + switch kind { + case InstrumentKindObservableCounter: + meas, comp = b.PrecomputedSum(true) + case InstrumentKindObservableUpDownCounter: + meas, comp = b.PrecomputedSum(false) + case InstrumentKindCounter, InstrumentKindHistogram: + meas, comp = b.Sum(true) + default: + // InstrumentKindUpDownCounter, InstrumentKindObservableGauge, and + // instrumentKindUndefined or other invalid instrument kinds. + meas, comp = b.Sum(false) + } + case AggregationExplicitBucketHistogram: + var noSum bool + switch kind { + case InstrumentKindUpDownCounter, InstrumentKindObservableUpDownCounter, InstrumentKindObservableGauge, InstrumentKindGauge: + // The sum should not be collected for any instrument that can make + // negative measurements: + // https://github.com/open-telemetry/opentelemetry-specification/blob/v1.21.0/specification/metrics/sdk.md#histogram-aggregations + noSum = true + } + meas, comp = b.ExplicitBucketHistogram(a.Boundaries, a.NoMinMax, noSum) + case AggregationBase2ExponentialHistogram: + var noSum bool + switch kind { + case InstrumentKindUpDownCounter, InstrumentKindObservableUpDownCounter, InstrumentKindObservableGauge, InstrumentKindGauge: + // The sum should not be collected for any instrument that can make + // negative measurements: + // https://github.com/open-telemetry/opentelemetry-specification/blob/v1.21.0/specification/metrics/sdk.md#histogram-aggregations + noSum = true + } + meas, comp = b.ExponentialBucketHistogram(a.MaxSize, a.MaxScale, a.NoMinMax, noSum) + + default: + err = errUnknownAggregation + } + + return meas, comp, err +} + +// isAggregatorCompatible checks if the aggregation can be used by the instrument. +// Current compatibility: +// +// | Instrument Kind | Drop | LastValue | Sum | Histogram | Exponential Histogram | +// |--------------------------|------|-----------|-----|-----------|-----------------------| +// | Counter | ✓ | | ✓ | ✓ | ✓ | +// | UpDownCounter | ✓ | | ✓ | ✓ | ✓ | +// | Histogram | ✓ | | ✓ | ✓ | ✓ | +// | Gauge | ✓ | ✓ | | ✓ | ✓ | +// | Observable Counter | ✓ | | ✓ | ✓ | ✓ | +// | Observable UpDownCounter | ✓ | | ✓ | ✓ | ✓ | +// | Observable Gauge | ✓ | ✓ | | ✓ | ✓ |. +func isAggregatorCompatible(kind InstrumentKind, agg Aggregation) error { + switch agg.(type) { + case AggregationDefault: + return nil + case AggregationExplicitBucketHistogram, AggregationBase2ExponentialHistogram: + switch kind { + case InstrumentKindCounter, + InstrumentKindUpDownCounter, + InstrumentKindHistogram, + InstrumentKindGauge, + InstrumentKindObservableCounter, + InstrumentKindObservableUpDownCounter, + InstrumentKindObservableGauge: + return nil + default: + return errIncompatibleAggregation + } + case AggregationSum: + switch kind { + case InstrumentKindObservableCounter, InstrumentKindObservableUpDownCounter, InstrumentKindCounter, InstrumentKindHistogram, InstrumentKindUpDownCounter: + return nil + default: + // TODO: review need for aggregation check after + // https://github.com/open-telemetry/opentelemetry-specification/issues/2710 + return errIncompatibleAggregation + } + case AggregationLastValue: + switch kind { + case InstrumentKindObservableGauge, InstrumentKindGauge: + return nil + } + // TODO: review need for aggregation check after + // https://github.com/open-telemetry/opentelemetry-specification/issues/2710 + return errIncompatibleAggregation + case AggregationDrop: + return nil + default: + // This is used passed checking for default, it should be an error at this point. + return fmt.Errorf("%w: %v", errUnknownAggregation, agg) + } +} + +// pipelines is the group of pipelines connecting Readers with instrument +// measurement. +type pipelines []*pipeline + +func newPipelines(res *resource.Resource, readers []Reader, views []View, exemplarFilter exemplar.Filter) pipelines { + pipes := make([]*pipeline, 0, len(readers)) + for _, r := range readers { + p := newPipeline(res, r, views, exemplarFilter) + r.register(p) + pipes = append(pipes, p) + } + return pipes +} + +type unregisterFuncs struct { + embedded.Registration + f []func() +} + +func (u unregisterFuncs) Unregister() error { + for _, f := range u.f { + f() + } + return nil +} + +// resolver facilitates resolving aggregate functions an instrument calls to +// aggregate measurements with while updating all pipelines that need to pull +// from those aggregations. +type resolver[N int64 | float64] struct { + inserters []*inserter[N] +} + +func newResolver[N int64 | float64](p pipelines, vc *cache[string, instID]) resolver[N] { + in := make([]*inserter[N], len(p)) + for i := range in { + in[i] = newInserter[N](p[i], vc) + } + return resolver[N]{in} +} + +// Aggregators returns the Aggregators that must be updated by the instrument +// defined by key. +func (r resolver[N]) Aggregators(id Instrument) ([]aggregate.Measure[N], error) { + var measures []aggregate.Measure[N] + + var err error + for _, i := range r.inserters { + in, e := i.Instrument(id, i.readerDefaultAggregation(id.Kind)) + if e != nil { + err = errors.Join(err, e) + } + measures = append(measures, in...) + } + return measures, err +} + +// HistogramAggregators returns the histogram Aggregators that must be updated by the instrument +// defined by key. If boundaries were provided on instrument instantiation, those take precedence +// over boundaries provided by the reader. +func (r resolver[N]) HistogramAggregators(id Instrument, boundaries []float64) ([]aggregate.Measure[N], error) { + var measures []aggregate.Measure[N] + + var err error + for _, i := range r.inserters { + agg := i.readerDefaultAggregation(id.Kind) + if histAgg, ok := agg.(AggregationExplicitBucketHistogram); ok && len(boundaries) > 0 { + histAgg.Boundaries = boundaries + agg = histAgg + } + in, e := i.Instrument(id, agg) + if e != nil { + err = errors.Join(err, e) + } + measures = append(measures, in...) + } + return measures, err +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go b/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go new file mode 100644 index 0000000000..2fca89e5a8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/provider.go @@ -0,0 +1,145 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "sync/atomic" + + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/embedded" + "go.opentelemetry.io/otel/metric/noop" + "go.opentelemetry.io/otel/sdk/instrumentation" +) + +// MeterProvider handles the creation and coordination of Meters. All Meters +// created by a MeterProvider will be associated with the same Resource, have +// the same Views applied to them, and have their produced metric telemetry +// passed to the configured Readers. +type MeterProvider struct { + embedded.MeterProvider + + pipes pipelines + meters cache[instrumentation.Scope, *meter] + + forceFlush, shutdown func(context.Context) error + stopped atomic.Bool +} + +// Compile-time check MeterProvider implements metric.MeterProvider. +var _ metric.MeterProvider = (*MeterProvider)(nil) + +// NewMeterProvider returns a new and configured MeterProvider. +// +// By default, the returned MeterProvider is configured with the default +// Resource and no Readers. Readers cannot be added after a MeterProvider is +// created. This means the returned MeterProvider, one created with no +// Readers, will perform no operations. +func NewMeterProvider(options ...Option) *MeterProvider { + conf := newConfig(options) + flush, sdown := conf.readerSignals() + + mp := &MeterProvider{ + pipes: newPipelines(conf.res, conf.readers, conf.views, conf.exemplarFilter), + forceFlush: flush, + shutdown: sdown, + } + // Log after creation so all readers show correctly they are registered. + global.Info("MeterProvider created", + "Resource", conf.res, + "Readers", conf.readers, + "Views", len(conf.views), + ) + return mp +} + +// Meter returns a Meter with the given name and configured with options. +// +// The name should be the name of the instrumentation scope creating +// telemetry. This name may be the same as the instrumented code only if that +// code provides built-in instrumentation. +// +// Calls to the Meter method after Shutdown has been called will return Meters +// that perform no operations. +// +// This method is safe to call concurrently. +func (mp *MeterProvider) Meter(name string, options ...metric.MeterOption) metric.Meter { + if name == "" { + global.Warn("Invalid Meter name.", "name", name) + } + + if mp.stopped.Load() { + return noop.Meter{} + } + + c := metric.NewMeterConfig(options...) + s := instrumentation.Scope{ + Name: name, + Version: c.InstrumentationVersion(), + SchemaURL: c.SchemaURL(), + Attributes: c.InstrumentationAttributes(), + } + + global.Info("Meter created", + "Name", s.Name, + "Version", s.Version, + "SchemaURL", s.SchemaURL, + "Attributes", s.Attributes, + ) + + return mp.meters.Lookup(s, func() *meter { + return newMeter(s, mp.pipes) + }) +} + +// ForceFlush flushes all pending telemetry. +// +// This method honors the deadline or cancellation of ctx. An appropriate +// error will be returned in these situations. There is no guaranteed that all +// telemetry be flushed or all resources have been released in these +// situations. +// +// ForceFlush calls ForceFlush(context.Context) error +// on all Readers that implements this method. +// +// This method is safe to call concurrently. +func (mp *MeterProvider) ForceFlush(ctx context.Context) error { + if mp.forceFlush != nil { + return mp.forceFlush(ctx) + } + return nil +} + +// Shutdown shuts down the MeterProvider flushing all pending telemetry and +// releasing any held computational resources. +// +// This call is idempotent. The first call will perform all flush and +// releasing operations. Subsequent calls will perform no action and will +// return an error stating this. +// +// Measurements made by instruments from meters this MeterProvider created +// will not be exported after Shutdown is called. +// +// This method honors the deadline or cancellation of ctx. An appropriate +// error will be returned in these situations. There is no guaranteed that all +// telemetry be flushed or all resources have been released in these +// situations. +// +// This method is safe to call concurrently. +func (mp *MeterProvider) Shutdown(ctx context.Context) error { + // Even though it may seem like there is a synchronization issue between the + // call to `Store` and checking `shutdown`, the Go concurrency model ensures + // that is not the case, as all the atomic operations executed in a program + // behave as though executed in some sequentially consistent order. This + // definition provides the same semantics as C++'s sequentially consistent + // atomics and Java's volatile variables. + // See https://go.dev/ref/mem#atomic and https://pkg.go.dev/sync/atomic. + + mp.stopped.Store(true) + if mp.shutdown != nil { + return mp.shutdown(ctx) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go b/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go new file mode 100644 index 0000000000..c96e500a2b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/reader.go @@ -0,0 +1,192 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "context" + "errors" + + "go.opentelemetry.io/otel/sdk/metric/metricdata" +) + +// errDuplicateRegister is logged by a Reader when an attempt to registered it +// more than once occurs. +var errDuplicateRegister = errors.New("duplicate reader registration") + +// ErrReaderNotRegistered is returned if Collect or Shutdown are called before +// the reader is registered with a MeterProvider. +var ErrReaderNotRegistered = errors.New("reader is not registered") + +// ErrReaderShutdown is returned if Collect or Shutdown are called after a +// reader has been Shutdown once. +var ErrReaderShutdown = errors.New("reader is shutdown") + +// errNonPositiveDuration is logged when an environmental variable +// has non-positive value. +var errNonPositiveDuration = errors.New("non-positive duration") + +// Reader is the interface used between the SDK and an +// exporter. Control flow is bi-directional through the +// Reader, since the SDK initiates ForceFlush and Shutdown +// while the exporter initiates collection. The Register() method here +// informs the Reader that it can begin reading, signaling the +// start of bi-directional control flow. +// +// Typically, push-based exporters that are periodic will +// implement PeriodicExporter themselves and construct a +// PeriodicReader to satisfy this interface. +// +// Pull-based exporters will typically implement Register +// themselves, since they read on demand. +// +// Warning: methods may be added to this interface in minor releases. +type Reader interface { + // register registers a Reader with a MeterProvider. + // The producer argument allows the Reader to signal the sdk to collect + // and send aggregated metric measurements. + register(sdkProducer) + + // temporality reports the Temporality for the instrument kind provided. + // + // This method needs to be concurrent safe with itself and all the other + // Reader methods. + temporality(InstrumentKind) metricdata.Temporality + + // aggregation returns what Aggregation to use for an instrument kind. + // + // This method needs to be concurrent safe with itself and all the other + // Reader methods. + aggregation(InstrumentKind) Aggregation // nolint:revive // import-shadow for method scoped by type. + + // Collect gathers and returns all metric data related to the Reader from + // the SDK and stores it in rm. An error is returned if this is called + // after Shutdown or if rm is nil. + // + // This method needs to be concurrent safe, and the cancellation of the + // passed context is expected to be honored. + Collect(ctx context.Context, rm *metricdata.ResourceMetrics) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Shutdown flushes all metric measurements held in an export pipeline and releases any + // held computational resources. + // + // This deadline or cancellation of the passed context are honored. An appropriate + // error will be returned in these situations. There is no guaranteed that all + // telemetry be flushed or all resources have been released in these + // situations. + // + // After Shutdown is called, calls to Collect will perform no operation and instead will return + // an error indicating the shutdown state. + // + // This method needs to be concurrent safe. + Shutdown(context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// sdkProducer produces metrics for a Reader. +type sdkProducer interface { + // produce returns aggregated metrics from a single collection. + // + // This method is safe to call concurrently. + produce(context.Context, *metricdata.ResourceMetrics) error +} + +// Producer produces metrics for a Reader from an external source. +type Producer interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Produce returns aggregated metrics from an external source. + // + // This method should be safe to call concurrently. + Produce(context.Context) ([]metricdata.ScopeMetrics, error) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// produceHolder is used as an atomic.Value to wrap the non-concrete producer +// type. +type produceHolder struct { + produce func(context.Context, *metricdata.ResourceMetrics) error +} + +// shutdownProducer produces an ErrReaderShutdown error always. +type shutdownProducer struct{} + +// produce returns an ErrReaderShutdown error. +func (p shutdownProducer) produce(context.Context, *metricdata.ResourceMetrics) error { + return ErrReaderShutdown +} + +// TemporalitySelector selects the temporality to use based on the InstrumentKind. +type TemporalitySelector func(InstrumentKind) metricdata.Temporality + +// DefaultTemporalitySelector is the default TemporalitySelector used if +// WithTemporalitySelector is not provided. CumulativeTemporality will be used +// for all instrument kinds if this TemporalitySelector is used. +func DefaultTemporalitySelector(InstrumentKind) metricdata.Temporality { + return metricdata.CumulativeTemporality +} + +// AggregationSelector selects the aggregation and the parameters to use for +// that aggregation based on the InstrumentKind. +// +// If the Aggregation returned is nil or DefaultAggregation, the selection from +// DefaultAggregationSelector will be used. +type AggregationSelector func(InstrumentKind) Aggregation + +// DefaultAggregationSelector returns the default aggregation and parameters +// that will be used to summarize measurement made from an instrument of +// InstrumentKind. This AggregationSelector using the following selection +// mapping: Counter ⇨ Sum, Observable Counter ⇨ Sum, UpDownCounter ⇨ Sum, +// Observable UpDownCounter ⇨ Sum, Observable Gauge ⇨ LastValue, +// Histogram ⇨ ExplicitBucketHistogram. +func DefaultAggregationSelector(ik InstrumentKind) Aggregation { + switch ik { + case InstrumentKindCounter, + InstrumentKindUpDownCounter, + InstrumentKindObservableCounter, + InstrumentKindObservableUpDownCounter: + return AggregationSum{} + case InstrumentKindObservableGauge, InstrumentKindGauge: + return AggregationLastValue{} + case InstrumentKindHistogram: + return AggregationExplicitBucketHistogram{ + Boundaries: []float64{0, 5, 10, 25, 50, 75, 100, 250, 500, 750, 1000, 2500, 5000, 7500, 10000}, + NoMinMax: false, + } + } + panic("unknown instrument kind") +} + +// ReaderOption is an option which can be applied to manual or Periodic +// readers. +type ReaderOption interface { + PeriodicReaderOption + ManualReaderOption +} + +// WithProducer registers producers as an external Producer of metric data +// for this Reader. +func WithProducer(p Producer) ReaderOption { + return producerOption{p: p} +} + +type producerOption struct { + p Producer +} + +// applyManual returns a manualReaderConfig with option applied. +func (o producerOption) applyManual(c manualReaderConfig) manualReaderConfig { + c.producers = append(c.producers, o.p) + return c +} + +// applyPeriodic returns a periodicReaderConfig with option applied. +func (o producerOption) applyPeriodic(c periodicReaderConfig) periodicReaderConfig { + c.producers = append(c.producers, o.p) + return c +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/version.go b/vendor/go.opentelemetry.io/otel/sdk/metric/version.go new file mode 100644 index 0000000000..0e5adc1a76 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +// version is the current release version of the metric SDK in use. +func version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/metric/view.go b/vendor/go.opentelemetry.io/otel/sdk/metric/view.go new file mode 100644 index 0000000000..630890f426 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/metric/view.go @@ -0,0 +1,118 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package metric // import "go.opentelemetry.io/otel/sdk/metric" + +import ( + "errors" + "regexp" + "strings" + + "go.opentelemetry.io/otel/internal/global" +) + +var ( + errMultiInst = errors.New("name replacement for multiple instruments") + errEmptyView = errors.New("no criteria provided for view") + + emptyView = func(Instrument) (Stream, bool) { return Stream{}, false } +) + +// View is an override to the default behavior of the SDK. It defines how data +// should be collected for certain instruments. It returns true and the exact +// Stream to use for matching Instruments. Otherwise, if the view does not +// match, false is returned. +type View func(Instrument) (Stream, bool) + +// NewView returns a View that applies the Stream mask for all instruments that +// match criteria. The returned View will only apply mask if all non-zero-value +// fields of criteria match the corresponding Instrument passed to the view. If +// no criteria are provided, all field of criteria are their zero-values, a +// view that matches no instruments is returned. If you need to match a +// zero-value field, create a View directly. +// +// The Name field of criteria supports wildcard pattern matching. The "*" +// wildcard is recognized as matching zero or more characters, and "?" is +// recognized as matching exactly one character. For example, a pattern of "*" +// matches all instrument names. +// +// The Stream mask only applies updates for non-zero-value fields. By default, +// the Instrument the View matches against will be use for the Name, +// Description, and Unit of the returned Stream and no Aggregation or +// AttributeFilter are set. All non-zero-value fields of mask are used instead +// of the default. If you need to zero out an Stream field returned from a +// View, create a View directly. +func NewView(criteria Instrument, mask Stream) View { + if criteria.IsEmpty() { + global.Error( + errEmptyView, "dropping view", + "mask", mask, + ) + return emptyView + } + + var matchFunc func(Instrument) bool + if strings.ContainsAny(criteria.Name, "*?") { + if mask.Name != "" { + global.Error( + errMultiInst, "dropping view", + "criteria", criteria, + "mask", mask, + ) + return emptyView + } + + // Handle branching here in NewView instead of criteria.matches so + // criteria.matches remains inlinable for the simple case. + pattern := regexp.QuoteMeta(criteria.Name) + pattern = "^" + pattern + "$" + pattern = strings.ReplaceAll(pattern, `\?`, ".") + pattern = strings.ReplaceAll(pattern, `\*`, ".*") + re := regexp.MustCompile(pattern) + matchFunc = func(i Instrument) bool { + return re.MatchString(i.Name) && + criteria.matchesDescription(i) && + criteria.matchesKind(i) && + criteria.matchesUnit(i) && + criteria.matchesScope(i) + } + } else { + matchFunc = criteria.matches + } + + var agg Aggregation + if mask.Aggregation != nil { + agg = mask.Aggregation.copy() + if err := agg.err(); err != nil { + global.Error( + err, "not using aggregation with view", + "criteria", criteria, + "mask", mask, + ) + agg = nil + } + } + + return func(i Instrument) (Stream, bool) { + if matchFunc(i) { + return Stream{ + Name: nonZero(mask.Name, i.Name), + Description: nonZero(mask.Description, i.Description), + Unit: nonZero(mask.Unit, i.Unit), + Aggregation: agg, + AttributeFilter: mask.AttributeFilter, + ExemplarReservoirProviderSelector: mask.ExemplarReservoirProviderSelector, + }, true + } + return Stream{}, false + } +} + +// nonZero returns v if it is non-zero-valued, otherwise alt. +func nonZero[T comparable](v, alt T) T { + var zero T + if v != zero { + return v + } + return alt +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/README.md b/vendor/go.opentelemetry.io/otel/sdk/resource/README.md new file mode 100644 index 0000000000..4ad864d716 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/README.md @@ -0,0 +1,3 @@ +# SDK Resource + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/resource)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/resource) diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go b/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go new file mode 100644 index 0000000000..c02aeefdde --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/auto.go @@ -0,0 +1,92 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "errors" + "fmt" +) + +// ErrPartialResource is returned by a detector when complete source +// information for a Resource is unavailable or the source information +// contains invalid values that are omitted from the returned Resource. +var ErrPartialResource = errors.New("partial resource") + +// Detector detects OpenTelemetry resource information. +type Detector interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Detect returns an initialized Resource based on gathered information. + // If the source information to construct a Resource contains invalid + // values, a Resource is returned with the valid parts of the source + // information used for initialization along with an appropriately + // wrapped ErrPartialResource error. + Detect(ctx context.Context) (*Resource, error) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// Detect returns a new [Resource] merged from all the Resources each of the +// detectors produces. Each of the detectors are called sequentially, in the +// order they are passed, merging the produced resource into the previous. +// +// This may return a partial Resource along with an error containing +// [ErrPartialResource] if that error is returned from a detector. It may also +// return a merge-conflicting Resource along with an error containing +// [ErrSchemaURLConflict] if merging Resources from different detectors results +// in a schema URL conflict. It is up to the caller to determine if this +// returned Resource should be used or not. +// +// If one of the detectors returns an error that is not [ErrPartialResource], +// the resource produced by the detector will not be merged and the returned +// error will wrap that detector's error. +func Detect(ctx context.Context, detectors ...Detector) (*Resource, error) { + r := new(Resource) + return r, detect(ctx, r, detectors) +} + +// detect runs all detectors using ctx and merges the result into res. This +// assumes res is allocated and not nil, it will panic otherwise. +// +// If the detectors or merging resources produces any errors (i.e. +// [ErrPartialResource] [ErrSchemaURLConflict]), a single error wrapping all of +// these errors will be returned. Otherwise, nil is returned. +func detect(ctx context.Context, res *Resource, detectors []Detector) error { + var ( + r *Resource + err error + e error + ) + + for _, detector := range detectors { + if detector == nil { + continue + } + r, e = detector.Detect(ctx) + if e != nil { + err = errors.Join(err, e) + if !errors.Is(e, ErrPartialResource) { + continue + } + } + r, e = Merge(res, r) + if e != nil { + err = errors.Join(err, e) + } + *res = *r + } + + if err != nil { + if errors.Is(err, ErrSchemaURLConflict) { + // If there has been a merge conflict, ensure the resource has no + // schema URL. + res.schemaURL = "" + } + + err = fmt.Errorf("error detecting resource: %w", err) + } + return err +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go new file mode 100644 index 0000000000..cefe4ab914 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/builtin.go @@ -0,0 +1,116 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "fmt" + "os" + "path/filepath" + + "github.com/google/uuid" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk" + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type ( + // telemetrySDK is a Detector that provides information about + // the OpenTelemetry SDK used. This Detector is included as a + // builtin. If these resource attributes are not wanted, use + // resource.New() to explicitly disable them. + telemetrySDK struct{} + + // host is a Detector that provides information about the host + // being run on. This Detector is included as a builtin. If + // these resource attributes are not wanted, use the + // resource.New() to explicitly disable them. + host struct{} + + stringDetector struct { + schemaURL string + K attribute.Key + F func() (string, error) + } + + defaultServiceNameDetector struct{} + + defaultServiceInstanceIDDetector struct{} +) + +var ( + _ Detector = telemetrySDK{} + _ Detector = host{} + _ Detector = stringDetector{} + _ Detector = defaultServiceNameDetector{} + _ Detector = defaultServiceInstanceIDDetector{} +) + +// Detect returns a *Resource that describes the OpenTelemetry SDK used. +func (telemetrySDK) Detect(context.Context) (*Resource, error) { + return NewWithAttributes( + semconv.SchemaURL, + semconv.TelemetrySDKName("opentelemetry"), + semconv.TelemetrySDKLanguageGo, + semconv.TelemetrySDKVersion(sdk.Version()), + ), nil +} + +// Detect returns a *Resource that describes the host being run on. +func (host) Detect(ctx context.Context) (*Resource, error) { + return StringDetector(semconv.SchemaURL, semconv.HostNameKey, os.Hostname).Detect(ctx) +} + +// StringDetector returns a Detector that will produce a *Resource +// containing the string as a value corresponding to k. The resulting Resource +// will have the specified schemaURL. +func StringDetector(schemaURL string, k attribute.Key, f func() (string, error)) Detector { + return stringDetector{schemaURL: schemaURL, K: k, F: f} +} + +// Detect returns a *Resource that describes the string as a value +// corresponding to attribute.Key as well as the specific schemaURL. +func (sd stringDetector) Detect(ctx context.Context) (*Resource, error) { + value, err := sd.F() + if err != nil { + return nil, fmt.Errorf("%s: %w", string(sd.K), err) + } + a := sd.K.String(value) + if !a.Valid() { + return nil, fmt.Errorf("invalid attribute: %q -> %q", a.Key, a.Value.Emit()) + } + return NewWithAttributes(sd.schemaURL, sd.K.String(value)), nil +} + +// Detect implements Detector. +func (defaultServiceNameDetector) Detect(ctx context.Context) (*Resource, error) { + return StringDetector( + semconv.SchemaURL, + semconv.ServiceNameKey, + func() (string, error) { + executable, err := os.Executable() + if err != nil { + return "unknown_service:go", nil + } + return "unknown_service:" + filepath.Base(executable), nil + }, + ).Detect(ctx) +} + +// Detect implements Detector. +func (defaultServiceInstanceIDDetector) Detect(ctx context.Context) (*Resource, error) { + return StringDetector( + semconv.SchemaURL, + semconv.ServiceInstanceIDKey, + func() (string, error) { + version4Uuid, err := uuid.NewRandom() + if err != nil { + return "", err + } + + return version4Uuid.String(), nil + }, + ).Detect(ctx) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/config.go b/vendor/go.opentelemetry.io/otel/sdk/resource/config.go new file mode 100644 index 0000000000..0d6e213d92 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/config.go @@ -0,0 +1,195 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" +) + +// config contains configuration for Resource creation. +type config struct { + // detectors that will be evaluated. + detectors []Detector + // SchemaURL to associate with the Resource. + schemaURL string +} + +// Option is the interface that applies a configuration option. +type Option interface { + // apply sets the Option value of a config. + apply(config) config +} + +// WithAttributes adds attributes to the configured Resource. +func WithAttributes(attributes ...attribute.KeyValue) Option { + return WithDetectors(detectAttributes{attributes}) +} + +type detectAttributes struct { + attributes []attribute.KeyValue +} + +func (d detectAttributes) Detect(context.Context) (*Resource, error) { + return NewSchemaless(d.attributes...), nil +} + +// WithDetectors adds detectors to be evaluated for the configured resource. +func WithDetectors(detectors ...Detector) Option { + return detectorsOption{detectors: detectors} +} + +type detectorsOption struct { + detectors []Detector +} + +func (o detectorsOption) apply(cfg config) config { + cfg.detectors = append(cfg.detectors, o.detectors...) + return cfg +} + +// WithFromEnv adds attributes from environment variables to the configured resource. +func WithFromEnv() Option { + return WithDetectors(fromEnv{}) +} + +// WithHost adds attributes from the host to the configured resource. +func WithHost() Option { + return WithDetectors(host{}) +} + +// WithHostID adds host ID information to the configured resource. +func WithHostID() Option { + return WithDetectors(hostIDDetector{}) +} + +// WithTelemetrySDK adds TelemetrySDK version info to the configured resource. +func WithTelemetrySDK() Option { + return WithDetectors(telemetrySDK{}) +} + +// WithSchemaURL sets the schema URL for the configured resource. +func WithSchemaURL(schemaURL string) Option { + return schemaURLOption(schemaURL) +} + +type schemaURLOption string + +func (o schemaURLOption) apply(cfg config) config { + cfg.schemaURL = string(o) + return cfg +} + +// WithOS adds all the OS attributes to the configured Resource. +// See individual WithOS* functions to configure specific attributes. +func WithOS() Option { + return WithDetectors( + osTypeDetector{}, + osDescriptionDetector{}, + ) +} + +// WithOSType adds an attribute with the operating system type to the configured Resource. +func WithOSType() Option { + return WithDetectors(osTypeDetector{}) +} + +// WithOSDescription adds an attribute with the operating system description to the +// configured Resource. The formatted string is equivalent to the output of the +// `uname -snrvm` command. +func WithOSDescription() Option { + return WithDetectors(osDescriptionDetector{}) +} + +// WithProcess adds all the Process attributes to the configured Resource. +// +// Warning! This option will include process command line arguments. If these +// contain sensitive information it will be included in the exported resource. +// +// This option is equivalent to calling WithProcessPID, +// WithProcessExecutableName, WithProcessExecutablePath, +// WithProcessCommandArgs, WithProcessOwner, WithProcessRuntimeName, +// WithProcessRuntimeVersion, and WithProcessRuntimeDescription. See each +// option function for information about what resource attributes each +// includes. +func WithProcess() Option { + return WithDetectors( + processPIDDetector{}, + processExecutableNameDetector{}, + processExecutablePathDetector{}, + processCommandArgsDetector{}, + processOwnerDetector{}, + processRuntimeNameDetector{}, + processRuntimeVersionDetector{}, + processRuntimeDescriptionDetector{}, + ) +} + +// WithProcessPID adds an attribute with the process identifier (PID) to the +// configured Resource. +func WithProcessPID() Option { + return WithDetectors(processPIDDetector{}) +} + +// WithProcessExecutableName adds an attribute with the name of the process +// executable to the configured Resource. +func WithProcessExecutableName() Option { + return WithDetectors(processExecutableNameDetector{}) +} + +// WithProcessExecutablePath adds an attribute with the full path to the process +// executable to the configured Resource. +func WithProcessExecutablePath() Option { + return WithDetectors(processExecutablePathDetector{}) +} + +// WithProcessCommandArgs adds an attribute with all the command arguments (including +// the command/executable itself) as received by the process to the configured +// Resource. +// +// Warning! This option will include process command line arguments. If these +// contain sensitive information it will be included in the exported resource. +func WithProcessCommandArgs() Option { + return WithDetectors(processCommandArgsDetector{}) +} + +// WithProcessOwner adds an attribute with the username of the user that owns the process +// to the configured Resource. +func WithProcessOwner() Option { + return WithDetectors(processOwnerDetector{}) +} + +// WithProcessRuntimeName adds an attribute with the name of the runtime of this +// process to the configured Resource. +func WithProcessRuntimeName() Option { + return WithDetectors(processRuntimeNameDetector{}) +} + +// WithProcessRuntimeVersion adds an attribute with the version of the runtime of +// this process to the configured Resource. +func WithProcessRuntimeVersion() Option { + return WithDetectors(processRuntimeVersionDetector{}) +} + +// WithProcessRuntimeDescription adds an attribute with an additional description +// about the runtime of the process to the configured Resource. +func WithProcessRuntimeDescription() Option { + return WithDetectors(processRuntimeDescriptionDetector{}) +} + +// WithContainer adds all the Container attributes to the configured Resource. +// See individual WithContainer* functions to configure specific attributes. +func WithContainer() Option { + return WithDetectors( + cgroupContainerIDDetector{}, + ) +} + +// WithContainerID adds an attribute with the id of the container to the configured Resource. +// Note: WithContainerID will not extract the correct container ID in an ECS environment. +// Please use the ECS resource detector instead (https://pkg.go.dev/go.opentelemetry.io/contrib/detectors/aws/ecs). +func WithContainerID() Option { + return WithDetectors(cgroupContainerIDDetector{}) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/container.go b/vendor/go.opentelemetry.io/otel/sdk/resource/container.go new file mode 100644 index 0000000000..0d8619715e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/container.go @@ -0,0 +1,89 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "bufio" + "context" + "errors" + "io" + "os" + "regexp" + + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type containerIDProvider func() (string, error) + +var ( + containerID containerIDProvider = getContainerIDFromCGroup + cgroupContainerIDRe = regexp.MustCompile(`^.*/(?:.*[-:])?([0-9a-f]+)(?:\.|\s*$)`) +) + +type cgroupContainerIDDetector struct{} + +const cgroupPath = "/proc/self/cgroup" + +// Detect returns a *Resource that describes the id of the container. +// If no container id found, an empty resource will be returned. +func (cgroupContainerIDDetector) Detect(ctx context.Context) (*Resource, error) { + containerID, err := containerID() + if err != nil { + return nil, err + } + + if containerID == "" { + return Empty(), nil + } + return NewWithAttributes(semconv.SchemaURL, semconv.ContainerID(containerID)), nil +} + +var ( + defaultOSStat = os.Stat + osStat = defaultOSStat + + defaultOSOpen = func(name string) (io.ReadCloser, error) { + return os.Open(name) + } + osOpen = defaultOSOpen +) + +// getContainerIDFromCGroup returns the id of the container from the cgroup file. +// If no container id found, an empty string will be returned. +func getContainerIDFromCGroup() (string, error) { + if _, err := osStat(cgroupPath); errors.Is(err, os.ErrNotExist) { + // File does not exist, skip + return "", nil + } + + file, err := osOpen(cgroupPath) + if err != nil { + return "", err + } + defer file.Close() + + return getContainerIDFromReader(file), nil +} + +// getContainerIDFromReader returns the id of the container from reader. +func getContainerIDFromReader(reader io.Reader) string { + scanner := bufio.NewScanner(reader) + for scanner.Scan() { + line := scanner.Text() + + if id := getContainerIDFromLine(line); id != "" { + return id + } + } + return "" +} + +// getContainerIDFromLine returns the id of the container from one string line. +func getContainerIDFromLine(line string) string { + matches := cgroupContainerIDRe.FindStringSubmatch(line) + if len(matches) <= 1 { + return "" + } + return matches[1] +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go b/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go new file mode 100644 index 0000000000..64939a2713 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/doc.go @@ -0,0 +1,20 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package resource provides detecting and representing resources. +// +// The fundamental struct is a Resource which holds identifying information +// about the entities for which telemetry is exported. +// +// To automatically construct Resources from an environment a Detector +// interface is defined. Implementations of this interface can be passed to +// the Detect function to generate a Resource from the merged information. +// +// To load a user defined Resource from the environment variable +// OTEL_RESOURCE_ATTRIBUTES the FromEnv Detector can be used. It will interpret +// the value as a list of comma delimited key/value pairs +// (e.g. `=,=,...`). +// +// While this package provides a stable API, +// the attributes added by resource detectors may change. +package resource // import "go.opentelemetry.io/otel/sdk/resource" diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/env.go b/vendor/go.opentelemetry.io/otel/sdk/resource/env.go new file mode 100644 index 0000000000..16a062ad8c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/env.go @@ -0,0 +1,95 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "fmt" + "net/url" + "os" + "strings" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +const ( + // resourceAttrKey is the environment variable name OpenTelemetry Resource information will be read from. + resourceAttrKey = "OTEL_RESOURCE_ATTRIBUTES" //nolint:gosec // False positive G101: Potential hardcoded credentials + + // svcNameKey is the environment variable name that Service Name information will be read from. + svcNameKey = "OTEL_SERVICE_NAME" +) + +// errMissingValue is returned when a resource value is missing. +var errMissingValue = fmt.Errorf("%w: missing value", ErrPartialResource) + +// fromEnv is a Detector that implements the Detector and collects +// resources from environment. This Detector is included as a +// builtin. +type fromEnv struct{} + +// compile time assertion that FromEnv implements Detector interface. +var _ Detector = fromEnv{} + +// Detect collects resources from environment. +func (fromEnv) Detect(context.Context) (*Resource, error) { + attrs := strings.TrimSpace(os.Getenv(resourceAttrKey)) + svcName := strings.TrimSpace(os.Getenv(svcNameKey)) + + if attrs == "" && svcName == "" { + return Empty(), nil + } + + var res *Resource + + if svcName != "" { + res = NewSchemaless(semconv.ServiceName(svcName)) + } + + r2, err := constructOTResources(attrs) + + // Ensure that the resource with the service name from OTEL_SERVICE_NAME + // takes precedence, if it was defined. + res, err2 := Merge(r2, res) + + if err == nil { + err = err2 + } else if err2 != nil { + err = fmt.Errorf("detecting resources: %s", []string{err.Error(), err2.Error()}) + } + + return res, err +} + +func constructOTResources(s string) (*Resource, error) { + if s == "" { + return Empty(), nil + } + pairs := strings.Split(s, ",") + var attrs []attribute.KeyValue + var invalid []string + for _, p := range pairs { + k, v, found := strings.Cut(p, "=") + if !found { + invalid = append(invalid, p) + continue + } + key := strings.TrimSpace(k) + val, err := url.PathUnescape(strings.TrimSpace(v)) + if err != nil { + // Retain original value if decoding fails, otherwise it will be + // an empty string. + val = v + otel.Handle(err) + } + attrs = append(attrs, attribute.String(key, val)) + } + var err error + if len(invalid) > 0 { + err = fmt.Errorf("%w: %v", errMissingValue, invalid) + } + return NewSchemaless(attrs...), err +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go new file mode 100644 index 0000000000..7819039238 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id.go @@ -0,0 +1,109 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "errors" + "strings" + + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type hostIDProvider func() (string, error) + +var defaultHostIDProvider hostIDProvider = platformHostIDReader.read + +var hostID = defaultHostIDProvider + +type hostIDReader interface { + read() (string, error) +} + +type fileReader func(string) (string, error) + +type commandExecutor func(string, ...string) (string, error) + +// hostIDReaderBSD implements hostIDReader. +type hostIDReaderBSD struct { + execCommand commandExecutor + readFile fileReader +} + +// read attempts to read the machine-id from /etc/hostid. If not found it will +// execute `kenv -q smbios.system.uuid`. If neither location yields an id an +// error will be returned. +func (r *hostIDReaderBSD) read() (string, error) { + if result, err := r.readFile("/etc/hostid"); err == nil { + return strings.TrimSpace(result), nil + } + + if result, err := r.execCommand("kenv", "-q", "smbios.system.uuid"); err == nil { + return strings.TrimSpace(result), nil + } + + return "", errors.New("host id not found in: /etc/hostid or kenv") +} + +// hostIDReaderDarwin implements hostIDReader. +type hostIDReaderDarwin struct { + execCommand commandExecutor +} + +// read executes `ioreg -rd1 -c "IOPlatformExpertDevice"` and parses host id +// from the IOPlatformUUID line. If the command fails or the uuid cannot be +// parsed an error will be returned. +func (r *hostIDReaderDarwin) read() (string, error) { + result, err := r.execCommand("ioreg", "-rd1", "-c", "IOPlatformExpertDevice") + if err != nil { + return "", err + } + + lines := strings.Split(result, "\n") + for _, line := range lines { + if strings.Contains(line, "IOPlatformUUID") { + parts := strings.Split(line, " = ") + if len(parts) == 2 { + return strings.Trim(parts[1], "\""), nil + } + break + } + } + + return "", errors.New("could not parse IOPlatformUUID") +} + +type hostIDReaderLinux struct { + readFile fileReader +} + +// read attempts to read the machine-id from /etc/machine-id followed by +// /var/lib/dbus/machine-id. If neither location yields an ID an error will +// be returned. +func (r *hostIDReaderLinux) read() (string, error) { + if result, err := r.readFile("/etc/machine-id"); err == nil { + return strings.TrimSpace(result), nil + } + + if result, err := r.readFile("/var/lib/dbus/machine-id"); err == nil { + return strings.TrimSpace(result), nil + } + + return "", errors.New("host id not found in: /etc/machine-id or /var/lib/dbus/machine-id") +} + +type hostIDDetector struct{} + +// Detect returns a *Resource containing the platform specific host id. +func (hostIDDetector) Detect(ctx context.Context) (*Resource, error) { + hostID, err := hostID() + if err != nil { + return nil, err + } + + return NewWithAttributes( + semconv.SchemaURL, + semconv.HostID(hostID), + ), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go new file mode 100644 index 0000000000..cc8b8938ed --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_bsd.go @@ -0,0 +1,12 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build dragonfly || freebsd || netbsd || openbsd || solaris +// +build dragonfly freebsd netbsd openbsd solaris + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +var platformHostIDReader hostIDReader = &hostIDReaderBSD{ + execCommand: execCommand, + readFile: readFile, +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go new file mode 100644 index 0000000000..b09fde3b73 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_darwin.go @@ -0,0 +1,8 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +var platformHostIDReader hostIDReader = &hostIDReaderDarwin{ + execCommand: execCommand, +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go new file mode 100644 index 0000000000..d9e5d1a8ff --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_exec.go @@ -0,0 +1,18 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build darwin || dragonfly || freebsd || netbsd || openbsd || solaris + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import "os/exec" + +func execCommand(name string, arg ...string) (string, error) { + cmd := exec.Command(name, arg...) + b, err := cmd.Output() + if err != nil { + return "", err + } + + return string(b), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go new file mode 100644 index 0000000000..f84f173240 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_linux.go @@ -0,0 +1,11 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build linux +// +build linux + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +var platformHostIDReader hostIDReader = &hostIDReaderLinux{ + readFile: readFile, +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go new file mode 100644 index 0000000000..6354b35602 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_readfile.go @@ -0,0 +1,17 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build linux || dragonfly || freebsd || netbsd || openbsd || solaris + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import "os" + +func readFile(filename string) (string, error) { + b, err := os.ReadFile(filename) + if err != nil { + return "", err + } + + return string(b), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go new file mode 100644 index 0000000000..df12c44c56 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_unsupported.go @@ -0,0 +1,19 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows +// +build !darwin,!dragonfly,!freebsd,!linux,!netbsd,!openbsd,!solaris,!windows + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +// hostIDReaderUnsupported is a placeholder implementation for operating systems +// for which this project currently doesn't support host.id +// attribute detection. See build tags declaration early on this file +// for a list of unsupported OSes. +type hostIDReaderUnsupported struct{} + +func (*hostIDReaderUnsupported) read() (string, error) { + return "", nil +} + +var platformHostIDReader hostIDReader = &hostIDReaderUnsupported{} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go new file mode 100644 index 0000000000..3677c83d7d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/host_id_windows.go @@ -0,0 +1,36 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build windows +// +build windows + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "golang.org/x/sys/windows/registry" +) + +// implements hostIDReader. +type hostIDReaderWindows struct{} + +// read reads MachineGuid from the Windows registry key: +// SOFTWARE\Microsoft\Cryptography. +func (*hostIDReaderWindows) read() (string, error) { + k, err := registry.OpenKey( + registry.LOCAL_MACHINE, `SOFTWARE\Microsoft\Cryptography`, + registry.QUERY_VALUE|registry.WOW64_64KEY, + ) + if err != nil { + return "", err + } + defer k.Close() + + guid, _, err := k.GetStringValue("MachineGuid") + if err != nil { + return "", err + } + + return guid, nil +} + +var platformHostIDReader hostIDReader = &hostIDReaderWindows{} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os.go new file mode 100644 index 0000000000..01b4d27a03 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os.go @@ -0,0 +1,89 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "strings" + + "go.opentelemetry.io/otel/attribute" + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type osDescriptionProvider func() (string, error) + +var defaultOSDescriptionProvider osDescriptionProvider = platformOSDescription + +var osDescription = defaultOSDescriptionProvider + +func setDefaultOSDescriptionProvider() { + setOSDescriptionProvider(defaultOSDescriptionProvider) +} + +func setOSDescriptionProvider(osDescriptionProvider osDescriptionProvider) { + osDescription = osDescriptionProvider +} + +type ( + osTypeDetector struct{} + osDescriptionDetector struct{} +) + +// Detect returns a *Resource that describes the operating system type the +// service is running on. +func (osTypeDetector) Detect(ctx context.Context) (*Resource, error) { + osType := runtimeOS() + + osTypeAttribute := mapRuntimeOSToSemconvOSType(osType) + + return NewWithAttributes( + semconv.SchemaURL, + osTypeAttribute, + ), nil +} + +// Detect returns a *Resource that describes the operating system the +// service is running on. +func (osDescriptionDetector) Detect(ctx context.Context) (*Resource, error) { + description, err := osDescription() + if err != nil { + return nil, err + } + + return NewWithAttributes( + semconv.SchemaURL, + semconv.OSDescription(description), + ), nil +} + +// mapRuntimeOSToSemconvOSType translates the OS name as provided by the Go runtime +// into an OS type attribute with the corresponding value defined by the semantic +// conventions. In case the provided OS name isn't mapped, it's transformed to lowercase +// and used as the value for the returned OS type attribute. +func mapRuntimeOSToSemconvOSType(osType string) attribute.KeyValue { + // the elements in this map are the intersection between + // available GOOS values and defined semconv OS types + osTypeAttributeMap := map[string]attribute.KeyValue{ + "aix": semconv.OSTypeAIX, + "darwin": semconv.OSTypeDarwin, + "dragonfly": semconv.OSTypeDragonflyBSD, + "freebsd": semconv.OSTypeFreeBSD, + "linux": semconv.OSTypeLinux, + "netbsd": semconv.OSTypeNetBSD, + "openbsd": semconv.OSTypeOpenBSD, + "solaris": semconv.OSTypeSolaris, + "windows": semconv.OSTypeWindows, + "zos": semconv.OSTypeZOS, + } + + var osTypeAttribute attribute.KeyValue + + if attr, ok := osTypeAttributeMap[osType]; ok { + osTypeAttribute = attr + } else { + osTypeAttribute = semconv.OSTypeKey.String(strings.ToLower(osType)) + } + + return osTypeAttribute +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go new file mode 100644 index 0000000000..3d703c5d98 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_darwin.go @@ -0,0 +1,92 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "encoding/xml" + "errors" + "fmt" + "io" + "os" +) + +type plist struct { + XMLName xml.Name `xml:"plist"` + Dict dict `xml:"dict"` +} + +type dict struct { + Key []string `xml:"key"` + String []string `xml:"string"` +} + +// osRelease builds a string describing the operating system release based on the +// contents of the property list (.plist) system files. If no .plist files are found, +// or if the required properties to build the release description string are missing, +// an empty string is returned instead. The generated string resembles the output of +// the `sw_vers` commandline program, but in a single-line string. For more information +// about the `sw_vers` program, see: https://www.unix.com/man-page/osx/1/SW_VERS. +func osRelease() string { + file, err := getPlistFile() + if err != nil { + return "" + } + + defer file.Close() + + values, err := parsePlistFile(file) + if err != nil { + return "" + } + + return buildOSRelease(values) +} + +// getPlistFile returns a *os.File pointing to one of the well-known .plist files +// available on macOS. If no file can be opened, it returns an error. +func getPlistFile() (*os.File, error) { + return getFirstAvailableFile([]string{ + "/System/Library/CoreServices/SystemVersion.plist", + "/System/Library/CoreServices/ServerVersion.plist", + }) +} + +// parsePlistFile process the file pointed by `file` as a .plist file and returns +// a map with the key-values for each pair of correlated and elements +// contained in it. +func parsePlistFile(file io.Reader) (map[string]string, error) { + var v plist + + err := xml.NewDecoder(file).Decode(&v) + if err != nil { + return nil, err + } + + if len(v.Dict.Key) != len(v.Dict.String) { + return nil, errors.New("the number of and elements doesn't match") + } + + properties := make(map[string]string, len(v.Dict.Key)) + for i, key := range v.Dict.Key { + properties[key] = v.Dict.String[i] + } + + return properties, nil +} + +// buildOSRelease builds a string describing the OS release based on the properties +// available on the provided map. It tries to find the `ProductName`, `ProductVersion` +// and `ProductBuildVersion` properties. If some of these properties are not found, +// it returns an empty string. +func buildOSRelease(properties map[string]string) string { + productName := properties["ProductName"] + productVersion := properties["ProductVersion"] + productBuildVersion := properties["ProductBuildVersion"] + + if productName == "" || productVersion == "" || productBuildVersion == "" { + return "" + } + + return fmt.Sprintf("%s %s (%s)", productName, productVersion, productBuildVersion) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go new file mode 100644 index 0000000000..f537e5ca5c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_release_unix.go @@ -0,0 +1,143 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build aix || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos +// +build aix dragonfly freebsd linux netbsd openbsd solaris zos + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "bufio" + "fmt" + "io" + "os" + "strings" +) + +// osRelease builds a string describing the operating system release based on the +// properties of the os-release file. If no os-release file is found, or if the +// required properties to build the release description string are missing, an empty +// string is returned instead. For more information about os-release files, see: +// https://www.freedesktop.org/software/systemd/man/os-release.html +func osRelease() string { + file, err := getOSReleaseFile() + if err != nil { + return "" + } + + defer file.Close() + + values := parseOSReleaseFile(file) + + return buildOSRelease(values) +} + +// getOSReleaseFile returns a *os.File pointing to one of the well-known os-release +// files, according to their order of preference. If no file can be opened, it +// returns an error. +func getOSReleaseFile() (*os.File, error) { + return getFirstAvailableFile([]string{"/etc/os-release", "/usr/lib/os-release"}) +} + +// parseOSReleaseFile process the file pointed by `file` as an os-release file and +// returns a map with the key-values contained in it. Empty lines or lines starting +// with a '#' character are ignored, as well as lines with the missing key=value +// separator. Values are unquoted and unescaped. +func parseOSReleaseFile(file io.Reader) map[string]string { + values := make(map[string]string) + scanner := bufio.NewScanner(file) + + for scanner.Scan() { + line := scanner.Text() + + if skip(line) { + continue + } + + key, value, ok := parse(line) + if ok { + values[key] = value + } + } + + return values +} + +// skip returns true if the line is blank or starts with a '#' character, and +// therefore should be skipped from processing. +func skip(line string) bool { + line = strings.TrimSpace(line) + + return len(line) == 0 || strings.HasPrefix(line, "#") +} + +// parse attempts to split the provided line on the first '=' character, and then +// sanitize each side of the split before returning them as a key-value pair. +func parse(line string) (string, string, bool) { + k, v, found := strings.Cut(line, "=") + + if !found || len(k) == 0 { + return "", "", false + } + + key := strings.TrimSpace(k) + value := unescape(unquote(strings.TrimSpace(v))) + + return key, value, true +} + +// unquote checks whether the string `s` is quoted with double or single quotes +// and, if so, returns a version of the string without them. Otherwise it returns +// the provided string unchanged. +func unquote(s string) string { + if len(s) < 2 { + return s + } + + if (s[0] == '"' || s[0] == '\'') && s[0] == s[len(s)-1] { + return s[1 : len(s)-1] + } + + return s +} + +// unescape removes the `\` prefix from some characters that are expected +// to have it added in front of them for escaping purposes. +func unescape(s string) string { + return strings.NewReplacer( + `\$`, `$`, + `\"`, `"`, + `\'`, `'`, + `\\`, `\`, + "\\`", "`", + ).Replace(s) +} + +// buildOSRelease builds a string describing the OS release based on the properties +// available on the provided map. It favors a combination of the `NAME` and `VERSION` +// properties as first option (falling back to `VERSION_ID` if `VERSION` isn't +// found), and using `PRETTY_NAME` alone if some of the previous are not present. If +// none of these properties are found, it returns an empty string. +// +// The rationale behind not using `PRETTY_NAME` as first choice was that, for some +// Linux distributions, it doesn't include the same detail that can be found on the +// individual `NAME` and `VERSION` properties, and combining `PRETTY_NAME` with +// other properties can produce "pretty" redundant strings in some cases. +func buildOSRelease(values map[string]string) string { + var osRelease string + + name := values["NAME"] + version := values["VERSION"] + + if version == "" { + version = values["VERSION_ID"] + } + + if name != "" && version != "" { + osRelease = fmt.Sprintf("%s %s", name, version) + } else { + osRelease = values["PRETTY_NAME"] + } + + return osRelease +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go new file mode 100644 index 0000000000..a6ff26a4d2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unix.go @@ -0,0 +1,79 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build aix || darwin || dragonfly || freebsd || linux || netbsd || openbsd || solaris || zos +// +build aix darwin dragonfly freebsd linux netbsd openbsd solaris zos + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "fmt" + "os" + + "golang.org/x/sys/unix" +) + +type unameProvider func(buf *unix.Utsname) (err error) + +var defaultUnameProvider unameProvider = unix.Uname + +var currentUnameProvider = defaultUnameProvider + +func setDefaultUnameProvider() { + setUnameProvider(defaultUnameProvider) +} + +func setUnameProvider(unameProvider unameProvider) { + currentUnameProvider = unameProvider +} + +// platformOSDescription returns a human readable OS version information string. +// The final string combines OS release information (where available) and the +// result of the `uname` system call. +func platformOSDescription() (string, error) { + uname, err := uname() + if err != nil { + return "", err + } + + osRelease := osRelease() + if osRelease != "" { + return fmt.Sprintf("%s (%s)", osRelease, uname), nil + } + + return uname, nil +} + +// uname issues a uname(2) system call (or equivalent on systems which doesn't +// have one) and formats the output in a single string, similar to the output +// of the `uname` commandline program. The final string resembles the one +// obtained with a call to `uname -snrvm`. +func uname() (string, error) { + var utsName unix.Utsname + + err := currentUnameProvider(&utsName) + if err != nil { + return "", err + } + + return fmt.Sprintf("%s %s %s %s %s", + unix.ByteSliceToString(utsName.Sysname[:]), + unix.ByteSliceToString(utsName.Nodename[:]), + unix.ByteSliceToString(utsName.Release[:]), + unix.ByteSliceToString(utsName.Version[:]), + unix.ByteSliceToString(utsName.Machine[:]), + ), nil +} + +// getFirstAvailableFile returns an *os.File of the first available +// file from a list of candidate file paths. +func getFirstAvailableFile(candidates []string) (*os.File, error) { + for _, c := range candidates { + file, err := os.Open(c) + if err == nil { + return file, nil + } + } + + return nil, fmt.Errorf("no candidate file available: %v", candidates) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go new file mode 100644 index 0000000000..a77742b077 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_unsupported.go @@ -0,0 +1,15 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +//go:build !aix && !darwin && !dragonfly && !freebsd && !linux && !netbsd && !openbsd && !solaris && !windows && !zos +// +build !aix,!darwin,!dragonfly,!freebsd,!linux,!netbsd,!openbsd,!solaris,!windows,!zos + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +// platformOSDescription is a placeholder implementation for OSes +// for which this project currently doesn't support os.description +// attribute detection. See build tags declaration early on this file +// for a list of unsupported OSes. +func platformOSDescription() (string, error) { + return "", nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go b/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go new file mode 100644 index 0000000000..a6a5a53c0e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/os_windows.go @@ -0,0 +1,89 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "fmt" + "strconv" + + "golang.org/x/sys/windows/registry" +) + +// platformOSDescription returns a human readable OS version information string. +// It does so by querying registry values under the +// `SOFTWARE\Microsoft\Windows NT\CurrentVersion` key. The final string +// resembles the one displayed by the Version Reporter Applet (winver.exe). +func platformOSDescription() (string, error) { + k, err := registry.OpenKey( + registry.LOCAL_MACHINE, `SOFTWARE\Microsoft\Windows NT\CurrentVersion`, registry.QUERY_VALUE) + if err != nil { + return "", err + } + + defer k.Close() + + var ( + productName = readProductName(k) + displayVersion = readDisplayVersion(k) + releaseID = readReleaseID(k) + currentMajorVersionNumber = readCurrentMajorVersionNumber(k) + currentMinorVersionNumber = readCurrentMinorVersionNumber(k) + currentBuildNumber = readCurrentBuildNumber(k) + ubr = readUBR(k) + ) + + if displayVersion != "" { + displayVersion += " " + } + + return fmt.Sprintf("%s %s(%s) [Version %s.%s.%s.%s]", + productName, + displayVersion, + releaseID, + currentMajorVersionNumber, + currentMinorVersionNumber, + currentBuildNumber, + ubr, + ), nil +} + +func getStringValue(name string, k registry.Key) string { + value, _, _ := k.GetStringValue(name) + + return value +} + +func getIntegerValue(name string, k registry.Key) uint64 { + value, _, _ := k.GetIntegerValue(name) + + return value +} + +func readProductName(k registry.Key) string { + return getStringValue("ProductName", k) +} + +func readDisplayVersion(k registry.Key) string { + return getStringValue("DisplayVersion", k) +} + +func readReleaseID(k registry.Key) string { + return getStringValue("ReleaseID", k) +} + +func readCurrentMajorVersionNumber(k registry.Key) string { + return strconv.FormatUint(getIntegerValue("CurrentMajorVersionNumber", k), 10) +} + +func readCurrentMinorVersionNumber(k registry.Key) string { + return strconv.FormatUint(getIntegerValue("CurrentMinorVersionNumber", k), 10) +} + +func readCurrentBuildNumber(k registry.Key) string { + return getStringValue("CurrentBuildNumber", k) +} + +func readUBR(k registry.Key) string { + return strconv.FormatUint(getIntegerValue("UBR", k), 10) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/process.go b/vendor/go.opentelemetry.io/otel/sdk/resource/process.go new file mode 100644 index 0000000000..6712ce80d5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/process.go @@ -0,0 +1,173 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "fmt" + "os" + "os/user" + "path/filepath" + "runtime" + + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" +) + +type ( + pidProvider func() int + executablePathProvider func() (string, error) + commandArgsProvider func() []string + ownerProvider func() (*user.User, error) + runtimeNameProvider func() string + runtimeVersionProvider func() string + runtimeOSProvider func() string + runtimeArchProvider func() string +) + +var ( + defaultPidProvider pidProvider = os.Getpid + defaultExecutablePathProvider executablePathProvider = os.Executable + defaultCommandArgsProvider commandArgsProvider = func() []string { return os.Args } + defaultOwnerProvider ownerProvider = user.Current + defaultRuntimeNameProvider runtimeNameProvider = func() string { + if runtime.Compiler == "gc" { + return "go" + } + return runtime.Compiler + } + defaultRuntimeVersionProvider runtimeVersionProvider = runtime.Version + defaultRuntimeOSProvider runtimeOSProvider = func() string { return runtime.GOOS } + defaultRuntimeArchProvider runtimeArchProvider = func() string { return runtime.GOARCH } +) + +var ( + pid = defaultPidProvider + executablePath = defaultExecutablePathProvider + commandArgs = defaultCommandArgsProvider + owner = defaultOwnerProvider + runtimeName = defaultRuntimeNameProvider + runtimeVersion = defaultRuntimeVersionProvider + runtimeOS = defaultRuntimeOSProvider + runtimeArch = defaultRuntimeArchProvider +) + +func setDefaultOSProviders() { + setOSProviders( + defaultPidProvider, + defaultExecutablePathProvider, + defaultCommandArgsProvider, + ) +} + +func setOSProviders( + pidProvider pidProvider, + executablePathProvider executablePathProvider, + commandArgsProvider commandArgsProvider, +) { + pid = pidProvider + executablePath = executablePathProvider + commandArgs = commandArgsProvider +} + +func setDefaultRuntimeProviders() { + setRuntimeProviders( + defaultRuntimeNameProvider, + defaultRuntimeVersionProvider, + defaultRuntimeOSProvider, + defaultRuntimeArchProvider, + ) +} + +func setRuntimeProviders( + runtimeNameProvider runtimeNameProvider, + runtimeVersionProvider runtimeVersionProvider, + runtimeOSProvider runtimeOSProvider, + runtimeArchProvider runtimeArchProvider, +) { + runtimeName = runtimeNameProvider + runtimeVersion = runtimeVersionProvider + runtimeOS = runtimeOSProvider + runtimeArch = runtimeArchProvider +} + +func setDefaultUserProviders() { + setUserProviders(defaultOwnerProvider) +} + +func setUserProviders(ownerProvider ownerProvider) { + owner = ownerProvider +} + +type ( + processPIDDetector struct{} + processExecutableNameDetector struct{} + processExecutablePathDetector struct{} + processCommandArgsDetector struct{} + processOwnerDetector struct{} + processRuntimeNameDetector struct{} + processRuntimeVersionDetector struct{} + processRuntimeDescriptionDetector struct{} +) + +// Detect returns a *Resource that describes the process identifier (PID) of the +// executing process. +func (processPIDDetector) Detect(ctx context.Context) (*Resource, error) { + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessPID(pid())), nil +} + +// Detect returns a *Resource that describes the name of the process executable. +func (processExecutableNameDetector) Detect(ctx context.Context) (*Resource, error) { + executableName := filepath.Base(commandArgs()[0]) + + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessExecutableName(executableName)), nil +} + +// Detect returns a *Resource that describes the full path of the process executable. +func (processExecutablePathDetector) Detect(ctx context.Context) (*Resource, error) { + executablePath, err := executablePath() + if err != nil { + return nil, err + } + + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessExecutablePath(executablePath)), nil +} + +// Detect returns a *Resource that describes all the command arguments as received +// by the process. +func (processCommandArgsDetector) Detect(ctx context.Context) (*Resource, error) { + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessCommandArgs(commandArgs()...)), nil +} + +// Detect returns a *Resource that describes the username of the user that owns the +// process. +func (processOwnerDetector) Detect(ctx context.Context) (*Resource, error) { + owner, err := owner() + if err != nil { + return nil, err + } + + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessOwner(owner.Username)), nil +} + +// Detect returns a *Resource that describes the name of the compiler used to compile +// this process image. +func (processRuntimeNameDetector) Detect(ctx context.Context) (*Resource, error) { + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessRuntimeName(runtimeName())), nil +} + +// Detect returns a *Resource that describes the version of the runtime of this process. +func (processRuntimeVersionDetector) Detect(ctx context.Context) (*Resource, error) { + return NewWithAttributes(semconv.SchemaURL, semconv.ProcessRuntimeVersion(runtimeVersion())), nil +} + +// Detect returns a *Resource that describes the runtime of this process. +func (processRuntimeDescriptionDetector) Detect(ctx context.Context) (*Resource, error) { + runtimeDescription := fmt.Sprintf( + "go version %s %s/%s", runtimeVersion(), runtimeOS(), runtimeArch()) + + return NewWithAttributes( + semconv.SchemaURL, + semconv.ProcessRuntimeDescription(runtimeDescription), + ), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go b/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go new file mode 100644 index 0000000000..09b91e1e1b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/resource/resource.go @@ -0,0 +1,309 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package resource // import "go.opentelemetry.io/otel/sdk/resource" + +import ( + "context" + "errors" + "fmt" + "sync" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/internal/x" +) + +// Resource describes an entity about which identifying information +// and metadata is exposed. Resource is an immutable object, +// equivalent to a map from key to unique value. +// +// Resources should be passed and stored as pointers +// (`*resource.Resource`). The `nil` value is equivalent to an empty +// Resource. +// +// Note that the Go == operator compares not just the resource attributes but +// also all other internals of the Resource type. Therefore, Resource values +// should not be used as map or database keys. In general, the [Resource.Equal] +// method should be used instead of direct comparison with ==, since that +// method ensures the correct comparison of resource attributes, and the +// [attribute.Distinct] returned from [Resource.Equivalent] should be used for +// map and database keys instead. +type Resource struct { + attrs attribute.Set + schemaURL string +} + +// Compile-time check that the Resource remains comparable. +var _ map[Resource]struct{} = nil + +var ( + defaultResource *Resource + defaultResourceOnce sync.Once +) + +// ErrSchemaURLConflict is an error returned when two Resources are merged +// together that contain different, non-empty, schema URLs. +var ErrSchemaURLConflict = errors.New("conflicting Schema URL") + +// New returns a [Resource] built using opts. +// +// This may return a partial Resource along with an error containing +// [ErrPartialResource] if options that provide a [Detector] are used and that +// error is returned from one or more of the Detectors. It may also return a +// merge-conflict Resource along with an error containing +// [ErrSchemaURLConflict] if merging Resources from the opts results in a +// schema URL conflict (see [Resource.Merge] for more information). It is up to +// the caller to determine if this returned Resource should be used or not +// based on these errors. +func New(ctx context.Context, opts ...Option) (*Resource, error) { + cfg := config{} + for _, opt := range opts { + cfg = opt.apply(cfg) + } + + r := &Resource{schemaURL: cfg.schemaURL} + return r, detect(ctx, r, cfg.detectors) +} + +// NewWithAttributes creates a resource from attrs and associates the resource with a +// schema URL. If attrs contains duplicate keys, the last value will be used. If attrs +// contains any invalid items those items will be dropped. The attrs are assumed to be +// in a schema identified by schemaURL. +func NewWithAttributes(schemaURL string, attrs ...attribute.KeyValue) *Resource { + resource := NewSchemaless(attrs...) + resource.schemaURL = schemaURL + return resource +} + +// NewSchemaless creates a resource from attrs. If attrs contains duplicate keys, +// the last value will be used. If attrs contains any invalid items those items will +// be dropped. The resource will not be associated with a schema URL. If the schema +// of the attrs is known use NewWithAttributes instead. +func NewSchemaless(attrs ...attribute.KeyValue) *Resource { + if len(attrs) == 0 { + return &Resource{} + } + + // Ensure attributes comply with the specification: + // https://github.com/open-telemetry/opentelemetry-specification/blob/v1.20.0/specification/common/README.md#attribute + s, _ := attribute.NewSetWithFiltered(attrs, func(kv attribute.KeyValue) bool { + return kv.Valid() + }) + + // If attrs only contains invalid entries do not allocate a new resource. + if s.Len() == 0 { + return &Resource{} + } + + return &Resource{attrs: s} //nolint +} + +// String implements the Stringer interface and provides a +// human-readable form of the resource. +// +// Avoid using this representation as the key in a map of resources, +// use Equivalent() as the key instead. +func (r *Resource) String() string { + if r == nil { + return "" + } + return r.attrs.Encoded(attribute.DefaultEncoder()) +} + +// MarshalLog is the marshaling function used by the logging system to represent this Resource. +func (r *Resource) MarshalLog() interface{} { + return struct { + Attributes attribute.Set + SchemaURL string + }{ + Attributes: r.attrs, + SchemaURL: r.schemaURL, + } +} + +// Attributes returns a copy of attributes from the resource in a sorted order. +// To avoid allocating a new slice, use an iterator. +func (r *Resource) Attributes() []attribute.KeyValue { + if r == nil { + r = Empty() + } + return r.attrs.ToSlice() +} + +// SchemaURL returns the schema URL associated with Resource r. +func (r *Resource) SchemaURL() string { + if r == nil { + return "" + } + return r.schemaURL +} + +// Iter returns an iterator of the Resource attributes. +// This is ideal to use if you do not want a copy of the attributes. +func (r *Resource) Iter() attribute.Iterator { + if r == nil { + r = Empty() + } + return r.attrs.Iter() +} + +// Equal returns whether r and o represent the same resource. Two resources can +// be equal even if they have different schema URLs. +// +// See the documentation on the [Resource] type for the pitfalls of using == +// with Resource values; most code should use Equal instead. +func (r *Resource) Equal(o *Resource) bool { + if r == nil { + r = Empty() + } + if o == nil { + o = Empty() + } + return r.Equivalent() == o.Equivalent() +} + +// Merge creates a new [Resource] by merging a and b. +// +// If there are common keys between a and b, then the value from b will +// overwrite the value from a, even if b's value is empty. +// +// The SchemaURL of the resources will be merged according to the +// [OpenTelemetry specification rules]: +// +// - If a's schema URL is empty then the returned Resource's schema URL will +// be set to the schema URL of b, +// - Else if b's schema URL is empty then the returned Resource's schema URL +// will be set to the schema URL of a, +// - Else if the schema URLs of a and b are the same then that will be the +// schema URL of the returned Resource, +// - Else this is a merging error. If the resources have different, +// non-empty, schema URLs an error containing [ErrSchemaURLConflict] will +// be returned with the merged Resource. The merged Resource will have an +// empty schema URL. It may be the case that some unintended attributes +// have been overwritten or old semantic conventions persisted in the +// returned Resource. It is up to the caller to determine if this returned +// Resource should be used or not. +// +// [OpenTelemetry specification rules]: https://github.com/open-telemetry/opentelemetry-specification/blob/v1.20.0/specification/resource/sdk.md#merge +func Merge(a, b *Resource) (*Resource, error) { + if a == nil && b == nil { + return Empty(), nil + } + if a == nil { + return b, nil + } + if b == nil { + return a, nil + } + + // Note: 'b' attributes will overwrite 'a' with last-value-wins in attribute.Key() + // Meaning this is equivalent to: append(a.Attributes(), b.Attributes()...) + mi := attribute.NewMergeIterator(b.Set(), a.Set()) + combine := make([]attribute.KeyValue, 0, a.Len()+b.Len()) + for mi.Next() { + combine = append(combine, mi.Attribute()) + } + + switch { + case a.schemaURL == "": + return NewWithAttributes(b.schemaURL, combine...), nil + case b.schemaURL == "": + return NewWithAttributes(a.schemaURL, combine...), nil + case a.schemaURL == b.schemaURL: + return NewWithAttributes(a.schemaURL, combine...), nil + } + // Return the merged resource with an appropriate error. It is up to + // the user to decide if the returned resource can be used or not. + return NewSchemaless(combine...), fmt.Errorf( + "%w: %s and %s", + ErrSchemaURLConflict, + a.schemaURL, + b.schemaURL, + ) +} + +// Empty returns an instance of Resource with no attributes. It is +// equivalent to a `nil` Resource. +func Empty() *Resource { + return &Resource{} +} + +// Default returns an instance of Resource with a default +// "service.name" and OpenTelemetrySDK attributes. +func Default() *Resource { + defaultResourceOnce.Do(func() { + var err error + defaultDetectors := []Detector{ + defaultServiceNameDetector{}, + fromEnv{}, + telemetrySDK{}, + } + if x.Resource.Enabled() { + defaultDetectors = append([]Detector{defaultServiceInstanceIDDetector{}}, defaultDetectors...) + } + defaultResource, err = Detect( + context.Background(), + defaultDetectors..., + ) + if err != nil { + otel.Handle(err) + } + // If Detect did not return a valid resource, fall back to emptyResource. + if defaultResource == nil { + defaultResource = &Resource{} + } + }) + return defaultResource +} + +// Environment returns an instance of Resource with attributes +// extracted from the OTEL_RESOURCE_ATTRIBUTES environment variable. +func Environment() *Resource { + detector := &fromEnv{} + resource, err := detector.Detect(context.Background()) + if err != nil { + otel.Handle(err) + } + return resource +} + +// Equivalent returns an object that can be compared for equality +// between two resources. This value is suitable for use as a key in +// a map. +func (r *Resource) Equivalent() attribute.Distinct { + return r.Set().Equivalent() +} + +// Set returns the equivalent *attribute.Set of this resource's attributes. +func (r *Resource) Set() *attribute.Set { + if r == nil { + r = Empty() + } + return &r.attrs +} + +// MarshalJSON encodes the resource attributes as a JSON list of { "Key": +// "...", "Value": ... } pairs in order sorted by key. +func (r *Resource) MarshalJSON() ([]byte, error) { + if r == nil { + r = Empty() + } + return r.attrs.MarshalJSON() +} + +// Len returns the number of unique key-values in this Resource. +func (r *Resource) Len() int { + if r == nil { + return 0 + } + return r.attrs.Len() +} + +// Encoded returns an encoded representation of the resource. +func (r *Resource) Encoded(enc attribute.Encoder) string { + if r == nil { + return "" + } + return r.attrs.Encoded(enc) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/README.md b/vendor/go.opentelemetry.io/otel/sdk/trace/README.md new file mode 100644 index 0000000000..f2936e1439 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/README.md @@ -0,0 +1,3 @@ +# SDK Trace + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/trace)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/trace) diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go new file mode 100644 index 0000000000..6966ed861e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/batch_span_processor.go @@ -0,0 +1,414 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "errors" + "sync" + "sync/atomic" + "time" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/internal/env" + "go.opentelemetry.io/otel/trace" +) + +// Defaults for BatchSpanProcessorOptions. +const ( + DefaultMaxQueueSize = 2048 + DefaultScheduleDelay = 5000 + DefaultExportTimeout = 30000 + DefaultMaxExportBatchSize = 512 +) + +// BatchSpanProcessorOption configures a BatchSpanProcessor. +type BatchSpanProcessorOption func(o *BatchSpanProcessorOptions) + +// BatchSpanProcessorOptions is configuration settings for a +// BatchSpanProcessor. +type BatchSpanProcessorOptions struct { + // MaxQueueSize is the maximum queue size to buffer spans for delayed processing. If the + // queue gets full it drops the spans. Use BlockOnQueueFull to change this behavior. + // The default value of MaxQueueSize is 2048. + MaxQueueSize int + + // BatchTimeout is the maximum duration for constructing a batch. Processor + // forcefully sends available spans when timeout is reached. + // The default value of BatchTimeout is 5000 msec. + BatchTimeout time.Duration + + // ExportTimeout specifies the maximum duration for exporting spans. If the timeout + // is reached, the export will be cancelled. + // The default value of ExportTimeout is 30000 msec. + ExportTimeout time.Duration + + // MaxExportBatchSize is the maximum number of spans to process in a single batch. + // If there are more than one batch worth of spans then it processes multiple batches + // of spans one batch after the other without any delay. + // The default value of MaxExportBatchSize is 512. + MaxExportBatchSize int + + // BlockOnQueueFull blocks onEnd() and onStart() method if the queue is full + // AND if BlockOnQueueFull is set to true. + // Blocking option should be used carefully as it can severely affect the performance of an + // application. + BlockOnQueueFull bool +} + +// batchSpanProcessor is a SpanProcessor that batches asynchronously-received +// spans and sends them to a trace.Exporter when complete. +type batchSpanProcessor struct { + e SpanExporter + o BatchSpanProcessorOptions + + queue chan ReadOnlySpan + dropped uint32 + + batch []ReadOnlySpan + batchMutex sync.Mutex + timer *time.Timer + stopWait sync.WaitGroup + stopOnce sync.Once + stopCh chan struct{} + stopped atomic.Bool +} + +var _ SpanProcessor = (*batchSpanProcessor)(nil) + +// NewBatchSpanProcessor creates a new SpanProcessor that will send completed +// span batches to the exporter with the supplied options. +// +// If the exporter is nil, the span processor will perform no action. +func NewBatchSpanProcessor(exporter SpanExporter, options ...BatchSpanProcessorOption) SpanProcessor { + maxQueueSize := env.BatchSpanProcessorMaxQueueSize(DefaultMaxQueueSize) + maxExportBatchSize := env.BatchSpanProcessorMaxExportBatchSize(DefaultMaxExportBatchSize) + + if maxExportBatchSize > maxQueueSize { + if DefaultMaxExportBatchSize > maxQueueSize { + maxExportBatchSize = maxQueueSize + } else { + maxExportBatchSize = DefaultMaxExportBatchSize + } + } + + o := BatchSpanProcessorOptions{ + BatchTimeout: time.Duration(env.BatchSpanProcessorScheduleDelay(DefaultScheduleDelay)) * time.Millisecond, + ExportTimeout: time.Duration(env.BatchSpanProcessorExportTimeout(DefaultExportTimeout)) * time.Millisecond, + MaxQueueSize: maxQueueSize, + MaxExportBatchSize: maxExportBatchSize, + } + for _, opt := range options { + opt(&o) + } + bsp := &batchSpanProcessor{ + e: exporter, + o: o, + batch: make([]ReadOnlySpan, 0, o.MaxExportBatchSize), + timer: time.NewTimer(o.BatchTimeout), + queue: make(chan ReadOnlySpan, o.MaxQueueSize), + stopCh: make(chan struct{}), + } + + bsp.stopWait.Add(1) + go func() { + defer bsp.stopWait.Done() + bsp.processQueue() + bsp.drainQueue() + }() + + return bsp +} + +// OnStart method does nothing. +func (bsp *batchSpanProcessor) OnStart(parent context.Context, s ReadWriteSpan) {} + +// OnEnd method enqueues a ReadOnlySpan for later processing. +func (bsp *batchSpanProcessor) OnEnd(s ReadOnlySpan) { + // Do not enqueue spans after Shutdown. + if bsp.stopped.Load() { + return + } + + // Do not enqueue spans if we are just going to drop them. + if bsp.e == nil { + return + } + bsp.enqueue(s) +} + +// Shutdown flushes the queue and waits until all spans are processed. +// It only executes once. Subsequent call does nothing. +func (bsp *batchSpanProcessor) Shutdown(ctx context.Context) error { + var err error + bsp.stopOnce.Do(func() { + bsp.stopped.Store(true) + wait := make(chan struct{}) + go func() { + close(bsp.stopCh) + bsp.stopWait.Wait() + if bsp.e != nil { + if err := bsp.e.Shutdown(ctx); err != nil { + otel.Handle(err) + } + } + close(wait) + }() + // Wait until the wait group is done or the context is cancelled + select { + case <-wait: + case <-ctx.Done(): + err = ctx.Err() + } + }) + return err +} + +type forceFlushSpan struct { + ReadOnlySpan + flushed chan struct{} +} + +func (f forceFlushSpan) SpanContext() trace.SpanContext { + return trace.NewSpanContext(trace.SpanContextConfig{TraceFlags: trace.FlagsSampled}) +} + +// ForceFlush exports all ended spans that have not yet been exported. +func (bsp *batchSpanProcessor) ForceFlush(ctx context.Context) error { + // Interrupt if context is already canceled. + if err := ctx.Err(); err != nil { + return err + } + + // Do nothing after Shutdown. + if bsp.stopped.Load() { + return nil + } + + var err error + if bsp.e != nil { + flushCh := make(chan struct{}) + if bsp.enqueueBlockOnQueueFull(ctx, forceFlushSpan{flushed: flushCh}) { + select { + case <-bsp.stopCh: + // The batchSpanProcessor is Shutdown. + return nil + case <-flushCh: + // Processed any items in queue prior to ForceFlush being called + case <-ctx.Done(): + return ctx.Err() + } + } + + wait := make(chan error, 1) + go func() { + wait <- bsp.exportSpans(ctx) + }() + // Wait until the export is finished or the context is cancelled/timed out + select { + case err = <-wait: + case <-ctx.Done(): + err = ctx.Err() + } + } + return err +} + +// WithMaxQueueSize returns a BatchSpanProcessorOption that configures the +// maximum queue size allowed for a BatchSpanProcessor. +func WithMaxQueueSize(size int) BatchSpanProcessorOption { + return func(o *BatchSpanProcessorOptions) { + o.MaxQueueSize = size + } +} + +// WithMaxExportBatchSize returns a BatchSpanProcessorOption that configures +// the maximum export batch size allowed for a BatchSpanProcessor. +func WithMaxExportBatchSize(size int) BatchSpanProcessorOption { + return func(o *BatchSpanProcessorOptions) { + o.MaxExportBatchSize = size + } +} + +// WithBatchTimeout returns a BatchSpanProcessorOption that configures the +// maximum delay allowed for a BatchSpanProcessor before it will export any +// held span (whether the queue is full or not). +func WithBatchTimeout(delay time.Duration) BatchSpanProcessorOption { + return func(o *BatchSpanProcessorOptions) { + o.BatchTimeout = delay + } +} + +// WithExportTimeout returns a BatchSpanProcessorOption that configures the +// amount of time a BatchSpanProcessor waits for an exporter to export before +// abandoning the export. +func WithExportTimeout(timeout time.Duration) BatchSpanProcessorOption { + return func(o *BatchSpanProcessorOptions) { + o.ExportTimeout = timeout + } +} + +// WithBlocking returns a BatchSpanProcessorOption that configures a +// BatchSpanProcessor to wait for enqueue operations to succeed instead of +// dropping data when the queue is full. +func WithBlocking() BatchSpanProcessorOption { + return func(o *BatchSpanProcessorOptions) { + o.BlockOnQueueFull = true + } +} + +// exportSpans is a subroutine of processing and draining the queue. +func (bsp *batchSpanProcessor) exportSpans(ctx context.Context) error { + bsp.timer.Reset(bsp.o.BatchTimeout) + + bsp.batchMutex.Lock() + defer bsp.batchMutex.Unlock() + + if bsp.o.ExportTimeout > 0 { + var cancel context.CancelFunc + ctx, cancel = context.WithTimeoutCause(ctx, bsp.o.ExportTimeout, errors.New("processor export timeout")) + defer cancel() + } + + if l := len(bsp.batch); l > 0 { + global.Debug("exporting spans", "count", len(bsp.batch), "total_dropped", atomic.LoadUint32(&bsp.dropped)) + err := bsp.e.ExportSpans(ctx, bsp.batch) + + // A new batch is always created after exporting, even if the batch failed to be exported. + // + // It is up to the exporter to implement any type of retry logic if a batch is failing + // to be exported, since it is specific to the protocol and backend being sent to. + clear(bsp.batch) // Erase elements to let GC collect objects + bsp.batch = bsp.batch[:0] + + if err != nil { + return err + } + } + return nil +} + +// processQueue removes spans from the `queue` channel until processor +// is shut down. It calls the exporter in batches of up to MaxExportBatchSize +// waiting up to BatchTimeout to form a batch. +func (bsp *batchSpanProcessor) processQueue() { + defer bsp.timer.Stop() + + ctx, cancel := context.WithCancel(context.Background()) + defer cancel() + for { + select { + case <-bsp.stopCh: + return + case <-bsp.timer.C: + if err := bsp.exportSpans(ctx); err != nil { + otel.Handle(err) + } + case sd := <-bsp.queue: + if ffs, ok := sd.(forceFlushSpan); ok { + close(ffs.flushed) + continue + } + bsp.batchMutex.Lock() + bsp.batch = append(bsp.batch, sd) + shouldExport := len(bsp.batch) >= bsp.o.MaxExportBatchSize + bsp.batchMutex.Unlock() + if shouldExport { + if !bsp.timer.Stop() { + // Handle both GODEBUG=asynctimerchan=[0|1] properly. + select { + case <-bsp.timer.C: + default: + } + } + if err := bsp.exportSpans(ctx); err != nil { + otel.Handle(err) + } + } + } + } +} + +// drainQueue awaits the any caller that had added to bsp.stopWait +// to finish the enqueue, then exports the final batch. +func (bsp *batchSpanProcessor) drainQueue() { + ctx, cancel := context.WithCancel(context.Background()) + defer cancel() + for { + select { + case sd := <-bsp.queue: + if _, ok := sd.(forceFlushSpan); ok { + // Ignore flush requests as they are not valid spans. + continue + } + + bsp.batchMutex.Lock() + bsp.batch = append(bsp.batch, sd) + shouldExport := len(bsp.batch) == bsp.o.MaxExportBatchSize + bsp.batchMutex.Unlock() + + if shouldExport { + if err := bsp.exportSpans(ctx); err != nil { + otel.Handle(err) + } + } + default: + // There are no more enqueued spans. Make final export. + if err := bsp.exportSpans(ctx); err != nil { + otel.Handle(err) + } + return + } + } +} + +func (bsp *batchSpanProcessor) enqueue(sd ReadOnlySpan) { + ctx := context.TODO() + if bsp.o.BlockOnQueueFull { + bsp.enqueueBlockOnQueueFull(ctx, sd) + } else { + bsp.enqueueDrop(ctx, sd) + } +} + +func (bsp *batchSpanProcessor) enqueueBlockOnQueueFull(ctx context.Context, sd ReadOnlySpan) bool { + if !sd.SpanContext().IsSampled() { + return false + } + + select { + case bsp.queue <- sd: + return true + case <-ctx.Done(): + return false + } +} + +func (bsp *batchSpanProcessor) enqueueDrop(_ context.Context, sd ReadOnlySpan) bool { + if !sd.SpanContext().IsSampled() { + return false + } + + select { + case bsp.queue <- sd: + return true + default: + atomic.AddUint32(&bsp.dropped, 1) + } + return false +} + +// MarshalLog is the marshaling function used by the logging system to represent this Span Processor. +func (bsp *batchSpanProcessor) MarshalLog() interface{} { + return struct { + Type string + SpanExporter SpanExporter + Config BatchSpanProcessorOptions + }{ + Type: "BatchSpanProcessor", + SpanExporter: bsp.e, + Config: bsp.o, + } +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go b/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go new file mode 100644 index 0000000000..1f60524e3e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/doc.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package trace contains support for OpenTelemetry distributed tracing. + +The following assumes a basic familiarity with OpenTelemetry concepts. +See https://opentelemetry.io. +*/ +package trace // import "go.opentelemetry.io/otel/sdk/trace" diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/event.go b/vendor/go.opentelemetry.io/otel/sdk/trace/event.go new file mode 100644 index 0000000000..60a7ed1349 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/event.go @@ -0,0 +1,26 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// Event is a thing that happened during a Span's lifetime. +type Event struct { + // Name is the name of this event + Name string + + // Attributes describe the aspects of the event. + Attributes []attribute.KeyValue + + // DroppedAttributeCount is the number of attributes that were not + // recorded due to configured limits being reached. + DroppedAttributeCount int + + // Time at which this event was recorded. + Time time.Time +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go b/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go new file mode 100644 index 0000000000..8c308dd60a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/evictedqueue.go @@ -0,0 +1,64 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "slices" + "sync" + + "go.opentelemetry.io/otel/internal/global" +) + +// evictedQueue is a FIFO queue with a configurable capacity. +type evictedQueue[T any] struct { + queue []T + capacity int + droppedCount int + logDroppedMsg string + logDroppedOnce sync.Once +} + +func newEvictedQueueEvent(capacity int) evictedQueue[Event] { + // Do not pre-allocate queue, do this lazily. + return evictedQueue[Event]{ + capacity: capacity, + logDroppedMsg: "limit reached: dropping trace trace.Event", + } +} + +func newEvictedQueueLink(capacity int) evictedQueue[Link] { + // Do not pre-allocate queue, do this lazily. + return evictedQueue[Link]{ + capacity: capacity, + logDroppedMsg: "limit reached: dropping trace trace.Link", + } +} + +// add adds value to the evictedQueue eq. If eq is at capacity, the oldest +// queued value will be discarded and the drop count incremented. +func (eq *evictedQueue[T]) add(value T) { + if eq.capacity == 0 { + eq.droppedCount++ + eq.logDropped() + return + } + + if eq.capacity > 0 && len(eq.queue) == eq.capacity { + // Drop first-in while avoiding allocating more capacity to eq.queue. + copy(eq.queue[:eq.capacity-1], eq.queue[1:]) + eq.queue = eq.queue[:eq.capacity-1] + eq.droppedCount++ + eq.logDropped() + } + eq.queue = append(eq.queue, value) +} + +func (eq *evictedQueue[T]) logDropped() { + eq.logDroppedOnce.Do(func() { global.Warn(eq.logDroppedMsg) }) +} + +// copy returns a copy of the evictedQueue. +func (eq *evictedQueue[T]) copy() []T { + return slices.Clone(eq.queue) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go b/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go new file mode 100644 index 0000000000..c8d3fb7e3c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/id_generator.go @@ -0,0 +1,69 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "encoding/binary" + "math/rand/v2" + + "go.opentelemetry.io/otel/trace" +) + +// IDGenerator allows custom generators for TraceID and SpanID. +type IDGenerator interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // NewIDs returns a new trace and span ID. + NewIDs(ctx context.Context) (trace.TraceID, trace.SpanID) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // NewSpanID returns a ID for a new span in the trace with traceID. + NewSpanID(ctx context.Context, traceID trace.TraceID) trace.SpanID + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +type randomIDGenerator struct{} + +var _ IDGenerator = &randomIDGenerator{} + +// NewSpanID returns a non-zero span ID from a randomly-chosen sequence. +func (gen *randomIDGenerator) NewSpanID(ctx context.Context, traceID trace.TraceID) trace.SpanID { + sid := trace.SpanID{} + for { + binary.NativeEndian.PutUint64(sid[:], rand.Uint64()) + if sid.IsValid() { + break + } + } + return sid +} + +// NewIDs returns a non-zero trace ID and a non-zero span ID from a +// randomly-chosen sequence. +func (gen *randomIDGenerator) NewIDs(ctx context.Context) (trace.TraceID, trace.SpanID) { + tid := trace.TraceID{} + sid := trace.SpanID{} + for { + binary.NativeEndian.PutUint64(tid[:8], rand.Uint64()) + binary.NativeEndian.PutUint64(tid[8:], rand.Uint64()) + if tid.IsValid() { + break + } + } + for { + binary.NativeEndian.PutUint64(sid[:], rand.Uint64()) + if sid.IsValid() { + break + } + } + return tid, sid +} + +func defaultIDGenerator() IDGenerator { + return &randomIDGenerator{} +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/link.go b/vendor/go.opentelemetry.io/otel/sdk/trace/link.go new file mode 100644 index 0000000000..c03bdc90f6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/link.go @@ -0,0 +1,23 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/trace" +) + +// Link is the relationship between two Spans. The relationship can be within +// the same Trace or across different Traces. +type Link struct { + // SpanContext of the linked Span. + SpanContext trace.SpanContext + + // Attributes describe the aspects of the link. + Attributes []attribute.KeyValue + + // DroppedAttributeCount is the number of attributes that were not + // recorded due to configured limits being reached. + DroppedAttributeCount int +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go b/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go new file mode 100644 index 0000000000..0e2a2e7c60 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/provider.go @@ -0,0 +1,504 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "fmt" + "sync" + "sync/atomic" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/resource" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/embedded" + "go.opentelemetry.io/otel/trace/noop" +) + +const ( + defaultTracerName = "go.opentelemetry.io/otel/sdk/tracer" +) + +// tracerProviderConfig. +type tracerProviderConfig struct { + // processors contains collection of SpanProcessors that are processing pipeline + // for spans in the trace signal. + // SpanProcessors registered with a TracerProvider and are called at the start + // and end of a Span's lifecycle, and are called in the order they are + // registered. + processors []SpanProcessor + + // sampler is the default sampler used when creating new spans. + sampler Sampler + + // idGenerator is used to generate all Span and Trace IDs when needed. + idGenerator IDGenerator + + // spanLimits defines the attribute, event, and link limits for spans. + spanLimits SpanLimits + + // resource contains attributes representing an entity that produces telemetry. + resource *resource.Resource +} + +// MarshalLog is the marshaling function used by the logging system to represent this Provider. +func (cfg tracerProviderConfig) MarshalLog() interface{} { + return struct { + SpanProcessors []SpanProcessor + SamplerType string + IDGeneratorType string + SpanLimits SpanLimits + Resource *resource.Resource + }{ + SpanProcessors: cfg.processors, + SamplerType: fmt.Sprintf("%T", cfg.sampler), + IDGeneratorType: fmt.Sprintf("%T", cfg.idGenerator), + SpanLimits: cfg.spanLimits, + Resource: cfg.resource, + } +} + +// TracerProvider is an OpenTelemetry TracerProvider. It provides Tracers to +// instrumentation so it can trace operational flow through a system. +type TracerProvider struct { + embedded.TracerProvider + + mu sync.Mutex + namedTracer map[instrumentation.Scope]*tracer + spanProcessors atomic.Pointer[spanProcessorStates] + + isShutdown atomic.Bool + + // These fields are not protected by the lock mu. They are assumed to be + // immutable after creation of the TracerProvider. + sampler Sampler + idGenerator IDGenerator + spanLimits SpanLimits + resource *resource.Resource +} + +var _ trace.TracerProvider = &TracerProvider{} + +// NewTracerProvider returns a new and configured TracerProvider. +// +// By default the returned TracerProvider is configured with: +// - a ParentBased(AlwaysSample) Sampler +// - a random number IDGenerator +// - the resource.Default() Resource +// - the default SpanLimits. +// +// The passed opts are used to override these default values and configure the +// returned TracerProvider appropriately. +func NewTracerProvider(opts ...TracerProviderOption) *TracerProvider { + o := tracerProviderConfig{ + spanLimits: NewSpanLimits(), + } + o = applyTracerProviderEnvConfigs(o) + + for _, opt := range opts { + o = opt.apply(o) + } + + o = ensureValidTracerProviderConfig(o) + + tp := &TracerProvider{ + namedTracer: make(map[instrumentation.Scope]*tracer), + sampler: o.sampler, + idGenerator: o.idGenerator, + spanLimits: o.spanLimits, + resource: o.resource, + } + global.Info("TracerProvider created", "config", o) + + spss := make(spanProcessorStates, 0, len(o.processors)) + for _, sp := range o.processors { + spss = append(spss, newSpanProcessorState(sp)) + } + tp.spanProcessors.Store(&spss) + + return tp +} + +// Tracer returns a Tracer with the given name and options. If a Tracer for +// the given name and options does not exist it is created, otherwise the +// existing Tracer is returned. +// +// If name is empty, DefaultTracerName is used instead. +// +// This method is safe to be called concurrently. +func (p *TracerProvider) Tracer(name string, opts ...trace.TracerOption) trace.Tracer { + // This check happens before the mutex is acquired to avoid deadlocking if Tracer() is called from within Shutdown(). + if p.isShutdown.Load() { + return noop.NewTracerProvider().Tracer(name, opts...) + } + c := trace.NewTracerConfig(opts...) + if name == "" { + name = defaultTracerName + } + is := instrumentation.Scope{ + Name: name, + Version: c.InstrumentationVersion(), + SchemaURL: c.SchemaURL(), + Attributes: c.InstrumentationAttributes(), + } + + t, ok := func() (trace.Tracer, bool) { + p.mu.Lock() + defer p.mu.Unlock() + // Must check the flag after acquiring the mutex to avoid returning a valid tracer if Shutdown() ran + // after the first check above but before we acquired the mutex. + if p.isShutdown.Load() { + return noop.NewTracerProvider().Tracer(name, opts...), true + } + t, ok := p.namedTracer[is] + if !ok { + t = &tracer{ + provider: p, + instrumentationScope: is, + } + p.namedTracer[is] = t + } + return t, ok + }() + if !ok { + // This code is outside the mutex to not hold the lock while calling third party logging code: + // - That code may do slow things like I/O, which would prolong the duration the lock is held, + // slowing down all tracing consumers. + // - Logging code may be instrumented with tracing and deadlock because it could try + // acquiring the same non-reentrant mutex. + global.Info( + "Tracer created", + "name", + name, + "version", + is.Version, + "schemaURL", + is.SchemaURL, + "attributes", + is.Attributes, + ) + } + return t +} + +// RegisterSpanProcessor adds the given SpanProcessor to the list of SpanProcessors. +func (p *TracerProvider) RegisterSpanProcessor(sp SpanProcessor) { + // This check prevents calls during a shutdown. + if p.isShutdown.Load() { + return + } + p.mu.Lock() + defer p.mu.Unlock() + // This check prevents calls after a shutdown. + if p.isShutdown.Load() { + return + } + + current := p.getSpanProcessors() + newSPS := make(spanProcessorStates, 0, len(current)+1) + newSPS = append(newSPS, current...) + newSPS = append(newSPS, newSpanProcessorState(sp)) + p.spanProcessors.Store(&newSPS) +} + +// UnregisterSpanProcessor removes the given SpanProcessor from the list of SpanProcessors. +func (p *TracerProvider) UnregisterSpanProcessor(sp SpanProcessor) { + // This check prevents calls during a shutdown. + if p.isShutdown.Load() { + return + } + p.mu.Lock() + defer p.mu.Unlock() + // This check prevents calls after a shutdown. + if p.isShutdown.Load() { + return + } + old := p.getSpanProcessors() + if len(old) == 0 { + return + } + spss := make(spanProcessorStates, len(old)) + copy(spss, old) + + // stop the span processor if it is started and remove it from the list + var stopOnce *spanProcessorState + var idx int + for i, sps := range spss { + if sps.sp == sp { + stopOnce = sps + idx = i + } + } + if stopOnce != nil { + stopOnce.state.Do(func() { + if err := sp.Shutdown(context.Background()); err != nil { + otel.Handle(err) + } + }) + } + if len(spss) > 1 { + copy(spss[idx:], spss[idx+1:]) + } + spss[len(spss)-1] = nil + spss = spss[:len(spss)-1] + + p.spanProcessors.Store(&spss) +} + +// ForceFlush immediately exports all spans that have not yet been exported for +// all the registered span processors. +func (p *TracerProvider) ForceFlush(ctx context.Context) error { + spss := p.getSpanProcessors() + if len(spss) == 0 { + return nil + } + + for _, sps := range spss { + select { + case <-ctx.Done(): + return ctx.Err() + default: + } + + if err := sps.sp.ForceFlush(ctx); err != nil { + return err + } + } + return nil +} + +// Shutdown shuts down TracerProvider. All registered span processors are shut down +// in the order they were registered and any held computational resources are released. +// After Shutdown is called, all methods are no-ops. +func (p *TracerProvider) Shutdown(ctx context.Context) error { + // This check prevents deadlocks in case of recursive shutdown. + if p.isShutdown.Load() { + return nil + } + p.mu.Lock() + defer p.mu.Unlock() + // This check prevents calls after a shutdown has already been done concurrently. + if !p.isShutdown.CompareAndSwap(false, true) { // did toggle? + return nil + } + + var retErr error + for _, sps := range p.getSpanProcessors() { + select { + case <-ctx.Done(): + return ctx.Err() + default: + } + + var err error + sps.state.Do(func() { + err = sps.sp.Shutdown(ctx) + }) + if err != nil { + if retErr == nil { + retErr = err + } else { + // Poor man's list of errors + retErr = fmt.Errorf("%w; %w", retErr, err) + } + } + } + p.spanProcessors.Store(&spanProcessorStates{}) + return retErr +} + +func (p *TracerProvider) getSpanProcessors() spanProcessorStates { + return *(p.spanProcessors.Load()) +} + +// TracerProviderOption configures a TracerProvider. +type TracerProviderOption interface { + apply(tracerProviderConfig) tracerProviderConfig +} + +type traceProviderOptionFunc func(tracerProviderConfig) tracerProviderConfig + +func (fn traceProviderOptionFunc) apply(cfg tracerProviderConfig) tracerProviderConfig { + return fn(cfg) +} + +// WithSyncer registers the exporter with the TracerProvider using a +// SimpleSpanProcessor. +// +// This is not recommended for production use. The synchronous nature of the +// SimpleSpanProcessor that will wrap the exporter make it good for testing, +// debugging, or showing examples of other feature, but it will be slow and +// have a high computation resource usage overhead. The WithBatcher option is +// recommended for production use instead. +func WithSyncer(e SpanExporter) TracerProviderOption { + return WithSpanProcessor(NewSimpleSpanProcessor(e)) +} + +// WithBatcher registers the exporter with the TracerProvider using a +// BatchSpanProcessor configured with the passed opts. +func WithBatcher(e SpanExporter, opts ...BatchSpanProcessorOption) TracerProviderOption { + return WithSpanProcessor(NewBatchSpanProcessor(e, opts...)) +} + +// WithSpanProcessor registers the SpanProcessor with a TracerProvider. +func WithSpanProcessor(sp SpanProcessor) TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + cfg.processors = append(cfg.processors, sp) + return cfg + }) +} + +// WithResource returns a TracerProviderOption that will configure the +// Resource r as a TracerProvider's Resource. The configured Resource is +// referenced by all the Tracers the TracerProvider creates. It represents the +// entity producing telemetry. +// +// If this option is not used, the TracerProvider will use the +// resource.Default() Resource by default. +func WithResource(r *resource.Resource) TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + var err error + cfg.resource, err = resource.Merge(resource.Environment(), r) + if err != nil { + otel.Handle(err) + } + return cfg + }) +} + +// WithIDGenerator returns a TracerProviderOption that will configure the +// IDGenerator g as a TracerProvider's IDGenerator. The configured IDGenerator +// is used by the Tracers the TracerProvider creates to generate new Span and +// Trace IDs. +// +// If this option is not used, the TracerProvider will use a random number +// IDGenerator by default. +func WithIDGenerator(g IDGenerator) TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + if g != nil { + cfg.idGenerator = g + } + return cfg + }) +} + +// WithSampler returns a TracerProviderOption that will configure the Sampler +// s as a TracerProvider's Sampler. The configured Sampler is used by the +// Tracers the TracerProvider creates to make their sampling decisions for the +// Spans they create. +// +// This option overrides the Sampler configured through the OTEL_TRACES_SAMPLER +// and OTEL_TRACES_SAMPLER_ARG environment variables. If this option is not used +// and the sampler is not configured through environment variables or the environment +// contains invalid/unsupported configuration, the TracerProvider will use a +// ParentBased(AlwaysSample) Sampler by default. +func WithSampler(s Sampler) TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + if s != nil { + cfg.sampler = s + } + return cfg + }) +} + +// WithSpanLimits returns a TracerProviderOption that configures a +// TracerProvider to use the SpanLimits sl. These SpanLimits bound any Span +// created by a Tracer from the TracerProvider. +// +// If any field of sl is zero or negative it will be replaced with the default +// value for that field. +// +// If this or WithRawSpanLimits are not provided, the TracerProvider will use +// the limits defined by environment variables, or the defaults if unset. +// Refer to the NewSpanLimits documentation for information about this +// relationship. +// +// Deprecated: Use WithRawSpanLimits instead which allows setting unlimited +// and zero limits. This option will be kept until the next major version +// incremented release. +func WithSpanLimits(sl SpanLimits) TracerProviderOption { + if sl.AttributeValueLengthLimit <= 0 { + sl.AttributeValueLengthLimit = DefaultAttributeValueLengthLimit + } + if sl.AttributeCountLimit <= 0 { + sl.AttributeCountLimit = DefaultAttributeCountLimit + } + if sl.EventCountLimit <= 0 { + sl.EventCountLimit = DefaultEventCountLimit + } + if sl.AttributePerEventCountLimit <= 0 { + sl.AttributePerEventCountLimit = DefaultAttributePerEventCountLimit + } + if sl.LinkCountLimit <= 0 { + sl.LinkCountLimit = DefaultLinkCountLimit + } + if sl.AttributePerLinkCountLimit <= 0 { + sl.AttributePerLinkCountLimit = DefaultAttributePerLinkCountLimit + } + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + cfg.spanLimits = sl + return cfg + }) +} + +// WithRawSpanLimits returns a TracerProviderOption that configures a +// TracerProvider to use these limits. These limits bound any Span created by +// a Tracer from the TracerProvider. +// +// The limits will be used as-is. Zero or negative values will not be changed +// to the default value like WithSpanLimits does. Setting a limit to zero will +// effectively disable the related resource it limits and setting to a +// negative value will mean that resource is unlimited. Consequentially, this +// means that the zero-value SpanLimits will disable all span resources. +// Because of this, limits should be constructed using NewSpanLimits and +// updated accordingly. +// +// If this or WithSpanLimits are not provided, the TracerProvider will use the +// limits defined by environment variables, or the defaults if unset. Refer to +// the NewSpanLimits documentation for information about this relationship. +func WithRawSpanLimits(limits SpanLimits) TracerProviderOption { + return traceProviderOptionFunc(func(cfg tracerProviderConfig) tracerProviderConfig { + cfg.spanLimits = limits + return cfg + }) +} + +func applyTracerProviderEnvConfigs(cfg tracerProviderConfig) tracerProviderConfig { + for _, opt := range tracerProviderOptionsFromEnv() { + cfg = opt.apply(cfg) + } + + return cfg +} + +func tracerProviderOptionsFromEnv() []TracerProviderOption { + var opts []TracerProviderOption + + sampler, err := samplerFromEnv() + if err != nil { + otel.Handle(err) + } + + if sampler != nil { + opts = append(opts, WithSampler(sampler)) + } + + return opts +} + +// ensureValidTracerProviderConfig ensures that given TracerProviderConfig is valid. +func ensureValidTracerProviderConfig(cfg tracerProviderConfig) tracerProviderConfig { + if cfg.sampler == nil { + cfg.sampler = ParentBased(AlwaysSample()) + } + if cfg.idGenerator == nil { + cfg.idGenerator = defaultIDGenerator() + } + if cfg.resource == nil { + cfg.resource = resource.Default() + } + return cfg +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go b/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go new file mode 100644 index 0000000000..9b672a1d70 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/sampler_env.go @@ -0,0 +1,96 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "errors" + "os" + "strconv" + "strings" +) + +const ( + tracesSamplerKey = "OTEL_TRACES_SAMPLER" + tracesSamplerArgKey = "OTEL_TRACES_SAMPLER_ARG" + + samplerAlwaysOn = "always_on" + samplerAlwaysOff = "always_off" + samplerTraceIDRatio = "traceidratio" + samplerParentBasedAlwaysOn = "parentbased_always_on" + samplerParsedBasedAlwaysOff = "parentbased_always_off" + samplerParentBasedTraceIDRatio = "parentbased_traceidratio" +) + +type errUnsupportedSampler string + +func (e errUnsupportedSampler) Error() string { + return "unsupported sampler: " + string(e) +} + +var ( + errNegativeTraceIDRatio = errors.New("invalid trace ID ratio: less than 0.0") + errGreaterThanOneTraceIDRatio = errors.New("invalid trace ID ratio: greater than 1.0") +) + +type samplerArgParseError struct { + parseErr error +} + +func (e samplerArgParseError) Error() string { + return "parsing sampler argument: " + e.parseErr.Error() +} + +func (e samplerArgParseError) Unwrap() error { + return e.parseErr +} + +func samplerFromEnv() (Sampler, error) { + sampler, ok := os.LookupEnv(tracesSamplerKey) + if !ok { + return nil, nil + } + + sampler = strings.ToLower(strings.TrimSpace(sampler)) + samplerArg, hasSamplerArg := os.LookupEnv(tracesSamplerArgKey) + samplerArg = strings.TrimSpace(samplerArg) + + switch sampler { + case samplerAlwaysOn: + return AlwaysSample(), nil + case samplerAlwaysOff: + return NeverSample(), nil + case samplerTraceIDRatio: + if !hasSamplerArg { + return TraceIDRatioBased(1.0), nil + } + return parseTraceIDRatio(samplerArg) + case samplerParentBasedAlwaysOn: + return ParentBased(AlwaysSample()), nil + case samplerParsedBasedAlwaysOff: + return ParentBased(NeverSample()), nil + case samplerParentBasedTraceIDRatio: + if !hasSamplerArg { + return ParentBased(TraceIDRatioBased(1.0)), nil + } + ratio, err := parseTraceIDRatio(samplerArg) + return ParentBased(ratio), err + default: + return nil, errUnsupportedSampler(sampler) + } +} + +func parseTraceIDRatio(arg string) (Sampler, error) { + v, err := strconv.ParseFloat(arg, 64) + if err != nil { + return TraceIDRatioBased(1.0), samplerArgParseError{err} + } + if v < 0.0 { + return TraceIDRatioBased(1.0), errNegativeTraceIDRatio + } + if v > 1.0 { + return TraceIDRatioBased(1.0), errGreaterThanOneTraceIDRatio + } + + return TraceIDRatioBased(v), nil +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go b/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go new file mode 100644 index 0000000000..aa7b262d0d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/sampling.go @@ -0,0 +1,282 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "encoding/binary" + "fmt" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/trace" +) + +// Sampler decides whether a trace should be sampled and exported. +type Sampler interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // ShouldSample returns a SamplingResult based on a decision made from the + // passed parameters. + ShouldSample(parameters SamplingParameters) SamplingResult + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Description returns information describing the Sampler. + Description() string + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +// SamplingParameters contains the values passed to a Sampler. +type SamplingParameters struct { + ParentContext context.Context + TraceID trace.TraceID + Name string + Kind trace.SpanKind + Attributes []attribute.KeyValue + Links []trace.Link +} + +// SamplingDecision indicates whether a span is dropped, recorded and/or sampled. +type SamplingDecision uint8 + +// Valid sampling decisions. +const ( + // Drop will not record the span and all attributes/events will be dropped. + Drop SamplingDecision = iota + + // RecordOnly indicates the span's IsRecording method returns true, but trace.FlagsSampled flag + // must not be set. + RecordOnly + + // RecordAndSample indicates the span's IsRecording method returns true and trace.FlagsSampled flag + // must be set. + RecordAndSample +) + +// SamplingResult conveys a SamplingDecision, set of Attributes and a Tracestate. +type SamplingResult struct { + Decision SamplingDecision + Attributes []attribute.KeyValue + Tracestate trace.TraceState +} + +type traceIDRatioSampler struct { + traceIDUpperBound uint64 + description string +} + +func (ts traceIDRatioSampler) ShouldSample(p SamplingParameters) SamplingResult { + psc := trace.SpanContextFromContext(p.ParentContext) + x := binary.BigEndian.Uint64(p.TraceID[8:16]) >> 1 + if x < ts.traceIDUpperBound { + return SamplingResult{ + Decision: RecordAndSample, + Tracestate: psc.TraceState(), + } + } + return SamplingResult{ + Decision: Drop, + Tracestate: psc.TraceState(), + } +} + +func (ts traceIDRatioSampler) Description() string { + return ts.description +} + +// TraceIDRatioBased samples a given fraction of traces. Fractions >= 1 will +// always sample. Fractions < 0 are treated as zero. To respect the +// parent trace's `SampledFlag`, the `TraceIDRatioBased` sampler should be used +// as a delegate of a `Parent` sampler. +// +//nolint:revive // revive complains about stutter of `trace.TraceIDRatioBased` +func TraceIDRatioBased(fraction float64) Sampler { + if fraction >= 1 { + return AlwaysSample() + } + + if fraction <= 0 { + fraction = 0 + } + + return &traceIDRatioSampler{ + traceIDUpperBound: uint64(fraction * (1 << 63)), + description: fmt.Sprintf("TraceIDRatioBased{%g}", fraction), + } +} + +type alwaysOnSampler struct{} + +func (as alwaysOnSampler) ShouldSample(p SamplingParameters) SamplingResult { + return SamplingResult{ + Decision: RecordAndSample, + Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(), + } +} + +func (as alwaysOnSampler) Description() string { + return "AlwaysOnSampler" +} + +// AlwaysSample returns a Sampler that samples every trace. +// Be careful about using this sampler in a production application with +// significant traffic: a new trace will be started and exported for every +// request. +func AlwaysSample() Sampler { + return alwaysOnSampler{} +} + +type alwaysOffSampler struct{} + +func (as alwaysOffSampler) ShouldSample(p SamplingParameters) SamplingResult { + return SamplingResult{ + Decision: Drop, + Tracestate: trace.SpanContextFromContext(p.ParentContext).TraceState(), + } +} + +func (as alwaysOffSampler) Description() string { + return "AlwaysOffSampler" +} + +// NeverSample returns a Sampler that samples no traces. +func NeverSample() Sampler { + return alwaysOffSampler{} +} + +// ParentBased returns a sampler decorator which behaves differently, +// based on the parent of the span. If the span has no parent, +// the decorated sampler is used to make sampling decision. If the span has +// a parent, depending on whether the parent is remote and whether it +// is sampled, one of the following samplers will apply: +// - remoteParentSampled(Sampler) (default: AlwaysOn) +// - remoteParentNotSampled(Sampler) (default: AlwaysOff) +// - localParentSampled(Sampler) (default: AlwaysOn) +// - localParentNotSampled(Sampler) (default: AlwaysOff) +func ParentBased(root Sampler, samplers ...ParentBasedSamplerOption) Sampler { + return parentBased{ + root: root, + config: configureSamplersForParentBased(samplers), + } +} + +type parentBased struct { + root Sampler + config samplerConfig +} + +func configureSamplersForParentBased(samplers []ParentBasedSamplerOption) samplerConfig { + c := samplerConfig{ + remoteParentSampled: AlwaysSample(), + remoteParentNotSampled: NeverSample(), + localParentSampled: AlwaysSample(), + localParentNotSampled: NeverSample(), + } + + for _, so := range samplers { + c = so.apply(c) + } + + return c +} + +// samplerConfig is a group of options for parentBased sampler. +type samplerConfig struct { + remoteParentSampled, remoteParentNotSampled Sampler + localParentSampled, localParentNotSampled Sampler +} + +// ParentBasedSamplerOption configures the sampler for a particular sampling case. +type ParentBasedSamplerOption interface { + apply(samplerConfig) samplerConfig +} + +// WithRemoteParentSampled sets the sampler for the case of sampled remote parent. +func WithRemoteParentSampled(s Sampler) ParentBasedSamplerOption { + return remoteParentSampledOption{s} +} + +type remoteParentSampledOption struct { + s Sampler +} + +func (o remoteParentSampledOption) apply(config samplerConfig) samplerConfig { + config.remoteParentSampled = o.s + return config +} + +// WithRemoteParentNotSampled sets the sampler for the case of remote parent +// which is not sampled. +func WithRemoteParentNotSampled(s Sampler) ParentBasedSamplerOption { + return remoteParentNotSampledOption{s} +} + +type remoteParentNotSampledOption struct { + s Sampler +} + +func (o remoteParentNotSampledOption) apply(config samplerConfig) samplerConfig { + config.remoteParentNotSampled = o.s + return config +} + +// WithLocalParentSampled sets the sampler for the case of sampled local parent. +func WithLocalParentSampled(s Sampler) ParentBasedSamplerOption { + return localParentSampledOption{s} +} + +type localParentSampledOption struct { + s Sampler +} + +func (o localParentSampledOption) apply(config samplerConfig) samplerConfig { + config.localParentSampled = o.s + return config +} + +// WithLocalParentNotSampled sets the sampler for the case of local parent +// which is not sampled. +func WithLocalParentNotSampled(s Sampler) ParentBasedSamplerOption { + return localParentNotSampledOption{s} +} + +type localParentNotSampledOption struct { + s Sampler +} + +func (o localParentNotSampledOption) apply(config samplerConfig) samplerConfig { + config.localParentNotSampled = o.s + return config +} + +func (pb parentBased) ShouldSample(p SamplingParameters) SamplingResult { + psc := trace.SpanContextFromContext(p.ParentContext) + if psc.IsValid() { + if psc.IsRemote() { + if psc.IsSampled() { + return pb.config.remoteParentSampled.ShouldSample(p) + } + return pb.config.remoteParentNotSampled.ShouldSample(p) + } + + if psc.IsSampled() { + return pb.config.localParentSampled.ShouldSample(p) + } + return pb.config.localParentNotSampled.ShouldSample(p) + } + return pb.root.ShouldSample(p) +} + +func (pb parentBased) Description() string { + return fmt.Sprintf("ParentBased{root:%s,remoteParentSampled:%s,"+ + "remoteParentNotSampled:%s,localParentSampled:%s,localParentNotSampled:%s}", + pb.root.Description(), + pb.config.remoteParentSampled.Description(), + pb.config.remoteParentNotSampled.Description(), + pb.config.localParentSampled.Description(), + pb.config.localParentNotSampled.Description(), + ) +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go new file mode 100644 index 0000000000..664e13e03f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/simple_span_processor.go @@ -0,0 +1,121 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel" + "go.opentelemetry.io/otel/internal/global" +) + +// simpleSpanProcessor is a SpanProcessor that synchronously sends all +// completed Spans to a trace.Exporter immediately. +type simpleSpanProcessor struct { + exporterMu sync.Mutex + exporter SpanExporter + stopOnce sync.Once +} + +var _ SpanProcessor = (*simpleSpanProcessor)(nil) + +// NewSimpleSpanProcessor returns a new SpanProcessor that will synchronously +// send completed spans to the exporter immediately. +// +// This SpanProcessor is not recommended for production use. The synchronous +// nature of this SpanProcessor makes it good for testing, debugging, or showing +// examples of other features, but it will be slow and have a high computation +// resource usage overhead. The BatchSpanProcessor is recommended for production +// use instead. +func NewSimpleSpanProcessor(exporter SpanExporter) SpanProcessor { + ssp := &simpleSpanProcessor{ + exporter: exporter, + } + global.Warn("SimpleSpanProcessor is not recommended for production use, consider using BatchSpanProcessor instead.") + + return ssp +} + +// OnStart does nothing. +func (ssp *simpleSpanProcessor) OnStart(context.Context, ReadWriteSpan) {} + +// OnEnd immediately exports a ReadOnlySpan. +func (ssp *simpleSpanProcessor) OnEnd(s ReadOnlySpan) { + ssp.exporterMu.Lock() + defer ssp.exporterMu.Unlock() + + if ssp.exporter != nil && s.SpanContext().TraceFlags().IsSampled() { + if err := ssp.exporter.ExportSpans(context.Background(), []ReadOnlySpan{s}); err != nil { + otel.Handle(err) + } + } +} + +// Shutdown shuts down the exporter this SimpleSpanProcessor exports to. +func (ssp *simpleSpanProcessor) Shutdown(ctx context.Context) error { + var err error + ssp.stopOnce.Do(func() { + stopFunc := func(exp SpanExporter) (<-chan error, func()) { + done := make(chan error, 1) + return done, func() { done <- exp.Shutdown(ctx) } + } + + // The exporter field of the simpleSpanProcessor needs to be zeroed to + // signal it is shut down, meaning all subsequent calls to OnEnd will + // be gracefully ignored. This needs to be done synchronously to avoid + // any race condition. + // + // A closure is used to keep reference to the exporter and then the + // field is zeroed. This ensures the simpleSpanProcessor is shut down + // before the exporter. This order is important as it avoids a potential + // deadlock. If the exporter shut down operation generates a span, that + // span would need to be exported. Meaning, OnEnd would be called and + // try acquiring the lock that is held here. + ssp.exporterMu.Lock() + done, shutdown := stopFunc(ssp.exporter) + ssp.exporter = nil + ssp.exporterMu.Unlock() + + go shutdown() + + // Wait for the exporter to shut down or the deadline to expire. + select { + case err = <-done: + case <-ctx.Done(): + // It is possible for the exporter to have immediately shut down and + // the context to be done simultaneously. In that case this outer + // select statement will randomly choose a case. This will result in + // a different returned error for similar scenarios. Instead, double + // check if the exporter shut down at the same time and return that + // error if so. This will ensure consistency as well as ensure + // the caller knows the exporter shut down successfully (they can + // already determine if the deadline is expired given they passed + // the context). + select { + case err = <-done: + default: + err = ctx.Err() + } + } + }) + return err +} + +// ForceFlush does nothing as there is no data to flush. +func (ssp *simpleSpanProcessor) ForceFlush(context.Context) error { + return nil +} + +// MarshalLog is the marshaling function used by the logging system to represent +// this Span Processor. +func (ssp *simpleSpanProcessor) MarshalLog() interface{} { + return struct { + Type string + Exporter SpanExporter + }{ + Type: "SimpleSpanProcessor", + Exporter: ssp.exporter, + } +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go b/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go new file mode 100644 index 0000000000..d511d0f271 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/snapshot.go @@ -0,0 +1,133 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/resource" + "go.opentelemetry.io/otel/trace" +) + +// snapshot is an record of a spans state at a particular checkpointed time. +// It is used as a read-only representation of that state. +type snapshot struct { + name string + spanContext trace.SpanContext + parent trace.SpanContext + spanKind trace.SpanKind + startTime time.Time + endTime time.Time + attributes []attribute.KeyValue + events []Event + links []Link + status Status + childSpanCount int + droppedAttributeCount int + droppedEventCount int + droppedLinkCount int + resource *resource.Resource + instrumentationScope instrumentation.Scope +} + +var _ ReadOnlySpan = snapshot{} + +func (s snapshot) private() {} + +// Name returns the name of the span. +func (s snapshot) Name() string { + return s.name +} + +// SpanContext returns the unique SpanContext that identifies the span. +func (s snapshot) SpanContext() trace.SpanContext { + return s.spanContext +} + +// Parent returns the unique SpanContext that identifies the parent of the +// span if one exists. If the span has no parent the returned SpanContext +// will be invalid. +func (s snapshot) Parent() trace.SpanContext { + return s.parent +} + +// SpanKind returns the role the span plays in a Trace. +func (s snapshot) SpanKind() trace.SpanKind { + return s.spanKind +} + +// StartTime returns the time the span started recording. +func (s snapshot) StartTime() time.Time { + return s.startTime +} + +// EndTime returns the time the span stopped recording. It will be zero if +// the span has not ended. +func (s snapshot) EndTime() time.Time { + return s.endTime +} + +// Attributes returns the defining attributes of the span. +func (s snapshot) Attributes() []attribute.KeyValue { + return s.attributes +} + +// Links returns all the links the span has to other spans. +func (s snapshot) Links() []Link { + return s.links +} + +// Events returns all the events that occurred within in the spans +// lifetime. +func (s snapshot) Events() []Event { + return s.events +} + +// Status returns the spans status. +func (s snapshot) Status() Status { + return s.status +} + +// InstrumentationScope returns information about the instrumentation +// scope that created the span. +func (s snapshot) InstrumentationScope() instrumentation.Scope { + return s.instrumentationScope +} + +// InstrumentationLibrary returns information about the instrumentation +// library that created the span. +func (s snapshot) InstrumentationLibrary() instrumentation.Library { //nolint:staticcheck // This method needs to be define for backwards compatibility + return s.instrumentationScope +} + +// Resource returns information about the entity that produced the span. +func (s snapshot) Resource() *resource.Resource { + return s.resource +} + +// DroppedAttributes returns the number of attributes dropped by the span +// due to limits being reached. +func (s snapshot) DroppedAttributes() int { + return s.droppedAttributeCount +} + +// DroppedLinks returns the number of links dropped by the span due to limits +// being reached. +func (s snapshot) DroppedLinks() int { + return s.droppedLinkCount +} + +// DroppedEvents returns the number of events dropped by the span due to +// limits being reached. +func (s snapshot) DroppedEvents() int { + return s.droppedEventCount +} + +// ChildSpanCount returns the count of spans that consider the span a +// direct parent. +func (s snapshot) ChildSpanCount() int { + return s.childSpanCount +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span.go new file mode 100644 index 0000000000..1785a4bbb0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span.go @@ -0,0 +1,937 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "fmt" + "reflect" + "runtime" + rt "runtime/trace" + "slices" + "strings" + "sync" + "time" + "unicode/utf8" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/resource" + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/embedded" +) + +// ReadOnlySpan allows reading information from the data structure underlying a +// trace.Span. It is used in places where reading information from a span is +// necessary but changing the span isn't necessary or allowed. +// +// Warning: methods may be added to this interface in minor releases. +type ReadOnlySpan interface { + // Name returns the name of the span. + Name() string + // SpanContext returns the unique SpanContext that identifies the span. + SpanContext() trace.SpanContext + // Parent returns the unique SpanContext that identifies the parent of the + // span if one exists. If the span has no parent the returned SpanContext + // will be invalid. + Parent() trace.SpanContext + // SpanKind returns the role the span plays in a Trace. + SpanKind() trace.SpanKind + // StartTime returns the time the span started recording. + StartTime() time.Time + // EndTime returns the time the span stopped recording. It will be zero if + // the span has not ended. + EndTime() time.Time + // Attributes returns the defining attributes of the span. + // The order of the returned attributes is not guaranteed to be stable across invocations. + Attributes() []attribute.KeyValue + // Links returns all the links the span has to other spans. + Links() []Link + // Events returns all the events that occurred within in the spans + // lifetime. + Events() []Event + // Status returns the spans status. + Status() Status + // InstrumentationScope returns information about the instrumentation + // scope that created the span. + InstrumentationScope() instrumentation.Scope + // InstrumentationLibrary returns information about the instrumentation + // library that created the span. + // Deprecated: please use InstrumentationScope instead. + InstrumentationLibrary() instrumentation.Library //nolint:staticcheck // This method needs to be define for backwards compatibility + // Resource returns information about the entity that produced the span. + Resource() *resource.Resource + // DroppedAttributes returns the number of attributes dropped by the span + // due to limits being reached. + DroppedAttributes() int + // DroppedLinks returns the number of links dropped by the span due to + // limits being reached. + DroppedLinks() int + // DroppedEvents returns the number of events dropped by the span due to + // limits being reached. + DroppedEvents() int + // ChildSpanCount returns the count of spans that consider the span a + // direct parent. + ChildSpanCount() int + + // A private method to prevent users implementing the + // interface and so future additions to it will not + // violate compatibility. + private() +} + +// ReadWriteSpan exposes the same methods as trace.Span and in addition allows +// reading information from the underlying data structure. +// This interface exposes the union of the methods of trace.Span (which is a +// "write-only" span) and ReadOnlySpan. New methods for writing or reading span +// information should be added under trace.Span or ReadOnlySpan, respectively. +// +// Warning: methods may be added to this interface in minor releases. +type ReadWriteSpan interface { + trace.Span + ReadOnlySpan +} + +// recordingSpan is an implementation of the OpenTelemetry Span API +// representing the individual component of a trace that is sampled. +type recordingSpan struct { + embedded.Span + + // mu protects the contents of this span. + mu sync.Mutex + + // parent holds the parent span of this span as a trace.SpanContext. + parent trace.SpanContext + + // spanKind represents the kind of this span as a trace.SpanKind. + spanKind trace.SpanKind + + // name is the name of this span. + name string + + // startTime is the time at which this span was started. + startTime time.Time + + // endTime is the time at which this span was ended. It contains the zero + // value of time.Time until the span is ended. + endTime time.Time + + // status is the status of this span. + status Status + + // childSpanCount holds the number of child spans created for this span. + childSpanCount int + + // spanContext holds the SpanContext of this span. + spanContext trace.SpanContext + + // attributes is a collection of user provided key/values. The collection + // is constrained by a configurable maximum held by the parent + // TracerProvider. When additional attributes are added after this maximum + // is reached these attributes the user is attempting to add are dropped. + // This dropped number of attributes is tracked and reported in the + // ReadOnlySpan exported when the span ends. + attributes []attribute.KeyValue + droppedAttributes int + logDropAttrsOnce sync.Once + + // events are stored in FIFO queue capped by configured limit. + events evictedQueue[Event] + + // links are stored in FIFO queue capped by configured limit. + links evictedQueue[Link] + + // executionTracerTaskEnd ends the execution tracer span. + executionTracerTaskEnd func() + + // tracer is the SDK tracer that created this span. + tracer *tracer +} + +var ( + _ ReadWriteSpan = (*recordingSpan)(nil) + _ runtimeTracer = (*recordingSpan)(nil) +) + +// SpanContext returns the SpanContext of this span. +func (s *recordingSpan) SpanContext() trace.SpanContext { + if s == nil { + return trace.SpanContext{} + } + return s.spanContext +} + +// IsRecording returns if this span is being recorded. If this span has ended +// this will return false. +func (s *recordingSpan) IsRecording() bool { + if s == nil { + return false + } + s.mu.Lock() + defer s.mu.Unlock() + + return s.isRecording() +} + +// isRecording returns if this span is being recorded. If this span has ended +// this will return false. +// +// This method assumes s.mu.Lock is held by the caller. +func (s *recordingSpan) isRecording() bool { + if s == nil { + return false + } + return s.endTime.IsZero() +} + +// SetStatus sets the status of the Span in the form of a code and a +// description, overriding previous values set. The description is only +// included in the set status when the code is for an error. If this span is +// not being recorded than this method does nothing. +func (s *recordingSpan) SetStatus(code codes.Code, description string) { + if s == nil { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + if s.status.Code > code { + return + } + + status := Status{Code: code} + if code == codes.Error { + status.Description = description + } + + s.status = status +} + +// SetAttributes sets attributes of this span. +// +// If a key from attributes already exists the value associated with that key +// will be overwritten with the value contained in attributes. +// +// If this span is not being recorded than this method does nothing. +// +// If adding attributes to the span would exceed the maximum amount of +// attributes the span is configured to have, the last added attributes will +// be dropped. +func (s *recordingSpan) SetAttributes(attributes ...attribute.KeyValue) { + if s == nil || len(attributes) == 0 { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + + limit := s.tracer.provider.spanLimits.AttributeCountLimit + if limit == 0 { + // No attributes allowed. + s.addDroppedAttr(len(attributes)) + return + } + + // If adding these attributes could exceed the capacity of s perform a + // de-duplication and truncation while adding to avoid over allocation. + if limit > 0 && len(s.attributes)+len(attributes) > limit { + s.addOverCapAttrs(limit, attributes) + return + } + + // Otherwise, add without deduplication. When attributes are read they + // will be deduplicated, optimizing the operation. + s.attributes = slices.Grow(s.attributes, len(attributes)) + for _, a := range attributes { + if !a.Valid() { + // Drop all invalid attributes. + s.addDroppedAttr(1) + continue + } + a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + s.attributes = append(s.attributes, a) + } +} + +// Declared as a var so tests can override. +var logDropAttrs = func() { + global.Warn("limit reached: dropping trace Span attributes") +} + +// addDroppedAttr adds incr to the count of dropped attributes. +// +// The first, and only the first, time this method is called a warning will be +// logged. +// +// This method assumes s.mu.Lock is held by the caller. +func (s *recordingSpan) addDroppedAttr(incr int) { + s.droppedAttributes += incr + s.logDropAttrsOnce.Do(logDropAttrs) +} + +// addOverCapAttrs adds the attributes attrs to the span s while +// de-duplicating the attributes of s and attrs and dropping attributes that +// exceed the limit. +// +// This method assumes s.mu.Lock is held by the caller. +// +// This method should only be called when there is a possibility that adding +// attrs to s will exceed the limit. Otherwise, attrs should be added to s +// without checking for duplicates and all retrieval methods of the attributes +// for s will de-duplicate as needed. +// +// This method assumes limit is a value > 0. The argument should be validated +// by the caller. +func (s *recordingSpan) addOverCapAttrs(limit int, attrs []attribute.KeyValue) { + // In order to not allocate more capacity to s.attributes than needed, + // prune and truncate this addition of attributes while adding. + + // Do not set a capacity when creating this map. Benchmark testing has + // showed this to only add unused memory allocations in general use. + exists := make(map[attribute.Key]int, len(s.attributes)) + s.dedupeAttrsFromRecord(exists) + + // Now that s.attributes is deduplicated, adding unique attributes up to + // the capacity of s will not over allocate s.attributes. + + // max size = limit + maxCap := min(len(attrs)+len(s.attributes), limit) + if cap(s.attributes) < maxCap { + s.attributes = slices.Grow(s.attributes, maxCap-cap(s.attributes)) + } + for _, a := range attrs { + if !a.Valid() { + // Drop all invalid attributes. + s.addDroppedAttr(1) + continue + } + + if idx, ok := exists[a.Key]; ok { + // Perform all updates before dropping, even when at capacity. + a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + s.attributes[idx] = a + continue + } + + if len(s.attributes) >= limit { + // Do not just drop all of the remaining attributes, make sure + // updates are checked and performed. + s.addDroppedAttr(1) + } else { + a = truncateAttr(s.tracer.provider.spanLimits.AttributeValueLengthLimit, a) + s.attributes = append(s.attributes, a) + exists[a.Key] = len(s.attributes) - 1 + } + } +} + +// truncateAttr returns a truncated version of attr. Only string and string +// slice attribute values are truncated. String values are truncated to at +// most a length of limit. Each string slice value is truncated in this fashion +// (the slice length itself is unaffected). +// +// No truncation is performed for a negative limit. +func truncateAttr(limit int, attr attribute.KeyValue) attribute.KeyValue { + if limit < 0 { + return attr + } + switch attr.Value.Type() { + case attribute.STRING: + v := attr.Value.AsString() + return attr.Key.String(truncate(limit, v)) + case attribute.STRINGSLICE: + v := attr.Value.AsStringSlice() + for i := range v { + v[i] = truncate(limit, v[i]) + } + return attr.Key.StringSlice(v) + } + return attr +} + +// truncate returns a truncated version of s such that it contains less than +// the limit number of characters. Truncation is applied by returning the limit +// number of valid characters contained in s. +// +// If limit is negative, it returns the original string. +// +// UTF-8 is supported. When truncating, all invalid characters are dropped +// before applying truncation. +// +// If s already contains less than the limit number of bytes, it is returned +// unchanged. No invalid characters are removed. +func truncate(limit int, s string) string { + // This prioritize performance in the following order based on the most + // common expected use-cases. + // + // - Short values less than the default limit (128). + // - Strings with valid encodings that exceed the limit. + // - No limit. + // - Strings with invalid encodings that exceed the limit. + if limit < 0 || len(s) <= limit { + return s + } + + // Optimistically, assume all valid UTF-8. + var b strings.Builder + count := 0 + for i, c := range s { + if c != utf8.RuneError { + count++ + if count > limit { + return s[:i] + } + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // Invalid encoding. + b.Grow(len(s) - 1) + _, _ = b.WriteString(s[:i]) + s = s[i:] + break + } + } + + // Fast-path, no invalid input. + if b.Cap() == 0 { + return s + } + + // Truncate while validating UTF-8. + for i := 0; i < len(s) && count < limit; { + c := s[i] + if c < utf8.RuneSelf { + // Optimization for single byte runes (common case). + _ = b.WriteByte(c) + i++ + count++ + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // We checked for all 1-byte runes above, this is a RuneError. + i++ + continue + } + + _, _ = b.WriteString(s[i : i+size]) + i += size + count++ + } + + return b.String() +} + +// End ends the span. This method does nothing if the span is already ended or +// is not being recorded. +// +// The only SpanEndOption currently supported are [trace.WithTimestamp], and +// [trace.WithStackTrace]. +// +// If this method is called while panicking an error event is added to the +// Span before ending it and the panic is continued. +func (s *recordingSpan) End(options ...trace.SpanEndOption) { + // Do not start by checking if the span is being recorded which requires + // acquiring a lock. Make a minimal check that the span is not nil. + if s == nil { + return + } + + // Store the end time as soon as possible to avoid artificially increasing + // the span's duration in case some operation below takes a while. + et := monotonicEndTime(s.startTime) + + // Lock the span now that we have an end time and see if we need to do any more processing. + s.mu.Lock() + if !s.isRecording() { + s.mu.Unlock() + return + } + + config := trace.NewSpanEndConfig(options...) + if recovered := recover(); recovered != nil { + // Record but don't stop the panic. + defer panic(recovered) + opts := []trace.EventOption{ + trace.WithAttributes( + semconv.ExceptionType(typeStr(recovered)), + semconv.ExceptionMessage(fmt.Sprint(recovered)), + ), + } + + if config.StackTrace() { + opts = append(opts, trace.WithAttributes( + semconv.ExceptionStacktrace(recordStackTrace()), + )) + } + + s.addEvent(semconv.ExceptionEventName, opts...) + } + + if s.executionTracerTaskEnd != nil { + s.mu.Unlock() + s.executionTracerTaskEnd() + s.mu.Lock() + } + + // Setting endTime to non-zero marks the span as ended and not recording. + if config.Timestamp().IsZero() { + s.endTime = et + } else { + s.endTime = config.Timestamp() + } + s.mu.Unlock() + + sps := s.tracer.provider.getSpanProcessors() + if len(sps) == 0 { + return + } + snap := s.snapshot() + for _, sp := range sps { + sp.sp.OnEnd(snap) + } +} + +// monotonicEndTime returns the end time at present but offset from start, +// monotonically. +// +// The monotonic clock is used in subtractions hence the duration since start +// added back to start gives end as a monotonic time. See +// https://golang.org/pkg/time/#hdr-Monotonic_Clocks +func monotonicEndTime(start time.Time) time.Time { + return start.Add(time.Since(start)) +} + +// RecordError will record err as a span event for this span. An additional call to +// SetStatus is required if the Status of the Span should be set to Error, this method +// does not change the Span status. If this span is not being recorded or err is nil +// than this method does nothing. +func (s *recordingSpan) RecordError(err error, opts ...trace.EventOption) { + if s == nil || err == nil { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + + opts = append(opts, trace.WithAttributes( + semconv.ExceptionType(typeStr(err)), + semconv.ExceptionMessage(err.Error()), + )) + + c := trace.NewEventConfig(opts...) + if c.StackTrace() { + opts = append(opts, trace.WithAttributes( + semconv.ExceptionStacktrace(recordStackTrace()), + )) + } + + s.addEvent(semconv.ExceptionEventName, opts...) +} + +func typeStr(i interface{}) string { + t := reflect.TypeOf(i) + if t.PkgPath() == "" && t.Name() == "" { + // Likely a builtin type. + return t.String() + } + return fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()) +} + +func recordStackTrace() string { + stackTrace := make([]byte, 2048) + n := runtime.Stack(stackTrace, false) + + return string(stackTrace[0:n]) +} + +// AddEvent adds an event with the provided name and options. If this span is +// not being recorded then this method does nothing. +func (s *recordingSpan) AddEvent(name string, o ...trace.EventOption) { + if s == nil { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + s.addEvent(name, o...) +} + +// addEvent adds an event with the provided name and options. +// +// This method assumes s.mu.Lock is held by the caller. +func (s *recordingSpan) addEvent(name string, o ...trace.EventOption) { + c := trace.NewEventConfig(o...) + e := Event{Name: name, Attributes: c.Attributes(), Time: c.Timestamp()} + + // Discard attributes over limit. + limit := s.tracer.provider.spanLimits.AttributePerEventCountLimit + if limit == 0 { + // Drop all attributes. + e.DroppedAttributeCount = len(e.Attributes) + e.Attributes = nil + } else if limit > 0 && len(e.Attributes) > limit { + // Drop over capacity. + e.DroppedAttributeCount = len(e.Attributes) - limit + e.Attributes = e.Attributes[:limit] + } + + s.events.add(e) +} + +// SetName sets the name of this span. If this span is not being recorded than +// this method does nothing. +func (s *recordingSpan) SetName(name string) { + if s == nil { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + s.name = name +} + +// Name returns the name of this span. +func (s *recordingSpan) Name() string { + s.mu.Lock() + defer s.mu.Unlock() + return s.name +} + +// Name returns the SpanContext of this span's parent span. +func (s *recordingSpan) Parent() trace.SpanContext { + s.mu.Lock() + defer s.mu.Unlock() + return s.parent +} + +// SpanKind returns the SpanKind of this span. +func (s *recordingSpan) SpanKind() trace.SpanKind { + s.mu.Lock() + defer s.mu.Unlock() + return s.spanKind +} + +// StartTime returns the time this span started. +func (s *recordingSpan) StartTime() time.Time { + s.mu.Lock() + defer s.mu.Unlock() + return s.startTime +} + +// EndTime returns the time this span ended. For spans that have not yet +// ended, the returned value will be the zero value of time.Time. +func (s *recordingSpan) EndTime() time.Time { + s.mu.Lock() + defer s.mu.Unlock() + return s.endTime +} + +// Attributes returns the attributes of this span. +// +// The order of the returned attributes is not guaranteed to be stable. +func (s *recordingSpan) Attributes() []attribute.KeyValue { + s.mu.Lock() + defer s.mu.Unlock() + s.dedupeAttrs() + return s.attributes +} + +// dedupeAttrs deduplicates the attributes of s to fit capacity. +// +// This method assumes s.mu.Lock is held by the caller. +func (s *recordingSpan) dedupeAttrs() { + // Do not set a capacity when creating this map. Benchmark testing has + // showed this to only add unused memory allocations in general use. + exists := make(map[attribute.Key]int, len(s.attributes)) + s.dedupeAttrsFromRecord(exists) +} + +// dedupeAttrsFromRecord deduplicates the attributes of s to fit capacity +// using record as the record of unique attribute keys to their index. +// +// This method assumes s.mu.Lock is held by the caller. +func (s *recordingSpan) dedupeAttrsFromRecord(record map[attribute.Key]int) { + // Use the fact that slices share the same backing array. + unique := s.attributes[:0] + for _, a := range s.attributes { + if idx, ok := record[a.Key]; ok { + unique[idx] = a + } else { + unique = append(unique, a) + record[a.Key] = len(unique) - 1 + } + } + clear(s.attributes[len(unique):]) // Erase unneeded elements to let GC collect objects. + s.attributes = unique +} + +// Links returns the links of this span. +func (s *recordingSpan) Links() []Link { + s.mu.Lock() + defer s.mu.Unlock() + if len(s.links.queue) == 0 { + return []Link{} + } + return s.links.copy() +} + +// Events returns the events of this span. +func (s *recordingSpan) Events() []Event { + s.mu.Lock() + defer s.mu.Unlock() + if len(s.events.queue) == 0 { + return []Event{} + } + return s.events.copy() +} + +// Status returns the status of this span. +func (s *recordingSpan) Status() Status { + s.mu.Lock() + defer s.mu.Unlock() + return s.status +} + +// InstrumentationScope returns the instrumentation.Scope associated with +// the Tracer that created this span. +func (s *recordingSpan) InstrumentationScope() instrumentation.Scope { + s.mu.Lock() + defer s.mu.Unlock() + return s.tracer.instrumentationScope +} + +// InstrumentationLibrary returns the instrumentation.Library associated with +// the Tracer that created this span. +func (s *recordingSpan) InstrumentationLibrary() instrumentation.Library { //nolint:staticcheck // This method needs to be define for backwards compatibility + s.mu.Lock() + defer s.mu.Unlock() + return s.tracer.instrumentationScope +} + +// Resource returns the Resource associated with the Tracer that created this +// span. +func (s *recordingSpan) Resource() *resource.Resource { + s.mu.Lock() + defer s.mu.Unlock() + return s.tracer.provider.resource +} + +func (s *recordingSpan) AddLink(link trace.Link) { + if s == nil { + return + } + if !link.SpanContext.IsValid() && len(link.Attributes) == 0 && + link.SpanContext.TraceState().Len() == 0 { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + + l := Link{SpanContext: link.SpanContext, Attributes: link.Attributes} + + // Discard attributes over limit. + limit := s.tracer.provider.spanLimits.AttributePerLinkCountLimit + if limit == 0 { + // Drop all attributes. + l.DroppedAttributeCount = len(l.Attributes) + l.Attributes = nil + } else if limit > 0 && len(l.Attributes) > limit { + l.DroppedAttributeCount = len(l.Attributes) - limit + l.Attributes = l.Attributes[:limit] + } + + s.links.add(l) +} + +// DroppedAttributes returns the number of attributes dropped by the span +// due to limits being reached. +func (s *recordingSpan) DroppedAttributes() int { + s.mu.Lock() + defer s.mu.Unlock() + return s.droppedAttributes +} + +// DroppedLinks returns the number of links dropped by the span due to limits +// being reached. +func (s *recordingSpan) DroppedLinks() int { + s.mu.Lock() + defer s.mu.Unlock() + return s.links.droppedCount +} + +// DroppedEvents returns the number of events dropped by the span due to +// limits being reached. +func (s *recordingSpan) DroppedEvents() int { + s.mu.Lock() + defer s.mu.Unlock() + return s.events.droppedCount +} + +// ChildSpanCount returns the count of spans that consider the span a +// direct parent. +func (s *recordingSpan) ChildSpanCount() int { + s.mu.Lock() + defer s.mu.Unlock() + return s.childSpanCount +} + +// TracerProvider returns a trace.TracerProvider that can be used to generate +// additional Spans on the same telemetry pipeline as the current Span. +func (s *recordingSpan) TracerProvider() trace.TracerProvider { + return s.tracer.provider +} + +// snapshot creates a read-only copy of the current state of the span. +func (s *recordingSpan) snapshot() ReadOnlySpan { + var sd snapshot + s.mu.Lock() + defer s.mu.Unlock() + + sd.endTime = s.endTime + sd.instrumentationScope = s.tracer.instrumentationScope + sd.name = s.name + sd.parent = s.parent + sd.resource = s.tracer.provider.resource + sd.spanContext = s.spanContext + sd.spanKind = s.spanKind + sd.startTime = s.startTime + sd.status = s.status + sd.childSpanCount = s.childSpanCount + + if len(s.attributes) > 0 { + s.dedupeAttrs() + sd.attributes = s.attributes + } + sd.droppedAttributeCount = s.droppedAttributes + if len(s.events.queue) > 0 { + sd.events = s.events.copy() + sd.droppedEventCount = s.events.droppedCount + } + if len(s.links.queue) > 0 { + sd.links = s.links.copy() + sd.droppedLinkCount = s.links.droppedCount + } + return &sd +} + +func (s *recordingSpan) addChild() { + if s == nil { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + if !s.isRecording() { + return + } + s.childSpanCount++ +} + +func (*recordingSpan) private() {} + +// runtimeTrace starts a "runtime/trace".Task for the span and returns a +// context containing the task. +func (s *recordingSpan) runtimeTrace(ctx context.Context) context.Context { + if !rt.IsEnabled() { + // Avoid additional overhead if runtime/trace is not enabled. + return ctx + } + nctx, task := rt.NewTask(ctx, s.name) + + s.mu.Lock() + s.executionTracerTaskEnd = task.End + s.mu.Unlock() + + return nctx +} + +// nonRecordingSpan is a minimal implementation of the OpenTelemetry Span API +// that wraps a SpanContext. It performs no operations other than to return +// the wrapped SpanContext or TracerProvider that created it. +type nonRecordingSpan struct { + embedded.Span + + // tracer is the SDK tracer that created this span. + tracer *tracer + sc trace.SpanContext +} + +var _ trace.Span = nonRecordingSpan{} + +// SpanContext returns the wrapped SpanContext. +func (s nonRecordingSpan) SpanContext() trace.SpanContext { return s.sc } + +// IsRecording always returns false. +func (nonRecordingSpan) IsRecording() bool { return false } + +// SetStatus does nothing. +func (nonRecordingSpan) SetStatus(codes.Code, string) {} + +// SetError does nothing. +func (nonRecordingSpan) SetError(bool) {} + +// SetAttributes does nothing. +func (nonRecordingSpan) SetAttributes(...attribute.KeyValue) {} + +// End does nothing. +func (nonRecordingSpan) End(...trace.SpanEndOption) {} + +// RecordError does nothing. +func (nonRecordingSpan) RecordError(error, ...trace.EventOption) {} + +// AddEvent does nothing. +func (nonRecordingSpan) AddEvent(string, ...trace.EventOption) {} + +// AddLink does nothing. +func (nonRecordingSpan) AddLink(trace.Link) {} + +// SetName does nothing. +func (nonRecordingSpan) SetName(string) {} + +// TracerProvider returns the trace.TracerProvider that provided the Tracer +// that created this span. +func (s nonRecordingSpan) TracerProvider() trace.TracerProvider { return s.tracer.provider } + +func isRecording(s SamplingResult) bool { + return s.Decision == RecordOnly || s.Decision == RecordAndSample +} + +func isSampled(s SamplingResult) bool { + return s.Decision == RecordAndSample +} + +// Status is the classified state of a Span. +type Status struct { + // Code is an identifier of a Spans state classification. + Code codes.Code + // Description is a user hint about why that status was set. It is only + // applicable when Code is Error. + Description string +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go new file mode 100644 index 0000000000..6bdda3d94a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_exporter.go @@ -0,0 +1,36 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import "context" + +// SpanExporter handles the delivery of spans to external receivers. This is +// the final component in the trace export pipeline. +type SpanExporter interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // ExportSpans exports a batch of spans. + // + // This function is called synchronously, so there is no concurrency + // safety requirement. However, due to the synchronous calling pattern, + // it is critical that all timeouts and cancellations contained in the + // passed context must be honored. + // + // Any retry logic must be contained in this function. The SDK that + // calls this function will not implement any retry logic. All errors + // returned by this function are considered unrecoverable and will be + // reported to a configured error Handler. + ExportSpans(ctx context.Context, spans []ReadOnlySpan) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Shutdown notifies the exporter of a pending halt to operations. The + // exporter is expected to perform any cleanup or synchronization it + // requires while honoring all timeouts and cancellations contained in + // the passed context. + Shutdown(ctx context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go new file mode 100644 index 0000000000..bec5e20978 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_limits.go @@ -0,0 +1,114 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import "go.opentelemetry.io/otel/sdk/internal/env" + +const ( + // DefaultAttributeValueLengthLimit is the default maximum allowed + // attribute value length, unlimited. + DefaultAttributeValueLengthLimit = -1 + + // DefaultAttributeCountLimit is the default maximum number of attributes + // a span can have. + DefaultAttributeCountLimit = 128 + + // DefaultEventCountLimit is the default maximum number of events a span + // can have. + DefaultEventCountLimit = 128 + + // DefaultLinkCountLimit is the default maximum number of links a span can + // have. + DefaultLinkCountLimit = 128 + + // DefaultAttributePerEventCountLimit is the default maximum number of + // attributes a span event can have. + DefaultAttributePerEventCountLimit = 128 + + // DefaultAttributePerLinkCountLimit is the default maximum number of + // attributes a span link can have. + DefaultAttributePerLinkCountLimit = 128 +) + +// SpanLimits represents the limits of a span. +type SpanLimits struct { + // AttributeValueLengthLimit is the maximum allowed attribute value length. + // + // This limit only applies to string and string slice attribute values. + // Any string longer than this value will be truncated to this length. + // + // Setting this to a negative value means no limit is applied. + AttributeValueLengthLimit int + + // AttributeCountLimit is the maximum allowed span attribute count. Any + // attribute added to a span once this limit is reached will be dropped. + // + // Setting this to zero means no attributes will be recorded. + // + // Setting this to a negative value means no limit is applied. + AttributeCountLimit int + + // EventCountLimit is the maximum allowed span event count. Any event + // added to a span once this limit is reached means it will be added but + // the oldest event will be dropped. + // + // Setting this to zero means no events we be recorded. + // + // Setting this to a negative value means no limit is applied. + EventCountLimit int + + // LinkCountLimit is the maximum allowed span link count. Any link added + // to a span once this limit is reached means it will be added but the + // oldest link will be dropped. + // + // Setting this to zero means no links we be recorded. + // + // Setting this to a negative value means no limit is applied. + LinkCountLimit int + + // AttributePerEventCountLimit is the maximum number of attributes allowed + // per span event. Any attribute added after this limit reached will be + // dropped. + // + // Setting this to zero means no attributes will be recorded for events. + // + // Setting this to a negative value means no limit is applied. + AttributePerEventCountLimit int + + // AttributePerLinkCountLimit is the maximum number of attributes allowed + // per span link. Any attribute added after this limit reached will be + // dropped. + // + // Setting this to zero means no attributes will be recorded for links. + // + // Setting this to a negative value means no limit is applied. + AttributePerLinkCountLimit int +} + +// NewSpanLimits returns a SpanLimits with all limits set to the value their +// corresponding environment variable holds, or the default if unset. +// +// • AttributeValueLengthLimit: OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT +// (default: unlimited) +// +// • AttributeCountLimit: OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT (default: 128) +// +// • EventCountLimit: OTEL_SPAN_EVENT_COUNT_LIMIT (default: 128) +// +// • AttributePerEventCountLimit: OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT (default: +// 128) +// +// • LinkCountLimit: OTEL_SPAN_LINK_COUNT_LIMIT (default: 128) +// +// • AttributePerLinkCountLimit: OTEL_LINK_ATTRIBUTE_COUNT_LIMIT (default: 128) +func NewSpanLimits() SpanLimits { + return SpanLimits{ + AttributeValueLengthLimit: env.SpanAttributeValueLength(DefaultAttributeValueLengthLimit), + AttributeCountLimit: env.SpanAttributeCount(DefaultAttributeCountLimit), + EventCountLimit: env.SpanEventCount(DefaultEventCountLimit), + LinkCountLimit: env.SpanLinkCount(DefaultLinkCountLimit), + AttributePerEventCountLimit: env.SpanEventAttributeCount(DefaultAttributePerEventCountLimit), + AttributePerLinkCountLimit: env.SpanLinkAttributeCount(DefaultAttributePerLinkCountLimit), + } +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go b/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go new file mode 100644 index 0000000000..af7f9177fc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/span_processor.go @@ -0,0 +1,61 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "sync" +) + +// SpanProcessor is a processing pipeline for spans in the trace signal. +// SpanProcessors registered with a TracerProvider and are called at the start +// and end of a Span's lifecycle, and are called in the order they are +// registered. +type SpanProcessor interface { + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // OnStart is called when a span is started. It is called synchronously + // and should not block. + OnStart(parent context.Context, s ReadWriteSpan) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // OnEnd is called when span is finished. It is called synchronously and + // hence not block. + OnEnd(s ReadOnlySpan) + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // Shutdown is called when the SDK shuts down. Any cleanup or release of + // resources held by the processor should be done in this call. + // + // Calls to OnStart, OnEnd, or ForceFlush after this has been called + // should be ignored. + // + // All timeouts and cancellations contained in ctx must be honored, this + // should not block indefinitely. + Shutdown(ctx context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. + + // ForceFlush exports all ended spans to the configured Exporter that have not yet + // been exported. It should only be called when absolutely necessary, such as when + // using a FaaS provider that may suspend the process after an invocation, but before + // the Processor can export the completed spans. + ForceFlush(ctx context.Context) error + // DO NOT CHANGE: any modification will not be backwards compatible and + // must never be done outside of a new major release. +} + +type spanProcessorState struct { + sp SpanProcessor + state sync.Once +} + +func newSpanProcessorState(sp SpanProcessor) *spanProcessorState { + return &spanProcessorState{sp: sp} +} + +type spanProcessorStates []*spanProcessorState diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go new file mode 100644 index 0000000000..0b65ae9ab7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracer.go @@ -0,0 +1,162 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +import ( + "context" + "time" + + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/embedded" +) + +type tracer struct { + embedded.Tracer + + provider *TracerProvider + instrumentationScope instrumentation.Scope +} + +var _ trace.Tracer = &tracer{} + +// Start starts a Span and returns it along with a context containing it. +// +// The Span is created with the provided name and as a child of any existing +// span context found in the passed context. The created Span will be +// configured appropriately by any SpanOption passed. +func (tr *tracer) Start( + ctx context.Context, + name string, + options ...trace.SpanStartOption, +) (context.Context, trace.Span) { + config := trace.NewSpanStartConfig(options...) + + if ctx == nil { + // Prevent trace.ContextWithSpan from panicking. + ctx = context.Background() + } + + // For local spans created by this SDK, track child span count. + if p := trace.SpanFromContext(ctx); p != nil { + if sdkSpan, ok := p.(*recordingSpan); ok { + sdkSpan.addChild() + } + } + + s := tr.newSpan(ctx, name, &config) + if rw, ok := s.(ReadWriteSpan); ok && s.IsRecording() { + sps := tr.provider.getSpanProcessors() + for _, sp := range sps { + sp.sp.OnStart(ctx, rw) + } + } + if rtt, ok := s.(runtimeTracer); ok { + ctx = rtt.runtimeTrace(ctx) + } + + return trace.ContextWithSpan(ctx, s), s +} + +type runtimeTracer interface { + // runtimeTrace starts a "runtime/trace".Task for the span and + // returns a context containing the task. + runtimeTrace(ctx context.Context) context.Context +} + +// newSpan returns a new configured span. +func (tr *tracer) newSpan(ctx context.Context, name string, config *trace.SpanConfig) trace.Span { + // If told explicitly to make this a new root use a zero value SpanContext + // as a parent which contains an invalid trace ID and is not remote. + var psc trace.SpanContext + if config.NewRoot() { + ctx = trace.ContextWithSpanContext(ctx, psc) + } else { + psc = trace.SpanContextFromContext(ctx) + } + + // If there is a valid parent trace ID, use it to ensure the continuity of + // the trace. Always generate a new span ID so other components can rely + // on a unique span ID, even if the Span is non-recording. + var tid trace.TraceID + var sid trace.SpanID + if !psc.TraceID().IsValid() { + tid, sid = tr.provider.idGenerator.NewIDs(ctx) + } else { + tid = psc.TraceID() + sid = tr.provider.idGenerator.NewSpanID(ctx, tid) + } + + samplingResult := tr.provider.sampler.ShouldSample(SamplingParameters{ + ParentContext: ctx, + TraceID: tid, + Name: name, + Kind: config.SpanKind(), + Attributes: config.Attributes(), + Links: config.Links(), + }) + + scc := trace.SpanContextConfig{ + TraceID: tid, + SpanID: sid, + TraceState: samplingResult.Tracestate, + } + if isSampled(samplingResult) { + scc.TraceFlags = psc.TraceFlags() | trace.FlagsSampled + } else { + scc.TraceFlags = psc.TraceFlags() &^ trace.FlagsSampled + } + sc := trace.NewSpanContext(scc) + + if !isRecording(samplingResult) { + return tr.newNonRecordingSpan(sc) + } + return tr.newRecordingSpan(psc, sc, name, samplingResult, config) +} + +// newRecordingSpan returns a new configured recordingSpan. +func (tr *tracer) newRecordingSpan( + psc, sc trace.SpanContext, + name string, + sr SamplingResult, + config *trace.SpanConfig, +) *recordingSpan { + startTime := config.Timestamp() + if startTime.IsZero() { + startTime = time.Now() + } + + s := &recordingSpan{ + // Do not pre-allocate the attributes slice here! Doing so will + // allocate memory that is likely never going to be used, or if used, + // will be over-sized. The default Go compiler has been tested to + // dynamically allocate needed space very well. Benchmarking has shown + // it to be more performant than what we can predetermine here, + // especially for the common use case of few to no added + // attributes. + + parent: psc, + spanContext: sc, + spanKind: trace.ValidateSpanKind(config.SpanKind()), + name: name, + startTime: startTime, + events: newEvictedQueueEvent(tr.provider.spanLimits.EventCountLimit), + links: newEvictedQueueLink(tr.provider.spanLimits.LinkCountLimit), + tracer: tr, + } + + for _, l := range config.Links() { + s.AddLink(l) + } + + s.SetAttributes(sr.Attributes...) + s.SetAttributes(config.Attributes()...) + + return s +} + +// newNonRecordingSpan returns a new configured nonRecordingSpan. +func (tr *tracer) newNonRecordingSpan(sc trace.SpanContext) nonRecordingSpan { + return nonRecordingSpan{tracer: tr, sc: sc} +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/README.md b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/README.md new file mode 100644 index 0000000000..0678d6564f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/README.md @@ -0,0 +1,3 @@ +# SDK Trace test + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/sdk/trace/tracetest)](https://pkg.go.dev/go.opentelemetry.io/otel/sdk/trace/tracetest) diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go new file mode 100644 index 0000000000..07117495a8 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/exporter.go @@ -0,0 +1,74 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package tracetest is a testing helper package for the SDK. User can +// configure no-op or in-memory exporters to verify different SDK behaviors or +// custom instrumentation. +package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/sdk/trace" +) + +var _ trace.SpanExporter = (*NoopExporter)(nil) + +// NewNoopExporter returns a new no-op exporter. +func NewNoopExporter() *NoopExporter { + return new(NoopExporter) +} + +// NoopExporter is an exporter that drops all received spans and performs no +// action. +type NoopExporter struct{} + +// ExportSpans handles export of spans by dropping them. +func (nsb *NoopExporter) ExportSpans(context.Context, []trace.ReadOnlySpan) error { return nil } + +// Shutdown stops the exporter by doing nothing. +func (nsb *NoopExporter) Shutdown(context.Context) error { return nil } + +var _ trace.SpanExporter = (*InMemoryExporter)(nil) + +// NewInMemoryExporter returns a new InMemoryExporter. +func NewInMemoryExporter() *InMemoryExporter { + return new(InMemoryExporter) +} + +// InMemoryExporter is an exporter that stores all received spans in-memory. +type InMemoryExporter struct { + mu sync.Mutex + ss SpanStubs +} + +// ExportSpans handles export of spans by storing them in memory. +func (imsb *InMemoryExporter) ExportSpans(_ context.Context, spans []trace.ReadOnlySpan) error { + imsb.mu.Lock() + defer imsb.mu.Unlock() + imsb.ss = append(imsb.ss, SpanStubsFromReadOnlySpans(spans)...) + return nil +} + +// Shutdown stops the exporter by clearing spans held in memory. +func (imsb *InMemoryExporter) Shutdown(context.Context) error { + imsb.Reset() + return nil +} + +// Reset the current in-memory storage. +func (imsb *InMemoryExporter) Reset() { + imsb.mu.Lock() + defer imsb.mu.Unlock() + imsb.ss = nil +} + +// GetSpans returns the current in-memory stored spans. +func (imsb *InMemoryExporter) GetSpans() SpanStubs { + imsb.mu.Lock() + defer imsb.mu.Unlock() + ret := make(SpanStubs, len(imsb.ss)) + copy(ret, imsb.ss) + return ret +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go new file mode 100644 index 0000000000..732669a17a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/recorder.go @@ -0,0 +1,94 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" + +import ( + "context" + "sync" + + sdktrace "go.opentelemetry.io/otel/sdk/trace" +) + +// SpanRecorder records started and ended spans. +type SpanRecorder struct { + startedMu sync.RWMutex + started []sdktrace.ReadWriteSpan + + endedMu sync.RWMutex + ended []sdktrace.ReadOnlySpan +} + +var _ sdktrace.SpanProcessor = (*SpanRecorder)(nil) + +// NewSpanRecorder returns a new initialized SpanRecorder. +func NewSpanRecorder() *SpanRecorder { + return new(SpanRecorder) +} + +// OnStart records started spans. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) OnStart(_ context.Context, s sdktrace.ReadWriteSpan) { + sr.startedMu.Lock() + defer sr.startedMu.Unlock() + sr.started = append(sr.started, s) +} + +// OnEnd records completed spans. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) OnEnd(s sdktrace.ReadOnlySpan) { + sr.endedMu.Lock() + defer sr.endedMu.Unlock() + sr.ended = append(sr.ended, s) +} + +// Shutdown does nothing. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) Shutdown(context.Context) error { + return nil +} + +// ForceFlush does nothing. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) ForceFlush(context.Context) error { + return nil +} + +// Started returns a copy of all started spans that have been recorded. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) Started() []sdktrace.ReadWriteSpan { + sr.startedMu.RLock() + defer sr.startedMu.RUnlock() + dst := make([]sdktrace.ReadWriteSpan, len(sr.started)) + copy(dst, sr.started) + return dst +} + +// Reset clears the recorded spans. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) Reset() { + sr.startedMu.Lock() + sr.endedMu.Lock() + defer sr.startedMu.Unlock() + defer sr.endedMu.Unlock() + + sr.started = nil + sr.ended = nil +} + +// Ended returns a copy of all ended spans that have been recorded. +// +// This method is safe to be called concurrently. +func (sr *SpanRecorder) Ended() []sdktrace.ReadOnlySpan { + sr.endedMu.RLock() + defer sr.endedMu.RUnlock() + dst := make([]sdktrace.ReadOnlySpan, len(sr.ended)) + copy(dst, sr.ended) + return dst +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go new file mode 100644 index 0000000000..cd2cc30ca2 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/tracetest/span.go @@ -0,0 +1,166 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package tracetest // import "go.opentelemetry.io/otel/sdk/trace/tracetest" + +import ( + "time" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/sdk/instrumentation" + "go.opentelemetry.io/otel/sdk/resource" + tracesdk "go.opentelemetry.io/otel/sdk/trace" + "go.opentelemetry.io/otel/trace" +) + +// SpanStubs is a slice of SpanStub use for testing an SDK. +type SpanStubs []SpanStub + +// SpanStubsFromReadOnlySpans returns SpanStubs populated from ro. +func SpanStubsFromReadOnlySpans(ro []tracesdk.ReadOnlySpan) SpanStubs { + if len(ro) == 0 { + return nil + } + + s := make(SpanStubs, 0, len(ro)) + for _, r := range ro { + s = append(s, SpanStubFromReadOnlySpan(r)) + } + + return s +} + +// Snapshots returns s as a slice of ReadOnlySpans. +func (s SpanStubs) Snapshots() []tracesdk.ReadOnlySpan { + if len(s) == 0 { + return nil + } + + ro := make([]tracesdk.ReadOnlySpan, len(s)) + for i := 0; i < len(s); i++ { + ro[i] = s[i].Snapshot() + } + return ro +} + +// SpanStub is a stand-in for a Span. +type SpanStub struct { + Name string + SpanContext trace.SpanContext + Parent trace.SpanContext + SpanKind trace.SpanKind + StartTime time.Time + EndTime time.Time + Attributes []attribute.KeyValue + Events []tracesdk.Event + Links []tracesdk.Link + Status tracesdk.Status + DroppedAttributes int + DroppedEvents int + DroppedLinks int + ChildSpanCount int + Resource *resource.Resource + InstrumentationScope instrumentation.Scope + + // Deprecated: use InstrumentationScope instead. + InstrumentationLibrary instrumentation.Library //nolint:staticcheck // This method needs to be define for backwards compatibility +} + +// SpanStubFromReadOnlySpan returns a SpanStub populated from ro. +func SpanStubFromReadOnlySpan(ro tracesdk.ReadOnlySpan) SpanStub { + if ro == nil { + return SpanStub{} + } + + return SpanStub{ + Name: ro.Name(), + SpanContext: ro.SpanContext(), + Parent: ro.Parent(), + SpanKind: ro.SpanKind(), + StartTime: ro.StartTime(), + EndTime: ro.EndTime(), + Attributes: ro.Attributes(), + Events: ro.Events(), + Links: ro.Links(), + Status: ro.Status(), + DroppedAttributes: ro.DroppedAttributes(), + DroppedEvents: ro.DroppedEvents(), + DroppedLinks: ro.DroppedLinks(), + ChildSpanCount: ro.ChildSpanCount(), + Resource: ro.Resource(), + InstrumentationScope: ro.InstrumentationScope(), + InstrumentationLibrary: ro.InstrumentationScope(), + } +} + +// Snapshot returns a read-only copy of the SpanStub. +func (s SpanStub) Snapshot() tracesdk.ReadOnlySpan { + scopeOrLibrary := s.InstrumentationScope + if scopeOrLibrary.Name == "" && scopeOrLibrary.Version == "" && scopeOrLibrary.SchemaURL == "" { + scopeOrLibrary = s.InstrumentationLibrary + } + + return spanSnapshot{ + name: s.Name, + spanContext: s.SpanContext, + parent: s.Parent, + spanKind: s.SpanKind, + startTime: s.StartTime, + endTime: s.EndTime, + attributes: s.Attributes, + events: s.Events, + links: s.Links, + status: s.Status, + droppedAttributes: s.DroppedAttributes, + droppedEvents: s.DroppedEvents, + droppedLinks: s.DroppedLinks, + childSpanCount: s.ChildSpanCount, + resource: s.Resource, + instrumentationScope: scopeOrLibrary, + } +} + +type spanSnapshot struct { + // Embed the interface to implement the private method. + tracesdk.ReadOnlySpan + + name string + spanContext trace.SpanContext + parent trace.SpanContext + spanKind trace.SpanKind + startTime time.Time + endTime time.Time + attributes []attribute.KeyValue + events []tracesdk.Event + links []tracesdk.Link + status tracesdk.Status + droppedAttributes int + droppedEvents int + droppedLinks int + childSpanCount int + resource *resource.Resource + instrumentationScope instrumentation.Scope +} + +func (s spanSnapshot) Name() string { return s.name } +func (s spanSnapshot) SpanContext() trace.SpanContext { return s.spanContext } +func (s spanSnapshot) Parent() trace.SpanContext { return s.parent } +func (s spanSnapshot) SpanKind() trace.SpanKind { return s.spanKind } +func (s spanSnapshot) StartTime() time.Time { return s.startTime } +func (s spanSnapshot) EndTime() time.Time { return s.endTime } +func (s spanSnapshot) Attributes() []attribute.KeyValue { return s.attributes } +func (s spanSnapshot) Links() []tracesdk.Link { return s.links } +func (s spanSnapshot) Events() []tracesdk.Event { return s.events } +func (s spanSnapshot) Status() tracesdk.Status { return s.status } +func (s spanSnapshot) DroppedAttributes() int { return s.droppedAttributes } +func (s spanSnapshot) DroppedLinks() int { return s.droppedLinks } +func (s spanSnapshot) DroppedEvents() int { return s.droppedEvents } +func (s spanSnapshot) ChildSpanCount() int { return s.childSpanCount } +func (s spanSnapshot) Resource() *resource.Resource { return s.resource } +func (s spanSnapshot) InstrumentationScope() instrumentation.Scope { + return s.instrumentationScope +} + +func (s spanSnapshot) InstrumentationLibrary() instrumentation.Library { //nolint:staticcheck // This method needs to be define for backwards compatibility + return s.instrumentationScope +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/trace/version.go b/vendor/go.opentelemetry.io/otel/sdk/trace/version.go new file mode 100644 index 0000000000..b84dd2c5ee --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/trace/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/sdk/trace" + +// version is the current release version of the metric SDK in use. +func version() string { + return "1.16.0-rc.1" +} diff --git a/vendor/go.opentelemetry.io/otel/sdk/version.go b/vendor/go.opentelemetry.io/otel/sdk/version.go new file mode 100644 index 0000000000..c0217af6b9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/sdk/version.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package sdk provides the OpenTelemetry default SDK for Go. +package sdk // import "go.opentelemetry.io/otel/sdk" + +// Version is the current release version of the OpenTelemetry SDK in use. +func Version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/README.md b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/README.md new file mode 100644 index 0000000000..82e1f46b4e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/README.md @@ -0,0 +1,3 @@ +# Semconv v1.20.0 + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.20.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.20.0) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/attribute_group.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/attribute_group.go new file mode 100644 index 0000000000..6685c392b5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/attribute_group.go @@ -0,0 +1,1198 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +import "go.opentelemetry.io/otel/attribute" + +// Describes HTTP attributes. +const ( + // HTTPMethodKey is the attribute Key conforming to the "http.method" + // semantic conventions. It represents the hTTP request method. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'GET', 'POST', 'HEAD' + HTTPMethodKey = attribute.Key("http.method") + + // HTTPStatusCodeKey is the attribute Key conforming to the + // "http.status_code" semantic conventions. It represents the [HTTP + // response status code](https://tools.ietf.org/html/rfc7231#section-6). + // + // Type: int + // RequirementLevel: ConditionallyRequired (If and only if one was + // received/sent.) + // Stability: stable + // Examples: 200 + HTTPStatusCodeKey = attribute.Key("http.status_code") +) + +// HTTPMethod returns an attribute KeyValue conforming to the "http.method" +// semantic conventions. It represents the hTTP request method. +func HTTPMethod(val string) attribute.KeyValue { + return HTTPMethodKey.String(val) +} + +// HTTPStatusCode returns an attribute KeyValue conforming to the +// "http.status_code" semantic conventions. It represents the [HTTP response +// status code](https://tools.ietf.org/html/rfc7231#section-6). +func HTTPStatusCode(val int) attribute.KeyValue { + return HTTPStatusCodeKey.Int(val) +} + +// HTTP Server spans attributes +const ( + // HTTPSchemeKey is the attribute Key conforming to the "http.scheme" + // semantic conventions. It represents the URI scheme identifying the used + // protocol. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'http', 'https' + HTTPSchemeKey = attribute.Key("http.scheme") + + // HTTPRouteKey is the attribute Key conforming to the "http.route" + // semantic conventions. It represents the matched route (path template in + // the format used by the respective server framework). See note below + // + // Type: string + // RequirementLevel: ConditionallyRequired (If and only if it's available) + // Stability: stable + // Examples: '/users/:userID?', '{controller}/{action}/{id?}' + // Note: MUST NOT be populated when this is not supported by the HTTP + // server framework as the route attribute should have low-cardinality and + // the URI path can NOT substitute it. + // SHOULD include the [application + // root](/specification/trace/semantic_conventions/http.md#http-server-definitions) + // if there is one. + HTTPRouteKey = attribute.Key("http.route") +) + +// HTTPScheme returns an attribute KeyValue conforming to the "http.scheme" +// semantic conventions. It represents the URI scheme identifying the used +// protocol. +func HTTPScheme(val string) attribute.KeyValue { + return HTTPSchemeKey.String(val) +} + +// HTTPRoute returns an attribute KeyValue conforming to the "http.route" +// semantic conventions. It represents the matched route (path template in the +// format used by the respective server framework). See note below +func HTTPRoute(val string) attribute.KeyValue { + return HTTPRouteKey.String(val) +} + +// Attributes for Events represented using Log Records. +const ( + // EventNameKey is the attribute Key conforming to the "event.name" + // semantic conventions. It represents the name identifies the event. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'click', 'exception' + EventNameKey = attribute.Key("event.name") + + // EventDomainKey is the attribute Key conforming to the "event.domain" + // semantic conventions. It represents the domain identifies the business + // context for the events. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + // Note: Events across different domains may have same `event.name`, yet be + // unrelated events. + EventDomainKey = attribute.Key("event.domain") +) + +var ( + // Events from browser apps + EventDomainBrowser = EventDomainKey.String("browser") + // Events from mobile apps + EventDomainDevice = EventDomainKey.String("device") + // Events from Kubernetes + EventDomainK8S = EventDomainKey.String("k8s") +) + +// EventName returns an attribute KeyValue conforming to the "event.name" +// semantic conventions. It represents the name identifies the event. +func EventName(val string) attribute.KeyValue { + return EventNameKey.String(val) +} + +// These attributes may be used for any network related operation. +const ( + // NetTransportKey is the attribute Key conforming to the "net.transport" + // semantic conventions. It represents the transport protocol used. See + // note below. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + NetTransportKey = attribute.Key("net.transport") + + // NetProtocolNameKey is the attribute Key conforming to the + // "net.protocol.name" semantic conventions. It represents the application + // layer protocol used. The value SHOULD be normalized to lowercase. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'amqp', 'http', 'mqtt' + NetProtocolNameKey = attribute.Key("net.protocol.name") + + // NetProtocolVersionKey is the attribute Key conforming to the + // "net.protocol.version" semantic conventions. It represents the version + // of the application layer protocol used. See note below. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '3.1.1' + // Note: `net.protocol.version` refers to the version of the protocol used + // and might be different from the protocol client's version. If the HTTP + // client used has a version of `0.27.2`, but sends HTTP version `1.1`, + // this attribute should be set to `1.1`. + NetProtocolVersionKey = attribute.Key("net.protocol.version") + + // NetSockPeerNameKey is the attribute Key conforming to the + // "net.sock.peer.name" semantic conventions. It represents the remote + // socket peer name. + // + // Type: string + // RequirementLevel: Recommended (If available and different from + // `net.peer.name` and if `net.sock.peer.addr` is set.) + // Stability: stable + // Examples: 'proxy.example.com' + NetSockPeerNameKey = attribute.Key("net.sock.peer.name") + + // NetSockPeerAddrKey is the attribute Key conforming to the + // "net.sock.peer.addr" semantic conventions. It represents the remote + // socket peer address: IPv4 or IPv6 for internet protocols, path for local + // communication, + // [etc](https://man7.org/linux/man-pages/man7/address_families.7.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '127.0.0.1', '/tmp/mysql.sock' + NetSockPeerAddrKey = attribute.Key("net.sock.peer.addr") + + // NetSockPeerPortKey is the attribute Key conforming to the + // "net.sock.peer.port" semantic conventions. It represents the remote + // socket peer port. + // + // Type: int + // RequirementLevel: Recommended (If defined for the address family and if + // different than `net.peer.port` and if `net.sock.peer.addr` is set.) + // Stability: stable + // Examples: 16456 + NetSockPeerPortKey = attribute.Key("net.sock.peer.port") + + // NetSockFamilyKey is the attribute Key conforming to the + // "net.sock.family" semantic conventions. It represents the protocol + // [address + // family](https://man7.org/linux/man-pages/man7/address_families.7.html) + // which is used for communication. + // + // Type: Enum + // RequirementLevel: ConditionallyRequired (If different than `inet` and if + // any of `net.sock.peer.addr` or `net.sock.host.addr` are set. Consumers + // of telemetry SHOULD accept both IPv4 and IPv6 formats for the address in + // `net.sock.peer.addr` if `net.sock.family` is not set. This is to support + // instrumentations that follow previous versions of this document.) + // Stability: stable + // Examples: 'inet6', 'bluetooth' + NetSockFamilyKey = attribute.Key("net.sock.family") + + // NetPeerNameKey is the attribute Key conforming to the "net.peer.name" + // semantic conventions. It represents the logical remote hostname, see + // note below. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'example.com' + // Note: `net.peer.name` SHOULD NOT be set if capturing it would require an + // extra DNS lookup. + NetPeerNameKey = attribute.Key("net.peer.name") + + // NetPeerPortKey is the attribute Key conforming to the "net.peer.port" + // semantic conventions. It represents the logical remote port number + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 80, 8080, 443 + NetPeerPortKey = attribute.Key("net.peer.port") + + // NetHostNameKey is the attribute Key conforming to the "net.host.name" + // semantic conventions. It represents the logical local hostname or + // similar, see note below. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'localhost' + NetHostNameKey = attribute.Key("net.host.name") + + // NetHostPortKey is the attribute Key conforming to the "net.host.port" + // semantic conventions. It represents the logical local port number, + // preferably the one that the peer used to connect + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 8080 + NetHostPortKey = attribute.Key("net.host.port") + + // NetSockHostAddrKey is the attribute Key conforming to the + // "net.sock.host.addr" semantic conventions. It represents the local + // socket address. Useful in case of a multi-IP host. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '192.168.0.1' + NetSockHostAddrKey = attribute.Key("net.sock.host.addr") + + // NetSockHostPortKey is the attribute Key conforming to the + // "net.sock.host.port" semantic conventions. It represents the local + // socket port number. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If defined for the address + // family and if different than `net.host.port` and if `net.sock.host.addr` + // is set. In other cases, it is still recommended to set this.) + // Stability: stable + // Examples: 35555 + NetSockHostPortKey = attribute.Key("net.sock.host.port") +) + +var ( + // ip_tcp + NetTransportTCP = NetTransportKey.String("ip_tcp") + // ip_udp + NetTransportUDP = NetTransportKey.String("ip_udp") + // Named or anonymous pipe. See note below + NetTransportPipe = NetTransportKey.String("pipe") + // In-process communication + NetTransportInProc = NetTransportKey.String("inproc") + // Something else (non IP-based) + NetTransportOther = NetTransportKey.String("other") +) + +var ( + // IPv4 address + NetSockFamilyInet = NetSockFamilyKey.String("inet") + // IPv6 address + NetSockFamilyInet6 = NetSockFamilyKey.String("inet6") + // Unix domain socket path + NetSockFamilyUnix = NetSockFamilyKey.String("unix") +) + +// NetProtocolName returns an attribute KeyValue conforming to the +// "net.protocol.name" semantic conventions. It represents the application +// layer protocol used. The value SHOULD be normalized to lowercase. +func NetProtocolName(val string) attribute.KeyValue { + return NetProtocolNameKey.String(val) +} + +// NetProtocolVersion returns an attribute KeyValue conforming to the +// "net.protocol.version" semantic conventions. It represents the version of +// the application layer protocol used. See note below. +func NetProtocolVersion(val string) attribute.KeyValue { + return NetProtocolVersionKey.String(val) +} + +// NetSockPeerName returns an attribute KeyValue conforming to the +// "net.sock.peer.name" semantic conventions. It represents the remote socket +// peer name. +func NetSockPeerName(val string) attribute.KeyValue { + return NetSockPeerNameKey.String(val) +} + +// NetSockPeerAddr returns an attribute KeyValue conforming to the +// "net.sock.peer.addr" semantic conventions. It represents the remote socket +// peer address: IPv4 or IPv6 for internet protocols, path for local +// communication, +// [etc](https://man7.org/linux/man-pages/man7/address_families.7.html). +func NetSockPeerAddr(val string) attribute.KeyValue { + return NetSockPeerAddrKey.String(val) +} + +// NetSockPeerPort returns an attribute KeyValue conforming to the +// "net.sock.peer.port" semantic conventions. It represents the remote socket +// peer port. +func NetSockPeerPort(val int) attribute.KeyValue { + return NetSockPeerPortKey.Int(val) +} + +// NetPeerName returns an attribute KeyValue conforming to the +// "net.peer.name" semantic conventions. It represents the logical remote +// hostname, see note below. +func NetPeerName(val string) attribute.KeyValue { + return NetPeerNameKey.String(val) +} + +// NetPeerPort returns an attribute KeyValue conforming to the +// "net.peer.port" semantic conventions. It represents the logical remote port +// number +func NetPeerPort(val int) attribute.KeyValue { + return NetPeerPortKey.Int(val) +} + +// NetHostName returns an attribute KeyValue conforming to the +// "net.host.name" semantic conventions. It represents the logical local +// hostname or similar, see note below. +func NetHostName(val string) attribute.KeyValue { + return NetHostNameKey.String(val) +} + +// NetHostPort returns an attribute KeyValue conforming to the +// "net.host.port" semantic conventions. It represents the logical local port +// number, preferably the one that the peer used to connect +func NetHostPort(val int) attribute.KeyValue { + return NetHostPortKey.Int(val) +} + +// NetSockHostAddr returns an attribute KeyValue conforming to the +// "net.sock.host.addr" semantic conventions. It represents the local socket +// address. Useful in case of a multi-IP host. +func NetSockHostAddr(val string) attribute.KeyValue { + return NetSockHostAddrKey.String(val) +} + +// NetSockHostPort returns an attribute KeyValue conforming to the +// "net.sock.host.port" semantic conventions. It represents the local socket +// port number. +func NetSockHostPort(val int) attribute.KeyValue { + return NetSockHostPortKey.Int(val) +} + +// These attributes may be used for any network related operation. +const ( + // NetHostConnectionTypeKey is the attribute Key conforming to the + // "net.host.connection.type" semantic conventions. It represents the + // internet connection type currently being used by the host. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'wifi' + NetHostConnectionTypeKey = attribute.Key("net.host.connection.type") + + // NetHostConnectionSubtypeKey is the attribute Key conforming to the + // "net.host.connection.subtype" semantic conventions. It represents the + // this describes more details regarding the connection.type. It may be the + // type of cell technology connection, but it could be used for describing + // details about a wifi connection. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'LTE' + NetHostConnectionSubtypeKey = attribute.Key("net.host.connection.subtype") + + // NetHostCarrierNameKey is the attribute Key conforming to the + // "net.host.carrier.name" semantic conventions. It represents the name of + // the mobile carrier. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'sprint' + NetHostCarrierNameKey = attribute.Key("net.host.carrier.name") + + // NetHostCarrierMccKey is the attribute Key conforming to the + // "net.host.carrier.mcc" semantic conventions. It represents the mobile + // carrier country code. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '310' + NetHostCarrierMccKey = attribute.Key("net.host.carrier.mcc") + + // NetHostCarrierMncKey is the attribute Key conforming to the + // "net.host.carrier.mnc" semantic conventions. It represents the mobile + // carrier network code. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '001' + NetHostCarrierMncKey = attribute.Key("net.host.carrier.mnc") + + // NetHostCarrierIccKey is the attribute Key conforming to the + // "net.host.carrier.icc" semantic conventions. It represents the ISO + // 3166-1 alpha-2 2-character country code associated with the mobile + // carrier network. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'DE' + NetHostCarrierIccKey = attribute.Key("net.host.carrier.icc") +) + +var ( + // wifi + NetHostConnectionTypeWifi = NetHostConnectionTypeKey.String("wifi") + // wired + NetHostConnectionTypeWired = NetHostConnectionTypeKey.String("wired") + // cell + NetHostConnectionTypeCell = NetHostConnectionTypeKey.String("cell") + // unavailable + NetHostConnectionTypeUnavailable = NetHostConnectionTypeKey.String("unavailable") + // unknown + NetHostConnectionTypeUnknown = NetHostConnectionTypeKey.String("unknown") +) + +var ( + // GPRS + NetHostConnectionSubtypeGprs = NetHostConnectionSubtypeKey.String("gprs") + // EDGE + NetHostConnectionSubtypeEdge = NetHostConnectionSubtypeKey.String("edge") + // UMTS + NetHostConnectionSubtypeUmts = NetHostConnectionSubtypeKey.String("umts") + // CDMA + NetHostConnectionSubtypeCdma = NetHostConnectionSubtypeKey.String("cdma") + // EVDO Rel. 0 + NetHostConnectionSubtypeEvdo0 = NetHostConnectionSubtypeKey.String("evdo_0") + // EVDO Rev. A + NetHostConnectionSubtypeEvdoA = NetHostConnectionSubtypeKey.String("evdo_a") + // CDMA2000 1XRTT + NetHostConnectionSubtypeCdma20001xrtt = NetHostConnectionSubtypeKey.String("cdma2000_1xrtt") + // HSDPA + NetHostConnectionSubtypeHsdpa = NetHostConnectionSubtypeKey.String("hsdpa") + // HSUPA + NetHostConnectionSubtypeHsupa = NetHostConnectionSubtypeKey.String("hsupa") + // HSPA + NetHostConnectionSubtypeHspa = NetHostConnectionSubtypeKey.String("hspa") + // IDEN + NetHostConnectionSubtypeIden = NetHostConnectionSubtypeKey.String("iden") + // EVDO Rev. B + NetHostConnectionSubtypeEvdoB = NetHostConnectionSubtypeKey.String("evdo_b") + // LTE + NetHostConnectionSubtypeLte = NetHostConnectionSubtypeKey.String("lte") + // EHRPD + NetHostConnectionSubtypeEhrpd = NetHostConnectionSubtypeKey.String("ehrpd") + // HSPAP + NetHostConnectionSubtypeHspap = NetHostConnectionSubtypeKey.String("hspap") + // GSM + NetHostConnectionSubtypeGsm = NetHostConnectionSubtypeKey.String("gsm") + // TD-SCDMA + NetHostConnectionSubtypeTdScdma = NetHostConnectionSubtypeKey.String("td_scdma") + // IWLAN + NetHostConnectionSubtypeIwlan = NetHostConnectionSubtypeKey.String("iwlan") + // 5G NR (New Radio) + NetHostConnectionSubtypeNr = NetHostConnectionSubtypeKey.String("nr") + // 5G NRNSA (New Radio Non-Standalone) + NetHostConnectionSubtypeNrnsa = NetHostConnectionSubtypeKey.String("nrnsa") + // LTE CA + NetHostConnectionSubtypeLteCa = NetHostConnectionSubtypeKey.String("lte_ca") +) + +// NetHostCarrierName returns an attribute KeyValue conforming to the +// "net.host.carrier.name" semantic conventions. It represents the name of the +// mobile carrier. +func NetHostCarrierName(val string) attribute.KeyValue { + return NetHostCarrierNameKey.String(val) +} + +// NetHostCarrierMcc returns an attribute KeyValue conforming to the +// "net.host.carrier.mcc" semantic conventions. It represents the mobile +// carrier country code. +func NetHostCarrierMcc(val string) attribute.KeyValue { + return NetHostCarrierMccKey.String(val) +} + +// NetHostCarrierMnc returns an attribute KeyValue conforming to the +// "net.host.carrier.mnc" semantic conventions. It represents the mobile +// carrier network code. +func NetHostCarrierMnc(val string) attribute.KeyValue { + return NetHostCarrierMncKey.String(val) +} + +// NetHostCarrierIcc returns an attribute KeyValue conforming to the +// "net.host.carrier.icc" semantic conventions. It represents the ISO 3166-1 +// alpha-2 2-character country code associated with the mobile carrier network. +func NetHostCarrierIcc(val string) attribute.KeyValue { + return NetHostCarrierIccKey.String(val) +} + +// Semantic conventions for HTTP client and server Spans. +const ( + // HTTPRequestContentLengthKey is the attribute Key conforming to the + // "http.request_content_length" semantic conventions. It represents the + // size of the request payload body in bytes. This is the number of bytes + // transferred excluding headers and is often, but not always, present as + // the + // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) + // header. For requests using transport encoding, this should be the + // compressed size. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 3495 + HTTPRequestContentLengthKey = attribute.Key("http.request_content_length") + + // HTTPResponseContentLengthKey is the attribute Key conforming to the + // "http.response_content_length" semantic conventions. It represents the + // size of the response payload body in bytes. This is the number of bytes + // transferred excluding headers and is often, but not always, present as + // the + // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) + // header. For requests using transport encoding, this should be the + // compressed size. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 3495 + HTTPResponseContentLengthKey = attribute.Key("http.response_content_length") +) + +// HTTPRequestContentLength returns an attribute KeyValue conforming to the +// "http.request_content_length" semantic conventions. It represents the size +// of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) +// header. For requests using transport encoding, this should be the compressed +// size. +func HTTPRequestContentLength(val int) attribute.KeyValue { + return HTTPRequestContentLengthKey.Int(val) +} + +// HTTPResponseContentLength returns an attribute KeyValue conforming to the +// "http.response_content_length" semantic conventions. It represents the size +// of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) +// header. For requests using transport encoding, this should be the compressed +// size. +func HTTPResponseContentLength(val int) attribute.KeyValue { + return HTTPResponseContentLengthKey.Int(val) +} + +// Semantic convention describing per-message attributes populated on messaging +// spans or links. +const ( + // MessagingMessageIDKey is the attribute Key conforming to the + // "messaging.message.id" semantic conventions. It represents a value used + // by the messaging system as an identifier for the message, represented as + // a string. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '452a7c7c7c7048c2f887f61572b18fc2' + MessagingMessageIDKey = attribute.Key("messaging.message.id") + + // MessagingMessageConversationIDKey is the attribute Key conforming to the + // "messaging.message.conversation_id" semantic conventions. It represents + // the [conversation ID](#conversations) identifying the conversation to + // which the message belongs, represented as a string. Sometimes called + // "Correlation ID". + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'MyConversationID' + MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") + + // MessagingMessagePayloadSizeBytesKey is the attribute Key conforming to + // the "messaging.message.payload_size_bytes" semantic conventions. It + // represents the (uncompressed) size of the message payload in bytes. Also + // use this attribute if it is unknown whether the compressed or + // uncompressed payload size is reported. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 2738 + MessagingMessagePayloadSizeBytesKey = attribute.Key("messaging.message.payload_size_bytes") + + // MessagingMessagePayloadCompressedSizeBytesKey is the attribute Key + // conforming to the "messaging.message.payload_compressed_size_bytes" + // semantic conventions. It represents the compressed size of the message + // payload in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 2048 + MessagingMessagePayloadCompressedSizeBytesKey = attribute.Key("messaging.message.payload_compressed_size_bytes") +) + +// MessagingMessageID returns an attribute KeyValue conforming to the +// "messaging.message.id" semantic conventions. It represents a value used by +// the messaging system as an identifier for the message, represented as a +// string. +func MessagingMessageID(val string) attribute.KeyValue { + return MessagingMessageIDKey.String(val) +} + +// MessagingMessageConversationID returns an attribute KeyValue conforming +// to the "messaging.message.conversation_id" semantic conventions. It +// represents the [conversation ID](#conversations) identifying the +// conversation to which the message belongs, represented as a string. +// Sometimes called "Correlation ID". +func MessagingMessageConversationID(val string) attribute.KeyValue { + return MessagingMessageConversationIDKey.String(val) +} + +// MessagingMessagePayloadSizeBytes returns an attribute KeyValue conforming +// to the "messaging.message.payload_size_bytes" semantic conventions. It +// represents the (uncompressed) size of the message payload in bytes. Also use +// this attribute if it is unknown whether the compressed or uncompressed +// payload size is reported. +func MessagingMessagePayloadSizeBytes(val int) attribute.KeyValue { + return MessagingMessagePayloadSizeBytesKey.Int(val) +} + +// MessagingMessagePayloadCompressedSizeBytes returns an attribute KeyValue +// conforming to the "messaging.message.payload_compressed_size_bytes" semantic +// conventions. It represents the compressed size of the message payload in +// bytes. +func MessagingMessagePayloadCompressedSizeBytes(val int) attribute.KeyValue { + return MessagingMessagePayloadCompressedSizeBytesKey.Int(val) +} + +// Semantic convention for attributes that describe messaging destination on +// broker +const ( + // MessagingDestinationNameKey is the attribute Key conforming to the + // "messaging.destination.name" semantic conventions. It represents the + // message destination name + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'MyQueue', 'MyTopic' + // Note: Destination name SHOULD uniquely identify a specific queue, topic + // or other entity within the broker. If + // the broker does not have such notion, the destination name SHOULD + // uniquely identify the broker. + MessagingDestinationNameKey = attribute.Key("messaging.destination.name") + + // MessagingDestinationTemplateKey is the attribute Key conforming to the + // "messaging.destination.template" semantic conventions. It represents the + // low cardinality representation of the messaging destination name + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '/customers/{customerID}' + // Note: Destination names could be constructed from templates. An example + // would be a destination name involving a user name or product id. + // Although the destination name in this case is of high cardinality, the + // underlying template is of low cardinality and can be effectively used + // for grouping and aggregation. + MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") + + // MessagingDestinationTemporaryKey is the attribute Key conforming to the + // "messaging.destination.temporary" semantic conventions. It represents a + // boolean that is true if the message destination is temporary and might + // not exist anymore after messages are processed. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") + + // MessagingDestinationAnonymousKey is the attribute Key conforming to the + // "messaging.destination.anonymous" semantic conventions. It represents a + // boolean that is true if the message destination is anonymous (could be + // unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") +) + +// MessagingDestinationName returns an attribute KeyValue conforming to the +// "messaging.destination.name" semantic conventions. It represents the message +// destination name +func MessagingDestinationName(val string) attribute.KeyValue { + return MessagingDestinationNameKey.String(val) +} + +// MessagingDestinationTemplate returns an attribute KeyValue conforming to +// the "messaging.destination.template" semantic conventions. It represents the +// low cardinality representation of the messaging destination name +func MessagingDestinationTemplate(val string) attribute.KeyValue { + return MessagingDestinationTemplateKey.String(val) +} + +// MessagingDestinationTemporary returns an attribute KeyValue conforming to +// the "messaging.destination.temporary" semantic conventions. It represents a +// boolean that is true if the message destination is temporary and might not +// exist anymore after messages are processed. +func MessagingDestinationTemporary(val bool) attribute.KeyValue { + return MessagingDestinationTemporaryKey.Bool(val) +} + +// MessagingDestinationAnonymous returns an attribute KeyValue conforming to +// the "messaging.destination.anonymous" semantic conventions. It represents a +// boolean that is true if the message destination is anonymous (could be +// unnamed or have auto-generated name). +func MessagingDestinationAnonymous(val bool) attribute.KeyValue { + return MessagingDestinationAnonymousKey.Bool(val) +} + +// Semantic convention for attributes that describe messaging source on broker +const ( + // MessagingSourceNameKey is the attribute Key conforming to the + // "messaging.source.name" semantic conventions. It represents the message + // source name + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'MyQueue', 'MyTopic' + // Note: Source name SHOULD uniquely identify a specific queue, topic, or + // other entity within the broker. If + // the broker does not have such notion, the source name SHOULD uniquely + // identify the broker. + MessagingSourceNameKey = attribute.Key("messaging.source.name") + + // MessagingSourceTemplateKey is the attribute Key conforming to the + // "messaging.source.template" semantic conventions. It represents the low + // cardinality representation of the messaging source name + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '/customers/{customerID}' + // Note: Source names could be constructed from templates. An example would + // be a source name involving a user name or product id. Although the + // source name in this case is of high cardinality, the underlying template + // is of low cardinality and can be effectively used for grouping and + // aggregation. + MessagingSourceTemplateKey = attribute.Key("messaging.source.template") + + // MessagingSourceTemporaryKey is the attribute Key conforming to the + // "messaging.source.temporary" semantic conventions. It represents a + // boolean that is true if the message source is temporary and might not + // exist anymore after messages are processed. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + MessagingSourceTemporaryKey = attribute.Key("messaging.source.temporary") + + // MessagingSourceAnonymousKey is the attribute Key conforming to the + // "messaging.source.anonymous" semantic conventions. It represents a + // boolean that is true if the message source is anonymous (could be + // unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + MessagingSourceAnonymousKey = attribute.Key("messaging.source.anonymous") +) + +// MessagingSourceName returns an attribute KeyValue conforming to the +// "messaging.source.name" semantic conventions. It represents the message +// source name +func MessagingSourceName(val string) attribute.KeyValue { + return MessagingSourceNameKey.String(val) +} + +// MessagingSourceTemplate returns an attribute KeyValue conforming to the +// "messaging.source.template" semantic conventions. It represents the low +// cardinality representation of the messaging source name +func MessagingSourceTemplate(val string) attribute.KeyValue { + return MessagingSourceTemplateKey.String(val) +} + +// MessagingSourceTemporary returns an attribute KeyValue conforming to the +// "messaging.source.temporary" semantic conventions. It represents a boolean +// that is true if the message source is temporary and might not exist anymore +// after messages are processed. +func MessagingSourceTemporary(val bool) attribute.KeyValue { + return MessagingSourceTemporaryKey.Bool(val) +} + +// MessagingSourceAnonymous returns an attribute KeyValue conforming to the +// "messaging.source.anonymous" semantic conventions. It represents a boolean +// that is true if the message source is anonymous (could be unnamed or have +// auto-generated name). +func MessagingSourceAnonymous(val bool) attribute.KeyValue { + return MessagingSourceAnonymousKey.Bool(val) +} + +// Attributes for RabbitMQ +const ( + // MessagingRabbitmqDestinationRoutingKeyKey is the attribute Key + // conforming to the "messaging.rabbitmq.destination.routing_key" semantic + // conventions. It represents the rabbitMQ message routing key. + // + // Type: string + // RequirementLevel: ConditionallyRequired (If not empty.) + // Stability: stable + // Examples: 'myKey' + MessagingRabbitmqDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") +) + +// MessagingRabbitmqDestinationRoutingKey returns an attribute KeyValue +// conforming to the "messaging.rabbitmq.destination.routing_key" semantic +// conventions. It represents the rabbitMQ message routing key. +func MessagingRabbitmqDestinationRoutingKey(val string) attribute.KeyValue { + return MessagingRabbitmqDestinationRoutingKeyKey.String(val) +} + +// Attributes for Apache Kafka +const ( + // MessagingKafkaMessageKeyKey is the attribute Key conforming to the + // "messaging.kafka.message.key" semantic conventions. It represents the + // message keys in Kafka are used for grouping alike messages to ensure + // they're processed on the same partition. They differ from + // `messaging.message.id` in that they're not unique. If the key is `null`, + // the attribute MUST NOT be set. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'myKey' + // Note: If the key type is not string, it's string representation has to + // be supplied for the attribute. If the key has no unambiguous, canonical + // string form, don't include its value. + MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") + + // MessagingKafkaConsumerGroupKey is the attribute Key conforming to the + // "messaging.kafka.consumer.group" semantic conventions. It represents the + // name of the Kafka Consumer Group that is handling the message. Only + // applies to consumers, not producers. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'my-group' + MessagingKafkaConsumerGroupKey = attribute.Key("messaging.kafka.consumer.group") + + // MessagingKafkaClientIDKey is the attribute Key conforming to the + // "messaging.kafka.client_id" semantic conventions. It represents the + // client ID for the Consumer or Producer that is handling the message. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'client-5' + MessagingKafkaClientIDKey = attribute.Key("messaging.kafka.client_id") + + // MessagingKafkaDestinationPartitionKey is the attribute Key conforming to + // the "messaging.kafka.destination.partition" semantic conventions. It + // represents the partition the message is sent to. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 2 + MessagingKafkaDestinationPartitionKey = attribute.Key("messaging.kafka.destination.partition") + + // MessagingKafkaSourcePartitionKey is the attribute Key conforming to the + // "messaging.kafka.source.partition" semantic conventions. It represents + // the partition the message is received from. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 2 + MessagingKafkaSourcePartitionKey = attribute.Key("messaging.kafka.source.partition") + + // MessagingKafkaMessageOffsetKey is the attribute Key conforming to the + // "messaging.kafka.message.offset" semantic conventions. It represents the + // offset of a record in the corresponding Kafka partition. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 42 + MessagingKafkaMessageOffsetKey = attribute.Key("messaging.kafka.message.offset") + + // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the + // "messaging.kafka.message.tombstone" semantic conventions. It represents + // a boolean that is true if the message is a tombstone. + // + // Type: boolean + // RequirementLevel: ConditionallyRequired (If value is `true`. When + // missing, the value is assumed to be `false`.) + // Stability: stable + MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") +) + +// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the +// "messaging.kafka.message.key" semantic conventions. It represents the +// message keys in Kafka are used for grouping alike messages to ensure they're +// processed on the same partition. They differ from `messaging.message.id` in +// that they're not unique. If the key is `null`, the attribute MUST NOT be +// set. +func MessagingKafkaMessageKey(val string) attribute.KeyValue { + return MessagingKafkaMessageKeyKey.String(val) +} + +// MessagingKafkaConsumerGroup returns an attribute KeyValue conforming to +// the "messaging.kafka.consumer.group" semantic conventions. It represents the +// name of the Kafka Consumer Group that is handling the message. Only applies +// to consumers, not producers. +func MessagingKafkaConsumerGroup(val string) attribute.KeyValue { + return MessagingKafkaConsumerGroupKey.String(val) +} + +// MessagingKafkaClientID returns an attribute KeyValue conforming to the +// "messaging.kafka.client_id" semantic conventions. It represents the client +// ID for the Consumer or Producer that is handling the message. +func MessagingKafkaClientID(val string) attribute.KeyValue { + return MessagingKafkaClientIDKey.String(val) +} + +// MessagingKafkaDestinationPartition returns an attribute KeyValue +// conforming to the "messaging.kafka.destination.partition" semantic +// conventions. It represents the partition the message is sent to. +func MessagingKafkaDestinationPartition(val int) attribute.KeyValue { + return MessagingKafkaDestinationPartitionKey.Int(val) +} + +// MessagingKafkaSourcePartition returns an attribute KeyValue conforming to +// the "messaging.kafka.source.partition" semantic conventions. It represents +// the partition the message is received from. +func MessagingKafkaSourcePartition(val int) attribute.KeyValue { + return MessagingKafkaSourcePartitionKey.Int(val) +} + +// MessagingKafkaMessageOffset returns an attribute KeyValue conforming to +// the "messaging.kafka.message.offset" semantic conventions. It represents the +// offset of a record in the corresponding Kafka partition. +func MessagingKafkaMessageOffset(val int) attribute.KeyValue { + return MessagingKafkaMessageOffsetKey.Int(val) +} + +// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming +// to the "messaging.kafka.message.tombstone" semantic conventions. It +// represents a boolean that is true if the message is a tombstone. +func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { + return MessagingKafkaMessageTombstoneKey.Bool(val) +} + +// Attributes for Apache RocketMQ +const ( + // MessagingRocketmqNamespaceKey is the attribute Key conforming to the + // "messaging.rocketmq.namespace" semantic conventions. It represents the + // namespace of RocketMQ resources, resources in different namespaces are + // individual. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'myNamespace' + MessagingRocketmqNamespaceKey = attribute.Key("messaging.rocketmq.namespace") + + // MessagingRocketmqClientGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.client_group" semantic conventions. It represents + // the name of the RocketMQ producer/consumer group that is handling the + // message. The client type is identified by the SpanKind. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'myConsumerGroup' + MessagingRocketmqClientGroupKey = attribute.Key("messaging.rocketmq.client_group") + + // MessagingRocketmqClientIDKey is the attribute Key conforming to the + // "messaging.rocketmq.client_id" semantic conventions. It represents the + // unique identifier for each client. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'myhost@8742@s8083jm' + MessagingRocketmqClientIDKey = attribute.Key("messaging.rocketmq.client_id") + + // MessagingRocketmqMessageDeliveryTimestampKey is the attribute Key + // conforming to the "messaging.rocketmq.message.delivery_timestamp" + // semantic conventions. It represents the timestamp in milliseconds that + // the delay message is expected to be delivered to consumer. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If the message type is delay + // and delay time level is not specified.) + // Stability: stable + // Examples: 1665987217045 + MessagingRocketmqMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") + + // MessagingRocketmqMessageDelayTimeLevelKey is the attribute Key + // conforming to the "messaging.rocketmq.message.delay_time_level" semantic + // conventions. It represents the delay time level for delay message, which + // determines the message delay time. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If the message type is delay + // and delivery timestamp is not specified.) + // Stability: stable + // Examples: 3 + MessagingRocketmqMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") + + // MessagingRocketmqMessageGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.message.group" semantic conventions. It represents + // the it is essential for FIFO message. Messages that belong to the same + // message group are always processed one by one within the same consumer + // group. + // + // Type: string + // RequirementLevel: ConditionallyRequired (If the message type is FIFO.) + // Stability: stable + // Examples: 'myMessageGroup' + MessagingRocketmqMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") + + // MessagingRocketmqMessageTypeKey is the attribute Key conforming to the + // "messaging.rocketmq.message.type" semantic conventions. It represents + // the type of message. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + MessagingRocketmqMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") + + // MessagingRocketmqMessageTagKey is the attribute Key conforming to the + // "messaging.rocketmq.message.tag" semantic conventions. It represents the + // secondary classifier of message besides topic. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'tagA' + MessagingRocketmqMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") + + // MessagingRocketmqMessageKeysKey is the attribute Key conforming to the + // "messaging.rocketmq.message.keys" semantic conventions. It represents + // the key(s) of message, another way to mark message besides message id. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: 'keyA', 'keyB' + MessagingRocketmqMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") + + // MessagingRocketmqConsumptionModelKey is the attribute Key conforming to + // the "messaging.rocketmq.consumption_model" semantic conventions. It + // represents the model of message consumption. This only applies to + // consumer spans. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + MessagingRocketmqConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") +) + +var ( + // Normal message + MessagingRocketmqMessageTypeNormal = MessagingRocketmqMessageTypeKey.String("normal") + // FIFO message + MessagingRocketmqMessageTypeFifo = MessagingRocketmqMessageTypeKey.String("fifo") + // Delay message + MessagingRocketmqMessageTypeDelay = MessagingRocketmqMessageTypeKey.String("delay") + // Transaction message + MessagingRocketmqMessageTypeTransaction = MessagingRocketmqMessageTypeKey.String("transaction") +) + +var ( + // Clustering consumption model + MessagingRocketmqConsumptionModelClustering = MessagingRocketmqConsumptionModelKey.String("clustering") + // Broadcasting consumption model + MessagingRocketmqConsumptionModelBroadcasting = MessagingRocketmqConsumptionModelKey.String("broadcasting") +) + +// MessagingRocketmqNamespace returns an attribute KeyValue conforming to +// the "messaging.rocketmq.namespace" semantic conventions. It represents the +// namespace of RocketMQ resources, resources in different namespaces are +// individual. +func MessagingRocketmqNamespace(val string) attribute.KeyValue { + return MessagingRocketmqNamespaceKey.String(val) +} + +// MessagingRocketmqClientGroup returns an attribute KeyValue conforming to +// the "messaging.rocketmq.client_group" semantic conventions. It represents +// the name of the RocketMQ producer/consumer group that is handling the +// message. The client type is identified by the SpanKind. +func MessagingRocketmqClientGroup(val string) attribute.KeyValue { + return MessagingRocketmqClientGroupKey.String(val) +} + +// MessagingRocketmqClientID returns an attribute KeyValue conforming to the +// "messaging.rocketmq.client_id" semantic conventions. It represents the +// unique identifier for each client. +func MessagingRocketmqClientID(val string) attribute.KeyValue { + return MessagingRocketmqClientIDKey.String(val) +} + +// MessagingRocketmqMessageDeliveryTimestamp returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic +// conventions. It represents the timestamp in milliseconds that the delay +// message is expected to be delivered to consumer. +func MessagingRocketmqMessageDeliveryTimestamp(val int) attribute.KeyValue { + return MessagingRocketmqMessageDeliveryTimestampKey.Int(val) +} + +// MessagingRocketmqMessageDelayTimeLevel returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delay_time_level" semantic +// conventions. It represents the delay time level for delay message, which +// determines the message delay time. +func MessagingRocketmqMessageDelayTimeLevel(val int) attribute.KeyValue { + return MessagingRocketmqMessageDelayTimeLevelKey.Int(val) +} + +// MessagingRocketmqMessageGroup returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.group" semantic conventions. It represents +// the it is essential for FIFO message. Messages that belong to the same +// message group are always processed one by one within the same consumer +// group. +func MessagingRocketmqMessageGroup(val string) attribute.KeyValue { + return MessagingRocketmqMessageGroupKey.String(val) +} + +// MessagingRocketmqMessageTag returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.tag" semantic conventions. It represents the +// secondary classifier of message besides topic. +func MessagingRocketmqMessageTag(val string) attribute.KeyValue { + return MessagingRocketmqMessageTagKey.String(val) +} + +// MessagingRocketmqMessageKeys returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.keys" semantic conventions. It represents +// the key(s) of message, another way to mark message besides message id. +func MessagingRocketmqMessageKeys(val ...string) attribute.KeyValue { + return MessagingRocketmqMessageKeysKey.StringSlice(val) +} + +// Describes user-agent attributes. +const ( + // UserAgentOriginalKey is the attribute Key conforming to the + // "user_agent.original" semantic conventions. It represents the value of + // the [HTTP + // User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) + // header sent by the client. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'CERN-LineMode/2.15 libwww/2.17b3' + UserAgentOriginalKey = attribute.Key("user_agent.original") +) + +// UserAgentOriginal returns an attribute KeyValue conforming to the +// "user_agent.original" semantic conventions. It represents the value of the +// [HTTP +// User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) +// header sent by the client. +func UserAgentOriginal(val string) attribute.KeyValue { + return UserAgentOriginalKey.String(val) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/doc.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/doc.go new file mode 100644 index 0000000000..0d1f55a8fe --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/doc.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconv implements OpenTelemetry semantic conventions. +// +// OpenTelemetry semantic conventions are agreed standardized naming +// patterns for OpenTelemetry things. This package represents the conventions +// as of the v1.20.0 version of the OpenTelemetry specification. +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/event.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/event.go new file mode 100644 index 0000000000..6377639321 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/event.go @@ -0,0 +1,188 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +import "go.opentelemetry.io/otel/attribute" + +// This semantic convention defines the attributes used to represent a feature +// flag evaluation as an event. +const ( + // FeatureFlagKeyKey is the attribute Key conforming to the + // "feature_flag.key" semantic conventions. It represents the unique + // identifier of the feature flag. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'logo-color' + FeatureFlagKeyKey = attribute.Key("feature_flag.key") + + // FeatureFlagProviderNameKey is the attribute Key conforming to the + // "feature_flag.provider_name" semantic conventions. It represents the + // name of the service provider that performs the flag evaluation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'Flag Manager' + FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider_name") + + // FeatureFlagVariantKey is the attribute Key conforming to the + // "feature_flag.variant" semantic conventions. It represents the sHOULD be + // a semantic identifier for a value. If one is unavailable, a stringified + // version of the value can be used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'red', 'true', 'on' + // Note: A semantic identifier, commonly referred to as a variant, provides + // a means + // for referring to a value without including the value itself. This can + // provide additional context for understanding the meaning behind a value. + // For example, the variant `red` maybe be used for the value `#c05543`. + // + // A stringified version of the value can be used in situations where a + // semantic identifier is unavailable. String representation of the value + // should be determined by the implementer. + FeatureFlagVariantKey = attribute.Key("feature_flag.variant") +) + +// FeatureFlagKey returns an attribute KeyValue conforming to the +// "feature_flag.key" semantic conventions. It represents the unique identifier +// of the feature flag. +func FeatureFlagKey(val string) attribute.KeyValue { + return FeatureFlagKeyKey.String(val) +} + +// FeatureFlagProviderName returns an attribute KeyValue conforming to the +// "feature_flag.provider_name" semantic conventions. It represents the name of +// the service provider that performs the flag evaluation. +func FeatureFlagProviderName(val string) attribute.KeyValue { + return FeatureFlagProviderNameKey.String(val) +} + +// FeatureFlagVariant returns an attribute KeyValue conforming to the +// "feature_flag.variant" semantic conventions. It represents the sHOULD be a +// semantic identifier for a value. If one is unavailable, a stringified +// version of the value can be used. +func FeatureFlagVariant(val string) attribute.KeyValue { + return FeatureFlagVariantKey.String(val) +} + +// RPC received/sent message. +const ( + // MessageTypeKey is the attribute Key conforming to the "message.type" + // semantic conventions. It represents the whether this is a received or + // sent message. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + MessageTypeKey = attribute.Key("message.type") + + // MessageIDKey is the attribute Key conforming to the "message.id" + // semantic conventions. It represents the mUST be calculated as two + // different counters starting from `1` one for sent messages and one for + // received message. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Note: This way we guarantee that the values will be consistent between + // different implementations. + MessageIDKey = attribute.Key("message.id") + + // MessageCompressedSizeKey is the attribute Key conforming to the + // "message.compressed_size" semantic conventions. It represents the + // compressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + MessageCompressedSizeKey = attribute.Key("message.compressed_size") + + // MessageUncompressedSizeKey is the attribute Key conforming to the + // "message.uncompressed_size" semantic conventions. It represents the + // uncompressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + MessageUncompressedSizeKey = attribute.Key("message.uncompressed_size") +) + +var ( + // sent + MessageTypeSent = MessageTypeKey.String("SENT") + // received + MessageTypeReceived = MessageTypeKey.String("RECEIVED") +) + +// MessageID returns an attribute KeyValue conforming to the "message.id" +// semantic conventions. It represents the mUST be calculated as two different +// counters starting from `1` one for sent messages and one for received +// message. +func MessageID(val int) attribute.KeyValue { + return MessageIDKey.Int(val) +} + +// MessageCompressedSize returns an attribute KeyValue conforming to the +// "message.compressed_size" semantic conventions. It represents the compressed +// size of the message in bytes. +func MessageCompressedSize(val int) attribute.KeyValue { + return MessageCompressedSizeKey.Int(val) +} + +// MessageUncompressedSize returns an attribute KeyValue conforming to the +// "message.uncompressed_size" semantic conventions. It represents the +// uncompressed size of the message in bytes. +func MessageUncompressedSize(val int) attribute.KeyValue { + return MessageUncompressedSizeKey.Int(val) +} + +// The attributes used to report a single exception associated with a span. +const ( + // ExceptionEscapedKey is the attribute Key conforming to the + // "exception.escaped" semantic conventions. It represents the sHOULD be + // set to true if the exception event is recorded at a point where it is + // known that the exception is escaping the scope of the span. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + // Note: An exception is considered to have escaped (or left) the scope of + // a span, + // if that span is ended while the exception is still logically "in + // flight". + // This may be actually "in flight" in some languages (e.g. if the + // exception + // is passed to a Context manager's `__exit__` method in Python) but will + // usually be caught at the point of recording the exception in most + // languages. + // + // It is usually not possible to determine at the point where an exception + // is thrown + // whether it will escape the scope of a span. + // However, it is trivial to know that an exception + // will escape, if one checks for an active exception just before ending + // the span, + // as done in the [example above](#recording-an-exception). + // + // It follows that an exception may still escape the scope of the span + // even if the `exception.escaped` attribute was not set or set to false, + // since the event might have been recorded at a time where it was not + // clear whether the exception will escape. + ExceptionEscapedKey = attribute.Key("exception.escaped") +) + +// ExceptionEscaped returns an attribute KeyValue conforming to the +// "exception.escaped" semantic conventions. It represents the sHOULD be set to +// true if the exception event is recorded at a point where it is known that +// the exception is escaping the scope of the span. +func ExceptionEscaped(val bool) attribute.KeyValue { + return ExceptionEscapedKey.Bool(val) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/exception.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/exception.go new file mode 100644 index 0000000000..f40c97825a --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/exception.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +const ( + // ExceptionEventName is the name of the Span event representing an exception. + ExceptionEventName = "exception" +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/http.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/http.go new file mode 100644 index 0000000000..9c1840631b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/http.go @@ -0,0 +1,10 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +// HTTP scheme attributes. +var ( + HTTPSchemeHTTP = HTTPSchemeKey.String("http") + HTTPSchemeHTTPS = HTTPSchemeKey.String("https") +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/resource.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/resource.go new file mode 100644 index 0000000000..3d44dae275 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/resource.go @@ -0,0 +1,2060 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +import "go.opentelemetry.io/otel/attribute" + +// The web browser in which the application represented by the resource is +// running. The `browser.*` attributes MUST be used only for resources that +// represent applications running in a web browser (regardless of whether +// running on a mobile or desktop device). +const ( + // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" + // semantic conventions. It represents the array of brand name and version + // separated by a space + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: ' Not A;Brand 99', 'Chromium 99', 'Chrome 99' + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.brands`). + BrowserBrandsKey = attribute.Key("browser.brands") + + // BrowserPlatformKey is the attribute Key conforming to the + // "browser.platform" semantic conventions. It represents the platform on + // which the browser is running + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Windows', 'macOS', 'Android' + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.platform`). If unavailable, the legacy + // `navigator.platform` API SHOULD NOT be used instead and this attribute + // SHOULD be left unset in order for the values to be consistent. + // The list of possible values is defined in the [W3C User-Agent Client + // Hints + // specification](https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform). + // Note that some (but not all) of these values can overlap with values in + // the [`os.type` and `os.name` attributes](./os.md). However, for + // consistency, the values in the `browser.platform` attribute should + // capture the exact value that the user agent provides. + BrowserPlatformKey = attribute.Key("browser.platform") + + // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" + // semantic conventions. It represents a boolean that is true if the + // browser is running on a mobile device + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.mobile`). If unavailable, this attribute + // SHOULD be left unset. + BrowserMobileKey = attribute.Key("browser.mobile") + + // BrowserLanguageKey is the attribute Key conforming to the + // "browser.language" semantic conventions. It represents the preferred + // language of the user using the browser + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'en', 'en-US', 'fr', 'fr-FR' + // Note: This value is intended to be taken from the Navigator API + // `navigator.language`. + BrowserLanguageKey = attribute.Key("browser.language") +) + +// BrowserBrands returns an attribute KeyValue conforming to the +// "browser.brands" semantic conventions. It represents the array of brand name +// and version separated by a space +func BrowserBrands(val ...string) attribute.KeyValue { + return BrowserBrandsKey.StringSlice(val) +} + +// BrowserPlatform returns an attribute KeyValue conforming to the +// "browser.platform" semantic conventions. It represents the platform on which +// the browser is running +func BrowserPlatform(val string) attribute.KeyValue { + return BrowserPlatformKey.String(val) +} + +// BrowserMobile returns an attribute KeyValue conforming to the +// "browser.mobile" semantic conventions. It represents a boolean that is true +// if the browser is running on a mobile device +func BrowserMobile(val bool) attribute.KeyValue { + return BrowserMobileKey.Bool(val) +} + +// BrowserLanguage returns an attribute KeyValue conforming to the +// "browser.language" semantic conventions. It represents the preferred +// language of the user using the browser +func BrowserLanguage(val string) attribute.KeyValue { + return BrowserLanguageKey.String(val) +} + +// A cloud environment (e.g. GCP, Azure, AWS) +const ( + // CloudProviderKey is the attribute Key conforming to the "cloud.provider" + // semantic conventions. It represents the name of the cloud provider. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + CloudProviderKey = attribute.Key("cloud.provider") + + // CloudAccountIDKey is the attribute Key conforming to the + // "cloud.account.id" semantic conventions. It represents the cloud account + // ID the resource is assigned to. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '111111111111', 'opentelemetry' + CloudAccountIDKey = attribute.Key("cloud.account.id") + + // CloudRegionKey is the attribute Key conforming to the "cloud.region" + // semantic conventions. It represents the geographical region the resource + // is running. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'us-central1', 'us-east-1' + // Note: Refer to your provider's docs to see the available regions, for + // example [Alibaba Cloud + // regions](https://www.alibabacloud.com/help/doc-detail/40654.htm), [AWS + // regions](https://aws.amazon.com/about-aws/global-infrastructure/regions_az/), + // [Azure + // regions](https://azure.microsoft.com/en-us/global-infrastructure/geographies/), + // [Google Cloud regions](https://cloud.google.com/about/locations), or + // [Tencent Cloud + // regions](https://www.tencentcloud.com/document/product/213/6091). + CloudRegionKey = attribute.Key("cloud.region") + + // CloudResourceIDKey is the attribute Key conforming to the + // "cloud.resource_id" semantic conventions. It represents the cloud + // provider-specific native identifier of the monitored cloud resource + // (e.g. an + // [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html) + // on AWS, a [fully qualified resource + // ID](https://learn.microsoft.com/en-us/rest/api/resources/resources/get-by-id) + // on Azure, a [full resource + // name](https://cloud.google.com/apis/design/resource_names#full_resource_name) + // on GCP) + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function', + // '//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID', + // '/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/' + // Note: On some cloud providers, it may not be possible to determine the + // full ID at startup, + // so it may be necessary to set `cloud.resource_id` as a span attribute + // instead. + // + // The exact value to use for `cloud.resource_id` depends on the cloud + // provider. + // The following well-known definitions MUST be used if you set this + // attribute and they apply: + // + // * **AWS Lambda:** The function + // [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html). + // Take care not to use the "invoked ARN" directly but replace any + // [alias + // suffix](https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html) + // with the resolved function version, as the same runtime instance may + // be invokable with + // multiple different aliases. + // * **GCP:** The [URI of the + // resource](https://cloud.google.com/iam/docs/full-resource-names) + // * **Azure:** The [Fully Qualified Resource + // ID](https://docs.microsoft.com/en-us/rest/api/resources/resources/get-by-id) + // of the invoked function, + // *not* the function app, having the form + // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/`. + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider. + CloudResourceIDKey = attribute.Key("cloud.resource_id") + + // CloudAvailabilityZoneKey is the attribute Key conforming to the + // "cloud.availability_zone" semantic conventions. It represents the cloud + // regions often have multiple, isolated locations known as zones to + // increase availability. Availability zone represents the zone where the + // resource is running. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'us-east-1c' + // Note: Availability zones are called "zones" on Alibaba Cloud and Google + // Cloud. + CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") + + // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" + // semantic conventions. It represents the cloud platform in use. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Note: The prefix of the service SHOULD match the one specified in + // `cloud.provider`. + CloudPlatformKey = attribute.Key("cloud.platform") +) + +var ( + // Alibaba Cloud + CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") + // Amazon Web Services + CloudProviderAWS = CloudProviderKey.String("aws") + // Microsoft Azure + CloudProviderAzure = CloudProviderKey.String("azure") + // Google Cloud Platform + CloudProviderGCP = CloudProviderKey.String("gcp") + // Heroku Platform as a Service + CloudProviderHeroku = CloudProviderKey.String("heroku") + // IBM Cloud + CloudProviderIbmCloud = CloudProviderKey.String("ibm_cloud") + // Tencent Cloud + CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") +) + +var ( + // Alibaba Cloud Elastic Compute Service + CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") + // Alibaba Cloud Function Compute + CloudPlatformAlibabaCloudFc = CloudPlatformKey.String("alibaba_cloud_fc") + // Red Hat OpenShift on Alibaba Cloud + CloudPlatformAlibabaCloudOpenshift = CloudPlatformKey.String("alibaba_cloud_openshift") + // AWS Elastic Compute Cloud + CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") + // AWS Elastic Container Service + CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") + // AWS Elastic Kubernetes Service + CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") + // AWS Lambda + CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") + // AWS Elastic Beanstalk + CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") + // AWS App Runner + CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") + // Red Hat OpenShift on AWS (ROSA) + CloudPlatformAWSOpenshift = CloudPlatformKey.String("aws_openshift") + // Azure Virtual Machines + CloudPlatformAzureVM = CloudPlatformKey.String("azure_vm") + // Azure Container Instances + CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure_container_instances") + // Azure Kubernetes Service + CloudPlatformAzureAKS = CloudPlatformKey.String("azure_aks") + // Azure Functions + CloudPlatformAzureFunctions = CloudPlatformKey.String("azure_functions") + // Azure App Service + CloudPlatformAzureAppService = CloudPlatformKey.String("azure_app_service") + // Azure Red Hat OpenShift + CloudPlatformAzureOpenshift = CloudPlatformKey.String("azure_openshift") + // Google Cloud Compute Engine (GCE) + CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") + // Google Cloud Run + CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") + // Google Cloud Kubernetes Engine (GKE) + CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") + // Google Cloud Functions (GCF) + CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") + // Google Cloud App Engine (GAE) + CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") + // Red Hat OpenShift on Google Cloud + CloudPlatformGCPOpenshift = CloudPlatformKey.String("gcp_openshift") + // Red Hat OpenShift on IBM Cloud + CloudPlatformIbmCloudOpenshift = CloudPlatformKey.String("ibm_cloud_openshift") + // Tencent Cloud Cloud Virtual Machine (CVM) + CloudPlatformTencentCloudCvm = CloudPlatformKey.String("tencent_cloud_cvm") + // Tencent Cloud Elastic Kubernetes Service (EKS) + CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") + // Tencent Cloud Serverless Cloud Function (SCF) + CloudPlatformTencentCloudScf = CloudPlatformKey.String("tencent_cloud_scf") +) + +// CloudAccountID returns an attribute KeyValue conforming to the +// "cloud.account.id" semantic conventions. It represents the cloud account ID +// the resource is assigned to. +func CloudAccountID(val string) attribute.KeyValue { + return CloudAccountIDKey.String(val) +} + +// CloudRegion returns an attribute KeyValue conforming to the +// "cloud.region" semantic conventions. It represents the geographical region +// the resource is running. +func CloudRegion(val string) attribute.KeyValue { + return CloudRegionKey.String(val) +} + +// CloudResourceID returns an attribute KeyValue conforming to the +// "cloud.resource_id" semantic conventions. It represents the cloud +// provider-specific native identifier of the monitored cloud resource (e.g. an +// [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html) +// on AWS, a [fully qualified resource +// ID](https://learn.microsoft.com/en-us/rest/api/resources/resources/get-by-id) +// on Azure, a [full resource +// name](https://cloud.google.com/apis/design/resource_names#full_resource_name) +// on GCP) +func CloudResourceID(val string) attribute.KeyValue { + return CloudResourceIDKey.String(val) +} + +// CloudAvailabilityZone returns an attribute KeyValue conforming to the +// "cloud.availability_zone" semantic conventions. It represents the cloud +// regions often have multiple, isolated locations known as zones to increase +// availability. Availability zone represents the zone where the resource is +// running. +func CloudAvailabilityZone(val string) attribute.KeyValue { + return CloudAvailabilityZoneKey.String(val) +} + +// Resources used by AWS Elastic Container Service (ECS). +const ( + // AWSECSContainerARNKey is the attribute Key conforming to the + // "aws.ecs.container.arn" semantic conventions. It represents the Amazon + // Resource Name (ARN) of an [ECS container + // instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: + // 'arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9' + AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") + + // AWSECSClusterARNKey is the attribute Key conforming to the + // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an + // [ECS + // cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' + AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") + + // AWSECSLaunchtypeKey is the attribute Key conforming to the + // "aws.ecs.launchtype" semantic conventions. It represents the [launch + // type](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html) + // for an ECS task. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") + + // AWSECSTaskARNKey is the attribute Key conforming to the + // "aws.ecs.task.arn" semantic conventions. It represents the ARN of an + // [ECS task + // definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: + // 'arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b' + AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") + + // AWSECSTaskFamilyKey is the attribute Key conforming to the + // "aws.ecs.task.family" semantic conventions. It represents the task + // definition family this task definition is a member of. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry-family' + AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") + + // AWSECSTaskRevisionKey is the attribute Key conforming to the + // "aws.ecs.task.revision" semantic conventions. It represents the revision + // for this task definition. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '8', '26' + AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") +) + +var ( + // ec2 + AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") + // fargate + AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") +) + +// AWSECSContainerARN returns an attribute KeyValue conforming to the +// "aws.ecs.container.arn" semantic conventions. It represents the Amazon +// Resource Name (ARN) of an [ECS container +// instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). +func AWSECSContainerARN(val string) attribute.KeyValue { + return AWSECSContainerARNKey.String(val) +} + +// AWSECSClusterARN returns an attribute KeyValue conforming to the +// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an [ECS +// cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). +func AWSECSClusterARN(val string) attribute.KeyValue { + return AWSECSClusterARNKey.String(val) +} + +// AWSECSTaskARN returns an attribute KeyValue conforming to the +// "aws.ecs.task.arn" semantic conventions. It represents the ARN of an [ECS +// task +// definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html). +func AWSECSTaskARN(val string) attribute.KeyValue { + return AWSECSTaskARNKey.String(val) +} + +// AWSECSTaskFamily returns an attribute KeyValue conforming to the +// "aws.ecs.task.family" semantic conventions. It represents the task +// definition family this task definition is a member of. +func AWSECSTaskFamily(val string) attribute.KeyValue { + return AWSECSTaskFamilyKey.String(val) +} + +// AWSECSTaskRevision returns an attribute KeyValue conforming to the +// "aws.ecs.task.revision" semantic conventions. It represents the revision for +// this task definition. +func AWSECSTaskRevision(val string) attribute.KeyValue { + return AWSECSTaskRevisionKey.String(val) +} + +// Resources used by AWS Elastic Kubernetes Service (EKS). +const ( + // AWSEKSClusterARNKey is the attribute Key conforming to the + // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an + // EKS cluster. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' + AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") +) + +// AWSEKSClusterARN returns an attribute KeyValue conforming to the +// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS +// cluster. +func AWSEKSClusterARN(val string) attribute.KeyValue { + return AWSEKSClusterARNKey.String(val) +} + +// Resources specific to Amazon Web Services. +const ( + // AWSLogGroupNamesKey is the attribute Key conforming to the + // "aws.log.group.names" semantic conventions. It represents the name(s) of + // the AWS log group(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '/aws/lambda/my-function', 'opentelemetry-service' + // Note: Multiple log groups must be supported for cases like + // multi-container applications, where a single application has sidecar + // containers, and each write to their own log group. + AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") + + // AWSLogGroupARNsKey is the attribute Key conforming to the + // "aws.log.group.arns" semantic conventions. It represents the Amazon + // Resource Name(s) (ARN) of the AWS log group(s). + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: + // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*' + // Note: See the [log group ARN format + // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). + AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") + + // AWSLogStreamNamesKey is the attribute Key conforming to the + // "aws.log.stream.names" semantic conventions. It represents the name(s) + // of the AWS log stream(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: 'logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' + AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") + + // AWSLogStreamARNsKey is the attribute Key conforming to the + // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of + // the AWS log stream(s). + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: + // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' + // Note: See the [log stream ARN format + // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). + // One log group can contain several log streams, so these ARNs necessarily + // identify both a log group and a log stream. + AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") +) + +// AWSLogGroupNames returns an attribute KeyValue conforming to the +// "aws.log.group.names" semantic conventions. It represents the name(s) of the +// AWS log group(s) an application is writing to. +func AWSLogGroupNames(val ...string) attribute.KeyValue { + return AWSLogGroupNamesKey.StringSlice(val) +} + +// AWSLogGroupARNs returns an attribute KeyValue conforming to the +// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource +// Name(s) (ARN) of the AWS log group(s). +func AWSLogGroupARNs(val ...string) attribute.KeyValue { + return AWSLogGroupARNsKey.StringSlice(val) +} + +// AWSLogStreamNames returns an attribute KeyValue conforming to the +// "aws.log.stream.names" semantic conventions. It represents the name(s) of +// the AWS log stream(s) an application is writing to. +func AWSLogStreamNames(val ...string) attribute.KeyValue { + return AWSLogStreamNamesKey.StringSlice(val) +} + +// AWSLogStreamARNs returns an attribute KeyValue conforming to the +// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the +// AWS log stream(s). +func AWSLogStreamARNs(val ...string) attribute.KeyValue { + return AWSLogStreamARNsKey.StringSlice(val) +} + +// Heroku dyno metadata +const ( + // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the + // "heroku.release.creation_timestamp" semantic conventions. It represents + // the time and date the release was created + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2022-10-23T18:00:42Z' + HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") + + // HerokuReleaseCommitKey is the attribute Key conforming to the + // "heroku.release.commit" semantic conventions. It represents the commit + // hash for the current release + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'e6134959463efd8966b20e75b913cafe3f5ec' + HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") + + // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" + // semantic conventions. It represents the unique identifier for the + // application + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2daa2797-e42b-4624-9322-ec3f968df4da' + HerokuAppIDKey = attribute.Key("heroku.app.id") +) + +// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming +// to the "heroku.release.creation_timestamp" semantic conventions. It +// represents the time and date the release was created +func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { + return HerokuReleaseCreationTimestampKey.String(val) +} + +// HerokuReleaseCommit returns an attribute KeyValue conforming to the +// "heroku.release.commit" semantic conventions. It represents the commit hash +// for the current release +func HerokuReleaseCommit(val string) attribute.KeyValue { + return HerokuReleaseCommitKey.String(val) +} + +// HerokuAppID returns an attribute KeyValue conforming to the +// "heroku.app.id" semantic conventions. It represents the unique identifier +// for the application +func HerokuAppID(val string) attribute.KeyValue { + return HerokuAppIDKey.String(val) +} + +// A container instance. +const ( + // ContainerNameKey is the attribute Key conforming to the "container.name" + // semantic conventions. It represents the container name used by container + // runtime. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry-autoconf' + ContainerNameKey = attribute.Key("container.name") + + // ContainerIDKey is the attribute Key conforming to the "container.id" + // semantic conventions. It represents the container ID. Usually a UUID, as + // for example used to [identify Docker + // containers](https://docs.docker.com/engine/reference/run/#container-identification). + // The UUID might be abbreviated. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'a3bf90e006b2' + ContainerIDKey = attribute.Key("container.id") + + // ContainerRuntimeKey is the attribute Key conforming to the + // "container.runtime" semantic conventions. It represents the container + // runtime managing this container. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'docker', 'containerd', 'rkt' + ContainerRuntimeKey = attribute.Key("container.runtime") + + // ContainerImageNameKey is the attribute Key conforming to the + // "container.image.name" semantic conventions. It represents the name of + // the image the container was built on. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'gcr.io/opentelemetry/operator' + ContainerImageNameKey = attribute.Key("container.image.name") + + // ContainerImageTagKey is the attribute Key conforming to the + // "container.image.tag" semantic conventions. It represents the container + // image tag. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '0.1' + ContainerImageTagKey = attribute.Key("container.image.tag") +) + +// ContainerName returns an attribute KeyValue conforming to the +// "container.name" semantic conventions. It represents the container name used +// by container runtime. +func ContainerName(val string) attribute.KeyValue { + return ContainerNameKey.String(val) +} + +// ContainerID returns an attribute KeyValue conforming to the +// "container.id" semantic conventions. It represents the container ID. Usually +// a UUID, as for example used to [identify Docker +// containers](https://docs.docker.com/engine/reference/run/#container-identification). +// The UUID might be abbreviated. +func ContainerID(val string) attribute.KeyValue { + return ContainerIDKey.String(val) +} + +// ContainerRuntime returns an attribute KeyValue conforming to the +// "container.runtime" semantic conventions. It represents the container +// runtime managing this container. +func ContainerRuntime(val string) attribute.KeyValue { + return ContainerRuntimeKey.String(val) +} + +// ContainerImageName returns an attribute KeyValue conforming to the +// "container.image.name" semantic conventions. It represents the name of the +// image the container was built on. +func ContainerImageName(val string) attribute.KeyValue { + return ContainerImageNameKey.String(val) +} + +// ContainerImageTag returns an attribute KeyValue conforming to the +// "container.image.tag" semantic conventions. It represents the container +// image tag. +func ContainerImageTag(val string) attribute.KeyValue { + return ContainerImageTagKey.String(val) +} + +// The software deployment. +const ( + // DeploymentEnvironmentKey is the attribute Key conforming to the + // "deployment.environment" semantic conventions. It represents the name of + // the [deployment + // environment](https://en.wikipedia.org/wiki/Deployment_environment) (aka + // deployment tier). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'staging', 'production' + DeploymentEnvironmentKey = attribute.Key("deployment.environment") +) + +// DeploymentEnvironment returns an attribute KeyValue conforming to the +// "deployment.environment" semantic conventions. It represents the name of the +// [deployment +// environment](https://en.wikipedia.org/wiki/Deployment_environment) (aka +// deployment tier). +func DeploymentEnvironment(val string) attribute.KeyValue { + return DeploymentEnvironmentKey.String(val) +} + +// The device on which the process represented by this resource is running. +const ( + // DeviceIDKey is the attribute Key conforming to the "device.id" semantic + // conventions. It represents a unique identifier representing the device + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2ab2916d-a51f-4ac8-80ee-45ac31a28092' + // Note: The device identifier MUST only be defined using the values + // outlined below. This value is not an advertising identifier and MUST NOT + // be used as such. On iOS (Swift or Objective-C), this value MUST be equal + // to the [vendor + // identifier](https://developer.apple.com/documentation/uikit/uidevice/1620059-identifierforvendor). + // On Android (Java or Kotlin), this value MUST be equal to the Firebase + // Installation ID or a globally unique UUID which is persisted across + // sessions in your application. More information can be found + // [here](https://developer.android.com/training/articles/user-data-ids) on + // best practices and exact implementation details. Caution should be taken + // when storing personal data or anything which can identify a user. GDPR + // and data protection laws may apply, ensure you do your own due + // diligence. + DeviceIDKey = attribute.Key("device.id") + + // DeviceModelIdentifierKey is the attribute Key conforming to the + // "device.model.identifier" semantic conventions. It represents the model + // identifier for the device + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'iPhone3,4', 'SM-G920F' + // Note: It's recommended this value represents a machine readable version + // of the model identifier rather than the market or consumer-friendly name + // of the device. + DeviceModelIdentifierKey = attribute.Key("device.model.identifier") + + // DeviceModelNameKey is the attribute Key conforming to the + // "device.model.name" semantic conventions. It represents the marketing + // name for the device model + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'iPhone 6s Plus', 'Samsung Galaxy S6' + // Note: It's recommended this value represents a human readable version of + // the device model rather than a machine readable alternative. + DeviceModelNameKey = attribute.Key("device.model.name") + + // DeviceManufacturerKey is the attribute Key conforming to the + // "device.manufacturer" semantic conventions. It represents the name of + // the device manufacturer + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Apple', 'Samsung' + // Note: The Android OS provides this field via + // [Build](https://developer.android.com/reference/android/os/Build#MANUFACTURER). + // iOS apps SHOULD hardcode the value `Apple`. + DeviceManufacturerKey = attribute.Key("device.manufacturer") +) + +// DeviceID returns an attribute KeyValue conforming to the "device.id" +// semantic conventions. It represents a unique identifier representing the +// device +func DeviceID(val string) attribute.KeyValue { + return DeviceIDKey.String(val) +} + +// DeviceModelIdentifier returns an attribute KeyValue conforming to the +// "device.model.identifier" semantic conventions. It represents the model +// identifier for the device +func DeviceModelIdentifier(val string) attribute.KeyValue { + return DeviceModelIdentifierKey.String(val) +} + +// DeviceModelName returns an attribute KeyValue conforming to the +// "device.model.name" semantic conventions. It represents the marketing name +// for the device model +func DeviceModelName(val string) attribute.KeyValue { + return DeviceModelNameKey.String(val) +} + +// DeviceManufacturer returns an attribute KeyValue conforming to the +// "device.manufacturer" semantic conventions. It represents the name of the +// device manufacturer +func DeviceManufacturer(val string) attribute.KeyValue { + return DeviceManufacturerKey.String(val) +} + +// A serverless instance. +const ( + // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic + // conventions. It represents the name of the single function that this + // runtime instance executes. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'my-function', 'myazurefunctionapp/some-function-name' + // Note: This is the name of the function as configured/deployed on the + // FaaS + // platform and is usually different from the name of the callback + // function (which may be stored in the + // [`code.namespace`/`code.function`](../../trace/semantic_conventions/span-general.md#source-code-attributes) + // span attributes). + // + // For some cloud providers, the above definition is ambiguous. The + // following + // definition of function name MUST be used for this attribute + // (and consequently the span name) for the listed cloud + // providers/products: + // + // * **Azure:** The full name `/`, i.e., function app name + // followed by a forward slash followed by the function name (this form + // can also be seen in the resource JSON for the function). + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider (see also the `cloud.resource_id` attribute). + FaaSNameKey = attribute.Key("faas.name") + + // FaaSVersionKey is the attribute Key conforming to the "faas.version" + // semantic conventions. It represents the immutable version of the + // function being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '26', 'pinkfroid-00002' + // Note: Depending on the cloud provider and platform, use: + // + // * **AWS Lambda:** The [function + // version](https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html) + // (an integer represented as a decimal string). + // * **Google Cloud Run:** The + // [revision](https://cloud.google.com/run/docs/managing/revisions) + // (i.e., the function name plus the revision suffix). + // * **Google Cloud Functions:** The value of the + // [`K_REVISION` environment + // variable](https://cloud.google.com/functions/docs/env-var#runtime_environment_variables_set_automatically). + // * **Azure Functions:** Not applicable. Do not set this attribute. + FaaSVersionKey = attribute.Key("faas.version") + + // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" + // semantic conventions. It represents the execution environment ID as a + // string, that will be potentially reused for other invocations to the + // same function/function version. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de' + // Note: * **AWS Lambda:** Use the (full) log stream name. + FaaSInstanceKey = attribute.Key("faas.instance") + + // FaaSMaxMemoryKey is the attribute Key conforming to the + // "faas.max_memory" semantic conventions. It represents the amount of + // memory available to the serverless function converted to Bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 134217728 + // Note: It's recommended to set this attribute since e.g. too little + // memory can easily stop a Java AWS Lambda function from working + // correctly. On AWS Lambda, the environment variable + // `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this information (which must + // be multiplied by 1,048,576). + FaaSMaxMemoryKey = attribute.Key("faas.max_memory") +) + +// FaaSName returns an attribute KeyValue conforming to the "faas.name" +// semantic conventions. It represents the name of the single function that +// this runtime instance executes. +func FaaSName(val string) attribute.KeyValue { + return FaaSNameKey.String(val) +} + +// FaaSVersion returns an attribute KeyValue conforming to the +// "faas.version" semantic conventions. It represents the immutable version of +// the function being executed. +func FaaSVersion(val string) attribute.KeyValue { + return FaaSVersionKey.String(val) +} + +// FaaSInstance returns an attribute KeyValue conforming to the +// "faas.instance" semantic conventions. It represents the execution +// environment ID as a string, that will be potentially reused for other +// invocations to the same function/function version. +func FaaSInstance(val string) attribute.KeyValue { + return FaaSInstanceKey.String(val) +} + +// FaaSMaxMemory returns an attribute KeyValue conforming to the +// "faas.max_memory" semantic conventions. It represents the amount of memory +// available to the serverless function converted to Bytes. +func FaaSMaxMemory(val int) attribute.KeyValue { + return FaaSMaxMemoryKey.Int(val) +} + +// A host is defined as a general computing instance. +const ( + // HostIDKey is the attribute Key conforming to the "host.id" semantic + // conventions. It represents the unique host ID. For Cloud, this must be + // the instance_id assigned by the cloud provider. For non-containerized + // systems, this should be the `machine-id`. See the table below for the + // sources to use to determine the `machine-id` based on operating system. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'fdbf79e8af94cb7f9e8df36789187052' + HostIDKey = attribute.Key("host.id") + + // HostNameKey is the attribute Key conforming to the "host.name" semantic + // conventions. It represents the name of the host. On Unix systems, it may + // contain what the hostname command returns, or the fully qualified + // hostname, or another name specified by the user. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry-test' + HostNameKey = attribute.Key("host.name") + + // HostTypeKey is the attribute Key conforming to the "host.type" semantic + // conventions. It represents the type of host. For Cloud, this must be the + // machine type. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'n1-standard-1' + HostTypeKey = attribute.Key("host.type") + + // HostArchKey is the attribute Key conforming to the "host.arch" semantic + // conventions. It represents the CPU architecture the host system is + // running on. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + HostArchKey = attribute.Key("host.arch") + + // HostImageNameKey is the attribute Key conforming to the + // "host.image.name" semantic conventions. It represents the name of the VM + // image or OS install the host was instantiated from. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'infra-ami-eks-worker-node-7d4ec78312', 'CentOS-8-x86_64-1905' + HostImageNameKey = attribute.Key("host.image.name") + + // HostImageIDKey is the attribute Key conforming to the "host.image.id" + // semantic conventions. It represents the vM image ID. For Cloud, this + // value is from the provider. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'ami-07b06b442921831e5' + HostImageIDKey = attribute.Key("host.image.id") + + // HostImageVersionKey is the attribute Key conforming to the + // "host.image.version" semantic conventions. It represents the version + // string of the VM image as defined in [Version + // Attributes](README.md#version-attributes). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '0.1' + HostImageVersionKey = attribute.Key("host.image.version") +) + +var ( + // AMD64 + HostArchAMD64 = HostArchKey.String("amd64") + // ARM32 + HostArchARM32 = HostArchKey.String("arm32") + // ARM64 + HostArchARM64 = HostArchKey.String("arm64") + // Itanium + HostArchIA64 = HostArchKey.String("ia64") + // 32-bit PowerPC + HostArchPPC32 = HostArchKey.String("ppc32") + // 64-bit PowerPC + HostArchPPC64 = HostArchKey.String("ppc64") + // IBM z/Architecture + HostArchS390x = HostArchKey.String("s390x") + // 32-bit x86 + HostArchX86 = HostArchKey.String("x86") +) + +// HostID returns an attribute KeyValue conforming to the "host.id" semantic +// conventions. It represents the unique host ID. For Cloud, this must be the +// instance_id assigned by the cloud provider. For non-containerized systems, +// this should be the `machine-id`. See the table below for the sources to use +// to determine the `machine-id` based on operating system. +func HostID(val string) attribute.KeyValue { + return HostIDKey.String(val) +} + +// HostName returns an attribute KeyValue conforming to the "host.name" +// semantic conventions. It represents the name of the host. On Unix systems, +// it may contain what the hostname command returns, or the fully qualified +// hostname, or another name specified by the user. +func HostName(val string) attribute.KeyValue { + return HostNameKey.String(val) +} + +// HostType returns an attribute KeyValue conforming to the "host.type" +// semantic conventions. It represents the type of host. For Cloud, this must +// be the machine type. +func HostType(val string) attribute.KeyValue { + return HostTypeKey.String(val) +} + +// HostImageName returns an attribute KeyValue conforming to the +// "host.image.name" semantic conventions. It represents the name of the VM +// image or OS install the host was instantiated from. +func HostImageName(val string) attribute.KeyValue { + return HostImageNameKey.String(val) +} + +// HostImageID returns an attribute KeyValue conforming to the +// "host.image.id" semantic conventions. It represents the vM image ID. For +// Cloud, this value is from the provider. +func HostImageID(val string) attribute.KeyValue { + return HostImageIDKey.String(val) +} + +// HostImageVersion returns an attribute KeyValue conforming to the +// "host.image.version" semantic conventions. It represents the version string +// of the VM image as defined in [Version +// Attributes](README.md#version-attributes). +func HostImageVersion(val string) attribute.KeyValue { + return HostImageVersionKey.String(val) +} + +// A Kubernetes Cluster. +const ( + // K8SClusterNameKey is the attribute Key conforming to the + // "k8s.cluster.name" semantic conventions. It represents the name of the + // cluster. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry-cluster' + K8SClusterNameKey = attribute.Key("k8s.cluster.name") +) + +// K8SClusterName returns an attribute KeyValue conforming to the +// "k8s.cluster.name" semantic conventions. It represents the name of the +// cluster. +func K8SClusterName(val string) attribute.KeyValue { + return K8SClusterNameKey.String(val) +} + +// A Kubernetes Node object. +const ( + // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" + // semantic conventions. It represents the name of the Node. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'node-1' + K8SNodeNameKey = attribute.Key("k8s.node.name") + + // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" + // semantic conventions. It represents the UID of the Node. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2' + K8SNodeUIDKey = attribute.Key("k8s.node.uid") +) + +// K8SNodeName returns an attribute KeyValue conforming to the +// "k8s.node.name" semantic conventions. It represents the name of the Node. +func K8SNodeName(val string) attribute.KeyValue { + return K8SNodeNameKey.String(val) +} + +// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" +// semantic conventions. It represents the UID of the Node. +func K8SNodeUID(val string) attribute.KeyValue { + return K8SNodeUIDKey.String(val) +} + +// A Kubernetes Namespace. +const ( + // K8SNamespaceNameKey is the attribute Key conforming to the + // "k8s.namespace.name" semantic conventions. It represents the name of the + // namespace that the pod is running in. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'default' + K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") +) + +// K8SNamespaceName returns an attribute KeyValue conforming to the +// "k8s.namespace.name" semantic conventions. It represents the name of the +// namespace that the pod is running in. +func K8SNamespaceName(val string) attribute.KeyValue { + return K8SNamespaceNameKey.String(val) +} + +// A Kubernetes Pod object. +const ( + // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" + // semantic conventions. It represents the UID of the Pod. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SPodUIDKey = attribute.Key("k8s.pod.uid") + + // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" + // semantic conventions. It represents the name of the Pod. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry-pod-autoconf' + K8SPodNameKey = attribute.Key("k8s.pod.name") +) + +// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" +// semantic conventions. It represents the UID of the Pod. +func K8SPodUID(val string) attribute.KeyValue { + return K8SPodUIDKey.String(val) +} + +// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" +// semantic conventions. It represents the name of the Pod. +func K8SPodName(val string) attribute.KeyValue { + return K8SPodNameKey.String(val) +} + +// A container in a +// [PodTemplate](https://kubernetes.io/docs/concepts/workloads/pods/#pod-templates). +const ( + // K8SContainerNameKey is the attribute Key conforming to the + // "k8s.container.name" semantic conventions. It represents the name of the + // Container from Pod specification, must be unique within a Pod. Container + // runtime usually uses different globally unique name (`container.name`). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'redis' + K8SContainerNameKey = attribute.Key("k8s.container.name") + + // K8SContainerRestartCountKey is the attribute Key conforming to the + // "k8s.container.restart_count" semantic conventions. It represents the + // number of times the container was restarted. This attribute can be used + // to identify a particular container (running or stopped) within a + // container spec. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 0, 2 + K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") +) + +// K8SContainerName returns an attribute KeyValue conforming to the +// "k8s.container.name" semantic conventions. It represents the name of the +// Container from Pod specification, must be unique within a Pod. Container +// runtime usually uses different globally unique name (`container.name`). +func K8SContainerName(val string) attribute.KeyValue { + return K8SContainerNameKey.String(val) +} + +// K8SContainerRestartCount returns an attribute KeyValue conforming to the +// "k8s.container.restart_count" semantic conventions. It represents the number +// of times the container was restarted. This attribute can be used to identify +// a particular container (running or stopped) within a container spec. +func K8SContainerRestartCount(val int) attribute.KeyValue { + return K8SContainerRestartCountKey.Int(val) +} + +// A Kubernetes ReplicaSet object. +const ( + // K8SReplicaSetUIDKey is the attribute Key conforming to the + // "k8s.replicaset.uid" semantic conventions. It represents the UID of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") + + // K8SReplicaSetNameKey is the attribute Key conforming to the + // "k8s.replicaset.name" semantic conventions. It represents the name of + // the ReplicaSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") +) + +// K8SReplicaSetUID returns an attribute KeyValue conforming to the +// "k8s.replicaset.uid" semantic conventions. It represents the UID of the +// ReplicaSet. +func K8SReplicaSetUID(val string) attribute.KeyValue { + return K8SReplicaSetUIDKey.String(val) +} + +// K8SReplicaSetName returns an attribute KeyValue conforming to the +// "k8s.replicaset.name" semantic conventions. It represents the name of the +// ReplicaSet. +func K8SReplicaSetName(val string) attribute.KeyValue { + return K8SReplicaSetNameKey.String(val) +} + +// A Kubernetes Deployment object. +const ( + // K8SDeploymentUIDKey is the attribute Key conforming to the + // "k8s.deployment.uid" semantic conventions. It represents the UID of the + // Deployment. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") + + // K8SDeploymentNameKey is the attribute Key conforming to the + // "k8s.deployment.name" semantic conventions. It represents the name of + // the Deployment. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") +) + +// K8SDeploymentUID returns an attribute KeyValue conforming to the +// "k8s.deployment.uid" semantic conventions. It represents the UID of the +// Deployment. +func K8SDeploymentUID(val string) attribute.KeyValue { + return K8SDeploymentUIDKey.String(val) +} + +// K8SDeploymentName returns an attribute KeyValue conforming to the +// "k8s.deployment.name" semantic conventions. It represents the name of the +// Deployment. +func K8SDeploymentName(val string) attribute.KeyValue { + return K8SDeploymentNameKey.String(val) +} + +// A Kubernetes StatefulSet object. +const ( + // K8SStatefulSetUIDKey is the attribute Key conforming to the + // "k8s.statefulset.uid" semantic conventions. It represents the UID of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") + + // K8SStatefulSetNameKey is the attribute Key conforming to the + // "k8s.statefulset.name" semantic conventions. It represents the name of + // the StatefulSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") +) + +// K8SStatefulSetUID returns an attribute KeyValue conforming to the +// "k8s.statefulset.uid" semantic conventions. It represents the UID of the +// StatefulSet. +func K8SStatefulSetUID(val string) attribute.KeyValue { + return K8SStatefulSetUIDKey.String(val) +} + +// K8SStatefulSetName returns an attribute KeyValue conforming to the +// "k8s.statefulset.name" semantic conventions. It represents the name of the +// StatefulSet. +func K8SStatefulSetName(val string) attribute.KeyValue { + return K8SStatefulSetNameKey.String(val) +} + +// A Kubernetes DaemonSet object. +const ( + // K8SDaemonSetUIDKey is the attribute Key conforming to the + // "k8s.daemonset.uid" semantic conventions. It represents the UID of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") + + // K8SDaemonSetNameKey is the attribute Key conforming to the + // "k8s.daemonset.name" semantic conventions. It represents the name of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") +) + +// K8SDaemonSetUID returns an attribute KeyValue conforming to the +// "k8s.daemonset.uid" semantic conventions. It represents the UID of the +// DaemonSet. +func K8SDaemonSetUID(val string) attribute.KeyValue { + return K8SDaemonSetUIDKey.String(val) +} + +// K8SDaemonSetName returns an attribute KeyValue conforming to the +// "k8s.daemonset.name" semantic conventions. It represents the name of the +// DaemonSet. +func K8SDaemonSetName(val string) attribute.KeyValue { + return K8SDaemonSetNameKey.String(val) +} + +// A Kubernetes Job object. +const ( + // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" + // semantic conventions. It represents the UID of the Job. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SJobUIDKey = attribute.Key("k8s.job.uid") + + // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" + // semantic conventions. It represents the name of the Job. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SJobNameKey = attribute.Key("k8s.job.name") +) + +// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" +// semantic conventions. It represents the UID of the Job. +func K8SJobUID(val string) attribute.KeyValue { + return K8SJobUIDKey.String(val) +} + +// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" +// semantic conventions. It represents the name of the Job. +func K8SJobName(val string) attribute.KeyValue { + return K8SJobNameKey.String(val) +} + +// A Kubernetes CronJob object. +const ( + // K8SCronJobUIDKey is the attribute Key conforming to the + // "k8s.cronjob.uid" semantic conventions. It represents the UID of the + // CronJob. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") + + // K8SCronJobNameKey is the attribute Key conforming to the + // "k8s.cronjob.name" semantic conventions. It represents the name of the + // CronJob. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'opentelemetry' + K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") +) + +// K8SCronJobUID returns an attribute KeyValue conforming to the +// "k8s.cronjob.uid" semantic conventions. It represents the UID of the +// CronJob. +func K8SCronJobUID(val string) attribute.KeyValue { + return K8SCronJobUIDKey.String(val) +} + +// K8SCronJobName returns an attribute KeyValue conforming to the +// "k8s.cronjob.name" semantic conventions. It represents the name of the +// CronJob. +func K8SCronJobName(val string) attribute.KeyValue { + return K8SCronJobNameKey.String(val) +} + +// The operating system (OS) on which the process represented by this resource +// is running. +const ( + // OSTypeKey is the attribute Key conforming to the "os.type" semantic + // conventions. It represents the operating system type. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + OSTypeKey = attribute.Key("os.type") + + // OSDescriptionKey is the attribute Key conforming to the "os.description" + // semantic conventions. It represents the human readable (not intended to + // be parsed) OS version information, like e.g. reported by `ver` or + // `lsb_release -a` commands. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Microsoft Windows [Version 10.0.18363.778]', 'Ubuntu 18.04.1 + // LTS' + OSDescriptionKey = attribute.Key("os.description") + + // OSNameKey is the attribute Key conforming to the "os.name" semantic + // conventions. It represents the human readable operating system name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'iOS', 'Android', 'Ubuntu' + OSNameKey = attribute.Key("os.name") + + // OSVersionKey is the attribute Key conforming to the "os.version" + // semantic conventions. It represents the version string of the operating + // system as defined in [Version + // Attributes](../../resource/semantic_conventions/README.md#version-attributes). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '14.2.1', '18.04.1' + OSVersionKey = attribute.Key("os.version") +) + +var ( + // Microsoft Windows + OSTypeWindows = OSTypeKey.String("windows") + // Linux + OSTypeLinux = OSTypeKey.String("linux") + // Apple Darwin + OSTypeDarwin = OSTypeKey.String("darwin") + // FreeBSD + OSTypeFreeBSD = OSTypeKey.String("freebsd") + // NetBSD + OSTypeNetBSD = OSTypeKey.String("netbsd") + // OpenBSD + OSTypeOpenBSD = OSTypeKey.String("openbsd") + // DragonFly BSD + OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") + // HP-UX (Hewlett Packard Unix) + OSTypeHPUX = OSTypeKey.String("hpux") + // AIX (Advanced Interactive eXecutive) + OSTypeAIX = OSTypeKey.String("aix") + // SunOS, Oracle Solaris + OSTypeSolaris = OSTypeKey.String("solaris") + // IBM z/OS + OSTypeZOS = OSTypeKey.String("z_os") +) + +// OSDescription returns an attribute KeyValue conforming to the +// "os.description" semantic conventions. It represents the human readable (not +// intended to be parsed) OS version information, like e.g. reported by `ver` +// or `lsb_release -a` commands. +func OSDescription(val string) attribute.KeyValue { + return OSDescriptionKey.String(val) +} + +// OSName returns an attribute KeyValue conforming to the "os.name" semantic +// conventions. It represents the human readable operating system name. +func OSName(val string) attribute.KeyValue { + return OSNameKey.String(val) +} + +// OSVersion returns an attribute KeyValue conforming to the "os.version" +// semantic conventions. It represents the version string of the operating +// system as defined in [Version +// Attributes](../../resource/semantic_conventions/README.md#version-attributes). +func OSVersion(val string) attribute.KeyValue { + return OSVersionKey.String(val) +} + +// An operating system process. +const ( + // ProcessPIDKey is the attribute Key conforming to the "process.pid" + // semantic conventions. It represents the process identifier (PID). + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 1234 + ProcessPIDKey = attribute.Key("process.pid") + + // ProcessParentPIDKey is the attribute Key conforming to the + // "process.parent_pid" semantic conventions. It represents the parent + // Process identifier (PID). + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 111 + ProcessParentPIDKey = attribute.Key("process.parent_pid") + + // ProcessExecutableNameKey is the attribute Key conforming to the + // "process.executable.name" semantic conventions. It represents the name + // of the process executable. On Linux based systems, can be set to the + // `Name` in `proc/[pid]/status`. On Windows, can be set to the base name + // of `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: ConditionallyRequired (See alternative attributes + // below.) + // Stability: stable + // Examples: 'otelcol' + ProcessExecutableNameKey = attribute.Key("process.executable.name") + + // ProcessExecutablePathKey is the attribute Key conforming to the + // "process.executable.path" semantic conventions. It represents the full + // path to the process executable. On Linux based systems, can be set to + // the target of `proc/[pid]/exe`. On Windows, can be set to the result of + // `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: ConditionallyRequired (See alternative attributes + // below.) + // Stability: stable + // Examples: '/usr/bin/cmd/otelcol' + ProcessExecutablePathKey = attribute.Key("process.executable.path") + + // ProcessCommandKey is the attribute Key conforming to the + // "process.command" semantic conventions. It represents the command used + // to launch the process (i.e. the command name). On Linux based systems, + // can be set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can + // be set to the first parameter extracted from `GetCommandLineW`. + // + // Type: string + // RequirementLevel: ConditionallyRequired (See alternative attributes + // below.) + // Stability: stable + // Examples: 'cmd/otelcol' + ProcessCommandKey = attribute.Key("process.command") + + // ProcessCommandLineKey is the attribute Key conforming to the + // "process.command_line" semantic conventions. It represents the full + // command used to launch the process as a single string representing the + // full command. On Windows, can be set to the result of `GetCommandLineW`. + // Do not set this if you have to assemble it just for monitoring; use + // `process.command_args` instead. + // + // Type: string + // RequirementLevel: ConditionallyRequired (See alternative attributes + // below.) + // Stability: stable + // Examples: 'C:\\cmd\\otecol --config="my directory\\config.yaml"' + ProcessCommandLineKey = attribute.Key("process.command_line") + + // ProcessCommandArgsKey is the attribute Key conforming to the + // "process.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) as received + // by the process. On Linux-based systems (and some other Unixoid systems + // supporting procfs), can be set according to the list of null-delimited + // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, + // this would be the full argv vector passed to `main`. + // + // Type: string[] + // RequirementLevel: ConditionallyRequired (See alternative attributes + // below.) + // Stability: stable + // Examples: 'cmd/otecol', '--config=config.yaml' + ProcessCommandArgsKey = attribute.Key("process.command_args") + + // ProcessOwnerKey is the attribute Key conforming to the "process.owner" + // semantic conventions. It represents the username of the user that owns + // the process. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'root' + ProcessOwnerKey = attribute.Key("process.owner") +) + +// ProcessPID returns an attribute KeyValue conforming to the "process.pid" +// semantic conventions. It represents the process identifier (PID). +func ProcessPID(val int) attribute.KeyValue { + return ProcessPIDKey.Int(val) +} + +// ProcessParentPID returns an attribute KeyValue conforming to the +// "process.parent_pid" semantic conventions. It represents the parent Process +// identifier (PID). +func ProcessParentPID(val int) attribute.KeyValue { + return ProcessParentPIDKey.Int(val) +} + +// ProcessExecutableName returns an attribute KeyValue conforming to the +// "process.executable.name" semantic conventions. It represents the name of +// the process executable. On Linux based systems, can be set to the `Name` in +// `proc/[pid]/status`. On Windows, can be set to the base name of +// `GetProcessImageFileNameW`. +func ProcessExecutableName(val string) attribute.KeyValue { + return ProcessExecutableNameKey.String(val) +} + +// ProcessExecutablePath returns an attribute KeyValue conforming to the +// "process.executable.path" semantic conventions. It represents the full path +// to the process executable. On Linux based systems, can be set to the target +// of `proc/[pid]/exe`. On Windows, can be set to the result of +// `GetProcessImageFileNameW`. +func ProcessExecutablePath(val string) attribute.KeyValue { + return ProcessExecutablePathKey.String(val) +} + +// ProcessCommand returns an attribute KeyValue conforming to the +// "process.command" semantic conventions. It represents the command used to +// launch the process (i.e. the command name). On Linux based systems, can be +// set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to +// the first parameter extracted from `GetCommandLineW`. +func ProcessCommand(val string) attribute.KeyValue { + return ProcessCommandKey.String(val) +} + +// ProcessCommandLine returns an attribute KeyValue conforming to the +// "process.command_line" semantic conventions. It represents the full command +// used to launch the process as a single string representing the full command. +// On Windows, can be set to the result of `GetCommandLineW`. Do not set this +// if you have to assemble it just for monitoring; use `process.command_args` +// instead. +func ProcessCommandLine(val string) attribute.KeyValue { + return ProcessCommandLineKey.String(val) +} + +// ProcessCommandArgs returns an attribute KeyValue conforming to the +// "process.command_args" semantic conventions. It represents the all the +// command arguments (including the command/executable itself) as received by +// the process. On Linux-based systems (and some other Unixoid systems +// supporting procfs), can be set according to the list of null-delimited +// strings extracted from `proc/[pid]/cmdline`. For libc-based executables, +// this would be the full argv vector passed to `main`. +func ProcessCommandArgs(val ...string) attribute.KeyValue { + return ProcessCommandArgsKey.StringSlice(val) +} + +// ProcessOwner returns an attribute KeyValue conforming to the +// "process.owner" semantic conventions. It represents the username of the user +// that owns the process. +func ProcessOwner(val string) attribute.KeyValue { + return ProcessOwnerKey.String(val) +} + +// The single (language) runtime instance which is monitored. +const ( + // ProcessRuntimeNameKey is the attribute Key conforming to the + // "process.runtime.name" semantic conventions. It represents the name of + // the runtime of this process. For compiled native binaries, this SHOULD + // be the name of the compiler. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'OpenJDK Runtime Environment' + ProcessRuntimeNameKey = attribute.Key("process.runtime.name") + + // ProcessRuntimeVersionKey is the attribute Key conforming to the + // "process.runtime.version" semantic conventions. It represents the + // version of the runtime of this process, as returned by the runtime + // without modification. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '14.0.2' + ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") + + // ProcessRuntimeDescriptionKey is the attribute Key conforming to the + // "process.runtime.description" semantic conventions. It represents an + // additional description about the runtime of the process, for example a + // specific vendor customization of the runtime environment. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0' + ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") +) + +// ProcessRuntimeName returns an attribute KeyValue conforming to the +// "process.runtime.name" semantic conventions. It represents the name of the +// runtime of this process. For compiled native binaries, this SHOULD be the +// name of the compiler. +func ProcessRuntimeName(val string) attribute.KeyValue { + return ProcessRuntimeNameKey.String(val) +} + +// ProcessRuntimeVersion returns an attribute KeyValue conforming to the +// "process.runtime.version" semantic conventions. It represents the version of +// the runtime of this process, as returned by the runtime without +// modification. +func ProcessRuntimeVersion(val string) attribute.KeyValue { + return ProcessRuntimeVersionKey.String(val) +} + +// ProcessRuntimeDescription returns an attribute KeyValue conforming to the +// "process.runtime.description" semantic conventions. It represents an +// additional description about the runtime of the process, for example a +// specific vendor customization of the runtime environment. +func ProcessRuntimeDescription(val string) attribute.KeyValue { + return ProcessRuntimeDescriptionKey.String(val) +} + +// A service instance. +const ( + // ServiceNameKey is the attribute Key conforming to the "service.name" + // semantic conventions. It represents the logical name of the service. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'shoppingcart' + // Note: MUST be the same for all instances of horizontally scaled + // services. If the value was not specified, SDKs MUST fallback to + // `unknown_service:` concatenated with + // [`process.executable.name`](process.md#process), e.g. + // `unknown_service:bash`. If `process.executable.name` is not available, + // the value MUST be set to `unknown_service`. + ServiceNameKey = attribute.Key("service.name") +) + +// ServiceName returns an attribute KeyValue conforming to the +// "service.name" semantic conventions. It represents the logical name of the +// service. +func ServiceName(val string) attribute.KeyValue { + return ServiceNameKey.String(val) +} + +// A service instance. +const ( + // ServiceNamespaceKey is the attribute Key conforming to the + // "service.namespace" semantic conventions. It represents a namespace for + // `service.name`. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Shop' + // Note: A string value having a meaning that helps to distinguish a group + // of services, for example the team name that owns a group of services. + // `service.name` is expected to be unique within the same namespace. If + // `service.namespace` is not specified in the Resource then `service.name` + // is expected to be unique for all services that have no explicit + // namespace defined (so the empty/unspecified namespace is simply one more + // valid namespace). Zero-length namespace string is assumed equal to + // unspecified namespace. + ServiceNamespaceKey = attribute.Key("service.namespace") + + // ServiceInstanceIDKey is the attribute Key conforming to the + // "service.instance.id" semantic conventions. It represents the string ID + // of the service instance. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'my-k8s-pod-deployment-1', + // '627cc493-f310-47de-96bd-71410b7dec09' + // Note: MUST be unique for each instance of the same + // `service.namespace,service.name` pair (in other words + // `service.namespace,service.name,service.instance.id` triplet MUST be + // globally unique). The ID helps to distinguish instances of the same + // service that exist at the same time (e.g. instances of a horizontally + // scaled service). It is preferable for the ID to be persistent and stay + // the same for the lifetime of the service instance, however it is + // acceptable that the ID is ephemeral and changes during important + // lifetime events for the service (e.g. service restarts). If the service + // has no inherent unique ID that can be used as the value of this + // attribute it is recommended to generate a random Version 1 or Version 4 + // RFC 4122 UUID (services aiming for reproducible UUIDs may also use + // Version 5, see RFC 4122 for more recommendations). + ServiceInstanceIDKey = attribute.Key("service.instance.id") + + // ServiceVersionKey is the attribute Key conforming to the + // "service.version" semantic conventions. It represents the version string + // of the service API or implementation. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2.0.0' + ServiceVersionKey = attribute.Key("service.version") +) + +// ServiceNamespace returns an attribute KeyValue conforming to the +// "service.namespace" semantic conventions. It represents a namespace for +// `service.name`. +func ServiceNamespace(val string) attribute.KeyValue { + return ServiceNamespaceKey.String(val) +} + +// ServiceInstanceID returns an attribute KeyValue conforming to the +// "service.instance.id" semantic conventions. It represents the string ID of +// the service instance. +func ServiceInstanceID(val string) attribute.KeyValue { + return ServiceInstanceIDKey.String(val) +} + +// ServiceVersion returns an attribute KeyValue conforming to the +// "service.version" semantic conventions. It represents the version string of +// the service API or implementation. +func ServiceVersion(val string) attribute.KeyValue { + return ServiceVersionKey.String(val) +} + +// The telemetry SDK used to capture data recorded by the instrumentation +// libraries. +const ( + // TelemetrySDKNameKey is the attribute Key conforming to the + // "telemetry.sdk.name" semantic conventions. It represents the name of the + // telemetry SDK as defined above. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'opentelemetry' + TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") + + // TelemetrySDKLanguageKey is the attribute Key conforming to the + // "telemetry.sdk.language" semantic conventions. It represents the + // language of the telemetry SDK. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") + + // TelemetrySDKVersionKey is the attribute Key conforming to the + // "telemetry.sdk.version" semantic conventions. It represents the version + // string of the telemetry SDK. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: '1.2.3' + TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") +) + +var ( + // cpp + TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") + // dotnet + TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") + // erlang + TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") + // go + TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") + // java + TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") + // nodejs + TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") + // php + TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") + // python + TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") + // ruby + TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") + // webjs + TelemetrySDKLanguageWebjs = TelemetrySDKLanguageKey.String("webjs") + // swift + TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") +) + +// TelemetrySDKName returns an attribute KeyValue conforming to the +// "telemetry.sdk.name" semantic conventions. It represents the name of the +// telemetry SDK as defined above. +func TelemetrySDKName(val string) attribute.KeyValue { + return TelemetrySDKNameKey.String(val) +} + +// TelemetrySDKVersion returns an attribute KeyValue conforming to the +// "telemetry.sdk.version" semantic conventions. It represents the version +// string of the telemetry SDK. +func TelemetrySDKVersion(val string) attribute.KeyValue { + return TelemetrySDKVersionKey.String(val) +} + +// The telemetry SDK used to capture data recorded by the instrumentation +// libraries. +const ( + // TelemetryAutoVersionKey is the attribute Key conforming to the + // "telemetry.auto.version" semantic conventions. It represents the version + // string of the auto instrumentation agent, if used. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1.2.3' + TelemetryAutoVersionKey = attribute.Key("telemetry.auto.version") +) + +// TelemetryAutoVersion returns an attribute KeyValue conforming to the +// "telemetry.auto.version" semantic conventions. It represents the version +// string of the auto instrumentation agent, if used. +func TelemetryAutoVersion(val string) attribute.KeyValue { + return TelemetryAutoVersionKey.String(val) +} + +// Resource describing the packaged software running the application code. Web +// engines are typically executed using process.runtime. +const ( + // WebEngineNameKey is the attribute Key conforming to the "webengine.name" + // semantic conventions. It represents the name of the web engine. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'WildFly' + WebEngineNameKey = attribute.Key("webengine.name") + + // WebEngineVersionKey is the attribute Key conforming to the + // "webengine.version" semantic conventions. It represents the version of + // the web engine. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '21.0.0' + WebEngineVersionKey = attribute.Key("webengine.version") + + // WebEngineDescriptionKey is the attribute Key conforming to the + // "webengine.description" semantic conventions. It represents the + // additional description of the web engine (e.g. detailed version and + // edition information). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - + // 2.2.2.Final' + WebEngineDescriptionKey = attribute.Key("webengine.description") +) + +// WebEngineName returns an attribute KeyValue conforming to the +// "webengine.name" semantic conventions. It represents the name of the web +// engine. +func WebEngineName(val string) attribute.KeyValue { + return WebEngineNameKey.String(val) +} + +// WebEngineVersion returns an attribute KeyValue conforming to the +// "webengine.version" semantic conventions. It represents the version of the +// web engine. +func WebEngineVersion(val string) attribute.KeyValue { + return WebEngineVersionKey.String(val) +} + +// WebEngineDescription returns an attribute KeyValue conforming to the +// "webengine.description" semantic conventions. It represents the additional +// description of the web engine (e.g. detailed version and edition +// information). +func WebEngineDescription(val string) attribute.KeyValue { + return WebEngineDescriptionKey.String(val) +} + +// Attributes used by non-OTLP exporters to represent OpenTelemetry Scope's +// concepts. +const ( + // OTelScopeNameKey is the attribute Key conforming to the + // "otel.scope.name" semantic conventions. It represents the name of the + // instrumentation scope - (`InstrumentationScope.Name` in OTLP). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'io.opentelemetry.contrib.mongodb' + OTelScopeNameKey = attribute.Key("otel.scope.name") + + // OTelScopeVersionKey is the attribute Key conforming to the + // "otel.scope.version" semantic conventions. It represents the version of + // the instrumentation scope - (`InstrumentationScope.Version` in OTLP). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1.0.0' + OTelScopeVersionKey = attribute.Key("otel.scope.version") +) + +// OTelScopeName returns an attribute KeyValue conforming to the +// "otel.scope.name" semantic conventions. It represents the name of the +// instrumentation scope - (`InstrumentationScope.Name` in OTLP). +func OTelScopeName(val string) attribute.KeyValue { + return OTelScopeNameKey.String(val) +} + +// OTelScopeVersion returns an attribute KeyValue conforming to the +// "otel.scope.version" semantic conventions. It represents the version of the +// instrumentation scope - (`InstrumentationScope.Version` in OTLP). +func OTelScopeVersion(val string) attribute.KeyValue { + return OTelScopeVersionKey.String(val) +} + +// Span attributes used by non-OTLP exporters to represent OpenTelemetry +// Scope's concepts. +const ( + // OTelLibraryNameKey is the attribute Key conforming to the + // "otel.library.name" semantic conventions. It represents the deprecated, + // use the `otel.scope.name` attribute. + // + // Type: string + // RequirementLevel: Optional + // Stability: deprecated + // Examples: 'io.opentelemetry.contrib.mongodb' + OTelLibraryNameKey = attribute.Key("otel.library.name") + + // OTelLibraryVersionKey is the attribute Key conforming to the + // "otel.library.version" semantic conventions. It represents the + // deprecated, use the `otel.scope.version` attribute. + // + // Type: string + // RequirementLevel: Optional + // Stability: deprecated + // Examples: '1.0.0' + OTelLibraryVersionKey = attribute.Key("otel.library.version") +) + +// OTelLibraryName returns an attribute KeyValue conforming to the +// "otel.library.name" semantic conventions. It represents the deprecated, use +// the `otel.scope.name` attribute. +func OTelLibraryName(val string) attribute.KeyValue { + return OTelLibraryNameKey.String(val) +} + +// OTelLibraryVersion returns an attribute KeyValue conforming to the +// "otel.library.version" semantic conventions. It represents the deprecated, +// use the `otel.scope.version` attribute. +func OTelLibraryVersion(val string) attribute.KeyValue { + return OTelLibraryVersionKey.String(val) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/schema.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/schema.go new file mode 100644 index 0000000000..95d0210e38 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/schema.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +// SchemaURL is the schema URL that matches the version of the semantic conventions +// that this package defines. Semconv packages starting from v1.4.0 must declare +// non-empty schema URL in the form https://opentelemetry.io/schemas/ +const SchemaURL = "https://opentelemetry.io/schemas/1.20.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/trace.go b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/trace.go new file mode 100644 index 0000000000..90b1b0452c --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.20.0/trace.go @@ -0,0 +1,2599 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.20.0" + +import "go.opentelemetry.io/otel/attribute" + +// The shared attributes used to report a single exception associated with a +// span or log. +const ( + // ExceptionTypeKey is the attribute Key conforming to the "exception.type" + // semantic conventions. It represents the type of the exception (its + // fully-qualified class name, if applicable). The dynamic type of the + // exception should be preferred over the static type in languages that + // support it. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'java.net.ConnectException', 'OSError' + ExceptionTypeKey = attribute.Key("exception.type") + + // ExceptionMessageKey is the attribute Key conforming to the + // "exception.message" semantic conventions. It represents the exception + // message. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Division by zero', "Can't convert 'int' object to str + // implicitly" + ExceptionMessageKey = attribute.Key("exception.message") + + // ExceptionStacktraceKey is the attribute Key conforming to the + // "exception.stacktrace" semantic conventions. It represents a stacktrace + // as a string in the natural representation for the language runtime. The + // representation is to be determined and documented by each language SIG. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Exception in thread "main" java.lang.RuntimeException: Test + // exception\\n at ' + // 'com.example.GenerateTrace.methodB(GenerateTrace.java:13)\\n at ' + // 'com.example.GenerateTrace.methodA(GenerateTrace.java:9)\\n at ' + // 'com.example.GenerateTrace.main(GenerateTrace.java:5)' + ExceptionStacktraceKey = attribute.Key("exception.stacktrace") +) + +// ExceptionType returns an attribute KeyValue conforming to the +// "exception.type" semantic conventions. It represents the type of the +// exception (its fully-qualified class name, if applicable). The dynamic type +// of the exception should be preferred over the static type in languages that +// support it. +func ExceptionType(val string) attribute.KeyValue { + return ExceptionTypeKey.String(val) +} + +// ExceptionMessage returns an attribute KeyValue conforming to the +// "exception.message" semantic conventions. It represents the exception +// message. +func ExceptionMessage(val string) attribute.KeyValue { + return ExceptionMessageKey.String(val) +} + +// ExceptionStacktrace returns an attribute KeyValue conforming to the +// "exception.stacktrace" semantic conventions. It represents a stacktrace as a +// string in the natural representation for the language runtime. The +// representation is to be determined and documented by each language SIG. +func ExceptionStacktrace(val string) attribute.KeyValue { + return ExceptionStacktraceKey.String(val) +} + +// The attributes described in this section are rather generic. They may be +// used in any Log Record they apply to. +const ( + // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" + // semantic conventions. It represents a unique identifier for the Log + // Record. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '01ARZ3NDEKTSV4RRFFQ69G5FAV' + // Note: If an id is provided, other log records with the same id will be + // considered duplicates and can be removed safely. This means, that two + // distinguishable log records MUST have different values. + // The id MAY be an [Universally Unique Lexicographically Sortable + // Identifier (ULID)](https://github.com/ulid/spec), but other identifiers + // (e.g. UUID) may be used as needed. + LogRecordUIDKey = attribute.Key("log.record.uid") +) + +// LogRecordUID returns an attribute KeyValue conforming to the +// "log.record.uid" semantic conventions. It represents a unique identifier for +// the Log Record. +func LogRecordUID(val string) attribute.KeyValue { + return LogRecordUIDKey.String(val) +} + +// Span attributes used by AWS Lambda (in addition to general `faas` +// attributes). +const ( + // AWSLambdaInvokedARNKey is the attribute Key conforming to the + // "aws.lambda.invoked_arn" semantic conventions. It represents the full + // invoked ARN as provided on the `Context` passed to the function + // (`Lambda-Runtime-Invoked-Function-ARN` header on the + // `/runtime/invocation/next` applicable). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'arn:aws:lambda:us-east-1:123456:function:myfunction:myalias' + // Note: This may be different from `cloud.resource_id` if an alias is + // involved. + AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") +) + +// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the +// "aws.lambda.invoked_arn" semantic conventions. It represents the full +// invoked ARN as provided on the `Context` passed to the function +// (`Lambda-Runtime-Invoked-Function-ARN` header on the +// `/runtime/invocation/next` applicable). +func AWSLambdaInvokedARN(val string) attribute.KeyValue { + return AWSLambdaInvokedARNKey.String(val) +} + +// Attributes for CloudEvents. CloudEvents is a specification on how to define +// event data in a standard way. These attributes can be attached to spans when +// performing operations with CloudEvents, regardless of the protocol being +// used. +const ( + // CloudeventsEventIDKey is the attribute Key conforming to the + // "cloudevents.event_id" semantic conventions. It represents the + // [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) + // uniquely identifies the event. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: '123e4567-e89b-12d3-a456-426614174000', '0001' + CloudeventsEventIDKey = attribute.Key("cloudevents.event_id") + + // CloudeventsEventSourceKey is the attribute Key conforming to the + // "cloudevents.event_source" semantic conventions. It represents the + // [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) + // identifies the context in which an event happened. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'https://github.com/cloudevents', + // '/cloudevents/spec/pull/123', 'my-service' + CloudeventsEventSourceKey = attribute.Key("cloudevents.event_source") + + // CloudeventsEventSpecVersionKey is the attribute Key conforming to the + // "cloudevents.event_spec_version" semantic conventions. It represents the + // [version of the CloudEvents + // specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) + // which the event uses. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1.0' + CloudeventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") + + // CloudeventsEventTypeKey is the attribute Key conforming to the + // "cloudevents.event_type" semantic conventions. It represents the + // [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) + // contains a value describing the type of event related to the originating + // occurrence. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'com.github.pull_request.opened', + // 'com.example.object.deleted.v2' + CloudeventsEventTypeKey = attribute.Key("cloudevents.event_type") + + // CloudeventsEventSubjectKey is the attribute Key conforming to the + // "cloudevents.event_subject" semantic conventions. It represents the + // [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) + // of the event in the context of the event producer (identified by + // source). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'mynewfile.jpg' + CloudeventsEventSubjectKey = attribute.Key("cloudevents.event_subject") +) + +// CloudeventsEventID returns an attribute KeyValue conforming to the +// "cloudevents.event_id" semantic conventions. It represents the +// [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) +// uniquely identifies the event. +func CloudeventsEventID(val string) attribute.KeyValue { + return CloudeventsEventIDKey.String(val) +} + +// CloudeventsEventSource returns an attribute KeyValue conforming to the +// "cloudevents.event_source" semantic conventions. It represents the +// [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) +// identifies the context in which an event happened. +func CloudeventsEventSource(val string) attribute.KeyValue { + return CloudeventsEventSourceKey.String(val) +} + +// CloudeventsEventSpecVersion returns an attribute KeyValue conforming to +// the "cloudevents.event_spec_version" semantic conventions. It represents the +// [version of the CloudEvents +// specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) +// which the event uses. +func CloudeventsEventSpecVersion(val string) attribute.KeyValue { + return CloudeventsEventSpecVersionKey.String(val) +} + +// CloudeventsEventType returns an attribute KeyValue conforming to the +// "cloudevents.event_type" semantic conventions. It represents the +// [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) +// contains a value describing the type of event related to the originating +// occurrence. +func CloudeventsEventType(val string) attribute.KeyValue { + return CloudeventsEventTypeKey.String(val) +} + +// CloudeventsEventSubject returns an attribute KeyValue conforming to the +// "cloudevents.event_subject" semantic conventions. It represents the +// [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) +// of the event in the context of the event producer (identified by source). +func CloudeventsEventSubject(val string) attribute.KeyValue { + return CloudeventsEventSubjectKey.String(val) +} + +// Semantic conventions for the OpenTracing Shim +const ( + // OpentracingRefTypeKey is the attribute Key conforming to the + // "opentracing.ref_type" semantic conventions. It represents the + // parent-child Reference type + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Note: The causal relationship between a child Span and a parent Span. + OpentracingRefTypeKey = attribute.Key("opentracing.ref_type") +) + +var ( + // The parent Span depends on the child Span in some capacity + OpentracingRefTypeChildOf = OpentracingRefTypeKey.String("child_of") + // The parent Span does not depend in any way on the result of the child Span + OpentracingRefTypeFollowsFrom = OpentracingRefTypeKey.String("follows_from") +) + +// The attributes used to perform database client calls. +const ( + // DBSystemKey is the attribute Key conforming to the "db.system" semantic + // conventions. It represents an identifier for the database management + // system (DBMS) product being used. See below for a list of well-known + // identifiers. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + DBSystemKey = attribute.Key("db.system") + + // DBConnectionStringKey is the attribute Key conforming to the + // "db.connection_string" semantic conventions. It represents the + // connection string used to connect to the database. It is recommended to + // remove embedded credentials. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Server=(localdb)\\v11.0;Integrated Security=true;' + DBConnectionStringKey = attribute.Key("db.connection_string") + + // DBUserKey is the attribute Key conforming to the "db.user" semantic + // conventions. It represents the username for accessing the database. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'readonly_user', 'reporting_user' + DBUserKey = attribute.Key("db.user") + + // DBJDBCDriverClassnameKey is the attribute Key conforming to the + // "db.jdbc.driver_classname" semantic conventions. It represents the + // fully-qualified class name of the [Java Database Connectivity + // (JDBC)](https://docs.oracle.com/javase/8/docs/technotes/guides/jdbc/) + // driver used to connect. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'org.postgresql.Driver', + // 'com.microsoft.sqlserver.jdbc.SQLServerDriver' + DBJDBCDriverClassnameKey = attribute.Key("db.jdbc.driver_classname") + + // DBNameKey is the attribute Key conforming to the "db.name" semantic + // conventions. It represents the this attribute is used to report the name + // of the database being accessed. For commands that switch the database, + // this should be set to the target database (even if the command fails). + // + // Type: string + // RequirementLevel: ConditionallyRequired (If applicable.) + // Stability: stable + // Examples: 'customers', 'main' + // Note: In some SQL databases, the database name to be used is called + // "schema name". In case there are multiple layers that could be + // considered for database name (e.g. Oracle instance name and schema + // name), the database name to be used is the more specific layer (e.g. + // Oracle schema name). + DBNameKey = attribute.Key("db.name") + + // DBStatementKey is the attribute Key conforming to the "db.statement" + // semantic conventions. It represents the database statement being + // executed. + // + // Type: string + // RequirementLevel: Recommended (Should be collected by default only if + // there is sanitization that excludes sensitive information.) + // Stability: stable + // Examples: 'SELECT * FROM wuser_table', 'SET mykey "WuValue"' + DBStatementKey = attribute.Key("db.statement") + + // DBOperationKey is the attribute Key conforming to the "db.operation" + // semantic conventions. It represents the name of the operation being + // executed, e.g. the [MongoDB command + // name](https://docs.mongodb.com/manual/reference/command/#database-operations) + // such as `findAndModify`, or the SQL keyword. + // + // Type: string + // RequirementLevel: ConditionallyRequired (If `db.statement` is not + // applicable.) + // Stability: stable + // Examples: 'findAndModify', 'HMSET', 'SELECT' + // Note: When setting this to an SQL keyword, it is not recommended to + // attempt any client-side parsing of `db.statement` just to get this + // property, but it should be set if the operation name is provided by the + // library being instrumented. If the SQL statement has an ambiguous + // operation, or performs more than one operation, this value may be + // omitted. + DBOperationKey = attribute.Key("db.operation") +) + +var ( + // Some other SQL database. Fallback only. See notes + DBSystemOtherSQL = DBSystemKey.String("other_sql") + // Microsoft SQL Server + DBSystemMSSQL = DBSystemKey.String("mssql") + // Microsoft SQL Server Compact + DBSystemMssqlcompact = DBSystemKey.String("mssqlcompact") + // MySQL + DBSystemMySQL = DBSystemKey.String("mysql") + // Oracle Database + DBSystemOracle = DBSystemKey.String("oracle") + // IBM DB2 + DBSystemDB2 = DBSystemKey.String("db2") + // PostgreSQL + DBSystemPostgreSQL = DBSystemKey.String("postgresql") + // Amazon Redshift + DBSystemRedshift = DBSystemKey.String("redshift") + // Apache Hive + DBSystemHive = DBSystemKey.String("hive") + // Cloudscape + DBSystemCloudscape = DBSystemKey.String("cloudscape") + // HyperSQL DataBase + DBSystemHSQLDB = DBSystemKey.String("hsqldb") + // Progress Database + DBSystemProgress = DBSystemKey.String("progress") + // SAP MaxDB + DBSystemMaxDB = DBSystemKey.String("maxdb") + // SAP HANA + DBSystemHanaDB = DBSystemKey.String("hanadb") + // Ingres + DBSystemIngres = DBSystemKey.String("ingres") + // FirstSQL + DBSystemFirstSQL = DBSystemKey.String("firstsql") + // EnterpriseDB + DBSystemEDB = DBSystemKey.String("edb") + // InterSystems Caché + DBSystemCache = DBSystemKey.String("cache") + // Adabas (Adaptable Database System) + DBSystemAdabas = DBSystemKey.String("adabas") + // Firebird + DBSystemFirebird = DBSystemKey.String("firebird") + // Apache Derby + DBSystemDerby = DBSystemKey.String("derby") + // FileMaker + DBSystemFilemaker = DBSystemKey.String("filemaker") + // Informix + DBSystemInformix = DBSystemKey.String("informix") + // InstantDB + DBSystemInstantDB = DBSystemKey.String("instantdb") + // InterBase + DBSystemInterbase = DBSystemKey.String("interbase") + // MariaDB + DBSystemMariaDB = DBSystemKey.String("mariadb") + // Netezza + DBSystemNetezza = DBSystemKey.String("netezza") + // Pervasive PSQL + DBSystemPervasive = DBSystemKey.String("pervasive") + // PointBase + DBSystemPointbase = DBSystemKey.String("pointbase") + // SQLite + DBSystemSqlite = DBSystemKey.String("sqlite") + // Sybase + DBSystemSybase = DBSystemKey.String("sybase") + // Teradata + DBSystemTeradata = DBSystemKey.String("teradata") + // Vertica + DBSystemVertica = DBSystemKey.String("vertica") + // H2 + DBSystemH2 = DBSystemKey.String("h2") + // ColdFusion IMQ + DBSystemColdfusion = DBSystemKey.String("coldfusion") + // Apache Cassandra + DBSystemCassandra = DBSystemKey.String("cassandra") + // Apache HBase + DBSystemHBase = DBSystemKey.String("hbase") + // MongoDB + DBSystemMongoDB = DBSystemKey.String("mongodb") + // Redis + DBSystemRedis = DBSystemKey.String("redis") + // Couchbase + DBSystemCouchbase = DBSystemKey.String("couchbase") + // CouchDB + DBSystemCouchDB = DBSystemKey.String("couchdb") + // Microsoft Azure Cosmos DB + DBSystemCosmosDB = DBSystemKey.String("cosmosdb") + // Amazon DynamoDB + DBSystemDynamoDB = DBSystemKey.String("dynamodb") + // Neo4j + DBSystemNeo4j = DBSystemKey.String("neo4j") + // Apache Geode + DBSystemGeode = DBSystemKey.String("geode") + // Elasticsearch + DBSystemElasticsearch = DBSystemKey.String("elasticsearch") + // Memcached + DBSystemMemcached = DBSystemKey.String("memcached") + // CockroachDB + DBSystemCockroachdb = DBSystemKey.String("cockroachdb") + // OpenSearch + DBSystemOpensearch = DBSystemKey.String("opensearch") + // ClickHouse + DBSystemClickhouse = DBSystemKey.String("clickhouse") + // Cloud Spanner + DBSystemSpanner = DBSystemKey.String("spanner") + // Trino + DBSystemTrino = DBSystemKey.String("trino") +) + +// DBConnectionString returns an attribute KeyValue conforming to the +// "db.connection_string" semantic conventions. It represents the connection +// string used to connect to the database. It is recommended to remove embedded +// credentials. +func DBConnectionString(val string) attribute.KeyValue { + return DBConnectionStringKey.String(val) +} + +// DBUser returns an attribute KeyValue conforming to the "db.user" semantic +// conventions. It represents the username for accessing the database. +func DBUser(val string) attribute.KeyValue { + return DBUserKey.String(val) +} + +// DBJDBCDriverClassname returns an attribute KeyValue conforming to the +// "db.jdbc.driver_classname" semantic conventions. It represents the +// fully-qualified class name of the [Java Database Connectivity +// (JDBC)](https://docs.oracle.com/javase/8/docs/technotes/guides/jdbc/) driver +// used to connect. +func DBJDBCDriverClassname(val string) attribute.KeyValue { + return DBJDBCDriverClassnameKey.String(val) +} + +// DBName returns an attribute KeyValue conforming to the "db.name" semantic +// conventions. It represents the this attribute is used to report the name of +// the database being accessed. For commands that switch the database, this +// should be set to the target database (even if the command fails). +func DBName(val string) attribute.KeyValue { + return DBNameKey.String(val) +} + +// DBStatement returns an attribute KeyValue conforming to the +// "db.statement" semantic conventions. It represents the database statement +// being executed. +func DBStatement(val string) attribute.KeyValue { + return DBStatementKey.String(val) +} + +// DBOperation returns an attribute KeyValue conforming to the +// "db.operation" semantic conventions. It represents the name of the operation +// being executed, e.g. the [MongoDB command +// name](https://docs.mongodb.com/manual/reference/command/#database-operations) +// such as `findAndModify`, or the SQL keyword. +func DBOperation(val string) attribute.KeyValue { + return DBOperationKey.String(val) +} + +// Connection-level attributes for Microsoft SQL Server +const ( + // DBMSSQLInstanceNameKey is the attribute Key conforming to the + // "db.mssql.instance_name" semantic conventions. It represents the + // Microsoft SQL Server [instance + // name](https://docs.microsoft.com/en-us/sql/connect/jdbc/building-the-connection-url?view=sql-server-ver15) + // connecting to. This name is used to determine the port of a named + // instance. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'MSSQLSERVER' + // Note: If setting a `db.mssql.instance_name`, `net.peer.port` is no + // longer required (but still recommended if non-standard). + DBMSSQLInstanceNameKey = attribute.Key("db.mssql.instance_name") +) + +// DBMSSQLInstanceName returns an attribute KeyValue conforming to the +// "db.mssql.instance_name" semantic conventions. It represents the Microsoft +// SQL Server [instance +// name](https://docs.microsoft.com/en-us/sql/connect/jdbc/building-the-connection-url?view=sql-server-ver15) +// connecting to. This name is used to determine the port of a named instance. +func DBMSSQLInstanceName(val string) attribute.KeyValue { + return DBMSSQLInstanceNameKey.String(val) +} + +// Call-level attributes for Cassandra +const ( + // DBCassandraPageSizeKey is the attribute Key conforming to the + // "db.cassandra.page_size" semantic conventions. It represents the fetch + // size used for paging, i.e. how many rows will be returned at once. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 5000 + DBCassandraPageSizeKey = attribute.Key("db.cassandra.page_size") + + // DBCassandraConsistencyLevelKey is the attribute Key conforming to the + // "db.cassandra.consistency_level" semantic conventions. It represents the + // consistency level of the query. Based on consistency values from + // [CQL](https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html). + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + DBCassandraConsistencyLevelKey = attribute.Key("db.cassandra.consistency_level") + + // DBCassandraTableKey is the attribute Key conforming to the + // "db.cassandra.table" semantic conventions. It represents the name of the + // primary table that the operation is acting upon, including the keyspace + // name (if applicable). + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'mytable' + // Note: This mirrors the db.sql.table attribute but references cassandra + // rather than sql. It is not recommended to attempt any client-side + // parsing of `db.statement` just to get this property, but it should be + // set if it is provided by the library being instrumented. If the + // operation is acting upon an anonymous table, or more than one table, + // this value MUST NOT be set. + DBCassandraTableKey = attribute.Key("db.cassandra.table") + + // DBCassandraIdempotenceKey is the attribute Key conforming to the + // "db.cassandra.idempotence" semantic conventions. It represents the + // whether or not the query is idempotent. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + DBCassandraIdempotenceKey = attribute.Key("db.cassandra.idempotence") + + // DBCassandraSpeculativeExecutionCountKey is the attribute Key conforming + // to the "db.cassandra.speculative_execution_count" semantic conventions. + // It represents the number of times a query was speculatively executed. + // Not set or `0` if the query was not executed speculatively. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 0, 2 + DBCassandraSpeculativeExecutionCountKey = attribute.Key("db.cassandra.speculative_execution_count") + + // DBCassandraCoordinatorIDKey is the attribute Key conforming to the + // "db.cassandra.coordinator.id" semantic conventions. It represents the ID + // of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'be13faa2-8574-4d71-926d-27f16cf8a7af' + DBCassandraCoordinatorIDKey = attribute.Key("db.cassandra.coordinator.id") + + // DBCassandraCoordinatorDCKey is the attribute Key conforming to the + // "db.cassandra.coordinator.dc" semantic conventions. It represents the + // data center of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'us-west-2' + DBCassandraCoordinatorDCKey = attribute.Key("db.cassandra.coordinator.dc") +) + +var ( + // all + DBCassandraConsistencyLevelAll = DBCassandraConsistencyLevelKey.String("all") + // each_quorum + DBCassandraConsistencyLevelEachQuorum = DBCassandraConsistencyLevelKey.String("each_quorum") + // quorum + DBCassandraConsistencyLevelQuorum = DBCassandraConsistencyLevelKey.String("quorum") + // local_quorum + DBCassandraConsistencyLevelLocalQuorum = DBCassandraConsistencyLevelKey.String("local_quorum") + // one + DBCassandraConsistencyLevelOne = DBCassandraConsistencyLevelKey.String("one") + // two + DBCassandraConsistencyLevelTwo = DBCassandraConsistencyLevelKey.String("two") + // three + DBCassandraConsistencyLevelThree = DBCassandraConsistencyLevelKey.String("three") + // local_one + DBCassandraConsistencyLevelLocalOne = DBCassandraConsistencyLevelKey.String("local_one") + // any + DBCassandraConsistencyLevelAny = DBCassandraConsistencyLevelKey.String("any") + // serial + DBCassandraConsistencyLevelSerial = DBCassandraConsistencyLevelKey.String("serial") + // local_serial + DBCassandraConsistencyLevelLocalSerial = DBCassandraConsistencyLevelKey.String("local_serial") +) + +// DBCassandraPageSize returns an attribute KeyValue conforming to the +// "db.cassandra.page_size" semantic conventions. It represents the fetch size +// used for paging, i.e. how many rows will be returned at once. +func DBCassandraPageSize(val int) attribute.KeyValue { + return DBCassandraPageSizeKey.Int(val) +} + +// DBCassandraTable returns an attribute KeyValue conforming to the +// "db.cassandra.table" semantic conventions. It represents the name of the +// primary table that the operation is acting upon, including the keyspace name +// (if applicable). +func DBCassandraTable(val string) attribute.KeyValue { + return DBCassandraTableKey.String(val) +} + +// DBCassandraIdempotence returns an attribute KeyValue conforming to the +// "db.cassandra.idempotence" semantic conventions. It represents the whether +// or not the query is idempotent. +func DBCassandraIdempotence(val bool) attribute.KeyValue { + return DBCassandraIdempotenceKey.Bool(val) +} + +// DBCassandraSpeculativeExecutionCount returns an attribute KeyValue +// conforming to the "db.cassandra.speculative_execution_count" semantic +// conventions. It represents the number of times a query was speculatively +// executed. Not set or `0` if the query was not executed speculatively. +func DBCassandraSpeculativeExecutionCount(val int) attribute.KeyValue { + return DBCassandraSpeculativeExecutionCountKey.Int(val) +} + +// DBCassandraCoordinatorID returns an attribute KeyValue conforming to the +// "db.cassandra.coordinator.id" semantic conventions. It represents the ID of +// the coordinating node for a query. +func DBCassandraCoordinatorID(val string) attribute.KeyValue { + return DBCassandraCoordinatorIDKey.String(val) +} + +// DBCassandraCoordinatorDC returns an attribute KeyValue conforming to the +// "db.cassandra.coordinator.dc" semantic conventions. It represents the data +// center of the coordinating node for a query. +func DBCassandraCoordinatorDC(val string) attribute.KeyValue { + return DBCassandraCoordinatorDCKey.String(val) +} + +// Call-level attributes for Redis +const ( + // DBRedisDBIndexKey is the attribute Key conforming to the + // "db.redis.database_index" semantic conventions. It represents the index + // of the database being accessed as used in the [`SELECT` + // command](https://redis.io/commands/select), provided as an integer. To + // be used instead of the generic `db.name` attribute. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If other than the default + // database (`0`).) + // Stability: stable + // Examples: 0, 1, 15 + DBRedisDBIndexKey = attribute.Key("db.redis.database_index") +) + +// DBRedisDBIndex returns an attribute KeyValue conforming to the +// "db.redis.database_index" semantic conventions. It represents the index of +// the database being accessed as used in the [`SELECT` +// command](https://redis.io/commands/select), provided as an integer. To be +// used instead of the generic `db.name` attribute. +func DBRedisDBIndex(val int) attribute.KeyValue { + return DBRedisDBIndexKey.Int(val) +} + +// Call-level attributes for MongoDB +const ( + // DBMongoDBCollectionKey is the attribute Key conforming to the + // "db.mongodb.collection" semantic conventions. It represents the + // collection being accessed within the database stated in `db.name`. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'customers', 'products' + DBMongoDBCollectionKey = attribute.Key("db.mongodb.collection") +) + +// DBMongoDBCollection returns an attribute KeyValue conforming to the +// "db.mongodb.collection" semantic conventions. It represents the collection +// being accessed within the database stated in `db.name`. +func DBMongoDBCollection(val string) attribute.KeyValue { + return DBMongoDBCollectionKey.String(val) +} + +// Call-level attributes for SQL databases +const ( + // DBSQLTableKey is the attribute Key conforming to the "db.sql.table" + // semantic conventions. It represents the name of the primary table that + // the operation is acting upon, including the database name (if + // applicable). + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'public.users', 'customers' + // Note: It is not recommended to attempt any client-side parsing of + // `db.statement` just to get this property, but it should be set if it is + // provided by the library being instrumented. If the operation is acting + // upon an anonymous table, or more than one table, this value MUST NOT be + // set. + DBSQLTableKey = attribute.Key("db.sql.table") +) + +// DBSQLTable returns an attribute KeyValue conforming to the "db.sql.table" +// semantic conventions. It represents the name of the primary table that the +// operation is acting upon, including the database name (if applicable). +func DBSQLTable(val string) attribute.KeyValue { + return DBSQLTableKey.String(val) +} + +// Call-level attributes for Cosmos DB. +const ( + // DBCosmosDBClientIDKey is the attribute Key conforming to the + // "db.cosmosdb.client_id" semantic conventions. It represents the unique + // Cosmos client instance id. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '3ba4827d-4422-483f-b59f-85b74211c11d' + DBCosmosDBClientIDKey = attribute.Key("db.cosmosdb.client_id") + + // DBCosmosDBOperationTypeKey is the attribute Key conforming to the + // "db.cosmosdb.operation_type" semantic conventions. It represents the + // cosmosDB Operation Type. + // + // Type: Enum + // RequirementLevel: ConditionallyRequired (when performing one of the + // operations in this list) + // Stability: stable + DBCosmosDBOperationTypeKey = attribute.Key("db.cosmosdb.operation_type") + + // DBCosmosDBConnectionModeKey is the attribute Key conforming to the + // "db.cosmosdb.connection_mode" semantic conventions. It represents the + // cosmos client connection mode. + // + // Type: Enum + // RequirementLevel: ConditionallyRequired (if not `direct` (or pick gw as + // default)) + // Stability: stable + DBCosmosDBConnectionModeKey = attribute.Key("db.cosmosdb.connection_mode") + + // DBCosmosDBContainerKey is the attribute Key conforming to the + // "db.cosmosdb.container" semantic conventions. It represents the cosmos + // DB container name. + // + // Type: string + // RequirementLevel: ConditionallyRequired (if available) + // Stability: stable + // Examples: 'anystring' + DBCosmosDBContainerKey = attribute.Key("db.cosmosdb.container") + + // DBCosmosDBRequestContentLengthKey is the attribute Key conforming to the + // "db.cosmosdb.request_content_length" semantic conventions. It represents + // the request payload size in bytes + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + DBCosmosDBRequestContentLengthKey = attribute.Key("db.cosmosdb.request_content_length") + + // DBCosmosDBStatusCodeKey is the attribute Key conforming to the + // "db.cosmosdb.status_code" semantic conventions. It represents the cosmos + // DB status code. + // + // Type: int + // RequirementLevel: ConditionallyRequired (if response was received) + // Stability: stable + // Examples: 200, 201 + DBCosmosDBStatusCodeKey = attribute.Key("db.cosmosdb.status_code") + + // DBCosmosDBSubStatusCodeKey is the attribute Key conforming to the + // "db.cosmosdb.sub_status_code" semantic conventions. It represents the + // cosmos DB sub status code. + // + // Type: int + // RequirementLevel: ConditionallyRequired (when response was received and + // contained sub-code.) + // Stability: stable + // Examples: 1000, 1002 + DBCosmosDBSubStatusCodeKey = attribute.Key("db.cosmosdb.sub_status_code") + + // DBCosmosDBRequestChargeKey is the attribute Key conforming to the + // "db.cosmosdb.request_charge" semantic conventions. It represents the rU + // consumed for that operation + // + // Type: double + // RequirementLevel: ConditionallyRequired (when available) + // Stability: stable + // Examples: 46.18, 1.0 + DBCosmosDBRequestChargeKey = attribute.Key("db.cosmosdb.request_charge") +) + +var ( + // invalid + DBCosmosDBOperationTypeInvalid = DBCosmosDBOperationTypeKey.String("Invalid") + // create + DBCosmosDBOperationTypeCreate = DBCosmosDBOperationTypeKey.String("Create") + // patch + DBCosmosDBOperationTypePatch = DBCosmosDBOperationTypeKey.String("Patch") + // read + DBCosmosDBOperationTypeRead = DBCosmosDBOperationTypeKey.String("Read") + // read_feed + DBCosmosDBOperationTypeReadFeed = DBCosmosDBOperationTypeKey.String("ReadFeed") + // delete + DBCosmosDBOperationTypeDelete = DBCosmosDBOperationTypeKey.String("Delete") + // replace + DBCosmosDBOperationTypeReplace = DBCosmosDBOperationTypeKey.String("Replace") + // execute + DBCosmosDBOperationTypeExecute = DBCosmosDBOperationTypeKey.String("Execute") + // query + DBCosmosDBOperationTypeQuery = DBCosmosDBOperationTypeKey.String("Query") + // head + DBCosmosDBOperationTypeHead = DBCosmosDBOperationTypeKey.String("Head") + // head_feed + DBCosmosDBOperationTypeHeadFeed = DBCosmosDBOperationTypeKey.String("HeadFeed") + // upsert + DBCosmosDBOperationTypeUpsert = DBCosmosDBOperationTypeKey.String("Upsert") + // batch + DBCosmosDBOperationTypeBatch = DBCosmosDBOperationTypeKey.String("Batch") + // query_plan + DBCosmosDBOperationTypeQueryPlan = DBCosmosDBOperationTypeKey.String("QueryPlan") + // execute_javascript + DBCosmosDBOperationTypeExecuteJavascript = DBCosmosDBOperationTypeKey.String("ExecuteJavaScript") +) + +var ( + // Gateway (HTTP) connections mode + DBCosmosDBConnectionModeGateway = DBCosmosDBConnectionModeKey.String("gateway") + // Direct connection + DBCosmosDBConnectionModeDirect = DBCosmosDBConnectionModeKey.String("direct") +) + +// DBCosmosDBClientID returns an attribute KeyValue conforming to the +// "db.cosmosdb.client_id" semantic conventions. It represents the unique +// Cosmos client instance id. +func DBCosmosDBClientID(val string) attribute.KeyValue { + return DBCosmosDBClientIDKey.String(val) +} + +// DBCosmosDBContainer returns an attribute KeyValue conforming to the +// "db.cosmosdb.container" semantic conventions. It represents the cosmos DB +// container name. +func DBCosmosDBContainer(val string) attribute.KeyValue { + return DBCosmosDBContainerKey.String(val) +} + +// DBCosmosDBRequestContentLength returns an attribute KeyValue conforming +// to the "db.cosmosdb.request_content_length" semantic conventions. It +// represents the request payload size in bytes +func DBCosmosDBRequestContentLength(val int) attribute.KeyValue { + return DBCosmosDBRequestContentLengthKey.Int(val) +} + +// DBCosmosDBStatusCode returns an attribute KeyValue conforming to the +// "db.cosmosdb.status_code" semantic conventions. It represents the cosmos DB +// status code. +func DBCosmosDBStatusCode(val int) attribute.KeyValue { + return DBCosmosDBStatusCodeKey.Int(val) +} + +// DBCosmosDBSubStatusCode returns an attribute KeyValue conforming to the +// "db.cosmosdb.sub_status_code" semantic conventions. It represents the cosmos +// DB sub status code. +func DBCosmosDBSubStatusCode(val int) attribute.KeyValue { + return DBCosmosDBSubStatusCodeKey.Int(val) +} + +// DBCosmosDBRequestCharge returns an attribute KeyValue conforming to the +// "db.cosmosdb.request_charge" semantic conventions. It represents the rU +// consumed for that operation +func DBCosmosDBRequestCharge(val float64) attribute.KeyValue { + return DBCosmosDBRequestChargeKey.Float64(val) +} + +// Span attributes used by non-OTLP exporters to represent OpenTelemetry Span's +// concepts. +const ( + // OTelStatusCodeKey is the attribute Key conforming to the + // "otel.status_code" semantic conventions. It represents the name of the + // code, either "OK" or "ERROR". MUST NOT be set if the status code is + // UNSET. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + OTelStatusCodeKey = attribute.Key("otel.status_code") + + // OTelStatusDescriptionKey is the attribute Key conforming to the + // "otel.status_description" semantic conventions. It represents the + // description of the Status if it has a value, otherwise not set. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'resource not found' + OTelStatusDescriptionKey = attribute.Key("otel.status_description") +) + +var ( + // The operation has been validated by an Application developer or Operator to have completed successfully + OTelStatusCodeOk = OTelStatusCodeKey.String("OK") + // The operation contains an error + OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") +) + +// OTelStatusDescription returns an attribute KeyValue conforming to the +// "otel.status_description" semantic conventions. It represents the +// description of the Status if it has a value, otherwise not set. +func OTelStatusDescription(val string) attribute.KeyValue { + return OTelStatusDescriptionKey.String(val) +} + +// This semantic convention describes an instance of a function that runs +// without provisioning or managing of servers (also known as serverless +// functions or Function as a Service (FaaS)) with spans. +const ( + // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" + // semantic conventions. It represents the type of the trigger which caused + // this function invocation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Note: For the server/consumer span on the incoming side, + // `faas.trigger` MUST be set. + // + // Clients invoking FaaS instances usually cannot set `faas.trigger`, + // since they would typically need to look in the payload to determine + // the event type. If clients set it, it should be the same as the + // trigger that corresponding incoming would have (i.e., this has + // nothing to do with the underlying transport used to make the API + // call to invoke the lambda, which is often HTTP). + FaaSTriggerKey = attribute.Key("faas.trigger") + + // FaaSInvocationIDKey is the attribute Key conforming to the + // "faas.invocation_id" semantic conventions. It represents the invocation + // ID of the current function invocation. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'af9d5aa4-a685-4c5f-a22b-444f80b3cc28' + FaaSInvocationIDKey = attribute.Key("faas.invocation_id") +) + +var ( + // A response to some data source operation such as a database or filesystem read/write + FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") + // To provide an answer to an inbound HTTP request + FaaSTriggerHTTP = FaaSTriggerKey.String("http") + // A function is set to be executed when messages are sent to a messaging system + FaaSTriggerPubsub = FaaSTriggerKey.String("pubsub") + // A function is scheduled to be executed regularly + FaaSTriggerTimer = FaaSTriggerKey.String("timer") + // If none of the others apply + FaaSTriggerOther = FaaSTriggerKey.String("other") +) + +// FaaSInvocationID returns an attribute KeyValue conforming to the +// "faas.invocation_id" semantic conventions. It represents the invocation ID +// of the current function invocation. +func FaaSInvocationID(val string) attribute.KeyValue { + return FaaSInvocationIDKey.String(val) +} + +// Semantic Convention for FaaS triggered as a response to some data source +// operation such as a database or filesystem read/write. +const ( + // FaaSDocumentCollectionKey is the attribute Key conforming to the + // "faas.document.collection" semantic conventions. It represents the name + // of the source on which the triggering operation was performed. For + // example, in Cloud Storage or S3 corresponds to the bucket name, and in + // Cosmos DB to the database name. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'myBucketName', 'myDBName' + FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") + + // FaaSDocumentOperationKey is the attribute Key conforming to the + // "faas.document.operation" semantic conventions. It represents the + // describes the type of the operation that was performed on the data. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + FaaSDocumentOperationKey = attribute.Key("faas.document.operation") + + // FaaSDocumentTimeKey is the attribute Key conforming to the + // "faas.document.time" semantic conventions. It represents a string + // containing the time when the data was accessed in the [ISO + // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format + // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2020-01-23T13:47:06Z' + FaaSDocumentTimeKey = attribute.Key("faas.document.time") + + // FaaSDocumentNameKey is the attribute Key conforming to the + // "faas.document.name" semantic conventions. It represents the document + // name/table subjected to the operation. For example, in Cloud Storage or + // S3 is the name of the file, and in Cosmos DB the table name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'myFile.txt', 'myTableName' + FaaSDocumentNameKey = attribute.Key("faas.document.name") +) + +var ( + // When a new object is created + FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") + // When an object is modified + FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") + // When an object is deleted + FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") +) + +// FaaSDocumentCollection returns an attribute KeyValue conforming to the +// "faas.document.collection" semantic conventions. It represents the name of +// the source on which the triggering operation was performed. For example, in +// Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the +// database name. +func FaaSDocumentCollection(val string) attribute.KeyValue { + return FaaSDocumentCollectionKey.String(val) +} + +// FaaSDocumentTime returns an attribute KeyValue conforming to the +// "faas.document.time" semantic conventions. It represents a string containing +// the time when the data was accessed in the [ISO +// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format +// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). +func FaaSDocumentTime(val string) attribute.KeyValue { + return FaaSDocumentTimeKey.String(val) +} + +// FaaSDocumentName returns an attribute KeyValue conforming to the +// "faas.document.name" semantic conventions. It represents the document +// name/table subjected to the operation. For example, in Cloud Storage or S3 +// is the name of the file, and in Cosmos DB the table name. +func FaaSDocumentName(val string) attribute.KeyValue { + return FaaSDocumentNameKey.String(val) +} + +// Semantic Convention for FaaS scheduled to be executed regularly. +const ( + // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic + // conventions. It represents a string containing the function invocation + // time in the [ISO + // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format + // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2020-01-23T13:47:06Z' + FaaSTimeKey = attribute.Key("faas.time") + + // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic + // conventions. It represents a string containing the schedule period as + // [Cron + // Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '0/5 * * * ? *' + FaaSCronKey = attribute.Key("faas.cron") +) + +// FaaSTime returns an attribute KeyValue conforming to the "faas.time" +// semantic conventions. It represents a string containing the function +// invocation time in the [ISO +// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format +// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). +func FaaSTime(val string) attribute.KeyValue { + return FaaSTimeKey.String(val) +} + +// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" +// semantic conventions. It represents a string containing the schedule period +// as [Cron +// Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). +func FaaSCron(val string) attribute.KeyValue { + return FaaSCronKey.String(val) +} + +// Contains additional attributes for incoming FaaS spans. +const ( + // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" + // semantic conventions. It represents a boolean that is true if the + // serverless function is executed for the first time (aka cold-start). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + FaaSColdstartKey = attribute.Key("faas.coldstart") +) + +// FaaSColdstart returns an attribute KeyValue conforming to the +// "faas.coldstart" semantic conventions. It represents a boolean that is true +// if the serverless function is executed for the first time (aka cold-start). +func FaaSColdstart(val bool) attribute.KeyValue { + return FaaSColdstartKey.Bool(val) +} + +// Contains additional attributes for outgoing FaaS spans. +const ( + // FaaSInvokedNameKey is the attribute Key conforming to the + // "faas.invoked_name" semantic conventions. It represents the name of the + // invoked function. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'my-function' + // Note: SHOULD be equal to the `faas.name` resource attribute of the + // invoked function. + FaaSInvokedNameKey = attribute.Key("faas.invoked_name") + + // FaaSInvokedProviderKey is the attribute Key conforming to the + // "faas.invoked_provider" semantic conventions. It represents the cloud + // provider of the invoked function. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + // Note: SHOULD be equal to the `cloud.provider` resource attribute of the + // invoked function. + FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") + + // FaaSInvokedRegionKey is the attribute Key conforming to the + // "faas.invoked_region" semantic conventions. It represents the cloud + // region of the invoked function. + // + // Type: string + // RequirementLevel: ConditionallyRequired (For some cloud providers, like + // AWS or GCP, the region in which a function is hosted is essential to + // uniquely identify the function and also part of its endpoint. Since it's + // part of the endpoint being called, the region is always known to + // clients. In these cases, `faas.invoked_region` MUST be set accordingly. + // If the region is unknown to the client or not required for identifying + // the invoked function, setting `faas.invoked_region` is optional.) + // Stability: stable + // Examples: 'eu-central-1' + // Note: SHOULD be equal to the `cloud.region` resource attribute of the + // invoked function. + FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") +) + +var ( + // Alibaba Cloud + FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") + // Amazon Web Services + FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") + // Microsoft Azure + FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") + // Google Cloud Platform + FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") + // Tencent Cloud + FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") +) + +// FaaSInvokedName returns an attribute KeyValue conforming to the +// "faas.invoked_name" semantic conventions. It represents the name of the +// invoked function. +func FaaSInvokedName(val string) attribute.KeyValue { + return FaaSInvokedNameKey.String(val) +} + +// FaaSInvokedRegion returns an attribute KeyValue conforming to the +// "faas.invoked_region" semantic conventions. It represents the cloud region +// of the invoked function. +func FaaSInvokedRegion(val string) attribute.KeyValue { + return FaaSInvokedRegionKey.String(val) +} + +// Operations that access some remote service. +const ( + // PeerServiceKey is the attribute Key conforming to the "peer.service" + // semantic conventions. It represents the + // [`service.name`](../../resource/semantic_conventions/README.md#service) + // of the remote service. SHOULD be equal to the actual `service.name` + // resource attribute of the remote service if any. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'AuthTokenCache' + PeerServiceKey = attribute.Key("peer.service") +) + +// PeerService returns an attribute KeyValue conforming to the +// "peer.service" semantic conventions. It represents the +// [`service.name`](../../resource/semantic_conventions/README.md#service) of +// the remote service. SHOULD be equal to the actual `service.name` resource +// attribute of the remote service if any. +func PeerService(val string) attribute.KeyValue { + return PeerServiceKey.String(val) +} + +// These attributes may be used for any operation with an authenticated and/or +// authorized enduser. +const ( + // EnduserIDKey is the attribute Key conforming to the "enduser.id" + // semantic conventions. It represents the username or client_id extracted + // from the access token or + // [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header + // in the inbound request from outside the system. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'username' + EnduserIDKey = attribute.Key("enduser.id") + + // EnduserRoleKey is the attribute Key conforming to the "enduser.role" + // semantic conventions. It represents the actual/assumed role the client + // is making the request under extracted from token or application security + // context. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'admin' + EnduserRoleKey = attribute.Key("enduser.role") + + // EnduserScopeKey is the attribute Key conforming to the "enduser.scope" + // semantic conventions. It represents the scopes or granted authorities + // the client currently possesses extracted from token or application + // security context. The value would come from the scope associated with an + // [OAuth 2.0 Access + // Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute + // value in a [SAML 2.0 + // Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'read:message, write:files' + EnduserScopeKey = attribute.Key("enduser.scope") +) + +// EnduserID returns an attribute KeyValue conforming to the "enduser.id" +// semantic conventions. It represents the username or client_id extracted from +// the access token or +// [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header in +// the inbound request from outside the system. +func EnduserID(val string) attribute.KeyValue { + return EnduserIDKey.String(val) +} + +// EnduserRole returns an attribute KeyValue conforming to the +// "enduser.role" semantic conventions. It represents the actual/assumed role +// the client is making the request under extracted from token or application +// security context. +func EnduserRole(val string) attribute.KeyValue { + return EnduserRoleKey.String(val) +} + +// EnduserScope returns an attribute KeyValue conforming to the +// "enduser.scope" semantic conventions. It represents the scopes or granted +// authorities the client currently possesses extracted from token or +// application security context. The value would come from the scope associated +// with an [OAuth 2.0 Access +// Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute +// value in a [SAML 2.0 +// Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). +func EnduserScope(val string) attribute.KeyValue { + return EnduserScopeKey.String(val) +} + +// These attributes may be used for any operation to store information about a +// thread that started a span. +const ( + // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic + // conventions. It represents the current "managed" thread ID (as opposed + // to OS thread ID). + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 42 + ThreadIDKey = attribute.Key("thread.id") + + // ThreadNameKey is the attribute Key conforming to the "thread.name" + // semantic conventions. It represents the current thread name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'main' + ThreadNameKey = attribute.Key("thread.name") +) + +// ThreadID returns an attribute KeyValue conforming to the "thread.id" +// semantic conventions. It represents the current "managed" thread ID (as +// opposed to OS thread ID). +func ThreadID(val int) attribute.KeyValue { + return ThreadIDKey.Int(val) +} + +// ThreadName returns an attribute KeyValue conforming to the "thread.name" +// semantic conventions. It represents the current thread name. +func ThreadName(val string) attribute.KeyValue { + return ThreadNameKey.String(val) +} + +// These attributes allow to report this unit of code and therefore to provide +// more context about the span. +const ( + // CodeFunctionKey is the attribute Key conforming to the "code.function" + // semantic conventions. It represents the method or function name, or + // equivalent (usually rightmost part of the code unit's name). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'serveRequest' + CodeFunctionKey = attribute.Key("code.function") + + // CodeNamespaceKey is the attribute Key conforming to the "code.namespace" + // semantic conventions. It represents the "namespace" within which + // `code.function` is defined. Usually the qualified class or module name, + // such that `code.namespace` + some separator + `code.function` form a + // unique identifier for the code unit. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'com.example.MyHTTPService' + CodeNamespaceKey = attribute.Key("code.namespace") + + // CodeFilepathKey is the attribute Key conforming to the "code.filepath" + // semantic conventions. It represents the source code file name that + // identifies the code unit as uniquely as possible (preferably an absolute + // file path). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '/usr/local/MyApplication/content_root/app/index.php' + CodeFilepathKey = attribute.Key("code.filepath") + + // CodeLineNumberKey is the attribute Key conforming to the "code.lineno" + // semantic conventions. It represents the line number in `code.filepath` + // best representing the operation. It SHOULD point within the code unit + // named in `code.function`. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 42 + CodeLineNumberKey = attribute.Key("code.lineno") + + // CodeColumnKey is the attribute Key conforming to the "code.column" + // semantic conventions. It represents the column number in `code.filepath` + // best representing the operation. It SHOULD point within the code unit + // named in `code.function`. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 16 + CodeColumnKey = attribute.Key("code.column") +) + +// CodeFunction returns an attribute KeyValue conforming to the +// "code.function" semantic conventions. It represents the method or function +// name, or equivalent (usually rightmost part of the code unit's name). +func CodeFunction(val string) attribute.KeyValue { + return CodeFunctionKey.String(val) +} + +// CodeNamespace returns an attribute KeyValue conforming to the +// "code.namespace" semantic conventions. It represents the "namespace" within +// which `code.function` is defined. Usually the qualified class or module +// name, such that `code.namespace` + some separator + `code.function` form a +// unique identifier for the code unit. +func CodeNamespace(val string) attribute.KeyValue { + return CodeNamespaceKey.String(val) +} + +// CodeFilepath returns an attribute KeyValue conforming to the +// "code.filepath" semantic conventions. It represents the source code file +// name that identifies the code unit as uniquely as possible (preferably an +// absolute file path). +func CodeFilepath(val string) attribute.KeyValue { + return CodeFilepathKey.String(val) +} + +// CodeLineNumber returns an attribute KeyValue conforming to the "code.lineno" +// semantic conventions. It represents the line number in `code.filepath` best +// representing the operation. It SHOULD point within the code unit named in +// `code.function`. +func CodeLineNumber(val int) attribute.KeyValue { + return CodeLineNumberKey.Int(val) +} + +// CodeColumn returns an attribute KeyValue conforming to the "code.column" +// semantic conventions. It represents the column number in `code.filepath` +// best representing the operation. It SHOULD point within the code unit named +// in `code.function`. +func CodeColumn(val int) attribute.KeyValue { + return CodeColumnKey.Int(val) +} + +// Semantic Convention for HTTP Client +const ( + // HTTPURLKey is the attribute Key conforming to the "http.url" semantic + // conventions. It represents the full HTTP request URL in the form + // `scheme://host[:port]/path?query[#fragment]`. Usually the fragment is + // not transmitted over HTTP, but if it is known, it should be included + // nevertheless. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'https://www.foo.bar/search?q=OpenTelemetry#SemConv' + // Note: `http.url` MUST NOT contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. In such case the + // attribute's value should be `https://www.example.com/`. + HTTPURLKey = attribute.Key("http.url") + + // HTTPResendCountKey is the attribute Key conforming to the + // "http.resend_count" semantic conventions. It represents the ordinal + // number of request resending attempt (for any reason, including + // redirects). + // + // Type: int + // RequirementLevel: Recommended (if and only if request was retried.) + // Stability: stable + // Examples: 3 + // Note: The resend count SHOULD be updated each time an HTTP request gets + // resent by the client, regardless of what was the cause of the resending + // (e.g. redirection, authorization failure, 503 Server Unavailable, + // network issues, or any other). + HTTPResendCountKey = attribute.Key("http.resend_count") +) + +// HTTPURL returns an attribute KeyValue conforming to the "http.url" +// semantic conventions. It represents the full HTTP request URL in the form +// `scheme://host[:port]/path?query[#fragment]`. Usually the fragment is not +// transmitted over HTTP, but if it is known, it should be included +// nevertheless. +func HTTPURL(val string) attribute.KeyValue { + return HTTPURLKey.String(val) +} + +// HTTPResendCount returns an attribute KeyValue conforming to the +// "http.resend_count" semantic conventions. It represents the ordinal number +// of request resending attempt (for any reason, including redirects). +func HTTPResendCount(val int) attribute.KeyValue { + return HTTPResendCountKey.Int(val) +} + +// Semantic Convention for HTTP Server +const ( + // HTTPTargetKey is the attribute Key conforming to the "http.target" + // semantic conventions. It represents the full request target as passed in + // a HTTP request line or equivalent. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: '/users/12314/?q=ddds' + HTTPTargetKey = attribute.Key("http.target") + + // HTTPClientIPKey is the attribute Key conforming to the "http.client_ip" + // semantic conventions. It represents the IP address of the original + // client behind all proxies, if known (e.g. from + // [X-Forwarded-For](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/X-Forwarded-For)). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '83.164.160.102' + // Note: This is not necessarily the same as `net.sock.peer.addr`, which + // would + // identify the network-level peer, which may be a proxy. + // + // This attribute should be set when a source of information different + // from the one used for `net.sock.peer.addr`, is available even if that + // other + // source just confirms the same value as `net.sock.peer.addr`. + // Rationale: For `net.sock.peer.addr`, one typically does not know if it + // comes from a proxy, reverse proxy, or the actual client. Setting + // `http.client_ip` when it's the same as `net.sock.peer.addr` means that + // one is at least somewhat confident that the address is not that of + // the closest proxy. + HTTPClientIPKey = attribute.Key("http.client_ip") +) + +// HTTPTarget returns an attribute KeyValue conforming to the "http.target" +// semantic conventions. It represents the full request target as passed in a +// HTTP request line or equivalent. +func HTTPTarget(val string) attribute.KeyValue { + return HTTPTargetKey.String(val) +} + +// HTTPClientIP returns an attribute KeyValue conforming to the +// "http.client_ip" semantic conventions. It represents the IP address of the +// original client behind all proxies, if known (e.g. from +// [X-Forwarded-For](https://developer.mozilla.org/en-US/docs/Web/HTTP/Headers/X-Forwarded-For)). +func HTTPClientIP(val string) attribute.KeyValue { + return HTTPClientIPKey.String(val) +} + +// The `aws` conventions apply to operations using the AWS SDK. They map +// request or response parameters in AWS SDK API calls to attributes on a Span. +// The conventions have been collected over time based on feedback from AWS +// users of tracing and will continue to evolve as new interesting conventions +// are found. +// Some descriptions are also provided for populating general OpenTelemetry +// semantic conventions based on these APIs. +const ( + // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" + // semantic conventions. It represents the AWS request ID as returned in + // the response headers `x-amz-request-id` or `x-amz-requestid`. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '79b9da39-b7ae-508a-a6bc-864b2829c622', 'C9ER4AJX75574TDJ' + AWSRequestIDKey = attribute.Key("aws.request_id") +) + +// AWSRequestID returns an attribute KeyValue conforming to the +// "aws.request_id" semantic conventions. It represents the AWS request ID as +// returned in the response headers `x-amz-request-id` or `x-amz-requestid`. +func AWSRequestID(val string) attribute.KeyValue { + return AWSRequestIDKey.String(val) +} + +// Attributes that exist for multiple DynamoDB request types. +const ( + // AWSDynamoDBTableNamesKey is the attribute Key conforming to the + // "aws.dynamodb.table_names" semantic conventions. It represents the keys + // in the `RequestItems` object field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Users', 'Cats' + AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") + + // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the + // JSON-serialized value of each item in the `ConsumedCapacity` response + // field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "CapacityUnits": number, "GlobalSecondaryIndexes": { + // "string" : { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }, "LocalSecondaryIndexes": { "string" : + // { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }, "ReadCapacityUnits": number, "Table": + // { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number }, "TableName": "string", + // "WriteCapacityUnits": number }' + AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") + + // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to + // the "aws.dynamodb.item_collection_metrics" semantic conventions. It + // represents the JSON-serialized value of the `ItemCollectionMetrics` + // response field. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "string" : [ { "ItemCollectionKey": { "string" : { "B": + // blob, "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { + // "string" : "AttributeValue" }, "N": "string", "NS": [ "string" ], + // "NULL": boolean, "S": "string", "SS": [ "string" ] } }, + // "SizeEstimateRangeGB": [ number ] } ] }' + AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") + + // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to + // the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It + // represents the value of the `ProvisionedThroughput.ReadCapacityUnits` + // request parameter. + // + // Type: double + // RequirementLevel: Optional + // Stability: stable + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") + + // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming + // to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. + // It represents the value of the + // `ProvisionedThroughput.WriteCapacityUnits` request parameter. + // + // Type: double + // RequirementLevel: Optional + // Stability: stable + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") + + // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the + // "aws.dynamodb.consistent_read" semantic conventions. It represents the + // value of the `ConsistentRead` request parameter. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") + + // AWSDynamoDBProjectionKey is the attribute Key conforming to the + // "aws.dynamodb.projection" semantic conventions. It represents the value + // of the `ProjectionExpression` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Title', 'Title, Price, Color', 'Title, Description, + // RelatedItems, ProductReviews' + AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") + + // AWSDynamoDBLimitKey is the attribute Key conforming to the + // "aws.dynamodb.limit" semantic conventions. It represents the value of + // the `Limit` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 10 + AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") + + // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the + // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the + // value of the `AttributesToGet` request parameter. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: 'lives', 'id' + AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") + + // AWSDynamoDBIndexNameKey is the attribute Key conforming to the + // "aws.dynamodb.index_name" semantic conventions. It represents the value + // of the `IndexName` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'name_to_group' + AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") + + // AWSDynamoDBSelectKey is the attribute Key conforming to the + // "aws.dynamodb.select" semantic conventions. It represents the value of + // the `Select` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'ALL_ATTRIBUTES', 'COUNT' + AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") +) + +// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_names" semantic conventions. It represents the keys in +// the `RequestItems` object field. +func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { + return AWSDynamoDBTableNamesKey.StringSlice(val) +} + +// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to +// the "aws.dynamodb.consumed_capacity" semantic conventions. It represents the +// JSON-serialized value of each item in the `ConsumedCapacity` response field. +func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { + return AWSDynamoDBConsumedCapacityKey.StringSlice(val) +} + +// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming +// to the "aws.dynamodb.item_collection_metrics" semantic conventions. It +// represents the JSON-serialized value of the `ItemCollectionMetrics` response +// field. +func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { + return AWSDynamoDBItemCollectionMetricsKey.String(val) +} + +// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue +// conforming to the "aws.dynamodb.provisioned_read_capacity" semantic +// conventions. It represents the value of the +// `ProvisionedThroughput.ReadCapacityUnits` request parameter. +func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) +} + +// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue +// conforming to the "aws.dynamodb.provisioned_write_capacity" semantic +// conventions. It represents the value of the +// `ProvisionedThroughput.WriteCapacityUnits` request parameter. +func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) +} + +// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the +// "aws.dynamodb.consistent_read" semantic conventions. It represents the value +// of the `ConsistentRead` request parameter. +func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { + return AWSDynamoDBConsistentReadKey.Bool(val) +} + +// AWSDynamoDBProjection returns an attribute KeyValue conforming to the +// "aws.dynamodb.projection" semantic conventions. It represents the value of +// the `ProjectionExpression` request parameter. +func AWSDynamoDBProjection(val string) attribute.KeyValue { + return AWSDynamoDBProjectionKey.String(val) +} + +// AWSDynamoDBLimit returns an attribute KeyValue conforming to the +// "aws.dynamodb.limit" semantic conventions. It represents the value of the +// `Limit` request parameter. +func AWSDynamoDBLimit(val int) attribute.KeyValue { + return AWSDynamoDBLimitKey.Int(val) +} + +// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to +// the "aws.dynamodb.attributes_to_get" semantic conventions. It represents the +// value of the `AttributesToGet` request parameter. +func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributesToGetKey.StringSlice(val) +} + +// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the +// "aws.dynamodb.index_name" semantic conventions. It represents the value of +// the `IndexName` request parameter. +func AWSDynamoDBIndexName(val string) attribute.KeyValue { + return AWSDynamoDBIndexNameKey.String(val) +} + +// AWSDynamoDBSelect returns an attribute KeyValue conforming to the +// "aws.dynamodb.select" semantic conventions. It represents the value of the +// `Select` request parameter. +func AWSDynamoDBSelect(val string) attribute.KeyValue { + return AWSDynamoDBSelectKey.String(val) +} + +// DynamoDB.CreateTable +const ( + // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to + // the "aws.dynamodb.global_secondary_indexes" semantic conventions. It + // represents the JSON-serialized value of each item of the + // `GlobalSecondaryIndexes` request field + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "IndexName": "string", "KeySchema": [ { "AttributeName": + // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ + // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }' + AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") + + // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to + // the "aws.dynamodb.local_secondary_indexes" semantic conventions. It + // represents the JSON-serialized value of each item of the + // `LocalSecondaryIndexes` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "IndexARN": "string", "IndexName": "string", + // "IndexSizeBytes": number, "ItemCount": number, "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" } }' + AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") +) + +// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_indexes" semantic +// conventions. It represents the JSON-serialized value of each item of the +// `GlobalSecondaryIndexes` request field +func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming +// to the "aws.dynamodb.local_secondary_indexes" semantic conventions. It +// represents the JSON-serialized value of each item of the +// `LocalSecondaryIndexes` request field. +func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) +} + +// DynamoDB.ListTables +const ( + // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the + // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents + // the value of the `ExclusiveStartTableName` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Users', 'CatsTable' + AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") + + // AWSDynamoDBTableCountKey is the attribute Key conforming to the + // "aws.dynamodb.table_count" semantic conventions. It represents the the + // number of items in the `TableNames` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 20 + AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") +) + +// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming +// to the "aws.dynamodb.exclusive_start_table" semantic conventions. It +// represents the value of the `ExclusiveStartTableName` request parameter. +func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { + return AWSDynamoDBExclusiveStartTableKey.String(val) +} + +// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_count" semantic conventions. It represents the the +// number of items in the `TableNames` response parameter. +func AWSDynamoDBTableCount(val int) attribute.KeyValue { + return AWSDynamoDBTableCountKey.Int(val) +} + +// DynamoDB.Query +const ( + // AWSDynamoDBScanForwardKey is the attribute Key conforming to the + // "aws.dynamodb.scan_forward" semantic conventions. It represents the + // value of the `ScanIndexForward` request parameter. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") +) + +// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the +// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of +// the `ScanIndexForward` request parameter. +func AWSDynamoDBScanForward(val bool) attribute.KeyValue { + return AWSDynamoDBScanForwardKey.Bool(val) +} + +// DynamoDB.Scan +const ( + // AWSDynamoDBSegmentKey is the attribute Key conforming to the + // "aws.dynamodb.segment" semantic conventions. It represents the value of + // the `Segment` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 10 + AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") + + // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the + // "aws.dynamodb.total_segments" semantic conventions. It represents the + // value of the `TotalSegments` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 100 + AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") + + // AWSDynamoDBCountKey is the attribute Key conforming to the + // "aws.dynamodb.count" semantic conventions. It represents the value of + // the `Count` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 10 + AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") + + // AWSDynamoDBScannedCountKey is the attribute Key conforming to the + // "aws.dynamodb.scanned_count" semantic conventions. It represents the + // value of the `ScannedCount` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 50 + AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") +) + +// AWSDynamoDBSegment returns an attribute KeyValue conforming to the +// "aws.dynamodb.segment" semantic conventions. It represents the value of the +// `Segment` request parameter. +func AWSDynamoDBSegment(val int) attribute.KeyValue { + return AWSDynamoDBSegmentKey.Int(val) +} + +// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the +// "aws.dynamodb.total_segments" semantic conventions. It represents the value +// of the `TotalSegments` request parameter. +func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { + return AWSDynamoDBTotalSegmentsKey.Int(val) +} + +// AWSDynamoDBCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.count" semantic conventions. It represents the value of the +// `Count` response parameter. +func AWSDynamoDBCount(val int) attribute.KeyValue { + return AWSDynamoDBCountKey.Int(val) +} + +// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.scanned_count" semantic conventions. It represents the value +// of the `ScannedCount` response parameter. +func AWSDynamoDBScannedCount(val int) attribute.KeyValue { + return AWSDynamoDBScannedCountKey.Int(val) +} + +// DynamoDB.UpdateTable +const ( + // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to + // the "aws.dynamodb.attribute_definitions" semantic conventions. It + // represents the JSON-serialized value of each item in the + // `AttributeDefinitions` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "AttributeName": "string", "AttributeType": "string" }' + AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") + + // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key + // conforming to the "aws.dynamodb.global_secondary_index_updates" semantic + // conventions. It represents the JSON-serialized value of each item in the + // the `GlobalSecondaryIndexUpdates` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: stable + // Examples: '{ "Create": { "IndexName": "string", "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, + // "ProvisionedThroughput": { "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }' + AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") +) + +// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming +// to the "aws.dynamodb.attribute_definitions" semantic conventions. It +// represents the JSON-serialized value of each item in the +// `AttributeDefinitions` request field. +func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) +} + +// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic +// conventions. It represents the JSON-serialized value of each item in the the +// `GlobalSecondaryIndexUpdates` request field. +func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) +} + +// Attributes that exist for S3 request types. +const ( + // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" + // semantic conventions. It represents the S3 bucket name the request + // refers to. Corresponds to the `--bucket` parameter of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // operations. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'some-bucket-name' + // Note: The `bucket` attribute is applicable to all S3 operations that + // reference a bucket, i.e. that require the bucket name as a mandatory + // parameter. + // This applies to almost all S3 operations except `list-buckets`. + AWSS3BucketKey = attribute.Key("aws.s3.bucket") + + // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic + // conventions. It represents the S3 object key the request refers to. + // Corresponds to the `--key` parameter of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // operations. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'someFile.yml' + // Note: The `key` attribute is applicable to all object-related S3 + // operations, i.e. that require the object key as a mandatory parameter. + // This applies in particular to the following operations: + // + // - + // [copy-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html) + // - + // [delete-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html) + // - + // [get-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html) + // - + // [head-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html) + // - + // [put-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html) + // - + // [restore-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html) + // - + // [select-object-content](https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html) + // - + // [abort-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html) + // - + // [complete-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html) + // - + // [create-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html) + // - + // [list-parts](https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html) + // - + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3KeyKey = attribute.Key("aws.s3.key") + + // AWSS3CopySourceKey is the attribute Key conforming to the + // "aws.s3.copy_source" semantic conventions. It represents the source + // object (in the form `bucket`/`key`) for the copy operation. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'someFile.yml' + // Note: The `copy_source` attribute applies to S3 copy operations and + // corresponds to the `--copy-source` parameter + // of the [copy-object operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html). + // This applies in particular to the following operations: + // + // - + // [copy-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") + + // AWSS3UploadIDKey is the attribute Key conforming to the + // "aws.s3.upload_id" semantic conventions. It represents the upload ID + // that identifies the multipart upload. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ' + // Note: The `upload_id` attribute applies to S3 multipart-upload + // operations and corresponds to the `--upload-id` parameter + // of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // multipart operations. + // This applies in particular to the following operations: + // + // - + // [abort-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html) + // - + // [complete-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html) + // - + // [list-parts](https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html) + // - + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") + + // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" + // semantic conventions. It represents the delete request container that + // specifies the objects to be deleted. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: + // 'Objects=[{Key=string,VersionID=string},{Key=string,VersionID=string}],Quiet=boolean' + // Note: The `delete` attribute is only applicable to the + // [delete-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html) + // operation. + // The `delete` attribute corresponds to the `--delete` parameter of the + // [delete-objects operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html). + AWSS3DeleteKey = attribute.Key("aws.s3.delete") + + // AWSS3PartNumberKey is the attribute Key conforming to the + // "aws.s3.part_number" semantic conventions. It represents the part number + // of the part being uploaded in a multipart-upload operation. This is a + // positive integer between 1 and 10,000. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 3456 + // Note: The `part_number` attribute is only applicable to the + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // and + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + // operations. + // The `part_number` attribute corresponds to the `--part-number` parameter + // of the + // [upload-part operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html). + AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") +) + +// AWSS3Bucket returns an attribute KeyValue conforming to the +// "aws.s3.bucket" semantic conventions. It represents the S3 bucket name the +// request refers to. Corresponds to the `--bucket` parameter of the [S3 +// API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) +// operations. +func AWSS3Bucket(val string) attribute.KeyValue { + return AWSS3BucketKey.String(val) +} + +// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" +// semantic conventions. It represents the S3 object key the request refers to. +// Corresponds to the `--key` parameter of the [S3 +// API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) +// operations. +func AWSS3Key(val string) attribute.KeyValue { + return AWSS3KeyKey.String(val) +} + +// AWSS3CopySource returns an attribute KeyValue conforming to the +// "aws.s3.copy_source" semantic conventions. It represents the source object +// (in the form `bucket`/`key`) for the copy operation. +func AWSS3CopySource(val string) attribute.KeyValue { + return AWSS3CopySourceKey.String(val) +} + +// AWSS3UploadID returns an attribute KeyValue conforming to the +// "aws.s3.upload_id" semantic conventions. It represents the upload ID that +// identifies the multipart upload. +func AWSS3UploadID(val string) attribute.KeyValue { + return AWSS3UploadIDKey.String(val) +} + +// AWSS3Delete returns an attribute KeyValue conforming to the +// "aws.s3.delete" semantic conventions. It represents the delete request +// container that specifies the objects to be deleted. +func AWSS3Delete(val string) attribute.KeyValue { + return AWSS3DeleteKey.String(val) +} + +// AWSS3PartNumber returns an attribute KeyValue conforming to the +// "aws.s3.part_number" semantic conventions. It represents the part number of +// the part being uploaded in a multipart-upload operation. This is a positive +// integer between 1 and 10,000. +func AWSS3PartNumber(val int) attribute.KeyValue { + return AWSS3PartNumberKey.Int(val) +} + +// Semantic conventions to apply when instrumenting the GraphQL implementation. +// They map GraphQL operations to attributes on a Span. +const ( + // GraphqlOperationNameKey is the attribute Key conforming to the + // "graphql.operation.name" semantic conventions. It represents the name of + // the operation being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'findBookByID' + GraphqlOperationNameKey = attribute.Key("graphql.operation.name") + + // GraphqlOperationTypeKey is the attribute Key conforming to the + // "graphql.operation.type" semantic conventions. It represents the type of + // the operation being executed. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'query', 'mutation', 'subscription' + GraphqlOperationTypeKey = attribute.Key("graphql.operation.type") + + // GraphqlDocumentKey is the attribute Key conforming to the + // "graphql.document" semantic conventions. It represents the GraphQL + // document being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'query findBookByID { bookByID(id: ?) { name } }' + // Note: The value may be sanitized to exclude sensitive information. + GraphqlDocumentKey = attribute.Key("graphql.document") +) + +var ( + // GraphQL query + GraphqlOperationTypeQuery = GraphqlOperationTypeKey.String("query") + // GraphQL mutation + GraphqlOperationTypeMutation = GraphqlOperationTypeKey.String("mutation") + // GraphQL subscription + GraphqlOperationTypeSubscription = GraphqlOperationTypeKey.String("subscription") +) + +// GraphqlOperationName returns an attribute KeyValue conforming to the +// "graphql.operation.name" semantic conventions. It represents the name of the +// operation being executed. +func GraphqlOperationName(val string) attribute.KeyValue { + return GraphqlOperationNameKey.String(val) +} + +// GraphqlDocument returns an attribute KeyValue conforming to the +// "graphql.document" semantic conventions. It represents the GraphQL document +// being executed. +func GraphqlDocument(val string) attribute.KeyValue { + return GraphqlDocumentKey.String(val) +} + +// General attributes used in messaging systems. +const ( + // MessagingSystemKey is the attribute Key conforming to the + // "messaging.system" semantic conventions. It represents a string + // identifying the messaging system. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'kafka', 'rabbitmq', 'rocketmq', 'activemq', 'AmazonSQS' + MessagingSystemKey = attribute.Key("messaging.system") + + // MessagingOperationKey is the attribute Key conforming to the + // "messaging.operation" semantic conventions. It represents a string + // identifying the kind of messaging operation as defined in the [Operation + // names](#operation-names) section above. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + // Note: If a custom value is used, it MUST be of low cardinality. + MessagingOperationKey = attribute.Key("messaging.operation") + + // MessagingBatchMessageCountKey is the attribute Key conforming to the + // "messaging.batch.message_count" semantic conventions. It represents the + // number of messages sent, received, or processed in the scope of the + // batching operation. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If the span describes an + // operation on a batch of messages.) + // Stability: stable + // Examples: 0, 1, 2 + // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on + // spans that operate with a single message. When a messaging client + // library supports both batch and single-message API for the same + // operation, instrumentations SHOULD use `messaging.batch.message_count` + // for batching APIs and SHOULD NOT use it for single-message APIs. + MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") +) + +var ( + // publish + MessagingOperationPublish = MessagingOperationKey.String("publish") + // receive + MessagingOperationReceive = MessagingOperationKey.String("receive") + // process + MessagingOperationProcess = MessagingOperationKey.String("process") +) + +// MessagingSystem returns an attribute KeyValue conforming to the +// "messaging.system" semantic conventions. It represents a string identifying +// the messaging system. +func MessagingSystem(val string) attribute.KeyValue { + return MessagingSystemKey.String(val) +} + +// MessagingBatchMessageCount returns an attribute KeyValue conforming to +// the "messaging.batch.message_count" semantic conventions. It represents the +// number of messages sent, received, or processed in the scope of the batching +// operation. +func MessagingBatchMessageCount(val int) attribute.KeyValue { + return MessagingBatchMessageCountKey.Int(val) +} + +// Semantic convention for a consumer of messages received from a messaging +// system +const ( + // MessagingConsumerIDKey is the attribute Key conforming to the + // "messaging.consumer.id" semantic conventions. It represents the + // identifier for the consumer receiving a message. For Kafka, set it to + // `{messaging.kafka.consumer.group} - {messaging.kafka.client_id}`, if + // both are present, or only `messaging.kafka.consumer.group`. For brokers, + // such as RabbitMQ and Artemis, set it to the `client_id` of the client + // consuming the message. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'mygroup - client-6' + MessagingConsumerIDKey = attribute.Key("messaging.consumer.id") +) + +// MessagingConsumerID returns an attribute KeyValue conforming to the +// "messaging.consumer.id" semantic conventions. It represents the identifier +// for the consumer receiving a message. For Kafka, set it to +// `{messaging.kafka.consumer.group} - {messaging.kafka.client_id}`, if both +// are present, or only `messaging.kafka.consumer.group`. For brokers, such as +// RabbitMQ and Artemis, set it to the `client_id` of the client consuming the +// message. +func MessagingConsumerID(val string) attribute.KeyValue { + return MessagingConsumerIDKey.String(val) +} + +// Semantic conventions for remote procedure calls. +const ( + // RPCSystemKey is the attribute Key conforming to the "rpc.system" + // semantic conventions. It represents a string identifying the remoting + // system. See below for a list of well-known identifiers. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + RPCSystemKey = attribute.Key("rpc.system") + + // RPCServiceKey is the attribute Key conforming to the "rpc.service" + // semantic conventions. It represents the full (logical) name of the + // service being called, including its package name, if applicable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'myservice.EchoService' + // Note: This is the logical name of the service from the RPC interface + // perspective, which can be different from the name of any implementing + // class. The `code.namespace` attribute may be used to store the latter + // (despite the attribute name, it may include a class name; e.g., class + // with method actually executing the call on the server side, RPC client + // stub class on the client side). + RPCServiceKey = attribute.Key("rpc.service") + + // RPCMethodKey is the attribute Key conforming to the "rpc.method" + // semantic conventions. It represents the name of the (logical) method + // being called, must be equal to the $method part in the span name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: stable + // Examples: 'exampleMethod' + // Note: This is the logical name of the method from the RPC interface + // perspective, which can be different from the name of any implementing + // method/function. The `code.function` attribute may be used to store the + // latter (e.g., method actually executing the call on the server side, RPC + // client stub method on the client side). + RPCMethodKey = attribute.Key("rpc.method") +) + +var ( + // gRPC + RPCSystemGRPC = RPCSystemKey.String("grpc") + // Java RMI + RPCSystemJavaRmi = RPCSystemKey.String("java_rmi") + // .NET WCF + RPCSystemDotnetWcf = RPCSystemKey.String("dotnet_wcf") + // Apache Dubbo + RPCSystemApacheDubbo = RPCSystemKey.String("apache_dubbo") + // Connect RPC + RPCSystemConnectRPC = RPCSystemKey.String("connect_rpc") +) + +// RPCService returns an attribute KeyValue conforming to the "rpc.service" +// semantic conventions. It represents the full (logical) name of the service +// being called, including its package name, if applicable. +func RPCService(val string) attribute.KeyValue { + return RPCServiceKey.String(val) +} + +// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" +// semantic conventions. It represents the name of the (logical) method being +// called, must be equal to the $method part in the span name. +func RPCMethod(val string) attribute.KeyValue { + return RPCMethodKey.String(val) +} + +// Tech-specific attributes for gRPC. +const ( + // RPCGRPCStatusCodeKey is the attribute Key conforming to the + // "rpc.grpc.status_code" semantic conventions. It represents the [numeric + // status + // code](https://github.com/grpc/grpc/blob/v1.33.2/doc/statuscodes.md) of + // the gRPC request. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + RPCGRPCStatusCodeKey = attribute.Key("rpc.grpc.status_code") +) + +var ( + // OK + RPCGRPCStatusCodeOk = RPCGRPCStatusCodeKey.Int(0) + // CANCELLED + RPCGRPCStatusCodeCancelled = RPCGRPCStatusCodeKey.Int(1) + // UNKNOWN + RPCGRPCStatusCodeUnknown = RPCGRPCStatusCodeKey.Int(2) + // INVALID_ARGUMENT + RPCGRPCStatusCodeInvalidArgument = RPCGRPCStatusCodeKey.Int(3) + // DEADLINE_EXCEEDED + RPCGRPCStatusCodeDeadlineExceeded = RPCGRPCStatusCodeKey.Int(4) + // NOT_FOUND + RPCGRPCStatusCodeNotFound = RPCGRPCStatusCodeKey.Int(5) + // ALREADY_EXISTS + RPCGRPCStatusCodeAlreadyExists = RPCGRPCStatusCodeKey.Int(6) + // PERMISSION_DENIED + RPCGRPCStatusCodePermissionDenied = RPCGRPCStatusCodeKey.Int(7) + // RESOURCE_EXHAUSTED + RPCGRPCStatusCodeResourceExhausted = RPCGRPCStatusCodeKey.Int(8) + // FAILED_PRECONDITION + RPCGRPCStatusCodeFailedPrecondition = RPCGRPCStatusCodeKey.Int(9) + // ABORTED + RPCGRPCStatusCodeAborted = RPCGRPCStatusCodeKey.Int(10) + // OUT_OF_RANGE + RPCGRPCStatusCodeOutOfRange = RPCGRPCStatusCodeKey.Int(11) + // UNIMPLEMENTED + RPCGRPCStatusCodeUnimplemented = RPCGRPCStatusCodeKey.Int(12) + // INTERNAL + RPCGRPCStatusCodeInternal = RPCGRPCStatusCodeKey.Int(13) + // UNAVAILABLE + RPCGRPCStatusCodeUnavailable = RPCGRPCStatusCodeKey.Int(14) + // DATA_LOSS + RPCGRPCStatusCodeDataLoss = RPCGRPCStatusCodeKey.Int(15) + // UNAUTHENTICATED + RPCGRPCStatusCodeUnauthenticated = RPCGRPCStatusCodeKey.Int(16) +) + +// Tech-specific attributes for [JSON RPC](https://www.jsonrpc.org/). +const ( + // RPCJsonrpcVersionKey is the attribute Key conforming to the + // "rpc.jsonrpc.version" semantic conventions. It represents the protocol + // version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 + // does not specify this, the value can be omitted. + // + // Type: string + // RequirementLevel: ConditionallyRequired (If other than the default + // version (`1.0`)) + // Stability: stable + // Examples: '2.0', '1.0' + RPCJsonrpcVersionKey = attribute.Key("rpc.jsonrpc.version") + + // RPCJsonrpcRequestIDKey is the attribute Key conforming to the + // "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` + // property of request or response. Since protocol allows id to be int, + // string, `null` or missing (for notifications), value is expected to be + // cast to string for simplicity. Use empty string in case of `null` value. + // Omit entirely if this is a notification. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '10', 'request-7', '' + RPCJsonrpcRequestIDKey = attribute.Key("rpc.jsonrpc.request_id") + + // RPCJsonrpcErrorCodeKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_code" semantic conventions. It represents the + // `error.code` property of response if it is an error response. + // + // Type: int + // RequirementLevel: ConditionallyRequired (If response is not successful.) + // Stability: stable + // Examples: -32700, 100 + RPCJsonrpcErrorCodeKey = attribute.Key("rpc.jsonrpc.error_code") + + // RPCJsonrpcErrorMessageKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_message" semantic conventions. It represents the + // `error.message` property of response if it is an error response. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Parse error', 'User already exists' + RPCJsonrpcErrorMessageKey = attribute.Key("rpc.jsonrpc.error_message") +) + +// RPCJsonrpcVersion returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.version" semantic conventions. It represents the protocol +// version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 +// does not specify this, the value can be omitted. +func RPCJsonrpcVersion(val string) attribute.KeyValue { + return RPCJsonrpcVersionKey.String(val) +} + +// RPCJsonrpcRequestID returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` +// property of request or response. Since protocol allows id to be int, string, +// `null` or missing (for notifications), value is expected to be cast to +// string for simplicity. Use empty string in case of `null` value. Omit +// entirely if this is a notification. +func RPCJsonrpcRequestID(val string) attribute.KeyValue { + return RPCJsonrpcRequestIDKey.String(val) +} + +// RPCJsonrpcErrorCode returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_code" semantic conventions. It represents the +// `error.code` property of response if it is an error response. +func RPCJsonrpcErrorCode(val int) attribute.KeyValue { + return RPCJsonrpcErrorCodeKey.Int(val) +} + +// RPCJsonrpcErrorMessage returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_message" semantic conventions. It represents the +// `error.message` property of response if it is an error response. +func RPCJsonrpcErrorMessage(val string) attribute.KeyValue { + return RPCJsonrpcErrorMessageKey.String(val) +} + +// Tech-specific attributes for Connect RPC. +const ( + // RPCConnectRPCErrorCodeKey is the attribute Key conforming to the + // "rpc.connect_rpc.error_code" semantic conventions. It represents the + // [error codes](https://connect.build/docs/protocol/#error-codes) of the + // Connect request. Error codes are always string values. + // + // Type: Enum + // RequirementLevel: ConditionallyRequired (If response is not successful + // and if error code available.) + // Stability: stable + RPCConnectRPCErrorCodeKey = attribute.Key("rpc.connect_rpc.error_code") +) + +var ( + // cancelled + RPCConnectRPCErrorCodeCancelled = RPCConnectRPCErrorCodeKey.String("cancelled") + // unknown + RPCConnectRPCErrorCodeUnknown = RPCConnectRPCErrorCodeKey.String("unknown") + // invalid_argument + RPCConnectRPCErrorCodeInvalidArgument = RPCConnectRPCErrorCodeKey.String("invalid_argument") + // deadline_exceeded + RPCConnectRPCErrorCodeDeadlineExceeded = RPCConnectRPCErrorCodeKey.String("deadline_exceeded") + // not_found + RPCConnectRPCErrorCodeNotFound = RPCConnectRPCErrorCodeKey.String("not_found") + // already_exists + RPCConnectRPCErrorCodeAlreadyExists = RPCConnectRPCErrorCodeKey.String("already_exists") + // permission_denied + RPCConnectRPCErrorCodePermissionDenied = RPCConnectRPCErrorCodeKey.String("permission_denied") + // resource_exhausted + RPCConnectRPCErrorCodeResourceExhausted = RPCConnectRPCErrorCodeKey.String("resource_exhausted") + // failed_precondition + RPCConnectRPCErrorCodeFailedPrecondition = RPCConnectRPCErrorCodeKey.String("failed_precondition") + // aborted + RPCConnectRPCErrorCodeAborted = RPCConnectRPCErrorCodeKey.String("aborted") + // out_of_range + RPCConnectRPCErrorCodeOutOfRange = RPCConnectRPCErrorCodeKey.String("out_of_range") + // unimplemented + RPCConnectRPCErrorCodeUnimplemented = RPCConnectRPCErrorCodeKey.String("unimplemented") + // internal + RPCConnectRPCErrorCodeInternal = RPCConnectRPCErrorCodeKey.String("internal") + // unavailable + RPCConnectRPCErrorCodeUnavailable = RPCConnectRPCErrorCodeKey.String("unavailable") + // data_loss + RPCConnectRPCErrorCodeDataLoss = RPCConnectRPCErrorCodeKey.String("data_loss") + // unauthenticated + RPCConnectRPCErrorCodeUnauthenticated = RPCConnectRPCErrorCodeKey.String("unauthenticated") +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/README.md b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/README.md new file mode 100644 index 0000000000..2de1fc3c6b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/README.md @@ -0,0 +1,3 @@ +# Semconv v1.26.0 + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.26.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.26.0) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/attribute_group.go b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/attribute_group.go new file mode 100644 index 0000000000..d8dc822b26 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/attribute_group.go @@ -0,0 +1,8996 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.26.0" + +import "go.opentelemetry.io/otel/attribute" + +// The Android platform on which the Android application is running. +const ( + // AndroidOSAPILevelKey is the attribute Key conforming to the + // "android.os.api_level" semantic conventions. It represents the uniquely + // identifies the framework API revision offered by a version + // (`os.version`) of the android operating system. More information can be + // found + // [here](https://developer.android.com/guide/topics/manifest/uses-sdk-element#APILevels). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '33', '32' + AndroidOSAPILevelKey = attribute.Key("android.os.api_level") +) + +// AndroidOSAPILevel returns an attribute KeyValue conforming to the +// "android.os.api_level" semantic conventions. It represents the uniquely +// identifies the framework API revision offered by a version (`os.version`) of +// the android operating system. More information can be found +// [here](https://developer.android.com/guide/topics/manifest/uses-sdk-element#APILevels). +func AndroidOSAPILevel(val string) attribute.KeyValue { + return AndroidOSAPILevelKey.String(val) +} + +// ASP.NET Core attributes +const ( + // AspnetcoreRateLimitingResultKey is the attribute Key conforming to the + // "aspnetcore.rate_limiting.result" semantic conventions. It represents + // the rate-limiting result, shows whether the lease was acquired or + // contains a rejection reason + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + // Examples: 'acquired', 'request_canceled' + AspnetcoreRateLimitingResultKey = attribute.Key("aspnetcore.rate_limiting.result") + + // AspnetcoreDiagnosticsHandlerTypeKey is the attribute Key conforming to + // the "aspnetcore.diagnostics.handler.type" semantic conventions. It + // represents the full type name of the + // [`IExceptionHandler`](https://learn.microsoft.com/dotnet/api/microsoft.aspnetcore.diagnostics.iexceptionhandler) + // implementation that handled the exception. + // + // Type: string + // RequirementLevel: ConditionallyRequired (if and only if the exception + // was handled by this handler.) + // Stability: stable + // Examples: 'Contoso.MyHandler' + AspnetcoreDiagnosticsHandlerTypeKey = attribute.Key("aspnetcore.diagnostics.handler.type") + + // AspnetcoreDiagnosticsExceptionResultKey is the attribute Key conforming + // to the "aspnetcore.diagnostics.exception.result" semantic conventions. + // It represents the aSP.NET Core exception middleware handling result + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'handled', 'unhandled' + AspnetcoreDiagnosticsExceptionResultKey = attribute.Key("aspnetcore.diagnostics.exception.result") + + // AspnetcoreRateLimitingPolicyKey is the attribute Key conforming to the + // "aspnetcore.rate_limiting.policy" semantic conventions. It represents + // the rate limiting policy name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'fixed', 'sliding', 'token' + AspnetcoreRateLimitingPolicyKey = attribute.Key("aspnetcore.rate_limiting.policy") + + // AspnetcoreRequestIsUnhandledKey is the attribute Key conforming to the + // "aspnetcore.request.is_unhandled" semantic conventions. It represents + // the flag indicating if request was handled by the application pipeline. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + // Examples: True + AspnetcoreRequestIsUnhandledKey = attribute.Key("aspnetcore.request.is_unhandled") + + // AspnetcoreRoutingIsFallbackKey is the attribute Key conforming to the + // "aspnetcore.routing.is_fallback" semantic conventions. It represents a + // value that indicates whether the matched route is a fallback route. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + // Examples: True + AspnetcoreRoutingIsFallbackKey = attribute.Key("aspnetcore.routing.is_fallback") + + // AspnetcoreRoutingMatchStatusKey is the attribute Key conforming to the + // "aspnetcore.routing.match_status" semantic conventions. It represents + // the match result - success or failure + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'success', 'failure' + AspnetcoreRoutingMatchStatusKey = attribute.Key("aspnetcore.routing.match_status") +) + +var ( + // Lease was acquired + AspnetcoreRateLimitingResultAcquired = AspnetcoreRateLimitingResultKey.String("acquired") + // Lease request was rejected by the endpoint limiter + AspnetcoreRateLimitingResultEndpointLimiter = AspnetcoreRateLimitingResultKey.String("endpoint_limiter") + // Lease request was rejected by the global limiter + AspnetcoreRateLimitingResultGlobalLimiter = AspnetcoreRateLimitingResultKey.String("global_limiter") + // Lease request was canceled + AspnetcoreRateLimitingResultRequestCanceled = AspnetcoreRateLimitingResultKey.String("request_canceled") +) + +var ( + // Exception was handled by the exception handling middleware + AspnetcoreDiagnosticsExceptionResultHandled = AspnetcoreDiagnosticsExceptionResultKey.String("handled") + // Exception was not handled by the exception handling middleware + AspnetcoreDiagnosticsExceptionResultUnhandled = AspnetcoreDiagnosticsExceptionResultKey.String("unhandled") + // Exception handling was skipped because the response had started + AspnetcoreDiagnosticsExceptionResultSkipped = AspnetcoreDiagnosticsExceptionResultKey.String("skipped") + // Exception handling didn't run because the request was aborted + AspnetcoreDiagnosticsExceptionResultAborted = AspnetcoreDiagnosticsExceptionResultKey.String("aborted") +) + +var ( + // Match succeeded + AspnetcoreRoutingMatchStatusSuccess = AspnetcoreRoutingMatchStatusKey.String("success") + // Match failed + AspnetcoreRoutingMatchStatusFailure = AspnetcoreRoutingMatchStatusKey.String("failure") +) + +// AspnetcoreDiagnosticsHandlerType returns an attribute KeyValue conforming +// to the "aspnetcore.diagnostics.handler.type" semantic conventions. It +// represents the full type name of the +// [`IExceptionHandler`](https://learn.microsoft.com/dotnet/api/microsoft.aspnetcore.diagnostics.iexceptionhandler) +// implementation that handled the exception. +func AspnetcoreDiagnosticsHandlerType(val string) attribute.KeyValue { + return AspnetcoreDiagnosticsHandlerTypeKey.String(val) +} + +// AspnetcoreRateLimitingPolicy returns an attribute KeyValue conforming to +// the "aspnetcore.rate_limiting.policy" semantic conventions. It represents +// the rate limiting policy name. +func AspnetcoreRateLimitingPolicy(val string) attribute.KeyValue { + return AspnetcoreRateLimitingPolicyKey.String(val) +} + +// AspnetcoreRequestIsUnhandled returns an attribute KeyValue conforming to +// the "aspnetcore.request.is_unhandled" semantic conventions. It represents +// the flag indicating if request was handled by the application pipeline. +func AspnetcoreRequestIsUnhandled(val bool) attribute.KeyValue { + return AspnetcoreRequestIsUnhandledKey.Bool(val) +} + +// AspnetcoreRoutingIsFallback returns an attribute KeyValue conforming to +// the "aspnetcore.routing.is_fallback" semantic conventions. It represents a +// value that indicates whether the matched route is a fallback route. +func AspnetcoreRoutingIsFallback(val bool) attribute.KeyValue { + return AspnetcoreRoutingIsFallbackKey.Bool(val) +} + +// Generic attributes for AWS services. +const ( + // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" + // semantic conventions. It represents the AWS request ID as returned in + // the response headers `x-amz-request-id` or `x-amz-requestid`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '79b9da39-b7ae-508a-a6bc-864b2829c622', 'C9ER4AJX75574TDJ' + AWSRequestIDKey = attribute.Key("aws.request_id") +) + +// AWSRequestID returns an attribute KeyValue conforming to the +// "aws.request_id" semantic conventions. It represents the AWS request ID as +// returned in the response headers `x-amz-request-id` or `x-amz-requestid`. +func AWSRequestID(val string) attribute.KeyValue { + return AWSRequestIDKey.String(val) +} + +// Attributes for AWS DynamoDB. +const ( + // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to + // the "aws.dynamodb.attribute_definitions" semantic conventions. It + // represents the JSON-serialized value of each item in the + // `AttributeDefinitions` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "AttributeName": "string", "AttributeType": "string" }' + AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") + + // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the + // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the + // value of the `AttributesToGet` request parameter. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'lives', 'id' + AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") + + // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the + // "aws.dynamodb.consistent_read" semantic conventions. It represents the + // value of the `ConsistentRead` request parameter. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") + + // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the + // JSON-serialized value of each item in the `ConsumedCapacity` response + // field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "CapacityUnits": number, "GlobalSecondaryIndexes": { + // "string" : { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }, "LocalSecondaryIndexes": { "string" : + // { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }, "ReadCapacityUnits": number, "Table": + // { "CapacityUnits": number, "ReadCapacityUnits": number, + // "WriteCapacityUnits": number }, "TableName": "string", + // "WriteCapacityUnits": number }' + AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") + + // AWSDynamoDBCountKey is the attribute Key conforming to the + // "aws.dynamodb.count" semantic conventions. It represents the value of + // the `Count` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 10 + AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") + + // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the + // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents + // the value of the `ExclusiveStartTableName` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Users', 'CatsTable' + AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") + + // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key + // conforming to the "aws.dynamodb.global_secondary_index_updates" semantic + // conventions. It represents the JSON-serialized value of each item in the + // `GlobalSecondaryIndexUpdates` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "Create": { "IndexName": "string", "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, + // "ProvisionedThroughput": { "ReadCapacityUnits": number, + // "WriteCapacityUnits": number } }' + AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") + + // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to + // the "aws.dynamodb.global_secondary_indexes" semantic conventions. It + // represents the JSON-serialized value of each item of the + // `GlobalSecondaryIndexes` request field + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "IndexName": "string", "KeySchema": [ { "AttributeName": + // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ + // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }' + AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") + + // AWSDynamoDBIndexNameKey is the attribute Key conforming to the + // "aws.dynamodb.index_name" semantic conventions. It represents the value + // of the `IndexName` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'name_to_group' + AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") + + // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to + // the "aws.dynamodb.item_collection_metrics" semantic conventions. It + // represents the JSON-serialized value of the `ItemCollectionMetrics` + // response field. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "string" : [ { "ItemCollectionKey": { "string" : { "B": + // blob, "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { + // "string" : "AttributeValue" }, "N": "string", "NS": [ "string" ], + // "NULL": boolean, "S": "string", "SS": [ "string" ] } }, + // "SizeEstimateRangeGB": [ number ] } ] }' + AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") + + // AWSDynamoDBLimitKey is the attribute Key conforming to the + // "aws.dynamodb.limit" semantic conventions. It represents the value of + // the `Limit` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 10 + AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") + + // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to + // the "aws.dynamodb.local_secondary_indexes" semantic conventions. It + // represents the JSON-serialized value of each item of the + // `LocalSecondaryIndexes` request field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '{ "IndexARN": "string", "IndexName": "string", + // "IndexSizeBytes": number, "ItemCount": number, "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" } }' + AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") + + // AWSDynamoDBProjectionKey is the attribute Key conforming to the + // "aws.dynamodb.projection" semantic conventions. It represents the value + // of the `ProjectionExpression` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Title', 'Title, Price, Color', 'Title, Description, + // RelatedItems, ProductReviews' + AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") + + // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to + // the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It + // represents the value of the `ProvisionedThroughput.ReadCapacityUnits` + // request parameter. + // + // Type: double + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") + + // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming + // to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. + // It represents the value of the + // `ProvisionedThroughput.WriteCapacityUnits` request parameter. + // + // Type: double + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") + + // AWSDynamoDBScanForwardKey is the attribute Key conforming to the + // "aws.dynamodb.scan_forward" semantic conventions. It represents the + // value of the `ScanIndexForward` request parameter. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") + + // AWSDynamoDBScannedCountKey is the attribute Key conforming to the + // "aws.dynamodb.scanned_count" semantic conventions. It represents the + // value of the `ScannedCount` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 50 + AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") + + // AWSDynamoDBSegmentKey is the attribute Key conforming to the + // "aws.dynamodb.segment" semantic conventions. It represents the value of + // the `Segment` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 10 + AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") + + // AWSDynamoDBSelectKey is the attribute Key conforming to the + // "aws.dynamodb.select" semantic conventions. It represents the value of + // the `Select` request parameter. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ALL_ATTRIBUTES', 'COUNT' + AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") + + // AWSDynamoDBTableCountKey is the attribute Key conforming to the + // "aws.dynamodb.table_count" semantic conventions. It represents the + // number of items in the `TableNames` response parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 20 + AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") + + // AWSDynamoDBTableNamesKey is the attribute Key conforming to the + // "aws.dynamodb.table_names" semantic conventions. It represents the keys + // in the `RequestItems` object field. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Users', 'Cats' + AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") + + // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the + // "aws.dynamodb.total_segments" semantic conventions. It represents the + // value of the `TotalSegments` request parameter. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 100 + AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") +) + +// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming +// to the "aws.dynamodb.attribute_definitions" semantic conventions. It +// represents the JSON-serialized value of each item in the +// `AttributeDefinitions` request field. +func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) +} + +// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to +// the "aws.dynamodb.attributes_to_get" semantic conventions. It represents the +// value of the `AttributesToGet` request parameter. +func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributesToGetKey.StringSlice(val) +} + +// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the +// "aws.dynamodb.consistent_read" semantic conventions. It represents the value +// of the `ConsistentRead` request parameter. +func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { + return AWSDynamoDBConsistentReadKey.Bool(val) +} + +// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to +// the "aws.dynamodb.consumed_capacity" semantic conventions. It represents the +// JSON-serialized value of each item in the `ConsumedCapacity` response field. +func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { + return AWSDynamoDBConsumedCapacityKey.StringSlice(val) +} + +// AWSDynamoDBCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.count" semantic conventions. It represents the value of the +// `Count` response parameter. +func AWSDynamoDBCount(val int) attribute.KeyValue { + return AWSDynamoDBCountKey.Int(val) +} + +// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming +// to the "aws.dynamodb.exclusive_start_table" semantic conventions. It +// represents the value of the `ExclusiveStartTableName` request parameter. +func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { + return AWSDynamoDBExclusiveStartTableKey.String(val) +} + +// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic +// conventions. It represents the JSON-serialized value of each item in the +// `GlobalSecondaryIndexUpdates` request field. +func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) +} + +// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_indexes" semantic +// conventions. It represents the JSON-serialized value of each item of the +// `GlobalSecondaryIndexes` request field +func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the +// "aws.dynamodb.index_name" semantic conventions. It represents the value of +// the `IndexName` request parameter. +func AWSDynamoDBIndexName(val string) attribute.KeyValue { + return AWSDynamoDBIndexNameKey.String(val) +} + +// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming +// to the "aws.dynamodb.item_collection_metrics" semantic conventions. It +// represents the JSON-serialized value of the `ItemCollectionMetrics` response +// field. +func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { + return AWSDynamoDBItemCollectionMetricsKey.String(val) +} + +// AWSDynamoDBLimit returns an attribute KeyValue conforming to the +// "aws.dynamodb.limit" semantic conventions. It represents the value of the +// `Limit` request parameter. +func AWSDynamoDBLimit(val int) attribute.KeyValue { + return AWSDynamoDBLimitKey.Int(val) +} + +// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming +// to the "aws.dynamodb.local_secondary_indexes" semantic conventions. It +// represents the JSON-serialized value of each item of the +// `LocalSecondaryIndexes` request field. +func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBProjection returns an attribute KeyValue conforming to the +// "aws.dynamodb.projection" semantic conventions. It represents the value of +// the `ProjectionExpression` request parameter. +func AWSDynamoDBProjection(val string) attribute.KeyValue { + return AWSDynamoDBProjectionKey.String(val) +} + +// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue +// conforming to the "aws.dynamodb.provisioned_read_capacity" semantic +// conventions. It represents the value of the +// `ProvisionedThroughput.ReadCapacityUnits` request parameter. +func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) +} + +// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue +// conforming to the "aws.dynamodb.provisioned_write_capacity" semantic +// conventions. It represents the value of the +// `ProvisionedThroughput.WriteCapacityUnits` request parameter. +func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) +} + +// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the +// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of +// the `ScanIndexForward` request parameter. +func AWSDynamoDBScanForward(val bool) attribute.KeyValue { + return AWSDynamoDBScanForwardKey.Bool(val) +} + +// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.scanned_count" semantic conventions. It represents the value +// of the `ScannedCount` response parameter. +func AWSDynamoDBScannedCount(val int) attribute.KeyValue { + return AWSDynamoDBScannedCountKey.Int(val) +} + +// AWSDynamoDBSegment returns an attribute KeyValue conforming to the +// "aws.dynamodb.segment" semantic conventions. It represents the value of the +// `Segment` request parameter. +func AWSDynamoDBSegment(val int) attribute.KeyValue { + return AWSDynamoDBSegmentKey.Int(val) +} + +// AWSDynamoDBSelect returns an attribute KeyValue conforming to the +// "aws.dynamodb.select" semantic conventions. It represents the value of the +// `Select` request parameter. +func AWSDynamoDBSelect(val string) attribute.KeyValue { + return AWSDynamoDBSelectKey.String(val) +} + +// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_count" semantic conventions. It represents the number of +// items in the `TableNames` response parameter. +func AWSDynamoDBTableCount(val int) attribute.KeyValue { + return AWSDynamoDBTableCountKey.Int(val) +} + +// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_names" semantic conventions. It represents the keys in +// the `RequestItems` object field. +func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { + return AWSDynamoDBTableNamesKey.StringSlice(val) +} + +// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the +// "aws.dynamodb.total_segments" semantic conventions. It represents the value +// of the `TotalSegments` request parameter. +func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { + return AWSDynamoDBTotalSegmentsKey.Int(val) +} + +// Attributes for AWS Elastic Container Service (ECS). +const ( + // AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id" + // semantic conventions. It represents the ID of a running ECS task. The ID + // MUST be extracted from `task.arn`. + // + // Type: string + // RequirementLevel: ConditionallyRequired (If and only if `task.arn` is + // populated.) + // Stability: experimental + // Examples: '10838bed-421f-43ef-870a-f43feacbbb5b', + // '23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd' + AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id") + + // AWSECSClusterARNKey is the attribute Key conforming to the + // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an + // [ECS + // cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' + AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") + + // AWSECSContainerARNKey is the attribute Key conforming to the + // "aws.ecs.container.arn" semantic conventions. It represents the Amazon + // Resource Name (ARN) of an [ECS container + // instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9' + AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") + + // AWSECSLaunchtypeKey is the attribute Key conforming to the + // "aws.ecs.launchtype" semantic conventions. It represents the [launch + // type](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html) + // for an ECS task. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") + + // AWSECSTaskARNKey is the attribute Key conforming to the + // "aws.ecs.task.arn" semantic conventions. It represents the ARN of a + // running [ECS + // task](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b', + // 'arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd' + AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") + + // AWSECSTaskFamilyKey is the attribute Key conforming to the + // "aws.ecs.task.family" semantic conventions. It represents the family + // name of the [ECS task + // definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html) + // used to create the ECS task. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry-family' + AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") + + // AWSECSTaskRevisionKey is the attribute Key conforming to the + // "aws.ecs.task.revision" semantic conventions. It represents the revision + // for the task definition used to create the ECS task. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '8', '26' + AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") +) + +var ( + // ec2 + AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") + // fargate + AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") +) + +// AWSECSTaskID returns an attribute KeyValue conforming to the +// "aws.ecs.task.id" semantic conventions. It represents the ID of a running +// ECS task. The ID MUST be extracted from `task.arn`. +func AWSECSTaskID(val string) attribute.KeyValue { + return AWSECSTaskIDKey.String(val) +} + +// AWSECSClusterARN returns an attribute KeyValue conforming to the +// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an [ECS +// cluster](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html). +func AWSECSClusterARN(val string) attribute.KeyValue { + return AWSECSClusterARNKey.String(val) +} + +// AWSECSContainerARN returns an attribute KeyValue conforming to the +// "aws.ecs.container.arn" semantic conventions. It represents the Amazon +// Resource Name (ARN) of an [ECS container +// instance](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html). +func AWSECSContainerARN(val string) attribute.KeyValue { + return AWSECSContainerARNKey.String(val) +} + +// AWSECSTaskARN returns an attribute KeyValue conforming to the +// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running +// [ECS +// task](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids). +func AWSECSTaskARN(val string) attribute.KeyValue { + return AWSECSTaskARNKey.String(val) +} + +// AWSECSTaskFamily returns an attribute KeyValue conforming to the +// "aws.ecs.task.family" semantic conventions. It represents the family name of +// the [ECS task +// definition](https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html) +// used to create the ECS task. +func AWSECSTaskFamily(val string) attribute.KeyValue { + return AWSECSTaskFamilyKey.String(val) +} + +// AWSECSTaskRevision returns an attribute KeyValue conforming to the +// "aws.ecs.task.revision" semantic conventions. It represents the revision for +// the task definition used to create the ECS task. +func AWSECSTaskRevision(val string) attribute.KeyValue { + return AWSECSTaskRevisionKey.String(val) +} + +// Attributes for AWS Elastic Kubernetes Service (EKS). +const ( + // AWSEKSClusterARNKey is the attribute Key conforming to the + // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an + // EKS cluster. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster' + AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") +) + +// AWSEKSClusterARN returns an attribute KeyValue conforming to the +// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS +// cluster. +func AWSEKSClusterARN(val string) attribute.KeyValue { + return AWSEKSClusterARNKey.String(val) +} + +// Attributes for AWS Logs. +const ( + // AWSLogGroupARNsKey is the attribute Key conforming to the + // "aws.log.group.arns" semantic conventions. It represents the Amazon + // Resource Name(s) (ARN) of the AWS log group(s). + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*' + // Note: See the [log group ARN format + // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). + AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") + + // AWSLogGroupNamesKey is the attribute Key conforming to the + // "aws.log.group.names" semantic conventions. It represents the name(s) of + // the AWS log group(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/aws/lambda/my-function', 'opentelemetry-service' + // Note: Multiple log groups must be supported for cases like + // multi-container applications, where a single application has sidecar + // containers, and each write to their own log group. + AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") + + // AWSLogStreamARNsKey is the attribute Key conforming to the + // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of + // the AWS log stream(s). + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' + // Note: See the [log stream ARN format + // documentation](https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format). + // One log group can contain several log streams, so these ARNs necessarily + // identify both a log group and a log stream. + AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") + + // AWSLogStreamNamesKey is the attribute Key conforming to the + // "aws.log.stream.names" semantic conventions. It represents the name(s) + // of the AWS log stream(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'logs/main/10838bed-421f-43ef-870a-f43feacbbb5b' + AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") +) + +// AWSLogGroupARNs returns an attribute KeyValue conforming to the +// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource +// Name(s) (ARN) of the AWS log group(s). +func AWSLogGroupARNs(val ...string) attribute.KeyValue { + return AWSLogGroupARNsKey.StringSlice(val) +} + +// AWSLogGroupNames returns an attribute KeyValue conforming to the +// "aws.log.group.names" semantic conventions. It represents the name(s) of the +// AWS log group(s) an application is writing to. +func AWSLogGroupNames(val ...string) attribute.KeyValue { + return AWSLogGroupNamesKey.StringSlice(val) +} + +// AWSLogStreamARNs returns an attribute KeyValue conforming to the +// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the +// AWS log stream(s). +func AWSLogStreamARNs(val ...string) attribute.KeyValue { + return AWSLogStreamARNsKey.StringSlice(val) +} + +// AWSLogStreamNames returns an attribute KeyValue conforming to the +// "aws.log.stream.names" semantic conventions. It represents the name(s) of +// the AWS log stream(s) an application is writing to. +func AWSLogStreamNames(val ...string) attribute.KeyValue { + return AWSLogStreamNamesKey.StringSlice(val) +} + +// Attributes for AWS Lambda. +const ( + // AWSLambdaInvokedARNKey is the attribute Key conforming to the + // "aws.lambda.invoked_arn" semantic conventions. It represents the full + // invoked ARN as provided on the `Context` passed to the function + // (`Lambda-Runtime-Invoked-Function-ARN` header on the + // `/runtime/invocation/next` applicable). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'arn:aws:lambda:us-east-1:123456:function:myfunction:myalias' + // Note: This may be different from `cloud.resource_id` if an alias is + // involved. + AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") +) + +// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the +// "aws.lambda.invoked_arn" semantic conventions. It represents the full +// invoked ARN as provided on the `Context` passed to the function +// (`Lambda-Runtime-Invoked-Function-ARN` header on the +// `/runtime/invocation/next` applicable). +func AWSLambdaInvokedARN(val string) attribute.KeyValue { + return AWSLambdaInvokedARNKey.String(val) +} + +// Attributes for AWS S3. +const ( + // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" + // semantic conventions. It represents the S3 bucket name the request + // refers to. Corresponds to the `--bucket` parameter of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // operations. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'some-bucket-name' + // Note: The `bucket` attribute is applicable to all S3 operations that + // reference a bucket, i.e. that require the bucket name as a mandatory + // parameter. + // This applies to almost all S3 operations except `list-buckets`. + AWSS3BucketKey = attribute.Key("aws.s3.bucket") + + // AWSS3CopySourceKey is the attribute Key conforming to the + // "aws.s3.copy_source" semantic conventions. It represents the source + // object (in the form `bucket`/`key`) for the copy operation. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'someFile.yml' + // Note: The `copy_source` attribute applies to S3 copy operations and + // corresponds to the `--copy-source` parameter + // of the [copy-object operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html). + // This applies in particular to the following operations: + // + // - + // [copy-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") + + // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" + // semantic conventions. It represents the delete request container that + // specifies the objects to be deleted. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'Objects=[{Key=string,VersionID=string},{Key=string,VersionID=string}],Quiet=boolean' + // Note: The `delete` attribute is only applicable to the + // [delete-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html) + // operation. + // The `delete` attribute corresponds to the `--delete` parameter of the + // [delete-objects operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html). + AWSS3DeleteKey = attribute.Key("aws.s3.delete") + + // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic + // conventions. It represents the S3 object key the request refers to. + // Corresponds to the `--key` parameter of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // operations. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'someFile.yml' + // Note: The `key` attribute is applicable to all object-related S3 + // operations, i.e. that require the object key as a mandatory parameter. + // This applies in particular to the following operations: + // + // - + // [copy-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html) + // - + // [delete-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html) + // - + // [get-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html) + // - + // [head-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html) + // - + // [put-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html) + // - + // [restore-object](https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html) + // - + // [select-object-content](https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html) + // - + // [abort-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html) + // - + // [complete-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html) + // - + // [create-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html) + // - + // [list-parts](https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html) + // - + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3KeyKey = attribute.Key("aws.s3.key") + + // AWSS3PartNumberKey is the attribute Key conforming to the + // "aws.s3.part_number" semantic conventions. It represents the part number + // of the part being uploaded in a multipart-upload operation. This is a + // positive integer between 1 and 10,000. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3456 + // Note: The `part_number` attribute is only applicable to the + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // and + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + // operations. + // The `part_number` attribute corresponds to the `--part-number` parameter + // of the + // [upload-part operation within the S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html). + AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") + + // AWSS3UploadIDKey is the attribute Key conforming to the + // "aws.s3.upload_id" semantic conventions. It represents the upload ID + // that identifies the multipart upload. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ' + // Note: The `upload_id` attribute applies to S3 multipart-upload + // operations and corresponds to the `--upload-id` parameter + // of the [S3 + // API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) + // multipart operations. + // This applies in particular to the following operations: + // + // - + // [abort-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html) + // - + // [complete-multipart-upload](https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html) + // - + // [list-parts](https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html) + // - + // [upload-part](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html) + // - + // [upload-part-copy](https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html) + AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") +) + +// AWSS3Bucket returns an attribute KeyValue conforming to the +// "aws.s3.bucket" semantic conventions. It represents the S3 bucket name the +// request refers to. Corresponds to the `--bucket` parameter of the [S3 +// API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) +// operations. +func AWSS3Bucket(val string) attribute.KeyValue { + return AWSS3BucketKey.String(val) +} + +// AWSS3CopySource returns an attribute KeyValue conforming to the +// "aws.s3.copy_source" semantic conventions. It represents the source object +// (in the form `bucket`/`key`) for the copy operation. +func AWSS3CopySource(val string) attribute.KeyValue { + return AWSS3CopySourceKey.String(val) +} + +// AWSS3Delete returns an attribute KeyValue conforming to the +// "aws.s3.delete" semantic conventions. It represents the delete request +// container that specifies the objects to be deleted. +func AWSS3Delete(val string) attribute.KeyValue { + return AWSS3DeleteKey.String(val) +} + +// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" +// semantic conventions. It represents the S3 object key the request refers to. +// Corresponds to the `--key` parameter of the [S3 +// API](https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html) +// operations. +func AWSS3Key(val string) attribute.KeyValue { + return AWSS3KeyKey.String(val) +} + +// AWSS3PartNumber returns an attribute KeyValue conforming to the +// "aws.s3.part_number" semantic conventions. It represents the part number of +// the part being uploaded in a multipart-upload operation. This is a positive +// integer between 1 and 10,000. +func AWSS3PartNumber(val int) attribute.KeyValue { + return AWSS3PartNumberKey.Int(val) +} + +// AWSS3UploadID returns an attribute KeyValue conforming to the +// "aws.s3.upload_id" semantic conventions. It represents the upload ID that +// identifies the multipart upload. +func AWSS3UploadID(val string) attribute.KeyValue { + return AWSS3UploadIDKey.String(val) +} + +// The web browser attributes +const ( + // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" + // semantic conventions. It represents the array of brand name and version + // separated by a space + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: ' Not A;Brand 99', 'Chromium 99', 'Chrome 99' + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.brands`). + BrowserBrandsKey = attribute.Key("browser.brands") + + // BrowserLanguageKey is the attribute Key conforming to the + // "browser.language" semantic conventions. It represents the preferred + // language of the user using the browser + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'en', 'en-US', 'fr', 'fr-FR' + // Note: This value is intended to be taken from the Navigator API + // `navigator.language`. + BrowserLanguageKey = attribute.Key("browser.language") + + // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" + // semantic conventions. It represents a boolean that is true if the + // browser is running on a mobile device + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.mobile`). If unavailable, this attribute + // SHOULD be left unset. + BrowserMobileKey = attribute.Key("browser.mobile") + + // BrowserPlatformKey is the attribute Key conforming to the + // "browser.platform" semantic conventions. It represents the platform on + // which the browser is running + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Windows', 'macOS', 'Android' + // Note: This value is intended to be taken from the [UA client hints + // API](https://wicg.github.io/ua-client-hints/#interface) + // (`navigator.userAgentData.platform`). If unavailable, the legacy + // `navigator.platform` API SHOULD NOT be used instead and this attribute + // SHOULD be left unset in order for the values to be consistent. + // The list of possible values is defined in the [W3C User-Agent Client + // Hints + // specification](https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform). + // Note that some (but not all) of these values can overlap with values in + // the [`os.type` and `os.name` attributes](./os.md). However, for + // consistency, the values in the `browser.platform` attribute should + // capture the exact value that the user agent provides. + BrowserPlatformKey = attribute.Key("browser.platform") +) + +// BrowserBrands returns an attribute KeyValue conforming to the +// "browser.brands" semantic conventions. It represents the array of brand name +// and version separated by a space +func BrowserBrands(val ...string) attribute.KeyValue { + return BrowserBrandsKey.StringSlice(val) +} + +// BrowserLanguage returns an attribute KeyValue conforming to the +// "browser.language" semantic conventions. It represents the preferred +// language of the user using the browser +func BrowserLanguage(val string) attribute.KeyValue { + return BrowserLanguageKey.String(val) +} + +// BrowserMobile returns an attribute KeyValue conforming to the +// "browser.mobile" semantic conventions. It represents a boolean that is true +// if the browser is running on a mobile device +func BrowserMobile(val bool) attribute.KeyValue { + return BrowserMobileKey.Bool(val) +} + +// BrowserPlatform returns an attribute KeyValue conforming to the +// "browser.platform" semantic conventions. It represents the platform on which +// the browser is running +func BrowserPlatform(val string) attribute.KeyValue { + return BrowserPlatformKey.String(val) +} + +// These attributes may be used to describe the client in a connection-based +// network interaction where there is one side that initiates the connection +// (the client is the side that initiates the connection). This covers all TCP +// network interactions since TCP is connection-based and one side initiates +// the connection (an exception is made for peer-to-peer communication over TCP +// where the "user-facing" surface of the protocol / API doesn't expose a clear +// notion of client and server). This also covers UDP network interactions +// where one side initiates the interaction, e.g. QUIC (HTTP/3) and DNS. +const ( + // ClientAddressKey is the attribute Key conforming to the "client.address" + // semantic conventions. It represents the client address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix + // domain socket name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'client.example.com', '10.1.2.80', '/tmp/my.sock' + // Note: When observed from the server side, and when communicating through + // an intermediary, `client.address` SHOULD represent the client address + // behind any intermediaries, for example proxies, if it's available. + ClientAddressKey = attribute.Key("client.address") + + // ClientPortKey is the attribute Key conforming to the "client.port" + // semantic conventions. It represents the client port number. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 65123 + // Note: When observed from the server side, and when communicating through + // an intermediary, `client.port` SHOULD represent the client port behind + // any intermediaries, for example proxies, if it's available. + ClientPortKey = attribute.Key("client.port") +) + +// ClientAddress returns an attribute KeyValue conforming to the +// "client.address" semantic conventions. It represents the client address - +// domain name if available without reverse DNS lookup; otherwise, IP address +// or Unix domain socket name. +func ClientAddress(val string) attribute.KeyValue { + return ClientAddressKey.String(val) +} + +// ClientPort returns an attribute KeyValue conforming to the "client.port" +// semantic conventions. It represents the client port number. +func ClientPort(val int) attribute.KeyValue { + return ClientPortKey.Int(val) +} + +// A cloud environment (e.g. GCP, Azure, AWS). +const ( + // CloudAccountIDKey is the attribute Key conforming to the + // "cloud.account.id" semantic conventions. It represents the cloud account + // ID the resource is assigned to. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '111111111111', 'opentelemetry' + CloudAccountIDKey = attribute.Key("cloud.account.id") + + // CloudAvailabilityZoneKey is the attribute Key conforming to the + // "cloud.availability_zone" semantic conventions. It represents the cloud + // regions often have multiple, isolated locations known as zones to + // increase availability. Availability zone represents the zone where the + // resource is running. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'us-east-1c' + // Note: Availability zones are called "zones" on Alibaba Cloud and Google + // Cloud. + CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") + + // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" + // semantic conventions. It represents the cloud platform in use. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: The prefix of the service SHOULD match the one specified in + // `cloud.provider`. + CloudPlatformKey = attribute.Key("cloud.platform") + + // CloudProviderKey is the attribute Key conforming to the "cloud.provider" + // semantic conventions. It represents the name of the cloud provider. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + CloudProviderKey = attribute.Key("cloud.provider") + + // CloudRegionKey is the attribute Key conforming to the "cloud.region" + // semantic conventions. It represents the geographical region the resource + // is running. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'us-central1', 'us-east-1' + // Note: Refer to your provider's docs to see the available regions, for + // example [Alibaba Cloud + // regions](https://www.alibabacloud.com/help/doc-detail/40654.htm), [AWS + // regions](https://aws.amazon.com/about-aws/global-infrastructure/regions_az/), + // [Azure + // regions](https://azure.microsoft.com/global-infrastructure/geographies/), + // [Google Cloud regions](https://cloud.google.com/about/locations), or + // [Tencent Cloud + // regions](https://www.tencentcloud.com/document/product/213/6091). + CloudRegionKey = attribute.Key("cloud.region") + + // CloudResourceIDKey is the attribute Key conforming to the + // "cloud.resource_id" semantic conventions. It represents the cloud + // provider-specific native identifier of the monitored cloud resource + // (e.g. an + // [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html) + // on AWS, a [fully qualified resource + // ID](https://learn.microsoft.com/rest/api/resources/resources/get-by-id) + // on Azure, a [full resource + // name](https://cloud.google.com/apis/design/resource_names#full_resource_name) + // on GCP) + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function', + // '//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID', + // '/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/' + // Note: On some cloud providers, it may not be possible to determine the + // full ID at startup, + // so it may be necessary to set `cloud.resource_id` as a span attribute + // instead. + // + // The exact value to use for `cloud.resource_id` depends on the cloud + // provider. + // The following well-known definitions MUST be used if you set this + // attribute and they apply: + // + // * **AWS Lambda:** The function + // [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html). + // Take care not to use the "invoked ARN" directly but replace any + // [alias + // suffix](https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html) + // with the resolved function version, as the same runtime instance may + // be invokable with + // multiple different aliases. + // * **GCP:** The [URI of the + // resource](https://cloud.google.com/iam/docs/full-resource-names) + // * **Azure:** The [Fully Qualified Resource + // ID](https://docs.microsoft.com/rest/api/resources/resources/get-by-id) + // of the invoked function, + // *not* the function app, having the form + // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/`. + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider. + CloudResourceIDKey = attribute.Key("cloud.resource_id") +) + +var ( + // Alibaba Cloud Elastic Compute Service + CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") + // Alibaba Cloud Function Compute + CloudPlatformAlibabaCloudFc = CloudPlatformKey.String("alibaba_cloud_fc") + // Red Hat OpenShift on Alibaba Cloud + CloudPlatformAlibabaCloudOpenshift = CloudPlatformKey.String("alibaba_cloud_openshift") + // AWS Elastic Compute Cloud + CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") + // AWS Elastic Container Service + CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") + // AWS Elastic Kubernetes Service + CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") + // AWS Lambda + CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") + // AWS Elastic Beanstalk + CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") + // AWS App Runner + CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") + // Red Hat OpenShift on AWS (ROSA) + CloudPlatformAWSOpenshift = CloudPlatformKey.String("aws_openshift") + // Azure Virtual Machines + CloudPlatformAzureVM = CloudPlatformKey.String("azure_vm") + // Azure Container Apps + CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure_container_apps") + // Azure Container Instances + CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure_container_instances") + // Azure Kubernetes Service + CloudPlatformAzureAKS = CloudPlatformKey.String("azure_aks") + // Azure Functions + CloudPlatformAzureFunctions = CloudPlatformKey.String("azure_functions") + // Azure App Service + CloudPlatformAzureAppService = CloudPlatformKey.String("azure_app_service") + // Azure Red Hat OpenShift + CloudPlatformAzureOpenshift = CloudPlatformKey.String("azure_openshift") + // Google Bare Metal Solution (BMS) + CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution") + // Google Cloud Compute Engine (GCE) + CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") + // Google Cloud Run + CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") + // Google Cloud Kubernetes Engine (GKE) + CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") + // Google Cloud Functions (GCF) + CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") + // Google Cloud App Engine (GAE) + CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") + // Red Hat OpenShift on Google Cloud + CloudPlatformGCPOpenshift = CloudPlatformKey.String("gcp_openshift") + // Red Hat OpenShift on IBM Cloud + CloudPlatformIbmCloudOpenshift = CloudPlatformKey.String("ibm_cloud_openshift") + // Tencent Cloud Cloud Virtual Machine (CVM) + CloudPlatformTencentCloudCvm = CloudPlatformKey.String("tencent_cloud_cvm") + // Tencent Cloud Elastic Kubernetes Service (EKS) + CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") + // Tencent Cloud Serverless Cloud Function (SCF) + CloudPlatformTencentCloudScf = CloudPlatformKey.String("tencent_cloud_scf") +) + +var ( + // Alibaba Cloud + CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") + // Amazon Web Services + CloudProviderAWS = CloudProviderKey.String("aws") + // Microsoft Azure + CloudProviderAzure = CloudProviderKey.String("azure") + // Google Cloud Platform + CloudProviderGCP = CloudProviderKey.String("gcp") + // Heroku Platform as a Service + CloudProviderHeroku = CloudProviderKey.String("heroku") + // IBM Cloud + CloudProviderIbmCloud = CloudProviderKey.String("ibm_cloud") + // Tencent Cloud + CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") +) + +// CloudAccountID returns an attribute KeyValue conforming to the +// "cloud.account.id" semantic conventions. It represents the cloud account ID +// the resource is assigned to. +func CloudAccountID(val string) attribute.KeyValue { + return CloudAccountIDKey.String(val) +} + +// CloudAvailabilityZone returns an attribute KeyValue conforming to the +// "cloud.availability_zone" semantic conventions. It represents the cloud +// regions often have multiple, isolated locations known as zones to increase +// availability. Availability zone represents the zone where the resource is +// running. +func CloudAvailabilityZone(val string) attribute.KeyValue { + return CloudAvailabilityZoneKey.String(val) +} + +// CloudRegion returns an attribute KeyValue conforming to the +// "cloud.region" semantic conventions. It represents the geographical region +// the resource is running. +func CloudRegion(val string) attribute.KeyValue { + return CloudRegionKey.String(val) +} + +// CloudResourceID returns an attribute KeyValue conforming to the +// "cloud.resource_id" semantic conventions. It represents the cloud +// provider-specific native identifier of the monitored cloud resource (e.g. an +// [ARN](https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html) +// on AWS, a [fully qualified resource +// ID](https://learn.microsoft.com/rest/api/resources/resources/get-by-id) on +// Azure, a [full resource +// name](https://cloud.google.com/apis/design/resource_names#full_resource_name) +// on GCP) +func CloudResourceID(val string) attribute.KeyValue { + return CloudResourceIDKey.String(val) +} + +// Attributes for CloudEvents. +const ( + // CloudeventsEventIDKey is the attribute Key conforming to the + // "cloudevents.event_id" semantic conventions. It represents the + // [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) + // uniquely identifies the event. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '123e4567-e89b-12d3-a456-426614174000', '0001' + CloudeventsEventIDKey = attribute.Key("cloudevents.event_id") + + // CloudeventsEventSourceKey is the attribute Key conforming to the + // "cloudevents.event_source" semantic conventions. It represents the + // [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) + // identifies the context in which an event happened. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'https://github.com/cloudevents', + // '/cloudevents/spec/pull/123', 'my-service' + CloudeventsEventSourceKey = attribute.Key("cloudevents.event_source") + + // CloudeventsEventSpecVersionKey is the attribute Key conforming to the + // "cloudevents.event_spec_version" semantic conventions. It represents the + // [version of the CloudEvents + // specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) + // which the event uses. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1.0' + CloudeventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") + + // CloudeventsEventSubjectKey is the attribute Key conforming to the + // "cloudevents.event_subject" semantic conventions. It represents the + // [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) + // of the event in the context of the event producer (identified by + // source). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'mynewfile.jpg' + CloudeventsEventSubjectKey = attribute.Key("cloudevents.event_subject") + + // CloudeventsEventTypeKey is the attribute Key conforming to the + // "cloudevents.event_type" semantic conventions. It represents the + // [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) + // contains a value describing the type of event related to the originating + // occurrence. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'com.github.pull_request.opened', + // 'com.example.object.deleted.v2' + CloudeventsEventTypeKey = attribute.Key("cloudevents.event_type") +) + +// CloudeventsEventID returns an attribute KeyValue conforming to the +// "cloudevents.event_id" semantic conventions. It represents the +// [event_id](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id) +// uniquely identifies the event. +func CloudeventsEventID(val string) attribute.KeyValue { + return CloudeventsEventIDKey.String(val) +} + +// CloudeventsEventSource returns an attribute KeyValue conforming to the +// "cloudevents.event_source" semantic conventions. It represents the +// [source](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1) +// identifies the context in which an event happened. +func CloudeventsEventSource(val string) attribute.KeyValue { + return CloudeventsEventSourceKey.String(val) +} + +// CloudeventsEventSpecVersion returns an attribute KeyValue conforming to +// the "cloudevents.event_spec_version" semantic conventions. It represents the +// [version of the CloudEvents +// specification](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion) +// which the event uses. +func CloudeventsEventSpecVersion(val string) attribute.KeyValue { + return CloudeventsEventSpecVersionKey.String(val) +} + +// CloudeventsEventSubject returns an attribute KeyValue conforming to the +// "cloudevents.event_subject" semantic conventions. It represents the +// [subject](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject) +// of the event in the context of the event producer (identified by source). +func CloudeventsEventSubject(val string) attribute.KeyValue { + return CloudeventsEventSubjectKey.String(val) +} + +// CloudeventsEventType returns an attribute KeyValue conforming to the +// "cloudevents.event_type" semantic conventions. It represents the +// [event_type](https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type) +// contains a value describing the type of event related to the originating +// occurrence. +func CloudeventsEventType(val string) attribute.KeyValue { + return CloudeventsEventTypeKey.String(val) +} + +// These attributes allow to report this unit of code and therefore to provide +// more context about the span. +const ( + // CodeColumnKey is the attribute Key conforming to the "code.column" + // semantic conventions. It represents the column number in `code.filepath` + // best representing the operation. It SHOULD point within the code unit + // named in `code.function`. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 16 + CodeColumnKey = attribute.Key("code.column") + + // CodeFilepathKey is the attribute Key conforming to the "code.filepath" + // semantic conventions. It represents the source code file name that + // identifies the code unit as uniquely as possible (preferably an absolute + // file path). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/usr/local/MyApplication/content_root/app/index.php' + CodeFilepathKey = attribute.Key("code.filepath") + + // CodeFunctionKey is the attribute Key conforming to the "code.function" + // semantic conventions. It represents the method or function name, or + // equivalent (usually rightmost part of the code unit's name). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'serveRequest' + CodeFunctionKey = attribute.Key("code.function") + + // CodeLineNumberKey is the attribute Key conforming to the "code.lineno" + // semantic conventions. It represents the line number in `code.filepath` + // best representing the operation. It SHOULD point within the code unit + // named in `code.function`. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 42 + CodeLineNumberKey = attribute.Key("code.lineno") + + // CodeNamespaceKey is the attribute Key conforming to the "code.namespace" + // semantic conventions. It represents the "namespace" within which + // `code.function` is defined. Usually the qualified class or module name, + // such that `code.namespace` + some separator + `code.function` form a + // unique identifier for the code unit. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'com.example.MyHTTPService' + CodeNamespaceKey = attribute.Key("code.namespace") + + // CodeStacktraceKey is the attribute Key conforming to the + // "code.stacktrace" semantic conventions. It represents a stacktrace as a + // string in the natural representation for the language runtime. The + // representation is to be determined and documented by each language SIG. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'at + // com.example.GenerateTrace.methodB(GenerateTrace.java:13)\\n at ' + // 'com.example.GenerateTrace.methodA(GenerateTrace.java:9)\\n at ' + // 'com.example.GenerateTrace.main(GenerateTrace.java:5)' + CodeStacktraceKey = attribute.Key("code.stacktrace") +) + +// CodeColumn returns an attribute KeyValue conforming to the "code.column" +// semantic conventions. It represents the column number in `code.filepath` +// best representing the operation. It SHOULD point within the code unit named +// in `code.function`. +func CodeColumn(val int) attribute.KeyValue { + return CodeColumnKey.Int(val) +} + +// CodeFilepath returns an attribute KeyValue conforming to the +// "code.filepath" semantic conventions. It represents the source code file +// name that identifies the code unit as uniquely as possible (preferably an +// absolute file path). +func CodeFilepath(val string) attribute.KeyValue { + return CodeFilepathKey.String(val) +} + +// CodeFunction returns an attribute KeyValue conforming to the +// "code.function" semantic conventions. It represents the method or function +// name, or equivalent (usually rightmost part of the code unit's name). +func CodeFunction(val string) attribute.KeyValue { + return CodeFunctionKey.String(val) +} + +// CodeLineNumber returns an attribute KeyValue conforming to the "code.lineno" +// semantic conventions. It represents the line number in `code.filepath` best +// representing the operation. It SHOULD point within the code unit named in +// `code.function`. +func CodeLineNumber(val int) attribute.KeyValue { + return CodeLineNumberKey.Int(val) +} + +// CodeNamespace returns an attribute KeyValue conforming to the +// "code.namespace" semantic conventions. It represents the "namespace" within +// which `code.function` is defined. Usually the qualified class or module +// name, such that `code.namespace` + some separator + `code.function` form a +// unique identifier for the code unit. +func CodeNamespace(val string) attribute.KeyValue { + return CodeNamespaceKey.String(val) +} + +// CodeStacktrace returns an attribute KeyValue conforming to the +// "code.stacktrace" semantic conventions. It represents a stacktrace as a +// string in the natural representation for the language runtime. The +// representation is to be determined and documented by each language SIG. +func CodeStacktrace(val string) attribute.KeyValue { + return CodeStacktraceKey.String(val) +} + +// A container instance. +const ( + // ContainerCommandKey is the attribute Key conforming to the + // "container.command" semantic conventions. It represents the command used + // to run the container (i.e. the command name). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'otelcontribcol' + // Note: If using embedded credentials or sensitive data, it is recommended + // to remove them to prevent potential leakage. + ContainerCommandKey = attribute.Key("container.command") + + // ContainerCommandArgsKey is the attribute Key conforming to the + // "container.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) run by the + // container. [2] + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'otelcontribcol, --config, config.yaml' + ContainerCommandArgsKey = attribute.Key("container.command_args") + + // ContainerCommandLineKey is the attribute Key conforming to the + // "container.command_line" semantic conventions. It represents the full + // command run by the container as a single string representing the full + // command. [2] + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'otelcontribcol --config config.yaml' + ContainerCommandLineKey = attribute.Key("container.command_line") + + // ContainerCPUStateKey is the attribute Key conforming to the + // "container.cpu.state" semantic conventions. It represents the CPU state + // for this data point. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'user', 'kernel' + ContainerCPUStateKey = attribute.Key("container.cpu.state") + + // ContainerIDKey is the attribute Key conforming to the "container.id" + // semantic conventions. It represents the container ID. Usually a UUID, as + // for example used to [identify Docker + // containers](https://docs.docker.com/engine/reference/run/#container-identification). + // The UUID might be abbreviated. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'a3bf90e006b2' + ContainerIDKey = attribute.Key("container.id") + + // ContainerImageIDKey is the attribute Key conforming to the + // "container.image.id" semantic conventions. It represents the runtime + // specific image identifier. Usually a hash algorithm followed by a UUID. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f' + // Note: Docker defines a sha256 of the image id; `container.image.id` + // corresponds to the `Image` field from the Docker container inspect + // [API](https://docs.docker.com/engine/api/v1.43/#tag/Container/operation/ContainerInspect) + // endpoint. + // K8S defines a link to the container registry repository with digest + // `"imageID": "registry.azurecr.io + // /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"`. + // The ID is assigned by the container runtime and can vary in different + // environments. Consider using `oci.manifest.digest` if it is important to + // identify the same image in different environments/runtimes. + ContainerImageIDKey = attribute.Key("container.image.id") + + // ContainerImageNameKey is the attribute Key conforming to the + // "container.image.name" semantic conventions. It represents the name of + // the image the container was built on. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'gcr.io/opentelemetry/operator' + ContainerImageNameKey = attribute.Key("container.image.name") + + // ContainerImageRepoDigestsKey is the attribute Key conforming to the + // "container.image.repo_digests" semantic conventions. It represents the + // repo digests of the container image as provided by the container + // runtime. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb', + // 'internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578' + // Note: + // [Docker](https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect) + // and + // [CRI](https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238) + // report those under the `RepoDigests` field. + ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests") + + // ContainerImageTagsKey is the attribute Key conforming to the + // "container.image.tags" semantic conventions. It represents the container + // image tags. An example can be found in [Docker Image + // Inspect](https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect). + // Should be only the `` section of the full name for example from + // `registry.example.com/my-org/my-image:`. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'v1.27.1', '3.5.7-0' + ContainerImageTagsKey = attribute.Key("container.image.tags") + + // ContainerNameKey is the attribute Key conforming to the "container.name" + // semantic conventions. It represents the container name used by container + // runtime. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry-autoconf' + ContainerNameKey = attribute.Key("container.name") + + // ContainerRuntimeKey is the attribute Key conforming to the + // "container.runtime" semantic conventions. It represents the container + // runtime managing this container. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'docker', 'containerd', 'rkt' + ContainerRuntimeKey = attribute.Key("container.runtime") +) + +var ( + // When tasks of the cgroup are in user mode (Linux). When all container processes are in user mode (Windows) + ContainerCPUStateUser = ContainerCPUStateKey.String("user") + // When CPU is used by the system (host OS) + ContainerCPUStateSystem = ContainerCPUStateKey.String("system") + // When tasks of the cgroup are in kernel mode (Linux). When all container processes are in kernel mode (Windows) + ContainerCPUStateKernel = ContainerCPUStateKey.String("kernel") +) + +// ContainerCommand returns an attribute KeyValue conforming to the +// "container.command" semantic conventions. It represents the command used to +// run the container (i.e. the command name). +func ContainerCommand(val string) attribute.KeyValue { + return ContainerCommandKey.String(val) +} + +// ContainerCommandArgs returns an attribute KeyValue conforming to the +// "container.command_args" semantic conventions. It represents the all the +// command arguments (including the command/executable itself) run by the +// container. [2] +func ContainerCommandArgs(val ...string) attribute.KeyValue { + return ContainerCommandArgsKey.StringSlice(val) +} + +// ContainerCommandLine returns an attribute KeyValue conforming to the +// "container.command_line" semantic conventions. It represents the full +// command run by the container as a single string representing the full +// command. [2] +func ContainerCommandLine(val string) attribute.KeyValue { + return ContainerCommandLineKey.String(val) +} + +// ContainerID returns an attribute KeyValue conforming to the +// "container.id" semantic conventions. It represents the container ID. Usually +// a UUID, as for example used to [identify Docker +// containers](https://docs.docker.com/engine/reference/run/#container-identification). +// The UUID might be abbreviated. +func ContainerID(val string) attribute.KeyValue { + return ContainerIDKey.String(val) +} + +// ContainerImageID returns an attribute KeyValue conforming to the +// "container.image.id" semantic conventions. It represents the runtime +// specific image identifier. Usually a hash algorithm followed by a UUID. +func ContainerImageID(val string) attribute.KeyValue { + return ContainerImageIDKey.String(val) +} + +// ContainerImageName returns an attribute KeyValue conforming to the +// "container.image.name" semantic conventions. It represents the name of the +// image the container was built on. +func ContainerImageName(val string) attribute.KeyValue { + return ContainerImageNameKey.String(val) +} + +// ContainerImageRepoDigests returns an attribute KeyValue conforming to the +// "container.image.repo_digests" semantic conventions. It represents the repo +// digests of the container image as provided by the container runtime. +func ContainerImageRepoDigests(val ...string) attribute.KeyValue { + return ContainerImageRepoDigestsKey.StringSlice(val) +} + +// ContainerImageTags returns an attribute KeyValue conforming to the +// "container.image.tags" semantic conventions. It represents the container +// image tags. An example can be found in [Docker Image +// Inspect](https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect). +// Should be only the `` section of the full name for example from +// `registry.example.com/my-org/my-image:`. +func ContainerImageTags(val ...string) attribute.KeyValue { + return ContainerImageTagsKey.StringSlice(val) +} + +// ContainerName returns an attribute KeyValue conforming to the +// "container.name" semantic conventions. It represents the container name used +// by container runtime. +func ContainerName(val string) attribute.KeyValue { + return ContainerNameKey.String(val) +} + +// ContainerRuntime returns an attribute KeyValue conforming to the +// "container.runtime" semantic conventions. It represents the container +// runtime managing this container. +func ContainerRuntime(val string) attribute.KeyValue { + return ContainerRuntimeKey.String(val) +} + +// This group defines the attributes used to describe telemetry in the context +// of databases. +const ( + // DBClientConnectionsPoolNameKey is the attribute Key conforming to the + // "db.client.connections.pool.name" semantic conventions. It represents + // the name of the connection pool; unique within the instrumented + // application. In case the connection pool implementation doesn't provide + // a name, instrumentation should use a combination of `server.address` and + // `server.port` attributes formatted as `server.address:server.port`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myDataSource' + DBClientConnectionsPoolNameKey = attribute.Key("db.client.connections.pool.name") + + // DBClientConnectionsStateKey is the attribute Key conforming to the + // "db.client.connections.state" semantic conventions. It represents the + // state of a connection in the pool + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'idle' + DBClientConnectionsStateKey = attribute.Key("db.client.connections.state") + + // DBCollectionNameKey is the attribute Key conforming to the + // "db.collection.name" semantic conventions. It represents the name of a + // collection (table, container) within the database. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'public.users', 'customers' + // Note: If the collection name is parsed from the query, it SHOULD match + // the value provided in the query and may be qualified with the schema and + // database name. + // It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + DBCollectionNameKey = attribute.Key("db.collection.name") + + // DBNamespaceKey is the attribute Key conforming to the "db.namespace" + // semantic conventions. It represents the name of the database, fully + // qualified within the server address and port. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'customers', 'test.users' + // Note: If a database system has multiple namespace components, they + // SHOULD be concatenated (potentially using database system specific + // conventions) from most general to most specific namespace component, and + // more specific namespaces SHOULD NOT be captured without the more general + // namespaces, to ensure that "startswith" queries for the more general + // namespaces will be valid. + // Semantic conventions for individual database systems SHOULD document + // what `db.namespace` means in the context of that system. + // It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + DBNamespaceKey = attribute.Key("db.namespace") + + // DBOperationNameKey is the attribute Key conforming to the + // "db.operation.name" semantic conventions. It represents the name of the + // operation or command being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'findAndModify', 'HMSET', 'SELECT' + // Note: It is RECOMMENDED to capture the value as provided by the + // application without attempting to do any case normalization. + DBOperationNameKey = attribute.Key("db.operation.name") + + // DBQueryTextKey is the attribute Key conforming to the "db.query.text" + // semantic conventions. It represents the database query being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'SELECT * FROM wuser_table where username = ?', 'SET mykey + // "WuValue"' + DBQueryTextKey = attribute.Key("db.query.text") + + // DBSystemKey is the attribute Key conforming to the "db.system" semantic + // conventions. It represents the database management system (DBMS) product + // as identified by the client instrumentation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: The actual DBMS may differ from the one identified by the client. + // For example, when using PostgreSQL client libraries to connect to a + // CockroachDB, the `db.system` is set to `postgresql` based on the + // instrumentation's best knowledge. + DBSystemKey = attribute.Key("db.system") +) + +var ( + // idle + DBClientConnectionsStateIdle = DBClientConnectionsStateKey.String("idle") + // used + DBClientConnectionsStateUsed = DBClientConnectionsStateKey.String("used") +) + +var ( + // Some other SQL database. Fallback only. See notes + DBSystemOtherSQL = DBSystemKey.String("other_sql") + // Microsoft SQL Server + DBSystemMSSQL = DBSystemKey.String("mssql") + // Microsoft SQL Server Compact + DBSystemMssqlcompact = DBSystemKey.String("mssqlcompact") + // MySQL + DBSystemMySQL = DBSystemKey.String("mysql") + // Oracle Database + DBSystemOracle = DBSystemKey.String("oracle") + // IBM DB2 + DBSystemDB2 = DBSystemKey.String("db2") + // PostgreSQL + DBSystemPostgreSQL = DBSystemKey.String("postgresql") + // Amazon Redshift + DBSystemRedshift = DBSystemKey.String("redshift") + // Apache Hive + DBSystemHive = DBSystemKey.String("hive") + // Cloudscape + DBSystemCloudscape = DBSystemKey.String("cloudscape") + // HyperSQL DataBase + DBSystemHSQLDB = DBSystemKey.String("hsqldb") + // Progress Database + DBSystemProgress = DBSystemKey.String("progress") + // SAP MaxDB + DBSystemMaxDB = DBSystemKey.String("maxdb") + // SAP HANA + DBSystemHanaDB = DBSystemKey.String("hanadb") + // Ingres + DBSystemIngres = DBSystemKey.String("ingres") + // FirstSQL + DBSystemFirstSQL = DBSystemKey.String("firstsql") + // EnterpriseDB + DBSystemEDB = DBSystemKey.String("edb") + // InterSystems Caché + DBSystemCache = DBSystemKey.String("cache") + // Adabas (Adaptable Database System) + DBSystemAdabas = DBSystemKey.String("adabas") + // Firebird + DBSystemFirebird = DBSystemKey.String("firebird") + // Apache Derby + DBSystemDerby = DBSystemKey.String("derby") + // FileMaker + DBSystemFilemaker = DBSystemKey.String("filemaker") + // Informix + DBSystemInformix = DBSystemKey.String("informix") + // InstantDB + DBSystemInstantDB = DBSystemKey.String("instantdb") + // InterBase + DBSystemInterbase = DBSystemKey.String("interbase") + // MariaDB + DBSystemMariaDB = DBSystemKey.String("mariadb") + // Netezza + DBSystemNetezza = DBSystemKey.String("netezza") + // Pervasive PSQL + DBSystemPervasive = DBSystemKey.String("pervasive") + // PointBase + DBSystemPointbase = DBSystemKey.String("pointbase") + // SQLite + DBSystemSqlite = DBSystemKey.String("sqlite") + // Sybase + DBSystemSybase = DBSystemKey.String("sybase") + // Teradata + DBSystemTeradata = DBSystemKey.String("teradata") + // Vertica + DBSystemVertica = DBSystemKey.String("vertica") + // H2 + DBSystemH2 = DBSystemKey.String("h2") + // ColdFusion IMQ + DBSystemColdfusion = DBSystemKey.String("coldfusion") + // Apache Cassandra + DBSystemCassandra = DBSystemKey.String("cassandra") + // Apache HBase + DBSystemHBase = DBSystemKey.String("hbase") + // MongoDB + DBSystemMongoDB = DBSystemKey.String("mongodb") + // Redis + DBSystemRedis = DBSystemKey.String("redis") + // Couchbase + DBSystemCouchbase = DBSystemKey.String("couchbase") + // CouchDB + DBSystemCouchDB = DBSystemKey.String("couchdb") + // Microsoft Azure Cosmos DB + DBSystemCosmosDB = DBSystemKey.String("cosmosdb") + // Amazon DynamoDB + DBSystemDynamoDB = DBSystemKey.String("dynamodb") + // Neo4j + DBSystemNeo4j = DBSystemKey.String("neo4j") + // Apache Geode + DBSystemGeode = DBSystemKey.String("geode") + // Elasticsearch + DBSystemElasticsearch = DBSystemKey.String("elasticsearch") + // Memcached + DBSystemMemcached = DBSystemKey.String("memcached") + // CockroachDB + DBSystemCockroachdb = DBSystemKey.String("cockroachdb") + // OpenSearch + DBSystemOpensearch = DBSystemKey.String("opensearch") + // ClickHouse + DBSystemClickhouse = DBSystemKey.String("clickhouse") + // Cloud Spanner + DBSystemSpanner = DBSystemKey.String("spanner") + // Trino + DBSystemTrino = DBSystemKey.String("trino") +) + +// DBClientConnectionsPoolName returns an attribute KeyValue conforming to +// the "db.client.connections.pool.name" semantic conventions. It represents +// the name of the connection pool; unique within the instrumented application. +// In case the connection pool implementation doesn't provide a name, +// instrumentation should use a combination of `server.address` and +// `server.port` attributes formatted as `server.address:server.port`. +func DBClientConnectionsPoolName(val string) attribute.KeyValue { + return DBClientConnectionsPoolNameKey.String(val) +} + +// DBCollectionName returns an attribute KeyValue conforming to the +// "db.collection.name" semantic conventions. It represents the name of a +// collection (table, container) within the database. +func DBCollectionName(val string) attribute.KeyValue { + return DBCollectionNameKey.String(val) +} + +// DBNamespace returns an attribute KeyValue conforming to the +// "db.namespace" semantic conventions. It represents the name of the database, +// fully qualified within the server address and port. +func DBNamespace(val string) attribute.KeyValue { + return DBNamespaceKey.String(val) +} + +// DBOperationName returns an attribute KeyValue conforming to the +// "db.operation.name" semantic conventions. It represents the name of the +// operation or command being executed. +func DBOperationName(val string) attribute.KeyValue { + return DBOperationNameKey.String(val) +} + +// DBQueryText returns an attribute KeyValue conforming to the +// "db.query.text" semantic conventions. It represents the database query being +// executed. +func DBQueryText(val string) attribute.KeyValue { + return DBQueryTextKey.String(val) +} + +// This group defines attributes for Cassandra. +const ( + // DBCassandraConsistencyLevelKey is the attribute Key conforming to the + // "db.cassandra.consistency_level" semantic conventions. It represents the + // consistency level of the query. Based on consistency values from + // [CQL](https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html). + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + DBCassandraConsistencyLevelKey = attribute.Key("db.cassandra.consistency_level") + + // DBCassandraCoordinatorDCKey is the attribute Key conforming to the + // "db.cassandra.coordinator.dc" semantic conventions. It represents the + // data center of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'us-west-2' + DBCassandraCoordinatorDCKey = attribute.Key("db.cassandra.coordinator.dc") + + // DBCassandraCoordinatorIDKey is the attribute Key conforming to the + // "db.cassandra.coordinator.id" semantic conventions. It represents the ID + // of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'be13faa2-8574-4d71-926d-27f16cf8a7af' + DBCassandraCoordinatorIDKey = attribute.Key("db.cassandra.coordinator.id") + + // DBCassandraIdempotenceKey is the attribute Key conforming to the + // "db.cassandra.idempotence" semantic conventions. It represents the + // whether or not the query is idempotent. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + DBCassandraIdempotenceKey = attribute.Key("db.cassandra.idempotence") + + // DBCassandraPageSizeKey is the attribute Key conforming to the + // "db.cassandra.page_size" semantic conventions. It represents the fetch + // size used for paging, i.e. how many rows will be returned at once. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 5000 + DBCassandraPageSizeKey = attribute.Key("db.cassandra.page_size") + + // DBCassandraSpeculativeExecutionCountKey is the attribute Key conforming + // to the "db.cassandra.speculative_execution_count" semantic conventions. + // It represents the number of times a query was speculatively executed. + // Not set or `0` if the query was not executed speculatively. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 0, 2 + DBCassandraSpeculativeExecutionCountKey = attribute.Key("db.cassandra.speculative_execution_count") +) + +var ( + // all + DBCassandraConsistencyLevelAll = DBCassandraConsistencyLevelKey.String("all") + // each_quorum + DBCassandraConsistencyLevelEachQuorum = DBCassandraConsistencyLevelKey.String("each_quorum") + // quorum + DBCassandraConsistencyLevelQuorum = DBCassandraConsistencyLevelKey.String("quorum") + // local_quorum + DBCassandraConsistencyLevelLocalQuorum = DBCassandraConsistencyLevelKey.String("local_quorum") + // one + DBCassandraConsistencyLevelOne = DBCassandraConsistencyLevelKey.String("one") + // two + DBCassandraConsistencyLevelTwo = DBCassandraConsistencyLevelKey.String("two") + // three + DBCassandraConsistencyLevelThree = DBCassandraConsistencyLevelKey.String("three") + // local_one + DBCassandraConsistencyLevelLocalOne = DBCassandraConsistencyLevelKey.String("local_one") + // any + DBCassandraConsistencyLevelAny = DBCassandraConsistencyLevelKey.String("any") + // serial + DBCassandraConsistencyLevelSerial = DBCassandraConsistencyLevelKey.String("serial") + // local_serial + DBCassandraConsistencyLevelLocalSerial = DBCassandraConsistencyLevelKey.String("local_serial") +) + +// DBCassandraCoordinatorDC returns an attribute KeyValue conforming to the +// "db.cassandra.coordinator.dc" semantic conventions. It represents the data +// center of the coordinating node for a query. +func DBCassandraCoordinatorDC(val string) attribute.KeyValue { + return DBCassandraCoordinatorDCKey.String(val) +} + +// DBCassandraCoordinatorID returns an attribute KeyValue conforming to the +// "db.cassandra.coordinator.id" semantic conventions. It represents the ID of +// the coordinating node for a query. +func DBCassandraCoordinatorID(val string) attribute.KeyValue { + return DBCassandraCoordinatorIDKey.String(val) +} + +// DBCassandraIdempotence returns an attribute KeyValue conforming to the +// "db.cassandra.idempotence" semantic conventions. It represents the whether +// or not the query is idempotent. +func DBCassandraIdempotence(val bool) attribute.KeyValue { + return DBCassandraIdempotenceKey.Bool(val) +} + +// DBCassandraPageSize returns an attribute KeyValue conforming to the +// "db.cassandra.page_size" semantic conventions. It represents the fetch size +// used for paging, i.e. how many rows will be returned at once. +func DBCassandraPageSize(val int) attribute.KeyValue { + return DBCassandraPageSizeKey.Int(val) +} + +// DBCassandraSpeculativeExecutionCount returns an attribute KeyValue +// conforming to the "db.cassandra.speculative_execution_count" semantic +// conventions. It represents the number of times a query was speculatively +// executed. Not set or `0` if the query was not executed speculatively. +func DBCassandraSpeculativeExecutionCount(val int) attribute.KeyValue { + return DBCassandraSpeculativeExecutionCountKey.Int(val) +} + +// This group defines attributes for Azure Cosmos DB. +const ( + // DBCosmosDBClientIDKey is the attribute Key conforming to the + // "db.cosmosdb.client_id" semantic conventions. It represents the unique + // Cosmos client instance id. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '3ba4827d-4422-483f-b59f-85b74211c11d' + DBCosmosDBClientIDKey = attribute.Key("db.cosmosdb.client_id") + + // DBCosmosDBConnectionModeKey is the attribute Key conforming to the + // "db.cosmosdb.connection_mode" semantic conventions. It represents the + // cosmos client connection mode. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + DBCosmosDBConnectionModeKey = attribute.Key("db.cosmosdb.connection_mode") + + // DBCosmosDBOperationTypeKey is the attribute Key conforming to the + // "db.cosmosdb.operation_type" semantic conventions. It represents the + // cosmosDB Operation Type. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + DBCosmosDBOperationTypeKey = attribute.Key("db.cosmosdb.operation_type") + + // DBCosmosDBRequestChargeKey is the attribute Key conforming to the + // "db.cosmosdb.request_charge" semantic conventions. It represents the rU + // consumed for that operation + // + // Type: double + // RequirementLevel: Optional + // Stability: experimental + // Examples: 46.18, 1.0 + DBCosmosDBRequestChargeKey = attribute.Key("db.cosmosdb.request_charge") + + // DBCosmosDBRequestContentLengthKey is the attribute Key conforming to the + // "db.cosmosdb.request_content_length" semantic conventions. It represents + // the request payload size in bytes + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + DBCosmosDBRequestContentLengthKey = attribute.Key("db.cosmosdb.request_content_length") + + // DBCosmosDBStatusCodeKey is the attribute Key conforming to the + // "db.cosmosdb.status_code" semantic conventions. It represents the cosmos + // DB status code. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 200, 201 + DBCosmosDBStatusCodeKey = attribute.Key("db.cosmosdb.status_code") + + // DBCosmosDBSubStatusCodeKey is the attribute Key conforming to the + // "db.cosmosdb.sub_status_code" semantic conventions. It represents the + // cosmos DB sub status code. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1000, 1002 + DBCosmosDBSubStatusCodeKey = attribute.Key("db.cosmosdb.sub_status_code") +) + +var ( + // Gateway (HTTP) connections mode + DBCosmosDBConnectionModeGateway = DBCosmosDBConnectionModeKey.String("gateway") + // Direct connection + DBCosmosDBConnectionModeDirect = DBCosmosDBConnectionModeKey.String("direct") +) + +var ( + // invalid + DBCosmosDBOperationTypeInvalid = DBCosmosDBOperationTypeKey.String("Invalid") + // create + DBCosmosDBOperationTypeCreate = DBCosmosDBOperationTypeKey.String("Create") + // patch + DBCosmosDBOperationTypePatch = DBCosmosDBOperationTypeKey.String("Patch") + // read + DBCosmosDBOperationTypeRead = DBCosmosDBOperationTypeKey.String("Read") + // read_feed + DBCosmosDBOperationTypeReadFeed = DBCosmosDBOperationTypeKey.String("ReadFeed") + // delete + DBCosmosDBOperationTypeDelete = DBCosmosDBOperationTypeKey.String("Delete") + // replace + DBCosmosDBOperationTypeReplace = DBCosmosDBOperationTypeKey.String("Replace") + // execute + DBCosmosDBOperationTypeExecute = DBCosmosDBOperationTypeKey.String("Execute") + // query + DBCosmosDBOperationTypeQuery = DBCosmosDBOperationTypeKey.String("Query") + // head + DBCosmosDBOperationTypeHead = DBCosmosDBOperationTypeKey.String("Head") + // head_feed + DBCosmosDBOperationTypeHeadFeed = DBCosmosDBOperationTypeKey.String("HeadFeed") + // upsert + DBCosmosDBOperationTypeUpsert = DBCosmosDBOperationTypeKey.String("Upsert") + // batch + DBCosmosDBOperationTypeBatch = DBCosmosDBOperationTypeKey.String("Batch") + // query_plan + DBCosmosDBOperationTypeQueryPlan = DBCosmosDBOperationTypeKey.String("QueryPlan") + // execute_javascript + DBCosmosDBOperationTypeExecuteJavascript = DBCosmosDBOperationTypeKey.String("ExecuteJavaScript") +) + +// DBCosmosDBClientID returns an attribute KeyValue conforming to the +// "db.cosmosdb.client_id" semantic conventions. It represents the unique +// Cosmos client instance id. +func DBCosmosDBClientID(val string) attribute.KeyValue { + return DBCosmosDBClientIDKey.String(val) +} + +// DBCosmosDBRequestCharge returns an attribute KeyValue conforming to the +// "db.cosmosdb.request_charge" semantic conventions. It represents the rU +// consumed for that operation +func DBCosmosDBRequestCharge(val float64) attribute.KeyValue { + return DBCosmosDBRequestChargeKey.Float64(val) +} + +// DBCosmosDBRequestContentLength returns an attribute KeyValue conforming +// to the "db.cosmosdb.request_content_length" semantic conventions. It +// represents the request payload size in bytes +func DBCosmosDBRequestContentLength(val int) attribute.KeyValue { + return DBCosmosDBRequestContentLengthKey.Int(val) +} + +// DBCosmosDBStatusCode returns an attribute KeyValue conforming to the +// "db.cosmosdb.status_code" semantic conventions. It represents the cosmos DB +// status code. +func DBCosmosDBStatusCode(val int) attribute.KeyValue { + return DBCosmosDBStatusCodeKey.Int(val) +} + +// DBCosmosDBSubStatusCode returns an attribute KeyValue conforming to the +// "db.cosmosdb.sub_status_code" semantic conventions. It represents the cosmos +// DB sub status code. +func DBCosmosDBSubStatusCode(val int) attribute.KeyValue { + return DBCosmosDBSubStatusCodeKey.Int(val) +} + +// This group defines attributes for Elasticsearch. +const ( + // DBElasticsearchClusterNameKey is the attribute Key conforming to the + // "db.elasticsearch.cluster.name" semantic conventions. It represents the + // represents the identifier of an Elasticsearch cluster. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'e9106fc68e3044f0b1475b04bf4ffd5f' + DBElasticsearchClusterNameKey = attribute.Key("db.elasticsearch.cluster.name") + + // DBElasticsearchNodeNameKey is the attribute Key conforming to the + // "db.elasticsearch.node.name" semantic conventions. It represents the + // represents the human-readable identifier of the node/instance to which a + // request was routed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'instance-0000000001' + DBElasticsearchNodeNameKey = attribute.Key("db.elasticsearch.node.name") +) + +// DBElasticsearchClusterName returns an attribute KeyValue conforming to +// the "db.elasticsearch.cluster.name" semantic conventions. It represents the +// represents the identifier of an Elasticsearch cluster. +func DBElasticsearchClusterName(val string) attribute.KeyValue { + return DBElasticsearchClusterNameKey.String(val) +} + +// DBElasticsearchNodeName returns an attribute KeyValue conforming to the +// "db.elasticsearch.node.name" semantic conventions. It represents the +// represents the human-readable identifier of the node/instance to which a +// request was routed. +func DBElasticsearchNodeName(val string) attribute.KeyValue { + return DBElasticsearchNodeNameKey.String(val) +} + +// Attributes for software deployments. +const ( + // DeploymentEnvironmentKey is the attribute Key conforming to the + // "deployment.environment" semantic conventions. It represents the name of + // the [deployment + // environment](https://wikipedia.org/wiki/Deployment_environment) (aka + // deployment tier). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'staging', 'production' + // Note: `deployment.environment` does not affect the uniqueness + // constraints defined through + // the `service.namespace`, `service.name` and `service.instance.id` + // resource attributes. + // This implies that resources carrying the following attribute + // combinations MUST be + // considered to be identifying the same service: + // + // * `service.name=frontend`, `deployment.environment=production` + // * `service.name=frontend`, `deployment.environment=staging`. + DeploymentEnvironmentKey = attribute.Key("deployment.environment") +) + +// DeploymentEnvironment returns an attribute KeyValue conforming to the +// "deployment.environment" semantic conventions. It represents the name of the +// [deployment environment](https://wikipedia.org/wiki/Deployment_environment) +// (aka deployment tier). +func DeploymentEnvironment(val string) attribute.KeyValue { + return DeploymentEnvironmentKey.String(val) +} + +// Attributes that represents an occurrence of a lifecycle transition on the +// Android platform. +const ( + // AndroidStateKey is the attribute Key conforming to the "android.state" + // semantic conventions. It represents the deprecated use the + // `device.app.lifecycle` event definition including `android.state` as a + // payload field instead. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: The Android lifecycle states are defined in [Activity lifecycle + // callbacks](https://developer.android.com/guide/components/activities/activity-lifecycle#lc), + // and from which the `OS identifiers` are derived. + AndroidStateKey = attribute.Key("android.state") +) + +var ( + // Any time before Activity.onResume() or, if the app has no Activity, Context.startService() has been called in the app for the first time + AndroidStateCreated = AndroidStateKey.String("created") + // Any time after Activity.onPause() or, if the app has no Activity, Context.stopService() has been called when the app was in the foreground state + AndroidStateBackground = AndroidStateKey.String("background") + // Any time after Activity.onResume() or, if the app has no Activity, Context.startService() has been called when the app was in either the created or background states + AndroidStateForeground = AndroidStateKey.String("foreground") +) + +// These attributes may be used to describe the receiver of a network +// exchange/packet. These should be used when there is no client/server +// relationship between the two sides, or when that relationship is unknown. +// This covers low-level network interactions (e.g. packet tracing) where you +// don't know if there was a connection or which side initiated it. This also +// covers unidirectional UDP flows and peer-to-peer communication where the +// "user-facing" surface of the protocol / API doesn't expose a clear notion of +// client and server. +const ( + // DestinationAddressKey is the attribute Key conforming to the + // "destination.address" semantic conventions. It represents the + // destination address - domain name if available without reverse DNS + // lookup; otherwise, IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'destination.example.com', '10.1.2.80', '/tmp/my.sock' + // Note: When observed from the source side, and when communicating through + // an intermediary, `destination.address` SHOULD represent the destination + // address behind any intermediaries, for example proxies, if it's + // available. + DestinationAddressKey = attribute.Key("destination.address") + + // DestinationPortKey is the attribute Key conforming to the + // "destination.port" semantic conventions. It represents the destination + // port number + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3389, 2888 + DestinationPortKey = attribute.Key("destination.port") +) + +// DestinationAddress returns an attribute KeyValue conforming to the +// "destination.address" semantic conventions. It represents the destination +// address - domain name if available without reverse DNS lookup; otherwise, IP +// address or Unix domain socket name. +func DestinationAddress(val string) attribute.KeyValue { + return DestinationAddressKey.String(val) +} + +// DestinationPort returns an attribute KeyValue conforming to the +// "destination.port" semantic conventions. It represents the destination port +// number +func DestinationPort(val int) attribute.KeyValue { + return DestinationPortKey.Int(val) +} + +// Describes device attributes. +const ( + // DeviceIDKey is the attribute Key conforming to the "device.id" semantic + // conventions. It represents a unique identifier representing the device + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2ab2916d-a51f-4ac8-80ee-45ac31a28092' + // Note: The device identifier MUST only be defined using the values + // outlined below. This value is not an advertising identifier and MUST NOT + // be used as such. On iOS (Swift or Objective-C), this value MUST be equal + // to the [vendor + // identifier](https://developer.apple.com/documentation/uikit/uidevice/1620059-identifierforvendor). + // On Android (Java or Kotlin), this value MUST be equal to the Firebase + // Installation ID or a globally unique UUID which is persisted across + // sessions in your application. More information can be found + // [here](https://developer.android.com/training/articles/user-data-ids) on + // best practices and exact implementation details. Caution should be taken + // when storing personal data or anything which can identify a user. GDPR + // and data protection laws may apply, ensure you do your own due + // diligence. + DeviceIDKey = attribute.Key("device.id") + + // DeviceManufacturerKey is the attribute Key conforming to the + // "device.manufacturer" semantic conventions. It represents the name of + // the device manufacturer + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Apple', 'Samsung' + // Note: The Android OS provides this field via + // [Build](https://developer.android.com/reference/android/os/Build#MANUFACTURER). + // iOS apps SHOULD hardcode the value `Apple`. + DeviceManufacturerKey = attribute.Key("device.manufacturer") + + // DeviceModelIdentifierKey is the attribute Key conforming to the + // "device.model.identifier" semantic conventions. It represents the model + // identifier for the device + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'iPhone3,4', 'SM-G920F' + // Note: It's recommended this value represents a machine-readable version + // of the model identifier rather than the market or consumer-friendly name + // of the device. + DeviceModelIdentifierKey = attribute.Key("device.model.identifier") + + // DeviceModelNameKey is the attribute Key conforming to the + // "device.model.name" semantic conventions. It represents the marketing + // name for the device model + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'iPhone 6s Plus', 'Samsung Galaxy S6' + // Note: It's recommended this value represents a human-readable version of + // the device model rather than a machine-readable alternative. + DeviceModelNameKey = attribute.Key("device.model.name") +) + +// DeviceID returns an attribute KeyValue conforming to the "device.id" +// semantic conventions. It represents a unique identifier representing the +// device +func DeviceID(val string) attribute.KeyValue { + return DeviceIDKey.String(val) +} + +// DeviceManufacturer returns an attribute KeyValue conforming to the +// "device.manufacturer" semantic conventions. It represents the name of the +// device manufacturer +func DeviceManufacturer(val string) attribute.KeyValue { + return DeviceManufacturerKey.String(val) +} + +// DeviceModelIdentifier returns an attribute KeyValue conforming to the +// "device.model.identifier" semantic conventions. It represents the model +// identifier for the device +func DeviceModelIdentifier(val string) attribute.KeyValue { + return DeviceModelIdentifierKey.String(val) +} + +// DeviceModelName returns an attribute KeyValue conforming to the +// "device.model.name" semantic conventions. It represents the marketing name +// for the device model +func DeviceModelName(val string) attribute.KeyValue { + return DeviceModelNameKey.String(val) +} + +// These attributes may be used for any disk related operation. +const ( + // DiskIoDirectionKey is the attribute Key conforming to the + // "disk.io.direction" semantic conventions. It represents the disk IO + // operation direction. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'read' + DiskIoDirectionKey = attribute.Key("disk.io.direction") +) + +var ( + // read + DiskIoDirectionRead = DiskIoDirectionKey.String("read") + // write + DiskIoDirectionWrite = DiskIoDirectionKey.String("write") +) + +// The shared attributes used to report a DNS query. +const ( + // DNSQuestionNameKey is the attribute Key conforming to the + // "dns.question.name" semantic conventions. It represents the name being + // queried. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'www.example.com', 'opentelemetry.io' + // Note: If the name field contains non-printable characters (below 32 or + // above 126), those characters should be represented as escaped base 10 + // integers (\DDD). Back slashes and quotes should be escaped. Tabs, + // carriage returns, and line feeds should be converted to \t, \r, and \n + // respectively. + DNSQuestionNameKey = attribute.Key("dns.question.name") +) + +// DNSQuestionName returns an attribute KeyValue conforming to the +// "dns.question.name" semantic conventions. It represents the name being +// queried. +func DNSQuestionName(val string) attribute.KeyValue { + return DNSQuestionNameKey.String(val) +} + +// Attributes for operations with an authenticated and/or authorized enduser. +const ( + // EnduserIDKey is the attribute Key conforming to the "enduser.id" + // semantic conventions. It represents the username or client_id extracted + // from the access token or + // [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header + // in the inbound request from outside the system. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'username' + EnduserIDKey = attribute.Key("enduser.id") + + // EnduserRoleKey is the attribute Key conforming to the "enduser.role" + // semantic conventions. It represents the actual/assumed role the client + // is making the request under extracted from token or application security + // context. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'admin' + EnduserRoleKey = attribute.Key("enduser.role") + + // EnduserScopeKey is the attribute Key conforming to the "enduser.scope" + // semantic conventions. It represents the scopes or granted authorities + // the client currently possesses extracted from token or application + // security context. The value would come from the scope associated with an + // [OAuth 2.0 Access + // Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute + // value in a [SAML 2.0 + // Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'read:message, write:files' + EnduserScopeKey = attribute.Key("enduser.scope") +) + +// EnduserID returns an attribute KeyValue conforming to the "enduser.id" +// semantic conventions. It represents the username or client_id extracted from +// the access token or +// [Authorization](https://tools.ietf.org/html/rfc7235#section-4.2) header in +// the inbound request from outside the system. +func EnduserID(val string) attribute.KeyValue { + return EnduserIDKey.String(val) +} + +// EnduserRole returns an attribute KeyValue conforming to the +// "enduser.role" semantic conventions. It represents the actual/assumed role +// the client is making the request under extracted from token or application +// security context. +func EnduserRole(val string) attribute.KeyValue { + return EnduserRoleKey.String(val) +} + +// EnduserScope returns an attribute KeyValue conforming to the +// "enduser.scope" semantic conventions. It represents the scopes or granted +// authorities the client currently possesses extracted from token or +// application security context. The value would come from the scope associated +// with an [OAuth 2.0 Access +// Token](https://tools.ietf.org/html/rfc6749#section-3.3) or an attribute +// value in a [SAML 2.0 +// Assertion](http://docs.oasis-open.org/security/saml/Post2.0/sstc-saml-tech-overview-2.0.html). +func EnduserScope(val string) attribute.KeyValue { + return EnduserScopeKey.String(val) +} + +// The shared attributes used to report an error. +const ( + // ErrorTypeKey is the attribute Key conforming to the "error.type" + // semantic conventions. It represents the describes a class of error the + // operation ended with. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'timeout', 'java.net.UnknownHostException', + // 'server_certificate_invalid', '500' + // Note: The `error.type` SHOULD be predictable, and SHOULD have low + // cardinality. + // + // When `error.type` is set to a type (e.g., an exception type), its + // canonical class name identifying the type within the artifact SHOULD be + // used. + // + // Instrumentations SHOULD document the list of errors they report. + // + // The cardinality of `error.type` within one instrumentation library + // SHOULD be low. + // Telemetry consumers that aggregate data from multiple instrumentation + // libraries and applications + // should be prepared for `error.type` to have high cardinality at query + // time when no + // additional filters are applied. + // + // If the operation has completed successfully, instrumentations SHOULD NOT + // set `error.type`. + // + // If a specific domain defines its own set of error identifiers (such as + // HTTP or gRPC status codes), + // it's RECOMMENDED to: + // + // * Use a domain-specific attribute + // * Set `error.type` to capture all errors, regardless of whether they are + // defined within the domain-specific set or not. + ErrorTypeKey = attribute.Key("error.type") +) + +var ( + // A fallback error value to be used when the instrumentation doesn't define a custom value + ErrorTypeOther = ErrorTypeKey.String("_OTHER") +) + +// Attributes for Events represented using Log Records. +const ( + // EventNameKey is the attribute Key conforming to the "event.name" + // semantic conventions. It represents the identifies the class / type of + // event. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'browser.mouse.click', 'device.app.lifecycle' + // Note: Event names are subject to the same rules as [attribute + // names](https://github.com/open-telemetry/opentelemetry-specification/tree/v1.33.0/specification/common/attribute-naming.md). + // Notably, event names are namespaced to avoid collisions and provide a + // clean separation of semantics for events in separate domains like + // browser, mobile, and kubernetes. + EventNameKey = attribute.Key("event.name") +) + +// EventName returns an attribute KeyValue conforming to the "event.name" +// semantic conventions. It represents the identifies the class / type of +// event. +func EventName(val string) attribute.KeyValue { + return EventNameKey.String(val) +} + +// The shared attributes used to report a single exception associated with a +// span or log. +const ( + // ExceptionEscapedKey is the attribute Key conforming to the + // "exception.escaped" semantic conventions. It represents the sHOULD be + // set to true if the exception event is recorded at a point where it is + // known that the exception is escaping the scope of the span. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + // Note: An exception is considered to have escaped (or left) the scope of + // a span, + // if that span is ended while the exception is still logically "in + // flight". + // This may be actually "in flight" in some languages (e.g. if the + // exception + // is passed to a Context manager's `__exit__` method in Python) but will + // usually be caught at the point of recording the exception in most + // languages. + // + // It is usually not possible to determine at the point where an exception + // is thrown + // whether it will escape the scope of a span. + // However, it is trivial to know that an exception + // will escape, if one checks for an active exception just before ending + // the span, + // as done in the [example for recording span + // exceptions](https://opentelemetry.io/docs/specs/semconv/exceptions/exceptions-spans/#recording-an-exception). + // + // It follows that an exception may still escape the scope of the span + // even if the `exception.escaped` attribute was not set or set to false, + // since the event might have been recorded at a time where it was not + // clear whether the exception will escape. + ExceptionEscapedKey = attribute.Key("exception.escaped") + + // ExceptionMessageKey is the attribute Key conforming to the + // "exception.message" semantic conventions. It represents the exception + // message. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Division by zero', "Can't convert 'int' object to str + // implicitly" + ExceptionMessageKey = attribute.Key("exception.message") + + // ExceptionStacktraceKey is the attribute Key conforming to the + // "exception.stacktrace" semantic conventions. It represents a stacktrace + // as a string in the natural representation for the language runtime. The + // representation is to be determined and documented by each language SIG. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'Exception in thread "main" java.lang.RuntimeException: Test + // exception\\n at ' + // 'com.example.GenerateTrace.methodB(GenerateTrace.java:13)\\n at ' + // 'com.example.GenerateTrace.methodA(GenerateTrace.java:9)\\n at ' + // 'com.example.GenerateTrace.main(GenerateTrace.java:5)' + ExceptionStacktraceKey = attribute.Key("exception.stacktrace") + + // ExceptionTypeKey is the attribute Key conforming to the "exception.type" + // semantic conventions. It represents the type of the exception (its + // fully-qualified class name, if applicable). The dynamic type of the + // exception should be preferred over the static type in languages that + // support it. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'java.net.ConnectException', 'OSError' + ExceptionTypeKey = attribute.Key("exception.type") +) + +// ExceptionEscaped returns an attribute KeyValue conforming to the +// "exception.escaped" semantic conventions. It represents the sHOULD be set to +// true if the exception event is recorded at a point where it is known that +// the exception is escaping the scope of the span. +func ExceptionEscaped(val bool) attribute.KeyValue { + return ExceptionEscapedKey.Bool(val) +} + +// ExceptionMessage returns an attribute KeyValue conforming to the +// "exception.message" semantic conventions. It represents the exception +// message. +func ExceptionMessage(val string) attribute.KeyValue { + return ExceptionMessageKey.String(val) +} + +// ExceptionStacktrace returns an attribute KeyValue conforming to the +// "exception.stacktrace" semantic conventions. It represents a stacktrace as a +// string in the natural representation for the language runtime. The +// representation is to be determined and documented by each language SIG. +func ExceptionStacktrace(val string) attribute.KeyValue { + return ExceptionStacktraceKey.String(val) +} + +// ExceptionType returns an attribute KeyValue conforming to the +// "exception.type" semantic conventions. It represents the type of the +// exception (its fully-qualified class name, if applicable). The dynamic type +// of the exception should be preferred over the static type in languages that +// support it. +func ExceptionType(val string) attribute.KeyValue { + return ExceptionTypeKey.String(val) +} + +// FaaS attributes +const ( + // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" + // semantic conventions. It represents a boolean that is true if the + // serverless function is executed for the first time (aka cold-start). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + FaaSColdstartKey = attribute.Key("faas.coldstart") + + // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic + // conventions. It represents a string containing the schedule period as + // [Cron + // Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '0/5 * * * ? *' + FaaSCronKey = attribute.Key("faas.cron") + + // FaaSDocumentCollectionKey is the attribute Key conforming to the + // "faas.document.collection" semantic conventions. It represents the name + // of the source on which the triggering operation was performed. For + // example, in Cloud Storage or S3 corresponds to the bucket name, and in + // Cosmos DB to the database name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myBucketName', 'myDBName' + FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") + + // FaaSDocumentNameKey is the attribute Key conforming to the + // "faas.document.name" semantic conventions. It represents the document + // name/table subjected to the operation. For example, in Cloud Storage or + // S3 is the name of the file, and in Cosmos DB the table name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myFile.txt', 'myTableName' + FaaSDocumentNameKey = attribute.Key("faas.document.name") + + // FaaSDocumentOperationKey is the attribute Key conforming to the + // "faas.document.operation" semantic conventions. It represents the + // describes the type of the operation that was performed on the data. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + FaaSDocumentOperationKey = attribute.Key("faas.document.operation") + + // FaaSDocumentTimeKey is the attribute Key conforming to the + // "faas.document.time" semantic conventions. It represents a string + // containing the time when the data was accessed in the [ISO + // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format + // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2020-01-23T13:47:06Z' + FaaSDocumentTimeKey = attribute.Key("faas.document.time") + + // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" + // semantic conventions. It represents the execution environment ID as a + // string, that will be potentially reused for other invocations to the + // same function/function version. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de' + // Note: * **AWS Lambda:** Use the (full) log stream name. + FaaSInstanceKey = attribute.Key("faas.instance") + + // FaaSInvocationIDKey is the attribute Key conforming to the + // "faas.invocation_id" semantic conventions. It represents the invocation + // ID of the current function invocation. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'af9d5aa4-a685-4c5f-a22b-444f80b3cc28' + FaaSInvocationIDKey = attribute.Key("faas.invocation_id") + + // FaaSInvokedNameKey is the attribute Key conforming to the + // "faas.invoked_name" semantic conventions. It represents the name of the + // invoked function. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'my-function' + // Note: SHOULD be equal to the `faas.name` resource attribute of the + // invoked function. + FaaSInvokedNameKey = attribute.Key("faas.invoked_name") + + // FaaSInvokedProviderKey is the attribute Key conforming to the + // "faas.invoked_provider" semantic conventions. It represents the cloud + // provider of the invoked function. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: SHOULD be equal to the `cloud.provider` resource attribute of the + // invoked function. + FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") + + // FaaSInvokedRegionKey is the attribute Key conforming to the + // "faas.invoked_region" semantic conventions. It represents the cloud + // region of the invoked function. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'eu-central-1' + // Note: SHOULD be equal to the `cloud.region` resource attribute of the + // invoked function. + FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") + + // FaaSMaxMemoryKey is the attribute Key conforming to the + // "faas.max_memory" semantic conventions. It represents the amount of + // memory available to the serverless function converted to Bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 134217728 + // Note: It's recommended to set this attribute since e.g. too little + // memory can easily stop a Java AWS Lambda function from working + // correctly. On AWS Lambda, the environment variable + // `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this information (which must + // be multiplied by 1,048,576). + FaaSMaxMemoryKey = attribute.Key("faas.max_memory") + + // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic + // conventions. It represents the name of the single function that this + // runtime instance executes. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'my-function', 'myazurefunctionapp/some-function-name' + // Note: This is the name of the function as configured/deployed on the + // FaaS + // platform and is usually different from the name of the callback + // function (which may be stored in the + // [`code.namespace`/`code.function`](/docs/general/attributes.md#source-code-attributes) + // span attributes). + // + // For some cloud providers, the above definition is ambiguous. The + // following + // definition of function name MUST be used for this attribute + // (and consequently the span name) for the listed cloud + // providers/products: + // + // * **Azure:** The full name `/`, i.e., function app name + // followed by a forward slash followed by the function name (this form + // can also be seen in the resource JSON for the function). + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider (see also the `cloud.resource_id` attribute). + FaaSNameKey = attribute.Key("faas.name") + + // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic + // conventions. It represents a string containing the function invocation + // time in the [ISO + // 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format + // expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2020-01-23T13:47:06Z' + FaaSTimeKey = attribute.Key("faas.time") + + // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" + // semantic conventions. It represents the type of the trigger which caused + // this function invocation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + FaaSTriggerKey = attribute.Key("faas.trigger") + + // FaaSVersionKey is the attribute Key conforming to the "faas.version" + // semantic conventions. It represents the immutable version of the + // function being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '26', 'pinkfroid-00002' + // Note: Depending on the cloud provider and platform, use: + // + // * **AWS Lambda:** The [function + // version](https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html) + // (an integer represented as a decimal string). + // * **Google Cloud Run (Services):** The + // [revision](https://cloud.google.com/run/docs/managing/revisions) + // (i.e., the function name plus the revision suffix). + // * **Google Cloud Functions:** The value of the + // [`K_REVISION` environment + // variable](https://cloud.google.com/functions/docs/env-var#runtime_environment_variables_set_automatically). + // * **Azure Functions:** Not applicable. Do not set this attribute. + FaaSVersionKey = attribute.Key("faas.version") +) + +var ( + // When a new object is created + FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") + // When an object is modified + FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") + // When an object is deleted + FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") +) + +var ( + // Alibaba Cloud + FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") + // Amazon Web Services + FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") + // Microsoft Azure + FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") + // Google Cloud Platform + FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") + // Tencent Cloud + FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") +) + +var ( + // A response to some data source operation such as a database or filesystem read/write + FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") + // To provide an answer to an inbound HTTP request + FaaSTriggerHTTP = FaaSTriggerKey.String("http") + // A function is set to be executed when messages are sent to a messaging system + FaaSTriggerPubsub = FaaSTriggerKey.String("pubsub") + // A function is scheduled to be executed regularly + FaaSTriggerTimer = FaaSTriggerKey.String("timer") + // If none of the others apply + FaaSTriggerOther = FaaSTriggerKey.String("other") +) + +// FaaSColdstart returns an attribute KeyValue conforming to the +// "faas.coldstart" semantic conventions. It represents a boolean that is true +// if the serverless function is executed for the first time (aka cold-start). +func FaaSColdstart(val bool) attribute.KeyValue { + return FaaSColdstartKey.Bool(val) +} + +// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" +// semantic conventions. It represents a string containing the schedule period +// as [Cron +// Expression](https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm). +func FaaSCron(val string) attribute.KeyValue { + return FaaSCronKey.String(val) +} + +// FaaSDocumentCollection returns an attribute KeyValue conforming to the +// "faas.document.collection" semantic conventions. It represents the name of +// the source on which the triggering operation was performed. For example, in +// Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the +// database name. +func FaaSDocumentCollection(val string) attribute.KeyValue { + return FaaSDocumentCollectionKey.String(val) +} + +// FaaSDocumentName returns an attribute KeyValue conforming to the +// "faas.document.name" semantic conventions. It represents the document +// name/table subjected to the operation. For example, in Cloud Storage or S3 +// is the name of the file, and in Cosmos DB the table name. +func FaaSDocumentName(val string) attribute.KeyValue { + return FaaSDocumentNameKey.String(val) +} + +// FaaSDocumentTime returns an attribute KeyValue conforming to the +// "faas.document.time" semantic conventions. It represents a string containing +// the time when the data was accessed in the [ISO +// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format +// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). +func FaaSDocumentTime(val string) attribute.KeyValue { + return FaaSDocumentTimeKey.String(val) +} + +// FaaSInstance returns an attribute KeyValue conforming to the +// "faas.instance" semantic conventions. It represents the execution +// environment ID as a string, that will be potentially reused for other +// invocations to the same function/function version. +func FaaSInstance(val string) attribute.KeyValue { + return FaaSInstanceKey.String(val) +} + +// FaaSInvocationID returns an attribute KeyValue conforming to the +// "faas.invocation_id" semantic conventions. It represents the invocation ID +// of the current function invocation. +func FaaSInvocationID(val string) attribute.KeyValue { + return FaaSInvocationIDKey.String(val) +} + +// FaaSInvokedName returns an attribute KeyValue conforming to the +// "faas.invoked_name" semantic conventions. It represents the name of the +// invoked function. +func FaaSInvokedName(val string) attribute.KeyValue { + return FaaSInvokedNameKey.String(val) +} + +// FaaSInvokedRegion returns an attribute KeyValue conforming to the +// "faas.invoked_region" semantic conventions. It represents the cloud region +// of the invoked function. +func FaaSInvokedRegion(val string) attribute.KeyValue { + return FaaSInvokedRegionKey.String(val) +} + +// FaaSMaxMemory returns an attribute KeyValue conforming to the +// "faas.max_memory" semantic conventions. It represents the amount of memory +// available to the serverless function converted to Bytes. +func FaaSMaxMemory(val int) attribute.KeyValue { + return FaaSMaxMemoryKey.Int(val) +} + +// FaaSName returns an attribute KeyValue conforming to the "faas.name" +// semantic conventions. It represents the name of the single function that +// this runtime instance executes. +func FaaSName(val string) attribute.KeyValue { + return FaaSNameKey.String(val) +} + +// FaaSTime returns an attribute KeyValue conforming to the "faas.time" +// semantic conventions. It represents a string containing the function +// invocation time in the [ISO +// 8601](https://www.iso.org/iso-8601-date-and-time-format.html) format +// expressed in [UTC](https://www.w3.org/TR/NOTE-datetime). +func FaaSTime(val string) attribute.KeyValue { + return FaaSTimeKey.String(val) +} + +// FaaSVersion returns an attribute KeyValue conforming to the +// "faas.version" semantic conventions. It represents the immutable version of +// the function being executed. +func FaaSVersion(val string) attribute.KeyValue { + return FaaSVersionKey.String(val) +} + +// Attributes for Feature Flags. +const ( + // FeatureFlagKeyKey is the attribute Key conforming to the + // "feature_flag.key" semantic conventions. It represents the unique + // identifier of the feature flag. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'logo-color' + FeatureFlagKeyKey = attribute.Key("feature_flag.key") + + // FeatureFlagProviderNameKey is the attribute Key conforming to the + // "feature_flag.provider_name" semantic conventions. It represents the + // name of the service provider that performs the flag evaluation. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Flag Manager' + FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider_name") + + // FeatureFlagVariantKey is the attribute Key conforming to the + // "feature_flag.variant" semantic conventions. It represents the sHOULD be + // a semantic identifier for a value. If one is unavailable, a stringified + // version of the value can be used. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'red', 'true', 'on' + // Note: A semantic identifier, commonly referred to as a variant, provides + // a means + // for referring to a value without including the value itself. This can + // provide additional context for understanding the meaning behind a value. + // For example, the variant `red` maybe be used for the value `#c05543`. + // + // A stringified version of the value can be used in situations where a + // semantic identifier is unavailable. String representation of the value + // should be determined by the implementer. + FeatureFlagVariantKey = attribute.Key("feature_flag.variant") +) + +// FeatureFlagKey returns an attribute KeyValue conforming to the +// "feature_flag.key" semantic conventions. It represents the unique identifier +// of the feature flag. +func FeatureFlagKey(val string) attribute.KeyValue { + return FeatureFlagKeyKey.String(val) +} + +// FeatureFlagProviderName returns an attribute KeyValue conforming to the +// "feature_flag.provider_name" semantic conventions. It represents the name of +// the service provider that performs the flag evaluation. +func FeatureFlagProviderName(val string) attribute.KeyValue { + return FeatureFlagProviderNameKey.String(val) +} + +// FeatureFlagVariant returns an attribute KeyValue conforming to the +// "feature_flag.variant" semantic conventions. It represents the sHOULD be a +// semantic identifier for a value. If one is unavailable, a stringified +// version of the value can be used. +func FeatureFlagVariant(val string) attribute.KeyValue { + return FeatureFlagVariantKey.String(val) +} + +// Describes file attributes. +const ( + // FileDirectoryKey is the attribute Key conforming to the "file.directory" + // semantic conventions. It represents the directory where the file is + // located. It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/home/user', 'C:\\Program Files\\MyApp' + FileDirectoryKey = attribute.Key("file.directory") + + // FileExtensionKey is the attribute Key conforming to the "file.extension" + // semantic conventions. It represents the file extension, excluding the + // leading dot. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'png', 'gz' + // Note: When the file name has multiple extensions (example.tar.gz), only + // the last one should be captured ("gz", not "tar.gz"). + FileExtensionKey = attribute.Key("file.extension") + + // FileNameKey is the attribute Key conforming to the "file.name" semantic + // conventions. It represents the name of the file including the extension, + // without the directory. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'example.png' + FileNameKey = attribute.Key("file.name") + + // FilePathKey is the attribute Key conforming to the "file.path" semantic + // conventions. It represents the full path to the file, including the file + // name. It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/home/alice/example.png', 'C:\\Program + // Files\\MyApp\\myapp.exe' + FilePathKey = attribute.Key("file.path") + + // FileSizeKey is the attribute Key conforming to the "file.size" semantic + // conventions. It represents the file size in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + FileSizeKey = attribute.Key("file.size") +) + +// FileDirectory returns an attribute KeyValue conforming to the +// "file.directory" semantic conventions. It represents the directory where the +// file is located. It should include the drive letter, when appropriate. +func FileDirectory(val string) attribute.KeyValue { + return FileDirectoryKey.String(val) +} + +// FileExtension returns an attribute KeyValue conforming to the +// "file.extension" semantic conventions. It represents the file extension, +// excluding the leading dot. +func FileExtension(val string) attribute.KeyValue { + return FileExtensionKey.String(val) +} + +// FileName returns an attribute KeyValue conforming to the "file.name" +// semantic conventions. It represents the name of the file including the +// extension, without the directory. +func FileName(val string) attribute.KeyValue { + return FileNameKey.String(val) +} + +// FilePath returns an attribute KeyValue conforming to the "file.path" +// semantic conventions. It represents the full path to the file, including the +// file name. It should include the drive letter, when appropriate. +func FilePath(val string) attribute.KeyValue { + return FilePathKey.String(val) +} + +// FileSize returns an attribute KeyValue conforming to the "file.size" +// semantic conventions. It represents the file size in bytes. +func FileSize(val int) attribute.KeyValue { + return FileSizeKey.Int(val) +} + +// Attributes for Google Cloud Run. +const ( + // GCPCloudRunJobExecutionKey is the attribute Key conforming to the + // "gcp.cloud_run.job.execution" semantic conventions. It represents the + // name of the Cloud Run + // [execution](https://cloud.google.com/run/docs/managing/job-executions) + // being run for the Job, as set by the + // [`CLOUD_RUN_EXECUTION`](https://cloud.google.com/run/docs/container-contract#jobs-env-vars) + // environment variable. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'job-name-xxxx', 'sample-job-mdw84' + GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution") + + // GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the + // "gcp.cloud_run.job.task_index" semantic conventions. It represents the + // index for a task within an execution as provided by the + // [`CLOUD_RUN_TASK_INDEX`](https://cloud.google.com/run/docs/container-contract#jobs-env-vars) + // environment variable. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 0, 1 + GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index") +) + +// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.execution" semantic conventions. It represents the name +// of the Cloud Run +// [execution](https://cloud.google.com/run/docs/managing/job-executions) being +// run for the Job, as set by the +// [`CLOUD_RUN_EXECUTION`](https://cloud.google.com/run/docs/container-contract#jobs-env-vars) +// environment variable. +func GCPCloudRunJobExecution(val string) attribute.KeyValue { + return GCPCloudRunJobExecutionKey.String(val) +} + +// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index +// for a task within an execution as provided by the +// [`CLOUD_RUN_TASK_INDEX`](https://cloud.google.com/run/docs/container-contract#jobs-env-vars) +// environment variable. +func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue { + return GCPCloudRunJobTaskIndexKey.Int(val) +} + +// Attributes for Google Compute Engine (GCE). +const ( + // GCPGceInstanceHostnameKey is the attribute Key conforming to the + // "gcp.gce.instance.hostname" semantic conventions. It represents the + // hostname of a GCE instance. This is the full value of the default or + // [custom + // hostname](https://cloud.google.com/compute/docs/instances/custom-hostname-vm). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'my-host1234.example.com', + // 'sample-vm.us-west1-b.c.my-project.internal' + GCPGceInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname") + + // GCPGceInstanceNameKey is the attribute Key conforming to the + // "gcp.gce.instance.name" semantic conventions. It represents the instance + // name of a GCE instance. This is the value provided by `host.name`, the + // visible name of the instance in the Cloud Console UI, and the prefix for + // the default hostname of the instance as defined by the [default internal + // DNS + // name](https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'instance-1', 'my-vm-name' + GCPGceInstanceNameKey = attribute.Key("gcp.gce.instance.name") +) + +// GCPGceInstanceHostname returns an attribute KeyValue conforming to the +// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname +// of a GCE instance. This is the full value of the default or [custom +// hostname](https://cloud.google.com/compute/docs/instances/custom-hostname-vm). +func GCPGceInstanceHostname(val string) attribute.KeyValue { + return GCPGceInstanceHostnameKey.String(val) +} + +// GCPGceInstanceName returns an attribute KeyValue conforming to the +// "gcp.gce.instance.name" semantic conventions. It represents the instance +// name of a GCE instance. This is the value provided by `host.name`, the +// visible name of the instance in the Cloud Console UI, and the prefix for the +// default hostname of the instance as defined by the [default internal DNS +// name](https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names). +func GCPGceInstanceName(val string) attribute.KeyValue { + return GCPGceInstanceNameKey.String(val) +} + +// The attributes used to describe telemetry in the context of LLM (Large +// Language Models) requests and responses. +const ( + // GenAiCompletionKey is the attribute Key conforming to the + // "gen_ai.completion" semantic conventions. It represents the full + // response received from the LLM. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: "[{'role': 'assistant', 'content': 'The capital of France is + // Paris.'}]" + // Note: It's RECOMMENDED to format completions as JSON string matching + // [OpenAI messages + // format](https://platform.openai.com/docs/guides/text-generation) + GenAiCompletionKey = attribute.Key("gen_ai.completion") + + // GenAiPromptKey is the attribute Key conforming to the "gen_ai.prompt" + // semantic conventions. It represents the full prompt sent to an LLM. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: "[{'role': 'user', 'content': 'What is the capital of + // France?'}]" + // Note: It's RECOMMENDED to format prompts as JSON string matching [OpenAI + // messages + // format](https://platform.openai.com/docs/guides/text-generation) + GenAiPromptKey = attribute.Key("gen_ai.prompt") + + // GenAiRequestMaxTokensKey is the attribute Key conforming to the + // "gen_ai.request.max_tokens" semantic conventions. It represents the + // maximum number of tokens the LLM generates for a request. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 100 + GenAiRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens") + + // GenAiRequestModelKey is the attribute Key conforming to the + // "gen_ai.request.model" semantic conventions. It represents the name of + // the LLM a request is being made to. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'gpt-4' + GenAiRequestModelKey = attribute.Key("gen_ai.request.model") + + // GenAiRequestTemperatureKey is the attribute Key conforming to the + // "gen_ai.request.temperature" semantic conventions. It represents the + // temperature setting for the LLM request. + // + // Type: double + // RequirementLevel: Optional + // Stability: experimental + // Examples: 0.0 + GenAiRequestTemperatureKey = attribute.Key("gen_ai.request.temperature") + + // GenAiRequestTopPKey is the attribute Key conforming to the + // "gen_ai.request.top_p" semantic conventions. It represents the top_p + // sampling setting for the LLM request. + // + // Type: double + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1.0 + GenAiRequestTopPKey = attribute.Key("gen_ai.request.top_p") + + // GenAiResponseFinishReasonsKey is the attribute Key conforming to the + // "gen_ai.response.finish_reasons" semantic conventions. It represents the + // array of reasons the model stopped generating tokens, corresponding to + // each generation received. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'stop' + GenAiResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons") + + // GenAiResponseIDKey is the attribute Key conforming to the + // "gen_ai.response.id" semantic conventions. It represents the unique + // identifier for the completion. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'chatcmpl-123' + GenAiResponseIDKey = attribute.Key("gen_ai.response.id") + + // GenAiResponseModelKey is the attribute Key conforming to the + // "gen_ai.response.model" semantic conventions. It represents the name of + // the LLM a response was generated from. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'gpt-4-0613' + GenAiResponseModelKey = attribute.Key("gen_ai.response.model") + + // GenAiSystemKey is the attribute Key conforming to the "gen_ai.system" + // semantic conventions. It represents the Generative AI product as + // identified by the client instrumentation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'openai' + // Note: The actual GenAI product may differ from the one identified by the + // client. For example, when using OpenAI client libraries to communicate + // with Mistral, the `gen_ai.system` is set to `openai` based on the + // instrumentation's best knowledge. + GenAiSystemKey = attribute.Key("gen_ai.system") + + // GenAiUsageCompletionTokensKey is the attribute Key conforming to the + // "gen_ai.usage.completion_tokens" semantic conventions. It represents the + // number of tokens used in the LLM response (completion). + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 180 + GenAiUsageCompletionTokensKey = attribute.Key("gen_ai.usage.completion_tokens") + + // GenAiUsagePromptTokensKey is the attribute Key conforming to the + // "gen_ai.usage.prompt_tokens" semantic conventions. It represents the + // number of tokens used in the LLM prompt. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 100 + GenAiUsagePromptTokensKey = attribute.Key("gen_ai.usage.prompt_tokens") +) + +var ( + // OpenAI + GenAiSystemOpenai = GenAiSystemKey.String("openai") +) + +// GenAiCompletion returns an attribute KeyValue conforming to the +// "gen_ai.completion" semantic conventions. It represents the full response +// received from the LLM. +func GenAiCompletion(val string) attribute.KeyValue { + return GenAiCompletionKey.String(val) +} + +// GenAiPrompt returns an attribute KeyValue conforming to the +// "gen_ai.prompt" semantic conventions. It represents the full prompt sent to +// an LLM. +func GenAiPrompt(val string) attribute.KeyValue { + return GenAiPromptKey.String(val) +} + +// GenAiRequestMaxTokens returns an attribute KeyValue conforming to the +// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum +// number of tokens the LLM generates for a request. +func GenAiRequestMaxTokens(val int) attribute.KeyValue { + return GenAiRequestMaxTokensKey.Int(val) +} + +// GenAiRequestModel returns an attribute KeyValue conforming to the +// "gen_ai.request.model" semantic conventions. It represents the name of the +// LLM a request is being made to. +func GenAiRequestModel(val string) attribute.KeyValue { + return GenAiRequestModelKey.String(val) +} + +// GenAiRequestTemperature returns an attribute KeyValue conforming to the +// "gen_ai.request.temperature" semantic conventions. It represents the +// temperature setting for the LLM request. +func GenAiRequestTemperature(val float64) attribute.KeyValue { + return GenAiRequestTemperatureKey.Float64(val) +} + +// GenAiRequestTopP returns an attribute KeyValue conforming to the +// "gen_ai.request.top_p" semantic conventions. It represents the top_p +// sampling setting for the LLM request. +func GenAiRequestTopP(val float64) attribute.KeyValue { + return GenAiRequestTopPKey.Float64(val) +} + +// GenAiResponseFinishReasons returns an attribute KeyValue conforming to +// the "gen_ai.response.finish_reasons" semantic conventions. It represents the +// array of reasons the model stopped generating tokens, corresponding to each +// generation received. +func GenAiResponseFinishReasons(val ...string) attribute.KeyValue { + return GenAiResponseFinishReasonsKey.StringSlice(val) +} + +// GenAiResponseID returns an attribute KeyValue conforming to the +// "gen_ai.response.id" semantic conventions. It represents the unique +// identifier for the completion. +func GenAiResponseID(val string) attribute.KeyValue { + return GenAiResponseIDKey.String(val) +} + +// GenAiResponseModel returns an attribute KeyValue conforming to the +// "gen_ai.response.model" semantic conventions. It represents the name of the +// LLM a response was generated from. +func GenAiResponseModel(val string) attribute.KeyValue { + return GenAiResponseModelKey.String(val) +} + +// GenAiUsageCompletionTokens returns an attribute KeyValue conforming to +// the "gen_ai.usage.completion_tokens" semantic conventions. It represents the +// number of tokens used in the LLM response (completion). +func GenAiUsageCompletionTokens(val int) attribute.KeyValue { + return GenAiUsageCompletionTokensKey.Int(val) +} + +// GenAiUsagePromptTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.prompt_tokens" semantic conventions. It represents the number +// of tokens used in the LLM prompt. +func GenAiUsagePromptTokens(val int) attribute.KeyValue { + return GenAiUsagePromptTokensKey.Int(val) +} + +// Attributes for GraphQL. +const ( + // GraphqlDocumentKey is the attribute Key conforming to the + // "graphql.document" semantic conventions. It represents the GraphQL + // document being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'query findBookByID { bookByID(id: ?) { name } }' + // Note: The value may be sanitized to exclude sensitive information. + GraphqlDocumentKey = attribute.Key("graphql.document") + + // GraphqlOperationNameKey is the attribute Key conforming to the + // "graphql.operation.name" semantic conventions. It represents the name of + // the operation being executed. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'findBookByID' + GraphqlOperationNameKey = attribute.Key("graphql.operation.name") + + // GraphqlOperationTypeKey is the attribute Key conforming to the + // "graphql.operation.type" semantic conventions. It represents the type of + // the operation being executed. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'query', 'mutation', 'subscription' + GraphqlOperationTypeKey = attribute.Key("graphql.operation.type") +) + +var ( + // GraphQL query + GraphqlOperationTypeQuery = GraphqlOperationTypeKey.String("query") + // GraphQL mutation + GraphqlOperationTypeMutation = GraphqlOperationTypeKey.String("mutation") + // GraphQL subscription + GraphqlOperationTypeSubscription = GraphqlOperationTypeKey.String("subscription") +) + +// GraphqlDocument returns an attribute KeyValue conforming to the +// "graphql.document" semantic conventions. It represents the GraphQL document +// being executed. +func GraphqlDocument(val string) attribute.KeyValue { + return GraphqlDocumentKey.String(val) +} + +// GraphqlOperationName returns an attribute KeyValue conforming to the +// "graphql.operation.name" semantic conventions. It represents the name of the +// operation being executed. +func GraphqlOperationName(val string) attribute.KeyValue { + return GraphqlOperationNameKey.String(val) +} + +// Attributes for the Android platform on which the Android application is +// running. +const ( + // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" + // semantic conventions. It represents the unique identifier for the + // application + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2daa2797-e42b-4624-9322-ec3f968df4da' + HerokuAppIDKey = attribute.Key("heroku.app.id") + + // HerokuReleaseCommitKey is the attribute Key conforming to the + // "heroku.release.commit" semantic conventions. It represents the commit + // hash for the current release + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'e6134959463efd8966b20e75b913cafe3f5ec' + HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") + + // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the + // "heroku.release.creation_timestamp" semantic conventions. It represents + // the time and date the release was created + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2022-10-23T18:00:42Z' + HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") +) + +// HerokuAppID returns an attribute KeyValue conforming to the +// "heroku.app.id" semantic conventions. It represents the unique identifier +// for the application +func HerokuAppID(val string) attribute.KeyValue { + return HerokuAppIDKey.String(val) +} + +// HerokuReleaseCommit returns an attribute KeyValue conforming to the +// "heroku.release.commit" semantic conventions. It represents the commit hash +// for the current release +func HerokuReleaseCommit(val string) attribute.KeyValue { + return HerokuReleaseCommitKey.String(val) +} + +// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming +// to the "heroku.release.creation_timestamp" semantic conventions. It +// represents the time and date the release was created +func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { + return HerokuReleaseCreationTimestampKey.String(val) +} + +// A host is defined as a computing instance. For example, physical servers, +// virtual machines, switches or disk array. +const ( + // HostArchKey is the attribute Key conforming to the "host.arch" semantic + // conventions. It represents the CPU architecture the host system is + // running on. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + HostArchKey = attribute.Key("host.arch") + + // HostCPUCacheL2SizeKey is the attribute Key conforming to the + // "host.cpu.cache.l2.size" semantic conventions. It represents the amount + // of level 2 memory cache available to the processor (in Bytes). + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 12288000 + HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size") + + // HostCPUFamilyKey is the attribute Key conforming to the + // "host.cpu.family" semantic conventions. It represents the family or + // generation of the CPU. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '6', 'PA-RISC 1.1e' + HostCPUFamilyKey = attribute.Key("host.cpu.family") + + // HostCPUModelIDKey is the attribute Key conforming to the + // "host.cpu.model.id" semantic conventions. It represents the model + // identifier. It provides more granular information about the CPU, + // distinguishing it from other CPUs within the same family. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '6', '9000/778/B180L' + HostCPUModelIDKey = attribute.Key("host.cpu.model.id") + + // HostCPUModelNameKey is the attribute Key conforming to the + // "host.cpu.model.name" semantic conventions. It represents the model + // designation of the processor. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz' + HostCPUModelNameKey = attribute.Key("host.cpu.model.name") + + // HostCPUSteppingKey is the attribute Key conforming to the + // "host.cpu.stepping" semantic conventions. It represents the stepping or + // core revisions. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1', 'r1p1' + HostCPUSteppingKey = attribute.Key("host.cpu.stepping") + + // HostCPUVendorIDKey is the attribute Key conforming to the + // "host.cpu.vendor.id" semantic conventions. It represents the processor + // manufacturer identifier. A maximum 12-character string. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'GenuineIntel' + // Note: [CPUID](https://wiki.osdev.org/CPUID) command returns the vendor + // ID string in EBX, EDX and ECX registers. Writing these to memory in this + // order results in a 12-character string. + HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id") + + // HostIDKey is the attribute Key conforming to the "host.id" semantic + // conventions. It represents the unique host ID. For Cloud, this must be + // the instance_id assigned by the cloud provider. For non-containerized + // systems, this should be the `machine-id`. See the table below for the + // sources to use to determine the `machine-id` based on operating system. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'fdbf79e8af94cb7f9e8df36789187052' + HostIDKey = attribute.Key("host.id") + + // HostImageIDKey is the attribute Key conforming to the "host.image.id" + // semantic conventions. It represents the vM image ID or host OS image ID. + // For Cloud, this value is from the provider. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ami-07b06b442921831e5' + HostImageIDKey = attribute.Key("host.image.id") + + // HostImageNameKey is the attribute Key conforming to the + // "host.image.name" semantic conventions. It represents the name of the VM + // image or OS install the host was instantiated from. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'infra-ami-eks-worker-node-7d4ec78312', 'CentOS-8-x86_64-1905' + HostImageNameKey = attribute.Key("host.image.name") + + // HostImageVersionKey is the attribute Key conforming to the + // "host.image.version" semantic conventions. It represents the version + // string of the VM image or host OS as defined in [Version + // Attributes](/docs/resource/README.md#version-attributes). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '0.1' + HostImageVersionKey = attribute.Key("host.image.version") + + // HostIPKey is the attribute Key conforming to the "host.ip" semantic + // conventions. It represents the available IP addresses of the host, + // excluding loopback interfaces. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '192.168.1.140', 'fe80::abc2:4a28:737a:609e' + // Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6 + // addresses MUST be specified in the [RFC + // 5952](https://www.rfc-editor.org/rfc/rfc5952.html) format. + HostIPKey = attribute.Key("host.ip") + + // HostMacKey is the attribute Key conforming to the "host.mac" semantic + // conventions. It represents the available MAC addresses of the host, + // excluding loopback interfaces. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'AC-DE-48-23-45-67', 'AC-DE-48-23-45-67-01-9F' + // Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal + // form](https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf): + // as hyphen-separated octets in uppercase hexadecimal form from most to + // least significant. + HostMacKey = attribute.Key("host.mac") + + // HostNameKey is the attribute Key conforming to the "host.name" semantic + // conventions. It represents the name of the host. On Unix systems, it may + // contain what the hostname command returns, or the fully qualified + // hostname, or another name specified by the user. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry-test' + HostNameKey = attribute.Key("host.name") + + // HostTypeKey is the attribute Key conforming to the "host.type" semantic + // conventions. It represents the type of host. For Cloud, this must be the + // machine type. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'n1-standard-1' + HostTypeKey = attribute.Key("host.type") +) + +var ( + // AMD64 + HostArchAMD64 = HostArchKey.String("amd64") + // ARM32 + HostArchARM32 = HostArchKey.String("arm32") + // ARM64 + HostArchARM64 = HostArchKey.String("arm64") + // Itanium + HostArchIA64 = HostArchKey.String("ia64") + // 32-bit PowerPC + HostArchPPC32 = HostArchKey.String("ppc32") + // 64-bit PowerPC + HostArchPPC64 = HostArchKey.String("ppc64") + // IBM z/Architecture + HostArchS390x = HostArchKey.String("s390x") + // 32-bit x86 + HostArchX86 = HostArchKey.String("x86") +) + +// HostCPUCacheL2Size returns an attribute KeyValue conforming to the +// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of +// level 2 memory cache available to the processor (in Bytes). +func HostCPUCacheL2Size(val int) attribute.KeyValue { + return HostCPUCacheL2SizeKey.Int(val) +} + +// HostCPUFamily returns an attribute KeyValue conforming to the +// "host.cpu.family" semantic conventions. It represents the family or +// generation of the CPU. +func HostCPUFamily(val string) attribute.KeyValue { + return HostCPUFamilyKey.String(val) +} + +// HostCPUModelID returns an attribute KeyValue conforming to the +// "host.cpu.model.id" semantic conventions. It represents the model +// identifier. It provides more granular information about the CPU, +// distinguishing it from other CPUs within the same family. +func HostCPUModelID(val string) attribute.KeyValue { + return HostCPUModelIDKey.String(val) +} + +// HostCPUModelName returns an attribute KeyValue conforming to the +// "host.cpu.model.name" semantic conventions. It represents the model +// designation of the processor. +func HostCPUModelName(val string) attribute.KeyValue { + return HostCPUModelNameKey.String(val) +} + +// HostCPUStepping returns an attribute KeyValue conforming to the +// "host.cpu.stepping" semantic conventions. It represents the stepping or core +// revisions. +func HostCPUStepping(val string) attribute.KeyValue { + return HostCPUSteppingKey.String(val) +} + +// HostCPUVendorID returns an attribute KeyValue conforming to the +// "host.cpu.vendor.id" semantic conventions. It represents the processor +// manufacturer identifier. A maximum 12-character string. +func HostCPUVendorID(val string) attribute.KeyValue { + return HostCPUVendorIDKey.String(val) +} + +// HostID returns an attribute KeyValue conforming to the "host.id" semantic +// conventions. It represents the unique host ID. For Cloud, this must be the +// instance_id assigned by the cloud provider. For non-containerized systems, +// this should be the `machine-id`. See the table below for the sources to use +// to determine the `machine-id` based on operating system. +func HostID(val string) attribute.KeyValue { + return HostIDKey.String(val) +} + +// HostImageID returns an attribute KeyValue conforming to the +// "host.image.id" semantic conventions. It represents the vM image ID or host +// OS image ID. For Cloud, this value is from the provider. +func HostImageID(val string) attribute.KeyValue { + return HostImageIDKey.String(val) +} + +// HostImageName returns an attribute KeyValue conforming to the +// "host.image.name" semantic conventions. It represents the name of the VM +// image or OS install the host was instantiated from. +func HostImageName(val string) attribute.KeyValue { + return HostImageNameKey.String(val) +} + +// HostImageVersion returns an attribute KeyValue conforming to the +// "host.image.version" semantic conventions. It represents the version string +// of the VM image or host OS as defined in [Version +// Attributes](/docs/resource/README.md#version-attributes). +func HostImageVersion(val string) attribute.KeyValue { + return HostImageVersionKey.String(val) +} + +// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic +// conventions. It represents the available IP addresses of the host, excluding +// loopback interfaces. +func HostIP(val ...string) attribute.KeyValue { + return HostIPKey.StringSlice(val) +} + +// HostMac returns an attribute KeyValue conforming to the "host.mac" +// semantic conventions. It represents the available MAC addresses of the host, +// excluding loopback interfaces. +func HostMac(val ...string) attribute.KeyValue { + return HostMacKey.StringSlice(val) +} + +// HostName returns an attribute KeyValue conforming to the "host.name" +// semantic conventions. It represents the name of the host. On Unix systems, +// it may contain what the hostname command returns, or the fully qualified +// hostname, or another name specified by the user. +func HostName(val string) attribute.KeyValue { + return HostNameKey.String(val) +} + +// HostType returns an attribute KeyValue conforming to the "host.type" +// semantic conventions. It represents the type of host. For Cloud, this must +// be the machine type. +func HostType(val string) attribute.KeyValue { + return HostTypeKey.String(val) +} + +// Semantic convention attributes in the HTTP namespace. +const ( + // HTTPConnectionStateKey is the attribute Key conforming to the + // "http.connection.state" semantic conventions. It represents the state of + // the HTTP connection in the HTTP connection pool. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'active', 'idle' + HTTPConnectionStateKey = attribute.Key("http.connection.state") + + // HTTPRequestBodySizeKey is the attribute Key conforming to the + // "http.request.body.size" semantic conventions. It represents the size of + // the request payload body in bytes. This is the number of bytes + // transferred excluding headers and is often, but not always, present as + // the + // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) + // header. For requests using transport encoding, this should be the + // compressed size. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3495 + HTTPRequestBodySizeKey = attribute.Key("http.request.body.size") + + // HTTPRequestMethodKey is the attribute Key conforming to the + // "http.request.method" semantic conventions. It represents the hTTP + // request method. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'GET', 'POST', 'HEAD' + // Note: HTTP request method value SHOULD be "known" to the + // instrumentation. + // By default, this convention defines "known" methods as the ones listed + // in [RFC9110](https://www.rfc-editor.org/rfc/rfc9110.html#name-methods) + // and the PATCH method defined in + // [RFC5789](https://www.rfc-editor.org/rfc/rfc5789.html). + // + // If the HTTP request method is not known to instrumentation, it MUST set + // the `http.request.method` attribute to `_OTHER`. + // + // If the HTTP instrumentation could end up converting valid HTTP request + // methods to `_OTHER`, then it MUST provide a way to override + // the list of known HTTP methods. If this override is done via environment + // variable, then the environment variable MUST be named + // OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated + // list of case-sensitive known HTTP methods + // (this list MUST be a full override of the default known method, it is + // not a list of known methods in addition to the defaults). + // + // HTTP method names are case-sensitive and `http.request.method` attribute + // value MUST match a known HTTP method name exactly. + // Instrumentations for specific web frameworks that consider HTTP methods + // to be case insensitive, SHOULD populate a canonical equivalent. + // Tracing instrumentations that do so, MUST also set + // `http.request.method_original` to the original value. + HTTPRequestMethodKey = attribute.Key("http.request.method") + + // HTTPRequestMethodOriginalKey is the attribute Key conforming to the + // "http.request.method_original" semantic conventions. It represents the + // original HTTP method sent by the client in the request line. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'GeT', 'ACL', 'foo' + HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original") + + // HTTPRequestResendCountKey is the attribute Key conforming to the + // "http.request.resend_count" semantic conventions. It represents the + // ordinal number of request resending attempt (for any reason, including + // redirects). + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 3 + // Note: The resend count SHOULD be updated each time an HTTP request gets + // resent by the client, regardless of what was the cause of the resending + // (e.g. redirection, authorization failure, 503 Server Unavailable, + // network issues, or any other). + HTTPRequestResendCountKey = attribute.Key("http.request.resend_count") + + // HTTPRequestSizeKey is the attribute Key conforming to the + // "http.request.size" semantic conventions. It represents the total size + // of the request in bytes. This should be the total number of bytes sent + // over the wire, including the request line (HTTP/1.1), framing (HTTP/2 + // and HTTP/3), headers, and request body if any. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1437 + HTTPRequestSizeKey = attribute.Key("http.request.size") + + // HTTPResponseBodySizeKey is the attribute Key conforming to the + // "http.response.body.size" semantic conventions. It represents the size + // of the response payload body in bytes. This is the number of bytes + // transferred excluding headers and is often, but not always, present as + // the + // [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) + // header. For requests using transport encoding, this should be the + // compressed size. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3495 + HTTPResponseBodySizeKey = attribute.Key("http.response.body.size") + + // HTTPResponseSizeKey is the attribute Key conforming to the + // "http.response.size" semantic conventions. It represents the total size + // of the response in bytes. This should be the total number of bytes sent + // over the wire, including the status line (HTTP/1.1), framing (HTTP/2 and + // HTTP/3), headers, and response body and trailers if any. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1437 + HTTPResponseSizeKey = attribute.Key("http.response.size") + + // HTTPResponseStatusCodeKey is the attribute Key conforming to the + // "http.response.status_code" semantic conventions. It represents the + // [HTTP response status + // code](https://tools.ietf.org/html/rfc7231#section-6). + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 200 + HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code") + + // HTTPRouteKey is the attribute Key conforming to the "http.route" + // semantic conventions. It represents the matched route, that is, the path + // template in the format used by the respective server framework. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '/users/:userID?', '{controller}/{action}/{id?}' + // Note: MUST NOT be populated when this is not supported by the HTTP + // server framework as the route attribute should have low-cardinality and + // the URI path can NOT substitute it. + // SHOULD include the [application + // root](/docs/http/http-spans.md#http-server-definitions) if there is one. + HTTPRouteKey = attribute.Key("http.route") +) + +var ( + // active state + HTTPConnectionStateActive = HTTPConnectionStateKey.String("active") + // idle state + HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle") +) + +var ( + // CONNECT method + HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT") + // DELETE method + HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE") + // GET method + HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET") + // HEAD method + HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD") + // OPTIONS method + HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS") + // PATCH method + HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH") + // POST method + HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST") + // PUT method + HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT") + // TRACE method + HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE") + // Any HTTP method that the instrumentation has no prior knowledge of + HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER") +) + +// HTTPRequestBodySize returns an attribute KeyValue conforming to the +// "http.request.body.size" semantic conventions. It represents the size of the +// request payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) +// header. For requests using transport encoding, this should be the compressed +// size. +func HTTPRequestBodySize(val int) attribute.KeyValue { + return HTTPRequestBodySizeKey.Int(val) +} + +// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the +// "http.request.method_original" semantic conventions. It represents the +// original HTTP method sent by the client in the request line. +func HTTPRequestMethodOriginal(val string) attribute.KeyValue { + return HTTPRequestMethodOriginalKey.String(val) +} + +// HTTPRequestResendCount returns an attribute KeyValue conforming to the +// "http.request.resend_count" semantic conventions. It represents the ordinal +// number of request resending attempt (for any reason, including redirects). +func HTTPRequestResendCount(val int) attribute.KeyValue { + return HTTPRequestResendCountKey.Int(val) +} + +// HTTPRequestSize returns an attribute KeyValue conforming to the +// "http.request.size" semantic conventions. It represents the total size of +// the request in bytes. This should be the total number of bytes sent over the +// wire, including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), +// headers, and request body if any. +func HTTPRequestSize(val int) attribute.KeyValue { + return HTTPRequestSizeKey.Int(val) +} + +// HTTPResponseBodySize returns an attribute KeyValue conforming to the +// "http.response.body.size" semantic conventions. It represents the size of +// the response payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length](https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length) +// header. For requests using transport encoding, this should be the compressed +// size. +func HTTPResponseBodySize(val int) attribute.KeyValue { + return HTTPResponseBodySizeKey.Int(val) +} + +// HTTPResponseSize returns an attribute KeyValue conforming to the +// "http.response.size" semantic conventions. It represents the total size of +// the response in bytes. This should be the total number of bytes sent over +// the wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), +// headers, and response body and trailers if any. +func HTTPResponseSize(val int) attribute.KeyValue { + return HTTPResponseSizeKey.Int(val) +} + +// HTTPResponseStatusCode returns an attribute KeyValue conforming to the +// "http.response.status_code" semantic conventions. It represents the [HTTP +// response status code](https://tools.ietf.org/html/rfc7231#section-6). +func HTTPResponseStatusCode(val int) attribute.KeyValue { + return HTTPResponseStatusCodeKey.Int(val) +} + +// HTTPRoute returns an attribute KeyValue conforming to the "http.route" +// semantic conventions. It represents the matched route, that is, the path +// template in the format used by the respective server framework. +func HTTPRoute(val string) attribute.KeyValue { + return HTTPRouteKey.String(val) +} + +// Java Virtual machine related attributes. +const ( + // JvmBufferPoolNameKey is the attribute Key conforming to the + // "jvm.buffer.pool.name" semantic conventions. It represents the name of + // the buffer pool. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'mapped', 'direct' + // Note: Pool names are generally obtained via + // [BufferPoolMXBean#getName()](https://docs.oracle.com/en/java/javase/11/docs/api/java.management/java/lang/management/BufferPoolMXBean.html#getName()). + JvmBufferPoolNameKey = attribute.Key("jvm.buffer.pool.name") + + // JvmGcActionKey is the attribute Key conforming to the "jvm.gc.action" + // semantic conventions. It represents the name of the garbage collector + // action. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'end of minor GC', 'end of major GC' + // Note: Garbage collector action is generally obtained via + // [GarbageCollectionNotificationInfo#getGcAction()](https://docs.oracle.com/en/java/javase/11/docs/api/jdk.management/com/sun/management/GarbageCollectionNotificationInfo.html#getGcAction()). + JvmGcActionKey = attribute.Key("jvm.gc.action") + + // JvmGcNameKey is the attribute Key conforming to the "jvm.gc.name" + // semantic conventions. It represents the name of the garbage collector. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'G1 Young Generation', 'G1 Old Generation' + // Note: Garbage collector name is generally obtained via + // [GarbageCollectionNotificationInfo#getGcName()](https://docs.oracle.com/en/java/javase/11/docs/api/jdk.management/com/sun/management/GarbageCollectionNotificationInfo.html#getGcName()). + JvmGcNameKey = attribute.Key("jvm.gc.name") + + // JvmMemoryPoolNameKey is the attribute Key conforming to the + // "jvm.memory.pool.name" semantic conventions. It represents the name of + // the memory pool. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'G1 Old Gen', 'G1 Eden space', 'G1 Survivor Space' + // Note: Pool names are generally obtained via + // [MemoryPoolMXBean#getName()](https://docs.oracle.com/en/java/javase/11/docs/api/java.management/java/lang/management/MemoryPoolMXBean.html#getName()). + JvmMemoryPoolNameKey = attribute.Key("jvm.memory.pool.name") + + // JvmMemoryTypeKey is the attribute Key conforming to the + // "jvm.memory.type" semantic conventions. It represents the type of + // memory. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'heap', 'non_heap' + JvmMemoryTypeKey = attribute.Key("jvm.memory.type") + + // JvmThreadDaemonKey is the attribute Key conforming to the + // "jvm.thread.daemon" semantic conventions. It represents the whether the + // thread is daemon or not. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: stable + JvmThreadDaemonKey = attribute.Key("jvm.thread.daemon") + + // JvmThreadStateKey is the attribute Key conforming to the + // "jvm.thread.state" semantic conventions. It represents the state of the + // thread. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'runnable', 'blocked' + JvmThreadStateKey = attribute.Key("jvm.thread.state") +) + +var ( + // Heap memory + JvmMemoryTypeHeap = JvmMemoryTypeKey.String("heap") + // Non-heap memory + JvmMemoryTypeNonHeap = JvmMemoryTypeKey.String("non_heap") +) + +var ( + // A thread that has not yet started is in this state + JvmThreadStateNew = JvmThreadStateKey.String("new") + // A thread executing in the Java virtual machine is in this state + JvmThreadStateRunnable = JvmThreadStateKey.String("runnable") + // A thread that is blocked waiting for a monitor lock is in this state + JvmThreadStateBlocked = JvmThreadStateKey.String("blocked") + // A thread that is waiting indefinitely for another thread to perform a particular action is in this state + JvmThreadStateWaiting = JvmThreadStateKey.String("waiting") + // A thread that is waiting for another thread to perform an action for up to a specified waiting time is in this state + JvmThreadStateTimedWaiting = JvmThreadStateKey.String("timed_waiting") + // A thread that has exited is in this state + JvmThreadStateTerminated = JvmThreadStateKey.String("terminated") +) + +// JvmBufferPoolName returns an attribute KeyValue conforming to the +// "jvm.buffer.pool.name" semantic conventions. It represents the name of the +// buffer pool. +func JvmBufferPoolName(val string) attribute.KeyValue { + return JvmBufferPoolNameKey.String(val) +} + +// JvmGcAction returns an attribute KeyValue conforming to the +// "jvm.gc.action" semantic conventions. It represents the name of the garbage +// collector action. +func JvmGcAction(val string) attribute.KeyValue { + return JvmGcActionKey.String(val) +} + +// JvmGcName returns an attribute KeyValue conforming to the "jvm.gc.name" +// semantic conventions. It represents the name of the garbage collector. +func JvmGcName(val string) attribute.KeyValue { + return JvmGcNameKey.String(val) +} + +// JvmMemoryPoolName returns an attribute KeyValue conforming to the +// "jvm.memory.pool.name" semantic conventions. It represents the name of the +// memory pool. +func JvmMemoryPoolName(val string) attribute.KeyValue { + return JvmMemoryPoolNameKey.String(val) +} + +// JvmThreadDaemon returns an attribute KeyValue conforming to the +// "jvm.thread.daemon" semantic conventions. It represents the whether the +// thread is daemon or not. +func JvmThreadDaemon(val bool) attribute.KeyValue { + return JvmThreadDaemonKey.Bool(val) +} + +// Kubernetes resource attributes. +const ( + // K8SClusterNameKey is the attribute Key conforming to the + // "k8s.cluster.name" semantic conventions. It represents the name of the + // cluster. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry-cluster' + K8SClusterNameKey = attribute.Key("k8s.cluster.name") + + // K8SClusterUIDKey is the attribute Key conforming to the + // "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for + // the cluster, set to the UID of the `kube-system` namespace. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '218fc5a9-a5f1-4b54-aa05-46717d0ab26d' + // Note: K8S doesn't have support for obtaining a cluster ID. If this is + // ever + // added, we will recommend collecting the `k8s.cluster.uid` through the + // official APIs. In the meantime, we are able to use the `uid` of the + // `kube-system` namespace as a proxy for cluster ID. Read on for the + // rationale. + // + // Every object created in a K8S cluster is assigned a distinct UID. The + // `kube-system` namespace is used by Kubernetes itself and will exist + // for the lifetime of the cluster. Using the `uid` of the `kube-system` + // namespace is a reasonable proxy for the K8S ClusterID as it will only + // change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are + // UUIDs as standardized by + // [ISO/IEC 9834-8 and ITU-T + // X.667](https://www.itu.int/ITU-T/studygroups/com17/oid.html). + // Which states: + // + // > If generated according to one of the mechanisms defined in Rec. + // ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be + // different from all other UUIDs generated before 3603 A.D., or is + // extremely likely to be different (depending on the mechanism chosen). + // + // Therefore, UIDs between clusters should be extremely unlikely to + // conflict. + K8SClusterUIDKey = attribute.Key("k8s.cluster.uid") + + // K8SContainerNameKey is the attribute Key conforming to the + // "k8s.container.name" semantic conventions. It represents the name of the + // Container from Pod specification, must be unique within a Pod. Container + // runtime usually uses different globally unique name (`container.name`). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'redis' + K8SContainerNameKey = attribute.Key("k8s.container.name") + + // K8SContainerRestartCountKey is the attribute Key conforming to the + // "k8s.container.restart_count" semantic conventions. It represents the + // number of times the container was restarted. This attribute can be used + // to identify a particular container (running or stopped) within a + // container spec. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") + + // K8SContainerStatusLastTerminatedReasonKey is the attribute Key + // conforming to the "k8s.container.status.last_terminated_reason" semantic + // conventions. It represents the last terminated reason of the Container. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Evicted', 'Error' + K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason") + + // K8SCronJobNameKey is the attribute Key conforming to the + // "k8s.cronjob.name" semantic conventions. It represents the name of the + // CronJob. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") + + // K8SCronJobUIDKey is the attribute Key conforming to the + // "k8s.cronjob.uid" semantic conventions. It represents the UID of the + // CronJob. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") + + // K8SDaemonSetNameKey is the attribute Key conforming to the + // "k8s.daemonset.name" semantic conventions. It represents the name of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") + + // K8SDaemonSetUIDKey is the attribute Key conforming to the + // "k8s.daemonset.uid" semantic conventions. It represents the UID of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") + + // K8SDeploymentNameKey is the attribute Key conforming to the + // "k8s.deployment.name" semantic conventions. It represents the name of + // the Deployment. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") + + // K8SDeploymentUIDKey is the attribute Key conforming to the + // "k8s.deployment.uid" semantic conventions. It represents the UID of the + // Deployment. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") + + // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" + // semantic conventions. It represents the name of the Job. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SJobNameKey = attribute.Key("k8s.job.name") + + // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" + // semantic conventions. It represents the UID of the Job. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SJobUIDKey = attribute.Key("k8s.job.uid") + + // K8SNamespaceNameKey is the attribute Key conforming to the + // "k8s.namespace.name" semantic conventions. It represents the name of the + // namespace that the pod is running in. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'default' + K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") + + // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" + // semantic conventions. It represents the name of the Node. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'node-1' + K8SNodeNameKey = attribute.Key("k8s.node.name") + + // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" + // semantic conventions. It represents the UID of the Node. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2' + K8SNodeUIDKey = attribute.Key("k8s.node.uid") + + // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" + // semantic conventions. It represents the name of the Pod. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry-pod-autoconf' + K8SPodNameKey = attribute.Key("k8s.pod.name") + + // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" + // semantic conventions. It represents the UID of the Pod. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SPodUIDKey = attribute.Key("k8s.pod.uid") + + // K8SReplicaSetNameKey is the attribute Key conforming to the + // "k8s.replicaset.name" semantic conventions. It represents the name of + // the ReplicaSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") + + // K8SReplicaSetUIDKey is the attribute Key conforming to the + // "k8s.replicaset.uid" semantic conventions. It represents the UID of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") + + // K8SStatefulSetNameKey is the attribute Key conforming to the + // "k8s.statefulset.name" semantic conventions. It represents the name of + // the StatefulSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry' + K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") + + // K8SStatefulSetUIDKey is the attribute Key conforming to the + // "k8s.statefulset.uid" semantic conventions. It represents the UID of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '275ecb36-5aa8-4c2a-9c47-d8bb681b9aff' + K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") +) + +// K8SClusterName returns an attribute KeyValue conforming to the +// "k8s.cluster.name" semantic conventions. It represents the name of the +// cluster. +func K8SClusterName(val string) attribute.KeyValue { + return K8SClusterNameKey.String(val) +} + +// K8SClusterUID returns an attribute KeyValue conforming to the +// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the +// cluster, set to the UID of the `kube-system` namespace. +func K8SClusterUID(val string) attribute.KeyValue { + return K8SClusterUIDKey.String(val) +} + +// K8SContainerName returns an attribute KeyValue conforming to the +// "k8s.container.name" semantic conventions. It represents the name of the +// Container from Pod specification, must be unique within a Pod. Container +// runtime usually uses different globally unique name (`container.name`). +func K8SContainerName(val string) attribute.KeyValue { + return K8SContainerNameKey.String(val) +} + +// K8SContainerRestartCount returns an attribute KeyValue conforming to the +// "k8s.container.restart_count" semantic conventions. It represents the number +// of times the container was restarted. This attribute can be used to identify +// a particular container (running or stopped) within a container spec. +func K8SContainerRestartCount(val int) attribute.KeyValue { + return K8SContainerRestartCountKey.Int(val) +} + +// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue +// conforming to the "k8s.container.status.last_terminated_reason" semantic +// conventions. It represents the last terminated reason of the Container. +func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue { + return K8SContainerStatusLastTerminatedReasonKey.String(val) +} + +// K8SCronJobName returns an attribute KeyValue conforming to the +// "k8s.cronjob.name" semantic conventions. It represents the name of the +// CronJob. +func K8SCronJobName(val string) attribute.KeyValue { + return K8SCronJobNameKey.String(val) +} + +// K8SCronJobUID returns an attribute KeyValue conforming to the +// "k8s.cronjob.uid" semantic conventions. It represents the UID of the +// CronJob. +func K8SCronJobUID(val string) attribute.KeyValue { + return K8SCronJobUIDKey.String(val) +} + +// K8SDaemonSetName returns an attribute KeyValue conforming to the +// "k8s.daemonset.name" semantic conventions. It represents the name of the +// DaemonSet. +func K8SDaemonSetName(val string) attribute.KeyValue { + return K8SDaemonSetNameKey.String(val) +} + +// K8SDaemonSetUID returns an attribute KeyValue conforming to the +// "k8s.daemonset.uid" semantic conventions. It represents the UID of the +// DaemonSet. +func K8SDaemonSetUID(val string) attribute.KeyValue { + return K8SDaemonSetUIDKey.String(val) +} + +// K8SDeploymentName returns an attribute KeyValue conforming to the +// "k8s.deployment.name" semantic conventions. It represents the name of the +// Deployment. +func K8SDeploymentName(val string) attribute.KeyValue { + return K8SDeploymentNameKey.String(val) +} + +// K8SDeploymentUID returns an attribute KeyValue conforming to the +// "k8s.deployment.uid" semantic conventions. It represents the UID of the +// Deployment. +func K8SDeploymentUID(val string) attribute.KeyValue { + return K8SDeploymentUIDKey.String(val) +} + +// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" +// semantic conventions. It represents the name of the Job. +func K8SJobName(val string) attribute.KeyValue { + return K8SJobNameKey.String(val) +} + +// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" +// semantic conventions. It represents the UID of the Job. +func K8SJobUID(val string) attribute.KeyValue { + return K8SJobUIDKey.String(val) +} + +// K8SNamespaceName returns an attribute KeyValue conforming to the +// "k8s.namespace.name" semantic conventions. It represents the name of the +// namespace that the pod is running in. +func K8SNamespaceName(val string) attribute.KeyValue { + return K8SNamespaceNameKey.String(val) +} + +// K8SNodeName returns an attribute KeyValue conforming to the +// "k8s.node.name" semantic conventions. It represents the name of the Node. +func K8SNodeName(val string) attribute.KeyValue { + return K8SNodeNameKey.String(val) +} + +// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" +// semantic conventions. It represents the UID of the Node. +func K8SNodeUID(val string) attribute.KeyValue { + return K8SNodeUIDKey.String(val) +} + +// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" +// semantic conventions. It represents the name of the Pod. +func K8SPodName(val string) attribute.KeyValue { + return K8SPodNameKey.String(val) +} + +// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" +// semantic conventions. It represents the UID of the Pod. +func K8SPodUID(val string) attribute.KeyValue { + return K8SPodUIDKey.String(val) +} + +// K8SReplicaSetName returns an attribute KeyValue conforming to the +// "k8s.replicaset.name" semantic conventions. It represents the name of the +// ReplicaSet. +func K8SReplicaSetName(val string) attribute.KeyValue { + return K8SReplicaSetNameKey.String(val) +} + +// K8SReplicaSetUID returns an attribute KeyValue conforming to the +// "k8s.replicaset.uid" semantic conventions. It represents the UID of the +// ReplicaSet. +func K8SReplicaSetUID(val string) attribute.KeyValue { + return K8SReplicaSetUIDKey.String(val) +} + +// K8SStatefulSetName returns an attribute KeyValue conforming to the +// "k8s.statefulset.name" semantic conventions. It represents the name of the +// StatefulSet. +func K8SStatefulSetName(val string) attribute.KeyValue { + return K8SStatefulSetNameKey.String(val) +} + +// K8SStatefulSetUID returns an attribute KeyValue conforming to the +// "k8s.statefulset.uid" semantic conventions. It represents the UID of the +// StatefulSet. +func K8SStatefulSetUID(val string) attribute.KeyValue { + return K8SStatefulSetUIDKey.String(val) +} + +// Log attributes +const ( + // LogIostreamKey is the attribute Key conforming to the "log.iostream" + // semantic conventions. It represents the stream associated with the log. + // See below for a list of well-known values. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + LogIostreamKey = attribute.Key("log.iostream") +) + +var ( + // Logs from stdout stream + LogIostreamStdout = LogIostreamKey.String("stdout") + // Events from stderr stream + LogIostreamStderr = LogIostreamKey.String("stderr") +) + +// Attributes for a file to which log was emitted. +const ( + // LogFileNameKey is the attribute Key conforming to the "log.file.name" + // semantic conventions. It represents the basename of the file. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'audit.log' + LogFileNameKey = attribute.Key("log.file.name") + + // LogFileNameResolvedKey is the attribute Key conforming to the + // "log.file.name_resolved" semantic conventions. It represents the + // basename of the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'uuid.log' + LogFileNameResolvedKey = attribute.Key("log.file.name_resolved") + + // LogFilePathKey is the attribute Key conforming to the "log.file.path" + // semantic conventions. It represents the full path to the file. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/var/log/mysql/audit.log' + LogFilePathKey = attribute.Key("log.file.path") + + // LogFilePathResolvedKey is the attribute Key conforming to the + // "log.file.path_resolved" semantic conventions. It represents the full + // path to the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/var/lib/docker/uuid.log' + LogFilePathResolvedKey = attribute.Key("log.file.path_resolved") +) + +// LogFileName returns an attribute KeyValue conforming to the +// "log.file.name" semantic conventions. It represents the basename of the +// file. +func LogFileName(val string) attribute.KeyValue { + return LogFileNameKey.String(val) +} + +// LogFileNameResolved returns an attribute KeyValue conforming to the +// "log.file.name_resolved" semantic conventions. It represents the basename of +// the file, with symlinks resolved. +func LogFileNameResolved(val string) attribute.KeyValue { + return LogFileNameResolvedKey.String(val) +} + +// LogFilePath returns an attribute KeyValue conforming to the +// "log.file.path" semantic conventions. It represents the full path to the +// file. +func LogFilePath(val string) attribute.KeyValue { + return LogFilePathKey.String(val) +} + +// LogFilePathResolved returns an attribute KeyValue conforming to the +// "log.file.path_resolved" semantic conventions. It represents the full path +// to the file, with symlinks resolved. +func LogFilePathResolved(val string) attribute.KeyValue { + return LogFilePathResolvedKey.String(val) +} + +// The generic attributes that may be used in any Log Record. +const ( + // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" + // semantic conventions. It represents a unique identifier for the Log + // Record. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '01ARZ3NDEKTSV4RRFFQ69G5FAV' + // Note: If an id is provided, other log records with the same id will be + // considered duplicates and can be removed safely. This means, that two + // distinguishable log records MUST have different values. + // The id MAY be an [Universally Unique Lexicographically Sortable + // Identifier (ULID)](https://github.com/ulid/spec), but other identifiers + // (e.g. UUID) may be used as needed. + LogRecordUIDKey = attribute.Key("log.record.uid") +) + +// LogRecordUID returns an attribute KeyValue conforming to the +// "log.record.uid" semantic conventions. It represents a unique identifier for +// the Log Record. +func LogRecordUID(val string) attribute.KeyValue { + return LogRecordUIDKey.String(val) +} + +// Attributes describing telemetry around messaging systems and messaging +// activities. +const ( + // MessagingBatchMessageCountKey is the attribute Key conforming to the + // "messaging.batch.message_count" semantic conventions. It represents the + // number of messages sent, received, or processed in the scope of the + // batching operation. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 0, 1, 2 + // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on + // spans that operate with a single message. When a messaging client + // library supports both batch and single-message API for the same + // operation, instrumentations SHOULD use `messaging.batch.message_count` + // for batching APIs and SHOULD NOT use it for single-message APIs. + MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") + + // MessagingClientIDKey is the attribute Key conforming to the + // "messaging.client.id" semantic conventions. It represents a unique + // identifier for the client that consumes or produces a message. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'client-5', 'myhost@8742@s8083jm' + MessagingClientIDKey = attribute.Key("messaging.client.id") + + // MessagingDestinationAnonymousKey is the attribute Key conforming to the + // "messaging.destination.anonymous" semantic conventions. It represents a + // boolean that is true if the message destination is anonymous (could be + // unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") + + // MessagingDestinationNameKey is the attribute Key conforming to the + // "messaging.destination.name" semantic conventions. It represents the + // message destination name + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MyQueue', 'MyTopic' + // Note: Destination name SHOULD uniquely identify a specific queue, topic + // or other entity within the broker. If + // the broker doesn't have such notion, the destination name SHOULD + // uniquely identify the broker. + MessagingDestinationNameKey = attribute.Key("messaging.destination.name") + + // MessagingDestinationPartitionIDKey is the attribute Key conforming to + // the "messaging.destination.partition.id" semantic conventions. It + // represents the identifier of the partition messages are sent to or + // received from, unique within the `messaging.destination.name`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1' + MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id") + + // MessagingDestinationTemplateKey is the attribute Key conforming to the + // "messaging.destination.template" semantic conventions. It represents the + // low cardinality representation of the messaging destination name + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/customers/{customerID}' + // Note: Destination names could be constructed from templates. An example + // would be a destination name involving a user name or product id. + // Although the destination name in this case is of high cardinality, the + // underlying template is of low cardinality and can be effectively used + // for grouping and aggregation. + MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") + + // MessagingDestinationTemporaryKey is the attribute Key conforming to the + // "messaging.destination.temporary" semantic conventions. It represents a + // boolean that is true if the message destination is temporary and might + // not exist anymore after messages are processed. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") + + // MessagingDestinationPublishAnonymousKey is the attribute Key conforming + // to the "messaging.destination_publish.anonymous" semantic conventions. + // It represents a boolean that is true if the publish message destination + // is anonymous (could be unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + MessagingDestinationPublishAnonymousKey = attribute.Key("messaging.destination_publish.anonymous") + + // MessagingDestinationPublishNameKey is the attribute Key conforming to + // the "messaging.destination_publish.name" semantic conventions. It + // represents the name of the original destination the message was + // published to + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MyQueue', 'MyTopic' + // Note: The name SHOULD uniquely identify a specific queue, topic, or + // other entity within the broker. If + // the broker doesn't have such notion, the original destination name + // SHOULD uniquely identify the broker. + MessagingDestinationPublishNameKey = attribute.Key("messaging.destination_publish.name") + + // MessagingMessageBodySizeKey is the attribute Key conforming to the + // "messaging.message.body.size" semantic conventions. It represents the + // size of the message body in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1439 + // Note: This can refer to both the compressed or uncompressed body size. + // If both sizes are known, the uncompressed + // body size should be used. + MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size") + + // MessagingMessageConversationIDKey is the attribute Key conforming to the + // "messaging.message.conversation_id" semantic conventions. It represents + // the conversation ID identifying the conversation to which the message + // belongs, represented as a string. Sometimes called "Correlation ID". + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MyConversationID' + MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") + + // MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the + // "messaging.message.envelope.size" semantic conventions. It represents + // the size of the message body and metadata in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 2738 + // Note: This can refer to both the compressed or uncompressed size. If + // both sizes are known, the uncompressed + // size should be used. + MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size") + + // MessagingMessageIDKey is the attribute Key conforming to the + // "messaging.message.id" semantic conventions. It represents a value used + // by the messaging system as an identifier for the message, represented as + // a string. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '452a7c7c7c7048c2f887f61572b18fc2' + MessagingMessageIDKey = attribute.Key("messaging.message.id") + + // MessagingOperationNameKey is the attribute Key conforming to the + // "messaging.operation.name" semantic conventions. It represents the + // system-specific name of the messaging operation. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ack', 'nack', 'send' + MessagingOperationNameKey = attribute.Key("messaging.operation.name") + + // MessagingOperationTypeKey is the attribute Key conforming to the + // "messaging.operation.type" semantic conventions. It represents a string + // identifying the type of the messaging operation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: If a custom value is used, it MUST be of low cardinality. + MessagingOperationTypeKey = attribute.Key("messaging.operation.type") + + // MessagingSystemKey is the attribute Key conforming to the + // "messaging.system" semantic conventions. It represents the messaging + // system as identified by the client instrumentation. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: The actual messaging system may differ from the one known by the + // client. For example, when using Kafka client libraries to communicate + // with Azure Event Hubs, the `messaging.system` is set to `kafka` based on + // the instrumentation's best knowledge. + MessagingSystemKey = attribute.Key("messaging.system") +) + +var ( + // One or more messages are provided for publishing to an intermediary. If a single message is published, the context of the "Publish" span can be used as the creation context and no "Create" span needs to be created + MessagingOperationTypePublish = MessagingOperationTypeKey.String("publish") + // A message is created. "Create" spans always refer to a single message and are used to provide a unique creation context for messages in batch publishing scenarios + MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create") + // One or more messages are requested by a consumer. This operation refers to pull-based scenarios, where consumers explicitly call methods of messaging SDKs to receive messages + MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive") + // One or more messages are delivered to or processed by a consumer + MessagingOperationTypeDeliver = MessagingOperationTypeKey.String("process") + // One or more messages are settled + MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle") +) + +var ( + // Apache ActiveMQ + MessagingSystemActivemq = MessagingSystemKey.String("activemq") + // Amazon Simple Queue Service (SQS) + MessagingSystemAWSSqs = MessagingSystemKey.String("aws_sqs") + // Azure Event Grid + MessagingSystemEventgrid = MessagingSystemKey.String("eventgrid") + // Azure Event Hubs + MessagingSystemEventhubs = MessagingSystemKey.String("eventhubs") + // Azure Service Bus + MessagingSystemServicebus = MessagingSystemKey.String("servicebus") + // Google Cloud Pub/Sub + MessagingSystemGCPPubsub = MessagingSystemKey.String("gcp_pubsub") + // Java Message Service + MessagingSystemJms = MessagingSystemKey.String("jms") + // Apache Kafka + MessagingSystemKafka = MessagingSystemKey.String("kafka") + // RabbitMQ + MessagingSystemRabbitmq = MessagingSystemKey.String("rabbitmq") + // Apache RocketMQ + MessagingSystemRocketmq = MessagingSystemKey.String("rocketmq") +) + +// MessagingBatchMessageCount returns an attribute KeyValue conforming to +// the "messaging.batch.message_count" semantic conventions. It represents the +// number of messages sent, received, or processed in the scope of the batching +// operation. +func MessagingBatchMessageCount(val int) attribute.KeyValue { + return MessagingBatchMessageCountKey.Int(val) +} + +// MessagingClientID returns an attribute KeyValue conforming to the +// "messaging.client.id" semantic conventions. It represents a unique +// identifier for the client that consumes or produces a message. +func MessagingClientID(val string) attribute.KeyValue { + return MessagingClientIDKey.String(val) +} + +// MessagingDestinationAnonymous returns an attribute KeyValue conforming to +// the "messaging.destination.anonymous" semantic conventions. It represents a +// boolean that is true if the message destination is anonymous (could be +// unnamed or have auto-generated name). +func MessagingDestinationAnonymous(val bool) attribute.KeyValue { + return MessagingDestinationAnonymousKey.Bool(val) +} + +// MessagingDestinationName returns an attribute KeyValue conforming to the +// "messaging.destination.name" semantic conventions. It represents the message +// destination name +func MessagingDestinationName(val string) attribute.KeyValue { + return MessagingDestinationNameKey.String(val) +} + +// MessagingDestinationPartitionID returns an attribute KeyValue conforming +// to the "messaging.destination.partition.id" semantic conventions. It +// represents the identifier of the partition messages are sent to or received +// from, unique within the `messaging.destination.name`. +func MessagingDestinationPartitionID(val string) attribute.KeyValue { + return MessagingDestinationPartitionIDKey.String(val) +} + +// MessagingDestinationTemplate returns an attribute KeyValue conforming to +// the "messaging.destination.template" semantic conventions. It represents the +// low cardinality representation of the messaging destination name +func MessagingDestinationTemplate(val string) attribute.KeyValue { + return MessagingDestinationTemplateKey.String(val) +} + +// MessagingDestinationTemporary returns an attribute KeyValue conforming to +// the "messaging.destination.temporary" semantic conventions. It represents a +// boolean that is true if the message destination is temporary and might not +// exist anymore after messages are processed. +func MessagingDestinationTemporary(val bool) attribute.KeyValue { + return MessagingDestinationTemporaryKey.Bool(val) +} + +// MessagingDestinationPublishAnonymous returns an attribute KeyValue +// conforming to the "messaging.destination_publish.anonymous" semantic +// conventions. It represents a boolean that is true if the publish message +// destination is anonymous (could be unnamed or have auto-generated name). +func MessagingDestinationPublishAnonymous(val bool) attribute.KeyValue { + return MessagingDestinationPublishAnonymousKey.Bool(val) +} + +// MessagingDestinationPublishName returns an attribute KeyValue conforming +// to the "messaging.destination_publish.name" semantic conventions. It +// represents the name of the original destination the message was published to +func MessagingDestinationPublishName(val string) attribute.KeyValue { + return MessagingDestinationPublishNameKey.String(val) +} + +// MessagingMessageBodySize returns an attribute KeyValue conforming to the +// "messaging.message.body.size" semantic conventions. It represents the size +// of the message body in bytes. +func MessagingMessageBodySize(val int) attribute.KeyValue { + return MessagingMessageBodySizeKey.Int(val) +} + +// MessagingMessageConversationID returns an attribute KeyValue conforming +// to the "messaging.message.conversation_id" semantic conventions. It +// represents the conversation ID identifying the conversation to which the +// message belongs, represented as a string. Sometimes called "Correlation ID". +func MessagingMessageConversationID(val string) attribute.KeyValue { + return MessagingMessageConversationIDKey.String(val) +} + +// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to +// the "messaging.message.envelope.size" semantic conventions. It represents +// the size of the message body and metadata in bytes. +func MessagingMessageEnvelopeSize(val int) attribute.KeyValue { + return MessagingMessageEnvelopeSizeKey.Int(val) +} + +// MessagingMessageID returns an attribute KeyValue conforming to the +// "messaging.message.id" semantic conventions. It represents a value used by +// the messaging system as an identifier for the message, represented as a +// string. +func MessagingMessageID(val string) attribute.KeyValue { + return MessagingMessageIDKey.String(val) +} + +// MessagingOperationName returns an attribute KeyValue conforming to the +// "messaging.operation.name" semantic conventions. It represents the +// system-specific name of the messaging operation. +func MessagingOperationName(val string) attribute.KeyValue { + return MessagingOperationNameKey.String(val) +} + +// This group describes attributes specific to Apache Kafka. +const ( + // MessagingKafkaConsumerGroupKey is the attribute Key conforming to the + // "messaging.kafka.consumer.group" semantic conventions. It represents the + // name of the Kafka Consumer Group that is handling the message. Only + // applies to consumers, not producers. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'my-group' + MessagingKafkaConsumerGroupKey = attribute.Key("messaging.kafka.consumer.group") + + // MessagingKafkaMessageKeyKey is the attribute Key conforming to the + // "messaging.kafka.message.key" semantic conventions. It represents the + // message keys in Kafka are used for grouping alike messages to ensure + // they're processed on the same partition. They differ from + // `messaging.message.id` in that they're not unique. If the key is `null`, + // the attribute MUST NOT be set. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myKey' + // Note: If the key type is not string, it's string representation has to + // be supplied for the attribute. If the key has no unambiguous, canonical + // string form, don't include its value. + MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") + + // MessagingKafkaMessageOffsetKey is the attribute Key conforming to the + // "messaging.kafka.message.offset" semantic conventions. It represents the + // offset of a record in the corresponding Kafka partition. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 42 + MessagingKafkaMessageOffsetKey = attribute.Key("messaging.kafka.message.offset") + + // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the + // "messaging.kafka.message.tombstone" semantic conventions. It represents + // a boolean that is true if the message is a tombstone. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") +) + +// MessagingKafkaConsumerGroup returns an attribute KeyValue conforming to +// the "messaging.kafka.consumer.group" semantic conventions. It represents the +// name of the Kafka Consumer Group that is handling the message. Only applies +// to consumers, not producers. +func MessagingKafkaConsumerGroup(val string) attribute.KeyValue { + return MessagingKafkaConsumerGroupKey.String(val) +} + +// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the +// "messaging.kafka.message.key" semantic conventions. It represents the +// message keys in Kafka are used for grouping alike messages to ensure they're +// processed on the same partition. They differ from `messaging.message.id` in +// that they're not unique. If the key is `null`, the attribute MUST NOT be +// set. +func MessagingKafkaMessageKey(val string) attribute.KeyValue { + return MessagingKafkaMessageKeyKey.String(val) +} + +// MessagingKafkaMessageOffset returns an attribute KeyValue conforming to +// the "messaging.kafka.message.offset" semantic conventions. It represents the +// offset of a record in the corresponding Kafka partition. +func MessagingKafkaMessageOffset(val int) attribute.KeyValue { + return MessagingKafkaMessageOffsetKey.Int(val) +} + +// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming +// to the "messaging.kafka.message.tombstone" semantic conventions. It +// represents a boolean that is true if the message is a tombstone. +func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { + return MessagingKafkaMessageTombstoneKey.Bool(val) +} + +// This group describes attributes specific to RabbitMQ. +const ( + // MessagingRabbitmqDestinationRoutingKeyKey is the attribute Key + // conforming to the "messaging.rabbitmq.destination.routing_key" semantic + // conventions. It represents the rabbitMQ message routing key. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myKey' + MessagingRabbitmqDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") + + // MessagingRabbitmqMessageDeliveryTagKey is the attribute Key conforming + // to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. + // It represents the rabbitMQ message delivery tag + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 123 + MessagingRabbitmqMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag") +) + +// MessagingRabbitmqDestinationRoutingKey returns an attribute KeyValue +// conforming to the "messaging.rabbitmq.destination.routing_key" semantic +// conventions. It represents the rabbitMQ message routing key. +func MessagingRabbitmqDestinationRoutingKey(val string) attribute.KeyValue { + return MessagingRabbitmqDestinationRoutingKeyKey.String(val) +} + +// MessagingRabbitmqMessageDeliveryTag returns an attribute KeyValue +// conforming to the "messaging.rabbitmq.message.delivery_tag" semantic +// conventions. It represents the rabbitMQ message delivery tag +func MessagingRabbitmqMessageDeliveryTag(val int) attribute.KeyValue { + return MessagingRabbitmqMessageDeliveryTagKey.Int(val) +} + +// This group describes attributes specific to RocketMQ. +const ( + // MessagingRocketmqClientGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.client_group" semantic conventions. It represents + // the name of the RocketMQ producer/consumer group that is handling the + // message. The client type is identified by the SpanKind. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myConsumerGroup' + MessagingRocketmqClientGroupKey = attribute.Key("messaging.rocketmq.client_group") + + // MessagingRocketmqConsumptionModelKey is the attribute Key conforming to + // the "messaging.rocketmq.consumption_model" semantic conventions. It + // represents the model of message consumption. This only applies to + // consumer spans. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + MessagingRocketmqConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") + + // MessagingRocketmqMessageDelayTimeLevelKey is the attribute Key + // conforming to the "messaging.rocketmq.message.delay_time_level" semantic + // conventions. It represents the delay time level for delay message, which + // determines the message delay time. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3 + MessagingRocketmqMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") + + // MessagingRocketmqMessageDeliveryTimestampKey is the attribute Key + // conforming to the "messaging.rocketmq.message.delivery_timestamp" + // semantic conventions. It represents the timestamp in milliseconds that + // the delay message is expected to be delivered to consumer. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1665987217045 + MessagingRocketmqMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") + + // MessagingRocketmqMessageGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.message.group" semantic conventions. It represents + // the it is essential for FIFO message. Messages that belong to the same + // message group are always processed one by one within the same consumer + // group. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myMessageGroup' + MessagingRocketmqMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") + + // MessagingRocketmqMessageKeysKey is the attribute Key conforming to the + // "messaging.rocketmq.message.keys" semantic conventions. It represents + // the key(s) of message, another way to mark message besides message id. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'keyA', 'keyB' + MessagingRocketmqMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") + + // MessagingRocketmqMessageTagKey is the attribute Key conforming to the + // "messaging.rocketmq.message.tag" semantic conventions. It represents the + // secondary classifier of message besides topic. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'tagA' + MessagingRocketmqMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") + + // MessagingRocketmqMessageTypeKey is the attribute Key conforming to the + // "messaging.rocketmq.message.type" semantic conventions. It represents + // the type of message. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + MessagingRocketmqMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") + + // MessagingRocketmqNamespaceKey is the attribute Key conforming to the + // "messaging.rocketmq.namespace" semantic conventions. It represents the + // namespace of RocketMQ resources, resources in different namespaces are + // individual. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myNamespace' + MessagingRocketmqNamespaceKey = attribute.Key("messaging.rocketmq.namespace") +) + +var ( + // Clustering consumption model + MessagingRocketmqConsumptionModelClustering = MessagingRocketmqConsumptionModelKey.String("clustering") + // Broadcasting consumption model + MessagingRocketmqConsumptionModelBroadcasting = MessagingRocketmqConsumptionModelKey.String("broadcasting") +) + +var ( + // Normal message + MessagingRocketmqMessageTypeNormal = MessagingRocketmqMessageTypeKey.String("normal") + // FIFO message + MessagingRocketmqMessageTypeFifo = MessagingRocketmqMessageTypeKey.String("fifo") + // Delay message + MessagingRocketmqMessageTypeDelay = MessagingRocketmqMessageTypeKey.String("delay") + // Transaction message + MessagingRocketmqMessageTypeTransaction = MessagingRocketmqMessageTypeKey.String("transaction") +) + +// MessagingRocketmqClientGroup returns an attribute KeyValue conforming to +// the "messaging.rocketmq.client_group" semantic conventions. It represents +// the name of the RocketMQ producer/consumer group that is handling the +// message. The client type is identified by the SpanKind. +func MessagingRocketmqClientGroup(val string) attribute.KeyValue { + return MessagingRocketmqClientGroupKey.String(val) +} + +// MessagingRocketmqMessageDelayTimeLevel returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delay_time_level" semantic +// conventions. It represents the delay time level for delay message, which +// determines the message delay time. +func MessagingRocketmqMessageDelayTimeLevel(val int) attribute.KeyValue { + return MessagingRocketmqMessageDelayTimeLevelKey.Int(val) +} + +// MessagingRocketmqMessageDeliveryTimestamp returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic +// conventions. It represents the timestamp in milliseconds that the delay +// message is expected to be delivered to consumer. +func MessagingRocketmqMessageDeliveryTimestamp(val int) attribute.KeyValue { + return MessagingRocketmqMessageDeliveryTimestampKey.Int(val) +} + +// MessagingRocketmqMessageGroup returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.group" semantic conventions. It represents +// the it is essential for FIFO message. Messages that belong to the same +// message group are always processed one by one within the same consumer +// group. +func MessagingRocketmqMessageGroup(val string) attribute.KeyValue { + return MessagingRocketmqMessageGroupKey.String(val) +} + +// MessagingRocketmqMessageKeys returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.keys" semantic conventions. It represents +// the key(s) of message, another way to mark message besides message id. +func MessagingRocketmqMessageKeys(val ...string) attribute.KeyValue { + return MessagingRocketmqMessageKeysKey.StringSlice(val) +} + +// MessagingRocketmqMessageTag returns an attribute KeyValue conforming to +// the "messaging.rocketmq.message.tag" semantic conventions. It represents the +// secondary classifier of message besides topic. +func MessagingRocketmqMessageTag(val string) attribute.KeyValue { + return MessagingRocketmqMessageTagKey.String(val) +} + +// MessagingRocketmqNamespace returns an attribute KeyValue conforming to +// the "messaging.rocketmq.namespace" semantic conventions. It represents the +// namespace of RocketMQ resources, resources in different namespaces are +// individual. +func MessagingRocketmqNamespace(val string) attribute.KeyValue { + return MessagingRocketmqNamespaceKey.String(val) +} + +// This group describes attributes specific to GCP Pub/Sub. +const ( + // MessagingGCPPubsubMessageAckDeadlineKey is the attribute Key conforming + // to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. + // It represents the ack deadline in seconds set for the modify ack + // deadline request. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 10 + MessagingGCPPubsubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline") + + // MessagingGCPPubsubMessageAckIDKey is the attribute Key conforming to the + // "messaging.gcp_pubsub.message.ack_id" semantic conventions. It + // represents the ack id for a given message. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ack_id' + MessagingGCPPubsubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id") + + // MessagingGCPPubsubMessageDeliveryAttemptKey is the attribute Key + // conforming to the "messaging.gcp_pubsub.message.delivery_attempt" + // semantic conventions. It represents the delivery attempt for a given + // message. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 2 + MessagingGCPPubsubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt") + + // MessagingGCPPubsubMessageOrderingKeyKey is the attribute Key conforming + // to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. + // It represents the ordering key for a given message. If the attribute is + // not present, the message does not have an ordering key. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ordering_key' + MessagingGCPPubsubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key") +) + +// MessagingGCPPubsubMessageAckDeadline returns an attribute KeyValue +// conforming to the "messaging.gcp_pubsub.message.ack_deadline" semantic +// conventions. It represents the ack deadline in seconds set for the modify +// ack deadline request. +func MessagingGCPPubsubMessageAckDeadline(val int) attribute.KeyValue { + return MessagingGCPPubsubMessageAckDeadlineKey.Int(val) +} + +// MessagingGCPPubsubMessageAckID returns an attribute KeyValue conforming +// to the "messaging.gcp_pubsub.message.ack_id" semantic conventions. It +// represents the ack id for a given message. +func MessagingGCPPubsubMessageAckID(val string) attribute.KeyValue { + return MessagingGCPPubsubMessageAckIDKey.String(val) +} + +// MessagingGCPPubsubMessageDeliveryAttempt returns an attribute KeyValue +// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic +// conventions. It represents the delivery attempt for a given message. +func MessagingGCPPubsubMessageDeliveryAttempt(val int) attribute.KeyValue { + return MessagingGCPPubsubMessageDeliveryAttemptKey.Int(val) +} + +// MessagingGCPPubsubMessageOrderingKey returns an attribute KeyValue +// conforming to the "messaging.gcp_pubsub.message.ordering_key" semantic +// conventions. It represents the ordering key for a given message. If the +// attribute is not present, the message does not have an ordering key. +func MessagingGCPPubsubMessageOrderingKey(val string) attribute.KeyValue { + return MessagingGCPPubsubMessageOrderingKeyKey.String(val) +} + +// This group describes attributes specific to Azure Service Bus. +const ( + // MessagingServicebusDestinationSubscriptionNameKey is the attribute Key + // conforming to the "messaging.servicebus.destination.subscription_name" + // semantic conventions. It represents the name of the subscription in the + // topic messages are received from. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'mySubscription' + MessagingServicebusDestinationSubscriptionNameKey = attribute.Key("messaging.servicebus.destination.subscription_name") + + // MessagingServicebusDispositionStatusKey is the attribute Key conforming + // to the "messaging.servicebus.disposition_status" semantic conventions. + // It represents the describes the [settlement + // type](https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock). + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + MessagingServicebusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status") + + // MessagingServicebusMessageDeliveryCountKey is the attribute Key + // conforming to the "messaging.servicebus.message.delivery_count" semantic + // conventions. It represents the number of deliveries that have been + // attempted for this message. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 2 + MessagingServicebusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count") + + // MessagingServicebusMessageEnqueuedTimeKey is the attribute Key + // conforming to the "messaging.servicebus.message.enqueued_time" semantic + // conventions. It represents the UTC epoch seconds at which the message + // has been accepted and stored in the entity. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1701393730 + MessagingServicebusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time") +) + +var ( + // Message is completed + MessagingServicebusDispositionStatusComplete = MessagingServicebusDispositionStatusKey.String("complete") + // Message is abandoned + MessagingServicebusDispositionStatusAbandon = MessagingServicebusDispositionStatusKey.String("abandon") + // Message is sent to dead letter queue + MessagingServicebusDispositionStatusDeadLetter = MessagingServicebusDispositionStatusKey.String("dead_letter") + // Message is deferred + MessagingServicebusDispositionStatusDefer = MessagingServicebusDispositionStatusKey.String("defer") +) + +// MessagingServicebusDestinationSubscriptionName returns an attribute +// KeyValue conforming to the +// "messaging.servicebus.destination.subscription_name" semantic conventions. +// It represents the name of the subscription in the topic messages are +// received from. +func MessagingServicebusDestinationSubscriptionName(val string) attribute.KeyValue { + return MessagingServicebusDestinationSubscriptionNameKey.String(val) +} + +// MessagingServicebusMessageDeliveryCount returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.delivery_count" semantic +// conventions. It represents the number of deliveries that have been attempted +// for this message. +func MessagingServicebusMessageDeliveryCount(val int) attribute.KeyValue { + return MessagingServicebusMessageDeliveryCountKey.Int(val) +} + +// MessagingServicebusMessageEnqueuedTime returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.enqueued_time" semantic +// conventions. It represents the UTC epoch seconds at which the message has +// been accepted and stored in the entity. +func MessagingServicebusMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingServicebusMessageEnqueuedTimeKey.Int(val) +} + +// This group describes attributes specific to Azure Event Hubs. +const ( + // MessagingEventhubsConsumerGroupKey is the attribute Key conforming to + // the "messaging.eventhubs.consumer.group" semantic conventions. It + // represents the name of the consumer group the event consumer is + // associated with. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'indexer' + MessagingEventhubsConsumerGroupKey = attribute.Key("messaging.eventhubs.consumer.group") + + // MessagingEventhubsMessageEnqueuedTimeKey is the attribute Key conforming + // to the "messaging.eventhubs.message.enqueued_time" semantic conventions. + // It represents the UTC epoch seconds at which the message has been + // accepted and stored in the entity. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1701393730 + MessagingEventhubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time") +) + +// MessagingEventhubsConsumerGroup returns an attribute KeyValue conforming +// to the "messaging.eventhubs.consumer.group" semantic conventions. It +// represents the name of the consumer group the event consumer is associated +// with. +func MessagingEventhubsConsumerGroup(val string) attribute.KeyValue { + return MessagingEventhubsConsumerGroupKey.String(val) +} + +// MessagingEventhubsMessageEnqueuedTime returns an attribute KeyValue +// conforming to the "messaging.eventhubs.message.enqueued_time" semantic +// conventions. It represents the UTC epoch seconds at which the message has +// been accepted and stored in the entity. +func MessagingEventhubsMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingEventhubsMessageEnqueuedTimeKey.Int(val) +} + +// These attributes may be used for any network related operation. +const ( + // NetworkCarrierIccKey is the attribute Key conforming to the + // "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 + // alpha-2 2-character country code associated with the mobile carrier + // network. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'DE' + NetworkCarrierIccKey = attribute.Key("network.carrier.icc") + + // NetworkCarrierMccKey is the attribute Key conforming to the + // "network.carrier.mcc" semantic conventions. It represents the mobile + // carrier country code. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '310' + NetworkCarrierMccKey = attribute.Key("network.carrier.mcc") + + // NetworkCarrierMncKey is the attribute Key conforming to the + // "network.carrier.mnc" semantic conventions. It represents the mobile + // carrier network code. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '001' + NetworkCarrierMncKey = attribute.Key("network.carrier.mnc") + + // NetworkCarrierNameKey is the attribute Key conforming to the + // "network.carrier.name" semantic conventions. It represents the name of + // the mobile carrier. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'sprint' + NetworkCarrierNameKey = attribute.Key("network.carrier.name") + + // NetworkConnectionSubtypeKey is the attribute Key conforming to the + // "network.connection.subtype" semantic conventions. It represents the + // this describes more details regarding the connection.type. It may be the + // type of cell technology connection, but it could be used for describing + // details about a wifi connection. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'LTE' + NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype") + + // NetworkConnectionTypeKey is the attribute Key conforming to the + // "network.connection.type" semantic conventions. It represents the + // internet connection type. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'wifi' + NetworkConnectionTypeKey = attribute.Key("network.connection.type") + + // NetworkIoDirectionKey is the attribute Key conforming to the + // "network.io.direction" semantic conventions. It represents the network + // IO operation direction. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'transmit' + NetworkIoDirectionKey = attribute.Key("network.io.direction") + + // NetworkLocalAddressKey is the attribute Key conforming to the + // "network.local.address" semantic conventions. It represents the local + // address of the network connection - IP address or Unix domain socket + // name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '10.1.2.80', '/tmp/my.sock' + NetworkLocalAddressKey = attribute.Key("network.local.address") + + // NetworkLocalPortKey is the attribute Key conforming to the + // "network.local.port" semantic conventions. It represents the local port + // number of the network connection. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 65123 + NetworkLocalPortKey = attribute.Key("network.local.port") + + // NetworkPeerAddressKey is the attribute Key conforming to the + // "network.peer.address" semantic conventions. It represents the peer + // address of the network connection - IP address or Unix domain socket + // name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '10.1.2.80', '/tmp/my.sock' + NetworkPeerAddressKey = attribute.Key("network.peer.address") + + // NetworkPeerPortKey is the attribute Key conforming to the + // "network.peer.port" semantic conventions. It represents the peer port + // number of the network connection. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 65123 + NetworkPeerPortKey = attribute.Key("network.peer.port") + + // NetworkProtocolNameKey is the attribute Key conforming to the + // "network.protocol.name" semantic conventions. It represents the [OSI + // application layer](https://osi-model.com/application-layer/) or non-OSI + // equivalent. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'amqp', 'http', 'mqtt' + // Note: The value SHOULD be normalized to lowercase. + NetworkProtocolNameKey = attribute.Key("network.protocol.name") + + // NetworkProtocolVersionKey is the attribute Key conforming to the + // "network.protocol.version" semantic conventions. It represents the + // actual version of the protocol used for network communication. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1.1', '2' + // Note: If protocol version is subject to negotiation (for example using + // [ALPN](https://www.rfc-editor.org/rfc/rfc7301.html)), this attribute + // SHOULD be set to the negotiated version. If the actual protocol version + // is not known, this attribute SHOULD NOT be set. + NetworkProtocolVersionKey = attribute.Key("network.protocol.version") + + // NetworkTransportKey is the attribute Key conforming to the + // "network.transport" semantic conventions. It represents the [OSI + // transport layer](https://osi-model.com/transport-layer/) or + // [inter-process communication + // method](https://wikipedia.org/wiki/Inter-process_communication). + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'tcp', 'udp' + // Note: The value SHOULD be normalized to lowercase. + // + // Consider always setting the transport when setting a port number, since + // a port number is ambiguous without knowing the transport. For example + // different processes could be listening on TCP port 12345 and UDP port + // 12345. + NetworkTransportKey = attribute.Key("network.transport") + + // NetworkTypeKey is the attribute Key conforming to the "network.type" + // semantic conventions. It represents the [OSI network + // layer](https://osi-model.com/network-layer/) or non-OSI equivalent. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'ipv4', 'ipv6' + // Note: The value SHOULD be normalized to lowercase. + NetworkTypeKey = attribute.Key("network.type") +) + +var ( + // GPRS + NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs") + // EDGE + NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge") + // UMTS + NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts") + // CDMA + NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma") + // EVDO Rel. 0 + NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0") + // EVDO Rev. A + NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a") + // CDMA2000 1XRTT + NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt") + // HSDPA + NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa") + // HSUPA + NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa") + // HSPA + NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa") + // IDEN + NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden") + // EVDO Rev. B + NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b") + // LTE + NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte") + // EHRPD + NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd") + // HSPAP + NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap") + // GSM + NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm") + // TD-SCDMA + NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma") + // IWLAN + NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan") + // 5G NR (New Radio) + NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr") + // 5G NRNSA (New Radio Non-Standalone) + NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa") + // LTE CA + NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca") +) + +var ( + // wifi + NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi") + // wired + NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired") + // cell + NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell") + // unavailable + NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable") + // unknown + NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown") +) + +var ( + // transmit + NetworkIoDirectionTransmit = NetworkIoDirectionKey.String("transmit") + // receive + NetworkIoDirectionReceive = NetworkIoDirectionKey.String("receive") +) + +var ( + // TCP + NetworkTransportTCP = NetworkTransportKey.String("tcp") + // UDP + NetworkTransportUDP = NetworkTransportKey.String("udp") + // Named or anonymous pipe + NetworkTransportPipe = NetworkTransportKey.String("pipe") + // Unix domain socket + NetworkTransportUnix = NetworkTransportKey.String("unix") +) + +var ( + // IPv4 + NetworkTypeIpv4 = NetworkTypeKey.String("ipv4") + // IPv6 + NetworkTypeIpv6 = NetworkTypeKey.String("ipv6") +) + +// NetworkCarrierIcc returns an attribute KeyValue conforming to the +// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 +// alpha-2 2-character country code associated with the mobile carrier network. +func NetworkCarrierIcc(val string) attribute.KeyValue { + return NetworkCarrierIccKey.String(val) +} + +// NetworkCarrierMcc returns an attribute KeyValue conforming to the +// "network.carrier.mcc" semantic conventions. It represents the mobile carrier +// country code. +func NetworkCarrierMcc(val string) attribute.KeyValue { + return NetworkCarrierMccKey.String(val) +} + +// NetworkCarrierMnc returns an attribute KeyValue conforming to the +// "network.carrier.mnc" semantic conventions. It represents the mobile carrier +// network code. +func NetworkCarrierMnc(val string) attribute.KeyValue { + return NetworkCarrierMncKey.String(val) +} + +// NetworkCarrierName returns an attribute KeyValue conforming to the +// "network.carrier.name" semantic conventions. It represents the name of the +// mobile carrier. +func NetworkCarrierName(val string) attribute.KeyValue { + return NetworkCarrierNameKey.String(val) +} + +// NetworkLocalAddress returns an attribute KeyValue conforming to the +// "network.local.address" semantic conventions. It represents the local +// address of the network connection - IP address or Unix domain socket name. +func NetworkLocalAddress(val string) attribute.KeyValue { + return NetworkLocalAddressKey.String(val) +} + +// NetworkLocalPort returns an attribute KeyValue conforming to the +// "network.local.port" semantic conventions. It represents the local port +// number of the network connection. +func NetworkLocalPort(val int) attribute.KeyValue { + return NetworkLocalPortKey.Int(val) +} + +// NetworkPeerAddress returns an attribute KeyValue conforming to the +// "network.peer.address" semantic conventions. It represents the peer address +// of the network connection - IP address or Unix domain socket name. +func NetworkPeerAddress(val string) attribute.KeyValue { + return NetworkPeerAddressKey.String(val) +} + +// NetworkPeerPort returns an attribute KeyValue conforming to the +// "network.peer.port" semantic conventions. It represents the peer port number +// of the network connection. +func NetworkPeerPort(val int) attribute.KeyValue { + return NetworkPeerPortKey.Int(val) +} + +// NetworkProtocolName returns an attribute KeyValue conforming to the +// "network.protocol.name" semantic conventions. It represents the [OSI +// application layer](https://osi-model.com/application-layer/) or non-OSI +// equivalent. +func NetworkProtocolName(val string) attribute.KeyValue { + return NetworkProtocolNameKey.String(val) +} + +// NetworkProtocolVersion returns an attribute KeyValue conforming to the +// "network.protocol.version" semantic conventions. It represents the actual +// version of the protocol used for network communication. +func NetworkProtocolVersion(val string) attribute.KeyValue { + return NetworkProtocolVersionKey.String(val) +} + +// An OCI image manifest. +const ( + // OciManifestDigestKey is the attribute Key conforming to the + // "oci.manifest.digest" semantic conventions. It represents the digest of + // the OCI image manifest. For container images specifically is the digest + // by which the container image is known. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // 'sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4' + // Note: Follows [OCI Image Manifest + // Specification](https://github.com/opencontainers/image-spec/blob/main/manifest.md), + // and specifically the [Digest + // property](https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests). + // An example can be found in [Example Image + // Manifest](https://docs.docker.com/registry/spec/manifest-v2-2/#example-image-manifest). + OciManifestDigestKey = attribute.Key("oci.manifest.digest") +) + +// OciManifestDigest returns an attribute KeyValue conforming to the +// "oci.manifest.digest" semantic conventions. It represents the digest of the +// OCI image manifest. For container images specifically is the digest by which +// the container image is known. +func OciManifestDigest(val string) attribute.KeyValue { + return OciManifestDigestKey.String(val) +} + +// Attributes used by the OpenTracing Shim layer. +const ( + // OpentracingRefTypeKey is the attribute Key conforming to the + // "opentracing.ref_type" semantic conventions. It represents the + // parent-child Reference type + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Note: The causal relationship between a child Span and a parent Span. + OpentracingRefTypeKey = attribute.Key("opentracing.ref_type") +) + +var ( + // The parent Span depends on the child Span in some capacity + OpentracingRefTypeChildOf = OpentracingRefTypeKey.String("child_of") + // The parent Span doesn't depend in any way on the result of the child Span + OpentracingRefTypeFollowsFrom = OpentracingRefTypeKey.String("follows_from") +) + +// The operating system (OS) on which the process represented by this resource +// is running. +const ( + // OSBuildIDKey is the attribute Key conforming to the "os.build_id" + // semantic conventions. It represents the unique identifier for a + // particular build or compilation of the operating system. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'TQ3C.230805.001.B2', '20E247', '22621' + OSBuildIDKey = attribute.Key("os.build_id") + + // OSDescriptionKey is the attribute Key conforming to the "os.description" + // semantic conventions. It represents the human readable (not intended to + // be parsed) OS version information, like e.g. reported by `ver` or + // `lsb_release -a` commands. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Microsoft Windows [Version 10.0.18363.778]', 'Ubuntu 18.04.1 + // LTS' + OSDescriptionKey = attribute.Key("os.description") + + // OSNameKey is the attribute Key conforming to the "os.name" semantic + // conventions. It represents the human readable operating system name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'iOS', 'Android', 'Ubuntu' + OSNameKey = attribute.Key("os.name") + + // OSTypeKey is the attribute Key conforming to the "os.type" semantic + // conventions. It represents the operating system type. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + OSTypeKey = attribute.Key("os.type") + + // OSVersionKey is the attribute Key conforming to the "os.version" + // semantic conventions. It represents the version string of the operating + // system as defined in [Version + // Attributes](/docs/resource/README.md#version-attributes). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '14.2.1', '18.04.1' + OSVersionKey = attribute.Key("os.version") +) + +var ( + // Microsoft Windows + OSTypeWindows = OSTypeKey.String("windows") + // Linux + OSTypeLinux = OSTypeKey.String("linux") + // Apple Darwin + OSTypeDarwin = OSTypeKey.String("darwin") + // FreeBSD + OSTypeFreeBSD = OSTypeKey.String("freebsd") + // NetBSD + OSTypeNetBSD = OSTypeKey.String("netbsd") + // OpenBSD + OSTypeOpenBSD = OSTypeKey.String("openbsd") + // DragonFly BSD + OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") + // HP-UX (Hewlett Packard Unix) + OSTypeHPUX = OSTypeKey.String("hpux") + // AIX (Advanced Interactive eXecutive) + OSTypeAIX = OSTypeKey.String("aix") + // SunOS, Oracle Solaris + OSTypeSolaris = OSTypeKey.String("solaris") + // IBM z/OS + OSTypeZOS = OSTypeKey.String("z_os") +) + +// OSBuildID returns an attribute KeyValue conforming to the "os.build_id" +// semantic conventions. It represents the unique identifier for a particular +// build or compilation of the operating system. +func OSBuildID(val string) attribute.KeyValue { + return OSBuildIDKey.String(val) +} + +// OSDescription returns an attribute KeyValue conforming to the +// "os.description" semantic conventions. It represents the human readable (not +// intended to be parsed) OS version information, like e.g. reported by `ver` +// or `lsb_release -a` commands. +func OSDescription(val string) attribute.KeyValue { + return OSDescriptionKey.String(val) +} + +// OSName returns an attribute KeyValue conforming to the "os.name" semantic +// conventions. It represents the human readable operating system name. +func OSName(val string) attribute.KeyValue { + return OSNameKey.String(val) +} + +// OSVersion returns an attribute KeyValue conforming to the "os.version" +// semantic conventions. It represents the version string of the operating +// system as defined in [Version +// Attributes](/docs/resource/README.md#version-attributes). +func OSVersion(val string) attribute.KeyValue { + return OSVersionKey.String(val) +} + +// Attributes reserved for OpenTelemetry +const ( + // OTelStatusCodeKey is the attribute Key conforming to the + // "otel.status_code" semantic conventions. It represents the name of the + // code, either "OK" or "ERROR". MUST NOT be set if the status code is + // UNSET. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + OTelStatusCodeKey = attribute.Key("otel.status_code") + + // OTelStatusDescriptionKey is the attribute Key conforming to the + // "otel.status_description" semantic conventions. It represents the + // description of the Status if it has a value, otherwise not set. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'resource not found' + OTelStatusDescriptionKey = attribute.Key("otel.status_description") +) + +var ( + // The operation has been validated by an Application developer or Operator to have completed successfully + OTelStatusCodeOk = OTelStatusCodeKey.String("OK") + // The operation contains an error + OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") +) + +// OTelStatusDescription returns an attribute KeyValue conforming to the +// "otel.status_description" semantic conventions. It represents the +// description of the Status if it has a value, otherwise not set. +func OTelStatusDescription(val string) attribute.KeyValue { + return OTelStatusDescriptionKey.String(val) +} + +// Attributes used by non-OTLP exporters to represent OpenTelemetry Scope's +// concepts. +const ( + // OTelScopeNameKey is the attribute Key conforming to the + // "otel.scope.name" semantic conventions. It represents the name of the + // instrumentation scope - (`InstrumentationScope.Name` in OTLP). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'io.opentelemetry.contrib.mongodb' + OTelScopeNameKey = attribute.Key("otel.scope.name") + + // OTelScopeVersionKey is the attribute Key conforming to the + // "otel.scope.version" semantic conventions. It represents the version of + // the instrumentation scope - (`InstrumentationScope.Version` in OTLP). + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '1.0.0' + OTelScopeVersionKey = attribute.Key("otel.scope.version") +) + +// OTelScopeName returns an attribute KeyValue conforming to the +// "otel.scope.name" semantic conventions. It represents the name of the +// instrumentation scope - (`InstrumentationScope.Name` in OTLP). +func OTelScopeName(val string) attribute.KeyValue { + return OTelScopeNameKey.String(val) +} + +// OTelScopeVersion returns an attribute KeyValue conforming to the +// "otel.scope.version" semantic conventions. It represents the version of the +// instrumentation scope - (`InstrumentationScope.Version` in OTLP). +func OTelScopeVersion(val string) attribute.KeyValue { + return OTelScopeVersionKey.String(val) +} + +// Operations that access some remote service. +const ( + // PeerServiceKey is the attribute Key conforming to the "peer.service" + // semantic conventions. It represents the + // [`service.name`](/docs/resource/README.md#service) of the remote + // service. SHOULD be equal to the actual `service.name` resource attribute + // of the remote service if any. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'AuthTokenCache' + PeerServiceKey = attribute.Key("peer.service") +) + +// PeerService returns an attribute KeyValue conforming to the +// "peer.service" semantic conventions. It represents the +// [`service.name`](/docs/resource/README.md#service) of the remote service. +// SHOULD be equal to the actual `service.name` resource attribute of the +// remote service if any. +func PeerService(val string) attribute.KeyValue { + return PeerServiceKey.String(val) +} + +// An operating system process. +const ( + // ProcessCommandKey is the attribute Key conforming to the + // "process.command" semantic conventions. It represents the command used + // to launch the process (i.e. the command name). On Linux based systems, + // can be set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can + // be set to the first parameter extracted from `GetCommandLineW`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'cmd/otelcol' + ProcessCommandKey = attribute.Key("process.command") + + // ProcessCommandArgsKey is the attribute Key conforming to the + // "process.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) as received + // by the process. On Linux-based systems (and some other Unixoid systems + // supporting procfs), can be set according to the list of null-delimited + // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, + // this would be the full argv vector passed to `main`. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'cmd/otecol', '--config=config.yaml' + ProcessCommandArgsKey = attribute.Key("process.command_args") + + // ProcessCommandLineKey is the attribute Key conforming to the + // "process.command_line" semantic conventions. It represents the full + // command used to launch the process as a single string representing the + // full command. On Windows, can be set to the result of `GetCommandLineW`. + // Do not set this if you have to assemble it just for monitoring; use + // `process.command_args` instead. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'C:\\cmd\\otecol --config="my directory\\config.yaml"' + ProcessCommandLineKey = attribute.Key("process.command_line") + + // ProcessContextSwitchTypeKey is the attribute Key conforming to the + // "process.context_switch_type" semantic conventions. It represents the + // specifies whether the context switches for this data point were + // voluntary or involuntary. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + ProcessContextSwitchTypeKey = attribute.Key("process.context_switch_type") + + // ProcessCreationTimeKey is the attribute Key conforming to the + // "process.creation.time" semantic conventions. It represents the date and + // time the process was created, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2023-11-21T09:25:34.853Z' + ProcessCreationTimeKey = attribute.Key("process.creation.time") + + // ProcessExecutableNameKey is the attribute Key conforming to the + // "process.executable.name" semantic conventions. It represents the name + // of the process executable. On Linux based systems, can be set to the + // `Name` in `proc/[pid]/status`. On Windows, can be set to the base name + // of `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'otelcol' + ProcessExecutableNameKey = attribute.Key("process.executable.name") + + // ProcessExecutablePathKey is the attribute Key conforming to the + // "process.executable.path" semantic conventions. It represents the full + // path to the process executable. On Linux based systems, can be set to + // the target of `proc/[pid]/exe`. On Windows, can be set to the result of + // `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/usr/bin/cmd/otelcol' + ProcessExecutablePathKey = attribute.Key("process.executable.path") + + // ProcessExitCodeKey is the attribute Key conforming to the + // "process.exit.code" semantic conventions. It represents the exit code of + // the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 127 + ProcessExitCodeKey = attribute.Key("process.exit.code") + + // ProcessExitTimeKey is the attribute Key conforming to the + // "process.exit.time" semantic conventions. It represents the date and + // time the process exited, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2023-11-21T09:26:12.315Z' + ProcessExitTimeKey = attribute.Key("process.exit.time") + + // ProcessGroupLeaderPIDKey is the attribute Key conforming to the + // "process.group_leader.pid" semantic conventions. It represents the PID + // of the process's group leader. This is also the process group ID (PGID) + // of the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 23 + ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid") + + // ProcessInteractiveKey is the attribute Key conforming to the + // "process.interactive" semantic conventions. It represents the whether + // the process is connected to an interactive shell. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + ProcessInteractiveKey = attribute.Key("process.interactive") + + // ProcessOwnerKey is the attribute Key conforming to the "process.owner" + // semantic conventions. It represents the username of the user that owns + // the process. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'root' + ProcessOwnerKey = attribute.Key("process.owner") + + // ProcessPagingFaultTypeKey is the attribute Key conforming to the + // "process.paging.fault_type" semantic conventions. It represents the type + // of page fault for this data point. Type `major` is for major/hard page + // faults, and `minor` is for minor/soft page faults. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + ProcessPagingFaultTypeKey = attribute.Key("process.paging.fault_type") + + // ProcessParentPIDKey is the attribute Key conforming to the + // "process.parent_pid" semantic conventions. It represents the parent + // Process identifier (PPID). + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 111 + ProcessParentPIDKey = attribute.Key("process.parent_pid") + + // ProcessPIDKey is the attribute Key conforming to the "process.pid" + // semantic conventions. It represents the process identifier (PID). + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1234 + ProcessPIDKey = attribute.Key("process.pid") + + // ProcessRealUserIDKey is the attribute Key conforming to the + // "process.real_user.id" semantic conventions. It represents the real user + // ID (RUID) of the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1000 + ProcessRealUserIDKey = attribute.Key("process.real_user.id") + + // ProcessRealUserNameKey is the attribute Key conforming to the + // "process.real_user.name" semantic conventions. It represents the + // username of the real user of the process. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'operator' + ProcessRealUserNameKey = attribute.Key("process.real_user.name") + + // ProcessRuntimeDescriptionKey is the attribute Key conforming to the + // "process.runtime.description" semantic conventions. It represents an + // additional description about the runtime of the process, for example a + // specific vendor customization of the runtime environment. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0' + ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") + + // ProcessRuntimeNameKey is the attribute Key conforming to the + // "process.runtime.name" semantic conventions. It represents the name of + // the runtime of this process. For compiled native binaries, this SHOULD + // be the name of the compiler. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'OpenJDK Runtime Environment' + ProcessRuntimeNameKey = attribute.Key("process.runtime.name") + + // ProcessRuntimeVersionKey is the attribute Key conforming to the + // "process.runtime.version" semantic conventions. It represents the + // version of the runtime of this process, as returned by the runtime + // without modification. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '14.0.2' + ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") + + // ProcessSavedUserIDKey is the attribute Key conforming to the + // "process.saved_user.id" semantic conventions. It represents the saved + // user ID (SUID) of the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1002 + ProcessSavedUserIDKey = attribute.Key("process.saved_user.id") + + // ProcessSavedUserNameKey is the attribute Key conforming to the + // "process.saved_user.name" semantic conventions. It represents the + // username of the saved user. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'operator' + ProcessSavedUserNameKey = attribute.Key("process.saved_user.name") + + // ProcessSessionLeaderPIDKey is the attribute Key conforming to the + // "process.session_leader.pid" semantic conventions. It represents the PID + // of the process's session leader. This is also the session ID (SID) of + // the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 14 + ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid") + + // ProcessUserIDKey is the attribute Key conforming to the + // "process.user.id" semantic conventions. It represents the effective user + // ID (EUID) of the process. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1001 + ProcessUserIDKey = attribute.Key("process.user.id") + + // ProcessUserNameKey is the attribute Key conforming to the + // "process.user.name" semantic conventions. It represents the username of + // the effective user of the process. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'root' + ProcessUserNameKey = attribute.Key("process.user.name") + + // ProcessVpidKey is the attribute Key conforming to the "process.vpid" + // semantic conventions. It represents the virtual process identifier. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 12 + // Note: The process ID within a PID namespace. This is not necessarily + // unique across all processes on the host but it is unique within the + // process namespace that the process exists within. + ProcessVpidKey = attribute.Key("process.vpid") +) + +var ( + // voluntary + ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary") + // involuntary + ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary") +) + +var ( + // major + ProcessPagingFaultTypeMajor = ProcessPagingFaultTypeKey.String("major") + // minor + ProcessPagingFaultTypeMinor = ProcessPagingFaultTypeKey.String("minor") +) + +// ProcessCommand returns an attribute KeyValue conforming to the +// "process.command" semantic conventions. It represents the command used to +// launch the process (i.e. the command name). On Linux based systems, can be +// set to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to +// the first parameter extracted from `GetCommandLineW`. +func ProcessCommand(val string) attribute.KeyValue { + return ProcessCommandKey.String(val) +} + +// ProcessCommandArgs returns an attribute KeyValue conforming to the +// "process.command_args" semantic conventions. It represents the all the +// command arguments (including the command/executable itself) as received by +// the process. On Linux-based systems (and some other Unixoid systems +// supporting procfs), can be set according to the list of null-delimited +// strings extracted from `proc/[pid]/cmdline`. For libc-based executables, +// this would be the full argv vector passed to `main`. +func ProcessCommandArgs(val ...string) attribute.KeyValue { + return ProcessCommandArgsKey.StringSlice(val) +} + +// ProcessCommandLine returns an attribute KeyValue conforming to the +// "process.command_line" semantic conventions. It represents the full command +// used to launch the process as a single string representing the full command. +// On Windows, can be set to the result of `GetCommandLineW`. Do not set this +// if you have to assemble it just for monitoring; use `process.command_args` +// instead. +func ProcessCommandLine(val string) attribute.KeyValue { + return ProcessCommandLineKey.String(val) +} + +// ProcessCreationTime returns an attribute KeyValue conforming to the +// "process.creation.time" semantic conventions. It represents the date and +// time the process was created, in ISO 8601 format. +func ProcessCreationTime(val string) attribute.KeyValue { + return ProcessCreationTimeKey.String(val) +} + +// ProcessExecutableName returns an attribute KeyValue conforming to the +// "process.executable.name" semantic conventions. It represents the name of +// the process executable. On Linux based systems, can be set to the `Name` in +// `proc/[pid]/status`. On Windows, can be set to the base name of +// `GetProcessImageFileNameW`. +func ProcessExecutableName(val string) attribute.KeyValue { + return ProcessExecutableNameKey.String(val) +} + +// ProcessExecutablePath returns an attribute KeyValue conforming to the +// "process.executable.path" semantic conventions. It represents the full path +// to the process executable. On Linux based systems, can be set to the target +// of `proc/[pid]/exe`. On Windows, can be set to the result of +// `GetProcessImageFileNameW`. +func ProcessExecutablePath(val string) attribute.KeyValue { + return ProcessExecutablePathKey.String(val) +} + +// ProcessExitCode returns an attribute KeyValue conforming to the +// "process.exit.code" semantic conventions. It represents the exit code of the +// process. +func ProcessExitCode(val int) attribute.KeyValue { + return ProcessExitCodeKey.Int(val) +} + +// ProcessExitTime returns an attribute KeyValue conforming to the +// "process.exit.time" semantic conventions. It represents the date and time +// the process exited, in ISO 8601 format. +func ProcessExitTime(val string) attribute.KeyValue { + return ProcessExitTimeKey.String(val) +} + +// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the +// "process.group_leader.pid" semantic conventions. It represents the PID of +// the process's group leader. This is also the process group ID (PGID) of the +// process. +func ProcessGroupLeaderPID(val int) attribute.KeyValue { + return ProcessGroupLeaderPIDKey.Int(val) +} + +// ProcessInteractive returns an attribute KeyValue conforming to the +// "process.interactive" semantic conventions. It represents the whether the +// process is connected to an interactive shell. +func ProcessInteractive(val bool) attribute.KeyValue { + return ProcessInteractiveKey.Bool(val) +} + +// ProcessOwner returns an attribute KeyValue conforming to the +// "process.owner" semantic conventions. It represents the username of the user +// that owns the process. +func ProcessOwner(val string) attribute.KeyValue { + return ProcessOwnerKey.String(val) +} + +// ProcessParentPID returns an attribute KeyValue conforming to the +// "process.parent_pid" semantic conventions. It represents the parent Process +// identifier (PPID). +func ProcessParentPID(val int) attribute.KeyValue { + return ProcessParentPIDKey.Int(val) +} + +// ProcessPID returns an attribute KeyValue conforming to the "process.pid" +// semantic conventions. It represents the process identifier (PID). +func ProcessPID(val int) attribute.KeyValue { + return ProcessPIDKey.Int(val) +} + +// ProcessRealUserID returns an attribute KeyValue conforming to the +// "process.real_user.id" semantic conventions. It represents the real user ID +// (RUID) of the process. +func ProcessRealUserID(val int) attribute.KeyValue { + return ProcessRealUserIDKey.Int(val) +} + +// ProcessRealUserName returns an attribute KeyValue conforming to the +// "process.real_user.name" semantic conventions. It represents the username of +// the real user of the process. +func ProcessRealUserName(val string) attribute.KeyValue { + return ProcessRealUserNameKey.String(val) +} + +// ProcessRuntimeDescription returns an attribute KeyValue conforming to the +// "process.runtime.description" semantic conventions. It represents an +// additional description about the runtime of the process, for example a +// specific vendor customization of the runtime environment. +func ProcessRuntimeDescription(val string) attribute.KeyValue { + return ProcessRuntimeDescriptionKey.String(val) +} + +// ProcessRuntimeName returns an attribute KeyValue conforming to the +// "process.runtime.name" semantic conventions. It represents the name of the +// runtime of this process. For compiled native binaries, this SHOULD be the +// name of the compiler. +func ProcessRuntimeName(val string) attribute.KeyValue { + return ProcessRuntimeNameKey.String(val) +} + +// ProcessRuntimeVersion returns an attribute KeyValue conforming to the +// "process.runtime.version" semantic conventions. It represents the version of +// the runtime of this process, as returned by the runtime without +// modification. +func ProcessRuntimeVersion(val string) attribute.KeyValue { + return ProcessRuntimeVersionKey.String(val) +} + +// ProcessSavedUserID returns an attribute KeyValue conforming to the +// "process.saved_user.id" semantic conventions. It represents the saved user +// ID (SUID) of the process. +func ProcessSavedUserID(val int) attribute.KeyValue { + return ProcessSavedUserIDKey.Int(val) +} + +// ProcessSavedUserName returns an attribute KeyValue conforming to the +// "process.saved_user.name" semantic conventions. It represents the username +// of the saved user. +func ProcessSavedUserName(val string) attribute.KeyValue { + return ProcessSavedUserNameKey.String(val) +} + +// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the +// "process.session_leader.pid" semantic conventions. It represents the PID of +// the process's session leader. This is also the session ID (SID) of the +// process. +func ProcessSessionLeaderPID(val int) attribute.KeyValue { + return ProcessSessionLeaderPIDKey.Int(val) +} + +// ProcessUserID returns an attribute KeyValue conforming to the +// "process.user.id" semantic conventions. It represents the effective user ID +// (EUID) of the process. +func ProcessUserID(val int) attribute.KeyValue { + return ProcessUserIDKey.Int(val) +} + +// ProcessUserName returns an attribute KeyValue conforming to the +// "process.user.name" semantic conventions. It represents the username of the +// effective user of the process. +func ProcessUserName(val string) attribute.KeyValue { + return ProcessUserNameKey.String(val) +} + +// ProcessVpid returns an attribute KeyValue conforming to the +// "process.vpid" semantic conventions. It represents the virtual process +// identifier. +func ProcessVpid(val int) attribute.KeyValue { + return ProcessVpidKey.Int(val) +} + +// Attributes for process CPU +const ( + // ProcessCPUStateKey is the attribute Key conforming to the + // "process.cpu.state" semantic conventions. It represents the CPU state of + // the process. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + ProcessCPUStateKey = attribute.Key("process.cpu.state") +) + +var ( + // system + ProcessCPUStateSystem = ProcessCPUStateKey.String("system") + // user + ProcessCPUStateUser = ProcessCPUStateKey.String("user") + // wait + ProcessCPUStateWait = ProcessCPUStateKey.String("wait") +) + +// Attributes for remote procedure calls. +const ( + // RPCConnectRPCErrorCodeKey is the attribute Key conforming to the + // "rpc.connect_rpc.error_code" semantic conventions. It represents the + // [error codes](https://connect.build/docs/protocol/#error-codes) of the + // Connect request. Error codes are always string values. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + RPCConnectRPCErrorCodeKey = attribute.Key("rpc.connect_rpc.error_code") + + // RPCGRPCStatusCodeKey is the attribute Key conforming to the + // "rpc.grpc.status_code" semantic conventions. It represents the [numeric + // status + // code](https://github.com/grpc/grpc/blob/v1.33.2/doc/statuscodes.md) of + // the gRPC request. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + RPCGRPCStatusCodeKey = attribute.Key("rpc.grpc.status_code") + + // RPCJsonrpcErrorCodeKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_code" semantic conventions. It represents the + // `error.code` property of response if it is an error response. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: -32700, 100 + RPCJsonrpcErrorCodeKey = attribute.Key("rpc.jsonrpc.error_code") + + // RPCJsonrpcErrorMessageKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_message" semantic conventions. It represents the + // `error.message` property of response if it is an error response. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Parse error', 'User already exists' + RPCJsonrpcErrorMessageKey = attribute.Key("rpc.jsonrpc.error_message") + + // RPCJsonrpcRequestIDKey is the attribute Key conforming to the + // "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` + // property of request or response. Since protocol allows id to be int, + // string, `null` or missing (for notifications), value is expected to be + // cast to string for simplicity. Use empty string in case of `null` value. + // Omit entirely if this is a notification. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '10', 'request-7', '' + RPCJsonrpcRequestIDKey = attribute.Key("rpc.jsonrpc.request_id") + + // RPCJsonrpcVersionKey is the attribute Key conforming to the + // "rpc.jsonrpc.version" semantic conventions. It represents the protocol + // version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 + // doesn't specify this, the value can be omitted. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2.0', '1.0' + RPCJsonrpcVersionKey = attribute.Key("rpc.jsonrpc.version") + + // RPCMessageCompressedSizeKey is the attribute Key conforming to the + // "rpc.message.compressed_size" semantic conventions. It represents the + // compressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + RPCMessageCompressedSizeKey = attribute.Key("rpc.message.compressed_size") + + // RPCMessageIDKey is the attribute Key conforming to the "rpc.message.id" + // semantic conventions. It represents the mUST be calculated as two + // different counters starting from `1` one for sent messages and one for + // received message. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Note: This way we guarantee that the values will be consistent between + // different implementations. + RPCMessageIDKey = attribute.Key("rpc.message.id") + + // RPCMessageTypeKey is the attribute Key conforming to the + // "rpc.message.type" semantic conventions. It represents the whether this + // is a received or sent message. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + RPCMessageTypeKey = attribute.Key("rpc.message.type") + + // RPCMessageUncompressedSizeKey is the attribute Key conforming to the + // "rpc.message.uncompressed_size" semantic conventions. It represents the + // uncompressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + RPCMessageUncompressedSizeKey = attribute.Key("rpc.message.uncompressed_size") + + // RPCMethodKey is the attribute Key conforming to the "rpc.method" + // semantic conventions. It represents the name of the (logical) method + // being called, must be equal to the $method part in the span name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'exampleMethod' + // Note: This is the logical name of the method from the RPC interface + // perspective, which can be different from the name of any implementing + // method/function. The `code.function` attribute may be used to store the + // latter (e.g., method actually executing the call on the server side, RPC + // client stub method on the client side). + RPCMethodKey = attribute.Key("rpc.method") + + // RPCServiceKey is the attribute Key conforming to the "rpc.service" + // semantic conventions. It represents the full (logical) name of the + // service being called, including its package name, if applicable. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'myservice.EchoService' + // Note: This is the logical name of the service from the RPC interface + // perspective, which can be different from the name of any implementing + // class. The `code.namespace` attribute may be used to store the latter + // (despite the attribute name, it may include a class name; e.g., class + // with method actually executing the call on the server side, RPC client + // stub class on the client side). + RPCServiceKey = attribute.Key("rpc.service") + + // RPCSystemKey is the attribute Key conforming to the "rpc.system" + // semantic conventions. It represents a string identifying the remoting + // system. See below for a list of well-known identifiers. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + RPCSystemKey = attribute.Key("rpc.system") +) + +var ( + // cancelled + RPCConnectRPCErrorCodeCancelled = RPCConnectRPCErrorCodeKey.String("cancelled") + // unknown + RPCConnectRPCErrorCodeUnknown = RPCConnectRPCErrorCodeKey.String("unknown") + // invalid_argument + RPCConnectRPCErrorCodeInvalidArgument = RPCConnectRPCErrorCodeKey.String("invalid_argument") + // deadline_exceeded + RPCConnectRPCErrorCodeDeadlineExceeded = RPCConnectRPCErrorCodeKey.String("deadline_exceeded") + // not_found + RPCConnectRPCErrorCodeNotFound = RPCConnectRPCErrorCodeKey.String("not_found") + // already_exists + RPCConnectRPCErrorCodeAlreadyExists = RPCConnectRPCErrorCodeKey.String("already_exists") + // permission_denied + RPCConnectRPCErrorCodePermissionDenied = RPCConnectRPCErrorCodeKey.String("permission_denied") + // resource_exhausted + RPCConnectRPCErrorCodeResourceExhausted = RPCConnectRPCErrorCodeKey.String("resource_exhausted") + // failed_precondition + RPCConnectRPCErrorCodeFailedPrecondition = RPCConnectRPCErrorCodeKey.String("failed_precondition") + // aborted + RPCConnectRPCErrorCodeAborted = RPCConnectRPCErrorCodeKey.String("aborted") + // out_of_range + RPCConnectRPCErrorCodeOutOfRange = RPCConnectRPCErrorCodeKey.String("out_of_range") + // unimplemented + RPCConnectRPCErrorCodeUnimplemented = RPCConnectRPCErrorCodeKey.String("unimplemented") + // internal + RPCConnectRPCErrorCodeInternal = RPCConnectRPCErrorCodeKey.String("internal") + // unavailable + RPCConnectRPCErrorCodeUnavailable = RPCConnectRPCErrorCodeKey.String("unavailable") + // data_loss + RPCConnectRPCErrorCodeDataLoss = RPCConnectRPCErrorCodeKey.String("data_loss") + // unauthenticated + RPCConnectRPCErrorCodeUnauthenticated = RPCConnectRPCErrorCodeKey.String("unauthenticated") +) + +var ( + // OK + RPCGRPCStatusCodeOk = RPCGRPCStatusCodeKey.Int(0) + // CANCELLED + RPCGRPCStatusCodeCancelled = RPCGRPCStatusCodeKey.Int(1) + // UNKNOWN + RPCGRPCStatusCodeUnknown = RPCGRPCStatusCodeKey.Int(2) + // INVALID_ARGUMENT + RPCGRPCStatusCodeInvalidArgument = RPCGRPCStatusCodeKey.Int(3) + // DEADLINE_EXCEEDED + RPCGRPCStatusCodeDeadlineExceeded = RPCGRPCStatusCodeKey.Int(4) + // NOT_FOUND + RPCGRPCStatusCodeNotFound = RPCGRPCStatusCodeKey.Int(5) + // ALREADY_EXISTS + RPCGRPCStatusCodeAlreadyExists = RPCGRPCStatusCodeKey.Int(6) + // PERMISSION_DENIED + RPCGRPCStatusCodePermissionDenied = RPCGRPCStatusCodeKey.Int(7) + // RESOURCE_EXHAUSTED + RPCGRPCStatusCodeResourceExhausted = RPCGRPCStatusCodeKey.Int(8) + // FAILED_PRECONDITION + RPCGRPCStatusCodeFailedPrecondition = RPCGRPCStatusCodeKey.Int(9) + // ABORTED + RPCGRPCStatusCodeAborted = RPCGRPCStatusCodeKey.Int(10) + // OUT_OF_RANGE + RPCGRPCStatusCodeOutOfRange = RPCGRPCStatusCodeKey.Int(11) + // UNIMPLEMENTED + RPCGRPCStatusCodeUnimplemented = RPCGRPCStatusCodeKey.Int(12) + // INTERNAL + RPCGRPCStatusCodeInternal = RPCGRPCStatusCodeKey.Int(13) + // UNAVAILABLE + RPCGRPCStatusCodeUnavailable = RPCGRPCStatusCodeKey.Int(14) + // DATA_LOSS + RPCGRPCStatusCodeDataLoss = RPCGRPCStatusCodeKey.Int(15) + // UNAUTHENTICATED + RPCGRPCStatusCodeUnauthenticated = RPCGRPCStatusCodeKey.Int(16) +) + +var ( + // sent + RPCMessageTypeSent = RPCMessageTypeKey.String("SENT") + // received + RPCMessageTypeReceived = RPCMessageTypeKey.String("RECEIVED") +) + +var ( + // gRPC + RPCSystemGRPC = RPCSystemKey.String("grpc") + // Java RMI + RPCSystemJavaRmi = RPCSystemKey.String("java_rmi") + // .NET WCF + RPCSystemDotnetWcf = RPCSystemKey.String("dotnet_wcf") + // Apache Dubbo + RPCSystemApacheDubbo = RPCSystemKey.String("apache_dubbo") + // Connect RPC + RPCSystemConnectRPC = RPCSystemKey.String("connect_rpc") +) + +// RPCJsonrpcErrorCode returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_code" semantic conventions. It represents the +// `error.code` property of response if it is an error response. +func RPCJsonrpcErrorCode(val int) attribute.KeyValue { + return RPCJsonrpcErrorCodeKey.Int(val) +} + +// RPCJsonrpcErrorMessage returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_message" semantic conventions. It represents the +// `error.message` property of response if it is an error response. +func RPCJsonrpcErrorMessage(val string) attribute.KeyValue { + return RPCJsonrpcErrorMessageKey.String(val) +} + +// RPCJsonrpcRequestID returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` +// property of request or response. Since protocol allows id to be int, string, +// `null` or missing (for notifications), value is expected to be cast to +// string for simplicity. Use empty string in case of `null` value. Omit +// entirely if this is a notification. +func RPCJsonrpcRequestID(val string) attribute.KeyValue { + return RPCJsonrpcRequestIDKey.String(val) +} + +// RPCJsonrpcVersion returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.version" semantic conventions. It represents the protocol +// version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 +// doesn't specify this, the value can be omitted. +func RPCJsonrpcVersion(val string) attribute.KeyValue { + return RPCJsonrpcVersionKey.String(val) +} + +// RPCMessageCompressedSize returns an attribute KeyValue conforming to the +// "rpc.message.compressed_size" semantic conventions. It represents the +// compressed size of the message in bytes. +func RPCMessageCompressedSize(val int) attribute.KeyValue { + return RPCMessageCompressedSizeKey.Int(val) +} + +// RPCMessageID returns an attribute KeyValue conforming to the +// "rpc.message.id" semantic conventions. It represents the mUST be calculated +// as two different counters starting from `1` one for sent messages and one +// for received message. +func RPCMessageID(val int) attribute.KeyValue { + return RPCMessageIDKey.Int(val) +} + +// RPCMessageUncompressedSize returns an attribute KeyValue conforming to +// the "rpc.message.uncompressed_size" semantic conventions. It represents the +// uncompressed size of the message in bytes. +func RPCMessageUncompressedSize(val int) attribute.KeyValue { + return RPCMessageUncompressedSizeKey.Int(val) +} + +// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" +// semantic conventions. It represents the name of the (logical) method being +// called, must be equal to the $method part in the span name. +func RPCMethod(val string) attribute.KeyValue { + return RPCMethodKey.String(val) +} + +// RPCService returns an attribute KeyValue conforming to the "rpc.service" +// semantic conventions. It represents the full (logical) name of the service +// being called, including its package name, if applicable. +func RPCService(val string) attribute.KeyValue { + return RPCServiceKey.String(val) +} + +// These attributes may be used to describe the server in a connection-based +// network interaction where there is one side that initiates the connection +// (the client is the side that initiates the connection). This covers all TCP +// network interactions since TCP is connection-based and one side initiates +// the connection (an exception is made for peer-to-peer communication over TCP +// where the "user-facing" surface of the protocol / API doesn't expose a clear +// notion of client and server). This also covers UDP network interactions +// where one side initiates the interaction, e.g. QUIC (HTTP/3) and DNS. +const ( + // ServerAddressKey is the attribute Key conforming to the "server.address" + // semantic conventions. It represents the server domain name if available + // without reverse DNS lookup; otherwise, IP address or Unix domain socket + // name. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'example.com', '10.1.2.80', '/tmp/my.sock' + // Note: When observed from the client side, and when communicating through + // an intermediary, `server.address` SHOULD represent the server address + // behind any intermediaries, for example proxies, if it's available. + ServerAddressKey = attribute.Key("server.address") + + // ServerPortKey is the attribute Key conforming to the "server.port" + // semantic conventions. It represents the server port number. + // + // Type: int + // RequirementLevel: Optional + // Stability: stable + // Examples: 80, 8080, 443 + // Note: When observed from the client side, and when communicating through + // an intermediary, `server.port` SHOULD represent the server port behind + // any intermediaries, for example proxies, if it's available. + ServerPortKey = attribute.Key("server.port") +) + +// ServerAddress returns an attribute KeyValue conforming to the +// "server.address" semantic conventions. It represents the server domain name +// if available without reverse DNS lookup; otherwise, IP address or Unix +// domain socket name. +func ServerAddress(val string) attribute.KeyValue { + return ServerAddressKey.String(val) +} + +// ServerPort returns an attribute KeyValue conforming to the "server.port" +// semantic conventions. It represents the server port number. +func ServerPort(val int) attribute.KeyValue { + return ServerPortKey.Int(val) +} + +// A service instance. +const ( + // ServiceInstanceIDKey is the attribute Key conforming to the + // "service.instance.id" semantic conventions. It represents the string ID + // of the service instance. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '627cc493-f310-47de-96bd-71410b7dec09' + // Note: MUST be unique for each instance of the same + // `service.namespace,service.name` pair (in other words + // `service.namespace,service.name,service.instance.id` triplet MUST be + // globally unique). The ID helps to + // distinguish instances of the same service that exist at the same time + // (e.g. instances of a horizontally scaled + // service). + // + // Implementations, such as SDKs, are recommended to generate a random + // Version 1 or Version 4 [RFC + // 4122](https://www.ietf.org/rfc/rfc4122.txt) UUID, but are free to use an + // inherent unique ID as the source of + // this value if stability is desirable. In that case, the ID SHOULD be + // used as source of a UUID Version 5 and + // SHOULD use the following UUID as the namespace: + // `4d63009a-8d0f-11ee-aad7-4c796ed8e320`. + // + // UUIDs are typically recommended, as only an opaque value for the + // purposes of identifying a service instance is + // needed. Similar to what can be seen in the man page for the + // [`/etc/machine-id`](https://www.freedesktop.org/software/systemd/man/machine-id.html) + // file, the underlying + // data, such as pod name and namespace should be treated as confidential, + // being the user's choice to expose it + // or not via another resource attribute. + // + // For applications running behind an application server (like unicorn), we + // do not recommend using one identifier + // for all processes participating in the application. Instead, it's + // recommended each division (e.g. a worker + // thread in unicorn) to have its own instance.id. + // + // It's not recommended for a Collector to set `service.instance.id` if it + // can't unambiguously determine the + // service instance that is generating that telemetry. For instance, + // creating an UUID based on `pod.name` will + // likely be wrong, as the Collector might not know from which container + // within that pod the telemetry originated. + // However, Collectors can set the `service.instance.id` if they can + // unambiguously determine the service instance + // for that telemetry. This is typically the case for scraping receivers, + // as they know the target address and + // port. + ServiceInstanceIDKey = attribute.Key("service.instance.id") + + // ServiceNameKey is the attribute Key conforming to the "service.name" + // semantic conventions. It represents the logical name of the service. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'shoppingcart' + // Note: MUST be the same for all instances of horizontally scaled + // services. If the value was not specified, SDKs MUST fallback to + // `unknown_service:` concatenated with + // [`process.executable.name`](process.md), e.g. `unknown_service:bash`. If + // `process.executable.name` is not available, the value MUST be set to + // `unknown_service`. + ServiceNameKey = attribute.Key("service.name") + + // ServiceNamespaceKey is the attribute Key conforming to the + // "service.namespace" semantic conventions. It represents a namespace for + // `service.name`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Shop' + // Note: A string value having a meaning that helps to distinguish a group + // of services, for example the team name that owns a group of services. + // `service.name` is expected to be unique within the same namespace. If + // `service.namespace` is not specified in the Resource then `service.name` + // is expected to be unique for all services that have no explicit + // namespace defined (so the empty/unspecified namespace is simply one more + // valid namespace). Zero-length namespace string is assumed equal to + // unspecified namespace. + ServiceNamespaceKey = attribute.Key("service.namespace") + + // ServiceVersionKey is the attribute Key conforming to the + // "service.version" semantic conventions. It represents the version string + // of the service API or implementation. The format is not defined by these + // conventions. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '2.0.0', 'a01dbef8a' + ServiceVersionKey = attribute.Key("service.version") +) + +// ServiceInstanceID returns an attribute KeyValue conforming to the +// "service.instance.id" semantic conventions. It represents the string ID of +// the service instance. +func ServiceInstanceID(val string) attribute.KeyValue { + return ServiceInstanceIDKey.String(val) +} + +// ServiceName returns an attribute KeyValue conforming to the +// "service.name" semantic conventions. It represents the logical name of the +// service. +func ServiceName(val string) attribute.KeyValue { + return ServiceNameKey.String(val) +} + +// ServiceNamespace returns an attribute KeyValue conforming to the +// "service.namespace" semantic conventions. It represents a namespace for +// `service.name`. +func ServiceNamespace(val string) attribute.KeyValue { + return ServiceNamespaceKey.String(val) +} + +// ServiceVersion returns an attribute KeyValue conforming to the +// "service.version" semantic conventions. It represents the version string of +// the service API or implementation. The format is not defined by these +// conventions. +func ServiceVersion(val string) attribute.KeyValue { + return ServiceVersionKey.String(val) +} + +// Session is defined as the period of time encompassing all activities +// performed by the application and the actions executed by the end user. +// Consequently, a Session is represented as a collection of Logs, Events, and +// Spans emitted by the Client Application throughout the Session's duration. +// Each Session is assigned a unique identifier, which is included as an +// attribute in the Logs, Events, and Spans generated during the Session's +// lifecycle. +// When a session reaches end of life, typically due to user inactivity or +// session timeout, a new session identifier will be assigned. The previous +// session identifier may be provided by the instrumentation so that telemetry +// backends can link the two sessions. +const ( + // SessionIDKey is the attribute Key conforming to the "session.id" + // semantic conventions. It represents a unique id to identify a session. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '00112233-4455-6677-8899-aabbccddeeff' + SessionIDKey = attribute.Key("session.id") + + // SessionPreviousIDKey is the attribute Key conforming to the + // "session.previous_id" semantic conventions. It represents the previous + // `session.id` for this user, when known. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '00112233-4455-6677-8899-aabbccddeeff' + SessionPreviousIDKey = attribute.Key("session.previous_id") +) + +// SessionID returns an attribute KeyValue conforming to the "session.id" +// semantic conventions. It represents a unique id to identify a session. +func SessionID(val string) attribute.KeyValue { + return SessionIDKey.String(val) +} + +// SessionPreviousID returns an attribute KeyValue conforming to the +// "session.previous_id" semantic conventions. It represents the previous +// `session.id` for this user, when known. +func SessionPreviousID(val string) attribute.KeyValue { + return SessionPreviousIDKey.String(val) +} + +// SignalR attributes +const ( + // SignalrConnectionStatusKey is the attribute Key conforming to the + // "signalr.connection.status" semantic conventions. It represents the + // signalR HTTP connection closure status. + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'app_shutdown', 'timeout' + SignalrConnectionStatusKey = attribute.Key("signalr.connection.status") + + // SignalrTransportKey is the attribute Key conforming to the + // "signalr.transport" semantic conventions. It represents the [SignalR + // transport + // type](https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md) + // + // Type: Enum + // RequirementLevel: Optional + // Stability: stable + // Examples: 'web_sockets', 'long_polling' + SignalrTransportKey = attribute.Key("signalr.transport") +) + +var ( + // The connection was closed normally + SignalrConnectionStatusNormalClosure = SignalrConnectionStatusKey.String("normal_closure") + // The connection was closed due to a timeout + SignalrConnectionStatusTimeout = SignalrConnectionStatusKey.String("timeout") + // The connection was closed because the app is shutting down + SignalrConnectionStatusAppShutdown = SignalrConnectionStatusKey.String("app_shutdown") +) + +var ( + // ServerSentEvents protocol + SignalrTransportServerSentEvents = SignalrTransportKey.String("server_sent_events") + // LongPolling protocol + SignalrTransportLongPolling = SignalrTransportKey.String("long_polling") + // WebSockets protocol + SignalrTransportWebSockets = SignalrTransportKey.String("web_sockets") +) + +// These attributes may be used to describe the sender of a network +// exchange/packet. These should be used when there is no client/server +// relationship between the two sides, or when that relationship is unknown. +// This covers low-level network interactions (e.g. packet tracing) where you +// don't know if there was a connection or which side initiated it. This also +// covers unidirectional UDP flows and peer-to-peer communication where the +// "user-facing" surface of the protocol / API doesn't expose a clear notion of +// client and server. +const ( + // SourceAddressKey is the attribute Key conforming to the "source.address" + // semantic conventions. It represents the source address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix + // domain socket name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'source.example.com', '10.1.2.80', '/tmp/my.sock' + // Note: When observed from the destination side, and when communicating + // through an intermediary, `source.address` SHOULD represent the source + // address behind any intermediaries, for example proxies, if it's + // available. + SourceAddressKey = attribute.Key("source.address") + + // SourcePortKey is the attribute Key conforming to the "source.port" + // semantic conventions. It represents the source port number + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 3389, 2888 + SourcePortKey = attribute.Key("source.port") +) + +// SourceAddress returns an attribute KeyValue conforming to the +// "source.address" semantic conventions. It represents the source address - +// domain name if available without reverse DNS lookup; otherwise, IP address +// or Unix domain socket name. +func SourceAddress(val string) attribute.KeyValue { + return SourceAddressKey.String(val) +} + +// SourcePort returns an attribute KeyValue conforming to the "source.port" +// semantic conventions. It represents the source port number +func SourcePort(val int) attribute.KeyValue { + return SourcePortKey.Int(val) +} + +// Describes System attributes +const ( + // SystemDeviceKey is the attribute Key conforming to the "system.device" + // semantic conventions. It represents the device identifier + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '(identifier)' + SystemDeviceKey = attribute.Key("system.device") +) + +// SystemDevice returns an attribute KeyValue conforming to the +// "system.device" semantic conventions. It represents the device identifier +func SystemDevice(val string) attribute.KeyValue { + return SystemDeviceKey.String(val) +} + +// Describes System CPU attributes +const ( + // SystemCPULogicalNumberKey is the attribute Key conforming to the + // "system.cpu.logical_number" semantic conventions. It represents the + // logical CPU number [0..n-1] + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 1 + SystemCPULogicalNumberKey = attribute.Key("system.cpu.logical_number") + + // SystemCPUStateKey is the attribute Key conforming to the + // "system.cpu.state" semantic conventions. It represents the state of the + // CPU + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'idle', 'interrupt' + SystemCPUStateKey = attribute.Key("system.cpu.state") +) + +var ( + // user + SystemCPUStateUser = SystemCPUStateKey.String("user") + // system + SystemCPUStateSystem = SystemCPUStateKey.String("system") + // nice + SystemCPUStateNice = SystemCPUStateKey.String("nice") + // idle + SystemCPUStateIdle = SystemCPUStateKey.String("idle") + // iowait + SystemCPUStateIowait = SystemCPUStateKey.String("iowait") + // interrupt + SystemCPUStateInterrupt = SystemCPUStateKey.String("interrupt") + // steal + SystemCPUStateSteal = SystemCPUStateKey.String("steal") +) + +// SystemCPULogicalNumber returns an attribute KeyValue conforming to the +// "system.cpu.logical_number" semantic conventions. It represents the logical +// CPU number [0..n-1] +func SystemCPULogicalNumber(val int) attribute.KeyValue { + return SystemCPULogicalNumberKey.Int(val) +} + +// Describes System Memory attributes +const ( + // SystemMemoryStateKey is the attribute Key conforming to the + // "system.memory.state" semantic conventions. It represents the memory + // state + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'free', 'cached' + SystemMemoryStateKey = attribute.Key("system.memory.state") +) + +var ( + // used + SystemMemoryStateUsed = SystemMemoryStateKey.String("used") + // free + SystemMemoryStateFree = SystemMemoryStateKey.String("free") + // shared + SystemMemoryStateShared = SystemMemoryStateKey.String("shared") + // buffers + SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers") + // cached + SystemMemoryStateCached = SystemMemoryStateKey.String("cached") +) + +// Describes System Memory Paging attributes +const ( + // SystemPagingDirectionKey is the attribute Key conforming to the + // "system.paging.direction" semantic conventions. It represents the paging + // access direction + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'in' + SystemPagingDirectionKey = attribute.Key("system.paging.direction") + + // SystemPagingStateKey is the attribute Key conforming to the + // "system.paging.state" semantic conventions. It represents the memory + // paging state + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'free' + SystemPagingStateKey = attribute.Key("system.paging.state") + + // SystemPagingTypeKey is the attribute Key conforming to the + // "system.paging.type" semantic conventions. It represents the memory + // paging type + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'minor' + SystemPagingTypeKey = attribute.Key("system.paging.type") +) + +var ( + // in + SystemPagingDirectionIn = SystemPagingDirectionKey.String("in") + // out + SystemPagingDirectionOut = SystemPagingDirectionKey.String("out") +) + +var ( + // used + SystemPagingStateUsed = SystemPagingStateKey.String("used") + // free + SystemPagingStateFree = SystemPagingStateKey.String("free") +) + +var ( + // major + SystemPagingTypeMajor = SystemPagingTypeKey.String("major") + // minor + SystemPagingTypeMinor = SystemPagingTypeKey.String("minor") +) + +// Describes Filesystem attributes +const ( + // SystemFilesystemModeKey is the attribute Key conforming to the + // "system.filesystem.mode" semantic conventions. It represents the + // filesystem mode + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'rw, ro' + SystemFilesystemModeKey = attribute.Key("system.filesystem.mode") + + // SystemFilesystemMountpointKey is the attribute Key conforming to the + // "system.filesystem.mountpoint" semantic conventions. It represents the + // filesystem mount path + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/mnt/data' + SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint") + + // SystemFilesystemStateKey is the attribute Key conforming to the + // "system.filesystem.state" semantic conventions. It represents the + // filesystem state + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'used' + SystemFilesystemStateKey = attribute.Key("system.filesystem.state") + + // SystemFilesystemTypeKey is the attribute Key conforming to the + // "system.filesystem.type" semantic conventions. It represents the + // filesystem type + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'ext4' + SystemFilesystemTypeKey = attribute.Key("system.filesystem.type") +) + +var ( + // used + SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used") + // free + SystemFilesystemStateFree = SystemFilesystemStateKey.String("free") + // reserved + SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved") +) + +var ( + // fat32 + SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32") + // exfat + SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat") + // ntfs + SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs") + // refs + SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs") + // hfsplus + SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus") + // ext4 + SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4") +) + +// SystemFilesystemMode returns an attribute KeyValue conforming to the +// "system.filesystem.mode" semantic conventions. It represents the filesystem +// mode +func SystemFilesystemMode(val string) attribute.KeyValue { + return SystemFilesystemModeKey.String(val) +} + +// SystemFilesystemMountpoint returns an attribute KeyValue conforming to +// the "system.filesystem.mountpoint" semantic conventions. It represents the +// filesystem mount path +func SystemFilesystemMountpoint(val string) attribute.KeyValue { + return SystemFilesystemMountpointKey.String(val) +} + +// Describes Network attributes +const ( + // SystemNetworkStateKey is the attribute Key conforming to the + // "system.network.state" semantic conventions. It represents a stateless + // protocol MUST NOT set this attribute + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'close_wait' + SystemNetworkStateKey = attribute.Key("system.network.state") +) + +var ( + // close + SystemNetworkStateClose = SystemNetworkStateKey.String("close") + // close_wait + SystemNetworkStateCloseWait = SystemNetworkStateKey.String("close_wait") + // closing + SystemNetworkStateClosing = SystemNetworkStateKey.String("closing") + // delete + SystemNetworkStateDelete = SystemNetworkStateKey.String("delete") + // established + SystemNetworkStateEstablished = SystemNetworkStateKey.String("established") + // fin_wait_1 + SystemNetworkStateFinWait1 = SystemNetworkStateKey.String("fin_wait_1") + // fin_wait_2 + SystemNetworkStateFinWait2 = SystemNetworkStateKey.String("fin_wait_2") + // last_ack + SystemNetworkStateLastAck = SystemNetworkStateKey.String("last_ack") + // listen + SystemNetworkStateListen = SystemNetworkStateKey.String("listen") + // syn_recv + SystemNetworkStateSynRecv = SystemNetworkStateKey.String("syn_recv") + // syn_sent + SystemNetworkStateSynSent = SystemNetworkStateKey.String("syn_sent") + // time_wait + SystemNetworkStateTimeWait = SystemNetworkStateKey.String("time_wait") +) + +// Describes System Process attributes +const ( + // SystemProcessStatusKey is the attribute Key conforming to the + // "system.process.status" semantic conventions. It represents the process + // state, e.g., [Linux Process State + // Codes](https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES) + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'running' + SystemProcessStatusKey = attribute.Key("system.process.status") +) + +var ( + // running + SystemProcessStatusRunning = SystemProcessStatusKey.String("running") + // sleeping + SystemProcessStatusSleeping = SystemProcessStatusKey.String("sleeping") + // stopped + SystemProcessStatusStopped = SystemProcessStatusKey.String("stopped") + // defunct + SystemProcessStatusDefunct = SystemProcessStatusKey.String("defunct") +) + +// Attributes for telemetry SDK. +const ( + // TelemetrySDKLanguageKey is the attribute Key conforming to the + // "telemetry.sdk.language" semantic conventions. It represents the + // language of the telemetry SDK. + // + // Type: Enum + // RequirementLevel: Required + // Stability: stable + TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") + + // TelemetrySDKNameKey is the attribute Key conforming to the + // "telemetry.sdk.name" semantic conventions. It represents the name of the + // telemetry SDK as defined above. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: 'opentelemetry' + // Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute + // to `opentelemetry`. + // If another SDK, like a fork or a vendor-provided implementation, is + // used, this SDK MUST set the + // `telemetry.sdk.name` attribute to the fully-qualified class or module + // name of this SDK's main entry point + // or another suitable identifier depending on the language. + // The identifier `opentelemetry` is reserved and MUST NOT be used in this + // case. + // All custom identifiers SHOULD be stable across different versions of an + // implementation. + TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") + + // TelemetrySDKVersionKey is the attribute Key conforming to the + // "telemetry.sdk.version" semantic conventions. It represents the version + // string of the telemetry SDK. + // + // Type: string + // RequirementLevel: Required + // Stability: stable + // Examples: '1.2.3' + TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") + + // TelemetryDistroNameKey is the attribute Key conforming to the + // "telemetry.distro.name" semantic conventions. It represents the name of + // the auto instrumentation agent or distribution, if used. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'parts-unlimited-java' + // Note: Official auto instrumentation agents and distributions SHOULD set + // the `telemetry.distro.name` attribute to + // a string starting with `opentelemetry-`, e.g. + // `opentelemetry-java-instrumentation`. + TelemetryDistroNameKey = attribute.Key("telemetry.distro.name") + + // TelemetryDistroVersionKey is the attribute Key conforming to the + // "telemetry.distro.version" semantic conventions. It represents the + // version string of the auto instrumentation agent or distribution, if + // used. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1.2.3' + TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version") +) + +var ( + // cpp + TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") + // dotnet + TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") + // erlang + TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") + // go + TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") + // java + TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") + // nodejs + TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") + // php + TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") + // python + TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") + // ruby + TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") + // rust + TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust") + // swift + TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") + // webjs + TelemetrySDKLanguageWebjs = TelemetrySDKLanguageKey.String("webjs") +) + +// TelemetrySDKName returns an attribute KeyValue conforming to the +// "telemetry.sdk.name" semantic conventions. It represents the name of the +// telemetry SDK as defined above. +func TelemetrySDKName(val string) attribute.KeyValue { + return TelemetrySDKNameKey.String(val) +} + +// TelemetrySDKVersion returns an attribute KeyValue conforming to the +// "telemetry.sdk.version" semantic conventions. It represents the version +// string of the telemetry SDK. +func TelemetrySDKVersion(val string) attribute.KeyValue { + return TelemetrySDKVersionKey.String(val) +} + +// TelemetryDistroName returns an attribute KeyValue conforming to the +// "telemetry.distro.name" semantic conventions. It represents the name of the +// auto instrumentation agent or distribution, if used. +func TelemetryDistroName(val string) attribute.KeyValue { + return TelemetryDistroNameKey.String(val) +} + +// TelemetryDistroVersion returns an attribute KeyValue conforming to the +// "telemetry.distro.version" semantic conventions. It represents the version +// string of the auto instrumentation agent or distribution, if used. +func TelemetryDistroVersion(val string) attribute.KeyValue { + return TelemetryDistroVersionKey.String(val) +} + +// These attributes may be used for any operation to store information about a +// thread that started a span. +const ( + // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic + // conventions. It represents the current "managed" thread ID (as opposed + // to OS thread ID). + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 42 + ThreadIDKey = attribute.Key("thread.id") + + // ThreadNameKey is the attribute Key conforming to the "thread.name" + // semantic conventions. It represents the current thread name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'main' + ThreadNameKey = attribute.Key("thread.name") +) + +// ThreadID returns an attribute KeyValue conforming to the "thread.id" +// semantic conventions. It represents the current "managed" thread ID (as +// opposed to OS thread ID). +func ThreadID(val int) attribute.KeyValue { + return ThreadIDKey.Int(val) +} + +// ThreadName returns an attribute KeyValue conforming to the "thread.name" +// semantic conventions. It represents the current thread name. +func ThreadName(val string) attribute.KeyValue { + return ThreadNameKey.String(val) +} + +// Semantic convention attributes in the TLS namespace. +const ( + // TLSCipherKey is the attribute Key conforming to the "tls.cipher" + // semantic conventions. It represents the string indicating the + // [cipher](https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5) + // used during the current connection. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'TLS_RSA_WITH_3DES_EDE_CBC_SHA', + // 'TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256' + // Note: The values allowed for `tls.cipher` MUST be one of the + // `Descriptions` of the [registered TLS Cipher + // Suits](https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4). + TLSCipherKey = attribute.Key("tls.cipher") + + // TLSClientCertificateKey is the attribute Key conforming to the + // "tls.client.certificate" semantic conventions. It represents the + // pEM-encoded stand-alone certificate offered by the client. This is + // usually mutually-exclusive of `client.certificate_chain` since this + // value also exists in that list. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MII...' + TLSClientCertificateKey = attribute.Key("tls.client.certificate") + + // TLSClientCertificateChainKey is the attribute Key conforming to the + // "tls.client.certificate_chain" semantic conventions. It represents the + // array of PEM-encoded certificates that make up the certificate chain + // offered by the client. This is usually mutually-exclusive of + // `client.certificate` since that value should be the first certificate in + // the chain. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MII...', 'MI...' + TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain") + + // TLSClientHashMd5Key is the attribute Key conforming to the + // "tls.client.hash.md5" semantic conventions. It represents the + // certificate fingerprint using the MD5 digest of DER-encoded version of + // certificate offered by the client. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC' + TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5") + + // TLSClientHashSha1Key is the attribute Key conforming to the + // "tls.client.hash.sha1" semantic conventions. It represents the + // certificate fingerprint using the SHA1 digest of DER-encoded version of + // certificate offered by the client. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '9E393D93138888D288266C2D915214D1D1CCEB2A' + TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1") + + // TLSClientHashSha256Key is the attribute Key conforming to the + // "tls.client.hash.sha256" semantic conventions. It represents the + // certificate fingerprint using the SHA256 digest of DER-encoded version + // of certificate offered by the client. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // '0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0' + TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256") + + // TLSClientIssuerKey is the attribute Key conforming to the + // "tls.client.issuer" semantic conventions. It represents the + // distinguished name of + // [subject](https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6) + // of the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'CN=Example Root CA, OU=Infrastructure Team, DC=example, + // DC=com' + TLSClientIssuerKey = attribute.Key("tls.client.issuer") + + // TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3" + // semantic conventions. It represents a hash that identifies clients based + // on how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'd4e5b18d6b55c71272893221c96ba240' + TLSClientJa3Key = attribute.Key("tls.client.ja3") + + // TLSClientNotAfterKey is the attribute Key conforming to the + // "tls.client.not_after" semantic conventions. It represents the date/Time + // indicating when client certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2021-01-01T00:00:00.000Z' + TLSClientNotAfterKey = attribute.Key("tls.client.not_after") + + // TLSClientNotBeforeKey is the attribute Key conforming to the + // "tls.client.not_before" semantic conventions. It represents the + // date/Time indicating when client certificate is first considered valid. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1970-01-01T00:00:00.000Z' + TLSClientNotBeforeKey = attribute.Key("tls.client.not_before") + + // TLSClientServerNameKey is the attribute Key conforming to the + // "tls.client.server_name" semantic conventions. It represents the also + // called an SNI, this tells the server which hostname to which the client + // is attempting to connect to. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'opentelemetry.io' + TLSClientServerNameKey = attribute.Key("tls.client.server_name") + + // TLSClientSubjectKey is the attribute Key conforming to the + // "tls.client.subject" semantic conventions. It represents the + // distinguished name of subject of the x.509 certificate presented by the + // client. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'CN=myclient, OU=Documentation Team, DC=example, DC=com' + TLSClientSubjectKey = attribute.Key("tls.client.subject") + + // TLSClientSupportedCiphersKey is the attribute Key conforming to the + // "tls.client.supported_ciphers" semantic conventions. It represents the + // array of ciphers offered by the client during the client hello. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: '"TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384", + // "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384", "..."' + TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers") + + // TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic + // conventions. It represents the string indicating the curve used for the + // given cipher, when applicable + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'secp256r1' + TLSCurveKey = attribute.Key("tls.curve") + + // TLSEstablishedKey is the attribute Key conforming to the + // "tls.established" semantic conventions. It represents the boolean flag + // indicating if the TLS negotiation was successful and transitioned to an + // encrypted tunnel. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + // Examples: True + TLSEstablishedKey = attribute.Key("tls.established") + + // TLSNextProtocolKey is the attribute Key conforming to the + // "tls.next_protocol" semantic conventions. It represents the string + // indicating the protocol being tunneled. Per the values in the [IANA + // registry](https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids), + // this string should be lower case. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'http/1.1' + TLSNextProtocolKey = attribute.Key("tls.next_protocol") + + // TLSProtocolNameKey is the attribute Key conforming to the + // "tls.protocol.name" semantic conventions. It represents the normalized + // lowercase protocol name parsed from original string of the negotiated + // [SSL/TLS protocol + // version](https://www.openssl.org/docs/man1.1.1/man3/SSL_get_version.html#RETURN-VALUES) + // + // Type: Enum + // RequirementLevel: Optional + // Stability: experimental + TLSProtocolNameKey = attribute.Key("tls.protocol.name") + + // TLSProtocolVersionKey is the attribute Key conforming to the + // "tls.protocol.version" semantic conventions. It represents the numeric + // part of the version parsed from the original string of the negotiated + // [SSL/TLS protocol + // version](https://www.openssl.org/docs/man1.1.1/man3/SSL_get_version.html#RETURN-VALUES) + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1.2', '3' + TLSProtocolVersionKey = attribute.Key("tls.protocol.version") + + // TLSResumedKey is the attribute Key conforming to the "tls.resumed" + // semantic conventions. It represents the boolean flag indicating if this + // TLS connection was resumed from an existing TLS negotiation. + // + // Type: boolean + // RequirementLevel: Optional + // Stability: experimental + // Examples: True + TLSResumedKey = attribute.Key("tls.resumed") + + // TLSServerCertificateKey is the attribute Key conforming to the + // "tls.server.certificate" semantic conventions. It represents the + // pEM-encoded stand-alone certificate offered by the server. This is + // usually mutually-exclusive of `server.certificate_chain` since this + // value also exists in that list. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MII...' + TLSServerCertificateKey = attribute.Key("tls.server.certificate") + + // TLSServerCertificateChainKey is the attribute Key conforming to the + // "tls.server.certificate_chain" semantic conventions. It represents the + // array of PEM-encoded certificates that make up the certificate chain + // offered by the server. This is usually mutually-exclusive of + // `server.certificate` since that value should be the first certificate in + // the chain. + // + // Type: string[] + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'MII...', 'MI...' + TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain") + + // TLSServerHashMd5Key is the attribute Key conforming to the + // "tls.server.hash.md5" semantic conventions. It represents the + // certificate fingerprint using the MD5 digest of DER-encoded version of + // certificate offered by the server. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC' + TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5") + + // TLSServerHashSha1Key is the attribute Key conforming to the + // "tls.server.hash.sha1" semantic conventions. It represents the + // certificate fingerprint using the SHA1 digest of DER-encoded version of + // certificate offered by the server. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '9E393D93138888D288266C2D915214D1D1CCEB2A' + TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1") + + // TLSServerHashSha256Key is the attribute Key conforming to the + // "tls.server.hash.sha256" semantic conventions. It represents the + // certificate fingerprint using the SHA256 digest of DER-encoded version + // of certificate offered by the server. For consistency with other hash + // values, this value should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: + // '0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0' + TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256") + + // TLSServerIssuerKey is the attribute Key conforming to the + // "tls.server.issuer" semantic conventions. It represents the + // distinguished name of + // [subject](https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6) + // of the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'CN=Example Root CA, OU=Infrastructure Team, DC=example, + // DC=com' + TLSServerIssuerKey = attribute.Key("tls.server.issuer") + + // TLSServerJa3sKey is the attribute Key conforming to the + // "tls.server.ja3s" semantic conventions. It represents a hash that + // identifies servers based on how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'd4e5b18d6b55c71272893221c96ba240' + TLSServerJa3sKey = attribute.Key("tls.server.ja3s") + + // TLSServerNotAfterKey is the attribute Key conforming to the + // "tls.server.not_after" semantic conventions. It represents the date/Time + // indicating when server certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '2021-01-01T00:00:00.000Z' + TLSServerNotAfterKey = attribute.Key("tls.server.not_after") + + // TLSServerNotBeforeKey is the attribute Key conforming to the + // "tls.server.not_before" semantic conventions. It represents the + // date/Time indicating when server certificate is first considered valid. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '1970-01-01T00:00:00.000Z' + TLSServerNotBeforeKey = attribute.Key("tls.server.not_before") + + // TLSServerSubjectKey is the attribute Key conforming to the + // "tls.server.subject" semantic conventions. It represents the + // distinguished name of subject of the x.509 certificate presented by the + // server. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'CN=myserver, OU=Documentation Team, DC=example, DC=com' + TLSServerSubjectKey = attribute.Key("tls.server.subject") +) + +var ( + // ssl + TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl") + // tls + TLSProtocolNameTLS = TLSProtocolNameKey.String("tls") +) + +// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher" +// semantic conventions. It represents the string indicating the +// [cipher](https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5) used +// during the current connection. +func TLSCipher(val string) attribute.KeyValue { + return TLSCipherKey.String(val) +} + +// TLSClientCertificate returns an attribute KeyValue conforming to the +// "tls.client.certificate" semantic conventions. It represents the pEM-encoded +// stand-alone certificate offered by the client. This is usually +// mutually-exclusive of `client.certificate_chain` since this value also +// exists in that list. +func TLSClientCertificate(val string) attribute.KeyValue { + return TLSClientCertificateKey.String(val) +} + +// TLSClientCertificateChain returns an attribute KeyValue conforming to the +// "tls.client.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by +// the client. This is usually mutually-exclusive of `client.certificate` since +// that value should be the first certificate in the chain. +func TLSClientCertificateChain(val ...string) attribute.KeyValue { + return TLSClientCertificateChainKey.StringSlice(val) +} + +// TLSClientHashMd5 returns an attribute KeyValue conforming to the +// "tls.client.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashMd5(val string) attribute.KeyValue { + return TLSClientHashMd5Key.String(val) +} + +// TLSClientHashSha1 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha1(val string) attribute.KeyValue { + return TLSClientHashSha1Key.String(val) +} + +// TLSClientHashSha256 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha256(val string) attribute.KeyValue { + return TLSClientHashSha256Key.String(val) +} + +// TLSClientIssuer returns an attribute KeyValue conforming to the +// "tls.client.issuer" semantic conventions. It represents the distinguished +// name of +// [subject](https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6) of +// the issuer of the x.509 certificate presented by the client. +func TLSClientIssuer(val string) attribute.KeyValue { + return TLSClientIssuerKey.String(val) +} + +// TLSClientJa3 returns an attribute KeyValue conforming to the +// "tls.client.ja3" semantic conventions. It represents a hash that identifies +// clients based on how they perform an SSL/TLS handshake. +func TLSClientJa3(val string) attribute.KeyValue { + return TLSClientJa3Key.String(val) +} + +// TLSClientNotAfter returns an attribute KeyValue conforming to the +// "tls.client.not_after" semantic conventions. It represents the date/Time +// indicating when client certificate is no longer considered valid. +func TLSClientNotAfter(val string) attribute.KeyValue { + return TLSClientNotAfterKey.String(val) +} + +// TLSClientNotBefore returns an attribute KeyValue conforming to the +// "tls.client.not_before" semantic conventions. It represents the date/Time +// indicating when client certificate is first considered valid. +func TLSClientNotBefore(val string) attribute.KeyValue { + return TLSClientNotBeforeKey.String(val) +} + +// TLSClientServerName returns an attribute KeyValue conforming to the +// "tls.client.server_name" semantic conventions. It represents the also called +// an SNI, this tells the server which hostname to which the client is +// attempting to connect to. +func TLSClientServerName(val string) attribute.KeyValue { + return TLSClientServerNameKey.String(val) +} + +// TLSClientSubject returns an attribute KeyValue conforming to the +// "tls.client.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the client. +func TLSClientSubject(val string) attribute.KeyValue { + return TLSClientSubjectKey.String(val) +} + +// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the +// "tls.client.supported_ciphers" semantic conventions. It represents the array +// of ciphers offered by the client during the client hello. +func TLSClientSupportedCiphers(val ...string) attribute.KeyValue { + return TLSClientSupportedCiphersKey.StringSlice(val) +} + +// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" +// semantic conventions. It represents the string indicating the curve used for +// the given cipher, when applicable +func TLSCurve(val string) attribute.KeyValue { + return TLSCurveKey.String(val) +} + +// TLSEstablished returns an attribute KeyValue conforming to the +// "tls.established" semantic conventions. It represents the boolean flag +// indicating if the TLS negotiation was successful and transitioned to an +// encrypted tunnel. +func TLSEstablished(val bool) attribute.KeyValue { + return TLSEstablishedKey.Bool(val) +} + +// TLSNextProtocol returns an attribute KeyValue conforming to the +// "tls.next_protocol" semantic conventions. It represents the string +// indicating the protocol being tunneled. Per the values in the [IANA +// registry](https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids), +// this string should be lower case. +func TLSNextProtocol(val string) attribute.KeyValue { + return TLSNextProtocolKey.String(val) +} + +// TLSProtocolVersion returns an attribute KeyValue conforming to the +// "tls.protocol.version" semantic conventions. It represents the numeric part +// of the version parsed from the original string of the negotiated [SSL/TLS +// protocol +// version](https://www.openssl.org/docs/man1.1.1/man3/SSL_get_version.html#RETURN-VALUES) +func TLSProtocolVersion(val string) attribute.KeyValue { + return TLSProtocolVersionKey.String(val) +} + +// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed" +// semantic conventions. It represents the boolean flag indicating if this TLS +// connection was resumed from an existing TLS negotiation. +func TLSResumed(val bool) attribute.KeyValue { + return TLSResumedKey.Bool(val) +} + +// TLSServerCertificate returns an attribute KeyValue conforming to the +// "tls.server.certificate" semantic conventions. It represents the pEM-encoded +// stand-alone certificate offered by the server. This is usually +// mutually-exclusive of `server.certificate_chain` since this value also +// exists in that list. +func TLSServerCertificate(val string) attribute.KeyValue { + return TLSServerCertificateKey.String(val) +} + +// TLSServerCertificateChain returns an attribute KeyValue conforming to the +// "tls.server.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by +// the server. This is usually mutually-exclusive of `server.certificate` since +// that value should be the first certificate in the chain. +func TLSServerCertificateChain(val ...string) attribute.KeyValue { + return TLSServerCertificateChainKey.StringSlice(val) +} + +// TLSServerHashMd5 returns an attribute KeyValue conforming to the +// "tls.server.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashMd5(val string) attribute.KeyValue { + return TLSServerHashMd5Key.String(val) +} + +// TLSServerHashSha1 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha1(val string) attribute.KeyValue { + return TLSServerHashSha1Key.String(val) +} + +// TLSServerHashSha256 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha256(val string) attribute.KeyValue { + return TLSServerHashSha256Key.String(val) +} + +// TLSServerIssuer returns an attribute KeyValue conforming to the +// "tls.server.issuer" semantic conventions. It represents the distinguished +// name of +// [subject](https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6) of +// the issuer of the x.509 certificate presented by the client. +func TLSServerIssuer(val string) attribute.KeyValue { + return TLSServerIssuerKey.String(val) +} + +// TLSServerJa3s returns an attribute KeyValue conforming to the +// "tls.server.ja3s" semantic conventions. It represents a hash that identifies +// servers based on how they perform an SSL/TLS handshake. +func TLSServerJa3s(val string) attribute.KeyValue { + return TLSServerJa3sKey.String(val) +} + +// TLSServerNotAfter returns an attribute KeyValue conforming to the +// "tls.server.not_after" semantic conventions. It represents the date/Time +// indicating when server certificate is no longer considered valid. +func TLSServerNotAfter(val string) attribute.KeyValue { + return TLSServerNotAfterKey.String(val) +} + +// TLSServerNotBefore returns an attribute KeyValue conforming to the +// "tls.server.not_before" semantic conventions. It represents the date/Time +// indicating when server certificate is first considered valid. +func TLSServerNotBefore(val string) attribute.KeyValue { + return TLSServerNotBeforeKey.String(val) +} + +// TLSServerSubject returns an attribute KeyValue conforming to the +// "tls.server.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the server. +func TLSServerSubject(val string) attribute.KeyValue { + return TLSServerSubjectKey.String(val) +} + +// Attributes describing URL. +const ( + // URLDomainKey is the attribute Key conforming to the "url.domain" + // semantic conventions. It represents the domain extracted from the + // `url.full`, such as "opentelemetry.io". + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'www.foo.bar', 'opentelemetry.io', '3.12.167.2', + // '[1080:0:0:0:8:800:200C:417A]' + // Note: In some cases a URL may refer to an IP and/or port directly, + // without a domain name. In this case, the IP address would go to the + // domain field. If the URL contains a [literal IPv6 + // address](https://www.rfc-editor.org/rfc/rfc2732#section-2) enclosed by + // `[` and `]`, the `[` and `]` characters should also be captured in the + // domain field. + URLDomainKey = attribute.Key("url.domain") + + // URLExtensionKey is the attribute Key conforming to the "url.extension" + // semantic conventions. It represents the file extension extracted from + // the `url.full`, excluding the leading dot. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'png', 'gz' + // Note: The file extension is only set if it exists, as not every url has + // a file extension. When the file name has multiple extensions + // `example.tar.gz`, only the last one should be captured `gz`, not + // `tar.gz`. + URLExtensionKey = attribute.Key("url.extension") + + // URLFragmentKey is the attribute Key conforming to the "url.fragment" + // semantic conventions. It represents the [URI + // fragment](https://www.rfc-editor.org/rfc/rfc3986#section-3.5) component + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'SemConv' + URLFragmentKey = attribute.Key("url.fragment") + + // URLFullKey is the attribute Key conforming to the "url.full" semantic + // conventions. It represents the absolute URL describing a network + // resource according to [RFC3986](https://www.rfc-editor.org/rfc/rfc3986) + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'https://www.foo.bar/search?q=OpenTelemetry#SemConv', + // '//localhost' + // Note: For network calls, URL usually has + // `scheme://host[:port][path][?query][#fragment]` format, where the + // fragment is not transmitted over HTTP, but if it is known, it SHOULD be + // included nevertheless. + // `url.full` MUST NOT contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. In such case username and + // password SHOULD be redacted and attribute's value SHOULD be + // `https://REDACTED:REDACTED@www.example.com/`. + // `url.full` SHOULD capture the absolute URL when it is available (or can + // be reconstructed). Sensitive content provided in `url.full` SHOULD be + // scrubbed when instrumentations can identify it. + URLFullKey = attribute.Key("url.full") + + // URLOriginalKey is the attribute Key conforming to the "url.original" + // semantic conventions. It represents the unmodified original URL as seen + // in the event source. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'https://www.foo.bar/search?q=OpenTelemetry#SemConv', + // 'search?q=OpenTelemetry' + // Note: In network monitoring, the observed URL may be a full URL, whereas + // in access logs, the URL is often just represented as a path. This field + // is meant to represent the URL as it was observed, complete or not. + // `url.original` might contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. In such case password and + // username SHOULD NOT be redacted and attribute's value SHOULD remain the + // same. + URLOriginalKey = attribute.Key("url.original") + + // URLPathKey is the attribute Key conforming to the "url.path" semantic + // conventions. It represents the [URI + // path](https://www.rfc-editor.org/rfc/rfc3986#section-3.3) component + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: '/search' + // Note: Sensitive content provided in `url.path` SHOULD be scrubbed when + // instrumentations can identify it. + URLPathKey = attribute.Key("url.path") + + // URLPortKey is the attribute Key conforming to the "url.port" semantic + // conventions. It represents the port extracted from the `url.full` + // + // Type: int + // RequirementLevel: Optional + // Stability: experimental + // Examples: 443 + URLPortKey = attribute.Key("url.port") + + // URLQueryKey is the attribute Key conforming to the "url.query" semantic + // conventions. It represents the [URI + // query](https://www.rfc-editor.org/rfc/rfc3986#section-3.4) component + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'q=OpenTelemetry' + // Note: Sensitive content provided in `url.query` SHOULD be scrubbed when + // instrumentations can identify it. + URLQueryKey = attribute.Key("url.query") + + // URLRegisteredDomainKey is the attribute Key conforming to the + // "url.registered_domain" semantic conventions. It represents the highest + // registered url domain, stripped of the subdomain. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'example.com', 'foo.co.uk' + // Note: This value can be determined precisely with the [public suffix + // list](http://publicsuffix.org). For example, the registered domain for + // `foo.example.com` is `example.com`. Trying to approximate this by simply + // taking the last two labels will not work well for TLDs such as `co.uk`. + URLRegisteredDomainKey = attribute.Key("url.registered_domain") + + // URLSchemeKey is the attribute Key conforming to the "url.scheme" + // semantic conventions. It represents the [URI + // scheme](https://www.rfc-editor.org/rfc/rfc3986#section-3.1) component + // identifying the used protocol. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'https', 'ftp', 'telnet' + URLSchemeKey = attribute.Key("url.scheme") + + // URLSubdomainKey is the attribute Key conforming to the "url.subdomain" + // semantic conventions. It represents the subdomain portion of a fully + // qualified domain name includes all of the names except the host name + // under the registered_domain. In a partially qualified domain, or if the + // qualification level of the full name cannot be determined, subdomain + // contains all of the names below the registered domain. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'east', 'sub2.sub1' + // Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If + // the domain has multiple levels of subdomain, such as + // `sub2.sub1.example.com`, the subdomain field should contain `sub2.sub1`, + // with no trailing period. + URLSubdomainKey = attribute.Key("url.subdomain") + + // URLTemplateKey is the attribute Key conforming to the "url.template" + // semantic conventions. It represents the low-cardinality template of an + // [absolute path + // reference](https://www.rfc-editor.org/rfc/rfc3986#section-4.2). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '/users/{id}', '/users/:id', '/users?id={id}' + URLTemplateKey = attribute.Key("url.template") + + // URLTopLevelDomainKey is the attribute Key conforming to the + // "url.top_level_domain" semantic conventions. It represents the effective + // top level domain (eTLD), also known as the domain suffix, is the last + // part of the domain name. For example, the top level domain for + // example.com is `com`. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'com', 'co.uk' + // Note: This value can be determined precisely with the [public suffix + // list](http://publicsuffix.org). + URLTopLevelDomainKey = attribute.Key("url.top_level_domain") +) + +// URLDomain returns an attribute KeyValue conforming to the "url.domain" +// semantic conventions. It represents the domain extracted from the +// `url.full`, such as "opentelemetry.io". +func URLDomain(val string) attribute.KeyValue { + return URLDomainKey.String(val) +} + +// URLExtension returns an attribute KeyValue conforming to the +// "url.extension" semantic conventions. It represents the file extension +// extracted from the `url.full`, excluding the leading dot. +func URLExtension(val string) attribute.KeyValue { + return URLExtensionKey.String(val) +} + +// URLFragment returns an attribute KeyValue conforming to the +// "url.fragment" semantic conventions. It represents the [URI +// fragment](https://www.rfc-editor.org/rfc/rfc3986#section-3.5) component +func URLFragment(val string) attribute.KeyValue { + return URLFragmentKey.String(val) +} + +// URLFull returns an attribute KeyValue conforming to the "url.full" +// semantic conventions. It represents the absolute URL describing a network +// resource according to [RFC3986](https://www.rfc-editor.org/rfc/rfc3986) +func URLFull(val string) attribute.KeyValue { + return URLFullKey.String(val) +} + +// URLOriginal returns an attribute KeyValue conforming to the +// "url.original" semantic conventions. It represents the unmodified original +// URL as seen in the event source. +func URLOriginal(val string) attribute.KeyValue { + return URLOriginalKey.String(val) +} + +// URLPath returns an attribute KeyValue conforming to the "url.path" +// semantic conventions. It represents the [URI +// path](https://www.rfc-editor.org/rfc/rfc3986#section-3.3) component +func URLPath(val string) attribute.KeyValue { + return URLPathKey.String(val) +} + +// URLPort returns an attribute KeyValue conforming to the "url.port" +// semantic conventions. It represents the port extracted from the `url.full` +func URLPort(val int) attribute.KeyValue { + return URLPortKey.Int(val) +} + +// URLQuery returns an attribute KeyValue conforming to the "url.query" +// semantic conventions. It represents the [URI +// query](https://www.rfc-editor.org/rfc/rfc3986#section-3.4) component +func URLQuery(val string) attribute.KeyValue { + return URLQueryKey.String(val) +} + +// URLRegisteredDomain returns an attribute KeyValue conforming to the +// "url.registered_domain" semantic conventions. It represents the highest +// registered url domain, stripped of the subdomain. +func URLRegisteredDomain(val string) attribute.KeyValue { + return URLRegisteredDomainKey.String(val) +} + +// URLScheme returns an attribute KeyValue conforming to the "url.scheme" +// semantic conventions. It represents the [URI +// scheme](https://www.rfc-editor.org/rfc/rfc3986#section-3.1) component +// identifying the used protocol. +func URLScheme(val string) attribute.KeyValue { + return URLSchemeKey.String(val) +} + +// URLSubdomain returns an attribute KeyValue conforming to the +// "url.subdomain" semantic conventions. It represents the subdomain portion of +// a fully qualified domain name includes all of the names except the host name +// under the registered_domain. In a partially qualified domain, or if the +// qualification level of the full name cannot be determined, subdomain +// contains all of the names below the registered domain. +func URLSubdomain(val string) attribute.KeyValue { + return URLSubdomainKey.String(val) +} + +// URLTemplate returns an attribute KeyValue conforming to the +// "url.template" semantic conventions. It represents the low-cardinality +// template of an [absolute path +// reference](https://www.rfc-editor.org/rfc/rfc3986#section-4.2). +func URLTemplate(val string) attribute.KeyValue { + return URLTemplateKey.String(val) +} + +// URLTopLevelDomain returns an attribute KeyValue conforming to the +// "url.top_level_domain" semantic conventions. It represents the effective top +// level domain (eTLD), also known as the domain suffix, is the last part of +// the domain name. For example, the top level domain for example.com is `com`. +func URLTopLevelDomain(val string) attribute.KeyValue { + return URLTopLevelDomainKey.String(val) +} + +// Describes user-agent attributes. +const ( + // UserAgentNameKey is the attribute Key conforming to the + // "user_agent.name" semantic conventions. It represents the name of the + // user-agent extracted from original. Usually refers to the browser's + // name. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'Safari', 'YourApp' + // Note: [Example](https://www.whatsmyua.info) of extracting browser's name + // from original string. In the case of using a user-agent for non-browser + // products, such as microservices with multiple names/versions inside the + // `user_agent.original`, the most significant name SHOULD be selected. In + // such a scenario it should align with `user_agent.version` + UserAgentNameKey = attribute.Key("user_agent.name") + + // UserAgentOriginalKey is the attribute Key conforming to the + // "user_agent.original" semantic conventions. It represents the value of + // the [HTTP + // User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) + // header sent by the client. + // + // Type: string + // RequirementLevel: Optional + // Stability: stable + // Examples: 'CERN-LineMode/2.15 libwww/2.17b3', 'Mozilla/5.0 (iPhone; CPU + // iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko) + // Version/14.1.2 Mobile/15E148 Safari/604.1', 'YourApp/1.0.0 + // grpc-java-okhttp/1.27.2' + UserAgentOriginalKey = attribute.Key("user_agent.original") + + // UserAgentVersionKey is the attribute Key conforming to the + // "user_agent.version" semantic conventions. It represents the version of + // the user-agent extracted from original. Usually refers to the browser's + // version + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '14.1.2', '1.0.0' + // Note: [Example](https://www.whatsmyua.info) of extracting browser's + // version from original string. In the case of using a user-agent for + // non-browser products, such as microservices with multiple names/versions + // inside the `user_agent.original`, the most significant version SHOULD be + // selected. In such a scenario it should align with `user_agent.name` + UserAgentVersionKey = attribute.Key("user_agent.version") +) + +// UserAgentName returns an attribute KeyValue conforming to the +// "user_agent.name" semantic conventions. It represents the name of the +// user-agent extracted from original. Usually refers to the browser's name. +func UserAgentName(val string) attribute.KeyValue { + return UserAgentNameKey.String(val) +} + +// UserAgentOriginal returns an attribute KeyValue conforming to the +// "user_agent.original" semantic conventions. It represents the value of the +// [HTTP +// User-Agent](https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent) +// header sent by the client. +func UserAgentOriginal(val string) attribute.KeyValue { + return UserAgentOriginalKey.String(val) +} + +// UserAgentVersion returns an attribute KeyValue conforming to the +// "user_agent.version" semantic conventions. It represents the version of the +// user-agent extracted from original. Usually refers to the browser's version +func UserAgentVersion(val string) attribute.KeyValue { + return UserAgentVersionKey.String(val) +} + +// The attributes used to describe the packaged software running the +// application code. +const ( + // WebEngineDescriptionKey is the attribute Key conforming to the + // "webengine.description" semantic conventions. It represents the + // additional description of the web engine (e.g. detailed version and + // edition information). + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - + // 2.2.2.Final' + WebEngineDescriptionKey = attribute.Key("webengine.description") + + // WebEngineNameKey is the attribute Key conforming to the "webengine.name" + // semantic conventions. It represents the name of the web engine. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: 'WildFly' + WebEngineNameKey = attribute.Key("webengine.name") + + // WebEngineVersionKey is the attribute Key conforming to the + // "webengine.version" semantic conventions. It represents the version of + // the web engine. + // + // Type: string + // RequirementLevel: Optional + // Stability: experimental + // Examples: '21.0.0' + WebEngineVersionKey = attribute.Key("webengine.version") +) + +// WebEngineDescription returns an attribute KeyValue conforming to the +// "webengine.description" semantic conventions. It represents the additional +// description of the web engine (e.g. detailed version and edition +// information). +func WebEngineDescription(val string) attribute.KeyValue { + return WebEngineDescriptionKey.String(val) +} + +// WebEngineName returns an attribute KeyValue conforming to the +// "webengine.name" semantic conventions. It represents the name of the web +// engine. +func WebEngineName(val string) attribute.KeyValue { + return WebEngineNameKey.String(val) +} + +// WebEngineVersion returns an attribute KeyValue conforming to the +// "webengine.version" semantic conventions. It represents the version of the +// web engine. +func WebEngineVersion(val string) attribute.KeyValue { + return WebEngineVersionKey.String(val) +} diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/doc.go b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/doc.go new file mode 100644 index 0000000000..d031bbea78 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/doc.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconv implements OpenTelemetry semantic conventions. +// +// OpenTelemetry semantic conventions are agreed standardized naming +// patterns for OpenTelemetry things. This package represents the v1.26.0 +// version of the OpenTelemetry semantic conventions. +package semconv // import "go.opentelemetry.io/otel/semconv/v1.26.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/exception.go b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/exception.go new file mode 100644 index 0000000000..bfaee0d56e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/exception.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.26.0" + +const ( + // ExceptionEventName is the name of the Span event representing an exception. + ExceptionEventName = "exception" +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/metric.go new file mode 100644 index 0000000000..fcdb9f4859 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/metric.go @@ -0,0 +1,1307 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.26.0" + +const ( + + // ContainerCPUTime is the metric conforming to the "container.cpu.time" + // semantic conventions. It represents the total CPU time consumed. + // Instrument: counter + // Unit: s + // Stability: Experimental + ContainerCPUTimeName = "container.cpu.time" + ContainerCPUTimeUnit = "s" + ContainerCPUTimeDescription = "Total CPU time consumed" + + // ContainerMemoryUsage is the metric conforming to the + // "container.memory.usage" semantic conventions. It represents the memory + // usage of the container. + // Instrument: counter + // Unit: By + // Stability: Experimental + ContainerMemoryUsageName = "container.memory.usage" + ContainerMemoryUsageUnit = "By" + ContainerMemoryUsageDescription = "Memory usage of the container." + + // ContainerDiskIo is the metric conforming to the "container.disk.io" semantic + // conventions. It represents the disk bytes for the container. + // Instrument: counter + // Unit: By + // Stability: Experimental + ContainerDiskIoName = "container.disk.io" + ContainerDiskIoUnit = "By" + ContainerDiskIoDescription = "Disk bytes for the container." + + // ContainerNetworkIo is the metric conforming to the "container.network.io" + // semantic conventions. It represents the network bytes for the container. + // Instrument: counter + // Unit: By + // Stability: Experimental + ContainerNetworkIoName = "container.network.io" + ContainerNetworkIoUnit = "By" + ContainerNetworkIoDescription = "Network bytes for the container." + + // DBClientOperationDuration is the metric conforming to the + // "db.client.operation.duration" semantic conventions. It represents the + // duration of database client operations. + // Instrument: histogram + // Unit: s + // Stability: Experimental + DBClientOperationDurationName = "db.client.operation.duration" + DBClientOperationDurationUnit = "s" + DBClientOperationDurationDescription = "Duration of database client operations." + + // DBClientConnectionCount is the metric conforming to the + // "db.client.connection.count" semantic conventions. It represents the number + // of connections that are currently in state described by the `state` + // attribute. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionCountName = "db.client.connection.count" + DBClientConnectionCountUnit = "{connection}" + DBClientConnectionCountDescription = "The number of connections that are currently in state described by the `state` attribute" + + // DBClientConnectionIdleMax is the metric conforming to the + // "db.client.connection.idle.max" semantic conventions. It represents the + // maximum number of idle open connections allowed. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionIdleMaxName = "db.client.connection.idle.max" + DBClientConnectionIdleMaxUnit = "{connection}" + DBClientConnectionIdleMaxDescription = "The maximum number of idle open connections allowed" + + // DBClientConnectionIdleMin is the metric conforming to the + // "db.client.connection.idle.min" semantic conventions. It represents the + // minimum number of idle open connections allowed. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionIdleMinName = "db.client.connection.idle.min" + DBClientConnectionIdleMinUnit = "{connection}" + DBClientConnectionIdleMinDescription = "The minimum number of idle open connections allowed" + + // DBClientConnectionMax is the metric conforming to the + // "db.client.connection.max" semantic conventions. It represents the maximum + // number of open connections allowed. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionMaxName = "db.client.connection.max" + DBClientConnectionMaxUnit = "{connection}" + DBClientConnectionMaxDescription = "The maximum number of open connections allowed" + + // DBClientConnectionPendingRequests is the metric conforming to the + // "db.client.connection.pending_requests" semantic conventions. It represents + // the number of pending requests for an open connection, cumulative for the + // entire pool. + // Instrument: updowncounter + // Unit: {request} + // Stability: Experimental + DBClientConnectionPendingRequestsName = "db.client.connection.pending_requests" + DBClientConnectionPendingRequestsUnit = "{request}" + DBClientConnectionPendingRequestsDescription = "The number of pending requests for an open connection, cumulative for the entire pool" + + // DBClientConnectionTimeouts is the metric conforming to the + // "db.client.connection.timeouts" semantic conventions. It represents the + // number of connection timeouts that have occurred trying to obtain a + // connection from the pool. + // Instrument: counter + // Unit: {timeout} + // Stability: Experimental + DBClientConnectionTimeoutsName = "db.client.connection.timeouts" + DBClientConnectionTimeoutsUnit = "{timeout}" + DBClientConnectionTimeoutsDescription = "The number of connection timeouts that have occurred trying to obtain a connection from the pool" + + // DBClientConnectionCreateTime is the metric conforming to the + // "db.client.connection.create_time" semantic conventions. It represents the + // time it took to create a new connection. + // Instrument: histogram + // Unit: s + // Stability: Experimental + DBClientConnectionCreateTimeName = "db.client.connection.create_time" + DBClientConnectionCreateTimeUnit = "s" + DBClientConnectionCreateTimeDescription = "The time it took to create a new connection" + + // DBClientConnectionWaitTime is the metric conforming to the + // "db.client.connection.wait_time" semantic conventions. It represents the + // time it took to obtain an open connection from the pool. + // Instrument: histogram + // Unit: s + // Stability: Experimental + DBClientConnectionWaitTimeName = "db.client.connection.wait_time" + DBClientConnectionWaitTimeUnit = "s" + DBClientConnectionWaitTimeDescription = "The time it took to obtain an open connection from the pool" + + // DBClientConnectionUseTime is the metric conforming to the + // "db.client.connection.use_time" semantic conventions. It represents the time + // between borrowing a connection and returning it to the pool. + // Instrument: histogram + // Unit: s + // Stability: Experimental + DBClientConnectionUseTimeName = "db.client.connection.use_time" + DBClientConnectionUseTimeUnit = "s" + DBClientConnectionUseTimeDescription = "The time between borrowing a connection and returning it to the pool" + + // DBClientConnectionsUsage is the metric conforming to the + // "db.client.connections.usage" semantic conventions. It represents the + // deprecated, use `db.client.connection.count` instead. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionsUsageName = "db.client.connections.usage" + DBClientConnectionsUsageUnit = "{connection}" + DBClientConnectionsUsageDescription = "Deprecated, use `db.client.connection.count` instead." + + // DBClientConnectionsIdleMax is the metric conforming to the + // "db.client.connections.idle.max" semantic conventions. It represents the + // deprecated, use `db.client.connection.idle.max` instead. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionsIdleMaxName = "db.client.connections.idle.max" + DBClientConnectionsIdleMaxUnit = "{connection}" + DBClientConnectionsIdleMaxDescription = "Deprecated, use `db.client.connection.idle.max` instead." + + // DBClientConnectionsIdleMin is the metric conforming to the + // "db.client.connections.idle.min" semantic conventions. It represents the + // deprecated, use `db.client.connection.idle.min` instead. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionsIdleMinName = "db.client.connections.idle.min" + DBClientConnectionsIdleMinUnit = "{connection}" + DBClientConnectionsIdleMinDescription = "Deprecated, use `db.client.connection.idle.min` instead." + + // DBClientConnectionsMax is the metric conforming to the + // "db.client.connections.max" semantic conventions. It represents the + // deprecated, use `db.client.connection.max` instead. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + DBClientConnectionsMaxName = "db.client.connections.max" + DBClientConnectionsMaxUnit = "{connection}" + DBClientConnectionsMaxDescription = "Deprecated, use `db.client.connection.max` instead." + + // DBClientConnectionsPendingRequests is the metric conforming to the + // "db.client.connections.pending_requests" semantic conventions. It represents + // the deprecated, use `db.client.connection.pending_requests` instead. + // Instrument: updowncounter + // Unit: {request} + // Stability: Experimental + DBClientConnectionsPendingRequestsName = "db.client.connections.pending_requests" + DBClientConnectionsPendingRequestsUnit = "{request}" + DBClientConnectionsPendingRequestsDescription = "Deprecated, use `db.client.connection.pending_requests` instead." + + // DBClientConnectionsTimeouts is the metric conforming to the + // "db.client.connections.timeouts" semantic conventions. It represents the + // deprecated, use `db.client.connection.timeouts` instead. + // Instrument: counter + // Unit: {timeout} + // Stability: Experimental + DBClientConnectionsTimeoutsName = "db.client.connections.timeouts" + DBClientConnectionsTimeoutsUnit = "{timeout}" + DBClientConnectionsTimeoutsDescription = "Deprecated, use `db.client.connection.timeouts` instead." + + // DBClientConnectionsCreateTime is the metric conforming to the + // "db.client.connections.create_time" semantic conventions. It represents the + // deprecated, use `db.client.connection.create_time` instead. Note: the unit + // also changed from `ms` to `s`. + // Instrument: histogram + // Unit: ms + // Stability: Experimental + DBClientConnectionsCreateTimeName = "db.client.connections.create_time" + DBClientConnectionsCreateTimeUnit = "ms" + DBClientConnectionsCreateTimeDescription = "Deprecated, use `db.client.connection.create_time` instead. Note: the unit also changed from `ms` to `s`." + + // DBClientConnectionsWaitTime is the metric conforming to the + // "db.client.connections.wait_time" semantic conventions. It represents the + // deprecated, use `db.client.connection.wait_time` instead. Note: the unit + // also changed from `ms` to `s`. + // Instrument: histogram + // Unit: ms + // Stability: Experimental + DBClientConnectionsWaitTimeName = "db.client.connections.wait_time" + DBClientConnectionsWaitTimeUnit = "ms" + DBClientConnectionsWaitTimeDescription = "Deprecated, use `db.client.connection.wait_time` instead. Note: the unit also changed from `ms` to `s`." + + // DBClientConnectionsUseTime is the metric conforming to the + // "db.client.connections.use_time" semantic conventions. It represents the + // deprecated, use `db.client.connection.use_time` instead. Note: the unit also + // changed from `ms` to `s`. + // Instrument: histogram + // Unit: ms + // Stability: Experimental + DBClientConnectionsUseTimeName = "db.client.connections.use_time" + DBClientConnectionsUseTimeUnit = "ms" + DBClientConnectionsUseTimeDescription = "Deprecated, use `db.client.connection.use_time` instead. Note: the unit also changed from `ms` to `s`." + + // DNSLookupDuration is the metric conforming to the "dns.lookup.duration" + // semantic conventions. It represents the measures the time taken to perform a + // DNS lookup. + // Instrument: histogram + // Unit: s + // Stability: Experimental + DNSLookupDurationName = "dns.lookup.duration" + DNSLookupDurationUnit = "s" + DNSLookupDurationDescription = "Measures the time taken to perform a DNS lookup." + + // AspnetcoreRoutingMatchAttempts is the metric conforming to the + // "aspnetcore.routing.match_attempts" semantic conventions. It represents the + // number of requests that were attempted to be matched to an endpoint. + // Instrument: counter + // Unit: {match_attempt} + // Stability: Stable + AspnetcoreRoutingMatchAttemptsName = "aspnetcore.routing.match_attempts" + AspnetcoreRoutingMatchAttemptsUnit = "{match_attempt}" + AspnetcoreRoutingMatchAttemptsDescription = "Number of requests that were attempted to be matched to an endpoint." + + // AspnetcoreDiagnosticsExceptions is the metric conforming to the + // "aspnetcore.diagnostics.exceptions" semantic conventions. It represents the + // number of exceptions caught by exception handling middleware. + // Instrument: counter + // Unit: {exception} + // Stability: Stable + AspnetcoreDiagnosticsExceptionsName = "aspnetcore.diagnostics.exceptions" + AspnetcoreDiagnosticsExceptionsUnit = "{exception}" + AspnetcoreDiagnosticsExceptionsDescription = "Number of exceptions caught by exception handling middleware." + + // AspnetcoreRateLimitingActiveRequestLeases is the metric conforming to the + // "aspnetcore.rate_limiting.active_request_leases" semantic conventions. It + // represents the number of requests that are currently active on the server + // that hold a rate limiting lease. + // Instrument: updowncounter + // Unit: {request} + // Stability: Stable + AspnetcoreRateLimitingActiveRequestLeasesName = "aspnetcore.rate_limiting.active_request_leases" + AspnetcoreRateLimitingActiveRequestLeasesUnit = "{request}" + AspnetcoreRateLimitingActiveRequestLeasesDescription = "Number of requests that are currently active on the server that hold a rate limiting lease." + + // AspnetcoreRateLimitingRequestLeaseDuration is the metric conforming to the + // "aspnetcore.rate_limiting.request_lease.duration" semantic conventions. It + // represents the duration of rate limiting lease held by requests on the + // server. + // Instrument: histogram + // Unit: s + // Stability: Stable + AspnetcoreRateLimitingRequestLeaseDurationName = "aspnetcore.rate_limiting.request_lease.duration" + AspnetcoreRateLimitingRequestLeaseDurationUnit = "s" + AspnetcoreRateLimitingRequestLeaseDurationDescription = "The duration of rate limiting lease held by requests on the server." + + // AspnetcoreRateLimitingRequestTimeInQueue is the metric conforming to the + // "aspnetcore.rate_limiting.request.time_in_queue" semantic conventions. It + // represents the time the request spent in a queue waiting to acquire a rate + // limiting lease. + // Instrument: histogram + // Unit: s + // Stability: Stable + AspnetcoreRateLimitingRequestTimeInQueueName = "aspnetcore.rate_limiting.request.time_in_queue" + AspnetcoreRateLimitingRequestTimeInQueueUnit = "s" + AspnetcoreRateLimitingRequestTimeInQueueDescription = "The time the request spent in a queue waiting to acquire a rate limiting lease." + + // AspnetcoreRateLimitingQueuedRequests is the metric conforming to the + // "aspnetcore.rate_limiting.queued_requests" semantic conventions. It + // represents the number of requests that are currently queued, waiting to + // acquire a rate limiting lease. + // Instrument: updowncounter + // Unit: {request} + // Stability: Stable + AspnetcoreRateLimitingQueuedRequestsName = "aspnetcore.rate_limiting.queued_requests" + AspnetcoreRateLimitingQueuedRequestsUnit = "{request}" + AspnetcoreRateLimitingQueuedRequestsDescription = "Number of requests that are currently queued, waiting to acquire a rate limiting lease." + + // AspnetcoreRateLimitingRequests is the metric conforming to the + // "aspnetcore.rate_limiting.requests" semantic conventions. It represents the + // number of requests that tried to acquire a rate limiting lease. + // Instrument: counter + // Unit: {request} + // Stability: Stable + AspnetcoreRateLimitingRequestsName = "aspnetcore.rate_limiting.requests" + AspnetcoreRateLimitingRequestsUnit = "{request}" + AspnetcoreRateLimitingRequestsDescription = "Number of requests that tried to acquire a rate limiting lease." + + // KestrelActiveConnections is the metric conforming to the + // "kestrel.active_connections" semantic conventions. It represents the number + // of connections that are currently active on the server. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Stable + KestrelActiveConnectionsName = "kestrel.active_connections" + KestrelActiveConnectionsUnit = "{connection}" + KestrelActiveConnectionsDescription = "Number of connections that are currently active on the server." + + // KestrelConnectionDuration is the metric conforming to the + // "kestrel.connection.duration" semantic conventions. It represents the + // duration of connections on the server. + // Instrument: histogram + // Unit: s + // Stability: Stable + KestrelConnectionDurationName = "kestrel.connection.duration" + KestrelConnectionDurationUnit = "s" + KestrelConnectionDurationDescription = "The duration of connections on the server." + + // KestrelRejectedConnections is the metric conforming to the + // "kestrel.rejected_connections" semantic conventions. It represents the + // number of connections rejected by the server. + // Instrument: counter + // Unit: {connection} + // Stability: Stable + KestrelRejectedConnectionsName = "kestrel.rejected_connections" + KestrelRejectedConnectionsUnit = "{connection}" + KestrelRejectedConnectionsDescription = "Number of connections rejected by the server." + + // KestrelQueuedConnections is the metric conforming to the + // "kestrel.queued_connections" semantic conventions. It represents the number + // of connections that are currently queued and are waiting to start. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Stable + KestrelQueuedConnectionsName = "kestrel.queued_connections" + KestrelQueuedConnectionsUnit = "{connection}" + KestrelQueuedConnectionsDescription = "Number of connections that are currently queued and are waiting to start." + + // KestrelQueuedRequests is the metric conforming to the + // "kestrel.queued_requests" semantic conventions. It represents the number of + // HTTP requests on multiplexed connections (HTTP/2 and HTTP/3) that are + // currently queued and are waiting to start. + // Instrument: updowncounter + // Unit: {request} + // Stability: Stable + KestrelQueuedRequestsName = "kestrel.queued_requests" + KestrelQueuedRequestsUnit = "{request}" + KestrelQueuedRequestsDescription = "Number of HTTP requests on multiplexed connections (HTTP/2 and HTTP/3) that are currently queued and are waiting to start." + + // KestrelUpgradedConnections is the metric conforming to the + // "kestrel.upgraded_connections" semantic conventions. It represents the + // number of connections that are currently upgraded (WebSockets). . + // Instrument: updowncounter + // Unit: {connection} + // Stability: Stable + KestrelUpgradedConnectionsName = "kestrel.upgraded_connections" + KestrelUpgradedConnectionsUnit = "{connection}" + KestrelUpgradedConnectionsDescription = "Number of connections that are currently upgraded (WebSockets). ." + + // KestrelTLSHandshakeDuration is the metric conforming to the + // "kestrel.tls_handshake.duration" semantic conventions. It represents the + // duration of TLS handshakes on the server. + // Instrument: histogram + // Unit: s + // Stability: Stable + KestrelTLSHandshakeDurationName = "kestrel.tls_handshake.duration" + KestrelTLSHandshakeDurationUnit = "s" + KestrelTLSHandshakeDurationDescription = "The duration of TLS handshakes on the server." + + // KestrelActiveTLSHandshakes is the metric conforming to the + // "kestrel.active_tls_handshakes" semantic conventions. It represents the + // number of TLS handshakes that are currently in progress on the server. + // Instrument: updowncounter + // Unit: {handshake} + // Stability: Stable + KestrelActiveTLSHandshakesName = "kestrel.active_tls_handshakes" + KestrelActiveTLSHandshakesUnit = "{handshake}" + KestrelActiveTLSHandshakesDescription = "Number of TLS handshakes that are currently in progress on the server." + + // SignalrServerConnectionDuration is the metric conforming to the + // "signalr.server.connection.duration" semantic conventions. It represents the + // duration of connections on the server. + // Instrument: histogram + // Unit: s + // Stability: Stable + SignalrServerConnectionDurationName = "signalr.server.connection.duration" + SignalrServerConnectionDurationUnit = "s" + SignalrServerConnectionDurationDescription = "The duration of connections on the server." + + // SignalrServerActiveConnections is the metric conforming to the + // "signalr.server.active_connections" semantic conventions. It represents the + // number of connections that are currently active on the server. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Stable + SignalrServerActiveConnectionsName = "signalr.server.active_connections" + SignalrServerActiveConnectionsUnit = "{connection}" + SignalrServerActiveConnectionsDescription = "Number of connections that are currently active on the server." + + // FaaSInvokeDuration is the metric conforming to the "faas.invoke_duration" + // semantic conventions. It represents the measures the duration of the + // function's logic execution. + // Instrument: histogram + // Unit: s + // Stability: Experimental + FaaSInvokeDurationName = "faas.invoke_duration" + FaaSInvokeDurationUnit = "s" + FaaSInvokeDurationDescription = "Measures the duration of the function's logic execution" + + // FaaSInitDuration is the metric conforming to the "faas.init_duration" + // semantic conventions. It represents the measures the duration of the + // function's initialization, such as a cold start. + // Instrument: histogram + // Unit: s + // Stability: Experimental + FaaSInitDurationName = "faas.init_duration" + FaaSInitDurationUnit = "s" + FaaSInitDurationDescription = "Measures the duration of the function's initialization, such as a cold start" + + // FaaSColdstarts is the metric conforming to the "faas.coldstarts" semantic + // conventions. It represents the number of invocation cold starts. + // Instrument: counter + // Unit: {coldstart} + // Stability: Experimental + FaaSColdstartsName = "faas.coldstarts" + FaaSColdstartsUnit = "{coldstart}" + FaaSColdstartsDescription = "Number of invocation cold starts" + + // FaaSErrors is the metric conforming to the "faas.errors" semantic + // conventions. It represents the number of invocation errors. + // Instrument: counter + // Unit: {error} + // Stability: Experimental + FaaSErrorsName = "faas.errors" + FaaSErrorsUnit = "{error}" + FaaSErrorsDescription = "Number of invocation errors" + + // FaaSInvocations is the metric conforming to the "faas.invocations" semantic + // conventions. It represents the number of successful invocations. + // Instrument: counter + // Unit: {invocation} + // Stability: Experimental + FaaSInvocationsName = "faas.invocations" + FaaSInvocationsUnit = "{invocation}" + FaaSInvocationsDescription = "Number of successful invocations" + + // FaaSTimeouts is the metric conforming to the "faas.timeouts" semantic + // conventions. It represents the number of invocation timeouts. + // Instrument: counter + // Unit: {timeout} + // Stability: Experimental + FaaSTimeoutsName = "faas.timeouts" + FaaSTimeoutsUnit = "{timeout}" + FaaSTimeoutsDescription = "Number of invocation timeouts" + + // FaaSMemUsage is the metric conforming to the "faas.mem_usage" semantic + // conventions. It represents the distribution of max memory usage per + // invocation. + // Instrument: histogram + // Unit: By + // Stability: Experimental + FaaSMemUsageName = "faas.mem_usage" + FaaSMemUsageUnit = "By" + FaaSMemUsageDescription = "Distribution of max memory usage per invocation" + + // FaaSCPUUsage is the metric conforming to the "faas.cpu_usage" semantic + // conventions. It represents the distribution of CPU usage per invocation. + // Instrument: histogram + // Unit: s + // Stability: Experimental + FaaSCPUUsageName = "faas.cpu_usage" + FaaSCPUUsageUnit = "s" + FaaSCPUUsageDescription = "Distribution of CPU usage per invocation" + + // FaaSNetIo is the metric conforming to the "faas.net_io" semantic + // conventions. It represents the distribution of net I/O usage per invocation. + // Instrument: histogram + // Unit: By + // Stability: Experimental + FaaSNetIoName = "faas.net_io" + FaaSNetIoUnit = "By" + FaaSNetIoDescription = "Distribution of net I/O usage per invocation" + + // HTTPServerRequestDuration is the metric conforming to the + // "http.server.request.duration" semantic conventions. It represents the + // duration of HTTP server requests. + // Instrument: histogram + // Unit: s + // Stability: Stable + HTTPServerRequestDurationName = "http.server.request.duration" + HTTPServerRequestDurationUnit = "s" + HTTPServerRequestDurationDescription = "Duration of HTTP server requests." + + // HTTPServerActiveRequests is the metric conforming to the + // "http.server.active_requests" semantic conventions. It represents the number + // of active HTTP server requests. + // Instrument: updowncounter + // Unit: {request} + // Stability: Experimental + HTTPServerActiveRequestsName = "http.server.active_requests" + HTTPServerActiveRequestsUnit = "{request}" + HTTPServerActiveRequestsDescription = "Number of active HTTP server requests." + + // HTTPServerRequestBodySize is the metric conforming to the + // "http.server.request.body.size" semantic conventions. It represents the size + // of HTTP server request bodies. + // Instrument: histogram + // Unit: By + // Stability: Experimental + HTTPServerRequestBodySizeName = "http.server.request.body.size" + HTTPServerRequestBodySizeUnit = "By" + HTTPServerRequestBodySizeDescription = "Size of HTTP server request bodies." + + // HTTPServerResponseBodySize is the metric conforming to the + // "http.server.response.body.size" semantic conventions. It represents the + // size of HTTP server response bodies. + // Instrument: histogram + // Unit: By + // Stability: Experimental + HTTPServerResponseBodySizeName = "http.server.response.body.size" + HTTPServerResponseBodySizeUnit = "By" + HTTPServerResponseBodySizeDescription = "Size of HTTP server response bodies." + + // HTTPClientRequestDuration is the metric conforming to the + // "http.client.request.duration" semantic conventions. It represents the + // duration of HTTP client requests. + // Instrument: histogram + // Unit: s + // Stability: Stable + HTTPClientRequestDurationName = "http.client.request.duration" + HTTPClientRequestDurationUnit = "s" + HTTPClientRequestDurationDescription = "Duration of HTTP client requests." + + // HTTPClientRequestBodySize is the metric conforming to the + // "http.client.request.body.size" semantic conventions. It represents the size + // of HTTP client request bodies. + // Instrument: histogram + // Unit: By + // Stability: Experimental + HTTPClientRequestBodySizeName = "http.client.request.body.size" + HTTPClientRequestBodySizeUnit = "By" + HTTPClientRequestBodySizeDescription = "Size of HTTP client request bodies." + + // HTTPClientResponseBodySize is the metric conforming to the + // "http.client.response.body.size" semantic conventions. It represents the + // size of HTTP client response bodies. + // Instrument: histogram + // Unit: By + // Stability: Experimental + HTTPClientResponseBodySizeName = "http.client.response.body.size" + HTTPClientResponseBodySizeUnit = "By" + HTTPClientResponseBodySizeDescription = "Size of HTTP client response bodies." + + // HTTPClientOpenConnections is the metric conforming to the + // "http.client.open_connections" semantic conventions. It represents the + // number of outbound HTTP connections that are currently active or idle on the + // client. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + HTTPClientOpenConnectionsName = "http.client.open_connections" + HTTPClientOpenConnectionsUnit = "{connection}" + HTTPClientOpenConnectionsDescription = "Number of outbound HTTP connections that are currently active or idle on the client." + + // HTTPClientConnectionDuration is the metric conforming to the + // "http.client.connection.duration" semantic conventions. It represents the + // duration of the successfully established outbound HTTP connections. + // Instrument: histogram + // Unit: s + // Stability: Experimental + HTTPClientConnectionDurationName = "http.client.connection.duration" + HTTPClientConnectionDurationUnit = "s" + HTTPClientConnectionDurationDescription = "The duration of the successfully established outbound HTTP connections." + + // HTTPClientActiveRequests is the metric conforming to the + // "http.client.active_requests" semantic conventions. It represents the number + // of active HTTP requests. + // Instrument: updowncounter + // Unit: {request} + // Stability: Experimental + HTTPClientActiveRequestsName = "http.client.active_requests" + HTTPClientActiveRequestsUnit = "{request}" + HTTPClientActiveRequestsDescription = "Number of active HTTP requests." + + // JvmMemoryInit is the metric conforming to the "jvm.memory.init" semantic + // conventions. It represents the measure of initial memory requested. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + JvmMemoryInitName = "jvm.memory.init" + JvmMemoryInitUnit = "By" + JvmMemoryInitDescription = "Measure of initial memory requested." + + // JvmSystemCPUUtilization is the metric conforming to the + // "jvm.system.cpu.utilization" semantic conventions. It represents the recent + // CPU utilization for the whole system as reported by the JVM. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + JvmSystemCPUUtilizationName = "jvm.system.cpu.utilization" + JvmSystemCPUUtilizationUnit = "1" + JvmSystemCPUUtilizationDescription = "Recent CPU utilization for the whole system as reported by the JVM." + + // JvmSystemCPULoad1m is the metric conforming to the "jvm.system.cpu.load_1m" + // semantic conventions. It represents the average CPU load of the whole system + // for the last minute as reported by the JVM. + // Instrument: gauge + // Unit: {run_queue_item} + // Stability: Experimental + JvmSystemCPULoad1mName = "jvm.system.cpu.load_1m" + JvmSystemCPULoad1mUnit = "{run_queue_item}" + JvmSystemCPULoad1mDescription = "Average CPU load of the whole system for the last minute as reported by the JVM." + + // JvmBufferMemoryUsage is the metric conforming to the + // "jvm.buffer.memory.usage" semantic conventions. It represents the measure of + // memory used by buffers. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + JvmBufferMemoryUsageName = "jvm.buffer.memory.usage" + JvmBufferMemoryUsageUnit = "By" + JvmBufferMemoryUsageDescription = "Measure of memory used by buffers." + + // JvmBufferMemoryLimit is the metric conforming to the + // "jvm.buffer.memory.limit" semantic conventions. It represents the measure of + // total memory capacity of buffers. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + JvmBufferMemoryLimitName = "jvm.buffer.memory.limit" + JvmBufferMemoryLimitUnit = "By" + JvmBufferMemoryLimitDescription = "Measure of total memory capacity of buffers." + + // JvmBufferCount is the metric conforming to the "jvm.buffer.count" semantic + // conventions. It represents the number of buffers in the pool. + // Instrument: updowncounter + // Unit: {buffer} + // Stability: Experimental + JvmBufferCountName = "jvm.buffer.count" + JvmBufferCountUnit = "{buffer}" + JvmBufferCountDescription = "Number of buffers in the pool." + + // JvmMemoryUsed is the metric conforming to the "jvm.memory.used" semantic + // conventions. It represents the measure of memory used. + // Instrument: updowncounter + // Unit: By + // Stability: Stable + JvmMemoryUsedName = "jvm.memory.used" + JvmMemoryUsedUnit = "By" + JvmMemoryUsedDescription = "Measure of memory used." + + // JvmMemoryCommitted is the metric conforming to the "jvm.memory.committed" + // semantic conventions. It represents the measure of memory committed. + // Instrument: updowncounter + // Unit: By + // Stability: Stable + JvmMemoryCommittedName = "jvm.memory.committed" + JvmMemoryCommittedUnit = "By" + JvmMemoryCommittedDescription = "Measure of memory committed." + + // JvmMemoryLimit is the metric conforming to the "jvm.memory.limit" semantic + // conventions. It represents the measure of max obtainable memory. + // Instrument: updowncounter + // Unit: By + // Stability: Stable + JvmMemoryLimitName = "jvm.memory.limit" + JvmMemoryLimitUnit = "By" + JvmMemoryLimitDescription = "Measure of max obtainable memory." + + // JvmMemoryUsedAfterLastGc is the metric conforming to the + // "jvm.memory.used_after_last_gc" semantic conventions. It represents the + // measure of memory used, as measured after the most recent garbage collection + // event on this pool. + // Instrument: updowncounter + // Unit: By + // Stability: Stable + JvmMemoryUsedAfterLastGcName = "jvm.memory.used_after_last_gc" + JvmMemoryUsedAfterLastGcUnit = "By" + JvmMemoryUsedAfterLastGcDescription = "Measure of memory used, as measured after the most recent garbage collection event on this pool." + + // JvmGcDuration is the metric conforming to the "jvm.gc.duration" semantic + // conventions. It represents the duration of JVM garbage collection actions. + // Instrument: histogram + // Unit: s + // Stability: Stable + JvmGcDurationName = "jvm.gc.duration" + JvmGcDurationUnit = "s" + JvmGcDurationDescription = "Duration of JVM garbage collection actions." + + // JvmThreadCount is the metric conforming to the "jvm.thread.count" semantic + // conventions. It represents the number of executing platform threads. + // Instrument: updowncounter + // Unit: {thread} + // Stability: Stable + JvmThreadCountName = "jvm.thread.count" + JvmThreadCountUnit = "{thread}" + JvmThreadCountDescription = "Number of executing platform threads." + + // JvmClassLoaded is the metric conforming to the "jvm.class.loaded" semantic + // conventions. It represents the number of classes loaded since JVM start. + // Instrument: counter + // Unit: {class} + // Stability: Stable + JvmClassLoadedName = "jvm.class.loaded" + JvmClassLoadedUnit = "{class}" + JvmClassLoadedDescription = "Number of classes loaded since JVM start." + + // JvmClassUnloaded is the metric conforming to the "jvm.class.unloaded" + // semantic conventions. It represents the number of classes unloaded since JVM + // start. + // Instrument: counter + // Unit: {class} + // Stability: Stable + JvmClassUnloadedName = "jvm.class.unloaded" + JvmClassUnloadedUnit = "{class}" + JvmClassUnloadedDescription = "Number of classes unloaded since JVM start." + + // JvmClassCount is the metric conforming to the "jvm.class.count" semantic + // conventions. It represents the number of classes currently loaded. + // Instrument: updowncounter + // Unit: {class} + // Stability: Stable + JvmClassCountName = "jvm.class.count" + JvmClassCountUnit = "{class}" + JvmClassCountDescription = "Number of classes currently loaded." + + // JvmCPUCount is the metric conforming to the "jvm.cpu.count" semantic + // conventions. It represents the number of processors available to the Java + // virtual machine. + // Instrument: updowncounter + // Unit: {cpu} + // Stability: Stable + JvmCPUCountName = "jvm.cpu.count" + JvmCPUCountUnit = "{cpu}" + JvmCPUCountDescription = "Number of processors available to the Java virtual machine." + + // JvmCPUTime is the metric conforming to the "jvm.cpu.time" semantic + // conventions. It represents the cPU time used by the process as reported by + // the JVM. + // Instrument: counter + // Unit: s + // Stability: Stable + JvmCPUTimeName = "jvm.cpu.time" + JvmCPUTimeUnit = "s" + JvmCPUTimeDescription = "CPU time used by the process as reported by the JVM." + + // JvmCPURecentUtilization is the metric conforming to the + // "jvm.cpu.recent_utilization" semantic conventions. It represents the recent + // CPU utilization for the process as reported by the JVM. + // Instrument: gauge + // Unit: 1 + // Stability: Stable + JvmCPURecentUtilizationName = "jvm.cpu.recent_utilization" + JvmCPURecentUtilizationUnit = "1" + JvmCPURecentUtilizationDescription = "Recent CPU utilization for the process as reported by the JVM." + + // MessagingPublishDuration is the metric conforming to the + // "messaging.publish.duration" semantic conventions. It represents the + // measures the duration of publish operation. + // Instrument: histogram + // Unit: s + // Stability: Experimental + MessagingPublishDurationName = "messaging.publish.duration" + MessagingPublishDurationUnit = "s" + MessagingPublishDurationDescription = "Measures the duration of publish operation." + + // MessagingReceiveDuration is the metric conforming to the + // "messaging.receive.duration" semantic conventions. It represents the + // measures the duration of receive operation. + // Instrument: histogram + // Unit: s + // Stability: Experimental + MessagingReceiveDurationName = "messaging.receive.duration" + MessagingReceiveDurationUnit = "s" + MessagingReceiveDurationDescription = "Measures the duration of receive operation." + + // MessagingProcessDuration is the metric conforming to the + // "messaging.process.duration" semantic conventions. It represents the + // measures the duration of process operation. + // Instrument: histogram + // Unit: s + // Stability: Experimental + MessagingProcessDurationName = "messaging.process.duration" + MessagingProcessDurationUnit = "s" + MessagingProcessDurationDescription = "Measures the duration of process operation." + + // MessagingPublishMessages is the metric conforming to the + // "messaging.publish.messages" semantic conventions. It represents the + // measures the number of published messages. + // Instrument: counter + // Unit: {message} + // Stability: Experimental + MessagingPublishMessagesName = "messaging.publish.messages" + MessagingPublishMessagesUnit = "{message}" + MessagingPublishMessagesDescription = "Measures the number of published messages." + + // MessagingReceiveMessages is the metric conforming to the + // "messaging.receive.messages" semantic conventions. It represents the + // measures the number of received messages. + // Instrument: counter + // Unit: {message} + // Stability: Experimental + MessagingReceiveMessagesName = "messaging.receive.messages" + MessagingReceiveMessagesUnit = "{message}" + MessagingReceiveMessagesDescription = "Measures the number of received messages." + + // MessagingProcessMessages is the metric conforming to the + // "messaging.process.messages" semantic conventions. It represents the + // measures the number of processed messages. + // Instrument: counter + // Unit: {message} + // Stability: Experimental + MessagingProcessMessagesName = "messaging.process.messages" + MessagingProcessMessagesUnit = "{message}" + MessagingProcessMessagesDescription = "Measures the number of processed messages." + + // ProcessCPUTime is the metric conforming to the "process.cpu.time" semantic + // conventions. It represents the total CPU seconds broken down by different + // states. + // Instrument: counter + // Unit: s + // Stability: Experimental + ProcessCPUTimeName = "process.cpu.time" + ProcessCPUTimeUnit = "s" + ProcessCPUTimeDescription = "Total CPU seconds broken down by different states." + + // ProcessCPUUtilization is the metric conforming to the + // "process.cpu.utilization" semantic conventions. It represents the difference + // in process.cpu.time since the last measurement, divided by the elapsed time + // and number of CPUs available to the process. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + ProcessCPUUtilizationName = "process.cpu.utilization" + ProcessCPUUtilizationUnit = "1" + ProcessCPUUtilizationDescription = "Difference in process.cpu.time since the last measurement, divided by the elapsed time and number of CPUs available to the process." + + // ProcessMemoryUsage is the metric conforming to the "process.memory.usage" + // semantic conventions. It represents the amount of physical memory in use. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + ProcessMemoryUsageName = "process.memory.usage" + ProcessMemoryUsageUnit = "By" + ProcessMemoryUsageDescription = "The amount of physical memory in use." + + // ProcessMemoryVirtual is the metric conforming to the + // "process.memory.virtual" semantic conventions. It represents the amount of + // committed virtual memory. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + ProcessMemoryVirtualName = "process.memory.virtual" + ProcessMemoryVirtualUnit = "By" + ProcessMemoryVirtualDescription = "The amount of committed virtual memory." + + // ProcessDiskIo is the metric conforming to the "process.disk.io" semantic + // conventions. It represents the disk bytes transferred. + // Instrument: counter + // Unit: By + // Stability: Experimental + ProcessDiskIoName = "process.disk.io" + ProcessDiskIoUnit = "By" + ProcessDiskIoDescription = "Disk bytes transferred." + + // ProcessNetworkIo is the metric conforming to the "process.network.io" + // semantic conventions. It represents the network bytes transferred. + // Instrument: counter + // Unit: By + // Stability: Experimental + ProcessNetworkIoName = "process.network.io" + ProcessNetworkIoUnit = "By" + ProcessNetworkIoDescription = "Network bytes transferred." + + // ProcessThreadCount is the metric conforming to the "process.thread.count" + // semantic conventions. It represents the process threads count. + // Instrument: updowncounter + // Unit: {thread} + // Stability: Experimental + ProcessThreadCountName = "process.thread.count" + ProcessThreadCountUnit = "{thread}" + ProcessThreadCountDescription = "Process threads count." + + // ProcessOpenFileDescriptorCount is the metric conforming to the + // "process.open_file_descriptor.count" semantic conventions. It represents the + // number of file descriptors in use by the process. + // Instrument: updowncounter + // Unit: {count} + // Stability: Experimental + ProcessOpenFileDescriptorCountName = "process.open_file_descriptor.count" + ProcessOpenFileDescriptorCountUnit = "{count}" + ProcessOpenFileDescriptorCountDescription = "Number of file descriptors in use by the process." + + // ProcessContextSwitches is the metric conforming to the + // "process.context_switches" semantic conventions. It represents the number of + // times the process has been context switched. + // Instrument: counter + // Unit: {count} + // Stability: Experimental + ProcessContextSwitchesName = "process.context_switches" + ProcessContextSwitchesUnit = "{count}" + ProcessContextSwitchesDescription = "Number of times the process has been context switched." + + // ProcessPagingFaults is the metric conforming to the "process.paging.faults" + // semantic conventions. It represents the number of page faults the process + // has made. + // Instrument: counter + // Unit: {fault} + // Stability: Experimental + ProcessPagingFaultsName = "process.paging.faults" + ProcessPagingFaultsUnit = "{fault}" + ProcessPagingFaultsDescription = "Number of page faults the process has made." + + // RPCServerDuration is the metric conforming to the "rpc.server.duration" + // semantic conventions. It represents the measures the duration of inbound + // RPC. + // Instrument: histogram + // Unit: ms + // Stability: Experimental + RPCServerDurationName = "rpc.server.duration" + RPCServerDurationUnit = "ms" + RPCServerDurationDescription = "Measures the duration of inbound RPC." + + // RPCServerRequestSize is the metric conforming to the + // "rpc.server.request.size" semantic conventions. It represents the measures + // the size of RPC request messages (uncompressed). + // Instrument: histogram + // Unit: By + // Stability: Experimental + RPCServerRequestSizeName = "rpc.server.request.size" + RPCServerRequestSizeUnit = "By" + RPCServerRequestSizeDescription = "Measures the size of RPC request messages (uncompressed)." + + // RPCServerResponseSize is the metric conforming to the + // "rpc.server.response.size" semantic conventions. It represents the measures + // the size of RPC response messages (uncompressed). + // Instrument: histogram + // Unit: By + // Stability: Experimental + RPCServerResponseSizeName = "rpc.server.response.size" + RPCServerResponseSizeUnit = "By" + RPCServerResponseSizeDescription = "Measures the size of RPC response messages (uncompressed)." + + // RPCServerRequestsPerRPC is the metric conforming to the + // "rpc.server.requests_per_rpc" semantic conventions. It represents the + // measures the number of messages received per RPC. + // Instrument: histogram + // Unit: {count} + // Stability: Experimental + RPCServerRequestsPerRPCName = "rpc.server.requests_per_rpc" + RPCServerRequestsPerRPCUnit = "{count}" + RPCServerRequestsPerRPCDescription = "Measures the number of messages received per RPC." + + // RPCServerResponsesPerRPC is the metric conforming to the + // "rpc.server.responses_per_rpc" semantic conventions. It represents the + // measures the number of messages sent per RPC. + // Instrument: histogram + // Unit: {count} + // Stability: Experimental + RPCServerResponsesPerRPCName = "rpc.server.responses_per_rpc" + RPCServerResponsesPerRPCUnit = "{count}" + RPCServerResponsesPerRPCDescription = "Measures the number of messages sent per RPC." + + // RPCClientDuration is the metric conforming to the "rpc.client.duration" + // semantic conventions. It represents the measures the duration of outbound + // RPC. + // Instrument: histogram + // Unit: ms + // Stability: Experimental + RPCClientDurationName = "rpc.client.duration" + RPCClientDurationUnit = "ms" + RPCClientDurationDescription = "Measures the duration of outbound RPC." + + // RPCClientRequestSize is the metric conforming to the + // "rpc.client.request.size" semantic conventions. It represents the measures + // the size of RPC request messages (uncompressed). + // Instrument: histogram + // Unit: By + // Stability: Experimental + RPCClientRequestSizeName = "rpc.client.request.size" + RPCClientRequestSizeUnit = "By" + RPCClientRequestSizeDescription = "Measures the size of RPC request messages (uncompressed)." + + // RPCClientResponseSize is the metric conforming to the + // "rpc.client.response.size" semantic conventions. It represents the measures + // the size of RPC response messages (uncompressed). + // Instrument: histogram + // Unit: By + // Stability: Experimental + RPCClientResponseSizeName = "rpc.client.response.size" + RPCClientResponseSizeUnit = "By" + RPCClientResponseSizeDescription = "Measures the size of RPC response messages (uncompressed)." + + // RPCClientRequestsPerRPC is the metric conforming to the + // "rpc.client.requests_per_rpc" semantic conventions. It represents the + // measures the number of messages received per RPC. + // Instrument: histogram + // Unit: {count} + // Stability: Experimental + RPCClientRequestsPerRPCName = "rpc.client.requests_per_rpc" + RPCClientRequestsPerRPCUnit = "{count}" + RPCClientRequestsPerRPCDescription = "Measures the number of messages received per RPC." + + // RPCClientResponsesPerRPC is the metric conforming to the + // "rpc.client.responses_per_rpc" semantic conventions. It represents the + // measures the number of messages sent per RPC. + // Instrument: histogram + // Unit: {count} + // Stability: Experimental + RPCClientResponsesPerRPCName = "rpc.client.responses_per_rpc" + RPCClientResponsesPerRPCUnit = "{count}" + RPCClientResponsesPerRPCDescription = "Measures the number of messages sent per RPC." + + // SystemCPUTime is the metric conforming to the "system.cpu.time" semantic + // conventions. It represents the seconds each logical CPU spent on each mode. + // Instrument: counter + // Unit: s + // Stability: Experimental + SystemCPUTimeName = "system.cpu.time" + SystemCPUTimeUnit = "s" + SystemCPUTimeDescription = "Seconds each logical CPU spent on each mode" + + // SystemCPUUtilization is the metric conforming to the + // "system.cpu.utilization" semantic conventions. It represents the difference + // in system.cpu.time since the last measurement, divided by the elapsed time + // and number of logical CPUs. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + SystemCPUUtilizationName = "system.cpu.utilization" + SystemCPUUtilizationUnit = "1" + SystemCPUUtilizationDescription = "Difference in system.cpu.time since the last measurement, divided by the elapsed time and number of logical CPUs" + + // SystemCPUFrequency is the metric conforming to the "system.cpu.frequency" + // semantic conventions. It represents the reports the current frequency of the + // CPU in Hz. + // Instrument: gauge + // Unit: {Hz} + // Stability: Experimental + SystemCPUFrequencyName = "system.cpu.frequency" + SystemCPUFrequencyUnit = "{Hz}" + SystemCPUFrequencyDescription = "Reports the current frequency of the CPU in Hz" + + // SystemCPUPhysicalCount is the metric conforming to the + // "system.cpu.physical.count" semantic conventions. It represents the reports + // the number of actual physical processor cores on the hardware. + // Instrument: updowncounter + // Unit: {cpu} + // Stability: Experimental + SystemCPUPhysicalCountName = "system.cpu.physical.count" + SystemCPUPhysicalCountUnit = "{cpu}" + SystemCPUPhysicalCountDescription = "Reports the number of actual physical processor cores on the hardware" + + // SystemCPULogicalCount is the metric conforming to the + // "system.cpu.logical.count" semantic conventions. It represents the reports + // the number of logical (virtual) processor cores created by the operating + // system to manage multitasking. + // Instrument: updowncounter + // Unit: {cpu} + // Stability: Experimental + SystemCPULogicalCountName = "system.cpu.logical.count" + SystemCPULogicalCountUnit = "{cpu}" + SystemCPULogicalCountDescription = "Reports the number of logical (virtual) processor cores created by the operating system to manage multitasking" + + // SystemMemoryUsage is the metric conforming to the "system.memory.usage" + // semantic conventions. It represents the reports memory in use by state. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + SystemMemoryUsageName = "system.memory.usage" + SystemMemoryUsageUnit = "By" + SystemMemoryUsageDescription = "Reports memory in use by state." + + // SystemMemoryLimit is the metric conforming to the "system.memory.limit" + // semantic conventions. It represents the total memory available in the + // system. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + SystemMemoryLimitName = "system.memory.limit" + SystemMemoryLimitUnit = "By" + SystemMemoryLimitDescription = "Total memory available in the system." + + // SystemMemoryShared is the metric conforming to the "system.memory.shared" + // semantic conventions. It represents the shared memory used (mostly by + // tmpfs). + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + SystemMemorySharedName = "system.memory.shared" + SystemMemorySharedUnit = "By" + SystemMemorySharedDescription = "Shared memory used (mostly by tmpfs)." + + // SystemMemoryUtilization is the metric conforming to the + // "system.memory.utilization" semantic conventions. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemMemoryUtilizationName = "system.memory.utilization" + SystemMemoryUtilizationUnit = "1" + + // SystemPagingUsage is the metric conforming to the "system.paging.usage" + // semantic conventions. It represents the unix swap or windows pagefile usage. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + SystemPagingUsageName = "system.paging.usage" + SystemPagingUsageUnit = "By" + SystemPagingUsageDescription = "Unix swap or windows pagefile usage" + + // SystemPagingUtilization is the metric conforming to the + // "system.paging.utilization" semantic conventions. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemPagingUtilizationName = "system.paging.utilization" + SystemPagingUtilizationUnit = "1" + + // SystemPagingFaults is the metric conforming to the "system.paging.faults" + // semantic conventions. + // Instrument: counter + // Unit: {fault} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemPagingFaultsName = "system.paging.faults" + SystemPagingFaultsUnit = "{fault}" + + // SystemPagingOperations is the metric conforming to the + // "system.paging.operations" semantic conventions. + // Instrument: counter + // Unit: {operation} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemPagingOperationsName = "system.paging.operations" + SystemPagingOperationsUnit = "{operation}" + + // SystemDiskIo is the metric conforming to the "system.disk.io" semantic + // conventions. + // Instrument: counter + // Unit: By + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemDiskIoName = "system.disk.io" + SystemDiskIoUnit = "By" + + // SystemDiskOperations is the metric conforming to the + // "system.disk.operations" semantic conventions. + // Instrument: counter + // Unit: {operation} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemDiskOperationsName = "system.disk.operations" + SystemDiskOperationsUnit = "{operation}" + + // SystemDiskIoTime is the metric conforming to the "system.disk.io_time" + // semantic conventions. It represents the time disk spent activated. + // Instrument: counter + // Unit: s + // Stability: Experimental + SystemDiskIoTimeName = "system.disk.io_time" + SystemDiskIoTimeUnit = "s" + SystemDiskIoTimeDescription = "Time disk spent activated" + + // SystemDiskOperationTime is the metric conforming to the + // "system.disk.operation_time" semantic conventions. It represents the sum of + // the time each operation took to complete. + // Instrument: counter + // Unit: s + // Stability: Experimental + SystemDiskOperationTimeName = "system.disk.operation_time" + SystemDiskOperationTimeUnit = "s" + SystemDiskOperationTimeDescription = "Sum of the time each operation took to complete" + + // SystemDiskMerged is the metric conforming to the "system.disk.merged" + // semantic conventions. + // Instrument: counter + // Unit: {operation} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemDiskMergedName = "system.disk.merged" + SystemDiskMergedUnit = "{operation}" + + // SystemFilesystemUsage is the metric conforming to the + // "system.filesystem.usage" semantic conventions. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemFilesystemUsageName = "system.filesystem.usage" + SystemFilesystemUsageUnit = "By" + + // SystemFilesystemUtilization is the metric conforming to the + // "system.filesystem.utilization" semantic conventions. + // Instrument: gauge + // Unit: 1 + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemFilesystemUtilizationName = "system.filesystem.utilization" + SystemFilesystemUtilizationUnit = "1" + + // SystemNetworkDropped is the metric conforming to the + // "system.network.dropped" semantic conventions. It represents the count of + // packets that are dropped or discarded even though there was no error. + // Instrument: counter + // Unit: {packet} + // Stability: Experimental + SystemNetworkDroppedName = "system.network.dropped" + SystemNetworkDroppedUnit = "{packet}" + SystemNetworkDroppedDescription = "Count of packets that are dropped or discarded even though there was no error" + + // SystemNetworkPackets is the metric conforming to the + // "system.network.packets" semantic conventions. + // Instrument: counter + // Unit: {packet} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemNetworkPacketsName = "system.network.packets" + SystemNetworkPacketsUnit = "{packet}" + + // SystemNetworkErrors is the metric conforming to the "system.network.errors" + // semantic conventions. It represents the count of network errors detected. + // Instrument: counter + // Unit: {error} + // Stability: Experimental + SystemNetworkErrorsName = "system.network.errors" + SystemNetworkErrorsUnit = "{error}" + SystemNetworkErrorsDescription = "Count of network errors detected" + + // SystemNetworkIo is the metric conforming to the "system.network.io" semantic + // conventions. + // Instrument: counter + // Unit: By + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemNetworkIoName = "system.network.io" + SystemNetworkIoUnit = "By" + + // SystemNetworkConnections is the metric conforming to the + // "system.network.connections" semantic conventions. + // Instrument: updowncounter + // Unit: {connection} + // Stability: Experimental + // NOTE: The description (brief) for this metric is not defined in the semantic-conventions repository. + SystemNetworkConnectionsName = "system.network.connections" + SystemNetworkConnectionsUnit = "{connection}" + + // SystemProcessCount is the metric conforming to the "system.process.count" + // semantic conventions. It represents the total number of processes in each + // state. + // Instrument: updowncounter + // Unit: {process} + // Stability: Experimental + SystemProcessCountName = "system.process.count" + SystemProcessCountUnit = "{process}" + SystemProcessCountDescription = "Total number of processes in each state" + + // SystemProcessCreated is the metric conforming to the + // "system.process.created" semantic conventions. It represents the total + // number of processes created over uptime of the host. + // Instrument: counter + // Unit: {process} + // Stability: Experimental + SystemProcessCreatedName = "system.process.created" + SystemProcessCreatedUnit = "{process}" + SystemProcessCreatedDescription = "Total number of processes created over uptime of the host" + + // SystemLinuxMemoryAvailable is the metric conforming to the + // "system.linux.memory.available" semantic conventions. It represents an + // estimate of how much memory is available for starting new applications, + // without causing swapping. + // Instrument: updowncounter + // Unit: By + // Stability: Experimental + SystemLinuxMemoryAvailableName = "system.linux.memory.available" + SystemLinuxMemoryAvailableUnit = "By" + SystemLinuxMemoryAvailableDescription = "An estimate of how much memory is available for starting new applications, without causing swapping" +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/schema.go b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/schema.go new file mode 100644 index 0000000000..4c87c7adcc --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.26.0/schema.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.26.0" + +// SchemaURL is the schema URL that matches the version of the semantic conventions +// that this package defines. Semconv packages starting from v1.4.0 must declare +// non-empty schema URL in the form https://opentelemetry.io/schemas/ +const SchemaURL = "https://opentelemetry.io/schemas/1.26.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/MIGRATION.md b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/MIGRATION.md new file mode 100644 index 0000000000..02b56115e3 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/MIGRATION.md @@ -0,0 +1,4 @@ + +# Migration from v1.33.0 to v1.34.0 + +The `go.opentelemetry.io/otel/semconv/v1.34.0` package should be a drop-in replacement for `go.opentelemetry.io/otel/semconv/v1.33.0`. diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/README.md b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/README.md new file mode 100644 index 0000000000..fab06c9752 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/README.md @@ -0,0 +1,3 @@ +# Semconv v1.34.0 + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/semconv/v1.34.0)](https://pkg.go.dev/go.opentelemetry.io/otel/semconv/v1.34.0) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/attribute_group.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/attribute_group.go new file mode 100644 index 0000000000..5b56662573 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/attribute_group.go @@ -0,0 +1,13851 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Code generated from semantic convention specification. DO NOT EDIT. + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.34.0" + +import "go.opentelemetry.io/otel/attribute" + +// Namespace: android +const ( + // AndroidAppStateKey is the attribute Key conforming to the "android.app.state" + // semantic conventions. It represents the this attribute represents the state + // of the application. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "created" + // Note: The Android lifecycle states are defined in + // [Activity lifecycle callbacks], and from which the `OS identifiers` are + // derived. + // + // [Activity lifecycle callbacks]: https://developer.android.com/guide/components/activities/activity-lifecycle#lc + AndroidAppStateKey = attribute.Key("android.app.state") + + // AndroidOSAPILevelKey is the attribute Key conforming to the + // "android.os.api_level" semantic conventions. It represents the uniquely + // identifies the framework API revision offered by a version (`os.version`) of + // the android operating system. More information can be found [here]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "33", "32" + // + // [here]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels + AndroidOSAPILevelKey = attribute.Key("android.os.api_level") +) + +// AndroidOSAPILevel returns an attribute KeyValue conforming to the +// "android.os.api_level" semantic conventions. It represents the uniquely +// identifies the framework API revision offered by a version (`os.version`) of +// the android operating system. More information can be found [here]. +// +// [here]: https://developer.android.com/guide/topics/manifest/uses-sdk-element#ApiLevels +func AndroidOSAPILevel(val string) attribute.KeyValue { + return AndroidOSAPILevelKey.String(val) +} + +// Enum values for android.app.state +var ( + // Any time before Activity.onResume() or, if the app has no Activity, + // Context.startService() has been called in the app for the first time. + // + // Stability: development + AndroidAppStateCreated = AndroidAppStateKey.String("created") + // Any time after Activity.onPause() or, if the app has no Activity, + // Context.stopService() has been called when the app was in the foreground + // state. + // + // Stability: development + AndroidAppStateBackground = AndroidAppStateKey.String("background") + // Any time after Activity.onResume() or, if the app has no Activity, + // Context.startService() has been called when the app was in either the created + // or background states. + // + // Stability: development + AndroidAppStateForeground = AndroidAppStateKey.String("foreground") +) + +// Namespace: app +const ( + // AppInstallationIDKey is the attribute Key conforming to the + // "app.installation.id" semantic conventions. It represents a unique identifier + // representing the installation of an application on a specific device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2ab2916d-a51f-4ac8-80ee-45ac31a28092" + // Note: Its value SHOULD persist across launches of the same application + // installation, including through application upgrades. + // It SHOULD change if the application is uninstalled or if all applications of + // the vendor are uninstalled. + // Additionally, users might be able to reset this value (e.g. by clearing + // application data). + // If an app is installed multiple times on the same device (e.g. in different + // accounts on Android), each `app.installation.id` SHOULD have a different + // value. + // If multiple OpenTelemetry SDKs are used within the same application, they + // SHOULD use the same value for `app.installation.id`. + // Hardware IDs (e.g. serial number, IMEI, MAC address) MUST NOT be used as the + // `app.installation.id`. + // + // For iOS, this value SHOULD be equal to the [vendor identifier]. + // + // For Android, examples of `app.installation.id` implementations include: + // + // - [Firebase Installation ID]. + // - A globally unique UUID which is persisted across sessions in your + // application. + // - [App set ID]. + // - [`Settings.getString(Settings.Secure.ANDROID_ID)`]. + // + // More information about Android identifier best practices can be found [here] + // . + // + // [vendor identifier]: https://developer.apple.com/documentation/uikit/uidevice/identifierforvendor + // [Firebase Installation ID]: https://firebase.google.com/docs/projects/manage-installations + // [App set ID]: https://developer.android.com/identity/app-set-id + // [`Settings.getString(Settings.Secure.ANDROID_ID)`]: https://developer.android.com/reference/android/provider/Settings.Secure#ANDROID_ID + // [here]: https://developer.android.com/training/articles/user-data-ids + AppInstallationIDKey = attribute.Key("app.installation.id") + + // AppScreenCoordinateXKey is the attribute Key conforming to the + // "app.screen.coordinate.x" semantic conventions. It represents the x + // (horizontal) coordinate of a screen coordinate, in screen pixels. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 131 + AppScreenCoordinateXKey = attribute.Key("app.screen.coordinate.x") + + // AppScreenCoordinateYKey is the attribute Key conforming to the + // "app.screen.coordinate.y" semantic conventions. It represents the y + // (vertical) component of a screen coordinate, in screen pixels. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12, 99 + AppScreenCoordinateYKey = attribute.Key("app.screen.coordinate.y") + + // AppWidgetIDKey is the attribute Key conforming to the "app.widget.id" + // semantic conventions. It represents an identifier that uniquely + // differentiates this widget from other widgets in the same application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "f9bc787d-ff05-48ad-90e1-fca1d46130b3", "submit_order_1829" + // Note: A widget is an application component, typically an on-screen visual GUI + // element. + AppWidgetIDKey = attribute.Key("app.widget.id") + + // AppWidgetNameKey is the attribute Key conforming to the "app.widget.name" + // semantic conventions. It represents the name of an application widget. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "submit", "attack", "Clear Cart" + // Note: A widget is an application component, typically an on-screen visual GUI + // element. + AppWidgetNameKey = attribute.Key("app.widget.name") +) + +// AppInstallationID returns an attribute KeyValue conforming to the +// "app.installation.id" semantic conventions. It represents a unique identifier +// representing the installation of an application on a specific device. +func AppInstallationID(val string) attribute.KeyValue { + return AppInstallationIDKey.String(val) +} + +// AppScreenCoordinateX returns an attribute KeyValue conforming to the +// "app.screen.coordinate.x" semantic conventions. It represents the x +// (horizontal) coordinate of a screen coordinate, in screen pixels. +func AppScreenCoordinateX(val int) attribute.KeyValue { + return AppScreenCoordinateXKey.Int(val) +} + +// AppScreenCoordinateY returns an attribute KeyValue conforming to the +// "app.screen.coordinate.y" semantic conventions. It represents the y (vertical) +// component of a screen coordinate, in screen pixels. +func AppScreenCoordinateY(val int) attribute.KeyValue { + return AppScreenCoordinateYKey.Int(val) +} + +// AppWidgetID returns an attribute KeyValue conforming to the "app.widget.id" +// semantic conventions. It represents an identifier that uniquely differentiates +// this widget from other widgets in the same application. +func AppWidgetID(val string) attribute.KeyValue { + return AppWidgetIDKey.String(val) +} + +// AppWidgetName returns an attribute KeyValue conforming to the +// "app.widget.name" semantic conventions. It represents the name of an +// application widget. +func AppWidgetName(val string) attribute.KeyValue { + return AppWidgetNameKey.String(val) +} + +// Namespace: artifact +const ( + // ArtifactAttestationFilenameKey is the attribute Key conforming to the + // "artifact.attestation.filename" semantic conventions. It represents the + // provenance filename of the built attestation which directly relates to the + // build artifact filename. This filename SHOULD accompany the artifact at + // publish time. See the [SLSA Relationship] specification for more information. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "golang-binary-amd64-v0.1.0.attestation", + // "docker-image-amd64-v0.1.0.intoto.json1", "release-1.tar.gz.attestation", + // "file-name-package.tar.gz.intoto.json1" + // + // [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations + ArtifactAttestationFilenameKey = attribute.Key("artifact.attestation.filename") + + // ArtifactAttestationHashKey is the attribute Key conforming to the + // "artifact.attestation.hash" semantic conventions. It represents the full + // [hash value (see glossary)], of the built attestation. Some envelopes in the + // [software attestation space] also refer to this as the **digest**. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1b31dfcd5b7f9267bf2ff47651df1cfb9147b9e4df1f335accf65b4cda498408" + // + // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec + ArtifactAttestationHashKey = attribute.Key("artifact.attestation.hash") + + // ArtifactAttestationIDKey is the attribute Key conforming to the + // "artifact.attestation.id" semantic conventions. It represents the id of the + // build [software attestation]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123" + // + // [software attestation]: https://slsa.dev/attestation-model + ArtifactAttestationIDKey = attribute.Key("artifact.attestation.id") + + // ArtifactFilenameKey is the attribute Key conforming to the + // "artifact.filename" semantic conventions. It represents the human readable + // file name of the artifact, typically generated during build and release + // processes. Often includes the package name and version in the file name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "golang-binary-amd64-v0.1.0", "docker-image-amd64-v0.1.0", + // "release-1.tar.gz", "file-name-package.tar.gz" + // Note: This file name can also act as the [Package Name] + // in cases where the package ecosystem maps accordingly. + // Additionally, the artifact [can be published] + // for others, but that is not a guarantee. + // + // [Package Name]: https://slsa.dev/spec/v1.0/terminology#package-model + // [can be published]: https://slsa.dev/spec/v1.0/terminology#software-supply-chain + ArtifactFilenameKey = attribute.Key("artifact.filename") + + // ArtifactHashKey is the attribute Key conforming to the "artifact.hash" + // semantic conventions. It represents the full [hash value (see glossary)], + // often found in checksum.txt on a release of the artifact and used to verify + // package integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9ff4c52759e2c4ac70b7d517bc7fcdc1cda631ca0045271ddd1b192544f8a3e9" + // Note: The specific algorithm used to create the cryptographic hash value is + // not defined. In situations where an artifact has multiple + // cryptographic hashes, it is up to the implementer to choose which + // hash value to set here; this should be the most secure hash algorithm + // that is suitable for the situation and consistent with the + // corresponding attestation. The implementer can then provide the other + // hash values through an additional set of attribute extensions as they + // deem necessary. + // + // [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + ArtifactHashKey = attribute.Key("artifact.hash") + + // ArtifactPurlKey is the attribute Key conforming to the "artifact.purl" + // semantic conventions. It represents the [Package URL] of the + // [package artifact] provides a standard way to identify and locate the + // packaged artifact. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pkg:github/package-url/purl-spec@1209109710924", + // "pkg:npm/foo@12.12.3" + // + // [Package URL]: https://github.com/package-url/purl-spec + // [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model + ArtifactPurlKey = attribute.Key("artifact.purl") + + // ArtifactVersionKey is the attribute Key conforming to the "artifact.version" + // semantic conventions. It represents the version of the artifact. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "v0.1.0", "1.2.1", "122691-build" + ArtifactVersionKey = attribute.Key("artifact.version") +) + +// ArtifactAttestationFilename returns an attribute KeyValue conforming to the +// "artifact.attestation.filename" semantic conventions. It represents the +// provenance filename of the built attestation which directly relates to the +// build artifact filename. This filename SHOULD accompany the artifact at +// publish time. See the [SLSA Relationship] specification for more information. +// +// [SLSA Relationship]: https://slsa.dev/spec/v1.0/distributing-provenance#relationship-between-artifacts-and-attestations +func ArtifactAttestationFilename(val string) attribute.KeyValue { + return ArtifactAttestationFilenameKey.String(val) +} + +// ArtifactAttestationHash returns an attribute KeyValue conforming to the +// "artifact.attestation.hash" semantic conventions. It represents the full +// [hash value (see glossary)], of the built attestation. Some envelopes in the +// [software attestation space] also refer to this as the **digest**. +// +// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf +// [software attestation space]: https://github.com/in-toto/attestation/tree/main/spec +func ArtifactAttestationHash(val string) attribute.KeyValue { + return ArtifactAttestationHashKey.String(val) +} + +// ArtifactAttestationID returns an attribute KeyValue conforming to the +// "artifact.attestation.id" semantic conventions. It represents the id of the +// build [software attestation]. +// +// [software attestation]: https://slsa.dev/attestation-model +func ArtifactAttestationID(val string) attribute.KeyValue { + return ArtifactAttestationIDKey.String(val) +} + +// ArtifactFilename returns an attribute KeyValue conforming to the +// "artifact.filename" semantic conventions. It represents the human readable +// file name of the artifact, typically generated during build and release +// processes. Often includes the package name and version in the file name. +func ArtifactFilename(val string) attribute.KeyValue { + return ArtifactFilenameKey.String(val) +} + +// ArtifactHash returns an attribute KeyValue conforming to the "artifact.hash" +// semantic conventions. It represents the full [hash value (see glossary)], +// often found in checksum.txt on a release of the artifact and used to verify +// package integrity. +// +// [hash value (see glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf +func ArtifactHash(val string) attribute.KeyValue { + return ArtifactHashKey.String(val) +} + +// ArtifactPurl returns an attribute KeyValue conforming to the "artifact.purl" +// semantic conventions. It represents the [Package URL] of the +// [package artifact] provides a standard way to identify and locate the packaged +// artifact. +// +// [Package URL]: https://github.com/package-url/purl-spec +// [package artifact]: https://slsa.dev/spec/v1.0/terminology#package-model +func ArtifactPurl(val string) attribute.KeyValue { + return ArtifactPurlKey.String(val) +} + +// ArtifactVersion returns an attribute KeyValue conforming to the +// "artifact.version" semantic conventions. It represents the version of the +// artifact. +func ArtifactVersion(val string) attribute.KeyValue { + return ArtifactVersionKey.String(val) +} + +// Namespace: aws +const ( + // AWSBedrockGuardrailIDKey is the attribute Key conforming to the + // "aws.bedrock.guardrail.id" semantic conventions. It represents the unique + // identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and + // prevent unwanted behavior from model responses or user messages. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "sgi5gkybzqak" + // + // [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html + AWSBedrockGuardrailIDKey = attribute.Key("aws.bedrock.guardrail.id") + + // AWSBedrockKnowledgeBaseIDKey is the attribute Key conforming to the + // "aws.bedrock.knowledge_base.id" semantic conventions. It represents the + // unique identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a + // bank of information that can be queried by models to generate more relevant + // responses and augment prompts. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "XFWUPB9PAW" + // + // [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html + AWSBedrockKnowledgeBaseIDKey = attribute.Key("aws.bedrock.knowledge_base.id") + + // AWSDynamoDBAttributeDefinitionsKey is the attribute Key conforming to the + // "aws.dynamodb.attribute_definitions" semantic conventions. It represents the + // JSON-serialized value of each item in the `AttributeDefinitions` request + // field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "AttributeName": "string", "AttributeType": "string" }" + AWSDynamoDBAttributeDefinitionsKey = attribute.Key("aws.dynamodb.attribute_definitions") + + // AWSDynamoDBAttributesToGetKey is the attribute Key conforming to the + // "aws.dynamodb.attributes_to_get" semantic conventions. It represents the + // value of the `AttributesToGet` request parameter. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "lives", "id" + AWSDynamoDBAttributesToGetKey = attribute.Key("aws.dynamodb.attributes_to_get") + + // AWSDynamoDBConsistentReadKey is the attribute Key conforming to the + // "aws.dynamodb.consistent_read" semantic conventions. It represents the value + // of the `ConsistentRead` request parameter. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AWSDynamoDBConsistentReadKey = attribute.Key("aws.dynamodb.consistent_read") + + // AWSDynamoDBConsumedCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.consumed_capacity" semantic conventions. It represents the + // JSON-serialized value of each item in the `ConsumedCapacity` response field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "CapacityUnits": number, "GlobalSecondaryIndexes": { "string" : + // { "CapacityUnits": number, "ReadCapacityUnits": number, "WriteCapacityUnits": + // number } }, "LocalSecondaryIndexes": { "string" : { "CapacityUnits": number, + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }, + // "ReadCapacityUnits": number, "Table": { "CapacityUnits": number, + // "ReadCapacityUnits": number, "WriteCapacityUnits": number }, "TableName": + // "string", "WriteCapacityUnits": number }" + AWSDynamoDBConsumedCapacityKey = attribute.Key("aws.dynamodb.consumed_capacity") + + // AWSDynamoDBCountKey is the attribute Key conforming to the + // "aws.dynamodb.count" semantic conventions. It represents the value of the + // `Count` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBCountKey = attribute.Key("aws.dynamodb.count") + + // AWSDynamoDBExclusiveStartTableKey is the attribute Key conforming to the + // "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the + // value of the `ExclusiveStartTableName` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Users", "CatsTable" + AWSDynamoDBExclusiveStartTableKey = attribute.Key("aws.dynamodb.exclusive_start_table") + + // AWSDynamoDBGlobalSecondaryIndexUpdatesKey is the attribute Key conforming to + // the "aws.dynamodb.global_secondary_index_updates" semantic conventions. It + // represents the JSON-serialized value of each item in the + // `GlobalSecondaryIndexUpdates` request field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "Create": { "IndexName": "string", "KeySchema": [ { + // "AttributeName": "string", "KeyType": "string" } ], "Projection": { + // "NonKeyAttributes": [ "string" ], "ProjectionType": "string" }, + // "ProvisionedThroughput": { "ReadCapacityUnits": number, "WriteCapacityUnits": + // number } }" + AWSDynamoDBGlobalSecondaryIndexUpdatesKey = attribute.Key("aws.dynamodb.global_secondary_index_updates") + + // AWSDynamoDBGlobalSecondaryIndexesKey is the attribute Key conforming to the + // "aws.dynamodb.global_secondary_indexes" semantic conventions. It represents + // the JSON-serialized value of each item of the `GlobalSecondaryIndexes` + // request field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "IndexName": "string", "KeySchema": [ { "AttributeName": + // "string", "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ + // "string" ], "ProjectionType": "string" }, "ProvisionedThroughput": { + // "ReadCapacityUnits": number, "WriteCapacityUnits": number } }" + AWSDynamoDBGlobalSecondaryIndexesKey = attribute.Key("aws.dynamodb.global_secondary_indexes") + + // AWSDynamoDBIndexNameKey is the attribute Key conforming to the + // "aws.dynamodb.index_name" semantic conventions. It represents the value of + // the `IndexName` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "name_to_group" + AWSDynamoDBIndexNameKey = attribute.Key("aws.dynamodb.index_name") + + // AWSDynamoDBItemCollectionMetricsKey is the attribute Key conforming to the + // "aws.dynamodb.item_collection_metrics" semantic conventions. It represents + // the JSON-serialized value of the `ItemCollectionMetrics` response field. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "string" : [ { "ItemCollectionKey": { "string" : { "B": blob, + // "BOOL": boolean, "BS": [ blob ], "L": [ "AttributeValue" ], "M": { "string" : + // "AttributeValue" }, "N": "string", "NS": [ "string" ], "NULL": boolean, "S": + // "string", "SS": [ "string" ] } }, "SizeEstimateRangeGB": [ number ] } ] }" + AWSDynamoDBItemCollectionMetricsKey = attribute.Key("aws.dynamodb.item_collection_metrics") + + // AWSDynamoDBLimitKey is the attribute Key conforming to the + // "aws.dynamodb.limit" semantic conventions. It represents the value of the + // `Limit` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBLimitKey = attribute.Key("aws.dynamodb.limit") + + // AWSDynamoDBLocalSecondaryIndexesKey is the attribute Key conforming to the + // "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents + // the JSON-serialized value of each item of the `LocalSecondaryIndexes` request + // field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "{ "IndexArn": "string", "IndexName": "string", "IndexSizeBytes": + // number, "ItemCount": number, "KeySchema": [ { "AttributeName": "string", + // "KeyType": "string" } ], "Projection": { "NonKeyAttributes": [ "string" ], + // "ProjectionType": "string" } }" + AWSDynamoDBLocalSecondaryIndexesKey = attribute.Key("aws.dynamodb.local_secondary_indexes") + + // AWSDynamoDBProjectionKey is the attribute Key conforming to the + // "aws.dynamodb.projection" semantic conventions. It represents the value of + // the `ProjectionExpression` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Title", "Title, Price, Color", "Title, Description, RelatedItems, + // ProductReviews" + AWSDynamoDBProjectionKey = attribute.Key("aws.dynamodb.projection") + + // AWSDynamoDBProvisionedReadCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.provisioned_read_capacity" semantic conventions. It represents + // the value of the `ProvisionedThroughput.ReadCapacityUnits` request parameter. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedReadCapacityKey = attribute.Key("aws.dynamodb.provisioned_read_capacity") + + // AWSDynamoDBProvisionedWriteCapacityKey is the attribute Key conforming to the + // "aws.dynamodb.provisioned_write_capacity" semantic conventions. It represents + // the value of the `ProvisionedThroughput.WriteCapacityUnits` request + // parameter. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0, 2.0 + AWSDynamoDBProvisionedWriteCapacityKey = attribute.Key("aws.dynamodb.provisioned_write_capacity") + + // AWSDynamoDBScanForwardKey is the attribute Key conforming to the + // "aws.dynamodb.scan_forward" semantic conventions. It represents the value of + // the `ScanIndexForward` request parameter. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AWSDynamoDBScanForwardKey = attribute.Key("aws.dynamodb.scan_forward") + + // AWSDynamoDBScannedCountKey is the attribute Key conforming to the + // "aws.dynamodb.scanned_count" semantic conventions. It represents the value of + // the `ScannedCount` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 50 + AWSDynamoDBScannedCountKey = attribute.Key("aws.dynamodb.scanned_count") + + // AWSDynamoDBSegmentKey is the attribute Key conforming to the + // "aws.dynamodb.segment" semantic conventions. It represents the value of the + // `Segment` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10 + AWSDynamoDBSegmentKey = attribute.Key("aws.dynamodb.segment") + + // AWSDynamoDBSelectKey is the attribute Key conforming to the + // "aws.dynamodb.select" semantic conventions. It represents the value of the + // `Select` request parameter. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ALL_ATTRIBUTES", "COUNT" + AWSDynamoDBSelectKey = attribute.Key("aws.dynamodb.select") + + // AWSDynamoDBTableCountKey is the attribute Key conforming to the + // "aws.dynamodb.table_count" semantic conventions. It represents the number of + // items in the `TableNames` response parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 20 + AWSDynamoDBTableCountKey = attribute.Key("aws.dynamodb.table_count") + + // AWSDynamoDBTableNamesKey is the attribute Key conforming to the + // "aws.dynamodb.table_names" semantic conventions. It represents the keys in + // the `RequestItems` object field. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Users", "Cats" + AWSDynamoDBTableNamesKey = attribute.Key("aws.dynamodb.table_names") + + // AWSDynamoDBTotalSegmentsKey is the attribute Key conforming to the + // "aws.dynamodb.total_segments" semantic conventions. It represents the value + // of the `TotalSegments` request parameter. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + AWSDynamoDBTotalSegmentsKey = attribute.Key("aws.dynamodb.total_segments") + + // AWSECSClusterARNKey is the attribute Key conforming to the + // "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an + // [ECS cluster]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" + // + // [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html + AWSECSClusterARNKey = attribute.Key("aws.ecs.cluster.arn") + + // AWSECSContainerARNKey is the attribute Key conforming to the + // "aws.ecs.container.arn" semantic conventions. It represents the Amazon + // Resource Name (ARN) of an [ECS container instance]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:ecs:us-west-1:123456789123:container/32624152-9086-4f0e-acae-1a75b14fe4d9" + // + // [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html + AWSECSContainerARNKey = attribute.Key("aws.ecs.container.arn") + + // AWSECSLaunchtypeKey is the attribute Key conforming to the + // "aws.ecs.launchtype" semantic conventions. It represents the [launch type] + // for an ECS task. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [launch type]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/launch_types.html + AWSECSLaunchtypeKey = attribute.Key("aws.ecs.launchtype") + + // AWSECSTaskARNKey is the attribute Key conforming to the "aws.ecs.task.arn" + // semantic conventions. It represents the ARN of a running [ECS task]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:ecs:us-west-1:123456789123:task/10838bed-421f-43ef-870a-f43feacbbb5b", + // "arn:aws:ecs:us-west-1:123456789123:task/my-cluster/task-id/23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" + // + // [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids + AWSECSTaskARNKey = attribute.Key("aws.ecs.task.arn") + + // AWSECSTaskFamilyKey is the attribute Key conforming to the + // "aws.ecs.task.family" semantic conventions. It represents the family name of + // the [ECS task definition] used to create the ECS task. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-family" + // + // [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html + AWSECSTaskFamilyKey = attribute.Key("aws.ecs.task.family") + + // AWSECSTaskIDKey is the attribute Key conforming to the "aws.ecs.task.id" + // semantic conventions. It represents the ID of a running ECS task. The ID MUST + // be extracted from `task.arn`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10838bed-421f-43ef-870a-f43feacbbb5b", + // "23ebb8ac-c18f-46c6-8bbe-d55d0e37cfbd" + AWSECSTaskIDKey = attribute.Key("aws.ecs.task.id") + + // AWSECSTaskRevisionKey is the attribute Key conforming to the + // "aws.ecs.task.revision" semantic conventions. It represents the revision for + // the task definition used to create the ECS task. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "8", "26" + AWSECSTaskRevisionKey = attribute.Key("aws.ecs.task.revision") + + // AWSEKSClusterARNKey is the attribute Key conforming to the + // "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS + // cluster. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:ecs:us-west-2:123456789123:cluster/my-cluster" + AWSEKSClusterARNKey = attribute.Key("aws.eks.cluster.arn") + + // AWSExtendedRequestIDKey is the attribute Key conforming to the + // "aws.extended_request_id" semantic conventions. It represents the AWS + // extended request ID as returned in the response header `x-amz-id-2`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "wzHcyEWfmOGDIE5QOhTAqFDoDWP3y8IUvpNINCwL9N4TEHbUw0/gZJ+VZTmCNCWR7fezEN3eCiQ=" + AWSExtendedRequestIDKey = attribute.Key("aws.extended_request_id") + + // AWSKinesisStreamNameKey is the attribute Key conforming to the + // "aws.kinesis.stream_name" semantic conventions. It represents the name of the + // AWS Kinesis [stream] the request refers to. Corresponds to the + // `--stream-name` parameter of the Kinesis [describe-stream] operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "some-stream-name" + // + // [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html + // [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html + AWSKinesisStreamNameKey = attribute.Key("aws.kinesis.stream_name") + + // AWSLambdaInvokedARNKey is the attribute Key conforming to the + // "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked + // ARN as provided on the `Context` passed to the function ( + // `Lambda-Runtime-Invoked-Function-Arn` header on the + // `/runtime/invocation/next` applicable). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:lambda:us-east-1:123456:function:myfunction:myalias" + // Note: This may be different from `cloud.resource_id` if an alias is involved. + AWSLambdaInvokedARNKey = attribute.Key("aws.lambda.invoked_arn") + + // AWSLambdaResourceMappingIDKey is the attribute Key conforming to the + // "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID + // of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda + // function. It's contents are read by Lambda and used to trigger a function. + // This isn't available in the lambda execution context or the lambda runtime + // environtment. This is going to be populated by the AWS SDK for each language + // when that UUID is present. Some of these operations are + // Create/Delete/Get/List/Update EventSourceMapping. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "587ad24b-03b9-4413-8202-bbd56b36e5b7" + // + // [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html + AWSLambdaResourceMappingIDKey = attribute.Key("aws.lambda.resource_mapping.id") + + // AWSLogGroupARNsKey is the attribute Key conforming to the + // "aws.log.group.arns" semantic conventions. It represents the Amazon Resource + // Name(s) (ARN) of the AWS log group(s). + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:*" + // Note: See the [log group ARN format documentation]. + // + // [log group ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format + AWSLogGroupARNsKey = attribute.Key("aws.log.group.arns") + + // AWSLogGroupNamesKey is the attribute Key conforming to the + // "aws.log.group.names" semantic conventions. It represents the name(s) of the + // AWS log group(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/aws/lambda/my-function", "opentelemetry-service" + // Note: Multiple log groups must be supported for cases like multi-container + // applications, where a single application has sidecar containers, and each + // write to their own log group. + AWSLogGroupNamesKey = attribute.Key("aws.log.group.names") + + // AWSLogStreamARNsKey is the attribute Key conforming to the + // "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the + // AWS log stream(s). + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:logs:us-west-1:123456789012:log-group:/aws/my/group:log-stream:logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" + // Note: See the [log stream ARN format documentation]. One log group can + // contain several log streams, so these ARNs necessarily identify both a log + // group and a log stream. + // + // [log stream ARN format documentation]: https://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/iam-access-control-overview-cwl.html#CWL_ARN_Format + AWSLogStreamARNsKey = attribute.Key("aws.log.stream.arns") + + // AWSLogStreamNamesKey is the attribute Key conforming to the + // "aws.log.stream.names" semantic conventions. It represents the name(s) of the + // AWS log stream(s) an application is writing to. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "logs/main/10838bed-421f-43ef-870a-f43feacbbb5b" + AWSLogStreamNamesKey = attribute.Key("aws.log.stream.names") + + // AWSRequestIDKey is the attribute Key conforming to the "aws.request_id" + // semantic conventions. It represents the AWS request ID as returned in the + // response headers `x-amzn-requestid`, `x-amzn-request-id` or + // `x-amz-request-id`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "79b9da39-b7ae-508a-a6bc-864b2829c622", "C9ER4AJX75574TDJ" + AWSRequestIDKey = attribute.Key("aws.request_id") + + // AWSS3BucketKey is the attribute Key conforming to the "aws.s3.bucket" + // semantic conventions. It represents the S3 bucket name the request refers to. + // Corresponds to the `--bucket` parameter of the [S3 API] operations. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "some-bucket-name" + // Note: The `bucket` attribute is applicable to all S3 operations that + // reference a bucket, i.e. that require the bucket name as a mandatory + // parameter. + // This applies to almost all S3 operations except `list-buckets`. + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + AWSS3BucketKey = attribute.Key("aws.s3.bucket") + + // AWSS3CopySourceKey is the attribute Key conforming to the + // "aws.s3.copy_source" semantic conventions. It represents the source object + // (in the form `bucket`/`key`) for the copy operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "someFile.yml" + // Note: The `copy_source` attribute applies to S3 copy operations and + // corresponds to the `--copy-source` parameter + // of the [copy-object operation within the S3 API]. + // This applies in particular to the following operations: + // + // - [copy-object] + // - [upload-part-copy] + // + // + // [copy-object operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3CopySourceKey = attribute.Key("aws.s3.copy_source") + + // AWSS3DeleteKey is the attribute Key conforming to the "aws.s3.delete" + // semantic conventions. It represents the delete request container that + // specifies the objects to be deleted. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "Objects=[{Key=string,VersionId=string},{Key=string,VersionId=string}],Quiet=boolean" + // Note: The `delete` attribute is only applicable to the [delete-object] + // operation. + // The `delete` attribute corresponds to the `--delete` parameter of the + // [delete-objects operation within the S3 API]. + // + // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html + // [delete-objects operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-objects.html + AWSS3DeleteKey = attribute.Key("aws.s3.delete") + + // AWSS3KeyKey is the attribute Key conforming to the "aws.s3.key" semantic + // conventions. It represents the S3 object key the request refers to. + // Corresponds to the `--key` parameter of the [S3 API] operations. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "someFile.yml" + // Note: The `key` attribute is applicable to all object-related S3 operations, + // i.e. that require the object key as a mandatory parameter. + // This applies in particular to the following operations: + // + // - [copy-object] + // - [delete-object] + // - [get-object] + // - [head-object] + // - [put-object] + // - [restore-object] + // - [select-object-content] + // - [abort-multipart-upload] + // - [complete-multipart-upload] + // - [create-multipart-upload] + // - [list-parts] + // - [upload-part] + // - [upload-part-copy] + // + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + // [copy-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/copy-object.html + // [delete-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/delete-object.html + // [get-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/get-object.html + // [head-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/head-object.html + // [put-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/put-object.html + // [restore-object]: https://docs.aws.amazon.com/cli/latest/reference/s3api/restore-object.html + // [select-object-content]: https://docs.aws.amazon.com/cli/latest/reference/s3api/select-object-content.html + // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html + // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html + // [create-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/create-multipart-upload.html + // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3KeyKey = attribute.Key("aws.s3.key") + + // AWSS3PartNumberKey is the attribute Key conforming to the + // "aws.s3.part_number" semantic conventions. It represents the part number of + // the part being uploaded in a multipart-upload operation. This is a positive + // integer between 1 and 10,000. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3456 + // Note: The `part_number` attribute is only applicable to the [upload-part] + // and [upload-part-copy] operations. + // The `part_number` attribute corresponds to the `--part-number` parameter of + // the + // [upload-part operation within the S3 API]. + // + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + // [upload-part operation within the S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + AWSS3PartNumberKey = attribute.Key("aws.s3.part_number") + + // AWSS3UploadIDKey is the attribute Key conforming to the "aws.s3.upload_id" + // semantic conventions. It represents the upload ID that identifies the + // multipart upload. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "dfRtDYWFbkRONycy.Yxwh66Yjlx.cph0gtNBtJ" + // Note: The `upload_id` attribute applies to S3 multipart-upload operations and + // corresponds to the `--upload-id` parameter + // of the [S3 API] multipart operations. + // This applies in particular to the following operations: + // + // - [abort-multipart-upload] + // - [complete-multipart-upload] + // - [list-parts] + // - [upload-part] + // - [upload-part-copy] + // + // + // [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html + // [abort-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/abort-multipart-upload.html + // [complete-multipart-upload]: https://docs.aws.amazon.com/cli/latest/reference/s3api/complete-multipart-upload.html + // [list-parts]: https://docs.aws.amazon.com/cli/latest/reference/s3api/list-parts.html + // [upload-part]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part.html + // [upload-part-copy]: https://docs.aws.amazon.com/cli/latest/reference/s3api/upload-part-copy.html + AWSS3UploadIDKey = attribute.Key("aws.s3.upload_id") + + // AWSSecretsmanagerSecretARNKey is the attribute Key conforming to the + // "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN + // of the Secret stored in the Secrets Mangger. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:secretsmanager:us-east-1:123456789012:secret:SecretName-6RandomCharacters" + AWSSecretsmanagerSecretARNKey = attribute.Key("aws.secretsmanager.secret.arn") + + // AWSSNSTopicARNKey is the attribute Key conforming to the "aws.sns.topic.arn" + // semantic conventions. It represents the ARN of the AWS SNS Topic. An Amazon + // SNS [topic] is a logical access point that acts as a communication channel. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:sns:us-east-1:123456789012:mystack-mytopic-NZJ5JSMVGFIE" + // + // [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html + AWSSNSTopicARNKey = attribute.Key("aws.sns.topic.arn") + + // AWSSQSQueueURLKey is the attribute Key conforming to the "aws.sqs.queue.url" + // semantic conventions. It represents the URL of the AWS SQS Queue. It's a + // unique identifier for a queue in Amazon Simple Queue Service (SQS) and is + // used to access the queue and perform actions on it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://sqs.us-east-1.amazonaws.com/123456789012/MyQueue" + AWSSQSQueueURLKey = attribute.Key("aws.sqs.queue.url") + + // AWSStepFunctionsActivityARNKey is the attribute Key conforming to the + // "aws.step_functions.activity.arn" semantic conventions. It represents the ARN + // of the AWS Step Functions Activity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:states:us-east-1:123456789012:activity:get-greeting" + AWSStepFunctionsActivityARNKey = attribute.Key("aws.step_functions.activity.arn") + + // AWSStepFunctionsStateMachineARNKey is the attribute Key conforming to the + // "aws.step_functions.state_machine.arn" semantic conventions. It represents + // the ARN of the AWS Step Functions State Machine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "arn:aws:states:us-east-1:123456789012:stateMachine:myStateMachine:1" + AWSStepFunctionsStateMachineARNKey = attribute.Key("aws.step_functions.state_machine.arn") +) + +// AWSBedrockGuardrailID returns an attribute KeyValue conforming to the +// "aws.bedrock.guardrail.id" semantic conventions. It represents the unique +// identifier of the AWS Bedrock Guardrail. A [guardrail] helps safeguard and +// prevent unwanted behavior from model responses or user messages. +// +// [guardrail]: https://docs.aws.amazon.com/bedrock/latest/userguide/guardrails.html +func AWSBedrockGuardrailID(val string) attribute.KeyValue { + return AWSBedrockGuardrailIDKey.String(val) +} + +// AWSBedrockKnowledgeBaseID returns an attribute KeyValue conforming to the +// "aws.bedrock.knowledge_base.id" semantic conventions. It represents the unique +// identifier of the AWS Bedrock Knowledge base. A [knowledge base] is a bank of +// information that can be queried by models to generate more relevant responses +// and augment prompts. +// +// [knowledge base]: https://docs.aws.amazon.com/bedrock/latest/userguide/knowledge-base.html +func AWSBedrockKnowledgeBaseID(val string) attribute.KeyValue { + return AWSBedrockKnowledgeBaseIDKey.String(val) +} + +// AWSDynamoDBAttributeDefinitions returns an attribute KeyValue conforming to +// the "aws.dynamodb.attribute_definitions" semantic conventions. It represents +// the JSON-serialized value of each item in the `AttributeDefinitions` request +// field. +func AWSDynamoDBAttributeDefinitions(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributeDefinitionsKey.StringSlice(val) +} + +// AWSDynamoDBAttributesToGet returns an attribute KeyValue conforming to the +// "aws.dynamodb.attributes_to_get" semantic conventions. It represents the value +// of the `AttributesToGet` request parameter. +func AWSDynamoDBAttributesToGet(val ...string) attribute.KeyValue { + return AWSDynamoDBAttributesToGetKey.StringSlice(val) +} + +// AWSDynamoDBConsistentRead returns an attribute KeyValue conforming to the +// "aws.dynamodb.consistent_read" semantic conventions. It represents the value +// of the `ConsistentRead` request parameter. +func AWSDynamoDBConsistentRead(val bool) attribute.KeyValue { + return AWSDynamoDBConsistentReadKey.Bool(val) +} + +// AWSDynamoDBConsumedCapacity returns an attribute KeyValue conforming to the +// "aws.dynamodb.consumed_capacity" semantic conventions. It represents the +// JSON-serialized value of each item in the `ConsumedCapacity` response field. +func AWSDynamoDBConsumedCapacity(val ...string) attribute.KeyValue { + return AWSDynamoDBConsumedCapacityKey.StringSlice(val) +} + +// AWSDynamoDBCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.count" semantic conventions. It represents the value of the +// `Count` response parameter. +func AWSDynamoDBCount(val int) attribute.KeyValue { + return AWSDynamoDBCountKey.Int(val) +} + +// AWSDynamoDBExclusiveStartTable returns an attribute KeyValue conforming to the +// "aws.dynamodb.exclusive_start_table" semantic conventions. It represents the +// value of the `ExclusiveStartTableName` request parameter. +func AWSDynamoDBExclusiveStartTable(val string) attribute.KeyValue { + return AWSDynamoDBExclusiveStartTableKey.String(val) +} + +// AWSDynamoDBGlobalSecondaryIndexUpdates returns an attribute KeyValue +// conforming to the "aws.dynamodb.global_secondary_index_updates" semantic +// conventions. It represents the JSON-serialized value of each item in the +// `GlobalSecondaryIndexUpdates` request field. +func AWSDynamoDBGlobalSecondaryIndexUpdates(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexUpdatesKey.StringSlice(val) +} + +// AWSDynamoDBGlobalSecondaryIndexes returns an attribute KeyValue conforming to +// the "aws.dynamodb.global_secondary_indexes" semantic conventions. It +// represents the JSON-serialized value of each item of the +// `GlobalSecondaryIndexes` request field. +func AWSDynamoDBGlobalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBGlobalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBIndexName returns an attribute KeyValue conforming to the +// "aws.dynamodb.index_name" semantic conventions. It represents the value of the +// `IndexName` request parameter. +func AWSDynamoDBIndexName(val string) attribute.KeyValue { + return AWSDynamoDBIndexNameKey.String(val) +} + +// AWSDynamoDBItemCollectionMetrics returns an attribute KeyValue conforming to +// the "aws.dynamodb.item_collection_metrics" semantic conventions. It represents +// the JSON-serialized value of the `ItemCollectionMetrics` response field. +func AWSDynamoDBItemCollectionMetrics(val string) attribute.KeyValue { + return AWSDynamoDBItemCollectionMetricsKey.String(val) +} + +// AWSDynamoDBLimit returns an attribute KeyValue conforming to the +// "aws.dynamodb.limit" semantic conventions. It represents the value of the +// `Limit` request parameter. +func AWSDynamoDBLimit(val int) attribute.KeyValue { + return AWSDynamoDBLimitKey.Int(val) +} + +// AWSDynamoDBLocalSecondaryIndexes returns an attribute KeyValue conforming to +// the "aws.dynamodb.local_secondary_indexes" semantic conventions. It represents +// the JSON-serialized value of each item of the `LocalSecondaryIndexes` request +// field. +func AWSDynamoDBLocalSecondaryIndexes(val ...string) attribute.KeyValue { + return AWSDynamoDBLocalSecondaryIndexesKey.StringSlice(val) +} + +// AWSDynamoDBProjection returns an attribute KeyValue conforming to the +// "aws.dynamodb.projection" semantic conventions. It represents the value of the +// `ProjectionExpression` request parameter. +func AWSDynamoDBProjection(val string) attribute.KeyValue { + return AWSDynamoDBProjectionKey.String(val) +} + +// AWSDynamoDBProvisionedReadCapacity returns an attribute KeyValue conforming to +// the "aws.dynamodb.provisioned_read_capacity" semantic conventions. It +// represents the value of the `ProvisionedThroughput.ReadCapacityUnits` request +// parameter. +func AWSDynamoDBProvisionedReadCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedReadCapacityKey.Float64(val) +} + +// AWSDynamoDBProvisionedWriteCapacity returns an attribute KeyValue conforming +// to the "aws.dynamodb.provisioned_write_capacity" semantic conventions. It +// represents the value of the `ProvisionedThroughput.WriteCapacityUnits` request +// parameter. +func AWSDynamoDBProvisionedWriteCapacity(val float64) attribute.KeyValue { + return AWSDynamoDBProvisionedWriteCapacityKey.Float64(val) +} + +// AWSDynamoDBScanForward returns an attribute KeyValue conforming to the +// "aws.dynamodb.scan_forward" semantic conventions. It represents the value of +// the `ScanIndexForward` request parameter. +func AWSDynamoDBScanForward(val bool) attribute.KeyValue { + return AWSDynamoDBScanForwardKey.Bool(val) +} + +// AWSDynamoDBScannedCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.scanned_count" semantic conventions. It represents the value of +// the `ScannedCount` response parameter. +func AWSDynamoDBScannedCount(val int) attribute.KeyValue { + return AWSDynamoDBScannedCountKey.Int(val) +} + +// AWSDynamoDBSegment returns an attribute KeyValue conforming to the +// "aws.dynamodb.segment" semantic conventions. It represents the value of the +// `Segment` request parameter. +func AWSDynamoDBSegment(val int) attribute.KeyValue { + return AWSDynamoDBSegmentKey.Int(val) +} + +// AWSDynamoDBSelect returns an attribute KeyValue conforming to the +// "aws.dynamodb.select" semantic conventions. It represents the value of the +// `Select` request parameter. +func AWSDynamoDBSelect(val string) attribute.KeyValue { + return AWSDynamoDBSelectKey.String(val) +} + +// AWSDynamoDBTableCount returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_count" semantic conventions. It represents the number of +// items in the `TableNames` response parameter. +func AWSDynamoDBTableCount(val int) attribute.KeyValue { + return AWSDynamoDBTableCountKey.Int(val) +} + +// AWSDynamoDBTableNames returns an attribute KeyValue conforming to the +// "aws.dynamodb.table_names" semantic conventions. It represents the keys in the +// `RequestItems` object field. +func AWSDynamoDBTableNames(val ...string) attribute.KeyValue { + return AWSDynamoDBTableNamesKey.StringSlice(val) +} + +// AWSDynamoDBTotalSegments returns an attribute KeyValue conforming to the +// "aws.dynamodb.total_segments" semantic conventions. It represents the value of +// the `TotalSegments` request parameter. +func AWSDynamoDBTotalSegments(val int) attribute.KeyValue { + return AWSDynamoDBTotalSegmentsKey.Int(val) +} + +// AWSECSClusterARN returns an attribute KeyValue conforming to the +// "aws.ecs.cluster.arn" semantic conventions. It represents the ARN of an +// [ECS cluster]. +// +// [ECS cluster]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/clusters.html +func AWSECSClusterARN(val string) attribute.KeyValue { + return AWSECSClusterARNKey.String(val) +} + +// AWSECSContainerARN returns an attribute KeyValue conforming to the +// "aws.ecs.container.arn" semantic conventions. It represents the Amazon +// Resource Name (ARN) of an [ECS container instance]. +// +// [ECS container instance]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ECS_instances.html +func AWSECSContainerARN(val string) attribute.KeyValue { + return AWSECSContainerARNKey.String(val) +} + +// AWSECSTaskARN returns an attribute KeyValue conforming to the +// "aws.ecs.task.arn" semantic conventions. It represents the ARN of a running +// [ECS task]. +// +// [ECS task]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/ecs-account-settings.html#ecs-resource-ids +func AWSECSTaskARN(val string) attribute.KeyValue { + return AWSECSTaskARNKey.String(val) +} + +// AWSECSTaskFamily returns an attribute KeyValue conforming to the +// "aws.ecs.task.family" semantic conventions. It represents the family name of +// the [ECS task definition] used to create the ECS task. +// +// [ECS task definition]: https://docs.aws.amazon.com/AmazonECS/latest/developerguide/task_definitions.html +func AWSECSTaskFamily(val string) attribute.KeyValue { + return AWSECSTaskFamilyKey.String(val) +} + +// AWSECSTaskID returns an attribute KeyValue conforming to the "aws.ecs.task.id" +// semantic conventions. It represents the ID of a running ECS task. The ID MUST +// be extracted from `task.arn`. +func AWSECSTaskID(val string) attribute.KeyValue { + return AWSECSTaskIDKey.String(val) +} + +// AWSECSTaskRevision returns an attribute KeyValue conforming to the +// "aws.ecs.task.revision" semantic conventions. It represents the revision for +// the task definition used to create the ECS task. +func AWSECSTaskRevision(val string) attribute.KeyValue { + return AWSECSTaskRevisionKey.String(val) +} + +// AWSEKSClusterARN returns an attribute KeyValue conforming to the +// "aws.eks.cluster.arn" semantic conventions. It represents the ARN of an EKS +// cluster. +func AWSEKSClusterARN(val string) attribute.KeyValue { + return AWSEKSClusterARNKey.String(val) +} + +// AWSExtendedRequestID returns an attribute KeyValue conforming to the +// "aws.extended_request_id" semantic conventions. It represents the AWS extended +// request ID as returned in the response header `x-amz-id-2`. +func AWSExtendedRequestID(val string) attribute.KeyValue { + return AWSExtendedRequestIDKey.String(val) +} + +// AWSKinesisStreamName returns an attribute KeyValue conforming to the +// "aws.kinesis.stream_name" semantic conventions. It represents the name of the +// AWS Kinesis [stream] the request refers to. Corresponds to the `--stream-name` +// parameter of the Kinesis [describe-stream] operation. +// +// [stream]: https://docs.aws.amazon.com/streams/latest/dev/introduction.html +// [describe-stream]: https://docs.aws.amazon.com/cli/latest/reference/kinesis/describe-stream.html +func AWSKinesisStreamName(val string) attribute.KeyValue { + return AWSKinesisStreamNameKey.String(val) +} + +// AWSLambdaInvokedARN returns an attribute KeyValue conforming to the +// "aws.lambda.invoked_arn" semantic conventions. It represents the full invoked +// ARN as provided on the `Context` passed to the function ( +// `Lambda-Runtime-Invoked-Function-Arn` header on the `/runtime/invocation/next` +// applicable). +func AWSLambdaInvokedARN(val string) attribute.KeyValue { + return AWSLambdaInvokedARNKey.String(val) +} + +// AWSLambdaResourceMappingID returns an attribute KeyValue conforming to the +// "aws.lambda.resource_mapping.id" semantic conventions. It represents the UUID +// of the [AWS Lambda EvenSource Mapping]. An event source is mapped to a lambda +// function. It's contents are read by Lambda and used to trigger a function. +// This isn't available in the lambda execution context or the lambda runtime +// environtment. This is going to be populated by the AWS SDK for each language +// when that UUID is present. Some of these operations are +// Create/Delete/Get/List/Update EventSourceMapping. +// +// [AWS Lambda EvenSource Mapping]: https://docs.aws.amazon.com/AWSCloudFormation/latest/UserGuide/aws-resource-lambda-eventsourcemapping.html +func AWSLambdaResourceMappingID(val string) attribute.KeyValue { + return AWSLambdaResourceMappingIDKey.String(val) +} + +// AWSLogGroupARNs returns an attribute KeyValue conforming to the +// "aws.log.group.arns" semantic conventions. It represents the Amazon Resource +// Name(s) (ARN) of the AWS log group(s). +func AWSLogGroupARNs(val ...string) attribute.KeyValue { + return AWSLogGroupARNsKey.StringSlice(val) +} + +// AWSLogGroupNames returns an attribute KeyValue conforming to the +// "aws.log.group.names" semantic conventions. It represents the name(s) of the +// AWS log group(s) an application is writing to. +func AWSLogGroupNames(val ...string) attribute.KeyValue { + return AWSLogGroupNamesKey.StringSlice(val) +} + +// AWSLogStreamARNs returns an attribute KeyValue conforming to the +// "aws.log.stream.arns" semantic conventions. It represents the ARN(s) of the +// AWS log stream(s). +func AWSLogStreamARNs(val ...string) attribute.KeyValue { + return AWSLogStreamARNsKey.StringSlice(val) +} + +// AWSLogStreamNames returns an attribute KeyValue conforming to the +// "aws.log.stream.names" semantic conventions. It represents the name(s) of the +// AWS log stream(s) an application is writing to. +func AWSLogStreamNames(val ...string) attribute.KeyValue { + return AWSLogStreamNamesKey.StringSlice(val) +} + +// AWSRequestID returns an attribute KeyValue conforming to the "aws.request_id" +// semantic conventions. It represents the AWS request ID as returned in the +// response headers `x-amzn-requestid`, `x-amzn-request-id` or `x-amz-request-id` +// . +func AWSRequestID(val string) attribute.KeyValue { + return AWSRequestIDKey.String(val) +} + +// AWSS3Bucket returns an attribute KeyValue conforming to the "aws.s3.bucket" +// semantic conventions. It represents the S3 bucket name the request refers to. +// Corresponds to the `--bucket` parameter of the [S3 API] operations. +// +// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html +func AWSS3Bucket(val string) attribute.KeyValue { + return AWSS3BucketKey.String(val) +} + +// AWSS3CopySource returns an attribute KeyValue conforming to the +// "aws.s3.copy_source" semantic conventions. It represents the source object (in +// the form `bucket`/`key`) for the copy operation. +func AWSS3CopySource(val string) attribute.KeyValue { + return AWSS3CopySourceKey.String(val) +} + +// AWSS3Delete returns an attribute KeyValue conforming to the "aws.s3.delete" +// semantic conventions. It represents the delete request container that +// specifies the objects to be deleted. +func AWSS3Delete(val string) attribute.KeyValue { + return AWSS3DeleteKey.String(val) +} + +// AWSS3Key returns an attribute KeyValue conforming to the "aws.s3.key" semantic +// conventions. It represents the S3 object key the request refers to. +// Corresponds to the `--key` parameter of the [S3 API] operations. +// +// [S3 API]: https://docs.aws.amazon.com/cli/latest/reference/s3api/index.html +func AWSS3Key(val string) attribute.KeyValue { + return AWSS3KeyKey.String(val) +} + +// AWSS3PartNumber returns an attribute KeyValue conforming to the +// "aws.s3.part_number" semantic conventions. It represents the part number of +// the part being uploaded in a multipart-upload operation. This is a positive +// integer between 1 and 10,000. +func AWSS3PartNumber(val int) attribute.KeyValue { + return AWSS3PartNumberKey.Int(val) +} + +// AWSS3UploadID returns an attribute KeyValue conforming to the +// "aws.s3.upload_id" semantic conventions. It represents the upload ID that +// identifies the multipart upload. +func AWSS3UploadID(val string) attribute.KeyValue { + return AWSS3UploadIDKey.String(val) +} + +// AWSSecretsmanagerSecretARN returns an attribute KeyValue conforming to the +// "aws.secretsmanager.secret.arn" semantic conventions. It represents the ARN of +// the Secret stored in the Secrets Mangger. +func AWSSecretsmanagerSecretARN(val string) attribute.KeyValue { + return AWSSecretsmanagerSecretARNKey.String(val) +} + +// AWSSNSTopicARN returns an attribute KeyValue conforming to the +// "aws.sns.topic.arn" semantic conventions. It represents the ARN of the AWS SNS +// Topic. An Amazon SNS [topic] is a logical access point that acts as a +// communication channel. +// +// [topic]: https://docs.aws.amazon.com/sns/latest/dg/sns-create-topic.html +func AWSSNSTopicARN(val string) attribute.KeyValue { + return AWSSNSTopicARNKey.String(val) +} + +// AWSSQSQueueURL returns an attribute KeyValue conforming to the +// "aws.sqs.queue.url" semantic conventions. It represents the URL of the AWS SQS +// Queue. It's a unique identifier for a queue in Amazon Simple Queue Service +// (SQS) and is used to access the queue and perform actions on it. +func AWSSQSQueueURL(val string) attribute.KeyValue { + return AWSSQSQueueURLKey.String(val) +} + +// AWSStepFunctionsActivityARN returns an attribute KeyValue conforming to the +// "aws.step_functions.activity.arn" semantic conventions. It represents the ARN +// of the AWS Step Functions Activity. +func AWSStepFunctionsActivityARN(val string) attribute.KeyValue { + return AWSStepFunctionsActivityARNKey.String(val) +} + +// AWSStepFunctionsStateMachineARN returns an attribute KeyValue conforming to +// the "aws.step_functions.state_machine.arn" semantic conventions. It represents +// the ARN of the AWS Step Functions State Machine. +func AWSStepFunctionsStateMachineARN(val string) attribute.KeyValue { + return AWSStepFunctionsStateMachineARNKey.String(val) +} + +// Enum values for aws.ecs.launchtype +var ( + // ec2 + // Stability: development + AWSECSLaunchtypeEC2 = AWSECSLaunchtypeKey.String("ec2") + // fargate + // Stability: development + AWSECSLaunchtypeFargate = AWSECSLaunchtypeKey.String("fargate") +) + +// Namespace: az +const ( + // AzNamespaceKey is the attribute Key conforming to the "az.namespace" semantic + // conventions. It represents the [Azure Resource Provider Namespace] as + // recognized by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Microsoft.Storage", "Microsoft.KeyVault", "Microsoft.ServiceBus" + // + // [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers + AzNamespaceKey = attribute.Key("az.namespace") + + // AzServiceRequestIDKey is the attribute Key conforming to the + // "az.service_request_id" semantic conventions. It represents the unique + // identifier of the service request. It's generated by the Azure service and + // returned with the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "00000000-0000-0000-0000-000000000000" + AzServiceRequestIDKey = attribute.Key("az.service_request_id") +) + +// AzNamespace returns an attribute KeyValue conforming to the "az.namespace" +// semantic conventions. It represents the [Azure Resource Provider Namespace] as +// recognized by the client. +// +// [Azure Resource Provider Namespace]: https://learn.microsoft.com/azure/azure-resource-manager/management/azure-services-resource-providers +func AzNamespace(val string) attribute.KeyValue { + return AzNamespaceKey.String(val) +} + +// AzServiceRequestID returns an attribute KeyValue conforming to the +// "az.service_request_id" semantic conventions. It represents the unique +// identifier of the service request. It's generated by the Azure service and +// returned with the response. +func AzServiceRequestID(val string) attribute.KeyValue { + return AzServiceRequestIDKey.String(val) +} + +// Namespace: azure +const ( + // AzureClientIDKey is the attribute Key conforming to the "azure.client.id" + // semantic conventions. It represents the unique identifier of the client + // instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "3ba4827d-4422-483f-b59f-85b74211c11d", "storage-client-1" + AzureClientIDKey = attribute.Key("azure.client.id") + + // AzureCosmosDBConnectionModeKey is the attribute Key conforming to the + // "azure.cosmosdb.connection.mode" semantic conventions. It represents the + // cosmos client connection mode. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AzureCosmosDBConnectionModeKey = attribute.Key("azure.cosmosdb.connection.mode") + + // AzureCosmosDBConsistencyLevelKey is the attribute Key conforming to the + // "azure.cosmosdb.consistency.level" semantic conventions. It represents the + // account or request [consistency level]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Eventual", "ConsistentPrefix", "BoundedStaleness", "Strong", + // "Session" + // + // [consistency level]: https://learn.microsoft.com/azure/cosmos-db/consistency-levels + AzureCosmosDBConsistencyLevelKey = attribute.Key("azure.cosmosdb.consistency.level") + + // AzureCosmosDBOperationContactedRegionsKey is the attribute Key conforming to + // the "azure.cosmosdb.operation.contacted_regions" semantic conventions. It + // represents the list of regions contacted during operation in the order that + // they were contacted. If there is more than one region listed, it indicates + // that the operation was performed on multiple regions i.e. cross-regional + // call. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "North Central US", "Australia East", "Australia Southeast" + // Note: Region name matches the format of `displayName` in [Azure Location API] + // + // [Azure Location API]: https://learn.microsoft.com/rest/api/subscription/subscriptions/list-locations?view=rest-subscription-2021-10-01&tabs=HTTP#location + AzureCosmosDBOperationContactedRegionsKey = attribute.Key("azure.cosmosdb.operation.contacted_regions") + + // AzureCosmosDBOperationRequestChargeKey is the attribute Key conforming to the + // "azure.cosmosdb.operation.request_charge" semantic conventions. It represents + // the number of request units consumed by the operation. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 46.18, 1.0 + AzureCosmosDBOperationRequestChargeKey = attribute.Key("azure.cosmosdb.operation.request_charge") + + // AzureCosmosDBRequestBodySizeKey is the attribute Key conforming to the + // "azure.cosmosdb.request.body.size" semantic conventions. It represents the + // request payload size in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + AzureCosmosDBRequestBodySizeKey = attribute.Key("azure.cosmosdb.request.body.size") + + // AzureCosmosDBResponseSubStatusCodeKey is the attribute Key conforming to the + // "azure.cosmosdb.response.sub_status_code" semantic conventions. It represents + // the cosmos DB sub status code. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1000, 1002 + AzureCosmosDBResponseSubStatusCodeKey = attribute.Key("azure.cosmosdb.response.sub_status_code") +) + +// AzureClientID returns an attribute KeyValue conforming to the +// "azure.client.id" semantic conventions. It represents the unique identifier of +// the client instance. +func AzureClientID(val string) attribute.KeyValue { + return AzureClientIDKey.String(val) +} + +// AzureCosmosDBOperationContactedRegions returns an attribute KeyValue +// conforming to the "azure.cosmosdb.operation.contacted_regions" semantic +// conventions. It represents the list of regions contacted during operation in +// the order that they were contacted. If there is more than one region listed, +// it indicates that the operation was performed on multiple regions i.e. +// cross-regional call. +func AzureCosmosDBOperationContactedRegions(val ...string) attribute.KeyValue { + return AzureCosmosDBOperationContactedRegionsKey.StringSlice(val) +} + +// AzureCosmosDBOperationRequestCharge returns an attribute KeyValue conforming +// to the "azure.cosmosdb.operation.request_charge" semantic conventions. It +// represents the number of request units consumed by the operation. +func AzureCosmosDBOperationRequestCharge(val float64) attribute.KeyValue { + return AzureCosmosDBOperationRequestChargeKey.Float64(val) +} + +// AzureCosmosDBRequestBodySize returns an attribute KeyValue conforming to the +// "azure.cosmosdb.request.body.size" semantic conventions. It represents the +// request payload size in bytes. +func AzureCosmosDBRequestBodySize(val int) attribute.KeyValue { + return AzureCosmosDBRequestBodySizeKey.Int(val) +} + +// AzureCosmosDBResponseSubStatusCode returns an attribute KeyValue conforming to +// the "azure.cosmosdb.response.sub_status_code" semantic conventions. It +// represents the cosmos DB sub status code. +func AzureCosmosDBResponseSubStatusCode(val int) attribute.KeyValue { + return AzureCosmosDBResponseSubStatusCodeKey.Int(val) +} + +// Enum values for azure.cosmosdb.connection.mode +var ( + // Gateway (HTTP) connection. + // Stability: development + AzureCosmosDBConnectionModeGateway = AzureCosmosDBConnectionModeKey.String("gateway") + // Direct connection. + // Stability: development + AzureCosmosDBConnectionModeDirect = AzureCosmosDBConnectionModeKey.String("direct") +) + +// Enum values for azure.cosmosdb.consistency.level +var ( + // strong + // Stability: development + AzureCosmosDBConsistencyLevelStrong = AzureCosmosDBConsistencyLevelKey.String("Strong") + // bounded_staleness + // Stability: development + AzureCosmosDBConsistencyLevelBoundedStaleness = AzureCosmosDBConsistencyLevelKey.String("BoundedStaleness") + // session + // Stability: development + AzureCosmosDBConsistencyLevelSession = AzureCosmosDBConsistencyLevelKey.String("Session") + // eventual + // Stability: development + AzureCosmosDBConsistencyLevelEventual = AzureCosmosDBConsistencyLevelKey.String("Eventual") + // consistent_prefix + // Stability: development + AzureCosmosDBConsistencyLevelConsistentPrefix = AzureCosmosDBConsistencyLevelKey.String("ConsistentPrefix") +) + +// Namespace: browser +const ( + // BrowserBrandsKey is the attribute Key conforming to the "browser.brands" + // semantic conventions. It represents the array of brand name and version + // separated by a space. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: " Not A;Brand 99", "Chromium 99", "Chrome 99" + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.brands`). + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + BrowserBrandsKey = attribute.Key("browser.brands") + + // BrowserLanguageKey is the attribute Key conforming to the "browser.language" + // semantic conventions. It represents the preferred language of the user using + // the browser. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "en", "en-US", "fr", "fr-FR" + // Note: This value is intended to be taken from the Navigator API + // `navigator.language`. + BrowserLanguageKey = attribute.Key("browser.language") + + // BrowserMobileKey is the attribute Key conforming to the "browser.mobile" + // semantic conventions. It represents a boolean that is true if the browser is + // running on a mobile device. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.mobile`). If unavailable, this attribute SHOULD be + // left unset. + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + BrowserMobileKey = attribute.Key("browser.mobile") + + // BrowserPlatformKey is the attribute Key conforming to the "browser.platform" + // semantic conventions. It represents the platform on which the browser is + // running. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Windows", "macOS", "Android" + // Note: This value is intended to be taken from the [UA client hints API] ( + // `navigator.userAgentData.platform`). If unavailable, the legacy + // `navigator.platform` API SHOULD NOT be used instead and this attribute SHOULD + // be left unset in order for the values to be consistent. + // The list of possible values is defined in the + // [W3C User-Agent Client Hints specification]. Note that some (but not all) of + // these values can overlap with values in the + // [`os.type` and `os.name` attributes]. However, for consistency, the values in + // the `browser.platform` attribute should capture the exact value that the user + // agent provides. + // + // [UA client hints API]: https://wicg.github.io/ua-client-hints/#interface + // [W3C User-Agent Client Hints specification]: https://wicg.github.io/ua-client-hints/#sec-ch-ua-platform + // [`os.type` and `os.name` attributes]: ./os.md + BrowserPlatformKey = attribute.Key("browser.platform") +) + +// BrowserBrands returns an attribute KeyValue conforming to the "browser.brands" +// semantic conventions. It represents the array of brand name and version +// separated by a space. +func BrowserBrands(val ...string) attribute.KeyValue { + return BrowserBrandsKey.StringSlice(val) +} + +// BrowserLanguage returns an attribute KeyValue conforming to the +// "browser.language" semantic conventions. It represents the preferred language +// of the user using the browser. +func BrowserLanguage(val string) attribute.KeyValue { + return BrowserLanguageKey.String(val) +} + +// BrowserMobile returns an attribute KeyValue conforming to the "browser.mobile" +// semantic conventions. It represents a boolean that is true if the browser is +// running on a mobile device. +func BrowserMobile(val bool) attribute.KeyValue { + return BrowserMobileKey.Bool(val) +} + +// BrowserPlatform returns an attribute KeyValue conforming to the +// "browser.platform" semantic conventions. It represents the platform on which +// the browser is running. +func BrowserPlatform(val string) attribute.KeyValue { + return BrowserPlatformKey.String(val) +} + +// Namespace: cassandra +const ( + // CassandraConsistencyLevelKey is the attribute Key conforming to the + // "cassandra.consistency.level" semantic conventions. It represents the + // consistency level of the query. Based on consistency values from [CQL]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [CQL]: https://docs.datastax.com/en/cassandra-oss/3.0/cassandra/dml/dmlConfigConsistency.html + CassandraConsistencyLevelKey = attribute.Key("cassandra.consistency.level") + + // CassandraCoordinatorDCKey is the attribute Key conforming to the + // "cassandra.coordinator.dc" semantic conventions. It represents the data + // center of the coordinating node for a query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: us-west-2 + CassandraCoordinatorDCKey = attribute.Key("cassandra.coordinator.dc") + + // CassandraCoordinatorIDKey is the attribute Key conforming to the + // "cassandra.coordinator.id" semantic conventions. It represents the ID of the + // coordinating node for a query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: be13faa2-8574-4d71-926d-27f16cf8a7af + CassandraCoordinatorIDKey = attribute.Key("cassandra.coordinator.id") + + // CassandraPageSizeKey is the attribute Key conforming to the + // "cassandra.page.size" semantic conventions. It represents the fetch size used + // for paging, i.e. how many rows will be returned at once. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 5000 + CassandraPageSizeKey = attribute.Key("cassandra.page.size") + + // CassandraQueryIdempotentKey is the attribute Key conforming to the + // "cassandra.query.idempotent" semantic conventions. It represents the whether + // or not the query is idempotent. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + CassandraQueryIdempotentKey = attribute.Key("cassandra.query.idempotent") + + // CassandraSpeculativeExecutionCountKey is the attribute Key conforming to the + // "cassandra.speculative_execution.count" semantic conventions. It represents + // the number of times a query was speculatively executed. Not set or `0` if the + // query was not executed speculatively. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 2 + CassandraSpeculativeExecutionCountKey = attribute.Key("cassandra.speculative_execution.count") +) + +// CassandraCoordinatorDC returns an attribute KeyValue conforming to the +// "cassandra.coordinator.dc" semantic conventions. It represents the data center +// of the coordinating node for a query. +func CassandraCoordinatorDC(val string) attribute.KeyValue { + return CassandraCoordinatorDCKey.String(val) +} + +// CassandraCoordinatorID returns an attribute KeyValue conforming to the +// "cassandra.coordinator.id" semantic conventions. It represents the ID of the +// coordinating node for a query. +func CassandraCoordinatorID(val string) attribute.KeyValue { + return CassandraCoordinatorIDKey.String(val) +} + +// CassandraPageSize returns an attribute KeyValue conforming to the +// "cassandra.page.size" semantic conventions. It represents the fetch size used +// for paging, i.e. how many rows will be returned at once. +func CassandraPageSize(val int) attribute.KeyValue { + return CassandraPageSizeKey.Int(val) +} + +// CassandraQueryIdempotent returns an attribute KeyValue conforming to the +// "cassandra.query.idempotent" semantic conventions. It represents the whether +// or not the query is idempotent. +func CassandraQueryIdempotent(val bool) attribute.KeyValue { + return CassandraQueryIdempotentKey.Bool(val) +} + +// CassandraSpeculativeExecutionCount returns an attribute KeyValue conforming to +// the "cassandra.speculative_execution.count" semantic conventions. It +// represents the number of times a query was speculatively executed. Not set or +// `0` if the query was not executed speculatively. +func CassandraSpeculativeExecutionCount(val int) attribute.KeyValue { + return CassandraSpeculativeExecutionCountKey.Int(val) +} + +// Enum values for cassandra.consistency.level +var ( + // all + // Stability: development + CassandraConsistencyLevelAll = CassandraConsistencyLevelKey.String("all") + // each_quorum + // Stability: development + CassandraConsistencyLevelEachQuorum = CassandraConsistencyLevelKey.String("each_quorum") + // quorum + // Stability: development + CassandraConsistencyLevelQuorum = CassandraConsistencyLevelKey.String("quorum") + // local_quorum + // Stability: development + CassandraConsistencyLevelLocalQuorum = CassandraConsistencyLevelKey.String("local_quorum") + // one + // Stability: development + CassandraConsistencyLevelOne = CassandraConsistencyLevelKey.String("one") + // two + // Stability: development + CassandraConsistencyLevelTwo = CassandraConsistencyLevelKey.String("two") + // three + // Stability: development + CassandraConsistencyLevelThree = CassandraConsistencyLevelKey.String("three") + // local_one + // Stability: development + CassandraConsistencyLevelLocalOne = CassandraConsistencyLevelKey.String("local_one") + // any + // Stability: development + CassandraConsistencyLevelAny = CassandraConsistencyLevelKey.String("any") + // serial + // Stability: development + CassandraConsistencyLevelSerial = CassandraConsistencyLevelKey.String("serial") + // local_serial + // Stability: development + CassandraConsistencyLevelLocalSerial = CassandraConsistencyLevelKey.String("local_serial") +) + +// Namespace: cicd +const ( + // CICDPipelineActionNameKey is the attribute Key conforming to the + // "cicd.pipeline.action.name" semantic conventions. It represents the kind of + // action a pipeline run is performing. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "BUILD", "RUN", "SYNC" + CICDPipelineActionNameKey = attribute.Key("cicd.pipeline.action.name") + + // CICDPipelineNameKey is the attribute Key conforming to the + // "cicd.pipeline.name" semantic conventions. It represents the human readable + // name of the pipeline within a CI/CD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Build and Test", "Lint", "Deploy Go Project", + // "deploy_to_environment" + CICDPipelineNameKey = attribute.Key("cicd.pipeline.name") + + // CICDPipelineResultKey is the attribute Key conforming to the + // "cicd.pipeline.result" semantic conventions. It represents the result of a + // pipeline run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "timeout", "skipped" + CICDPipelineResultKey = attribute.Key("cicd.pipeline.result") + + // CICDPipelineRunIDKey is the attribute Key conforming to the + // "cicd.pipeline.run.id" semantic conventions. It represents the unique + // identifier of a pipeline run within a CI/CD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "120912" + CICDPipelineRunIDKey = attribute.Key("cicd.pipeline.run.id") + + // CICDPipelineRunStateKey is the attribute Key conforming to the + // "cicd.pipeline.run.state" semantic conventions. It represents the pipeline + // run goes through these states during its lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pending", "executing", "finalizing" + CICDPipelineRunStateKey = attribute.Key("cicd.pipeline.run.state") + + // CICDPipelineRunURLFullKey is the attribute Key conforming to the + // "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of + // the pipeline run, providing the complete address in order to locate and + // identify the pipeline run. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763?pr=1075" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDPipelineRunURLFullKey = attribute.Key("cicd.pipeline.run.url.full") + + // CICDPipelineTaskNameKey is the attribute Key conforming to the + // "cicd.pipeline.task.name" semantic conventions. It represents the human + // readable name of a task within a pipeline. Task here most closely aligns with + // a [computing process] in a pipeline. Other terms for tasks include commands, + // steps, and procedures. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Run GoLang Linter", "Go Build", "go-test", "deploy_binary" + // + // [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) + CICDPipelineTaskNameKey = attribute.Key("cicd.pipeline.task.name") + + // CICDPipelineTaskRunIDKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.id" semantic conventions. It represents the unique + // identifier of a task run within a pipeline. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "12097" + CICDPipelineTaskRunIDKey = attribute.Key("cicd.pipeline.task.run.id") + + // CICDPipelineTaskRunResultKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.result" semantic conventions. It represents the + // result of a task run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "timeout", "skipped" + CICDPipelineTaskRunResultKey = attribute.Key("cicd.pipeline.task.run.result") + + // CICDPipelineTaskRunURLFullKey is the attribute Key conforming to the + // "cicd.pipeline.task.run.url.full" semantic conventions. It represents the + // [URL] of the pipeline task run, providing the complete address in order to + // locate and identify the pipeline task run. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/open-telemetry/semantic-conventions/actions/runs/9753949763/job/26920038674?pr=1075" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDPipelineTaskRunURLFullKey = attribute.Key("cicd.pipeline.task.run.url.full") + + // CICDPipelineTaskTypeKey is the attribute Key conforming to the + // "cicd.pipeline.task.type" semantic conventions. It represents the type of the + // task within a pipeline. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "build", "test", "deploy" + CICDPipelineTaskTypeKey = attribute.Key("cicd.pipeline.task.type") + + // CICDSystemComponentKey is the attribute Key conforming to the + // "cicd.system.component" semantic conventions. It represents the name of a + // component of the CICD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "controller", "scheduler", "agent" + CICDSystemComponentKey = attribute.Key("cicd.system.component") + + // CICDWorkerIDKey is the attribute Key conforming to the "cicd.worker.id" + // semantic conventions. It represents the unique identifier of a worker within + // a CICD system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "abc123", "10.0.1.2", "controller" + CICDWorkerIDKey = attribute.Key("cicd.worker.id") + + // CICDWorkerNameKey is the attribute Key conforming to the "cicd.worker.name" + // semantic conventions. It represents the name of a worker within a CICD + // system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "agent-abc", "controller", "Ubuntu LTS" + CICDWorkerNameKey = attribute.Key("cicd.worker.name") + + // CICDWorkerStateKey is the attribute Key conforming to the "cicd.worker.state" + // semantic conventions. It represents the state of a CICD worker / agent. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "idle", "busy", "down" + CICDWorkerStateKey = attribute.Key("cicd.worker.state") + + // CICDWorkerURLFullKey is the attribute Key conforming to the + // "cicd.worker.url.full" semantic conventions. It represents the [URL] of the + // worker, providing the complete address in order to locate and identify the + // worker. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://cicd.example.org/worker/abc123" + // + // [URL]: https://wikipedia.org/wiki/URL + CICDWorkerURLFullKey = attribute.Key("cicd.worker.url.full") +) + +// CICDPipelineName returns an attribute KeyValue conforming to the +// "cicd.pipeline.name" semantic conventions. It represents the human readable +// name of the pipeline within a CI/CD system. +func CICDPipelineName(val string) attribute.KeyValue { + return CICDPipelineNameKey.String(val) +} + +// CICDPipelineRunID returns an attribute KeyValue conforming to the +// "cicd.pipeline.run.id" semantic conventions. It represents the unique +// identifier of a pipeline run within a CI/CD system. +func CICDPipelineRunID(val string) attribute.KeyValue { + return CICDPipelineRunIDKey.String(val) +} + +// CICDPipelineRunURLFull returns an attribute KeyValue conforming to the +// "cicd.pipeline.run.url.full" semantic conventions. It represents the [URL] of +// the pipeline run, providing the complete address in order to locate and +// identify the pipeline run. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDPipelineRunURLFull(val string) attribute.KeyValue { + return CICDPipelineRunURLFullKey.String(val) +} + +// CICDPipelineTaskName returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.name" semantic conventions. It represents the human +// readable name of a task within a pipeline. Task here most closely aligns with +// a [computing process] in a pipeline. Other terms for tasks include commands, +// steps, and procedures. +// +// [computing process]: https://wikipedia.org/wiki/Pipeline_(computing) +func CICDPipelineTaskName(val string) attribute.KeyValue { + return CICDPipelineTaskNameKey.String(val) +} + +// CICDPipelineTaskRunID returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.run.id" semantic conventions. It represents the unique +// identifier of a task run within a pipeline. +func CICDPipelineTaskRunID(val string) attribute.KeyValue { + return CICDPipelineTaskRunIDKey.String(val) +} + +// CICDPipelineTaskRunURLFull returns an attribute KeyValue conforming to the +// "cicd.pipeline.task.run.url.full" semantic conventions. It represents the +// [URL] of the pipeline task run, providing the complete address in order to +// locate and identify the pipeline task run. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDPipelineTaskRunURLFull(val string) attribute.KeyValue { + return CICDPipelineTaskRunURLFullKey.String(val) +} + +// CICDSystemComponent returns an attribute KeyValue conforming to the +// "cicd.system.component" semantic conventions. It represents the name of a +// component of the CICD system. +func CICDSystemComponent(val string) attribute.KeyValue { + return CICDSystemComponentKey.String(val) +} + +// CICDWorkerID returns an attribute KeyValue conforming to the "cicd.worker.id" +// semantic conventions. It represents the unique identifier of a worker within a +// CICD system. +func CICDWorkerID(val string) attribute.KeyValue { + return CICDWorkerIDKey.String(val) +} + +// CICDWorkerName returns an attribute KeyValue conforming to the +// "cicd.worker.name" semantic conventions. It represents the name of a worker +// within a CICD system. +func CICDWorkerName(val string) attribute.KeyValue { + return CICDWorkerNameKey.String(val) +} + +// CICDWorkerURLFull returns an attribute KeyValue conforming to the +// "cicd.worker.url.full" semantic conventions. It represents the [URL] of the +// worker, providing the complete address in order to locate and identify the +// worker. +// +// [URL]: https://wikipedia.org/wiki/URL +func CICDWorkerURLFull(val string) attribute.KeyValue { + return CICDWorkerURLFullKey.String(val) +} + +// Enum values for cicd.pipeline.action.name +var ( + // The pipeline run is executing a build. + // Stability: development + CICDPipelineActionNameBuild = CICDPipelineActionNameKey.String("BUILD") + // The pipeline run is executing. + // Stability: development + CICDPipelineActionNameRun = CICDPipelineActionNameKey.String("RUN") + // The pipeline run is executing a sync. + // Stability: development + CICDPipelineActionNameSync = CICDPipelineActionNameKey.String("SYNC") +) + +// Enum values for cicd.pipeline.result +var ( + // The pipeline run finished successfully. + // Stability: development + CICDPipelineResultSuccess = CICDPipelineResultKey.String("success") + // The pipeline run did not finish successfully, eg. due to a compile error or a + // failing test. Such failures are usually detected by non-zero exit codes of + // the tools executed in the pipeline run. + // Stability: development + CICDPipelineResultFailure = CICDPipelineResultKey.String("failure") + // The pipeline run failed due to an error in the CICD system, eg. due to the + // worker being killed. + // Stability: development + CICDPipelineResultError = CICDPipelineResultKey.String("error") + // A timeout caused the pipeline run to be interrupted. + // Stability: development + CICDPipelineResultTimeout = CICDPipelineResultKey.String("timeout") + // The pipeline run was cancelled, eg. by a user manually cancelling the + // pipeline run. + // Stability: development + CICDPipelineResultCancellation = CICDPipelineResultKey.String("cancellation") + // The pipeline run was skipped, eg. due to a precondition not being met. + // Stability: development + CICDPipelineResultSkip = CICDPipelineResultKey.String("skip") +) + +// Enum values for cicd.pipeline.run.state +var ( + // The run pending state spans from the event triggering the pipeline run until + // the execution of the run starts (eg. time spent in a queue, provisioning + // agents, creating run resources). + // + // Stability: development + CICDPipelineRunStatePending = CICDPipelineRunStateKey.String("pending") + // The executing state spans the execution of any run tasks (eg. build, test). + // Stability: development + CICDPipelineRunStateExecuting = CICDPipelineRunStateKey.String("executing") + // The finalizing state spans from when the run has finished executing (eg. + // cleanup of run resources). + // Stability: development + CICDPipelineRunStateFinalizing = CICDPipelineRunStateKey.String("finalizing") +) + +// Enum values for cicd.pipeline.task.run.result +var ( + // The task run finished successfully. + // Stability: development + CICDPipelineTaskRunResultSuccess = CICDPipelineTaskRunResultKey.String("success") + // The task run did not finish successfully, eg. due to a compile error or a + // failing test. Such failures are usually detected by non-zero exit codes of + // the tools executed in the task run. + // Stability: development + CICDPipelineTaskRunResultFailure = CICDPipelineTaskRunResultKey.String("failure") + // The task run failed due to an error in the CICD system, eg. due to the worker + // being killed. + // Stability: development + CICDPipelineTaskRunResultError = CICDPipelineTaskRunResultKey.String("error") + // A timeout caused the task run to be interrupted. + // Stability: development + CICDPipelineTaskRunResultTimeout = CICDPipelineTaskRunResultKey.String("timeout") + // The task run was cancelled, eg. by a user manually cancelling the task run. + // Stability: development + CICDPipelineTaskRunResultCancellation = CICDPipelineTaskRunResultKey.String("cancellation") + // The task run was skipped, eg. due to a precondition not being met. + // Stability: development + CICDPipelineTaskRunResultSkip = CICDPipelineTaskRunResultKey.String("skip") +) + +// Enum values for cicd.pipeline.task.type +var ( + // build + // Stability: development + CICDPipelineTaskTypeBuild = CICDPipelineTaskTypeKey.String("build") + // test + // Stability: development + CICDPipelineTaskTypeTest = CICDPipelineTaskTypeKey.String("test") + // deploy + // Stability: development + CICDPipelineTaskTypeDeploy = CICDPipelineTaskTypeKey.String("deploy") +) + +// Enum values for cicd.worker.state +var ( + // The worker is not performing work for the CICD system. It is available to the + // CICD system to perform work on (online / idle). + // Stability: development + CICDWorkerStateAvailable = CICDWorkerStateKey.String("available") + // The worker is performing work for the CICD system. + // Stability: development + CICDWorkerStateBusy = CICDWorkerStateKey.String("busy") + // The worker is not available to the CICD system (disconnected / down). + // Stability: development + CICDWorkerStateOffline = CICDWorkerStateKey.String("offline") +) + +// Namespace: client +const ( + // ClientAddressKey is the attribute Key conforming to the "client.address" + // semantic conventions. It represents the client address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix domain + // socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "client.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the server side, and when communicating through an + // intermediary, `client.address` SHOULD represent the client address behind any + // intermediaries, for example proxies, if it's available. + ClientAddressKey = attribute.Key("client.address") + + // ClientPortKey is the attribute Key conforming to the "client.port" semantic + // conventions. It represents the client port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + // Note: When observed from the server side, and when communicating through an + // intermediary, `client.port` SHOULD represent the client port behind any + // intermediaries, for example proxies, if it's available. + ClientPortKey = attribute.Key("client.port") +) + +// ClientAddress returns an attribute KeyValue conforming to the "client.address" +// semantic conventions. It represents the client address - domain name if +// available without reverse DNS lookup; otherwise, IP address or Unix domain +// socket name. +func ClientAddress(val string) attribute.KeyValue { + return ClientAddressKey.String(val) +} + +// ClientPort returns an attribute KeyValue conforming to the "client.port" +// semantic conventions. It represents the client port number. +func ClientPort(val int) attribute.KeyValue { + return ClientPortKey.Int(val) +} + +// Namespace: cloud +const ( + // CloudAccountIDKey is the attribute Key conforming to the "cloud.account.id" + // semantic conventions. It represents the cloud account ID the resource is + // assigned to. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "111111111111", "opentelemetry" + CloudAccountIDKey = attribute.Key("cloud.account.id") + + // CloudAvailabilityZoneKey is the attribute Key conforming to the + // "cloud.availability_zone" semantic conventions. It represents the cloud + // regions often have multiple, isolated locations known as zones to increase + // availability. Availability zone represents the zone where the resource is + // running. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-east-1c" + // Note: Availability zones are called "zones" on Alibaba Cloud and Google + // Cloud. + CloudAvailabilityZoneKey = attribute.Key("cloud.availability_zone") + + // CloudPlatformKey is the attribute Key conforming to the "cloud.platform" + // semantic conventions. It represents the cloud platform in use. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The prefix of the service SHOULD match the one specified in + // `cloud.provider`. + CloudPlatformKey = attribute.Key("cloud.platform") + + // CloudProviderKey is the attribute Key conforming to the "cloud.provider" + // semantic conventions. It represents the name of the cloud provider. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + CloudProviderKey = attribute.Key("cloud.provider") + + // CloudRegionKey is the attribute Key conforming to the "cloud.region" semantic + // conventions. It represents the geographical region within a cloud provider. + // When associated with a resource, this attribute specifies the region where + // the resource operates. When calling services or APIs deployed on a cloud, + // this attribute identifies the region where the called destination is + // deployed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1", "us-east-1" + // Note: Refer to your provider's docs to see the available regions, for example + // [Alibaba Cloud regions], [AWS regions], [Azure regions], + // [Google Cloud regions], or [Tencent Cloud regions]. + // + // [Alibaba Cloud regions]: https://www.alibabacloud.com/help/doc-detail/40654.htm + // [AWS regions]: https://aws.amazon.com/about-aws/global-infrastructure/regions_az/ + // [Azure regions]: https://azure.microsoft.com/global-infrastructure/geographies/ + // [Google Cloud regions]: https://cloud.google.com/about/locations + // [Tencent Cloud regions]: https://www.tencentcloud.com/document/product/213/6091 + CloudRegionKey = attribute.Key("cloud.region") + + // CloudResourceIDKey is the attribute Key conforming to the "cloud.resource_id" + // semantic conventions. It represents the cloud provider-specific native + // identifier of the monitored cloud resource (e.g. an [ARN] on AWS, a + // [fully qualified resource ID] on Azure, a [full resource name] on GCP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "arn:aws:lambda:REGION:ACCOUNT_ID:function:my-function", + // "//run.googleapis.com/projects/PROJECT_ID/locations/LOCATION_ID/services/SERVICE_ID", + // "/subscriptions//resourceGroups/ + // /providers/Microsoft.Web/sites//functions/" + // Note: On some cloud providers, it may not be possible to determine the full + // ID at startup, + // so it may be necessary to set `cloud.resource_id` as a span attribute + // instead. + // + // The exact value to use for `cloud.resource_id` depends on the cloud provider. + // The following well-known definitions MUST be used if you set this attribute + // and they apply: + // + // - **AWS Lambda:** The function [ARN]. + // Take care not to use the "invoked ARN" directly but replace any + // [alias suffix] + // with the resolved function version, as the same runtime instance may be + // invocable with + // multiple different aliases. + // - **GCP:** The [URI of the resource] + // - **Azure:** The [Fully Qualified Resource ID] of the invoked function, + // *not* the function app, having the form + // + // `/subscriptions//resourceGroups//providers/Microsoft.Web/sites//functions/` + // . + // This means that a span attribute MUST be used, as an Azure function app + // can host multiple functions that would usually share + // a TracerProvider. + // + // + // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html + // [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id + // [full resource name]: https://google.aip.dev/122#full-resource-names + // [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html + // [alias suffix]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html + // [URI of the resource]: https://cloud.google.com/iam/docs/full-resource-names + // [Fully Qualified Resource ID]: https://docs.microsoft.com/rest/api/resources/resources/get-by-id + CloudResourceIDKey = attribute.Key("cloud.resource_id") +) + +// CloudAccountID returns an attribute KeyValue conforming to the +// "cloud.account.id" semantic conventions. It represents the cloud account ID +// the resource is assigned to. +func CloudAccountID(val string) attribute.KeyValue { + return CloudAccountIDKey.String(val) +} + +// CloudAvailabilityZone returns an attribute KeyValue conforming to the +// "cloud.availability_zone" semantic conventions. It represents the cloud +// regions often have multiple, isolated locations known as zones to increase +// availability. Availability zone represents the zone where the resource is +// running. +func CloudAvailabilityZone(val string) attribute.KeyValue { + return CloudAvailabilityZoneKey.String(val) +} + +// CloudRegion returns an attribute KeyValue conforming to the "cloud.region" +// semantic conventions. It represents the geographical region within a cloud +// provider. When associated with a resource, this attribute specifies the region +// where the resource operates. When calling services or APIs deployed on a +// cloud, this attribute identifies the region where the called destination is +// deployed. +func CloudRegion(val string) attribute.KeyValue { + return CloudRegionKey.String(val) +} + +// CloudResourceID returns an attribute KeyValue conforming to the +// "cloud.resource_id" semantic conventions. It represents the cloud +// provider-specific native identifier of the monitored cloud resource (e.g. an +// [ARN] on AWS, a [fully qualified resource ID] on Azure, a [full resource name] +// on GCP). +// +// [ARN]: https://docs.aws.amazon.com/general/latest/gr/aws-arns-and-namespaces.html +// [fully qualified resource ID]: https://learn.microsoft.com/rest/api/resources/resources/get-by-id +// [full resource name]: https://google.aip.dev/122#full-resource-names +func CloudResourceID(val string) attribute.KeyValue { + return CloudResourceIDKey.String(val) +} + +// Enum values for cloud.platform +var ( + // Alibaba Cloud Elastic Compute Service + // Stability: development + CloudPlatformAlibabaCloudECS = CloudPlatformKey.String("alibaba_cloud_ecs") + // Alibaba Cloud Function Compute + // Stability: development + CloudPlatformAlibabaCloudFC = CloudPlatformKey.String("alibaba_cloud_fc") + // Red Hat OpenShift on Alibaba Cloud + // Stability: development + CloudPlatformAlibabaCloudOpenShift = CloudPlatformKey.String("alibaba_cloud_openshift") + // AWS Elastic Compute Cloud + // Stability: development + CloudPlatformAWSEC2 = CloudPlatformKey.String("aws_ec2") + // AWS Elastic Container Service + // Stability: development + CloudPlatformAWSECS = CloudPlatformKey.String("aws_ecs") + // AWS Elastic Kubernetes Service + // Stability: development + CloudPlatformAWSEKS = CloudPlatformKey.String("aws_eks") + // AWS Lambda + // Stability: development + CloudPlatformAWSLambda = CloudPlatformKey.String("aws_lambda") + // AWS Elastic Beanstalk + // Stability: development + CloudPlatformAWSElasticBeanstalk = CloudPlatformKey.String("aws_elastic_beanstalk") + // AWS App Runner + // Stability: development + CloudPlatformAWSAppRunner = CloudPlatformKey.String("aws_app_runner") + // Red Hat OpenShift on AWS (ROSA) + // Stability: development + CloudPlatformAWSOpenShift = CloudPlatformKey.String("aws_openshift") + // Azure Virtual Machines + // Stability: development + CloudPlatformAzureVM = CloudPlatformKey.String("azure_vm") + // Azure Container Apps + // Stability: development + CloudPlatformAzureContainerApps = CloudPlatformKey.String("azure_container_apps") + // Azure Container Instances + // Stability: development + CloudPlatformAzureContainerInstances = CloudPlatformKey.String("azure_container_instances") + // Azure Kubernetes Service + // Stability: development + CloudPlatformAzureAKS = CloudPlatformKey.String("azure_aks") + // Azure Functions + // Stability: development + CloudPlatformAzureFunctions = CloudPlatformKey.String("azure_functions") + // Azure App Service + // Stability: development + CloudPlatformAzureAppService = CloudPlatformKey.String("azure_app_service") + // Azure Red Hat OpenShift + // Stability: development + CloudPlatformAzureOpenShift = CloudPlatformKey.String("azure_openshift") + // Google Bare Metal Solution (BMS) + // Stability: development + CloudPlatformGCPBareMetalSolution = CloudPlatformKey.String("gcp_bare_metal_solution") + // Google Cloud Compute Engine (GCE) + // Stability: development + CloudPlatformGCPComputeEngine = CloudPlatformKey.String("gcp_compute_engine") + // Google Cloud Run + // Stability: development + CloudPlatformGCPCloudRun = CloudPlatformKey.String("gcp_cloud_run") + // Google Cloud Kubernetes Engine (GKE) + // Stability: development + CloudPlatformGCPKubernetesEngine = CloudPlatformKey.String("gcp_kubernetes_engine") + // Google Cloud Functions (GCF) + // Stability: development + CloudPlatformGCPCloudFunctions = CloudPlatformKey.String("gcp_cloud_functions") + // Google Cloud App Engine (GAE) + // Stability: development + CloudPlatformGCPAppEngine = CloudPlatformKey.String("gcp_app_engine") + // Red Hat OpenShift on Google Cloud + // Stability: development + CloudPlatformGCPOpenShift = CloudPlatformKey.String("gcp_openshift") + // Red Hat OpenShift on IBM Cloud + // Stability: development + CloudPlatformIBMCloudOpenShift = CloudPlatformKey.String("ibm_cloud_openshift") + // Compute on Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudPlatformOracleCloudCompute = CloudPlatformKey.String("oracle_cloud_compute") + // Kubernetes Engine (OKE) on Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudPlatformOracleCloudOKE = CloudPlatformKey.String("oracle_cloud_oke") + // Tencent Cloud Cloud Virtual Machine (CVM) + // Stability: development + CloudPlatformTencentCloudCVM = CloudPlatformKey.String("tencent_cloud_cvm") + // Tencent Cloud Elastic Kubernetes Service (EKS) + // Stability: development + CloudPlatformTencentCloudEKS = CloudPlatformKey.String("tencent_cloud_eks") + // Tencent Cloud Serverless Cloud Function (SCF) + // Stability: development + CloudPlatformTencentCloudSCF = CloudPlatformKey.String("tencent_cloud_scf") +) + +// Enum values for cloud.provider +var ( + // Alibaba Cloud + // Stability: development + CloudProviderAlibabaCloud = CloudProviderKey.String("alibaba_cloud") + // Amazon Web Services + // Stability: development + CloudProviderAWS = CloudProviderKey.String("aws") + // Microsoft Azure + // Stability: development + CloudProviderAzure = CloudProviderKey.String("azure") + // Google Cloud Platform + // Stability: development + CloudProviderGCP = CloudProviderKey.String("gcp") + // Heroku Platform as a Service + // Stability: development + CloudProviderHeroku = CloudProviderKey.String("heroku") + // IBM Cloud + // Stability: development + CloudProviderIBMCloud = CloudProviderKey.String("ibm_cloud") + // Oracle Cloud Infrastructure (OCI) + // Stability: development + CloudProviderOracleCloud = CloudProviderKey.String("oracle_cloud") + // Tencent Cloud + // Stability: development + CloudProviderTencentCloud = CloudProviderKey.String("tencent_cloud") +) + +// Namespace: cloudevents +const ( + // CloudEventsEventIDKey is the attribute Key conforming to the + // "cloudevents.event_id" semantic conventions. It represents the [event_id] + // uniquely identifies the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123e4567-e89b-12d3-a456-426614174000", "0001" + // + // [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id + CloudEventsEventIDKey = attribute.Key("cloudevents.event_id") + + // CloudEventsEventSourceKey is the attribute Key conforming to the + // "cloudevents.event_source" semantic conventions. It represents the [source] + // identifies the context in which an event happened. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://github.com/cloudevents", "/cloudevents/spec/pull/123", + // "my-service" + // + // [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 + CloudEventsEventSourceKey = attribute.Key("cloudevents.event_source") + + // CloudEventsEventSpecVersionKey is the attribute Key conforming to the + // "cloudevents.event_spec_version" semantic conventions. It represents the + // [version of the CloudEvents specification] which the event uses. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + // + // [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion + CloudEventsEventSpecVersionKey = attribute.Key("cloudevents.event_spec_version") + + // CloudEventsEventSubjectKey is the attribute Key conforming to the + // "cloudevents.event_subject" semantic conventions. It represents the [subject] + // of the event in the context of the event producer (identified by source). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: mynewfile.jpg + // + // [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject + CloudEventsEventSubjectKey = attribute.Key("cloudevents.event_subject") + + // CloudEventsEventTypeKey is the attribute Key conforming to the + // "cloudevents.event_type" semantic conventions. It represents the [event_type] + // contains a value describing the type of event related to the originating + // occurrence. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "com.github.pull_request.opened", "com.example.object.deleted.v2" + // + // [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type + CloudEventsEventTypeKey = attribute.Key("cloudevents.event_type") +) + +// CloudEventsEventID returns an attribute KeyValue conforming to the +// "cloudevents.event_id" semantic conventions. It represents the [event_id] +// uniquely identifies the event. +// +// [event_id]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#id +func CloudEventsEventID(val string) attribute.KeyValue { + return CloudEventsEventIDKey.String(val) +} + +// CloudEventsEventSource returns an attribute KeyValue conforming to the +// "cloudevents.event_source" semantic conventions. It represents the [source] +// identifies the context in which an event happened. +// +// [source]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#source-1 +func CloudEventsEventSource(val string) attribute.KeyValue { + return CloudEventsEventSourceKey.String(val) +} + +// CloudEventsEventSpecVersion returns an attribute KeyValue conforming to the +// "cloudevents.event_spec_version" semantic conventions. It represents the +// [version of the CloudEvents specification] which the event uses. +// +// [version of the CloudEvents specification]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#specversion +func CloudEventsEventSpecVersion(val string) attribute.KeyValue { + return CloudEventsEventSpecVersionKey.String(val) +} + +// CloudEventsEventSubject returns an attribute KeyValue conforming to the +// "cloudevents.event_subject" semantic conventions. It represents the [subject] +// of the event in the context of the event producer (identified by source). +// +// [subject]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#subject +func CloudEventsEventSubject(val string) attribute.KeyValue { + return CloudEventsEventSubjectKey.String(val) +} + +// CloudEventsEventType returns an attribute KeyValue conforming to the +// "cloudevents.event_type" semantic conventions. It represents the [event_type] +// contains a value describing the type of event related to the originating +// occurrence. +// +// [event_type]: https://github.com/cloudevents/spec/blob/v1.0.2/cloudevents/spec.md#type +func CloudEventsEventType(val string) attribute.KeyValue { + return CloudEventsEventTypeKey.String(val) +} + +// Namespace: cloudfoundry +const ( + // CloudFoundryAppIDKey is the attribute Key conforming to the + // "cloudfoundry.app.id" semantic conventions. It represents the guid of the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.application_id`. This is the same value as + // reported by `cf app --guid`. + CloudFoundryAppIDKey = attribute.Key("cloudfoundry.app.id") + + // CloudFoundryAppInstanceIDKey is the attribute Key conforming to the + // "cloudfoundry.app.instance.id" semantic conventions. It represents the index + // of the application instance. 0 when just one instance is active. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0", "1" + // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] + // . + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the application instance index for applications + // deployed on the runtime. + // + // Application instrumentation should use the value from environment + // variable `CF_INSTANCE_INDEX`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + CloudFoundryAppInstanceIDKey = attribute.Key("cloudfoundry.app.instance.id") + + // CloudFoundryAppNameKey is the attribute Key conforming to the + // "cloudfoundry.app.name" semantic conventions. It represents the name of the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-app-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.application_name`. This is the same value + // as reported by `cf apps`. + CloudFoundryAppNameKey = attribute.Key("cloudfoundry.app.name") + + // CloudFoundryOrgIDKey is the attribute Key conforming to the + // "cloudfoundry.org.id" semantic conventions. It represents the guid of the + // CloudFoundry org the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.org_id`. This is the same value as + // reported by `cf org --guid`. + CloudFoundryOrgIDKey = attribute.Key("cloudfoundry.org.id") + + // CloudFoundryOrgNameKey is the attribute Key conforming to the + // "cloudfoundry.org.name" semantic conventions. It represents the name of the + // CloudFoundry organization the app is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-org-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.org_name`. This is the same value as + // reported by `cf orgs`. + CloudFoundryOrgNameKey = attribute.Key("cloudfoundry.org.name") + + // CloudFoundryProcessIDKey is the attribute Key conforming to the + // "cloudfoundry.process.id" semantic conventions. It represents the UID + // identifying the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.process_id`. It is supposed to be equal to + // `VCAP_APPLICATION.app_id` for applications deployed to the runtime. + // For system components, this could be the actual PID. + CloudFoundryProcessIDKey = attribute.Key("cloudfoundry.process.id") + + // CloudFoundryProcessTypeKey is the attribute Key conforming to the + // "cloudfoundry.process.type" semantic conventions. It represents the type of + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "web" + // Note: CloudFoundry applications can consist of multiple jobs. Usually the + // main process will be of type `web`. There can be additional background + // tasks or side-cars with different process types. + CloudFoundryProcessTypeKey = attribute.Key("cloudfoundry.process.type") + + // CloudFoundrySpaceIDKey is the attribute Key conforming to the + // "cloudfoundry.space.id" semantic conventions. It represents the guid of the + // CloudFoundry space the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.space_id`. This is the same value as + // reported by `cf space --guid`. + CloudFoundrySpaceIDKey = attribute.Key("cloudfoundry.space.id") + + // CloudFoundrySpaceNameKey is the attribute Key conforming to the + // "cloudfoundry.space.name" semantic conventions. It represents the name of the + // CloudFoundry space the application is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-space-name" + // Note: Application instrumentation should use the value from environment + // variable `VCAP_APPLICATION.space_name`. This is the same value as + // reported by `cf spaces`. + CloudFoundrySpaceNameKey = attribute.Key("cloudfoundry.space.name") + + // CloudFoundrySystemIDKey is the attribute Key conforming to the + // "cloudfoundry.system.id" semantic conventions. It represents a guid or + // another name describing the event source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cf/gorouter" + // Note: CloudFoundry defines the `source_id` in the [Loggregator v2 envelope]. + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the component name, e.g. "gorouter", for + // CloudFoundry components. + // + // When system components are instrumented, values from the + // [Bosh spec] + // should be used. The `system.id` should be set to + // `spec.deployment/spec.name`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec + CloudFoundrySystemIDKey = attribute.Key("cloudfoundry.system.id") + + // CloudFoundrySystemInstanceIDKey is the attribute Key conforming to the + // "cloudfoundry.system.instance.id" semantic conventions. It represents a guid + // describing the concrete instance of the event source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: CloudFoundry defines the `instance_id` in the [Loggregator v2 envelope] + // . + // It is used for logs and metrics emitted by CloudFoundry. It is + // supposed to contain the vm id for CloudFoundry components. + // + // When system components are instrumented, values from the + // [Bosh spec] + // should be used. The `system.instance.id` should be set to `spec.id`. + // + // [Loggregator v2 envelope]: https://github.com/cloudfoundry/loggregator-api#v2-envelope + // [Bosh spec]: https://bosh.io/docs/jobs/#properties-spec + CloudFoundrySystemInstanceIDKey = attribute.Key("cloudfoundry.system.instance.id") +) + +// CloudFoundryAppID returns an attribute KeyValue conforming to the +// "cloudfoundry.app.id" semantic conventions. It represents the guid of the +// application. +func CloudFoundryAppID(val string) attribute.KeyValue { + return CloudFoundryAppIDKey.String(val) +} + +// CloudFoundryAppInstanceID returns an attribute KeyValue conforming to the +// "cloudfoundry.app.instance.id" semantic conventions. It represents the index +// of the application instance. 0 when just one instance is active. +func CloudFoundryAppInstanceID(val string) attribute.KeyValue { + return CloudFoundryAppInstanceIDKey.String(val) +} + +// CloudFoundryAppName returns an attribute KeyValue conforming to the +// "cloudfoundry.app.name" semantic conventions. It represents the name of the +// application. +func CloudFoundryAppName(val string) attribute.KeyValue { + return CloudFoundryAppNameKey.String(val) +} + +// CloudFoundryOrgID returns an attribute KeyValue conforming to the +// "cloudfoundry.org.id" semantic conventions. It represents the guid of the +// CloudFoundry org the application is running in. +func CloudFoundryOrgID(val string) attribute.KeyValue { + return CloudFoundryOrgIDKey.String(val) +} + +// CloudFoundryOrgName returns an attribute KeyValue conforming to the +// "cloudfoundry.org.name" semantic conventions. It represents the name of the +// CloudFoundry organization the app is running in. +func CloudFoundryOrgName(val string) attribute.KeyValue { + return CloudFoundryOrgNameKey.String(val) +} + +// CloudFoundryProcessID returns an attribute KeyValue conforming to the +// "cloudfoundry.process.id" semantic conventions. It represents the UID +// identifying the process. +func CloudFoundryProcessID(val string) attribute.KeyValue { + return CloudFoundryProcessIDKey.String(val) +} + +// CloudFoundryProcessType returns an attribute KeyValue conforming to the +// "cloudfoundry.process.type" semantic conventions. It represents the type of +// process. +func CloudFoundryProcessType(val string) attribute.KeyValue { + return CloudFoundryProcessTypeKey.String(val) +} + +// CloudFoundrySpaceID returns an attribute KeyValue conforming to the +// "cloudfoundry.space.id" semantic conventions. It represents the guid of the +// CloudFoundry space the application is running in. +func CloudFoundrySpaceID(val string) attribute.KeyValue { + return CloudFoundrySpaceIDKey.String(val) +} + +// CloudFoundrySpaceName returns an attribute KeyValue conforming to the +// "cloudfoundry.space.name" semantic conventions. It represents the name of the +// CloudFoundry space the application is running in. +func CloudFoundrySpaceName(val string) attribute.KeyValue { + return CloudFoundrySpaceNameKey.String(val) +} + +// CloudFoundrySystemID returns an attribute KeyValue conforming to the +// "cloudfoundry.system.id" semantic conventions. It represents a guid or another +// name describing the event source. +func CloudFoundrySystemID(val string) attribute.KeyValue { + return CloudFoundrySystemIDKey.String(val) +} + +// CloudFoundrySystemInstanceID returns an attribute KeyValue conforming to the +// "cloudfoundry.system.instance.id" semantic conventions. It represents a guid +// describing the concrete instance of the event source. +func CloudFoundrySystemInstanceID(val string) attribute.KeyValue { + return CloudFoundrySystemInstanceIDKey.String(val) +} + +// Namespace: code +const ( + // CodeColumnNumberKey is the attribute Key conforming to the + // "code.column.number" semantic conventions. It represents the column number in + // `code.file.path` best representing the operation. It SHOULD point within the + // code unit named in `code.function.name`. This attribute MUST NOT be used on + // the Profile signal since the data is already captured in 'message Line'. This + // constraint is imposed to prevent redundancy and maintain data integrity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + CodeColumnNumberKey = attribute.Key("code.column.number") + + // CodeFilePathKey is the attribute Key conforming to the "code.file.path" + // semantic conventions. It represents the source code file name that identifies + // the code unit as uniquely as possible (preferably an absolute file path). + // This attribute MUST NOT be used on the Profile signal since the data is + // already captured in 'message Function'. This constraint is imposed to prevent + // redundancy and maintain data integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: /usr/local/MyApplication/content_root/app/index.php + CodeFilePathKey = attribute.Key("code.file.path") + + // CodeFunctionNameKey is the attribute Key conforming to the + // "code.function.name" semantic conventions. It represents the method or + // function fully-qualified name without arguments. The value should fit the + // natural representation of the language runtime, which is also likely the same + // used within `code.stacktrace` attribute value. This attribute MUST NOT be + // used on the Profile signal since the data is already captured in 'message + // Function'. This constraint is imposed to prevent redundancy and maintain data + // integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "com.example.MyHttpService.serveRequest", + // "GuzzleHttp\Client::transfer", "fopen" + // Note: Values and format depends on each language runtime, thus it is + // impossible to provide an exhaustive list of examples. + // The values are usually the same (or prefixes of) the ones found in native + // stack trace representation stored in + // `code.stacktrace` without information on arguments. + // + // Examples: + // + // - Java method: `com.example.MyHttpService.serveRequest` + // - Java anonymous class method: `com.mycompany.Main$1.myMethod` + // - Java lambda method: + // `com.mycompany.Main$$Lambda/0x0000748ae4149c00.myMethod` + // - PHP function: `GuzzleHttp\Client::transfer` + // - Go function: `github.com/my/repo/pkg.foo.func5` + // - Elixir: `OpenTelemetry.Ctx.new` + // - Erlang: `opentelemetry_ctx:new` + // - Rust: `playground::my_module::my_cool_func` + // - C function: `fopen` + CodeFunctionNameKey = attribute.Key("code.function.name") + + // CodeLineNumberKey is the attribute Key conforming to the "code.line.number" + // semantic conventions. It represents the line number in `code.file.path` best + // representing the operation. It SHOULD point within the code unit named in + // `code.function.name`. This attribute MUST NOT be used on the Profile signal + // since the data is already captured in 'message Line'. This constraint is + // imposed to prevent redundancy and maintain data integrity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + CodeLineNumberKey = attribute.Key("code.line.number") + + // CodeStacktraceKey is the attribute Key conforming to the "code.stacktrace" + // semantic conventions. It represents a stacktrace as a string in the natural + // representation for the language runtime. The representation is identical to + // [`exception.stacktrace`]. This attribute MUST NOT be used on the Profile + // signal since the data is already captured in 'message Location'. This + // constraint is imposed to prevent redundancy and maintain data integrity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at + // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at + // com.example.GenerateTrace.main(GenerateTrace.java:5) + // + // [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation + CodeStacktraceKey = attribute.Key("code.stacktrace") +) + +// CodeColumnNumber returns an attribute KeyValue conforming to the +// "code.column.number" semantic conventions. It represents the column number in +// `code.file.path` best representing the operation. It SHOULD point within the +// code unit named in `code.function.name`. This attribute MUST NOT be used on +// the Profile signal since the data is already captured in 'message Line'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +func CodeColumnNumber(val int) attribute.KeyValue { + return CodeColumnNumberKey.Int(val) +} + +// CodeFilePath returns an attribute KeyValue conforming to the "code.file.path" +// semantic conventions. It represents the source code file name that identifies +// the code unit as uniquely as possible (preferably an absolute file path). This +// attribute MUST NOT be used on the Profile signal since the data is already +// captured in 'message Function'. This constraint is imposed to prevent +// redundancy and maintain data integrity. +func CodeFilePath(val string) attribute.KeyValue { + return CodeFilePathKey.String(val) +} + +// CodeFunctionName returns an attribute KeyValue conforming to the +// "code.function.name" semantic conventions. It represents the method or +// function fully-qualified name without arguments. The value should fit the +// natural representation of the language runtime, which is also likely the same +// used within `code.stacktrace` attribute value. This attribute MUST NOT be used +// on the Profile signal since the data is already captured in 'message +// Function'. This constraint is imposed to prevent redundancy and maintain data +// integrity. +func CodeFunctionName(val string) attribute.KeyValue { + return CodeFunctionNameKey.String(val) +} + +// CodeLineNumber returns an attribute KeyValue conforming to the +// "code.line.number" semantic conventions. It represents the line number in +// `code.file.path` best representing the operation. It SHOULD point within the +// code unit named in `code.function.name`. This attribute MUST NOT be used on +// the Profile signal since the data is already captured in 'message Line'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +func CodeLineNumber(val int) attribute.KeyValue { + return CodeLineNumberKey.Int(val) +} + +// CodeStacktrace returns an attribute KeyValue conforming to the +// "code.stacktrace" semantic conventions. It represents a stacktrace as a string +// in the natural representation for the language runtime. The representation is +// identical to [`exception.stacktrace`]. This attribute MUST NOT be used on the +// Profile signal since the data is already captured in 'message Location'. This +// constraint is imposed to prevent redundancy and maintain data integrity. +// +// [`exception.stacktrace`]: /docs/exceptions/exceptions-spans.md#stacktrace-representation +func CodeStacktrace(val string) attribute.KeyValue { + return CodeStacktraceKey.String(val) +} + +// Namespace: container +const ( + // ContainerCommandKey is the attribute Key conforming to the + // "container.command" semantic conventions. It represents the command used to + // run the container (i.e. the command name). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol" + // Note: If using embedded credentials or sensitive data, it is recommended to + // remove them to prevent potential leakage. + ContainerCommandKey = attribute.Key("container.command") + + // ContainerCommandArgsKey is the attribute Key conforming to the + // "container.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) run by the + // container. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol", "--config", "config.yaml" + ContainerCommandArgsKey = attribute.Key("container.command_args") + + // ContainerCommandLineKey is the attribute Key conforming to the + // "container.command_line" semantic conventions. It represents the full command + // run by the container as a single string representing the full command. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcontribcol --config config.yaml" + ContainerCommandLineKey = attribute.Key("container.command_line") + + // ContainerCSIPluginNameKey is the attribute Key conforming to the + // "container.csi.plugin.name" semantic conventions. It represents the name of + // the CSI ([Container Storage Interface]) plugin used by the volume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pd.csi.storage.gke.io" + // Note: This can sometimes be referred to as a "driver" in CSI implementations. + // This should represent the `name` field of the GetPluginInfo RPC. + // + // [Container Storage Interface]: https://github.com/container-storage-interface/spec + ContainerCSIPluginNameKey = attribute.Key("container.csi.plugin.name") + + // ContainerCSIVolumeIDKey is the attribute Key conforming to the + // "container.csi.volume.id" semantic conventions. It represents the unique + // volume ID returned by the CSI ([Container Storage Interface]) plugin. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "projects/my-gcp-project/zones/my-gcp-zone/disks/my-gcp-disk" + // Note: This can sometimes be referred to as a "volume handle" in CSI + // implementations. This should represent the `Volume.volume_id` field in CSI + // spec. + // + // [Container Storage Interface]: https://github.com/container-storage-interface/spec + ContainerCSIVolumeIDKey = attribute.Key("container.csi.volume.id") + + // ContainerIDKey is the attribute Key conforming to the "container.id" semantic + // conventions. It represents the container ID. Usually a UUID, as for example + // used to [identify Docker containers]. The UUID might be abbreviated. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "a3bf90e006b2" + // + // [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification + ContainerIDKey = attribute.Key("container.id") + + // ContainerImageIDKey is the attribute Key conforming to the + // "container.image.id" semantic conventions. It represents the runtime specific + // image identifier. Usually a hash algorithm followed by a UUID. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "sha256:19c92d0a00d1b66d897bceaa7319bee0dd38a10a851c60bcec9474aa3f01e50f" + // Note: Docker defines a sha256 of the image id; `container.image.id` + // corresponds to the `Image` field from the Docker container inspect [API] + // endpoint. + // K8s defines a link to the container registry repository with digest + // `"imageID": "registry.azurecr.io /namespace/service/dockerfile@sha256:bdeabd40c3a8a492eaf9e8e44d0ebbb84bac7ee25ac0cf8a7159d25f62555625"` + // . + // The ID is assigned by the container runtime and can vary in different + // environments. Consider using `oci.manifest.digest` if it is important to + // identify the same image in different environments/runtimes. + // + // [API]: https://docs.docker.com/engine/api/v1.43/#tag/Container/operation/ContainerInspect + ContainerImageIDKey = attribute.Key("container.image.id") + + // ContainerImageNameKey is the attribute Key conforming to the + // "container.image.name" semantic conventions. It represents the name of the + // image the container was built on. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "gcr.io/opentelemetry/operator" + ContainerImageNameKey = attribute.Key("container.image.name") + + // ContainerImageRepoDigestsKey is the attribute Key conforming to the + // "container.image.repo_digests" semantic conventions. It represents the repo + // digests of the container image as provided by the container runtime. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "example@sha256:afcc7f1ac1b49db317a7196c902e61c6c3c4607d63599ee1a82d702d249a0ccb", + // "internal.registry.example.com:5000/example@sha256:b69959407d21e8a062e0416bf13405bb2b71ed7a84dde4158ebafacfa06f5578" + // Note: [Docker] and [CRI] report those under the `RepoDigests` field. + // + // [Docker]: https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect + // [CRI]: https://github.com/kubernetes/cri-api/blob/c75ef5b473bbe2d0a4fc92f82235efd665ea8e9f/pkg/apis/runtime/v1/api.proto#L1237-L1238 + ContainerImageRepoDigestsKey = attribute.Key("container.image.repo_digests") + + // ContainerImageTagsKey is the attribute Key conforming to the + // "container.image.tags" semantic conventions. It represents the container + // image tags. An example can be found in [Docker Image Inspect]. Should be only + // the `` section of the full name for example from + // `registry.example.com/my-org/my-image:`. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "v1.27.1", "3.5.7-0" + // + // [Docker Image Inspect]: https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect + ContainerImageTagsKey = attribute.Key("container.image.tags") + + // ContainerNameKey is the attribute Key conforming to the "container.name" + // semantic conventions. It represents the container name used by container + // runtime. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-autoconf" + ContainerNameKey = attribute.Key("container.name") + + // ContainerRuntimeKey is the attribute Key conforming to the + // "container.runtime" semantic conventions. It represents the container runtime + // managing this container. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "docker", "containerd", "rkt" + ContainerRuntimeKey = attribute.Key("container.runtime") +) + +// ContainerCommand returns an attribute KeyValue conforming to the +// "container.command" semantic conventions. It represents the command used to +// run the container (i.e. the command name). +func ContainerCommand(val string) attribute.KeyValue { + return ContainerCommandKey.String(val) +} + +// ContainerCommandArgs returns an attribute KeyValue conforming to the +// "container.command_args" semantic conventions. It represents the all the +// command arguments (including the command/executable itself) run by the +// container. +func ContainerCommandArgs(val ...string) attribute.KeyValue { + return ContainerCommandArgsKey.StringSlice(val) +} + +// ContainerCommandLine returns an attribute KeyValue conforming to the +// "container.command_line" semantic conventions. It represents the full command +// run by the container as a single string representing the full command. +func ContainerCommandLine(val string) attribute.KeyValue { + return ContainerCommandLineKey.String(val) +} + +// ContainerCSIPluginName returns an attribute KeyValue conforming to the +// "container.csi.plugin.name" semantic conventions. It represents the name of +// the CSI ([Container Storage Interface]) plugin used by the volume. +// +// [Container Storage Interface]: https://github.com/container-storage-interface/spec +func ContainerCSIPluginName(val string) attribute.KeyValue { + return ContainerCSIPluginNameKey.String(val) +} + +// ContainerCSIVolumeID returns an attribute KeyValue conforming to the +// "container.csi.volume.id" semantic conventions. It represents the unique +// volume ID returned by the CSI ([Container Storage Interface]) plugin. +// +// [Container Storage Interface]: https://github.com/container-storage-interface/spec +func ContainerCSIVolumeID(val string) attribute.KeyValue { + return ContainerCSIVolumeIDKey.String(val) +} + +// ContainerID returns an attribute KeyValue conforming to the "container.id" +// semantic conventions. It represents the container ID. Usually a UUID, as for +// example used to [identify Docker containers]. The UUID might be abbreviated. +// +// [identify Docker containers]: https://docs.docker.com/engine/containers/run/#container-identification +func ContainerID(val string) attribute.KeyValue { + return ContainerIDKey.String(val) +} + +// ContainerImageID returns an attribute KeyValue conforming to the +// "container.image.id" semantic conventions. It represents the runtime specific +// image identifier. Usually a hash algorithm followed by a UUID. +func ContainerImageID(val string) attribute.KeyValue { + return ContainerImageIDKey.String(val) +} + +// ContainerImageName returns an attribute KeyValue conforming to the +// "container.image.name" semantic conventions. It represents the name of the +// image the container was built on. +func ContainerImageName(val string) attribute.KeyValue { + return ContainerImageNameKey.String(val) +} + +// ContainerImageRepoDigests returns an attribute KeyValue conforming to the +// "container.image.repo_digests" semantic conventions. It represents the repo +// digests of the container image as provided by the container runtime. +func ContainerImageRepoDigests(val ...string) attribute.KeyValue { + return ContainerImageRepoDigestsKey.StringSlice(val) +} + +// ContainerImageTags returns an attribute KeyValue conforming to the +// "container.image.tags" semantic conventions. It represents the container image +// tags. An example can be found in [Docker Image Inspect]. Should be only the +// `` section of the full name for example from +// `registry.example.com/my-org/my-image:`. +// +// [Docker Image Inspect]: https://docs.docker.com/engine/api/v1.43/#tag/Image/operation/ImageInspect +func ContainerImageTags(val ...string) attribute.KeyValue { + return ContainerImageTagsKey.StringSlice(val) +} + +// ContainerName returns an attribute KeyValue conforming to the "container.name" +// semantic conventions. It represents the container name used by container +// runtime. +func ContainerName(val string) attribute.KeyValue { + return ContainerNameKey.String(val) +} + +// ContainerRuntime returns an attribute KeyValue conforming to the +// "container.runtime" semantic conventions. It represents the container runtime +// managing this container. +func ContainerRuntime(val string) attribute.KeyValue { + return ContainerRuntimeKey.String(val) +} + +// Namespace: cpu +const ( + // CPULogicalNumberKey is the attribute Key conforming to the + // "cpu.logical_number" semantic conventions. It represents the logical CPU + // number [0..n-1]. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1 + CPULogicalNumberKey = attribute.Key("cpu.logical_number") + + // CPUModeKey is the attribute Key conforming to the "cpu.mode" semantic + // conventions. It represents the mode of the CPU. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "user", "system" + CPUModeKey = attribute.Key("cpu.mode") +) + +// CPULogicalNumber returns an attribute KeyValue conforming to the +// "cpu.logical_number" semantic conventions. It represents the logical CPU +// number [0..n-1]. +func CPULogicalNumber(val int) attribute.KeyValue { + return CPULogicalNumberKey.Int(val) +} + +// Enum values for cpu.mode +var ( + // user + // Stability: development + CPUModeUser = CPUModeKey.String("user") + // system + // Stability: development + CPUModeSystem = CPUModeKey.String("system") + // nice + // Stability: development + CPUModeNice = CPUModeKey.String("nice") + // idle + // Stability: development + CPUModeIdle = CPUModeKey.String("idle") + // iowait + // Stability: development + CPUModeIOWait = CPUModeKey.String("iowait") + // interrupt + // Stability: development + CPUModeInterrupt = CPUModeKey.String("interrupt") + // steal + // Stability: development + CPUModeSteal = CPUModeKey.String("steal") + // kernel + // Stability: development + CPUModeKernel = CPUModeKey.String("kernel") +) + +// Namespace: db +const ( + // DBClientConnectionPoolNameKey is the attribute Key conforming to the + // "db.client.connection.pool.name" semantic conventions. It represents the name + // of the connection pool; unique within the instrumented application. In case + // the connection pool implementation doesn't provide a name, instrumentation + // SHOULD use a combination of parameters that would make the name unique, for + // example, combining attributes `server.address`, `server.port`, and + // `db.namespace`, formatted as `server.address:server.port/db.namespace`. + // Instrumentations that generate connection pool name following different + // patterns SHOULD document it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myDataSource" + DBClientConnectionPoolNameKey = attribute.Key("db.client.connection.pool.name") + + // DBClientConnectionStateKey is the attribute Key conforming to the + // "db.client.connection.state" semantic conventions. It represents the state of + // a connection in the pool. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "idle" + DBClientConnectionStateKey = attribute.Key("db.client.connection.state") + + // DBCollectionNameKey is the attribute Key conforming to the + // "db.collection.name" semantic conventions. It represents the name of a + // collection (table, container) within the database. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "public.users", "customers" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // The collection name SHOULD NOT be extracted from `db.query.text`, + // when the database system supports query text with multiple collections + // in non-batch operations. + // + // For batch operations, if the individual operations are known to have the same + // collection name then that collection name SHOULD be used. + DBCollectionNameKey = attribute.Key("db.collection.name") + + // DBNamespaceKey is the attribute Key conforming to the "db.namespace" semantic + // conventions. It represents the name of the database, fully qualified within + // the server address and port. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "customers", "test.users" + // Note: If a database system has multiple namespace components, they SHOULD be + // concatenated from the most general to the most specific namespace component, + // using `|` as a separator between the components. Any missing components (and + // their associated separators) SHOULD be omitted. + // Semantic conventions for individual database systems SHOULD document what + // `db.namespace` means in the context of that system. + // It is RECOMMENDED to capture the value as provided by the application without + // attempting to do any case normalization. + DBNamespaceKey = attribute.Key("db.namespace") + + // DBOperationBatchSizeKey is the attribute Key conforming to the + // "db.operation.batch.size" semantic conventions. It represents the number of + // queries included in a batch operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 2, 3, 4 + // Note: Operations are only considered batches when they contain two or more + // operations, and so `db.operation.batch.size` SHOULD never be `1`. + DBOperationBatchSizeKey = attribute.Key("db.operation.batch.size") + + // DBOperationNameKey is the attribute Key conforming to the "db.operation.name" + // semantic conventions. It represents the name of the operation or command + // being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "findAndModify", "HMSET", "SELECT" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // The operation name SHOULD NOT be extracted from `db.query.text`, + // when the database system supports query text with multiple operations + // in non-batch operations. + // + // If spaces can occur in the operation name, multiple consecutive spaces + // SHOULD be normalized to a single space. + // + // For batch operations, if the individual operations are known to have the same + // operation name + // then that operation name SHOULD be used prepended by `BATCH `, + // otherwise `db.operation.name` SHOULD be `BATCH` or some other database + // system specific term if more applicable. + DBOperationNameKey = attribute.Key("db.operation.name") + + // DBQuerySummaryKey is the attribute Key conforming to the "db.query.summary" + // semantic conventions. It represents the low cardinality summary of a database + // query. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SELECT wuser_table", "INSERT shipping_details SELECT orders", "get + // user by id" + // Note: The query summary describes a class of database queries and is useful + // as a grouping key, especially when analyzing telemetry for database + // calls involving complex queries. + // + // Summary may be available to the instrumentation through + // instrumentation hooks or other means. If it is not available, + // instrumentations + // that support query parsing SHOULD generate a summary following + // [Generating query summary] + // section. + // + // [Generating query summary]: /docs/database/database-spans.md#generating-a-summary-of-the-query + DBQuerySummaryKey = attribute.Key("db.query.summary") + + // DBQueryTextKey is the attribute Key conforming to the "db.query.text" + // semantic conventions. It represents the database query being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SELECT * FROM wuser_table where username = ?", "SET mykey ?" + // Note: For sanitization see [Sanitization of `db.query.text`]. + // For batch operations, if the individual operations are known to have the same + // query text then that query text SHOULD be used, otherwise all of the + // individual query texts SHOULD be concatenated with separator `; ` or some + // other database system specific separator if more applicable. + // Parameterized query text SHOULD NOT be sanitized. Even though parameterized + // query text can potentially have sensitive data, by using a parameterized + // query the user is giving a strong signal that any sensitive data will be + // passed as parameter values, and the benefit to observability of capturing the + // static part of the query text by default outweighs the risk. + // + // [Sanitization of `db.query.text`]: /docs/database/database-spans.md#sanitization-of-dbquerytext + DBQueryTextKey = attribute.Key("db.query.text") + + // DBResponseReturnedRowsKey is the attribute Key conforming to the + // "db.response.returned_rows" semantic conventions. It represents the number of + // rows returned by the operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 10, 30, 1000 + DBResponseReturnedRowsKey = attribute.Key("db.response.returned_rows") + + // DBResponseStatusCodeKey is the attribute Key conforming to the + // "db.response.status_code" semantic conventions. It represents the database + // response status code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "102", "ORA-17002", "08P01", "404" + // Note: The status code returned by the database. Usually it represents an + // error code, but may also represent partial success, warning, or differentiate + // between various types of successful outcomes. + // Semantic conventions for individual database systems SHOULD document what + // `db.response.status_code` means in the context of that system. + DBResponseStatusCodeKey = attribute.Key("db.response.status_code") + + // DBStoredProcedureNameKey is the attribute Key conforming to the + // "db.stored_procedure.name" semantic conventions. It represents the name of a + // stored procedure within the database. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GetCustomer" + // Note: It is RECOMMENDED to capture the value as provided by the application + // without attempting to do any case normalization. + // + // For batch operations, if the individual operations are known to have the same + // stored procedure name then that stored procedure name SHOULD be used. + DBStoredProcedureNameKey = attribute.Key("db.stored_procedure.name") + + // DBSystemNameKey is the attribute Key conforming to the "db.system.name" + // semantic conventions. It represents the database management system (DBMS) + // product as identified by the client instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + // Note: The actual DBMS may differ from the one identified by the client. For + // example, when using PostgreSQL client libraries to connect to a CockroachDB, + // the `db.system.name` is set to `postgresql` based on the instrumentation's + // best knowledge. + DBSystemNameKey = attribute.Key("db.system.name") +) + +// DBClientConnectionPoolName returns an attribute KeyValue conforming to the +// "db.client.connection.pool.name" semantic conventions. It represents the name +// of the connection pool; unique within the instrumented application. In case +// the connection pool implementation doesn't provide a name, instrumentation +// SHOULD use a combination of parameters that would make the name unique, for +// example, combining attributes `server.address`, `server.port`, and +// `db.namespace`, formatted as `server.address:server.port/db.namespace`. +// Instrumentations that generate connection pool name following different +// patterns SHOULD document it. +func DBClientConnectionPoolName(val string) attribute.KeyValue { + return DBClientConnectionPoolNameKey.String(val) +} + +// DBCollectionName returns an attribute KeyValue conforming to the +// "db.collection.name" semantic conventions. It represents the name of a +// collection (table, container) within the database. +func DBCollectionName(val string) attribute.KeyValue { + return DBCollectionNameKey.String(val) +} + +// DBNamespace returns an attribute KeyValue conforming to the "db.namespace" +// semantic conventions. It represents the name of the database, fully qualified +// within the server address and port. +func DBNamespace(val string) attribute.KeyValue { + return DBNamespaceKey.String(val) +} + +// DBOperationBatchSize returns an attribute KeyValue conforming to the +// "db.operation.batch.size" semantic conventions. It represents the number of +// queries included in a batch operation. +func DBOperationBatchSize(val int) attribute.KeyValue { + return DBOperationBatchSizeKey.Int(val) +} + +// DBOperationName returns an attribute KeyValue conforming to the +// "db.operation.name" semantic conventions. It represents the name of the +// operation or command being executed. +func DBOperationName(val string) attribute.KeyValue { + return DBOperationNameKey.String(val) +} + +// DBQuerySummary returns an attribute KeyValue conforming to the +// "db.query.summary" semantic conventions. It represents the low cardinality +// summary of a database query. +func DBQuerySummary(val string) attribute.KeyValue { + return DBQuerySummaryKey.String(val) +} + +// DBQueryText returns an attribute KeyValue conforming to the "db.query.text" +// semantic conventions. It represents the database query being executed. +func DBQueryText(val string) attribute.KeyValue { + return DBQueryTextKey.String(val) +} + +// DBResponseReturnedRows returns an attribute KeyValue conforming to the +// "db.response.returned_rows" semantic conventions. It represents the number of +// rows returned by the operation. +func DBResponseReturnedRows(val int) attribute.KeyValue { + return DBResponseReturnedRowsKey.Int(val) +} + +// DBResponseStatusCode returns an attribute KeyValue conforming to the +// "db.response.status_code" semantic conventions. It represents the database +// response status code. +func DBResponseStatusCode(val string) attribute.KeyValue { + return DBResponseStatusCodeKey.String(val) +} + +// DBStoredProcedureName returns an attribute KeyValue conforming to the +// "db.stored_procedure.name" semantic conventions. It represents the name of a +// stored procedure within the database. +func DBStoredProcedureName(val string) attribute.KeyValue { + return DBStoredProcedureNameKey.String(val) +} + +// Enum values for db.client.connection.state +var ( + // idle + // Stability: development + DBClientConnectionStateIdle = DBClientConnectionStateKey.String("idle") + // used + // Stability: development + DBClientConnectionStateUsed = DBClientConnectionStateKey.String("used") +) + +// Enum values for db.system.name +var ( + // Some other SQL database. Fallback only. + // Stability: development + DBSystemNameOtherSQL = DBSystemNameKey.String("other_sql") + // [Adabas (Adaptable Database System)] + // Stability: development + // + // [Adabas (Adaptable Database System)]: https://documentation.softwareag.com/?pf=adabas + DBSystemNameSoftwareagAdabas = DBSystemNameKey.String("softwareag.adabas") + // [Actian Ingres] + // Stability: development + // + // [Actian Ingres]: https://www.actian.com/databases/ingres/ + DBSystemNameActianIngres = DBSystemNameKey.String("actian.ingres") + // [Amazon DynamoDB] + // Stability: development + // + // [Amazon DynamoDB]: https://aws.amazon.com/pm/dynamodb/ + DBSystemNameAWSDynamoDB = DBSystemNameKey.String("aws.dynamodb") + // [Amazon Redshift] + // Stability: development + // + // [Amazon Redshift]: https://aws.amazon.com/redshift/ + DBSystemNameAWSRedshift = DBSystemNameKey.String("aws.redshift") + // [Azure Cosmos DB] + // Stability: development + // + // [Azure Cosmos DB]: https://learn.microsoft.com/azure/cosmos-db + DBSystemNameAzureCosmosDB = DBSystemNameKey.String("azure.cosmosdb") + // [InterSystems Caché] + // Stability: development + // + // [InterSystems Caché]: https://www.intersystems.com/products/cache/ + DBSystemNameIntersystemsCache = DBSystemNameKey.String("intersystems.cache") + // [Apache Cassandra] + // Stability: development + // + // [Apache Cassandra]: https://cassandra.apache.org/ + DBSystemNameCassandra = DBSystemNameKey.String("cassandra") + // [ClickHouse] + // Stability: development + // + // [ClickHouse]: https://clickhouse.com/ + DBSystemNameClickHouse = DBSystemNameKey.String("clickhouse") + // [CockroachDB] + // Stability: development + // + // [CockroachDB]: https://www.cockroachlabs.com/ + DBSystemNameCockroachDB = DBSystemNameKey.String("cockroachdb") + // [Couchbase] + // Stability: development + // + // [Couchbase]: https://www.couchbase.com/ + DBSystemNameCouchbase = DBSystemNameKey.String("couchbase") + // [Apache CouchDB] + // Stability: development + // + // [Apache CouchDB]: https://couchdb.apache.org/ + DBSystemNameCouchDB = DBSystemNameKey.String("couchdb") + // [Apache Derby] + // Stability: development + // + // [Apache Derby]: https://db.apache.org/derby/ + DBSystemNameDerby = DBSystemNameKey.String("derby") + // [Elasticsearch] + // Stability: development + // + // [Elasticsearch]: https://www.elastic.co/elasticsearch + DBSystemNameElasticsearch = DBSystemNameKey.String("elasticsearch") + // [Firebird] + // Stability: development + // + // [Firebird]: https://www.firebirdsql.org/ + DBSystemNameFirebirdSQL = DBSystemNameKey.String("firebirdsql") + // [Google Cloud Spanner] + // Stability: development + // + // [Google Cloud Spanner]: https://cloud.google.com/spanner + DBSystemNameGCPSpanner = DBSystemNameKey.String("gcp.spanner") + // [Apache Geode] + // Stability: development + // + // [Apache Geode]: https://geode.apache.org/ + DBSystemNameGeode = DBSystemNameKey.String("geode") + // [H2 Database] + // Stability: development + // + // [H2 Database]: https://h2database.com/ + DBSystemNameH2database = DBSystemNameKey.String("h2database") + // [Apache HBase] + // Stability: development + // + // [Apache HBase]: https://hbase.apache.org/ + DBSystemNameHBase = DBSystemNameKey.String("hbase") + // [Apache Hive] + // Stability: development + // + // [Apache Hive]: https://hive.apache.org/ + DBSystemNameHive = DBSystemNameKey.String("hive") + // [HyperSQL Database] + // Stability: development + // + // [HyperSQL Database]: https://hsqldb.org/ + DBSystemNameHSQLDB = DBSystemNameKey.String("hsqldb") + // [IBM Db2] + // Stability: development + // + // [IBM Db2]: https://www.ibm.com/db2 + DBSystemNameIBMDB2 = DBSystemNameKey.String("ibm.db2") + // [IBM Informix] + // Stability: development + // + // [IBM Informix]: https://www.ibm.com/products/informix + DBSystemNameIBMInformix = DBSystemNameKey.String("ibm.informix") + // [IBM Netezza] + // Stability: development + // + // [IBM Netezza]: https://www.ibm.com/products/netezza + DBSystemNameIBMNetezza = DBSystemNameKey.String("ibm.netezza") + // [InfluxDB] + // Stability: development + // + // [InfluxDB]: https://www.influxdata.com/ + DBSystemNameInfluxDB = DBSystemNameKey.String("influxdb") + // [Instant] + // Stability: development + // + // [Instant]: https://www.instantdb.com/ + DBSystemNameInstantDB = DBSystemNameKey.String("instantdb") + // [MariaDB] + // Stability: stable + // + // [MariaDB]: https://mariadb.org/ + DBSystemNameMariaDB = DBSystemNameKey.String("mariadb") + // [Memcached] + // Stability: development + // + // [Memcached]: https://memcached.org/ + DBSystemNameMemcached = DBSystemNameKey.String("memcached") + // [MongoDB] + // Stability: development + // + // [MongoDB]: https://www.mongodb.com/ + DBSystemNameMongoDB = DBSystemNameKey.String("mongodb") + // [Microsoft SQL Server] + // Stability: stable + // + // [Microsoft SQL Server]: https://www.microsoft.com/sql-server + DBSystemNameMicrosoftSQLServer = DBSystemNameKey.String("microsoft.sql_server") + // [MySQL] + // Stability: stable + // + // [MySQL]: https://www.mysql.com/ + DBSystemNameMySQL = DBSystemNameKey.String("mysql") + // [Neo4j] + // Stability: development + // + // [Neo4j]: https://neo4j.com/ + DBSystemNameNeo4j = DBSystemNameKey.String("neo4j") + // [OpenSearch] + // Stability: development + // + // [OpenSearch]: https://opensearch.org/ + DBSystemNameOpenSearch = DBSystemNameKey.String("opensearch") + // [Oracle Database] + // Stability: development + // + // [Oracle Database]: https://www.oracle.com/database/ + DBSystemNameOracleDB = DBSystemNameKey.String("oracle.db") + // [PostgreSQL] + // Stability: stable + // + // [PostgreSQL]: https://www.postgresql.org/ + DBSystemNamePostgreSQL = DBSystemNameKey.String("postgresql") + // [Redis] + // Stability: development + // + // [Redis]: https://redis.io/ + DBSystemNameRedis = DBSystemNameKey.String("redis") + // [SAP HANA] + // Stability: development + // + // [SAP HANA]: https://www.sap.com/products/technology-platform/hana/what-is-sap-hana.html + DBSystemNameSAPHANA = DBSystemNameKey.String("sap.hana") + // [SAP MaxDB] + // Stability: development + // + // [SAP MaxDB]: https://maxdb.sap.com/ + DBSystemNameSAPMaxDB = DBSystemNameKey.String("sap.maxdb") + // [SQLite] + // Stability: development + // + // [SQLite]: https://www.sqlite.org/ + DBSystemNameSQLite = DBSystemNameKey.String("sqlite") + // [Teradata] + // Stability: development + // + // [Teradata]: https://www.teradata.com/ + DBSystemNameTeradata = DBSystemNameKey.String("teradata") + // [Trino] + // Stability: development + // + // [Trino]: https://trino.io/ + DBSystemNameTrino = DBSystemNameKey.String("trino") +) + +// Namespace: deployment +const ( + // DeploymentEnvironmentNameKey is the attribute Key conforming to the + // "deployment.environment.name" semantic conventions. It represents the name of + // the [deployment environment] (aka deployment tier). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "staging", "production" + // Note: `deployment.environment.name` does not affect the uniqueness + // constraints defined through + // the `service.namespace`, `service.name` and `service.instance.id` resource + // attributes. + // This implies that resources carrying the following attribute combinations + // MUST be + // considered to be identifying the same service: + // + // - `service.name=frontend`, `deployment.environment.name=production` + // - `service.name=frontend`, `deployment.environment.name=staging`. + // + // + // [deployment environment]: https://wikipedia.org/wiki/Deployment_environment + DeploymentEnvironmentNameKey = attribute.Key("deployment.environment.name") + + // DeploymentIDKey is the attribute Key conforming to the "deployment.id" + // semantic conventions. It represents the id of the deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1208" + DeploymentIDKey = attribute.Key("deployment.id") + + // DeploymentNameKey is the attribute Key conforming to the "deployment.name" + // semantic conventions. It represents the name of the deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "deploy my app", "deploy-frontend" + DeploymentNameKey = attribute.Key("deployment.name") + + // DeploymentStatusKey is the attribute Key conforming to the + // "deployment.status" semantic conventions. It represents the status of the + // deployment. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + DeploymentStatusKey = attribute.Key("deployment.status") +) + +// DeploymentEnvironmentName returns an attribute KeyValue conforming to the +// "deployment.environment.name" semantic conventions. It represents the name of +// the [deployment environment] (aka deployment tier). +// +// [deployment environment]: https://wikipedia.org/wiki/Deployment_environment +func DeploymentEnvironmentName(val string) attribute.KeyValue { + return DeploymentEnvironmentNameKey.String(val) +} + +// DeploymentID returns an attribute KeyValue conforming to the "deployment.id" +// semantic conventions. It represents the id of the deployment. +func DeploymentID(val string) attribute.KeyValue { + return DeploymentIDKey.String(val) +} + +// DeploymentName returns an attribute KeyValue conforming to the +// "deployment.name" semantic conventions. It represents the name of the +// deployment. +func DeploymentName(val string) attribute.KeyValue { + return DeploymentNameKey.String(val) +} + +// Enum values for deployment.status +var ( + // failed + // Stability: development + DeploymentStatusFailed = DeploymentStatusKey.String("failed") + // succeeded + // Stability: development + DeploymentStatusSucceeded = DeploymentStatusKey.String("succeeded") +) + +// Namespace: destination +const ( + // DestinationAddressKey is the attribute Key conforming to the + // "destination.address" semantic conventions. It represents the destination + // address - domain name if available without reverse DNS lookup; otherwise, IP + // address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "destination.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the source side, and when communicating through an + // intermediary, `destination.address` SHOULD represent the destination address + // behind any intermediaries, for example proxies, if it's available. + DestinationAddressKey = attribute.Key("destination.address") + + // DestinationPortKey is the attribute Key conforming to the "destination.port" + // semantic conventions. It represents the destination port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3389, 2888 + DestinationPortKey = attribute.Key("destination.port") +) + +// DestinationAddress returns an attribute KeyValue conforming to the +// "destination.address" semantic conventions. It represents the destination +// address - domain name if available without reverse DNS lookup; otherwise, IP +// address or Unix domain socket name. +func DestinationAddress(val string) attribute.KeyValue { + return DestinationAddressKey.String(val) +} + +// DestinationPort returns an attribute KeyValue conforming to the +// "destination.port" semantic conventions. It represents the destination port +// number. +func DestinationPort(val int) attribute.KeyValue { + return DestinationPortKey.Int(val) +} + +// Namespace: device +const ( + // DeviceIDKey is the attribute Key conforming to the "device.id" semantic + // conventions. It represents a unique identifier representing the device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123456789012345", "01:23:45:67:89:AB" + // Note: Its value SHOULD be identical for all apps on a device and it SHOULD + // NOT change if an app is uninstalled and re-installed. + // However, it might be resettable by the user for all apps on a device. + // Hardware IDs (e.g. vendor-specific serial number, IMEI or MAC address) MAY be + // used as values. + // + // More information about Android identifier best practices can be found [here] + // . + // + // > [!WARNING]> This attribute may contain sensitive (PII) information. Caution + // > should be taken when storing personal data or anything which can identify a + // > user. GDPR and data protection laws may apply, + // > ensure you do your own due diligence.> Due to these reasons, this + // > identifier is not recommended for consumer applications and will likely + // > result in rejection from both Google Play and App Store. + // > However, it may be appropriate for specific enterprise scenarios, such as + // > kiosk devices or enterprise-managed devices, with appropriate compliance + // > clearance. + // > Any instrumentation providing this identifier MUST implement it as an + // > opt-in feature.> See [`app.installation.id`]> for a more + // > privacy-preserving alternative. + // + // [here]: https://developer.android.com/training/articles/user-data-ids + // [`app.installation.id`]: /docs/registry/attributes/app.md#app-installation-id + DeviceIDKey = attribute.Key("device.id") + + // DeviceManufacturerKey is the attribute Key conforming to the + // "device.manufacturer" semantic conventions. It represents the name of the + // device manufacturer. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Apple", "Samsung" + // Note: The Android OS provides this field via [Build]. iOS apps SHOULD + // hardcode the value `Apple`. + // + // [Build]: https://developer.android.com/reference/android/os/Build#MANUFACTURER + DeviceManufacturerKey = attribute.Key("device.manufacturer") + + // DeviceModelIdentifierKey is the attribute Key conforming to the + // "device.model.identifier" semantic conventions. It represents the model + // identifier for the device. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iPhone3,4", "SM-G920F" + // Note: It's recommended this value represents a machine-readable version of + // the model identifier rather than the market or consumer-friendly name of the + // device. + DeviceModelIdentifierKey = attribute.Key("device.model.identifier") + + // DeviceModelNameKey is the attribute Key conforming to the "device.model.name" + // semantic conventions. It represents the marketing name for the device model. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iPhone 6s Plus", "Samsung Galaxy S6" + // Note: It's recommended this value represents a human-readable version of the + // device model rather than a machine-readable alternative. + DeviceModelNameKey = attribute.Key("device.model.name") +) + +// DeviceID returns an attribute KeyValue conforming to the "device.id" semantic +// conventions. It represents a unique identifier representing the device. +func DeviceID(val string) attribute.KeyValue { + return DeviceIDKey.String(val) +} + +// DeviceManufacturer returns an attribute KeyValue conforming to the +// "device.manufacturer" semantic conventions. It represents the name of the +// device manufacturer. +func DeviceManufacturer(val string) attribute.KeyValue { + return DeviceManufacturerKey.String(val) +} + +// DeviceModelIdentifier returns an attribute KeyValue conforming to the +// "device.model.identifier" semantic conventions. It represents the model +// identifier for the device. +func DeviceModelIdentifier(val string) attribute.KeyValue { + return DeviceModelIdentifierKey.String(val) +} + +// DeviceModelName returns an attribute KeyValue conforming to the +// "device.model.name" semantic conventions. It represents the marketing name for +// the device model. +func DeviceModelName(val string) attribute.KeyValue { + return DeviceModelNameKey.String(val) +} + +// Namespace: disk +const ( + // DiskIODirectionKey is the attribute Key conforming to the "disk.io.direction" + // semantic conventions. It represents the disk IO operation direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "read" + DiskIODirectionKey = attribute.Key("disk.io.direction") +) + +// Enum values for disk.io.direction +var ( + // read + // Stability: development + DiskIODirectionRead = DiskIODirectionKey.String("read") + // write + // Stability: development + DiskIODirectionWrite = DiskIODirectionKey.String("write") +) + +// Namespace: dns +const ( + // DNSQuestionNameKey is the attribute Key conforming to the "dns.question.name" + // semantic conventions. It represents the name being queried. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "www.example.com", "opentelemetry.io" + // Note: If the name field contains non-printable characters (below 32 or above + // 126), those characters should be represented as escaped base 10 integers + // (\DDD). Back slashes and quotes should be escaped. Tabs, carriage returns, + // and line feeds should be converted to \t, \r, and \n respectively. + DNSQuestionNameKey = attribute.Key("dns.question.name") +) + +// DNSQuestionName returns an attribute KeyValue conforming to the +// "dns.question.name" semantic conventions. It represents the name being +// queried. +func DNSQuestionName(val string) attribute.KeyValue { + return DNSQuestionNameKey.String(val) +} + +// Namespace: elasticsearch +const ( + // ElasticsearchNodeNameKey is the attribute Key conforming to the + // "elasticsearch.node.name" semantic conventions. It represents the represents + // the human-readable identifier of the node/instance to which a request was + // routed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "instance-0000000001" + ElasticsearchNodeNameKey = attribute.Key("elasticsearch.node.name") +) + +// ElasticsearchNodeName returns an attribute KeyValue conforming to the +// "elasticsearch.node.name" semantic conventions. It represents the represents +// the human-readable identifier of the node/instance to which a request was +// routed. +func ElasticsearchNodeName(val string) attribute.KeyValue { + return ElasticsearchNodeNameKey.String(val) +} + +// Namespace: enduser +const ( + // EnduserIDKey is the attribute Key conforming to the "enduser.id" semantic + // conventions. It represents the unique identifier of an end user in the + // system. It maybe a username, email address, or other identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "username" + // Note: Unique identifier of an end user in the system. + // + // > [!Warning] + // > This field contains sensitive (PII) information. + EnduserIDKey = attribute.Key("enduser.id") + + // EnduserPseudoIDKey is the attribute Key conforming to the "enduser.pseudo.id" + // semantic conventions. It represents the pseudonymous identifier of an end + // user. This identifier should be a random value that is not directly linked or + // associated with the end user's actual identity. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "QdH5CAWJgqVT4rOr0qtumf" + // Note: Pseudonymous identifier of an end user. + // + // > [!Warning] + // > This field contains sensitive (linkable PII) information. + EnduserPseudoIDKey = attribute.Key("enduser.pseudo.id") +) + +// EnduserID returns an attribute KeyValue conforming to the "enduser.id" +// semantic conventions. It represents the unique identifier of an end user in +// the system. It maybe a username, email address, or other identifier. +func EnduserID(val string) attribute.KeyValue { + return EnduserIDKey.String(val) +} + +// EnduserPseudoID returns an attribute KeyValue conforming to the +// "enduser.pseudo.id" semantic conventions. It represents the pseudonymous +// identifier of an end user. This identifier should be a random value that is +// not directly linked or associated with the end user's actual identity. +func EnduserPseudoID(val string) attribute.KeyValue { + return EnduserPseudoIDKey.String(val) +} + +// Namespace: error +const ( + // ErrorMessageKey is the attribute Key conforming to the "error.message" + // semantic conventions. It represents a message providing more detail about an + // error in human-readable form. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Unexpected input type: string", "The user has exceeded their + // storage quota" + // Note: `error.message` should provide additional context and detail about an + // error. + // It is NOT RECOMMENDED to duplicate the value of `error.type` in + // `error.message`. + // It is also NOT RECOMMENDED to duplicate the value of `exception.message` in + // `error.message`. + // + // `error.message` is NOT RECOMMENDED for metrics or spans due to its unbounded + // cardinality and overlap with span status. + ErrorMessageKey = attribute.Key("error.message") + + // ErrorTypeKey is the attribute Key conforming to the "error.type" semantic + // conventions. It represents the describes a class of error the operation ended + // with. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "timeout", "java.net.UnknownHostException", + // "server_certificate_invalid", "500" + // Note: The `error.type` SHOULD be predictable, and SHOULD have low + // cardinality. + // + // When `error.type` is set to a type (e.g., an exception type), its + // canonical class name identifying the type within the artifact SHOULD be used. + // + // Instrumentations SHOULD document the list of errors they report. + // + // The cardinality of `error.type` within one instrumentation library SHOULD be + // low. + // Telemetry consumers that aggregate data from multiple instrumentation + // libraries and applications + // should be prepared for `error.type` to have high cardinality at query time + // when no + // additional filters are applied. + // + // If the operation has completed successfully, instrumentations SHOULD NOT set + // `error.type`. + // + // If a specific domain defines its own set of error identifiers (such as HTTP + // or gRPC status codes), + // it's RECOMMENDED to: + // + // - Use a domain-specific attribute + // - Set `error.type` to capture all errors, regardless of whether they are + // defined within the domain-specific set or not. + ErrorTypeKey = attribute.Key("error.type") +) + +// ErrorMessage returns an attribute KeyValue conforming to the "error.message" +// semantic conventions. It represents a message providing more detail about an +// error in human-readable form. +func ErrorMessage(val string) attribute.KeyValue { + return ErrorMessageKey.String(val) +} + +// Enum values for error.type +var ( + // A fallback error value to be used when the instrumentation doesn't define a + // custom value. + // + // Stability: stable + ErrorTypeOther = ErrorTypeKey.String("_OTHER") +) + +// Namespace: exception +const ( + // ExceptionMessageKey is the attribute Key conforming to the + // "exception.message" semantic conventions. It represents the exception + // message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "Division by zero", "Can't convert 'int' object to str implicitly" + ExceptionMessageKey = attribute.Key("exception.message") + + // ExceptionStacktraceKey is the attribute Key conforming to the + // "exception.stacktrace" semantic conventions. It represents a stacktrace as a + // string in the natural representation for the language runtime. The + // representation is to be determined and documented by each language SIG. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: Exception in thread "main" java.lang.RuntimeException: Test + // exception\n at com.example.GenerateTrace.methodB(GenerateTrace.java:13)\n at + // com.example.GenerateTrace.methodA(GenerateTrace.java:9)\n at + // com.example.GenerateTrace.main(GenerateTrace.java:5) + ExceptionStacktraceKey = attribute.Key("exception.stacktrace") + + // ExceptionTypeKey is the attribute Key conforming to the "exception.type" + // semantic conventions. It represents the type of the exception (its + // fully-qualified class name, if applicable). The dynamic type of the exception + // should be preferred over the static type in languages that support it. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "java.net.ConnectException", "OSError" + ExceptionTypeKey = attribute.Key("exception.type") +) + +// ExceptionMessage returns an attribute KeyValue conforming to the +// "exception.message" semantic conventions. It represents the exception message. +func ExceptionMessage(val string) attribute.KeyValue { + return ExceptionMessageKey.String(val) +} + +// ExceptionStacktrace returns an attribute KeyValue conforming to the +// "exception.stacktrace" semantic conventions. It represents a stacktrace as a +// string in the natural representation for the language runtime. The +// representation is to be determined and documented by each language SIG. +func ExceptionStacktrace(val string) attribute.KeyValue { + return ExceptionStacktraceKey.String(val) +} + +// ExceptionType returns an attribute KeyValue conforming to the "exception.type" +// semantic conventions. It represents the type of the exception (its +// fully-qualified class name, if applicable). The dynamic type of the exception +// should be preferred over the static type in languages that support it. +func ExceptionType(val string) attribute.KeyValue { + return ExceptionTypeKey.String(val) +} + +// Namespace: faas +const ( + // FaaSColdstartKey is the attribute Key conforming to the "faas.coldstart" + // semantic conventions. It represents a boolean that is true if the serverless + // function is executed for the first time (aka cold-start). + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSColdstartKey = attribute.Key("faas.coldstart") + + // FaaSCronKey is the attribute Key conforming to the "faas.cron" semantic + // conventions. It represents a string containing the schedule period as + // [Cron Expression]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0/5 * * * ? * + // + // [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm + FaaSCronKey = attribute.Key("faas.cron") + + // FaaSDocumentCollectionKey is the attribute Key conforming to the + // "faas.document.collection" semantic conventions. It represents the name of + // the source on which the triggering operation was performed. For example, in + // Cloud Storage or S3 corresponds to the bucket name, and in Cosmos DB to the + // database name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myBucketName", "myDbName" + FaaSDocumentCollectionKey = attribute.Key("faas.document.collection") + + // FaaSDocumentNameKey is the attribute Key conforming to the + // "faas.document.name" semantic conventions. It represents the document + // name/table subjected to the operation. For example, in Cloud Storage or S3 is + // the name of the file, and in Cosmos DB the table name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "myFile.txt", "myTableName" + FaaSDocumentNameKey = attribute.Key("faas.document.name") + + // FaaSDocumentOperationKey is the attribute Key conforming to the + // "faas.document.operation" semantic conventions. It represents the describes + // the type of the operation that was performed on the data. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSDocumentOperationKey = attribute.Key("faas.document.operation") + + // FaaSDocumentTimeKey is the attribute Key conforming to the + // "faas.document.time" semantic conventions. It represents a string containing + // the time when the data was accessed in the [ISO 8601] format expressed in + // [UTC]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 2020-01-23T13:47:06Z + // + // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html + // [UTC]: https://www.w3.org/TR/NOTE-datetime + FaaSDocumentTimeKey = attribute.Key("faas.document.time") + + // FaaSInstanceKey is the attribute Key conforming to the "faas.instance" + // semantic conventions. It represents the execution environment ID as a string, + // that will be potentially reused for other invocations to the same + // function/function version. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021/06/28/[$LATEST]2f399eb14537447da05ab2a2e39309de" + // Note: - **AWS Lambda:** Use the (full) log stream name. + FaaSInstanceKey = attribute.Key("faas.instance") + + // FaaSInvocationIDKey is the attribute Key conforming to the + // "faas.invocation_id" semantic conventions. It represents the invocation ID of + // the current function invocation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: af9d5aa4-a685-4c5f-a22b-444f80b3cc28 + FaaSInvocationIDKey = attribute.Key("faas.invocation_id") + + // FaaSInvokedNameKey is the attribute Key conforming to the "faas.invoked_name" + // semantic conventions. It represents the name of the invoked function. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: my-function + // Note: SHOULD be equal to the `faas.name` resource attribute of the invoked + // function. + FaaSInvokedNameKey = attribute.Key("faas.invoked_name") + + // FaaSInvokedProviderKey is the attribute Key conforming to the + // "faas.invoked_provider" semantic conventions. It represents the cloud + // provider of the invoked function. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: SHOULD be equal to the `cloud.provider` resource attribute of the + // invoked function. + FaaSInvokedProviderKey = attribute.Key("faas.invoked_provider") + + // FaaSInvokedRegionKey is the attribute Key conforming to the + // "faas.invoked_region" semantic conventions. It represents the cloud region of + // the invoked function. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: eu-central-1 + // Note: SHOULD be equal to the `cloud.region` resource attribute of the invoked + // function. + FaaSInvokedRegionKey = attribute.Key("faas.invoked_region") + + // FaaSMaxMemoryKey is the attribute Key conforming to the "faas.max_memory" + // semantic conventions. It represents the amount of memory available to the + // serverless function converted to Bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: It's recommended to set this attribute since e.g. too little memory can + // easily stop a Java AWS Lambda function from working correctly. On AWS Lambda, + // the environment variable `AWS_LAMBDA_FUNCTION_MEMORY_SIZE` provides this + // information (which must be multiplied by 1,048,576). + FaaSMaxMemoryKey = attribute.Key("faas.max_memory") + + // FaaSNameKey is the attribute Key conforming to the "faas.name" semantic + // conventions. It represents the name of the single function that this runtime + // instance executes. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-function", "myazurefunctionapp/some-function-name" + // Note: This is the name of the function as configured/deployed on the FaaS + // platform and is usually different from the name of the callback + // function (which may be stored in the + // [`code.namespace`/`code.function.name`] + // span attributes). + // + // For some cloud providers, the above definition is ambiguous. The following + // definition of function name MUST be used for this attribute + // (and consequently the span name) for the listed cloud providers/products: + // + // - **Azure:** The full name `/`, i.e., function app name + // followed by a forward slash followed by the function name (this form + // can also be seen in the resource JSON for the function). + // This means that a span attribute MUST be used, as an Azure function + // app can host multiple functions that would usually share + // a TracerProvider (see also the `cloud.resource_id` attribute). + // + // + // [`code.namespace`/`code.function.name`]: /docs/general/attributes.md#source-code-attributes + FaaSNameKey = attribute.Key("faas.name") + + // FaaSTimeKey is the attribute Key conforming to the "faas.time" semantic + // conventions. It represents a string containing the function invocation time + // in the [ISO 8601] format expressed in [UTC]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 2020-01-23T13:47:06Z + // + // [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html + // [UTC]: https://www.w3.org/TR/NOTE-datetime + FaaSTimeKey = attribute.Key("faas.time") + + // FaaSTriggerKey is the attribute Key conforming to the "faas.trigger" semantic + // conventions. It represents the type of the trigger which caused this function + // invocation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FaaSTriggerKey = attribute.Key("faas.trigger") + + // FaaSVersionKey is the attribute Key conforming to the "faas.version" semantic + // conventions. It represents the immutable version of the function being + // executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "26", "pinkfroid-00002" + // Note: Depending on the cloud provider and platform, use: + // + // - **AWS Lambda:** The [function version] + // (an integer represented as a decimal string). + // - **Google Cloud Run (Services):** The [revision] + // (i.e., the function name plus the revision suffix). + // - **Google Cloud Functions:** The value of the + // [`K_REVISION` environment variable]. + // - **Azure Functions:** Not applicable. Do not set this attribute. + // + // + // [function version]: https://docs.aws.amazon.com/lambda/latest/dg/configuration-versions.html + // [revision]: https://cloud.google.com/run/docs/managing/revisions + // [`K_REVISION` environment variable]: https://cloud.google.com/functions/docs/env-var#runtime_environment_variables_set_automatically + FaaSVersionKey = attribute.Key("faas.version") +) + +// FaaSColdstart returns an attribute KeyValue conforming to the "faas.coldstart" +// semantic conventions. It represents a boolean that is true if the serverless +// function is executed for the first time (aka cold-start). +func FaaSColdstart(val bool) attribute.KeyValue { + return FaaSColdstartKey.Bool(val) +} + +// FaaSCron returns an attribute KeyValue conforming to the "faas.cron" semantic +// conventions. It represents a string containing the schedule period as +// [Cron Expression]. +// +// [Cron Expression]: https://docs.oracle.com/cd/E12058_01/doc/doc.1014/e12030/cron_expressions.htm +func FaaSCron(val string) attribute.KeyValue { + return FaaSCronKey.String(val) +} + +// FaaSDocumentCollection returns an attribute KeyValue conforming to the +// "faas.document.collection" semantic conventions. It represents the name of the +// source on which the triggering operation was performed. For example, in Cloud +// Storage or S3 corresponds to the bucket name, and in Cosmos DB to the database +// name. +func FaaSDocumentCollection(val string) attribute.KeyValue { + return FaaSDocumentCollectionKey.String(val) +} + +// FaaSDocumentName returns an attribute KeyValue conforming to the +// "faas.document.name" semantic conventions. It represents the document +// name/table subjected to the operation. For example, in Cloud Storage or S3 is +// the name of the file, and in Cosmos DB the table name. +func FaaSDocumentName(val string) attribute.KeyValue { + return FaaSDocumentNameKey.String(val) +} + +// FaaSDocumentTime returns an attribute KeyValue conforming to the +// "faas.document.time" semantic conventions. It represents a string containing +// the time when the data was accessed in the [ISO 8601] format expressed in +// [UTC]. +// +// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html +// [UTC]: https://www.w3.org/TR/NOTE-datetime +func FaaSDocumentTime(val string) attribute.KeyValue { + return FaaSDocumentTimeKey.String(val) +} + +// FaaSInstance returns an attribute KeyValue conforming to the "faas.instance" +// semantic conventions. It represents the execution environment ID as a string, +// that will be potentially reused for other invocations to the same +// function/function version. +func FaaSInstance(val string) attribute.KeyValue { + return FaaSInstanceKey.String(val) +} + +// FaaSInvocationID returns an attribute KeyValue conforming to the +// "faas.invocation_id" semantic conventions. It represents the invocation ID of +// the current function invocation. +func FaaSInvocationID(val string) attribute.KeyValue { + return FaaSInvocationIDKey.String(val) +} + +// FaaSInvokedName returns an attribute KeyValue conforming to the +// "faas.invoked_name" semantic conventions. It represents the name of the +// invoked function. +func FaaSInvokedName(val string) attribute.KeyValue { + return FaaSInvokedNameKey.String(val) +} + +// FaaSInvokedRegion returns an attribute KeyValue conforming to the +// "faas.invoked_region" semantic conventions. It represents the cloud region of +// the invoked function. +func FaaSInvokedRegion(val string) attribute.KeyValue { + return FaaSInvokedRegionKey.String(val) +} + +// FaaSMaxMemory returns an attribute KeyValue conforming to the +// "faas.max_memory" semantic conventions. It represents the amount of memory +// available to the serverless function converted to Bytes. +func FaaSMaxMemory(val int) attribute.KeyValue { + return FaaSMaxMemoryKey.Int(val) +} + +// FaaSName returns an attribute KeyValue conforming to the "faas.name" semantic +// conventions. It represents the name of the single function that this runtime +// instance executes. +func FaaSName(val string) attribute.KeyValue { + return FaaSNameKey.String(val) +} + +// FaaSTime returns an attribute KeyValue conforming to the "faas.time" semantic +// conventions. It represents a string containing the function invocation time in +// the [ISO 8601] format expressed in [UTC]. +// +// [ISO 8601]: https://www.iso.org/iso-8601-date-and-time-format.html +// [UTC]: https://www.w3.org/TR/NOTE-datetime +func FaaSTime(val string) attribute.KeyValue { + return FaaSTimeKey.String(val) +} + +// FaaSVersion returns an attribute KeyValue conforming to the "faas.version" +// semantic conventions. It represents the immutable version of the function +// being executed. +func FaaSVersion(val string) attribute.KeyValue { + return FaaSVersionKey.String(val) +} + +// Enum values for faas.document.operation +var ( + // When a new object is created. + // Stability: development + FaaSDocumentOperationInsert = FaaSDocumentOperationKey.String("insert") + // When an object is modified. + // Stability: development + FaaSDocumentOperationEdit = FaaSDocumentOperationKey.String("edit") + // When an object is deleted. + // Stability: development + FaaSDocumentOperationDelete = FaaSDocumentOperationKey.String("delete") +) + +// Enum values for faas.invoked_provider +var ( + // Alibaba Cloud + // Stability: development + FaaSInvokedProviderAlibabaCloud = FaaSInvokedProviderKey.String("alibaba_cloud") + // Amazon Web Services + // Stability: development + FaaSInvokedProviderAWS = FaaSInvokedProviderKey.String("aws") + // Microsoft Azure + // Stability: development + FaaSInvokedProviderAzure = FaaSInvokedProviderKey.String("azure") + // Google Cloud Platform + // Stability: development + FaaSInvokedProviderGCP = FaaSInvokedProviderKey.String("gcp") + // Tencent Cloud + // Stability: development + FaaSInvokedProviderTencentCloud = FaaSInvokedProviderKey.String("tencent_cloud") +) + +// Enum values for faas.trigger +var ( + // A response to some data source operation such as a database or filesystem + // read/write + // Stability: development + FaaSTriggerDatasource = FaaSTriggerKey.String("datasource") + // To provide an answer to an inbound HTTP request + // Stability: development + FaaSTriggerHTTP = FaaSTriggerKey.String("http") + // A function is set to be executed when messages are sent to a messaging system + // Stability: development + FaaSTriggerPubSub = FaaSTriggerKey.String("pubsub") + // A function is scheduled to be executed regularly + // Stability: development + FaaSTriggerTimer = FaaSTriggerKey.String("timer") + // If none of the others apply + // Stability: development + FaaSTriggerOther = FaaSTriggerKey.String("other") +) + +// Namespace: feature_flag +const ( + // FeatureFlagContextIDKey is the attribute Key conforming to the + // "feature_flag.context.id" semantic conventions. It represents the unique + // identifier for the flag evaluation context. For example, the targeting key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "5157782b-2203-4c80-a857-dbbd5e7761db" + FeatureFlagContextIDKey = attribute.Key("feature_flag.context.id") + + // FeatureFlagKeyKey is the attribute Key conforming to the "feature_flag.key" + // semantic conventions. It represents the lookup key of the feature flag. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "logo-color" + FeatureFlagKeyKey = attribute.Key("feature_flag.key") + + // FeatureFlagProviderNameKey is the attribute Key conforming to the + // "feature_flag.provider.name" semantic conventions. It represents the + // identifies the feature flag provider. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Flag Manager" + FeatureFlagProviderNameKey = attribute.Key("feature_flag.provider.name") + + // FeatureFlagResultReasonKey is the attribute Key conforming to the + // "feature_flag.result.reason" semantic conventions. It represents the reason + // code which shows how a feature flag value was determined. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "static", "targeting_match", "error", "default" + FeatureFlagResultReasonKey = attribute.Key("feature_flag.result.reason") + + // FeatureFlagResultValueKey is the attribute Key conforming to the + // "feature_flag.result.value" semantic conventions. It represents the evaluated + // value of the feature flag. + // + // Type: any + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "#ff0000", true, 3 + // Note: With some feature flag providers, feature flag results can be quite + // large or contain private or sensitive details. + // Because of this, `feature_flag.result.variant` is often the preferred + // attribute if it is available. + // + // It may be desirable to redact or otherwise limit the size and scope of + // `feature_flag.result.value` if possible. + // Because the evaluated flag value is unstructured and may be any type, it is + // left to the instrumentation author to determine how best to achieve this. + FeatureFlagResultValueKey = attribute.Key("feature_flag.result.value") + + // FeatureFlagResultVariantKey is the attribute Key conforming to the + // "feature_flag.result.variant" semantic conventions. It represents a semantic + // identifier for an evaluated flag value. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "red", "true", "on" + // Note: A semantic identifier, commonly referred to as a variant, provides a + // means + // for referring to a value without including the value itself. This can + // provide additional context for understanding the meaning behind a value. + // For example, the variant `red` maybe be used for the value `#c05543`. + FeatureFlagResultVariantKey = attribute.Key("feature_flag.result.variant") + + // FeatureFlagSetIDKey is the attribute Key conforming to the + // "feature_flag.set.id" semantic conventions. It represents the identifier of + // the [flag set] to which the feature flag belongs. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "proj-1", "ab98sgs", "service1/dev" + // + // [flag set]: https://openfeature.dev/specification/glossary/#flag-set + FeatureFlagSetIDKey = attribute.Key("feature_flag.set.id") + + // FeatureFlagVersionKey is the attribute Key conforming to the + // "feature_flag.version" semantic conventions. It represents the version of the + // ruleset used during the evaluation. This may be any stable value which + // uniquely identifies the ruleset. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1", "01ABCDEF" + FeatureFlagVersionKey = attribute.Key("feature_flag.version") +) + +// FeatureFlagContextID returns an attribute KeyValue conforming to the +// "feature_flag.context.id" semantic conventions. It represents the unique +// identifier for the flag evaluation context. For example, the targeting key. +func FeatureFlagContextID(val string) attribute.KeyValue { + return FeatureFlagContextIDKey.String(val) +} + +// FeatureFlagKey returns an attribute KeyValue conforming to the +// "feature_flag.key" semantic conventions. It represents the lookup key of the +// feature flag. +func FeatureFlagKey(val string) attribute.KeyValue { + return FeatureFlagKeyKey.String(val) +} + +// FeatureFlagProviderName returns an attribute KeyValue conforming to the +// "feature_flag.provider.name" semantic conventions. It represents the +// identifies the feature flag provider. +func FeatureFlagProviderName(val string) attribute.KeyValue { + return FeatureFlagProviderNameKey.String(val) +} + +// FeatureFlagResultVariant returns an attribute KeyValue conforming to the +// "feature_flag.result.variant" semantic conventions. It represents a semantic +// identifier for an evaluated flag value. +func FeatureFlagResultVariant(val string) attribute.KeyValue { + return FeatureFlagResultVariantKey.String(val) +} + +// FeatureFlagSetID returns an attribute KeyValue conforming to the +// "feature_flag.set.id" semantic conventions. It represents the identifier of +// the [flag set] to which the feature flag belongs. +// +// [flag set]: https://openfeature.dev/specification/glossary/#flag-set +func FeatureFlagSetID(val string) attribute.KeyValue { + return FeatureFlagSetIDKey.String(val) +} + +// FeatureFlagVersion returns an attribute KeyValue conforming to the +// "feature_flag.version" semantic conventions. It represents the version of the +// ruleset used during the evaluation. This may be any stable value which +// uniquely identifies the ruleset. +func FeatureFlagVersion(val string) attribute.KeyValue { + return FeatureFlagVersionKey.String(val) +} + +// Enum values for feature_flag.result.reason +var ( + // The resolved value is static (no dynamic evaluation). + // Stability: development + FeatureFlagResultReasonStatic = FeatureFlagResultReasonKey.String("static") + // The resolved value fell back to a pre-configured value (no dynamic evaluation + // occurred or dynamic evaluation yielded no result). + // Stability: development + FeatureFlagResultReasonDefault = FeatureFlagResultReasonKey.String("default") + // The resolved value was the result of a dynamic evaluation, such as a rule or + // specific user-targeting. + // Stability: development + FeatureFlagResultReasonTargetingMatch = FeatureFlagResultReasonKey.String("targeting_match") + // The resolved value was the result of pseudorandom assignment. + // Stability: development + FeatureFlagResultReasonSplit = FeatureFlagResultReasonKey.String("split") + // The resolved value was retrieved from cache. + // Stability: development + FeatureFlagResultReasonCached = FeatureFlagResultReasonKey.String("cached") + // The resolved value was the result of the flag being disabled in the + // management system. + // Stability: development + FeatureFlagResultReasonDisabled = FeatureFlagResultReasonKey.String("disabled") + // The reason for the resolved value could not be determined. + // Stability: development + FeatureFlagResultReasonUnknown = FeatureFlagResultReasonKey.String("unknown") + // The resolved value is non-authoritative or possibly out of date + // Stability: development + FeatureFlagResultReasonStale = FeatureFlagResultReasonKey.String("stale") + // The resolved value was the result of an error. + // Stability: development + FeatureFlagResultReasonError = FeatureFlagResultReasonKey.String("error") +) + +// Namespace: file +const ( + // FileAccessedKey is the attribute Key conforming to the "file.accessed" + // semantic conventions. It represents the time when the file was last accessed, + // in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: This attribute might not be supported by some file systems — NFS, + // FAT32, in embedded OS, etc. + FileAccessedKey = attribute.Key("file.accessed") + + // FileAttributesKey is the attribute Key conforming to the "file.attributes" + // semantic conventions. It represents the array of file attributes. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "readonly", "hidden" + // Note: Attributes names depend on the OS or file system. Here’s a + // non-exhaustive list of values expected for this attribute: `archive`, + // `compressed`, `directory`, `encrypted`, `execute`, `hidden`, `immutable`, + // `journaled`, `read`, `readonly`, `symbolic link`, `system`, `temporary`, + // `write`. + FileAttributesKey = attribute.Key("file.attributes") + + // FileChangedKey is the attribute Key conforming to the "file.changed" semantic + // conventions. It represents the time when the file attributes or metadata was + // last changed, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: `file.changed` captures the time when any of the file's properties or + // attributes (including the content) are changed, while `file.modified` + // captures the timestamp when the file content is modified. + FileChangedKey = attribute.Key("file.changed") + + // FileCreatedKey is the attribute Key conforming to the "file.created" semantic + // conventions. It represents the time when the file was created, in ISO 8601 + // format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + // Note: This attribute might not be supported by some file systems — NFS, + // FAT32, in embedded OS, etc. + FileCreatedKey = attribute.Key("file.created") + + // FileDirectoryKey is the attribute Key conforming to the "file.directory" + // semantic conventions. It represents the directory where the file is located. + // It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/home/user", "C:\Program Files\MyApp" + FileDirectoryKey = attribute.Key("file.directory") + + // FileExtensionKey is the attribute Key conforming to the "file.extension" + // semantic conventions. It represents the file extension, excluding the leading + // dot. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "png", "gz" + // Note: When the file name has multiple extensions (example.tar.gz), only the + // last one should be captured ("gz", not "tar.gz"). + FileExtensionKey = attribute.Key("file.extension") + + // FileForkNameKey is the attribute Key conforming to the "file.fork_name" + // semantic conventions. It represents the name of the fork. A fork is + // additional data associated with a filesystem object. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Zone.Identifer" + // Note: On Linux, a resource fork is used to store additional data with a + // filesystem object. A file always has at least one fork for the data portion, + // and additional forks may exist. + // On NTFS, this is analogous to an Alternate Data Stream (ADS), and the default + // data stream for a file is just called $DATA. Zone.Identifier is commonly used + // by Windows to track contents downloaded from the Internet. An ADS is + // typically of the form: C:\path\to\filename.extension:some_fork_name, and + // some_fork_name is the value that should populate `fork_name`. + // `filename.extension` should populate `file.name`, and `extension` should + // populate `file.extension`. The full path, `file.path`, will include the fork + // name. + FileForkNameKey = attribute.Key("file.fork_name") + + // FileGroupIDKey is the attribute Key conforming to the "file.group.id" + // semantic conventions. It represents the primary Group ID (GID) of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1000" + FileGroupIDKey = attribute.Key("file.group.id") + + // FileGroupNameKey is the attribute Key conforming to the "file.group.name" + // semantic conventions. It represents the primary group name of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "users" + FileGroupNameKey = attribute.Key("file.group.name") + + // FileInodeKey is the attribute Key conforming to the "file.inode" semantic + // conventions. It represents the inode representing the file in the filesystem. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "256383" + FileInodeKey = attribute.Key("file.inode") + + // FileModeKey is the attribute Key conforming to the "file.mode" semantic + // conventions. It represents the mode of the file in octal representation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0640" + FileModeKey = attribute.Key("file.mode") + + // FileModifiedKey is the attribute Key conforming to the "file.modified" + // semantic conventions. It represents the time when the file content was last + // modified, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T12:00:00Z" + FileModifiedKey = attribute.Key("file.modified") + + // FileNameKey is the attribute Key conforming to the "file.name" semantic + // conventions. It represents the name of the file including the extension, + // without the directory. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "example.png" + FileNameKey = attribute.Key("file.name") + + // FileOwnerIDKey is the attribute Key conforming to the "file.owner.id" + // semantic conventions. It represents the user ID (UID) or security identifier + // (SID) of the file owner. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1000" + FileOwnerIDKey = attribute.Key("file.owner.id") + + // FileOwnerNameKey is the attribute Key conforming to the "file.owner.name" + // semantic conventions. It represents the username of the file owner. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + FileOwnerNameKey = attribute.Key("file.owner.name") + + // FilePathKey is the attribute Key conforming to the "file.path" semantic + // conventions. It represents the full path to the file, including the file + // name. It should include the drive letter, when appropriate. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/home/alice/example.png", "C:\Program Files\MyApp\myapp.exe" + FilePathKey = attribute.Key("file.path") + + // FileSizeKey is the attribute Key conforming to the "file.size" semantic + // conventions. It represents the file size in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + FileSizeKey = attribute.Key("file.size") + + // FileSymbolicLinkTargetPathKey is the attribute Key conforming to the + // "file.symbolic_link.target_path" semantic conventions. It represents the path + // to the target of a symbolic link. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/usr/bin/python3" + // Note: This attribute is only applicable to symbolic links. + FileSymbolicLinkTargetPathKey = attribute.Key("file.symbolic_link.target_path") +) + +// FileAccessed returns an attribute KeyValue conforming to the "file.accessed" +// semantic conventions. It represents the time when the file was last accessed, +// in ISO 8601 format. +func FileAccessed(val string) attribute.KeyValue { + return FileAccessedKey.String(val) +} + +// FileAttributes returns an attribute KeyValue conforming to the +// "file.attributes" semantic conventions. It represents the array of file +// attributes. +func FileAttributes(val ...string) attribute.KeyValue { + return FileAttributesKey.StringSlice(val) +} + +// FileChanged returns an attribute KeyValue conforming to the "file.changed" +// semantic conventions. It represents the time when the file attributes or +// metadata was last changed, in ISO 8601 format. +func FileChanged(val string) attribute.KeyValue { + return FileChangedKey.String(val) +} + +// FileCreated returns an attribute KeyValue conforming to the "file.created" +// semantic conventions. It represents the time when the file was created, in ISO +// 8601 format. +func FileCreated(val string) attribute.KeyValue { + return FileCreatedKey.String(val) +} + +// FileDirectory returns an attribute KeyValue conforming to the "file.directory" +// semantic conventions. It represents the directory where the file is located. +// It should include the drive letter, when appropriate. +func FileDirectory(val string) attribute.KeyValue { + return FileDirectoryKey.String(val) +} + +// FileExtension returns an attribute KeyValue conforming to the "file.extension" +// semantic conventions. It represents the file extension, excluding the leading +// dot. +func FileExtension(val string) attribute.KeyValue { + return FileExtensionKey.String(val) +} + +// FileForkName returns an attribute KeyValue conforming to the "file.fork_name" +// semantic conventions. It represents the name of the fork. A fork is additional +// data associated with a filesystem object. +func FileForkName(val string) attribute.KeyValue { + return FileForkNameKey.String(val) +} + +// FileGroupID returns an attribute KeyValue conforming to the "file.group.id" +// semantic conventions. It represents the primary Group ID (GID) of the file. +func FileGroupID(val string) attribute.KeyValue { + return FileGroupIDKey.String(val) +} + +// FileGroupName returns an attribute KeyValue conforming to the +// "file.group.name" semantic conventions. It represents the primary group name +// of the file. +func FileGroupName(val string) attribute.KeyValue { + return FileGroupNameKey.String(val) +} + +// FileInode returns an attribute KeyValue conforming to the "file.inode" +// semantic conventions. It represents the inode representing the file in the +// filesystem. +func FileInode(val string) attribute.KeyValue { + return FileInodeKey.String(val) +} + +// FileMode returns an attribute KeyValue conforming to the "file.mode" semantic +// conventions. It represents the mode of the file in octal representation. +func FileMode(val string) attribute.KeyValue { + return FileModeKey.String(val) +} + +// FileModified returns an attribute KeyValue conforming to the "file.modified" +// semantic conventions. It represents the time when the file content was last +// modified, in ISO 8601 format. +func FileModified(val string) attribute.KeyValue { + return FileModifiedKey.String(val) +} + +// FileName returns an attribute KeyValue conforming to the "file.name" semantic +// conventions. It represents the name of the file including the extension, +// without the directory. +func FileName(val string) attribute.KeyValue { + return FileNameKey.String(val) +} + +// FileOwnerID returns an attribute KeyValue conforming to the "file.owner.id" +// semantic conventions. It represents the user ID (UID) or security identifier +// (SID) of the file owner. +func FileOwnerID(val string) attribute.KeyValue { + return FileOwnerIDKey.String(val) +} + +// FileOwnerName returns an attribute KeyValue conforming to the +// "file.owner.name" semantic conventions. It represents the username of the file +// owner. +func FileOwnerName(val string) attribute.KeyValue { + return FileOwnerNameKey.String(val) +} + +// FilePath returns an attribute KeyValue conforming to the "file.path" semantic +// conventions. It represents the full path to the file, including the file name. +// It should include the drive letter, when appropriate. +func FilePath(val string) attribute.KeyValue { + return FilePathKey.String(val) +} + +// FileSize returns an attribute KeyValue conforming to the "file.size" semantic +// conventions. It represents the file size in bytes. +func FileSize(val int) attribute.KeyValue { + return FileSizeKey.Int(val) +} + +// FileSymbolicLinkTargetPath returns an attribute KeyValue conforming to the +// "file.symbolic_link.target_path" semantic conventions. It represents the path +// to the target of a symbolic link. +func FileSymbolicLinkTargetPath(val string) attribute.KeyValue { + return FileSymbolicLinkTargetPathKey.String(val) +} + +// Namespace: gcp +const ( + // GCPAppHubApplicationContainerKey is the attribute Key conforming to the + // "gcp.apphub.application.container" semantic conventions. It represents the + // container within GCP where the AppHub application is defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "projects/my-container-project" + GCPAppHubApplicationContainerKey = attribute.Key("gcp.apphub.application.container") + + // GCPAppHubApplicationIDKey is the attribute Key conforming to the + // "gcp.apphub.application.id" semantic conventions. It represents the name of + // the application as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-application" + GCPAppHubApplicationIDKey = attribute.Key("gcp.apphub.application.id") + + // GCPAppHubApplicationLocationKey is the attribute Key conforming to the + // "gcp.apphub.application.location" semantic conventions. It represents the GCP + // zone or region where the application is defined. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "us-central1" + GCPAppHubApplicationLocationKey = attribute.Key("gcp.apphub.application.location") + + // GCPAppHubServiceCriticalityTypeKey is the attribute Key conforming to the + // "gcp.apphub.service.criticality_type" semantic conventions. It represents the + // criticality of a service indicates its importance to the business. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub type enum] + // + // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubServiceCriticalityTypeKey = attribute.Key("gcp.apphub.service.criticality_type") + + // GCPAppHubServiceEnvironmentTypeKey is the attribute Key conforming to the + // "gcp.apphub.service.environment_type" semantic conventions. It represents the + // environment of a service is the stage of a software lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub environment type] + // + // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubServiceEnvironmentTypeKey = attribute.Key("gcp.apphub.service.environment_type") + + // GCPAppHubServiceIDKey is the attribute Key conforming to the + // "gcp.apphub.service.id" semantic conventions. It represents the name of the + // service as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-service" + GCPAppHubServiceIDKey = attribute.Key("gcp.apphub.service.id") + + // GCPAppHubWorkloadCriticalityTypeKey is the attribute Key conforming to the + // "gcp.apphub.workload.criticality_type" semantic conventions. It represents + // the criticality of a workload indicates its importance to the business. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub type enum] + // + // [See AppHub type enum]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type + GCPAppHubWorkloadCriticalityTypeKey = attribute.Key("gcp.apphub.workload.criticality_type") + + // GCPAppHubWorkloadEnvironmentTypeKey is the attribute Key conforming to the + // "gcp.apphub.workload.environment_type" semantic conventions. It represents + // the environment of a workload is the stage of a software lifecycle. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: [See AppHub environment type] + // + // [See AppHub environment type]: https://cloud.google.com/app-hub/docs/reference/rest/v1/Attributes#type_1 + GCPAppHubWorkloadEnvironmentTypeKey = attribute.Key("gcp.apphub.workload.environment_type") + + // GCPAppHubWorkloadIDKey is the attribute Key conforming to the + // "gcp.apphub.workload.id" semantic conventions. It represents the name of the + // workload as configured in AppHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-workload" + GCPAppHubWorkloadIDKey = attribute.Key("gcp.apphub.workload.id") + + // GCPClientServiceKey is the attribute Key conforming to the + // "gcp.client.service" semantic conventions. It represents the identifies the + // Google Cloud service for which the official client library is intended. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "appengine", "run", "firestore", "alloydb", "spanner" + // Note: Intended to be a stable identifier for Google Cloud client libraries + // that is uniform across implementation languages. The value should be derived + // from the canonical service domain for the service; for example, + // 'foo.googleapis.com' should result in a value of 'foo'. + GCPClientServiceKey = attribute.Key("gcp.client.service") + + // GCPCloudRunJobExecutionKey is the attribute Key conforming to the + // "gcp.cloud_run.job.execution" semantic conventions. It represents the name of + // the Cloud Run [execution] being run for the Job, as set by the + // [`CLOUD_RUN_EXECUTION`] environment variable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "job-name-xxxx", "sample-job-mdw84" + // + // [execution]: https://cloud.google.com/run/docs/managing/job-executions + // [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars + GCPCloudRunJobExecutionKey = attribute.Key("gcp.cloud_run.job.execution") + + // GCPCloudRunJobTaskIndexKey is the attribute Key conforming to the + // "gcp.cloud_run.job.task_index" semantic conventions. It represents the index + // for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] + // environment variable. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 1 + // + // [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars + GCPCloudRunJobTaskIndexKey = attribute.Key("gcp.cloud_run.job.task_index") + + // GCPGCEInstanceHostnameKey is the attribute Key conforming to the + // "gcp.gce.instance.hostname" semantic conventions. It represents the hostname + // of a GCE instance. This is the full value of the default or [custom hostname] + // . + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-host1234.example.com", + // "sample-vm.us-west1-b.c.my-project.internal" + // + // [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm + GCPGCEInstanceHostnameKey = attribute.Key("gcp.gce.instance.hostname") + + // GCPGCEInstanceNameKey is the attribute Key conforming to the + // "gcp.gce.instance.name" semantic conventions. It represents the instance name + // of a GCE instance. This is the value provided by `host.name`, the visible + // name of the instance in the Cloud Console UI, and the prefix for the default + // hostname of the instance as defined by the [default internal DNS name]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "instance-1", "my-vm-name" + // + // [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names + GCPGCEInstanceNameKey = attribute.Key("gcp.gce.instance.name") +) + +// GCPAppHubApplicationContainer returns an attribute KeyValue conforming to the +// "gcp.apphub.application.container" semantic conventions. It represents the +// container within GCP where the AppHub application is defined. +func GCPAppHubApplicationContainer(val string) attribute.KeyValue { + return GCPAppHubApplicationContainerKey.String(val) +} + +// GCPAppHubApplicationID returns an attribute KeyValue conforming to the +// "gcp.apphub.application.id" semantic conventions. It represents the name of +// the application as configured in AppHub. +func GCPAppHubApplicationID(val string) attribute.KeyValue { + return GCPAppHubApplicationIDKey.String(val) +} + +// GCPAppHubApplicationLocation returns an attribute KeyValue conforming to the +// "gcp.apphub.application.location" semantic conventions. It represents the GCP +// zone or region where the application is defined. +func GCPAppHubApplicationLocation(val string) attribute.KeyValue { + return GCPAppHubApplicationLocationKey.String(val) +} + +// GCPAppHubServiceID returns an attribute KeyValue conforming to the +// "gcp.apphub.service.id" semantic conventions. It represents the name of the +// service as configured in AppHub. +func GCPAppHubServiceID(val string) attribute.KeyValue { + return GCPAppHubServiceIDKey.String(val) +} + +// GCPAppHubWorkloadID returns an attribute KeyValue conforming to the +// "gcp.apphub.workload.id" semantic conventions. It represents the name of the +// workload as configured in AppHub. +func GCPAppHubWorkloadID(val string) attribute.KeyValue { + return GCPAppHubWorkloadIDKey.String(val) +} + +// GCPClientService returns an attribute KeyValue conforming to the +// "gcp.client.service" semantic conventions. It represents the identifies the +// Google Cloud service for which the official client library is intended. +func GCPClientService(val string) attribute.KeyValue { + return GCPClientServiceKey.String(val) +} + +// GCPCloudRunJobExecution returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.execution" semantic conventions. It represents the name of +// the Cloud Run [execution] being run for the Job, as set by the +// [`CLOUD_RUN_EXECUTION`] environment variable. +// +// [execution]: https://cloud.google.com/run/docs/managing/job-executions +// [`CLOUD_RUN_EXECUTION`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars +func GCPCloudRunJobExecution(val string) attribute.KeyValue { + return GCPCloudRunJobExecutionKey.String(val) +} + +// GCPCloudRunJobTaskIndex returns an attribute KeyValue conforming to the +// "gcp.cloud_run.job.task_index" semantic conventions. It represents the index +// for a task within an execution as provided by the [`CLOUD_RUN_TASK_INDEX`] +// environment variable. +// +// [`CLOUD_RUN_TASK_INDEX`]: https://cloud.google.com/run/docs/container-contract#jobs-env-vars +func GCPCloudRunJobTaskIndex(val int) attribute.KeyValue { + return GCPCloudRunJobTaskIndexKey.Int(val) +} + +// GCPGCEInstanceHostname returns an attribute KeyValue conforming to the +// "gcp.gce.instance.hostname" semantic conventions. It represents the hostname +// of a GCE instance. This is the full value of the default or [custom hostname] +// . +// +// [custom hostname]: https://cloud.google.com/compute/docs/instances/custom-hostname-vm +func GCPGCEInstanceHostname(val string) attribute.KeyValue { + return GCPGCEInstanceHostnameKey.String(val) +} + +// GCPGCEInstanceName returns an attribute KeyValue conforming to the +// "gcp.gce.instance.name" semantic conventions. It represents the instance name +// of a GCE instance. This is the value provided by `host.name`, the visible name +// of the instance in the Cloud Console UI, and the prefix for the default +// hostname of the instance as defined by the [default internal DNS name]. +// +// [default internal DNS name]: https://cloud.google.com/compute/docs/internal-dns#instance-fully-qualified-domain-names +func GCPGCEInstanceName(val string) attribute.KeyValue { + return GCPGCEInstanceNameKey.String(val) +} + +// Enum values for gcp.apphub.service.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubServiceCriticalityTypeMissionCritical = GCPAppHubServiceCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubServiceCriticalityTypeHigh = GCPAppHubServiceCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubServiceCriticalityTypeMedium = GCPAppHubServiceCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubServiceCriticalityTypeLow = GCPAppHubServiceCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub.service.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeProduction = GCPAppHubServiceEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeStaging = GCPAppHubServiceEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeTest = GCPAppHubServiceEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubServiceEnvironmentTypeDevelopment = GCPAppHubServiceEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Enum values for gcp.apphub.workload.criticality_type +var ( + // Mission critical service. + // Stability: development + GCPAppHubWorkloadCriticalityTypeMissionCritical = GCPAppHubWorkloadCriticalityTypeKey.String("MISSION_CRITICAL") + // High impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeHigh = GCPAppHubWorkloadCriticalityTypeKey.String("HIGH") + // Medium impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeMedium = GCPAppHubWorkloadCriticalityTypeKey.String("MEDIUM") + // Low impact. + // Stability: development + GCPAppHubWorkloadCriticalityTypeLow = GCPAppHubWorkloadCriticalityTypeKey.String("LOW") +) + +// Enum values for gcp.apphub.workload.environment_type +var ( + // Production environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeProduction = GCPAppHubWorkloadEnvironmentTypeKey.String("PRODUCTION") + // Staging environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeStaging = GCPAppHubWorkloadEnvironmentTypeKey.String("STAGING") + // Test environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeTest = GCPAppHubWorkloadEnvironmentTypeKey.String("TEST") + // Development environment. + // Stability: development + GCPAppHubWorkloadEnvironmentTypeDevelopment = GCPAppHubWorkloadEnvironmentTypeKey.String("DEVELOPMENT") +) + +// Namespace: gen_ai +const ( + // GenAIAgentDescriptionKey is the attribute Key conforming to the + // "gen_ai.agent.description" semantic conventions. It represents the free-form + // description of the GenAI agent provided by the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Helps with math problems", "Generates fiction stories" + GenAIAgentDescriptionKey = attribute.Key("gen_ai.agent.description") + + // GenAIAgentIDKey is the attribute Key conforming to the "gen_ai.agent.id" + // semantic conventions. It represents the unique identifier of the GenAI agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "asst_5j66UpCpwteGg4YSxUnt7lPY" + GenAIAgentIDKey = attribute.Key("gen_ai.agent.id") + + // GenAIAgentNameKey is the attribute Key conforming to the "gen_ai.agent.name" + // semantic conventions. It represents the human-readable name of the GenAI + // agent provided by the application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Math Tutor", "Fiction Writer" + GenAIAgentNameKey = attribute.Key("gen_ai.agent.name") + + // GenAIConversationIDKey is the attribute Key conforming to the + // "gen_ai.conversation.id" semantic conventions. It represents the unique + // identifier for a conversation (session, thread), used to store and correlate + // messages within this conversation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "conv_5j66UpCpwteGg4YSxUnt7lPY" + GenAIConversationIDKey = attribute.Key("gen_ai.conversation.id") + + // GenAIDataSourceIDKey is the attribute Key conforming to the + // "gen_ai.data_source.id" semantic conventions. It represents the data source + // identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "H7STPQYOND" + // Note: Data sources are used by AI agents and RAG applications to store + // grounding data. A data source may be an external database, object store, + // document collection, website, or any other storage system used by the GenAI + // agent or application. The `gen_ai.data_source.id` SHOULD match the identifier + // used by the GenAI system rather than a name specific to the external storage, + // such as a database or object store. Semantic conventions referencing + // `gen_ai.data_source.id` MAY also leverage additional attributes, such as + // `db.*`, to further identify and describe the data source. + GenAIDataSourceIDKey = attribute.Key("gen_ai.data_source.id") + + // GenAIOpenAIRequestServiceTierKey is the attribute Key conforming to the + // "gen_ai.openai.request.service_tier" semantic conventions. It represents the + // service tier requested. May be a specific tier, default, or auto. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "auto", "default" + GenAIOpenAIRequestServiceTierKey = attribute.Key("gen_ai.openai.request.service_tier") + + // GenAIOpenAIResponseServiceTierKey is the attribute Key conforming to the + // "gen_ai.openai.response.service_tier" semantic conventions. It represents the + // service tier used for the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "scale", "default" + GenAIOpenAIResponseServiceTierKey = attribute.Key("gen_ai.openai.response.service_tier") + + // GenAIOpenAIResponseSystemFingerprintKey is the attribute Key conforming to + // the "gen_ai.openai.response.system_fingerprint" semantic conventions. It + // represents a fingerprint to track any eventual change in the Generative AI + // environment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "fp_44709d6fcb" + GenAIOpenAIResponseSystemFingerprintKey = attribute.Key("gen_ai.openai.response.system_fingerprint") + + // GenAIOperationNameKey is the attribute Key conforming to the + // "gen_ai.operation.name" semantic conventions. It represents the name of the + // operation being performed. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: If one of the predefined values applies, but specific system uses a + // different name it's RECOMMENDED to document it in the semantic conventions + // for specific GenAI system and use system-specific name in the + // instrumentation. If a different name is not documented, instrumentation + // libraries SHOULD use applicable predefined value. + GenAIOperationNameKey = attribute.Key("gen_ai.operation.name") + + // GenAIOutputTypeKey is the attribute Key conforming to the + // "gen_ai.output.type" semantic conventions. It represents the represents the + // content type requested by the client. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This attribute SHOULD be used when the client requests output of a + // specific type. The model may return zero or more outputs of this type. + // This attribute specifies the output modality and not the actual output + // format. For example, if an image is requested, the actual output could be a + // URL pointing to an image file. + // Additional output format details may be recorded in the future in the + // `gen_ai.output.{type}.*` attributes. + GenAIOutputTypeKey = attribute.Key("gen_ai.output.type") + + // GenAIRequestChoiceCountKey is the attribute Key conforming to the + // "gen_ai.request.choice.count" semantic conventions. It represents the target + // number of candidate completions to return. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3 + GenAIRequestChoiceCountKey = attribute.Key("gen_ai.request.choice.count") + + // GenAIRequestEncodingFormatsKey is the attribute Key conforming to the + // "gen_ai.request.encoding_formats" semantic conventions. It represents the + // encoding formats requested in an embeddings operation, if specified. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "base64"], ["float", "binary" + // Note: In some GenAI systems the encoding formats are called embedding types. + // Also, some GenAI systems only accept a single format per request. + GenAIRequestEncodingFormatsKey = attribute.Key("gen_ai.request.encoding_formats") + + // GenAIRequestFrequencyPenaltyKey is the attribute Key conforming to the + // "gen_ai.request.frequency_penalty" semantic conventions. It represents the + // frequency penalty setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.1 + GenAIRequestFrequencyPenaltyKey = attribute.Key("gen_ai.request.frequency_penalty") + + // GenAIRequestMaxTokensKey is the attribute Key conforming to the + // "gen_ai.request.max_tokens" semantic conventions. It represents the maximum + // number of tokens the model generates for a request. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + GenAIRequestMaxTokensKey = attribute.Key("gen_ai.request.max_tokens") + + // GenAIRequestModelKey is the attribute Key conforming to the + // "gen_ai.request.model" semantic conventions. It represents the name of the + // GenAI model a request is being made to. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: gpt-4 + GenAIRequestModelKey = attribute.Key("gen_ai.request.model") + + // GenAIRequestPresencePenaltyKey is the attribute Key conforming to the + // "gen_ai.request.presence_penalty" semantic conventions. It represents the + // presence penalty setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.1 + GenAIRequestPresencePenaltyKey = attribute.Key("gen_ai.request.presence_penalty") + + // GenAIRequestSeedKey is the attribute Key conforming to the + // "gen_ai.request.seed" semantic conventions. It represents the requests with + // same seed value more likely to return same result. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + GenAIRequestSeedKey = attribute.Key("gen_ai.request.seed") + + // GenAIRequestStopSequencesKey is the attribute Key conforming to the + // "gen_ai.request.stop_sequences" semantic conventions. It represents the list + // of sequences that the model will use to stop generating further tokens. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "forest", "lived" + GenAIRequestStopSequencesKey = attribute.Key("gen_ai.request.stop_sequences") + + // GenAIRequestTemperatureKey is the attribute Key conforming to the + // "gen_ai.request.temperature" semantic conventions. It represents the + // temperature setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0.0 + GenAIRequestTemperatureKey = attribute.Key("gen_ai.request.temperature") + + // GenAIRequestTopKKey is the attribute Key conforming to the + // "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling + // setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + GenAIRequestTopKKey = attribute.Key("gen_ai.request.top_k") + + // GenAIRequestTopPKey is the attribute Key conforming to the + // "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling + // setting for the GenAI request. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1.0 + GenAIRequestTopPKey = attribute.Key("gen_ai.request.top_p") + + // GenAIResponseFinishReasonsKey is the attribute Key conforming to the + // "gen_ai.response.finish_reasons" semantic conventions. It represents the + // array of reasons the model stopped generating tokens, corresponding to each + // generation received. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "stop"], ["stop", "length" + GenAIResponseFinishReasonsKey = attribute.Key("gen_ai.response.finish_reasons") + + // GenAIResponseIDKey is the attribute Key conforming to the + // "gen_ai.response.id" semantic conventions. It represents the unique + // identifier for the completion. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "chatcmpl-123" + GenAIResponseIDKey = attribute.Key("gen_ai.response.id") + + // GenAIResponseModelKey is the attribute Key conforming to the + // "gen_ai.response.model" semantic conventions. It represents the name of the + // model that generated the response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "gpt-4-0613" + GenAIResponseModelKey = attribute.Key("gen_ai.response.model") + + // GenAISystemKey is the attribute Key conforming to the "gen_ai.system" + // semantic conventions. It represents the Generative AI product as identified + // by the client or server instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: openai + // Note: The `gen_ai.system` describes a family of GenAI models with specific + // model identified + // by `gen_ai.request.model` and `gen_ai.response.model` attributes. + // + // The actual GenAI product may differ from the one identified by the client. + // Multiple systems, including Azure OpenAI and Gemini, are accessible by OpenAI + // client + // libraries. In such cases, the `gen_ai.system` is set to `openai` based on the + // instrumentation's best knowledge, instead of the actual system. The + // `server.address` + // attribute may help identify the actual system in use for `openai`. + // + // For custom model, a custom friendly name SHOULD be used. + // If none of these options apply, the `gen_ai.system` SHOULD be set to `_OTHER` + // . + GenAISystemKey = attribute.Key("gen_ai.system") + + // GenAITokenTypeKey is the attribute Key conforming to the "gen_ai.token.type" + // semantic conventions. It represents the type of token being counted. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "input", "output" + GenAITokenTypeKey = attribute.Key("gen_ai.token.type") + + // GenAIToolCallIDKey is the attribute Key conforming to the + // "gen_ai.tool.call.id" semantic conventions. It represents the tool call + // identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "call_mszuSIzqtI65i1wAUOE8w5H4" + GenAIToolCallIDKey = attribute.Key("gen_ai.tool.call.id") + + // GenAIToolDescriptionKey is the attribute Key conforming to the + // "gen_ai.tool.description" semantic conventions. It represents the tool + // description. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Multiply two numbers" + GenAIToolDescriptionKey = attribute.Key("gen_ai.tool.description") + + // GenAIToolNameKey is the attribute Key conforming to the "gen_ai.tool.name" + // semantic conventions. It represents the name of the tool utilized by the + // agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Flights" + GenAIToolNameKey = attribute.Key("gen_ai.tool.name") + + // GenAIToolTypeKey is the attribute Key conforming to the "gen_ai.tool.type" + // semantic conventions. It represents the type of the tool utilized by the + // agent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "function", "extension", "datastore" + // Note: Extension: A tool executed on the agent-side to directly call external + // APIs, bridging the gap between the agent and real-world systems. + // Agent-side operations involve actions that are performed by the agent on the + // server or within the agent's controlled environment. + // Function: A tool executed on the client-side, where the agent generates + // parameters for a predefined function, and the client executes the logic. + // Client-side operations are actions taken on the user's end or within the + // client application. + // Datastore: A tool used by the agent to access and query structured or + // unstructured external data for retrieval-augmented tasks or knowledge + // updates. + GenAIToolTypeKey = attribute.Key("gen_ai.tool.type") + + // GenAIUsageInputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.input_tokens" semantic conventions. It represents the number of + // tokens used in the GenAI input (prompt). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 100 + GenAIUsageInputTokensKey = attribute.Key("gen_ai.usage.input_tokens") + + // GenAIUsageOutputTokensKey is the attribute Key conforming to the + // "gen_ai.usage.output_tokens" semantic conventions. It represents the number + // of tokens used in the GenAI response (completion). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 180 + GenAIUsageOutputTokensKey = attribute.Key("gen_ai.usage.output_tokens") +) + +// GenAIAgentDescription returns an attribute KeyValue conforming to the +// "gen_ai.agent.description" semantic conventions. It represents the free-form +// description of the GenAI agent provided by the application. +func GenAIAgentDescription(val string) attribute.KeyValue { + return GenAIAgentDescriptionKey.String(val) +} + +// GenAIAgentID returns an attribute KeyValue conforming to the "gen_ai.agent.id" +// semantic conventions. It represents the unique identifier of the GenAI agent. +func GenAIAgentID(val string) attribute.KeyValue { + return GenAIAgentIDKey.String(val) +} + +// GenAIAgentName returns an attribute KeyValue conforming to the +// "gen_ai.agent.name" semantic conventions. It represents the human-readable +// name of the GenAI agent provided by the application. +func GenAIAgentName(val string) attribute.KeyValue { + return GenAIAgentNameKey.String(val) +} + +// GenAIConversationID returns an attribute KeyValue conforming to the +// "gen_ai.conversation.id" semantic conventions. It represents the unique +// identifier for a conversation (session, thread), used to store and correlate +// messages within this conversation. +func GenAIConversationID(val string) attribute.KeyValue { + return GenAIConversationIDKey.String(val) +} + +// GenAIDataSourceID returns an attribute KeyValue conforming to the +// "gen_ai.data_source.id" semantic conventions. It represents the data source +// identifier. +func GenAIDataSourceID(val string) attribute.KeyValue { + return GenAIDataSourceIDKey.String(val) +} + +// GenAIOpenAIResponseServiceTier returns an attribute KeyValue conforming to the +// "gen_ai.openai.response.service_tier" semantic conventions. It represents the +// service tier used for the response. +func GenAIOpenAIResponseServiceTier(val string) attribute.KeyValue { + return GenAIOpenAIResponseServiceTierKey.String(val) +} + +// GenAIOpenAIResponseSystemFingerprint returns an attribute KeyValue conforming +// to the "gen_ai.openai.response.system_fingerprint" semantic conventions. It +// represents a fingerprint to track any eventual change in the Generative AI +// environment. +func GenAIOpenAIResponseSystemFingerprint(val string) attribute.KeyValue { + return GenAIOpenAIResponseSystemFingerprintKey.String(val) +} + +// GenAIRequestChoiceCount returns an attribute KeyValue conforming to the +// "gen_ai.request.choice.count" semantic conventions. It represents the target +// number of candidate completions to return. +func GenAIRequestChoiceCount(val int) attribute.KeyValue { + return GenAIRequestChoiceCountKey.Int(val) +} + +// GenAIRequestEncodingFormats returns an attribute KeyValue conforming to the +// "gen_ai.request.encoding_formats" semantic conventions. It represents the +// encoding formats requested in an embeddings operation, if specified. +func GenAIRequestEncodingFormats(val ...string) attribute.KeyValue { + return GenAIRequestEncodingFormatsKey.StringSlice(val) +} + +// GenAIRequestFrequencyPenalty returns an attribute KeyValue conforming to the +// "gen_ai.request.frequency_penalty" semantic conventions. It represents the +// frequency penalty setting for the GenAI request. +func GenAIRequestFrequencyPenalty(val float64) attribute.KeyValue { + return GenAIRequestFrequencyPenaltyKey.Float64(val) +} + +// GenAIRequestMaxTokens returns an attribute KeyValue conforming to the +// "gen_ai.request.max_tokens" semantic conventions. It represents the maximum +// number of tokens the model generates for a request. +func GenAIRequestMaxTokens(val int) attribute.KeyValue { + return GenAIRequestMaxTokensKey.Int(val) +} + +// GenAIRequestModel returns an attribute KeyValue conforming to the +// "gen_ai.request.model" semantic conventions. It represents the name of the +// GenAI model a request is being made to. +func GenAIRequestModel(val string) attribute.KeyValue { + return GenAIRequestModelKey.String(val) +} + +// GenAIRequestPresencePenalty returns an attribute KeyValue conforming to the +// "gen_ai.request.presence_penalty" semantic conventions. It represents the +// presence penalty setting for the GenAI request. +func GenAIRequestPresencePenalty(val float64) attribute.KeyValue { + return GenAIRequestPresencePenaltyKey.Float64(val) +} + +// GenAIRequestSeed returns an attribute KeyValue conforming to the +// "gen_ai.request.seed" semantic conventions. It represents the requests with +// same seed value more likely to return same result. +func GenAIRequestSeed(val int) attribute.KeyValue { + return GenAIRequestSeedKey.Int(val) +} + +// GenAIRequestStopSequences returns an attribute KeyValue conforming to the +// "gen_ai.request.stop_sequences" semantic conventions. It represents the list +// of sequences that the model will use to stop generating further tokens. +func GenAIRequestStopSequences(val ...string) attribute.KeyValue { + return GenAIRequestStopSequencesKey.StringSlice(val) +} + +// GenAIRequestTemperature returns an attribute KeyValue conforming to the +// "gen_ai.request.temperature" semantic conventions. It represents the +// temperature setting for the GenAI request. +func GenAIRequestTemperature(val float64) attribute.KeyValue { + return GenAIRequestTemperatureKey.Float64(val) +} + +// GenAIRequestTopK returns an attribute KeyValue conforming to the +// "gen_ai.request.top_k" semantic conventions. It represents the top_k sampling +// setting for the GenAI request. +func GenAIRequestTopK(val float64) attribute.KeyValue { + return GenAIRequestTopKKey.Float64(val) +} + +// GenAIRequestTopP returns an attribute KeyValue conforming to the +// "gen_ai.request.top_p" semantic conventions. It represents the top_p sampling +// setting for the GenAI request. +func GenAIRequestTopP(val float64) attribute.KeyValue { + return GenAIRequestTopPKey.Float64(val) +} + +// GenAIResponseFinishReasons returns an attribute KeyValue conforming to the +// "gen_ai.response.finish_reasons" semantic conventions. It represents the array +// of reasons the model stopped generating tokens, corresponding to each +// generation received. +func GenAIResponseFinishReasons(val ...string) attribute.KeyValue { + return GenAIResponseFinishReasonsKey.StringSlice(val) +} + +// GenAIResponseID returns an attribute KeyValue conforming to the +// "gen_ai.response.id" semantic conventions. It represents the unique identifier +// for the completion. +func GenAIResponseID(val string) attribute.KeyValue { + return GenAIResponseIDKey.String(val) +} + +// GenAIResponseModel returns an attribute KeyValue conforming to the +// "gen_ai.response.model" semantic conventions. It represents the name of the +// model that generated the response. +func GenAIResponseModel(val string) attribute.KeyValue { + return GenAIResponseModelKey.String(val) +} + +// GenAIToolCallID returns an attribute KeyValue conforming to the +// "gen_ai.tool.call.id" semantic conventions. It represents the tool call +// identifier. +func GenAIToolCallID(val string) attribute.KeyValue { + return GenAIToolCallIDKey.String(val) +} + +// GenAIToolDescription returns an attribute KeyValue conforming to the +// "gen_ai.tool.description" semantic conventions. It represents the tool +// description. +func GenAIToolDescription(val string) attribute.KeyValue { + return GenAIToolDescriptionKey.String(val) +} + +// GenAIToolName returns an attribute KeyValue conforming to the +// "gen_ai.tool.name" semantic conventions. It represents the name of the tool +// utilized by the agent. +func GenAIToolName(val string) attribute.KeyValue { + return GenAIToolNameKey.String(val) +} + +// GenAIToolType returns an attribute KeyValue conforming to the +// "gen_ai.tool.type" semantic conventions. It represents the type of the tool +// utilized by the agent. +func GenAIToolType(val string) attribute.KeyValue { + return GenAIToolTypeKey.String(val) +} + +// GenAIUsageInputTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.input_tokens" semantic conventions. It represents the number of +// tokens used in the GenAI input (prompt). +func GenAIUsageInputTokens(val int) attribute.KeyValue { + return GenAIUsageInputTokensKey.Int(val) +} + +// GenAIUsageOutputTokens returns an attribute KeyValue conforming to the +// "gen_ai.usage.output_tokens" semantic conventions. It represents the number of +// tokens used in the GenAI response (completion). +func GenAIUsageOutputTokens(val int) attribute.KeyValue { + return GenAIUsageOutputTokensKey.Int(val) +} + +// Enum values for gen_ai.openai.request.service_tier +var ( + // The system will utilize scale tier credits until they are exhausted. + // Stability: development + GenAIOpenAIRequestServiceTierAuto = GenAIOpenAIRequestServiceTierKey.String("auto") + // The system will utilize the default scale tier. + // Stability: development + GenAIOpenAIRequestServiceTierDefault = GenAIOpenAIRequestServiceTierKey.String("default") +) + +// Enum values for gen_ai.operation.name +var ( + // Chat completion operation such as [OpenAI Chat API] + // Stability: development + // + // [OpenAI Chat API]: https://platform.openai.com/docs/api-reference/chat + GenAIOperationNameChat = GenAIOperationNameKey.String("chat") + // Multimodal content generation operation such as [Gemini Generate Content] + // Stability: development + // + // [Gemini Generate Content]: https://ai.google.dev/api/generate-content + GenAIOperationNameGenerateContent = GenAIOperationNameKey.String("generate_content") + // Text completions operation such as [OpenAI Completions API (Legacy)] + // Stability: development + // + // [OpenAI Completions API (Legacy)]: https://platform.openai.com/docs/api-reference/completions + GenAIOperationNameTextCompletion = GenAIOperationNameKey.String("text_completion") + // Embeddings operation such as [OpenAI Create embeddings API] + // Stability: development + // + // [OpenAI Create embeddings API]: https://platform.openai.com/docs/api-reference/embeddings/create + GenAIOperationNameEmbeddings = GenAIOperationNameKey.String("embeddings") + // Create GenAI agent + // Stability: development + GenAIOperationNameCreateAgent = GenAIOperationNameKey.String("create_agent") + // Invoke GenAI agent + // Stability: development + GenAIOperationNameInvokeAgent = GenAIOperationNameKey.String("invoke_agent") + // Execute a tool + // Stability: development + GenAIOperationNameExecuteTool = GenAIOperationNameKey.String("execute_tool") +) + +// Enum values for gen_ai.output.type +var ( + // Plain text + // Stability: development + GenAIOutputTypeText = GenAIOutputTypeKey.String("text") + // JSON object with known or unknown schema + // Stability: development + GenAIOutputTypeJSON = GenAIOutputTypeKey.String("json") + // Image + // Stability: development + GenAIOutputTypeImage = GenAIOutputTypeKey.String("image") + // Speech + // Stability: development + GenAIOutputTypeSpeech = GenAIOutputTypeKey.String("speech") +) + +// Enum values for gen_ai.system +var ( + // OpenAI + // Stability: development + GenAISystemOpenAI = GenAISystemKey.String("openai") + // Any Google generative AI endpoint + // Stability: development + GenAISystemGCPGenAI = GenAISystemKey.String("gcp.gen_ai") + // Vertex AI + // Stability: development + GenAISystemGCPVertexAI = GenAISystemKey.String("gcp.vertex_ai") + // Gemini + // Stability: development + GenAISystemGCPGemini = GenAISystemKey.String("gcp.gemini") + // Deprecated: Use 'gcp.vertex_ai' instead. + GenAISystemVertexAI = GenAISystemKey.String("vertex_ai") + // Deprecated: Use 'gcp.gemini' instead. + GenAISystemGemini = GenAISystemKey.String("gemini") + // Anthropic + // Stability: development + GenAISystemAnthropic = GenAISystemKey.String("anthropic") + // Cohere + // Stability: development + GenAISystemCohere = GenAISystemKey.String("cohere") + // Azure AI Inference + // Stability: development + GenAISystemAzAIInference = GenAISystemKey.String("az.ai.inference") + // Azure OpenAI + // Stability: development + GenAISystemAzAIOpenAI = GenAISystemKey.String("az.ai.openai") + // IBM Watsonx AI + // Stability: development + GenAISystemIBMWatsonxAI = GenAISystemKey.String("ibm.watsonx.ai") + // AWS Bedrock + // Stability: development + GenAISystemAWSBedrock = GenAISystemKey.String("aws.bedrock") + // Perplexity + // Stability: development + GenAISystemPerplexity = GenAISystemKey.String("perplexity") + // xAI + // Stability: development + GenAISystemXai = GenAISystemKey.String("xai") + // DeepSeek + // Stability: development + GenAISystemDeepseek = GenAISystemKey.String("deepseek") + // Groq + // Stability: development + GenAISystemGroq = GenAISystemKey.String("groq") + // Mistral AI + // Stability: development + GenAISystemMistralAI = GenAISystemKey.String("mistral_ai") +) + +// Enum values for gen_ai.token.type +var ( + // Input tokens (prompt, input, etc.) + // Stability: development + GenAITokenTypeInput = GenAITokenTypeKey.String("input") + // Deprecated: Replaced by `output`. + GenAITokenTypeCompletion = GenAITokenTypeKey.String("output") + // Output tokens (completion, response, etc.) + // Stability: development + GenAITokenTypeOutput = GenAITokenTypeKey.String("output") +) + +// Namespace: geo +const ( + // GeoContinentCodeKey is the attribute Key conforming to the + // "geo.continent.code" semantic conventions. It represents the two-letter code + // representing continent’s name. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + GeoContinentCodeKey = attribute.Key("geo.continent.code") + + // GeoCountryISOCodeKey is the attribute Key conforming to the + // "geo.country.iso_code" semantic conventions. It represents the two-letter ISO + // Country Code ([ISO 3166-1 alpha2]). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CA" + // + // [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes + GeoCountryISOCodeKey = attribute.Key("geo.country.iso_code") + + // GeoLocalityNameKey is the attribute Key conforming to the "geo.locality.name" + // semantic conventions. It represents the locality name. Represents the name of + // a city, town, village, or similar populated place. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Montreal", "Berlin" + GeoLocalityNameKey = attribute.Key("geo.locality.name") + + // GeoLocationLatKey is the attribute Key conforming to the "geo.location.lat" + // semantic conventions. It represents the latitude of the geo location in + // [WGS84]. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 45.505918 + // + // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 + GeoLocationLatKey = attribute.Key("geo.location.lat") + + // GeoLocationLonKey is the attribute Key conforming to the "geo.location.lon" + // semantic conventions. It represents the longitude of the geo location in + // [WGS84]. + // + // Type: double + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: -73.61483 + // + // [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 + GeoLocationLonKey = attribute.Key("geo.location.lon") + + // GeoPostalCodeKey is the attribute Key conforming to the "geo.postal_code" + // semantic conventions. It represents the postal code associated with the + // location. Values appropriate for this field may also be known as a postcode + // or ZIP code and will vary widely from country to country. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "94040" + GeoPostalCodeKey = attribute.Key("geo.postal_code") + + // GeoRegionISOCodeKey is the attribute Key conforming to the + // "geo.region.iso_code" semantic conventions. It represents the region ISO code + // ([ISO 3166-2]). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CA-QC" + // + // [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 + GeoRegionISOCodeKey = attribute.Key("geo.region.iso_code") +) + +// GeoCountryISOCode returns an attribute KeyValue conforming to the +// "geo.country.iso_code" semantic conventions. It represents the two-letter ISO +// Country Code ([ISO 3166-1 alpha2]). +// +// [ISO 3166-1 alpha2]: https://wikipedia.org/wiki/ISO_3166-1#Codes +func GeoCountryISOCode(val string) attribute.KeyValue { + return GeoCountryISOCodeKey.String(val) +} + +// GeoLocalityName returns an attribute KeyValue conforming to the +// "geo.locality.name" semantic conventions. It represents the locality name. +// Represents the name of a city, town, village, or similar populated place. +func GeoLocalityName(val string) attribute.KeyValue { + return GeoLocalityNameKey.String(val) +} + +// GeoLocationLat returns an attribute KeyValue conforming to the +// "geo.location.lat" semantic conventions. It represents the latitude of the geo +// location in [WGS84]. +// +// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 +func GeoLocationLat(val float64) attribute.KeyValue { + return GeoLocationLatKey.Float64(val) +} + +// GeoLocationLon returns an attribute KeyValue conforming to the +// "geo.location.lon" semantic conventions. It represents the longitude of the +// geo location in [WGS84]. +// +// [WGS84]: https://wikipedia.org/wiki/World_Geodetic_System#WGS84 +func GeoLocationLon(val float64) attribute.KeyValue { + return GeoLocationLonKey.Float64(val) +} + +// GeoPostalCode returns an attribute KeyValue conforming to the +// "geo.postal_code" semantic conventions. It represents the postal code +// associated with the location. Values appropriate for this field may also be +// known as a postcode or ZIP code and will vary widely from country to country. +func GeoPostalCode(val string) attribute.KeyValue { + return GeoPostalCodeKey.String(val) +} + +// GeoRegionISOCode returns an attribute KeyValue conforming to the +// "geo.region.iso_code" semantic conventions. It represents the region ISO code +// ([ISO 3166-2]). +// +// [ISO 3166-2]: https://wikipedia.org/wiki/ISO_3166-2 +func GeoRegionISOCode(val string) attribute.KeyValue { + return GeoRegionISOCodeKey.String(val) +} + +// Enum values for geo.continent.code +var ( + // Africa + // Stability: development + GeoContinentCodeAf = GeoContinentCodeKey.String("AF") + // Antarctica + // Stability: development + GeoContinentCodeAn = GeoContinentCodeKey.String("AN") + // Asia + // Stability: development + GeoContinentCodeAs = GeoContinentCodeKey.String("AS") + // Europe + // Stability: development + GeoContinentCodeEu = GeoContinentCodeKey.String("EU") + // North America + // Stability: development + GeoContinentCodeNa = GeoContinentCodeKey.String("NA") + // Oceania + // Stability: development + GeoContinentCodeOc = GeoContinentCodeKey.String("OC") + // South America + // Stability: development + GeoContinentCodeSa = GeoContinentCodeKey.String("SA") +) + +// Namespace: go +const ( + // GoMemoryTypeKey is the attribute Key conforming to the "go.memory.type" + // semantic conventions. It represents the type of memory. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "other", "stack" + GoMemoryTypeKey = attribute.Key("go.memory.type") +) + +// Enum values for go.memory.type +var ( + // Memory allocated from the heap that is reserved for stack space, whether or + // not it is currently in-use. + // Stability: development + GoMemoryTypeStack = GoMemoryTypeKey.String("stack") + // Memory used by the Go runtime, excluding other categories of memory usage + // described in this enumeration. + // Stability: development + GoMemoryTypeOther = GoMemoryTypeKey.String("other") +) + +// Namespace: graphql +const ( + // GraphQLDocumentKey is the attribute Key conforming to the "graphql.document" + // semantic conventions. It represents the GraphQL document being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: query findBookById { bookById(id: ?) { name } } + // Note: The value may be sanitized to exclude sensitive information. + GraphQLDocumentKey = attribute.Key("graphql.document") + + // GraphQLOperationNameKey is the attribute Key conforming to the + // "graphql.operation.name" semantic conventions. It represents the name of the + // operation being executed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: findBookById + GraphQLOperationNameKey = attribute.Key("graphql.operation.name") + + // GraphQLOperationTypeKey is the attribute Key conforming to the + // "graphql.operation.type" semantic conventions. It represents the type of the + // operation being executed. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "query", "mutation", "subscription" + GraphQLOperationTypeKey = attribute.Key("graphql.operation.type") +) + +// GraphQLDocument returns an attribute KeyValue conforming to the +// "graphql.document" semantic conventions. It represents the GraphQL document +// being executed. +func GraphQLDocument(val string) attribute.KeyValue { + return GraphQLDocumentKey.String(val) +} + +// GraphQLOperationName returns an attribute KeyValue conforming to the +// "graphql.operation.name" semantic conventions. It represents the name of the +// operation being executed. +func GraphQLOperationName(val string) attribute.KeyValue { + return GraphQLOperationNameKey.String(val) +} + +// Enum values for graphql.operation.type +var ( + // GraphQL query + // Stability: development + GraphQLOperationTypeQuery = GraphQLOperationTypeKey.String("query") + // GraphQL mutation + // Stability: development + GraphQLOperationTypeMutation = GraphQLOperationTypeKey.String("mutation") + // GraphQL subscription + // Stability: development + GraphQLOperationTypeSubscription = GraphQLOperationTypeKey.String("subscription") +) + +// Namespace: heroku +const ( + // HerokuAppIDKey is the attribute Key conforming to the "heroku.app.id" + // semantic conventions. It represents the unique identifier for the + // application. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2daa2797-e42b-4624-9322-ec3f968df4da" + HerokuAppIDKey = attribute.Key("heroku.app.id") + + // HerokuReleaseCommitKey is the attribute Key conforming to the + // "heroku.release.commit" semantic conventions. It represents the commit hash + // for the current release. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "e6134959463efd8966b20e75b913cafe3f5ec" + HerokuReleaseCommitKey = attribute.Key("heroku.release.commit") + + // HerokuReleaseCreationTimestampKey is the attribute Key conforming to the + // "heroku.release.creation_timestamp" semantic conventions. It represents the + // time and date the release was created. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2022-10-23T18:00:42Z" + HerokuReleaseCreationTimestampKey = attribute.Key("heroku.release.creation_timestamp") +) + +// HerokuAppID returns an attribute KeyValue conforming to the "heroku.app.id" +// semantic conventions. It represents the unique identifier for the application. +func HerokuAppID(val string) attribute.KeyValue { + return HerokuAppIDKey.String(val) +} + +// HerokuReleaseCommit returns an attribute KeyValue conforming to the +// "heroku.release.commit" semantic conventions. It represents the commit hash +// for the current release. +func HerokuReleaseCommit(val string) attribute.KeyValue { + return HerokuReleaseCommitKey.String(val) +} + +// HerokuReleaseCreationTimestamp returns an attribute KeyValue conforming to the +// "heroku.release.creation_timestamp" semantic conventions. It represents the +// time and date the release was created. +func HerokuReleaseCreationTimestamp(val string) attribute.KeyValue { + return HerokuReleaseCreationTimestampKey.String(val) +} + +// Namespace: host +const ( + // HostArchKey is the attribute Key conforming to the "host.arch" semantic + // conventions. It represents the CPU architecture the host system is running + // on. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HostArchKey = attribute.Key("host.arch") + + // HostCPUCacheL2SizeKey is the attribute Key conforming to the + // "host.cpu.cache.l2.size" semantic conventions. It represents the amount of + // level 2 memory cache available to the processor (in Bytes). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12288000 + HostCPUCacheL2SizeKey = attribute.Key("host.cpu.cache.l2.size") + + // HostCPUFamilyKey is the attribute Key conforming to the "host.cpu.family" + // semantic conventions. It represents the family or generation of the CPU. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "6", "PA-RISC 1.1e" + HostCPUFamilyKey = attribute.Key("host.cpu.family") + + // HostCPUModelIDKey is the attribute Key conforming to the "host.cpu.model.id" + // semantic conventions. It represents the model identifier. It provides more + // granular information about the CPU, distinguishing it from other CPUs within + // the same family. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "6", "9000/778/B180L" + HostCPUModelIDKey = attribute.Key("host.cpu.model.id") + + // HostCPUModelNameKey is the attribute Key conforming to the + // "host.cpu.model.name" semantic conventions. It represents the model + // designation of the processor. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "11th Gen Intel(R) Core(TM) i7-1185G7 @ 3.00GHz" + HostCPUModelNameKey = attribute.Key("host.cpu.model.name") + + // HostCPUSteppingKey is the attribute Key conforming to the "host.cpu.stepping" + // semantic conventions. It represents the stepping or core revisions. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1", "r1p1" + HostCPUSteppingKey = attribute.Key("host.cpu.stepping") + + // HostCPUVendorIDKey is the attribute Key conforming to the + // "host.cpu.vendor.id" semantic conventions. It represents the processor + // manufacturer identifier. A maximum 12-character string. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "GenuineIntel" + // Note: [CPUID] command returns the vendor ID string in EBX, EDX and ECX + // registers. Writing these to memory in this order results in a 12-character + // string. + // + // [CPUID]: https://wiki.osdev.org/CPUID + HostCPUVendorIDKey = attribute.Key("host.cpu.vendor.id") + + // HostIDKey is the attribute Key conforming to the "host.id" semantic + // conventions. It represents the unique host ID. For Cloud, this must be the + // instance_id assigned by the cloud provider. For non-containerized systems, + // this should be the `machine-id`. See the table below for the sources to use + // to determine the `machine-id` based on operating system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "fdbf79e8af94cb7f9e8df36789187052" + HostIDKey = attribute.Key("host.id") + + // HostImageIDKey is the attribute Key conforming to the "host.image.id" + // semantic conventions. It represents the VM image ID or host OS image ID. For + // Cloud, this value is from the provider. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ami-07b06b442921831e5" + HostImageIDKey = attribute.Key("host.image.id") + + // HostImageNameKey is the attribute Key conforming to the "host.image.name" + // semantic conventions. It represents the name of the VM image or OS install + // the host was instantiated from. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "infra-ami-eks-worker-node-7d4ec78312", "CentOS-8-x86_64-1905" + HostImageNameKey = attribute.Key("host.image.name") + + // HostImageVersionKey is the attribute Key conforming to the + // "host.image.version" semantic conventions. It represents the version string + // of the VM image or host OS as defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0.1" + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + HostImageVersionKey = attribute.Key("host.image.version") + + // HostIPKey is the attribute Key conforming to the "host.ip" semantic + // conventions. It represents the available IP addresses of the host, excluding + // loopback interfaces. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "192.168.1.140", "fe80::abc2:4a28:737a:609e" + // Note: IPv4 Addresses MUST be specified in dotted-quad notation. IPv6 + // addresses MUST be specified in the [RFC 5952] format. + // + // [RFC 5952]: https://www.rfc-editor.org/rfc/rfc5952.html + HostIPKey = attribute.Key("host.ip") + + // HostMacKey is the attribute Key conforming to the "host.mac" semantic + // conventions. It represents the available MAC addresses of the host, excluding + // loopback interfaces. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "AC-DE-48-23-45-67", "AC-DE-48-23-45-67-01-9F" + // Note: MAC Addresses MUST be represented in [IEEE RA hexadecimal form]: as + // hyphen-separated octets in uppercase hexadecimal form from most to least + // significant. + // + // [IEEE RA hexadecimal form]: https://standards.ieee.org/wp-content/uploads/import/documents/tutorials/eui.pdf + HostMacKey = attribute.Key("host.mac") + + // HostNameKey is the attribute Key conforming to the "host.name" semantic + // conventions. It represents the name of the host. On Unix systems, it may + // contain what the hostname command returns, or the fully qualified hostname, + // or another name specified by the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-test" + HostNameKey = attribute.Key("host.name") + + // HostTypeKey is the attribute Key conforming to the "host.type" semantic + // conventions. It represents the type of host. For Cloud, this must be the + // machine type. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "n1-standard-1" + HostTypeKey = attribute.Key("host.type") +) + +// HostCPUCacheL2Size returns an attribute KeyValue conforming to the +// "host.cpu.cache.l2.size" semantic conventions. It represents the amount of +// level 2 memory cache available to the processor (in Bytes). +func HostCPUCacheL2Size(val int) attribute.KeyValue { + return HostCPUCacheL2SizeKey.Int(val) +} + +// HostCPUFamily returns an attribute KeyValue conforming to the +// "host.cpu.family" semantic conventions. It represents the family or generation +// of the CPU. +func HostCPUFamily(val string) attribute.KeyValue { + return HostCPUFamilyKey.String(val) +} + +// HostCPUModelID returns an attribute KeyValue conforming to the +// "host.cpu.model.id" semantic conventions. It represents the model identifier. +// It provides more granular information about the CPU, distinguishing it from +// other CPUs within the same family. +func HostCPUModelID(val string) attribute.KeyValue { + return HostCPUModelIDKey.String(val) +} + +// HostCPUModelName returns an attribute KeyValue conforming to the +// "host.cpu.model.name" semantic conventions. It represents the model +// designation of the processor. +func HostCPUModelName(val string) attribute.KeyValue { + return HostCPUModelNameKey.String(val) +} + +// HostCPUStepping returns an attribute KeyValue conforming to the +// "host.cpu.stepping" semantic conventions. It represents the stepping or core +// revisions. +func HostCPUStepping(val string) attribute.KeyValue { + return HostCPUSteppingKey.String(val) +} + +// HostCPUVendorID returns an attribute KeyValue conforming to the +// "host.cpu.vendor.id" semantic conventions. It represents the processor +// manufacturer identifier. A maximum 12-character string. +func HostCPUVendorID(val string) attribute.KeyValue { + return HostCPUVendorIDKey.String(val) +} + +// HostID returns an attribute KeyValue conforming to the "host.id" semantic +// conventions. It represents the unique host ID. For Cloud, this must be the +// instance_id assigned by the cloud provider. For non-containerized systems, +// this should be the `machine-id`. See the table below for the sources to use to +// determine the `machine-id` based on operating system. +func HostID(val string) attribute.KeyValue { + return HostIDKey.String(val) +} + +// HostImageID returns an attribute KeyValue conforming to the "host.image.id" +// semantic conventions. It represents the VM image ID or host OS image ID. For +// Cloud, this value is from the provider. +func HostImageID(val string) attribute.KeyValue { + return HostImageIDKey.String(val) +} + +// HostImageName returns an attribute KeyValue conforming to the +// "host.image.name" semantic conventions. It represents the name of the VM image +// or OS install the host was instantiated from. +func HostImageName(val string) attribute.KeyValue { + return HostImageNameKey.String(val) +} + +// HostImageVersion returns an attribute KeyValue conforming to the +// "host.image.version" semantic conventions. It represents the version string of +// the VM image or host OS as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func HostImageVersion(val string) attribute.KeyValue { + return HostImageVersionKey.String(val) +} + +// HostIP returns an attribute KeyValue conforming to the "host.ip" semantic +// conventions. It represents the available IP addresses of the host, excluding +// loopback interfaces. +func HostIP(val ...string) attribute.KeyValue { + return HostIPKey.StringSlice(val) +} + +// HostMac returns an attribute KeyValue conforming to the "host.mac" semantic +// conventions. It represents the available MAC addresses of the host, excluding +// loopback interfaces. +func HostMac(val ...string) attribute.KeyValue { + return HostMacKey.StringSlice(val) +} + +// HostName returns an attribute KeyValue conforming to the "host.name" semantic +// conventions. It represents the name of the host. On Unix systems, it may +// contain what the hostname command returns, or the fully qualified hostname, or +// another name specified by the user. +func HostName(val string) attribute.KeyValue { + return HostNameKey.String(val) +} + +// HostType returns an attribute KeyValue conforming to the "host.type" semantic +// conventions. It represents the type of host. For Cloud, this must be the +// machine type. +func HostType(val string) attribute.KeyValue { + return HostTypeKey.String(val) +} + +// Enum values for host.arch +var ( + // AMD64 + // Stability: development + HostArchAMD64 = HostArchKey.String("amd64") + // ARM32 + // Stability: development + HostArchARM32 = HostArchKey.String("arm32") + // ARM64 + // Stability: development + HostArchARM64 = HostArchKey.String("arm64") + // Itanium + // Stability: development + HostArchIA64 = HostArchKey.String("ia64") + // 32-bit PowerPC + // Stability: development + HostArchPPC32 = HostArchKey.String("ppc32") + // 64-bit PowerPC + // Stability: development + HostArchPPC64 = HostArchKey.String("ppc64") + // IBM z/Architecture + // Stability: development + HostArchS390x = HostArchKey.String("s390x") + // 32-bit x86 + // Stability: development + HostArchX86 = HostArchKey.String("x86") +) + +// Namespace: http +const ( + // HTTPConnectionStateKey is the attribute Key conforming to the + // "http.connection.state" semantic conventions. It represents the state of the + // HTTP connection in the HTTP connection pool. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "active", "idle" + HTTPConnectionStateKey = attribute.Key("http.connection.state") + + // HTTPRequestBodySizeKey is the attribute Key conforming to the + // "http.request.body.size" semantic conventions. It represents the size of the + // request payload body in bytes. This is the number of bytes transferred + // excluding headers and is often, but not always, present as the + // [Content-Length] header. For requests using transport encoding, this should + // be the compressed size. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length + HTTPRequestBodySizeKey = attribute.Key("http.request.body.size") + + // HTTPRequestMethodKey is the attribute Key conforming to the + // "http.request.method" semantic conventions. It represents the HTTP request + // method. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GET", "POST", "HEAD" + // Note: HTTP request method value SHOULD be "known" to the instrumentation. + // By default, this convention defines "known" methods as the ones listed in + // [RFC9110] + // and the PATCH method defined in [RFC5789]. + // + // If the HTTP request method is not known to instrumentation, it MUST set the + // `http.request.method` attribute to `_OTHER`. + // + // If the HTTP instrumentation could end up converting valid HTTP request + // methods to `_OTHER`, then it MUST provide a way to override + // the list of known HTTP methods. If this override is done via environment + // variable, then the environment variable MUST be named + // OTEL_INSTRUMENTATION_HTTP_KNOWN_METHODS and support a comma-separated list of + // case-sensitive known HTTP methods + // (this list MUST be a full override of the default known method, it is not a + // list of known methods in addition to the defaults). + // + // HTTP method names are case-sensitive and `http.request.method` attribute + // value MUST match a known HTTP method name exactly. + // Instrumentations for specific web frameworks that consider HTTP methods to be + // case insensitive, SHOULD populate a canonical equivalent. + // Tracing instrumentations that do so, MUST also set + // `http.request.method_original` to the original value. + // + // [RFC9110]: https://www.rfc-editor.org/rfc/rfc9110.html#name-methods + // [RFC5789]: https://www.rfc-editor.org/rfc/rfc5789.html + HTTPRequestMethodKey = attribute.Key("http.request.method") + + // HTTPRequestMethodOriginalKey is the attribute Key conforming to the + // "http.request.method_original" semantic conventions. It represents the + // original HTTP method sent by the client in the request line. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "GeT", "ACL", "foo" + HTTPRequestMethodOriginalKey = attribute.Key("http.request.method_original") + + // HTTPRequestResendCountKey is the attribute Key conforming to the + // "http.request.resend_count" semantic conventions. It represents the ordinal + // number of request resending attempt (for any reason, including redirects). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Note: The resend count SHOULD be updated each time an HTTP request gets + // resent by the client, regardless of what was the cause of the resending (e.g. + // redirection, authorization failure, 503 Server Unavailable, network issues, + // or any other). + HTTPRequestResendCountKey = attribute.Key("http.request.resend_count") + + // HTTPRequestSizeKey is the attribute Key conforming to the "http.request.size" + // semantic conventions. It represents the total size of the request in bytes. + // This should be the total number of bytes sent over the wire, including the + // request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, and request + // body if any. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + HTTPRequestSizeKey = attribute.Key("http.request.size") + + // HTTPResponseBodySizeKey is the attribute Key conforming to the + // "http.response.body.size" semantic conventions. It represents the size of the + // response payload body in bytes. This is the number of bytes transferred + // excluding headers and is often, but not always, present as the + // [Content-Length] header. For requests using transport encoding, this should + // be the compressed size. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length + HTTPResponseBodySizeKey = attribute.Key("http.response.body.size") + + // HTTPResponseSizeKey is the attribute Key conforming to the + // "http.response.size" semantic conventions. It represents the total size of + // the response in bytes. This should be the total number of bytes sent over the + // wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), + // headers, and response body and trailers if any. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + HTTPResponseSizeKey = attribute.Key("http.response.size") + + // HTTPResponseStatusCodeKey is the attribute Key conforming to the + // "http.response.status_code" semantic conventions. It represents the + // [HTTP response status code]. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 200 + // + // [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 + HTTPResponseStatusCodeKey = attribute.Key("http.response.status_code") + + // HTTPRouteKey is the attribute Key conforming to the "http.route" semantic + // conventions. It represents the matched route, that is, the path template in + // the format used by the respective server framework. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "/users/:userID?", "{controller}/{action}/{id?}" + // Note: MUST NOT be populated when this is not supported by the HTTP server + // framework as the route attribute should have low-cardinality and the URI path + // can NOT substitute it. + // SHOULD include the [application root] if there is one. + // + // [application root]: /docs/http/http-spans.md#http-server-definitions + HTTPRouteKey = attribute.Key("http.route") +) + +// HTTPRequestBodySize returns an attribute KeyValue conforming to the +// "http.request.body.size" semantic conventions. It represents the size of the +// request payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func HTTPRequestBodySize(val int) attribute.KeyValue { + return HTTPRequestBodySizeKey.Int(val) +} + +// HTTPRequestMethodOriginal returns an attribute KeyValue conforming to the +// "http.request.method_original" semantic conventions. It represents the +// original HTTP method sent by the client in the request line. +func HTTPRequestMethodOriginal(val string) attribute.KeyValue { + return HTTPRequestMethodOriginalKey.String(val) +} + +// HTTPRequestResendCount returns an attribute KeyValue conforming to the +// "http.request.resend_count" semantic conventions. It represents the ordinal +// number of request resending attempt (for any reason, including redirects). +func HTTPRequestResendCount(val int) attribute.KeyValue { + return HTTPRequestResendCountKey.Int(val) +} + +// HTTPRequestSize returns an attribute KeyValue conforming to the +// "http.request.size" semantic conventions. It represents the total size of the +// request in bytes. This should be the total number of bytes sent over the wire, +// including the request line (HTTP/1.1), framing (HTTP/2 and HTTP/3), headers, +// and request body if any. +func HTTPRequestSize(val int) attribute.KeyValue { + return HTTPRequestSizeKey.Int(val) +} + +// HTTPResponseBodySize returns an attribute KeyValue conforming to the +// "http.response.body.size" semantic conventions. It represents the size of the +// response payload body in bytes. This is the number of bytes transferred +// excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func HTTPResponseBodySize(val int) attribute.KeyValue { + return HTTPResponseBodySizeKey.Int(val) +} + +// HTTPResponseSize returns an attribute KeyValue conforming to the +// "http.response.size" semantic conventions. It represents the total size of the +// response in bytes. This should be the total number of bytes sent over the +// wire, including the status line (HTTP/1.1), framing (HTTP/2 and HTTP/3), +// headers, and response body and trailers if any. +func HTTPResponseSize(val int) attribute.KeyValue { + return HTTPResponseSizeKey.Int(val) +} + +// HTTPResponseStatusCode returns an attribute KeyValue conforming to the +// "http.response.status_code" semantic conventions. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func HTTPResponseStatusCode(val int) attribute.KeyValue { + return HTTPResponseStatusCodeKey.Int(val) +} + +// HTTPRoute returns an attribute KeyValue conforming to the "http.route" +// semantic conventions. It represents the matched route, that is, the path +// template in the format used by the respective server framework. +func HTTPRoute(val string) attribute.KeyValue { + return HTTPRouteKey.String(val) +} + +// Enum values for http.connection.state +var ( + // active state. + // Stability: development + HTTPConnectionStateActive = HTTPConnectionStateKey.String("active") + // idle state. + // Stability: development + HTTPConnectionStateIdle = HTTPConnectionStateKey.String("idle") +) + +// Enum values for http.request.method +var ( + // CONNECT method. + // Stability: stable + HTTPRequestMethodConnect = HTTPRequestMethodKey.String("CONNECT") + // DELETE method. + // Stability: stable + HTTPRequestMethodDelete = HTTPRequestMethodKey.String("DELETE") + // GET method. + // Stability: stable + HTTPRequestMethodGet = HTTPRequestMethodKey.String("GET") + // HEAD method. + // Stability: stable + HTTPRequestMethodHead = HTTPRequestMethodKey.String("HEAD") + // OPTIONS method. + // Stability: stable + HTTPRequestMethodOptions = HTTPRequestMethodKey.String("OPTIONS") + // PATCH method. + // Stability: stable + HTTPRequestMethodPatch = HTTPRequestMethodKey.String("PATCH") + // POST method. + // Stability: stable + HTTPRequestMethodPost = HTTPRequestMethodKey.String("POST") + // PUT method. + // Stability: stable + HTTPRequestMethodPut = HTTPRequestMethodKey.String("PUT") + // TRACE method. + // Stability: stable + HTTPRequestMethodTrace = HTTPRequestMethodKey.String("TRACE") + // Any HTTP method that the instrumentation has no prior knowledge of. + // Stability: stable + HTTPRequestMethodOther = HTTPRequestMethodKey.String("_OTHER") +) + +// Namespace: hw +const ( + // HwIDKey is the attribute Key conforming to the "hw.id" semantic conventions. + // It represents an identifier for the hardware component, unique within the + // monitored host. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "win32battery_battery_testsysa33_1" + HwIDKey = attribute.Key("hw.id") + + // HwNameKey is the attribute Key conforming to the "hw.name" semantic + // conventions. It represents an easily-recognizable name for the hardware + // component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "eth0" + HwNameKey = attribute.Key("hw.name") + + // HwParentKey is the attribute Key conforming to the "hw.parent" semantic + // conventions. It represents the unique identifier of the parent component + // (typically the `hw.id` attribute of the enclosure, or disk controller). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "dellStorage_perc_0" + HwParentKey = attribute.Key("hw.parent") + + // HwStateKey is the attribute Key conforming to the "hw.state" semantic + // conventions. It represents the current state of the component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + HwStateKey = attribute.Key("hw.state") + + // HwTypeKey is the attribute Key conforming to the "hw.type" semantic + // conventions. It represents the type of the component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: Describes the category of the hardware component for which `hw.state` + // is being reported. For example, `hw.type=temperature` along with + // `hw.state=degraded` would indicate that the temperature of the hardware + // component has been reported as `degraded`. + HwTypeKey = attribute.Key("hw.type") +) + +// HwID returns an attribute KeyValue conforming to the "hw.id" semantic +// conventions. It represents an identifier for the hardware component, unique +// within the monitored host. +func HwID(val string) attribute.KeyValue { + return HwIDKey.String(val) +} + +// HwName returns an attribute KeyValue conforming to the "hw.name" semantic +// conventions. It represents an easily-recognizable name for the hardware +// component. +func HwName(val string) attribute.KeyValue { + return HwNameKey.String(val) +} + +// HwParent returns an attribute KeyValue conforming to the "hw.parent" semantic +// conventions. It represents the unique identifier of the parent component +// (typically the `hw.id` attribute of the enclosure, or disk controller). +func HwParent(val string) attribute.KeyValue { + return HwParentKey.String(val) +} + +// Enum values for hw.state +var ( + // Ok + // Stability: development + HwStateOk = HwStateKey.String("ok") + // Degraded + // Stability: development + HwStateDegraded = HwStateKey.String("degraded") + // Failed + // Stability: development + HwStateFailed = HwStateKey.String("failed") +) + +// Enum values for hw.type +var ( + // Battery + // Stability: development + HwTypeBattery = HwTypeKey.String("battery") + // CPU + // Stability: development + HwTypeCPU = HwTypeKey.String("cpu") + // Disk controller + // Stability: development + HwTypeDiskController = HwTypeKey.String("disk_controller") + // Enclosure + // Stability: development + HwTypeEnclosure = HwTypeKey.String("enclosure") + // Fan + // Stability: development + HwTypeFan = HwTypeKey.String("fan") + // GPU + // Stability: development + HwTypeGpu = HwTypeKey.String("gpu") + // Logical disk + // Stability: development + HwTypeLogicalDisk = HwTypeKey.String("logical_disk") + // Memory + // Stability: development + HwTypeMemory = HwTypeKey.String("memory") + // Network + // Stability: development + HwTypeNetwork = HwTypeKey.String("network") + // Physical disk + // Stability: development + HwTypePhysicalDisk = HwTypeKey.String("physical_disk") + // Power supply + // Stability: development + HwTypePowerSupply = HwTypeKey.String("power_supply") + // Tape drive + // Stability: development + HwTypeTapeDrive = HwTypeKey.String("tape_drive") + // Temperature + // Stability: development + HwTypeTemperature = HwTypeKey.String("temperature") + // Voltage + // Stability: development + HwTypeVoltage = HwTypeKey.String("voltage") +) + +// Namespace: ios +const ( + // IOSAppStateKey is the attribute Key conforming to the "ios.app.state" + // semantic conventions. It represents the this attribute represents the state + // of the application. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The iOS lifecycle states are defined in the + // [UIApplicationDelegate documentation], and from which the `OS terminology` + // column values are derived. + // + // [UIApplicationDelegate documentation]: https://developer.apple.com/documentation/uikit/uiapplicationdelegate + IOSAppStateKey = attribute.Key("ios.app.state") +) + +// Enum values for ios.app.state +var ( + // The app has become `active`. Associated with UIKit notification + // `applicationDidBecomeActive`. + // + // Stability: development + IOSAppStateActive = IOSAppStateKey.String("active") + // The app is now `inactive`. Associated with UIKit notification + // `applicationWillResignActive`. + // + // Stability: development + IOSAppStateInactive = IOSAppStateKey.String("inactive") + // The app is now in the background. This value is associated with UIKit + // notification `applicationDidEnterBackground`. + // + // Stability: development + IOSAppStateBackground = IOSAppStateKey.String("background") + // The app is now in the foreground. This value is associated with UIKit + // notification `applicationWillEnterForeground`. + // + // Stability: development + IOSAppStateForeground = IOSAppStateKey.String("foreground") + // The app is about to terminate. Associated with UIKit notification + // `applicationWillTerminate`. + // + // Stability: development + IOSAppStateTerminate = IOSAppStateKey.String("terminate") +) + +// Namespace: k8s +const ( + // K8SClusterNameKey is the attribute Key conforming to the "k8s.cluster.name" + // semantic conventions. It represents the name of the cluster. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-cluster" + K8SClusterNameKey = attribute.Key("k8s.cluster.name") + + // K8SClusterUIDKey is the attribute Key conforming to the "k8s.cluster.uid" + // semantic conventions. It represents a pseudo-ID for the cluster, set to the + // UID of the `kube-system` namespace. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "218fc5a9-a5f1-4b54-aa05-46717d0ab26d" + // Note: K8s doesn't have support for obtaining a cluster ID. If this is ever + // added, we will recommend collecting the `k8s.cluster.uid` through the + // official APIs. In the meantime, we are able to use the `uid` of the + // `kube-system` namespace as a proxy for cluster ID. Read on for the + // rationale. + // + // Every object created in a K8s cluster is assigned a distinct UID. The + // `kube-system` namespace is used by Kubernetes itself and will exist + // for the lifetime of the cluster. Using the `uid` of the `kube-system` + // namespace is a reasonable proxy for the K8s ClusterID as it will only + // change if the cluster is rebuilt. Furthermore, Kubernetes UIDs are + // UUIDs as standardized by + // [ISO/IEC 9834-8 and ITU-T X.667]. + // Which states: + // + // > If generated according to one of the mechanisms defined in Rec. + // > ITU-T X.667 | ISO/IEC 9834-8, a UUID is either guaranteed to be + // > different from all other UUIDs generated before 3603 A.D., or is + // > extremely likely to be different (depending on the mechanism chosen). + // + // Therefore, UIDs between clusters should be extremely unlikely to + // conflict. + // + // [ISO/IEC 9834-8 and ITU-T X.667]: https://www.itu.int/ITU-T/studygroups/com17/oid.html + K8SClusterUIDKey = attribute.Key("k8s.cluster.uid") + + // K8SContainerNameKey is the attribute Key conforming to the + // "k8s.container.name" semantic conventions. It represents the name of the + // Container from Pod specification, must be unique within a Pod. Container + // runtime usually uses different globally unique name (`container.name`). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "redis" + K8SContainerNameKey = attribute.Key("k8s.container.name") + + // K8SContainerRestartCountKey is the attribute Key conforming to the + // "k8s.container.restart_count" semantic conventions. It represents the number + // of times the container was restarted. This attribute can be used to identify + // a particular container (running or stopped) within a container spec. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + K8SContainerRestartCountKey = attribute.Key("k8s.container.restart_count") + + // K8SContainerStatusLastTerminatedReasonKey is the attribute Key conforming to + // the "k8s.container.status.last_terminated_reason" semantic conventions. It + // represents the last terminated reason of the Container. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Evicted", "Error" + K8SContainerStatusLastTerminatedReasonKey = attribute.Key("k8s.container.status.last_terminated_reason") + + // K8SCronJobNameKey is the attribute Key conforming to the "k8s.cronjob.name" + // semantic conventions. It represents the name of the CronJob. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SCronJobNameKey = attribute.Key("k8s.cronjob.name") + + // K8SCronJobUIDKey is the attribute Key conforming to the "k8s.cronjob.uid" + // semantic conventions. It represents the UID of the CronJob. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SCronJobUIDKey = attribute.Key("k8s.cronjob.uid") + + // K8SDaemonSetNameKey is the attribute Key conforming to the + // "k8s.daemonset.name" semantic conventions. It represents the name of the + // DaemonSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SDaemonSetNameKey = attribute.Key("k8s.daemonset.name") + + // K8SDaemonSetUIDKey is the attribute Key conforming to the "k8s.daemonset.uid" + // semantic conventions. It represents the UID of the DaemonSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SDaemonSetUIDKey = attribute.Key("k8s.daemonset.uid") + + // K8SDeploymentNameKey is the attribute Key conforming to the + // "k8s.deployment.name" semantic conventions. It represents the name of the + // Deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SDeploymentNameKey = attribute.Key("k8s.deployment.name") + + // K8SDeploymentUIDKey is the attribute Key conforming to the + // "k8s.deployment.uid" semantic conventions. It represents the UID of the + // Deployment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SDeploymentUIDKey = attribute.Key("k8s.deployment.uid") + + // K8SHPANameKey is the attribute Key conforming to the "k8s.hpa.name" semantic + // conventions. It represents the name of the horizontal pod autoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SHPANameKey = attribute.Key("k8s.hpa.name") + + // K8SHPAUIDKey is the attribute Key conforming to the "k8s.hpa.uid" semantic + // conventions. It represents the UID of the horizontal pod autoscaler. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SHPAUIDKey = attribute.Key("k8s.hpa.uid") + + // K8SJobNameKey is the attribute Key conforming to the "k8s.job.name" semantic + // conventions. It represents the name of the Job. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SJobNameKey = attribute.Key("k8s.job.name") + + // K8SJobUIDKey is the attribute Key conforming to the "k8s.job.uid" semantic + // conventions. It represents the UID of the Job. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SJobUIDKey = attribute.Key("k8s.job.uid") + + // K8SNamespaceNameKey is the attribute Key conforming to the + // "k8s.namespace.name" semantic conventions. It represents the name of the + // namespace that the pod is running in. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "default" + K8SNamespaceNameKey = attribute.Key("k8s.namespace.name") + + // K8SNamespacePhaseKey is the attribute Key conforming to the + // "k8s.namespace.phase" semantic conventions. It represents the phase of the + // K8s namespace. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "active", "terminating" + // Note: This attribute aligns with the `phase` field of the + // [K8s NamespaceStatus] + // + // [K8s NamespaceStatus]: https://kubernetes.io/docs/reference/generated/kubernetes-api/v1.30/#namespacestatus-v1-core + K8SNamespacePhaseKey = attribute.Key("k8s.namespace.phase") + + // K8SNodeNameKey is the attribute Key conforming to the "k8s.node.name" + // semantic conventions. It represents the name of the Node. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "node-1" + K8SNodeNameKey = attribute.Key("k8s.node.name") + + // K8SNodeUIDKey is the attribute Key conforming to the "k8s.node.uid" semantic + // conventions. It represents the UID of the Node. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1eb3a0c6-0477-4080-a9cb-0cb7db65c6a2" + K8SNodeUIDKey = attribute.Key("k8s.node.uid") + + // K8SPodNameKey is the attribute Key conforming to the "k8s.pod.name" semantic + // conventions. It represents the name of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry-pod-autoconf" + K8SPodNameKey = attribute.Key("k8s.pod.name") + + // K8SPodUIDKey is the attribute Key conforming to the "k8s.pod.uid" semantic + // conventions. It represents the UID of the Pod. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SPodUIDKey = attribute.Key("k8s.pod.uid") + + // K8SReplicaSetNameKey is the attribute Key conforming to the + // "k8s.replicaset.name" semantic conventions. It represents the name of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SReplicaSetNameKey = attribute.Key("k8s.replicaset.name") + + // K8SReplicaSetUIDKey is the attribute Key conforming to the + // "k8s.replicaset.uid" semantic conventions. It represents the UID of the + // ReplicaSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SReplicaSetUIDKey = attribute.Key("k8s.replicaset.uid") + + // K8SReplicationControllerNameKey is the attribute Key conforming to the + // "k8s.replicationcontroller.name" semantic conventions. It represents the name + // of the replication controller. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SReplicationControllerNameKey = attribute.Key("k8s.replicationcontroller.name") + + // K8SReplicationControllerUIDKey is the attribute Key conforming to the + // "k8s.replicationcontroller.uid" semantic conventions. It represents the UID + // of the replication controller. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SReplicationControllerUIDKey = attribute.Key("k8s.replicationcontroller.uid") + + // K8SResourceQuotaNameKey is the attribute Key conforming to the + // "k8s.resourcequota.name" semantic conventions. It represents the name of the + // resource quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SResourceQuotaNameKey = attribute.Key("k8s.resourcequota.name") + + // K8SResourceQuotaUIDKey is the attribute Key conforming to the + // "k8s.resourcequota.uid" semantic conventions. It represents the UID of the + // resource quota. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SResourceQuotaUIDKey = attribute.Key("k8s.resourcequota.uid") + + // K8SStatefulSetNameKey is the attribute Key conforming to the + // "k8s.statefulset.name" semantic conventions. It represents the name of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "opentelemetry" + K8SStatefulSetNameKey = attribute.Key("k8s.statefulset.name") + + // K8SStatefulSetUIDKey is the attribute Key conforming to the + // "k8s.statefulset.uid" semantic conventions. It represents the UID of the + // StatefulSet. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "275ecb36-5aa8-4c2a-9c47-d8bb681b9aff" + K8SStatefulSetUIDKey = attribute.Key("k8s.statefulset.uid") + + // K8SVolumeNameKey is the attribute Key conforming to the "k8s.volume.name" + // semantic conventions. It represents the name of the K8s volume. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "volume0" + K8SVolumeNameKey = attribute.Key("k8s.volume.name") + + // K8SVolumeTypeKey is the attribute Key conforming to the "k8s.volume.type" + // semantic conventions. It represents the type of the K8s volume. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "emptyDir", "persistentVolumeClaim" + K8SVolumeTypeKey = attribute.Key("k8s.volume.type") +) + +// K8SClusterName returns an attribute KeyValue conforming to the +// "k8s.cluster.name" semantic conventions. It represents the name of the +// cluster. +func K8SClusterName(val string) attribute.KeyValue { + return K8SClusterNameKey.String(val) +} + +// K8SClusterUID returns an attribute KeyValue conforming to the +// "k8s.cluster.uid" semantic conventions. It represents a pseudo-ID for the +// cluster, set to the UID of the `kube-system` namespace. +func K8SClusterUID(val string) attribute.KeyValue { + return K8SClusterUIDKey.String(val) +} + +// K8SContainerName returns an attribute KeyValue conforming to the +// "k8s.container.name" semantic conventions. It represents the name of the +// Container from Pod specification, must be unique within a Pod. Container +// runtime usually uses different globally unique name (`container.name`). +func K8SContainerName(val string) attribute.KeyValue { + return K8SContainerNameKey.String(val) +} + +// K8SContainerRestartCount returns an attribute KeyValue conforming to the +// "k8s.container.restart_count" semantic conventions. It represents the number +// of times the container was restarted. This attribute can be used to identify a +// particular container (running or stopped) within a container spec. +func K8SContainerRestartCount(val int) attribute.KeyValue { + return K8SContainerRestartCountKey.Int(val) +} + +// K8SContainerStatusLastTerminatedReason returns an attribute KeyValue +// conforming to the "k8s.container.status.last_terminated_reason" semantic +// conventions. It represents the last terminated reason of the Container. +func K8SContainerStatusLastTerminatedReason(val string) attribute.KeyValue { + return K8SContainerStatusLastTerminatedReasonKey.String(val) +} + +// K8SCronJobName returns an attribute KeyValue conforming to the +// "k8s.cronjob.name" semantic conventions. It represents the name of the +// CronJob. +func K8SCronJobName(val string) attribute.KeyValue { + return K8SCronJobNameKey.String(val) +} + +// K8SCronJobUID returns an attribute KeyValue conforming to the +// "k8s.cronjob.uid" semantic conventions. It represents the UID of the CronJob. +func K8SCronJobUID(val string) attribute.KeyValue { + return K8SCronJobUIDKey.String(val) +} + +// K8SDaemonSetName returns an attribute KeyValue conforming to the +// "k8s.daemonset.name" semantic conventions. It represents the name of the +// DaemonSet. +func K8SDaemonSetName(val string) attribute.KeyValue { + return K8SDaemonSetNameKey.String(val) +} + +// K8SDaemonSetUID returns an attribute KeyValue conforming to the +// "k8s.daemonset.uid" semantic conventions. It represents the UID of the +// DaemonSet. +func K8SDaemonSetUID(val string) attribute.KeyValue { + return K8SDaemonSetUIDKey.String(val) +} + +// K8SDeploymentName returns an attribute KeyValue conforming to the +// "k8s.deployment.name" semantic conventions. It represents the name of the +// Deployment. +func K8SDeploymentName(val string) attribute.KeyValue { + return K8SDeploymentNameKey.String(val) +} + +// K8SDeploymentUID returns an attribute KeyValue conforming to the +// "k8s.deployment.uid" semantic conventions. It represents the UID of the +// Deployment. +func K8SDeploymentUID(val string) attribute.KeyValue { + return K8SDeploymentUIDKey.String(val) +} + +// K8SHPAName returns an attribute KeyValue conforming to the "k8s.hpa.name" +// semantic conventions. It represents the name of the horizontal pod autoscaler. +func K8SHPAName(val string) attribute.KeyValue { + return K8SHPANameKey.String(val) +} + +// K8SHPAUID returns an attribute KeyValue conforming to the "k8s.hpa.uid" +// semantic conventions. It represents the UID of the horizontal pod autoscaler. +func K8SHPAUID(val string) attribute.KeyValue { + return K8SHPAUIDKey.String(val) +} + +// K8SJobName returns an attribute KeyValue conforming to the "k8s.job.name" +// semantic conventions. It represents the name of the Job. +func K8SJobName(val string) attribute.KeyValue { + return K8SJobNameKey.String(val) +} + +// K8SJobUID returns an attribute KeyValue conforming to the "k8s.job.uid" +// semantic conventions. It represents the UID of the Job. +func K8SJobUID(val string) attribute.KeyValue { + return K8SJobUIDKey.String(val) +} + +// K8SNamespaceName returns an attribute KeyValue conforming to the +// "k8s.namespace.name" semantic conventions. It represents the name of the +// namespace that the pod is running in. +func K8SNamespaceName(val string) attribute.KeyValue { + return K8SNamespaceNameKey.String(val) +} + +// K8SNodeName returns an attribute KeyValue conforming to the "k8s.node.name" +// semantic conventions. It represents the name of the Node. +func K8SNodeName(val string) attribute.KeyValue { + return K8SNodeNameKey.String(val) +} + +// K8SNodeUID returns an attribute KeyValue conforming to the "k8s.node.uid" +// semantic conventions. It represents the UID of the Node. +func K8SNodeUID(val string) attribute.KeyValue { + return K8SNodeUIDKey.String(val) +} + +// K8SPodName returns an attribute KeyValue conforming to the "k8s.pod.name" +// semantic conventions. It represents the name of the Pod. +func K8SPodName(val string) attribute.KeyValue { + return K8SPodNameKey.String(val) +} + +// K8SPodUID returns an attribute KeyValue conforming to the "k8s.pod.uid" +// semantic conventions. It represents the UID of the Pod. +func K8SPodUID(val string) attribute.KeyValue { + return K8SPodUIDKey.String(val) +} + +// K8SReplicaSetName returns an attribute KeyValue conforming to the +// "k8s.replicaset.name" semantic conventions. It represents the name of the +// ReplicaSet. +func K8SReplicaSetName(val string) attribute.KeyValue { + return K8SReplicaSetNameKey.String(val) +} + +// K8SReplicaSetUID returns an attribute KeyValue conforming to the +// "k8s.replicaset.uid" semantic conventions. It represents the UID of the +// ReplicaSet. +func K8SReplicaSetUID(val string) attribute.KeyValue { + return K8SReplicaSetUIDKey.String(val) +} + +// K8SReplicationControllerName returns an attribute KeyValue conforming to the +// "k8s.replicationcontroller.name" semantic conventions. It represents the name +// of the replication controller. +func K8SReplicationControllerName(val string) attribute.KeyValue { + return K8SReplicationControllerNameKey.String(val) +} + +// K8SReplicationControllerUID returns an attribute KeyValue conforming to the +// "k8s.replicationcontroller.uid" semantic conventions. It represents the UID of +// the replication controller. +func K8SReplicationControllerUID(val string) attribute.KeyValue { + return K8SReplicationControllerUIDKey.String(val) +} + +// K8SResourceQuotaName returns an attribute KeyValue conforming to the +// "k8s.resourcequota.name" semantic conventions. It represents the name of the +// resource quota. +func K8SResourceQuotaName(val string) attribute.KeyValue { + return K8SResourceQuotaNameKey.String(val) +} + +// K8SResourceQuotaUID returns an attribute KeyValue conforming to the +// "k8s.resourcequota.uid" semantic conventions. It represents the UID of the +// resource quota. +func K8SResourceQuotaUID(val string) attribute.KeyValue { + return K8SResourceQuotaUIDKey.String(val) +} + +// K8SStatefulSetName returns an attribute KeyValue conforming to the +// "k8s.statefulset.name" semantic conventions. It represents the name of the +// StatefulSet. +func K8SStatefulSetName(val string) attribute.KeyValue { + return K8SStatefulSetNameKey.String(val) +} + +// K8SStatefulSetUID returns an attribute KeyValue conforming to the +// "k8s.statefulset.uid" semantic conventions. It represents the UID of the +// StatefulSet. +func K8SStatefulSetUID(val string) attribute.KeyValue { + return K8SStatefulSetUIDKey.String(val) +} + +// K8SVolumeName returns an attribute KeyValue conforming to the +// "k8s.volume.name" semantic conventions. It represents the name of the K8s +// volume. +func K8SVolumeName(val string) attribute.KeyValue { + return K8SVolumeNameKey.String(val) +} + +// Enum values for k8s.namespace.phase +var ( + // Active namespace phase as described by [K8s API] + // Stability: development + // + // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase + K8SNamespacePhaseActive = K8SNamespacePhaseKey.String("active") + // Terminating namespace phase as described by [K8s API] + // Stability: development + // + // [K8s API]: https://pkg.go.dev/k8s.io/api@v0.31.3/core/v1#NamespacePhase + K8SNamespacePhaseTerminating = K8SNamespacePhaseKey.String("terminating") +) + +// Enum values for k8s.volume.type +var ( + // A [persistentVolumeClaim] volume + // Stability: development + // + // [persistentVolumeClaim]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#persistentvolumeclaim + K8SVolumeTypePersistentVolumeClaim = K8SVolumeTypeKey.String("persistentVolumeClaim") + // A [configMap] volume + // Stability: development + // + // [configMap]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#configmap + K8SVolumeTypeConfigMap = K8SVolumeTypeKey.String("configMap") + // A [downwardAPI] volume + // Stability: development + // + // [downwardAPI]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#downwardapi + K8SVolumeTypeDownwardAPI = K8SVolumeTypeKey.String("downwardAPI") + // An [emptyDir] volume + // Stability: development + // + // [emptyDir]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#emptydir + K8SVolumeTypeEmptyDir = K8SVolumeTypeKey.String("emptyDir") + // A [secret] volume + // Stability: development + // + // [secret]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#secret + K8SVolumeTypeSecret = K8SVolumeTypeKey.String("secret") + // A [local] volume + // Stability: development + // + // [local]: https://v1-30.docs.kubernetes.io/docs/concepts/storage/volumes/#local + K8SVolumeTypeLocal = K8SVolumeTypeKey.String("local") +) + +// Namespace: linux +const ( + // LinuxMemorySlabStateKey is the attribute Key conforming to the + // "linux.memory.slab.state" semantic conventions. It represents the Linux Slab + // memory state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "reclaimable", "unreclaimable" + LinuxMemorySlabStateKey = attribute.Key("linux.memory.slab.state") +) + +// Enum values for linux.memory.slab.state +var ( + // reclaimable + // Stability: development + LinuxMemorySlabStateReclaimable = LinuxMemorySlabStateKey.String("reclaimable") + // unreclaimable + // Stability: development + LinuxMemorySlabStateUnreclaimable = LinuxMemorySlabStateKey.String("unreclaimable") +) + +// Namespace: log +const ( + // LogFileNameKey is the attribute Key conforming to the "log.file.name" + // semantic conventions. It represents the basename of the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "audit.log" + LogFileNameKey = attribute.Key("log.file.name") + + // LogFileNameResolvedKey is the attribute Key conforming to the + // "log.file.name_resolved" semantic conventions. It represents the basename of + // the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "uuid.log" + LogFileNameResolvedKey = attribute.Key("log.file.name_resolved") + + // LogFilePathKey is the attribute Key conforming to the "log.file.path" + // semantic conventions. It represents the full path to the file. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/var/log/mysql/audit.log" + LogFilePathKey = attribute.Key("log.file.path") + + // LogFilePathResolvedKey is the attribute Key conforming to the + // "log.file.path_resolved" semantic conventions. It represents the full path to + // the file, with symlinks resolved. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/var/lib/docker/uuid.log" + LogFilePathResolvedKey = attribute.Key("log.file.path_resolved") + + // LogIostreamKey is the attribute Key conforming to the "log.iostream" semantic + // conventions. It represents the stream associated with the log. See below for + // a list of well-known values. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + LogIostreamKey = attribute.Key("log.iostream") + + // LogRecordOriginalKey is the attribute Key conforming to the + // "log.record.original" semantic conventions. It represents the complete + // original Log Record. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "77 <86>1 2015-08-06T21:58:59.694Z 192.168.2.133 inactive - - - + // Something happened", "[INFO] 8/3/24 12:34:56 Something happened" + // Note: This value MAY be added when processing a Log Record which was + // originally transmitted as a string or equivalent data type AND the Body field + // of the Log Record does not contain the same value. (e.g. a syslog or a log + // record read from a file.) + LogRecordOriginalKey = attribute.Key("log.record.original") + + // LogRecordUIDKey is the attribute Key conforming to the "log.record.uid" + // semantic conventions. It represents a unique identifier for the Log Record. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "01ARZ3NDEKTSV4RRFFQ69G5FAV" + // Note: If an id is provided, other log records with the same id will be + // considered duplicates and can be removed safely. This means, that two + // distinguishable log records MUST have different values. + // The id MAY be an + // [Universally Unique Lexicographically Sortable Identifier (ULID)], but other + // identifiers (e.g. UUID) may be used as needed. + // + // [Universally Unique Lexicographically Sortable Identifier (ULID)]: https://github.com/ulid/spec + LogRecordUIDKey = attribute.Key("log.record.uid") +) + +// LogFileName returns an attribute KeyValue conforming to the "log.file.name" +// semantic conventions. It represents the basename of the file. +func LogFileName(val string) attribute.KeyValue { + return LogFileNameKey.String(val) +} + +// LogFileNameResolved returns an attribute KeyValue conforming to the +// "log.file.name_resolved" semantic conventions. It represents the basename of +// the file, with symlinks resolved. +func LogFileNameResolved(val string) attribute.KeyValue { + return LogFileNameResolvedKey.String(val) +} + +// LogFilePath returns an attribute KeyValue conforming to the "log.file.path" +// semantic conventions. It represents the full path to the file. +func LogFilePath(val string) attribute.KeyValue { + return LogFilePathKey.String(val) +} + +// LogFilePathResolved returns an attribute KeyValue conforming to the +// "log.file.path_resolved" semantic conventions. It represents the full path to +// the file, with symlinks resolved. +func LogFilePathResolved(val string) attribute.KeyValue { + return LogFilePathResolvedKey.String(val) +} + +// LogRecordOriginal returns an attribute KeyValue conforming to the +// "log.record.original" semantic conventions. It represents the complete +// original Log Record. +func LogRecordOriginal(val string) attribute.KeyValue { + return LogRecordOriginalKey.String(val) +} + +// LogRecordUID returns an attribute KeyValue conforming to the "log.record.uid" +// semantic conventions. It represents a unique identifier for the Log Record. +func LogRecordUID(val string) attribute.KeyValue { + return LogRecordUIDKey.String(val) +} + +// Enum values for log.iostream +var ( + // Logs from stdout stream + // Stability: development + LogIostreamStdout = LogIostreamKey.String("stdout") + // Events from stderr stream + // Stability: development + LogIostreamStderr = LogIostreamKey.String("stderr") +) + +// Namespace: messaging +const ( + // MessagingBatchMessageCountKey is the attribute Key conforming to the + // "messaging.batch.message_count" semantic conventions. It represents the + // number of messages sent, received, or processed in the scope of the batching + // operation. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 0, 1, 2 + // Note: Instrumentations SHOULD NOT set `messaging.batch.message_count` on + // spans that operate with a single message. When a messaging client library + // supports both batch and single-message API for the same operation, + // instrumentations SHOULD use `messaging.batch.message_count` for batching APIs + // and SHOULD NOT use it for single-message APIs. + MessagingBatchMessageCountKey = attribute.Key("messaging.batch.message_count") + + // MessagingClientIDKey is the attribute Key conforming to the + // "messaging.client.id" semantic conventions. It represents a unique identifier + // for the client that consumes or produces a message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "client-5", "myhost@8742@s8083jm" + MessagingClientIDKey = attribute.Key("messaging.client.id") + + // MessagingConsumerGroupNameKey is the attribute Key conforming to the + // "messaging.consumer.group.name" semantic conventions. It represents the name + // of the consumer group with which a consumer is associated. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-group", "indexer" + // Note: Semantic conventions for individual messaging systems SHOULD document + // whether `messaging.consumer.group.name` is applicable and what it means in + // the context of that system. + MessagingConsumerGroupNameKey = attribute.Key("messaging.consumer.group.name") + + // MessagingDestinationAnonymousKey is the attribute Key conforming to the + // "messaging.destination.anonymous" semantic conventions. It represents a + // boolean that is true if the message destination is anonymous (could be + // unnamed or have auto-generated name). + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingDestinationAnonymousKey = attribute.Key("messaging.destination.anonymous") + + // MessagingDestinationNameKey is the attribute Key conforming to the + // "messaging.destination.name" semantic conventions. It represents the message + // destination name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MyQueue", "MyTopic" + // Note: Destination name SHOULD uniquely identify a specific queue, topic or + // other entity within the broker. If + // the broker doesn't have such notion, the destination name SHOULD uniquely + // identify the broker. + MessagingDestinationNameKey = attribute.Key("messaging.destination.name") + + // MessagingDestinationPartitionIDKey is the attribute Key conforming to the + // "messaging.destination.partition.id" semantic conventions. It represents the + // identifier of the partition messages are sent to or received from, unique + // within the `messaging.destination.name`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1 + MessagingDestinationPartitionIDKey = attribute.Key("messaging.destination.partition.id") + + // MessagingDestinationSubscriptionNameKey is the attribute Key conforming to + // the "messaging.destination.subscription.name" semantic conventions. It + // represents the name of the destination subscription from which a message is + // consumed. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "subscription-a" + // Note: Semantic conventions for individual messaging systems SHOULD document + // whether `messaging.destination.subscription.name` is applicable and what it + // means in the context of that system. + MessagingDestinationSubscriptionNameKey = attribute.Key("messaging.destination.subscription.name") + + // MessagingDestinationTemplateKey is the attribute Key conforming to the + // "messaging.destination.template" semantic conventions. It represents the low + // cardinality representation of the messaging destination name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/customers/{customerId}" + // Note: Destination names could be constructed from templates. An example would + // be a destination name involving a user name or product id. Although the + // destination name in this case is of high cardinality, the underlying template + // is of low cardinality and can be effectively used for grouping and + // aggregation. + MessagingDestinationTemplateKey = attribute.Key("messaging.destination.template") + + // MessagingDestinationTemporaryKey is the attribute Key conforming to the + // "messaging.destination.temporary" semantic conventions. It represents a + // boolean that is true if the message destination is temporary and might not + // exist anymore after messages are processed. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingDestinationTemporaryKey = attribute.Key("messaging.destination.temporary") + + // MessagingEventHubsMessageEnqueuedTimeKey is the attribute Key conforming to + // the "messaging.eventhubs.message.enqueued_time" semantic conventions. It + // represents the UTC epoch seconds at which the message has been accepted and + // stored in the entity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingEventHubsMessageEnqueuedTimeKey = attribute.Key("messaging.eventhubs.message.enqueued_time") + + // MessagingGCPPubSubMessageAckDeadlineKey is the attribute Key conforming to + // the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It + // represents the ack deadline in seconds set for the modify ack deadline + // request. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingGCPPubSubMessageAckDeadlineKey = attribute.Key("messaging.gcp_pubsub.message.ack_deadline") + + // MessagingGCPPubSubMessageAckIDKey is the attribute Key conforming to the + // "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the + // ack id for a given message. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: ack_id + MessagingGCPPubSubMessageAckIDKey = attribute.Key("messaging.gcp_pubsub.message.ack_id") + + // MessagingGCPPubSubMessageDeliveryAttemptKey is the attribute Key conforming + // to the "messaging.gcp_pubsub.message.delivery_attempt" semantic conventions. + // It represents the delivery attempt for a given message. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingGCPPubSubMessageDeliveryAttemptKey = attribute.Key("messaging.gcp_pubsub.message.delivery_attempt") + + // MessagingGCPPubSubMessageOrderingKeyKey is the attribute Key conforming to + // the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It + // represents the ordering key for a given message. If the attribute is not + // present, the message does not have an ordering key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: ordering_key + MessagingGCPPubSubMessageOrderingKeyKey = attribute.Key("messaging.gcp_pubsub.message.ordering_key") + + // MessagingKafkaMessageKeyKey is the attribute Key conforming to the + // "messaging.kafka.message.key" semantic conventions. It represents the message + // keys in Kafka are used for grouping alike messages to ensure they're + // processed on the same partition. They differ from `messaging.message.id` in + // that they're not unique. If the key is `null`, the attribute MUST NOT be set. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myKey + // Note: If the key type is not string, it's string representation has to be + // supplied for the attribute. If the key has no unambiguous, canonical string + // form, don't include its value. + MessagingKafkaMessageKeyKey = attribute.Key("messaging.kafka.message.key") + + // MessagingKafkaMessageTombstoneKey is the attribute Key conforming to the + // "messaging.kafka.message.tombstone" semantic conventions. It represents a + // boolean that is true if the message is a tombstone. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingKafkaMessageTombstoneKey = attribute.Key("messaging.kafka.message.tombstone") + + // MessagingKafkaOffsetKey is the attribute Key conforming to the + // "messaging.kafka.offset" semantic conventions. It represents the offset of a + // record in the corresponding Kafka partition. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingKafkaOffsetKey = attribute.Key("messaging.kafka.offset") + + // MessagingMessageBodySizeKey is the attribute Key conforming to the + // "messaging.message.body.size" semantic conventions. It represents the size of + // the message body in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: This can refer to both the compressed or uncompressed body size. If + // both sizes are known, the uncompressed + // body size should be used. + MessagingMessageBodySizeKey = attribute.Key("messaging.message.body.size") + + // MessagingMessageConversationIDKey is the attribute Key conforming to the + // "messaging.message.conversation_id" semantic conventions. It represents the + // conversation ID identifying the conversation to which the message belongs, + // represented as a string. Sometimes called "Correlation ID". + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: MyConversationId + MessagingMessageConversationIDKey = attribute.Key("messaging.message.conversation_id") + + // MessagingMessageEnvelopeSizeKey is the attribute Key conforming to the + // "messaging.message.envelope.size" semantic conventions. It represents the + // size of the message body and metadata in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Note: This can refer to both the compressed or uncompressed size. If both + // sizes are known, the uncompressed + // size should be used. + MessagingMessageEnvelopeSizeKey = attribute.Key("messaging.message.envelope.size") + + // MessagingMessageIDKey is the attribute Key conforming to the + // "messaging.message.id" semantic conventions. It represents a value used by + // the messaging system as an identifier for the message, represented as a + // string. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 452a7c7c7c7048c2f887f61572b18fc2 + MessagingMessageIDKey = attribute.Key("messaging.message.id") + + // MessagingOperationNameKey is the attribute Key conforming to the + // "messaging.operation.name" semantic conventions. It represents the + // system-specific name of the messaging operation. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ack", "nack", "send" + MessagingOperationNameKey = attribute.Key("messaging.operation.name") + + // MessagingOperationTypeKey is the attribute Key conforming to the + // "messaging.operation.type" semantic conventions. It represents a string + // identifying the type of the messaging operation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: If a custom value is used, it MUST be of low cardinality. + MessagingOperationTypeKey = attribute.Key("messaging.operation.type") + + // MessagingRabbitMQDestinationRoutingKeyKey is the attribute Key conforming to + // the "messaging.rabbitmq.destination.routing_key" semantic conventions. It + // represents the rabbitMQ message routing key. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myKey + MessagingRabbitMQDestinationRoutingKeyKey = attribute.Key("messaging.rabbitmq.destination.routing_key") + + // MessagingRabbitMQMessageDeliveryTagKey is the attribute Key conforming to the + // "messaging.rabbitmq.message.delivery_tag" semantic conventions. It represents + // the rabbitMQ message delivery tag. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRabbitMQMessageDeliveryTagKey = attribute.Key("messaging.rabbitmq.message.delivery_tag") + + // MessagingRocketMQConsumptionModelKey is the attribute Key conforming to the + // "messaging.rocketmq.consumption_model" semantic conventions. It represents + // the model of message consumption. This only applies to consumer spans. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingRocketMQConsumptionModelKey = attribute.Key("messaging.rocketmq.consumption_model") + + // MessagingRocketMQMessageDelayTimeLevelKey is the attribute Key conforming to + // the "messaging.rocketmq.message.delay_time_level" semantic conventions. It + // represents the delay time level for delay message, which determines the + // message delay time. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRocketMQMessageDelayTimeLevelKey = attribute.Key("messaging.rocketmq.message.delay_time_level") + + // MessagingRocketMQMessageDeliveryTimestampKey is the attribute Key conforming + // to the "messaging.rocketmq.message.delivery_timestamp" semantic conventions. + // It represents the timestamp in milliseconds that the delay message is + // expected to be delivered to consumer. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingRocketMQMessageDeliveryTimestampKey = attribute.Key("messaging.rocketmq.message.delivery_timestamp") + + // MessagingRocketMQMessageGroupKey is the attribute Key conforming to the + // "messaging.rocketmq.message.group" semantic conventions. It represents the it + // is essential for FIFO message. Messages that belong to the same message group + // are always processed one by one within the same consumer group. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myMessageGroup + MessagingRocketMQMessageGroupKey = attribute.Key("messaging.rocketmq.message.group") + + // MessagingRocketMQMessageKeysKey is the attribute Key conforming to the + // "messaging.rocketmq.message.keys" semantic conventions. It represents the + // key(s) of message, another way to mark message besides message id. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "keyA", "keyB" + MessagingRocketMQMessageKeysKey = attribute.Key("messaging.rocketmq.message.keys") + + // MessagingRocketMQMessageTagKey is the attribute Key conforming to the + // "messaging.rocketmq.message.tag" semantic conventions. It represents the + // secondary classifier of message besides topic. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: tagA + MessagingRocketMQMessageTagKey = attribute.Key("messaging.rocketmq.message.tag") + + // MessagingRocketMQMessageTypeKey is the attribute Key conforming to the + // "messaging.rocketmq.message.type" semantic conventions. It represents the + // type of message. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + MessagingRocketMQMessageTypeKey = attribute.Key("messaging.rocketmq.message.type") + + // MessagingRocketMQNamespaceKey is the attribute Key conforming to the + // "messaging.rocketmq.namespace" semantic conventions. It represents the + // namespace of RocketMQ resources, resources in different namespaces are + // individual. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myNamespace + MessagingRocketMQNamespaceKey = attribute.Key("messaging.rocketmq.namespace") + + // MessagingServiceBusDispositionStatusKey is the attribute Key conforming to + // the "messaging.servicebus.disposition_status" semantic conventions. It + // represents the describes the [settlement type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [settlement type]: https://learn.microsoft.com/azure/service-bus-messaging/message-transfers-locks-settlement#peeklock + MessagingServiceBusDispositionStatusKey = attribute.Key("messaging.servicebus.disposition_status") + + // MessagingServiceBusMessageDeliveryCountKey is the attribute Key conforming to + // the "messaging.servicebus.message.delivery_count" semantic conventions. It + // represents the number of deliveries that have been attempted for this + // message. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingServiceBusMessageDeliveryCountKey = attribute.Key("messaging.servicebus.message.delivery_count") + + // MessagingServiceBusMessageEnqueuedTimeKey is the attribute Key conforming to + // the "messaging.servicebus.message.enqueued_time" semantic conventions. It + // represents the UTC epoch seconds at which the message has been accepted and + // stored in the entity. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + MessagingServiceBusMessageEnqueuedTimeKey = attribute.Key("messaging.servicebus.message.enqueued_time") + + // MessagingSystemKey is the attribute Key conforming to the "messaging.system" + // semantic conventions. It represents the messaging system as identified by the + // client instrumentation. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The actual messaging system may differ from the one known by the + // client. For example, when using Kafka client libraries to communicate with + // Azure Event Hubs, the `messaging.system` is set to `kafka` based on the + // instrumentation's best knowledge. + MessagingSystemKey = attribute.Key("messaging.system") +) + +// MessagingBatchMessageCount returns an attribute KeyValue conforming to the +// "messaging.batch.message_count" semantic conventions. It represents the number +// of messages sent, received, or processed in the scope of the batching +// operation. +func MessagingBatchMessageCount(val int) attribute.KeyValue { + return MessagingBatchMessageCountKey.Int(val) +} + +// MessagingClientID returns an attribute KeyValue conforming to the +// "messaging.client.id" semantic conventions. It represents a unique identifier +// for the client that consumes or produces a message. +func MessagingClientID(val string) attribute.KeyValue { + return MessagingClientIDKey.String(val) +} + +// MessagingConsumerGroupName returns an attribute KeyValue conforming to the +// "messaging.consumer.group.name" semantic conventions. It represents the name +// of the consumer group with which a consumer is associated. +func MessagingConsumerGroupName(val string) attribute.KeyValue { + return MessagingConsumerGroupNameKey.String(val) +} + +// MessagingDestinationAnonymous returns an attribute KeyValue conforming to the +// "messaging.destination.anonymous" semantic conventions. It represents a +// boolean that is true if the message destination is anonymous (could be unnamed +// or have auto-generated name). +func MessagingDestinationAnonymous(val bool) attribute.KeyValue { + return MessagingDestinationAnonymousKey.Bool(val) +} + +// MessagingDestinationName returns an attribute KeyValue conforming to the +// "messaging.destination.name" semantic conventions. It represents the message +// destination name. +func MessagingDestinationName(val string) attribute.KeyValue { + return MessagingDestinationNameKey.String(val) +} + +// MessagingDestinationPartitionID returns an attribute KeyValue conforming to +// the "messaging.destination.partition.id" semantic conventions. It represents +// the identifier of the partition messages are sent to or received from, unique +// within the `messaging.destination.name`. +func MessagingDestinationPartitionID(val string) attribute.KeyValue { + return MessagingDestinationPartitionIDKey.String(val) +} + +// MessagingDestinationSubscriptionName returns an attribute KeyValue conforming +// to the "messaging.destination.subscription.name" semantic conventions. It +// represents the name of the destination subscription from which a message is +// consumed. +func MessagingDestinationSubscriptionName(val string) attribute.KeyValue { + return MessagingDestinationSubscriptionNameKey.String(val) +} + +// MessagingDestinationTemplate returns an attribute KeyValue conforming to the +// "messaging.destination.template" semantic conventions. It represents the low +// cardinality representation of the messaging destination name. +func MessagingDestinationTemplate(val string) attribute.KeyValue { + return MessagingDestinationTemplateKey.String(val) +} + +// MessagingDestinationTemporary returns an attribute KeyValue conforming to the +// "messaging.destination.temporary" semantic conventions. It represents a +// boolean that is true if the message destination is temporary and might not +// exist anymore after messages are processed. +func MessagingDestinationTemporary(val bool) attribute.KeyValue { + return MessagingDestinationTemporaryKey.Bool(val) +} + +// MessagingEventHubsMessageEnqueuedTime returns an attribute KeyValue conforming +// to the "messaging.eventhubs.message.enqueued_time" semantic conventions. It +// represents the UTC epoch seconds at which the message has been accepted and +// stored in the entity. +func MessagingEventHubsMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingEventHubsMessageEnqueuedTimeKey.Int(val) +} + +// MessagingGCPPubSubMessageAckDeadline returns an attribute KeyValue conforming +// to the "messaging.gcp_pubsub.message.ack_deadline" semantic conventions. It +// represents the ack deadline in seconds set for the modify ack deadline +// request. +func MessagingGCPPubSubMessageAckDeadline(val int) attribute.KeyValue { + return MessagingGCPPubSubMessageAckDeadlineKey.Int(val) +} + +// MessagingGCPPubSubMessageAckID returns an attribute KeyValue conforming to the +// "messaging.gcp_pubsub.message.ack_id" semantic conventions. It represents the +// ack id for a given message. +func MessagingGCPPubSubMessageAckID(val string) attribute.KeyValue { + return MessagingGCPPubSubMessageAckIDKey.String(val) +} + +// MessagingGCPPubSubMessageDeliveryAttempt returns an attribute KeyValue +// conforming to the "messaging.gcp_pubsub.message.delivery_attempt" semantic +// conventions. It represents the delivery attempt for a given message. +func MessagingGCPPubSubMessageDeliveryAttempt(val int) attribute.KeyValue { + return MessagingGCPPubSubMessageDeliveryAttemptKey.Int(val) +} + +// MessagingGCPPubSubMessageOrderingKey returns an attribute KeyValue conforming +// to the "messaging.gcp_pubsub.message.ordering_key" semantic conventions. It +// represents the ordering key for a given message. If the attribute is not +// present, the message does not have an ordering key. +func MessagingGCPPubSubMessageOrderingKey(val string) attribute.KeyValue { + return MessagingGCPPubSubMessageOrderingKeyKey.String(val) +} + +// MessagingKafkaMessageKey returns an attribute KeyValue conforming to the +// "messaging.kafka.message.key" semantic conventions. It represents the message +// keys in Kafka are used for grouping alike messages to ensure they're processed +// on the same partition. They differ from `messaging.message.id` in that they're +// not unique. If the key is `null`, the attribute MUST NOT be set. +func MessagingKafkaMessageKey(val string) attribute.KeyValue { + return MessagingKafkaMessageKeyKey.String(val) +} + +// MessagingKafkaMessageTombstone returns an attribute KeyValue conforming to the +// "messaging.kafka.message.tombstone" semantic conventions. It represents a +// boolean that is true if the message is a tombstone. +func MessagingKafkaMessageTombstone(val bool) attribute.KeyValue { + return MessagingKafkaMessageTombstoneKey.Bool(val) +} + +// MessagingKafkaOffset returns an attribute KeyValue conforming to the +// "messaging.kafka.offset" semantic conventions. It represents the offset of a +// record in the corresponding Kafka partition. +func MessagingKafkaOffset(val int) attribute.KeyValue { + return MessagingKafkaOffsetKey.Int(val) +} + +// MessagingMessageBodySize returns an attribute KeyValue conforming to the +// "messaging.message.body.size" semantic conventions. It represents the size of +// the message body in bytes. +func MessagingMessageBodySize(val int) attribute.KeyValue { + return MessagingMessageBodySizeKey.Int(val) +} + +// MessagingMessageConversationID returns an attribute KeyValue conforming to the +// "messaging.message.conversation_id" semantic conventions. It represents the +// conversation ID identifying the conversation to which the message belongs, +// represented as a string. Sometimes called "Correlation ID". +func MessagingMessageConversationID(val string) attribute.KeyValue { + return MessagingMessageConversationIDKey.String(val) +} + +// MessagingMessageEnvelopeSize returns an attribute KeyValue conforming to the +// "messaging.message.envelope.size" semantic conventions. It represents the size +// of the message body and metadata in bytes. +func MessagingMessageEnvelopeSize(val int) attribute.KeyValue { + return MessagingMessageEnvelopeSizeKey.Int(val) +} + +// MessagingMessageID returns an attribute KeyValue conforming to the +// "messaging.message.id" semantic conventions. It represents a value used by the +// messaging system as an identifier for the message, represented as a string. +func MessagingMessageID(val string) attribute.KeyValue { + return MessagingMessageIDKey.String(val) +} + +// MessagingOperationName returns an attribute KeyValue conforming to the +// "messaging.operation.name" semantic conventions. It represents the +// system-specific name of the messaging operation. +func MessagingOperationName(val string) attribute.KeyValue { + return MessagingOperationNameKey.String(val) +} + +// MessagingRabbitMQDestinationRoutingKey returns an attribute KeyValue +// conforming to the "messaging.rabbitmq.destination.routing_key" semantic +// conventions. It represents the rabbitMQ message routing key. +func MessagingRabbitMQDestinationRoutingKey(val string) attribute.KeyValue { + return MessagingRabbitMQDestinationRoutingKeyKey.String(val) +} + +// MessagingRabbitMQMessageDeliveryTag returns an attribute KeyValue conforming +// to the "messaging.rabbitmq.message.delivery_tag" semantic conventions. It +// represents the rabbitMQ message delivery tag. +func MessagingRabbitMQMessageDeliveryTag(val int) attribute.KeyValue { + return MessagingRabbitMQMessageDeliveryTagKey.Int(val) +} + +// MessagingRocketMQMessageDelayTimeLevel returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delay_time_level" semantic +// conventions. It represents the delay time level for delay message, which +// determines the message delay time. +func MessagingRocketMQMessageDelayTimeLevel(val int) attribute.KeyValue { + return MessagingRocketMQMessageDelayTimeLevelKey.Int(val) +} + +// MessagingRocketMQMessageDeliveryTimestamp returns an attribute KeyValue +// conforming to the "messaging.rocketmq.message.delivery_timestamp" semantic +// conventions. It represents the timestamp in milliseconds that the delay +// message is expected to be delivered to consumer. +func MessagingRocketMQMessageDeliveryTimestamp(val int) attribute.KeyValue { + return MessagingRocketMQMessageDeliveryTimestampKey.Int(val) +} + +// MessagingRocketMQMessageGroup returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.group" semantic conventions. It represents the it +// is essential for FIFO message. Messages that belong to the same message group +// are always processed one by one within the same consumer group. +func MessagingRocketMQMessageGroup(val string) attribute.KeyValue { + return MessagingRocketMQMessageGroupKey.String(val) +} + +// MessagingRocketMQMessageKeys returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.keys" semantic conventions. It represents the +// key(s) of message, another way to mark message besides message id. +func MessagingRocketMQMessageKeys(val ...string) attribute.KeyValue { + return MessagingRocketMQMessageKeysKey.StringSlice(val) +} + +// MessagingRocketMQMessageTag returns an attribute KeyValue conforming to the +// "messaging.rocketmq.message.tag" semantic conventions. It represents the +// secondary classifier of message besides topic. +func MessagingRocketMQMessageTag(val string) attribute.KeyValue { + return MessagingRocketMQMessageTagKey.String(val) +} + +// MessagingRocketMQNamespace returns an attribute KeyValue conforming to the +// "messaging.rocketmq.namespace" semantic conventions. It represents the +// namespace of RocketMQ resources, resources in different namespaces are +// individual. +func MessagingRocketMQNamespace(val string) attribute.KeyValue { + return MessagingRocketMQNamespaceKey.String(val) +} + +// MessagingServiceBusMessageDeliveryCount returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.delivery_count" semantic +// conventions. It represents the number of deliveries that have been attempted +// for this message. +func MessagingServiceBusMessageDeliveryCount(val int) attribute.KeyValue { + return MessagingServiceBusMessageDeliveryCountKey.Int(val) +} + +// MessagingServiceBusMessageEnqueuedTime returns an attribute KeyValue +// conforming to the "messaging.servicebus.message.enqueued_time" semantic +// conventions. It represents the UTC epoch seconds at which the message has been +// accepted and stored in the entity. +func MessagingServiceBusMessageEnqueuedTime(val int) attribute.KeyValue { + return MessagingServiceBusMessageEnqueuedTimeKey.Int(val) +} + +// Enum values for messaging.operation.type +var ( + // A message is created. "Create" spans always refer to a single message and are + // used to provide a unique creation context for messages in batch sending + // scenarios. + // + // Stability: development + MessagingOperationTypeCreate = MessagingOperationTypeKey.String("create") + // One or more messages are provided for sending to an intermediary. If a single + // message is sent, the context of the "Send" span can be used as the creation + // context and no "Create" span needs to be created. + // + // Stability: development + MessagingOperationTypeSend = MessagingOperationTypeKey.String("send") + // One or more messages are requested by a consumer. This operation refers to + // pull-based scenarios, where consumers explicitly call methods of messaging + // SDKs to receive messages. + // + // Stability: development + MessagingOperationTypeReceive = MessagingOperationTypeKey.String("receive") + // One or more messages are processed by a consumer. + // + // Stability: development + MessagingOperationTypeProcess = MessagingOperationTypeKey.String("process") + // One or more messages are settled. + // + // Stability: development + MessagingOperationTypeSettle = MessagingOperationTypeKey.String("settle") + // Deprecated: Replaced by `process`. + MessagingOperationTypeDeliver = MessagingOperationTypeKey.String("deliver") + // Deprecated: Replaced by `send`. + MessagingOperationTypePublish = MessagingOperationTypeKey.String("publish") +) + +// Enum values for messaging.rocketmq.consumption_model +var ( + // Clustering consumption model + // Stability: development + MessagingRocketMQConsumptionModelClustering = MessagingRocketMQConsumptionModelKey.String("clustering") + // Broadcasting consumption model + // Stability: development + MessagingRocketMQConsumptionModelBroadcasting = MessagingRocketMQConsumptionModelKey.String("broadcasting") +) + +// Enum values for messaging.rocketmq.message.type +var ( + // Normal message + // Stability: development + MessagingRocketMQMessageTypeNormal = MessagingRocketMQMessageTypeKey.String("normal") + // FIFO message + // Stability: development + MessagingRocketMQMessageTypeFifo = MessagingRocketMQMessageTypeKey.String("fifo") + // Delay message + // Stability: development + MessagingRocketMQMessageTypeDelay = MessagingRocketMQMessageTypeKey.String("delay") + // Transaction message + // Stability: development + MessagingRocketMQMessageTypeTransaction = MessagingRocketMQMessageTypeKey.String("transaction") +) + +// Enum values for messaging.servicebus.disposition_status +var ( + // Message is completed + // Stability: development + MessagingServiceBusDispositionStatusComplete = MessagingServiceBusDispositionStatusKey.String("complete") + // Message is abandoned + // Stability: development + MessagingServiceBusDispositionStatusAbandon = MessagingServiceBusDispositionStatusKey.String("abandon") + // Message is sent to dead letter queue + // Stability: development + MessagingServiceBusDispositionStatusDeadLetter = MessagingServiceBusDispositionStatusKey.String("dead_letter") + // Message is deferred + // Stability: development + MessagingServiceBusDispositionStatusDefer = MessagingServiceBusDispositionStatusKey.String("defer") +) + +// Enum values for messaging.system +var ( + // Apache ActiveMQ + // Stability: development + MessagingSystemActiveMQ = MessagingSystemKey.String("activemq") + // Amazon Simple Queue Service (SQS) + // Stability: development + MessagingSystemAWSSQS = MessagingSystemKey.String("aws_sqs") + // Azure Event Grid + // Stability: development + MessagingSystemEventGrid = MessagingSystemKey.String("eventgrid") + // Azure Event Hubs + // Stability: development + MessagingSystemEventHubs = MessagingSystemKey.String("eventhubs") + // Azure Service Bus + // Stability: development + MessagingSystemServiceBus = MessagingSystemKey.String("servicebus") + // Google Cloud Pub/Sub + // Stability: development + MessagingSystemGCPPubSub = MessagingSystemKey.String("gcp_pubsub") + // Java Message Service + // Stability: development + MessagingSystemJMS = MessagingSystemKey.String("jms") + // Apache Kafka + // Stability: development + MessagingSystemKafka = MessagingSystemKey.String("kafka") + // RabbitMQ + // Stability: development + MessagingSystemRabbitMQ = MessagingSystemKey.String("rabbitmq") + // Apache RocketMQ + // Stability: development + MessagingSystemRocketMQ = MessagingSystemKey.String("rocketmq") + // Apache Pulsar + // Stability: development + MessagingSystemPulsar = MessagingSystemKey.String("pulsar") +) + +// Namespace: network +const ( + // NetworkCarrierICCKey is the attribute Key conforming to the + // "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 + // alpha-2 2-character country code associated with the mobile carrier network. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: DE + NetworkCarrierICCKey = attribute.Key("network.carrier.icc") + + // NetworkCarrierMCCKey is the attribute Key conforming to the + // "network.carrier.mcc" semantic conventions. It represents the mobile carrier + // country code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 310 + NetworkCarrierMCCKey = attribute.Key("network.carrier.mcc") + + // NetworkCarrierMNCKey is the attribute Key conforming to the + // "network.carrier.mnc" semantic conventions. It represents the mobile carrier + // network code. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 001 + NetworkCarrierMNCKey = attribute.Key("network.carrier.mnc") + + // NetworkCarrierNameKey is the attribute Key conforming to the + // "network.carrier.name" semantic conventions. It represents the name of the + // mobile carrier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: sprint + NetworkCarrierNameKey = attribute.Key("network.carrier.name") + + // NetworkConnectionStateKey is the attribute Key conforming to the + // "network.connection.state" semantic conventions. It represents the state of + // network connection. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "close_wait" + // Note: Connection states are defined as part of the [rfc9293] + // + // [rfc9293]: https://datatracker.ietf.org/doc/html/rfc9293#section-3.3.2 + NetworkConnectionStateKey = attribute.Key("network.connection.state") + + // NetworkConnectionSubtypeKey is the attribute Key conforming to the + // "network.connection.subtype" semantic conventions. It represents the this + // describes more details regarding the connection.type. It may be the type of + // cell technology connection, but it could be used for describing details about + // a wifi connection. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: LTE + NetworkConnectionSubtypeKey = attribute.Key("network.connection.subtype") + + // NetworkConnectionTypeKey is the attribute Key conforming to the + // "network.connection.type" semantic conventions. It represents the internet + // connection type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: wifi + NetworkConnectionTypeKey = attribute.Key("network.connection.type") + + // NetworkInterfaceNameKey is the attribute Key conforming to the + // "network.interface.name" semantic conventions. It represents the network + // interface name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "lo", "eth0" + NetworkInterfaceNameKey = attribute.Key("network.interface.name") + + // NetworkIODirectionKey is the attribute Key conforming to the + // "network.io.direction" semantic conventions. It represents the network IO + // operation direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "transmit" + NetworkIODirectionKey = attribute.Key("network.io.direction") + + // NetworkLocalAddressKey is the attribute Key conforming to the + // "network.local.address" semantic conventions. It represents the local address + // of the network connection - IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "10.1.2.80", "/tmp/my.sock" + NetworkLocalAddressKey = attribute.Key("network.local.address") + + // NetworkLocalPortKey is the attribute Key conforming to the + // "network.local.port" semantic conventions. It represents the local port + // number of the network connection. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + NetworkLocalPortKey = attribute.Key("network.local.port") + + // NetworkPeerAddressKey is the attribute Key conforming to the + // "network.peer.address" semantic conventions. It represents the peer address + // of the network connection - IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "10.1.2.80", "/tmp/my.sock" + NetworkPeerAddressKey = attribute.Key("network.peer.address") + + // NetworkPeerPortKey is the attribute Key conforming to the "network.peer.port" + // semantic conventions. It represents the peer port number of the network + // connection. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 65123 + NetworkPeerPortKey = attribute.Key("network.peer.port") + + // NetworkProtocolNameKey is the attribute Key conforming to the + // "network.protocol.name" semantic conventions. It represents the + // [OSI application layer] or non-OSI equivalent. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "amqp", "http", "mqtt" + // Note: The value SHOULD be normalized to lowercase. + // + // [OSI application layer]: https://wikipedia.org/wiki/Application_layer + NetworkProtocolNameKey = attribute.Key("network.protocol.name") + + // NetworkProtocolVersionKey is the attribute Key conforming to the + // "network.protocol.version" semantic conventions. It represents the actual + // version of the protocol used for network communication. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.1", "2" + // Note: If protocol version is subject to negotiation (for example using [ALPN] + // ), this attribute SHOULD be set to the negotiated version. If the actual + // protocol version is not known, this attribute SHOULD NOT be set. + // + // [ALPN]: https://www.rfc-editor.org/rfc/rfc7301.html + NetworkProtocolVersionKey = attribute.Key("network.protocol.version") + + // NetworkTransportKey is the attribute Key conforming to the + // "network.transport" semantic conventions. It represents the + // [OSI transport layer] or [inter-process communication method]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "tcp", "udp" + // Note: The value SHOULD be normalized to lowercase. + // + // Consider always setting the transport when setting a port number, since + // a port number is ambiguous without knowing the transport. For example + // different processes could be listening on TCP port 12345 and UDP port 12345. + // + // [OSI transport layer]: https://wikipedia.org/wiki/Transport_layer + // [inter-process communication method]: https://wikipedia.org/wiki/Inter-process_communication + NetworkTransportKey = attribute.Key("network.transport") + + // NetworkTypeKey is the attribute Key conforming to the "network.type" semantic + // conventions. It represents the [OSI network layer] or non-OSI equivalent. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "ipv4", "ipv6" + // Note: The value SHOULD be normalized to lowercase. + // + // [OSI network layer]: https://wikipedia.org/wiki/Network_layer + NetworkTypeKey = attribute.Key("network.type") +) + +// NetworkCarrierICC returns an attribute KeyValue conforming to the +// "network.carrier.icc" semantic conventions. It represents the ISO 3166-1 +// alpha-2 2-character country code associated with the mobile carrier network. +func NetworkCarrierICC(val string) attribute.KeyValue { + return NetworkCarrierICCKey.String(val) +} + +// NetworkCarrierMCC returns an attribute KeyValue conforming to the +// "network.carrier.mcc" semantic conventions. It represents the mobile carrier +// country code. +func NetworkCarrierMCC(val string) attribute.KeyValue { + return NetworkCarrierMCCKey.String(val) +} + +// NetworkCarrierMNC returns an attribute KeyValue conforming to the +// "network.carrier.mnc" semantic conventions. It represents the mobile carrier +// network code. +func NetworkCarrierMNC(val string) attribute.KeyValue { + return NetworkCarrierMNCKey.String(val) +} + +// NetworkCarrierName returns an attribute KeyValue conforming to the +// "network.carrier.name" semantic conventions. It represents the name of the +// mobile carrier. +func NetworkCarrierName(val string) attribute.KeyValue { + return NetworkCarrierNameKey.String(val) +} + +// NetworkInterfaceName returns an attribute KeyValue conforming to the +// "network.interface.name" semantic conventions. It represents the network +// interface name. +func NetworkInterfaceName(val string) attribute.KeyValue { + return NetworkInterfaceNameKey.String(val) +} + +// NetworkLocalAddress returns an attribute KeyValue conforming to the +// "network.local.address" semantic conventions. It represents the local address +// of the network connection - IP address or Unix domain socket name. +func NetworkLocalAddress(val string) attribute.KeyValue { + return NetworkLocalAddressKey.String(val) +} + +// NetworkLocalPort returns an attribute KeyValue conforming to the +// "network.local.port" semantic conventions. It represents the local port number +// of the network connection. +func NetworkLocalPort(val int) attribute.KeyValue { + return NetworkLocalPortKey.Int(val) +} + +// NetworkPeerAddress returns an attribute KeyValue conforming to the +// "network.peer.address" semantic conventions. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func NetworkPeerAddress(val string) attribute.KeyValue { + return NetworkPeerAddressKey.String(val) +} + +// NetworkPeerPort returns an attribute KeyValue conforming to the +// "network.peer.port" semantic conventions. It represents the peer port number +// of the network connection. +func NetworkPeerPort(val int) attribute.KeyValue { + return NetworkPeerPortKey.Int(val) +} + +// NetworkProtocolName returns an attribute KeyValue conforming to the +// "network.protocol.name" semantic conventions. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func NetworkProtocolName(val string) attribute.KeyValue { + return NetworkProtocolNameKey.String(val) +} + +// NetworkProtocolVersion returns an attribute KeyValue conforming to the +// "network.protocol.version" semantic conventions. It represents the actual +// version of the protocol used for network communication. +func NetworkProtocolVersion(val string) attribute.KeyValue { + return NetworkProtocolVersionKey.String(val) +} + +// Enum values for network.connection.state +var ( + // closed + // Stability: development + NetworkConnectionStateClosed = NetworkConnectionStateKey.String("closed") + // close_wait + // Stability: development + NetworkConnectionStateCloseWait = NetworkConnectionStateKey.String("close_wait") + // closing + // Stability: development + NetworkConnectionStateClosing = NetworkConnectionStateKey.String("closing") + // established + // Stability: development + NetworkConnectionStateEstablished = NetworkConnectionStateKey.String("established") + // fin_wait_1 + // Stability: development + NetworkConnectionStateFinWait1 = NetworkConnectionStateKey.String("fin_wait_1") + // fin_wait_2 + // Stability: development + NetworkConnectionStateFinWait2 = NetworkConnectionStateKey.String("fin_wait_2") + // last_ack + // Stability: development + NetworkConnectionStateLastAck = NetworkConnectionStateKey.String("last_ack") + // listen + // Stability: development + NetworkConnectionStateListen = NetworkConnectionStateKey.String("listen") + // syn_received + // Stability: development + NetworkConnectionStateSynReceived = NetworkConnectionStateKey.String("syn_received") + // syn_sent + // Stability: development + NetworkConnectionStateSynSent = NetworkConnectionStateKey.String("syn_sent") + // time_wait + // Stability: development + NetworkConnectionStateTimeWait = NetworkConnectionStateKey.String("time_wait") +) + +// Enum values for network.connection.subtype +var ( + // GPRS + // Stability: development + NetworkConnectionSubtypeGprs = NetworkConnectionSubtypeKey.String("gprs") + // EDGE + // Stability: development + NetworkConnectionSubtypeEdge = NetworkConnectionSubtypeKey.String("edge") + // UMTS + // Stability: development + NetworkConnectionSubtypeUmts = NetworkConnectionSubtypeKey.String("umts") + // CDMA + // Stability: development + NetworkConnectionSubtypeCdma = NetworkConnectionSubtypeKey.String("cdma") + // EVDO Rel. 0 + // Stability: development + NetworkConnectionSubtypeEvdo0 = NetworkConnectionSubtypeKey.String("evdo_0") + // EVDO Rev. A + // Stability: development + NetworkConnectionSubtypeEvdoA = NetworkConnectionSubtypeKey.String("evdo_a") + // CDMA2000 1XRTT + // Stability: development + NetworkConnectionSubtypeCdma20001xrtt = NetworkConnectionSubtypeKey.String("cdma2000_1xrtt") + // HSDPA + // Stability: development + NetworkConnectionSubtypeHsdpa = NetworkConnectionSubtypeKey.String("hsdpa") + // HSUPA + // Stability: development + NetworkConnectionSubtypeHsupa = NetworkConnectionSubtypeKey.String("hsupa") + // HSPA + // Stability: development + NetworkConnectionSubtypeHspa = NetworkConnectionSubtypeKey.String("hspa") + // IDEN + // Stability: development + NetworkConnectionSubtypeIden = NetworkConnectionSubtypeKey.String("iden") + // EVDO Rev. B + // Stability: development + NetworkConnectionSubtypeEvdoB = NetworkConnectionSubtypeKey.String("evdo_b") + // LTE + // Stability: development + NetworkConnectionSubtypeLte = NetworkConnectionSubtypeKey.String("lte") + // EHRPD + // Stability: development + NetworkConnectionSubtypeEhrpd = NetworkConnectionSubtypeKey.String("ehrpd") + // HSPAP + // Stability: development + NetworkConnectionSubtypeHspap = NetworkConnectionSubtypeKey.String("hspap") + // GSM + // Stability: development + NetworkConnectionSubtypeGsm = NetworkConnectionSubtypeKey.String("gsm") + // TD-SCDMA + // Stability: development + NetworkConnectionSubtypeTdScdma = NetworkConnectionSubtypeKey.String("td_scdma") + // IWLAN + // Stability: development + NetworkConnectionSubtypeIwlan = NetworkConnectionSubtypeKey.String("iwlan") + // 5G NR (New Radio) + // Stability: development + NetworkConnectionSubtypeNr = NetworkConnectionSubtypeKey.String("nr") + // 5G NRNSA (New Radio Non-Standalone) + // Stability: development + NetworkConnectionSubtypeNrnsa = NetworkConnectionSubtypeKey.String("nrnsa") + // LTE CA + // Stability: development + NetworkConnectionSubtypeLteCa = NetworkConnectionSubtypeKey.String("lte_ca") +) + +// Enum values for network.connection.type +var ( + // wifi + // Stability: development + NetworkConnectionTypeWifi = NetworkConnectionTypeKey.String("wifi") + // wired + // Stability: development + NetworkConnectionTypeWired = NetworkConnectionTypeKey.String("wired") + // cell + // Stability: development + NetworkConnectionTypeCell = NetworkConnectionTypeKey.String("cell") + // unavailable + // Stability: development + NetworkConnectionTypeUnavailable = NetworkConnectionTypeKey.String("unavailable") + // unknown + // Stability: development + NetworkConnectionTypeUnknown = NetworkConnectionTypeKey.String("unknown") +) + +// Enum values for network.io.direction +var ( + // transmit + // Stability: development + NetworkIODirectionTransmit = NetworkIODirectionKey.String("transmit") + // receive + // Stability: development + NetworkIODirectionReceive = NetworkIODirectionKey.String("receive") +) + +// Enum values for network.transport +var ( + // TCP + // Stability: stable + NetworkTransportTCP = NetworkTransportKey.String("tcp") + // UDP + // Stability: stable + NetworkTransportUDP = NetworkTransportKey.String("udp") + // Named or anonymous pipe. + // Stability: stable + NetworkTransportPipe = NetworkTransportKey.String("pipe") + // Unix domain socket + // Stability: stable + NetworkTransportUnix = NetworkTransportKey.String("unix") + // QUIC + // Stability: stable + NetworkTransportQUIC = NetworkTransportKey.String("quic") +) + +// Enum values for network.type +var ( + // IPv4 + // Stability: stable + NetworkTypeIPv4 = NetworkTypeKey.String("ipv4") + // IPv6 + // Stability: stable + NetworkTypeIPv6 = NetworkTypeKey.String("ipv6") +) + +// Namespace: oci +const ( + // OCIManifestDigestKey is the attribute Key conforming to the + // "oci.manifest.digest" semantic conventions. It represents the digest of the + // OCI image manifest. For container images specifically is the digest by which + // the container image is known. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "sha256:e4ca62c0d62f3e886e684806dfe9d4e0cda60d54986898173c1083856cfda0f4" + // Note: Follows [OCI Image Manifest Specification], and specifically the + // [Digest property]. + // An example can be found in [Example Image Manifest]. + // + // [OCI Image Manifest Specification]: https://github.com/opencontainers/image-spec/blob/main/manifest.md + // [Digest property]: https://github.com/opencontainers/image-spec/blob/main/descriptor.md#digests + // [Example Image Manifest]: https://github.com/opencontainers/image-spec/blob/main/manifest.md#example-image-manifest + OCIManifestDigestKey = attribute.Key("oci.manifest.digest") +) + +// OCIManifestDigest returns an attribute KeyValue conforming to the +// "oci.manifest.digest" semantic conventions. It represents the digest of the +// OCI image manifest. For container images specifically is the digest by which +// the container image is known. +func OCIManifestDigest(val string) attribute.KeyValue { + return OCIManifestDigestKey.String(val) +} + +// Namespace: opentracing +const ( + // OpenTracingRefTypeKey is the attribute Key conforming to the + // "opentracing.ref_type" semantic conventions. It represents the parent-child + // Reference type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: The causal relationship between a child Span and a parent Span. + OpenTracingRefTypeKey = attribute.Key("opentracing.ref_type") +) + +// Enum values for opentracing.ref_type +var ( + // The parent Span depends on the child Span in some capacity + // Stability: development + OpenTracingRefTypeChildOf = OpenTracingRefTypeKey.String("child_of") + // The parent Span doesn't depend in any way on the result of the child Span + // Stability: development + OpenTracingRefTypeFollowsFrom = OpenTracingRefTypeKey.String("follows_from") +) + +// Namespace: os +const ( + // OSBuildIDKey is the attribute Key conforming to the "os.build_id" semantic + // conventions. It represents the unique identifier for a particular build or + // compilation of the operating system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TQ3C.230805.001.B2", "20E247", "22621" + OSBuildIDKey = attribute.Key("os.build_id") + + // OSDescriptionKey is the attribute Key conforming to the "os.description" + // semantic conventions. It represents the human readable (not intended to be + // parsed) OS version information, like e.g. reported by `ver` or + // `lsb_release -a` commands. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Microsoft Windows [Version 10.0.18363.778]", "Ubuntu 18.04.1 LTS" + OSDescriptionKey = attribute.Key("os.description") + + // OSNameKey is the attribute Key conforming to the "os.name" semantic + // conventions. It represents the human readable operating system name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iOS", "Android", "Ubuntu" + OSNameKey = attribute.Key("os.name") + + // OSTypeKey is the attribute Key conforming to the "os.type" semantic + // conventions. It represents the operating system type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OSTypeKey = attribute.Key("os.type") + + // OSVersionKey is the attribute Key conforming to the "os.version" semantic + // conventions. It represents the version string of the operating system as + // defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.2.1", "18.04.1" + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + OSVersionKey = attribute.Key("os.version") +) + +// OSBuildID returns an attribute KeyValue conforming to the "os.build_id" +// semantic conventions. It represents the unique identifier for a particular +// build or compilation of the operating system. +func OSBuildID(val string) attribute.KeyValue { + return OSBuildIDKey.String(val) +} + +// OSDescription returns an attribute KeyValue conforming to the "os.description" +// semantic conventions. It represents the human readable (not intended to be +// parsed) OS version information, like e.g. reported by `ver` or +// `lsb_release -a` commands. +func OSDescription(val string) attribute.KeyValue { + return OSDescriptionKey.String(val) +} + +// OSName returns an attribute KeyValue conforming to the "os.name" semantic +// conventions. It represents the human readable operating system name. +func OSName(val string) attribute.KeyValue { + return OSNameKey.String(val) +} + +// OSVersion returns an attribute KeyValue conforming to the "os.version" +// semantic conventions. It represents the version string of the operating system +// as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func OSVersion(val string) attribute.KeyValue { + return OSVersionKey.String(val) +} + +// Enum values for os.type +var ( + // Microsoft Windows + // Stability: development + OSTypeWindows = OSTypeKey.String("windows") + // Linux + // Stability: development + OSTypeLinux = OSTypeKey.String("linux") + // Apple Darwin + // Stability: development + OSTypeDarwin = OSTypeKey.String("darwin") + // FreeBSD + // Stability: development + OSTypeFreeBSD = OSTypeKey.String("freebsd") + // NetBSD + // Stability: development + OSTypeNetBSD = OSTypeKey.String("netbsd") + // OpenBSD + // Stability: development + OSTypeOpenBSD = OSTypeKey.String("openbsd") + // DragonFly BSD + // Stability: development + OSTypeDragonflyBSD = OSTypeKey.String("dragonflybsd") + // HP-UX (Hewlett Packard Unix) + // Stability: development + OSTypeHPUX = OSTypeKey.String("hpux") + // AIX (Advanced Interactive eXecutive) + // Stability: development + OSTypeAIX = OSTypeKey.String("aix") + // SunOS, Oracle Solaris + // Stability: development + OSTypeSolaris = OSTypeKey.String("solaris") + // IBM z/OS + // Stability: development + OSTypeZOS = OSTypeKey.String("z_os") +) + +// Namespace: otel +const ( + // OTelComponentNameKey is the attribute Key conforming to the + // "otel.component.name" semantic conventions. It represents a name uniquely + // identifying the instance of the OpenTelemetry component within its containing + // SDK instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otlp_grpc_span_exporter/0", "custom-name" + // Note: Implementations SHOULD ensure a low cardinality for this attribute, + // even across application or SDK restarts. + // E.g. implementations MUST NOT use UUIDs as values for this attribute. + // + // Implementations MAY achieve these goals by following a + // `/` pattern, e.g. + // `batching_span_processor/0`. + // Hereby `otel.component.type` refers to the corresponding attribute value of + // the component. + // + // The value of `instance-counter` MAY be automatically assigned by the + // component and uniqueness within the enclosing SDK instance MUST be + // guaranteed. + // For example, `` MAY be implemented by using a monotonically + // increasing counter (starting with `0`), which is incremented every time an + // instance of the given component type is started. + // + // With this implementation, for example the first Batching Span Processor would + // have `batching_span_processor/0` + // as `otel.component.name`, the second one `batching_span_processor/1` and so + // on. + // These values will therefore be reused in the case of an application restart. + OTelComponentNameKey = attribute.Key("otel.component.name") + + // OTelComponentTypeKey is the attribute Key conforming to the + // "otel.component.type" semantic conventions. It represents a name identifying + // the type of the OpenTelemetry component. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "batching_span_processor", "com.example.MySpanExporter" + // Note: If none of the standardized values apply, implementations SHOULD use + // the language-defined name of the type. + // E.g. for Java the fully qualified classname SHOULD be used in this case. + OTelComponentTypeKey = attribute.Key("otel.component.type") + + // OTelScopeNameKey is the attribute Key conforming to the "otel.scope.name" + // semantic conventions. It represents the name of the instrumentation scope - ( + // `InstrumentationScope.Name` in OTLP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "io.opentelemetry.contrib.mongodb" + OTelScopeNameKey = attribute.Key("otel.scope.name") + + // OTelScopeVersionKey is the attribute Key conforming to the + // "otel.scope.version" semantic conventions. It represents the version of the + // instrumentation scope - (`InstrumentationScope.Version` in OTLP). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.0.0" + OTelScopeVersionKey = attribute.Key("otel.scope.version") + + // OTelSpanSamplingResultKey is the attribute Key conforming to the + // "otel.span.sampling_result" semantic conventions. It represents the result + // value of the sampler for this span. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + OTelSpanSamplingResultKey = attribute.Key("otel.span.sampling_result") + + // OTelStatusCodeKey is the attribute Key conforming to the "otel.status_code" + // semantic conventions. It represents the name of the code, either "OK" or + // "ERROR". MUST NOT be set if the status code is UNSET. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + OTelStatusCodeKey = attribute.Key("otel.status_code") + + // OTelStatusDescriptionKey is the attribute Key conforming to the + // "otel.status_description" semantic conventions. It represents the description + // of the Status if it has a value, otherwise not set. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "resource not found" + OTelStatusDescriptionKey = attribute.Key("otel.status_description") +) + +// OTelComponentName returns an attribute KeyValue conforming to the +// "otel.component.name" semantic conventions. It represents a name uniquely +// identifying the instance of the OpenTelemetry component within its containing +// SDK instance. +func OTelComponentName(val string) attribute.KeyValue { + return OTelComponentNameKey.String(val) +} + +// OTelScopeName returns an attribute KeyValue conforming to the +// "otel.scope.name" semantic conventions. It represents the name of the +// instrumentation scope - (`InstrumentationScope.Name` in OTLP). +func OTelScopeName(val string) attribute.KeyValue { + return OTelScopeNameKey.String(val) +} + +// OTelScopeVersion returns an attribute KeyValue conforming to the +// "otel.scope.version" semantic conventions. It represents the version of the +// instrumentation scope - (`InstrumentationScope.Version` in OTLP). +func OTelScopeVersion(val string) attribute.KeyValue { + return OTelScopeVersionKey.String(val) +} + +// OTelStatusDescription returns an attribute KeyValue conforming to the +// "otel.status_description" semantic conventions. It represents the description +// of the Status if it has a value, otherwise not set. +func OTelStatusDescription(val string) attribute.KeyValue { + return OTelStatusDescriptionKey.String(val) +} + +// Enum values for otel.component.type +var ( + // The builtin SDK batching span processor + // + // Stability: development + OTelComponentTypeBatchingSpanProcessor = OTelComponentTypeKey.String("batching_span_processor") + // The builtin SDK simple span processor + // + // Stability: development + OTelComponentTypeSimpleSpanProcessor = OTelComponentTypeKey.String("simple_span_processor") + // The builtin SDK batching log record processor + // + // Stability: development + OTelComponentTypeBatchingLogProcessor = OTelComponentTypeKey.String("batching_log_processor") + // The builtin SDK simple log record processor + // + // Stability: development + OTelComponentTypeSimpleLogProcessor = OTelComponentTypeKey.String("simple_log_processor") + // OTLP span exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCSpanExporter = OTelComponentTypeKey.String("otlp_grpc_span_exporter") + // OTLP span exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPSpanExporter = OTelComponentTypeKey.String("otlp_http_span_exporter") + // OTLP span exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONSpanExporter = OTelComponentTypeKey.String("otlp_http_json_span_exporter") + // OTLP log record exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCLogExporter = OTelComponentTypeKey.String("otlp_grpc_log_exporter") + // OTLP log record exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPLogExporter = OTelComponentTypeKey.String("otlp_http_log_exporter") + // OTLP log record exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONLogExporter = OTelComponentTypeKey.String("otlp_http_json_log_exporter") + // The builtin SDK periodically exporting metric reader + // + // Stability: development + OTelComponentTypePeriodicMetricReader = OTelComponentTypeKey.String("periodic_metric_reader") + // OTLP metric exporter over gRPC with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpGRPCMetricExporter = OTelComponentTypeKey.String("otlp_grpc_metric_exporter") + // OTLP metric exporter over HTTP with protobuf serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPMetricExporter = OTelComponentTypeKey.String("otlp_http_metric_exporter") + // OTLP metric exporter over HTTP with JSON serialization + // + // Stability: development + OTelComponentTypeOtlpHTTPJSONMetricExporter = OTelComponentTypeKey.String("otlp_http_json_metric_exporter") +) + +// Enum values for otel.span.sampling_result +var ( + // The span is not sampled and not recording + // Stability: development + OTelSpanSamplingResultDrop = OTelSpanSamplingResultKey.String("DROP") + // The span is not sampled, but recording + // Stability: development + OTelSpanSamplingResultRecordOnly = OTelSpanSamplingResultKey.String("RECORD_ONLY") + // The span is sampled and recording + // Stability: development + OTelSpanSamplingResultRecordAndSample = OTelSpanSamplingResultKey.String("RECORD_AND_SAMPLE") +) + +// Enum values for otel.status_code +var ( + // The operation has been validated by an Application developer or Operator to + // have completed successfully. + // Stability: stable + OTelStatusCodeOk = OTelStatusCodeKey.String("OK") + // The operation contains an error. + // Stability: stable + OTelStatusCodeError = OTelStatusCodeKey.String("ERROR") +) + +// Namespace: peer +const ( + // PeerServiceKey is the attribute Key conforming to the "peer.service" semantic + // conventions. It represents the [`service.name`] of the remote service. SHOULD + // be equal to the actual `service.name` resource attribute of the remote + // service if any. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: AuthTokenCache + // + // [`service.name`]: /docs/resource/README.md#service + PeerServiceKey = attribute.Key("peer.service") +) + +// PeerService returns an attribute KeyValue conforming to the "peer.service" +// semantic conventions. It represents the [`service.name`] of the remote +// service. SHOULD be equal to the actual `service.name` resource attribute of +// the remote service if any. +// +// [`service.name`]: /docs/resource/README.md#service +func PeerService(val string) attribute.KeyValue { + return PeerServiceKey.String(val) +} + +// Namespace: process +const ( + // ProcessArgsCountKey is the attribute Key conforming to the + // "process.args_count" semantic conventions. It represents the length of the + // process.command_args array. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 4 + // Note: This field can be useful for querying or performing bucket analysis on + // how many arguments were provided to start a process. More arguments may be an + // indication of suspicious activity. + ProcessArgsCountKey = attribute.Key("process.args_count") + + // ProcessCommandKey is the attribute Key conforming to the "process.command" + // semantic conventions. It represents the command used to launch the process + // (i.e. the command name). On Linux based systems, can be set to the zeroth + // string in `proc/[pid]/cmdline`. On Windows, can be set to the first parameter + // extracted from `GetCommandLineW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cmd/otelcol" + ProcessCommandKey = attribute.Key("process.command") + + // ProcessCommandArgsKey is the attribute Key conforming to the + // "process.command_args" semantic conventions. It represents the all the + // command arguments (including the command/executable itself) as received by + // the process. On Linux-based systems (and some other Unixoid systems + // supporting procfs), can be set according to the list of null-delimited + // strings extracted from `proc/[pid]/cmdline`. For libc-based executables, this + // would be the full argv vector passed to `main`. SHOULD NOT be collected by + // default unless there is sanitization that excludes sensitive data. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cmd/otecol", "--config=config.yaml" + ProcessCommandArgsKey = attribute.Key("process.command_args") + + // ProcessCommandLineKey is the attribute Key conforming to the + // "process.command_line" semantic conventions. It represents the full command + // used to launch the process as a single string representing the full command. + // On Windows, can be set to the result of `GetCommandLineW`. Do not set this if + // you have to assemble it just for monitoring; use `process.command_args` + // instead. SHOULD NOT be collected by default unless there is sanitization that + // excludes sensitive data. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "C:\cmd\otecol --config="my directory\config.yaml"" + ProcessCommandLineKey = attribute.Key("process.command_line") + + // ProcessContextSwitchTypeKey is the attribute Key conforming to the + // "process.context_switch_type" semantic conventions. It represents the + // specifies whether the context switches for this data point were voluntary or + // involuntary. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + ProcessContextSwitchTypeKey = attribute.Key("process.context_switch_type") + + // ProcessCreationTimeKey is the attribute Key conforming to the + // "process.creation.time" semantic conventions. It represents the date and time + // the process was created, in ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2023-11-21T09:25:34.853Z" + ProcessCreationTimeKey = attribute.Key("process.creation.time") + + // ProcessExecutableBuildIDGNUKey is the attribute Key conforming to the + // "process.executable.build_id.gnu" semantic conventions. It represents the GNU + // build ID as found in the `.note.gnu.build-id` ELF section (hex string). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "c89b11207f6479603b0d49bf291c092c2b719293" + ProcessExecutableBuildIDGNUKey = attribute.Key("process.executable.build_id.gnu") + + // ProcessExecutableBuildIDGoKey is the attribute Key conforming to the + // "process.executable.build_id.go" semantic conventions. It represents the Go + // build ID as retrieved by `go tool buildid `. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "foh3mEXu7BLZjsN9pOwG/kATcXlYVCDEFouRMQed_/WwRFB1hPo9LBkekthSPG/x8hMC8emW2cCjXD0_1aY" + ProcessExecutableBuildIDGoKey = attribute.Key("process.executable.build_id.go") + + // ProcessExecutableBuildIDHtlhashKey is the attribute Key conforming to the + // "process.executable.build_id.htlhash" semantic conventions. It represents the + // profiling specific build ID for executables. See the OTel specification for + // Profiles for more information. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "600DCAFE4A110000F2BF38C493F5FB92" + ProcessExecutableBuildIDHtlhashKey = attribute.Key("process.executable.build_id.htlhash") + + // ProcessExecutableNameKey is the attribute Key conforming to the + // "process.executable.name" semantic conventions. It represents the name of the + // process executable. On Linux based systems, this SHOULD be set to the base + // name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to + // the base name of `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "otelcol" + ProcessExecutableNameKey = attribute.Key("process.executable.name") + + // ProcessExecutablePathKey is the attribute Key conforming to the + // "process.executable.path" semantic conventions. It represents the full path + // to the process executable. On Linux based systems, can be set to the target + // of `proc/[pid]/exe`. On Windows, can be set to the result of + // `GetProcessImageFileNameW`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/usr/bin/cmd/otelcol" + ProcessExecutablePathKey = attribute.Key("process.executable.path") + + // ProcessExitCodeKey is the attribute Key conforming to the "process.exit.code" + // semantic conventions. It represents the exit code of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 127 + ProcessExitCodeKey = attribute.Key("process.exit.code") + + // ProcessExitTimeKey is the attribute Key conforming to the "process.exit.time" + // semantic conventions. It represents the date and time the process exited, in + // ISO 8601 format. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2023-11-21T09:26:12.315Z" + ProcessExitTimeKey = attribute.Key("process.exit.time") + + // ProcessGroupLeaderPIDKey is the attribute Key conforming to the + // "process.group_leader.pid" semantic conventions. It represents the PID of the + // process's group leader. This is also the process group ID (PGID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 23 + ProcessGroupLeaderPIDKey = attribute.Key("process.group_leader.pid") + + // ProcessInteractiveKey is the attribute Key conforming to the + // "process.interactive" semantic conventions. It represents the whether the + // process is connected to an interactive shell. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + ProcessInteractiveKey = attribute.Key("process.interactive") + + // ProcessLinuxCgroupKey is the attribute Key conforming to the + // "process.linux.cgroup" semantic conventions. It represents the control group + // associated with the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1:name=systemd:/user.slice/user-1000.slice/session-3.scope", + // "0::/user.slice/user-1000.slice/user@1000.service/tmux-spawn-0267755b-4639-4a27-90ed-f19f88e53748.scope" + // Note: Control groups (cgroups) are a kernel feature used to organize and + // manage process resources. This attribute provides the path(s) to the + // cgroup(s) associated with the process, which should match the contents of the + // [/proc/[PID]/cgroup] file. + // + // [/proc/[PID]/cgroup]: https://man7.org/linux/man-pages/man7/cgroups.7.html + ProcessLinuxCgroupKey = attribute.Key("process.linux.cgroup") + + // ProcessOwnerKey is the attribute Key conforming to the "process.owner" + // semantic conventions. It represents the username of the user that owns the + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + ProcessOwnerKey = attribute.Key("process.owner") + + // ProcessPagingFaultTypeKey is the attribute Key conforming to the + // "process.paging.fault_type" semantic conventions. It represents the type of + // page fault for this data point. Type `major` is for major/hard page faults, + // and `minor` is for minor/soft page faults. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + ProcessPagingFaultTypeKey = attribute.Key("process.paging.fault_type") + + // ProcessParentPIDKey is the attribute Key conforming to the + // "process.parent_pid" semantic conventions. It represents the parent Process + // identifier (PPID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 111 + ProcessParentPIDKey = attribute.Key("process.parent_pid") + + // ProcessPIDKey is the attribute Key conforming to the "process.pid" semantic + // conventions. It represents the process identifier (PID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1234 + ProcessPIDKey = attribute.Key("process.pid") + + // ProcessRealUserIDKey is the attribute Key conforming to the + // "process.real_user.id" semantic conventions. It represents the real user ID + // (RUID) of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1000 + ProcessRealUserIDKey = attribute.Key("process.real_user.id") + + // ProcessRealUserNameKey is the attribute Key conforming to the + // "process.real_user.name" semantic conventions. It represents the username of + // the real user of the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "operator" + ProcessRealUserNameKey = attribute.Key("process.real_user.name") + + // ProcessRuntimeDescriptionKey is the attribute Key conforming to the + // "process.runtime.description" semantic conventions. It represents an + // additional description about the runtime of the process, for example a + // specific vendor customization of the runtime environment. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: Eclipse OpenJ9 Eclipse OpenJ9 VM openj9-0.21.0 + ProcessRuntimeDescriptionKey = attribute.Key("process.runtime.description") + + // ProcessRuntimeNameKey is the attribute Key conforming to the + // "process.runtime.name" semantic conventions. It represents the name of the + // runtime of this process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "OpenJDK Runtime Environment" + ProcessRuntimeNameKey = attribute.Key("process.runtime.name") + + // ProcessRuntimeVersionKey is the attribute Key conforming to the + // "process.runtime.version" semantic conventions. It represents the version of + // the runtime of this process, as returned by the runtime without modification. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 14.0.2 + ProcessRuntimeVersionKey = attribute.Key("process.runtime.version") + + // ProcessSavedUserIDKey is the attribute Key conforming to the + // "process.saved_user.id" semantic conventions. It represents the saved user ID + // (SUID) of the process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1002 + ProcessSavedUserIDKey = attribute.Key("process.saved_user.id") + + // ProcessSavedUserNameKey is the attribute Key conforming to the + // "process.saved_user.name" semantic conventions. It represents the username of + // the saved user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "operator" + ProcessSavedUserNameKey = attribute.Key("process.saved_user.name") + + // ProcessSessionLeaderPIDKey is the attribute Key conforming to the + // "process.session_leader.pid" semantic conventions. It represents the PID of + // the process's session leader. This is also the session ID (SID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 14 + ProcessSessionLeaderPIDKey = attribute.Key("process.session_leader.pid") + + // ProcessTitleKey is the attribute Key conforming to the "process.title" + // semantic conventions. It represents the process title (proctitle). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cat /etc/hostname", "xfce4-session", "bash" + // Note: In many Unix-like systems, process title (proctitle), is the string + // that represents the name or command line of a running process, displayed by + // system monitoring tools like ps, top, and htop. + ProcessTitleKey = attribute.Key("process.title") + + // ProcessUserIDKey is the attribute Key conforming to the "process.user.id" + // semantic conventions. It represents the effective user ID (EUID) of the + // process. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1001 + ProcessUserIDKey = attribute.Key("process.user.id") + + // ProcessUserNameKey is the attribute Key conforming to the "process.user.name" + // semantic conventions. It represents the username of the effective user of the + // process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "root" + ProcessUserNameKey = attribute.Key("process.user.name") + + // ProcessVpidKey is the attribute Key conforming to the "process.vpid" semantic + // conventions. It represents the virtual process identifier. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 12 + // Note: The process ID within a PID namespace. This is not necessarily unique + // across all processes on the host but it is unique within the process + // namespace that the process exists within. + ProcessVpidKey = attribute.Key("process.vpid") + + // ProcessWorkingDirectoryKey is the attribute Key conforming to the + // "process.working_directory" semantic conventions. It represents the working + // directory of the process. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/root" + ProcessWorkingDirectoryKey = attribute.Key("process.working_directory") +) + +// ProcessArgsCount returns an attribute KeyValue conforming to the +// "process.args_count" semantic conventions. It represents the length of the +// process.command_args array. +func ProcessArgsCount(val int) attribute.KeyValue { + return ProcessArgsCountKey.Int(val) +} + +// ProcessCommand returns an attribute KeyValue conforming to the +// "process.command" semantic conventions. It represents the command used to +// launch the process (i.e. the command name). On Linux based systems, can be set +// to the zeroth string in `proc/[pid]/cmdline`. On Windows, can be set to the +// first parameter extracted from `GetCommandLineW`. +func ProcessCommand(val string) attribute.KeyValue { + return ProcessCommandKey.String(val) +} + +// ProcessCommandArgs returns an attribute KeyValue conforming to the +// "process.command_args" semantic conventions. It represents the all the command +// arguments (including the command/executable itself) as received by the +// process. On Linux-based systems (and some other Unixoid systems supporting +// procfs), can be set according to the list of null-delimited strings extracted +// from `proc/[pid]/cmdline`. For libc-based executables, this would be the full +// argv vector passed to `main`. SHOULD NOT be collected by default unless there +// is sanitization that excludes sensitive data. +func ProcessCommandArgs(val ...string) attribute.KeyValue { + return ProcessCommandArgsKey.StringSlice(val) +} + +// ProcessCommandLine returns an attribute KeyValue conforming to the +// "process.command_line" semantic conventions. It represents the full command +// used to launch the process as a single string representing the full command. +// On Windows, can be set to the result of `GetCommandLineW`. Do not set this if +// you have to assemble it just for monitoring; use `process.command_args` +// instead. SHOULD NOT be collected by default unless there is sanitization that +// excludes sensitive data. +func ProcessCommandLine(val string) attribute.KeyValue { + return ProcessCommandLineKey.String(val) +} + +// ProcessCreationTime returns an attribute KeyValue conforming to the +// "process.creation.time" semantic conventions. It represents the date and time +// the process was created, in ISO 8601 format. +func ProcessCreationTime(val string) attribute.KeyValue { + return ProcessCreationTimeKey.String(val) +} + +// ProcessExecutableBuildIDGNU returns an attribute KeyValue conforming to the +// "process.executable.build_id.gnu" semantic conventions. It represents the GNU +// build ID as found in the `.note.gnu.build-id` ELF section (hex string). +func ProcessExecutableBuildIDGNU(val string) attribute.KeyValue { + return ProcessExecutableBuildIDGNUKey.String(val) +} + +// ProcessExecutableBuildIDGo returns an attribute KeyValue conforming to the +// "process.executable.build_id.go" semantic conventions. It represents the Go +// build ID as retrieved by `go tool buildid `. +func ProcessExecutableBuildIDGo(val string) attribute.KeyValue { + return ProcessExecutableBuildIDGoKey.String(val) +} + +// ProcessExecutableBuildIDHtlhash returns an attribute KeyValue conforming to +// the "process.executable.build_id.htlhash" semantic conventions. It represents +// the profiling specific build ID for executables. See the OTel specification +// for Profiles for more information. +func ProcessExecutableBuildIDHtlhash(val string) attribute.KeyValue { + return ProcessExecutableBuildIDHtlhashKey.String(val) +} + +// ProcessExecutableName returns an attribute KeyValue conforming to the +// "process.executable.name" semantic conventions. It represents the name of the +// process executable. On Linux based systems, this SHOULD be set to the base +// name of the target of `/proc/[pid]/exe`. On Windows, this SHOULD be set to the +// base name of `GetProcessImageFileNameW`. +func ProcessExecutableName(val string) attribute.KeyValue { + return ProcessExecutableNameKey.String(val) +} + +// ProcessExecutablePath returns an attribute KeyValue conforming to the +// "process.executable.path" semantic conventions. It represents the full path to +// the process executable. On Linux based systems, can be set to the target of +// `proc/[pid]/exe`. On Windows, can be set to the result of +// `GetProcessImageFileNameW`. +func ProcessExecutablePath(val string) attribute.KeyValue { + return ProcessExecutablePathKey.String(val) +} + +// ProcessExitCode returns an attribute KeyValue conforming to the +// "process.exit.code" semantic conventions. It represents the exit code of the +// process. +func ProcessExitCode(val int) attribute.KeyValue { + return ProcessExitCodeKey.Int(val) +} + +// ProcessExitTime returns an attribute KeyValue conforming to the +// "process.exit.time" semantic conventions. It represents the date and time the +// process exited, in ISO 8601 format. +func ProcessExitTime(val string) attribute.KeyValue { + return ProcessExitTimeKey.String(val) +} + +// ProcessGroupLeaderPID returns an attribute KeyValue conforming to the +// "process.group_leader.pid" semantic conventions. It represents the PID of the +// process's group leader. This is also the process group ID (PGID) of the +// process. +func ProcessGroupLeaderPID(val int) attribute.KeyValue { + return ProcessGroupLeaderPIDKey.Int(val) +} + +// ProcessInteractive returns an attribute KeyValue conforming to the +// "process.interactive" semantic conventions. It represents the whether the +// process is connected to an interactive shell. +func ProcessInteractive(val bool) attribute.KeyValue { + return ProcessInteractiveKey.Bool(val) +} + +// ProcessLinuxCgroup returns an attribute KeyValue conforming to the +// "process.linux.cgroup" semantic conventions. It represents the control group +// associated with the process. +func ProcessLinuxCgroup(val string) attribute.KeyValue { + return ProcessLinuxCgroupKey.String(val) +} + +// ProcessOwner returns an attribute KeyValue conforming to the "process.owner" +// semantic conventions. It represents the username of the user that owns the +// process. +func ProcessOwner(val string) attribute.KeyValue { + return ProcessOwnerKey.String(val) +} + +// ProcessParentPID returns an attribute KeyValue conforming to the +// "process.parent_pid" semantic conventions. It represents the parent Process +// identifier (PPID). +func ProcessParentPID(val int) attribute.KeyValue { + return ProcessParentPIDKey.Int(val) +} + +// ProcessPID returns an attribute KeyValue conforming to the "process.pid" +// semantic conventions. It represents the process identifier (PID). +func ProcessPID(val int) attribute.KeyValue { + return ProcessPIDKey.Int(val) +} + +// ProcessRealUserID returns an attribute KeyValue conforming to the +// "process.real_user.id" semantic conventions. It represents the real user ID +// (RUID) of the process. +func ProcessRealUserID(val int) attribute.KeyValue { + return ProcessRealUserIDKey.Int(val) +} + +// ProcessRealUserName returns an attribute KeyValue conforming to the +// "process.real_user.name" semantic conventions. It represents the username of +// the real user of the process. +func ProcessRealUserName(val string) attribute.KeyValue { + return ProcessRealUserNameKey.String(val) +} + +// ProcessRuntimeDescription returns an attribute KeyValue conforming to the +// "process.runtime.description" semantic conventions. It represents an +// additional description about the runtime of the process, for example a +// specific vendor customization of the runtime environment. +func ProcessRuntimeDescription(val string) attribute.KeyValue { + return ProcessRuntimeDescriptionKey.String(val) +} + +// ProcessRuntimeName returns an attribute KeyValue conforming to the +// "process.runtime.name" semantic conventions. It represents the name of the +// runtime of this process. +func ProcessRuntimeName(val string) attribute.KeyValue { + return ProcessRuntimeNameKey.String(val) +} + +// ProcessRuntimeVersion returns an attribute KeyValue conforming to the +// "process.runtime.version" semantic conventions. It represents the version of +// the runtime of this process, as returned by the runtime without modification. +func ProcessRuntimeVersion(val string) attribute.KeyValue { + return ProcessRuntimeVersionKey.String(val) +} + +// ProcessSavedUserID returns an attribute KeyValue conforming to the +// "process.saved_user.id" semantic conventions. It represents the saved user ID +// (SUID) of the process. +func ProcessSavedUserID(val int) attribute.KeyValue { + return ProcessSavedUserIDKey.Int(val) +} + +// ProcessSavedUserName returns an attribute KeyValue conforming to the +// "process.saved_user.name" semantic conventions. It represents the username of +// the saved user. +func ProcessSavedUserName(val string) attribute.KeyValue { + return ProcessSavedUserNameKey.String(val) +} + +// ProcessSessionLeaderPID returns an attribute KeyValue conforming to the +// "process.session_leader.pid" semantic conventions. It represents the PID of +// the process's session leader. This is also the session ID (SID) of the +// process. +func ProcessSessionLeaderPID(val int) attribute.KeyValue { + return ProcessSessionLeaderPIDKey.Int(val) +} + +// ProcessTitle returns an attribute KeyValue conforming to the "process.title" +// semantic conventions. It represents the process title (proctitle). +func ProcessTitle(val string) attribute.KeyValue { + return ProcessTitleKey.String(val) +} + +// ProcessUserID returns an attribute KeyValue conforming to the +// "process.user.id" semantic conventions. It represents the effective user ID +// (EUID) of the process. +func ProcessUserID(val int) attribute.KeyValue { + return ProcessUserIDKey.Int(val) +} + +// ProcessUserName returns an attribute KeyValue conforming to the +// "process.user.name" semantic conventions. It represents the username of the +// effective user of the process. +func ProcessUserName(val string) attribute.KeyValue { + return ProcessUserNameKey.String(val) +} + +// ProcessVpid returns an attribute KeyValue conforming to the "process.vpid" +// semantic conventions. It represents the virtual process identifier. +func ProcessVpid(val int) attribute.KeyValue { + return ProcessVpidKey.Int(val) +} + +// ProcessWorkingDirectory returns an attribute KeyValue conforming to the +// "process.working_directory" semantic conventions. It represents the working +// directory of the process. +func ProcessWorkingDirectory(val string) attribute.KeyValue { + return ProcessWorkingDirectoryKey.String(val) +} + +// Enum values for process.context_switch_type +var ( + // voluntary + // Stability: development + ProcessContextSwitchTypeVoluntary = ProcessContextSwitchTypeKey.String("voluntary") + // involuntary + // Stability: development + ProcessContextSwitchTypeInvoluntary = ProcessContextSwitchTypeKey.String("involuntary") +) + +// Enum values for process.paging.fault_type +var ( + // major + // Stability: development + ProcessPagingFaultTypeMajor = ProcessPagingFaultTypeKey.String("major") + // minor + // Stability: development + ProcessPagingFaultTypeMinor = ProcessPagingFaultTypeKey.String("minor") +) + +// Namespace: profile +const ( + // ProfileFrameTypeKey is the attribute Key conforming to the + // "profile.frame.type" semantic conventions. It represents the describes the + // interpreter or compiler of a single frame. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "cpython" + ProfileFrameTypeKey = attribute.Key("profile.frame.type") +) + +// Enum values for profile.frame.type +var ( + // [.NET] + // + // Stability: development + // + // [.NET]: https://wikipedia.org/wiki/.NET + ProfileFrameTypeDotnet = ProfileFrameTypeKey.String("dotnet") + // [JVM] + // + // Stability: development + // + // [JVM]: https://wikipedia.org/wiki/Java_virtual_machine + ProfileFrameTypeJVM = ProfileFrameTypeKey.String("jvm") + // [Kernel] + // + // Stability: development + // + // [Kernel]: https://wikipedia.org/wiki/Kernel_(operating_system) + ProfileFrameTypeKernel = ProfileFrameTypeKey.String("kernel") + // Can be one of but not limited to [C], [C++], [Go] or [Rust]. If possible, a + // more precise value MUST be used. + // + // Stability: development + // + // [C]: https://wikipedia.org/wiki/C_(programming_language) + // [C++]: https://wikipedia.org/wiki/C%2B%2B + // [Go]: https://wikipedia.org/wiki/Go_(programming_language) + // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) + ProfileFrameTypeNative = ProfileFrameTypeKey.String("native") + // [Perl] + // + // Stability: development + // + // [Perl]: https://wikipedia.org/wiki/Perl + ProfileFrameTypePerl = ProfileFrameTypeKey.String("perl") + // [PHP] + // + // Stability: development + // + // [PHP]: https://wikipedia.org/wiki/PHP + ProfileFrameTypePHP = ProfileFrameTypeKey.String("php") + // [Python] + // + // Stability: development + // + // [Python]: https://wikipedia.org/wiki/Python_(programming_language) + ProfileFrameTypeCpython = ProfileFrameTypeKey.String("cpython") + // [Ruby] + // + // Stability: development + // + // [Ruby]: https://wikipedia.org/wiki/Ruby_(programming_language) + ProfileFrameTypeRuby = ProfileFrameTypeKey.String("ruby") + // [V8JS] + // + // Stability: development + // + // [V8JS]: https://wikipedia.org/wiki/V8_(JavaScript_engine) + ProfileFrameTypeV8JS = ProfileFrameTypeKey.String("v8js") + // [Erlang] + // + // Stability: development + // + // [Erlang]: https://en.wikipedia.org/wiki/BEAM_(Erlang_virtual_machine) + ProfileFrameTypeBeam = ProfileFrameTypeKey.String("beam") + // [Go], + // + // Stability: development + // + // [Go]: https://wikipedia.org/wiki/Go_(programming_language) + ProfileFrameTypeGo = ProfileFrameTypeKey.String("go") + // [Rust] + // + // Stability: development + // + // [Rust]: https://wikipedia.org/wiki/Rust_(programming_language) + ProfileFrameTypeRust = ProfileFrameTypeKey.String("rust") +) + +// Namespace: rpc +const ( + // RPCConnectRPCErrorCodeKey is the attribute Key conforming to the + // "rpc.connect_rpc.error_code" semantic conventions. It represents the + // [error codes] of the Connect request. Error codes are always string values. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [error codes]: https://connectrpc.com//docs/protocol/#error-codes + RPCConnectRPCErrorCodeKey = attribute.Key("rpc.connect_rpc.error_code") + + // RPCGRPCStatusCodeKey is the attribute Key conforming to the + // "rpc.grpc.status_code" semantic conventions. It represents the + // [numeric status code] of the gRPC request. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [numeric status code]: https://github.com/grpc/grpc/blob/v1.33.2/doc/statuscodes.md + RPCGRPCStatusCodeKey = attribute.Key("rpc.grpc.status_code") + + // RPCJSONRPCErrorCodeKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_code" semantic conventions. It represents the `error.code` + // property of response if it is an error response. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: -32700, 100 + RPCJSONRPCErrorCodeKey = attribute.Key("rpc.jsonrpc.error_code") + + // RPCJSONRPCErrorMessageKey is the attribute Key conforming to the + // "rpc.jsonrpc.error_message" semantic conventions. It represents the + // `error.message` property of response if it is an error response. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Parse error", "User already exists" + RPCJSONRPCErrorMessageKey = attribute.Key("rpc.jsonrpc.error_message") + + // RPCJSONRPCRequestIDKey is the attribute Key conforming to the + // "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` + // property of request or response. Since protocol allows id to be int, string, + // `null` or missing (for notifications), value is expected to be cast to string + // for simplicity. Use empty string in case of `null` value. Omit entirely if + // this is a notification. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "10", "request-7", "" + RPCJSONRPCRequestIDKey = attribute.Key("rpc.jsonrpc.request_id") + + // RPCJSONRPCVersionKey is the attribute Key conforming to the + // "rpc.jsonrpc.version" semantic conventions. It represents the protocol + // version as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 + // doesn't specify this, the value can be omitted. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2.0", "1.0" + RPCJSONRPCVersionKey = attribute.Key("rpc.jsonrpc.version") + + // RPCMessageCompressedSizeKey is the attribute Key conforming to the + // "rpc.message.compressed_size" semantic conventions. It represents the + // compressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + RPCMessageCompressedSizeKey = attribute.Key("rpc.message.compressed_size") + + // RPCMessageIDKey is the attribute Key conforming to the "rpc.message.id" + // semantic conventions. It MUST be calculated as two different counters + // starting from `1` one for sent messages and one for received message.. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This way we guarantee that the values will be consistent between + // different implementations. + RPCMessageIDKey = attribute.Key("rpc.message.id") + + // RPCMessageTypeKey is the attribute Key conforming to the "rpc.message.type" + // semantic conventions. It represents the whether this is a received or sent + // message. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + RPCMessageTypeKey = attribute.Key("rpc.message.type") + + // RPCMessageUncompressedSizeKey is the attribute Key conforming to the + // "rpc.message.uncompressed_size" semantic conventions. It represents the + // uncompressed size of the message in bytes. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + RPCMessageUncompressedSizeKey = attribute.Key("rpc.message.uncompressed_size") + + // RPCMethodKey is the attribute Key conforming to the "rpc.method" semantic + // conventions. It represents the name of the (logical) method being called, + // must be equal to the $method part in the span name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: exampleMethod + // Note: This is the logical name of the method from the RPC interface + // perspective, which can be different from the name of any implementing + // method/function. The `code.function.name` attribute may be used to store the + // latter (e.g., method actually executing the call on the server side, RPC + // client stub method on the client side). + RPCMethodKey = attribute.Key("rpc.method") + + // RPCServiceKey is the attribute Key conforming to the "rpc.service" semantic + // conventions. It represents the full (logical) name of the service being + // called, including its package name, if applicable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: myservice.EchoService + // Note: This is the logical name of the service from the RPC interface + // perspective, which can be different from the name of any implementing class. + // The `code.namespace` attribute may be used to store the latter (despite the + // attribute name, it may include a class name; e.g., class with method actually + // executing the call on the server side, RPC client stub class on the client + // side). + RPCServiceKey = attribute.Key("rpc.service") + + // RPCSystemKey is the attribute Key conforming to the "rpc.system" semantic + // conventions. It represents a string identifying the remoting system. See + // below for a list of well-known identifiers. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + RPCSystemKey = attribute.Key("rpc.system") +) + +// RPCJSONRPCErrorCode returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_code" semantic conventions. It represents the `error.code` +// property of response if it is an error response. +func RPCJSONRPCErrorCode(val int) attribute.KeyValue { + return RPCJSONRPCErrorCodeKey.Int(val) +} + +// RPCJSONRPCErrorMessage returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.error_message" semantic conventions. It represents the +// `error.message` property of response if it is an error response. +func RPCJSONRPCErrorMessage(val string) attribute.KeyValue { + return RPCJSONRPCErrorMessageKey.String(val) +} + +// RPCJSONRPCRequestID returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.request_id" semantic conventions. It represents the `id` property +// of request or response. Since protocol allows id to be int, string, `null` or +// missing (for notifications), value is expected to be cast to string for +// simplicity. Use empty string in case of `null` value. Omit entirely if this is +// a notification. +func RPCJSONRPCRequestID(val string) attribute.KeyValue { + return RPCJSONRPCRequestIDKey.String(val) +} + +// RPCJSONRPCVersion returns an attribute KeyValue conforming to the +// "rpc.jsonrpc.version" semantic conventions. It represents the protocol version +// as in `jsonrpc` property of request/response. Since JSON-RPC 1.0 doesn't +// specify this, the value can be omitted. +func RPCJSONRPCVersion(val string) attribute.KeyValue { + return RPCJSONRPCVersionKey.String(val) +} + +// RPCMessageCompressedSize returns an attribute KeyValue conforming to the +// "rpc.message.compressed_size" semantic conventions. It represents the +// compressed size of the message in bytes. +func RPCMessageCompressedSize(val int) attribute.KeyValue { + return RPCMessageCompressedSizeKey.Int(val) +} + +// RPCMessageID returns an attribute KeyValue conforming to the "rpc.message.id" +// semantic conventions. It MUST be calculated as two different counters starting +// from `1` one for sent messages and one for received message.. +func RPCMessageID(val int) attribute.KeyValue { + return RPCMessageIDKey.Int(val) +} + +// RPCMessageUncompressedSize returns an attribute KeyValue conforming to the +// "rpc.message.uncompressed_size" semantic conventions. It represents the +// uncompressed size of the message in bytes. +func RPCMessageUncompressedSize(val int) attribute.KeyValue { + return RPCMessageUncompressedSizeKey.Int(val) +} + +// RPCMethod returns an attribute KeyValue conforming to the "rpc.method" +// semantic conventions. It represents the name of the (logical) method being +// called, must be equal to the $method part in the span name. +func RPCMethod(val string) attribute.KeyValue { + return RPCMethodKey.String(val) +} + +// RPCService returns an attribute KeyValue conforming to the "rpc.service" +// semantic conventions. It represents the full (logical) name of the service +// being called, including its package name, if applicable. +func RPCService(val string) attribute.KeyValue { + return RPCServiceKey.String(val) +} + +// Enum values for rpc.connect_rpc.error_code +var ( + // cancelled + // Stability: development + RPCConnectRPCErrorCodeCancelled = RPCConnectRPCErrorCodeKey.String("cancelled") + // unknown + // Stability: development + RPCConnectRPCErrorCodeUnknown = RPCConnectRPCErrorCodeKey.String("unknown") + // invalid_argument + // Stability: development + RPCConnectRPCErrorCodeInvalidArgument = RPCConnectRPCErrorCodeKey.String("invalid_argument") + // deadline_exceeded + // Stability: development + RPCConnectRPCErrorCodeDeadlineExceeded = RPCConnectRPCErrorCodeKey.String("deadline_exceeded") + // not_found + // Stability: development + RPCConnectRPCErrorCodeNotFound = RPCConnectRPCErrorCodeKey.String("not_found") + // already_exists + // Stability: development + RPCConnectRPCErrorCodeAlreadyExists = RPCConnectRPCErrorCodeKey.String("already_exists") + // permission_denied + // Stability: development + RPCConnectRPCErrorCodePermissionDenied = RPCConnectRPCErrorCodeKey.String("permission_denied") + // resource_exhausted + // Stability: development + RPCConnectRPCErrorCodeResourceExhausted = RPCConnectRPCErrorCodeKey.String("resource_exhausted") + // failed_precondition + // Stability: development + RPCConnectRPCErrorCodeFailedPrecondition = RPCConnectRPCErrorCodeKey.String("failed_precondition") + // aborted + // Stability: development + RPCConnectRPCErrorCodeAborted = RPCConnectRPCErrorCodeKey.String("aborted") + // out_of_range + // Stability: development + RPCConnectRPCErrorCodeOutOfRange = RPCConnectRPCErrorCodeKey.String("out_of_range") + // unimplemented + // Stability: development + RPCConnectRPCErrorCodeUnimplemented = RPCConnectRPCErrorCodeKey.String("unimplemented") + // internal + // Stability: development + RPCConnectRPCErrorCodeInternal = RPCConnectRPCErrorCodeKey.String("internal") + // unavailable + // Stability: development + RPCConnectRPCErrorCodeUnavailable = RPCConnectRPCErrorCodeKey.String("unavailable") + // data_loss + // Stability: development + RPCConnectRPCErrorCodeDataLoss = RPCConnectRPCErrorCodeKey.String("data_loss") + // unauthenticated + // Stability: development + RPCConnectRPCErrorCodeUnauthenticated = RPCConnectRPCErrorCodeKey.String("unauthenticated") +) + +// Enum values for rpc.grpc.status_code +var ( + // OK + // Stability: development + RPCGRPCStatusCodeOk = RPCGRPCStatusCodeKey.Int(0) + // CANCELLED + // Stability: development + RPCGRPCStatusCodeCancelled = RPCGRPCStatusCodeKey.Int(1) + // UNKNOWN + // Stability: development + RPCGRPCStatusCodeUnknown = RPCGRPCStatusCodeKey.Int(2) + // INVALID_ARGUMENT + // Stability: development + RPCGRPCStatusCodeInvalidArgument = RPCGRPCStatusCodeKey.Int(3) + // DEADLINE_EXCEEDED + // Stability: development + RPCGRPCStatusCodeDeadlineExceeded = RPCGRPCStatusCodeKey.Int(4) + // NOT_FOUND + // Stability: development + RPCGRPCStatusCodeNotFound = RPCGRPCStatusCodeKey.Int(5) + // ALREADY_EXISTS + // Stability: development + RPCGRPCStatusCodeAlreadyExists = RPCGRPCStatusCodeKey.Int(6) + // PERMISSION_DENIED + // Stability: development + RPCGRPCStatusCodePermissionDenied = RPCGRPCStatusCodeKey.Int(7) + // RESOURCE_EXHAUSTED + // Stability: development + RPCGRPCStatusCodeResourceExhausted = RPCGRPCStatusCodeKey.Int(8) + // FAILED_PRECONDITION + // Stability: development + RPCGRPCStatusCodeFailedPrecondition = RPCGRPCStatusCodeKey.Int(9) + // ABORTED + // Stability: development + RPCGRPCStatusCodeAborted = RPCGRPCStatusCodeKey.Int(10) + // OUT_OF_RANGE + // Stability: development + RPCGRPCStatusCodeOutOfRange = RPCGRPCStatusCodeKey.Int(11) + // UNIMPLEMENTED + // Stability: development + RPCGRPCStatusCodeUnimplemented = RPCGRPCStatusCodeKey.Int(12) + // INTERNAL + // Stability: development + RPCGRPCStatusCodeInternal = RPCGRPCStatusCodeKey.Int(13) + // UNAVAILABLE + // Stability: development + RPCGRPCStatusCodeUnavailable = RPCGRPCStatusCodeKey.Int(14) + // DATA_LOSS + // Stability: development + RPCGRPCStatusCodeDataLoss = RPCGRPCStatusCodeKey.Int(15) + // UNAUTHENTICATED + // Stability: development + RPCGRPCStatusCodeUnauthenticated = RPCGRPCStatusCodeKey.Int(16) +) + +// Enum values for rpc.message.type +var ( + // sent + // Stability: development + RPCMessageTypeSent = RPCMessageTypeKey.String("SENT") + // received + // Stability: development + RPCMessageTypeReceived = RPCMessageTypeKey.String("RECEIVED") +) + +// Enum values for rpc.system +var ( + // gRPC + // Stability: development + RPCSystemGRPC = RPCSystemKey.String("grpc") + // Java RMI + // Stability: development + RPCSystemJavaRmi = RPCSystemKey.String("java_rmi") + // .NET WCF + // Stability: development + RPCSystemDotnetWcf = RPCSystemKey.String("dotnet_wcf") + // Apache Dubbo + // Stability: development + RPCSystemApacheDubbo = RPCSystemKey.String("apache_dubbo") + // Connect RPC + // Stability: development + RPCSystemConnectRPC = RPCSystemKey.String("connect_rpc") +) + +// Namespace: security_rule +const ( + // SecurityRuleCategoryKey is the attribute Key conforming to the + // "security_rule.category" semantic conventions. It represents a categorization + // value keyword used by the entity using the rule for detection of this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Attempted Information Leak" + SecurityRuleCategoryKey = attribute.Key("security_rule.category") + + // SecurityRuleDescriptionKey is the attribute Key conforming to the + // "security_rule.description" semantic conventions. It represents the + // description of the rule generating the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Block requests to public DNS over HTTPS / TLS protocols" + SecurityRuleDescriptionKey = attribute.Key("security_rule.description") + + // SecurityRuleLicenseKey is the attribute Key conforming to the + // "security_rule.license" semantic conventions. It represents the name of the + // license under which the rule used to generate this event is made available. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Apache 2.0" + SecurityRuleLicenseKey = attribute.Key("security_rule.license") + + // SecurityRuleNameKey is the attribute Key conforming to the + // "security_rule.name" semantic conventions. It represents the name of the rule + // or signature generating the event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "BLOCK_DNS_over_TLS" + SecurityRuleNameKey = attribute.Key("security_rule.name") + + // SecurityRuleReferenceKey is the attribute Key conforming to the + // "security_rule.reference" semantic conventions. It represents the reference + // URL to additional information about the rule used to generate this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://en.wikipedia.org/wiki/DNS_over_TLS" + // Note: The URL can point to the vendor’s documentation about the rule. If + // that’s not available, it can also be a link to a more general page + // describing this type of alert. + SecurityRuleReferenceKey = attribute.Key("security_rule.reference") + + // SecurityRuleRulesetNameKey is the attribute Key conforming to the + // "security_rule.ruleset.name" semantic conventions. It represents the name of + // the ruleset, policy, group, or parent category in which the rule used to + // generate this event is a member. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Standard_Protocol_Filters" + SecurityRuleRulesetNameKey = attribute.Key("security_rule.ruleset.name") + + // SecurityRuleUUIDKey is the attribute Key conforming to the + // "security_rule.uuid" semantic conventions. It represents a rule ID that is + // unique within the scope of a set or group of agents, observers, or other + // entities using the rule for detection of this event. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "550e8400-e29b-41d4-a716-446655440000", "1100110011" + SecurityRuleUUIDKey = attribute.Key("security_rule.uuid") + + // SecurityRuleVersionKey is the attribute Key conforming to the + // "security_rule.version" semantic conventions. It represents the version / + // revision of the rule being used for analysis. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.0.0" + SecurityRuleVersionKey = attribute.Key("security_rule.version") +) + +// SecurityRuleCategory returns an attribute KeyValue conforming to the +// "security_rule.category" semantic conventions. It represents a categorization +// value keyword used by the entity using the rule for detection of this event. +func SecurityRuleCategory(val string) attribute.KeyValue { + return SecurityRuleCategoryKey.String(val) +} + +// SecurityRuleDescription returns an attribute KeyValue conforming to the +// "security_rule.description" semantic conventions. It represents the +// description of the rule generating the event. +func SecurityRuleDescription(val string) attribute.KeyValue { + return SecurityRuleDescriptionKey.String(val) +} + +// SecurityRuleLicense returns an attribute KeyValue conforming to the +// "security_rule.license" semantic conventions. It represents the name of the +// license under which the rule used to generate this event is made available. +func SecurityRuleLicense(val string) attribute.KeyValue { + return SecurityRuleLicenseKey.String(val) +} + +// SecurityRuleName returns an attribute KeyValue conforming to the +// "security_rule.name" semantic conventions. It represents the name of the rule +// or signature generating the event. +func SecurityRuleName(val string) attribute.KeyValue { + return SecurityRuleNameKey.String(val) +} + +// SecurityRuleReference returns an attribute KeyValue conforming to the +// "security_rule.reference" semantic conventions. It represents the reference +// URL to additional information about the rule used to generate this event. +func SecurityRuleReference(val string) attribute.KeyValue { + return SecurityRuleReferenceKey.String(val) +} + +// SecurityRuleRulesetName returns an attribute KeyValue conforming to the +// "security_rule.ruleset.name" semantic conventions. It represents the name of +// the ruleset, policy, group, or parent category in which the rule used to +// generate this event is a member. +func SecurityRuleRulesetName(val string) attribute.KeyValue { + return SecurityRuleRulesetNameKey.String(val) +} + +// SecurityRuleUUID returns an attribute KeyValue conforming to the +// "security_rule.uuid" semantic conventions. It represents a rule ID that is +// unique within the scope of a set or group of agents, observers, or other +// entities using the rule for detection of this event. +func SecurityRuleUUID(val string) attribute.KeyValue { + return SecurityRuleUUIDKey.String(val) +} + +// SecurityRuleVersion returns an attribute KeyValue conforming to the +// "security_rule.version" semantic conventions. It represents the version / +// revision of the rule being used for analysis. +func SecurityRuleVersion(val string) attribute.KeyValue { + return SecurityRuleVersionKey.String(val) +} + +// Namespace: server +const ( + // ServerAddressKey is the attribute Key conforming to the "server.address" + // semantic conventions. It represents the server domain name if available + // without reverse DNS lookup; otherwise, IP address or Unix domain socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the client side, and when communicating through an + // intermediary, `server.address` SHOULD represent the server address behind any + // intermediaries, for example proxies, if it's available. + ServerAddressKey = attribute.Key("server.address") + + // ServerPortKey is the attribute Key conforming to the "server.port" semantic + // conventions. It represents the server port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: 80, 8080, 443 + // Note: When observed from the client side, and when communicating through an + // intermediary, `server.port` SHOULD represent the server port behind any + // intermediaries, for example proxies, if it's available. + ServerPortKey = attribute.Key("server.port") +) + +// ServerAddress returns an attribute KeyValue conforming to the "server.address" +// semantic conventions. It represents the server domain name if available +// without reverse DNS lookup; otherwise, IP address or Unix domain socket name. +func ServerAddress(val string) attribute.KeyValue { + return ServerAddressKey.String(val) +} + +// ServerPort returns an attribute KeyValue conforming to the "server.port" +// semantic conventions. It represents the server port number. +func ServerPort(val int) attribute.KeyValue { + return ServerPortKey.Int(val) +} + +// Namespace: service +const ( + // ServiceInstanceIDKey is the attribute Key conforming to the + // "service.instance.id" semantic conventions. It represents the string ID of + // the service instance. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "627cc493-f310-47de-96bd-71410b7dec09" + // Note: MUST be unique for each instance of the same + // `service.namespace,service.name` pair (in other words + // `service.namespace,service.name,service.instance.id` triplet MUST be globally + // unique). The ID helps to + // distinguish instances of the same service that exist at the same time (e.g. + // instances of a horizontally scaled + // service). + // + // Implementations, such as SDKs, are recommended to generate a random Version 1 + // or Version 4 [RFC + // 4122] UUID, but are free to use an inherent unique ID as + // the source of + // this value if stability is desirable. In that case, the ID SHOULD be used as + // source of a UUID Version 5 and + // SHOULD use the following UUID as the namespace: + // `4d63009a-8d0f-11ee-aad7-4c796ed8e320`. + // + // UUIDs are typically recommended, as only an opaque value for the purposes of + // identifying a service instance is + // needed. Similar to what can be seen in the man page for the + // [`/etc/machine-id`] file, the underlying + // data, such as pod name and namespace should be treated as confidential, being + // the user's choice to expose it + // or not via another resource attribute. + // + // For applications running behind an application server (like unicorn), we do + // not recommend using one identifier + // for all processes participating in the application. Instead, it's recommended + // each division (e.g. a worker + // thread in unicorn) to have its own instance.id. + // + // It's not recommended for a Collector to set `service.instance.id` if it can't + // unambiguously determine the + // service instance that is generating that telemetry. For instance, creating an + // UUID based on `pod.name` will + // likely be wrong, as the Collector might not know from which container within + // that pod the telemetry originated. + // However, Collectors can set the `service.instance.id` if they can + // unambiguously determine the service instance + // for that telemetry. This is typically the case for scraping receivers, as + // they know the target address and + // port. + // + // [RFC + // 4122]: https://www.ietf.org/rfc/rfc4122.txt + // [`/etc/machine-id`]: https://www.freedesktop.org/software/systemd/man/latest/machine-id.html + ServiceInstanceIDKey = attribute.Key("service.instance.id") + + // ServiceNameKey is the attribute Key conforming to the "service.name" semantic + // conventions. It represents the logical name of the service. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "shoppingcart" + // Note: MUST be the same for all instances of horizontally scaled services. If + // the value was not specified, SDKs MUST fallback to `unknown_service:` + // concatenated with [`process.executable.name`], e.g. `unknown_service:bash`. + // If `process.executable.name` is not available, the value MUST be set to + // `unknown_service`. + // + // [`process.executable.name`]: process.md + ServiceNameKey = attribute.Key("service.name") + + // ServiceNamespaceKey is the attribute Key conforming to the + // "service.namespace" semantic conventions. It represents a namespace for + // `service.name`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Shop" + // Note: A string value having a meaning that helps to distinguish a group of + // services, for example the team name that owns a group of services. + // `service.name` is expected to be unique within the same namespace. If + // `service.namespace` is not specified in the Resource then `service.name` is + // expected to be unique for all services that have no explicit namespace + // defined (so the empty/unspecified namespace is simply one more valid + // namespace). Zero-length namespace string is assumed equal to unspecified + // namespace. + ServiceNamespaceKey = attribute.Key("service.namespace") + + // ServiceVersionKey is the attribute Key conforming to the "service.version" + // semantic conventions. It represents the version string of the service API or + // implementation. The format is not defined by these conventions. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "2.0.0", "a01dbef8a" + ServiceVersionKey = attribute.Key("service.version") +) + +// ServiceInstanceID returns an attribute KeyValue conforming to the +// "service.instance.id" semantic conventions. It represents the string ID of the +// service instance. +func ServiceInstanceID(val string) attribute.KeyValue { + return ServiceInstanceIDKey.String(val) +} + +// ServiceName returns an attribute KeyValue conforming to the "service.name" +// semantic conventions. It represents the logical name of the service. +func ServiceName(val string) attribute.KeyValue { + return ServiceNameKey.String(val) +} + +// ServiceNamespace returns an attribute KeyValue conforming to the +// "service.namespace" semantic conventions. It represents a namespace for +// `service.name`. +func ServiceNamespace(val string) attribute.KeyValue { + return ServiceNamespaceKey.String(val) +} + +// ServiceVersion returns an attribute KeyValue conforming to the +// "service.version" semantic conventions. It represents the version string of +// the service API or implementation. The format is not defined by these +// conventions. +func ServiceVersion(val string) attribute.KeyValue { + return ServiceVersionKey.String(val) +} + +// Namespace: session +const ( + // SessionIDKey is the attribute Key conforming to the "session.id" semantic + // conventions. It represents a unique id to identify a session. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 00112233-4455-6677-8899-aabbccddeeff + SessionIDKey = attribute.Key("session.id") + + // SessionPreviousIDKey is the attribute Key conforming to the + // "session.previous_id" semantic conventions. It represents the previous + // `session.id` for this user, when known. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 00112233-4455-6677-8899-aabbccddeeff + SessionPreviousIDKey = attribute.Key("session.previous_id") +) + +// SessionID returns an attribute KeyValue conforming to the "session.id" +// semantic conventions. It represents a unique id to identify a session. +func SessionID(val string) attribute.KeyValue { + return SessionIDKey.String(val) +} + +// SessionPreviousID returns an attribute KeyValue conforming to the +// "session.previous_id" semantic conventions. It represents the previous +// `session.id` for this user, when known. +func SessionPreviousID(val string) attribute.KeyValue { + return SessionPreviousIDKey.String(val) +} + +// Namespace: signalr +const ( + // SignalRConnectionStatusKey is the attribute Key conforming to the + // "signalr.connection.status" semantic conventions. It represents the signalR + // HTTP connection closure status. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "app_shutdown", "timeout" + SignalRConnectionStatusKey = attribute.Key("signalr.connection.status") + + // SignalRTransportKey is the attribute Key conforming to the + // "signalr.transport" semantic conventions. It represents the + // [SignalR transport type]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "web_sockets", "long_polling" + // + // [SignalR transport type]: https://github.com/dotnet/aspnetcore/blob/main/src/SignalR/docs/specs/TransportProtocols.md + SignalRTransportKey = attribute.Key("signalr.transport") +) + +// Enum values for signalr.connection.status +var ( + // The connection was closed normally. + // Stability: stable + SignalRConnectionStatusNormalClosure = SignalRConnectionStatusKey.String("normal_closure") + // The connection was closed due to a timeout. + // Stability: stable + SignalRConnectionStatusTimeout = SignalRConnectionStatusKey.String("timeout") + // The connection was closed because the app is shutting down. + // Stability: stable + SignalRConnectionStatusAppShutdown = SignalRConnectionStatusKey.String("app_shutdown") +) + +// Enum values for signalr.transport +var ( + // ServerSentEvents protocol + // Stability: stable + SignalRTransportServerSentEvents = SignalRTransportKey.String("server_sent_events") + // LongPolling protocol + // Stability: stable + SignalRTransportLongPolling = SignalRTransportKey.String("long_polling") + // WebSockets protocol + // Stability: stable + SignalRTransportWebSockets = SignalRTransportKey.String("web_sockets") +) + +// Namespace: source +const ( + // SourceAddressKey is the attribute Key conforming to the "source.address" + // semantic conventions. It represents the source address - domain name if + // available without reverse DNS lookup; otherwise, IP address or Unix domain + // socket name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "source.example.com", "10.1.2.80", "/tmp/my.sock" + // Note: When observed from the destination side, and when communicating through + // an intermediary, `source.address` SHOULD represent the source address behind + // any intermediaries, for example proxies, if it's available. + SourceAddressKey = attribute.Key("source.address") + + // SourcePortKey is the attribute Key conforming to the "source.port" semantic + // conventions. It represents the source port number. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 3389, 2888 + SourcePortKey = attribute.Key("source.port") +) + +// SourceAddress returns an attribute KeyValue conforming to the "source.address" +// semantic conventions. It represents the source address - domain name if +// available without reverse DNS lookup; otherwise, IP address or Unix domain +// socket name. +func SourceAddress(val string) attribute.KeyValue { + return SourceAddressKey.String(val) +} + +// SourcePort returns an attribute KeyValue conforming to the "source.port" +// semantic conventions. It represents the source port number. +func SourcePort(val int) attribute.KeyValue { + return SourcePortKey.Int(val) +} + +// Namespace: system +const ( + // SystemCPULogicalNumberKey is the attribute Key conforming to the + // "system.cpu.logical_number" semantic conventions. It represents the + // deprecated, use `cpu.logical_number` instead. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 1 + SystemCPULogicalNumberKey = attribute.Key("system.cpu.logical_number") + + // SystemDeviceKey is the attribute Key conforming to the "system.device" + // semantic conventions. It represents the device identifier. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "(identifier)" + SystemDeviceKey = attribute.Key("system.device") + + // SystemFilesystemModeKey is the attribute Key conforming to the + // "system.filesystem.mode" semantic conventions. It represents the filesystem + // mode. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "rw, ro" + SystemFilesystemModeKey = attribute.Key("system.filesystem.mode") + + // SystemFilesystemMountpointKey is the attribute Key conforming to the + // "system.filesystem.mountpoint" semantic conventions. It represents the + // filesystem mount path. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/mnt/data" + SystemFilesystemMountpointKey = attribute.Key("system.filesystem.mountpoint") + + // SystemFilesystemStateKey is the attribute Key conforming to the + // "system.filesystem.state" semantic conventions. It represents the filesystem + // state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "used" + SystemFilesystemStateKey = attribute.Key("system.filesystem.state") + + // SystemFilesystemTypeKey is the attribute Key conforming to the + // "system.filesystem.type" semantic conventions. It represents the filesystem + // type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ext4" + SystemFilesystemTypeKey = attribute.Key("system.filesystem.type") + + // SystemMemoryStateKey is the attribute Key conforming to the + // "system.memory.state" semantic conventions. It represents the memory state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "free", "cached" + SystemMemoryStateKey = attribute.Key("system.memory.state") + + // SystemPagingDirectionKey is the attribute Key conforming to the + // "system.paging.direction" semantic conventions. It represents the paging + // access direction. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "in" + SystemPagingDirectionKey = attribute.Key("system.paging.direction") + + // SystemPagingStateKey is the attribute Key conforming to the + // "system.paging.state" semantic conventions. It represents the memory paging + // state. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "free" + SystemPagingStateKey = attribute.Key("system.paging.state") + + // SystemPagingTypeKey is the attribute Key conforming to the + // "system.paging.type" semantic conventions. It represents the memory paging + // type. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "minor" + SystemPagingTypeKey = attribute.Key("system.paging.type") + + // SystemProcessStatusKey is the attribute Key conforming to the + // "system.process.status" semantic conventions. It represents the process + // state, e.g., [Linux Process State Codes]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "running" + // + // [Linux Process State Codes]: https://man7.org/linux/man-pages/man1/ps.1.html#PROCESS_STATE_CODES + SystemProcessStatusKey = attribute.Key("system.process.status") +) + +// SystemCPULogicalNumber returns an attribute KeyValue conforming to the +// "system.cpu.logical_number" semantic conventions. It represents the +// deprecated, use `cpu.logical_number` instead. +func SystemCPULogicalNumber(val int) attribute.KeyValue { + return SystemCPULogicalNumberKey.Int(val) +} + +// SystemDevice returns an attribute KeyValue conforming to the "system.device" +// semantic conventions. It represents the device identifier. +func SystemDevice(val string) attribute.KeyValue { + return SystemDeviceKey.String(val) +} + +// SystemFilesystemMode returns an attribute KeyValue conforming to the +// "system.filesystem.mode" semantic conventions. It represents the filesystem +// mode. +func SystemFilesystemMode(val string) attribute.KeyValue { + return SystemFilesystemModeKey.String(val) +} + +// SystemFilesystemMountpoint returns an attribute KeyValue conforming to the +// "system.filesystem.mountpoint" semantic conventions. It represents the +// filesystem mount path. +func SystemFilesystemMountpoint(val string) attribute.KeyValue { + return SystemFilesystemMountpointKey.String(val) +} + +// Enum values for system.filesystem.state +var ( + // used + // Stability: development + SystemFilesystemStateUsed = SystemFilesystemStateKey.String("used") + // free + // Stability: development + SystemFilesystemStateFree = SystemFilesystemStateKey.String("free") + // reserved + // Stability: development + SystemFilesystemStateReserved = SystemFilesystemStateKey.String("reserved") +) + +// Enum values for system.filesystem.type +var ( + // fat32 + // Stability: development + SystemFilesystemTypeFat32 = SystemFilesystemTypeKey.String("fat32") + // exfat + // Stability: development + SystemFilesystemTypeExfat = SystemFilesystemTypeKey.String("exfat") + // ntfs + // Stability: development + SystemFilesystemTypeNtfs = SystemFilesystemTypeKey.String("ntfs") + // refs + // Stability: development + SystemFilesystemTypeRefs = SystemFilesystemTypeKey.String("refs") + // hfsplus + // Stability: development + SystemFilesystemTypeHfsplus = SystemFilesystemTypeKey.String("hfsplus") + // ext4 + // Stability: development + SystemFilesystemTypeExt4 = SystemFilesystemTypeKey.String("ext4") +) + +// Enum values for system.memory.state +var ( + // used + // Stability: development + SystemMemoryStateUsed = SystemMemoryStateKey.String("used") + // free + // Stability: development + SystemMemoryStateFree = SystemMemoryStateKey.String("free") + // Deprecated: Removed, report shared memory usage with + // `metric.system.memory.shared` metric. + SystemMemoryStateShared = SystemMemoryStateKey.String("shared") + // buffers + // Stability: development + SystemMemoryStateBuffers = SystemMemoryStateKey.String("buffers") + // cached + // Stability: development + SystemMemoryStateCached = SystemMemoryStateKey.String("cached") +) + +// Enum values for system.paging.direction +var ( + // in + // Stability: development + SystemPagingDirectionIn = SystemPagingDirectionKey.String("in") + // out + // Stability: development + SystemPagingDirectionOut = SystemPagingDirectionKey.String("out") +) + +// Enum values for system.paging.state +var ( + // used + // Stability: development + SystemPagingStateUsed = SystemPagingStateKey.String("used") + // free + // Stability: development + SystemPagingStateFree = SystemPagingStateKey.String("free") +) + +// Enum values for system.paging.type +var ( + // major + // Stability: development + SystemPagingTypeMajor = SystemPagingTypeKey.String("major") + // minor + // Stability: development + SystemPagingTypeMinor = SystemPagingTypeKey.String("minor") +) + +// Enum values for system.process.status +var ( + // running + // Stability: development + SystemProcessStatusRunning = SystemProcessStatusKey.String("running") + // sleeping + // Stability: development + SystemProcessStatusSleeping = SystemProcessStatusKey.String("sleeping") + // stopped + // Stability: development + SystemProcessStatusStopped = SystemProcessStatusKey.String("stopped") + // defunct + // Stability: development + SystemProcessStatusDefunct = SystemProcessStatusKey.String("defunct") +) + +// Namespace: telemetry +const ( + // TelemetryDistroNameKey is the attribute Key conforming to the + // "telemetry.distro.name" semantic conventions. It represents the name of the + // auto instrumentation agent or distribution, if used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "parts-unlimited-java" + // Note: Official auto instrumentation agents and distributions SHOULD set the + // `telemetry.distro.name` attribute to + // a string starting with `opentelemetry-`, e.g. + // `opentelemetry-java-instrumentation`. + TelemetryDistroNameKey = attribute.Key("telemetry.distro.name") + + // TelemetryDistroVersionKey is the attribute Key conforming to the + // "telemetry.distro.version" semantic conventions. It represents the version + // string of the auto instrumentation agent or distribution, if used. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.2.3" + TelemetryDistroVersionKey = attribute.Key("telemetry.distro.version") + + // TelemetrySDKLanguageKey is the attribute Key conforming to the + // "telemetry.sdk.language" semantic conventions. It represents the language of + // the telemetry SDK. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: + TelemetrySDKLanguageKey = attribute.Key("telemetry.sdk.language") + + // TelemetrySDKNameKey is the attribute Key conforming to the + // "telemetry.sdk.name" semantic conventions. It represents the name of the + // telemetry SDK as defined above. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "opentelemetry" + // Note: The OpenTelemetry SDK MUST set the `telemetry.sdk.name` attribute to + // `opentelemetry`. + // If another SDK, like a fork or a vendor-provided implementation, is used, + // this SDK MUST set the + // `telemetry.sdk.name` attribute to the fully-qualified class or module name of + // this SDK's main entry point + // or another suitable identifier depending on the language. + // The identifier `opentelemetry` is reserved and MUST NOT be used in this case. + // All custom identifiers SHOULD be stable across different versions of an + // implementation. + TelemetrySDKNameKey = attribute.Key("telemetry.sdk.name") + + // TelemetrySDKVersionKey is the attribute Key conforming to the + // "telemetry.sdk.version" semantic conventions. It represents the version + // string of the telemetry SDK. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "1.2.3" + TelemetrySDKVersionKey = attribute.Key("telemetry.sdk.version") +) + +// TelemetryDistroName returns an attribute KeyValue conforming to the +// "telemetry.distro.name" semantic conventions. It represents the name of the +// auto instrumentation agent or distribution, if used. +func TelemetryDistroName(val string) attribute.KeyValue { + return TelemetryDistroNameKey.String(val) +} + +// TelemetryDistroVersion returns an attribute KeyValue conforming to the +// "telemetry.distro.version" semantic conventions. It represents the version +// string of the auto instrumentation agent or distribution, if used. +func TelemetryDistroVersion(val string) attribute.KeyValue { + return TelemetryDistroVersionKey.String(val) +} + +// TelemetrySDKName returns an attribute KeyValue conforming to the +// "telemetry.sdk.name" semantic conventions. It represents the name of the +// telemetry SDK as defined above. +func TelemetrySDKName(val string) attribute.KeyValue { + return TelemetrySDKNameKey.String(val) +} + +// TelemetrySDKVersion returns an attribute KeyValue conforming to the +// "telemetry.sdk.version" semantic conventions. It represents the version string +// of the telemetry SDK. +func TelemetrySDKVersion(val string) attribute.KeyValue { + return TelemetrySDKVersionKey.String(val) +} + +// Enum values for telemetry.sdk.language +var ( + // cpp + // Stability: stable + TelemetrySDKLanguageCPP = TelemetrySDKLanguageKey.String("cpp") + // dotnet + // Stability: stable + TelemetrySDKLanguageDotnet = TelemetrySDKLanguageKey.String("dotnet") + // erlang + // Stability: stable + TelemetrySDKLanguageErlang = TelemetrySDKLanguageKey.String("erlang") + // go + // Stability: stable + TelemetrySDKLanguageGo = TelemetrySDKLanguageKey.String("go") + // java + // Stability: stable + TelemetrySDKLanguageJava = TelemetrySDKLanguageKey.String("java") + // nodejs + // Stability: stable + TelemetrySDKLanguageNodejs = TelemetrySDKLanguageKey.String("nodejs") + // php + // Stability: stable + TelemetrySDKLanguagePHP = TelemetrySDKLanguageKey.String("php") + // python + // Stability: stable + TelemetrySDKLanguagePython = TelemetrySDKLanguageKey.String("python") + // ruby + // Stability: stable + TelemetrySDKLanguageRuby = TelemetrySDKLanguageKey.String("ruby") + // rust + // Stability: stable + TelemetrySDKLanguageRust = TelemetrySDKLanguageKey.String("rust") + // swift + // Stability: stable + TelemetrySDKLanguageSwift = TelemetrySDKLanguageKey.String("swift") + // webjs + // Stability: stable + TelemetrySDKLanguageWebJS = TelemetrySDKLanguageKey.String("webjs") +) + +// Namespace: test +const ( + // TestCaseNameKey is the attribute Key conforming to the "test.case.name" + // semantic conventions. It represents the fully qualified human readable name + // of the [test case]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "org.example.TestCase1.test1", "example/tests/TestCase1.test1", + // "ExampleTestCase1_test1" + // + // [test case]: https://wikipedia.org/wiki/Test_case + TestCaseNameKey = attribute.Key("test.case.name") + + // TestCaseResultStatusKey is the attribute Key conforming to the + // "test.case.result.status" semantic conventions. It represents the status of + // the actual test case result from test execution. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "pass", "fail" + TestCaseResultStatusKey = attribute.Key("test.case.result.status") + + // TestSuiteNameKey is the attribute Key conforming to the "test.suite.name" + // semantic conventions. It represents the human readable name of a [test suite] + // . + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TestSuite1" + // + // [test suite]: https://wikipedia.org/wiki/Test_suite + TestSuiteNameKey = attribute.Key("test.suite.name") + + // TestSuiteRunStatusKey is the attribute Key conforming to the + // "test.suite.run.status" semantic conventions. It represents the status of the + // test suite run. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "success", "failure", "skipped", "aborted", "timed_out", + // "in_progress" + TestSuiteRunStatusKey = attribute.Key("test.suite.run.status") +) + +// TestCaseName returns an attribute KeyValue conforming to the "test.case.name" +// semantic conventions. It represents the fully qualified human readable name of +// the [test case]. +// +// [test case]: https://wikipedia.org/wiki/Test_case +func TestCaseName(val string) attribute.KeyValue { + return TestCaseNameKey.String(val) +} + +// TestSuiteName returns an attribute KeyValue conforming to the +// "test.suite.name" semantic conventions. It represents the human readable name +// of a [test suite]. +// +// [test suite]: https://wikipedia.org/wiki/Test_suite +func TestSuiteName(val string) attribute.KeyValue { + return TestSuiteNameKey.String(val) +} + +// Enum values for test.case.result.status +var ( + // pass + // Stability: development + TestCaseResultStatusPass = TestCaseResultStatusKey.String("pass") + // fail + // Stability: development + TestCaseResultStatusFail = TestCaseResultStatusKey.String("fail") +) + +// Enum values for test.suite.run.status +var ( + // success + // Stability: development + TestSuiteRunStatusSuccess = TestSuiteRunStatusKey.String("success") + // failure + // Stability: development + TestSuiteRunStatusFailure = TestSuiteRunStatusKey.String("failure") + // skipped + // Stability: development + TestSuiteRunStatusSkipped = TestSuiteRunStatusKey.String("skipped") + // aborted + // Stability: development + TestSuiteRunStatusAborted = TestSuiteRunStatusKey.String("aborted") + // timed_out + // Stability: development + TestSuiteRunStatusTimedOut = TestSuiteRunStatusKey.String("timed_out") + // in_progress + // Stability: development + TestSuiteRunStatusInProgress = TestSuiteRunStatusKey.String("in_progress") +) + +// Namespace: thread +const ( + // ThreadIDKey is the attribute Key conforming to the "thread.id" semantic + // conventions. It represents the current "managed" thread ID (as opposed to OS + // thread ID). + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + ThreadIDKey = attribute.Key("thread.id") + + // ThreadNameKey is the attribute Key conforming to the "thread.name" semantic + // conventions. It represents the current thread name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: main + ThreadNameKey = attribute.Key("thread.name") +) + +// ThreadID returns an attribute KeyValue conforming to the "thread.id" semantic +// conventions. It represents the current "managed" thread ID (as opposed to OS +// thread ID). +func ThreadID(val int) attribute.KeyValue { + return ThreadIDKey.Int(val) +} + +// ThreadName returns an attribute KeyValue conforming to the "thread.name" +// semantic conventions. It represents the current thread name. +func ThreadName(val string) attribute.KeyValue { + return ThreadNameKey.String(val) +} + +// Namespace: tls +const ( + // TLSCipherKey is the attribute Key conforming to the "tls.cipher" semantic + // conventions. It represents the string indicating the [cipher] used during the + // current connection. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TLS_RSA_WITH_3DES_EDE_CBC_SHA", + // "TLS_ECDHE_RSA_WITH_AES_128_CBC_SHA256" + // Note: The values allowed for `tls.cipher` MUST be one of the `Descriptions` + // of the [registered TLS Cipher Suits]. + // + // [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 + // [registered TLS Cipher Suits]: https://www.iana.org/assignments/tls-parameters/tls-parameters.xhtml#table-tls-parameters-4 + TLSCipherKey = attribute.Key("tls.cipher") + + // TLSClientCertificateKey is the attribute Key conforming to the + // "tls.client.certificate" semantic conventions. It represents the PEM-encoded + // stand-alone certificate offered by the client. This is usually + // mutually-exclusive of `client.certificate_chain` since this value also exists + // in that list. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII..." + TLSClientCertificateKey = attribute.Key("tls.client.certificate") + + // TLSClientCertificateChainKey is the attribute Key conforming to the + // "tls.client.certificate_chain" semantic conventions. It represents the array + // of PEM-encoded certificates that make up the certificate chain offered by the + // client. This is usually mutually-exclusive of `client.certificate` since that + // value should be the first certificate in the chain. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII...", "MI..." + TLSClientCertificateChainKey = attribute.Key("tls.client.certificate_chain") + + // TLSClientHashMd5Key is the attribute Key conforming to the + // "tls.client.hash.md5" semantic conventions. It represents the certificate + // fingerprint using the MD5 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" + TLSClientHashMd5Key = attribute.Key("tls.client.hash.md5") + + // TLSClientHashSha1Key is the attribute Key conforming to the + // "tls.client.hash.sha1" semantic conventions. It represents the certificate + // fingerprint using the SHA1 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" + TLSClientHashSha1Key = attribute.Key("tls.client.hash.sha1") + + // TLSClientHashSha256Key is the attribute Key conforming to the + // "tls.client.hash.sha256" semantic conventions. It represents the certificate + // fingerprint using the SHA256 digest of DER-encoded version of certificate + // offered by the client. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" + TLSClientHashSha256Key = attribute.Key("tls.client.hash.sha256") + + // TLSClientIssuerKey is the attribute Key conforming to the "tls.client.issuer" + // semantic conventions. It represents the distinguished name of [subject] of + // the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" + // + // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 + TLSClientIssuerKey = attribute.Key("tls.client.issuer") + + // TLSClientJa3Key is the attribute Key conforming to the "tls.client.ja3" + // semantic conventions. It represents a hash that identifies clients based on + // how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "d4e5b18d6b55c71272893221c96ba240" + TLSClientJa3Key = attribute.Key("tls.client.ja3") + + // TLSClientNotAfterKey is the attribute Key conforming to the + // "tls.client.not_after" semantic conventions. It represents the date/Time + // indicating when client certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T00:00:00.000Z" + TLSClientNotAfterKey = attribute.Key("tls.client.not_after") + + // TLSClientNotBeforeKey is the attribute Key conforming to the + // "tls.client.not_before" semantic conventions. It represents the date/Time + // indicating when client certificate is first considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1970-01-01T00:00:00.000Z" + TLSClientNotBeforeKey = attribute.Key("tls.client.not_before") + + // TLSClientSubjectKey is the attribute Key conforming to the + // "tls.client.subject" semantic conventions. It represents the distinguished + // name of subject of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=myclient, OU=Documentation Team, DC=example, DC=com" + TLSClientSubjectKey = attribute.Key("tls.client.subject") + + // TLSClientSupportedCiphersKey is the attribute Key conforming to the + // "tls.client.supported_ciphers" semantic conventions. It represents the array + // of ciphers offered by the client during the client hello. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "TLS_ECDHE_RSA_WITH_AES_256_GCM_SHA384", + // "TLS_ECDHE_ECDSA_WITH_AES_256_GCM_SHA384" + TLSClientSupportedCiphersKey = attribute.Key("tls.client.supported_ciphers") + + // TLSCurveKey is the attribute Key conforming to the "tls.curve" semantic + // conventions. It represents the string indicating the curve used for the given + // cipher, when applicable. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "secp256r1" + TLSCurveKey = attribute.Key("tls.curve") + + // TLSEstablishedKey is the attribute Key conforming to the "tls.established" + // semantic conventions. It represents the boolean flag indicating if the TLS + // negotiation was successful and transitioned to an encrypted tunnel. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: true + TLSEstablishedKey = attribute.Key("tls.established") + + // TLSNextProtocolKey is the attribute Key conforming to the "tls.next_protocol" + // semantic conventions. It represents the string indicating the protocol being + // tunneled. Per the values in the [IANA registry], this string should be lower + // case. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "http/1.1" + // + // [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids + TLSNextProtocolKey = attribute.Key("tls.next_protocol") + + // TLSProtocolNameKey is the attribute Key conforming to the "tls.protocol.name" + // semantic conventions. It represents the normalized lowercase protocol name + // parsed from original string of the negotiated [SSL/TLS protocol version]. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // + // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values + TLSProtocolNameKey = attribute.Key("tls.protocol.name") + + // TLSProtocolVersionKey is the attribute Key conforming to the + // "tls.protocol.version" semantic conventions. It represents the numeric part + // of the version parsed from the original string of the negotiated + // [SSL/TLS protocol version]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1.2", "3" + // + // [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values + TLSProtocolVersionKey = attribute.Key("tls.protocol.version") + + // TLSResumedKey is the attribute Key conforming to the "tls.resumed" semantic + // conventions. It represents the boolean flag indicating if this TLS connection + // was resumed from an existing TLS negotiation. + // + // Type: boolean + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: true + TLSResumedKey = attribute.Key("tls.resumed") + + // TLSServerCertificateKey is the attribute Key conforming to the + // "tls.server.certificate" semantic conventions. It represents the PEM-encoded + // stand-alone certificate offered by the server. This is usually + // mutually-exclusive of `server.certificate_chain` since this value also exists + // in that list. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII..." + TLSServerCertificateKey = attribute.Key("tls.server.certificate") + + // TLSServerCertificateChainKey is the attribute Key conforming to the + // "tls.server.certificate_chain" semantic conventions. It represents the array + // of PEM-encoded certificates that make up the certificate chain offered by the + // server. This is usually mutually-exclusive of `server.certificate` since that + // value should be the first certificate in the chain. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "MII...", "MI..." + TLSServerCertificateChainKey = attribute.Key("tls.server.certificate_chain") + + // TLSServerHashMd5Key is the attribute Key conforming to the + // "tls.server.hash.md5" semantic conventions. It represents the certificate + // fingerprint using the MD5 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0F76C7F2C55BFD7D8E8B8F4BFBF0C9EC" + TLSServerHashMd5Key = attribute.Key("tls.server.hash.md5") + + // TLSServerHashSha1Key is the attribute Key conforming to the + // "tls.server.hash.sha1" semantic conventions. It represents the certificate + // fingerprint using the SHA1 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9E393D93138888D288266C2D915214D1D1CCEB2A" + TLSServerHashSha1Key = attribute.Key("tls.server.hash.sha1") + + // TLSServerHashSha256Key is the attribute Key conforming to the + // "tls.server.hash.sha256" semantic conventions. It represents the certificate + // fingerprint using the SHA256 digest of DER-encoded version of certificate + // offered by the server. For consistency with other hash values, this value + // should be formatted as an uppercase hash. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "0687F666A054EF17A08E2F2162EAB4CBC0D265E1D7875BE74BF3C712CA92DAF0" + TLSServerHashSha256Key = attribute.Key("tls.server.hash.sha256") + + // TLSServerIssuerKey is the attribute Key conforming to the "tls.server.issuer" + // semantic conventions. It represents the distinguished name of [subject] of + // the issuer of the x.509 certificate presented by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=Example Root CA, OU=Infrastructure Team, DC=example, DC=com" + // + // [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 + TLSServerIssuerKey = attribute.Key("tls.server.issuer") + + // TLSServerJa3sKey is the attribute Key conforming to the "tls.server.ja3s" + // semantic conventions. It represents a hash that identifies servers based on + // how they perform an SSL/TLS handshake. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "d4e5b18d6b55c71272893221c96ba240" + TLSServerJa3sKey = attribute.Key("tls.server.ja3s") + + // TLSServerNotAfterKey is the attribute Key conforming to the + // "tls.server.not_after" semantic conventions. It represents the date/Time + // indicating when server certificate is no longer considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "2021-01-01T00:00:00.000Z" + TLSServerNotAfterKey = attribute.Key("tls.server.not_after") + + // TLSServerNotBeforeKey is the attribute Key conforming to the + // "tls.server.not_before" semantic conventions. It represents the date/Time + // indicating when server certificate is first considered valid. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "1970-01-01T00:00:00.000Z" + TLSServerNotBeforeKey = attribute.Key("tls.server.not_before") + + // TLSServerSubjectKey is the attribute Key conforming to the + // "tls.server.subject" semantic conventions. It represents the distinguished + // name of subject of the x.509 certificate presented by the server. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "CN=myserver, OU=Documentation Team, DC=example, DC=com" + TLSServerSubjectKey = attribute.Key("tls.server.subject") +) + +// TLSCipher returns an attribute KeyValue conforming to the "tls.cipher" +// semantic conventions. It represents the string indicating the [cipher] used +// during the current connection. +// +// [cipher]: https://datatracker.ietf.org/doc/html/rfc5246#appendix-A.5 +func TLSCipher(val string) attribute.KeyValue { + return TLSCipherKey.String(val) +} + +// TLSClientCertificate returns an attribute KeyValue conforming to the +// "tls.client.certificate" semantic conventions. It represents the PEM-encoded +// stand-alone certificate offered by the client. This is usually +// mutually-exclusive of `client.certificate_chain` since this value also exists +// in that list. +func TLSClientCertificate(val string) attribute.KeyValue { + return TLSClientCertificateKey.String(val) +} + +// TLSClientCertificateChain returns an attribute KeyValue conforming to the +// "tls.client.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by the +// client. This is usually mutually-exclusive of `client.certificate` since that +// value should be the first certificate in the chain. +func TLSClientCertificateChain(val ...string) attribute.KeyValue { + return TLSClientCertificateChainKey.StringSlice(val) +} + +// TLSClientHashMd5 returns an attribute KeyValue conforming to the +// "tls.client.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate offered +// by the client. For consistency with other hash values, this value should be +// formatted as an uppercase hash. +func TLSClientHashMd5(val string) attribute.KeyValue { + return TLSClientHashMd5Key.String(val) +} + +// TLSClientHashSha1 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha1(val string) attribute.KeyValue { + return TLSClientHashSha1Key.String(val) +} + +// TLSClientHashSha256 returns an attribute KeyValue conforming to the +// "tls.client.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the client. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSClientHashSha256(val string) attribute.KeyValue { + return TLSClientHashSha256Key.String(val) +} + +// TLSClientIssuer returns an attribute KeyValue conforming to the +// "tls.client.issuer" semantic conventions. It represents the distinguished name +// of [subject] of the issuer of the x.509 certificate presented by the client. +// +// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 +func TLSClientIssuer(val string) attribute.KeyValue { + return TLSClientIssuerKey.String(val) +} + +// TLSClientJa3 returns an attribute KeyValue conforming to the "tls.client.ja3" +// semantic conventions. It represents a hash that identifies clients based on +// how they perform an SSL/TLS handshake. +func TLSClientJa3(val string) attribute.KeyValue { + return TLSClientJa3Key.String(val) +} + +// TLSClientNotAfter returns an attribute KeyValue conforming to the +// "tls.client.not_after" semantic conventions. It represents the date/Time +// indicating when client certificate is no longer considered valid. +func TLSClientNotAfter(val string) attribute.KeyValue { + return TLSClientNotAfterKey.String(val) +} + +// TLSClientNotBefore returns an attribute KeyValue conforming to the +// "tls.client.not_before" semantic conventions. It represents the date/Time +// indicating when client certificate is first considered valid. +func TLSClientNotBefore(val string) attribute.KeyValue { + return TLSClientNotBeforeKey.String(val) +} + +// TLSClientSubject returns an attribute KeyValue conforming to the +// "tls.client.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the client. +func TLSClientSubject(val string) attribute.KeyValue { + return TLSClientSubjectKey.String(val) +} + +// TLSClientSupportedCiphers returns an attribute KeyValue conforming to the +// "tls.client.supported_ciphers" semantic conventions. It represents the array +// of ciphers offered by the client during the client hello. +func TLSClientSupportedCiphers(val ...string) attribute.KeyValue { + return TLSClientSupportedCiphersKey.StringSlice(val) +} + +// TLSCurve returns an attribute KeyValue conforming to the "tls.curve" semantic +// conventions. It represents the string indicating the curve used for the given +// cipher, when applicable. +func TLSCurve(val string) attribute.KeyValue { + return TLSCurveKey.String(val) +} + +// TLSEstablished returns an attribute KeyValue conforming to the +// "tls.established" semantic conventions. It represents the boolean flag +// indicating if the TLS negotiation was successful and transitioned to an +// encrypted tunnel. +func TLSEstablished(val bool) attribute.KeyValue { + return TLSEstablishedKey.Bool(val) +} + +// TLSNextProtocol returns an attribute KeyValue conforming to the +// "tls.next_protocol" semantic conventions. It represents the string indicating +// the protocol being tunneled. Per the values in the [IANA registry], this +// string should be lower case. +// +// [IANA registry]: https://www.iana.org/assignments/tls-extensiontype-values/tls-extensiontype-values.xhtml#alpn-protocol-ids +func TLSNextProtocol(val string) attribute.KeyValue { + return TLSNextProtocolKey.String(val) +} + +// TLSProtocolVersion returns an attribute KeyValue conforming to the +// "tls.protocol.version" semantic conventions. It represents the numeric part of +// the version parsed from the original string of the negotiated +// [SSL/TLS protocol version]. +// +// [SSL/TLS protocol version]: https://docs.openssl.org/1.1.1/man3/SSL_get_version/#return-values +func TLSProtocolVersion(val string) attribute.KeyValue { + return TLSProtocolVersionKey.String(val) +} + +// TLSResumed returns an attribute KeyValue conforming to the "tls.resumed" +// semantic conventions. It represents the boolean flag indicating if this TLS +// connection was resumed from an existing TLS negotiation. +func TLSResumed(val bool) attribute.KeyValue { + return TLSResumedKey.Bool(val) +} + +// TLSServerCertificate returns an attribute KeyValue conforming to the +// "tls.server.certificate" semantic conventions. It represents the PEM-encoded +// stand-alone certificate offered by the server. This is usually +// mutually-exclusive of `server.certificate_chain` since this value also exists +// in that list. +func TLSServerCertificate(val string) attribute.KeyValue { + return TLSServerCertificateKey.String(val) +} + +// TLSServerCertificateChain returns an attribute KeyValue conforming to the +// "tls.server.certificate_chain" semantic conventions. It represents the array +// of PEM-encoded certificates that make up the certificate chain offered by the +// server. This is usually mutually-exclusive of `server.certificate` since that +// value should be the first certificate in the chain. +func TLSServerCertificateChain(val ...string) attribute.KeyValue { + return TLSServerCertificateChainKey.StringSlice(val) +} + +// TLSServerHashMd5 returns an attribute KeyValue conforming to the +// "tls.server.hash.md5" semantic conventions. It represents the certificate +// fingerprint using the MD5 digest of DER-encoded version of certificate offered +// by the server. For consistency with other hash values, this value should be +// formatted as an uppercase hash. +func TLSServerHashMd5(val string) attribute.KeyValue { + return TLSServerHashMd5Key.String(val) +} + +// TLSServerHashSha1 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha1" semantic conventions. It represents the certificate +// fingerprint using the SHA1 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha1(val string) attribute.KeyValue { + return TLSServerHashSha1Key.String(val) +} + +// TLSServerHashSha256 returns an attribute KeyValue conforming to the +// "tls.server.hash.sha256" semantic conventions. It represents the certificate +// fingerprint using the SHA256 digest of DER-encoded version of certificate +// offered by the server. For consistency with other hash values, this value +// should be formatted as an uppercase hash. +func TLSServerHashSha256(val string) attribute.KeyValue { + return TLSServerHashSha256Key.String(val) +} + +// TLSServerIssuer returns an attribute KeyValue conforming to the +// "tls.server.issuer" semantic conventions. It represents the distinguished name +// of [subject] of the issuer of the x.509 certificate presented by the client. +// +// [subject]: https://datatracker.ietf.org/doc/html/rfc5280#section-4.1.2.6 +func TLSServerIssuer(val string) attribute.KeyValue { + return TLSServerIssuerKey.String(val) +} + +// TLSServerJa3s returns an attribute KeyValue conforming to the +// "tls.server.ja3s" semantic conventions. It represents a hash that identifies +// servers based on how they perform an SSL/TLS handshake. +func TLSServerJa3s(val string) attribute.KeyValue { + return TLSServerJa3sKey.String(val) +} + +// TLSServerNotAfter returns an attribute KeyValue conforming to the +// "tls.server.not_after" semantic conventions. It represents the date/Time +// indicating when server certificate is no longer considered valid. +func TLSServerNotAfter(val string) attribute.KeyValue { + return TLSServerNotAfterKey.String(val) +} + +// TLSServerNotBefore returns an attribute KeyValue conforming to the +// "tls.server.not_before" semantic conventions. It represents the date/Time +// indicating when server certificate is first considered valid. +func TLSServerNotBefore(val string) attribute.KeyValue { + return TLSServerNotBeforeKey.String(val) +} + +// TLSServerSubject returns an attribute KeyValue conforming to the +// "tls.server.subject" semantic conventions. It represents the distinguished +// name of subject of the x.509 certificate presented by the server. +func TLSServerSubject(val string) attribute.KeyValue { + return TLSServerSubjectKey.String(val) +} + +// Enum values for tls.protocol.name +var ( + // ssl + // Stability: development + TLSProtocolNameSsl = TLSProtocolNameKey.String("ssl") + // tls + // Stability: development + TLSProtocolNameTLS = TLSProtocolNameKey.String("tls") +) + +// Namespace: url +const ( + // URLDomainKey is the attribute Key conforming to the "url.domain" semantic + // conventions. It represents the domain extracted from the `url.full`, such as + // "opentelemetry.io". + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "www.foo.bar", "opentelemetry.io", "3.12.167.2", + // "[1080:0:0:0:8:800:200C:417A]" + // Note: In some cases a URL may refer to an IP and/or port directly, without a + // domain name. In this case, the IP address would go to the domain field. If + // the URL contains a [literal IPv6 address] enclosed by `[` and `]`, the `[` + // and `]` characters should also be captured in the domain field. + // + // [literal IPv6 address]: https://www.rfc-editor.org/rfc/rfc2732#section-2 + URLDomainKey = attribute.Key("url.domain") + + // URLExtensionKey is the attribute Key conforming to the "url.extension" + // semantic conventions. It represents the file extension extracted from the + // `url.full`, excluding the leading dot. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "png", "gz" + // Note: The file extension is only set if it exists, as not every url has a + // file extension. When the file name has multiple extensions `example.tar.gz`, + // only the last one should be captured `gz`, not `tar.gz`. + URLExtensionKey = attribute.Key("url.extension") + + // URLFragmentKey is the attribute Key conforming to the "url.fragment" semantic + // conventions. It represents the [URI fragment] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "SemConv" + // + // [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 + URLFragmentKey = attribute.Key("url.fragment") + + // URLFullKey is the attribute Key conforming to the "url.full" semantic + // conventions. It represents the absolute URL describing a network resource + // according to [RFC3986]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", "//localhost" + // Note: For network calls, URL usually has + // `scheme://host[:port][path][?query][#fragment]` format, where the fragment + // is not transmitted over HTTP, but if it is known, it SHOULD be included + // nevertheless. + // + // `url.full` MUST NOT contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. + // In such case username and password SHOULD be redacted and attribute's value + // SHOULD be `https://REDACTED:REDACTED@www.example.com/`. + // + // `url.full` SHOULD capture the absolute URL when it is available (or can be + // reconstructed). + // + // Sensitive content provided in `url.full` SHOULD be scrubbed when + // instrumentations can identify it. + // + // + // Query string values for the following keys SHOULD be redacted by default and + // replaced by the + // value `REDACTED`: + // + // - [`AWSAccessKeyId`] + // - [`Signature`] + // - [`sig`] + // - [`X-Goog-Signature`] + // + // This list is subject to change over time. + // + // When a query string value is redacted, the query string key SHOULD still be + // preserved, e.g. + // `https://www.example.com/path?color=blue&sig=REDACTED`. + // + // [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 + // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token + // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls + URLFullKey = attribute.Key("url.full") + + // URLOriginalKey is the attribute Key conforming to the "url.original" semantic + // conventions. It represents the unmodified original URL as seen in the event + // source. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "https://www.foo.bar/search?q=OpenTelemetry#SemConv", + // "search?q=OpenTelemetry" + // Note: In network monitoring, the observed URL may be a full URL, whereas in + // access logs, the URL is often just represented as a path. This field is meant + // to represent the URL as it was observed, complete or not. + // `url.original` might contain credentials passed via URL in form of + // `https://username:password@www.example.com/`. In such case password and + // username SHOULD NOT be redacted and attribute's value SHOULD remain the same. + URLOriginalKey = attribute.Key("url.original") + + // URLPathKey is the attribute Key conforming to the "url.path" semantic + // conventions. It represents the [URI path] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "/search" + // Note: Sensitive content provided in `url.path` SHOULD be scrubbed when + // instrumentations can identify it. + // + // [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 + URLPathKey = attribute.Key("url.path") + + // URLPortKey is the attribute Key conforming to the "url.port" semantic + // conventions. It represents the port extracted from the `url.full`. + // + // Type: int + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: 443 + URLPortKey = attribute.Key("url.port") + + // URLQueryKey is the attribute Key conforming to the "url.query" semantic + // conventions. It represents the [URI query] component. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "q=OpenTelemetry" + // Note: Sensitive content provided in `url.query` SHOULD be scrubbed when + // instrumentations can identify it. + // + // + // Query string values for the following keys SHOULD be redacted by default and + // replaced by the value `REDACTED`: + // + // - [`AWSAccessKeyId`] + // - [`Signature`] + // - [`sig`] + // - [`X-Goog-Signature`] + // + // This list is subject to change over time. + // + // When a query string value is redacted, the query string key SHOULD still be + // preserved, e.g. + // `q=OpenTelemetry&sig=REDACTED`. + // + // [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 + // [`AWSAccessKeyId`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`Signature`]: https://docs.aws.amazon.com/AmazonS3/latest/userguide/RESTAuthentication.html#RESTAuthenticationQueryStringAuth + // [`sig`]: https://learn.microsoft.com/azure/storage/common/storage-sas-overview#sas-token + // [`X-Goog-Signature`]: https://cloud.google.com/storage/docs/access-control/signed-urls + URLQueryKey = attribute.Key("url.query") + + // URLRegisteredDomainKey is the attribute Key conforming to the + // "url.registered_domain" semantic conventions. It represents the highest + // registered url domain, stripped of the subdomain. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "example.com", "foo.co.uk" + // Note: This value can be determined precisely with the [public suffix list]. + // For example, the registered domain for `foo.example.com` is `example.com`. + // Trying to approximate this by simply taking the last two labels will not work + // well for TLDs such as `co.uk`. + // + // [public suffix list]: https://publicsuffix.org/ + URLRegisteredDomainKey = attribute.Key("url.registered_domain") + + // URLSchemeKey is the attribute Key conforming to the "url.scheme" semantic + // conventions. It represents the [URI scheme] component identifying the used + // protocol. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "https", "ftp", "telnet" + // + // [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 + URLSchemeKey = attribute.Key("url.scheme") + + // URLSubdomainKey is the attribute Key conforming to the "url.subdomain" + // semantic conventions. It represents the subdomain portion of a fully + // qualified domain name includes all of the names except the host name under + // the registered_domain. In a partially qualified domain, or if the + // qualification level of the full name cannot be determined, subdomain contains + // all of the names below the registered domain. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "east", "sub2.sub1" + // Note: The subdomain portion of `www.east.mydomain.co.uk` is `east`. If the + // domain has multiple levels of subdomain, such as `sub2.sub1.example.com`, the + // subdomain field should contain `sub2.sub1`, with no trailing period. + URLSubdomainKey = attribute.Key("url.subdomain") + + // URLTemplateKey is the attribute Key conforming to the "url.template" semantic + // conventions. It represents the low-cardinality template of an + // [absolute path reference]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "/users/{id}", "/users/:id", "/users?id={id}" + // + // [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 + URLTemplateKey = attribute.Key("url.template") + + // URLTopLevelDomainKey is the attribute Key conforming to the + // "url.top_level_domain" semantic conventions. It represents the effective top + // level domain (eTLD), also known as the domain suffix, is the last part of the + // domain name. For example, the top level domain for example.com is `com`. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "com", "co.uk" + // Note: This value can be determined precisely with the [public suffix list]. + // + // [public suffix list]: https://publicsuffix.org/ + URLTopLevelDomainKey = attribute.Key("url.top_level_domain") +) + +// URLDomain returns an attribute KeyValue conforming to the "url.domain" +// semantic conventions. It represents the domain extracted from the `url.full`, +// such as "opentelemetry.io". +func URLDomain(val string) attribute.KeyValue { + return URLDomainKey.String(val) +} + +// URLExtension returns an attribute KeyValue conforming to the "url.extension" +// semantic conventions. It represents the file extension extracted from the +// `url.full`, excluding the leading dot. +func URLExtension(val string) attribute.KeyValue { + return URLExtensionKey.String(val) +} + +// URLFragment returns an attribute KeyValue conforming to the "url.fragment" +// semantic conventions. It represents the [URI fragment] component. +// +// [URI fragment]: https://www.rfc-editor.org/rfc/rfc3986#section-3.5 +func URLFragment(val string) attribute.KeyValue { + return URLFragmentKey.String(val) +} + +// URLFull returns an attribute KeyValue conforming to the "url.full" semantic +// conventions. It represents the absolute URL describing a network resource +// according to [RFC3986]. +// +// [RFC3986]: https://www.rfc-editor.org/rfc/rfc3986 +func URLFull(val string) attribute.KeyValue { + return URLFullKey.String(val) +} + +// URLOriginal returns an attribute KeyValue conforming to the "url.original" +// semantic conventions. It represents the unmodified original URL as seen in the +// event source. +func URLOriginal(val string) attribute.KeyValue { + return URLOriginalKey.String(val) +} + +// URLPath returns an attribute KeyValue conforming to the "url.path" semantic +// conventions. It represents the [URI path] component. +// +// [URI path]: https://www.rfc-editor.org/rfc/rfc3986#section-3.3 +func URLPath(val string) attribute.KeyValue { + return URLPathKey.String(val) +} + +// URLPort returns an attribute KeyValue conforming to the "url.port" semantic +// conventions. It represents the port extracted from the `url.full`. +func URLPort(val int) attribute.KeyValue { + return URLPortKey.Int(val) +} + +// URLQuery returns an attribute KeyValue conforming to the "url.query" semantic +// conventions. It represents the [URI query] component. +// +// [URI query]: https://www.rfc-editor.org/rfc/rfc3986#section-3.4 +func URLQuery(val string) attribute.KeyValue { + return URLQueryKey.String(val) +} + +// URLRegisteredDomain returns an attribute KeyValue conforming to the +// "url.registered_domain" semantic conventions. It represents the highest +// registered url domain, stripped of the subdomain. +func URLRegisteredDomain(val string) attribute.KeyValue { + return URLRegisteredDomainKey.String(val) +} + +// URLScheme returns an attribute KeyValue conforming to the "url.scheme" +// semantic conventions. It represents the [URI scheme] component identifying the +// used protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func URLScheme(val string) attribute.KeyValue { + return URLSchemeKey.String(val) +} + +// URLSubdomain returns an attribute KeyValue conforming to the "url.subdomain" +// semantic conventions. It represents the subdomain portion of a fully qualified +// domain name includes all of the names except the host name under the +// registered_domain. In a partially qualified domain, or if the qualification +// level of the full name cannot be determined, subdomain contains all of the +// names below the registered domain. +func URLSubdomain(val string) attribute.KeyValue { + return URLSubdomainKey.String(val) +} + +// URLTemplate returns an attribute KeyValue conforming to the "url.template" +// semantic conventions. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func URLTemplate(val string) attribute.KeyValue { + return URLTemplateKey.String(val) +} + +// URLTopLevelDomain returns an attribute KeyValue conforming to the +// "url.top_level_domain" semantic conventions. It represents the effective top +// level domain (eTLD), also known as the domain suffix, is the last part of the +// domain name. For example, the top level domain for example.com is `com`. +func URLTopLevelDomain(val string) attribute.KeyValue { + return URLTopLevelDomainKey.String(val) +} + +// Namespace: user +const ( + // UserEmailKey is the attribute Key conforming to the "user.email" semantic + // conventions. It represents the user email address. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "a.einstein@example.com" + UserEmailKey = attribute.Key("user.email") + + // UserFullNameKey is the attribute Key conforming to the "user.full_name" + // semantic conventions. It represents the user's full name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Albert Einstein" + UserFullNameKey = attribute.Key("user.full_name") + + // UserHashKey is the attribute Key conforming to the "user.hash" semantic + // conventions. It represents the unique user hash to correlate information for + // a user in anonymized form. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "364fc68eaf4c8acec74a4e52d7d1feaa" + // Note: Useful if `user.id` or `user.name` contain confidential information and + // cannot be used. + UserHashKey = attribute.Key("user.hash") + + // UserIDKey is the attribute Key conforming to the "user.id" semantic + // conventions. It represents the unique identifier of the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "S-1-5-21-202424912787-2692429404-2351956786-1000" + UserIDKey = attribute.Key("user.id") + + // UserNameKey is the attribute Key conforming to the "user.name" semantic + // conventions. It represents the short name or login/username of the user. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "a.einstein" + UserNameKey = attribute.Key("user.name") + + // UserRolesKey is the attribute Key conforming to the "user.roles" semantic + // conventions. It represents the array of user roles at the time of the event. + // + // Type: string[] + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "admin", "reporting_user" + UserRolesKey = attribute.Key("user.roles") +) + +// UserEmail returns an attribute KeyValue conforming to the "user.email" +// semantic conventions. It represents the user email address. +func UserEmail(val string) attribute.KeyValue { + return UserEmailKey.String(val) +} + +// UserFullName returns an attribute KeyValue conforming to the "user.full_name" +// semantic conventions. It represents the user's full name. +func UserFullName(val string) attribute.KeyValue { + return UserFullNameKey.String(val) +} + +// UserHash returns an attribute KeyValue conforming to the "user.hash" semantic +// conventions. It represents the unique user hash to correlate information for a +// user in anonymized form. +func UserHash(val string) attribute.KeyValue { + return UserHashKey.String(val) +} + +// UserID returns an attribute KeyValue conforming to the "user.id" semantic +// conventions. It represents the unique identifier of the user. +func UserID(val string) attribute.KeyValue { + return UserIDKey.String(val) +} + +// UserName returns an attribute KeyValue conforming to the "user.name" semantic +// conventions. It represents the short name or login/username of the user. +func UserName(val string) attribute.KeyValue { + return UserNameKey.String(val) +} + +// UserRoles returns an attribute KeyValue conforming to the "user.roles" +// semantic conventions. It represents the array of user roles at the time of the +// event. +func UserRoles(val ...string) attribute.KeyValue { + return UserRolesKey.StringSlice(val) +} + +// Namespace: user_agent +const ( + // UserAgentNameKey is the attribute Key conforming to the "user_agent.name" + // semantic conventions. It represents the name of the user-agent extracted from + // original. Usually refers to the browser's name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Safari", "YourApp" + // Note: [Example] of extracting browser's name from original string. In the + // case of using a user-agent for non-browser products, such as microservices + // with multiple names/versions inside the `user_agent.original`, the most + // significant name SHOULD be selected. In such a scenario it should align with + // `user_agent.version` + // + // [Example]: https://www.whatsmyua.info + UserAgentNameKey = attribute.Key("user_agent.name") + + // UserAgentOriginalKey is the attribute Key conforming to the + // "user_agent.original" semantic conventions. It represents the value of the + // [HTTP User-Agent] header sent by the client. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Stable + // + // Examples: "CERN-LineMode/2.15 libwww/2.17b3", "Mozilla/5.0 (iPhone; CPU + // iPhone OS 14_7_1 like Mac OS X) AppleWebKit/605.1.15 (KHTML, like Gecko) + // Version/14.1.2 Mobile/15E148 Safari/604.1", "YourApp/1.0.0 + // grpc-java-okhttp/1.27.2" + // + // [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent + UserAgentOriginalKey = attribute.Key("user_agent.original") + + // UserAgentOSNameKey is the attribute Key conforming to the + // "user_agent.os.name" semantic conventions. It represents the human readable + // operating system name. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "iOS", "Android", "Ubuntu" + // Note: For mapping user agent strings to OS names, libraries such as + // [ua-parser] can be utilized. + // + // [ua-parser]: https://github.com/ua-parser + UserAgentOSNameKey = attribute.Key("user_agent.os.name") + + // UserAgentOSVersionKey is the attribute Key conforming to the + // "user_agent.os.version" semantic conventions. It represents the version + // string of the operating system as defined in [Version Attributes]. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.2.1", "18.04.1" + // Note: For mapping user agent strings to OS versions, libraries such as + // [ua-parser] can be utilized. + // + // [Version Attributes]: /docs/resource/README.md#version-attributes + // [ua-parser]: https://github.com/ua-parser + UserAgentOSVersionKey = attribute.Key("user_agent.os.version") + + // UserAgentSyntheticTypeKey is the attribute Key conforming to the + // "user_agent.synthetic.type" semantic conventions. It represents the specifies + // the category of synthetic traffic, such as tests or bots. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // Note: This attribute MAY be derived from the contents of the + // `user_agent.original` attribute. Components that populate the attribute are + // responsible for determining what they consider to be synthetic bot or test + // traffic. This attribute can either be set for self-identification purposes, + // or on telemetry detected to be generated as a result of a synthetic request. + // This attribute is useful for distinguishing between genuine client traffic + // and synthetic traffic generated by bots or tests. + UserAgentSyntheticTypeKey = attribute.Key("user_agent.synthetic.type") + + // UserAgentVersionKey is the attribute Key conforming to the + // "user_agent.version" semantic conventions. It represents the version of the + // user-agent extracted from original. Usually refers to the browser's version. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "14.1.2", "1.0.0" + // Note: [Example] of extracting browser's version from original string. In the + // case of using a user-agent for non-browser products, such as microservices + // with multiple names/versions inside the `user_agent.original`, the most + // significant version SHOULD be selected. In such a scenario it should align + // with `user_agent.name` + // + // [Example]: https://www.whatsmyua.info + UserAgentVersionKey = attribute.Key("user_agent.version") +) + +// UserAgentName returns an attribute KeyValue conforming to the +// "user_agent.name" semantic conventions. It represents the name of the +// user-agent extracted from original. Usually refers to the browser's name. +func UserAgentName(val string) attribute.KeyValue { + return UserAgentNameKey.String(val) +} + +// UserAgentOriginal returns an attribute KeyValue conforming to the +// "user_agent.original" semantic conventions. It represents the value of the +// [HTTP User-Agent] header sent by the client. +// +// [HTTP User-Agent]: https://www.rfc-editor.org/rfc/rfc9110.html#field.user-agent +func UserAgentOriginal(val string) attribute.KeyValue { + return UserAgentOriginalKey.String(val) +} + +// UserAgentOSName returns an attribute KeyValue conforming to the +// "user_agent.os.name" semantic conventions. It represents the human readable +// operating system name. +func UserAgentOSName(val string) attribute.KeyValue { + return UserAgentOSNameKey.String(val) +} + +// UserAgentOSVersion returns an attribute KeyValue conforming to the +// "user_agent.os.version" semantic conventions. It represents the version string +// of the operating system as defined in [Version Attributes]. +// +// [Version Attributes]: /docs/resource/README.md#version-attributes +func UserAgentOSVersion(val string) attribute.KeyValue { + return UserAgentOSVersionKey.String(val) +} + +// UserAgentVersion returns an attribute KeyValue conforming to the +// "user_agent.version" semantic conventions. It represents the version of the +// user-agent extracted from original. Usually refers to the browser's version. +func UserAgentVersion(val string) attribute.KeyValue { + return UserAgentVersionKey.String(val) +} + +// Enum values for user_agent.synthetic.type +var ( + // Bot source. + // Stability: development + UserAgentSyntheticTypeBot = UserAgentSyntheticTypeKey.String("bot") + // Synthetic test source. + // Stability: development + UserAgentSyntheticTypeTest = UserAgentSyntheticTypeKey.String("test") +) + +// Namespace: vcs +const ( + // VCSChangeIDKey is the attribute Key conforming to the "vcs.change.id" + // semantic conventions. It represents the ID of the change (pull request/merge + // request/changelist) if applicable. This is usually a unique (within + // repository) identifier generated by the VCS system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "123" + VCSChangeIDKey = attribute.Key("vcs.change.id") + + // VCSChangeStateKey is the attribute Key conforming to the "vcs.change.state" + // semantic conventions. It represents the state of the change (pull + // request/merge request/changelist). + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "open", "closed", "merged" + VCSChangeStateKey = attribute.Key("vcs.change.state") + + // VCSChangeTitleKey is the attribute Key conforming to the "vcs.change.title" + // semantic conventions. It represents the human readable title of the change + // (pull request/merge request/changelist). This title is often a brief summary + // of the change and may get merged in to a ref as the commit summary. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "Fixes broken thing", "feat: add my new feature", "[chore] update + // dependency" + VCSChangeTitleKey = attribute.Key("vcs.change.title") + + // VCSLineChangeTypeKey is the attribute Key conforming to the + // "vcs.line_change.type" semantic conventions. It represents the type of line + // change being measured on a branch or change. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "added", "removed" + VCSLineChangeTypeKey = attribute.Key("vcs.line_change.type") + + // VCSOwnerNameKey is the attribute Key conforming to the "vcs.owner.name" + // semantic conventions. It represents the group owner within the version + // control system. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-org", "myteam", "business-unit" + VCSOwnerNameKey = attribute.Key("vcs.owner.name") + + // VCSProviderNameKey is the attribute Key conforming to the "vcs.provider.name" + // semantic conventions. It represents the name of the version control system + // provider. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "github", "gitlab", "gitea", "bitbucket" + VCSProviderNameKey = attribute.Key("vcs.provider.name") + + // VCSRefBaseNameKey is the attribute Key conforming to the "vcs.ref.base.name" + // semantic conventions. It represents the name of the [reference] such as + // **branch** or **tag** in the repository. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-feature-branch", "tag-1-test" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefBaseNameKey = attribute.Key("vcs.ref.base.name") + + // VCSRefBaseRevisionKey is the attribute Key conforming to the + // "vcs.ref.base.revision" semantic conventions. It represents the revision, + // literally [revised version], The revision most often refers to a commit + // object in Git, or a revision number in SVN. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", + // "main", "123", "HEAD" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. The + // revision can be a full [hash value (see + // glossary)], + // of the recorded change to a ref within a repository pointing to a + // commit [commit] object. It does + // not necessarily have to be a hash; it can simply define a [revision + // number] + // which is an integer that is monotonically increasing. In cases where + // it is identical to the `ref.base.name`, it SHOULD still be included. + // It is up to the implementer to decide which value to set as the + // revision based on the VCS system and situational context. + // + // [revised version]: https://www.merriam-webster.com/dictionary/revision + // [hash value (see + // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [commit]: https://git-scm.com/docs/git-commit + // [revision + // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html + VCSRefBaseRevisionKey = attribute.Key("vcs.ref.base.revision") + + // VCSRefBaseTypeKey is the attribute Key conforming to the "vcs.ref.base.type" + // semantic conventions. It represents the type of the [reference] in the + // repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // Note: `base` refers to the starting point of a change. For example, `main` + // would be the base reference of type branch if you've created a new + // reference of type branch from it and created new commits. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefBaseTypeKey = attribute.Key("vcs.ref.base.type") + + // VCSRefHeadNameKey is the attribute Key conforming to the "vcs.ref.head.name" + // semantic conventions. It represents the name of the [reference] such as + // **branch** or **tag** in the repository. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "my-feature-branch", "tag-1-test" + // Note: `head` refers to where you are right now; the current reference at a + // given time. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefHeadNameKey = attribute.Key("vcs.ref.head.name") + + // VCSRefHeadRevisionKey is the attribute Key conforming to the + // "vcs.ref.head.revision" semantic conventions. It represents the revision, + // literally [revised version], The revision most often refers to a commit + // object in Git, or a revision number in SVN. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "9d59409acf479dfa0df1aa568182e43e43df8bbe28d60fcf2bc52e30068802cc", + // "main", "123", "HEAD" + // Note: `head` refers to where you are right now; the current reference at a + // given time.The revision can be a full [hash value (see + // glossary)], + // of the recorded change to a ref within a repository pointing to a + // commit [commit] object. It does + // not necessarily have to be a hash; it can simply define a [revision + // number] + // which is an integer that is monotonically increasing. In cases where + // it is identical to the `ref.head.name`, it SHOULD still be included. + // It is up to the implementer to decide which value to set as the + // revision based on the VCS system and situational context. + // + // [revised version]: https://www.merriam-webster.com/dictionary/revision + // [hash value (see + // glossary)]: https://nvlpubs.nist.gov/nistpubs/FIPS/NIST.FIPS.186-5.pdf + // [commit]: https://git-scm.com/docs/git-commit + // [revision + // number]: https://svnbook.red-bean.com/en/1.7/svn.tour.revs.specifiers.html + VCSRefHeadRevisionKey = attribute.Key("vcs.ref.head.revision") + + // VCSRefHeadTypeKey is the attribute Key conforming to the "vcs.ref.head.type" + // semantic conventions. It represents the type of the [reference] in the + // repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // Note: `head` refers to where you are right now; the current reference at a + // given time. + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefHeadTypeKey = attribute.Key("vcs.ref.head.type") + + // VCSRefTypeKey is the attribute Key conforming to the "vcs.ref.type" semantic + // conventions. It represents the type of the [reference] in the repository. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "branch", "tag" + // + // [reference]: https://git-scm.com/docs/gitglossary#def_ref + VCSRefTypeKey = attribute.Key("vcs.ref.type") + + // VCSRepositoryNameKey is the attribute Key conforming to the + // "vcs.repository.name" semantic conventions. It represents the human readable + // name of the repository. It SHOULD NOT include any additional identifier like + // Group/SubGroup in GitLab or organization in GitHub. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "semantic-conventions", "my-cool-repo" + // Note: Due to it only being the name, it can clash with forks of the same + // repository if collecting telemetry across multiple orgs or groups in + // the same backends. + VCSRepositoryNameKey = attribute.Key("vcs.repository.name") + + // VCSRepositoryURLFullKey is the attribute Key conforming to the + // "vcs.repository.url.full" semantic conventions. It represents the + // [canonical URL] of the repository providing the complete HTTP(S) address in + // order to locate and identify the repository through a browser. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: + // "https://github.com/opentelemetry/open-telemetry-collector-contrib", + // "https://gitlab.com/my-org/my-project/my-projects-project/repo" + // Note: In Git Version Control Systems, the canonical URL SHOULD NOT include + // the `.git` extension. + // + // [canonical URL]: https://support.google.com/webmasters/answer/10347851?hl=en#:~:text=A%20canonical%20URL%20is%20the,Google%20chooses%20one%20as%20canonical. + VCSRepositoryURLFullKey = attribute.Key("vcs.repository.url.full") + + // VCSRevisionDeltaDirectionKey is the attribute Key conforming to the + // "vcs.revision_delta.direction" semantic conventions. It represents the type + // of revision comparison. + // + // Type: Enum + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "ahead", "behind" + VCSRevisionDeltaDirectionKey = attribute.Key("vcs.revision_delta.direction") +) + +// VCSChangeID returns an attribute KeyValue conforming to the "vcs.change.id" +// semantic conventions. It represents the ID of the change (pull request/merge +// request/changelist) if applicable. This is usually a unique (within +// repository) identifier generated by the VCS system. +func VCSChangeID(val string) attribute.KeyValue { + return VCSChangeIDKey.String(val) +} + +// VCSChangeTitle returns an attribute KeyValue conforming to the +// "vcs.change.title" semantic conventions. It represents the human readable +// title of the change (pull request/merge request/changelist). This title is +// often a brief summary of the change and may get merged in to a ref as the +// commit summary. +func VCSChangeTitle(val string) attribute.KeyValue { + return VCSChangeTitleKey.String(val) +} + +// VCSOwnerName returns an attribute KeyValue conforming to the "vcs.owner.name" +// semantic conventions. It represents the group owner within the version control +// system. +func VCSOwnerName(val string) attribute.KeyValue { + return VCSOwnerNameKey.String(val) +} + +// VCSRefBaseName returns an attribute KeyValue conforming to the +// "vcs.ref.base.name" semantic conventions. It represents the name of the +// [reference] such as **branch** or **tag** in the repository. +// +// [reference]: https://git-scm.com/docs/gitglossary#def_ref +func VCSRefBaseName(val string) attribute.KeyValue { + return VCSRefBaseNameKey.String(val) +} + +// VCSRefBaseRevision returns an attribute KeyValue conforming to the +// "vcs.ref.base.revision" semantic conventions. It represents the revision, +// literally [revised version], The revision most often refers to a commit object +// in Git, or a revision number in SVN. +// +// [revised version]: https://www.merriam-webster.com/dictionary/revision +func VCSRefBaseRevision(val string) attribute.KeyValue { + return VCSRefBaseRevisionKey.String(val) +} + +// VCSRefHeadName returns an attribute KeyValue conforming to the +// "vcs.ref.head.name" semantic conventions. It represents the name of the +// [reference] such as **branch** or **tag** in the repository. +// +// [reference]: https://git-scm.com/docs/gitglossary#def_ref +func VCSRefHeadName(val string) attribute.KeyValue { + return VCSRefHeadNameKey.String(val) +} + +// VCSRefHeadRevision returns an attribute KeyValue conforming to the +// "vcs.ref.head.revision" semantic conventions. It represents the revision, +// literally [revised version], The revision most often refers to a commit object +// in Git, or a revision number in SVN. +// +// [revised version]: https://www.merriam-webster.com/dictionary/revision +func VCSRefHeadRevision(val string) attribute.KeyValue { + return VCSRefHeadRevisionKey.String(val) +} + +// VCSRepositoryName returns an attribute KeyValue conforming to the +// "vcs.repository.name" semantic conventions. It represents the human readable +// name of the repository. It SHOULD NOT include any additional identifier like +// Group/SubGroup in GitLab or organization in GitHub. +func VCSRepositoryName(val string) attribute.KeyValue { + return VCSRepositoryNameKey.String(val) +} + +// VCSRepositoryURLFull returns an attribute KeyValue conforming to the +// "vcs.repository.url.full" semantic conventions. It represents the +// [canonical URL] of the repository providing the complete HTTP(S) address in +// order to locate and identify the repository through a browser. +// +// [canonical URL]: https://support.google.com/webmasters/answer/10347851?hl=en#:~:text=A%20canonical%20URL%20is%20the,Google%20chooses%20one%20as%20canonical. +func VCSRepositoryURLFull(val string) attribute.KeyValue { + return VCSRepositoryURLFullKey.String(val) +} + +// Enum values for vcs.change.state +var ( + // Open means the change is currently active and under review. It hasn't been + // merged into the target branch yet, and it's still possible to make changes or + // add comments. + // Stability: development + VCSChangeStateOpen = VCSChangeStateKey.String("open") + // WIP (work-in-progress, draft) means the change is still in progress and not + // yet ready for a full review. It might still undergo significant changes. + // Stability: development + VCSChangeStateWip = VCSChangeStateKey.String("wip") + // Closed means the merge request has been closed without merging. This can + // happen for various reasons, such as the changes being deemed unnecessary, the + // issue being resolved in another way, or the author deciding to withdraw the + // request. + // Stability: development + VCSChangeStateClosed = VCSChangeStateKey.String("closed") + // Merged indicates that the change has been successfully integrated into the + // target codebase. + // Stability: development + VCSChangeStateMerged = VCSChangeStateKey.String("merged") +) + +// Enum values for vcs.line_change.type +var ( + // How many lines were added. + // Stability: development + VCSLineChangeTypeAdded = VCSLineChangeTypeKey.String("added") + // How many lines were removed. + // Stability: development + VCSLineChangeTypeRemoved = VCSLineChangeTypeKey.String("removed") +) + +// Enum values for vcs.provider.name +var ( + // [GitHub] + // Stability: development + // + // [GitHub]: https://github.com + VCSProviderNameGithub = VCSProviderNameKey.String("github") + // [GitLab] + // Stability: development + // + // [GitLab]: https://gitlab.com + VCSProviderNameGitlab = VCSProviderNameKey.String("gitlab") + // Deprecated: Replaced by `gitea`. + VCSProviderNameGittea = VCSProviderNameKey.String("gittea") + // [Gitea] + // Stability: development + // + // [Gitea]: https://gitea.io + VCSProviderNameGitea = VCSProviderNameKey.String("gitea") + // [Bitbucket] + // Stability: development + // + // [Bitbucket]: https://bitbucket.org + VCSProviderNameBitbucket = VCSProviderNameKey.String("bitbucket") +) + +// Enum values for vcs.ref.base.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefBaseTypeBranch = VCSRefBaseTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefBaseTypeTag = VCSRefBaseTypeKey.String("tag") +) + +// Enum values for vcs.ref.head.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefHeadTypeBranch = VCSRefHeadTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefHeadTypeTag = VCSRefHeadTypeKey.String("tag") +) + +// Enum values for vcs.ref.type +var ( + // [branch] + // Stability: development + // + // [branch]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddefbranchabranch + VCSRefTypeBranch = VCSRefTypeKey.String("branch") + // [tag] + // Stability: development + // + // [tag]: https://git-scm.com/docs/gitglossary#Documentation/gitglossary.txt-aiddeftagatag + VCSRefTypeTag = VCSRefTypeKey.String("tag") +) + +// Enum values for vcs.revision_delta.direction +var ( + // How many revisions the change is behind the target ref. + // Stability: development + VCSRevisionDeltaDirectionBehind = VCSRevisionDeltaDirectionKey.String("behind") + // How many revisions the change is ahead of the target ref. + // Stability: development + VCSRevisionDeltaDirectionAhead = VCSRevisionDeltaDirectionKey.String("ahead") +) + +// Namespace: webengine +const ( + // WebEngineDescriptionKey is the attribute Key conforming to the + // "webengine.description" semantic conventions. It represents the additional + // description of the web engine (e.g. detailed version and edition + // information). + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "WildFly Full 21.0.0.Final (WildFly Core 13.0.1.Final) - + // 2.2.2.Final" + WebEngineDescriptionKey = attribute.Key("webengine.description") + + // WebEngineNameKey is the attribute Key conforming to the "webengine.name" + // semantic conventions. It represents the name of the web engine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "WildFly" + WebEngineNameKey = attribute.Key("webengine.name") + + // WebEngineVersionKey is the attribute Key conforming to the + // "webengine.version" semantic conventions. It represents the version of the + // web engine. + // + // Type: string + // RequirementLevel: Recommended + // Stability: Development + // + // Examples: "21.0.0" + WebEngineVersionKey = attribute.Key("webengine.version") +) + +// WebEngineDescription returns an attribute KeyValue conforming to the +// "webengine.description" semantic conventions. It represents the additional +// description of the web engine (e.g. detailed version and edition information). +func WebEngineDescription(val string) attribute.KeyValue { + return WebEngineDescriptionKey.String(val) +} + +// WebEngineName returns an attribute KeyValue conforming to the "webengine.name" +// semantic conventions. It represents the name of the web engine. +func WebEngineName(val string) attribute.KeyValue { + return WebEngineNameKey.String(val) +} + +// WebEngineVersion returns an attribute KeyValue conforming to the +// "webengine.version" semantic conventions. It represents the version of the web +// engine. +func WebEngineVersion(val string) attribute.KeyValue { + return WebEngineVersionKey.String(val) +} \ No newline at end of file diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/doc.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/doc.go new file mode 100644 index 0000000000..2c5c7ebd04 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/doc.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package semconv implements OpenTelemetry semantic conventions. +// +// OpenTelemetry semantic conventions are agreed standardized naming +// patterns for OpenTelemetry things. This package represents the v1.34.0 +// version of the OpenTelemetry semantic conventions. +package semconv // import "go.opentelemetry.io/otel/semconv/v1.34.0" diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/exception.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/exception.go new file mode 100644 index 0000000000..88a998f1e5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/exception.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.34.0" + +const ( + // ExceptionEventName is the name of the Span event representing an exception. + ExceptionEventName = "exception" +) diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/goconv/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/goconv/metric.go new file mode 100644 index 0000000000..564ff88378 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/goconv/metric.go @@ -0,0 +1,508 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Package httpconv provides types and functionality for OpenTelemetry semantic +// conventions in the "go" namespace. +package goconv + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" +) + +var ( + addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} + recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} +) + +// MemoryTypeAttr is an attribute conforming to the go.memory.type semantic +// conventions. It represents the type of memory. +type MemoryTypeAttr string + +var ( + // MemoryTypeStack is the memory allocated from the heap that is reserved for + // stack space, whether or not it is currently in-use. + MemoryTypeStack MemoryTypeAttr = "stack" + // MemoryTypeOther is the memory used by the Go runtime, excluding other + // categories of memory usage described in this enumeration. + MemoryTypeOther MemoryTypeAttr = "other" +) + +// ConfigGogc is an instrument used to record metric values conforming to the +// "go.config.gogc" semantic conventions. It represents the heap size target +// percentage configured by the user, otherwise 100. +type ConfigGogc struct { + metric.Int64ObservableUpDownCounter +} + +// NewConfigGogc returns a new ConfigGogc instrument. +func NewConfigGogc( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ConfigGogc, error) { + // Check if the meter is nil. + if m == nil { + return ConfigGogc{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.config.gogc", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Heap size target percentage configured by the user, otherwise 100."), + metric.WithUnit("%"), + }, opt...)..., + ) + if err != nil { + return ConfigGogc{noop.Int64ObservableUpDownCounter{}}, err + } + return ConfigGogc{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ConfigGogc) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ConfigGogc) Name() string { + return "go.config.gogc" +} + +// Unit returns the semantic convention unit of the instrument +func (ConfigGogc) Unit() string { + return "%" +} + +// Description returns the semantic convention description of the instrument +func (ConfigGogc) Description() string { + return "Heap size target percentage configured by the user, otherwise 100." +} + +// GoroutineCount is an instrument used to record metric values conforming to the +// "go.goroutine.count" semantic conventions. It represents the count of live +// goroutines. +type GoroutineCount struct { + metric.Int64ObservableUpDownCounter +} + +// NewGoroutineCount returns a new GoroutineCount instrument. +func NewGoroutineCount( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (GoroutineCount, error) { + // Check if the meter is nil. + if m == nil { + return GoroutineCount{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.goroutine.count", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Count of live goroutines."), + metric.WithUnit("{goroutine}"), + }, opt...)..., + ) + if err != nil { + return GoroutineCount{noop.Int64ObservableUpDownCounter{}}, err + } + return GoroutineCount{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m GoroutineCount) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (GoroutineCount) Name() string { + return "go.goroutine.count" +} + +// Unit returns the semantic convention unit of the instrument +func (GoroutineCount) Unit() string { + return "{goroutine}" +} + +// Description returns the semantic convention description of the instrument +func (GoroutineCount) Description() string { + return "Count of live goroutines." +} + +// MemoryAllocated is an instrument used to record metric values conforming to +// the "go.memory.allocated" semantic conventions. It represents the memory +// allocated to the heap by the application. +type MemoryAllocated struct { + metric.Int64ObservableCounter +} + +// NewMemoryAllocated returns a new MemoryAllocated instrument. +func NewMemoryAllocated( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (MemoryAllocated, error) { + // Check if the meter is nil. + if m == nil { + return MemoryAllocated{noop.Int64ObservableCounter{}}, nil + } + + i, err := m.Int64ObservableCounter( + "go.memory.allocated", + append([]metric.Int64ObservableCounterOption{ + metric.WithDescription("Memory allocated to the heap by the application."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return MemoryAllocated{noop.Int64ObservableCounter{}}, err + } + return MemoryAllocated{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m MemoryAllocated) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (MemoryAllocated) Name() string { + return "go.memory.allocated" +} + +// Unit returns the semantic convention unit of the instrument +func (MemoryAllocated) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (MemoryAllocated) Description() string { + return "Memory allocated to the heap by the application." +} + +// MemoryAllocations is an instrument used to record metric values conforming to +// the "go.memory.allocations" semantic conventions. It represents the count of +// allocations to the heap by the application. +type MemoryAllocations struct { + metric.Int64ObservableCounter +} + +// NewMemoryAllocations returns a new MemoryAllocations instrument. +func NewMemoryAllocations( + m metric.Meter, + opt ...metric.Int64ObservableCounterOption, +) (MemoryAllocations, error) { + // Check if the meter is nil. + if m == nil { + return MemoryAllocations{noop.Int64ObservableCounter{}}, nil + } + + i, err := m.Int64ObservableCounter( + "go.memory.allocations", + append([]metric.Int64ObservableCounterOption{ + metric.WithDescription("Count of allocations to the heap by the application."), + metric.WithUnit("{allocation}"), + }, opt...)..., + ) + if err != nil { + return MemoryAllocations{noop.Int64ObservableCounter{}}, err + } + return MemoryAllocations{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m MemoryAllocations) Inst() metric.Int64ObservableCounter { + return m.Int64ObservableCounter +} + +// Name returns the semantic convention name of the instrument. +func (MemoryAllocations) Name() string { + return "go.memory.allocations" +} + +// Unit returns the semantic convention unit of the instrument +func (MemoryAllocations) Unit() string { + return "{allocation}" +} + +// Description returns the semantic convention description of the instrument +func (MemoryAllocations) Description() string { + return "Count of allocations to the heap by the application." +} + +// MemoryGCGoal is an instrument used to record metric values conforming to the +// "go.memory.gc.goal" semantic conventions. It represents the heap size target +// for the end of the GC cycle. +type MemoryGCGoal struct { + metric.Int64ObservableUpDownCounter +} + +// NewMemoryGCGoal returns a new MemoryGCGoal instrument. +func NewMemoryGCGoal( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (MemoryGCGoal, error) { + // Check if the meter is nil. + if m == nil { + return MemoryGCGoal{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.memory.gc.goal", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Heap size target for the end of the GC cycle."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return MemoryGCGoal{noop.Int64ObservableUpDownCounter{}}, err + } + return MemoryGCGoal{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m MemoryGCGoal) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (MemoryGCGoal) Name() string { + return "go.memory.gc.goal" +} + +// Unit returns the semantic convention unit of the instrument +func (MemoryGCGoal) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (MemoryGCGoal) Description() string { + return "Heap size target for the end of the GC cycle." +} + +// MemoryLimit is an instrument used to record metric values conforming to the +// "go.memory.limit" semantic conventions. It represents the go runtime memory +// limit configured by the user, if a limit exists. +type MemoryLimit struct { + metric.Int64ObservableUpDownCounter +} + +// NewMemoryLimit returns a new MemoryLimit instrument. +func NewMemoryLimit( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (MemoryLimit, error) { + // Check if the meter is nil. + if m == nil { + return MemoryLimit{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.memory.limit", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Go runtime memory limit configured by the user, if a limit exists."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return MemoryLimit{noop.Int64ObservableUpDownCounter{}}, err + } + return MemoryLimit{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m MemoryLimit) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (MemoryLimit) Name() string { + return "go.memory.limit" +} + +// Unit returns the semantic convention unit of the instrument +func (MemoryLimit) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (MemoryLimit) Description() string { + return "Go runtime memory limit configured by the user, if a limit exists." +} + +// MemoryUsed is an instrument used to record metric values conforming to the +// "go.memory.used" semantic conventions. It represents the memory used by the Go +// runtime. +type MemoryUsed struct { + metric.Int64ObservableUpDownCounter +} + +// NewMemoryUsed returns a new MemoryUsed instrument. +func NewMemoryUsed( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (MemoryUsed, error) { + // Check if the meter is nil. + if m == nil { + return MemoryUsed{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.memory.used", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("Memory used by the Go runtime."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return MemoryUsed{noop.Int64ObservableUpDownCounter{}}, err + } + return MemoryUsed{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m MemoryUsed) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (MemoryUsed) Name() string { + return "go.memory.used" +} + +// Unit returns the semantic convention unit of the instrument +func (MemoryUsed) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (MemoryUsed) Description() string { + return "Memory used by the Go runtime." +} + +// AttrMemoryType returns an optional attribute for the "go.memory.type" semantic +// convention. It represents the type of memory. +func (MemoryUsed) AttrMemoryType(val MemoryTypeAttr) attribute.KeyValue { + return attribute.String("go.memory.type", string(val)) +} + +// ProcessorLimit is an instrument used to record metric values conforming to the +// "go.processor.limit" semantic conventions. It represents the number of OS +// threads that can execute user-level Go code simultaneously. +type ProcessorLimit struct { + metric.Int64ObservableUpDownCounter +} + +// NewProcessorLimit returns a new ProcessorLimit instrument. +func NewProcessorLimit( + m metric.Meter, + opt ...metric.Int64ObservableUpDownCounterOption, +) (ProcessorLimit, error) { + // Check if the meter is nil. + if m == nil { + return ProcessorLimit{noop.Int64ObservableUpDownCounter{}}, nil + } + + i, err := m.Int64ObservableUpDownCounter( + "go.processor.limit", + append([]metric.Int64ObservableUpDownCounterOption{ + metric.WithDescription("The number of OS threads that can execute user-level Go code simultaneously."), + metric.WithUnit("{thread}"), + }, opt...)..., + ) + if err != nil { + return ProcessorLimit{noop.Int64ObservableUpDownCounter{}}, err + } + return ProcessorLimit{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ProcessorLimit) Inst() metric.Int64ObservableUpDownCounter { + return m.Int64ObservableUpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ProcessorLimit) Name() string { + return "go.processor.limit" +} + +// Unit returns the semantic convention unit of the instrument +func (ProcessorLimit) Unit() string { + return "{thread}" +} + +// Description returns the semantic convention description of the instrument +func (ProcessorLimit) Description() string { + return "The number of OS threads that can execute user-level Go code simultaneously." +} + +// ScheduleDuration is an instrument used to record metric values conforming to +// the "go.schedule.duration" semantic conventions. It represents the time +// goroutines have spent in the scheduler in a runnable state before actually +// running. +type ScheduleDuration struct { + metric.Float64Histogram +} + +// NewScheduleDuration returns a new ScheduleDuration instrument. +func NewScheduleDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ScheduleDuration, error) { + // Check if the meter is nil. + if m == nil { + return ScheduleDuration{noop.Float64Histogram{}}, nil + } + + i, err := m.Float64Histogram( + "go.schedule.duration", + append([]metric.Float64HistogramOption{ + metric.WithDescription("The time goroutines have spent in the scheduler in a runnable state before actually running."), + metric.WithUnit("s"), + }, opt...)..., + ) + if err != nil { + return ScheduleDuration{noop.Float64Histogram{}}, err + } + return ScheduleDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ScheduleDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ScheduleDuration) Name() string { + return "go.schedule.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ScheduleDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ScheduleDuration) Description() string { + return "The time goroutines have spent in the scheduler in a runnable state before actually running." +} + +// Record records val to the current distribution. +// +// Computed from `/sched/latencies:seconds`. Bucket boundaries are provided by +// the runtime, and are subject to change. +func (m ScheduleDuration) Record(ctx context.Context, val float64, attrs ...attribute.KeyValue) { + if len(attrs) == 0 { + m.Float64Histogram.Record(ctx, val) + } + + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append(*o, metric.WithAttributes(attrs...)) + m.Float64Histogram.Record(ctx, val, *o...) +} \ No newline at end of file diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/httpconv/metric.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/httpconv/metric.go new file mode 100644 index 0000000000..79843adbb5 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/httpconv/metric.go @@ -0,0 +1,1418 @@ +// Code generated from semantic convention specification. DO NOT EDIT. + +// Package httpconv provides types and functionality for OpenTelemetry semantic +// conventions in the "http" namespace. +package httpconv + +import ( + "context" + "sync" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/metric" + "go.opentelemetry.io/otel/metric/noop" +) + +var ( + addOptPool = &sync.Pool{New: func() any { return &[]metric.AddOption{} }} + recOptPool = &sync.Pool{New: func() any { return &[]metric.RecordOption{} }} +) + +// ErrorTypeAttr is an attribute conforming to the error.type semantic +// conventions. It represents the describes a class of error the operation ended +// with. +type ErrorTypeAttr string + +var ( + // ErrorTypeOther is a fallback error value to be used when the instrumentation + // doesn't define a custom value. + ErrorTypeOther ErrorTypeAttr = "_OTHER" +) + +// ConnectionStateAttr is an attribute conforming to the http.connection.state +// semantic conventions. It represents the state of the HTTP connection in the +// HTTP connection pool. +type ConnectionStateAttr string + +var ( + // ConnectionStateActive is the active state. + ConnectionStateActive ConnectionStateAttr = "active" + // ConnectionStateIdle is the idle state. + ConnectionStateIdle ConnectionStateAttr = "idle" +) + +// RequestMethodAttr is an attribute conforming to the http.request.method +// semantic conventions. It represents the HTTP request method. +type RequestMethodAttr string + +var ( + // RequestMethodConnect is the CONNECT method. + RequestMethodConnect RequestMethodAttr = "CONNECT" + // RequestMethodDelete is the DELETE method. + RequestMethodDelete RequestMethodAttr = "DELETE" + // RequestMethodGet is the GET method. + RequestMethodGet RequestMethodAttr = "GET" + // RequestMethodHead is the HEAD method. + RequestMethodHead RequestMethodAttr = "HEAD" + // RequestMethodOptions is the OPTIONS method. + RequestMethodOptions RequestMethodAttr = "OPTIONS" + // RequestMethodPatch is the PATCH method. + RequestMethodPatch RequestMethodAttr = "PATCH" + // RequestMethodPost is the POST method. + RequestMethodPost RequestMethodAttr = "POST" + // RequestMethodPut is the PUT method. + RequestMethodPut RequestMethodAttr = "PUT" + // RequestMethodTrace is the TRACE method. + RequestMethodTrace RequestMethodAttr = "TRACE" + // RequestMethodOther is the any HTTP method that the instrumentation has no + // prior knowledge of. + RequestMethodOther RequestMethodAttr = "_OTHER" +) + +// UserAgentSyntheticTypeAttr is an attribute conforming to the +// user_agent.synthetic.type semantic conventions. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +type UserAgentSyntheticTypeAttr string + +var ( + // UserAgentSyntheticTypeBot is the bot source. + UserAgentSyntheticTypeBot UserAgentSyntheticTypeAttr = "bot" + // UserAgentSyntheticTypeTest is the synthetic test source. + UserAgentSyntheticTypeTest UserAgentSyntheticTypeAttr = "test" +) + +// ClientActiveRequests is an instrument used to record metric values conforming +// to the "http.client.active_requests" semantic conventions. It represents the +// number of active HTTP requests. +type ClientActiveRequests struct { + metric.Int64UpDownCounter +} + +// NewClientActiveRequests returns a new ClientActiveRequests instrument. +func NewClientActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + i, err := m.Int64UpDownCounter( + "http.client.active_requests", + append([]metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP requests."), + metric.WithUnit("{request}"), + }, opt...)..., + ) + if err != nil { + return ClientActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ClientActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientActiveRequests) Name() string { + return "http.client.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ClientActiveRequests) Description() string { + return "Number of active HTTP requests." +} + +// Add adds incr to the existing count. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +func (m ClientActiveRequests) Add( + ctx context.Context, + incr int64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientActiveRequests) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrRequestMethod returns an optional attribute for the "http.request.method" +// semantic convention. It represents the HTTP request method. +func (ClientActiveRequests) AttrRequestMethod(val RequestMethodAttr) attribute.KeyValue { + return attribute.String("http.request.method", string(val)) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientActiveRequests) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientConnectionDuration is an instrument used to record metric values +// conforming to the "http.client.connection.duration" semantic conventions. It +// represents the duration of the successfully established outbound HTTP +// connections. +type ClientConnectionDuration struct { + metric.Float64Histogram +} + +// NewClientConnectionDuration returns a new ClientConnectionDuration instrument. +func NewClientConnectionDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientConnectionDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, nil + } + + i, err := m.Float64Histogram( + "http.client.connection.duration", + append([]metric.Float64HistogramOption{ + metric.WithDescription("The duration of the successfully established outbound HTTP connections."), + metric.WithUnit("s"), + }, opt...)..., + ) + if err != nil { + return ClientConnectionDuration{noop.Float64Histogram{}}, err + } + return ClientConnectionDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientConnectionDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientConnectionDuration) Name() string { + return "http.client.connection.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientConnectionDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientConnectionDuration) Description() string { + return "The duration of the successfully established outbound HTTP connections." +} + +// Record records val to the current distribution. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +func (m ClientConnectionDuration) Record( + ctx context.Context, + val float64, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientConnectionDuration) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientConnectionDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientConnectionDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientOpenConnections is an instrument used to record metric values conforming +// to the "http.client.open_connections" semantic conventions. It represents the +// number of outbound HTTP connections that are currently active or idle on the +// client. +type ClientOpenConnections struct { + metric.Int64UpDownCounter +} + +// NewClientOpenConnections returns a new ClientOpenConnections instrument. +func NewClientOpenConnections( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ClientOpenConnections, error) { + // Check if the meter is nil. + if m == nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, nil + } + + i, err := m.Int64UpDownCounter( + "http.client.open_connections", + append([]metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of outbound HTTP connections that are currently active or idle on the client."), + metric.WithUnit("{connection}"), + }, opt...)..., + ) + if err != nil { + return ClientOpenConnections{noop.Int64UpDownCounter{}}, err + } + return ClientOpenConnections{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientOpenConnections) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ClientOpenConnections) Name() string { + return "http.client.open_connections" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientOpenConnections) Unit() string { + return "{connection}" +} + +// Description returns the semantic convention description of the instrument +func (ClientOpenConnections) Description() string { + return "Number of outbound HTTP connections that are currently active or idle on the client." +} + +// Add adds incr to the existing count. +// +// The connectionState is the state of the HTTP connection in the HTTP connection +// pool. +// +// The serverAddress is the server domain name if available without reverse DNS +// lookup; otherwise, IP address or Unix domain socket name. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +func (m ClientOpenConnections) Add( + ctx context.Context, + incr int64, + connectionState ConnectionStateAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.connection.state", string(connectionState)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrNetworkPeerAddress returns an optional attribute for the +// "network.peer.address" semantic convention. It represents the peer address of +// the network connection - IP address or Unix domain socket name. +func (ClientOpenConnections) AttrNetworkPeerAddress(val string) attribute.KeyValue { + return attribute.String("network.peer.address", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientOpenConnections) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientOpenConnections) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestBodySize is an instrument used to record metric values conforming +// to the "http.client.request.body.size" semantic conventions. It represents the +// size of HTTP client request bodies. +type ClientRequestBodySize struct { + metric.Int64Histogram +} + +// NewClientRequestBodySize returns a new ClientRequestBodySize instrument. +func NewClientRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, nil + } + + i, err := m.Int64Histogram( + "http.client.request.body.size", + append([]metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client request bodies."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return ClientRequestBodySize{noop.Int64Histogram{}}, err + } + return ClientRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestBodySize) Name() string { + return "http.client.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestBodySize) Description() string { + return "Size of HTTP client request bodies." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the host identifier of the ["URI origin"] HTTP request is +// sent to. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ClientRequestDuration is an instrument used to record metric values conforming +// to the "http.client.request.duration" semantic conventions. It represents the +// duration of HTTP client requests. +type ClientRequestDuration struct { + metric.Float64Histogram +} + +// NewClientRequestDuration returns a new ClientRequestDuration instrument. +func NewClientRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ClientRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ClientRequestDuration{noop.Float64Histogram{}}, nil + } + + i, err := m.Float64Histogram( + "http.client.request.duration", + append([]metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP client requests."), + metric.WithUnit("s"), + }, opt...)..., + ) + if err != nil { + return ClientRequestDuration{noop.Float64Histogram{}}, err + } + return ClientRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientRequestDuration) Name() string { + return "http.client.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ClientRequestDuration) Description() string { + return "Duration of HTTP client requests." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the host identifier of the ["URI origin"] HTTP request is +// sent to. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +func (m ClientRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientRequestDuration) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientRequestDuration) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// ClientResponseBodySize is an instrument used to record metric values +// conforming to the "http.client.response.body.size" semantic conventions. It +// represents the size of HTTP client response bodies. +type ClientResponseBodySize struct { + metric.Int64Histogram +} + +// NewClientResponseBodySize returns a new ClientResponseBodySize instrument. +func NewClientResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ClientResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, nil + } + + i, err := m.Int64Histogram( + "http.client.response.body.size", + append([]metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP client response bodies."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return ClientResponseBodySize{noop.Int64Histogram{}}, err + } + return ClientResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ClientResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ClientResponseBodySize) Name() string { + return "http.client.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ClientResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ClientResponseBodySize) Description() string { + return "Size of HTTP client response bodies." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The serverAddress is the host identifier of the ["URI origin"] HTTP request is +// sent to. +// +// The serverPort is the port identifier of the ["URI origin"] HTTP request is +// sent to. +// +// All additional attrs passed are included in the recorded value. +// +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +// ["URI origin"]: https://www.rfc-editor.org/rfc/rfc9110.html#name-uri-origin +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ClientResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + serverAddress string, + serverPort int, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("server.address", serverAddress), + attribute.Int("server.port", serverPort), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ClientResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ClientResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ClientResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrURLTemplate returns an optional attribute for the "url.template" semantic +// convention. It represents the low-cardinality template of an +// [absolute path reference]. +// +// [absolute path reference]: https://www.rfc-editor.org/rfc/rfc3986#section-4.2 +func (ClientResponseBodySize) AttrURLTemplate(val string) attribute.KeyValue { + return attribute.String("url.template", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ClientResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrURLScheme returns an optional attribute for the "url.scheme" semantic +// convention. It represents the [URI scheme] component identifying the used +// protocol. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (ClientResponseBodySize) AttrURLScheme(val string) attribute.KeyValue { + return attribute.String("url.scheme", val) +} + +// ServerActiveRequests is an instrument used to record metric values conforming +// to the "http.server.active_requests" semantic conventions. It represents the +// number of active HTTP server requests. +type ServerActiveRequests struct { + metric.Int64UpDownCounter +} + +// NewServerActiveRequests returns a new ServerActiveRequests instrument. +func NewServerActiveRequests( + m metric.Meter, + opt ...metric.Int64UpDownCounterOption, +) (ServerActiveRequests, error) { + // Check if the meter is nil. + if m == nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, nil + } + + i, err := m.Int64UpDownCounter( + "http.server.active_requests", + append([]metric.Int64UpDownCounterOption{ + metric.WithDescription("Number of active HTTP server requests."), + metric.WithUnit("{request}"), + }, opt...)..., + ) + if err != nil { + return ServerActiveRequests{noop.Int64UpDownCounter{}}, err + } + return ServerActiveRequests{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerActiveRequests) Inst() metric.Int64UpDownCounter { + return m.Int64UpDownCounter +} + +// Name returns the semantic convention name of the instrument. +func (ServerActiveRequests) Name() string { + return "http.server.active_requests" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerActiveRequests) Unit() string { + return "{request}" +} + +// Description returns the semantic convention description of the instrument +func (ServerActiveRequests) Description() string { + return "Number of active HTTP server requests." +} + +// Add adds incr to the existing count. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerActiveRequests) Add( + ctx context.Context, + incr int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + o := addOptPool.Get().(*[]metric.AddOption) + defer func() { + *o = (*o)[:0] + addOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64UpDownCounter.Add(ctx, incr, *o...) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerActiveRequests) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerActiveRequests) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// ServerRequestBodySize is an instrument used to record metric values conforming +// to the "http.server.request.body.size" semantic conventions. It represents the +// size of HTTP server request bodies. +type ServerRequestBodySize struct { + metric.Int64Histogram +} + +// NewServerRequestBodySize returns a new ServerRequestBodySize instrument. +func NewServerRequestBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerRequestBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, nil + } + + i, err := m.Int64Histogram( + "http.server.request.body.size", + append([]metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server request bodies."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return ServerRequestBodySize{noop.Int64Histogram{}}, err + } + return ServerRequestBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestBodySize) Name() string { + return "http.server.request.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestBodySize) Description() string { + return "Size of HTTP server request bodies." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the request payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerRequestBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route, that is, the path template in the +// format used by the respective server framework. +func (ServerRequestBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerRequestDuration is an instrument used to record metric values conforming +// to the "http.server.request.duration" semantic conventions. It represents the +// duration of HTTP server requests. +type ServerRequestDuration struct { + metric.Float64Histogram +} + +// NewServerRequestDuration returns a new ServerRequestDuration instrument. +func NewServerRequestDuration( + m metric.Meter, + opt ...metric.Float64HistogramOption, +) (ServerRequestDuration, error) { + // Check if the meter is nil. + if m == nil { + return ServerRequestDuration{noop.Float64Histogram{}}, nil + } + + i, err := m.Float64Histogram( + "http.server.request.duration", + append([]metric.Float64HistogramOption{ + metric.WithDescription("Duration of HTTP server requests."), + metric.WithUnit("s"), + }, opt...)..., + ) + if err != nil { + return ServerRequestDuration{noop.Float64Histogram{}}, err + } + return ServerRequestDuration{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerRequestDuration) Inst() metric.Float64Histogram { + return m.Float64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerRequestDuration) Name() string { + return "http.server.request.duration" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerRequestDuration) Unit() string { + return "s" +} + +// Description returns the semantic convention description of the instrument +func (ServerRequestDuration) Description() string { + return "Duration of HTTP server requests." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +func (m ServerRequestDuration) Record( + ctx context.Context, + val float64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Float64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerRequestDuration) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerRequestDuration) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route, that is, the path template in the +// format used by the respective server framework. +func (ServerRequestDuration) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerRequestDuration) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerRequestDuration) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerRequestDuration) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerRequestDuration) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerRequestDuration) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} + +// ServerResponseBodySize is an instrument used to record metric values +// conforming to the "http.server.response.body.size" semantic conventions. It +// represents the size of HTTP server response bodies. +type ServerResponseBodySize struct { + metric.Int64Histogram +} + +// NewServerResponseBodySize returns a new ServerResponseBodySize instrument. +func NewServerResponseBodySize( + m metric.Meter, + opt ...metric.Int64HistogramOption, +) (ServerResponseBodySize, error) { + // Check if the meter is nil. + if m == nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, nil + } + + i, err := m.Int64Histogram( + "http.server.response.body.size", + append([]metric.Int64HistogramOption{ + metric.WithDescription("Size of HTTP server response bodies."), + metric.WithUnit("By"), + }, opt...)..., + ) + if err != nil { + return ServerResponseBodySize{noop.Int64Histogram{}}, err + } + return ServerResponseBodySize{i}, nil +} + +// Inst returns the underlying metric instrument. +func (m ServerResponseBodySize) Inst() metric.Int64Histogram { + return m.Int64Histogram +} + +// Name returns the semantic convention name of the instrument. +func (ServerResponseBodySize) Name() string { + return "http.server.response.body.size" +} + +// Unit returns the semantic convention unit of the instrument +func (ServerResponseBodySize) Unit() string { + return "By" +} + +// Description returns the semantic convention description of the instrument +func (ServerResponseBodySize) Description() string { + return "Size of HTTP server response bodies." +} + +// Record records val to the current distribution. +// +// The requestMethod is the HTTP request method. +// +// The urlScheme is the the [URI scheme] component identifying the used protocol. +// +// All additional attrs passed are included in the recorded value. +// +// [URI scheme]: https://www.rfc-editor.org/rfc/rfc3986#section-3.1 +// +// The size of the response payload body in bytes. This is the number of bytes +// transferred excluding headers and is often, but not always, present as the +// [Content-Length] header. For requests using transport encoding, this should be +// the compressed size. +// +// [Content-Length]: https://www.rfc-editor.org/rfc/rfc9110.html#field.content-length +func (m ServerResponseBodySize) Record( + ctx context.Context, + val int64, + requestMethod RequestMethodAttr, + urlScheme string, + attrs ...attribute.KeyValue, +) { + o := recOptPool.Get().(*[]metric.RecordOption) + defer func() { + *o = (*o)[:0] + recOptPool.Put(o) + }() + + *o = append( + *o, + metric.WithAttributes( + append( + attrs, + attribute.String("http.request.method", string(requestMethod)), + attribute.String("url.scheme", urlScheme), + )..., + ), + ) + + m.Int64Histogram.Record(ctx, val, *o...) +} + +// AttrErrorType returns an optional attribute for the "error.type" semantic +// convention. It represents the describes a class of error the operation ended +// with. +func (ServerResponseBodySize) AttrErrorType(val ErrorTypeAttr) attribute.KeyValue { + return attribute.String("error.type", string(val)) +} + +// AttrResponseStatusCode returns an optional attribute for the +// "http.response.status_code" semantic convention. It represents the +// [HTTP response status code]. +// +// [HTTP response status code]: https://tools.ietf.org/html/rfc7231#section-6 +func (ServerResponseBodySize) AttrResponseStatusCode(val int) attribute.KeyValue { + return attribute.Int("http.response.status_code", val) +} + +// AttrRoute returns an optional attribute for the "http.route" semantic +// convention. It represents the matched route, that is, the path template in the +// format used by the respective server framework. +func (ServerResponseBodySize) AttrRoute(val string) attribute.KeyValue { + return attribute.String("http.route", val) +} + +// AttrNetworkProtocolName returns an optional attribute for the +// "network.protocol.name" semantic convention. It represents the +// [OSI application layer] or non-OSI equivalent. +// +// [OSI application layer]: https://wikipedia.org/wiki/Application_layer +func (ServerResponseBodySize) AttrNetworkProtocolName(val string) attribute.KeyValue { + return attribute.String("network.protocol.name", val) +} + +// AttrNetworkProtocolVersion returns an optional attribute for the +// "network.protocol.version" semantic convention. It represents the actual +// version of the protocol used for network communication. +func (ServerResponseBodySize) AttrNetworkProtocolVersion(val string) attribute.KeyValue { + return attribute.String("network.protocol.version", val) +} + +// AttrServerAddress returns an optional attribute for the "server.address" +// semantic convention. It represents the name of the local HTTP server that +// received the request. +func (ServerResponseBodySize) AttrServerAddress(val string) attribute.KeyValue { + return attribute.String("server.address", val) +} + +// AttrServerPort returns an optional attribute for the "server.port" semantic +// convention. It represents the port of the local HTTP server that received the +// request. +func (ServerResponseBodySize) AttrServerPort(val int) attribute.KeyValue { + return attribute.Int("server.port", val) +} + +// AttrUserAgentSyntheticType returns an optional attribute for the +// "user_agent.synthetic.type" semantic convention. It represents the specifies +// the category of synthetic traffic, such as tests or bots. +func (ServerResponseBodySize) AttrUserAgentSyntheticType(val UserAgentSyntheticTypeAttr) attribute.KeyValue { + return attribute.String("user_agent.synthetic.type", string(val)) +} \ No newline at end of file diff --git a/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/schema.go b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/schema.go new file mode 100644 index 0000000000..3c23d45925 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/semconv/v1.34.0/schema.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package semconv // import "go.opentelemetry.io/otel/semconv/v1.34.0" + +// SchemaURL is the schema URL that matches the version of the semantic conventions +// that this package defines. Semconv packages starting from v1.4.0 must declare +// non-empty schema URL in the form https://opentelemetry.io/schemas/ +const SchemaURL = "https://opentelemetry.io/schemas/1.34.0" diff --git a/vendor/go.opentelemetry.io/otel/trace.go b/vendor/go.opentelemetry.io/otel/trace.go new file mode 100644 index 0000000000..6836c65478 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace.go @@ -0,0 +1,36 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +import ( + "go.opentelemetry.io/otel/internal/global" + "go.opentelemetry.io/otel/trace" +) + +// Tracer creates a named tracer that implements Tracer interface. +// If the name is an empty string then provider uses default name. +// +// This is short for GetTracerProvider().Tracer(name, opts...) +func Tracer(name string, opts ...trace.TracerOption) trace.Tracer { + return GetTracerProvider().Tracer(name, opts...) +} + +// GetTracerProvider returns the registered global trace provider. +// If none is registered then an instance of NoopTracerProvider is returned. +// +// Use the trace provider to create a named tracer. E.g. +// +// tracer := otel.GetTracerProvider().Tracer("example.com/foo") +// +// or +// +// tracer := otel.Tracer("example.com/foo") +func GetTracerProvider() trace.TracerProvider { + return global.TracerProvider() +} + +// SetTracerProvider registers `tp` as the global trace provider. +func SetTracerProvider(tp trace.TracerProvider) { + global.SetTracerProvider(tp) +} diff --git a/vendor/go.opentelemetry.io/otel/trace/LICENSE b/vendor/go.opentelemetry.io/otel/trace/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/otel/trace/README.md b/vendor/go.opentelemetry.io/otel/trace/README.md new file mode 100644 index 0000000000..58ccaba69b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/README.md @@ -0,0 +1,3 @@ +# Trace API + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/trace)](https://pkg.go.dev/go.opentelemetry.io/otel/trace) diff --git a/vendor/go.opentelemetry.io/otel/trace/auto.go b/vendor/go.opentelemetry.io/otel/trace/auto.go new file mode 100644 index 0000000000..f3aa398138 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/auto.go @@ -0,0 +1,662 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "context" + "encoding/json" + "fmt" + "math" + "os" + "reflect" + "runtime" + "strconv" + "strings" + "sync" + "sync/atomic" + "time" + "unicode/utf8" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + semconv "go.opentelemetry.io/otel/semconv/v1.34.0" + "go.opentelemetry.io/otel/trace/embedded" + "go.opentelemetry.io/otel/trace/internal/telemetry" +) + +// newAutoTracerProvider returns an auto-instrumentable [trace.TracerProvider]. +// If an [go.opentelemetry.io/auto.Instrumentation] is configured to instrument +// the process using the returned TracerProvider, all of the telemetry it +// produces will be processed and handled by that Instrumentation. By default, +// if no Instrumentation instruments the TracerProvider it will not generate +// any trace telemetry. +func newAutoTracerProvider() TracerProvider { return tracerProviderInstance } + +var tracerProviderInstance = new(autoTracerProvider) + +type autoTracerProvider struct{ embedded.TracerProvider } + +var _ TracerProvider = autoTracerProvider{} + +func (p autoTracerProvider) Tracer(name string, opts ...TracerOption) Tracer { + cfg := NewTracerConfig(opts...) + return autoTracer{ + name: name, + version: cfg.InstrumentationVersion(), + schemaURL: cfg.SchemaURL(), + } +} + +type autoTracer struct { + embedded.Tracer + + name, schemaURL, version string +} + +var _ Tracer = autoTracer{} + +func (t autoTracer) Start(ctx context.Context, name string, opts ...SpanStartOption) (context.Context, Span) { + var psc, sc SpanContext + sampled := true + span := new(autoSpan) + + // Ask eBPF for sampling decision and span context info. + t.start(ctx, span, &psc, &sampled, &sc) + + span.sampled.Store(sampled) + span.spanContext = sc + + ctx = ContextWithSpan(ctx, span) + + if sampled { + // Only build traces if sampled. + cfg := NewSpanStartConfig(opts...) + span.traces, span.span = t.traces(name, cfg, span.spanContext, psc) + } + + return ctx, span +} + +// Expected to be implemented in eBPF. +// +//go:noinline +func (t *autoTracer) start( + ctx context.Context, + spanPtr *autoSpan, + psc *SpanContext, + sampled *bool, + sc *SpanContext, +) { + start(ctx, spanPtr, psc, sampled, sc) +} + +// start is used for testing. +var start = func(context.Context, *autoSpan, *SpanContext, *bool, *SpanContext) {} + +func (t autoTracer) traces(name string, cfg SpanConfig, sc, psc SpanContext) (*telemetry.Traces, *telemetry.Span) { + span := &telemetry.Span{ + TraceID: telemetry.TraceID(sc.TraceID()), + SpanID: telemetry.SpanID(sc.SpanID()), + Flags: uint32(sc.TraceFlags()), + TraceState: sc.TraceState().String(), + ParentSpanID: telemetry.SpanID(psc.SpanID()), + Name: name, + Kind: spanKind(cfg.SpanKind()), + } + + span.Attrs, span.DroppedAttrs = convCappedAttrs(maxSpan.Attrs, cfg.Attributes()) + + links := cfg.Links() + if limit := maxSpan.Links; limit == 0 { + n := int64(len(links)) + if n > 0 { + span.DroppedLinks = uint32(min(n, math.MaxUint32)) // nolint: gosec // Bounds checked. + } + } else { + if limit > 0 { + n := int64(max(len(links)-limit, 0)) + span.DroppedLinks = uint32(min(n, math.MaxUint32)) // nolint: gosec // Bounds checked. + links = links[n:] + } + span.Links = convLinks(links) + } + + if t := cfg.Timestamp(); !t.IsZero() { + span.StartTime = cfg.Timestamp() + } else { + span.StartTime = time.Now() + } + + return &telemetry.Traces{ + ResourceSpans: []*telemetry.ResourceSpans{ + { + ScopeSpans: []*telemetry.ScopeSpans{ + { + Scope: &telemetry.Scope{ + Name: t.name, + Version: t.version, + }, + Spans: []*telemetry.Span{span}, + SchemaURL: t.schemaURL, + }, + }, + }, + }, + }, span +} + +func spanKind(kind SpanKind) telemetry.SpanKind { + switch kind { + case SpanKindInternal: + return telemetry.SpanKindInternal + case SpanKindServer: + return telemetry.SpanKindServer + case SpanKindClient: + return telemetry.SpanKindClient + case SpanKindProducer: + return telemetry.SpanKindProducer + case SpanKindConsumer: + return telemetry.SpanKindConsumer + } + return telemetry.SpanKind(0) // undefined. +} + +type autoSpan struct { + embedded.Span + + spanContext SpanContext + sampled atomic.Bool + + mu sync.Mutex + traces *telemetry.Traces + span *telemetry.Span +} + +func (s *autoSpan) SpanContext() SpanContext { + if s == nil { + return SpanContext{} + } + // s.spanContext is immutable, do not acquire lock s.mu. + return s.spanContext +} + +func (s *autoSpan) IsRecording() bool { + if s == nil { + return false + } + + return s.sampled.Load() +} + +func (s *autoSpan) SetStatus(c codes.Code, msg string) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + if s.span.Status == nil { + s.span.Status = new(telemetry.Status) + } + + s.span.Status.Message = msg + + switch c { + case codes.Unset: + s.span.Status.Code = telemetry.StatusCodeUnset + case codes.Error: + s.span.Status.Code = telemetry.StatusCodeError + case codes.Ok: + s.span.Status.Code = telemetry.StatusCodeOK + } +} + +func (s *autoSpan) SetAttributes(attrs ...attribute.KeyValue) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + limit := maxSpan.Attrs + if limit == 0 { + // No attributes allowed. + n := int64(len(attrs)) + if n > 0 { + s.span.DroppedAttrs += uint32(min(n, math.MaxUint32)) // nolint: gosec // Bounds checked. + } + return + } + + m := make(map[string]int) + for i, a := range s.span.Attrs { + m[a.Key] = i + } + + for _, a := range attrs { + val := convAttrValue(a.Value) + if val.Empty() { + s.span.DroppedAttrs++ + continue + } + + if idx, ok := m[string(a.Key)]; ok { + s.span.Attrs[idx] = telemetry.Attr{ + Key: string(a.Key), + Value: val, + } + } else if limit < 0 || len(s.span.Attrs) < limit { + s.span.Attrs = append(s.span.Attrs, telemetry.Attr{ + Key: string(a.Key), + Value: val, + }) + m[string(a.Key)] = len(s.span.Attrs) - 1 + } else { + s.span.DroppedAttrs++ + } + } +} + +// convCappedAttrs converts up to limit attrs into a []telemetry.Attr. The +// number of dropped attributes is also returned. +func convCappedAttrs(limit int, attrs []attribute.KeyValue) ([]telemetry.Attr, uint32) { + n := len(attrs) + if limit == 0 { + var out uint32 + if n > 0 { + out = uint32(min(int64(n), math.MaxUint32)) // nolint: gosec // Bounds checked. + } + return nil, out + } + + if limit < 0 { + // Unlimited. + return convAttrs(attrs), 0 + } + + if n < 0 { + n = 0 + } + + limit = min(n, limit) + return convAttrs(attrs[:limit]), uint32(n - limit) // nolint: gosec // Bounds checked. +} + +func convAttrs(attrs []attribute.KeyValue) []telemetry.Attr { + if len(attrs) == 0 { + // Avoid allocations if not necessary. + return nil + } + + out := make([]telemetry.Attr, 0, len(attrs)) + for _, attr := range attrs { + key := string(attr.Key) + val := convAttrValue(attr.Value) + if val.Empty() { + continue + } + out = append(out, telemetry.Attr{Key: key, Value: val}) + } + return out +} + +func convAttrValue(value attribute.Value) telemetry.Value { + switch value.Type() { + case attribute.BOOL: + return telemetry.BoolValue(value.AsBool()) + case attribute.INT64: + return telemetry.Int64Value(value.AsInt64()) + case attribute.FLOAT64: + return telemetry.Float64Value(value.AsFloat64()) + case attribute.STRING: + v := truncate(maxSpan.AttrValueLen, value.AsString()) + return telemetry.StringValue(v) + case attribute.BOOLSLICE: + slice := value.AsBoolSlice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.BoolValue(v)) + } + return telemetry.SliceValue(out...) + case attribute.INT64SLICE: + slice := value.AsInt64Slice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.Int64Value(v)) + } + return telemetry.SliceValue(out...) + case attribute.FLOAT64SLICE: + slice := value.AsFloat64Slice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + out = append(out, telemetry.Float64Value(v)) + } + return telemetry.SliceValue(out...) + case attribute.STRINGSLICE: + slice := value.AsStringSlice() + out := make([]telemetry.Value, 0, len(slice)) + for _, v := range slice { + v = truncate(maxSpan.AttrValueLen, v) + out = append(out, telemetry.StringValue(v)) + } + return telemetry.SliceValue(out...) + } + return telemetry.Value{} +} + +// truncate returns a truncated version of s such that it contains less than +// the limit number of characters. Truncation is applied by returning the limit +// number of valid characters contained in s. +// +// If limit is negative, it returns the original string. +// +// UTF-8 is supported. When truncating, all invalid characters are dropped +// before applying truncation. +// +// If s already contains less than the limit number of bytes, it is returned +// unchanged. No invalid characters are removed. +func truncate(limit int, s string) string { + // This prioritize performance in the following order based on the most + // common expected use-cases. + // + // - Short values less than the default limit (128). + // - Strings with valid encodings that exceed the limit. + // - No limit. + // - Strings with invalid encodings that exceed the limit. + if limit < 0 || len(s) <= limit { + return s + } + + // Optimistically, assume all valid UTF-8. + var b strings.Builder + count := 0 + for i, c := range s { + if c != utf8.RuneError { + count++ + if count > limit { + return s[:i] + } + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // Invalid encoding. + b.Grow(len(s) - 1) + _, _ = b.WriteString(s[:i]) + s = s[i:] + break + } + } + + // Fast-path, no invalid input. + if b.Cap() == 0 { + return s + } + + // Truncate while validating UTF-8. + for i := 0; i < len(s) && count < limit; { + c := s[i] + if c < utf8.RuneSelf { + // Optimization for single byte runes (common case). + _ = b.WriteByte(c) + i++ + count++ + continue + } + + _, size := utf8.DecodeRuneInString(s[i:]) + if size == 1 { + // We checked for all 1-byte runes above, this is a RuneError. + i++ + continue + } + + _, _ = b.WriteString(s[i : i+size]) + i += size + count++ + } + + return b.String() +} + +func (s *autoSpan) End(opts ...SpanEndOption) { + if s == nil || !s.sampled.Swap(false) { + return + } + + // s.end exists so the lock (s.mu) is not held while s.ended is called. + s.ended(s.end(opts)) +} + +func (s *autoSpan) end(opts []SpanEndOption) []byte { + s.mu.Lock() + defer s.mu.Unlock() + + cfg := NewSpanEndConfig(opts...) + if t := cfg.Timestamp(); !t.IsZero() { + s.span.EndTime = cfg.Timestamp() + } else { + s.span.EndTime = time.Now() + } + + b, _ := json.Marshal(s.traces) // TODO: do not ignore this error. + return b +} + +// Expected to be implemented in eBPF. +// +//go:noinline +func (*autoSpan) ended(buf []byte) { ended(buf) } + +// ended is used for testing. +var ended = func([]byte) {} + +func (s *autoSpan) RecordError(err error, opts ...EventOption) { + if s == nil || err == nil || !s.sampled.Load() { + return + } + + cfg := NewEventConfig(opts...) + + attrs := cfg.Attributes() + attrs = append(attrs, + semconv.ExceptionType(typeStr(err)), + semconv.ExceptionMessage(err.Error()), + ) + if cfg.StackTrace() { + buf := make([]byte, 2048) + n := runtime.Stack(buf, false) + attrs = append(attrs, semconv.ExceptionStacktrace(string(buf[0:n]))) + } + + s.mu.Lock() + defer s.mu.Unlock() + + s.addEvent(semconv.ExceptionEventName, cfg.Timestamp(), attrs) +} + +func typeStr(i any) string { + t := reflect.TypeOf(i) + if t.PkgPath() == "" && t.Name() == "" { + // Likely a builtin type. + return t.String() + } + return fmt.Sprintf("%s.%s", t.PkgPath(), t.Name()) +} + +func (s *autoSpan) AddEvent(name string, opts ...EventOption) { + if s == nil || !s.sampled.Load() { + return + } + + cfg := NewEventConfig(opts...) + + s.mu.Lock() + defer s.mu.Unlock() + + s.addEvent(name, cfg.Timestamp(), cfg.Attributes()) +} + +// addEvent adds an event with name and attrs at tStamp to the span. The span +// lock (s.mu) needs to be held by the caller. +func (s *autoSpan) addEvent(name string, tStamp time.Time, attrs []attribute.KeyValue) { + limit := maxSpan.Events + + if limit == 0 { + s.span.DroppedEvents++ + return + } + + if limit > 0 && len(s.span.Events) == limit { + // Drop head while avoiding allocation of more capacity. + copy(s.span.Events[:limit-1], s.span.Events[1:]) + s.span.Events = s.span.Events[:limit-1] + s.span.DroppedEvents++ + } + + e := &telemetry.SpanEvent{Time: tStamp, Name: name} + e.Attrs, e.DroppedAttrs = convCappedAttrs(maxSpan.EventAttrs, attrs) + + s.span.Events = append(s.span.Events, e) +} + +func (s *autoSpan) AddLink(link Link) { + if s == nil || !s.sampled.Load() { + return + } + + l := maxSpan.Links + + s.mu.Lock() + defer s.mu.Unlock() + + if l == 0 { + s.span.DroppedLinks++ + return + } + + if l > 0 && len(s.span.Links) == l { + // Drop head while avoiding allocation of more capacity. + copy(s.span.Links[:l-1], s.span.Links[1:]) + s.span.Links = s.span.Links[:l-1] + s.span.DroppedLinks++ + } + + s.span.Links = append(s.span.Links, convLink(link)) +} + +func convLinks(links []Link) []*telemetry.SpanLink { + out := make([]*telemetry.SpanLink, 0, len(links)) + for _, link := range links { + out = append(out, convLink(link)) + } + return out +} + +func convLink(link Link) *telemetry.SpanLink { + l := &telemetry.SpanLink{ + TraceID: telemetry.TraceID(link.SpanContext.TraceID()), + SpanID: telemetry.SpanID(link.SpanContext.SpanID()), + TraceState: link.SpanContext.TraceState().String(), + Flags: uint32(link.SpanContext.TraceFlags()), + } + l.Attrs, l.DroppedAttrs = convCappedAttrs(maxSpan.LinkAttrs, link.Attributes) + + return l +} + +func (s *autoSpan) SetName(name string) { + if s == nil || !s.sampled.Load() { + return + } + + s.mu.Lock() + defer s.mu.Unlock() + + s.span.Name = name +} + +func (*autoSpan) TracerProvider() TracerProvider { return newAutoTracerProvider() } + +// maxSpan are the span limits resolved during startup. +var maxSpan = newSpanLimits() + +type spanLimits struct { + // Attrs is the number of allowed attributes for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT key if it exists. Otherwise, the + // environment variable value for OTEL_ATTRIBUTE_COUNT_LIMIT, or 128 if + // that is not set, is used. + Attrs int + // AttrValueLen is the maximum attribute value length allowed for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT key if it exists. Otherwise, the + // environment variable value for OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT, or -1 + // if that is not set, is used. + AttrValueLen int + // Events is the number of allowed events for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_EVENT_COUNT_LIMIT key, or 128 is used if that is not set. + Events int + // EventAttrs is the number of allowed attributes for a span event. + // + // The is resolved from the environment variable value for the + // OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT key, or 128 is used if that is not set. + EventAttrs int + // Links is the number of allowed Links for a span. + // + // This is resolved from the environment variable value for the + // OTEL_SPAN_LINK_COUNT_LIMIT, or 128 is used if that is not set. + Links int + // LinkAttrs is the number of allowed attributes for a span link. + // + // This is resolved from the environment variable value for the + // OTEL_LINK_ATTRIBUTE_COUNT_LIMIT, or 128 is used if that is not set. + LinkAttrs int +} + +func newSpanLimits() spanLimits { + return spanLimits{ + Attrs: firstEnv( + 128, + "OTEL_SPAN_ATTRIBUTE_COUNT_LIMIT", + "OTEL_ATTRIBUTE_COUNT_LIMIT", + ), + AttrValueLen: firstEnv( + -1, // Unlimited. + "OTEL_SPAN_ATTRIBUTE_VALUE_LENGTH_LIMIT", + "OTEL_ATTRIBUTE_VALUE_LENGTH_LIMIT", + ), + Events: firstEnv(128, "OTEL_SPAN_EVENT_COUNT_LIMIT"), + EventAttrs: firstEnv(128, "OTEL_EVENT_ATTRIBUTE_COUNT_LIMIT"), + Links: firstEnv(128, "OTEL_SPAN_LINK_COUNT_LIMIT"), + LinkAttrs: firstEnv(128, "OTEL_LINK_ATTRIBUTE_COUNT_LIMIT"), + } +} + +// firstEnv returns the parsed integer value of the first matching environment +// variable from keys. The defaultVal is returned if the value is not an +// integer or no match is found. +func firstEnv(defaultVal int, keys ...string) int { + for _, key := range keys { + strV := os.Getenv(key) + if strV == "" { + continue + } + + v, err := strconv.Atoi(strV) + if err == nil { + return v + } + // Ignore invalid environment variable. + } + + return defaultVal +} diff --git a/vendor/go.opentelemetry.io/otel/trace/config.go b/vendor/go.opentelemetry.io/otel/trace/config.go new file mode 100644 index 0000000000..9c0b720a4d --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/config.go @@ -0,0 +1,323 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "time" + + "go.opentelemetry.io/otel/attribute" +) + +// TracerConfig is a group of options for a Tracer. +type TracerConfig struct { + instrumentationVersion string + // Schema URL of the telemetry emitted by the Tracer. + schemaURL string + attrs attribute.Set +} + +// InstrumentationVersion returns the version of the library providing instrumentation. +func (t *TracerConfig) InstrumentationVersion() string { + return t.instrumentationVersion +} + +// InstrumentationAttributes returns the attributes associated with the library +// providing instrumentation. +func (t *TracerConfig) InstrumentationAttributes() attribute.Set { + return t.attrs +} + +// SchemaURL returns the Schema URL of the telemetry emitted by the Tracer. +func (t *TracerConfig) SchemaURL() string { + return t.schemaURL +} + +// NewTracerConfig applies all the options to a returned TracerConfig. +func NewTracerConfig(options ...TracerOption) TracerConfig { + var config TracerConfig + for _, option := range options { + config = option.apply(config) + } + return config +} + +// TracerOption applies an option to a TracerConfig. +type TracerOption interface { + apply(TracerConfig) TracerConfig +} + +type tracerOptionFunc func(TracerConfig) TracerConfig + +func (fn tracerOptionFunc) apply(cfg TracerConfig) TracerConfig { + return fn(cfg) +} + +// SpanConfig is a group of options for a Span. +type SpanConfig struct { + attributes []attribute.KeyValue + timestamp time.Time + links []Link + newRoot bool + spanKind SpanKind + stackTrace bool +} + +// Attributes describe the associated qualities of a Span. +func (cfg *SpanConfig) Attributes() []attribute.KeyValue { + return cfg.attributes +} + +// Timestamp is a time in a Span life-cycle. +func (cfg *SpanConfig) Timestamp() time.Time { + return cfg.timestamp +} + +// StackTrace checks whether stack trace capturing is enabled. +func (cfg *SpanConfig) StackTrace() bool { + return cfg.stackTrace +} + +// Links are the associations a Span has with other Spans. +func (cfg *SpanConfig) Links() []Link { + return cfg.links +} + +// NewRoot identifies a Span as the root Span for a new trace. This is +// commonly used when an existing trace crosses trust boundaries and the +// remote parent span context should be ignored for security. +func (cfg *SpanConfig) NewRoot() bool { + return cfg.newRoot +} + +// SpanKind is the role a Span has in a trace. +func (cfg *SpanConfig) SpanKind() SpanKind { + return cfg.spanKind +} + +// NewSpanStartConfig applies all the options to a returned SpanConfig. +// No validation is performed on the returned SpanConfig (e.g. no uniqueness +// checking or bounding of data), it is left to the SDK to perform this +// action. +func NewSpanStartConfig(options ...SpanStartOption) SpanConfig { + var c SpanConfig + for _, option := range options { + c = option.applySpanStart(c) + } + return c +} + +// NewSpanEndConfig applies all the options to a returned SpanConfig. +// No validation is performed on the returned SpanConfig (e.g. no uniqueness +// checking or bounding of data), it is left to the SDK to perform this +// action. +func NewSpanEndConfig(options ...SpanEndOption) SpanConfig { + var c SpanConfig + for _, option := range options { + c = option.applySpanEnd(c) + } + return c +} + +// SpanStartOption applies an option to a SpanConfig. These options are applicable +// only when the span is created. +type SpanStartOption interface { + applySpanStart(SpanConfig) SpanConfig +} + +type spanOptionFunc func(SpanConfig) SpanConfig + +func (fn spanOptionFunc) applySpanStart(cfg SpanConfig) SpanConfig { + return fn(cfg) +} + +// SpanEndOption applies an option to a SpanConfig. These options are +// applicable only when the span is ended. +type SpanEndOption interface { + applySpanEnd(SpanConfig) SpanConfig +} + +// EventConfig is a group of options for an Event. +type EventConfig struct { + attributes []attribute.KeyValue + timestamp time.Time + stackTrace bool +} + +// Attributes describe the associated qualities of an Event. +func (cfg *EventConfig) Attributes() []attribute.KeyValue { + return cfg.attributes +} + +// Timestamp is a time in an Event life-cycle. +func (cfg *EventConfig) Timestamp() time.Time { + return cfg.timestamp +} + +// StackTrace checks whether stack trace capturing is enabled. +func (cfg *EventConfig) StackTrace() bool { + return cfg.stackTrace +} + +// NewEventConfig applies all the EventOptions to a returned EventConfig. If no +// timestamp option is passed, the returned EventConfig will have a Timestamp +// set to the call time, otherwise no validation is performed on the returned +// EventConfig. +func NewEventConfig(options ...EventOption) EventConfig { + var c EventConfig + for _, option := range options { + c = option.applyEvent(c) + } + if c.timestamp.IsZero() { + c.timestamp = time.Now() + } + return c +} + +// EventOption applies span event options to an EventConfig. +type EventOption interface { + applyEvent(EventConfig) EventConfig +} + +// SpanOption are options that can be used at both the beginning and end of a span. +type SpanOption interface { + SpanStartOption + SpanEndOption +} + +// SpanStartEventOption are options that can be used at the start of a span, or with an event. +type SpanStartEventOption interface { + SpanStartOption + EventOption +} + +// SpanEndEventOption are options that can be used at the end of a span, or with an event. +type SpanEndEventOption interface { + SpanEndOption + EventOption +} + +type attributeOption []attribute.KeyValue + +func (o attributeOption) applySpan(c SpanConfig) SpanConfig { + c.attributes = append(c.attributes, []attribute.KeyValue(o)...) + return c +} +func (o attributeOption) applySpanStart(c SpanConfig) SpanConfig { return o.applySpan(c) } +func (o attributeOption) applyEvent(c EventConfig) EventConfig { + c.attributes = append(c.attributes, []attribute.KeyValue(o)...) + return c +} + +var _ SpanStartEventOption = attributeOption{} + +// WithAttributes adds the attributes related to a span life-cycle event. +// These attributes are used to describe the work a Span represents when this +// option is provided to a Span's start event. Otherwise, these +// attributes provide additional information about the event being recorded +// (e.g. error, state change, processing progress, system event). +// +// If multiple of these options are passed the attributes of each successive +// option will extend the attributes instead of overwriting. There is no +// guarantee of uniqueness in the resulting attributes. +func WithAttributes(attributes ...attribute.KeyValue) SpanStartEventOption { + return attributeOption(attributes) +} + +// SpanEventOption are options that can be used with an event or a span. +type SpanEventOption interface { + SpanOption + EventOption +} + +type timestampOption time.Time + +func (o timestampOption) applySpan(c SpanConfig) SpanConfig { + c.timestamp = time.Time(o) + return c +} +func (o timestampOption) applySpanStart(c SpanConfig) SpanConfig { return o.applySpan(c) } +func (o timestampOption) applySpanEnd(c SpanConfig) SpanConfig { return o.applySpan(c) } +func (o timestampOption) applyEvent(c EventConfig) EventConfig { + c.timestamp = time.Time(o) + return c +} + +var _ SpanEventOption = timestampOption{} + +// WithTimestamp sets the time of a Span or Event life-cycle moment (e.g. +// started, stopped, errored). +func WithTimestamp(t time.Time) SpanEventOption { + return timestampOption(t) +} + +type stackTraceOption bool + +func (o stackTraceOption) applyEvent(c EventConfig) EventConfig { + c.stackTrace = bool(o) + return c +} + +func (o stackTraceOption) applySpan(c SpanConfig) SpanConfig { + c.stackTrace = bool(o) + return c +} +func (o stackTraceOption) applySpanEnd(c SpanConfig) SpanConfig { return o.applySpan(c) } + +// WithStackTrace sets the flag to capture the error with stack trace (e.g. true, false). +func WithStackTrace(b bool) SpanEndEventOption { + return stackTraceOption(b) +} + +// WithLinks adds links to a Span. The links are added to the existing Span +// links, i.e. this does not overwrite. Links with invalid span context are ignored. +func WithLinks(links ...Link) SpanStartOption { + return spanOptionFunc(func(cfg SpanConfig) SpanConfig { + cfg.links = append(cfg.links, links...) + return cfg + }) +} + +// WithNewRoot specifies that the Span should be treated as a root Span. Any +// existing parent span context will be ignored when defining the Span's trace +// identifiers. +func WithNewRoot() SpanStartOption { + return spanOptionFunc(func(cfg SpanConfig) SpanConfig { + cfg.newRoot = true + return cfg + }) +} + +// WithSpanKind sets the SpanKind of a Span. +func WithSpanKind(kind SpanKind) SpanStartOption { + return spanOptionFunc(func(cfg SpanConfig) SpanConfig { + cfg.spanKind = kind + return cfg + }) +} + +// WithInstrumentationVersion sets the instrumentation version. +func WithInstrumentationVersion(version string) TracerOption { + return tracerOptionFunc(func(cfg TracerConfig) TracerConfig { + cfg.instrumentationVersion = version + return cfg + }) +} + +// WithInstrumentationAttributes sets the instrumentation attributes. +// +// The passed attributes will be de-duplicated. +func WithInstrumentationAttributes(attr ...attribute.KeyValue) TracerOption { + return tracerOptionFunc(func(config TracerConfig) TracerConfig { + config.attrs = attribute.NewSet(attr...) + return config + }) +} + +// WithSchemaURL sets the schema URL for the Tracer. +func WithSchemaURL(schemaURL string) TracerOption { + return tracerOptionFunc(func(cfg TracerConfig) TracerConfig { + cfg.schemaURL = schemaURL + return cfg + }) +} diff --git a/vendor/go.opentelemetry.io/otel/trace/context.go b/vendor/go.opentelemetry.io/otel/trace/context.go new file mode 100644 index 0000000000..8c45a7107f --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/context.go @@ -0,0 +1,50 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import "context" + +type traceContextKeyType int + +const currentSpanKey traceContextKeyType = iota + +// ContextWithSpan returns a copy of parent with span set as the current Span. +func ContextWithSpan(parent context.Context, span Span) context.Context { + return context.WithValue(parent, currentSpanKey, span) +} + +// ContextWithSpanContext returns a copy of parent with sc as the current +// Span. The Span implementation that wraps sc is non-recording and performs +// no operations other than to return sc as the SpanContext from the +// SpanContext method. +func ContextWithSpanContext(parent context.Context, sc SpanContext) context.Context { + return ContextWithSpan(parent, nonRecordingSpan{sc: sc}) +} + +// ContextWithRemoteSpanContext returns a copy of parent with rsc set explicitly +// as a remote SpanContext and as the current Span. The Span implementation +// that wraps rsc is non-recording and performs no operations other than to +// return rsc as the SpanContext from the SpanContext method. +func ContextWithRemoteSpanContext(parent context.Context, rsc SpanContext) context.Context { + return ContextWithSpanContext(parent, rsc.WithRemote(true)) +} + +// SpanFromContext returns the current Span from ctx. +// +// If no Span is currently set in ctx an implementation of a Span that +// performs no operations is returned. +func SpanFromContext(ctx context.Context) Span { + if ctx == nil { + return noopSpanInstance + } + if span, ok := ctx.Value(currentSpanKey).(Span); ok { + return span + } + return noopSpanInstance +} + +// SpanContextFromContext returns the current Span's SpanContext. +func SpanContextFromContext(ctx context.Context) SpanContext { + return SpanFromContext(ctx).SpanContext() +} diff --git a/vendor/go.opentelemetry.io/otel/trace/doc.go b/vendor/go.opentelemetry.io/otel/trace/doc.go new file mode 100644 index 0000000000..cdbf41d6d7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/doc.go @@ -0,0 +1,119 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package trace provides an implementation of the tracing part of the +OpenTelemetry API. + +To participate in distributed traces a Span needs to be created for the +operation being performed as part of a traced workflow. In its simplest form: + + var tracer trace.Tracer + + func init() { + tracer = otel.Tracer("instrumentation/package/name") + } + + func operation(ctx context.Context) { + var span trace.Span + ctx, span = tracer.Start(ctx, "operation") + defer span.End() + // ... + } + +A Tracer is unique to the instrumentation and is used to create Spans. +Instrumentation should be designed to accept a TracerProvider from which it +can create its own unique Tracer. Alternatively, the registered global +TracerProvider from the go.opentelemetry.io/otel package can be used as +a default. + + const ( + name = "instrumentation/package/name" + version = "0.1.0" + ) + + type Instrumentation struct { + tracer trace.Tracer + } + + func NewInstrumentation(tp trace.TracerProvider) *Instrumentation { + if tp == nil { + tp = otel.TracerProvider() + } + return &Instrumentation{ + tracer: tp.Tracer(name, trace.WithInstrumentationVersion(version)), + } + } + + func operation(ctx context.Context, inst *Instrumentation) { + var span trace.Span + ctx, span = inst.tracer.Start(ctx, "operation") + defer span.End() + // ... + } + +# API Implementations + +This package does not conform to the standard Go versioning policy; all of its +interfaces may have methods added to them without a package major version bump. +This non-standard API evolution could surprise an uninformed implementation +author. They could unknowingly build their implementation in a way that would +result in a runtime panic for their users that update to the new API. + +The API is designed to help inform an instrumentation author about this +non-standard API evolution. It requires them to choose a default behavior for +unimplemented interface methods. There are three behavior choices they can +make: + + - Compilation failure + - Panic + - Default to another implementation + +All interfaces in this API embed a corresponding interface from +[go.opentelemetry.io/otel/trace/embedded]. If an author wants the default +behavior of their implementations to be a compilation failure, signaling to +their users they need to update to the latest version of that implementation, +they need to embed the corresponding interface from +[go.opentelemetry.io/otel/trace/embedded] in their implementation. For +example, + + import "go.opentelemetry.io/otel/trace/embedded" + + type TracerProvider struct { + embedded.TracerProvider + // ... + } + +If an author wants the default behavior of their implementations to panic, they +can embed the API interface directly. + + import "go.opentelemetry.io/otel/trace" + + type TracerProvider struct { + trace.TracerProvider + // ... + } + +This option is not recommended. It will lead to publishing packages that +contain runtime panics when users update to newer versions of +[go.opentelemetry.io/otel/trace], which may be done with a transitive +dependency. + +Finally, an author can embed another implementation in theirs. The embedded +implementation will be used for methods not defined by the author. For example, +an author who wants to default to silently dropping the call can use +[go.opentelemetry.io/otel/trace/noop]: + + import "go.opentelemetry.io/otel/trace/noop" + + type TracerProvider struct { + noop.TracerProvider + // ... + } + +It is strongly recommended that authors only embed +[go.opentelemetry.io/otel/trace/noop] if they choose this default behavior. +That implementation is the only one OpenTelemetry authors can guarantee will +fully implement all the API interfaces when a user updates their API. +*/ +package trace // import "go.opentelemetry.io/otel/trace" diff --git a/vendor/go.opentelemetry.io/otel/trace/embedded/README.md b/vendor/go.opentelemetry.io/otel/trace/embedded/README.md new file mode 100644 index 0000000000..7754a239ee --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/embedded/README.md @@ -0,0 +1,3 @@ +# Trace Embedded + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/trace/embedded)](https://pkg.go.dev/go.opentelemetry.io/otel/trace/embedded) diff --git a/vendor/go.opentelemetry.io/otel/trace/embedded/embedded.go b/vendor/go.opentelemetry.io/otel/trace/embedded/embedded.go new file mode 100644 index 0000000000..3e359a00bf --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/embedded/embedded.go @@ -0,0 +1,45 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package embedded provides interfaces embedded within the [OpenTelemetry +// trace API]. +// +// Implementers of the [OpenTelemetry trace API] can embed the relevant type +// from this package into their implementation directly. Doing so will result +// in a compilation error for users when the [OpenTelemetry trace API] is +// extended (which is something that can happen without a major version bump of +// the API package). +// +// [OpenTelemetry trace API]: https://pkg.go.dev/go.opentelemetry.io/otel/trace +package embedded // import "go.opentelemetry.io/otel/trace/embedded" + +// TracerProvider is embedded in +// [go.opentelemetry.io/otel/trace.TracerProvider]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/trace.TracerProvider] if you want users to +// experience a compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/trace.TracerProvider] +// interface is extended (which is something that can happen without a major +// version bump of the API package). +type TracerProvider interface{ tracerProvider() } + +// Tracer is embedded in [go.opentelemetry.io/otel/trace.Tracer]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/trace.Tracer] if you want users to experience a +// compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/trace.Tracer] interface +// is extended (which is something that can happen without a major version bump +// of the API package). +type Tracer interface{ tracer() } + +// Span is embedded in [go.opentelemetry.io/otel/trace.Span]. +// +// Embed this interface in your implementation of the +// [go.opentelemetry.io/otel/trace.Span] if you want users to experience a +// compilation error, signaling they need to update to your latest +// implementation, when the [go.opentelemetry.io/otel/trace.Span] interface is +// extended (which is something that can happen without a major version bump of +// the API package). +type Span interface{ span() } diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/attr.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/attr.go new file mode 100644 index 0000000000..f663547b4e --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/attr.go @@ -0,0 +1,58 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +// Attr is a key-value pair. +type Attr struct { + Key string `json:"key,omitempty"` + Value Value `json:"value,omitempty"` +} + +// String returns an Attr for a string value. +func String(key, value string) Attr { + return Attr{key, StringValue(value)} +} + +// Int64 returns an Attr for an int64 value. +func Int64(key string, value int64) Attr { + return Attr{key, Int64Value(value)} +} + +// Int returns an Attr for an int value. +func Int(key string, value int) Attr { + return Int64(key, int64(value)) +} + +// Float64 returns an Attr for a float64 value. +func Float64(key string, value float64) Attr { + return Attr{key, Float64Value(value)} +} + +// Bool returns an Attr for a bool value. +func Bool(key string, value bool) Attr { + return Attr{key, BoolValue(value)} +} + +// Bytes returns an Attr for a []byte value. +// The passed slice must not be changed after it is passed. +func Bytes(key string, value []byte) Attr { + return Attr{key, BytesValue(value)} +} + +// Slice returns an Attr for a []Value value. +// The passed slice must not be changed after it is passed. +func Slice(key string, value ...Value) Attr { + return Attr{key, SliceValue(value...)} +} + +// Map returns an Attr for a map value. +// The passed slice must not be changed after it is passed. +func Map(key string, value ...Attr) Attr { + return Attr{key, MapValue(value...)} +} + +// Equal returns if a is equal to b. +func (a Attr) Equal(b Attr) bool { + return a.Key == b.Key && a.Value.Equal(b.Value) +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/doc.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/doc.go new file mode 100644 index 0000000000..5debe90bbb --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/doc.go @@ -0,0 +1,8 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +/* +Package telemetry provides a lightweight representations of OpenTelemetry +telemetry that is compatible with the OTLP JSON protobuf encoding. +*/ +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/id.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/id.go new file mode 100644 index 0000000000..7b1ae3c4ea --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/id.go @@ -0,0 +1,103 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "encoding/hex" + "errors" + "fmt" +) + +const ( + traceIDSize = 16 + spanIDSize = 8 +) + +// TraceID is a custom data type that is used for all trace IDs. +type TraceID [traceIDSize]byte + +// String returns the hex string representation form of a TraceID. +func (tid TraceID) String() string { + return hex.EncodeToString(tid[:]) +} + +// IsEmpty returns false if id contains at least one non-zero byte. +func (tid TraceID) IsEmpty() bool { + return tid == [traceIDSize]byte{} +} + +// MarshalJSON converts the trace ID into a hex string enclosed in quotes. +func (tid TraceID) MarshalJSON() ([]byte, error) { + if tid.IsEmpty() { + return []byte(`""`), nil + } + return marshalJSON(tid[:]) +} + +// UnmarshalJSON inflates the trace ID from hex string, possibly enclosed in +// quotes. +func (tid *TraceID) UnmarshalJSON(data []byte) error { + *tid = [traceIDSize]byte{} + return unmarshalJSON(tid[:], data) +} + +// SpanID is a custom data type that is used for all span IDs. +type SpanID [spanIDSize]byte + +// String returns the hex string representation form of a SpanID. +func (sid SpanID) String() string { + return hex.EncodeToString(sid[:]) +} + +// IsEmpty returns true if the span ID contains at least one non-zero byte. +func (sid SpanID) IsEmpty() bool { + return sid == [spanIDSize]byte{} +} + +// MarshalJSON converts span ID into a hex string enclosed in quotes. +func (sid SpanID) MarshalJSON() ([]byte, error) { + if sid.IsEmpty() { + return []byte(`""`), nil + } + return marshalJSON(sid[:]) +} + +// UnmarshalJSON decodes span ID from hex string, possibly enclosed in quotes. +func (sid *SpanID) UnmarshalJSON(data []byte) error { + *sid = [spanIDSize]byte{} + return unmarshalJSON(sid[:], data) +} + +// marshalJSON converts id into a hex string enclosed in quotes. +func marshalJSON(id []byte) ([]byte, error) { + // Plus 2 quote chars at the start and end. + hexLen := hex.EncodedLen(len(id)) + 2 + + b := make([]byte, hexLen) + hex.Encode(b[1:hexLen-1], id) + b[0], b[hexLen-1] = '"', '"' + + return b, nil +} + +// unmarshalJSON inflates trace id from hex string, possibly enclosed in quotes. +func unmarshalJSON(dst []byte, src []byte) error { + if l := len(src); l >= 2 && src[0] == '"' && src[l-1] == '"' { + src = src[1 : l-1] + } + nLen := len(src) + if nLen == 0 { + return nil + } + + if len(dst) != hex.DecodedLen(nLen) { + return errors.New("invalid length for ID") + } + + _, err := hex.Decode(dst, src) + if err != nil { + return fmt.Errorf("cannot unmarshal ID from string '%s': %w", string(src), err) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/number.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/number.go new file mode 100644 index 0000000000..f5e3a8cec9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/number.go @@ -0,0 +1,67 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "encoding/json" + "strconv" +) + +// protoInt64 represents the protobuf encoding of integers which can be either +// strings or integers. +type protoInt64 int64 + +// Int64 returns the protoInt64 as an int64. +func (i *protoInt64) Int64() int64 { return int64(*i) } + +// UnmarshalJSON decodes both strings and integers. +func (i *protoInt64) UnmarshalJSON(data []byte) error { + if data[0] == '"' { + var str string + if err := json.Unmarshal(data, &str); err != nil { + return err + } + parsedInt, err := strconv.ParseInt(str, 10, 64) + if err != nil { + return err + } + *i = protoInt64(parsedInt) + } else { + var parsedInt int64 + if err := json.Unmarshal(data, &parsedInt); err != nil { + return err + } + *i = protoInt64(parsedInt) + } + return nil +} + +// protoUint64 represents the protobuf encoding of integers which can be either +// strings or integers. +type protoUint64 uint64 + +// Int64 returns the protoUint64 as a uint64. +func (i *protoUint64) Uint64() uint64 { return uint64(*i) } + +// UnmarshalJSON decodes both strings and integers. +func (i *protoUint64) UnmarshalJSON(data []byte) error { + if data[0] == '"' { + var str string + if err := json.Unmarshal(data, &str); err != nil { + return err + } + parsedUint, err := strconv.ParseUint(str, 10, 64) + if err != nil { + return err + } + *i = protoUint64(parsedUint) + } else { + var parsedUint uint64 + if err := json.Unmarshal(data, &parsedUint); err != nil { + return err + } + *i = protoUint64(parsedUint) + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/resource.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/resource.go new file mode 100644 index 0000000000..1798a702d4 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/resource.go @@ -0,0 +1,66 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Resource information. +type Resource struct { + // Attrs are the set of attributes that describe the resource. Attribute + // keys MUST be unique (it is not allowed to have more than one attribute + // with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // DroppedAttrs is the number of dropped attributes. If the value + // is 0, then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into r. +func (r *Resource) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Resource type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Resource field: %#v", keyIface) + } + + switch key { + case "attributes": + err = decoder.Decode(&r.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&r.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/scope.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/scope.go new file mode 100644 index 0000000000..c2b4c635b7 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/scope.go @@ -0,0 +1,67 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Scope is the identifying values of the instrumentation scope. +type Scope struct { + Name string `json:"name,omitempty"` + Version string `json:"version,omitempty"` + Attrs []Attr `json:"attributes,omitempty"` + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into r. +func (s *Scope) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Scope type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Scope field: %#v", keyIface) + } + + switch key { + case "name": + err = decoder.Decode(&s.Name) + case "version": + err = decoder.Decode(&s.Version) + case "attributes": + err = decoder.Decode(&s.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&s.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go new file mode 100644 index 0000000000..e7ca62c660 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/span.go @@ -0,0 +1,472 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "bytes" + "encoding/hex" + "encoding/json" + "errors" + "fmt" + "io" + "math" + "time" +) + +// A Span represents a single operation performed by a single component of the +// system. +type Span struct { + // A unique identifier for a trace. All spans from the same trace share + // the same `trace_id`. The ID is a 16-byte array. An ID with all zeroes OR + // of length other than 16 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + TraceID TraceID `json:"traceId,omitempty"` + // A unique identifier for a span within a trace, assigned when the span + // is created. The ID is an 8-byte array. An ID with all zeroes OR of length + // other than 8 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + SpanID SpanID `json:"spanId,omitempty"` + // trace_state conveys information about request position in multiple distributed tracing graphs. + // It is a trace_state in w3c-trace-context format: https://www.w3.org/TR/trace-context/#tracestate-header + // See also https://github.com/w3c/distributed-tracing for more details about this field. + TraceState string `json:"traceState,omitempty"` + // The `span_id` of this span's parent span. If this is a root span, then this + // field must be empty. The ID is an 8-byte array. + ParentSpanID SpanID `json:"parentSpanId,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether a span's parent + // is remote. The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the span is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // When creating span messages, if the message is logically forwarded from another source + // with an equivalent flags fields (i.e., usually another OTLP span message), the field SHOULD + // be copied as-is. If creating from a source that does not have an equivalent flags field + // (such as a runtime representation of an OpenTelemetry span), the high 22 bits MUST + // be set to zero. + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // + // [Optional]. + Flags uint32 `json:"flags,omitempty"` + // A description of the span's operation. + // + // For example, the name can be a qualified method name or a file name + // and a line number where the operation is called. A best practice is to use + // the same display name at the same call point in an application. + // This makes it easier to correlate spans in different traces. + // + // This field is semantically required to be set to non-empty string. + // Empty value is equivalent to an unknown span name. + // + // This field is required. + Name string `json:"name"` + // Distinguishes between spans generated in a particular context. For example, + // two spans with the same name may be distinguished using `CLIENT` (caller) + // and `SERVER` (callee) to identify queueing latency associated with the span. + Kind SpanKind `json:"kind,omitempty"` + // start_time_unix_nano is the start time of the span. On the client side, this is the time + // kept by the local machine where the span execution starts. On the server side, this + // is the time when the server's application handler starts running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + StartTime time.Time `json:"startTimeUnixNano,omitempty"` + // end_time_unix_nano is the end time of the span. On the client side, this is the time + // kept by the local machine where the span execution ends. On the server side, this + // is the time when the server application handler stops running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + EndTime time.Time `json:"endTimeUnixNano,omitempty"` + // attributes is a collection of key/value pairs. Note, global attributes + // like server name can be set using the resource API. Examples of attributes: + // + // "/http/user_agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_14_2) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/71.0.3578.98 Safari/537.36" + // "/http/server_latency": 300 + // "example.com/myattribute": true + // "example.com/score": 10.239 + // + // The OpenTelemetry API specification further restricts the allowed value types: + // https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/common/README.md#attribute + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of attributes that were discarded. Attributes + // can be discarded because their keys are too long or because there are too many + // attributes. If this value is 0, then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` + // events is a collection of Event items. + Events []*SpanEvent `json:"events,omitempty"` + // dropped_events_count is the number of dropped events. If the value is 0, then no + // events were dropped. + DroppedEvents uint32 `json:"droppedEventsCount,omitempty"` + // links is a collection of Links, which are references from this span to a span + // in the same or different trace. + Links []*SpanLink `json:"links,omitempty"` + // dropped_links_count is the number of dropped links after the maximum size was + // enforced. If this value is 0, then no links were dropped. + DroppedLinks uint32 `json:"droppedLinksCount,omitempty"` + // An optional final status for this span. Semantically when Status isn't set, it means + // span's status code is unset, i.e. assume STATUS_CODE_UNSET (code = 0). + Status *Status `json:"status,omitempty"` +} + +// MarshalJSON encodes s into OTLP formatted JSON. +func (s Span) MarshalJSON() ([]byte, error) { + startT := s.StartTime.UnixNano() + if s.StartTime.IsZero() || startT < 0 { + startT = 0 + } + + endT := s.EndTime.UnixNano() + if s.EndTime.IsZero() || endT < 0 { + endT = 0 + } + + // Override non-empty default SpanID marshal and omitempty. + var parentSpanId string + if !s.ParentSpanID.IsEmpty() { + b := make([]byte, hex.EncodedLen(spanIDSize)) + hex.Encode(b, s.ParentSpanID[:]) + parentSpanId = string(b) + } + + type Alias Span + return json.Marshal(struct { + Alias + ParentSpanID string `json:"parentSpanId,omitempty"` + StartTime uint64 `json:"startTimeUnixNano,omitempty"` + EndTime uint64 `json:"endTimeUnixNano,omitempty"` + }{ + Alias: Alias(s), + ParentSpanID: parentSpanId, + StartTime: uint64(startT), // nolint:gosec // >0 checked above. + EndTime: uint64(endT), // nolint:gosec // >0 checked above. + }) +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into s. +func (s *Span) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Span type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Span field: %#v", keyIface) + } + + switch key { + case "traceId", "trace_id": + err = decoder.Decode(&s.TraceID) + case "spanId", "span_id": + err = decoder.Decode(&s.SpanID) + case "traceState", "trace_state": + err = decoder.Decode(&s.TraceState) + case "parentSpanId", "parent_span_id": + err = decoder.Decode(&s.ParentSpanID) + case "flags": + err = decoder.Decode(&s.Flags) + case "name": + err = decoder.Decode(&s.Name) + case "kind": + err = decoder.Decode(&s.Kind) + case "startTimeUnixNano", "start_time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + v := int64(min(val.Uint64(), math.MaxInt64)) // nolint: gosec // Overflow checked. + s.StartTime = time.Unix(0, v) + case "endTimeUnixNano", "end_time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + v := int64(min(val.Uint64(), math.MaxInt64)) // nolint: gosec // Overflow checked. + s.EndTime = time.Unix(0, v) + case "attributes": + err = decoder.Decode(&s.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&s.DroppedAttrs) + case "events": + err = decoder.Decode(&s.Events) + case "droppedEventsCount", "dropped_events_count": + err = decoder.Decode(&s.DroppedEvents) + case "links": + err = decoder.Decode(&s.Links) + case "droppedLinksCount", "dropped_links_count": + err = decoder.Decode(&s.DroppedLinks) + case "status": + err = decoder.Decode(&s.Status) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// SpanFlags represents constants used to interpret the +// Span.flags field, which is protobuf 'fixed32' type and is to +// be used as bit-fields. Each non-zero value defined in this enum is +// a bit-mask. To extract the bit-field, for example, use an +// expression like: +// +// (span.flags & SPAN_FLAGS_TRACE_FLAGS_MASK) +// +// See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. +// +// Note that Span flags were introduced in version 1.1 of the +// OpenTelemetry protocol. Older Span producers do not set this +// field, consequently consumers should not rely on the absence of a +// particular flag bit to indicate the presence of a particular feature. +type SpanFlags int32 + +const ( + // SpanFlagsTraceFlagsMask is a mask for trace-flags. + // + // Bits 0-7 are used for trace flags. + SpanFlagsTraceFlagsMask SpanFlags = 255 + // SpanFlagsContextHasIsRemoteMask is a mask for HAS_IS_REMOTE status. + // + // Bits 8 and 9 are used to indicate that the parent span or link span is + // remote. Bit 8 (`HAS_IS_REMOTE`) indicates whether the value is known. + SpanFlagsContextHasIsRemoteMask SpanFlags = 256 + // SpanFlagsContextIsRemoteMask is a mask for IS_REMOTE status. + // + // Bits 8 and 9 are used to indicate that the parent span or link span is + // remote. Bit 9 (`IS_REMOTE`) indicates whether the span or link is + // remote. + SpanFlagsContextIsRemoteMask SpanFlags = 512 +) + +// SpanKind is the type of span. Can be used to specify additional relationships between spans +// in addition to a parent/child relationship. +type SpanKind int32 + +const ( + // SpanKindInternal indicates that the span represents an internal + // operation within an application, as opposed to an operation happening at + // the boundaries. + SpanKindInternal SpanKind = 1 + // SpanKindServer indicates that the span covers server-side handling of an + // RPC or other remote network request. + SpanKindServer SpanKind = 2 + // SpanKindClient indicates that the span describes a request to some + // remote service. + SpanKindClient SpanKind = 3 + // SpanKindProducer indicates that the span describes a producer sending a + // message to a broker. Unlike SpanKindClient and SpanKindServer, there is + // often no direct critical path latency relationship between producer and + // consumer spans. A SpanKindProducer span ends when the message was + // accepted by the broker while the logical processing of the message might + // span a much longer time. + SpanKindProducer SpanKind = 4 + // SpanKindConsumer indicates that the span describes a consumer receiving + // a message from a broker. Like SpanKindProducer, there is often no direct + // critical path latency relationship between producer and consumer spans. + SpanKindConsumer SpanKind = 5 +) + +// SpanEvent is a time-stamped annotation of the span, consisting of +// user-supplied text description and key-value pairs. +type SpanEvent struct { + // time_unix_nano is the time the event occurred. + Time time.Time `json:"timeUnixNano,omitempty"` + // name of the event. + // This field is semantically required to be set to non-empty string. + Name string `json:"name,omitempty"` + // attributes is a collection of attribute key/value pairs on the event. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` +} + +// MarshalJSON encodes e into OTLP formatted JSON. +func (e SpanEvent) MarshalJSON() ([]byte, error) { + t := e.Time.UnixNano() + if e.Time.IsZero() || t < 0 { + t = 0 + } + + type Alias SpanEvent + return json.Marshal(struct { + Alias + Time uint64 `json:"timeUnixNano,omitempty"` + }{ + Alias: Alias(e), + Time: uint64(t), // nolint: gosec // >0 checked above + }) +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into se. +func (se *SpanEvent) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid SpanEvent type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid SpanEvent field: %#v", keyIface) + } + + switch key { + case "timeUnixNano", "time_unix_nano": + var val protoUint64 + err = decoder.Decode(&val) + v := int64(min(val.Uint64(), math.MaxInt64)) // nolint: gosec // Overflow checked. + se.Time = time.Unix(0, v) + case "name": + err = decoder.Decode(&se.Name) + case "attributes": + err = decoder.Decode(&se.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&se.DroppedAttrs) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// SpanLink is a reference from the current span to another span in the same +// trace or in a different trace. For example, this can be used in batching +// operations, where a single batch handler processes multiple requests from +// different traces or when the handler receives a request from a different +// project. +type SpanLink struct { + // A unique identifier of a trace that this linked span is part of. The ID is a + // 16-byte array. + TraceID TraceID `json:"traceId,omitempty"` + // A unique identifier for the linked span. The ID is an 8-byte array. + SpanID SpanID `json:"spanId,omitempty"` + // The trace_state associated with the link. + TraceState string `json:"traceState,omitempty"` + // attributes is a collection of attribute key/value pairs on the link. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attrs []Attr `json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttrs uint32 `json:"droppedAttributesCount,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether the link is remote. + // The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the link is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // When creating new spans, bits 10-31 (most-significant 22-bits) MUST be zero. + // + // [Optional]. + Flags uint32 `json:"flags,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into sl. +func (sl *SpanLink) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid SpanLink type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid SpanLink field: %#v", keyIface) + } + + switch key { + case "traceId", "trace_id": + err = decoder.Decode(&sl.TraceID) + case "spanId", "span_id": + err = decoder.Decode(&sl.SpanID) + case "traceState", "trace_state": + err = decoder.Decode(&sl.TraceState) + case "attributes": + err = decoder.Decode(&sl.Attrs) + case "droppedAttributesCount", "dropped_attributes_count": + err = decoder.Decode(&sl.DroppedAttrs) + case "flags": + err = decoder.Decode(&sl.Flags) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/status.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/status.go new file mode 100644 index 0000000000..1039bf40cd --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/status.go @@ -0,0 +1,42 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +// StatusCode is the status of a Span. +// +// For the semantics of status codes see +// https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/trace/api.md#set-status +type StatusCode int32 + +const ( + // StatusCodeUnset is the default status. + StatusCodeUnset StatusCode = 0 + // StatusCodeOK is used when the Span has been validated by an Application + // developer or Operator to have completed successfully. + StatusCodeOK StatusCode = 1 + // StatusCodeError is used when the Span contains an error. + StatusCodeError StatusCode = 2 +) + +var statusCodeStrings = []string{ + "Unset", + "OK", + "Error", +} + +func (s StatusCode) String() string { + if s >= 0 && int(s) < len(statusCodeStrings) { + return statusCodeStrings[s] + } + return "" +} + +// Status defines a logical error model that is suitable for different +// programming environments, including REST APIs and RPC APIs. +type Status struct { + // A developer-facing human readable error message. + Message string `json:"message,omitempty"` + // The status code. + Code StatusCode `json:"code,omitempty"` +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/traces.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/traces.go new file mode 100644 index 0000000000..e5f10767ca --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/traces.go @@ -0,0 +1,189 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "bytes" + "encoding/json" + "errors" + "fmt" + "io" +) + +// Traces represents the traces data that can be stored in a persistent storage, +// OR can be embedded by other protocols that transfer OTLP traces data but do +// not implement the OTLP protocol. +// +// The main difference between this message and collector protocol is that +// in this message there will not be any "control" or "metadata" specific to +// OTLP protocol. +// +// When new fields are added into this message, the OTLP request MUST be updated +// as well. +type Traces struct { + // An array of ResourceSpans. + // For data coming from a single resource this array will typically contain + // one element. Intermediary nodes that receive data from multiple origins + // typically batch the data before forwarding further and in that case this + // array will contain multiple elements. + ResourceSpans []*ResourceSpans `json:"resourceSpans,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into td. +func (td *Traces) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid TracesData type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid TracesData field: %#v", keyIface) + } + + switch key { + case "resourceSpans", "resource_spans": + err = decoder.Decode(&td.ResourceSpans) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// ResourceSpans is a collection of ScopeSpans from a Resource. +type ResourceSpans struct { + // The resource for the spans in this message. + // If this field is not set then no resource info is known. + Resource Resource `json:"resource"` + // A list of ScopeSpans that originate from a resource. + ScopeSpans []*ScopeSpans `json:"scopeSpans,omitempty"` + // This schema_url applies to the data in the "resource" field. It does not apply + // to the data in the "scope_spans" field which have their own schema_url field. + SchemaURL string `json:"schemaUrl,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into rs. +func (rs *ResourceSpans) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid ResourceSpans type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid ResourceSpans field: %#v", keyIface) + } + + switch key { + case "resource": + err = decoder.Decode(&rs.Resource) + case "scopeSpans", "scope_spans": + err = decoder.Decode(&rs.ScopeSpans) + case "schemaUrl", "schema_url": + err = decoder.Decode(&rs.SchemaURL) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} + +// ScopeSpans is a collection of Spans produced by an InstrumentationScope. +type ScopeSpans struct { + // The instrumentation scope information for the spans in this message. + // Semantically when InstrumentationScope isn't set, it is equivalent with + // an empty instrumentation scope name (unknown). + Scope *Scope `json:"scope"` + // A list of Spans that originate from an instrumentation scope. + Spans []*Span `json:"spans,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the span data + // is recorded in. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to all spans and span events in the "spans" field. + SchemaURL string `json:"schemaUrl,omitempty"` +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into ss. +func (ss *ScopeSpans) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid ScopeSpans type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid ScopeSpans field: %#v", keyIface) + } + + switch key { + case "scope": + err = decoder.Decode(&ss.Scope) + case "spans": + err = decoder.Decode(&ss.Spans) + case "schemaUrl", "schema_url": + err = decoder.Decode(&ss.SchemaURL) + default: + // Skip unknown. + } + + if err != nil { + return err + } + } + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/value.go b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/value.go new file mode 100644 index 0000000000..ae9ce102a9 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/internal/telemetry/value.go @@ -0,0 +1,453 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package telemetry // import "go.opentelemetry.io/otel/trace/internal/telemetry" + +import ( + "bytes" + "cmp" + "encoding/base64" + "encoding/json" + "errors" + "fmt" + "io" + "math" + "slices" + "strconv" + "unsafe" +) + +// A Value represents a structured value. +// A zero value is valid and represents an empty value. +type Value struct { + // Ensure forward compatibility by explicitly making this not comparable. + noCmp [0]func() //nolint: unused // This is indeed used. + + // num holds the value for Int64, Float64, and Bool. It holds the length + // for String, Bytes, Slice, Map. + num uint64 + // any holds either the KindBool, KindInt64, KindFloat64, stringptr, + // bytesptr, sliceptr, or mapptr. If KindBool, KindInt64, or KindFloat64 + // then the value of Value is in num as described above. Otherwise, it + // contains the value wrapped in the appropriate type. + any any +} + +type ( + // sliceptr represents a value in Value.any for KindString Values. + stringptr *byte + // bytesptr represents a value in Value.any for KindBytes Values. + bytesptr *byte + // sliceptr represents a value in Value.any for KindSlice Values. + sliceptr *Value + // mapptr represents a value in Value.any for KindMap Values. + mapptr *Attr +) + +// ValueKind is the kind of a [Value]. +type ValueKind int + +// ValueKind values. +const ( + ValueKindEmpty ValueKind = iota + ValueKindBool + ValueKindFloat64 + ValueKindInt64 + ValueKindString + ValueKindBytes + ValueKindSlice + ValueKindMap +) + +var valueKindStrings = []string{ + "Empty", + "Bool", + "Float64", + "Int64", + "String", + "Bytes", + "Slice", + "Map", +} + +func (k ValueKind) String() string { + if k >= 0 && int(k) < len(valueKindStrings) { + return valueKindStrings[k] + } + return "" +} + +// StringValue returns a new [Value] for a string. +func StringValue(v string) Value { + return Value{ + num: uint64(len(v)), + any: stringptr(unsafe.StringData(v)), + } +} + +// IntValue returns a [Value] for an int. +func IntValue(v int) Value { return Int64Value(int64(v)) } + +// Int64Value returns a [Value] for an int64. +func Int64Value(v int64) Value { + return Value{ + num: uint64(v), // nolint: gosec // Store raw bytes. + any: ValueKindInt64, + } +} + +// Float64Value returns a [Value] for a float64. +func Float64Value(v float64) Value { + return Value{num: math.Float64bits(v), any: ValueKindFloat64} +} + +// BoolValue returns a [Value] for a bool. +func BoolValue(v bool) Value { //nolint:revive // Not a control flag. + var n uint64 + if v { + n = 1 + } + return Value{num: n, any: ValueKindBool} +} + +// BytesValue returns a [Value] for a byte slice. The passed slice must not be +// changed after it is passed. +func BytesValue(v []byte) Value { + return Value{ + num: uint64(len(v)), + any: bytesptr(unsafe.SliceData(v)), + } +} + +// SliceValue returns a [Value] for a slice of [Value]. The passed slice must +// not be changed after it is passed. +func SliceValue(vs ...Value) Value { + return Value{ + num: uint64(len(vs)), + any: sliceptr(unsafe.SliceData(vs)), + } +} + +// MapValue returns a new [Value] for a slice of key-value pairs. The passed +// slice must not be changed after it is passed. +func MapValue(kvs ...Attr) Value { + return Value{ + num: uint64(len(kvs)), + any: mapptr(unsafe.SliceData(kvs)), + } +} + +// AsString returns the value held by v as a string. +func (v Value) AsString() string { + if sp, ok := v.any.(stringptr); ok { + return unsafe.String(sp, v.num) + } + // TODO: error handle + return "" +} + +// asString returns the value held by v as a string. It will panic if the Value +// is not KindString. +func (v Value) asString() string { + return unsafe.String(v.any.(stringptr), v.num) +} + +// AsInt64 returns the value held by v as an int64. +func (v Value) AsInt64() int64 { + if v.Kind() != ValueKindInt64 { + // TODO: error handle + return 0 + } + return v.asInt64() +} + +// asInt64 returns the value held by v as an int64. If v is not of KindInt64, +// this will return garbage. +func (v Value) asInt64() int64 { + // Assumes v.num was a valid int64 (overflow not checked). + return int64(v.num) // nolint: gosec +} + +// AsBool returns the value held by v as a bool. +func (v Value) AsBool() bool { + if v.Kind() != ValueKindBool { + // TODO: error handle + return false + } + return v.asBool() +} + +// asBool returns the value held by v as a bool. If v is not of KindBool, this +// will return garbage. +func (v Value) asBool() bool { return v.num == 1 } + +// AsFloat64 returns the value held by v as a float64. +func (v Value) AsFloat64() float64 { + if v.Kind() != ValueKindFloat64 { + // TODO: error handle + return 0 + } + return v.asFloat64() +} + +// asFloat64 returns the value held by v as a float64. If v is not of +// KindFloat64, this will return garbage. +func (v Value) asFloat64() float64 { return math.Float64frombits(v.num) } + +// AsBytes returns the value held by v as a []byte. +func (v Value) AsBytes() []byte { + if sp, ok := v.any.(bytesptr); ok { + return unsafe.Slice((*byte)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asBytes returns the value held by v as a []byte. It will panic if the Value +// is not KindBytes. +func (v Value) asBytes() []byte { + return unsafe.Slice((*byte)(v.any.(bytesptr)), v.num) +} + +// AsSlice returns the value held by v as a []Value. +func (v Value) AsSlice() []Value { + if sp, ok := v.any.(sliceptr); ok { + return unsafe.Slice((*Value)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asSlice returns the value held by v as a []Value. It will panic if the Value +// is not KindSlice. +func (v Value) asSlice() []Value { + return unsafe.Slice((*Value)(v.any.(sliceptr)), v.num) +} + +// AsMap returns the value held by v as a []Attr. +func (v Value) AsMap() []Attr { + if sp, ok := v.any.(mapptr); ok { + return unsafe.Slice((*Attr)(sp), v.num) + } + // TODO: error handle + return nil +} + +// asMap returns the value held by v as a []Attr. It will panic if the +// Value is not KindMap. +func (v Value) asMap() []Attr { + return unsafe.Slice((*Attr)(v.any.(mapptr)), v.num) +} + +// Kind returns the Kind of v. +func (v Value) Kind() ValueKind { + switch x := v.any.(type) { + case ValueKind: + return x + case stringptr: + return ValueKindString + case bytesptr: + return ValueKindBytes + case sliceptr: + return ValueKindSlice + case mapptr: + return ValueKindMap + default: + return ValueKindEmpty + } +} + +// Empty returns if v does not hold any value. +func (v Value) Empty() bool { return v.Kind() == ValueKindEmpty } + +// Equal returns if v is equal to w. +func (v Value) Equal(w Value) bool { + k1 := v.Kind() + k2 := w.Kind() + if k1 != k2 { + return false + } + switch k1 { + case ValueKindInt64, ValueKindBool: + return v.num == w.num + case ValueKindString: + return v.asString() == w.asString() + case ValueKindFloat64: + return v.asFloat64() == w.asFloat64() + case ValueKindSlice: + return slices.EqualFunc(v.asSlice(), w.asSlice(), Value.Equal) + case ValueKindMap: + sv := sortMap(v.asMap()) + sw := sortMap(w.asMap()) + return slices.EqualFunc(sv, sw, Attr.Equal) + case ValueKindBytes: + return bytes.Equal(v.asBytes(), w.asBytes()) + case ValueKindEmpty: + return true + default: + // TODO: error handle + return false + } +} + +func sortMap(m []Attr) []Attr { + sm := make([]Attr, len(m)) + copy(sm, m) + slices.SortFunc(sm, func(a, b Attr) int { + return cmp.Compare(a.Key, b.Key) + }) + + return sm +} + +// String returns Value's value as a string, formatted like [fmt.Sprint]. +// +// The returned string is meant for debugging; +// the string representation is not stable. +func (v Value) String() string { + switch v.Kind() { + case ValueKindString: + return v.asString() + case ValueKindInt64: + // Assumes v.num was a valid int64 (overflow not checked). + return strconv.FormatInt(int64(v.num), 10) // nolint: gosec + case ValueKindFloat64: + return strconv.FormatFloat(v.asFloat64(), 'g', -1, 64) + case ValueKindBool: + return strconv.FormatBool(v.asBool()) + case ValueKindBytes: + return string(v.asBytes()) + case ValueKindMap: + return fmt.Sprint(v.asMap()) + case ValueKindSlice: + return fmt.Sprint(v.asSlice()) + case ValueKindEmpty: + return "" + default: + // Try to handle this as gracefully as possible. + // + // Don't panic here. The goal here is to have developers find this + // first if a slog.Kind is is not handled. It is + // preferable to have user's open issue asking why their attributes + // have a "unhandled: " prefix than say that their code is panicking. + return fmt.Sprintf("", v.Kind()) + } +} + +// MarshalJSON encodes v into OTLP formatted JSON. +func (v *Value) MarshalJSON() ([]byte, error) { + switch v.Kind() { + case ValueKindString: + return json.Marshal(struct { + Value string `json:"stringValue"` + }{v.asString()}) + case ValueKindInt64: + return json.Marshal(struct { + Value string `json:"intValue"` + }{strconv.FormatInt(int64(v.num), 10)}) // nolint: gosec // From raw bytes. + case ValueKindFloat64: + return json.Marshal(struct { + Value float64 `json:"doubleValue"` + }{v.asFloat64()}) + case ValueKindBool: + return json.Marshal(struct { + Value bool `json:"boolValue"` + }{v.asBool()}) + case ValueKindBytes: + return json.Marshal(struct { + Value []byte `json:"bytesValue"` + }{v.asBytes()}) + case ValueKindMap: + return json.Marshal(struct { + Value struct { + Values []Attr `json:"values"` + } `json:"kvlistValue"` + }{struct { + Values []Attr `json:"values"` + }{v.asMap()}}) + case ValueKindSlice: + return json.Marshal(struct { + Value struct { + Values []Value `json:"values"` + } `json:"arrayValue"` + }{struct { + Values []Value `json:"values"` + }{v.asSlice()}}) + case ValueKindEmpty: + return nil, nil + default: + return nil, fmt.Errorf("unknown Value kind: %s", v.Kind().String()) + } +} + +// UnmarshalJSON decodes the OTLP formatted JSON contained in data into v. +func (v *Value) UnmarshalJSON(data []byte) error { + decoder := json.NewDecoder(bytes.NewReader(data)) + + t, err := decoder.Token() + if err != nil { + return err + } + if t != json.Delim('{') { + return errors.New("invalid Value type") + } + + for decoder.More() { + keyIface, err := decoder.Token() + if err != nil { + if errors.Is(err, io.EOF) { + // Empty. + return nil + } + return err + } + + key, ok := keyIface.(string) + if !ok { + return fmt.Errorf("invalid Value key: %#v", keyIface) + } + + switch key { + case "stringValue", "string_value": + var val string + err = decoder.Decode(&val) + *v = StringValue(val) + case "boolValue", "bool_value": + var val bool + err = decoder.Decode(&val) + *v = BoolValue(val) + case "intValue", "int_value": + var val protoInt64 + err = decoder.Decode(&val) + *v = Int64Value(val.Int64()) + case "doubleValue", "double_value": + var val float64 + err = decoder.Decode(&val) + *v = Float64Value(val) + case "bytesValue", "bytes_value": + var val64 string + if err := decoder.Decode(&val64); err != nil { + return err + } + var val []byte + val, err = base64.StdEncoding.DecodeString(val64) + *v = BytesValue(val) + case "arrayValue", "array_value": + var val struct{ Values []Value } + err = decoder.Decode(&val) + *v = SliceValue(val.Values...) + case "kvlistValue", "kvlist_value": + var val struct{ Values []Attr } + err = decoder.Decode(&val) + *v = MapValue(val.Values...) + default: + // Skip unknown. + continue + } + // Use first valid. Ignore the rest. + return err + } + + // Only unknown fields. Return nil without unmarshaling any value. + return nil +} diff --git a/vendor/go.opentelemetry.io/otel/trace/nonrecording.go b/vendor/go.opentelemetry.io/otel/trace/nonrecording.go new file mode 100644 index 0000000000..c00221e7be --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/nonrecording.go @@ -0,0 +1,16 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +// nonRecordingSpan is a minimal implementation of a Span that wraps a +// SpanContext. It performs no operations other than to return the wrapped +// SpanContext. +type nonRecordingSpan struct { + noopSpan + + sc SpanContext +} + +// SpanContext returns the wrapped SpanContext. +func (s nonRecordingSpan) SpanContext() SpanContext { return s.sc } diff --git a/vendor/go.opentelemetry.io/otel/trace/noop.go b/vendor/go.opentelemetry.io/otel/trace/noop.go new file mode 100644 index 0000000000..0f56e4dbb3 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/noop.go @@ -0,0 +1,105 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/trace/embedded" +) + +// NewNoopTracerProvider returns an implementation of TracerProvider that +// performs no operations. The Tracer and Spans created from the returned +// TracerProvider also perform no operations. +// +// Deprecated: Use [go.opentelemetry.io/otel/trace/noop.NewTracerProvider] +// instead. +func NewNoopTracerProvider() TracerProvider { + return noopTracerProvider{} +} + +type noopTracerProvider struct{ embedded.TracerProvider } + +var _ TracerProvider = noopTracerProvider{} + +// Tracer returns noop implementation of Tracer. +func (p noopTracerProvider) Tracer(string, ...TracerOption) Tracer { + return noopTracer{} +} + +// noopTracer is an implementation of Tracer that performs no operations. +type noopTracer struct{ embedded.Tracer } + +var _ Tracer = noopTracer{} + +// Start carries forward a non-recording Span, if one is present in the context, otherwise it +// creates a no-op Span. +func (t noopTracer) Start(ctx context.Context, name string, _ ...SpanStartOption) (context.Context, Span) { + span := SpanFromContext(ctx) + if _, ok := span.(nonRecordingSpan); !ok { + // span is likely already a noopSpan, but let's be sure + span = noopSpanInstance + } + return ContextWithSpan(ctx, span), span +} + +// noopSpan is an implementation of Span that performs no operations. +type noopSpan struct{ embedded.Span } + +var noopSpanInstance Span = noopSpan{} + +// SpanContext returns an empty span context. +func (noopSpan) SpanContext() SpanContext { return SpanContext{} } + +// IsRecording always returns false. +func (noopSpan) IsRecording() bool { return false } + +// SetStatus does nothing. +func (noopSpan) SetStatus(codes.Code, string) {} + +// SetError does nothing. +func (noopSpan) SetError(bool) {} + +// SetAttributes does nothing. +func (noopSpan) SetAttributes(...attribute.KeyValue) {} + +// End does nothing. +func (noopSpan) End(...SpanEndOption) {} + +// RecordError does nothing. +func (noopSpan) RecordError(error, ...EventOption) {} + +// AddEvent does nothing. +func (noopSpan) AddEvent(string, ...EventOption) {} + +// AddLink does nothing. +func (noopSpan) AddLink(Link) {} + +// SetName does nothing. +func (noopSpan) SetName(string) {} + +// TracerProvider returns a no-op TracerProvider. +func (s noopSpan) TracerProvider() TracerProvider { + return s.tracerProvider(autoInstEnabled) +} + +// autoInstEnabled defines if the auto-instrumentation SDK is enabled. +// +// The auto-instrumentation is expected to overwrite this value to true when it +// attaches to the process. +var autoInstEnabled = new(bool) + +// tracerProvider return a noopTracerProvider if autoEnabled is false, +// otherwise it will return a TracerProvider from the sdk package used in +// auto-instrumentation. +// +//go:noinline +func (noopSpan) tracerProvider(autoEnabled *bool) TracerProvider { + if *autoEnabled { + return newAutoTracerProvider() + } + return noopTracerProvider{} +} diff --git a/vendor/go.opentelemetry.io/otel/trace/noop/README.md b/vendor/go.opentelemetry.io/otel/trace/noop/README.md new file mode 100644 index 0000000000..cd382c82a1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/noop/README.md @@ -0,0 +1,3 @@ +# Trace Noop + +[![PkgGoDev](https://pkg.go.dev/badge/go.opentelemetry.io/otel/trace/noop)](https://pkg.go.dev/go.opentelemetry.io/otel/trace/noop) diff --git a/vendor/go.opentelemetry.io/otel/trace/noop/noop.go b/vendor/go.opentelemetry.io/otel/trace/noop/noop.go new file mode 100644 index 0000000000..64a4f1b362 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/noop/noop.go @@ -0,0 +1,112 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +// Package noop provides an implementation of the OpenTelemetry trace API that +// produces no telemetry and minimizes used computation resources. +// +// Using this package to implement the OpenTelemetry trace API will effectively +// disable OpenTelemetry. +// +// This implementation can be embedded in other implementations of the +// OpenTelemetry trace API. Doing so will mean the implementation defaults to +// no operation for methods it does not implement. +package noop // import "go.opentelemetry.io/otel/trace/noop" + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/trace" + "go.opentelemetry.io/otel/trace/embedded" +) + +var ( + // Compile-time check this implements the OpenTelemetry API. + + _ trace.TracerProvider = TracerProvider{} + _ trace.Tracer = Tracer{} + _ trace.Span = Span{} +) + +// TracerProvider is an OpenTelemetry No-Op TracerProvider. +type TracerProvider struct{ embedded.TracerProvider } + +// NewTracerProvider returns a TracerProvider that does not record any telemetry. +func NewTracerProvider() TracerProvider { + return TracerProvider{} +} + +// Tracer returns an OpenTelemetry Tracer that does not record any telemetry. +func (TracerProvider) Tracer(string, ...trace.TracerOption) trace.Tracer { + return Tracer{} +} + +// Tracer is an OpenTelemetry No-Op Tracer. +type Tracer struct{ embedded.Tracer } + +// Start creates a span. The created span will be set in a child context of ctx +// and returned with the span. +// +// If ctx contains a span context, the returned span will also contain that +// span context. If the span context in ctx is for a non-recording span, that +// span instance will be returned directly. +func (t Tracer) Start(ctx context.Context, _ string, _ ...trace.SpanStartOption) (context.Context, trace.Span) { + span := trace.SpanFromContext(ctx) + + // If the parent context contains a non-zero span context, that span + // context needs to be returned as a non-recording span + // (https://github.com/open-telemetry/opentelemetry-specification/blob/3a1dde966a4ce87cce5adf464359fe369741bbea/specification/trace/api.md#behavior-of-the-api-in-the-absence-of-an-installed-sdk). + var zeroSC trace.SpanContext + if sc := span.SpanContext(); !sc.Equal(zeroSC) { + if !span.IsRecording() { + // If the span is not recording return it directly. + return ctx, span + } + // Otherwise, return the span context needs in a non-recording span. + span = Span{sc: sc} + } else { + // No parent, return a No-Op span with an empty span context. + span = noopSpanInstance + } + return trace.ContextWithSpan(ctx, span), span +} + +var noopSpanInstance trace.Span = Span{} + +// Span is an OpenTelemetry No-Op Span. +type Span struct { + embedded.Span + + sc trace.SpanContext +} + +// SpanContext returns an empty span context. +func (s Span) SpanContext() trace.SpanContext { return s.sc } + +// IsRecording always returns false. +func (Span) IsRecording() bool { return false } + +// SetStatus does nothing. +func (Span) SetStatus(codes.Code, string) {} + +// SetAttributes does nothing. +func (Span) SetAttributes(...attribute.KeyValue) {} + +// End does nothing. +func (Span) End(...trace.SpanEndOption) {} + +// RecordError does nothing. +func (Span) RecordError(error, ...trace.EventOption) {} + +// AddEvent does nothing. +func (Span) AddEvent(string, ...trace.EventOption) {} + +// AddLink does nothing. +func (Span) AddLink(trace.Link) {} + +// SetName does nothing. +func (Span) SetName(string) {} + +// TracerProvider returns a No-Op TracerProvider. +func (Span) TracerProvider() trace.TracerProvider { return TracerProvider{} } diff --git a/vendor/go.opentelemetry.io/otel/trace/provider.go b/vendor/go.opentelemetry.io/otel/trace/provider.go new file mode 100644 index 0000000000..ef85cb70c6 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/provider.go @@ -0,0 +1,59 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import "go.opentelemetry.io/otel/trace/embedded" + +// TracerProvider provides Tracers that are used by instrumentation code to +// trace computational workflows. +// +// A TracerProvider is the collection destination of all Spans from Tracers it +// provides, it represents a unique telemetry collection pipeline. How that +// pipeline is defined, meaning how those Spans are collected, processed, and +// where they are exported, depends on its implementation. Instrumentation +// authors do not need to define this implementation, rather just use the +// provided Tracers to instrument code. +// +// Commonly, instrumentation code will accept a TracerProvider implementation +// at runtime from its users or it can simply use the globally registered one +// (see https://pkg.go.dev/go.opentelemetry.io/otel#GetTracerProvider). +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type TracerProvider interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.TracerProvider + + // Tracer returns a unique Tracer scoped to be used by instrumentation code + // to trace computational workflows. The scope and identity of that + // instrumentation code is uniquely defined by the name and options passed. + // + // The passed name needs to uniquely identify instrumentation code. + // Therefore, it is recommended that name is the Go package name of the + // library providing instrumentation (note: not the code being + // instrumented). Instrumentation libraries can have multiple versions, + // therefore, the WithInstrumentationVersion option should be used to + // distinguish these different codebases. Additionally, instrumentation + // libraries may sometimes use traces to communicate different domains of + // workflow data (i.e. using spans to communicate workflow events only). If + // this is the case, the WithScopeAttributes option should be used to + // uniquely identify Tracers that handle the different domains of workflow + // data. + // + // If the same name and options are passed multiple times, the same Tracer + // will be returned (it is up to the implementation if this will be the + // same underlying instance of that Tracer or not). It is not necessary to + // call this multiple times with the same name and options to get an + // up-to-date Tracer. All implementations will ensure any TracerProvider + // configuration changes are propagated to all provided Tracers. + // + // If name is empty, then an implementation defined default name will be + // used instead. + // + // This method is safe to call concurrently. + Tracer(name string, options ...TracerOption) Tracer +} diff --git a/vendor/go.opentelemetry.io/otel/trace/span.go b/vendor/go.opentelemetry.io/otel/trace/span.go new file mode 100644 index 0000000000..d3aa476ee1 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/span.go @@ -0,0 +1,177 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "context" + + "go.opentelemetry.io/otel/attribute" + "go.opentelemetry.io/otel/codes" + "go.opentelemetry.io/otel/trace/embedded" +) + +// Span is the individual component of a trace. It represents a single named +// and timed operation of a workflow that is traced. A Tracer is used to +// create a Span and it is then up to the operation the Span represents to +// properly end the Span when the operation itself ends. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Span interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Span + + // End completes the Span. The Span is considered complete and ready to be + // delivered through the rest of the telemetry pipeline after this method + // is called. Therefore, updates to the Span are not allowed after this + // method has been called. + End(options ...SpanEndOption) + + // AddEvent adds an event with the provided name and options. + AddEvent(name string, options ...EventOption) + + // AddLink adds a link. + // Adding links at span creation using WithLinks is preferred to calling AddLink + // later, for contexts that are available during span creation, because head + // sampling decisions can only consider information present during span creation. + AddLink(link Link) + + // IsRecording returns the recording state of the Span. It will return + // true if the Span is active and events can be recorded. + IsRecording() bool + + // RecordError will record err as an exception span event for this span. An + // additional call to SetStatus is required if the Status of the Span should + // be set to Error, as this method does not change the Span status. If this + // span is not being recorded or err is nil then this method does nothing. + RecordError(err error, options ...EventOption) + + // SpanContext returns the SpanContext of the Span. The returned SpanContext + // is usable even after the End method has been called for the Span. + SpanContext() SpanContext + + // SetStatus sets the status of the Span in the form of a code and a + // description, provided the status hasn't already been set to a higher + // value before (OK > Error > Unset). The description is only included in a + // status when the code is for an error. + SetStatus(code codes.Code, description string) + + // SetName sets the Span name. + SetName(name string) + + // SetAttributes sets kv as attributes of the Span. If a key from kv + // already exists for an attribute of the Span it will be overwritten with + // the value contained in kv. + SetAttributes(kv ...attribute.KeyValue) + + // TracerProvider returns a TracerProvider that can be used to generate + // additional Spans on the same telemetry pipeline as the current Span. + TracerProvider() TracerProvider +} + +// Link is the relationship between two Spans. The relationship can be within +// the same Trace or across different Traces. +// +// For example, a Link is used in the following situations: +// +// 1. Batch Processing: A batch of operations may contain operations +// associated with one or more traces/spans. Since there can only be one +// parent SpanContext, a Link is used to keep reference to the +// SpanContext of all operations in the batch. +// 2. Public Endpoint: A SpanContext for an in incoming client request on a +// public endpoint should be considered untrusted. In such a case, a new +// trace with its own identity and sampling decision needs to be created, +// but this new trace needs to be related to the original trace in some +// form. A Link is used to keep reference to the original SpanContext and +// track the relationship. +type Link struct { + // SpanContext of the linked Span. + SpanContext SpanContext + + // Attributes describe the aspects of the link. + Attributes []attribute.KeyValue +} + +// LinkFromContext returns a link encapsulating the SpanContext in the provided +// ctx. +func LinkFromContext(ctx context.Context, attrs ...attribute.KeyValue) Link { + return Link{ + SpanContext: SpanContextFromContext(ctx), + Attributes: attrs, + } +} + +// SpanKind is the role a Span plays in a Trace. +type SpanKind int + +// As a convenience, these match the proto definition, see +// https://github.com/open-telemetry/opentelemetry-proto/blob/30d237e1ff3ab7aa50e0922b5bebdd93505090af/opentelemetry/proto/trace/v1/trace.proto#L101-L129 +// +// The unspecified value is not a valid `SpanKind`. Use `ValidateSpanKind()` +// to coerce a span kind to a valid value. +const ( + // SpanKindUnspecified is an unspecified SpanKind and is not a valid + // SpanKind. SpanKindUnspecified should be replaced with SpanKindInternal + // if it is received. + SpanKindUnspecified SpanKind = 0 + // SpanKindInternal is a SpanKind for a Span that represents an internal + // operation within an application. + SpanKindInternal SpanKind = 1 + // SpanKindServer is a SpanKind for a Span that represents the operation + // of handling a request from a client. + SpanKindServer SpanKind = 2 + // SpanKindClient is a SpanKind for a Span that represents the operation + // of client making a request to a server. + SpanKindClient SpanKind = 3 + // SpanKindProducer is a SpanKind for a Span that represents the operation + // of a producer sending a message to a message broker. Unlike + // SpanKindClient and SpanKindServer, there is often no direct + // relationship between this kind of Span and a SpanKindConsumer kind. A + // SpanKindProducer Span will end once the message is accepted by the + // message broker which might not overlap with the processing of that + // message. + SpanKindProducer SpanKind = 4 + // SpanKindConsumer is a SpanKind for a Span that represents the operation + // of a consumer receiving a message from a message broker. Like + // SpanKindProducer Spans, there is often no direct relationship between + // this Span and the Span that produced the message. + SpanKindConsumer SpanKind = 5 +) + +// ValidateSpanKind returns a valid span kind value. This will coerce +// invalid values into the default value, SpanKindInternal. +func ValidateSpanKind(spanKind SpanKind) SpanKind { + switch spanKind { + case SpanKindInternal, + SpanKindServer, + SpanKindClient, + SpanKindProducer, + SpanKindConsumer: + // valid + return spanKind + default: + return SpanKindInternal + } +} + +// String returns the specified name of the SpanKind in lower-case. +func (sk SpanKind) String() string { + switch sk { + case SpanKindInternal: + return "internal" + case SpanKindServer: + return "server" + case SpanKindClient: + return "client" + case SpanKindProducer: + return "producer" + case SpanKindConsumer: + return "consumer" + default: + return "unspecified" + } +} diff --git a/vendor/go.opentelemetry.io/otel/trace/trace.go b/vendor/go.opentelemetry.io/otel/trace/trace.go new file mode 100644 index 0000000000..d49adf671b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/trace.go @@ -0,0 +1,323 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "bytes" + "encoding/hex" + "encoding/json" +) + +const ( + // FlagsSampled is a bitmask with the sampled bit set. A SpanContext + // with the sampling bit set means the span is sampled. + FlagsSampled = TraceFlags(0x01) + + errInvalidHexID errorConst = "trace-id and span-id can only contain [0-9a-f] characters, all lowercase" + + errInvalidTraceIDLength errorConst = "hex encoded trace-id must have length equals to 32" + errNilTraceID errorConst = "trace-id can't be all zero" + + errInvalidSpanIDLength errorConst = "hex encoded span-id must have length equals to 16" + errNilSpanID errorConst = "span-id can't be all zero" +) + +type errorConst string + +func (e errorConst) Error() string { + return string(e) +} + +// TraceID is a unique identity of a trace. +// nolint:revive // revive complains about stutter of `trace.TraceID`. +type TraceID [16]byte + +var ( + nilTraceID TraceID + _ json.Marshaler = nilTraceID +) + +// IsValid checks whether the trace TraceID is valid. A valid trace ID does +// not consist of zeros only. +func (t TraceID) IsValid() bool { + return !bytes.Equal(t[:], nilTraceID[:]) +} + +// MarshalJSON implements a custom marshal function to encode TraceID +// as a hex string. +func (t TraceID) MarshalJSON() ([]byte, error) { + return json.Marshal(t.String()) +} + +// String returns the hex string representation form of a TraceID. +func (t TraceID) String() string { + return hex.EncodeToString(t[:]) +} + +// SpanID is a unique identity of a span in a trace. +type SpanID [8]byte + +var ( + nilSpanID SpanID + _ json.Marshaler = nilSpanID +) + +// IsValid checks whether the SpanID is valid. A valid SpanID does not consist +// of zeros only. +func (s SpanID) IsValid() bool { + return !bytes.Equal(s[:], nilSpanID[:]) +} + +// MarshalJSON implements a custom marshal function to encode SpanID +// as a hex string. +func (s SpanID) MarshalJSON() ([]byte, error) { + return json.Marshal(s.String()) +} + +// String returns the hex string representation form of a SpanID. +func (s SpanID) String() string { + return hex.EncodeToString(s[:]) +} + +// TraceIDFromHex returns a TraceID from a hex string if it is compliant with +// the W3C trace-context specification. See more at +// https://www.w3.org/TR/trace-context/#trace-id +// nolint:revive // revive complains about stutter of `trace.TraceIDFromHex`. +func TraceIDFromHex(h string) (TraceID, error) { + t := TraceID{} + if len(h) != 32 { + return t, errInvalidTraceIDLength + } + + if err := decodeHex(h, t[:]); err != nil { + return t, err + } + + if !t.IsValid() { + return t, errNilTraceID + } + return t, nil +} + +// SpanIDFromHex returns a SpanID from a hex string if it is compliant +// with the w3c trace-context specification. +// See more at https://www.w3.org/TR/trace-context/#parent-id +func SpanIDFromHex(h string) (SpanID, error) { + s := SpanID{} + if len(h) != 16 { + return s, errInvalidSpanIDLength + } + + if err := decodeHex(h, s[:]); err != nil { + return s, err + } + + if !s.IsValid() { + return s, errNilSpanID + } + return s, nil +} + +func decodeHex(h string, b []byte) error { + for _, r := range h { + switch { + case 'a' <= r && r <= 'f': + continue + case '0' <= r && r <= '9': + continue + default: + return errInvalidHexID + } + } + + decoded, err := hex.DecodeString(h) + if err != nil { + return err + } + + copy(b, decoded) + return nil +} + +// TraceFlags contains flags that can be set on a SpanContext. +type TraceFlags byte //nolint:revive // revive complains about stutter of `trace.TraceFlags`. + +// IsSampled returns if the sampling bit is set in the TraceFlags. +func (tf TraceFlags) IsSampled() bool { + return tf&FlagsSampled == FlagsSampled +} + +// WithSampled sets the sampling bit in a new copy of the TraceFlags. +func (tf TraceFlags) WithSampled(sampled bool) TraceFlags { // nolint:revive // sampled is not a control flag. + if sampled { + return tf | FlagsSampled + } + + return tf &^ FlagsSampled +} + +// MarshalJSON implements a custom marshal function to encode TraceFlags +// as a hex string. +func (tf TraceFlags) MarshalJSON() ([]byte, error) { + return json.Marshal(tf.String()) +} + +// String returns the hex string representation form of TraceFlags. +func (tf TraceFlags) String() string { + return hex.EncodeToString([]byte{byte(tf)}[:]) +} + +// SpanContextConfig contains mutable fields usable for constructing +// an immutable SpanContext. +type SpanContextConfig struct { + TraceID TraceID + SpanID SpanID + TraceFlags TraceFlags + TraceState TraceState + Remote bool +} + +// NewSpanContext constructs a SpanContext using values from the provided +// SpanContextConfig. +func NewSpanContext(config SpanContextConfig) SpanContext { + return SpanContext{ + traceID: config.TraceID, + spanID: config.SpanID, + traceFlags: config.TraceFlags, + traceState: config.TraceState, + remote: config.Remote, + } +} + +// SpanContext contains identifying trace information about a Span. +type SpanContext struct { + traceID TraceID + spanID SpanID + traceFlags TraceFlags + traceState TraceState + remote bool +} + +var _ json.Marshaler = SpanContext{} + +// IsValid returns if the SpanContext is valid. A valid span context has a +// valid TraceID and SpanID. +func (sc SpanContext) IsValid() bool { + return sc.HasTraceID() && sc.HasSpanID() +} + +// IsRemote indicates whether the SpanContext represents a remotely-created Span. +func (sc SpanContext) IsRemote() bool { + return sc.remote +} + +// WithRemote returns a copy of sc with the Remote property set to remote. +func (sc SpanContext) WithRemote(remote bool) SpanContext { + return SpanContext{ + traceID: sc.traceID, + spanID: sc.spanID, + traceFlags: sc.traceFlags, + traceState: sc.traceState, + remote: remote, + } +} + +// TraceID returns the TraceID from the SpanContext. +func (sc SpanContext) TraceID() TraceID { + return sc.traceID +} + +// HasTraceID checks if the SpanContext has a valid TraceID. +func (sc SpanContext) HasTraceID() bool { + return sc.traceID.IsValid() +} + +// WithTraceID returns a new SpanContext with the TraceID replaced. +func (sc SpanContext) WithTraceID(traceID TraceID) SpanContext { + return SpanContext{ + traceID: traceID, + spanID: sc.spanID, + traceFlags: sc.traceFlags, + traceState: sc.traceState, + remote: sc.remote, + } +} + +// SpanID returns the SpanID from the SpanContext. +func (sc SpanContext) SpanID() SpanID { + return sc.spanID +} + +// HasSpanID checks if the SpanContext has a valid SpanID. +func (sc SpanContext) HasSpanID() bool { + return sc.spanID.IsValid() +} + +// WithSpanID returns a new SpanContext with the SpanID replaced. +func (sc SpanContext) WithSpanID(spanID SpanID) SpanContext { + return SpanContext{ + traceID: sc.traceID, + spanID: spanID, + traceFlags: sc.traceFlags, + traceState: sc.traceState, + remote: sc.remote, + } +} + +// TraceFlags returns the flags from the SpanContext. +func (sc SpanContext) TraceFlags() TraceFlags { + return sc.traceFlags +} + +// IsSampled returns if the sampling bit is set in the SpanContext's TraceFlags. +func (sc SpanContext) IsSampled() bool { + return sc.traceFlags.IsSampled() +} + +// WithTraceFlags returns a new SpanContext with the TraceFlags replaced. +func (sc SpanContext) WithTraceFlags(flags TraceFlags) SpanContext { + return SpanContext{ + traceID: sc.traceID, + spanID: sc.spanID, + traceFlags: flags, + traceState: sc.traceState, + remote: sc.remote, + } +} + +// TraceState returns the TraceState from the SpanContext. +func (sc SpanContext) TraceState() TraceState { + return sc.traceState +} + +// WithTraceState returns a new SpanContext with the TraceState replaced. +func (sc SpanContext) WithTraceState(state TraceState) SpanContext { + return SpanContext{ + traceID: sc.traceID, + spanID: sc.spanID, + traceFlags: sc.traceFlags, + traceState: state, + remote: sc.remote, + } +} + +// Equal is a predicate that determines whether two SpanContext values are equal. +func (sc SpanContext) Equal(other SpanContext) bool { + return sc.traceID == other.traceID && + sc.spanID == other.spanID && + sc.traceFlags == other.traceFlags && + sc.traceState.String() == other.traceState.String() && + sc.remote == other.remote +} + +// MarshalJSON implements a custom marshal function to encode a SpanContext. +func (sc SpanContext) MarshalJSON() ([]byte, error) { + return json.Marshal(SpanContextConfig{ + TraceID: sc.traceID, + SpanID: sc.spanID, + TraceFlags: sc.traceFlags, + TraceState: sc.traceState, + Remote: sc.remote, + }) +} diff --git a/vendor/go.opentelemetry.io/otel/trace/tracer.go b/vendor/go.opentelemetry.io/otel/trace/tracer.go new file mode 100644 index 0000000000..77952d2a0b --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/tracer.go @@ -0,0 +1,37 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "context" + + "go.opentelemetry.io/otel/trace/embedded" +) + +// Tracer is the creator of Spans. +// +// Warning: Methods may be added to this interface in minor releases. See +// package documentation on API implementation for information on how to set +// default behavior for unimplemented methods. +type Tracer interface { + // Users of the interface can ignore this. This embedded type is only used + // by implementations of this interface. See the "API Implementations" + // section of the package documentation for more information. + embedded.Tracer + + // Start creates a span and a context.Context containing the newly-created span. + // + // If the context.Context provided in `ctx` contains a Span then the newly-created + // Span will be a child of that span, otherwise it will be a root span. This behavior + // can be overridden by providing `WithNewRoot()` as a SpanOption, causing the + // newly-created Span to be a root span even if `ctx` contains a Span. + // + // When creating a Span it is recommended to provide all known span attributes using + // the `WithAttributes()` SpanOption as samplers will only have access to the + // attributes provided when a Span is created. + // + // Any Span that is created MUST also be ended. This is the responsibility of the user. + // Implementations of this API may leak memory or other resources if Spans are not ended. + Start(ctx context.Context, spanName string, opts ...SpanStartOption) (context.Context, Span) +} diff --git a/vendor/go.opentelemetry.io/otel/trace/tracestate.go b/vendor/go.opentelemetry.io/otel/trace/tracestate.go new file mode 100644 index 0000000000..dc5e34cad0 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/trace/tracestate.go @@ -0,0 +1,330 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package trace // import "go.opentelemetry.io/otel/trace" + +import ( + "encoding/json" + "fmt" + "strings" +) + +const ( + maxListMembers = 32 + + listDelimiters = "," + memberDelimiter = "=" + + errInvalidKey errorConst = "invalid tracestate key" + errInvalidValue errorConst = "invalid tracestate value" + errInvalidMember errorConst = "invalid tracestate list-member" + errMemberNumber errorConst = "too many list-members in tracestate" + errDuplicate errorConst = "duplicate list-member in tracestate" +) + +type member struct { + Key string + Value string +} + +// according to (chr = %x20 / (nblk-char = %x21-2B / %x2D-3C / %x3E-7E) ) +// means (chr = %x20-2B / %x2D-3C / %x3E-7E) . +func checkValueChar(v byte) bool { + return v >= '\x20' && v <= '\x7e' && v != '\x2c' && v != '\x3d' +} + +// according to (nblk-chr = %x21-2B / %x2D-3C / %x3E-7E) . +func checkValueLast(v byte) bool { + return v >= '\x21' && v <= '\x7e' && v != '\x2c' && v != '\x3d' +} + +// based on the W3C Trace Context specification +// +// value = (0*255(chr)) nblk-chr +// nblk-chr = %x21-2B / %x2D-3C / %x3E-7E +// chr = %x20 / nblk-chr +// +// see https://www.w3.org/TR/trace-context-1/#value +func checkValue(val string) bool { + n := len(val) + if n == 0 || n > 256 { + return false + } + for i := 0; i < n-1; i++ { + if !checkValueChar(val[i]) { + return false + } + } + return checkValueLast(val[n-1]) +} + +func checkKeyRemain(key string) bool { + // ( lcalpha / DIGIT / "_" / "-"/ "*" / "/" ) + for _, v := range key { + if isAlphaNum(byte(v)) { + continue + } + switch v { + case '_', '-', '*', '/': + continue + } + return false + } + return true +} + +// according to +// +// simple-key = lcalpha (0*255( lcalpha / DIGIT / "_" / "-"/ "*" / "/" )) +// system-id = lcalpha (0*13( lcalpha / DIGIT / "_" / "-"/ "*" / "/" )) +// +// param n is remain part length, should be 255 in simple-key or 13 in system-id. +func checkKeyPart(key string, n int) bool { + if len(key) == 0 { + return false + } + first := key[0] // key's first char + ret := len(key[1:]) <= n + ret = ret && first >= 'a' && first <= 'z' + return ret && checkKeyRemain(key[1:]) +} + +func isAlphaNum(c byte) bool { + if c >= 'a' && c <= 'z' { + return true + } + return c >= '0' && c <= '9' +} + +// according to +// +// tenant-id = ( lcalpha / DIGIT ) 0*240( lcalpha / DIGIT / "_" / "-"/ "*" / "/" ) +// +// param n is remain part length, should be 240 exactly. +func checkKeyTenant(key string, n int) bool { + if len(key) == 0 { + return false + } + return isAlphaNum(key[0]) && len(key[1:]) <= n && checkKeyRemain(key[1:]) +} + +// based on the W3C Trace Context specification +// +// key = simple-key / multi-tenant-key +// simple-key = lcalpha (0*255( lcalpha / DIGIT / "_" / "-"/ "*" / "/" )) +// multi-tenant-key = tenant-id "@" system-id +// tenant-id = ( lcalpha / DIGIT ) (0*240( lcalpha / DIGIT / "_" / "-"/ "*" / "/" )) +// system-id = lcalpha (0*13( lcalpha / DIGIT / "_" / "-"/ "*" / "/" )) +// lcalpha = %x61-7A ; a-z +// +// see https://www.w3.org/TR/trace-context-1/#tracestate-header. +func checkKey(key string) bool { + tenant, system, ok := strings.Cut(key, "@") + if !ok { + return checkKeyPart(key, 255) + } + return checkKeyTenant(tenant, 240) && checkKeyPart(system, 13) +} + +func newMember(key, value string) (member, error) { + if !checkKey(key) { + return member{}, errInvalidKey + } + if !checkValue(value) { + return member{}, errInvalidValue + } + return member{Key: key, Value: value}, nil +} + +func parseMember(m string) (member, error) { + key, val, ok := strings.Cut(m, memberDelimiter) + if !ok { + return member{}, fmt.Errorf("%w: %s", errInvalidMember, m) + } + key = strings.TrimLeft(key, " \t") + val = strings.TrimRight(val, " \t") + result, e := newMember(key, val) + if e != nil { + return member{}, fmt.Errorf("%w: %s", errInvalidMember, m) + } + return result, nil +} + +// String encodes member into a string compliant with the W3C Trace Context +// specification. +func (m member) String() string { + return m.Key + "=" + m.Value +} + +// TraceState provides additional vendor-specific trace identification +// information across different distributed tracing systems. It represents an +// immutable list consisting of key/value pairs, each pair is referred to as a +// list-member. +// +// TraceState conforms to the W3C Trace Context specification +// (https://www.w3.org/TR/trace-context-1). All operations that create or copy +// a TraceState do so by validating all input and will only produce TraceState +// that conform to the specification. Specifically, this means that all +// list-member's key/value pairs are valid, no duplicate list-members exist, +// and the maximum number of list-members (32) is not exceeded. +type TraceState struct { //nolint:revive // revive complains about stutter of `trace.TraceState` + // list is the members in order. + list []member +} + +var _ json.Marshaler = TraceState{} + +// ParseTraceState attempts to decode a TraceState from the passed +// string. It returns an error if the input is invalid according to the W3C +// Trace Context specification. +func ParseTraceState(ts string) (TraceState, error) { + if ts == "" { + return TraceState{}, nil + } + + wrapErr := func(err error) error { + return fmt.Errorf("failed to parse tracestate: %w", err) + } + + var members []member + found := make(map[string]struct{}) + for ts != "" { + var memberStr string + memberStr, ts, _ = strings.Cut(ts, listDelimiters) + if len(memberStr) == 0 { + continue + } + + m, err := parseMember(memberStr) + if err != nil { + return TraceState{}, wrapErr(err) + } + + if _, ok := found[m.Key]; ok { + return TraceState{}, wrapErr(errDuplicate) + } + found[m.Key] = struct{}{} + + members = append(members, m) + if n := len(members); n > maxListMembers { + return TraceState{}, wrapErr(errMemberNumber) + } + } + + return TraceState{list: members}, nil +} + +// MarshalJSON marshals the TraceState into JSON. +func (ts TraceState) MarshalJSON() ([]byte, error) { + return json.Marshal(ts.String()) +} + +// String encodes the TraceState into a string compliant with the W3C +// Trace Context specification. The returned string will be invalid if the +// TraceState contains any invalid members. +func (ts TraceState) String() string { + if len(ts.list) == 0 { + return "" + } + var n int + n += len(ts.list) // member delimiters: '=' + n += len(ts.list) - 1 // list delimiters: ',' + for _, mem := range ts.list { + n += len(mem.Key) + n += len(mem.Value) + } + + var sb strings.Builder + sb.Grow(n) + _, _ = sb.WriteString(ts.list[0].Key) + _ = sb.WriteByte('=') + _, _ = sb.WriteString(ts.list[0].Value) + for i := 1; i < len(ts.list); i++ { + _ = sb.WriteByte(listDelimiters[0]) + _, _ = sb.WriteString(ts.list[i].Key) + _ = sb.WriteByte('=') + _, _ = sb.WriteString(ts.list[i].Value) + } + return sb.String() +} + +// Get returns the value paired with key from the corresponding TraceState +// list-member if it exists, otherwise an empty string is returned. +func (ts TraceState) Get(key string) string { + for _, member := range ts.list { + if member.Key == key { + return member.Value + } + } + + return "" +} + +// Walk walks all key value pairs in the TraceState by calling f +// Iteration stops if f returns false. +func (ts TraceState) Walk(f func(key, value string) bool) { + for _, m := range ts.list { + if !f(m.Key, m.Value) { + break + } + } +} + +// Insert adds a new list-member defined by the key/value pair to the +// TraceState. If a list-member already exists for the given key, that +// list-member's value is updated. The new or updated list-member is always +// moved to the beginning of the TraceState as specified by the W3C Trace +// Context specification. +// +// If key or value are invalid according to the W3C Trace Context +// specification an error is returned with the original TraceState. +// +// If adding a new list-member means the TraceState would have more members +// then is allowed, the new list-member will be inserted and the right-most +// list-member will be dropped in the returned TraceState. +func (ts TraceState) Insert(key, value string) (TraceState, error) { + m, err := newMember(key, value) + if err != nil { + return ts, err + } + n := len(ts.list) + found := n + for i := range ts.list { + if ts.list[i].Key == key { + found = i + } + } + cTS := TraceState{} + if found == n && n < maxListMembers { + cTS.list = make([]member, n+1) + } else { + cTS.list = make([]member, n) + } + cTS.list[0] = m + // When the number of members exceeds capacity, drop the "right-most". + copy(cTS.list[1:], ts.list[0:found]) + if found < n { + copy(cTS.list[1+found:], ts.list[found+1:]) + } + return cTS, nil +} + +// Delete returns a copy of the TraceState with the list-member identified by +// key removed. +func (ts TraceState) Delete(key string) TraceState { + members := make([]member, ts.Len()) + copy(members, ts.list) + for i, member := range ts.list { + if member.Key == key { + members = append(members[:i], members[i+1:]...) + // TraceState should contain no duplicate members. + break + } + } + return TraceState{list: members} +} + +// Len returns the number of list-members in the TraceState. +func (ts TraceState) Len() int { + return len(ts.list) +} diff --git a/vendor/go.opentelemetry.io/otel/verify_released_changelog.sh b/vendor/go.opentelemetry.io/otel/verify_released_changelog.sh new file mode 100644 index 0000000000..c9b7cdbbfe --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/verify_released_changelog.sh @@ -0,0 +1,42 @@ +#!/bin/bash + +# Copyright The OpenTelemetry Authors +# SPDX-License-Identifier: Apache-2.0 + +set -euo pipefail + +TARGET="${1:?Must provide target ref}" + +FILE="CHANGELOG.md" +TEMP_DIR=$(mktemp -d) +echo "Temp folder: $TEMP_DIR" + +# Only the latest commit of the feature branch is available +# automatically. To diff with the base branch, we need to +# fetch that too (and we only need its latest commit). +git fetch origin "${TARGET}" --depth=1 + +# Checkout the previous version on the base branch of the changelog to tmpfolder +git --work-tree="$TEMP_DIR" checkout FETCH_HEAD $FILE + +PREVIOUS_FILE="$TEMP_DIR/$FILE" +CURRENT_FILE="$FILE" +PREVIOUS_LOCKED_FILE="$TEMP_DIR/previous_locked_section.md" +CURRENT_LOCKED_FILE="$TEMP_DIR/current_locked_section.md" + +# Extract released sections from the previous version +awk '/^/ {flag=1} /^/ {flag=0} flag' "$PREVIOUS_FILE" > "$PREVIOUS_LOCKED_FILE" + +# Extract released sections from the current version +awk '/^/ {flag=1} /^/ {flag=0} flag' "$CURRENT_FILE" > "$CURRENT_LOCKED_FILE" + +# Compare the released sections +if ! diff -q "$PREVIOUS_LOCKED_FILE" "$CURRENT_LOCKED_FILE"; then + echo "Error: The released sections of the changelog file have been modified." + diff "$PREVIOUS_LOCKED_FILE" "$CURRENT_LOCKED_FILE" + rm -rf "$TEMP_DIR" + false +fi + +rm -rf "$TEMP_DIR" +echo "The released sections remain unchanged." diff --git a/vendor/go.opentelemetry.io/otel/version.go b/vendor/go.opentelemetry.io/otel/version.go new file mode 100644 index 0000000000..7afe92b598 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/version.go @@ -0,0 +1,9 @@ +// Copyright The OpenTelemetry Authors +// SPDX-License-Identifier: Apache-2.0 + +package otel // import "go.opentelemetry.io/otel" + +// Version is the current release version of OpenTelemetry in use. +func Version() string { + return "1.37.0" +} diff --git a/vendor/go.opentelemetry.io/otel/versions.yaml b/vendor/go.opentelemetry.io/otel/versions.yaml new file mode 100644 index 0000000000..9d4742a176 --- /dev/null +++ b/vendor/go.opentelemetry.io/otel/versions.yaml @@ -0,0 +1,44 @@ +# Copyright The OpenTelemetry Authors +# SPDX-License-Identifier: Apache-2.0 + +module-sets: + stable-v1: + version: v1.37.0 + modules: + - go.opentelemetry.io/otel + - go.opentelemetry.io/otel/bridge/opencensus + - go.opentelemetry.io/otel/bridge/opencensus/test + - go.opentelemetry.io/otel/bridge/opentracing + - go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetricgrpc + - go.opentelemetry.io/otel/exporters/otlp/otlpmetric/otlpmetrichttp + - go.opentelemetry.io/otel/exporters/otlp/otlptrace + - go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc + - go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracehttp + - go.opentelemetry.io/otel/exporters/stdout/stdoutmetric + - go.opentelemetry.io/otel/exporters/stdout/stdouttrace + - go.opentelemetry.io/otel/exporters/zipkin + - go.opentelemetry.io/otel/metric + - go.opentelemetry.io/otel/sdk + - go.opentelemetry.io/otel/sdk/metric + - go.opentelemetry.io/otel/trace + experimental-metrics: + version: v0.59.0 + modules: + - go.opentelemetry.io/otel/exporters/prometheus + experimental-logs: + version: v0.13.0 + modules: + - go.opentelemetry.io/otel/log + - go.opentelemetry.io/otel/log/logtest + - go.opentelemetry.io/otel/sdk/log + - go.opentelemetry.io/otel/sdk/log/logtest + - go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploggrpc + - go.opentelemetry.io/otel/exporters/otlp/otlplog/otlploghttp + - go.opentelemetry.io/otel/exporters/stdout/stdoutlog + experimental-schema: + version: v0.0.12 + modules: + - go.opentelemetry.io/otel/schema +excluded-modules: + - go.opentelemetry.io/otel/internal/tools + - go.opentelemetry.io/otel/trace/internal/telemetry/test diff --git a/vendor/go.opentelemetry.io/proto/otlp/LICENSE b/vendor/go.opentelemetry.io/proto/otlp/LICENSE new file mode 100644 index 0000000000..261eeb9e9f --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. For the purposes of this definition, + "control" means (i) the power, direct or indirect, to cause the + direction or management of such entity, whether by contract or + otherwise, or (ii) ownership of fifty percent (50%) or more of the + outstanding shares, or (iii) beneficial ownership of such entity. + + "You" (or "Your") shall mean an individual or Legal Entity + exercising permissions granted by this License. + + "Source" form shall mean the preferred form for making modifications, + including but not limited to software source code, documentation + source, and configuration files. + + "Object" form shall mean any form resulting from mechanical + transformation or translation of a Source form, including but + not limited to compiled object code, generated documentation, + and conversions to other media types. + + "Work" shall mean the work of authorship, whether in Source or + Object form, made available under the License, as indicated by a + copyright notice that is included in or attached to the work + (an example is provided in the Appendix below). + + "Derivative Works" shall mean any work, whether in Source or Object + form, that is based on (or derived from) the Work and for which the + editorial revisions, annotations, elaborations, or other modifications + represent, as a whole, an original work of authorship. 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We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright [yyyy] [name of copyright owner] + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.go b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.go new file mode 100644 index 0000000000..8e13d157c2 --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.go @@ -0,0 +1,371 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/collector/metrics/v1/metrics_service.proto + +package v1 + +import ( + v1 "go.opentelemetry.io/proto/otlp/metrics/v1" + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +type ExportMetricsServiceRequest struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An array of ResourceMetrics. + // For data coming from a single resource this array will typically contain one + // element. Intermediary nodes (such as OpenTelemetry Collector) that receive + // data from multiple origins typically batch the data before forwarding further and + // in that case this array will contain multiple elements. + ResourceMetrics []*v1.ResourceMetrics `protobuf:"bytes,1,rep,name=resource_metrics,json=resourceMetrics,proto3" json:"resource_metrics,omitempty"` +} + +func (x *ExportMetricsServiceRequest) Reset() { + *x = ExportMetricsServiceRequest{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportMetricsServiceRequest) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportMetricsServiceRequest) ProtoMessage() {} + +func (x *ExportMetricsServiceRequest) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportMetricsServiceRequest.ProtoReflect.Descriptor instead. +func (*ExportMetricsServiceRequest) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDescGZIP(), []int{0} +} + +func (x *ExportMetricsServiceRequest) GetResourceMetrics() []*v1.ResourceMetrics { + if x != nil { + return x.ResourceMetrics + } + return nil +} + +type ExportMetricsServiceResponse struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The details of a partially successful export request. + // + // If the request is only partially accepted + // (i.e. when the server accepts only parts of the data and rejects the rest) + // the server MUST initialize the `partial_success` field and MUST + // set the `rejected_` with the number of items it rejected. + // + // Servers MAY also make use of the `partial_success` field to convey + // warnings/suggestions to senders even when the request was fully accepted. + // In such cases, the `rejected_` MUST have a value of `0` and + // the `error_message` MUST be non-empty. + // + // A `partial_success` message with an empty value (rejected_ = 0 and + // `error_message` = "") is equivalent to it not being set/present. Senders + // SHOULD interpret it the same way as in the full success case. + PartialSuccess *ExportMetricsPartialSuccess `protobuf:"bytes,1,opt,name=partial_success,json=partialSuccess,proto3" json:"partial_success,omitempty"` +} + +func (x *ExportMetricsServiceResponse) Reset() { + *x = ExportMetricsServiceResponse{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportMetricsServiceResponse) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportMetricsServiceResponse) ProtoMessage() {} + +func (x *ExportMetricsServiceResponse) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportMetricsServiceResponse.ProtoReflect.Descriptor instead. +func (*ExportMetricsServiceResponse) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDescGZIP(), []int{1} +} + +func (x *ExportMetricsServiceResponse) GetPartialSuccess() *ExportMetricsPartialSuccess { + if x != nil { + return x.PartialSuccess + } + return nil +} + +type ExportMetricsPartialSuccess struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The number of rejected data points. + // + // A `rejected_` field holding a `0` value indicates that the + // request was fully accepted. + RejectedDataPoints int64 `protobuf:"varint,1,opt,name=rejected_data_points,json=rejectedDataPoints,proto3" json:"rejected_data_points,omitempty"` + // A developer-facing human-readable message in English. It should be used + // either to explain why the server rejected parts of the data during a partial + // success or to convey warnings/suggestions during a full success. The message + // should offer guidance on how users can address such issues. + // + // error_message is an optional field. An error_message with an empty value + // is equivalent to it not being set. + ErrorMessage string `protobuf:"bytes,2,opt,name=error_message,json=errorMessage,proto3" json:"error_message,omitempty"` +} + +func (x *ExportMetricsPartialSuccess) Reset() { + *x = ExportMetricsPartialSuccess{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportMetricsPartialSuccess) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportMetricsPartialSuccess) ProtoMessage() {} + +func (x *ExportMetricsPartialSuccess) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportMetricsPartialSuccess.ProtoReflect.Descriptor instead. +func (*ExportMetricsPartialSuccess) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDescGZIP(), []int{2} +} + +func (x *ExportMetricsPartialSuccess) GetRejectedDataPoints() int64 { + if x != nil { + return x.RejectedDataPoints + } + return 0 +} + +func (x *ExportMetricsPartialSuccess) GetErrorMessage() string { + if x != nil { + return x.ErrorMessage + } + return "" +} + +var File_opentelemetry_proto_collector_metrics_v1_metrics_service_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDesc = []byte{ + 0x0a, 0x3e, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2f, + 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x63, 0x6f, 0x6c, 0x6c, 0x65, 0x63, 0x74, 0x6f, 0x72, 0x2f, + 0x6d, 0x65, 0x74, 0x72, 0x69, 0x63, 0x73, 0x2f, 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file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes = make([]protoimpl.MessageInfo, 3) +var file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_goTypes = []interface{}{ + (*ExportMetricsServiceRequest)(nil), // 0: opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceRequest + (*ExportMetricsServiceResponse)(nil), // 1: opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceResponse + (*ExportMetricsPartialSuccess)(nil), // 2: opentelemetry.proto.collector.metrics.v1.ExportMetricsPartialSuccess + (*v1.ResourceMetrics)(nil), // 3: opentelemetry.proto.metrics.v1.ResourceMetrics +} +var file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_depIdxs = []int32{ + 3, // 0: opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceRequest.resource_metrics:type_name -> opentelemetry.proto.metrics.v1.ResourceMetrics + 2, // 1: opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceResponse.partial_success:type_name -> opentelemetry.proto.collector.metrics.v1.ExportMetricsPartialSuccess + 0, // 2: opentelemetry.proto.collector.metrics.v1.MetricsService.Export:input_type -> opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceRequest + 1, // 3: opentelemetry.proto.collector.metrics.v1.MetricsService.Export:output_type -> opentelemetry.proto.collector.metrics.v1.ExportMetricsServiceResponse + 3, // [3:4] is the sub-list for method output_type + 2, // [2:3] is the sub-list for method input_type + 2, // [2:2] is the sub-list for extension type_name + 2, // [2:2] is the sub-list for extension extendee + 0, // [0:2] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_init() } +func file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_init() { + if File_opentelemetry_proto_collector_metrics_v1_metrics_service_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportMetricsServiceRequest); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportMetricsServiceResponse); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportMetricsPartialSuccess); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDesc, + NumEnums: 0, + NumMessages: 3, + NumExtensions: 0, + NumServices: 1, + }, + GoTypes: file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_depIdxs, + MessageInfos: file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_msgTypes, + }.Build() + File_opentelemetry_proto_collector_metrics_v1_metrics_service_proto = out.File + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_rawDesc = nil + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_goTypes = nil + file_opentelemetry_proto_collector_metrics_v1_metrics_service_proto_depIdxs = nil +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.gw.go b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.gw.go new file mode 100644 index 0000000000..c42f1454ed --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service.pb.gw.go @@ -0,0 +1,171 @@ +// Code generated by protoc-gen-grpc-gateway. DO NOT EDIT. +// source: opentelemetry/proto/collector/metrics/v1/metrics_service.proto + +/* +Package v1 is a reverse proxy. + +It translates gRPC into RESTful JSON APIs. +*/ +package v1 + +import ( + "context" + "io" + "net/http" + + "github.com/grpc-ecosystem/grpc-gateway/v2/runtime" + "github.com/grpc-ecosystem/grpc-gateway/v2/utilities" + "google.golang.org/grpc" + "google.golang.org/grpc/codes" + "google.golang.org/grpc/grpclog" + "google.golang.org/grpc/metadata" + "google.golang.org/grpc/status" + "google.golang.org/protobuf/proto" +) + +// Suppress "imported and not used" errors +var _ codes.Code +var _ io.Reader +var _ status.Status +var _ = runtime.String +var _ = utilities.NewDoubleArray +var _ = metadata.Join + +func request_MetricsService_Export_0(ctx context.Context, marshaler runtime.Marshaler, client MetricsServiceClient, req *http.Request, pathParams map[string]string) (proto.Message, runtime.ServerMetadata, error) { + var protoReq ExportMetricsServiceRequest + var metadata runtime.ServerMetadata + + newReader, berr := utilities.IOReaderFactory(req.Body) + if berr != nil { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", berr) + } + if err := marshaler.NewDecoder(newReader()).Decode(&protoReq); err != nil && err != io.EOF { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", err) + } + + msg, err := client.Export(ctx, &protoReq, grpc.Header(&metadata.HeaderMD), grpc.Trailer(&metadata.TrailerMD)) + return msg, metadata, err + +} + +func local_request_MetricsService_Export_0(ctx context.Context, marshaler runtime.Marshaler, server MetricsServiceServer, req *http.Request, pathParams map[string]string) (proto.Message, runtime.ServerMetadata, error) { + var protoReq ExportMetricsServiceRequest + var metadata runtime.ServerMetadata + + newReader, berr := utilities.IOReaderFactory(req.Body) + if berr != nil { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", berr) + } + if err := marshaler.NewDecoder(newReader()).Decode(&protoReq); err != nil && err != io.EOF { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", err) + } + + msg, err := server.Export(ctx, &protoReq) + return msg, metadata, err + +} + +// RegisterMetricsServiceHandlerServer registers the http handlers for service MetricsService to "mux". +// UnaryRPC :call MetricsServiceServer directly. +// StreamingRPC :currently unsupported pending https://github.com/grpc/grpc-go/issues/906. +// Note that using this registration option will cause many gRPC library features to stop working. Consider using RegisterMetricsServiceHandlerFromEndpoint instead. +func RegisterMetricsServiceHandlerServer(ctx context.Context, mux *runtime.ServeMux, server MetricsServiceServer) error { + + mux.Handle("POST", pattern_MetricsService_Export_0, func(w http.ResponseWriter, req *http.Request, pathParams map[string]string) { + ctx, cancel := context.WithCancel(req.Context()) + defer cancel() + var stream runtime.ServerTransportStream + ctx = grpc.NewContextWithServerTransportStream(ctx, &stream) + inboundMarshaler, outboundMarshaler := runtime.MarshalerForRequest(mux, req) + var err error + var annotatedContext context.Context + annotatedContext, err = runtime.AnnotateIncomingContext(ctx, mux, req, "/opentelemetry.proto.collector.metrics.v1.MetricsService/Export", runtime.WithHTTPPathPattern("/v1/metrics")) + if err != nil { + runtime.HTTPError(ctx, mux, outboundMarshaler, w, req, err) + return + } + resp, md, err := local_request_MetricsService_Export_0(annotatedContext, inboundMarshaler, server, req, pathParams) + md.HeaderMD, md.TrailerMD = metadata.Join(md.HeaderMD, stream.Header()), metadata.Join(md.TrailerMD, stream.Trailer()) + annotatedContext = runtime.NewServerMetadataContext(annotatedContext, md) + if err != nil { + runtime.HTTPError(annotatedContext, mux, outboundMarshaler, w, req, err) + return + } + + forward_MetricsService_Export_0(annotatedContext, mux, outboundMarshaler, w, req, resp, mux.GetForwardResponseOptions()...) + + }) + + return nil +} + +// RegisterMetricsServiceHandlerFromEndpoint is same as RegisterMetricsServiceHandler but +// automatically dials to "endpoint" and closes the connection when "ctx" gets done. +func RegisterMetricsServiceHandlerFromEndpoint(ctx context.Context, mux *runtime.ServeMux, endpoint string, opts []grpc.DialOption) (err error) { + conn, err := grpc.Dial(endpoint, opts...) + if err != nil { + return err + } + defer func() { + if err != nil { + if cerr := conn.Close(); cerr != nil { + grpclog.Infof("Failed to close conn to %s: %v", endpoint, cerr) + } + return + } + go func() { + <-ctx.Done() + if cerr := conn.Close(); cerr != nil { + grpclog.Infof("Failed to close conn to %s: %v", endpoint, cerr) + } + }() + }() + + return RegisterMetricsServiceHandler(ctx, mux, conn) +} + +// RegisterMetricsServiceHandler registers the http handlers for service MetricsService to "mux". +// The handlers forward requests to the grpc endpoint over "conn". +func RegisterMetricsServiceHandler(ctx context.Context, mux *runtime.ServeMux, conn *grpc.ClientConn) error { + return RegisterMetricsServiceHandlerClient(ctx, mux, NewMetricsServiceClient(conn)) +} + +// RegisterMetricsServiceHandlerClient registers the http handlers for service MetricsService +// to "mux". The handlers forward requests to the grpc endpoint over the given implementation of "MetricsServiceClient". +// Note: the gRPC framework executes interceptors within the gRPC handler. If the passed in "MetricsServiceClient" +// doesn't go through the normal gRPC flow (creating a gRPC client etc.) then it will be up to the passed in +// "MetricsServiceClient" to call the correct interceptors. +func RegisterMetricsServiceHandlerClient(ctx context.Context, mux *runtime.ServeMux, client MetricsServiceClient) error { + + mux.Handle("POST", pattern_MetricsService_Export_0, func(w http.ResponseWriter, req *http.Request, pathParams map[string]string) { + ctx, cancel := context.WithCancel(req.Context()) + defer cancel() + inboundMarshaler, outboundMarshaler := runtime.MarshalerForRequest(mux, req) + var err error + var annotatedContext context.Context + annotatedContext, err = runtime.AnnotateContext(ctx, mux, req, "/opentelemetry.proto.collector.metrics.v1.MetricsService/Export", runtime.WithHTTPPathPattern("/v1/metrics")) + if err != nil { + runtime.HTTPError(ctx, mux, outboundMarshaler, w, req, err) + return + } + resp, md, err := request_MetricsService_Export_0(annotatedContext, inboundMarshaler, client, req, pathParams) + annotatedContext = runtime.NewServerMetadataContext(annotatedContext, md) + if err != nil { + runtime.HTTPError(annotatedContext, mux, outboundMarshaler, w, req, err) + return + } + + forward_MetricsService_Export_0(annotatedContext, mux, outboundMarshaler, w, req, resp, mux.GetForwardResponseOptions()...) + + }) + + return nil +} + +var ( + pattern_MetricsService_Export_0 = runtime.MustPattern(runtime.NewPattern(1, []int{2, 0, 2, 1}, []string{"v1", "metrics"}, "")) +) + +var ( + forward_MetricsService_Export_0 = runtime.ForwardResponseMessage +) diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service_grpc.pb.go b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service_grpc.pb.go new file mode 100644 index 0000000000..fc668643c1 --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/metrics/v1/metrics_service_grpc.pb.go @@ -0,0 +1,105 @@ +// Code generated by protoc-gen-go-grpc. DO NOT EDIT. +// versions: +// - protoc-gen-go-grpc v1.1.0 +// - protoc v3.21.6 +// source: opentelemetry/proto/collector/metrics/v1/metrics_service.proto + +package v1 + +import ( + context "context" + grpc "google.golang.org/grpc" + codes "google.golang.org/grpc/codes" + status "google.golang.org/grpc/status" +) + +// This is a compile-time assertion to ensure that this generated file +// is compatible with the grpc package it is being compiled against. +// Requires gRPC-Go v1.32.0 or later. +const _ = grpc.SupportPackageIsVersion7 + +// MetricsServiceClient is the client API for MetricsService service. +// +// For semantics around ctx use and closing/ending streaming RPCs, please refer to https://pkg.go.dev/google.golang.org/grpc/?tab=doc#ClientConn.NewStream. +type MetricsServiceClient interface { + Export(ctx context.Context, in *ExportMetricsServiceRequest, opts ...grpc.CallOption) (*ExportMetricsServiceResponse, error) +} + +type metricsServiceClient struct { + cc grpc.ClientConnInterface +} + +func NewMetricsServiceClient(cc grpc.ClientConnInterface) MetricsServiceClient { + return &metricsServiceClient{cc} +} + +func (c *metricsServiceClient) Export(ctx context.Context, in *ExportMetricsServiceRequest, opts ...grpc.CallOption) (*ExportMetricsServiceResponse, error) { + out := new(ExportMetricsServiceResponse) + err := c.cc.Invoke(ctx, "/opentelemetry.proto.collector.metrics.v1.MetricsService/Export", in, out, opts...) + if err != nil { + return nil, err + } + return out, nil +} + +// MetricsServiceServer is the server API for MetricsService service. +// All implementations must embed UnimplementedMetricsServiceServer +// for forward compatibility +type MetricsServiceServer interface { + Export(context.Context, *ExportMetricsServiceRequest) (*ExportMetricsServiceResponse, error) + mustEmbedUnimplementedMetricsServiceServer() +} + +// UnimplementedMetricsServiceServer must be embedded to have forward compatible implementations. +type UnimplementedMetricsServiceServer struct { +} + +func (UnimplementedMetricsServiceServer) Export(context.Context, *ExportMetricsServiceRequest) (*ExportMetricsServiceResponse, error) { + return nil, status.Errorf(codes.Unimplemented, "method Export not implemented") +} +func (UnimplementedMetricsServiceServer) mustEmbedUnimplementedMetricsServiceServer() {} + +// UnsafeMetricsServiceServer may be embedded to opt out of forward compatibility for this service. +// Use of this interface is not recommended, as added methods to MetricsServiceServer will +// result in compilation errors. +type UnsafeMetricsServiceServer interface { + mustEmbedUnimplementedMetricsServiceServer() +} + +func RegisterMetricsServiceServer(s grpc.ServiceRegistrar, srv MetricsServiceServer) { + s.RegisterService(&MetricsService_ServiceDesc, srv) +} + +func _MetricsService_Export_Handler(srv interface{}, ctx context.Context, dec func(interface{}) error, interceptor grpc.UnaryServerInterceptor) (interface{}, error) { + in := new(ExportMetricsServiceRequest) + if err := dec(in); err != nil { + return nil, err + } + if interceptor == nil { + return srv.(MetricsServiceServer).Export(ctx, in) + } + info := &grpc.UnaryServerInfo{ + Server: srv, + FullMethod: "/opentelemetry.proto.collector.metrics.v1.MetricsService/Export", + } + handler := func(ctx context.Context, req interface{}) (interface{}, error) { + return srv.(MetricsServiceServer).Export(ctx, req.(*ExportMetricsServiceRequest)) + } + return interceptor(ctx, in, info, handler) +} + +// MetricsService_ServiceDesc is the grpc.ServiceDesc for MetricsService service. +// It's only intended for direct use with grpc.RegisterService, +// and not to be introspected or modified (even as a copy) +var MetricsService_ServiceDesc = grpc.ServiceDesc{ + ServiceName: "opentelemetry.proto.collector.metrics.v1.MetricsService", + HandlerType: (*MetricsServiceServer)(nil), + Methods: []grpc.MethodDesc{ + { + MethodName: "Export", + Handler: _MetricsService_Export_Handler, + }, + }, + Streams: []grpc.StreamDesc{}, + Metadata: "opentelemetry/proto/collector/metrics/v1/metrics_service.proto", +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.go b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.go new file mode 100644 index 0000000000..c1af04e84e --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.go @@ -0,0 +1,367 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/collector/trace/v1/trace_service.proto + +package v1 + +import ( + v1 "go.opentelemetry.io/proto/otlp/trace/v1" + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +type ExportTraceServiceRequest struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An array of ResourceSpans. + // For data coming from a single resource this array will typically contain one + // element. Intermediary nodes (such as OpenTelemetry Collector) that receive + // data from multiple origins typically batch the data before forwarding further and + // in that case this array will contain multiple elements. + ResourceSpans []*v1.ResourceSpans `protobuf:"bytes,1,rep,name=resource_spans,json=resourceSpans,proto3" json:"resource_spans,omitempty"` +} + +func (x *ExportTraceServiceRequest) Reset() { + *x = ExportTraceServiceRequest{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportTraceServiceRequest) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportTraceServiceRequest) ProtoMessage() {} + +func (x *ExportTraceServiceRequest) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportTraceServiceRequest.ProtoReflect.Descriptor instead. +func (*ExportTraceServiceRequest) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescGZIP(), []int{0} +} + +func (x *ExportTraceServiceRequest) GetResourceSpans() []*v1.ResourceSpans { + if x != nil { + return x.ResourceSpans + } + return nil +} + +type ExportTraceServiceResponse struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The details of a partially successful export request. + // + // If the request is only partially accepted + // (i.e. when the server accepts only parts of the data and rejects the rest) + // the server MUST initialize the `partial_success` field and MUST + // set the `rejected_` with the number of items it rejected. + // + // Servers MAY also make use of the `partial_success` field to convey + // warnings/suggestions to senders even when the request was fully accepted. + // In such cases, the `rejected_` MUST have a value of `0` and + // the `error_message` MUST be non-empty. + // + // A `partial_success` message with an empty value (rejected_ = 0 and + // `error_message` = "") is equivalent to it not being set/present. Senders + // SHOULD interpret it the same way as in the full success case. + PartialSuccess *ExportTracePartialSuccess `protobuf:"bytes,1,opt,name=partial_success,json=partialSuccess,proto3" json:"partial_success,omitempty"` +} + +func (x *ExportTraceServiceResponse) Reset() { + *x = ExportTraceServiceResponse{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportTraceServiceResponse) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportTraceServiceResponse) ProtoMessage() {} + +func (x *ExportTraceServiceResponse) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportTraceServiceResponse.ProtoReflect.Descriptor instead. +func (*ExportTraceServiceResponse) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescGZIP(), []int{1} +} + +func (x *ExportTraceServiceResponse) GetPartialSuccess() *ExportTracePartialSuccess { + if x != nil { + return x.PartialSuccess + } + return nil +} + +type ExportTracePartialSuccess struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The number of rejected spans. + // + // A `rejected_` field holding a `0` value indicates that the + // request was fully accepted. + RejectedSpans int64 `protobuf:"varint,1,opt,name=rejected_spans,json=rejectedSpans,proto3" json:"rejected_spans,omitempty"` + // A developer-facing human-readable message in English. It should be used + // either to explain why the server rejected parts of the data during a partial + // success or to convey warnings/suggestions during a full success. The message + // should offer guidance on how users can address such issues. + // + // error_message is an optional field. An error_message with an empty value + // is equivalent to it not being set. + ErrorMessage string `protobuf:"bytes,2,opt,name=error_message,json=errorMessage,proto3" json:"error_message,omitempty"` +} + +func (x *ExportTracePartialSuccess) Reset() { + *x = ExportTracePartialSuccess{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExportTracePartialSuccess) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExportTracePartialSuccess) ProtoMessage() {} + +func (x *ExportTracePartialSuccess) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExportTracePartialSuccess.ProtoReflect.Descriptor instead. +func (*ExportTracePartialSuccess) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescGZIP(), []int{2} +} + +func (x *ExportTracePartialSuccess) GetRejectedSpans() int64 { + if x != nil { + return x.RejectedSpans + } + return 0 +} + +func (x *ExportTracePartialSuccess) GetErrorMessage() string { + if x != nil { + return x.ErrorMessage + } + return "" +} + +var File_opentelemetry_proto_collector_trace_v1_trace_service_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDesc = []byte{ + 0x0a, 0x3a, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2f, + 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x63, 0x6f, 0x6c, 0x6c, 0x65, 0x63, 0x74, 0x6f, 0x72, 0x2f, + 0x74, 0x72, 0x61, 0x63, 0x65, 0x2f, 0x76, 0x31, 0x2f, 0x74, 0x72, 0x61, 0x63, 0x65, 0x5f, 0x73, + 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file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDesc +) + +func file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescGZIP() []byte { + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescOnce.Do(func() { + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescData = protoimpl.X.CompressGZIP(file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescData) + }) + return file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDescData +} + +var file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes = make([]protoimpl.MessageInfo, 3) +var file_opentelemetry_proto_collector_trace_v1_trace_service_proto_goTypes = []interface{}{ + (*ExportTraceServiceRequest)(nil), // 0: opentelemetry.proto.collector.trace.v1.ExportTraceServiceRequest + (*ExportTraceServiceResponse)(nil), // 1: opentelemetry.proto.collector.trace.v1.ExportTraceServiceResponse + (*ExportTracePartialSuccess)(nil), // 2: opentelemetry.proto.collector.trace.v1.ExportTracePartialSuccess + (*v1.ResourceSpans)(nil), // 3: opentelemetry.proto.trace.v1.ResourceSpans +} +var file_opentelemetry_proto_collector_trace_v1_trace_service_proto_depIdxs = []int32{ + 3, // 0: opentelemetry.proto.collector.trace.v1.ExportTraceServiceRequest.resource_spans:type_name -> opentelemetry.proto.trace.v1.ResourceSpans + 2, // 1: opentelemetry.proto.collector.trace.v1.ExportTraceServiceResponse.partial_success:type_name -> opentelemetry.proto.collector.trace.v1.ExportTracePartialSuccess + 0, // 2: opentelemetry.proto.collector.trace.v1.TraceService.Export:input_type -> opentelemetry.proto.collector.trace.v1.ExportTraceServiceRequest + 1, // 3: opentelemetry.proto.collector.trace.v1.TraceService.Export:output_type -> opentelemetry.proto.collector.trace.v1.ExportTraceServiceResponse + 3, // [3:4] is the sub-list for method output_type + 2, // [2:3] is the sub-list for method input_type + 2, // [2:2] is the sub-list for extension type_name + 2, // [2:2] is the sub-list for extension extendee + 0, // [0:2] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_collector_trace_v1_trace_service_proto_init() } +func file_opentelemetry_proto_collector_trace_v1_trace_service_proto_init() { + if File_opentelemetry_proto_collector_trace_v1_trace_service_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportTraceServiceRequest); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportTraceServiceResponse); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExportTracePartialSuccess); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDesc, + NumEnums: 0, + NumMessages: 3, + NumExtensions: 0, + NumServices: 1, + }, + GoTypes: file_opentelemetry_proto_collector_trace_v1_trace_service_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_collector_trace_v1_trace_service_proto_depIdxs, + MessageInfos: file_opentelemetry_proto_collector_trace_v1_trace_service_proto_msgTypes, + }.Build() + File_opentelemetry_proto_collector_trace_v1_trace_service_proto = out.File + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_rawDesc = nil + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_goTypes = nil + file_opentelemetry_proto_collector_trace_v1_trace_service_proto_depIdxs = nil +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.gw.go b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.gw.go new file mode 100644 index 0000000000..bb1bd261ed --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service.pb.gw.go @@ -0,0 +1,171 @@ +// Code generated by protoc-gen-grpc-gateway. DO NOT EDIT. +// source: opentelemetry/proto/collector/trace/v1/trace_service.proto + +/* +Package v1 is a reverse proxy. + +It translates gRPC into RESTful JSON APIs. +*/ +package v1 + +import ( + "context" + "io" + "net/http" + + "github.com/grpc-ecosystem/grpc-gateway/v2/runtime" + "github.com/grpc-ecosystem/grpc-gateway/v2/utilities" + "google.golang.org/grpc" + "google.golang.org/grpc/codes" + "google.golang.org/grpc/grpclog" + "google.golang.org/grpc/metadata" + "google.golang.org/grpc/status" + "google.golang.org/protobuf/proto" +) + +// Suppress "imported and not used" errors +var _ codes.Code +var _ io.Reader +var _ status.Status +var _ = runtime.String +var _ = utilities.NewDoubleArray +var _ = metadata.Join + +func request_TraceService_Export_0(ctx context.Context, marshaler runtime.Marshaler, client TraceServiceClient, req *http.Request, pathParams map[string]string) (proto.Message, runtime.ServerMetadata, error) { + var protoReq ExportTraceServiceRequest + var metadata runtime.ServerMetadata + + newReader, berr := utilities.IOReaderFactory(req.Body) + if berr != nil { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", berr) + } + if err := marshaler.NewDecoder(newReader()).Decode(&protoReq); err != nil && err != io.EOF { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", err) + } + + msg, err := client.Export(ctx, &protoReq, grpc.Header(&metadata.HeaderMD), grpc.Trailer(&metadata.TrailerMD)) + return msg, metadata, err + +} + +func local_request_TraceService_Export_0(ctx context.Context, marshaler runtime.Marshaler, server TraceServiceServer, req *http.Request, pathParams map[string]string) (proto.Message, runtime.ServerMetadata, error) { + var protoReq ExportTraceServiceRequest + var metadata runtime.ServerMetadata + + newReader, berr := utilities.IOReaderFactory(req.Body) + if berr != nil { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", berr) + } + if err := marshaler.NewDecoder(newReader()).Decode(&protoReq); err != nil && err != io.EOF { + return nil, metadata, status.Errorf(codes.InvalidArgument, "%v", err) + } + + msg, err := server.Export(ctx, &protoReq) + return msg, metadata, err + +} + +// RegisterTraceServiceHandlerServer registers the http handlers for service TraceService to "mux". +// UnaryRPC :call TraceServiceServer directly. +// StreamingRPC :currently unsupported pending https://github.com/grpc/grpc-go/issues/906. +// Note that using this registration option will cause many gRPC library features to stop working. Consider using RegisterTraceServiceHandlerFromEndpoint instead. +func RegisterTraceServiceHandlerServer(ctx context.Context, mux *runtime.ServeMux, server TraceServiceServer) error { + + mux.Handle("POST", pattern_TraceService_Export_0, func(w http.ResponseWriter, req *http.Request, pathParams map[string]string) { + ctx, cancel := context.WithCancel(req.Context()) + defer cancel() + var stream runtime.ServerTransportStream + ctx = grpc.NewContextWithServerTransportStream(ctx, &stream) + inboundMarshaler, outboundMarshaler := runtime.MarshalerForRequest(mux, req) + var err error + var annotatedContext context.Context + annotatedContext, err = runtime.AnnotateIncomingContext(ctx, mux, req, "/opentelemetry.proto.collector.trace.v1.TraceService/Export", runtime.WithHTTPPathPattern("/v1/traces")) + if err != nil { + runtime.HTTPError(ctx, mux, outboundMarshaler, w, req, err) + return + } + resp, md, err := local_request_TraceService_Export_0(annotatedContext, inboundMarshaler, server, req, pathParams) + md.HeaderMD, md.TrailerMD = metadata.Join(md.HeaderMD, stream.Header()), metadata.Join(md.TrailerMD, stream.Trailer()) + annotatedContext = runtime.NewServerMetadataContext(annotatedContext, md) + if err != nil { + runtime.HTTPError(annotatedContext, mux, outboundMarshaler, w, req, err) + return + } + + forward_TraceService_Export_0(annotatedContext, mux, outboundMarshaler, w, req, resp, mux.GetForwardResponseOptions()...) + + }) + + return nil +} + +// RegisterTraceServiceHandlerFromEndpoint is same as RegisterTraceServiceHandler but +// automatically dials to "endpoint" and closes the connection when "ctx" gets done. +func RegisterTraceServiceHandlerFromEndpoint(ctx context.Context, mux *runtime.ServeMux, endpoint string, opts []grpc.DialOption) (err error) { + conn, err := grpc.Dial(endpoint, opts...) + if err != nil { + return err + } + defer func() { + if err != nil { + if cerr := conn.Close(); cerr != nil { + grpclog.Infof("Failed to close conn to %s: %v", endpoint, cerr) + } + return + } + go func() { + <-ctx.Done() + if cerr := conn.Close(); cerr != nil { + grpclog.Infof("Failed to close conn to %s: %v", endpoint, cerr) + } + }() + }() + + return RegisterTraceServiceHandler(ctx, mux, conn) +} + +// RegisterTraceServiceHandler registers the http handlers for service TraceService to "mux". +// The handlers forward requests to the grpc endpoint over "conn". +func RegisterTraceServiceHandler(ctx context.Context, mux *runtime.ServeMux, conn *grpc.ClientConn) error { + return RegisterTraceServiceHandlerClient(ctx, mux, NewTraceServiceClient(conn)) +} + +// RegisterTraceServiceHandlerClient registers the http handlers for service TraceService +// to "mux". The handlers forward requests to the grpc endpoint over the given implementation of "TraceServiceClient". +// Note: the gRPC framework executes interceptors within the gRPC handler. If the passed in "TraceServiceClient" +// doesn't go through the normal gRPC flow (creating a gRPC client etc.) then it will be up to the passed in +// "TraceServiceClient" to call the correct interceptors. +func RegisterTraceServiceHandlerClient(ctx context.Context, mux *runtime.ServeMux, client TraceServiceClient) error { + + mux.Handle("POST", pattern_TraceService_Export_0, func(w http.ResponseWriter, req *http.Request, pathParams map[string]string) { + ctx, cancel := context.WithCancel(req.Context()) + defer cancel() + inboundMarshaler, outboundMarshaler := runtime.MarshalerForRequest(mux, req) + var err error + var annotatedContext context.Context + annotatedContext, err = runtime.AnnotateContext(ctx, mux, req, "/opentelemetry.proto.collector.trace.v1.TraceService/Export", runtime.WithHTTPPathPattern("/v1/traces")) + if err != nil { + runtime.HTTPError(ctx, mux, outboundMarshaler, w, req, err) + return + } + resp, md, err := request_TraceService_Export_0(annotatedContext, inboundMarshaler, client, req, pathParams) + annotatedContext = runtime.NewServerMetadataContext(annotatedContext, md) + if err != nil { + runtime.HTTPError(annotatedContext, mux, outboundMarshaler, w, req, err) + return + } + + forward_TraceService_Export_0(annotatedContext, mux, outboundMarshaler, w, req, resp, mux.GetForwardResponseOptions()...) + + }) + + return nil +} + +var ( + pattern_TraceService_Export_0 = runtime.MustPattern(runtime.NewPattern(1, []int{2, 0, 2, 1}, []string{"v1", "traces"}, "")) +) + +var ( + forward_TraceService_Export_0 = runtime.ForwardResponseMessage +) diff --git a/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go new file mode 100644 index 0000000000..892864ea62 --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/collector/trace/v1/trace_service_grpc.pb.go @@ -0,0 +1,105 @@ +// Code generated by protoc-gen-go-grpc. DO NOT EDIT. +// versions: +// - protoc-gen-go-grpc v1.1.0 +// - protoc v3.21.6 +// source: opentelemetry/proto/collector/trace/v1/trace_service.proto + +package v1 + +import ( + context "context" + grpc "google.golang.org/grpc" + codes "google.golang.org/grpc/codes" + status "google.golang.org/grpc/status" +) + +// This is a compile-time assertion to ensure that this generated file +// is compatible with the grpc package it is being compiled against. +// Requires gRPC-Go v1.32.0 or later. +const _ = grpc.SupportPackageIsVersion7 + +// TraceServiceClient is the client API for TraceService service. +// +// For semantics around ctx use and closing/ending streaming RPCs, please refer to https://pkg.go.dev/google.golang.org/grpc/?tab=doc#ClientConn.NewStream. +type TraceServiceClient interface { + Export(ctx context.Context, in *ExportTraceServiceRequest, opts ...grpc.CallOption) (*ExportTraceServiceResponse, error) +} + +type traceServiceClient struct { + cc grpc.ClientConnInterface +} + +func NewTraceServiceClient(cc grpc.ClientConnInterface) TraceServiceClient { + return &traceServiceClient{cc} +} + +func (c *traceServiceClient) Export(ctx context.Context, in *ExportTraceServiceRequest, opts ...grpc.CallOption) (*ExportTraceServiceResponse, error) { + out := new(ExportTraceServiceResponse) + err := c.cc.Invoke(ctx, "/opentelemetry.proto.collector.trace.v1.TraceService/Export", in, out, opts...) + if err != nil { + return nil, err + } + return out, nil +} + +// TraceServiceServer is the server API for TraceService service. +// All implementations must embed UnimplementedTraceServiceServer +// for forward compatibility +type TraceServiceServer interface { + Export(context.Context, *ExportTraceServiceRequest) (*ExportTraceServiceResponse, error) + mustEmbedUnimplementedTraceServiceServer() +} + +// UnimplementedTraceServiceServer must be embedded to have forward compatible implementations. +type UnimplementedTraceServiceServer struct { +} + +func (UnimplementedTraceServiceServer) Export(context.Context, *ExportTraceServiceRequest) (*ExportTraceServiceResponse, error) { + return nil, status.Errorf(codes.Unimplemented, "method Export not implemented") +} +func (UnimplementedTraceServiceServer) mustEmbedUnimplementedTraceServiceServer() {} + +// UnsafeTraceServiceServer may be embedded to opt out of forward compatibility for this service. +// Use of this interface is not recommended, as added methods to TraceServiceServer will +// result in compilation errors. +type UnsafeTraceServiceServer interface { + mustEmbedUnimplementedTraceServiceServer() +} + +func RegisterTraceServiceServer(s grpc.ServiceRegistrar, srv TraceServiceServer) { + s.RegisterService(&TraceService_ServiceDesc, srv) +} + +func _TraceService_Export_Handler(srv interface{}, ctx context.Context, dec func(interface{}) error, interceptor grpc.UnaryServerInterceptor) (interface{}, error) { + in := new(ExportTraceServiceRequest) + if err := dec(in); err != nil { + return nil, err + } + if interceptor == nil { + return srv.(TraceServiceServer).Export(ctx, in) + } + info := &grpc.UnaryServerInfo{ + Server: srv, + FullMethod: "/opentelemetry.proto.collector.trace.v1.TraceService/Export", + } + handler := func(ctx context.Context, req interface{}) (interface{}, error) { + return srv.(TraceServiceServer).Export(ctx, req.(*ExportTraceServiceRequest)) + } + return interceptor(ctx, in, info, handler) +} + +// TraceService_ServiceDesc is the grpc.ServiceDesc for TraceService service. +// It's only intended for direct use with grpc.RegisterService, +// and not to be introspected or modified (even as a copy) +var TraceService_ServiceDesc = grpc.ServiceDesc{ + ServiceName: "opentelemetry.proto.collector.trace.v1.TraceService", + HandlerType: (*TraceServiceServer)(nil), + Methods: []grpc.MethodDesc{ + { + MethodName: "Export", + Handler: _TraceService_Export_Handler, + }, + }, + Streams: []grpc.StreamDesc{}, + Metadata: "opentelemetry/proto/collector/trace/v1/trace_service.proto", +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go b/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go new file mode 100644 index 0000000000..a7c5d19bff --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/common/v1/common.pb.go @@ -0,0 +1,746 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/common/v1/common.proto + +package v1 + +import ( + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +// AnyValue is used to represent any type of attribute value. AnyValue may contain a +// primitive value such as a string or integer or it may contain an arbitrary nested +// object containing arrays, key-value lists and primitives. +type AnyValue struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The value is one of the listed fields. It is valid for all values to be unspecified + // in which case this AnyValue is considered to be "empty". + // + // Types that are assignable to Value: + // *AnyValue_StringValue + // *AnyValue_BoolValue + // *AnyValue_IntValue + // *AnyValue_DoubleValue + // *AnyValue_ArrayValue + // *AnyValue_KvlistValue + // *AnyValue_BytesValue + Value isAnyValue_Value `protobuf_oneof:"value"` +} + +func (x *AnyValue) Reset() { + *x = AnyValue{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *AnyValue) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*AnyValue) ProtoMessage() {} + +func (x *AnyValue) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use AnyValue.ProtoReflect.Descriptor instead. +func (*AnyValue) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{0} +} + +func (m *AnyValue) GetValue() isAnyValue_Value { + if m != nil { + return m.Value + } + return nil +} + +func (x *AnyValue) GetStringValue() string { + if x, ok := x.GetValue().(*AnyValue_StringValue); ok { + return x.StringValue + } + return "" +} + +func (x *AnyValue) GetBoolValue() bool { + if x, ok := x.GetValue().(*AnyValue_BoolValue); ok { + return x.BoolValue + } + return false +} + +func (x *AnyValue) GetIntValue() int64 { + if x, ok := x.GetValue().(*AnyValue_IntValue); ok { + return x.IntValue + } + return 0 +} + +func (x *AnyValue) GetDoubleValue() float64 { + if x, ok := x.GetValue().(*AnyValue_DoubleValue); ok { + return x.DoubleValue + } + return 0 +} + +func (x *AnyValue) GetArrayValue() *ArrayValue { + if x, ok := x.GetValue().(*AnyValue_ArrayValue); ok { + return x.ArrayValue + } + return nil +} + +func (x *AnyValue) GetKvlistValue() *KeyValueList { + if x, ok := x.GetValue().(*AnyValue_KvlistValue); ok { + return x.KvlistValue + } + return nil +} + +func (x *AnyValue) GetBytesValue() []byte { + if x, ok := x.GetValue().(*AnyValue_BytesValue); ok { + return x.BytesValue + } + return nil +} + +type isAnyValue_Value interface { + isAnyValue_Value() +} + +type AnyValue_StringValue struct { + StringValue string `protobuf:"bytes,1,opt,name=string_value,json=stringValue,proto3,oneof"` +} + +type AnyValue_BoolValue struct { + BoolValue bool `protobuf:"varint,2,opt,name=bool_value,json=boolValue,proto3,oneof"` +} + +type AnyValue_IntValue struct { + IntValue int64 `protobuf:"varint,3,opt,name=int_value,json=intValue,proto3,oneof"` +} + +type AnyValue_DoubleValue struct { + DoubleValue float64 `protobuf:"fixed64,4,opt,name=double_value,json=doubleValue,proto3,oneof"` +} + +type AnyValue_ArrayValue struct { + ArrayValue *ArrayValue `protobuf:"bytes,5,opt,name=array_value,json=arrayValue,proto3,oneof"` +} + +type AnyValue_KvlistValue struct { + KvlistValue *KeyValueList `protobuf:"bytes,6,opt,name=kvlist_value,json=kvlistValue,proto3,oneof"` +} + +type AnyValue_BytesValue struct { + BytesValue []byte `protobuf:"bytes,7,opt,name=bytes_value,json=bytesValue,proto3,oneof"` +} + +func (*AnyValue_StringValue) isAnyValue_Value() {} + +func (*AnyValue_BoolValue) isAnyValue_Value() {} + +func (*AnyValue_IntValue) isAnyValue_Value() {} + +func (*AnyValue_DoubleValue) isAnyValue_Value() {} + +func (*AnyValue_ArrayValue) isAnyValue_Value() {} + +func (*AnyValue_KvlistValue) isAnyValue_Value() {} + +func (*AnyValue_BytesValue) isAnyValue_Value() {} + +// ArrayValue is a list of AnyValue messages. We need ArrayValue as a message +// since oneof in AnyValue does not allow repeated fields. +type ArrayValue struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Array of values. The array may be empty (contain 0 elements). + Values []*AnyValue `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"` +} + +func (x *ArrayValue) Reset() { + *x = ArrayValue{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ArrayValue) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ArrayValue) ProtoMessage() {} + +func (x *ArrayValue) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ArrayValue.ProtoReflect.Descriptor instead. +func (*ArrayValue) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{1} +} + +func (x *ArrayValue) GetValues() []*AnyValue { + if x != nil { + return x.Values + } + return nil +} + +// KeyValueList is a list of KeyValue messages. We need KeyValueList as a message +// since `oneof` in AnyValue does not allow repeated fields. Everywhere else where we need +// a list of KeyValue messages (e.g. in Span) we use `repeated KeyValue` directly to +// avoid unnecessary extra wrapping (which slows down the protocol). The 2 approaches +// are semantically equivalent. +type KeyValueList struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A collection of key/value pairs of key-value pairs. The list may be empty (may + // contain 0 elements). + // The keys MUST be unique (it is not allowed to have more than one + // value with the same key). + Values []*KeyValue `protobuf:"bytes,1,rep,name=values,proto3" json:"values,omitempty"` +} + +func (x *KeyValueList) Reset() { + *x = KeyValueList{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *KeyValueList) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*KeyValueList) ProtoMessage() {} + +func (x *KeyValueList) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use KeyValueList.ProtoReflect.Descriptor instead. +func (*KeyValueList) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{2} +} + +func (x *KeyValueList) GetValues() []*KeyValue { + if x != nil { + return x.Values + } + return nil +} + +// KeyValue is a key-value pair that is used to store Span attributes, Link +// attributes, etc. +type KeyValue struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + Key string `protobuf:"bytes,1,opt,name=key,proto3" json:"key,omitempty"` + Value *AnyValue `protobuf:"bytes,2,opt,name=value,proto3" json:"value,omitempty"` +} + +func (x *KeyValue) Reset() { + *x = KeyValue{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[3] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *KeyValue) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*KeyValue) ProtoMessage() {} + +func (x *KeyValue) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[3] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use KeyValue.ProtoReflect.Descriptor instead. +func (*KeyValue) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{3} +} + +func (x *KeyValue) GetKey() string { + if x != nil { + return x.Key + } + return "" +} + +func (x *KeyValue) GetValue() *AnyValue { + if x != nil { + return x.Value + } + return nil +} + +// InstrumentationScope is a message representing the instrumentation scope information +// such as the fully qualified name and version. +type InstrumentationScope struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An empty instrumentation scope name means the name is unknown. + Name string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"` + Version string `protobuf:"bytes,2,opt,name=version,proto3" json:"version,omitempty"` + // Additional attributes that describe the scope. [Optional]. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*KeyValue `protobuf:"bytes,3,rep,name=attributes,proto3" json:"attributes,omitempty"` + DroppedAttributesCount uint32 `protobuf:"varint,4,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"` +} + +func (x *InstrumentationScope) Reset() { + *x = InstrumentationScope{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[4] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *InstrumentationScope) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*InstrumentationScope) ProtoMessage() {} + +func (x *InstrumentationScope) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[4] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use InstrumentationScope.ProtoReflect.Descriptor instead. +func (*InstrumentationScope) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{4} +} + +func (x *InstrumentationScope) GetName() string { + if x != nil { + return x.Name + } + return "" +} + +func (x *InstrumentationScope) GetVersion() string { + if x != nil { + return x.Version + } + return "" +} + +func (x *InstrumentationScope) GetAttributes() []*KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *InstrumentationScope) GetDroppedAttributesCount() uint32 { + if x != nil { + return x.DroppedAttributesCount + } + return 0 +} + +// A reference to an Entity. +// Entity represents an object of interest associated with produced telemetry: e.g spans, metrics, profiles, or logs. +// +// Status: [Development] +type EntityRef struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The Schema URL, if known. This is the identifier of the Schema that the entity data + // is recorded in. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // + // This schema_url applies to the data in this message and to the Resource attributes + // referenced by id_keys and description_keys. + // TODO: discuss if we are happy with this somewhat complicated definition of what + // the schema_url applies to. + // + // This field obsoletes the schema_url field in ResourceMetrics/ResourceSpans/ResourceLogs. + SchemaUrl string `protobuf:"bytes,1,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"` + // Defines the type of the entity. MUST not change during the lifetime of the entity. + // For example: "service" or "host". This field is required and MUST not be empty + // for valid entities. + Type string `protobuf:"bytes,2,opt,name=type,proto3" json:"type,omitempty"` + // Attribute Keys that identify the entity. + // MUST not change during the lifetime of the entity. The Id must contain at least one attribute. + // These keys MUST exist in the containing {message}.attributes. + IdKeys []string `protobuf:"bytes,3,rep,name=id_keys,json=idKeys,proto3" json:"id_keys,omitempty"` + // Descriptive (non-identifying) attribute keys of the entity. + // MAY change over the lifetime of the entity. MAY be empty. + // These attribute keys are not part of entity's identity. + // These keys MUST exist in the containing {message}.attributes. + DescriptionKeys []string `protobuf:"bytes,4,rep,name=description_keys,json=descriptionKeys,proto3" json:"description_keys,omitempty"` +} + +func (x *EntityRef) Reset() { + *x = EntityRef{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[5] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *EntityRef) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*EntityRef) ProtoMessage() {} + +func (x *EntityRef) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_common_v1_common_proto_msgTypes[5] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use EntityRef.ProtoReflect.Descriptor instead. +func (*EntityRef) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP(), []int{5} +} + +func (x *EntityRef) GetSchemaUrl() string { + if x != nil { + return x.SchemaUrl + } + return "" +} + +func (x *EntityRef) GetType() string { + if x != nil { + return x.Type + } + return "" +} + +func (x *EntityRef) GetIdKeys() []string { + if x != nil { + return x.IdKeys + } + return nil +} + +func (x *EntityRef) GetDescriptionKeys() []string { + if x != nil { + return x.DescriptionKeys + } + return nil +} + +var File_opentelemetry_proto_common_v1_common_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_common_v1_common_proto_rawDesc = []byte{ + 0x0a, 0x2a, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2f, + 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 0x2f, 0x76, 0x31, 0x2f, + 0x63, 0x6f, 0x6d, 0x6d, 0x6f, 0x6e, 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file_opentelemetry_proto_common_v1_common_proto_rawDesc +) + +func file_opentelemetry_proto_common_v1_common_proto_rawDescGZIP() []byte { + file_opentelemetry_proto_common_v1_common_proto_rawDescOnce.Do(func() { + file_opentelemetry_proto_common_v1_common_proto_rawDescData = protoimpl.X.CompressGZIP(file_opentelemetry_proto_common_v1_common_proto_rawDescData) + }) + return file_opentelemetry_proto_common_v1_common_proto_rawDescData +} + +var file_opentelemetry_proto_common_v1_common_proto_msgTypes = make([]protoimpl.MessageInfo, 6) +var file_opentelemetry_proto_common_v1_common_proto_goTypes = []interface{}{ + (*AnyValue)(nil), // 0: opentelemetry.proto.common.v1.AnyValue + (*ArrayValue)(nil), // 1: opentelemetry.proto.common.v1.ArrayValue + (*KeyValueList)(nil), // 2: opentelemetry.proto.common.v1.KeyValueList + (*KeyValue)(nil), // 3: opentelemetry.proto.common.v1.KeyValue + (*InstrumentationScope)(nil), // 4: opentelemetry.proto.common.v1.InstrumentationScope + (*EntityRef)(nil), // 5: opentelemetry.proto.common.v1.EntityRef +} +var file_opentelemetry_proto_common_v1_common_proto_depIdxs = []int32{ + 1, // 0: opentelemetry.proto.common.v1.AnyValue.array_value:type_name -> opentelemetry.proto.common.v1.ArrayValue + 2, // 1: opentelemetry.proto.common.v1.AnyValue.kvlist_value:type_name -> opentelemetry.proto.common.v1.KeyValueList + 0, // 2: opentelemetry.proto.common.v1.ArrayValue.values:type_name -> opentelemetry.proto.common.v1.AnyValue + 3, // 3: opentelemetry.proto.common.v1.KeyValueList.values:type_name -> opentelemetry.proto.common.v1.KeyValue + 0, // 4: opentelemetry.proto.common.v1.KeyValue.value:type_name -> opentelemetry.proto.common.v1.AnyValue + 3, // 5: opentelemetry.proto.common.v1.InstrumentationScope.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 6, // [6:6] is the sub-list for method output_type + 6, // [6:6] is the sub-list for method input_type + 6, // [6:6] is the sub-list for extension type_name + 6, // [6:6] is the sub-list for extension extendee + 0, // [0:6] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_common_v1_common_proto_init() } +func file_opentelemetry_proto_common_v1_common_proto_init() { + if File_opentelemetry_proto_common_v1_common_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_common_v1_common_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*AnyValue); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ArrayValue); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*KeyValueList); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*KeyValue); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*InstrumentationScope); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*EntityRef); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + file_opentelemetry_proto_common_v1_common_proto_msgTypes[0].OneofWrappers = []interface{}{ + (*AnyValue_StringValue)(nil), + (*AnyValue_BoolValue)(nil), + (*AnyValue_IntValue)(nil), + (*AnyValue_DoubleValue)(nil), + (*AnyValue_ArrayValue)(nil), + (*AnyValue_KvlistValue)(nil), + (*AnyValue_BytesValue)(nil), + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_common_v1_common_proto_rawDesc, + NumEnums: 0, + NumMessages: 6, + NumExtensions: 0, + NumServices: 0, + }, + GoTypes: file_opentelemetry_proto_common_v1_common_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_common_v1_common_proto_depIdxs, + MessageInfos: file_opentelemetry_proto_common_v1_common_proto_msgTypes, + }.Build() + File_opentelemetry_proto_common_v1_common_proto = out.File + file_opentelemetry_proto_common_v1_common_proto_rawDesc = nil + file_opentelemetry_proto_common_v1_common_proto_goTypes = nil + file_opentelemetry_proto_common_v1_common_proto_depIdxs = nil +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/metrics/v1/metrics.pb.go b/vendor/go.opentelemetry.io/proto/otlp/metrics/v1/metrics.pb.go new file mode 100644 index 0000000000..ec187b13d0 --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/metrics/v1/metrics.pb.go @@ -0,0 +1,2543 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/metrics/v1/metrics.proto + +package v1 + +import ( + v11 "go.opentelemetry.io/proto/otlp/common/v1" + v1 "go.opentelemetry.io/proto/otlp/resource/v1" + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +// AggregationTemporality defines how a metric aggregator reports aggregated +// values. It describes how those values relate to the time interval over +// which they are aggregated. +type AggregationTemporality int32 + +const ( + // UNSPECIFIED is the default AggregationTemporality, it MUST not be used. + AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED AggregationTemporality = 0 + // DELTA is an AggregationTemporality for a metric aggregator which reports + // changes since last report time. Successive metrics contain aggregation of + // values from continuous and non-overlapping intervals. + // + // The values for a DELTA metric are based only on the time interval + // associated with one measurement cycle. There is no dependency on + // previous measurements like is the case for CUMULATIVE metrics. + // + // For example, consider a system measuring the number of requests that + // it receives and reports the sum of these requests every second as a + // DELTA metric: + // + // 1. The system starts receiving at time=t_0. + // 2. A request is received, the system measures 1 request. + // 3. A request is received, the system measures 1 request. + // 4. A request is received, the system measures 1 request. + // 5. The 1 second collection cycle ends. A metric is exported for the + // number of requests received over the interval of time t_0 to + // t_0+1 with a value of 3. + // 6. A request is received, the system measures 1 request. + // 7. A request is received, the system measures 1 request. + // 8. The 1 second collection cycle ends. A metric is exported for the + // number of requests received over the interval of time t_0+1 to + // t_0+2 with a value of 2. + AggregationTemporality_AGGREGATION_TEMPORALITY_DELTA AggregationTemporality = 1 + // CUMULATIVE is an AggregationTemporality for a metric aggregator which + // reports changes since a fixed start time. This means that current values + // of a CUMULATIVE metric depend on all previous measurements since the + // start time. Because of this, the sender is required to retain this state + // in some form. If this state is lost or invalidated, the CUMULATIVE metric + // values MUST be reset and a new fixed start time following the last + // reported measurement time sent MUST be used. + // + // For example, consider a system measuring the number of requests that + // it receives and reports the sum of these requests every second as a + // CUMULATIVE metric: + // + // 1. The system starts receiving at time=t_0. + // 2. A request is received, the system measures 1 request. + // 3. A request is received, the system measures 1 request. + // 4. A request is received, the system measures 1 request. + // 5. The 1 second collection cycle ends. A metric is exported for the + // number of requests received over the interval of time t_0 to + // t_0+1 with a value of 3. + // 6. A request is received, the system measures 1 request. + // 7. A request is received, the system measures 1 request. + // 8. The 1 second collection cycle ends. A metric is exported for the + // number of requests received over the interval of time t_0 to + // t_0+2 with a value of 5. + // 9. The system experiences a fault and loses state. + // 10. The system recovers and resumes receiving at time=t_1. + // 11. A request is received, the system measures 1 request. + // 12. The 1 second collection cycle ends. A metric is exported for the + // number of requests received over the interval of time t_1 to + // t_0+1 with a value of 1. + // + // Note: Even though, when reporting changes since last report time, using + // CUMULATIVE is valid, it is not recommended. This may cause problems for + // systems that do not use start_time to determine when the aggregation + // value was reset (e.g. Prometheus). + AggregationTemporality_AGGREGATION_TEMPORALITY_CUMULATIVE AggregationTemporality = 2 +) + +// Enum value maps for AggregationTemporality. +var ( + AggregationTemporality_name = map[int32]string{ + 0: "AGGREGATION_TEMPORALITY_UNSPECIFIED", + 1: "AGGREGATION_TEMPORALITY_DELTA", + 2: "AGGREGATION_TEMPORALITY_CUMULATIVE", + } + AggregationTemporality_value = map[string]int32{ + "AGGREGATION_TEMPORALITY_UNSPECIFIED": 0, + "AGGREGATION_TEMPORALITY_DELTA": 1, + "AGGREGATION_TEMPORALITY_CUMULATIVE": 2, + } +) + +func (x AggregationTemporality) Enum() *AggregationTemporality { + p := new(AggregationTemporality) + *p = x + return p +} + +func (x AggregationTemporality) String() string { + return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) +} + +func (AggregationTemporality) Descriptor() protoreflect.EnumDescriptor { + return file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes[0].Descriptor() +} + +func (AggregationTemporality) Type() protoreflect.EnumType { + return &file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes[0] +} + +func (x AggregationTemporality) Number() protoreflect.EnumNumber { + return protoreflect.EnumNumber(x) +} + +// Deprecated: Use AggregationTemporality.Descriptor instead. +func (AggregationTemporality) EnumDescriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{0} +} + +// DataPointFlags is defined as a protobuf 'uint32' type and is to be used as a +// bit-field representing 32 distinct boolean flags. Each flag defined in this +// enum is a bit-mask. To test the presence of a single flag in the flags of +// a data point, for example, use an expression like: +// +// (point.flags & DATA_POINT_FLAGS_NO_RECORDED_VALUE_MASK) == DATA_POINT_FLAGS_NO_RECORDED_VALUE_MASK +// +type DataPointFlags int32 + +const ( + // The zero value for the enum. Should not be used for comparisons. + // Instead use bitwise "and" with the appropriate mask as shown above. + DataPointFlags_DATA_POINT_FLAGS_DO_NOT_USE DataPointFlags = 0 + // This DataPoint is valid but has no recorded value. This value + // SHOULD be used to reflect explicitly missing data in a series, as + // for an equivalent to the Prometheus "staleness marker". + DataPointFlags_DATA_POINT_FLAGS_NO_RECORDED_VALUE_MASK DataPointFlags = 1 +) + +// Enum value maps for DataPointFlags. +var ( + DataPointFlags_name = map[int32]string{ + 0: "DATA_POINT_FLAGS_DO_NOT_USE", + 1: "DATA_POINT_FLAGS_NO_RECORDED_VALUE_MASK", + } + DataPointFlags_value = map[string]int32{ + "DATA_POINT_FLAGS_DO_NOT_USE": 0, + "DATA_POINT_FLAGS_NO_RECORDED_VALUE_MASK": 1, + } +) + +func (x DataPointFlags) Enum() *DataPointFlags { + p := new(DataPointFlags) + *p = x + return p +} + +func (x DataPointFlags) String() string { + return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) +} + +func (DataPointFlags) Descriptor() protoreflect.EnumDescriptor { + return file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes[1].Descriptor() +} + +func (DataPointFlags) Type() protoreflect.EnumType { + return &file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes[1] +} + +func (x DataPointFlags) Number() protoreflect.EnumNumber { + return protoreflect.EnumNumber(x) +} + +// Deprecated: Use DataPointFlags.Descriptor instead. +func (DataPointFlags) EnumDescriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{1} +} + +// MetricsData represents the metrics data that can be stored in a persistent +// storage, OR can be embedded by other protocols that transfer OTLP metrics +// data but do not implement the OTLP protocol. +// +// MetricsData +// └─── ResourceMetrics +// ├── Resource +// ├── SchemaURL +// └── ScopeMetrics +// ├── Scope +// ├── SchemaURL +// └── Metric +// ├── Name +// ├── Description +// ├── Unit +// └── data +// ├── Gauge +// ├── Sum +// ├── Histogram +// ├── ExponentialHistogram +// └── Summary +// +// The main difference between this message and collector protocol is that +// in this message there will not be any "control" or "metadata" specific to +// OTLP protocol. +// +// When new fields are added into this message, the OTLP request MUST be updated +// as well. +type MetricsData struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An array of ResourceMetrics. + // For data coming from a single resource this array will typically contain + // one element. Intermediary nodes that receive data from multiple origins + // typically batch the data before forwarding further and in that case this + // array will contain multiple elements. + ResourceMetrics []*ResourceMetrics `protobuf:"bytes,1,rep,name=resource_metrics,json=resourceMetrics,proto3" json:"resource_metrics,omitempty"` +} + +func (x *MetricsData) Reset() { + *x = MetricsData{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *MetricsData) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*MetricsData) ProtoMessage() {} + +func (x *MetricsData) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use MetricsData.ProtoReflect.Descriptor instead. +func (*MetricsData) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{0} +} + +func (x *MetricsData) GetResourceMetrics() []*ResourceMetrics { + if x != nil { + return x.ResourceMetrics + } + return nil +} + +// A collection of ScopeMetrics from a Resource. +type ResourceMetrics struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The resource for the metrics in this message. + // If this field is not set then no resource info is known. + Resource *v1.Resource `protobuf:"bytes,1,opt,name=resource,proto3" json:"resource,omitempty"` + // A list of metrics that originate from a resource. + ScopeMetrics []*ScopeMetrics `protobuf:"bytes,2,rep,name=scope_metrics,json=scopeMetrics,proto3" json:"scope_metrics,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the resource data + // is recorded in. Notably, the last part of the URL path is the version number of the + // schema: http[s]://server[:port]/path/. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to the data in the "resource" field. It does not apply + // to the data in the "scope_metrics" field which have their own schema_url field. + SchemaUrl string `protobuf:"bytes,3,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"` +} + +func (x *ResourceMetrics) Reset() { + *x = ResourceMetrics{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ResourceMetrics) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ResourceMetrics) ProtoMessage() {} + +func (x *ResourceMetrics) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ResourceMetrics.ProtoReflect.Descriptor instead. +func (*ResourceMetrics) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{1} +} + +func (x *ResourceMetrics) GetResource() *v1.Resource { + if x != nil { + return x.Resource + } + return nil +} + +func (x *ResourceMetrics) GetScopeMetrics() []*ScopeMetrics { + if x != nil { + return x.ScopeMetrics + } + return nil +} + +func (x *ResourceMetrics) GetSchemaUrl() string { + if x != nil { + return x.SchemaUrl + } + return "" +} + +// A collection of Metrics produced by an Scope. +type ScopeMetrics struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The instrumentation scope information for the metrics in this message. + // Semantically when InstrumentationScope isn't set, it is equivalent with + // an empty instrumentation scope name (unknown). + Scope *v11.InstrumentationScope `protobuf:"bytes,1,opt,name=scope,proto3" json:"scope,omitempty"` + // A list of metrics that originate from an instrumentation library. + Metrics []*Metric `protobuf:"bytes,2,rep,name=metrics,proto3" json:"metrics,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the metric data + // is recorded in. Notably, the last part of the URL path is the version number of the + // schema: http[s]://server[:port]/path/. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to all metrics in the "metrics" field. + SchemaUrl string `protobuf:"bytes,3,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"` +} + +func (x *ScopeMetrics) Reset() { + *x = ScopeMetrics{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ScopeMetrics) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ScopeMetrics) ProtoMessage() {} + +func (x *ScopeMetrics) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ScopeMetrics.ProtoReflect.Descriptor instead. +func (*ScopeMetrics) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{2} +} + +func (x *ScopeMetrics) GetScope() *v11.InstrumentationScope { + if x != nil { + return x.Scope + } + return nil +} + +func (x *ScopeMetrics) GetMetrics() []*Metric { + if x != nil { + return x.Metrics + } + return nil +} + +func (x *ScopeMetrics) GetSchemaUrl() string { + if x != nil { + return x.SchemaUrl + } + return "" +} + +// Defines a Metric which has one or more timeseries. The following is a +// brief summary of the Metric data model. For more details, see: +// +// https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/metrics/data-model.md +// +// The data model and relation between entities is shown in the +// diagram below. Here, "DataPoint" is the term used to refer to any +// one of the specific data point value types, and "points" is the term used +// to refer to any one of the lists of points contained in the Metric. +// +// - Metric is composed of a metadata and data. +// - Metadata part contains a name, description, unit. +// - Data is one of the possible types (Sum, Gauge, Histogram, Summary). +// - DataPoint contains timestamps, attributes, and one of the possible value type +// fields. +// +// Metric +// +------------+ +// |name | +// |description | +// |unit | +------------------------------------+ +// |data |---> |Gauge, Sum, Histogram, Summary, ... | +// +------------+ +------------------------------------+ +// +// Data [One of Gauge, Sum, Histogram, Summary, ...] +// +-----------+ +// |... | // Metadata about the Data. +// |points |--+ +// +-----------+ | +// | +---------------------------+ +// | |DataPoint 1 | +// v |+------+------+ +------+ | +// +-----+ ||label |label |...|label | | +// | 1 |-->||value1|value2|...|valueN| | +// +-----+ |+------+------+ +------+ | +// | . | |+-----+ | +// | . | ||value| | +// | . | |+-----+ | +// | . | +---------------------------+ +// | . | . +// | . | . +// | . | . +// | . | +---------------------------+ +// | . | |DataPoint M | +// +-----+ |+------+------+ +------+ | +// | M |-->||label |label |...|label | | +// +-----+ ||value1|value2|...|valueN| | +// |+------+------+ +------+ | +// |+-----+ | +// ||value| | +// |+-----+ | +// +---------------------------+ +// +// Each distinct type of DataPoint represents the output of a specific +// aggregation function, the result of applying the DataPoint's +// associated function of to one or more measurements. +// +// All DataPoint types have three common fields: +// - Attributes includes key-value pairs associated with the data point +// - TimeUnixNano is required, set to the end time of the aggregation +// - StartTimeUnixNano is optional, but strongly encouraged for DataPoints +// having an AggregationTemporality field, as discussed below. +// +// Both TimeUnixNano and StartTimeUnixNano values are expressed as +// UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. +// +// # TimeUnixNano +// +// This field is required, having consistent interpretation across +// DataPoint types. TimeUnixNano is the moment corresponding to when +// the data point's aggregate value was captured. +// +// Data points with the 0 value for TimeUnixNano SHOULD be rejected +// by consumers. +// +// # StartTimeUnixNano +// +// StartTimeUnixNano in general allows detecting when a sequence of +// observations is unbroken. This field indicates to consumers the +// start time for points with cumulative and delta +// AggregationTemporality, and it should be included whenever possible +// to support correct rate calculation. Although it may be omitted +// when the start time is truly unknown, setting StartTimeUnixNano is +// strongly encouraged. +type Metric struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // name of the metric. + Name string `protobuf:"bytes,1,opt,name=name,proto3" json:"name,omitempty"` + // description of the metric, which can be used in documentation. + Description string `protobuf:"bytes,2,opt,name=description,proto3" json:"description,omitempty"` + // unit in which the metric value is reported. Follows the format + // described by https://unitsofmeasure.org/ucum.html. + Unit string `protobuf:"bytes,3,opt,name=unit,proto3" json:"unit,omitempty"` + // Data determines the aggregation type (if any) of the metric, what is the + // reported value type for the data points, as well as the relatationship to + // the time interval over which they are reported. + // + // Types that are assignable to Data: + // *Metric_Gauge + // *Metric_Sum + // *Metric_Histogram + // *Metric_ExponentialHistogram + // *Metric_Summary + Data isMetric_Data `protobuf_oneof:"data"` + // Additional metadata attributes that describe the metric. [Optional]. + // Attributes are non-identifying. + // Consumers SHOULD NOT need to be aware of these attributes. + // These attributes MAY be used to encode information allowing + // for lossless roundtrip translation to / from another data model. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Metadata []*v11.KeyValue `protobuf:"bytes,12,rep,name=metadata,proto3" json:"metadata,omitempty"` +} + +func (x *Metric) Reset() { + *x = Metric{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[3] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Metric) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Metric) ProtoMessage() {} + +func (x *Metric) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[3] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Metric.ProtoReflect.Descriptor instead. +func (*Metric) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{3} +} + +func (x *Metric) GetName() string { + if x != nil { + return x.Name + } + return "" +} + +func (x *Metric) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +func (x *Metric) GetUnit() string { + if x != nil { + return x.Unit + } + return "" +} + +func (m *Metric) GetData() isMetric_Data { + if m != nil { + return m.Data + } + return nil +} + +func (x *Metric) GetGauge() *Gauge { + if x, ok := x.GetData().(*Metric_Gauge); ok { + return x.Gauge + } + return nil +} + +func (x *Metric) GetSum() *Sum { + if x, ok := x.GetData().(*Metric_Sum); ok { + return x.Sum + } + return nil +} + +func (x *Metric) GetHistogram() *Histogram { + if x, ok := x.GetData().(*Metric_Histogram); ok { + return x.Histogram + } + return nil +} + +func (x *Metric) GetExponentialHistogram() *ExponentialHistogram { + if x, ok := x.GetData().(*Metric_ExponentialHistogram); ok { + return x.ExponentialHistogram + } + return nil +} + +func (x *Metric) GetSummary() *Summary { + if x, ok := x.GetData().(*Metric_Summary); ok { + return x.Summary + } + return nil +} + +func (x *Metric) GetMetadata() []*v11.KeyValue { + if x != nil { + return x.Metadata + } + return nil +} + +type isMetric_Data interface { + isMetric_Data() +} + +type Metric_Gauge struct { + Gauge *Gauge `protobuf:"bytes,5,opt,name=gauge,proto3,oneof"` +} + +type Metric_Sum struct { + Sum *Sum `protobuf:"bytes,7,opt,name=sum,proto3,oneof"` +} + +type Metric_Histogram struct { + Histogram *Histogram `protobuf:"bytes,9,opt,name=histogram,proto3,oneof"` +} + +type Metric_ExponentialHistogram struct { + ExponentialHistogram *ExponentialHistogram `protobuf:"bytes,10,opt,name=exponential_histogram,json=exponentialHistogram,proto3,oneof"` +} + +type Metric_Summary struct { + Summary *Summary `protobuf:"bytes,11,opt,name=summary,proto3,oneof"` +} + +func (*Metric_Gauge) isMetric_Data() {} + +func (*Metric_Sum) isMetric_Data() {} + +func (*Metric_Histogram) isMetric_Data() {} + +func (*Metric_ExponentialHistogram) isMetric_Data() {} + +func (*Metric_Summary) isMetric_Data() {} + +// Gauge represents the type of a scalar metric that always exports the +// "current value" for every data point. It should be used for an "unknown" +// aggregation. +// +// A Gauge does not support different aggregation temporalities. Given the +// aggregation is unknown, points cannot be combined using the same +// aggregation, regardless of aggregation temporalities. Therefore, +// AggregationTemporality is not included. Consequently, this also means +// "StartTimeUnixNano" is ignored for all data points. +type Gauge struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + DataPoints []*NumberDataPoint `protobuf:"bytes,1,rep,name=data_points,json=dataPoints,proto3" json:"data_points,omitempty"` +} + +func (x *Gauge) Reset() { + *x = Gauge{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[4] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Gauge) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Gauge) ProtoMessage() {} + +func (x *Gauge) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[4] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Gauge.ProtoReflect.Descriptor instead. +func (*Gauge) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{4} +} + +func (x *Gauge) GetDataPoints() []*NumberDataPoint { + if x != nil { + return x.DataPoints + } + return nil +} + +// Sum represents the type of a scalar metric that is calculated as a sum of all +// reported measurements over a time interval. +type Sum struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + DataPoints []*NumberDataPoint `protobuf:"bytes,1,rep,name=data_points,json=dataPoints,proto3" json:"data_points,omitempty"` + // aggregation_temporality describes if the aggregator reports delta changes + // since last report time, or cumulative changes since a fixed start time. + AggregationTemporality AggregationTemporality `protobuf:"varint,2,opt,name=aggregation_temporality,json=aggregationTemporality,proto3,enum=opentelemetry.proto.metrics.v1.AggregationTemporality" json:"aggregation_temporality,omitempty"` + // If "true" means that the sum is monotonic. + IsMonotonic bool `protobuf:"varint,3,opt,name=is_monotonic,json=isMonotonic,proto3" json:"is_monotonic,omitempty"` +} + +func (x *Sum) Reset() { + *x = Sum{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[5] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Sum) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Sum) ProtoMessage() {} + +func (x *Sum) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[5] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Sum.ProtoReflect.Descriptor instead. +func (*Sum) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{5} +} + +func (x *Sum) GetDataPoints() []*NumberDataPoint { + if x != nil { + return x.DataPoints + } + return nil +} + +func (x *Sum) GetAggregationTemporality() AggregationTemporality { + if x != nil { + return x.AggregationTemporality + } + return AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED +} + +func (x *Sum) GetIsMonotonic() bool { + if x != nil { + return x.IsMonotonic + } + return false +} + +// Histogram represents the type of a metric that is calculated by aggregating +// as a Histogram of all reported measurements over a time interval. +type Histogram struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + DataPoints []*HistogramDataPoint `protobuf:"bytes,1,rep,name=data_points,json=dataPoints,proto3" json:"data_points,omitempty"` + // aggregation_temporality describes if the aggregator reports delta changes + // since last report time, or cumulative changes since a fixed start time. + AggregationTemporality AggregationTemporality `protobuf:"varint,2,opt,name=aggregation_temporality,json=aggregationTemporality,proto3,enum=opentelemetry.proto.metrics.v1.AggregationTemporality" json:"aggregation_temporality,omitempty"` +} + +func (x *Histogram) Reset() { + *x = Histogram{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[6] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Histogram) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Histogram) ProtoMessage() {} + +func (x *Histogram) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[6] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Histogram.ProtoReflect.Descriptor instead. +func (*Histogram) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{6} +} + +func (x *Histogram) GetDataPoints() []*HistogramDataPoint { + if x != nil { + return x.DataPoints + } + return nil +} + +func (x *Histogram) GetAggregationTemporality() AggregationTemporality { + if x != nil { + return x.AggregationTemporality + } + return AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED +} + +// ExponentialHistogram represents the type of a metric that is calculated by aggregating +// as a ExponentialHistogram of all reported double measurements over a time interval. +type ExponentialHistogram struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + DataPoints []*ExponentialHistogramDataPoint `protobuf:"bytes,1,rep,name=data_points,json=dataPoints,proto3" json:"data_points,omitempty"` + // aggregation_temporality describes if the aggregator reports delta changes + // since last report time, or cumulative changes since a fixed start time. + AggregationTemporality AggregationTemporality `protobuf:"varint,2,opt,name=aggregation_temporality,json=aggregationTemporality,proto3,enum=opentelemetry.proto.metrics.v1.AggregationTemporality" json:"aggregation_temporality,omitempty"` +} + +func (x *ExponentialHistogram) Reset() { + *x = ExponentialHistogram{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[7] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExponentialHistogram) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExponentialHistogram) ProtoMessage() {} + +func (x *ExponentialHistogram) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[7] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExponentialHistogram.ProtoReflect.Descriptor instead. +func (*ExponentialHistogram) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{7} +} + +func (x *ExponentialHistogram) GetDataPoints() []*ExponentialHistogramDataPoint { + if x != nil { + return x.DataPoints + } + return nil +} + +func (x *ExponentialHistogram) GetAggregationTemporality() AggregationTemporality { + if x != nil { + return x.AggregationTemporality + } + return AggregationTemporality_AGGREGATION_TEMPORALITY_UNSPECIFIED +} + +// Summary metric data are used to convey quantile summaries, +// a Prometheus (see: https://prometheus.io/docs/concepts/metric_types/#summary) +// and OpenMetrics (see: https://github.com/prometheus/OpenMetrics/blob/4dbf6075567ab43296eed941037c12951faafb92/protos/prometheus.proto#L45) +// data type. These data points cannot always be merged in a meaningful way. +// While they can be useful in some applications, histogram data points are +// recommended for new applications. +// Summary metrics do not have an aggregation temporality field. This is +// because the count and sum fields of a SummaryDataPoint are assumed to be +// cumulative values. +type Summary struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + DataPoints []*SummaryDataPoint `protobuf:"bytes,1,rep,name=data_points,json=dataPoints,proto3" json:"data_points,omitempty"` +} + +func (x *Summary) Reset() { + *x = Summary{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[8] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Summary) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Summary) ProtoMessage() {} + +func (x *Summary) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[8] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Summary.ProtoReflect.Descriptor instead. +func (*Summary) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{8} +} + +func (x *Summary) GetDataPoints() []*SummaryDataPoint { + if x != nil { + return x.DataPoints + } + return nil +} + +// NumberDataPoint is a single data point in a timeseries that describes the +// time-varying scalar value of a metric. +type NumberDataPoint struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The set of key/value pairs that uniquely identify the timeseries from + // where this point belongs. The list may be empty (may contain 0 elements). + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,7,rep,name=attributes,proto3" json:"attributes,omitempty"` + // StartTimeUnixNano is optional but strongly encouraged, see the + // the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + StartTimeUnixNano uint64 `protobuf:"fixed64,2,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"` + // TimeUnixNano is required, see the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + TimeUnixNano uint64 `protobuf:"fixed64,3,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // The value itself. A point is considered invalid when one of the recognized + // value fields is not present inside this oneof. + // + // Types that are assignable to Value: + // *NumberDataPoint_AsDouble + // *NumberDataPoint_AsInt + Value isNumberDataPoint_Value `protobuf_oneof:"value"` + // (Optional) List of exemplars collected from + // measurements that were used to form the data point + Exemplars []*Exemplar `protobuf:"bytes,5,rep,name=exemplars,proto3" json:"exemplars,omitempty"` + // Flags that apply to this specific data point. See DataPointFlags + // for the available flags and their meaning. + Flags uint32 `protobuf:"varint,8,opt,name=flags,proto3" json:"flags,omitempty"` +} + +func (x *NumberDataPoint) Reset() { + *x = NumberDataPoint{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[9] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *NumberDataPoint) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*NumberDataPoint) ProtoMessage() {} + +func (x *NumberDataPoint) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[9] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use NumberDataPoint.ProtoReflect.Descriptor instead. +func (*NumberDataPoint) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{9} +} + +func (x *NumberDataPoint) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *NumberDataPoint) GetStartTimeUnixNano() uint64 { + if x != nil { + return x.StartTimeUnixNano + } + return 0 +} + +func (x *NumberDataPoint) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (m *NumberDataPoint) GetValue() isNumberDataPoint_Value { + if m != nil { + return m.Value + } + return nil +} + +func (x *NumberDataPoint) GetAsDouble() float64 { + if x, ok := x.GetValue().(*NumberDataPoint_AsDouble); ok { + return x.AsDouble + } + return 0 +} + +func (x *NumberDataPoint) GetAsInt() int64 { + if x, ok := x.GetValue().(*NumberDataPoint_AsInt); ok { + return x.AsInt + } + return 0 +} + +func (x *NumberDataPoint) GetExemplars() []*Exemplar { + if x != nil { + return x.Exemplars + } + return nil +} + +func (x *NumberDataPoint) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +type isNumberDataPoint_Value interface { + isNumberDataPoint_Value() +} + +type NumberDataPoint_AsDouble struct { + AsDouble float64 `protobuf:"fixed64,4,opt,name=as_double,json=asDouble,proto3,oneof"` +} + +type NumberDataPoint_AsInt struct { + AsInt int64 `protobuf:"fixed64,6,opt,name=as_int,json=asInt,proto3,oneof"` +} + +func (*NumberDataPoint_AsDouble) isNumberDataPoint_Value() {} + +func (*NumberDataPoint_AsInt) isNumberDataPoint_Value() {} + +// HistogramDataPoint is a single data point in a timeseries that describes the +// time-varying values of a Histogram. A Histogram contains summary statistics +// for a population of values, it may optionally contain the distribution of +// those values across a set of buckets. +// +// If the histogram contains the distribution of values, then both +// "explicit_bounds" and "bucket counts" fields must be defined. +// If the histogram does not contain the distribution of values, then both +// "explicit_bounds" and "bucket_counts" must be omitted and only "count" and +// "sum" are known. +type HistogramDataPoint struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The set of key/value pairs that uniquely identify the timeseries from + // where this point belongs. The list may be empty (may contain 0 elements). + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,9,rep,name=attributes,proto3" json:"attributes,omitempty"` + // StartTimeUnixNano is optional but strongly encouraged, see the + // the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + StartTimeUnixNano uint64 `protobuf:"fixed64,2,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"` + // TimeUnixNano is required, see the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + TimeUnixNano uint64 `protobuf:"fixed64,3,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // count is the number of values in the population. Must be non-negative. This + // value must be equal to the sum of the "count" fields in buckets if a + // histogram is provided. + Count uint64 `protobuf:"fixed64,4,opt,name=count,proto3" json:"count,omitempty"` + // sum of the values in the population. If count is zero then this field + // must be zero. + // + // Note: Sum should only be filled out when measuring non-negative discrete + // events, and is assumed to be monotonic over the values of these events. + // Negative events *can* be recorded, but sum should not be filled out when + // doing so. This is specifically to enforce compatibility w/ OpenMetrics, + // see: https://github.com/prometheus/OpenMetrics/blob/v1.0.0/specification/OpenMetrics.md#histogram + Sum *float64 `protobuf:"fixed64,5,opt,name=sum,proto3,oneof" json:"sum,omitempty"` + // bucket_counts is an optional field contains the count values of histogram + // for each bucket. + // + // The sum of the bucket_counts must equal the value in the count field. + // + // The number of elements in bucket_counts array must be by one greater than + // the number of elements in explicit_bounds array. The exception to this rule + // is when the length of bucket_counts is 0, then the length of explicit_bounds + // must also be 0. + BucketCounts []uint64 `protobuf:"fixed64,6,rep,packed,name=bucket_counts,json=bucketCounts,proto3" json:"bucket_counts,omitempty"` + // explicit_bounds specifies buckets with explicitly defined bounds for values. + // + // The boundaries for bucket at index i are: + // + // (-infinity, explicit_bounds[i]] for i == 0 + // (explicit_bounds[i-1], explicit_bounds[i]] for 0 < i < size(explicit_bounds) + // (explicit_bounds[i-1], +infinity) for i == size(explicit_bounds) + // + // The values in the explicit_bounds array must be strictly increasing. + // + // Histogram buckets are inclusive of their upper boundary, except the last + // bucket where the boundary is at infinity. This format is intentionally + // compatible with the OpenMetrics histogram definition. + // + // If bucket_counts length is 0 then explicit_bounds length must also be 0, + // otherwise the data point is invalid. + ExplicitBounds []float64 `protobuf:"fixed64,7,rep,packed,name=explicit_bounds,json=explicitBounds,proto3" json:"explicit_bounds,omitempty"` + // (Optional) List of exemplars collected from + // measurements that were used to form the data point + Exemplars []*Exemplar `protobuf:"bytes,8,rep,name=exemplars,proto3" json:"exemplars,omitempty"` + // Flags that apply to this specific data point. See DataPointFlags + // for the available flags and their meaning. + Flags uint32 `protobuf:"varint,10,opt,name=flags,proto3" json:"flags,omitempty"` + // min is the minimum value over (start_time, end_time]. + Min *float64 `protobuf:"fixed64,11,opt,name=min,proto3,oneof" json:"min,omitempty"` + // max is the maximum value over (start_time, end_time]. + Max *float64 `protobuf:"fixed64,12,opt,name=max,proto3,oneof" json:"max,omitempty"` +} + +func (x *HistogramDataPoint) Reset() { + *x = HistogramDataPoint{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[10] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *HistogramDataPoint) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*HistogramDataPoint) ProtoMessage() {} + +func (x *HistogramDataPoint) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[10] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use HistogramDataPoint.ProtoReflect.Descriptor instead. +func (*HistogramDataPoint) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{10} +} + +func (x *HistogramDataPoint) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *HistogramDataPoint) GetStartTimeUnixNano() uint64 { + if x != nil { + return x.StartTimeUnixNano + } + return 0 +} + +func (x *HistogramDataPoint) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (x *HistogramDataPoint) GetCount() uint64 { + if x != nil { + return x.Count + } + return 0 +} + +func (x *HistogramDataPoint) GetSum() float64 { + if x != nil && x.Sum != nil { + return *x.Sum + } + return 0 +} + +func (x *HistogramDataPoint) GetBucketCounts() []uint64 { + if x != nil { + return x.BucketCounts + } + return nil +} + +func (x *HistogramDataPoint) GetExplicitBounds() []float64 { + if x != nil { + return x.ExplicitBounds + } + return nil +} + +func (x *HistogramDataPoint) GetExemplars() []*Exemplar { + if x != nil { + return x.Exemplars + } + return nil +} + +func (x *HistogramDataPoint) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +func (x *HistogramDataPoint) GetMin() float64 { + if x != nil && x.Min != nil { + return *x.Min + } + return 0 +} + +func (x *HistogramDataPoint) GetMax() float64 { + if x != nil && x.Max != nil { + return *x.Max + } + return 0 +} + +// ExponentialHistogramDataPoint is a single data point in a timeseries that describes the +// time-varying values of a ExponentialHistogram of double values. A ExponentialHistogram contains +// summary statistics for a population of values, it may optionally contain the +// distribution of those values across a set of buckets. +// +type ExponentialHistogramDataPoint struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The set of key/value pairs that uniquely identify the timeseries from + // where this point belongs. The list may be empty (may contain 0 elements). + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,1,rep,name=attributes,proto3" json:"attributes,omitempty"` + // StartTimeUnixNano is optional but strongly encouraged, see the + // the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + StartTimeUnixNano uint64 `protobuf:"fixed64,2,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"` + // TimeUnixNano is required, see the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + TimeUnixNano uint64 `protobuf:"fixed64,3,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // count is the number of values in the population. Must be + // non-negative. This value must be equal to the sum of the "bucket_counts" + // values in the positive and negative Buckets plus the "zero_count" field. + Count uint64 `protobuf:"fixed64,4,opt,name=count,proto3" json:"count,omitempty"` + // sum of the values in the population. If count is zero then this field + // must be zero. + // + // Note: Sum should only be filled out when measuring non-negative discrete + // events, and is assumed to be monotonic over the values of these events. + // Negative events *can* be recorded, but sum should not be filled out when + // doing so. This is specifically to enforce compatibility w/ OpenMetrics, + // see: https://github.com/prometheus/OpenMetrics/blob/v1.0.0/specification/OpenMetrics.md#histogram + Sum *float64 `protobuf:"fixed64,5,opt,name=sum,proto3,oneof" json:"sum,omitempty"` + // scale describes the resolution of the histogram. Boundaries are + // located at powers of the base, where: + // + // base = (2^(2^-scale)) + // + // The histogram bucket identified by `index`, a signed integer, + // contains values that are greater than (base^index) and + // less than or equal to (base^(index+1)). + // + // The positive and negative ranges of the histogram are expressed + // separately. Negative values are mapped by their absolute value + // into the negative range using the same scale as the positive range. + // + // scale is not restricted by the protocol, as the permissible + // values depend on the range of the data. + Scale int32 `protobuf:"zigzag32,6,opt,name=scale,proto3" json:"scale,omitempty"` + // zero_count is the count of values that are either exactly zero or + // within the region considered zero by the instrumentation at the + // tolerated degree of precision. This bucket stores values that + // cannot be expressed using the standard exponential formula as + // well as values that have been rounded to zero. + // + // Implementations MAY consider the zero bucket to have probability + // mass equal to (zero_count / count). + ZeroCount uint64 `protobuf:"fixed64,7,opt,name=zero_count,json=zeroCount,proto3" json:"zero_count,omitempty"` + // positive carries the positive range of exponential bucket counts. + Positive *ExponentialHistogramDataPoint_Buckets `protobuf:"bytes,8,opt,name=positive,proto3" json:"positive,omitempty"` + // negative carries the negative range of exponential bucket counts. + Negative *ExponentialHistogramDataPoint_Buckets `protobuf:"bytes,9,opt,name=negative,proto3" json:"negative,omitempty"` + // Flags that apply to this specific data point. See DataPointFlags + // for the available flags and their meaning. + Flags uint32 `protobuf:"varint,10,opt,name=flags,proto3" json:"flags,omitempty"` + // (Optional) List of exemplars collected from + // measurements that were used to form the data point + Exemplars []*Exemplar `protobuf:"bytes,11,rep,name=exemplars,proto3" json:"exemplars,omitempty"` + // min is the minimum value over (start_time, end_time]. + Min *float64 `protobuf:"fixed64,12,opt,name=min,proto3,oneof" json:"min,omitempty"` + // max is the maximum value over (start_time, end_time]. + Max *float64 `protobuf:"fixed64,13,opt,name=max,proto3,oneof" json:"max,omitempty"` + // ZeroThreshold may be optionally set to convey the width of the zero + // region. Where the zero region is defined as the closed interval + // [-ZeroThreshold, ZeroThreshold]. + // When ZeroThreshold is 0, zero count bucket stores values that cannot be + // expressed using the standard exponential formula as well as values that + // have been rounded to zero. + ZeroThreshold float64 `protobuf:"fixed64,14,opt,name=zero_threshold,json=zeroThreshold,proto3" json:"zero_threshold,omitempty"` +} + +func (x *ExponentialHistogramDataPoint) Reset() { + *x = ExponentialHistogramDataPoint{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[11] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExponentialHistogramDataPoint) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExponentialHistogramDataPoint) ProtoMessage() {} + +func (x *ExponentialHistogramDataPoint) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[11] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExponentialHistogramDataPoint.ProtoReflect.Descriptor instead. +func (*ExponentialHistogramDataPoint) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{11} +} + +func (x *ExponentialHistogramDataPoint) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *ExponentialHistogramDataPoint) GetStartTimeUnixNano() uint64 { + if x != nil { + return x.StartTimeUnixNano + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetCount() uint64 { + if x != nil { + return x.Count + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetSum() float64 { + if x != nil && x.Sum != nil { + return *x.Sum + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetScale() int32 { + if x != nil { + return x.Scale + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetZeroCount() uint64 { + if x != nil { + return x.ZeroCount + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetPositive() *ExponentialHistogramDataPoint_Buckets { + if x != nil { + return x.Positive + } + return nil +} + +func (x *ExponentialHistogramDataPoint) GetNegative() *ExponentialHistogramDataPoint_Buckets { + if x != nil { + return x.Negative + } + return nil +} + +func (x *ExponentialHistogramDataPoint) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetExemplars() []*Exemplar { + if x != nil { + return x.Exemplars + } + return nil +} + +func (x *ExponentialHistogramDataPoint) GetMin() float64 { + if x != nil && x.Min != nil { + return *x.Min + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetMax() float64 { + if x != nil && x.Max != nil { + return *x.Max + } + return 0 +} + +func (x *ExponentialHistogramDataPoint) GetZeroThreshold() float64 { + if x != nil { + return x.ZeroThreshold + } + return 0 +} + +// SummaryDataPoint is a single data point in a timeseries that describes the +// time-varying values of a Summary metric. The count and sum fields represent +// cumulative values. +type SummaryDataPoint struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The set of key/value pairs that uniquely identify the timeseries from + // where this point belongs. The list may be empty (may contain 0 elements). + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,7,rep,name=attributes,proto3" json:"attributes,omitempty"` + // StartTimeUnixNano is optional but strongly encouraged, see the + // the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + StartTimeUnixNano uint64 `protobuf:"fixed64,2,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"` + // TimeUnixNano is required, see the detailed comments above Metric. + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + TimeUnixNano uint64 `protobuf:"fixed64,3,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // count is the number of values in the population. Must be non-negative. + Count uint64 `protobuf:"fixed64,4,opt,name=count,proto3" json:"count,omitempty"` + // sum of the values in the population. If count is zero then this field + // must be zero. + // + // Note: Sum should only be filled out when measuring non-negative discrete + // events, and is assumed to be monotonic over the values of these events. + // Negative events *can* be recorded, but sum should not be filled out when + // doing so. This is specifically to enforce compatibility w/ OpenMetrics, + // see: https://github.com/prometheus/OpenMetrics/blob/v1.0.0/specification/OpenMetrics.md#summary + Sum float64 `protobuf:"fixed64,5,opt,name=sum,proto3" json:"sum,omitempty"` + // (Optional) list of values at different quantiles of the distribution calculated + // from the current snapshot. The quantiles must be strictly increasing. + QuantileValues []*SummaryDataPoint_ValueAtQuantile `protobuf:"bytes,6,rep,name=quantile_values,json=quantileValues,proto3" json:"quantile_values,omitempty"` + // Flags that apply to this specific data point. See DataPointFlags + // for the available flags and their meaning. + Flags uint32 `protobuf:"varint,8,opt,name=flags,proto3" json:"flags,omitempty"` +} + +func (x *SummaryDataPoint) Reset() { + *x = SummaryDataPoint{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[12] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *SummaryDataPoint) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*SummaryDataPoint) ProtoMessage() {} + +func (x *SummaryDataPoint) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[12] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use SummaryDataPoint.ProtoReflect.Descriptor instead. +func (*SummaryDataPoint) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{12} +} + +func (x *SummaryDataPoint) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *SummaryDataPoint) GetStartTimeUnixNano() uint64 { + if x != nil { + return x.StartTimeUnixNano + } + return 0 +} + +func (x *SummaryDataPoint) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (x *SummaryDataPoint) GetCount() uint64 { + if x != nil { + return x.Count + } + return 0 +} + +func (x *SummaryDataPoint) GetSum() float64 { + if x != nil { + return x.Sum + } + return 0 +} + +func (x *SummaryDataPoint) GetQuantileValues() []*SummaryDataPoint_ValueAtQuantile { + if x != nil { + return x.QuantileValues + } + return nil +} + +func (x *SummaryDataPoint) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +// A representation of an exemplar, which is a sample input measurement. +// Exemplars also hold information about the environment when the measurement +// was recorded, for example the span and trace ID of the active span when the +// exemplar was recorded. +type Exemplar struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The set of key/value pairs that were filtered out by the aggregator, but + // recorded alongside the original measurement. Only key/value pairs that were + // filtered out by the aggregator should be included + FilteredAttributes []*v11.KeyValue `protobuf:"bytes,7,rep,name=filtered_attributes,json=filteredAttributes,proto3" json:"filtered_attributes,omitempty"` + // time_unix_nano is the exact time when this exemplar was recorded + // + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January + // 1970. + TimeUnixNano uint64 `protobuf:"fixed64,2,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // The value of the measurement that was recorded. An exemplar is + // considered invalid when one of the recognized value fields is not present + // inside this oneof. + // + // Types that are assignable to Value: + // *Exemplar_AsDouble + // *Exemplar_AsInt + Value isExemplar_Value `protobuf_oneof:"value"` + // (Optional) Span ID of the exemplar trace. + // span_id may be missing if the measurement is not recorded inside a trace + // or if the trace is not sampled. + SpanId []byte `protobuf:"bytes,4,opt,name=span_id,json=spanId,proto3" json:"span_id,omitempty"` + // (Optional) Trace ID of the exemplar trace. + // trace_id may be missing if the measurement is not recorded inside a trace + // or if the trace is not sampled. + TraceId []byte `protobuf:"bytes,5,opt,name=trace_id,json=traceId,proto3" json:"trace_id,omitempty"` +} + +func (x *Exemplar) Reset() { + *x = Exemplar{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[13] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Exemplar) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Exemplar) ProtoMessage() {} + +func (x *Exemplar) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[13] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Exemplar.ProtoReflect.Descriptor instead. +func (*Exemplar) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{13} +} + +func (x *Exemplar) GetFilteredAttributes() []*v11.KeyValue { + if x != nil { + return x.FilteredAttributes + } + return nil +} + +func (x *Exemplar) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (m *Exemplar) GetValue() isExemplar_Value { + if m != nil { + return m.Value + } + return nil +} + +func (x *Exemplar) GetAsDouble() float64 { + if x, ok := x.GetValue().(*Exemplar_AsDouble); ok { + return x.AsDouble + } + return 0 +} + +func (x *Exemplar) GetAsInt() int64 { + if x, ok := x.GetValue().(*Exemplar_AsInt); ok { + return x.AsInt + } + return 0 +} + +func (x *Exemplar) GetSpanId() []byte { + if x != nil { + return x.SpanId + } + return nil +} + +func (x *Exemplar) GetTraceId() []byte { + if x != nil { + return x.TraceId + } + return nil +} + +type isExemplar_Value interface { + isExemplar_Value() +} + +type Exemplar_AsDouble struct { + AsDouble float64 `protobuf:"fixed64,3,opt,name=as_double,json=asDouble,proto3,oneof"` +} + +type Exemplar_AsInt struct { + AsInt int64 `protobuf:"fixed64,6,opt,name=as_int,json=asInt,proto3,oneof"` +} + +func (*Exemplar_AsDouble) isExemplar_Value() {} + +func (*Exemplar_AsInt) isExemplar_Value() {} + +// Buckets are a set of bucket counts, encoded in a contiguous array +// of counts. +type ExponentialHistogramDataPoint_Buckets struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Offset is the bucket index of the first entry in the bucket_counts array. + // + // Note: This uses a varint encoding as a simple form of compression. + Offset int32 `protobuf:"zigzag32,1,opt,name=offset,proto3" json:"offset,omitempty"` + // bucket_counts is an array of count values, where bucket_counts[i] carries + // the count of the bucket at index (offset+i). bucket_counts[i] is the count + // of values greater than base^(offset+i) and less than or equal to + // base^(offset+i+1). + // + // Note: By contrast, the explicit HistogramDataPoint uses + // fixed64. This field is expected to have many buckets, + // especially zeros, so uint64 has been selected to ensure + // varint encoding. + BucketCounts []uint64 `protobuf:"varint,2,rep,packed,name=bucket_counts,json=bucketCounts,proto3" json:"bucket_counts,omitempty"` +} + +func (x *ExponentialHistogramDataPoint_Buckets) Reset() { + *x = ExponentialHistogramDataPoint_Buckets{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[14] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ExponentialHistogramDataPoint_Buckets) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ExponentialHistogramDataPoint_Buckets) ProtoMessage() {} + +func (x *ExponentialHistogramDataPoint_Buckets) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[14] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ExponentialHistogramDataPoint_Buckets.ProtoReflect.Descriptor instead. +func (*ExponentialHistogramDataPoint_Buckets) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{11, 0} +} + +func (x *ExponentialHistogramDataPoint_Buckets) GetOffset() int32 { + if x != nil { + return x.Offset + } + return 0 +} + +func (x *ExponentialHistogramDataPoint_Buckets) GetBucketCounts() []uint64 { + if x != nil { + return x.BucketCounts + } + return nil +} + +// Represents the value at a given quantile of a distribution. +// +// To record Min and Max values following conventions are used: +// - The 1.0 quantile is equivalent to the maximum value observed. +// - The 0.0 quantile is equivalent to the minimum value observed. +// +// See the following issue for more context: +// https://github.com/open-telemetry/opentelemetry-proto/issues/125 +type SummaryDataPoint_ValueAtQuantile struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The quantile of a distribution. Must be in the interval + // [0.0, 1.0]. + Quantile float64 `protobuf:"fixed64,1,opt,name=quantile,proto3" json:"quantile,omitempty"` + // The value at the given quantile of a distribution. + // + // Quantile values must NOT be negative. + Value float64 `protobuf:"fixed64,2,opt,name=value,proto3" json:"value,omitempty"` +} + +func (x *SummaryDataPoint_ValueAtQuantile) Reset() { + *x = SummaryDataPoint_ValueAtQuantile{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[15] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *SummaryDataPoint_ValueAtQuantile) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*SummaryDataPoint_ValueAtQuantile) ProtoMessage() {} + +func (x *SummaryDataPoint_ValueAtQuantile) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[15] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use SummaryDataPoint_ValueAtQuantile.ProtoReflect.Descriptor instead. +func (*SummaryDataPoint_ValueAtQuantile) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP(), []int{12, 0} +} + +func (x *SummaryDataPoint_ValueAtQuantile) GetQuantile() float64 { + if x != nil { + return x.Quantile + } + return 0 +} + +func (x *SummaryDataPoint_ValueAtQuantile) GetValue() float64 { + if x != nil { + return x.Value + } + return 0 +} + +var File_opentelemetry_proto_metrics_v1_metrics_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_metrics_v1_metrics_proto_rawDesc = []byte{ + 0x0a, 0x2c, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2f, + 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x6d, 0x65, 0x74, 0x72, 0x69, 0x63, 0x73, 0x2f, 0x76, 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file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescOnce sync.Once + file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescData = file_opentelemetry_proto_metrics_v1_metrics_proto_rawDesc +) + +func file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescGZIP() []byte { + file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescOnce.Do(func() { + file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescData = protoimpl.X.CompressGZIP(file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescData) + }) + return file_opentelemetry_proto_metrics_v1_metrics_proto_rawDescData +} + +var file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes = make([]protoimpl.EnumInfo, 2) +var file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes = make([]protoimpl.MessageInfo, 16) +var file_opentelemetry_proto_metrics_v1_metrics_proto_goTypes = []interface{}{ + (AggregationTemporality)(0), // 0: opentelemetry.proto.metrics.v1.AggregationTemporality + (DataPointFlags)(0), // 1: opentelemetry.proto.metrics.v1.DataPointFlags + (*MetricsData)(nil), // 2: opentelemetry.proto.metrics.v1.MetricsData + (*ResourceMetrics)(nil), // 3: opentelemetry.proto.metrics.v1.ResourceMetrics + (*ScopeMetrics)(nil), // 4: opentelemetry.proto.metrics.v1.ScopeMetrics + (*Metric)(nil), // 5: opentelemetry.proto.metrics.v1.Metric + (*Gauge)(nil), // 6: opentelemetry.proto.metrics.v1.Gauge + (*Sum)(nil), // 7: opentelemetry.proto.metrics.v1.Sum + (*Histogram)(nil), // 8: opentelemetry.proto.metrics.v1.Histogram + (*ExponentialHistogram)(nil), // 9: opentelemetry.proto.metrics.v1.ExponentialHistogram + (*Summary)(nil), // 10: opentelemetry.proto.metrics.v1.Summary + (*NumberDataPoint)(nil), // 11: opentelemetry.proto.metrics.v1.NumberDataPoint + (*HistogramDataPoint)(nil), // 12: opentelemetry.proto.metrics.v1.HistogramDataPoint + (*ExponentialHistogramDataPoint)(nil), // 13: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint + (*SummaryDataPoint)(nil), // 14: opentelemetry.proto.metrics.v1.SummaryDataPoint + (*Exemplar)(nil), // 15: opentelemetry.proto.metrics.v1.Exemplar + (*ExponentialHistogramDataPoint_Buckets)(nil), // 16: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets + (*SummaryDataPoint_ValueAtQuantile)(nil), // 17: opentelemetry.proto.metrics.v1.SummaryDataPoint.ValueAtQuantile + (*v1.Resource)(nil), // 18: opentelemetry.proto.resource.v1.Resource + (*v11.InstrumentationScope)(nil), // 19: opentelemetry.proto.common.v1.InstrumentationScope + (*v11.KeyValue)(nil), // 20: opentelemetry.proto.common.v1.KeyValue +} +var file_opentelemetry_proto_metrics_v1_metrics_proto_depIdxs = []int32{ + 3, // 0: opentelemetry.proto.metrics.v1.MetricsData.resource_metrics:type_name -> opentelemetry.proto.metrics.v1.ResourceMetrics + 18, // 1: opentelemetry.proto.metrics.v1.ResourceMetrics.resource:type_name -> opentelemetry.proto.resource.v1.Resource + 4, // 2: opentelemetry.proto.metrics.v1.ResourceMetrics.scope_metrics:type_name -> opentelemetry.proto.metrics.v1.ScopeMetrics + 19, // 3: opentelemetry.proto.metrics.v1.ScopeMetrics.scope:type_name -> opentelemetry.proto.common.v1.InstrumentationScope + 5, // 4: opentelemetry.proto.metrics.v1.ScopeMetrics.metrics:type_name -> opentelemetry.proto.metrics.v1.Metric + 6, // 5: opentelemetry.proto.metrics.v1.Metric.gauge:type_name -> opentelemetry.proto.metrics.v1.Gauge + 7, // 6: opentelemetry.proto.metrics.v1.Metric.sum:type_name -> opentelemetry.proto.metrics.v1.Sum + 8, // 7: opentelemetry.proto.metrics.v1.Metric.histogram:type_name -> opentelemetry.proto.metrics.v1.Histogram + 9, // 8: opentelemetry.proto.metrics.v1.Metric.exponential_histogram:type_name -> opentelemetry.proto.metrics.v1.ExponentialHistogram + 10, // 9: opentelemetry.proto.metrics.v1.Metric.summary:type_name -> opentelemetry.proto.metrics.v1.Summary + 20, // 10: opentelemetry.proto.metrics.v1.Metric.metadata:type_name -> opentelemetry.proto.common.v1.KeyValue + 11, // 11: opentelemetry.proto.metrics.v1.Gauge.data_points:type_name -> opentelemetry.proto.metrics.v1.NumberDataPoint + 11, // 12: opentelemetry.proto.metrics.v1.Sum.data_points:type_name -> opentelemetry.proto.metrics.v1.NumberDataPoint + 0, // 13: opentelemetry.proto.metrics.v1.Sum.aggregation_temporality:type_name -> opentelemetry.proto.metrics.v1.AggregationTemporality + 12, // 14: opentelemetry.proto.metrics.v1.Histogram.data_points:type_name -> opentelemetry.proto.metrics.v1.HistogramDataPoint + 0, // 15: opentelemetry.proto.metrics.v1.Histogram.aggregation_temporality:type_name -> opentelemetry.proto.metrics.v1.AggregationTemporality + 13, // 16: opentelemetry.proto.metrics.v1.ExponentialHistogram.data_points:type_name -> opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint + 0, // 17: opentelemetry.proto.metrics.v1.ExponentialHistogram.aggregation_temporality:type_name -> opentelemetry.proto.metrics.v1.AggregationTemporality + 14, // 18: opentelemetry.proto.metrics.v1.Summary.data_points:type_name -> opentelemetry.proto.metrics.v1.SummaryDataPoint + 20, // 19: opentelemetry.proto.metrics.v1.NumberDataPoint.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 15, // 20: opentelemetry.proto.metrics.v1.NumberDataPoint.exemplars:type_name -> opentelemetry.proto.metrics.v1.Exemplar + 20, // 21: opentelemetry.proto.metrics.v1.HistogramDataPoint.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 15, // 22: opentelemetry.proto.metrics.v1.HistogramDataPoint.exemplars:type_name -> opentelemetry.proto.metrics.v1.Exemplar + 20, // 23: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 16, // 24: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.positive:type_name -> opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets + 16, // 25: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.negative:type_name -> opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets + 15, // 26: opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.exemplars:type_name -> opentelemetry.proto.metrics.v1.Exemplar + 20, // 27: opentelemetry.proto.metrics.v1.SummaryDataPoint.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 17, // 28: opentelemetry.proto.metrics.v1.SummaryDataPoint.quantile_values:type_name -> opentelemetry.proto.metrics.v1.SummaryDataPoint.ValueAtQuantile + 20, // 29: opentelemetry.proto.metrics.v1.Exemplar.filtered_attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 30, // [30:30] is the sub-list for method output_type + 30, // [30:30] is the sub-list for method input_type + 30, // [30:30] is the sub-list for extension type_name + 30, // [30:30] is the sub-list for extension extendee + 0, // [0:30] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_metrics_v1_metrics_proto_init() } +func file_opentelemetry_proto_metrics_v1_metrics_proto_init() { + if File_opentelemetry_proto_metrics_v1_metrics_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*MetricsData); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ResourceMetrics); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ScopeMetrics); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Metric); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Gauge); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Sum); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Histogram); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[7].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExponentialHistogram); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[8].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Summary); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[9].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*NumberDataPoint); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[10].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*HistogramDataPoint); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[11].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExponentialHistogramDataPoint); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[12].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*SummaryDataPoint); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[13].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Exemplar); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[14].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ExponentialHistogramDataPoint_Buckets); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[15].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*SummaryDataPoint_ValueAtQuantile); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[3].OneofWrappers = []interface{}{ + (*Metric_Gauge)(nil), + (*Metric_Sum)(nil), + (*Metric_Histogram)(nil), + (*Metric_ExponentialHistogram)(nil), + (*Metric_Summary)(nil), + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[9].OneofWrappers = []interface{}{ + (*NumberDataPoint_AsDouble)(nil), + (*NumberDataPoint_AsInt)(nil), + } + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[10].OneofWrappers = []interface{}{} + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[11].OneofWrappers = []interface{}{} + file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes[13].OneofWrappers = []interface{}{ + (*Exemplar_AsDouble)(nil), + (*Exemplar_AsInt)(nil), + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_metrics_v1_metrics_proto_rawDesc, + NumEnums: 2, + NumMessages: 16, + NumExtensions: 0, + NumServices: 0, + }, + GoTypes: file_opentelemetry_proto_metrics_v1_metrics_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_metrics_v1_metrics_proto_depIdxs, + EnumInfos: file_opentelemetry_proto_metrics_v1_metrics_proto_enumTypes, + MessageInfos: file_opentelemetry_proto_metrics_v1_metrics_proto_msgTypes, + }.Build() + File_opentelemetry_proto_metrics_v1_metrics_proto = out.File + file_opentelemetry_proto_metrics_v1_metrics_proto_rawDesc = nil + file_opentelemetry_proto_metrics_v1_metrics_proto_goTypes = nil + file_opentelemetry_proto_metrics_v1_metrics_proto_depIdxs = nil +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go b/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go new file mode 100644 index 0000000000..eb7745d66e --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/resource/v1/resource.pb.go @@ -0,0 +1,213 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/resource/v1/resource.proto + +package v1 + +import ( + v1 "go.opentelemetry.io/proto/otlp/common/v1" + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +// Resource information. +type Resource struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Set of attributes that describe the resource. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v1.KeyValue `protobuf:"bytes,1,rep,name=attributes,proto3" json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, then + // no attributes were dropped. + DroppedAttributesCount uint32 `protobuf:"varint,2,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"` + // Set of entities that participate in this Resource. + // + // Note: keys in the references MUST exist in attributes of this message. + // + // Status: [Development] + EntityRefs []*v1.EntityRef `protobuf:"bytes,3,rep,name=entity_refs,json=entityRefs,proto3" json:"entity_refs,omitempty"` +} + +func (x *Resource) Reset() { + *x = Resource{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_resource_v1_resource_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Resource) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Resource) ProtoMessage() {} + +func (x *Resource) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_resource_v1_resource_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Resource.ProtoReflect.Descriptor instead. +func (*Resource) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_resource_v1_resource_proto_rawDescGZIP(), []int{0} +} + +func (x *Resource) GetAttributes() []*v1.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *Resource) GetDroppedAttributesCount() uint32 { + if x != nil { + return x.DroppedAttributesCount + } + return 0 +} + +func (x *Resource) GetEntityRefs() []*v1.EntityRef { + if x != nil { + return x.EntityRefs + } + return nil +} + +var File_opentelemetry_proto_resource_v1_resource_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_resource_v1_resource_proto_rawDesc = []byte{ + 0x0a, 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file_opentelemetry_proto_resource_v1_resource_proto_rawDescOnce sync.Once + file_opentelemetry_proto_resource_v1_resource_proto_rawDescData = file_opentelemetry_proto_resource_v1_resource_proto_rawDesc +) + +func file_opentelemetry_proto_resource_v1_resource_proto_rawDescGZIP() []byte { + file_opentelemetry_proto_resource_v1_resource_proto_rawDescOnce.Do(func() { + file_opentelemetry_proto_resource_v1_resource_proto_rawDescData = protoimpl.X.CompressGZIP(file_opentelemetry_proto_resource_v1_resource_proto_rawDescData) + }) + return file_opentelemetry_proto_resource_v1_resource_proto_rawDescData +} + +var file_opentelemetry_proto_resource_v1_resource_proto_msgTypes = make([]protoimpl.MessageInfo, 1) +var file_opentelemetry_proto_resource_v1_resource_proto_goTypes = []interface{}{ + (*Resource)(nil), // 0: opentelemetry.proto.resource.v1.Resource + (*v1.KeyValue)(nil), // 1: opentelemetry.proto.common.v1.KeyValue + (*v1.EntityRef)(nil), // 2: opentelemetry.proto.common.v1.EntityRef +} +var file_opentelemetry_proto_resource_v1_resource_proto_depIdxs = []int32{ + 1, // 0: opentelemetry.proto.resource.v1.Resource.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 2, // 1: opentelemetry.proto.resource.v1.Resource.entity_refs:type_name -> opentelemetry.proto.common.v1.EntityRef + 2, // [2:2] is the sub-list for method output_type + 2, // [2:2] is the sub-list for method input_type + 2, // [2:2] is the sub-list for extension type_name + 2, // [2:2] is the sub-list for extension extendee + 0, // [0:2] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_resource_v1_resource_proto_init() } +func file_opentelemetry_proto_resource_v1_resource_proto_init() { + if File_opentelemetry_proto_resource_v1_resource_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_resource_v1_resource_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Resource); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_resource_v1_resource_proto_rawDesc, + NumEnums: 0, + NumMessages: 1, + NumExtensions: 0, + NumServices: 0, + }, + GoTypes: file_opentelemetry_proto_resource_v1_resource_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_resource_v1_resource_proto_depIdxs, + MessageInfos: file_opentelemetry_proto_resource_v1_resource_proto_msgTypes, + }.Build() + File_opentelemetry_proto_resource_v1_resource_proto = out.File + file_opentelemetry_proto_resource_v1_resource_proto_rawDesc = nil + file_opentelemetry_proto_resource_v1_resource_proto_goTypes = nil + file_opentelemetry_proto_resource_v1_resource_proto_depIdxs = nil +} diff --git a/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go b/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go new file mode 100644 index 0000000000..b342a0a940 --- /dev/null +++ b/vendor/go.opentelemetry.io/proto/otlp/trace/v1/trace.pb.go @@ -0,0 +1,1283 @@ +// Copyright 2019, OpenTelemetry Authors +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v3.21.6 +// source: opentelemetry/proto/trace/v1/trace.proto + +package v1 + +import ( + v11 "go.opentelemetry.io/proto/otlp/common/v1" + v1 "go.opentelemetry.io/proto/otlp/resource/v1" + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + reflect "reflect" + sync "sync" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +// SpanFlags represents constants used to interpret the +// Span.flags field, which is protobuf 'fixed32' type and is to +// be used as bit-fields. Each non-zero value defined in this enum is +// a bit-mask. To extract the bit-field, for example, use an +// expression like: +// +// (span.flags & SPAN_FLAGS_TRACE_FLAGS_MASK) +// +// See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. +// +// Note that Span flags were introduced in version 1.1 of the +// OpenTelemetry protocol. Older Span producers do not set this +// field, consequently consumers should not rely on the absence of a +// particular flag bit to indicate the presence of a particular feature. +type SpanFlags int32 + +const ( + // The zero value for the enum. Should not be used for comparisons. + // Instead use bitwise "and" with the appropriate mask as shown above. + SpanFlags_SPAN_FLAGS_DO_NOT_USE SpanFlags = 0 + // Bits 0-7 are used for trace flags. + SpanFlags_SPAN_FLAGS_TRACE_FLAGS_MASK SpanFlags = 255 + // Bits 8 and 9 are used to indicate that the parent span or link span is remote. + // Bit 8 (`HAS_IS_REMOTE`) indicates whether the value is known. + // Bit 9 (`IS_REMOTE`) indicates whether the span or link is remote. + SpanFlags_SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK SpanFlags = 256 + SpanFlags_SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK SpanFlags = 512 +) + +// Enum value maps for SpanFlags. +var ( + SpanFlags_name = map[int32]string{ + 0: "SPAN_FLAGS_DO_NOT_USE", + 255: "SPAN_FLAGS_TRACE_FLAGS_MASK", + 256: "SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK", + 512: "SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK", + } + SpanFlags_value = map[string]int32{ + "SPAN_FLAGS_DO_NOT_USE": 0, + "SPAN_FLAGS_TRACE_FLAGS_MASK": 255, + "SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK": 256, + "SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK": 512, + } +) + +func (x SpanFlags) Enum() *SpanFlags { + p := new(SpanFlags) + *p = x + return p +} + +func (x SpanFlags) String() string { + return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) +} + +func (SpanFlags) Descriptor() protoreflect.EnumDescriptor { + return file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[0].Descriptor() +} + +func (SpanFlags) Type() protoreflect.EnumType { + return &file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[0] +} + +func (x SpanFlags) Number() protoreflect.EnumNumber { + return protoreflect.EnumNumber(x) +} + +// Deprecated: Use SpanFlags.Descriptor instead. +func (SpanFlags) EnumDescriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{0} +} + +// SpanKind is the type of span. Can be used to specify additional relationships between spans +// in addition to a parent/child relationship. +type Span_SpanKind int32 + +const ( + // Unspecified. Do NOT use as default. + // Implementations MAY assume SpanKind to be INTERNAL when receiving UNSPECIFIED. + Span_SPAN_KIND_UNSPECIFIED Span_SpanKind = 0 + // Indicates that the span represents an internal operation within an application, + // as opposed to an operation happening at the boundaries. Default value. + Span_SPAN_KIND_INTERNAL Span_SpanKind = 1 + // Indicates that the span covers server-side handling of an RPC or other + // remote network request. + Span_SPAN_KIND_SERVER Span_SpanKind = 2 + // Indicates that the span describes a request to some remote service. + Span_SPAN_KIND_CLIENT Span_SpanKind = 3 + // Indicates that the span describes a producer sending a message to a broker. + // Unlike CLIENT and SERVER, there is often no direct critical path latency relationship + // between producer and consumer spans. A PRODUCER span ends when the message was accepted + // by the broker while the logical processing of the message might span a much longer time. + Span_SPAN_KIND_PRODUCER Span_SpanKind = 4 + // Indicates that the span describes consumer receiving a message from a broker. + // Like the PRODUCER kind, there is often no direct critical path latency relationship + // between producer and consumer spans. + Span_SPAN_KIND_CONSUMER Span_SpanKind = 5 +) + +// Enum value maps for Span_SpanKind. +var ( + Span_SpanKind_name = map[int32]string{ + 0: "SPAN_KIND_UNSPECIFIED", + 1: "SPAN_KIND_INTERNAL", + 2: "SPAN_KIND_SERVER", + 3: "SPAN_KIND_CLIENT", + 4: "SPAN_KIND_PRODUCER", + 5: "SPAN_KIND_CONSUMER", + } + Span_SpanKind_value = map[string]int32{ + "SPAN_KIND_UNSPECIFIED": 0, + "SPAN_KIND_INTERNAL": 1, + "SPAN_KIND_SERVER": 2, + "SPAN_KIND_CLIENT": 3, + "SPAN_KIND_PRODUCER": 4, + "SPAN_KIND_CONSUMER": 5, + } +) + +func (x Span_SpanKind) Enum() *Span_SpanKind { + p := new(Span_SpanKind) + *p = x + return p +} + +func (x Span_SpanKind) String() string { + return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) +} + +func (Span_SpanKind) Descriptor() protoreflect.EnumDescriptor { + return file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[1].Descriptor() +} + +func (Span_SpanKind) Type() protoreflect.EnumType { + return &file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[1] +} + +func (x Span_SpanKind) Number() protoreflect.EnumNumber { + return protoreflect.EnumNumber(x) +} + +// Deprecated: Use Span_SpanKind.Descriptor instead. +func (Span_SpanKind) EnumDescriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{3, 0} +} + +// For the semantics of status codes see +// https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/trace/api.md#set-status +type Status_StatusCode int32 + +const ( + // The default status. + Status_STATUS_CODE_UNSET Status_StatusCode = 0 + // The Span has been validated by an Application developer or Operator to + // have completed successfully. + Status_STATUS_CODE_OK Status_StatusCode = 1 + // The Span contains an error. + Status_STATUS_CODE_ERROR Status_StatusCode = 2 +) + +// Enum value maps for Status_StatusCode. +var ( + Status_StatusCode_name = map[int32]string{ + 0: "STATUS_CODE_UNSET", + 1: "STATUS_CODE_OK", + 2: "STATUS_CODE_ERROR", + } + Status_StatusCode_value = map[string]int32{ + "STATUS_CODE_UNSET": 0, + "STATUS_CODE_OK": 1, + "STATUS_CODE_ERROR": 2, + } +) + +func (x Status_StatusCode) Enum() *Status_StatusCode { + p := new(Status_StatusCode) + *p = x + return p +} + +func (x Status_StatusCode) String() string { + return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) +} + +func (Status_StatusCode) Descriptor() protoreflect.EnumDescriptor { + return file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[2].Descriptor() +} + +func (Status_StatusCode) Type() protoreflect.EnumType { + return &file_opentelemetry_proto_trace_v1_trace_proto_enumTypes[2] +} + +func (x Status_StatusCode) Number() protoreflect.EnumNumber { + return protoreflect.EnumNumber(x) +} + +// Deprecated: Use Status_StatusCode.Descriptor instead. +func (Status_StatusCode) EnumDescriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{4, 0} +} + +// TracesData represents the traces data that can be stored in a persistent storage, +// OR can be embedded by other protocols that transfer OTLP traces data but do +// not implement the OTLP protocol. +// +// The main difference between this message and collector protocol is that +// in this message there will not be any "control" or "metadata" specific to +// OTLP protocol. +// +// When new fields are added into this message, the OTLP request MUST be updated +// as well. +type TracesData struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An array of ResourceSpans. + // For data coming from a single resource this array will typically contain + // one element. Intermediary nodes that receive data from multiple origins + // typically batch the data before forwarding further and in that case this + // array will contain multiple elements. + ResourceSpans []*ResourceSpans `protobuf:"bytes,1,rep,name=resource_spans,json=resourceSpans,proto3" json:"resource_spans,omitempty"` +} + +func (x *TracesData) Reset() { + *x = TracesData{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *TracesData) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*TracesData) ProtoMessage() {} + +func (x *TracesData) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use TracesData.ProtoReflect.Descriptor instead. +func (*TracesData) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{0} +} + +func (x *TracesData) GetResourceSpans() []*ResourceSpans { + if x != nil { + return x.ResourceSpans + } + return nil +} + +// A collection of ScopeSpans from a Resource. +type ResourceSpans struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The resource for the spans in this message. + // If this field is not set then no resource info is known. + Resource *v1.Resource `protobuf:"bytes,1,opt,name=resource,proto3" json:"resource,omitempty"` + // A list of ScopeSpans that originate from a resource. + ScopeSpans []*ScopeSpans `protobuf:"bytes,2,rep,name=scope_spans,json=scopeSpans,proto3" json:"scope_spans,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the resource data + // is recorded in. Notably, the last part of the URL path is the version number of the + // schema: http[s]://server[:port]/path/. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to the data in the "resource" field. It does not apply + // to the data in the "scope_spans" field which have their own schema_url field. + SchemaUrl string `protobuf:"bytes,3,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"` +} + +func (x *ResourceSpans) Reset() { + *x = ResourceSpans{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ResourceSpans) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ResourceSpans) ProtoMessage() {} + +func (x *ResourceSpans) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ResourceSpans.ProtoReflect.Descriptor instead. +func (*ResourceSpans) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{1} +} + +func (x *ResourceSpans) GetResource() *v1.Resource { + if x != nil { + return x.Resource + } + return nil +} + +func (x *ResourceSpans) GetScopeSpans() []*ScopeSpans { + if x != nil { + return x.ScopeSpans + } + return nil +} + +func (x *ResourceSpans) GetSchemaUrl() string { + if x != nil { + return x.SchemaUrl + } + return "" +} + +// A collection of Spans produced by an InstrumentationScope. +type ScopeSpans struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The instrumentation scope information for the spans in this message. + // Semantically when InstrumentationScope isn't set, it is equivalent with + // an empty instrumentation scope name (unknown). + Scope *v11.InstrumentationScope `protobuf:"bytes,1,opt,name=scope,proto3" json:"scope,omitempty"` + // A list of Spans that originate from an instrumentation scope. + Spans []*Span `protobuf:"bytes,2,rep,name=spans,proto3" json:"spans,omitempty"` + // The Schema URL, if known. This is the identifier of the Schema that the span data + // is recorded in. Notably, the last part of the URL path is the version number of the + // schema: http[s]://server[:port]/path/. To learn more about Schema URL see + // https://opentelemetry.io/docs/specs/otel/schemas/#schema-url + // This schema_url applies to all spans and span events in the "spans" field. + SchemaUrl string `protobuf:"bytes,3,opt,name=schema_url,json=schemaUrl,proto3" json:"schema_url,omitempty"` +} + +func (x *ScopeSpans) Reset() { + *x = ScopeSpans{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ScopeSpans) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ScopeSpans) ProtoMessage() {} + +func (x *ScopeSpans) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ScopeSpans.ProtoReflect.Descriptor instead. +func (*ScopeSpans) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{2} +} + +func (x *ScopeSpans) GetScope() *v11.InstrumentationScope { + if x != nil { + return x.Scope + } + return nil +} + +func (x *ScopeSpans) GetSpans() []*Span { + if x != nil { + return x.Spans + } + return nil +} + +func (x *ScopeSpans) GetSchemaUrl() string { + if x != nil { + return x.SchemaUrl + } + return "" +} + +// A Span represents a single operation performed by a single component of the system. +// +// The next available field id is 17. +type Span struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A unique identifier for a trace. All spans from the same trace share + // the same `trace_id`. The ID is a 16-byte array. An ID with all zeroes OR + // of length other than 16 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + TraceId []byte `protobuf:"bytes,1,opt,name=trace_id,json=traceId,proto3" json:"trace_id,omitempty"` + // A unique identifier for a span within a trace, assigned when the span + // is created. The ID is an 8-byte array. An ID with all zeroes OR of length + // other than 8 bytes is considered invalid (empty string in OTLP/JSON + // is zero-length and thus is also invalid). + // + // This field is required. + SpanId []byte `protobuf:"bytes,2,opt,name=span_id,json=spanId,proto3" json:"span_id,omitempty"` + // trace_state conveys information about request position in multiple distributed tracing graphs. + // It is a trace_state in w3c-trace-context format: https://www.w3.org/TR/trace-context/#tracestate-header + // See also https://github.com/w3c/distributed-tracing for more details about this field. + TraceState string `protobuf:"bytes,3,opt,name=trace_state,json=traceState,proto3" json:"trace_state,omitempty"` + // The `span_id` of this span's parent span. If this is a root span, then this + // field must be empty. The ID is an 8-byte array. + ParentSpanId []byte `protobuf:"bytes,4,opt,name=parent_span_id,json=parentSpanId,proto3" json:"parent_span_id,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether a span's parent + // is remote. The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the span is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // When creating span messages, if the message is logically forwarded from another source + // with an equivalent flags fields (i.e., usually another OTLP span message), the field SHOULD + // be copied as-is. If creating from a source that does not have an equivalent flags field + // (such as a runtime representation of an OpenTelemetry span), the high 22 bits MUST + // be set to zero. + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // + // [Optional]. + Flags uint32 `protobuf:"fixed32,16,opt,name=flags,proto3" json:"flags,omitempty"` + // A description of the span's operation. + // + // For example, the name can be a qualified method name or a file name + // and a line number where the operation is called. A best practice is to use + // the same display name at the same call point in an application. + // This makes it easier to correlate spans in different traces. + // + // This field is semantically required to be set to non-empty string. + // Empty value is equivalent to an unknown span name. + // + // This field is required. + Name string `protobuf:"bytes,5,opt,name=name,proto3" json:"name,omitempty"` + // Distinguishes between spans generated in a particular context. For example, + // two spans with the same name may be distinguished using `CLIENT` (caller) + // and `SERVER` (callee) to identify queueing latency associated with the span. + Kind Span_SpanKind `protobuf:"varint,6,opt,name=kind,proto3,enum=opentelemetry.proto.trace.v1.Span_SpanKind" json:"kind,omitempty"` + // start_time_unix_nano is the start time of the span. On the client side, this is the time + // kept by the local machine where the span execution starts. On the server side, this + // is the time when the server's application handler starts running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + StartTimeUnixNano uint64 `protobuf:"fixed64,7,opt,name=start_time_unix_nano,json=startTimeUnixNano,proto3" json:"start_time_unix_nano,omitempty"` + // end_time_unix_nano is the end time of the span. On the client side, this is the time + // kept by the local machine where the span execution ends. On the server side, this + // is the time when the server application handler stops running. + // Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970. + // + // This field is semantically required and it is expected that end_time >= start_time. + EndTimeUnixNano uint64 `protobuf:"fixed64,8,opt,name=end_time_unix_nano,json=endTimeUnixNano,proto3" json:"end_time_unix_nano,omitempty"` + // attributes is a collection of key/value pairs. Note, global attributes + // like server name can be set using the resource API. Examples of attributes: + // + // "/http/user_agent": "Mozilla/5.0 (Macintosh; Intel Mac OS X 10_14_2) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/71.0.3578.98 Safari/537.36" + // "/http/server_latency": 300 + // "example.com/myattribute": true + // "example.com/score": 10.239 + // + // The OpenTelemetry API specification further restricts the allowed value types: + // https://github.com/open-telemetry/opentelemetry-specification/blob/main/specification/common/README.md#attribute + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,9,rep,name=attributes,proto3" json:"attributes,omitempty"` + // dropped_attributes_count is the number of attributes that were discarded. Attributes + // can be discarded because their keys are too long or because there are too many + // attributes. If this value is 0, then no attributes were dropped. + DroppedAttributesCount uint32 `protobuf:"varint,10,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"` + // events is a collection of Event items. + Events []*Span_Event `protobuf:"bytes,11,rep,name=events,proto3" json:"events,omitempty"` + // dropped_events_count is the number of dropped events. If the value is 0, then no + // events were dropped. + DroppedEventsCount uint32 `protobuf:"varint,12,opt,name=dropped_events_count,json=droppedEventsCount,proto3" json:"dropped_events_count,omitempty"` + // links is a collection of Links, which are references from this span to a span + // in the same or different trace. + Links []*Span_Link `protobuf:"bytes,13,rep,name=links,proto3" json:"links,omitempty"` + // dropped_links_count is the number of dropped links after the maximum size was + // enforced. If this value is 0, then no links were dropped. + DroppedLinksCount uint32 `protobuf:"varint,14,opt,name=dropped_links_count,json=droppedLinksCount,proto3" json:"dropped_links_count,omitempty"` + // An optional final status for this span. Semantically when Status isn't set, it means + // span's status code is unset, i.e. assume STATUS_CODE_UNSET (code = 0). + Status *Status `protobuf:"bytes,15,opt,name=status,proto3" json:"status,omitempty"` +} + +func (x *Span) Reset() { + *x = Span{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[3] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Span) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Span) ProtoMessage() {} + +func (x *Span) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[3] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Span.ProtoReflect.Descriptor instead. +func (*Span) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{3} +} + +func (x *Span) GetTraceId() []byte { + if x != nil { + return x.TraceId + } + return nil +} + +func (x *Span) GetSpanId() []byte { + if x != nil { + return x.SpanId + } + return nil +} + +func (x *Span) GetTraceState() string { + if x != nil { + return x.TraceState + } + return "" +} + +func (x *Span) GetParentSpanId() []byte { + if x != nil { + return x.ParentSpanId + } + return nil +} + +func (x *Span) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +func (x *Span) GetName() string { + if x != nil { + return x.Name + } + return "" +} + +func (x *Span) GetKind() Span_SpanKind { + if x != nil { + return x.Kind + } + return Span_SPAN_KIND_UNSPECIFIED +} + +func (x *Span) GetStartTimeUnixNano() uint64 { + if x != nil { + return x.StartTimeUnixNano + } + return 0 +} + +func (x *Span) GetEndTimeUnixNano() uint64 { + if x != nil { + return x.EndTimeUnixNano + } + return 0 +} + +func (x *Span) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *Span) GetDroppedAttributesCount() uint32 { + if x != nil { + return x.DroppedAttributesCount + } + return 0 +} + +func (x *Span) GetEvents() []*Span_Event { + if x != nil { + return x.Events + } + return nil +} + +func (x *Span) GetDroppedEventsCount() uint32 { + if x != nil { + return x.DroppedEventsCount + } + return 0 +} + +func (x *Span) GetLinks() []*Span_Link { + if x != nil { + return x.Links + } + return nil +} + +func (x *Span) GetDroppedLinksCount() uint32 { + if x != nil { + return x.DroppedLinksCount + } + return 0 +} + +func (x *Span) GetStatus() *Status { + if x != nil { + return x.Status + } + return nil +} + +// The Status type defines a logical error model that is suitable for different +// programming environments, including REST APIs and RPC APIs. +type Status struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A developer-facing human readable error message. + Message string `protobuf:"bytes,2,opt,name=message,proto3" json:"message,omitempty"` + // The status code. + Code Status_StatusCode `protobuf:"varint,3,opt,name=code,proto3,enum=opentelemetry.proto.trace.v1.Status_StatusCode" json:"code,omitempty"` +} + +func (x *Status) Reset() { + *x = Status{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[4] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Status) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Status) ProtoMessage() {} + +func (x *Status) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[4] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Status.ProtoReflect.Descriptor instead. +func (*Status) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{4} +} + +func (x *Status) GetMessage() string { + if x != nil { + return x.Message + } + return "" +} + +func (x *Status) GetCode() Status_StatusCode { + if x != nil { + return x.Code + } + return Status_STATUS_CODE_UNSET +} + +// Event is a time-stamped annotation of the span, consisting of user-supplied +// text description and key-value pairs. +type Span_Event struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // time_unix_nano is the time the event occurred. + TimeUnixNano uint64 `protobuf:"fixed64,1,opt,name=time_unix_nano,json=timeUnixNano,proto3" json:"time_unix_nano,omitempty"` + // name of the event. + // This field is semantically required to be set to non-empty string. + Name string `protobuf:"bytes,2,opt,name=name,proto3" json:"name,omitempty"` + // attributes is a collection of attribute key/value pairs on the event. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,3,rep,name=attributes,proto3" json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttributesCount uint32 `protobuf:"varint,4,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"` +} + +func (x *Span_Event) Reset() { + *x = Span_Event{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[5] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Span_Event) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Span_Event) ProtoMessage() {} + +func (x *Span_Event) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[5] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Span_Event.ProtoReflect.Descriptor instead. +func (*Span_Event) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{3, 0} +} + +func (x *Span_Event) GetTimeUnixNano() uint64 { + if x != nil { + return x.TimeUnixNano + } + return 0 +} + +func (x *Span_Event) GetName() string { + if x != nil { + return x.Name + } + return "" +} + +func (x *Span_Event) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *Span_Event) GetDroppedAttributesCount() uint32 { + if x != nil { + return x.DroppedAttributesCount + } + return 0 +} + +// A pointer from the current span to another span in the same trace or in a +// different trace. For example, this can be used in batching operations, +// where a single batch handler processes multiple requests from different +// traces or when the handler receives a request from a different project. +type Span_Link struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A unique identifier of a trace that this linked span is part of. The ID is a + // 16-byte array. + TraceId []byte `protobuf:"bytes,1,opt,name=trace_id,json=traceId,proto3" json:"trace_id,omitempty"` + // A unique identifier for the linked span. The ID is an 8-byte array. + SpanId []byte `protobuf:"bytes,2,opt,name=span_id,json=spanId,proto3" json:"span_id,omitempty"` + // The trace_state associated with the link. + TraceState string `protobuf:"bytes,3,opt,name=trace_state,json=traceState,proto3" json:"trace_state,omitempty"` + // attributes is a collection of attribute key/value pairs on the link. + // Attribute keys MUST be unique (it is not allowed to have more than one + // attribute with the same key). + Attributes []*v11.KeyValue `protobuf:"bytes,4,rep,name=attributes,proto3" json:"attributes,omitempty"` + // dropped_attributes_count is the number of dropped attributes. If the value is 0, + // then no attributes were dropped. + DroppedAttributesCount uint32 `protobuf:"varint,5,opt,name=dropped_attributes_count,json=droppedAttributesCount,proto3" json:"dropped_attributes_count,omitempty"` + // Flags, a bit field. + // + // Bits 0-7 (8 least significant bits) are the trace flags as defined in W3C Trace + // Context specification. To read the 8-bit W3C trace flag, use + // `flags & SPAN_FLAGS_TRACE_FLAGS_MASK`. + // + // See https://www.w3.org/TR/trace-context-2/#trace-flags for the flag definitions. + // + // Bits 8 and 9 represent the 3 states of whether the link is remote. + // The states are (unknown, is not remote, is remote). + // To read whether the value is known, use `(flags & SPAN_FLAGS_CONTEXT_HAS_IS_REMOTE_MASK) != 0`. + // To read whether the link is remote, use `(flags & SPAN_FLAGS_CONTEXT_IS_REMOTE_MASK) != 0`. + // + // Readers MUST NOT assume that bits 10-31 (22 most significant bits) will be zero. + // When creating new spans, bits 10-31 (most-significant 22-bits) MUST be zero. + // + // [Optional]. + Flags uint32 `protobuf:"fixed32,6,opt,name=flags,proto3" json:"flags,omitempty"` +} + +func (x *Span_Link) Reset() { + *x = Span_Link{} + if protoimpl.UnsafeEnabled { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[6] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Span_Link) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Span_Link) ProtoMessage() {} + +func (x *Span_Link) ProtoReflect() protoreflect.Message { + mi := &file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[6] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Span_Link.ProtoReflect.Descriptor instead. +func (*Span_Link) Descriptor() ([]byte, []int) { + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescGZIP(), []int{3, 1} +} + +func (x *Span_Link) GetTraceId() []byte { + if x != nil { + return x.TraceId + } + return nil +} + +func (x *Span_Link) GetSpanId() []byte { + if x != nil { + return x.SpanId + } + return nil +} + +func (x *Span_Link) GetTraceState() string { + if x != nil { + return x.TraceState + } + return "" +} + +func (x *Span_Link) GetAttributes() []*v11.KeyValue { + if x != nil { + return x.Attributes + } + return nil +} + +func (x *Span_Link) GetDroppedAttributesCount() uint32 { + if x != nil { + return x.DroppedAttributesCount + } + return 0 +} + +func (x *Span_Link) GetFlags() uint32 { + if x != nil { + return x.Flags + } + return 0 +} + +var File_opentelemetry_proto_trace_v1_trace_proto protoreflect.FileDescriptor + +var file_opentelemetry_proto_trace_v1_trace_proto_rawDesc = []byte{ + 0x0a, 0x28, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2f, + 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2f, 0x74, 0x72, 0x61, 0x63, 0x65, 0x2f, 0x76, 0x31, 0x2f, 0x74, + 0x72, 0x61, 0x63, 0x65, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x12, 0x1c, 0x6f, 0x70, 0x65, 0x6e, + 0x74, 0x65, 0x6c, 0x65, 0x6d, 0x65, 0x74, 0x72, 0x79, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x2e, + 0x74, 0x72, 0x61, 0x63, 0x65, 0x2e, 0x76, 0x31, 0x1a, 0x2a, 0x6f, 0x70, 0x65, 0x6e, 0x74, 0x65, + 0x6c, 0x65, 0x6d, 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file_opentelemetry_proto_trace_v1_trace_proto_rawDescOnce.Do(func() { + file_opentelemetry_proto_trace_v1_trace_proto_rawDescData = protoimpl.X.CompressGZIP(file_opentelemetry_proto_trace_v1_trace_proto_rawDescData) + }) + return file_opentelemetry_proto_trace_v1_trace_proto_rawDescData +} + +var file_opentelemetry_proto_trace_v1_trace_proto_enumTypes = make([]protoimpl.EnumInfo, 3) +var file_opentelemetry_proto_trace_v1_trace_proto_msgTypes = make([]protoimpl.MessageInfo, 7) +var file_opentelemetry_proto_trace_v1_trace_proto_goTypes = []interface{}{ + (SpanFlags)(0), // 0: opentelemetry.proto.trace.v1.SpanFlags + (Span_SpanKind)(0), // 1: opentelemetry.proto.trace.v1.Span.SpanKind + (Status_StatusCode)(0), // 2: opentelemetry.proto.trace.v1.Status.StatusCode + (*TracesData)(nil), // 3: opentelemetry.proto.trace.v1.TracesData + (*ResourceSpans)(nil), // 4: opentelemetry.proto.trace.v1.ResourceSpans + (*ScopeSpans)(nil), // 5: opentelemetry.proto.trace.v1.ScopeSpans + (*Span)(nil), // 6: opentelemetry.proto.trace.v1.Span + (*Status)(nil), // 7: opentelemetry.proto.trace.v1.Status + (*Span_Event)(nil), // 8: opentelemetry.proto.trace.v1.Span.Event + (*Span_Link)(nil), // 9: opentelemetry.proto.trace.v1.Span.Link + (*v1.Resource)(nil), // 10: opentelemetry.proto.resource.v1.Resource + (*v11.InstrumentationScope)(nil), // 11: opentelemetry.proto.common.v1.InstrumentationScope + (*v11.KeyValue)(nil), // 12: opentelemetry.proto.common.v1.KeyValue +} +var file_opentelemetry_proto_trace_v1_trace_proto_depIdxs = []int32{ + 4, // 0: opentelemetry.proto.trace.v1.TracesData.resource_spans:type_name -> opentelemetry.proto.trace.v1.ResourceSpans + 10, // 1: opentelemetry.proto.trace.v1.ResourceSpans.resource:type_name -> opentelemetry.proto.resource.v1.Resource + 5, // 2: opentelemetry.proto.trace.v1.ResourceSpans.scope_spans:type_name -> opentelemetry.proto.trace.v1.ScopeSpans + 11, // 3: opentelemetry.proto.trace.v1.ScopeSpans.scope:type_name -> opentelemetry.proto.common.v1.InstrumentationScope + 6, // 4: opentelemetry.proto.trace.v1.ScopeSpans.spans:type_name -> opentelemetry.proto.trace.v1.Span + 1, // 5: opentelemetry.proto.trace.v1.Span.kind:type_name -> opentelemetry.proto.trace.v1.Span.SpanKind + 12, // 6: opentelemetry.proto.trace.v1.Span.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 8, // 7: opentelemetry.proto.trace.v1.Span.events:type_name -> opentelemetry.proto.trace.v1.Span.Event + 9, // 8: opentelemetry.proto.trace.v1.Span.links:type_name -> opentelemetry.proto.trace.v1.Span.Link + 7, // 9: opentelemetry.proto.trace.v1.Span.status:type_name -> opentelemetry.proto.trace.v1.Status + 2, // 10: opentelemetry.proto.trace.v1.Status.code:type_name -> opentelemetry.proto.trace.v1.Status.StatusCode + 12, // 11: opentelemetry.proto.trace.v1.Span.Event.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 12, // 12: opentelemetry.proto.trace.v1.Span.Link.attributes:type_name -> opentelemetry.proto.common.v1.KeyValue + 13, // [13:13] is the sub-list for method output_type + 13, // [13:13] is the sub-list for method input_type + 13, // [13:13] is the sub-list for extension type_name + 13, // [13:13] is the sub-list for extension extendee + 0, // [0:13] is the sub-list for field type_name +} + +func init() { file_opentelemetry_proto_trace_v1_trace_proto_init() } +func file_opentelemetry_proto_trace_v1_trace_proto_init() { + if File_opentelemetry_proto_trace_v1_trace_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*TracesData); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ResourceSpans); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ScopeSpans); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Span); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Status); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Span_Event); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_opentelemetry_proto_trace_v1_trace_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Span_Link); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_opentelemetry_proto_trace_v1_trace_proto_rawDesc, + NumEnums: 3, + NumMessages: 7, + NumExtensions: 0, + NumServices: 0, + }, + GoTypes: file_opentelemetry_proto_trace_v1_trace_proto_goTypes, + DependencyIndexes: file_opentelemetry_proto_trace_v1_trace_proto_depIdxs, + EnumInfos: file_opentelemetry_proto_trace_v1_trace_proto_enumTypes, + MessageInfos: file_opentelemetry_proto_trace_v1_trace_proto_msgTypes, + }.Build() + File_opentelemetry_proto_trace_v1_trace_proto = out.File + file_opentelemetry_proto_trace_v1_trace_proto_rawDesc = nil + file_opentelemetry_proto_trace_v1_trace_proto_goTypes = nil + file_opentelemetry_proto_trace_v1_trace_proto_depIdxs = nil +} diff --git a/vendor/go.yaml.in/yaml/v2/.travis.yml b/vendor/go.yaml.in/yaml/v2/.travis.yml new file mode 100644 index 0000000000..7348c50c0c --- /dev/null +++ b/vendor/go.yaml.in/yaml/v2/.travis.yml @@ -0,0 +1,17 @@ +language: go + +go: + - "1.4.x" + - "1.5.x" + - "1.6.x" + - "1.7.x" + - "1.8.x" + - "1.9.x" + - "1.10.x" + - "1.11.x" + - "1.12.x" + - "1.13.x" + - "1.14.x" + - "tip" + +go_import_path: gopkg.in/yaml.v2 diff --git a/vendor/go.yaml.in/yaml/v2/LICENSE b/vendor/go.yaml.in/yaml/v2/LICENSE new file mode 100644 index 0000000000..8dada3edaf --- /dev/null +++ b/vendor/go.yaml.in/yaml/v2/LICENSE @@ -0,0 +1,201 @@ + Apache License + Version 2.0, January 2004 + http://www.apache.org/licenses/ + + TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION + + 1. Definitions. + + "License" shall mean the terms and conditions for use, reproduction, + and distribution as defined by Sections 1 through 9 of this document. + + "Licensor" shall mean the copyright owner or entity authorized by + the copyright owner that is granting the License. + + "Legal Entity" shall mean the union of the acting entity and all + other entities that control, are controlled by, or are under common + control with that entity. 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However, in accepting such obligations, You may act only + on Your own behalf and on Your sole responsibility, not on behalf + of any other Contributor, and only if You agree to indemnify, + defend, and hold each Contributor harmless for any liability + incurred by, or claims asserted against, such Contributor by reason + of your accepting any such warranty or additional liability. + + END OF TERMS AND CONDITIONS + + APPENDIX: How to apply the Apache License to your work. + + To apply the Apache License to your work, attach the following + boilerplate notice, with the fields enclosed by brackets "{}" + replaced with your own identifying information. (Don't include + the brackets!) The text should be enclosed in the appropriate + comment syntax for the file format. We also recommend that a + file or class name and description of purpose be included on the + same "printed page" as the copyright notice for easier + identification within third-party archives. + + Copyright {yyyy} {name of copyright owner} + + Licensed under the Apache License, Version 2.0 (the "License"); + you may not use this file except in compliance with the License. + You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + + Unless required by applicable law or agreed to in writing, software + distributed under the License is distributed on an "AS IS" BASIS, + WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + See the License for the specific language governing permissions and + limitations under the License. diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/LICENSE.libyaml b/vendor/go.yaml.in/yaml/v2/LICENSE.libyaml similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/LICENSE.libyaml rename to vendor/go.yaml.in/yaml/v2/LICENSE.libyaml diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/NOTICE b/vendor/go.yaml.in/yaml/v2/NOTICE similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/NOTICE rename to vendor/go.yaml.in/yaml/v2/NOTICE diff --git a/vendor/go.yaml.in/yaml/v2/README.md b/vendor/go.yaml.in/yaml/v2/README.md new file mode 100644 index 0000000000..c9388da425 --- /dev/null +++ b/vendor/go.yaml.in/yaml/v2/README.md @@ -0,0 +1,131 @@ +# YAML support for the Go language + +Introduction +------------ + +The yaml package enables Go programs to comfortably encode and decode YAML +values. It was developed within [Canonical](https://www.canonical.com) as +part of the [juju](https://juju.ubuntu.com) project, and is based on a +pure Go port of the well-known [libyaml](http://pyyaml.org/wiki/LibYAML) +C library to parse and generate YAML data quickly and reliably. + +Compatibility +------------- + +The yaml package supports most of YAML 1.1 and 1.2, including support for +anchors, tags, map merging, etc. Multi-document unmarshalling is not yet +implemented, and base-60 floats from YAML 1.1 are purposefully not +supported since they're a poor design and are gone in YAML 1.2. + +Installation and usage +---------------------- + +The import path for the package is *go.yaml.in/yaml/v2*. + +To install it, run: + + go get go.yaml.in/yaml/v2 + +API documentation +----------------- + +See: + +API stability +------------- + +The package API for yaml v2 will remain stable as described in [gopkg.in](https://gopkg.in). + + +License +------- + +The yaml package is licensed under the Apache License 2.0. Please see the LICENSE file for details. + + +Example +------- + +```Go +package main + +import ( + "fmt" + "log" + + "go.yaml.in/yaml/v2" +) + +var data = ` +a: Easy! +b: + c: 2 + d: [3, 4] +` + +// Note: struct fields must be public in order for unmarshal to +// correctly populate the data. +type T struct { + A string + B struct { + RenamedC int `yaml:"c"` + D []int `yaml:",flow"` + } +} + +func main() { + t := T{} + + err := yaml.Unmarshal([]byte(data), &t) + if err != nil { + log.Fatalf("error: %v", err) + } + fmt.Printf("--- t:\n%v\n\n", t) + + d, err := yaml.Marshal(&t) + if err != nil { + log.Fatalf("error: %v", err) + } + fmt.Printf("--- t dump:\n%s\n\n", string(d)) + + m := make(map[interface{}]interface{}) + + err = yaml.Unmarshal([]byte(data), &m) + if err != nil { + log.Fatalf("error: %v", err) + } + fmt.Printf("--- m:\n%v\n\n", m) + + d, err = yaml.Marshal(&m) + if err != nil { + log.Fatalf("error: %v", err) + } + fmt.Printf("--- m dump:\n%s\n\n", string(d)) +} +``` + +This example will generate the following output: + +``` +--- t: +{Easy! {2 [3 4]}} + +--- t dump: +a: Easy! +b: + c: 2 + d: [3, 4] + + +--- m: +map[a:Easy! b:map[c:2 d:[3 4]]] + +--- m dump: +a: Easy! +b: + c: 2 + d: + - 3 + - 4 +``` + diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/apic.go b/vendor/go.yaml.in/yaml/v2/apic.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/apic.go rename to vendor/go.yaml.in/yaml/v2/apic.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/decode.go b/vendor/go.yaml.in/yaml/v2/decode.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/decode.go rename to vendor/go.yaml.in/yaml/v2/decode.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/emitterc.go b/vendor/go.yaml.in/yaml/v2/emitterc.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/emitterc.go rename to vendor/go.yaml.in/yaml/v2/emitterc.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/encode.go b/vendor/go.yaml.in/yaml/v2/encode.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/encode.go rename to vendor/go.yaml.in/yaml/v2/encode.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/parserc.go b/vendor/go.yaml.in/yaml/v2/parserc.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/parserc.go rename to vendor/go.yaml.in/yaml/v2/parserc.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/readerc.go b/vendor/go.yaml.in/yaml/v2/readerc.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/readerc.go rename to vendor/go.yaml.in/yaml/v2/readerc.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/resolve.go b/vendor/go.yaml.in/yaml/v2/resolve.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/resolve.go rename to vendor/go.yaml.in/yaml/v2/resolve.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/scannerc.go b/vendor/go.yaml.in/yaml/v2/scannerc.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/scannerc.go rename to vendor/go.yaml.in/yaml/v2/scannerc.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/sorter.go b/vendor/go.yaml.in/yaml/v2/sorter.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/sorter.go rename to vendor/go.yaml.in/yaml/v2/sorter.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/writerc.go b/vendor/go.yaml.in/yaml/v2/writerc.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/writerc.go rename to vendor/go.yaml.in/yaml/v2/writerc.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/yaml.go b/vendor/go.yaml.in/yaml/v2/yaml.go similarity index 99% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/yaml.go rename to vendor/go.yaml.in/yaml/v2/yaml.go index 30813884c0..5248e1263c 100644 --- a/vendor/sigs.k8s.io/yaml/goyaml.v2/yaml.go +++ b/vendor/go.yaml.in/yaml/v2/yaml.go @@ -2,7 +2,7 @@ // // Source code and other details for the project are available at GitHub: // -// https://github.com/go-yaml/yaml +// https://github.com/yaml/go-yaml // package yaml diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/yamlh.go b/vendor/go.yaml.in/yaml/v2/yamlh.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/yamlh.go rename to vendor/go.yaml.in/yaml/v2/yamlh.go diff --git a/vendor/sigs.k8s.io/yaml/goyaml.v2/yamlprivateh.go b/vendor/go.yaml.in/yaml/v2/yamlprivateh.go similarity index 100% rename from vendor/sigs.k8s.io/yaml/goyaml.v2/yamlprivateh.go rename to vendor/go.yaml.in/yaml/v2/yamlprivateh.go diff --git a/vendor/golang.org/x/mod/module/module.go b/vendor/golang.org/x/mod/module/module.go index 2a364b229b..16e1aa7ab4 100644 --- a/vendor/golang.org/x/mod/module/module.go +++ b/vendor/golang.org/x/mod/module/module.go @@ -96,10 +96,11 @@ package module // Changes to the semantics in this file require approval from rsc. import ( + "cmp" "errors" "fmt" "path" - "sort" + "slices" "strings" "unicode" "unicode/utf8" @@ -657,17 +658,15 @@ func CanonicalVersion(v string) string { // optionally followed by a tie-breaking suffix introduced by a slash character, // like in "v0.0.1/go.mod". func Sort(list []Version) { - sort.Slice(list, func(i, j int) bool { - mi := list[i] - mj := list[j] - if mi.Path != mj.Path { - return mi.Path < mj.Path + slices.SortFunc(list, func(i, j Version) int { + if i.Path != j.Path { + return strings.Compare(i.Path, j.Path) } // To help go.sum formatting, allow version/file. // Compare semver prefix by semver rules, // file by string order. - vi := mi.Version - vj := mj.Version + vi := i.Version + vj := j.Version var fi, fj string if k := strings.Index(vi, "/"); k >= 0 { vi, fi = vi[:k], vi[k:] @@ -676,9 +675,9 @@ func Sort(list []Version) { vj, fj = vj[:k], vj[k:] } if vi != vj { - return semver.Compare(vi, vj) < 0 + return semver.Compare(vi, vj) } - return fi < fj + return cmp.Compare(fi, fj) }) } diff --git a/vendor/golang.org/x/mod/semver/semver.go b/vendor/golang.org/x/mod/semver/semver.go index 9a2dfd33a7..628f8fd687 100644 --- a/vendor/golang.org/x/mod/semver/semver.go +++ b/vendor/golang.org/x/mod/semver/semver.go @@ -22,7 +22,10 @@ // as shorthands for vMAJOR.0.0 and vMAJOR.MINOR.0. package semver -import "sort" +import ( + "slices" + "strings" +) // parsed returns the parsed form of a semantic version string. type parsed struct { @@ -154,19 +157,22 @@ func Max(v, w string) string { // ByVersion implements [sort.Interface] for sorting semantic version strings. type ByVersion []string -func (vs ByVersion) Len() int { return len(vs) } -func (vs ByVersion) Swap(i, j int) { vs[i], vs[j] = vs[j], vs[i] } -func (vs ByVersion) Less(i, j int) bool { - cmp := Compare(vs[i], vs[j]) - if cmp != 0 { - return cmp < 0 - } - return vs[i] < vs[j] -} +func (vs ByVersion) Len() int { return len(vs) } +func (vs ByVersion) Swap(i, j int) { vs[i], vs[j] = vs[j], vs[i] } +func (vs ByVersion) Less(i, j int) bool { return compareVersion(vs[i], vs[j]) < 0 } -// Sort sorts a list of semantic version strings using [ByVersion]. +// Sort sorts a list of semantic version strings using [Compare] and falls back +// to use [strings.Compare] if both versions are considered equal. func Sort(list []string) { - sort.Sort(ByVersion(list)) + slices.SortFunc(list, compareVersion) +} + +func compareVersion(a, b string) int { + cmp := Compare(a, b) + if cmp != 0 { + return cmp + } + return strings.Compare(a, b) } func parse(v string) (p parsed, ok bool) { diff --git a/vendor/golang.org/x/net/http2/frame.go b/vendor/golang.org/x/net/http2/frame.go index 97bd8b06f7..db3264da8c 100644 --- a/vendor/golang.org/x/net/http2/frame.go +++ b/vendor/golang.org/x/net/http2/frame.go @@ -39,7 +39,7 @@ const ( FrameContinuation FrameType = 0x9 ) -var frameName = map[FrameType]string{ +var frameNames = [...]string{ FrameData: "DATA", FrameHeaders: "HEADERS", FramePriority: "PRIORITY", @@ -53,10 +53,10 @@ var frameName = map[FrameType]string{ } func (t FrameType) String() string { - if s, ok := frameName[t]; ok { - return s + if int(t) < len(frameNames) { + return frameNames[t] } - return fmt.Sprintf("UNKNOWN_FRAME_TYPE_%d", uint8(t)) + return fmt.Sprintf("UNKNOWN_FRAME_TYPE_%d", t) } // Flags is a bitmask of HTTP/2 flags. @@ -124,7 +124,7 @@ var flagName = map[FrameType]map[Flags]string{ // might be 0). type frameParser func(fc *frameCache, fh FrameHeader, countError func(string), payload []byte) (Frame, error) -var frameParsers = map[FrameType]frameParser{ +var frameParsers = [...]frameParser{ FrameData: parseDataFrame, FrameHeaders: parseHeadersFrame, FramePriority: parsePriorityFrame, @@ -138,8 +138,8 @@ var frameParsers = map[FrameType]frameParser{ } func typeFrameParser(t FrameType) frameParser { - if f := frameParsers[t]; f != nil { - return f + if int(t) < len(frameParsers) { + return frameParsers[t] } return parseUnknownFrame } @@ -509,7 +509,7 @@ func (fr *Framer) ReadFrame() (Frame, error) { } if fh.Length > fr.maxReadSize { if fh == invalidHTTP1LookingFrameHeader() { - return nil, fmt.Errorf("http2: failed reading the frame payload: %w, note that the frame header looked like an HTTP/1.1 header", err) + return nil, fmt.Errorf("http2: failed reading the frame payload: %w, note that the frame header looked like an HTTP/1.1 header", ErrFrameTooLarge) } return nil, ErrFrameTooLarge } diff --git a/vendor/golang.org/x/net/trace/events.go b/vendor/golang.org/x/net/trace/events.go index c646a6952e..3aaffdd1f7 100644 --- a/vendor/golang.org/x/net/trace/events.go +++ b/vendor/golang.org/x/net/trace/events.go @@ -508,7 +508,7 @@ const eventsHTML = ` {{$el.When}} {{$el.ElapsedTime}} - {{$el.Title}} + {{$el.Title}} {{if $.Expanded}} diff --git a/vendor/golang.org/x/oauth2/internal/doc.go b/vendor/golang.org/x/oauth2/internal/doc.go index 03265e888a..8c7c475f2d 100644 --- a/vendor/golang.org/x/oauth2/internal/doc.go +++ b/vendor/golang.org/x/oauth2/internal/doc.go @@ -2,5 +2,5 @@ // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. -// Package internal contains support packages for oauth2 package. +// Package internal contains support packages for [golang.org/x/oauth2]. package internal diff --git a/vendor/golang.org/x/oauth2/internal/oauth2.go b/vendor/golang.org/x/oauth2/internal/oauth2.go index 14989beaf4..71ea6ad1f5 100644 --- a/vendor/golang.org/x/oauth2/internal/oauth2.go +++ b/vendor/golang.org/x/oauth2/internal/oauth2.go @@ -13,7 +13,7 @@ import ( ) // ParseKey converts the binary contents of a private key file -// to an *rsa.PrivateKey. It detects whether the private key is in a +// to an [*rsa.PrivateKey]. It detects whether the private key is in a // PEM container or not. If so, it extracts the private key // from PEM container before conversion. It only supports PEM // containers with no passphrase. diff --git a/vendor/golang.org/x/oauth2/internal/token.go b/vendor/golang.org/x/oauth2/internal/token.go index e83ddeef0f..8389f24629 100644 --- a/vendor/golang.org/x/oauth2/internal/token.go +++ b/vendor/golang.org/x/oauth2/internal/token.go @@ -10,7 +10,6 @@ import ( "errors" "fmt" "io" - "io/ioutil" "math" "mime" "net/http" @@ -26,9 +25,9 @@ import ( // the requests to access protected resources on the OAuth 2.0 // provider's backend. // -// This type is a mirror of oauth2.Token and exists to break +// This type is a mirror of [golang.org/x/oauth2.Token] and exists to break // an otherwise-circular dependency. Other internal packages -// should convert this Token into an oauth2.Token before use. +// should convert this Token into an [golang.org/x/oauth2.Token] before use. type Token struct { // AccessToken is the token that authorizes and authenticates // the requests. @@ -50,9 +49,16 @@ type Token struct { // mechanisms for that TokenSource will not be used. Expiry time.Time + // ExpiresIn is the OAuth2 wire format "expires_in" field, + // which specifies how many seconds later the token expires, + // relative to an unknown time base approximately around "now". + // It is the application's responsibility to populate + // `Expiry` from `ExpiresIn` when required. + ExpiresIn int64 `json:"expires_in,omitempty"` + // Raw optionally contains extra metadata from the server // when updating a token. - Raw interface{} + Raw any } // tokenJSON is the struct representing the HTTP response from OAuth2 @@ -99,14 +105,6 @@ func (e *expirationTime) UnmarshalJSON(b []byte) error { return nil } -// RegisterBrokenAuthHeaderProvider previously did something. It is now a no-op. -// -// Deprecated: this function no longer does anything. Caller code that -// wants to avoid potential extra HTTP requests made during -// auto-probing of the provider's auth style should set -// Endpoint.AuthStyle. -func RegisterBrokenAuthHeaderProvider(tokenURL string) {} - // AuthStyle is a copy of the golang.org/x/oauth2 package's AuthStyle type. type AuthStyle int @@ -143,6 +141,11 @@ func (lc *LazyAuthStyleCache) Get() *AuthStyleCache { return c } +type authStyleCacheKey struct { + url string + clientID string +} + // AuthStyleCache is the set of tokenURLs we've successfully used via // RetrieveToken and which style auth we ended up using. // It's called a cache, but it doesn't (yet?) shrink. It's expected that @@ -150,26 +153,26 @@ func (lc *LazyAuthStyleCache) Get() *AuthStyleCache { // small. type AuthStyleCache struct { mu sync.Mutex - m map[string]AuthStyle // keyed by tokenURL + m map[authStyleCacheKey]AuthStyle } // lookupAuthStyle reports which auth style we last used with tokenURL // when calling RetrieveToken and whether we have ever done so. -func (c *AuthStyleCache) lookupAuthStyle(tokenURL string) (style AuthStyle, ok bool) { +func (c *AuthStyleCache) lookupAuthStyle(tokenURL, clientID string) (style AuthStyle, ok bool) { c.mu.Lock() defer c.mu.Unlock() - style, ok = c.m[tokenURL] + style, ok = c.m[authStyleCacheKey{tokenURL, clientID}] return } // setAuthStyle adds an entry to authStyleCache, documented above. -func (c *AuthStyleCache) setAuthStyle(tokenURL string, v AuthStyle) { +func (c *AuthStyleCache) setAuthStyle(tokenURL, clientID string, v AuthStyle) { c.mu.Lock() defer c.mu.Unlock() if c.m == nil { - c.m = make(map[string]AuthStyle) + c.m = make(map[authStyleCacheKey]AuthStyle) } - c.m[tokenURL] = v + c.m[authStyleCacheKey{tokenURL, clientID}] = v } // newTokenRequest returns a new *http.Request to retrieve a new token @@ -210,9 +213,9 @@ func cloneURLValues(v url.Values) url.Values { } func RetrieveToken(ctx context.Context, clientID, clientSecret, tokenURL string, v url.Values, authStyle AuthStyle, styleCache *AuthStyleCache) (*Token, error) { - needsAuthStyleProbe := authStyle == 0 + needsAuthStyleProbe := authStyle == AuthStyleUnknown if needsAuthStyleProbe { - if style, ok := styleCache.lookupAuthStyle(tokenURL); ok { + if style, ok := styleCache.lookupAuthStyle(tokenURL, clientID); ok { authStyle = style needsAuthStyleProbe = false } else { @@ -242,7 +245,7 @@ func RetrieveToken(ctx context.Context, clientID, clientSecret, tokenURL string, token, err = doTokenRoundTrip(ctx, req) } if needsAuthStyleProbe && err == nil { - styleCache.setAuthStyle(tokenURL, authStyle) + styleCache.setAuthStyle(tokenURL, clientID, authStyle) } // Don't overwrite `RefreshToken` with an empty value // if this was a token refreshing request. @@ -257,7 +260,7 @@ func doTokenRoundTrip(ctx context.Context, req *http.Request) (*Token, error) { if err != nil { return nil, err } - body, err := ioutil.ReadAll(io.LimitReader(r.Body, 1<<20)) + body, err := io.ReadAll(io.LimitReader(r.Body, 1<<20)) r.Body.Close() if err != nil { return nil, fmt.Errorf("oauth2: cannot fetch token: %v", err) @@ -312,7 +315,8 @@ func doTokenRoundTrip(ctx context.Context, req *http.Request) (*Token, error) { TokenType: tj.TokenType, RefreshToken: tj.RefreshToken, Expiry: tj.expiry(), - Raw: make(map[string]interface{}), + ExpiresIn: int64(tj.ExpiresIn), + Raw: make(map[string]any), } json.Unmarshal(body, &token.Raw) // no error checks for optional fields } diff --git a/vendor/golang.org/x/oauth2/internal/transport.go b/vendor/golang.org/x/oauth2/internal/transport.go index b9db01ddfd..afc0aeb274 100644 --- a/vendor/golang.org/x/oauth2/internal/transport.go +++ b/vendor/golang.org/x/oauth2/internal/transport.go @@ -9,8 +9,8 @@ import ( "net/http" ) -// HTTPClient is the context key to use with golang.org/x/net/context's -// WithValue function to associate an *http.Client value with a context. +// HTTPClient is the context key to use with [context.WithValue] +// to associate an [*http.Client] value with a context. var HTTPClient ContextKey // ContextKey is just an empty struct. It exists so HTTPClient can be diff --git a/vendor/golang.org/x/oauth2/oauth2.go b/vendor/golang.org/x/oauth2/oauth2.go index 74f052aa9f..de34feb844 100644 --- a/vendor/golang.org/x/oauth2/oauth2.go +++ b/vendor/golang.org/x/oauth2/oauth2.go @@ -22,9 +22,9 @@ import ( ) // NoContext is the default context you should supply if not using -// your own context.Context (see https://golang.org/x/net/context). +// your own [context.Context]. // -// Deprecated: Use context.Background() or context.TODO() instead. +// Deprecated: Use [context.Background] or [context.TODO] instead. var NoContext = context.TODO() // RegisterBrokenAuthHeaderProvider previously did something. It is now a no-op. @@ -37,8 +37,8 @@ func RegisterBrokenAuthHeaderProvider(tokenURL string) {} // Config describes a typical 3-legged OAuth2 flow, with both the // client application information and the server's endpoint URLs. -// For the client credentials 2-legged OAuth2 flow, see the clientcredentials -// package (https://golang.org/x/oauth2/clientcredentials). +// For the client credentials 2-legged OAuth2 flow, see the +// [golang.org/x/oauth2/clientcredentials] package. type Config struct { // ClientID is the application's ID. ClientID string @@ -46,7 +46,7 @@ type Config struct { // ClientSecret is the application's secret. ClientSecret string - // Endpoint contains the resource server's token endpoint + // Endpoint contains the authorization server's token endpoint // URLs. These are constants specific to each server and are // often available via site-specific packages, such as // google.Endpoint or github.Endpoint. @@ -135,7 +135,7 @@ type setParam struct{ k, v string } func (p setParam) setValue(m url.Values) { m.Set(p.k, p.v) } -// SetAuthURLParam builds an AuthCodeOption which passes key/value parameters +// SetAuthURLParam builds an [AuthCodeOption] which passes key/value parameters // to a provider's authorization endpoint. func SetAuthURLParam(key, value string) AuthCodeOption { return setParam{key, value} @@ -148,8 +148,8 @@ func SetAuthURLParam(key, value string) AuthCodeOption { // request and callback. The authorization server includes this value when // redirecting the user agent back to the client. // -// Opts may include AccessTypeOnline or AccessTypeOffline, as well -// as ApprovalForce. +// Opts may include [AccessTypeOnline] or [AccessTypeOffline], as well +// as [ApprovalForce]. // // To protect against CSRF attacks, opts should include a PKCE challenge // (S256ChallengeOption). Not all servers support PKCE. An alternative is to @@ -194,7 +194,7 @@ func (c *Config) AuthCodeURL(state string, opts ...AuthCodeOption) string { // and when other authorization grant types are not available." // See https://tools.ietf.org/html/rfc6749#section-4.3 for more info. // -// The provided context optionally controls which HTTP client is used. See the HTTPClient variable. +// The provided context optionally controls which HTTP client is used. See the [HTTPClient] variable. func (c *Config) PasswordCredentialsToken(ctx context.Context, username, password string) (*Token, error) { v := url.Values{ "grant_type": {"password"}, @@ -212,10 +212,10 @@ func (c *Config) PasswordCredentialsToken(ctx context.Context, username, passwor // It is used after a resource provider redirects the user back // to the Redirect URI (the URL obtained from AuthCodeURL). // -// The provided context optionally controls which HTTP client is used. See the HTTPClient variable. +// The provided context optionally controls which HTTP client is used. See the [HTTPClient] variable. // -// The code will be in the *http.Request.FormValue("code"). Before -// calling Exchange, be sure to validate FormValue("state") if you are +// The code will be in the [http.Request.FormValue]("code"). Before +// calling Exchange, be sure to validate [http.Request.FormValue]("state") if you are // using it to protect against CSRF attacks. // // If using PKCE to protect against CSRF attacks, opts should include a @@ -242,10 +242,10 @@ func (c *Config) Client(ctx context.Context, t *Token) *http.Client { return NewClient(ctx, c.TokenSource(ctx, t)) } -// TokenSource returns a TokenSource that returns t until t expires, +// TokenSource returns a [TokenSource] that returns t until t expires, // automatically refreshing it as necessary using the provided context. // -// Most users will use Config.Client instead. +// Most users will use [Config.Client] instead. func (c *Config) TokenSource(ctx context.Context, t *Token) TokenSource { tkr := &tokenRefresher{ ctx: ctx, @@ -260,7 +260,7 @@ func (c *Config) TokenSource(ctx context.Context, t *Token) TokenSource { } } -// tokenRefresher is a TokenSource that makes "grant_type"=="refresh_token" +// tokenRefresher is a TokenSource that makes "grant_type=refresh_token" // HTTP requests to renew a token using a RefreshToken. type tokenRefresher struct { ctx context.Context // used to get HTTP requests @@ -288,7 +288,7 @@ func (tf *tokenRefresher) Token() (*Token, error) { if tf.refreshToken != tk.RefreshToken { tf.refreshToken = tk.RefreshToken } - return tk, err + return tk, nil } // reuseTokenSource is a TokenSource that holds a single token in memory @@ -305,8 +305,7 @@ type reuseTokenSource struct { } // Token returns the current token if it's still valid, else will -// refresh the current token (using r.Context for HTTP client -// information) and return the new one. +// refresh the current token and return the new one. func (s *reuseTokenSource) Token() (*Token, error) { s.mu.Lock() defer s.mu.Unlock() @@ -322,7 +321,7 @@ func (s *reuseTokenSource) Token() (*Token, error) { return t, nil } -// StaticTokenSource returns a TokenSource that always returns the same token. +// StaticTokenSource returns a [TokenSource] that always returns the same token. // Because the provided token t is never refreshed, StaticTokenSource is only // useful for tokens that never expire. func StaticTokenSource(t *Token) TokenSource { @@ -338,16 +337,16 @@ func (s staticTokenSource) Token() (*Token, error) { return s.t, nil } -// HTTPClient is the context key to use with golang.org/x/net/context's -// WithValue function to associate an *http.Client value with a context. +// HTTPClient is the context key to use with [context.WithValue] +// to associate a [*http.Client] value with a context. var HTTPClient internal.ContextKey -// NewClient creates an *http.Client from a Context and TokenSource. +// NewClient creates an [*http.Client] from a [context.Context] and [TokenSource]. // The returned client is not valid beyond the lifetime of the context. // -// Note that if a custom *http.Client is provided via the Context it +// Note that if a custom [*http.Client] is provided via the [context.Context] it // is used only for token acquisition and is not used to configure the -// *http.Client returned from NewClient. +// [*http.Client] returned from NewClient. // // As a special case, if src is nil, a non-OAuth2 client is returned // using the provided context. This exists to support related OAuth2 @@ -356,15 +355,19 @@ func NewClient(ctx context.Context, src TokenSource) *http.Client { if src == nil { return internal.ContextClient(ctx) } + cc := internal.ContextClient(ctx) return &http.Client{ Transport: &Transport{ - Base: internal.ContextClient(ctx).Transport, + Base: cc.Transport, Source: ReuseTokenSource(nil, src), }, + CheckRedirect: cc.CheckRedirect, + Jar: cc.Jar, + Timeout: cc.Timeout, } } -// ReuseTokenSource returns a TokenSource which repeatedly returns the +// ReuseTokenSource returns a [TokenSource] which repeatedly returns the // same token as long as it's valid, starting with t. // When its cached token is invalid, a new token is obtained from src. // @@ -372,10 +375,10 @@ func NewClient(ctx context.Context, src TokenSource) *http.Client { // (such as a file on disk) between runs of a program, rather than // obtaining new tokens unnecessarily. // -// The initial token t may be nil, in which case the TokenSource is +// The initial token t may be nil, in which case the [TokenSource] is // wrapped in a caching version if it isn't one already. This also // means it's always safe to wrap ReuseTokenSource around any other -// TokenSource without adverse effects. +// [TokenSource] without adverse effects. func ReuseTokenSource(t *Token, src TokenSource) TokenSource { // Don't wrap a reuseTokenSource in itself. That would work, // but cause an unnecessary number of mutex operations. @@ -393,8 +396,8 @@ func ReuseTokenSource(t *Token, src TokenSource) TokenSource { } } -// ReuseTokenSourceWithExpiry returns a TokenSource that acts in the same manner as the -// TokenSource returned by ReuseTokenSource, except the expiry buffer is +// ReuseTokenSourceWithExpiry returns a [TokenSource] that acts in the same manner as the +// [TokenSource] returned by [ReuseTokenSource], except the expiry buffer is // configurable. The expiration time of a token is calculated as // t.Expiry.Add(-earlyExpiry). func ReuseTokenSourceWithExpiry(t *Token, src TokenSource, earlyExpiry time.Duration) TokenSource { diff --git a/vendor/golang.org/x/oauth2/pkce.go b/vendor/golang.org/x/oauth2/pkce.go index 50593b6dfe..cea8374d51 100644 --- a/vendor/golang.org/x/oauth2/pkce.go +++ b/vendor/golang.org/x/oauth2/pkce.go @@ -1,6 +1,7 @@ // Copyright 2023 The Go Authors. All rights reserved. // Use of this source code is governed by a BSD-style // license that can be found in the LICENSE file. + package oauth2 import ( @@ -20,9 +21,9 @@ const ( // This follows recommendations in RFC 7636. // // A fresh verifier should be generated for each authorization. -// S256ChallengeOption(verifier) should then be passed to Config.AuthCodeURL -// (or Config.DeviceAccess) and VerifierOption(verifier) to Config.Exchange -// (or Config.DeviceAccessToken). +// The resulting verifier should be passed to [Config.AuthCodeURL] or [Config.DeviceAuth] +// with [S256ChallengeOption], and to [Config.Exchange] or [Config.DeviceAccessToken] +// with [VerifierOption]. func GenerateVerifier() string { // "RECOMMENDED that the output of a suitable random number generator be // used to create a 32-octet sequence. The octet sequence is then @@ -36,22 +37,22 @@ func GenerateVerifier() string { return base64.RawURLEncoding.EncodeToString(data) } -// VerifierOption returns a PKCE code verifier AuthCodeOption. It should be -// passed to Config.Exchange or Config.DeviceAccessToken only. +// VerifierOption returns a PKCE code verifier [AuthCodeOption]. It should only be +// passed to [Config.Exchange] or [Config.DeviceAccessToken]. func VerifierOption(verifier string) AuthCodeOption { return setParam{k: codeVerifierKey, v: verifier} } // S256ChallengeFromVerifier returns a PKCE code challenge derived from verifier with method S256. // -// Prefer to use S256ChallengeOption where possible. +// Prefer to use [S256ChallengeOption] where possible. func S256ChallengeFromVerifier(verifier string) string { sha := sha256.Sum256([]byte(verifier)) return base64.RawURLEncoding.EncodeToString(sha[:]) } // S256ChallengeOption derives a PKCE code challenge derived from verifier with -// method S256. It should be passed to Config.AuthCodeURL or Config.DeviceAccess +// method S256. It should be passed to [Config.AuthCodeURL] or [Config.DeviceAuth] // only. func S256ChallengeOption(verifier string) AuthCodeOption { return challengeOption{ diff --git a/vendor/golang.org/x/oauth2/token.go b/vendor/golang.org/x/oauth2/token.go index 109997d77c..239ec32962 100644 --- a/vendor/golang.org/x/oauth2/token.go +++ b/vendor/golang.org/x/oauth2/token.go @@ -44,7 +44,7 @@ type Token struct { // Expiry is the optional expiration time of the access token. // - // If zero, TokenSource implementations will reuse the same + // If zero, [TokenSource] implementations will reuse the same // token forever and RefreshToken or equivalent // mechanisms for that TokenSource will not be used. Expiry time.Time `json:"expiry,omitempty"` @@ -58,7 +58,7 @@ type Token struct { // raw optionally contains extra metadata from the server // when updating a token. - raw interface{} + raw any // expiryDelta is used to calculate when a token is considered // expired, by subtracting from Expiry. If zero, defaultExpiryDelta @@ -86,16 +86,16 @@ func (t *Token) Type() string { // SetAuthHeader sets the Authorization header to r using the access // token in t. // -// This method is unnecessary when using Transport or an HTTP Client +// This method is unnecessary when using [Transport] or an HTTP Client // returned by this package. func (t *Token) SetAuthHeader(r *http.Request) { r.Header.Set("Authorization", t.Type()+" "+t.AccessToken) } -// WithExtra returns a new Token that's a clone of t, but using the +// WithExtra returns a new [Token] that's a clone of t, but using the // provided raw extra map. This is only intended for use by packages // implementing derivative OAuth2 flows. -func (t *Token) WithExtra(extra interface{}) *Token { +func (t *Token) WithExtra(extra any) *Token { t2 := new(Token) *t2 = *t t2.raw = extra @@ -105,8 +105,8 @@ func (t *Token) WithExtra(extra interface{}) *Token { // Extra returns an extra field. // Extra fields are key-value pairs returned by the server as a // part of the token retrieval response. -func (t *Token) Extra(key string) interface{} { - if raw, ok := t.raw.(map[string]interface{}); ok { +func (t *Token) Extra(key string) any { + if raw, ok := t.raw.(map[string]any); ok { return raw[key] } @@ -163,13 +163,14 @@ func tokenFromInternal(t *internal.Token) *Token { TokenType: t.TokenType, RefreshToken: t.RefreshToken, Expiry: t.Expiry, + ExpiresIn: t.ExpiresIn, raw: t.Raw, } } // retrieveToken takes a *Config and uses that to retrieve an *internal.Token. // This token is then mapped from *internal.Token into an *oauth2.Token which is returned along -// with an error.. +// with an error. func retrieveToken(ctx context.Context, c *Config, v url.Values) (*Token, error) { tk, err := internal.RetrieveToken(ctx, c.ClientID, c.ClientSecret, c.Endpoint.TokenURL, v, internal.AuthStyle(c.Endpoint.AuthStyle), c.authStyleCache.Get()) if err != nil { diff --git a/vendor/golang.org/x/oauth2/transport.go b/vendor/golang.org/x/oauth2/transport.go index 90657915fb..8bbebbac9e 100644 --- a/vendor/golang.org/x/oauth2/transport.go +++ b/vendor/golang.org/x/oauth2/transport.go @@ -11,12 +11,12 @@ import ( "sync" ) -// Transport is an http.RoundTripper that makes OAuth 2.0 HTTP requests, -// wrapping a base RoundTripper and adding an Authorization header -// with a token from the supplied Sources. +// Transport is an [http.RoundTripper] that makes OAuth 2.0 HTTP requests, +// wrapping a base [http.RoundTripper] and adding an Authorization header +// with a token from the supplied [TokenSource]. // // Transport is a low-level mechanism. Most code will use the -// higher-level Config.Client method instead. +// higher-level [Config.Client] method instead. type Transport struct { // Source supplies the token to add to outgoing requests' // Authorization headers. @@ -47,7 +47,7 @@ func (t *Transport) RoundTrip(req *http.Request) (*http.Response, error) { return nil, err } - req2 := cloneRequest(req) // per RoundTripper contract + req2 := req.Clone(req.Context()) token.SetAuthHeader(req2) // req.Body is assumed to be closed by the base RoundTripper. @@ -73,17 +73,3 @@ func (t *Transport) base() http.RoundTripper { } return http.DefaultTransport } - -// cloneRequest returns a clone of the provided *http.Request. -// The clone is a shallow copy of the struct and its Header map. -func cloneRequest(r *http.Request) *http.Request { - // shallow copy of the struct - r2 := new(http.Request) - *r2 = *r - // deep copy of the Header - r2.Header = make(http.Header, len(r.Header)) - for k, s := range r.Header { - r2.Header[k] = append([]string(nil), s...) - } - return r2 -} diff --git a/vendor/golang.org/x/sync/errgroup/errgroup.go b/vendor/golang.org/x/sync/errgroup/errgroup.go index cfafed5b54..cb6bb9ad3b 100644 --- a/vendor/golang.org/x/sync/errgroup/errgroup.go +++ b/vendor/golang.org/x/sync/errgroup/errgroup.go @@ -76,10 +76,8 @@ func (g *Group) Wait() error { } // Go calls the given function in a new goroutine. -// The first call to Go must happen before a Wait. -// It blocks until the new goroutine can be added without the number of -// active goroutines in the group exceeding the configured limit. // +// The first call to Go must happen before a Wait. // It blocks until the new goroutine can be added without the number of // goroutines in the group exceeding the configured limit. // @@ -185,8 +183,9 @@ type PanicError struct { } func (p PanicError) Error() string { - // A Go Error method conventionally does not include a stack dump, so omit it - // here. (Callers who care can extract it from the Stack field.) + if len(p.Stack) > 0 { + return fmt.Sprintf("recovered from errgroup.Group: %v\n%s", p.Recovered, p.Stack) + } return fmt.Sprintf("recovered from errgroup.Group: %v", p.Recovered) } diff --git a/vendor/golang.org/x/sys/windows/registry/key.go b/vendor/golang.org/x/sys/windows/registry/key.go new file mode 100644 index 0000000000..39aeeb644f --- /dev/null +++ b/vendor/golang.org/x/sys/windows/registry/key.go @@ -0,0 +1,214 @@ +// Copyright 2015 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +//go:build windows + +// Package registry provides access to the Windows registry. +// +// Here is a simple example, opening a registry key and reading a string value from it. +// +// k, err := registry.OpenKey(registry.LOCAL_MACHINE, `SOFTWARE\Microsoft\Windows NT\CurrentVersion`, registry.QUERY_VALUE) +// if err != nil { +// log.Fatal(err) +// } +// defer k.Close() +// +// s, _, err := k.GetStringValue("SystemRoot") +// if err != nil { +// log.Fatal(err) +// } +// fmt.Printf("Windows system root is %q\n", s) +package registry + +import ( + "io" + "runtime" + "syscall" + "time" +) + +const ( + // Registry key security and access rights. + // See https://msdn.microsoft.com/en-us/library/windows/desktop/ms724878.aspx + // for details. + ALL_ACCESS = 0xf003f + CREATE_LINK = 0x00020 + CREATE_SUB_KEY = 0x00004 + ENUMERATE_SUB_KEYS = 0x00008 + EXECUTE = 0x20019 + NOTIFY = 0x00010 + QUERY_VALUE = 0x00001 + READ = 0x20019 + SET_VALUE = 0x00002 + WOW64_32KEY = 0x00200 + WOW64_64KEY = 0x00100 + WRITE = 0x20006 +) + +// Key is a handle to an open Windows registry key. +// Keys can be obtained by calling OpenKey; there are +// also some predefined root keys such as CURRENT_USER. +// Keys can be used directly in the Windows API. +type Key syscall.Handle + +const ( + // Windows defines some predefined root keys that are always open. + // An application can use these keys as entry points to the registry. + // Normally these keys are used in OpenKey to open new keys, + // but they can also be used anywhere a Key is required. + CLASSES_ROOT = Key(syscall.HKEY_CLASSES_ROOT) + CURRENT_USER = Key(syscall.HKEY_CURRENT_USER) + LOCAL_MACHINE = Key(syscall.HKEY_LOCAL_MACHINE) + USERS = Key(syscall.HKEY_USERS) + CURRENT_CONFIG = Key(syscall.HKEY_CURRENT_CONFIG) + PERFORMANCE_DATA = Key(syscall.HKEY_PERFORMANCE_DATA) +) + +// Close closes open key k. +func (k Key) Close() error { + return syscall.RegCloseKey(syscall.Handle(k)) +} + +// OpenKey opens a new key with path name relative to key k. +// It accepts any open key, including CURRENT_USER and others, +// and returns the new key and an error. +// The access parameter specifies desired access rights to the +// key to be opened. +func OpenKey(k Key, path string, access uint32) (Key, error) { + p, err := syscall.UTF16PtrFromString(path) + if err != nil { + return 0, err + } + var subkey syscall.Handle + err = syscall.RegOpenKeyEx(syscall.Handle(k), p, 0, access, &subkey) + if err != nil { + return 0, err + } + return Key(subkey), nil +} + +// OpenRemoteKey opens a predefined registry key on another +// computer pcname. The key to be opened is specified by k, but +// can only be one of LOCAL_MACHINE, PERFORMANCE_DATA or USERS. +// If pcname is "", OpenRemoteKey returns local computer key. +func OpenRemoteKey(pcname string, k Key) (Key, error) { + var err error + var p *uint16 + if pcname != "" { + p, err = syscall.UTF16PtrFromString(`\\` + pcname) + if err != nil { + return 0, err + } + } + var remoteKey syscall.Handle + err = regConnectRegistry(p, syscall.Handle(k), &remoteKey) + if err != nil { + return 0, err + } + return Key(remoteKey), nil +} + +// ReadSubKeyNames returns the names of subkeys of key k. +// The parameter n controls the number of returned names, +// analogous to the way os.File.Readdirnames works. +func (k Key) ReadSubKeyNames(n int) ([]string, error) { + // RegEnumKeyEx must be called repeatedly and to completion. + // During this time, this goroutine cannot migrate away from + // its current thread. See https://golang.org/issue/49320 and + // https://golang.org/issue/49466. + runtime.LockOSThread() + defer runtime.UnlockOSThread() + + names := make([]string, 0) + // Registry key size limit is 255 bytes and described there: + // https://msdn.microsoft.com/library/windows/desktop/ms724872.aspx + buf := make([]uint16, 256) //plus extra room for terminating zero byte +loopItems: + for i := uint32(0); ; i++ { + if n > 0 { + if len(names) == n { + return names, nil + } + } + l := uint32(len(buf)) + for { + err := syscall.RegEnumKeyEx(syscall.Handle(k), i, &buf[0], &l, nil, nil, nil, nil) + if err == nil { + break + } + if err == syscall.ERROR_MORE_DATA { + // Double buffer size and try again. + l = uint32(2 * len(buf)) + buf = make([]uint16, l) + continue + } + if err == _ERROR_NO_MORE_ITEMS { + break loopItems + } + return names, err + } + names = append(names, syscall.UTF16ToString(buf[:l])) + } + if n > len(names) { + return names, io.EOF + } + return names, nil +} + +// CreateKey creates a key named path under open key k. +// CreateKey returns the new key and a boolean flag that reports +// whether the key already existed. +// The access parameter specifies the access rights for the key +// to be created. +func CreateKey(k Key, path string, access uint32) (newk Key, openedExisting bool, err error) { + var h syscall.Handle + var d uint32 + var pathPointer *uint16 + pathPointer, err = syscall.UTF16PtrFromString(path) + if err != nil { + return 0, false, err + } + err = regCreateKeyEx(syscall.Handle(k), pathPointer, + 0, nil, _REG_OPTION_NON_VOLATILE, access, nil, &h, &d) + if err != nil { + return 0, false, err + } + return Key(h), d == _REG_OPENED_EXISTING_KEY, nil +} + +// DeleteKey deletes the subkey path of key k and its values. +func DeleteKey(k Key, path string) error { + pathPointer, err := syscall.UTF16PtrFromString(path) + if err != nil { + return err + } + return regDeleteKey(syscall.Handle(k), pathPointer) +} + +// A KeyInfo describes the statistics of a key. It is returned by Stat. +type KeyInfo struct { + SubKeyCount uint32 + MaxSubKeyLen uint32 // size of the key's subkey with the longest name, in Unicode characters, not including the terminating zero byte + ValueCount uint32 + MaxValueNameLen uint32 // size of the key's longest value name, in Unicode characters, not including the terminating zero byte + MaxValueLen uint32 // longest data component among the key's values, in bytes + lastWriteTime syscall.Filetime +} + +// ModTime returns the key's last write time. +func (ki *KeyInfo) ModTime() time.Time { + return time.Unix(0, ki.lastWriteTime.Nanoseconds()) +} + +// Stat retrieves information about the open key k. +func (k Key) Stat() (*KeyInfo, error) { + var ki KeyInfo + err := syscall.RegQueryInfoKey(syscall.Handle(k), nil, nil, nil, + &ki.SubKeyCount, &ki.MaxSubKeyLen, nil, &ki.ValueCount, + &ki.MaxValueNameLen, &ki.MaxValueLen, nil, &ki.lastWriteTime) + if err != nil { + return nil, err + } + return &ki, nil +} diff --git a/vendor/golang.org/x/sys/windows/registry/mksyscall.go b/vendor/golang.org/x/sys/windows/registry/mksyscall.go new file mode 100644 index 0000000000..bbf86ccf0c --- /dev/null +++ b/vendor/golang.org/x/sys/windows/registry/mksyscall.go @@ -0,0 +1,9 @@ +// Copyright 2015 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +//go:build generate + +package registry + +//go:generate go run golang.org/x/sys/windows/mkwinsyscall -output zsyscall_windows.go syscall.go diff --git a/vendor/golang.org/x/sys/windows/registry/syscall.go b/vendor/golang.org/x/sys/windows/registry/syscall.go new file mode 100644 index 0000000000..f533091c19 --- /dev/null +++ b/vendor/golang.org/x/sys/windows/registry/syscall.go @@ -0,0 +1,32 @@ +// Copyright 2015 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +//go:build windows + +package registry + +import "syscall" + +const ( + _REG_OPTION_NON_VOLATILE = 0 + + _REG_CREATED_NEW_KEY = 1 + _REG_OPENED_EXISTING_KEY = 2 + + _ERROR_NO_MORE_ITEMS syscall.Errno = 259 +) + +func LoadRegLoadMUIString() error { + return procRegLoadMUIStringW.Find() +} + +//sys regCreateKeyEx(key syscall.Handle, subkey *uint16, reserved uint32, class *uint16, options uint32, desired uint32, sa *syscall.SecurityAttributes, result *syscall.Handle, disposition *uint32) (regerrno error) = advapi32.RegCreateKeyExW +//sys regDeleteKey(key syscall.Handle, subkey *uint16) (regerrno error) = advapi32.RegDeleteKeyW +//sys regSetValueEx(key syscall.Handle, valueName *uint16, reserved uint32, vtype uint32, buf *byte, bufsize uint32) (regerrno error) = advapi32.RegSetValueExW +//sys regEnumValue(key syscall.Handle, index uint32, name *uint16, nameLen *uint32, reserved *uint32, valtype *uint32, buf *byte, buflen *uint32) (regerrno error) = advapi32.RegEnumValueW +//sys regDeleteValue(key syscall.Handle, name *uint16) (regerrno error) = advapi32.RegDeleteValueW +//sys regLoadMUIString(key syscall.Handle, name *uint16, buf *uint16, buflen uint32, buflenCopied *uint32, flags uint32, dir *uint16) (regerrno error) = advapi32.RegLoadMUIStringW +//sys regConnectRegistry(machinename *uint16, key syscall.Handle, result *syscall.Handle) (regerrno error) = advapi32.RegConnectRegistryW + +//sys expandEnvironmentStrings(src *uint16, dst *uint16, size uint32) (n uint32, err error) = kernel32.ExpandEnvironmentStringsW diff --git a/vendor/golang.org/x/sys/windows/registry/value.go b/vendor/golang.org/x/sys/windows/registry/value.go new file mode 100644 index 0000000000..a1bcbb2362 --- /dev/null +++ b/vendor/golang.org/x/sys/windows/registry/value.go @@ -0,0 +1,390 @@ +// Copyright 2015 The Go Authors. All rights reserved. +// Use of this source code is governed by a BSD-style +// license that can be found in the LICENSE file. + +//go:build windows + +package registry + +import ( + "errors" + "io" + "syscall" + "unicode/utf16" + "unsafe" +) + +const ( + // Registry value types. + NONE = 0 + SZ = 1 + EXPAND_SZ = 2 + BINARY = 3 + DWORD = 4 + DWORD_BIG_ENDIAN = 5 + LINK = 6 + MULTI_SZ = 7 + RESOURCE_LIST = 8 + FULL_RESOURCE_DESCRIPTOR = 9 + RESOURCE_REQUIREMENTS_LIST = 10 + QWORD = 11 +) + +var ( + // ErrShortBuffer is returned when the buffer was too short for the operation. + ErrShortBuffer = syscall.ERROR_MORE_DATA + + // ErrNotExist is returned when a registry key or value does not exist. + ErrNotExist = syscall.ERROR_FILE_NOT_FOUND + + // ErrUnexpectedType is returned by Get*Value when the value's type was unexpected. + ErrUnexpectedType = errors.New("unexpected key value type") +) + +// GetValue retrieves the type and data for the specified value associated +// with an open key k. It fills up buffer buf and returns the retrieved +// byte count n. If buf is too small to fit the stored value it returns +// ErrShortBuffer error along with the required buffer size n. +// If no buffer is provided, it returns true and actual buffer size n. +// If no buffer is provided, GetValue returns the value's type only. +// If the value does not exist, the error returned is ErrNotExist. +// +// GetValue is a low level function. If value's type is known, use the appropriate +// Get*Value function instead. +func (k Key) GetValue(name string, buf []byte) (n int, valtype uint32, err error) { + pname, err := syscall.UTF16PtrFromString(name) + if err != nil { + return 0, 0, err + } + var pbuf *byte + if len(buf) > 0 { + pbuf = (*byte)(unsafe.Pointer(&buf[0])) + } + l := uint32(len(buf)) + err = syscall.RegQueryValueEx(syscall.Handle(k), pname, nil, &valtype, pbuf, &l) + if err != nil { + return int(l), valtype, err + } + return int(l), valtype, nil +} + +func (k Key) getValue(name string, buf []byte) (data []byte, valtype uint32, err error) { + p, err := syscall.UTF16PtrFromString(name) + if err != nil { + return nil, 0, err + } + var t uint32 + n := uint32(len(buf)) + for { + err = syscall.RegQueryValueEx(syscall.Handle(k), p, nil, &t, (*byte)(unsafe.Pointer(&buf[0])), &n) + if err == nil { + return buf[:n], t, nil + } + if err != syscall.ERROR_MORE_DATA { + return nil, 0, err + } + if n <= uint32(len(buf)) { + return nil, 0, err + } + buf = make([]byte, n) + } +} + +// GetStringValue retrieves the string value for the specified +// value name associated with an open key k. It also returns the value's type. +// If value does not exist, GetStringValue returns ErrNotExist. +// If value is not SZ or EXPAND_SZ, it will return the correct value +// type and ErrUnexpectedType. +func (k Key) GetStringValue(name string) (val string, valtype uint32, err error) { + data, typ, err2 := k.getValue(name, make([]byte, 64)) + if err2 != nil { + return "", typ, err2 + } + switch typ { + case SZ, EXPAND_SZ: + default: + return "", typ, ErrUnexpectedType + } + if len(data) == 0 { + return "", typ, nil + } + u := (*[1 << 29]uint16)(unsafe.Pointer(&data[0]))[: len(data)/2 : len(data)/2] + return syscall.UTF16ToString(u), typ, nil +} + +// GetMUIStringValue retrieves the localized string value for +// the specified value name associated with an open key k. +// If the value name doesn't exist or the localized string value +// can't be resolved, GetMUIStringValue returns ErrNotExist. +// GetMUIStringValue panics if the system doesn't support +// regLoadMUIString; use LoadRegLoadMUIString to check if +// regLoadMUIString is supported before calling this function. +func (k Key) GetMUIStringValue(name string) (string, error) { + pname, err := syscall.UTF16PtrFromString(name) + if err != nil { + return "", err + } + + buf := make([]uint16, 1024) + var buflen uint32 + var pdir *uint16 + + err = regLoadMUIString(syscall.Handle(k), pname, &buf[0], uint32(len(buf)), &buflen, 0, pdir) + if err == syscall.ERROR_FILE_NOT_FOUND { // Try fallback path + + // Try to resolve the string value using the system directory as + // a DLL search path; this assumes the string value is of the form + // @[path]\dllname,-strID but with no path given, e.g. @tzres.dll,-320. + + // This approach works with tzres.dll but may have to be revised + // in the future to allow callers to provide custom search paths. + + var s string + s, err = ExpandString("%SystemRoot%\\system32\\") + if err != nil { + return "", err + } + pdir, err = syscall.UTF16PtrFromString(s) + if err != nil { + return "", err + } + + err = regLoadMUIString(syscall.Handle(k), pname, &buf[0], uint32(len(buf)), &buflen, 0, pdir) + } + + for err == syscall.ERROR_MORE_DATA { // Grow buffer if needed + if buflen <= uint32(len(buf)) { + break // Buffer not growing, assume race; break + } + buf = make([]uint16, buflen) + err = regLoadMUIString(syscall.Handle(k), pname, &buf[0], uint32(len(buf)), &buflen, 0, pdir) + } + + if err != nil { + return "", err + } + + return syscall.UTF16ToString(buf), nil +} + +// ExpandString expands environment-variable strings and replaces +// them with the values defined for the current user. +// Use ExpandString to expand EXPAND_SZ strings. +func ExpandString(value string) (string, error) { + if value == "" { + return "", nil + } + p, err := syscall.UTF16PtrFromString(value) + if err != nil { + return "", err + } + r := make([]uint16, 100) + for { + n, err := expandEnvironmentStrings(p, &r[0], uint32(len(r))) + if err != nil { + return "", err + } + if n <= uint32(len(r)) { + return syscall.UTF16ToString(r[:n]), nil + } + r = make([]uint16, n) + } +} + +// GetStringsValue retrieves the []string value for the specified +// value name associated with an open key k. It also returns the value's type. +// If value does not exist, GetStringsValue returns ErrNotExist. +// If value is not MULTI_SZ, it will return the correct value +// type and ErrUnexpectedType. +func (k Key) GetStringsValue(name string) (val []string, valtype uint32, err error) { + data, typ, err2 := k.getValue(name, make([]byte, 64)) + if err2 != nil { + return nil, typ, err2 + } + if typ != MULTI_SZ { + return nil, typ, ErrUnexpectedType + } + if len(data) == 0 { + return nil, typ, nil + } + p := (*[1 << 29]uint16)(unsafe.Pointer(&data[0]))[: len(data)/2 : len(data)/2] + if len(p) == 0 { + return nil, typ, nil + } + if p[len(p)-1] == 0 { + p = p[:len(p)-1] // remove terminating null + } + val = make([]string, 0, 5) + from := 0 + for i, c := range p { + if c == 0 { + val = append(val, string(utf16.Decode(p[from:i]))) + from = i + 1 + } + } + return val, typ, nil +} + +// GetIntegerValue retrieves the integer value for the specified +// value name associated with an open key k. It also returns the value's type. +// If value does not exist, GetIntegerValue returns ErrNotExist. +// If value is not DWORD or QWORD, it will return the correct value +// type and ErrUnexpectedType. +func (k Key) GetIntegerValue(name string) (val uint64, valtype uint32, err error) { + data, typ, err2 := k.getValue(name, make([]byte, 8)) + if err2 != nil { + return 0, typ, err2 + } + switch typ { + case DWORD: + if len(data) != 4 { + return 0, typ, errors.New("DWORD value is not 4 bytes long") + } + var val32 uint32 + copy((*[4]byte)(unsafe.Pointer(&val32))[:], data) + return uint64(val32), DWORD, nil + case QWORD: + if len(data) != 8 { + return 0, typ, errors.New("QWORD value is not 8 bytes long") + } + copy((*[8]byte)(unsafe.Pointer(&val))[:], data) + return val, QWORD, nil + default: + return 0, typ, ErrUnexpectedType + } +} + +// GetBinaryValue retrieves the binary value for the specified +// value name associated with an open key k. It also returns the value's type. +// If value does not exist, GetBinaryValue returns ErrNotExist. +// If value is not BINARY, it will return the correct value +// type and ErrUnexpectedType. +func (k Key) GetBinaryValue(name string) (val []byte, valtype uint32, err error) { + data, typ, err2 := k.getValue(name, make([]byte, 64)) + if err2 != nil { + return nil, typ, err2 + } + if typ != BINARY { + return nil, typ, ErrUnexpectedType + } + return data, typ, nil +} + +func (k Key) setValue(name string, valtype uint32, data []byte) error { + p, err := syscall.UTF16PtrFromString(name) + if err != nil { + return err + } + if len(data) == 0 { + return regSetValueEx(syscall.Handle(k), p, 0, valtype, nil, 0) + } + return regSetValueEx(syscall.Handle(k), p, 0, valtype, &data[0], uint32(len(data))) +} + +// SetDWordValue sets the data and type of a name value +// under key k to value and DWORD. +func (k Key) SetDWordValue(name string, value uint32) error { + return k.setValue(name, DWORD, (*[4]byte)(unsafe.Pointer(&value))[:]) +} + +// SetQWordValue sets the data and type of a name value +// under key k to value and QWORD. +func (k Key) SetQWordValue(name string, value uint64) error { + return k.setValue(name, QWORD, (*[8]byte)(unsafe.Pointer(&value))[:]) +} + +func (k Key) setStringValue(name string, valtype uint32, value string) error { + v, err := syscall.UTF16FromString(value) + if err != nil { + return err + } + buf := (*[1 << 29]byte)(unsafe.Pointer(&v[0]))[: len(v)*2 : len(v)*2] + return k.setValue(name, valtype, buf) +} + +// SetStringValue sets the data and type of a name value +// under key k to value and SZ. The value must not contain a zero byte. +func (k Key) SetStringValue(name, value string) error { + return k.setStringValue(name, SZ, value) +} + +// SetExpandStringValue sets the data and type of a name value +// under key k to value and EXPAND_SZ. The value must not contain a zero byte. +func (k Key) SetExpandStringValue(name, value string) error { + return k.setStringValue(name, EXPAND_SZ, value) +} + +// SetStringsValue sets the data and type of a name value +// under key k to value and MULTI_SZ. The value strings +// must not contain a zero byte. +func (k Key) SetStringsValue(name string, value []string) error { + ss := "" + for _, s := range value { + for i := 0; i < len(s); i++ { + if s[i] == 0 { + return errors.New("string cannot have 0 inside") + } + } + ss += s + "\x00" + } + v := utf16.Encode([]rune(ss + "\x00")) + buf := (*[1 << 29]byte)(unsafe.Pointer(&v[0]))[: len(v)*2 : len(v)*2] + return k.setValue(name, MULTI_SZ, buf) +} + +// SetBinaryValue sets the data and type of a name value +// under key k to value and BINARY. +func (k Key) SetBinaryValue(name string, value []byte) error { + return k.setValue(name, BINARY, value) +} + +// DeleteValue removes a named value from the key k. +func (k Key) DeleteValue(name string) error { + namePointer, err := syscall.UTF16PtrFromString(name) + if err != nil { + return err + } + return regDeleteValue(syscall.Handle(k), namePointer) +} + +// ReadValueNames returns the value names of key k. +// The parameter n controls the number of returned names, +// analogous to the way os.File.Readdirnames works. +func (k Key) ReadValueNames(n int) ([]string, error) { + ki, err := k.Stat() + if err != nil { + return nil, err + } + names := make([]string, 0, ki.ValueCount) + buf := make([]uint16, ki.MaxValueNameLen+1) // extra room for terminating null character +loopItems: + for i := uint32(0); ; i++ { + if n > 0 { + if len(names) == n { + return names, nil + } + } + l := uint32(len(buf)) + for { + err := regEnumValue(syscall.Handle(k), i, &buf[0], &l, nil, nil, nil, nil) + if err == nil { + break + } + if err == syscall.ERROR_MORE_DATA { + // Double buffer size and try again. + l = uint32(2 * len(buf)) + buf = make([]uint16, l) + continue + } + if err == _ERROR_NO_MORE_ITEMS { + break loopItems + } + return names, err + } + names = append(names, syscall.UTF16ToString(buf[:l])) + } + if n > len(names) { + return names, io.EOF + } + return names, nil +} diff --git a/vendor/golang.org/x/sys/windows/registry/zsyscall_windows.go b/vendor/golang.org/x/sys/windows/registry/zsyscall_windows.go new file mode 100644 index 0000000000..fc1835d8a2 --- /dev/null +++ b/vendor/golang.org/x/sys/windows/registry/zsyscall_windows.go @@ -0,0 +1,117 @@ +// Code generated by 'go generate'; DO NOT EDIT. + +package registry + +import ( + "syscall" + "unsafe" + + "golang.org/x/sys/windows" +) + +var _ unsafe.Pointer + +// Do the interface allocations only once for common +// Errno values. +const ( + errnoERROR_IO_PENDING = 997 +) + +var ( + errERROR_IO_PENDING error = syscall.Errno(errnoERROR_IO_PENDING) + errERROR_EINVAL error = syscall.EINVAL +) + +// errnoErr returns common boxed Errno values, to prevent +// allocations at runtime. +func errnoErr(e syscall.Errno) error { + switch e { + case 0: + return errERROR_EINVAL + case errnoERROR_IO_PENDING: + return errERROR_IO_PENDING + } + // TODO: add more here, after collecting data on the common + // error values see on Windows. (perhaps when running + // all.bat?) + return e +} + +var ( + modadvapi32 = windows.NewLazySystemDLL("advapi32.dll") + modkernel32 = windows.NewLazySystemDLL("kernel32.dll") + + procRegConnectRegistryW = modadvapi32.NewProc("RegConnectRegistryW") + procRegCreateKeyExW = modadvapi32.NewProc("RegCreateKeyExW") + procRegDeleteKeyW = modadvapi32.NewProc("RegDeleteKeyW") + procRegDeleteValueW = modadvapi32.NewProc("RegDeleteValueW") + procRegEnumValueW = modadvapi32.NewProc("RegEnumValueW") + procRegLoadMUIStringW = modadvapi32.NewProc("RegLoadMUIStringW") + procRegSetValueExW = modadvapi32.NewProc("RegSetValueExW") + procExpandEnvironmentStringsW = modkernel32.NewProc("ExpandEnvironmentStringsW") +) + +func regConnectRegistry(machinename *uint16, key syscall.Handle, result *syscall.Handle) (regerrno error) { + r0, _, _ := syscall.Syscall(procRegConnectRegistryW.Addr(), 3, uintptr(unsafe.Pointer(machinename)), uintptr(key), uintptr(unsafe.Pointer(result))) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regCreateKeyEx(key syscall.Handle, subkey *uint16, reserved uint32, class *uint16, options uint32, desired uint32, sa *syscall.SecurityAttributes, result *syscall.Handle, disposition *uint32) (regerrno error) { + r0, _, _ := syscall.Syscall9(procRegCreateKeyExW.Addr(), 9, uintptr(key), uintptr(unsafe.Pointer(subkey)), uintptr(reserved), uintptr(unsafe.Pointer(class)), uintptr(options), uintptr(desired), uintptr(unsafe.Pointer(sa)), uintptr(unsafe.Pointer(result)), uintptr(unsafe.Pointer(disposition))) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regDeleteKey(key syscall.Handle, subkey *uint16) (regerrno error) { + r0, _, _ := syscall.Syscall(procRegDeleteKeyW.Addr(), 2, uintptr(key), uintptr(unsafe.Pointer(subkey)), 0) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regDeleteValue(key syscall.Handle, name *uint16) (regerrno error) { + r0, _, _ := syscall.Syscall(procRegDeleteValueW.Addr(), 2, uintptr(key), uintptr(unsafe.Pointer(name)), 0) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regEnumValue(key syscall.Handle, index uint32, name *uint16, nameLen *uint32, reserved *uint32, valtype *uint32, buf *byte, buflen *uint32) (regerrno error) { + r0, _, _ := syscall.Syscall9(procRegEnumValueW.Addr(), 8, uintptr(key), uintptr(index), uintptr(unsafe.Pointer(name)), uintptr(unsafe.Pointer(nameLen)), uintptr(unsafe.Pointer(reserved)), uintptr(unsafe.Pointer(valtype)), uintptr(unsafe.Pointer(buf)), uintptr(unsafe.Pointer(buflen)), 0) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regLoadMUIString(key syscall.Handle, name *uint16, buf *uint16, buflen uint32, buflenCopied *uint32, flags uint32, dir *uint16) (regerrno error) { + r0, _, _ := syscall.Syscall9(procRegLoadMUIStringW.Addr(), 7, uintptr(key), uintptr(unsafe.Pointer(name)), uintptr(unsafe.Pointer(buf)), uintptr(buflen), uintptr(unsafe.Pointer(buflenCopied)), uintptr(flags), uintptr(unsafe.Pointer(dir)), 0, 0) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func regSetValueEx(key syscall.Handle, valueName *uint16, reserved uint32, vtype uint32, buf *byte, bufsize uint32) (regerrno error) { + r0, _, _ := syscall.Syscall6(procRegSetValueExW.Addr(), 6, uintptr(key), uintptr(unsafe.Pointer(valueName)), uintptr(reserved), uintptr(vtype), uintptr(unsafe.Pointer(buf)), uintptr(bufsize)) + if r0 != 0 { + regerrno = syscall.Errno(r0) + } + return +} + +func expandEnvironmentStrings(src *uint16, dst *uint16, size uint32) (n uint32, err error) { + r0, _, e1 := syscall.Syscall(procExpandEnvironmentStringsW.Addr(), 3, uintptr(unsafe.Pointer(src)), uintptr(unsafe.Pointer(dst)), uintptr(size)) + n = uint32(r0) + if n == 0 { + err = errnoErr(e1) + } + return +} diff --git a/vendor/golang.org/x/tools/go/ast/astutil/enclosing.go b/vendor/golang.org/x/tools/go/ast/astutil/enclosing.go index 6e34df4613..89f5097be0 100644 --- a/vendor/golang.org/x/tools/go/ast/astutil/enclosing.go +++ b/vendor/golang.org/x/tools/go/ast/astutil/enclosing.go @@ -207,6 +207,9 @@ func childrenOf(n ast.Node) []ast.Node { return false // no recursion }) + // TODO(adonovan): be more careful about missing (!Pos.Valid) + // tokens in trees produced from invalid input. + // Then add fake Nodes for bare tokens. switch n := n.(type) { case *ast.ArrayType: @@ -226,9 +229,12 @@ func childrenOf(n ast.Node) []ast.Node { children = append(children, tok(n.OpPos, len(n.Op.String()))) case *ast.BlockStmt: - children = append(children, - tok(n.Lbrace, len("{")), - tok(n.Rbrace, len("}"))) + if n.Lbrace.IsValid() { + children = append(children, tok(n.Lbrace, len("{"))) + } + if n.Rbrace.IsValid() { + children = append(children, tok(n.Rbrace, len("}"))) + } case *ast.BranchStmt: children = append(children, @@ -304,9 +310,12 @@ func childrenOf(n ast.Node) []ast.Node { // TODO(adonovan): Field.{Doc,Comment,Tag}? case *ast.FieldList: - children = append(children, - tok(n.Opening, len("(")), // or len("[") - tok(n.Closing, len(")"))) // or len("]") + if n.Opening.IsValid() { + children = append(children, tok(n.Opening, len("("))) + } + if n.Closing.IsValid() { + children = append(children, tok(n.Closing, len(")"))) + } case *ast.File: // TODO test: Doc diff --git a/vendor/golang.org/x/tools/go/ast/astutil/rewrite.go b/vendor/golang.org/x/tools/go/ast/astutil/rewrite.go index 5c8dbbb7a3..4ad0549304 100644 --- a/vendor/golang.org/x/tools/go/ast/astutil/rewrite.go +++ b/vendor/golang.org/x/tools/go/ast/astutil/rewrite.go @@ -67,6 +67,10 @@ var abort = new(int) // singleton, to signal termination of Apply // // The methods Replace, Delete, InsertBefore, and InsertAfter // can be used to change the AST without disrupting Apply. +// +// This type is not to be confused with [inspector.Cursor] from +// package [golang.org/x/tools/go/ast/inspector], which provides +// stateless navigation of immutable syntax trees. type Cursor struct { parent ast.Node name string diff --git a/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go b/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go index 16ed3c1780..d3c2913bef 100644 --- a/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go +++ b/vendor/golang.org/x/tools/go/types/objectpath/objectpath.go @@ -603,7 +603,7 @@ func Object(pkg *types.Package, p Path) (types.Object, error) { type hasTypeParams interface { TypeParams() *types.TypeParamList } - // abstraction of *types.{Named,TypeParam} + // abstraction of *types.{Alias,Named,TypeParam} type hasObj interface { Obj() *types.TypeName } diff --git a/vendor/golang.org/x/tools/internal/imports/fix.go b/vendor/golang.org/x/tools/internal/imports/fix.go index 89b96381cd..50b6ca51a6 100644 --- a/vendor/golang.org/x/tools/internal/imports/fix.go +++ b/vendor/golang.org/x/tools/internal/imports/fix.go @@ -27,12 +27,13 @@ import ( "unicode" "unicode/utf8" + "maps" + "golang.org/x/tools/go/ast/astutil" "golang.org/x/tools/internal/event" "golang.org/x/tools/internal/gocommand" "golang.org/x/tools/internal/gopathwalk" "golang.org/x/tools/internal/stdlib" - "maps" ) // importToGroup is a list of functions which map from an import path to @@ -290,8 +291,8 @@ func (p *pass) loadPackageNames(ctx context.Context, imports []*ImportInfo) erro return nil } -// if there is a trailing major version, remove it -func withoutVersion(nm string) string { +// WithoutVersion removes a trailing major version, if there is one. +func WithoutVersion(nm string) string { if v := path.Base(nm); len(v) > 0 && v[0] == 'v' { if _, err := strconv.Atoi(v[1:]); err == nil { // this is, for instance, called with rand/v2 and returns rand @@ -313,7 +314,7 @@ func (p *pass) importIdentifier(imp *ImportInfo) string { } known := p.knownPackages[imp.ImportPath] if known != nil && known.Name != "" { - return withoutVersion(known.Name) + return WithoutVersion(known.Name) } return ImportPathToAssumedName(imp.ImportPath) } diff --git a/vendor/golang.org/x/tools/internal/imports/imports.go b/vendor/golang.org/x/tools/internal/imports/imports.go index 2215a12880..b5f5218b5c 100644 --- a/vendor/golang.org/x/tools/internal/imports/imports.go +++ b/vendor/golang.org/x/tools/internal/imports/imports.go @@ -93,7 +93,7 @@ func FixImports(ctx context.Context, filename string, src []byte, goroot string, // env is needed. func ApplyFixes(fixes []*ImportFix, filename string, src []byte, opt *Options, extraMode parser.Mode) (formatted []byte, err error) { // Don't use parse() -- we don't care about fragments or statement lists - // here, and we need to work with unparseable files. + // here, and we need to work with unparsable files. fileSet := token.NewFileSet() parserMode := parser.SkipObjectResolution if opt.Comments { diff --git a/vendor/golang.org/x/tools/internal/modindex/directories.go b/vendor/golang.org/x/tools/internal/modindex/directories.go index 1e1a02f239..2faa6ce0b8 100644 --- a/vendor/golang.org/x/tools/internal/modindex/directories.go +++ b/vendor/golang.org/x/tools/internal/modindex/directories.go @@ -26,7 +26,7 @@ type directory struct { syms []symbol } -// filterDirs groups the directories by import path, +// byImportPath groups the directories by import path, // sorting the ones with the same import path by semantic version, // most recent first. func byImportPath(dirs []Relpath) (map[string][]*directory, error) { diff --git a/vendor/golang.org/x/tools/internal/modindex/lookup.go b/vendor/golang.org/x/tools/internal/modindex/lookup.go index bd605e0d76..34e3673ff5 100644 --- a/vendor/golang.org/x/tools/internal/modindex/lookup.go +++ b/vendor/golang.org/x/tools/internal/modindex/lookup.go @@ -75,7 +75,7 @@ func (ix *Index) Lookup(pkg, name string, prefix bool) []Candidate { return nil // didn't find the package } var ans []Candidate - // loc is the first entry for this package name, but there may be severeal + // loc is the first entry for this package name, but there may be several for i := loc; i < len(ix.Entries); i++ { e := ix.Entries[i] if e.PkgName != pkg { diff --git a/vendor/golang.org/x/tools/internal/modindex/symbols.go b/vendor/golang.org/x/tools/internal/modindex/symbols.go index b918529d43..31a502c589 100644 --- a/vendor/golang.org/x/tools/internal/modindex/symbols.go +++ b/vendor/golang.org/x/tools/internal/modindex/symbols.go @@ -30,7 +30,7 @@ import ( type symbol struct { pkg string // name of the symbols's package name string // declared name - kind string // T, C, V, or F, follwed by D if deprecated + kind string // T, C, V, or F, followed by D if deprecated sig string // signature information, for F } @@ -110,7 +110,7 @@ func getFileExports(f *ast.File) []symbol { // The only place a $ can occur seems to be in a struct tag, which // can be an arbitrary string literal, and ExprString does not presently // print struct tags. So for this to happen the type of a formal parameter - // has to be a explict struct, e.g. foo(x struct{a int "$"}) and ExprString + // has to be a explicit struct, e.g. foo(x struct{a int "$"}) and ExprString // would have to show the struct tag. Even testing for this case seems // a waste of effort, but let's remember the possibility if strings.Contains(tp, "$") { diff --git a/vendor/golang.org/x/tools/internal/typesinternal/classify_call.go b/vendor/golang.org/x/tools/internal/typesinternal/classify_call.go index 649c82b6be..3db2a135b9 100644 --- a/vendor/golang.org/x/tools/internal/typesinternal/classify_call.go +++ b/vendor/golang.org/x/tools/internal/typesinternal/classify_call.go @@ -65,14 +65,16 @@ func ClassifyCall(info *types.Info, call *ast.CallExpr) CallKind { if info.Types == nil { panic("ClassifyCall: info.Types is nil") } - if info.Types[call.Fun].IsType() { + tv := info.Types[call.Fun] + if tv.IsType() { return CallConversion } + if tv.IsBuiltin() { + return CallBuiltin + } obj := info.Uses[UsedIdent(info, call.Fun)] // Classify the call by the type of the object, if any. switch obj := obj.(type) { - case *types.Builtin: - return CallBuiltin case *types.Func: if interfaceMethod(obj) { return CallInterface diff --git a/vendor/golang.org/x/tools/internal/typesinternal/types.go b/vendor/golang.org/x/tools/internal/typesinternal/types.go index cc244689ef..a5cd7e8dbf 100644 --- a/vendor/golang.org/x/tools/internal/typesinternal/types.go +++ b/vendor/golang.org/x/tools/internal/typesinternal/types.go @@ -69,6 +69,34 @@ func NameRelativeTo(pkg *types.Package) types.Qualifier { } } +// TypeNameFor returns the type name symbol for the specified type, if +// it is a [*types.Alias], [*types.Named], [*types.TypeParam], or a +// [*types.Basic] representing a type. +// +// For all other types, and for Basic types representing a builtin, +// constant, or nil, it returns nil. Be careful not to convert the +// resulting nil pointer to a [types.Object]! +// +// If t is the type of a constant, it may be an "untyped" type, which +// has no TypeName. To access the name of such types (e.g. "untyped +// int"), use [types.Basic.Name]. +func TypeNameFor(t types.Type) *types.TypeName { + switch t := t.(type) { + case *types.Alias: + return t.Obj() + case *types.Named: + return t.Obj() + case *types.TypeParam: + return t.Obj() + case *types.Basic: + // See issues #71886 and #66890 for some history. + if tname, ok := types.Universe.Lookup(t.Name()).(*types.TypeName); ok { + return tname + } + } + return nil +} + // A NamedOrAlias is a [types.Type] that is named (as // defined by the spec) and capable of bearing type parameters: it // abstracts aliases ([types.Alias]) and defined types @@ -77,7 +105,7 @@ func NameRelativeTo(pkg *types.Package) types.Qualifier { // Every type declared by an explicit "type" declaration is a // NamedOrAlias. (Built-in type symbols may additionally // have type [types.Basic], which is not a NamedOrAlias, -// though the spec regards them as "named".) +// though the spec regards them as "named"; see [TypeNameFor].) // // NamedOrAlias cannot expose the Origin method, because // [types.Alias.Origin] and [types.Named.Origin] have different @@ -85,32 +113,15 @@ func NameRelativeTo(pkg *types.Package) types.Qualifier { type NamedOrAlias interface { types.Type Obj() *types.TypeName - // TODO(hxjiang): add method TypeArgs() *types.TypeList after stop supporting go1.22. -} - -// TypeParams is a light shim around t.TypeParams(). -// (go/types.Alias).TypeParams requires >= 1.23. -func TypeParams(t NamedOrAlias) *types.TypeParamList { - switch t := t.(type) { - case *types.Alias: - return aliases.TypeParams(t) - case *types.Named: - return t.TypeParams() - } - return nil + TypeArgs() *types.TypeList + TypeParams() *types.TypeParamList + SetTypeParams(tparams []*types.TypeParam) } -// TypeArgs is a light shim around t.TypeArgs(). -// (go/types.Alias).TypeArgs requires >= 1.23. -func TypeArgs(t NamedOrAlias) *types.TypeList { - switch t := t.(type) { - case *types.Alias: - return aliases.TypeArgs(t) - case *types.Named: - return t.TypeArgs() - } - return nil -} +var ( + _ NamedOrAlias = (*types.Alias)(nil) + _ NamedOrAlias = (*types.Named)(nil) +) // Origin returns the generic type of the Named or Alias type t if it // is instantiated, otherwise it returns t. diff --git a/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go b/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go index f388426b08..d083dde3ed 100644 --- a/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go +++ b/vendor/google.golang.org/genproto/googleapis/api/httpbody/httpbody.pb.go @@ -1,4 +1,4 @@ -// Copyright 2024 Google LLC +// Copyright 2025 Google LLC // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. diff --git a/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go b/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go new file mode 100644 index 0000000000..e017ef0714 --- /dev/null +++ b/vendor/google.golang.org/genproto/googleapis/rpc/errdetails/error_details.pb.go @@ -0,0 +1,1473 @@ +// Copyright 2025 Google LLC +// +// Licensed under the Apache License, Version 2.0 (the "License"); +// you may not use this file except in compliance with the License. +// You may obtain a copy of the License at +// +// http://www.apache.org/licenses/LICENSE-2.0 +// +// Unless required by applicable law or agreed to in writing, software +// distributed under the License is distributed on an "AS IS" BASIS, +// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +// See the License for the specific language governing permissions and +// limitations under the License. + +// Code generated by protoc-gen-go. DO NOT EDIT. +// versions: +// protoc-gen-go v1.26.0 +// protoc v4.24.4 +// source: google/rpc/error_details.proto + +package errdetails + +import ( + reflect "reflect" + sync "sync" + + protoreflect "google.golang.org/protobuf/reflect/protoreflect" + protoimpl "google.golang.org/protobuf/runtime/protoimpl" + durationpb "google.golang.org/protobuf/types/known/durationpb" +) + +const ( + // Verify that this generated code is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(20 - protoimpl.MinVersion) + // Verify that runtime/protoimpl is sufficiently up-to-date. + _ = protoimpl.EnforceVersion(protoimpl.MaxVersion - 20) +) + +// Describes the cause of the error with structured details. +// +// Example of an error when contacting the "pubsub.googleapis.com" API when it +// is not enabled: +// +// { "reason": "API_DISABLED" +// "domain": "googleapis.com" +// "metadata": { +// "resource": "projects/123", +// "service": "pubsub.googleapis.com" +// } +// } +// +// This response indicates that the pubsub.googleapis.com API is not enabled. +// +// Example of an error that is returned when attempting to create a Spanner +// instance in a region that is out of stock: +// +// { "reason": "STOCKOUT" +// "domain": "spanner.googleapis.com", +// "metadata": { +// "availableRegions": "us-central1,us-east2" +// } +// } +type ErrorInfo struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The reason of the error. This is a constant value that identifies the + // proximate cause of the error. Error reasons are unique within a particular + // domain of errors. This should be at most 63 characters and match a + // regular expression of `[A-Z][A-Z0-9_]+[A-Z0-9]`, which represents + // UPPER_SNAKE_CASE. + Reason string `protobuf:"bytes,1,opt,name=reason,proto3" json:"reason,omitempty"` + // The logical grouping to which the "reason" belongs. The error domain + // is typically the registered service name of the tool or product that + // generates the error. Example: "pubsub.googleapis.com". If the error is + // generated by some common infrastructure, the error domain must be a + // globally unique value that identifies the infrastructure. For Google API + // infrastructure, the error domain is "googleapis.com". + Domain string `protobuf:"bytes,2,opt,name=domain,proto3" json:"domain,omitempty"` + // Additional structured details about this error. + // + // Keys must match a regular expression of `[a-z][a-zA-Z0-9-_]+` but should + // ideally be lowerCamelCase. Also, they must be limited to 64 characters in + // length. When identifying the current value of an exceeded limit, the units + // should be contained in the key, not the value. For example, rather than + // `{"instanceLimit": "100/request"}`, should be returned as, + // `{"instanceLimitPerRequest": "100"}`, if the client exceeds the number of + // instances that can be created in a single (batch) request. + Metadata map[string]string `protobuf:"bytes,3,rep,name=metadata,proto3" json:"metadata,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"` +} + +func (x *ErrorInfo) Reset() { + *x = ErrorInfo{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[0] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ErrorInfo) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ErrorInfo) ProtoMessage() {} + +func (x *ErrorInfo) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[0] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ErrorInfo.ProtoReflect.Descriptor instead. +func (*ErrorInfo) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{0} +} + +func (x *ErrorInfo) GetReason() string { + if x != nil { + return x.Reason + } + return "" +} + +func (x *ErrorInfo) GetDomain() string { + if x != nil { + return x.Domain + } + return "" +} + +func (x *ErrorInfo) GetMetadata() map[string]string { + if x != nil { + return x.Metadata + } + return nil +} + +// Describes when the clients can retry a failed request. Clients could ignore +// the recommendation here or retry when this information is missing from error +// responses. +// +// It's always recommended that clients should use exponential backoff when +// retrying. +// +// Clients should wait until `retry_delay` amount of time has passed since +// receiving the error response before retrying. If retrying requests also +// fail, clients should use an exponential backoff scheme to gradually increase +// the delay between retries based on `retry_delay`, until either a maximum +// number of retries have been reached or a maximum retry delay cap has been +// reached. +type RetryInfo struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Clients should wait at least this long between retrying the same request. + RetryDelay *durationpb.Duration `protobuf:"bytes,1,opt,name=retry_delay,json=retryDelay,proto3" json:"retry_delay,omitempty"` +} + +func (x *RetryInfo) Reset() { + *x = RetryInfo{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[1] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *RetryInfo) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*RetryInfo) ProtoMessage() {} + +func (x *RetryInfo) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[1] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use RetryInfo.ProtoReflect.Descriptor instead. +func (*RetryInfo) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{1} +} + +func (x *RetryInfo) GetRetryDelay() *durationpb.Duration { + if x != nil { + return x.RetryDelay + } + return nil +} + +// Describes additional debugging info. +type DebugInfo struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The stack trace entries indicating where the error occurred. + StackEntries []string `protobuf:"bytes,1,rep,name=stack_entries,json=stackEntries,proto3" json:"stack_entries,omitempty"` + // Additional debugging information provided by the server. + Detail string `protobuf:"bytes,2,opt,name=detail,proto3" json:"detail,omitempty"` +} + +func (x *DebugInfo) Reset() { + *x = DebugInfo{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[2] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *DebugInfo) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*DebugInfo) ProtoMessage() {} + +func (x *DebugInfo) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[2] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use DebugInfo.ProtoReflect.Descriptor instead. +func (*DebugInfo) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{2} +} + +func (x *DebugInfo) GetStackEntries() []string { + if x != nil { + return x.StackEntries + } + return nil +} + +func (x *DebugInfo) GetDetail() string { + if x != nil { + return x.Detail + } + return "" +} + +// Describes how a quota check failed. +// +// For example if a daily limit was exceeded for the calling project, +// a service could respond with a QuotaFailure detail containing the project +// id and the description of the quota limit that was exceeded. If the +// calling project hasn't enabled the service in the developer console, then +// a service could respond with the project id and set `service_disabled` +// to true. +// +// Also see RetryInfo and Help types for other details about handling a +// quota failure. +type QuotaFailure struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Describes all quota violations. + Violations []*QuotaFailure_Violation `protobuf:"bytes,1,rep,name=violations,proto3" json:"violations,omitempty"` +} + +func (x *QuotaFailure) Reset() { + *x = QuotaFailure{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[3] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *QuotaFailure) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*QuotaFailure) ProtoMessage() {} + +func (x *QuotaFailure) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[3] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use QuotaFailure.ProtoReflect.Descriptor instead. +func (*QuotaFailure) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{3} +} + +func (x *QuotaFailure) GetViolations() []*QuotaFailure_Violation { + if x != nil { + return x.Violations + } + return nil +} + +// Describes what preconditions have failed. +// +// For example, if an RPC failed because it required the Terms of Service to be +// acknowledged, it could list the terms of service violation in the +// PreconditionFailure message. +type PreconditionFailure struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Describes all precondition violations. + Violations []*PreconditionFailure_Violation `protobuf:"bytes,1,rep,name=violations,proto3" json:"violations,omitempty"` +} + +func (x *PreconditionFailure) Reset() { + *x = PreconditionFailure{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[4] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *PreconditionFailure) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*PreconditionFailure) ProtoMessage() {} + +func (x *PreconditionFailure) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[4] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use PreconditionFailure.ProtoReflect.Descriptor instead. +func (*PreconditionFailure) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{4} +} + +func (x *PreconditionFailure) GetViolations() []*PreconditionFailure_Violation { + if x != nil { + return x.Violations + } + return nil +} + +// Describes violations in a client request. This error type focuses on the +// syntactic aspects of the request. +type BadRequest struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Describes all violations in a client request. + FieldViolations []*BadRequest_FieldViolation `protobuf:"bytes,1,rep,name=field_violations,json=fieldViolations,proto3" json:"field_violations,omitempty"` +} + +func (x *BadRequest) Reset() { + *x = BadRequest{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[5] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *BadRequest) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*BadRequest) ProtoMessage() {} + +func (x *BadRequest) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[5] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use BadRequest.ProtoReflect.Descriptor instead. +func (*BadRequest) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{5} +} + +func (x *BadRequest) GetFieldViolations() []*BadRequest_FieldViolation { + if x != nil { + return x.FieldViolations + } + return nil +} + +// Contains metadata about the request that clients can attach when filing a bug +// or providing other forms of feedback. +type RequestInfo struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // An opaque string that should only be interpreted by the service generating + // it. For example, it can be used to identify requests in the service's logs. + RequestId string `protobuf:"bytes,1,opt,name=request_id,json=requestId,proto3" json:"request_id,omitempty"` + // Any data that was used to serve this request. For example, an encrypted + // stack trace that can be sent back to the service provider for debugging. + ServingData string `protobuf:"bytes,2,opt,name=serving_data,json=servingData,proto3" json:"serving_data,omitempty"` +} + +func (x *RequestInfo) Reset() { + *x = RequestInfo{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[6] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *RequestInfo) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*RequestInfo) ProtoMessage() {} + +func (x *RequestInfo) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[6] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use RequestInfo.ProtoReflect.Descriptor instead. +func (*RequestInfo) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{6} +} + +func (x *RequestInfo) GetRequestId() string { + if x != nil { + return x.RequestId + } + return "" +} + +func (x *RequestInfo) GetServingData() string { + if x != nil { + return x.ServingData + } + return "" +} + +// Describes the resource that is being accessed. +type ResourceInfo struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A name for the type of resource being accessed, e.g. "sql table", + // "cloud storage bucket", "file", "Google calendar"; or the type URL + // of the resource: e.g. "type.googleapis.com/google.pubsub.v1.Topic". + ResourceType string `protobuf:"bytes,1,opt,name=resource_type,json=resourceType,proto3" json:"resource_type,omitempty"` + // The name of the resource being accessed. For example, a shared calendar + // name: "example.com_4fghdhgsrgh@group.calendar.google.com", if the current + // error is + // [google.rpc.Code.PERMISSION_DENIED][google.rpc.Code.PERMISSION_DENIED]. + ResourceName string `protobuf:"bytes,2,opt,name=resource_name,json=resourceName,proto3" json:"resource_name,omitempty"` + // The owner of the resource (optional). + // For example, "user:" or "project:". + Owner string `protobuf:"bytes,3,opt,name=owner,proto3" json:"owner,omitempty"` + // Describes what error is encountered when accessing this resource. + // For example, updating a cloud project may require the `writer` permission + // on the developer console project. + Description string `protobuf:"bytes,4,opt,name=description,proto3" json:"description,omitempty"` +} + +func (x *ResourceInfo) Reset() { + *x = ResourceInfo{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[7] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *ResourceInfo) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*ResourceInfo) ProtoMessage() {} + +func (x *ResourceInfo) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[7] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use ResourceInfo.ProtoReflect.Descriptor instead. +func (*ResourceInfo) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{7} +} + +func (x *ResourceInfo) GetResourceType() string { + if x != nil { + return x.ResourceType + } + return "" +} + +func (x *ResourceInfo) GetResourceName() string { + if x != nil { + return x.ResourceName + } + return "" +} + +func (x *ResourceInfo) GetOwner() string { + if x != nil { + return x.Owner + } + return "" +} + +func (x *ResourceInfo) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +// Provides links to documentation or for performing an out of band action. +// +// For example, if a quota check failed with an error indicating the calling +// project hasn't enabled the accessed service, this can contain a URL pointing +// directly to the right place in the developer console to flip the bit. +type Help struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // URL(s) pointing to additional information on handling the current error. + Links []*Help_Link `protobuf:"bytes,1,rep,name=links,proto3" json:"links,omitempty"` +} + +func (x *Help) Reset() { + *x = Help{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[8] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Help) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Help) ProtoMessage() {} + +func (x *Help) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[8] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Help.ProtoReflect.Descriptor instead. +func (*Help) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{8} +} + +func (x *Help) GetLinks() []*Help_Link { + if x != nil { + return x.Links + } + return nil +} + +// Provides a localized error message that is safe to return to the user +// which can be attached to an RPC error. +type LocalizedMessage struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The locale used following the specification defined at + // https://www.rfc-editor.org/rfc/bcp/bcp47.txt. + // Examples are: "en-US", "fr-CH", "es-MX" + Locale string `protobuf:"bytes,1,opt,name=locale,proto3" json:"locale,omitempty"` + // The localized error message in the above locale. + Message string `protobuf:"bytes,2,opt,name=message,proto3" json:"message,omitempty"` +} + +func (x *LocalizedMessage) Reset() { + *x = LocalizedMessage{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[9] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *LocalizedMessage) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*LocalizedMessage) ProtoMessage() {} + +func (x *LocalizedMessage) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[9] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use LocalizedMessage.ProtoReflect.Descriptor instead. +func (*LocalizedMessage) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{9} +} + +func (x *LocalizedMessage) GetLocale() string { + if x != nil { + return x.Locale + } + return "" +} + +func (x *LocalizedMessage) GetMessage() string { + if x != nil { + return x.Message + } + return "" +} + +// A message type used to describe a single quota violation. For example, a +// daily quota or a custom quota that was exceeded. +type QuotaFailure_Violation struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The subject on which the quota check failed. + // For example, "clientip:" or "project:". + Subject string `protobuf:"bytes,1,opt,name=subject,proto3" json:"subject,omitempty"` + // A description of how the quota check failed. Clients can use this + // description to find more about the quota configuration in the service's + // public documentation, or find the relevant quota limit to adjust through + // developer console. + // + // For example: "Service disabled" or "Daily Limit for read operations + // exceeded". + Description string `protobuf:"bytes,2,opt,name=description,proto3" json:"description,omitempty"` + // The API Service from which the `QuotaFailure.Violation` orginates. In + // some cases, Quota issues originate from an API Service other than the one + // that was called. In other words, a dependency of the called API Service + // could be the cause of the `QuotaFailure`, and this field would have the + // dependency API service name. + // + // For example, if the called API is Kubernetes Engine API + // (container.googleapis.com), and a quota violation occurs in the + // Kubernetes Engine API itself, this field would be + // "container.googleapis.com". On the other hand, if the quota violation + // occurs when the Kubernetes Engine API creates VMs in the Compute Engine + // API (compute.googleapis.com), this field would be + // "compute.googleapis.com". + ApiService string `protobuf:"bytes,3,opt,name=api_service,json=apiService,proto3" json:"api_service,omitempty"` + // The metric of the violated quota. A quota metric is a named counter to + // measure usage, such as API requests or CPUs. When an activity occurs in a + // service, such as Virtual Machine allocation, one or more quota metrics + // may be affected. + // + // For example, "compute.googleapis.com/cpus_per_vm_family", + // "storage.googleapis.com/internet_egress_bandwidth". + QuotaMetric string `protobuf:"bytes,4,opt,name=quota_metric,json=quotaMetric,proto3" json:"quota_metric,omitempty"` + // The id of the violated quota. Also know as "limit name", this is the + // unique identifier of a quota in the context of an API service. + // + // For example, "CPUS-PER-VM-FAMILY-per-project-region". + QuotaId string `protobuf:"bytes,5,opt,name=quota_id,json=quotaId,proto3" json:"quota_id,omitempty"` + // The dimensions of the violated quota. Every non-global quota is enforced + // on a set of dimensions. While quota metric defines what to count, the + // dimensions specify for what aspects the counter should be increased. + // + // For example, the quota "CPUs per region per VM family" enforces a limit + // on the metric "compute.googleapis.com/cpus_per_vm_family" on dimensions + // "region" and "vm_family". And if the violation occurred in region + // "us-central1" and for VM family "n1", the quota_dimensions would be, + // + // { + // "region": "us-central1", + // "vm_family": "n1", + // } + // + // When a quota is enforced globally, the quota_dimensions would always be + // empty. + QuotaDimensions map[string]string `protobuf:"bytes,6,rep,name=quota_dimensions,json=quotaDimensions,proto3" json:"quota_dimensions,omitempty" protobuf_key:"bytes,1,opt,name=key,proto3" protobuf_val:"bytes,2,opt,name=value,proto3"` + // The enforced quota value at the time of the `QuotaFailure`. + // + // For example, if the enforced quota value at the time of the + // `QuotaFailure` on the number of CPUs is "10", then the value of this + // field would reflect this quantity. + QuotaValue int64 `protobuf:"varint,7,opt,name=quota_value,json=quotaValue,proto3" json:"quota_value,omitempty"` + // The new quota value being rolled out at the time of the violation. At the + // completion of the rollout, this value will be enforced in place of + // quota_value. If no rollout is in progress at the time of the violation, + // this field is not set. + // + // For example, if at the time of the violation a rollout is in progress + // changing the number of CPUs quota from 10 to 20, 20 would be the value of + // this field. + FutureQuotaValue *int64 `protobuf:"varint,8,opt,name=future_quota_value,json=futureQuotaValue,proto3,oneof" json:"future_quota_value,omitempty"` +} + +func (x *QuotaFailure_Violation) Reset() { + *x = QuotaFailure_Violation{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[11] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *QuotaFailure_Violation) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*QuotaFailure_Violation) ProtoMessage() {} + +func (x *QuotaFailure_Violation) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[11] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use QuotaFailure_Violation.ProtoReflect.Descriptor instead. +func (*QuotaFailure_Violation) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{3, 0} +} + +func (x *QuotaFailure_Violation) GetSubject() string { + if x != nil { + return x.Subject + } + return "" +} + +func (x *QuotaFailure_Violation) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +func (x *QuotaFailure_Violation) GetApiService() string { + if x != nil { + return x.ApiService + } + return "" +} + +func (x *QuotaFailure_Violation) GetQuotaMetric() string { + if x != nil { + return x.QuotaMetric + } + return "" +} + +func (x *QuotaFailure_Violation) GetQuotaId() string { + if x != nil { + return x.QuotaId + } + return "" +} + +func (x *QuotaFailure_Violation) GetQuotaDimensions() map[string]string { + if x != nil { + return x.QuotaDimensions + } + return nil +} + +func (x *QuotaFailure_Violation) GetQuotaValue() int64 { + if x != nil { + return x.QuotaValue + } + return 0 +} + +func (x *QuotaFailure_Violation) GetFutureQuotaValue() int64 { + if x != nil && x.FutureQuotaValue != nil { + return *x.FutureQuotaValue + } + return 0 +} + +// A message type used to describe a single precondition failure. +type PreconditionFailure_Violation struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // The type of PreconditionFailure. We recommend using a service-specific + // enum type to define the supported precondition violation subjects. For + // example, "TOS" for "Terms of Service violation". + Type string `protobuf:"bytes,1,opt,name=type,proto3" json:"type,omitempty"` + // The subject, relative to the type, that failed. + // For example, "google.com/cloud" relative to the "TOS" type would indicate + // which terms of service is being referenced. + Subject string `protobuf:"bytes,2,opt,name=subject,proto3" json:"subject,omitempty"` + // A description of how the precondition failed. Developers can use this + // description to understand how to fix the failure. + // + // For example: "Terms of service not accepted". + Description string `protobuf:"bytes,3,opt,name=description,proto3" json:"description,omitempty"` +} + +func (x *PreconditionFailure_Violation) Reset() { + *x = PreconditionFailure_Violation{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[13] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *PreconditionFailure_Violation) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*PreconditionFailure_Violation) ProtoMessage() {} + +func (x *PreconditionFailure_Violation) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[13] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use PreconditionFailure_Violation.ProtoReflect.Descriptor instead. +func (*PreconditionFailure_Violation) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{4, 0} +} + +func (x *PreconditionFailure_Violation) GetType() string { + if x != nil { + return x.Type + } + return "" +} + +func (x *PreconditionFailure_Violation) GetSubject() string { + if x != nil { + return x.Subject + } + return "" +} + +func (x *PreconditionFailure_Violation) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +// A message type used to describe a single bad request field. +type BadRequest_FieldViolation struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // A path that leads to a field in the request body. The value will be a + // sequence of dot-separated identifiers that identify a protocol buffer + // field. + // + // Consider the following: + // + // message CreateContactRequest { + // message EmailAddress { + // enum Type { + // TYPE_UNSPECIFIED = 0; + // HOME = 1; + // WORK = 2; + // } + // + // optional string email = 1; + // repeated EmailType type = 2; + // } + // + // string full_name = 1; + // repeated EmailAddress email_addresses = 2; + // } + // + // In this example, in proto `field` could take one of the following values: + // + // - `full_name` for a violation in the `full_name` value + // - `email_addresses[1].email` for a violation in the `email` field of the + // first `email_addresses` message + // - `email_addresses[3].type[2]` for a violation in the second `type` + // value in the third `email_addresses` message. + // + // In JSON, the same values are represented as: + // + // - `fullName` for a violation in the `fullName` value + // - `emailAddresses[1].email` for a violation in the `email` field of the + // first `emailAddresses` message + // - `emailAddresses[3].type[2]` for a violation in the second `type` + // value in the third `emailAddresses` message. + Field string `protobuf:"bytes,1,opt,name=field,proto3" json:"field,omitempty"` + // A description of why the request element is bad. + Description string `protobuf:"bytes,2,opt,name=description,proto3" json:"description,omitempty"` + // The reason of the field-level error. This is a constant value that + // identifies the proximate cause of the field-level error. It should + // uniquely identify the type of the FieldViolation within the scope of the + // google.rpc.ErrorInfo.domain. This should be at most 63 + // characters and match a regular expression of `[A-Z][A-Z0-9_]+[A-Z0-9]`, + // which represents UPPER_SNAKE_CASE. + Reason string `protobuf:"bytes,3,opt,name=reason,proto3" json:"reason,omitempty"` + // Provides a localized error message for field-level errors that is safe to + // return to the API consumer. + LocalizedMessage *LocalizedMessage `protobuf:"bytes,4,opt,name=localized_message,json=localizedMessage,proto3" json:"localized_message,omitempty"` +} + +func (x *BadRequest_FieldViolation) Reset() { + *x = BadRequest_FieldViolation{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[14] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *BadRequest_FieldViolation) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*BadRequest_FieldViolation) ProtoMessage() {} + +func (x *BadRequest_FieldViolation) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[14] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use BadRequest_FieldViolation.ProtoReflect.Descriptor instead. +func (*BadRequest_FieldViolation) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{5, 0} +} + +func (x *BadRequest_FieldViolation) GetField() string { + if x != nil { + return x.Field + } + return "" +} + +func (x *BadRequest_FieldViolation) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +func (x *BadRequest_FieldViolation) GetReason() string { + if x != nil { + return x.Reason + } + return "" +} + +func (x *BadRequest_FieldViolation) GetLocalizedMessage() *LocalizedMessage { + if x != nil { + return x.LocalizedMessage + } + return nil +} + +// Describes a URL link. +type Help_Link struct { + state protoimpl.MessageState + sizeCache protoimpl.SizeCache + unknownFields protoimpl.UnknownFields + + // Describes what the link offers. + Description string `protobuf:"bytes,1,opt,name=description,proto3" json:"description,omitempty"` + // The URL of the link. + Url string `protobuf:"bytes,2,opt,name=url,proto3" json:"url,omitempty"` +} + +func (x *Help_Link) Reset() { + *x = Help_Link{} + if protoimpl.UnsafeEnabled { + mi := &file_google_rpc_error_details_proto_msgTypes[15] + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + ms.StoreMessageInfo(mi) + } +} + +func (x *Help_Link) String() string { + return protoimpl.X.MessageStringOf(x) +} + +func (*Help_Link) ProtoMessage() {} + +func (x *Help_Link) ProtoReflect() protoreflect.Message { + mi := &file_google_rpc_error_details_proto_msgTypes[15] + if protoimpl.UnsafeEnabled && x != nil { + ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) + if ms.LoadMessageInfo() == nil { + ms.StoreMessageInfo(mi) + } + return ms + } + return mi.MessageOf(x) +} + +// Deprecated: Use Help_Link.ProtoReflect.Descriptor instead. +func (*Help_Link) Descriptor() ([]byte, []int) { + return file_google_rpc_error_details_proto_rawDescGZIP(), []int{8, 0} +} + +func (x *Help_Link) GetDescription() string { + if x != nil { + return x.Description + } + return "" +} + +func (x *Help_Link) GetUrl() string { + if x != nil { + return x.Url + } + return "" +} + +var File_google_rpc_error_details_proto protoreflect.FileDescriptor + +var file_google_rpc_error_details_proto_rawDesc = []byte{ + 0x0a, 0x1e, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2f, 0x72, 0x70, 0x63, 0x2f, 0x65, 0x72, 0x72, + 0x6f, 0x72, 0x5f, 0x64, 0x65, 0x74, 0x61, 0x69, 0x6c, 0x73, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, + 0x12, 0x0a, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2e, 0x72, 0x70, 0x63, 0x1a, 0x1e, 0x67, 0x6f, + 0x6f, 0x67, 0x6c, 0x65, 0x2f, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x62, 0x75, 0x66, 0x2f, 0x64, 0x75, + 0x72, 0x61, 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make([]protoimpl.MessageInfo, 16) +var file_google_rpc_error_details_proto_goTypes = []interface{}{ + (*ErrorInfo)(nil), // 0: google.rpc.ErrorInfo + (*RetryInfo)(nil), // 1: google.rpc.RetryInfo + (*DebugInfo)(nil), // 2: google.rpc.DebugInfo + (*QuotaFailure)(nil), // 3: google.rpc.QuotaFailure + (*PreconditionFailure)(nil), // 4: google.rpc.PreconditionFailure + (*BadRequest)(nil), // 5: google.rpc.BadRequest + (*RequestInfo)(nil), // 6: google.rpc.RequestInfo + (*ResourceInfo)(nil), // 7: google.rpc.ResourceInfo + (*Help)(nil), // 8: google.rpc.Help + (*LocalizedMessage)(nil), // 9: google.rpc.LocalizedMessage + nil, // 10: google.rpc.ErrorInfo.MetadataEntry + (*QuotaFailure_Violation)(nil), // 11: google.rpc.QuotaFailure.Violation + nil, // 12: google.rpc.QuotaFailure.Violation.QuotaDimensionsEntry + (*PreconditionFailure_Violation)(nil), // 13: google.rpc.PreconditionFailure.Violation + (*BadRequest_FieldViolation)(nil), // 14: google.rpc.BadRequest.FieldViolation + (*Help_Link)(nil), // 15: google.rpc.Help.Link + (*durationpb.Duration)(nil), // 16: google.protobuf.Duration +} +var file_google_rpc_error_details_proto_depIdxs = []int32{ + 10, // 0: google.rpc.ErrorInfo.metadata:type_name -> google.rpc.ErrorInfo.MetadataEntry + 16, // 1: google.rpc.RetryInfo.retry_delay:type_name -> google.protobuf.Duration + 11, // 2: google.rpc.QuotaFailure.violations:type_name -> google.rpc.QuotaFailure.Violation + 13, // 3: google.rpc.PreconditionFailure.violations:type_name -> google.rpc.PreconditionFailure.Violation + 14, // 4: google.rpc.BadRequest.field_violations:type_name -> google.rpc.BadRequest.FieldViolation + 15, // 5: google.rpc.Help.links:type_name -> google.rpc.Help.Link + 12, // 6: google.rpc.QuotaFailure.Violation.quota_dimensions:type_name -> google.rpc.QuotaFailure.Violation.QuotaDimensionsEntry + 9, // 7: google.rpc.BadRequest.FieldViolation.localized_message:type_name -> google.rpc.LocalizedMessage + 8, // [8:8] is the sub-list for method output_type + 8, // [8:8] is the sub-list for method input_type + 8, // [8:8] is the sub-list for extension type_name + 8, // [8:8] is the sub-list for extension extendee + 0, // [0:8] is the sub-list for field type_name +} + +func init() { file_google_rpc_error_details_proto_init() } +func file_google_rpc_error_details_proto_init() { + if File_google_rpc_error_details_proto != nil { + return + } + if !protoimpl.UnsafeEnabled { + file_google_rpc_error_details_proto_msgTypes[0].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ErrorInfo); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[1].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*RetryInfo); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[2].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*DebugInfo); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[3].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*QuotaFailure); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[4].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*PreconditionFailure); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[5].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*BadRequest); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[6].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*RequestInfo); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[7].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*ResourceInfo); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[8].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Help); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[9].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*LocalizedMessage); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[11].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*QuotaFailure_Violation); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[13].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*PreconditionFailure_Violation); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[14].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*BadRequest_FieldViolation); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + file_google_rpc_error_details_proto_msgTypes[15].Exporter = func(v interface{}, i int) interface{} { + switch v := v.(*Help_Link); i { + case 0: + return &v.state + case 1: + return &v.sizeCache + case 2: + return &v.unknownFields + default: + return nil + } + } + } + file_google_rpc_error_details_proto_msgTypes[11].OneofWrappers = []interface{}{} + type x struct{} + out := protoimpl.TypeBuilder{ + File: protoimpl.DescBuilder{ + GoPackagePath: reflect.TypeOf(x{}).PkgPath(), + RawDescriptor: file_google_rpc_error_details_proto_rawDesc, + NumEnums: 0, + NumMessages: 16, + NumExtensions: 0, + NumServices: 0, + }, + GoTypes: file_google_rpc_error_details_proto_goTypes, + DependencyIndexes: file_google_rpc_error_details_proto_depIdxs, + MessageInfos: file_google_rpc_error_details_proto_msgTypes, + }.Build() + File_google_rpc_error_details_proto = out.File + file_google_rpc_error_details_proto_rawDesc = nil + file_google_rpc_error_details_proto_goTypes = nil + file_google_rpc_error_details_proto_depIdxs = nil +} diff --git a/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go b/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go index 6ad1b1c1df..06a3f71063 100644 --- a/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go +++ b/vendor/google.golang.org/genproto/googleapis/rpc/status/status.pb.go @@ -1,4 +1,4 @@ -// Copyright 2024 Google LLC +// Copyright 2025 Google LLC // // Licensed under the Apache License, Version 2.0 (the "License"); // you may not use this file except in compliance with the License. diff --git a/vendor/google.golang.org/grpc/CONTRIBUTING.md b/vendor/google.golang.org/grpc/CONTRIBUTING.md index d9bfa6e1e7..1de0ce6669 100644 --- a/vendor/google.golang.org/grpc/CONTRIBUTING.md +++ b/vendor/google.golang.org/grpc/CONTRIBUTING.md @@ -1,73 +1,102 @@ # How to contribute -We definitely welcome your patches and contributions to gRPC! Please read the gRPC -organization's [governance rules](https://github.com/grpc/grpc-community/blob/master/governance.md) -and [contribution guidelines](https://github.com/grpc/grpc-community/blob/master/CONTRIBUTING.md) before proceeding. +We welcome your patches and contributions to gRPC! Please read the gRPC +organization's [governance +rules](https://github.com/grpc/grpc-community/blob/master/governance.md) before +proceeding. If you are new to GitHub, please start by reading [Pull Request howto](https://help.github.com/articles/about-pull-requests/) ## Legal requirements In order to protect both you and ourselves, you will need to sign the -[Contributor License Agreement](https://identity.linuxfoundation.org/projects/cncf). +[Contributor License +Agreement](https://identity.linuxfoundation.org/projects/cncf). When you create +your first PR, a link will be added as a comment that contains the steps needed +to complete this process. -## Guidelines for Pull Requests -How to get your contributions merged smoothly and quickly. +## Getting Started -- Create **small PRs** that are narrowly focused on **addressing a single - concern**. We often times receive PRs that are trying to fix several things at - a time, but only one fix is considered acceptable, nothing gets merged and - both author's & review's time is wasted. Create more PRs to address different - concerns and everyone will be happy. +A great way to start is by searching through our open issues. [Unassigned issues +labeled as "help +wanted"](https://github.com/grpc/grpc-go/issues?q=sort%3Aupdated-desc%20is%3Aissue%20is%3Aopen%20label%3A%22Status%3A%20Help%20Wanted%22%20no%3Aassignee) +are especially nice for first-time contributors, as they should be well-defined +problems that already have agreed-upon solutions. -- If you are searching for features to work on, issues labeled [Status: Help - Wanted](https://github.com/grpc/grpc-go/issues?q=is%3Aissue+is%3Aopen+sort%3Aupdated-desc+label%3A%22Status%3A+Help+Wanted%22) - is a great place to start. These issues are well-documented and usually can be - resolved with a single pull request. +## Code Style -- If you are adding a new file, make sure it has the copyright message template - at the top as a comment. You can copy over the message from an existing file - and update the year. +We follow [Google's published Go style +guide](https://google.github.io/styleguide/go/). Note that there are three +primary documents that make up this style guide; please follow them as closely +as possible. If a reviewer recommends something that contradicts those +guidelines, there may be valid reasons to do so, but it should be rare. -- The grpc package should only depend on standard Go packages and a small number - of exceptions. If your contribution introduces new dependencies which are NOT - in the [list](https://godoc.org/google.golang.org/grpc?imports), you need a - discussion with gRPC-Go authors and consultants. +## Guidelines for Pull Requests -- For speculative changes, consider opening an issue and discussing it first. If - you are suggesting a behavioral or API change, consider starting with a [gRFC - proposal](https://github.com/grpc/proposal). +How to get your contributions merged smoothly and quickly: + +- Create **small PRs** that are narrowly focused on **addressing a single + concern**. We often receive PRs that attempt to fix several things at the same + time, and if one part of the PR has a problem, that will hold up the entire + PR. + +- For **speculative changes**, consider opening an issue and discussing it + first. If you are suggesting a behavioral or API change, consider starting + with a [gRFC proposal](https://github.com/grpc/proposal). Many new features + that are not bug fixes will require cross-language agreement. + +- If you want to fix **formatting or style**, consider whether your changes are + an obvious improvement or might be considered a personal preference. If a + style change is based on preference, it likely will not be accepted. If it + corrects widely agreed-upon anti-patterns, then please do create a PR and + explain the benefits of the change. + +- For correcting **misspellings**, please be aware that we use some terms that + are sometimes flagged by spell checkers. As an example, "if an only if" is + often written as "iff". Please do not make spelling correction changes unless + you are certain they are misspellings. - Provide a good **PR description** as a record of **what** change is being made and **why** it was made. Link to a GitHub issue if it exists. -- If you want to fix formatting or style, consider whether your changes are an - obvious improvement or might be considered a personal preference. If a style - change is based on preference, it likely will not be accepted. If it corrects - widely agreed-upon anti-patterns, then please do create a PR and explain the - benefits of the change. +- Maintain a **clean commit history** and use **meaningful commit messages**. + PRs with messy commit histories are difficult to review and won't be merged. + Before sending your PR, ensure your changes are based on top of the latest + `upstream/master` commits, and avoid rebasing in the middle of a code review. + You should **never use `git push -f`** unless absolutely necessary during a + review, as it can interfere with GitHub's tracking of comments. -- Unless your PR is trivial, you should expect there will be reviewer comments - that you'll need to address before merging. We'll mark it as `Status: Requires - Reporter Clarification` if we expect you to respond to these comments in a - timely manner. If the PR remains inactive for 6 days, it will be marked as - `stale` and automatically close 7 days after that if we don't hear back from - you. +- **All tests need to be passing** before your change can be merged. We + recommend you run tests locally before creating your PR to catch breakages + early on: -- Maintain **clean commit history** and use **meaningful commit messages**. PRs - with messy commit history are difficult to review and won't be merged. Use - `rebase -i upstream/master` to curate your commit history and/or to bring in - latest changes from master (but avoid rebasing in the middle of a code - review). + - `./scripts/vet.sh` to catch vet errors. + - `go test -cpu 1,4 -timeout 7m ./...` to run the tests. + - `go test -race -cpu 1,4 -timeout 7m ./...` to run tests in race mode. -- Keep your PR up to date with upstream/master (if there are merge conflicts, we - can't really merge your change). + Note that we have a multi-module repo, so `go test` commands may need to be + run from the root of each module in order to cause all tests to run. -- **All tests need to be passing** before your change can be merged. We - recommend you **run tests locally** before creating your PR to catch breakages - early on. - - `./scripts/vet.sh` to catch vet errors - - `go test -cpu 1,4 -timeout 7m ./...` to run the tests - - `go test -race -cpu 1,4 -timeout 7m ./...` to run tests in race mode + *Alternatively*, you may find it easier to push your changes to your fork on + GitHub, which will trigger a GitHub Actions run that you can use to verify + everything is passing. + +- If you are adding a new file, make sure it has the **copyright message** + template at the top as a comment. You can copy the message from an existing + file and update the year. + +- The grpc package should only depend on standard Go packages and a small number + of exceptions. **If your contribution introduces new dependencies**, you will + need a discussion with gRPC-Go maintainers. A GitHub action check will run on + every PR, and will flag any transitive dependency changes from any public + package. + +- Unless your PR is trivial, you should **expect reviewer comments** that you + will need to address before merging. We'll label the PR as `Status: Requires + Reporter Clarification` if we expect you to respond to these comments in a + timely manner. If the PR remains inactive for 6 days, it will be marked as + `stale`, and we will automatically close it after 7 days if we don't hear back + from you. Please feel free to ping issues or bugs if you do not get a response + within a week. -- Exceptions to the rules can be made if there's a compelling reason for doing so. +- Exceptions to the rules can be made if there's a compelling reason to do so. diff --git a/vendor/google.golang.org/grpc/README.md b/vendor/google.golang.org/grpc/README.md index b572707c62..f9a88d597e 100644 --- a/vendor/google.golang.org/grpc/README.md +++ b/vendor/google.golang.org/grpc/README.md @@ -32,6 +32,7 @@ import "google.golang.org/grpc" - [Low-level technical docs](Documentation) from this repository - [Performance benchmark][] - [Examples](examples) +- [Contribution guidelines](CONTRIBUTING.md) ## FAQ diff --git a/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go b/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go index 825c31795f..b1364a0325 100644 --- a/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go +++ b/vendor/google.golang.org/grpc/binarylog/grpc_binarylog_v1/binarylog.pb.go @@ -18,7 +18,7 @@ // Code generated by protoc-gen-go. DO NOT EDIT. // versions: -// protoc-gen-go v1.36.5 +// protoc-gen-go v1.36.6 // protoc v5.27.1 // source: grpc/binlog/v1/binarylog.proto @@ -858,133 +858,68 @@ func (x *Address) GetIpPort() uint32 { var File_grpc_binlog_v1_binarylog_proto protoreflect.FileDescriptor -var file_grpc_binlog_v1_binarylog_proto_rawDesc = string([]byte{ - 0x0a, 0x1e, 0x67, 0x72, 0x70, 0x63, 0x2f, 0x62, 0x69, 0x6e, 0x6c, 0x6f, 0x67, 0x2f, 0x76, 0x31, - 0x2f, 0x62, 0x69, 0x6e, 0x61, 0x72, 0x79, 0x6c, 0x6f, 0x67, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, - 0x12, 0x11, 0x67, 0x72, 0x70, 0x63, 0x2e, 0x62, 0x69, 0x6e, 0x61, 0x72, 0x79, 0x6c, 0x6f, 0x67, - 0x2e, 0x76, 0x31, 0x1a, 0x1e, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2f, 0x70, 0x72, 0x6f, 0x74, - 0x6f, 0x62, 0x75, 0x66, 0x2f, 0x64, 0x75, 0x72, 0x61, 0x74, 0x69, 0x6f, 0x6e, 0x2e, 0x70, 0x72, - 0x6f, 0x74, 0x6f, 0x1a, 0x1f, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2f, 0x70, 0x72, 0x6f, 0x74, - 0x6f, 0x62, 0x75, 0x66, 0x2f, 0x74, 0x69, 0x6d, 0x65, 0x73, 0x74, 0x61, 0x6d, 0x70, 0x2e, 0x70, - 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0x09, 0x54, 0x59, 0x50, 0x45, 0x5f, 0x55, 0x4e, 0x49, 0x58, 0x10, 0x03, 0x42, 0x5c, 0x0a, 0x14, - 0x69, 0x6f, 0x2e, 0x67, 0x72, 0x70, 0x63, 0x2e, 0x62, 0x69, 0x6e, 0x61, 0x72, 0x79, 0x6c, 0x6f, - 0x67, 0x2e, 0x76, 0x31, 0x42, 0x0e, 0x42, 0x69, 0x6e, 0x61, 0x72, 0x79, 0x4c, 0x6f, 0x67, 0x50, - 0x72, 0x6f, 0x74, 0x6f, 0x50, 0x01, 0x5a, 0x32, 0x67, 0x6f, 0x6f, 0x67, 0x6c, 0x65, 0x2e, 0x67, - 0x6f, 0x6c, 0x61, 0x6e, 0x67, 0x2e, 0x6f, 0x72, 0x67, 0x2f, 0x67, 0x72, 0x70, 0x63, 0x2f, 0x62, - 0x69, 0x6e, 0x61, 0x72, 0x79, 0x6c, 0x6f, 0x67, 0x2f, 0x67, 0x72, 0x70, 0x63, 0x5f, 0x62, 0x69, - 0x6e, 0x61, 0x72, 0x79, 0x6c, 0x6f, 0x67, 0x5f, 0x76, 0x31, 0x62, 0x06, 0x70, 0x72, 0x6f, 0x74, - 0x6f, 0x33, -}) +const file_grpc_binlog_v1_binarylog_proto_rawDesc = "" + + "\n" + + "\x1egrpc/binlog/v1/binarylog.proto\x12\x11grpc.binarylog.v1\x1a\x1egoogle/protobuf/duration.proto\x1a\x1fgoogle/protobuf/timestamp.proto\"\xbb\a\n" + + "\fGrpcLogEntry\x128\n" + + "\ttimestamp\x18\x01 \x01(\v2\x1a.google.protobuf.TimestampR\ttimestamp\x12\x17\n" + + "\acall_id\x18\x02 \x01(\x04R\x06callId\x125\n" + + "\x17sequence_id_within_call\x18\x03 \x01(\x04R\x14sequenceIdWithinCall\x12=\n" + + "\x04type\x18\x04 \x01(\x0e2).grpc.binarylog.v1.GrpcLogEntry.EventTypeR\x04type\x12>\n" + + "\x06logger\x18\x05 \x01(\x0e2&.grpc.binarylog.v1.GrpcLogEntry.LoggerR\x06logger\x12F\n" + + "\rclient_header\x18\x06 \x01(\v2\x1f.grpc.binarylog.v1.ClientHeaderH\x00R\fclientHeader\x12F\n" + + "\rserver_header\x18\a \x01(\v2\x1f.grpc.binarylog.v1.ServerHeaderH\x00R\fserverHeader\x126\n" + + "\amessage\x18\b \x01(\v2\x1a.grpc.binarylog.v1.MessageH\x00R\amessage\x126\n" + + "\atrailer\x18\t \x01(\v2\x1a.grpc.binarylog.v1.TrailerH\x00R\atrailer\x12+\n" + + "\x11payload_truncated\x18\n" + + " \x01(\bR\x10payloadTruncated\x12.\n" + + "\x04peer\x18\v \x01(\v2\x1a.grpc.binarylog.v1.AddressR\x04peer\"\xf5\x01\n" + + "\tEventType\x12\x16\n" + + "\x12EVENT_TYPE_UNKNOWN\x10\x00\x12\x1c\n" + + "\x18EVENT_TYPE_CLIENT_HEADER\x10\x01\x12\x1c\n" + + "\x18EVENT_TYPE_SERVER_HEADER\x10\x02\x12\x1d\n" + + "\x19EVENT_TYPE_CLIENT_MESSAGE\x10\x03\x12\x1d\n" + + "\x19EVENT_TYPE_SERVER_MESSAGE\x10\x04\x12 \n" + + "\x1cEVENT_TYPE_CLIENT_HALF_CLOSE\x10\x05\x12\x1d\n" + + "\x19EVENT_TYPE_SERVER_TRAILER\x10\x06\x12\x15\n" + + "\x11EVENT_TYPE_CANCEL\x10\a\"B\n" + + "\x06Logger\x12\x12\n" + + "\x0eLOGGER_UNKNOWN\x10\x00\x12\x11\n" + + "\rLOGGER_CLIENT\x10\x01\x12\x11\n" + + "\rLOGGER_SERVER\x10\x02B\t\n" + + "\apayload\"\xbb\x01\n" + + "\fClientHeader\x127\n" + + "\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\x12\x1f\n" + + "\vmethod_name\x18\x02 \x01(\tR\n" + + "methodName\x12\x1c\n" + + "\tauthority\x18\x03 \x01(\tR\tauthority\x123\n" + + "\atimeout\x18\x04 \x01(\v2\x19.google.protobuf.DurationR\atimeout\"G\n" + + "\fServerHeader\x127\n" + + "\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\"\xb1\x01\n" + + "\aTrailer\x127\n" + + "\bmetadata\x18\x01 \x01(\v2\x1b.grpc.binarylog.v1.MetadataR\bmetadata\x12\x1f\n" + + "\vstatus_code\x18\x02 \x01(\rR\n" + + "statusCode\x12%\n" + + "\x0estatus_message\x18\x03 \x01(\tR\rstatusMessage\x12%\n" + + "\x0estatus_details\x18\x04 \x01(\fR\rstatusDetails\"5\n" + + "\aMessage\x12\x16\n" + + "\x06length\x18\x01 \x01(\rR\x06length\x12\x12\n" + + "\x04data\x18\x02 \x01(\fR\x04data\"B\n" + + "\bMetadata\x126\n" + + "\x05entry\x18\x01 \x03(\v2 .grpc.binarylog.v1.MetadataEntryR\x05entry\"7\n" + + "\rMetadataEntry\x12\x10\n" + + "\x03key\x18\x01 \x01(\tR\x03key\x12\x14\n" + + "\x05value\x18\x02 \x01(\fR\x05value\"\xb8\x01\n" + + "\aAddress\x123\n" + + "\x04type\x18\x01 \x01(\x0e2\x1f.grpc.binarylog.v1.Address.TypeR\x04type\x12\x18\n" + + "\aaddress\x18\x02 \x01(\tR\aaddress\x12\x17\n" + + "\aip_port\x18\x03 \x01(\rR\x06ipPort\"E\n" + + "\x04Type\x12\x10\n" + + "\fTYPE_UNKNOWN\x10\x00\x12\r\n" + + "\tTYPE_IPV4\x10\x01\x12\r\n" + + "\tTYPE_IPV6\x10\x02\x12\r\n" + + "\tTYPE_UNIX\x10\x03B\\\n" + + "\x14io.grpc.binarylog.v1B\x0eBinaryLogProtoP\x01Z2google.golang.org/grpc/binarylog/grpc_binarylog_v1b\x06proto3" var ( file_grpc_binlog_v1_binarylog_proto_rawDescOnce sync.Once diff --git a/vendor/google.golang.org/grpc/clientconn.go b/vendor/google.golang.org/grpc/clientconn.go index 4f350ca56a..cd3eaf8ddc 100644 --- a/vendor/google.golang.org/grpc/clientconn.go +++ b/vendor/google.golang.org/grpc/clientconn.go @@ -689,22 +689,31 @@ func (cc *ClientConn) Connect() { cc.mu.Unlock() } -// waitForResolvedAddrs blocks until the resolver has provided addresses or the -// context expires. Returns nil unless the context expires first; otherwise -// returns a status error based on the context. -func (cc *ClientConn) waitForResolvedAddrs(ctx context.Context) error { +// waitForResolvedAddrs blocks until the resolver provides addresses or the +// context expires, whichever happens first. +// +// Error is nil unless the context expires first; otherwise returns a status +// error based on the context. +// +// The returned boolean indicates whether it did block or not. If the +// resolution has already happened once before, it returns false without +// blocking. Otherwise, it wait for the resolution and return true if +// resolution has succeeded or return false along with error if resolution has +// failed. +func (cc *ClientConn) waitForResolvedAddrs(ctx context.Context) (bool, error) { // This is on the RPC path, so we use a fast path to avoid the // more-expensive "select" below after the resolver has returned once. if cc.firstResolveEvent.HasFired() { - return nil + return false, nil } + internal.NewStreamWaitingForResolver() select { case <-cc.firstResolveEvent.Done(): - return nil + return true, nil case <-ctx.Done(): - return status.FromContextError(ctx.Err()).Err() + return false, status.FromContextError(ctx.Err()).Err() case <-cc.ctx.Done(): - return ErrClientConnClosing + return false, ErrClientConnClosing } } diff --git a/vendor/google.golang.org/grpc/credentials/credentials.go b/vendor/google.golang.org/grpc/credentials/credentials.go index 665e790bb0..a63ab606e6 100644 --- a/vendor/google.golang.org/grpc/credentials/credentials.go +++ b/vendor/google.golang.org/grpc/credentials/credentials.go @@ -120,6 +120,20 @@ type AuthInfo interface { AuthType() string } +// AuthorityValidator validates the authority used to override the `:authority` +// header. This is an optional interface that implementations of AuthInfo can +// implement if they support per-RPC authority overrides. It is invoked when the +// application attempts to override the HTTP/2 `:authority` header using the +// CallAuthority call option. +type AuthorityValidator interface { + // ValidateAuthority checks the authority value used to override the + // `:authority` header. The authority parameter is the override value + // provided by the application via the CallAuthority option. This value + // typically corresponds to the server hostname or endpoint the RPC is + // targeting. It returns non-nil error if the validation fails. + ValidateAuthority(authority string) error +} + // ErrConnDispatched indicates that rawConn has been dispatched out of gRPC // and the caller should not close rawConn. var ErrConnDispatched = errors.New("credentials: rawConn is dispatched out of gRPC") @@ -207,14 +221,32 @@ type RequestInfo struct { AuthInfo AuthInfo } +// requestInfoKey is a struct to be used as the key to store RequestInfo in a +// context. +type requestInfoKey struct{} + // RequestInfoFromContext extracts the RequestInfo from the context if it exists. // // This API is experimental. func RequestInfoFromContext(ctx context.Context) (ri RequestInfo, ok bool) { - ri, ok = icredentials.RequestInfoFromContext(ctx).(RequestInfo) + ri, ok = ctx.Value(requestInfoKey{}).(RequestInfo) return ri, ok } +// NewContextWithRequestInfo creates a new context from ctx and attaches ri to it. +// +// This RequestInfo will be accessible via RequestInfoFromContext. +// +// Intended to be used from tests for PerRPCCredentials implementations (that +// often need to check connection's SecurityLevel). Should not be used from +// non-test code: the gRPC client already prepares a context with the correct +// RequestInfo attached when calling PerRPCCredentials.GetRequestMetadata. +// +// This API is experimental. +func NewContextWithRequestInfo(ctx context.Context, ri RequestInfo) context.Context { + return context.WithValue(ctx, requestInfoKey{}, ri) +} + // ClientHandshakeInfo holds data to be passed to ClientHandshake. This makes // it possible to pass arbitrary data to the handshaker from gRPC, resolver, // balancer etc. Individual credential implementations control the actual diff --git a/vendor/google.golang.org/grpc/credentials/insecure/insecure.go b/vendor/google.golang.org/grpc/credentials/insecure/insecure.go index 4c805c6446..93156c0f34 100644 --- a/vendor/google.golang.org/grpc/credentials/insecure/insecure.go +++ b/vendor/google.golang.org/grpc/credentials/insecure/insecure.go @@ -30,7 +30,7 @@ import ( // NewCredentials returns a credentials which disables transport security. // // Note that using this credentials with per-RPC credentials which require -// transport security is incompatible and will cause grpc.Dial() to fail. +// transport security is incompatible and will cause RPCs to fail. func NewCredentials() credentials.TransportCredentials { return insecureTC{} } @@ -71,6 +71,12 @@ func (info) AuthType() string { return "insecure" } +// ValidateAuthority allows any value to be overridden for the :authority +// header. +func (info) ValidateAuthority(string) error { + return nil +} + // insecureBundle implements an insecure bundle. // An insecure bundle provides a thin wrapper around insecureTC to support // the credentials.Bundle interface. diff --git a/vendor/google.golang.org/grpc/credentials/tls.go b/vendor/google.golang.org/grpc/credentials/tls.go index bd5fe22b6a..20f65f7bd9 100644 --- a/vendor/google.golang.org/grpc/credentials/tls.go +++ b/vendor/google.golang.org/grpc/credentials/tls.go @@ -22,6 +22,7 @@ import ( "context" "crypto/tls" "crypto/x509" + "errors" "fmt" "net" "net/url" @@ -50,6 +51,21 @@ func (t TLSInfo) AuthType() string { return "tls" } +// ValidateAuthority validates the provided authority being used to override the +// :authority header by verifying it against the peer certificates. It returns a +// non-nil error if the validation fails. +func (t TLSInfo) ValidateAuthority(authority string) error { + var errs []error + for _, cert := range t.State.PeerCertificates { + var err error + if err = cert.VerifyHostname(authority); err == nil { + return nil + } + errs = append(errs, err) + } + return fmt.Errorf("credentials: invalid authority %q: %v", authority, errors.Join(errs...)) +} + // cipherSuiteLookup returns the string version of a TLS cipher suite ID. func cipherSuiteLookup(cipherSuiteID uint16) string { for _, s := range tls.CipherSuites() { diff --git a/vendor/google.golang.org/grpc/dialoptions.go b/vendor/google.golang.org/grpc/dialoptions.go index 405a2ffeb3..050ba0f161 100644 --- a/vendor/google.golang.org/grpc/dialoptions.go +++ b/vendor/google.golang.org/grpc/dialoptions.go @@ -360,7 +360,7 @@ func WithReturnConnectionError() DialOption { // // Note that using this DialOption with per-RPC credentials (through // WithCredentialsBundle or WithPerRPCCredentials) which require transport -// security is incompatible and will cause grpc.Dial() to fail. +// security is incompatible and will cause RPCs to fail. // // Deprecated: use WithTransportCredentials and insecure.NewCredentials() // instead. Will be supported throughout 1.x. diff --git a/vendor/google.golang.org/grpc/encoding/gzip/gzip.go b/vendor/google.golang.org/grpc/encoding/gzip/gzip.go new file mode 100644 index 0000000000..6306e8bb0f --- /dev/null +++ b/vendor/google.golang.org/grpc/encoding/gzip/gzip.go @@ -0,0 +1,132 @@ +/* + * + * Copyright 2017 gRPC authors. + * + * Licensed under the Apache License, Version 2.0 (the "License"); + * you may not use this file except in compliance with the License. + * You may obtain a copy of the License at + * + * http://www.apache.org/licenses/LICENSE-2.0 + * + * Unless required by applicable law or agreed to in writing, software + * distributed under the License is distributed on an "AS IS" BASIS, + * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. + * See the License for the specific language governing permissions and + * limitations under the License. + * + */ + +// Package gzip implements and registers the gzip compressor +// during the initialization. +// +// # Experimental +// +// Notice: This package is EXPERIMENTAL and may be changed or removed in a +// later release. +package gzip + +import ( + "compress/gzip" + "encoding/binary" + "fmt" + "io" + "sync" + + "google.golang.org/grpc/encoding" +) + +// Name is the name registered for the gzip compressor. +const Name = "gzip" + +func init() { + c := &compressor{} + c.poolCompressor.New = func() any { + return &writer{Writer: gzip.NewWriter(io.Discard), pool: &c.poolCompressor} + } + encoding.RegisterCompressor(c) +} + +type writer struct { + *gzip.Writer + pool *sync.Pool +} + +// SetLevel updates the registered gzip compressor to use the compression level specified (gzip.HuffmanOnly is not supported). +// NOTE: this function must only be called during initialization time (i.e. in an init() function), +// and is not thread-safe. +// +// The error returned will be nil if the specified level is valid. +func SetLevel(level int) error { + if level < gzip.DefaultCompression || level > gzip.BestCompression { + return fmt.Errorf("grpc: invalid gzip compression level: %d", level) + } + c := encoding.GetCompressor(Name).(*compressor) + c.poolCompressor.New = func() any { + w, err := gzip.NewWriterLevel(io.Discard, level) + if err != nil { + panic(err) + } + return &writer{Writer: w, pool: &c.poolCompressor} + } + return nil +} + +func (c *compressor) Compress(w io.Writer) (io.WriteCloser, error) { + z := c.poolCompressor.Get().(*writer) + z.Writer.Reset(w) + return z, nil +} + +func (z *writer) Close() error { + defer z.pool.Put(z) + return z.Writer.Close() +} + +type reader struct { + *gzip.Reader + pool *sync.Pool +} + +func (c *compressor) Decompress(r io.Reader) (io.Reader, error) { + z, inPool := c.poolDecompressor.Get().(*reader) + if !inPool { + newZ, err := gzip.NewReader(r) + if err != nil { + return nil, err + } + return &reader{Reader: newZ, pool: &c.poolDecompressor}, nil + } + if err := z.Reset(r); err != nil { + c.poolDecompressor.Put(z) + return nil, err + } + return z, nil +} + +func (z *reader) Read(p []byte) (n int, err error) { + n, err = z.Reader.Read(p) + if err == io.EOF { + z.pool.Put(z) + } + return n, err +} + +// RFC1952 specifies that the last four bytes "contains the size of +// the original (uncompressed) input data modulo 2^32." +// gRPC has a max message size of 2GB so we don't need to worry about wraparound. +func (c *compressor) DecompressedSize(buf []byte) int { + last := len(buf) + if last < 4 { + return -1 + } + return int(binary.LittleEndian.Uint32(buf[last-4 : last])) +} + +func (c *compressor) Name() string { + return Name +} + +type compressor struct { + poolCompressor sync.Pool + poolDecompressor sync.Pool +} diff --git a/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go b/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go index faa59e4182..22d263fb94 100644 --- a/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go +++ b/vendor/google.golang.org/grpc/health/grpc_health_v1/health.pb.go @@ -17,7 +17,7 @@ // Code generated by protoc-gen-go. DO NOT EDIT. // versions: -// protoc-gen-go v1.36.5 +// protoc-gen-go v1.36.6 // protoc v5.27.1 // source: grpc/health/v1/health.proto @@ -261,63 +261,29 @@ func (x *HealthListResponse) GetStatuses() map[string]*HealthCheckResponse { var File_grpc_health_v1_health_proto protoreflect.FileDescriptor -var file_grpc_health_v1_health_proto_rawDesc = string([]byte{ - 0x0a, 0x1b, 0x67, 0x72, 0x70, 0x63, 0x2f, 0x68, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x2f, 0x76, 0x31, - 0x2f, 0x68, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x2e, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x12, 0x0e, 0x67, - 0x72, 0x70, 0x63, 0x2e, 0x68, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x2e, 0x76, 0x31, 0x22, 0x2e, 0x0a, - 0x12, 0x48, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x43, 0x68, 0x65, 0x63, 0x6b, 0x52, 0x65, 0x71, 0x75, - 0x65, 0x73, 0x74, 0x12, 0x18, 0x0a, 0x07, 0x73, 0x65, 0x72, 0x76, 0x69, 0x63, 0x65, 0x18, 0x01, - 0x20, 0x01, 0x28, 0x09, 0x52, 0x07, 0x73, 0x65, 0x72, 0x76, 0x69, 0x63, 0x65, 0x22, 0xb1, 0x01, - 0x0a, 0x13, 0x48, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x43, 0x68, 0x65, 0x63, 0x6b, 0x52, 0x65, 0x73, - 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0x2f, 0x67, 0x72, 0x70, 0x63, 0x5f, 0x68, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x5f, 0x76, 0x31, 0xa2, - 0x02, 0x0c, 0x47, 0x72, 0x70, 0x63, 0x48, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x56, 0x31, 0xaa, 0x02, - 0x0e, 0x47, 0x72, 0x70, 0x63, 0x2e, 0x48, 0x65, 0x61, 0x6c, 0x74, 0x68, 0x2e, 0x56, 0x31, 0x62, - 0x06, 0x70, 0x72, 0x6f, 0x74, 0x6f, 0x33, -}) +const file_grpc_health_v1_health_proto_rawDesc = "" + + "\n" + + "\x1bgrpc/health/v1/health.proto\x12\x0egrpc.health.v1\".\n" + + "\x12HealthCheckRequest\x12\x18\n" + + "\aservice\x18\x01 \x01(\tR\aservice\"\xb1\x01\n" + + "\x13HealthCheckResponse\x12I\n" + + "\x06status\x18\x01 \x01(\x0e21.grpc.health.v1.HealthCheckResponse.ServingStatusR\x06status\"O\n" + + "\rServingStatus\x12\v\n" + + "\aUNKNOWN\x10\x00\x12\v\n" + + "\aSERVING\x10\x01\x12\x0f\n" + + "\vNOT_SERVING\x10\x02\x12\x13\n" + + "\x0fSERVICE_UNKNOWN\x10\x03\"\x13\n" + + "\x11HealthListRequest\"\xc4\x01\n" + + "\x12HealthListResponse\x12L\n" + + "\bstatuses\x18\x01 \x03(\v20.grpc.health.v1.HealthListResponse.StatusesEntryR\bstatuses\x1a`\n" + + "\rStatusesEntry\x12\x10\n" + + "\x03key\x18\x01 \x01(\tR\x03key\x129\n" + + "\x05value\x18\x02 \x01(\v2#.grpc.health.v1.HealthCheckResponseR\x05value:\x028\x012\xfd\x01\n" + + "\x06Health\x12P\n" + + "\x05Check\x12\".grpc.health.v1.HealthCheckRequest\x1a#.grpc.health.v1.HealthCheckResponse\x12M\n" + + "\x04List\x12!.grpc.health.v1.HealthListRequest\x1a\".grpc.health.v1.HealthListResponse\x12R\n" + + "\x05Watch\x12\".grpc.health.v1.HealthCheckRequest\x1a#.grpc.health.v1.HealthCheckResponse0\x01Bp\n" + + "\x11io.grpc.health.v1B\vHealthProtoP\x01Z,google.golang.org/grpc/health/grpc_health_v1\xa2\x02\fGrpcHealthV1\xaa\x02\x0eGrpc.Health.V1b\x06proto3" var ( file_grpc_health_v1_health_proto_rawDescOnce sync.Once diff --git a/vendor/google.golang.org/grpc/internal/credentials/credentials.go b/vendor/google.golang.org/grpc/internal/credentials/credentials.go index 9deee7f651..48b22d9cf0 100644 --- a/vendor/google.golang.org/grpc/internal/credentials/credentials.go +++ b/vendor/google.golang.org/grpc/internal/credentials/credentials.go @@ -20,20 +20,6 @@ import ( "context" ) -// requestInfoKey is a struct to be used as the key to store RequestInfo in a -// context. -type requestInfoKey struct{} - -// NewRequestInfoContext creates a context with ri. -func NewRequestInfoContext(ctx context.Context, ri any) context.Context { - return context.WithValue(ctx, requestInfoKey{}, ri) -} - -// RequestInfoFromContext extracts the RequestInfo from ctx. -func RequestInfoFromContext(ctx context.Context) any { - return ctx.Value(requestInfoKey{}) -} - // clientHandshakeInfoKey is a struct used as the key to store // ClientHandshakeInfo in a context. type clientHandshakeInfoKey struct{} diff --git a/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go b/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go index cc5713fd9d..f5f2bdeb86 100644 --- a/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go +++ b/vendor/google.golang.org/grpc/internal/envconfig/envconfig.go @@ -36,7 +36,7 @@ var ( // LeastRequestLB is set if we should support the least_request_experimental // LB policy, which can be enabled by setting the environment variable // "GRPC_EXPERIMENTAL_ENABLE_LEAST_REQUEST" to "true". - LeastRequestLB = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_LEAST_REQUEST", false) + LeastRequestLB = boolFromEnv("GRPC_EXPERIMENTAL_ENABLE_LEAST_REQUEST", true) // ALTSMaxConcurrentHandshakes is the maximum number of concurrent ALTS // handshakes that can be performed. ALTSMaxConcurrentHandshakes = uint64FromEnv("GRPC_ALTS_MAX_CONCURRENT_HANDSHAKES", 100, 1, 100) @@ -69,6 +69,10 @@ var ( // to gRFC A76. It can be enabled by setting the environment variable // "GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY" to "true". RingHashSetRequestHashKey = boolFromEnv("GRPC_EXPERIMENTAL_RING_HASH_SET_REQUEST_HASH_KEY", false) + + // ALTSHandshakerKeepaliveParams is set if we should add the + // KeepaliveParams when dial the ALTS handshaker service. + ALTSHandshakerKeepaliveParams = boolFromEnv("GRPC_EXPERIMENTAL_ALTS_HANDSHAKER_KEEPALIVE_PARAMS", false) ) func boolFromEnv(envVar string, def bool) bool { diff --git a/vendor/google.golang.org/grpc/internal/envconfig/xds.go b/vendor/google.golang.org/grpc/internal/envconfig/xds.go index 2eb97f832b..e87551552a 100644 --- a/vendor/google.golang.org/grpc/internal/envconfig/xds.go +++ b/vendor/google.golang.org/grpc/internal/envconfig/xds.go @@ -63,4 +63,9 @@ var ( // For more details, see: // https://github.com/grpc/proposal/blob/master/A82-xds-system-root-certs.md. XDSSystemRootCertsEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_SYSTEM_ROOT_CERTS", false) + + // XDSSPIFFEEnabled controls if SPIFFE Bundle Maps can be used as roots of + // trust. For more details, see: + // https://github.com/grpc/proposal/blob/master/A87-mtls-spiffe-support.md + XDSSPIFFEEnabled = boolFromEnv("GRPC_EXPERIMENTAL_XDS_MTLS_SPIFFE", false) ) diff --git a/vendor/google.golang.org/grpc/internal/grpcsync/event.go b/vendor/google.golang.org/grpc/internal/grpcsync/event.go index fbe697c376..d788c24930 100644 --- a/vendor/google.golang.org/grpc/internal/grpcsync/event.go +++ b/vendor/google.golang.org/grpc/internal/grpcsync/event.go @@ -21,28 +21,25 @@ package grpcsync import ( - "sync" "sync/atomic" ) // Event represents a one-time event that may occur in the future. type Event struct { - fired int32 + fired atomic.Bool c chan struct{} - o sync.Once } // Fire causes e to complete. It is safe to call multiple times, and // concurrently. It returns true iff this call to Fire caused the signaling -// channel returned by Done to close. +// channel returned by Done to close. If Fire returns false, it is possible +// the Done channel has not been closed yet. func (e *Event) Fire() bool { - ret := false - e.o.Do(func() { - atomic.StoreInt32(&e.fired, 1) + if e.fired.CompareAndSwap(false, true) { close(e.c) - ret = true - }) - return ret + return true + } + return false } // Done returns a channel that will be closed when Fire is called. @@ -52,7 +49,7 @@ func (e *Event) Done() <-chan struct{} { // HasFired returns true if Fire has been called. func (e *Event) HasFired() bool { - return atomic.LoadInt32(&e.fired) == 1 + return e.fired.Load() } // NewEvent returns a new, ready-to-use Event. diff --git a/vendor/google.golang.org/grpc/internal/internal.go b/vendor/google.golang.org/grpc/internal/internal.go index 2ce012cda1..3ac798e8e6 100644 --- a/vendor/google.golang.org/grpc/internal/internal.go +++ b/vendor/google.golang.org/grpc/internal/internal.go @@ -266,6 +266,13 @@ var ( TimeAfterFunc = func(d time.Duration, f func()) Timer { return time.AfterFunc(d, f) } + + // NewStreamWaitingForResolver is a test hook that is triggered when a + // new stream blocks while waiting for name resolution. This can be + // used in tests to synchronize resolver updates and avoid race conditions. + // When set, the function will be called before the stream enters + // the blocking state. + NewStreamWaitingForResolver = func() {} ) // HealthChecker defines the signature of the client-side LB channel health diff --git a/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go b/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go index c0e2275772..20b8fb098a 100644 --- a/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go +++ b/vendor/google.golang.org/grpc/internal/resolver/delegatingresolver/delegatingresolver.go @@ -186,23 +186,15 @@ func (r *delegatingResolver) Close() { r.proxyResolver = nil } -func networkTypeFromAddr(addr resolver.Address) string { - networkType, ok := networktype.Get(addr) - if !ok { - networkType, _ = transport.ParseDialTarget(addr.Addr) - } - return networkType -} - -func isTCPAddressPresent(state *resolver.State) bool { +func needsProxyResolver(state *resolver.State) bool { for _, addr := range state.Addresses { - if networkType := networkTypeFromAddr(addr); networkType == "tcp" { + if !skipProxy(addr) { return true } } for _, endpoint := range state.Endpoints { for _, addr := range endpoint.Addresses { - if networktype := networkTypeFromAddr(addr); networktype == "tcp" { + if !skipProxy(addr) { return true } } @@ -210,6 +202,29 @@ func isTCPAddressPresent(state *resolver.State) bool { return false } +func skipProxy(address resolver.Address) bool { + // Avoid proxy when network is not tcp. + networkType, ok := networktype.Get(address) + if !ok { + networkType, _ = transport.ParseDialTarget(address.Addr) + } + if networkType != "tcp" { + return true + } + + req := &http.Request{URL: &url.URL{ + Scheme: "https", + Host: address.Addr, + }} + // Avoid proxy when address included in `NO_PROXY` environment variable or + // fails to get the proxy address. + url, err := HTTPSProxyFromEnvironment(req) + if err != nil || url == nil { + return true + } + return false +} + // updateClientConnStateLocked constructs a combined list of addresses by // pairing each proxy address with every target address of type TCP. For each // pair, it creates a new [resolver.Address] using the proxy address and @@ -240,8 +255,7 @@ func (r *delegatingResolver) updateClientConnStateLocked() error { } var addresses []resolver.Address for _, targetAddr := range (*r.targetResolverState).Addresses { - // Avoid proxy when network is not tcp. - if networkType := networkTypeFromAddr(targetAddr); networkType != "tcp" { + if skipProxy(targetAddr) { addresses = append(addresses, targetAddr) continue } @@ -259,7 +273,7 @@ func (r *delegatingResolver) updateClientConnStateLocked() error { var addrs []resolver.Address for _, targetAddr := range endpt.Addresses { // Avoid proxy when network is not tcp. - if networkType := networkTypeFromAddr(targetAddr); networkType != "tcp" { + if skipProxy(targetAddr) { addrs = append(addrs, targetAddr) continue } @@ -340,9 +354,10 @@ func (r *delegatingResolver) updateTargetResolverState(state resolver.State) err logger.Infof("Addresses received from target resolver: %v", state.Addresses) } r.targetResolverState = &state - // If no addresses returned by resolver have network type as tcp , do not - // wait for proxy update. - if !isTCPAddressPresent(r.targetResolverState) { + // If all addresses returned by the target resolver have a non-TCP network + // type, or are listed in the `NO_PROXY` environment variable, do not wait + // for proxy update. + if !needsProxyResolver(r.targetResolverState) { return r.cc.UpdateState(*r.targetResolverState) } diff --git a/vendor/google.golang.org/grpc/internal/status/status.go b/vendor/google.golang.org/grpc/internal/status/status.go index 1186f1e9a9..aad171cd02 100644 --- a/vendor/google.golang.org/grpc/internal/status/status.go +++ b/vendor/google.golang.org/grpc/internal/status/status.go @@ -236,3 +236,11 @@ func IsRestrictedControlPlaneCode(s *Status) bool { } return false } + +// RawStatusProto returns the internal protobuf message for use by gRPC itself. +func RawStatusProto(s *Status) *spb.Status { + if s == nil { + return nil + } + return s.s +} diff --git a/vendor/google.golang.org/grpc/internal/transport/http2_client.go b/vendor/google.golang.org/grpc/internal/transport/http2_client.go index 171e690a3f..ef56592b94 100644 --- a/vendor/google.golang.org/grpc/internal/transport/http2_client.go +++ b/vendor/google.golang.org/grpc/internal/transport/http2_client.go @@ -545,7 +545,7 @@ func (t *http2Client) createHeaderFields(ctx context.Context, callHdr *CallHdr) Method: callHdr.Method, AuthInfo: t.authInfo, } - ctxWithRequestInfo := icredentials.NewRequestInfoContext(ctx, ri) + ctxWithRequestInfo := credentials.NewContextWithRequestInfo(ctx, ri) authData, err := t.getTrAuthData(ctxWithRequestInfo, aud) if err != nil { return nil, err @@ -592,6 +592,9 @@ func (t *http2Client) createHeaderFields(ctx context.Context, callHdr *CallHdr) // Send out timeout regardless its value. The server can detect timeout context by itself. // TODO(mmukhi): Perhaps this field should be updated when actually writing out to the wire. timeout := time.Until(dl) + if timeout <= 0 { + return nil, status.Error(codes.DeadlineExceeded, context.DeadlineExceeded.Error()) + } headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-timeout", Value: grpcutil.EncodeDuration(timeout)}) } for k, v := range authData { @@ -749,6 +752,25 @@ func (t *http2Client) NewStream(ctx context.Context, callHdr *CallHdr) (*ClientS callHdr = &newCallHdr } + // The authority specified via the `CallAuthority` CallOption takes the + // highest precedence when determining the `:authority` header. It overrides + // any value present in the Host field of CallHdr. Before applying this + // override, the authority string is validated. If the credentials do not + // implement the AuthorityValidator interface, or if validation fails, the + // RPC is failed with a status code of `UNAVAILABLE`. + if callHdr.Authority != "" { + auth, ok := t.authInfo.(credentials.AuthorityValidator) + if !ok { + return nil, &NewStreamError{Err: status.Errorf(codes.Unavailable, "credentials type %q does not implement the AuthorityValidator interface, but authority override specified with CallAuthority call option", t.authInfo.AuthType())} + } + if err := auth.ValidateAuthority(callHdr.Authority); err != nil { + return nil, &NewStreamError{Err: status.Errorf(codes.Unavailable, "failed to validate authority %q : %v", callHdr.Authority, err)} + } + newCallHdr := *callHdr + newCallHdr.Host = callHdr.Authority + callHdr = &newCallHdr + } + headerFields, err := t.createHeaderFields(ctx, callHdr) if err != nil { return nil, &NewStreamError{Err: err, AllowTransparentRetry: false} diff --git a/vendor/google.golang.org/grpc/internal/transport/http2_server.go b/vendor/google.golang.org/grpc/internal/transport/http2_server.go index 7e53eb1735..e4c3731bdb 100644 --- a/vendor/google.golang.org/grpc/internal/transport/http2_server.go +++ b/vendor/google.golang.org/grpc/internal/transport/http2_server.go @@ -39,6 +39,7 @@ import ( "google.golang.org/grpc/internal/grpclog" "google.golang.org/grpc/internal/grpcutil" "google.golang.org/grpc/internal/pretty" + istatus "google.golang.org/grpc/internal/status" "google.golang.org/grpc/internal/syscall" "google.golang.org/grpc/mem" "google.golang.org/protobuf/proto" @@ -1055,7 +1056,7 @@ func (t *http2Server) writeHeaderLocked(s *ServerStream) error { return nil } -// WriteStatus sends stream status to the client and terminates the stream. +// writeStatus sends stream status to the client and terminates the stream. // There is no further I/O operations being able to perform on this stream. // TODO(zhaoq): Now it indicates the end of entire stream. Revisit if early // OK is adopted. @@ -1083,7 +1084,7 @@ func (t *http2Server) writeStatus(s *ServerStream, st *status.Status) error { headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-status", Value: strconv.Itoa(int(st.Code()))}) headerFields = append(headerFields, hpack.HeaderField{Name: "grpc-message", Value: encodeGrpcMessage(st.Message())}) - if p := st.Proto(); p != nil && len(p.Details) > 0 { + if p := istatus.RawStatusProto(st); len(p.GetDetails()) > 0 { // Do not use the user's grpc-status-details-bin (if present) if we are // even attempting to set our own. delete(s.trailer, grpcStatusDetailsBinHeader) diff --git a/vendor/google.golang.org/grpc/internal/transport/http_util.go b/vendor/google.golang.org/grpc/internal/transport/http_util.go index f997f9fdb5..607d2c4cee 100644 --- a/vendor/google.golang.org/grpc/internal/transport/http_util.go +++ b/vendor/google.golang.org/grpc/internal/transport/http_util.go @@ -196,11 +196,14 @@ func decodeTimeout(s string) (time.Duration, error) { if !ok { return 0, fmt.Errorf("transport: timeout unit is not recognized: %q", s) } - t, err := strconv.ParseInt(s[:size-1], 10, 64) + t, err := strconv.ParseUint(s[:size-1], 10, 64) if err != nil { return 0, err } - const maxHours = math.MaxInt64 / int64(time.Hour) + if t == 0 { + return 0, fmt.Errorf("transport: timeout must be positive: %q", s) + } + const maxHours = math.MaxInt64 / uint64(time.Hour) if d == time.Hour && t > maxHours { // This timeout would overflow math.MaxInt64; clamp it. return time.Duration(math.MaxInt64), nil diff --git a/vendor/google.golang.org/grpc/internal/transport/transport.go b/vendor/google.golang.org/grpc/internal/transport/transport.go index af4a4aeab1..1730a639f9 100644 --- a/vendor/google.golang.org/grpc/internal/transport/transport.go +++ b/vendor/google.golang.org/grpc/internal/transport/transport.go @@ -540,6 +540,11 @@ type CallHdr struct { PreviousAttempts int // value of grpc-previous-rpc-attempts header to set DoneFunc func() // called when the stream is finished + + // Authority is used to explicitly override the `:authority` header. If set, + // this value takes precedence over the Host field and will be used as the + // value for the `:authority` header. + Authority string } // ClientTransport is the common interface for all gRPC client-side transport diff --git a/vendor/google.golang.org/grpc/rpc_util.go b/vendor/google.golang.org/grpc/rpc_util.go index ad20e9dff2..47ea09f5c9 100644 --- a/vendor/google.golang.org/grpc/rpc_util.go +++ b/vendor/google.golang.org/grpc/rpc_util.go @@ -160,6 +160,7 @@ type callInfo struct { codec baseCodec maxRetryRPCBufferSize int onFinish []func(err error) + authority string } func defaultCallInfo() *callInfo { @@ -365,6 +366,36 @@ func (o MaxRecvMsgSizeCallOption) before(c *callInfo) error { } func (o MaxRecvMsgSizeCallOption) after(*callInfo, *csAttempt) {} +// CallAuthority returns a CallOption that sets the HTTP/2 :authority header of +// an RPC to the specified value. When using CallAuthority, the credentials in +// use must implement the AuthorityValidator interface. +// +// # Experimental +// +// Notice: This API is EXPERIMENTAL and may be changed or removed in a later +// release. +func CallAuthority(authority string) CallOption { + return AuthorityOverrideCallOption{Authority: authority} +} + +// AuthorityOverrideCallOption is a CallOption that indicates the HTTP/2 +// :authority header value to use for the call. +// +// # Experimental +// +// Notice: This type is EXPERIMENTAL and may be changed or removed in a later +// release. +type AuthorityOverrideCallOption struct { + Authority string +} + +func (o AuthorityOverrideCallOption) before(c *callInfo) error { + c.authority = o.Authority + return nil +} + +func (o AuthorityOverrideCallOption) after(*callInfo, *csAttempt) {} + // MaxCallSendMsgSize returns a CallOption which sets the maximum message size // in bytes the client can send. If this is not set, gRPC uses the default // `math.MaxInt32`. diff --git a/vendor/google.golang.org/grpc/stats/handlers.go b/vendor/google.golang.org/grpc/stats/handlers.go index dc03731e45..67194a592f 100644 --- a/vendor/google.golang.org/grpc/stats/handlers.go +++ b/vendor/google.golang.org/grpc/stats/handlers.go @@ -38,6 +38,15 @@ type RPCTagInfo struct { // FailFast indicates if this RPC is failfast. // This field is only valid on client side, it's always false on server side. FailFast bool + // NameResolutionDelay indicates if the RPC needed to wait for the + // initial name resolver update before it could begin. This should only + // happen if the channel is IDLE when the RPC is started. Note that + // all retry or hedging attempts for an RPC that experienced a delay + // will have it set. + // + // This field is only valid on the client side; it is always false on + // the server side. + NameResolutionDelay bool } // Handler defines the interface for the related stats handling (e.g., RPCs, connections). diff --git a/vendor/google.golang.org/grpc/stream.go b/vendor/google.golang.org/grpc/stream.go index 12163150ba..d58bb6471a 100644 --- a/vendor/google.golang.org/grpc/stream.go +++ b/vendor/google.golang.org/grpc/stream.go @@ -101,9 +101,9 @@ type ClientStream interface { // It must only be called after stream.CloseAndRecv has returned, or // stream.Recv has returned a non-nil error (including io.EOF). Trailer() metadata.MD - // CloseSend closes the send direction of the stream. It closes the stream - // when non-nil error is met. It is also not safe to call CloseSend - // concurrently with SendMsg. + // CloseSend closes the send direction of the stream. This method always + // returns a nil error. The status of the stream may be discovered using + // RecvMsg. It is also not safe to call CloseSend concurrently with SendMsg. CloseSend() error // Context returns the context for this stream. // @@ -212,14 +212,15 @@ func newClientStream(ctx context.Context, desc *StreamDesc, cc *ClientConn, meth } // Provide an opportunity for the first RPC to see the first service config // provided by the resolver. - if err := cc.waitForResolvedAddrs(ctx); err != nil { + nameResolutionDelayed, err := cc.waitForResolvedAddrs(ctx) + if err != nil { return nil, err } var mc serviceconfig.MethodConfig var onCommit func() newStream := func(ctx context.Context, done func()) (iresolver.ClientStream, error) { - return newClientStreamWithParams(ctx, desc, cc, method, mc, onCommit, done, opts...) + return newClientStreamWithParams(ctx, desc, cc, method, mc, onCommit, done, nameResolutionDelayed, opts...) } rpcInfo := iresolver.RPCInfo{Context: ctx, Method: method} @@ -257,7 +258,7 @@ func newClientStream(ctx context.Context, desc *StreamDesc, cc *ClientConn, meth return newStream(ctx, func() {}) } -func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *ClientConn, method string, mc serviceconfig.MethodConfig, onCommit, doneFunc func(), opts ...CallOption) (_ iresolver.ClientStream, err error) { +func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *ClientConn, method string, mc serviceconfig.MethodConfig, onCommit, doneFunc func(), nameResolutionDelayed bool, opts ...CallOption) (_ iresolver.ClientStream, err error) { callInfo := defaultCallInfo() if mc.WaitForReady != nil { callInfo.failFast = !*mc.WaitForReady @@ -296,6 +297,7 @@ func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *Client Method: method, ContentSubtype: callInfo.contentSubtype, DoneFunc: doneFunc, + Authority: callInfo.authority, } // Set our outgoing compression according to the UseCompressor CallOption, if @@ -321,19 +323,20 @@ func newClientStreamWithParams(ctx context.Context, desc *StreamDesc, cc *Client } cs := &clientStream{ - callHdr: callHdr, - ctx: ctx, - methodConfig: &mc, - opts: opts, - callInfo: callInfo, - cc: cc, - desc: desc, - codec: callInfo.codec, - compressorV0: compressorV0, - compressorV1: compressorV1, - cancel: cancel, - firstAttempt: true, - onCommit: onCommit, + callHdr: callHdr, + ctx: ctx, + methodConfig: &mc, + opts: opts, + callInfo: callInfo, + cc: cc, + desc: desc, + codec: callInfo.codec, + compressorV0: compressorV0, + compressorV1: compressorV1, + cancel: cancel, + firstAttempt: true, + onCommit: onCommit, + nameResolutionDelay: nameResolutionDelayed, } if !cc.dopts.disableRetry { cs.retryThrottler = cc.retryThrottler.Load().(*retryThrottler) @@ -417,7 +420,7 @@ func (cs *clientStream) newAttemptLocked(isTransparent bool) (*csAttempt, error) var beginTime time.Time shs := cs.cc.dopts.copts.StatsHandlers for _, sh := range shs { - ctx = sh.TagRPC(ctx, &stats.RPCTagInfo{FullMethodName: method, FailFast: cs.callInfo.failFast}) + ctx = sh.TagRPC(ctx, &stats.RPCTagInfo{FullMethodName: method, FailFast: cs.callInfo.failFast, NameResolutionDelay: cs.nameResolutionDelay}) beginTime = time.Now() begin := &stats.Begin{ Client: true, @@ -573,6 +576,9 @@ type clientStream struct { onCommit func() replayBuffer []replayOp // operations to replay on retry replayBufferSize int // current size of replayBuffer + // nameResolutionDelay indicates if there was a delay in the name resolution. + // This field is only valid on client side, it's always false on server side. + nameResolutionDelay bool } type replayOp struct { @@ -987,7 +993,7 @@ func (cs *clientStream) RecvMsg(m any) error { func (cs *clientStream) CloseSend() error { if cs.sentLast { - // TODO: return an error and finish the stream instead, due to API misuse? + // Return a nil error on repeated calls to this method. return nil } cs.sentLast = true @@ -1008,7 +1014,10 @@ func (cs *clientStream) CloseSend() error { binlog.Log(cs.ctx, chc) } } - // We never returned an error here for reasons. + // We don't return an error here as we expect users to read all messages + // from the stream and get the RPC status from RecvMsg(). Note that + // SendMsg() must return an error when one occurs so the application + // knows to stop sending messages, but that does not apply here. return nil } @@ -1372,7 +1381,7 @@ func (as *addrConnStream) Trailer() metadata.MD { func (as *addrConnStream) CloseSend() error { if as.sentLast { - // TODO: return an error and finish the stream instead, due to API misuse? + // Return a nil error on repeated calls to this method. return nil } as.sentLast = true diff --git a/vendor/google.golang.org/grpc/version.go b/vendor/google.golang.org/grpc/version.go index 51da8ed590..bd82673dc9 100644 --- a/vendor/google.golang.org/grpc/version.go +++ b/vendor/google.golang.org/grpc/version.go @@ -19,4 +19,4 @@ package grpc // Version is the current grpc version. -const Version = "1.72.1" +const Version = "1.73.0" diff --git a/vendor/google.golang.org/protobuf/internal/editionssupport/editions.go b/vendor/google.golang.org/protobuf/internal/editionssupport/editions.go deleted file mode 100644 index bf1aba0e85..0000000000 --- a/vendor/google.golang.org/protobuf/internal/editionssupport/editions.go +++ /dev/null @@ -1,18 +0,0 @@ -// Copyright 2024 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package editionssupport defines constants for editions that are supported. -package editionssupport - -import "google.golang.org/protobuf/types/descriptorpb" - -const ( - Minimum = descriptorpb.Edition_EDITION_PROTO2 - Maximum = descriptorpb.Edition_EDITION_2023 - - // MaximumKnown is the maximum edition that is known to Go Protobuf, but not - // declared as supported. In other words: end users cannot use it, but - // testprotos inside Go Protobuf can. - MaximumKnown = descriptorpb.Edition_EDITION_2024 -) diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/desc.go b/vendor/google.golang.org/protobuf/reflect/protodesc/desc.go deleted file mode 100644 index 823dbf3ba6..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/desc.go +++ /dev/null @@ -1,286 +0,0 @@ -// Copyright 2018 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package protodesc provides functionality for converting -// FileDescriptorProto messages to/from [protoreflect.FileDescriptor] values. -// -// The google.protobuf.FileDescriptorProto is a protobuf message that describes -// the type information for a .proto file in a form that is easily serializable. -// The [protoreflect.FileDescriptor] is a more structured representation of -// the FileDescriptorProto message where references and remote dependencies -// can be directly followed. -package protodesc - -import ( - "strings" - - "google.golang.org/protobuf/internal/editionssupport" - "google.golang.org/protobuf/internal/errors" - "google.golang.org/protobuf/internal/filedesc" - "google.golang.org/protobuf/internal/pragma" - "google.golang.org/protobuf/internal/strs" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" - - "google.golang.org/protobuf/types/descriptorpb" -) - -// Resolver is the resolver used by [NewFile] to resolve dependencies. -// The enums and messages provided must belong to some parent file, -// which is also registered. -// -// It is implemented by [protoregistry.Files]. -type Resolver interface { - FindFileByPath(string) (protoreflect.FileDescriptor, error) - FindDescriptorByName(protoreflect.FullName) (protoreflect.Descriptor, error) -} - -// FileOptions configures the construction of file descriptors. -type FileOptions struct { - pragma.NoUnkeyedLiterals - - // AllowUnresolvable configures New to permissively allow unresolvable - // file, enum, or message dependencies. Unresolved dependencies are replaced - // by placeholder equivalents. - // - // The following dependencies may be left unresolved: - // • Resolving an imported file. - // • Resolving the type for a message field or extension field. - // If the kind of the field is unknown, then a placeholder is used for both - // the Enum and Message accessors on the protoreflect.FieldDescriptor. - // • Resolving an enum value set as the default for an optional enum field. - // If unresolvable, the protoreflect.FieldDescriptor.Default is set to the - // first value in the associated enum (or zero if the also enum dependency - // is also unresolvable). The protoreflect.FieldDescriptor.DefaultEnumValue - // is populated with a placeholder. - // • Resolving the extended message type for an extension field. - // • Resolving the input or output message type for a service method. - // - // If the unresolved dependency uses a relative name, - // then the placeholder will contain an invalid FullName with a "*." prefix, - // indicating that the starting prefix of the full name is unknown. - AllowUnresolvable bool -} - -// NewFile creates a new [protoreflect.FileDescriptor] from the provided -// file descriptor message. See [FileOptions.New] for more information. -func NewFile(fd *descriptorpb.FileDescriptorProto, r Resolver) (protoreflect.FileDescriptor, error) { - return FileOptions{}.New(fd, r) -} - -// NewFiles creates a new [protoregistry.Files] from the provided -// FileDescriptorSet message. See [FileOptions.NewFiles] for more information. -func NewFiles(fd *descriptorpb.FileDescriptorSet) (*protoregistry.Files, error) { - return FileOptions{}.NewFiles(fd) -} - -// New creates a new [protoreflect.FileDescriptor] from the provided -// file descriptor message. The file must represent a valid proto file according -// to protobuf semantics. The returned descriptor is a deep copy of the input. -// -// Any imported files, enum types, or message types referenced in the file are -// resolved using the provided registry. When looking up an import file path, -// the path must be unique. The newly created file descriptor is not registered -// back into the provided file registry. -func (o FileOptions) New(fd *descriptorpb.FileDescriptorProto, r Resolver) (protoreflect.FileDescriptor, error) { - if r == nil { - r = (*protoregistry.Files)(nil) // empty resolver - } - - // Handle the file descriptor content. - f := &filedesc.File{L2: &filedesc.FileL2{}} - switch fd.GetSyntax() { - case "proto2", "": - f.L1.Syntax = protoreflect.Proto2 - f.L1.Edition = filedesc.EditionProto2 - case "proto3": - f.L1.Syntax = protoreflect.Proto3 - f.L1.Edition = filedesc.EditionProto3 - case "editions": - f.L1.Syntax = protoreflect.Editions - f.L1.Edition = fromEditionProto(fd.GetEdition()) - default: - return nil, errors.New("invalid syntax: %q", fd.GetSyntax()) - } - f.L1.Path = fd.GetName() - if f.L1.Path == "" { - return nil, errors.New("file path must be populated") - } - if f.L1.Syntax == protoreflect.Editions && (fd.GetEdition() < editionssupport.Minimum || fd.GetEdition() > editionssupport.Maximum) { - // Allow cmd/protoc-gen-go/testdata to use any edition for easier - // testing of upcoming edition features. - if !strings.HasPrefix(fd.GetName(), "cmd/protoc-gen-go/testdata/") { - return nil, errors.New("use of edition %v not yet supported by the Go Protobuf runtime", fd.GetEdition()) - } - } - f.L1.Package = protoreflect.FullName(fd.GetPackage()) - if !f.L1.Package.IsValid() && f.L1.Package != "" { - return nil, errors.New("invalid package: %q", f.L1.Package) - } - if opts := fd.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.FileOptions) - f.L2.Options = func() protoreflect.ProtoMessage { return opts } - } - initFileDescFromFeatureSet(f, fd.GetOptions().GetFeatures()) - - f.L2.Imports = make(filedesc.FileImports, len(fd.GetDependency())) - for _, i := range fd.GetPublicDependency() { - if !(0 <= i && int(i) < len(f.L2.Imports)) || f.L2.Imports[i].IsPublic { - return nil, errors.New("invalid or duplicate public import index: %d", i) - } - f.L2.Imports[i].IsPublic = true - } - imps := importSet{f.Path(): true} - for i, path := range fd.GetDependency() { - imp := &f.L2.Imports[i] - f, err := r.FindFileByPath(path) - if err == protoregistry.NotFound && o.AllowUnresolvable { - f = filedesc.PlaceholderFile(path) - } else if err != nil { - return nil, errors.New("could not resolve import %q: %v", path, err) - } - imp.FileDescriptor = f - - if imps[imp.Path()] { - return nil, errors.New("already imported %q", path) - } - imps[imp.Path()] = true - } - for i := range fd.GetDependency() { - imp := &f.L2.Imports[i] - imps.importPublic(imp.Imports()) - } - - // Handle source locations. - f.L2.Locations.File = f - for _, loc := range fd.GetSourceCodeInfo().GetLocation() { - var l protoreflect.SourceLocation - // TODO: Validate that the path points to an actual declaration? - l.Path = protoreflect.SourcePath(loc.GetPath()) - s := loc.GetSpan() - switch len(s) { - case 3: - l.StartLine, l.StartColumn, l.EndLine, l.EndColumn = int(s[0]), int(s[1]), int(s[0]), int(s[2]) - case 4: - l.StartLine, l.StartColumn, l.EndLine, l.EndColumn = int(s[0]), int(s[1]), int(s[2]), int(s[3]) - default: - return nil, errors.New("invalid span: %v", s) - } - // TODO: Validate that the span information is sensible? - // See https://github.com/protocolbuffers/protobuf/issues/6378. - if false && (l.EndLine < l.StartLine || l.StartLine < 0 || l.StartColumn < 0 || l.EndColumn < 0 || - (l.StartLine == l.EndLine && l.EndColumn <= l.StartColumn)) { - return nil, errors.New("invalid span: %v", s) - } - l.LeadingDetachedComments = loc.GetLeadingDetachedComments() - l.LeadingComments = loc.GetLeadingComments() - l.TrailingComments = loc.GetTrailingComments() - f.L2.Locations.List = append(f.L2.Locations.List, l) - } - - // Step 1: Allocate and derive the names for all declarations. - // This copies all fields from the descriptor proto except: - // google.protobuf.FieldDescriptorProto.type_name - // google.protobuf.FieldDescriptorProto.default_value - // google.protobuf.FieldDescriptorProto.oneof_index - // google.protobuf.FieldDescriptorProto.extendee - // google.protobuf.MethodDescriptorProto.input - // google.protobuf.MethodDescriptorProto.output - var err error - sb := new(strs.Builder) - r1 := make(descsByName) - if f.L1.Enums.List, err = r1.initEnumDeclarations(fd.GetEnumType(), f, sb); err != nil { - return nil, err - } - if f.L1.Messages.List, err = r1.initMessagesDeclarations(fd.GetMessageType(), f, sb); err != nil { - return nil, err - } - if f.L1.Extensions.List, err = r1.initExtensionDeclarations(fd.GetExtension(), f, sb); err != nil { - return nil, err - } - if f.L1.Services.List, err = r1.initServiceDeclarations(fd.GetService(), f, sb); err != nil { - return nil, err - } - - // Step 2: Resolve every dependency reference not handled by step 1. - r2 := &resolver{local: r1, remote: r, imports: imps, allowUnresolvable: o.AllowUnresolvable} - if err := r2.resolveMessageDependencies(f.L1.Messages.List, fd.GetMessageType()); err != nil { - return nil, err - } - if err := r2.resolveExtensionDependencies(f.L1.Extensions.List, fd.GetExtension()); err != nil { - return nil, err - } - if err := r2.resolveServiceDependencies(f.L1.Services.List, fd.GetService()); err != nil { - return nil, err - } - - // Step 3: Validate every enum, message, and extension declaration. - if err := validateEnumDeclarations(f.L1.Enums.List, fd.GetEnumType()); err != nil { - return nil, err - } - if err := validateMessageDeclarations(f, f.L1.Messages.List, fd.GetMessageType()); err != nil { - return nil, err - } - if err := validateExtensionDeclarations(f, f.L1.Extensions.List, fd.GetExtension()); err != nil { - return nil, err - } - - return f, nil -} - -type importSet map[string]bool - -func (is importSet) importPublic(imps protoreflect.FileImports) { - for i := 0; i < imps.Len(); i++ { - if imp := imps.Get(i); imp.IsPublic { - is[imp.Path()] = true - is.importPublic(imp.Imports()) - } - } -} - -// NewFiles creates a new [protoregistry.Files] from the provided -// FileDescriptorSet message. The descriptor set must include only -// valid files according to protobuf semantics. The returned descriptors -// are a deep copy of the input. -func (o FileOptions) NewFiles(fds *descriptorpb.FileDescriptorSet) (*protoregistry.Files, error) { - files := make(map[string]*descriptorpb.FileDescriptorProto) - for _, fd := range fds.File { - if _, ok := files[fd.GetName()]; ok { - return nil, errors.New("file appears multiple times: %q", fd.GetName()) - } - files[fd.GetName()] = fd - } - r := &protoregistry.Files{} - for _, fd := range files { - if err := o.addFileDeps(r, fd, files); err != nil { - return nil, err - } - } - return r, nil -} -func (o FileOptions) addFileDeps(r *protoregistry.Files, fd *descriptorpb.FileDescriptorProto, files map[string]*descriptorpb.FileDescriptorProto) error { - // Set the entry to nil while descending into a file's dependencies to detect cycles. - files[fd.GetName()] = nil - for _, dep := range fd.Dependency { - depfd, ok := files[dep] - if depfd == nil { - if ok { - return errors.New("import cycle in file: %q", dep) - } - continue - } - if err := o.addFileDeps(r, depfd, files); err != nil { - return err - } - } - // Delete the entry once dependencies are processed. - delete(files, fd.GetName()) - f, err := o.New(fd, r) - if err != nil { - return err - } - return r.RegisterFile(f) -} diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_init.go b/vendor/google.golang.org/protobuf/reflect/protodesc/desc_init.go deleted file mode 100644 index 9da34998b1..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_init.go +++ /dev/null @@ -1,288 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package protodesc - -import ( - "google.golang.org/protobuf/internal/errors" - "google.golang.org/protobuf/internal/filedesc" - "google.golang.org/protobuf/internal/strs" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - - "google.golang.org/protobuf/types/descriptorpb" -) - -type descsByName map[protoreflect.FullName]protoreflect.Descriptor - -func (r descsByName) initEnumDeclarations(eds []*descriptorpb.EnumDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (es []filedesc.Enum, err error) { - es = make([]filedesc.Enum, len(eds)) // allocate up-front to ensure stable pointers - for i, ed := range eds { - e := &es[i] - e.L2 = new(filedesc.EnumL2) - if e.L0, err = r.makeBase(e, parent, ed.GetName(), i, sb); err != nil { - return nil, err - } - if opts := ed.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.EnumOptions) - e.L2.Options = func() protoreflect.ProtoMessage { return opts } - } - e.L1.EditionFeatures = mergeEditionFeatures(parent, ed.GetOptions().GetFeatures()) - for _, s := range ed.GetReservedName() { - e.L2.ReservedNames.List = append(e.L2.ReservedNames.List, protoreflect.Name(s)) - } - for _, rr := range ed.GetReservedRange() { - e.L2.ReservedRanges.List = append(e.L2.ReservedRanges.List, [2]protoreflect.EnumNumber{ - protoreflect.EnumNumber(rr.GetStart()), - protoreflect.EnumNumber(rr.GetEnd()), - }) - } - if e.L2.Values.List, err = r.initEnumValuesFromDescriptorProto(ed.GetValue(), e, sb); err != nil { - return nil, err - } - } - return es, nil -} - -func (r descsByName) initEnumValuesFromDescriptorProto(vds []*descriptorpb.EnumValueDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (vs []filedesc.EnumValue, err error) { - vs = make([]filedesc.EnumValue, len(vds)) // allocate up-front to ensure stable pointers - for i, vd := range vds { - v := &vs[i] - if v.L0, err = r.makeBase(v, parent, vd.GetName(), i, sb); err != nil { - return nil, err - } - if opts := vd.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.EnumValueOptions) - v.L1.Options = func() protoreflect.ProtoMessage { return opts } - } - v.L1.Number = protoreflect.EnumNumber(vd.GetNumber()) - } - return vs, nil -} - -func (r descsByName) initMessagesDeclarations(mds []*descriptorpb.DescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (ms []filedesc.Message, err error) { - ms = make([]filedesc.Message, len(mds)) // allocate up-front to ensure stable pointers - for i, md := range mds { - m := &ms[i] - m.L2 = new(filedesc.MessageL2) - if m.L0, err = r.makeBase(m, parent, md.GetName(), i, sb); err != nil { - return nil, err - } - m.L1.EditionFeatures = mergeEditionFeatures(parent, md.GetOptions().GetFeatures()) - if opts := md.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.MessageOptions) - m.L2.Options = func() protoreflect.ProtoMessage { return opts } - m.L1.IsMapEntry = opts.GetMapEntry() - m.L1.IsMessageSet = opts.GetMessageSetWireFormat() - } - for _, s := range md.GetReservedName() { - m.L2.ReservedNames.List = append(m.L2.ReservedNames.List, protoreflect.Name(s)) - } - for _, rr := range md.GetReservedRange() { - m.L2.ReservedRanges.List = append(m.L2.ReservedRanges.List, [2]protoreflect.FieldNumber{ - protoreflect.FieldNumber(rr.GetStart()), - protoreflect.FieldNumber(rr.GetEnd()), - }) - } - for _, xr := range md.GetExtensionRange() { - m.L2.ExtensionRanges.List = append(m.L2.ExtensionRanges.List, [2]protoreflect.FieldNumber{ - protoreflect.FieldNumber(xr.GetStart()), - protoreflect.FieldNumber(xr.GetEnd()), - }) - var optsFunc func() protoreflect.ProtoMessage - if opts := xr.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.ExtensionRangeOptions) - optsFunc = func() protoreflect.ProtoMessage { return opts } - } - m.L2.ExtensionRangeOptions = append(m.L2.ExtensionRangeOptions, optsFunc) - } - if m.L2.Fields.List, err = r.initFieldsFromDescriptorProto(md.GetField(), m, sb); err != nil { - return nil, err - } - if m.L2.Oneofs.List, err = r.initOneofsFromDescriptorProto(md.GetOneofDecl(), m, sb); err != nil { - return nil, err - } - if m.L1.Enums.List, err = r.initEnumDeclarations(md.GetEnumType(), m, sb); err != nil { - return nil, err - } - if m.L1.Messages.List, err = r.initMessagesDeclarations(md.GetNestedType(), m, sb); err != nil { - return nil, err - } - if m.L1.Extensions.List, err = r.initExtensionDeclarations(md.GetExtension(), m, sb); err != nil { - return nil, err - } - } - return ms, nil -} - -// canBePacked returns whether the field can use packed encoding: -// https://protobuf.dev/programming-guides/encoding/#packed -func canBePacked(fd *descriptorpb.FieldDescriptorProto) bool { - if fd.GetLabel() != descriptorpb.FieldDescriptorProto_LABEL_REPEATED { - return false // not a repeated field - } - - switch protoreflect.Kind(fd.GetType()) { - case protoreflect.MessageKind, protoreflect.GroupKind: - return false // not a scalar type field - - case protoreflect.StringKind, protoreflect.BytesKind: - // string and bytes can explicitly not be declared as packed, - // see https://protobuf.dev/programming-guides/encoding/#packed - return false - - default: - return true - } -} - -func (r descsByName) initFieldsFromDescriptorProto(fds []*descriptorpb.FieldDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (fs []filedesc.Field, err error) { - fs = make([]filedesc.Field, len(fds)) // allocate up-front to ensure stable pointers - for i, fd := range fds { - f := &fs[i] - if f.L0, err = r.makeBase(f, parent, fd.GetName(), i, sb); err != nil { - return nil, err - } - f.L1.EditionFeatures = mergeEditionFeatures(parent, fd.GetOptions().GetFeatures()) - f.L1.IsProto3Optional = fd.GetProto3Optional() - if opts := fd.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.FieldOptions) - f.L1.Options = func() protoreflect.ProtoMessage { return opts } - f.L1.IsLazy = opts.GetLazy() - if opts.Packed != nil { - f.L1.EditionFeatures.IsPacked = opts.GetPacked() - } - } - f.L1.Number = protoreflect.FieldNumber(fd.GetNumber()) - f.L1.Cardinality = protoreflect.Cardinality(fd.GetLabel()) - if fd.Type != nil { - f.L1.Kind = protoreflect.Kind(fd.GetType()) - } - if fd.JsonName != nil { - f.L1.StringName.InitJSON(fd.GetJsonName()) - } - - if f.L1.EditionFeatures.IsLegacyRequired { - f.L1.Cardinality = protoreflect.Required - } - - if f.L1.Kind == protoreflect.MessageKind && f.L1.EditionFeatures.IsDelimitedEncoded { - f.L1.Kind = protoreflect.GroupKind - } - } - return fs, nil -} - -func (r descsByName) initOneofsFromDescriptorProto(ods []*descriptorpb.OneofDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (os []filedesc.Oneof, err error) { - os = make([]filedesc.Oneof, len(ods)) // allocate up-front to ensure stable pointers - for i, od := range ods { - o := &os[i] - if o.L0, err = r.makeBase(o, parent, od.GetName(), i, sb); err != nil { - return nil, err - } - o.L1.EditionFeatures = mergeEditionFeatures(parent, od.GetOptions().GetFeatures()) - if opts := od.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.OneofOptions) - o.L1.Options = func() protoreflect.ProtoMessage { return opts } - } - } - return os, nil -} - -func (r descsByName) initExtensionDeclarations(xds []*descriptorpb.FieldDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (xs []filedesc.Extension, err error) { - xs = make([]filedesc.Extension, len(xds)) // allocate up-front to ensure stable pointers - for i, xd := range xds { - x := &xs[i] - x.L2 = new(filedesc.ExtensionL2) - if x.L0, err = r.makeBase(x, parent, xd.GetName(), i, sb); err != nil { - return nil, err - } - x.L1.EditionFeatures = mergeEditionFeatures(parent, xd.GetOptions().GetFeatures()) - if opts := xd.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.FieldOptions) - x.L2.Options = func() protoreflect.ProtoMessage { return opts } - if opts.Packed != nil { - x.L1.EditionFeatures.IsPacked = opts.GetPacked() - } - } - x.L1.Number = protoreflect.FieldNumber(xd.GetNumber()) - x.L1.Cardinality = protoreflect.Cardinality(xd.GetLabel()) - if xd.Type != nil { - x.L1.Kind = protoreflect.Kind(xd.GetType()) - } - if xd.JsonName != nil { - x.L2.StringName.InitJSON(xd.GetJsonName()) - } - if x.L1.Kind == protoreflect.MessageKind && x.L1.EditionFeatures.IsDelimitedEncoded { - x.L1.Kind = protoreflect.GroupKind - } - } - return xs, nil -} - -func (r descsByName) initServiceDeclarations(sds []*descriptorpb.ServiceDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (ss []filedesc.Service, err error) { - ss = make([]filedesc.Service, len(sds)) // allocate up-front to ensure stable pointers - for i, sd := range sds { - s := &ss[i] - s.L2 = new(filedesc.ServiceL2) - if s.L0, err = r.makeBase(s, parent, sd.GetName(), i, sb); err != nil { - return nil, err - } - if opts := sd.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.ServiceOptions) - s.L2.Options = func() protoreflect.ProtoMessage { return opts } - } - if s.L2.Methods.List, err = r.initMethodsFromDescriptorProto(sd.GetMethod(), s, sb); err != nil { - return nil, err - } - } - return ss, nil -} - -func (r descsByName) initMethodsFromDescriptorProto(mds []*descriptorpb.MethodDescriptorProto, parent protoreflect.Descriptor, sb *strs.Builder) (ms []filedesc.Method, err error) { - ms = make([]filedesc.Method, len(mds)) // allocate up-front to ensure stable pointers - for i, md := range mds { - m := &ms[i] - if m.L0, err = r.makeBase(m, parent, md.GetName(), i, sb); err != nil { - return nil, err - } - if opts := md.GetOptions(); opts != nil { - opts = proto.Clone(opts).(*descriptorpb.MethodOptions) - m.L1.Options = func() protoreflect.ProtoMessage { return opts } - } - m.L1.IsStreamingClient = md.GetClientStreaming() - m.L1.IsStreamingServer = md.GetServerStreaming() - } - return ms, nil -} - -func (r descsByName) makeBase(child, parent protoreflect.Descriptor, name string, idx int, sb *strs.Builder) (filedesc.BaseL0, error) { - if !protoreflect.Name(name).IsValid() { - return filedesc.BaseL0{}, errors.New("descriptor %q has an invalid nested name: %q", parent.FullName(), name) - } - - // Derive the full name of the child. - // Note that enum values are a sibling to the enum parent in the namespace. - var fullName protoreflect.FullName - if _, ok := parent.(protoreflect.EnumDescriptor); ok { - fullName = sb.AppendFullName(parent.FullName().Parent(), protoreflect.Name(name)) - } else { - fullName = sb.AppendFullName(parent.FullName(), protoreflect.Name(name)) - } - if _, ok := r[fullName]; ok { - return filedesc.BaseL0{}, errors.New("descriptor %q already declared", fullName) - } - r[fullName] = child - - // TODO: Verify that the full name does not already exist in the resolver? - // This is not as critical since most usages of NewFile will register - // the created file back into the registry, which will perform this check. - - return filedesc.BaseL0{ - FullName: fullName, - ParentFile: parent.ParentFile().(*filedesc.File), - Parent: parent, - Index: idx, - }, nil -} diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_resolve.go b/vendor/google.golang.org/protobuf/reflect/protodesc/desc_resolve.go deleted file mode 100644 index ff692436e9..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_resolve.go +++ /dev/null @@ -1,291 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package protodesc - -import ( - "google.golang.org/protobuf/internal/encoding/defval" - "google.golang.org/protobuf/internal/errors" - "google.golang.org/protobuf/internal/filedesc" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/reflect/protoregistry" - - "google.golang.org/protobuf/types/descriptorpb" -) - -// resolver is a wrapper around a local registry of declarations within the file -// and the remote resolver. The remote resolver is restricted to only return -// descriptors that have been imported. -type resolver struct { - local descsByName - remote Resolver - imports importSet - - allowUnresolvable bool -} - -func (r *resolver) resolveMessageDependencies(ms []filedesc.Message, mds []*descriptorpb.DescriptorProto) (err error) { - for i, md := range mds { - m := &ms[i] - for j, fd := range md.GetField() { - f := &m.L2.Fields.List[j] - if f.L1.Cardinality == protoreflect.Required { - m.L2.RequiredNumbers.List = append(m.L2.RequiredNumbers.List, f.L1.Number) - } - if fd.OneofIndex != nil { - k := int(fd.GetOneofIndex()) - if !(0 <= k && k < len(md.GetOneofDecl())) { - return errors.New("message field %q has an invalid oneof index: %d", f.FullName(), k) - } - o := &m.L2.Oneofs.List[k] - f.L1.ContainingOneof = o - o.L1.Fields.List = append(o.L1.Fields.List, f) - } - - if f.L1.Kind, f.L1.Enum, f.L1.Message, err = r.findTarget(f.Kind(), f.Parent().FullName(), partialName(fd.GetTypeName())); err != nil { - return errors.New("message field %q cannot resolve type: %v", f.FullName(), err) - } - if f.L1.Kind == protoreflect.GroupKind && (f.IsMap() || f.IsMapEntry()) { - // A map field might inherit delimited encoding from a file-wide default feature. - // But maps never actually use delimited encoding. (At least for now...) - f.L1.Kind = protoreflect.MessageKind - } - if fd.DefaultValue != nil { - v, ev, err := unmarshalDefault(fd.GetDefaultValue(), f, r.allowUnresolvable) - if err != nil { - return errors.New("message field %q has invalid default: %v", f.FullName(), err) - } - f.L1.Default = filedesc.DefaultValue(v, ev) - } - } - - if err := r.resolveMessageDependencies(m.L1.Messages.List, md.GetNestedType()); err != nil { - return err - } - if err := r.resolveExtensionDependencies(m.L1.Extensions.List, md.GetExtension()); err != nil { - return err - } - } - return nil -} - -func (r *resolver) resolveExtensionDependencies(xs []filedesc.Extension, xds []*descriptorpb.FieldDescriptorProto) (err error) { - for i, xd := range xds { - x := &xs[i] - if x.L1.Extendee, err = r.findMessageDescriptor(x.Parent().FullName(), partialName(xd.GetExtendee())); err != nil { - return errors.New("extension field %q cannot resolve extendee: %v", x.FullName(), err) - } - if x.L1.Kind, x.L2.Enum, x.L2.Message, err = r.findTarget(x.Kind(), x.Parent().FullName(), partialName(xd.GetTypeName())); err != nil { - return errors.New("extension field %q cannot resolve type: %v", x.FullName(), err) - } - if xd.DefaultValue != nil { - v, ev, err := unmarshalDefault(xd.GetDefaultValue(), x, r.allowUnresolvable) - if err != nil { - return errors.New("extension field %q has invalid default: %v", x.FullName(), err) - } - x.L2.Default = filedesc.DefaultValue(v, ev) - } - } - return nil -} - -func (r *resolver) resolveServiceDependencies(ss []filedesc.Service, sds []*descriptorpb.ServiceDescriptorProto) (err error) { - for i, sd := range sds { - s := &ss[i] - for j, md := range sd.GetMethod() { - m := &s.L2.Methods.List[j] - m.L1.Input, err = r.findMessageDescriptor(m.Parent().FullName(), partialName(md.GetInputType())) - if err != nil { - return errors.New("service method %q cannot resolve input: %v", m.FullName(), err) - } - m.L1.Output, err = r.findMessageDescriptor(s.FullName(), partialName(md.GetOutputType())) - if err != nil { - return errors.New("service method %q cannot resolve output: %v", m.FullName(), err) - } - } - } - return nil -} - -// findTarget finds an enum or message descriptor if k is an enum, message, -// group, or unknown. If unknown, and the name could be resolved, the kind -// returned kind is set based on the type of the resolved descriptor. -func (r *resolver) findTarget(k protoreflect.Kind, scope protoreflect.FullName, ref partialName) (protoreflect.Kind, protoreflect.EnumDescriptor, protoreflect.MessageDescriptor, error) { - switch k { - case protoreflect.EnumKind: - ed, err := r.findEnumDescriptor(scope, ref) - if err != nil { - return 0, nil, nil, err - } - return k, ed, nil, nil - case protoreflect.MessageKind, protoreflect.GroupKind: - md, err := r.findMessageDescriptor(scope, ref) - if err != nil { - return 0, nil, nil, err - } - return k, nil, md, nil - case 0: - // Handle unspecified kinds (possible with parsers that operate - // on a per-file basis without knowledge of dependencies). - d, err := r.findDescriptor(scope, ref) - if err == protoregistry.NotFound && r.allowUnresolvable { - return k, filedesc.PlaceholderEnum(ref.FullName()), filedesc.PlaceholderMessage(ref.FullName()), nil - } else if err == protoregistry.NotFound { - return 0, nil, nil, errors.New("%q not found", ref.FullName()) - } else if err != nil { - return 0, nil, nil, err - } - switch d := d.(type) { - case protoreflect.EnumDescriptor: - return protoreflect.EnumKind, d, nil, nil - case protoreflect.MessageDescriptor: - return protoreflect.MessageKind, nil, d, nil - default: - return 0, nil, nil, errors.New("unknown kind") - } - default: - if ref != "" { - return 0, nil, nil, errors.New("target name cannot be specified for %v", k) - } - if !k.IsValid() { - return 0, nil, nil, errors.New("invalid kind: %d", k) - } - return k, nil, nil, nil - } -} - -// findDescriptor finds the descriptor by name, -// which may be a relative name within some scope. -// -// Suppose the scope was "fizz.buzz" and the reference was "Foo.Bar", -// then the following full names are searched: -// - fizz.buzz.Foo.Bar -// - fizz.Foo.Bar -// - Foo.Bar -func (r *resolver) findDescriptor(scope protoreflect.FullName, ref partialName) (protoreflect.Descriptor, error) { - if !ref.IsValid() { - return nil, errors.New("invalid name reference: %q", ref) - } - if ref.IsFull() { - scope, ref = "", ref[1:] - } - var foundButNotImported protoreflect.Descriptor - for { - // Derive the full name to search. - s := protoreflect.FullName(ref) - if scope != "" { - s = scope + "." + s - } - - // Check the current file for the descriptor. - if d, ok := r.local[s]; ok { - return d, nil - } - - // Check the remote registry for the descriptor. - d, err := r.remote.FindDescriptorByName(s) - if err == nil { - // Only allow descriptors covered by one of the imports. - if r.imports[d.ParentFile().Path()] { - return d, nil - } - foundButNotImported = d - } else if err != protoregistry.NotFound { - return nil, errors.Wrap(err, "%q", s) - } - - // Continue on at a higher level of scoping. - if scope == "" { - if d := foundButNotImported; d != nil { - return nil, errors.New("resolved %q, but %q is not imported", d.FullName(), d.ParentFile().Path()) - } - return nil, protoregistry.NotFound - } - scope = scope.Parent() - } -} - -func (r *resolver) findEnumDescriptor(scope protoreflect.FullName, ref partialName) (protoreflect.EnumDescriptor, error) { - d, err := r.findDescriptor(scope, ref) - if err == protoregistry.NotFound && r.allowUnresolvable { - return filedesc.PlaceholderEnum(ref.FullName()), nil - } else if err == protoregistry.NotFound { - return nil, errors.New("%q not found", ref.FullName()) - } else if err != nil { - return nil, err - } - ed, ok := d.(protoreflect.EnumDescriptor) - if !ok { - return nil, errors.New("resolved %q, but it is not an enum", d.FullName()) - } - return ed, nil -} - -func (r *resolver) findMessageDescriptor(scope protoreflect.FullName, ref partialName) (protoreflect.MessageDescriptor, error) { - d, err := r.findDescriptor(scope, ref) - if err == protoregistry.NotFound && r.allowUnresolvable { - return filedesc.PlaceholderMessage(ref.FullName()), nil - } else if err == protoregistry.NotFound { - return nil, errors.New("%q not found", ref.FullName()) - } else if err != nil { - return nil, err - } - md, ok := d.(protoreflect.MessageDescriptor) - if !ok { - return nil, errors.New("resolved %q, but it is not an message", d.FullName()) - } - return md, nil -} - -// partialName is the partial name. A leading dot means that the name is full, -// otherwise the name is relative to some current scope. -// See google.protobuf.FieldDescriptorProto.type_name. -type partialName string - -func (s partialName) IsFull() bool { - return len(s) > 0 && s[0] == '.' -} - -func (s partialName) IsValid() bool { - if s.IsFull() { - return protoreflect.FullName(s[1:]).IsValid() - } - return protoreflect.FullName(s).IsValid() -} - -const unknownPrefix = "*." - -// FullName converts the partial name to a full name on a best-effort basis. -// If relative, it creates an invalid full name, using a "*." prefix -// to indicate that the start of the full name is unknown. -func (s partialName) FullName() protoreflect.FullName { - if s.IsFull() { - return protoreflect.FullName(s[1:]) - } - return protoreflect.FullName(unknownPrefix + s) -} - -func unmarshalDefault(s string, fd protoreflect.FieldDescriptor, allowUnresolvable bool) (protoreflect.Value, protoreflect.EnumValueDescriptor, error) { - var evs protoreflect.EnumValueDescriptors - if fd.Enum() != nil { - evs = fd.Enum().Values() - } - v, ev, err := defval.Unmarshal(s, fd.Kind(), evs, defval.Descriptor) - if err != nil && allowUnresolvable && evs != nil && protoreflect.Name(s).IsValid() { - v = protoreflect.ValueOfEnum(0) - if evs.Len() > 0 { - v = protoreflect.ValueOfEnum(evs.Get(0).Number()) - } - ev = filedesc.PlaceholderEnumValue(fd.Enum().FullName().Parent().Append(protoreflect.Name(s))) - } else if err != nil { - return v, ev, err - } - if !fd.HasPresence() { - return v, ev, errors.New("cannot be specified with implicit field presence") - } - if fd.Kind() == protoreflect.MessageKind || fd.Kind() == protoreflect.GroupKind || fd.Cardinality() == protoreflect.Repeated { - return v, ev, errors.New("cannot be specified on composite types") - } - return v, ev, nil -} diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_validate.go b/vendor/google.golang.org/protobuf/reflect/protodesc/desc_validate.go deleted file mode 100644 index c343d9227b..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/desc_validate.go +++ /dev/null @@ -1,359 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package protodesc - -import ( - "strings" - "unicode" - - "google.golang.org/protobuf/encoding/protowire" - "google.golang.org/protobuf/internal/errors" - "google.golang.org/protobuf/internal/filedesc" - "google.golang.org/protobuf/internal/flags" - "google.golang.org/protobuf/internal/genid" - "google.golang.org/protobuf/internal/strs" - "google.golang.org/protobuf/reflect/protoreflect" - - "google.golang.org/protobuf/types/descriptorpb" -) - -func validateEnumDeclarations(es []filedesc.Enum, eds []*descriptorpb.EnumDescriptorProto) error { - for i, ed := range eds { - e := &es[i] - if err := e.L2.ReservedNames.CheckValid(); err != nil { - return errors.New("enum %q reserved names has %v", e.FullName(), err) - } - if err := e.L2.ReservedRanges.CheckValid(); err != nil { - return errors.New("enum %q reserved ranges has %v", e.FullName(), err) - } - if len(ed.GetValue()) == 0 { - return errors.New("enum %q must contain at least one value declaration", e.FullName()) - } - allowAlias := ed.GetOptions().GetAllowAlias() - foundAlias := false - for i := 0; i < e.Values().Len(); i++ { - v1 := e.Values().Get(i) - if v2 := e.Values().ByNumber(v1.Number()); v1 != v2 { - foundAlias = true - if !allowAlias { - return errors.New("enum %q has conflicting non-aliased values on number %d: %q with %q", e.FullName(), v1.Number(), v1.Name(), v2.Name()) - } - } - } - if allowAlias && !foundAlias { - return errors.New("enum %q allows aliases, but none were found", e.FullName()) - } - if !e.IsClosed() { - if v := e.Values().Get(0); v.Number() != 0 { - return errors.New("enum %q using open semantics must have zero number for the first value", v.FullName()) - } - // Verify that value names in open enums do not conflict if the - // case-insensitive prefix is removed. - // See protoc v3.8.0: src/google/protobuf/descriptor.cc:4991-5055 - names := map[string]protoreflect.EnumValueDescriptor{} - prefix := strings.Replace(strings.ToLower(string(e.Name())), "_", "", -1) - for i := 0; i < e.Values().Len(); i++ { - v1 := e.Values().Get(i) - s := strs.EnumValueName(strs.TrimEnumPrefix(string(v1.Name()), prefix)) - if v2, ok := names[s]; ok && v1.Number() != v2.Number() { - return errors.New("enum %q using open semantics has conflict: %q with %q", e.FullName(), v1.Name(), v2.Name()) - } - names[s] = v1 - } - } - - for j, vd := range ed.GetValue() { - v := &e.L2.Values.List[j] - if vd.Number == nil { - return errors.New("enum value %q must have a specified number", v.FullName()) - } - if e.L2.ReservedNames.Has(v.Name()) { - return errors.New("enum value %q must not use reserved name", v.FullName()) - } - if e.L2.ReservedRanges.Has(v.Number()) { - return errors.New("enum value %q must not use reserved number %d", v.FullName(), v.Number()) - } - } - } - return nil -} - -func validateMessageDeclarations(file *filedesc.File, ms []filedesc.Message, mds []*descriptorpb.DescriptorProto) error { - // There are a few limited exceptions only for proto3 - isProto3 := file.L1.Edition == fromEditionProto(descriptorpb.Edition_EDITION_PROTO3) - for i, md := range mds { - m := &ms[i] - - // Handle the message descriptor itself. - isMessageSet := md.GetOptions().GetMessageSetWireFormat() - if err := m.L2.ReservedNames.CheckValid(); err != nil { - return errors.New("message %q reserved names has %v", m.FullName(), err) - } - if err := m.L2.ReservedRanges.CheckValid(isMessageSet); err != nil { - return errors.New("message %q reserved ranges has %v", m.FullName(), err) - } - if err := m.L2.ExtensionRanges.CheckValid(isMessageSet); err != nil { - return errors.New("message %q extension ranges has %v", m.FullName(), err) - } - if err := (*filedesc.FieldRanges).CheckOverlap(&m.L2.ReservedRanges, &m.L2.ExtensionRanges); err != nil { - return errors.New("message %q reserved and extension ranges has %v", m.FullName(), err) - } - for i := 0; i < m.Fields().Len(); i++ { - f1 := m.Fields().Get(i) - if f2 := m.Fields().ByNumber(f1.Number()); f1 != f2 { - return errors.New("message %q has conflicting fields: %q with %q", m.FullName(), f1.Name(), f2.Name()) - } - } - if isMessageSet && !flags.ProtoLegacy { - return errors.New("message %q is a MessageSet, which is a legacy proto1 feature that is no longer supported", m.FullName()) - } - if isMessageSet && (isProto3 || m.Fields().Len() > 0 || m.ExtensionRanges().Len() == 0) { - return errors.New("message %q is an invalid proto1 MessageSet", m.FullName()) - } - if isProto3 { - if m.ExtensionRanges().Len() > 0 { - return errors.New("message %q using proto3 semantics cannot have extension ranges", m.FullName()) - } - } - - for j, fd := range md.GetField() { - f := &m.L2.Fields.List[j] - if m.L2.ReservedNames.Has(f.Name()) { - return errors.New("message field %q must not use reserved name", f.FullName()) - } - if !f.Number().IsValid() { - return errors.New("message field %q has an invalid number: %d", f.FullName(), f.Number()) - } - if !f.Cardinality().IsValid() { - return errors.New("message field %q has an invalid cardinality: %d", f.FullName(), f.Cardinality()) - } - if m.L2.ReservedRanges.Has(f.Number()) { - return errors.New("message field %q must not use reserved number %d", f.FullName(), f.Number()) - } - if m.L2.ExtensionRanges.Has(f.Number()) { - return errors.New("message field %q with number %d in extension range", f.FullName(), f.Number()) - } - if fd.Extendee != nil { - return errors.New("message field %q may not have extendee: %q", f.FullName(), fd.GetExtendee()) - } - if f.L1.IsProto3Optional { - if !isProto3 { - return errors.New("message field %q under proto3 optional semantics must be specified in the proto3 syntax", f.FullName()) - } - if f.Cardinality() != protoreflect.Optional { - return errors.New("message field %q under proto3 optional semantics must have optional cardinality", f.FullName()) - } - if f.ContainingOneof() != nil && f.ContainingOneof().Fields().Len() != 1 { - return errors.New("message field %q under proto3 optional semantics must be within a single element oneof", f.FullName()) - } - } - if f.IsPacked() && !isPackable(f) { - return errors.New("message field %q is not packable", f.FullName()) - } - if err := checkValidGroup(file, f); err != nil { - return errors.New("message field %q is an invalid group: %v", f.FullName(), err) - } - if err := checkValidMap(f); err != nil { - return errors.New("message field %q is an invalid map: %v", f.FullName(), err) - } - if isProto3 { - if f.Cardinality() == protoreflect.Required { - return errors.New("message field %q using proto3 semantics cannot be required", f.FullName()) - } - if f.Enum() != nil && !f.Enum().IsPlaceholder() && f.Enum().IsClosed() { - return errors.New("message field %q using proto3 semantics may only depend on open enums", f.FullName()) - } - } - if f.Cardinality() == protoreflect.Optional && !f.HasPresence() && f.Enum() != nil && !f.Enum().IsPlaceholder() && f.Enum().IsClosed() { - return errors.New("message field %q with implicit presence may only use open enums", f.FullName()) - } - } - seenSynthetic := false // synthetic oneofs for proto3 optional must come after real oneofs - for j := range md.GetOneofDecl() { - o := &m.L2.Oneofs.List[j] - if o.Fields().Len() == 0 { - return errors.New("message oneof %q must contain at least one field declaration", o.FullName()) - } - if n := o.Fields().Len(); n-1 != (o.Fields().Get(n-1).Index() - o.Fields().Get(0).Index()) { - return errors.New("message oneof %q must have consecutively declared fields", o.FullName()) - } - - if o.IsSynthetic() { - seenSynthetic = true - continue - } - if !o.IsSynthetic() && seenSynthetic { - return errors.New("message oneof %q must be declared before synthetic oneofs", o.FullName()) - } - - for i := 0; i < o.Fields().Len(); i++ { - f := o.Fields().Get(i) - if f.Cardinality() != protoreflect.Optional { - return errors.New("message field %q belongs in a oneof and must be optional", f.FullName()) - } - } - } - - if err := validateEnumDeclarations(m.L1.Enums.List, md.GetEnumType()); err != nil { - return err - } - if err := validateMessageDeclarations(file, m.L1.Messages.List, md.GetNestedType()); err != nil { - return err - } - if err := validateExtensionDeclarations(file, m.L1.Extensions.List, md.GetExtension()); err != nil { - return err - } - } - return nil -} - -func validateExtensionDeclarations(f *filedesc.File, xs []filedesc.Extension, xds []*descriptorpb.FieldDescriptorProto) error { - for i, xd := range xds { - x := &xs[i] - // NOTE: Avoid using the IsValid method since extensions to MessageSet - // may have a field number higher than normal. This check only verifies - // that the number is not negative or reserved. We check again later - // if we know that the extendee is definitely not a MessageSet. - if n := x.Number(); n < 0 || (protowire.FirstReservedNumber <= n && n <= protowire.LastReservedNumber) { - return errors.New("extension field %q has an invalid number: %d", x.FullName(), x.Number()) - } - if !x.Cardinality().IsValid() || x.Cardinality() == protoreflect.Required { - return errors.New("extension field %q has an invalid cardinality: %d", x.FullName(), x.Cardinality()) - } - if xd.JsonName != nil { - // A bug in older versions of protoc would always populate the - // "json_name" option for extensions when it is meaningless. - // When it did so, it would always use the camel-cased field name. - if xd.GetJsonName() != strs.JSONCamelCase(string(x.Name())) { - return errors.New("extension field %q may not have an explicitly set JSON name: %q", x.FullName(), xd.GetJsonName()) - } - } - if xd.OneofIndex != nil { - return errors.New("extension field %q may not be part of a oneof", x.FullName()) - } - if md := x.ContainingMessage(); !md.IsPlaceholder() { - if !md.ExtensionRanges().Has(x.Number()) { - return errors.New("extension field %q extends %q with non-extension field number: %d", x.FullName(), md.FullName(), x.Number()) - } - isMessageSet := md.Options().(*descriptorpb.MessageOptions).GetMessageSetWireFormat() - if isMessageSet && !isOptionalMessage(x) { - return errors.New("extension field %q extends MessageSet and must be an optional message", x.FullName()) - } - if !isMessageSet && !x.Number().IsValid() { - return errors.New("extension field %q has an invalid number: %d", x.FullName(), x.Number()) - } - } - if x.IsPacked() && !isPackable(x) { - return errors.New("extension field %q is not packable", x.FullName()) - } - if err := checkValidGroup(f, x); err != nil { - return errors.New("extension field %q is an invalid group: %v", x.FullName(), err) - } - if md := x.Message(); md != nil && md.IsMapEntry() { - return errors.New("extension field %q cannot be a map entry", x.FullName()) - } - if f.L1.Edition == fromEditionProto(descriptorpb.Edition_EDITION_PROTO3) { - switch x.ContainingMessage().FullName() { - case (*descriptorpb.FileOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.EnumOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.EnumValueOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.MessageOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.FieldOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.OneofOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.ExtensionRangeOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.ServiceOptions)(nil).ProtoReflect().Descriptor().FullName(): - case (*descriptorpb.MethodOptions)(nil).ProtoReflect().Descriptor().FullName(): - default: - return errors.New("extension field %q cannot be declared in proto3 unless extended descriptor options", x.FullName()) - } - } - } - return nil -} - -// isOptionalMessage reports whether this is an optional message. -// If the kind is unknown, it is assumed to be a message. -func isOptionalMessage(fd protoreflect.FieldDescriptor) bool { - return (fd.Kind() == 0 || fd.Kind() == protoreflect.MessageKind) && fd.Cardinality() == protoreflect.Optional -} - -// isPackable checks whether the pack option can be specified. -func isPackable(fd protoreflect.FieldDescriptor) bool { - switch fd.Kind() { - case protoreflect.StringKind, protoreflect.BytesKind, protoreflect.MessageKind, protoreflect.GroupKind: - return false - } - return fd.IsList() -} - -// checkValidGroup reports whether fd is a valid group according to the same -// rules that protoc imposes. -func checkValidGroup(f *filedesc.File, fd protoreflect.FieldDescriptor) error { - md := fd.Message() - switch { - case fd.Kind() != protoreflect.GroupKind: - return nil - case f.L1.Edition == fromEditionProto(descriptorpb.Edition_EDITION_PROTO3): - return errors.New("invalid under proto3 semantics") - case md == nil || md.IsPlaceholder(): - return errors.New("message must be resolvable") - } - if f.L1.Edition < fromEditionProto(descriptorpb.Edition_EDITION_2023) { - switch { - case fd.FullName().Parent() != md.FullName().Parent(): - return errors.New("message and field must be declared in the same scope") - case !unicode.IsUpper(rune(md.Name()[0])): - return errors.New("message name must start with an uppercase") - case fd.Name() != protoreflect.Name(strings.ToLower(string(md.Name()))): - return errors.New("field name must be lowercased form of the message name") - } - } - return nil -} - -// checkValidMap checks whether the field is a valid map according to the same -// rules that protoc imposes. -// See protoc v3.8.0: src/google/protobuf/descriptor.cc:6045-6115 -func checkValidMap(fd protoreflect.FieldDescriptor) error { - md := fd.Message() - switch { - case md == nil || !md.IsMapEntry(): - return nil - case fd.FullName().Parent() != md.FullName().Parent(): - return errors.New("message and field must be declared in the same scope") - case md.Name() != protoreflect.Name(strs.MapEntryName(string(fd.Name()))): - return errors.New("incorrect implicit map entry name") - case fd.Cardinality() != protoreflect.Repeated: - return errors.New("field must be repeated") - case md.Fields().Len() != 2: - return errors.New("message must have exactly two fields") - case md.ExtensionRanges().Len() > 0: - return errors.New("message must not have any extension ranges") - case md.Enums().Len()+md.Messages().Len()+md.Extensions().Len() > 0: - return errors.New("message must not have any nested declarations") - } - kf := md.Fields().Get(0) - vf := md.Fields().Get(1) - switch { - case kf.Name() != genid.MapEntry_Key_field_name || kf.Number() != genid.MapEntry_Key_field_number || kf.Cardinality() != protoreflect.Optional || kf.ContainingOneof() != nil || kf.HasDefault(): - return errors.New("invalid key field") - case vf.Name() != genid.MapEntry_Value_field_name || vf.Number() != genid.MapEntry_Value_field_number || vf.Cardinality() != protoreflect.Optional || vf.ContainingOneof() != nil || vf.HasDefault(): - return errors.New("invalid value field") - } - switch kf.Kind() { - case protoreflect.BoolKind: // bool - case protoreflect.Int32Kind, protoreflect.Sint32Kind, protoreflect.Sfixed32Kind: // int32 - case protoreflect.Int64Kind, protoreflect.Sint64Kind, protoreflect.Sfixed64Kind: // int64 - case protoreflect.Uint32Kind, protoreflect.Fixed32Kind: // uint32 - case protoreflect.Uint64Kind, protoreflect.Fixed64Kind: // uint64 - case protoreflect.StringKind: // string - default: - return errors.New("invalid key kind: %v", kf.Kind()) - } - if e := vf.Enum(); e != nil && e.Values().Len() > 0 && e.Values().Get(0).Number() != 0 { - return errors.New("map enum value must have zero number for the first value") - } - return nil -} diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/editions.go b/vendor/google.golang.org/protobuf/reflect/protodesc/editions.go deleted file mode 100644 index 697a61b290..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/editions.go +++ /dev/null @@ -1,181 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package protodesc - -import ( - "fmt" - "os" - "sync" - - "google.golang.org/protobuf/internal/editiondefaults" - "google.golang.org/protobuf/internal/filedesc" - "google.golang.org/protobuf/internal/genid" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - "google.golang.org/protobuf/types/descriptorpb" - "google.golang.org/protobuf/types/gofeaturespb" -) - -var defaults = &descriptorpb.FeatureSetDefaults{} -var defaultsCacheMu sync.Mutex -var defaultsCache = make(map[filedesc.Edition]*descriptorpb.FeatureSet) - -func init() { - err := proto.Unmarshal(editiondefaults.Defaults, defaults) - if err != nil { - fmt.Fprintf(os.Stderr, "unmarshal editions defaults: %v\n", err) - os.Exit(1) - } -} - -func fromEditionProto(epb descriptorpb.Edition) filedesc.Edition { - return filedesc.Edition(epb) -} - -func toEditionProto(ed filedesc.Edition) descriptorpb.Edition { - switch ed { - case filedesc.EditionUnknown: - return descriptorpb.Edition_EDITION_UNKNOWN - case filedesc.EditionProto2: - return descriptorpb.Edition_EDITION_PROTO2 - case filedesc.EditionProto3: - return descriptorpb.Edition_EDITION_PROTO3 - case filedesc.Edition2023: - return descriptorpb.Edition_EDITION_2023 - case filedesc.Edition2024: - return descriptorpb.Edition_EDITION_2024 - default: - panic(fmt.Sprintf("unknown value for edition: %v", ed)) - } -} - -func getFeatureSetFor(ed filedesc.Edition) *descriptorpb.FeatureSet { - defaultsCacheMu.Lock() - defer defaultsCacheMu.Unlock() - if def, ok := defaultsCache[ed]; ok { - return def - } - edpb := toEditionProto(ed) - if defaults.GetMinimumEdition() > edpb || defaults.GetMaximumEdition() < edpb { - // This should never happen protodesc.(FileOptions).New would fail when - // initializing the file descriptor. - // This most likely means the embedded defaults were not updated. - fmt.Fprintf(os.Stderr, "internal error: unsupported edition %v (did you forget to update the embedded defaults (i.e. the bootstrap descriptor proto)?)\n", edpb) - os.Exit(1) - } - fsed := defaults.GetDefaults()[0] - // Using a linear search for now. - // Editions are guaranteed to be sorted and thus we could use a binary search. - // Given that there are only a handful of editions (with one more per year) - // there is not much reason to use a binary search. - for _, def := range defaults.GetDefaults() { - if def.GetEdition() <= edpb { - fsed = def - } else { - break - } - } - fs := proto.Clone(fsed.GetFixedFeatures()).(*descriptorpb.FeatureSet) - proto.Merge(fs, fsed.GetOverridableFeatures()) - defaultsCache[ed] = fs - return fs -} - -// mergeEditionFeatures merges the parent and child feature sets. This function -// should be used when initializing Go descriptors from descriptor protos which -// is why the parent is a filedesc.EditionsFeatures (Go representation) while -// the child is a descriptorproto.FeatureSet (protoc representation). -// Any feature set by the child overwrites what is set by the parent. -func mergeEditionFeatures(parentDesc protoreflect.Descriptor, child *descriptorpb.FeatureSet) filedesc.EditionFeatures { - var parentFS filedesc.EditionFeatures - switch p := parentDesc.(type) { - case *filedesc.File: - parentFS = p.L1.EditionFeatures - case *filedesc.Message: - parentFS = p.L1.EditionFeatures - default: - panic(fmt.Sprintf("unknown parent type %T", parentDesc)) - } - if child == nil { - return parentFS - } - if fp := child.FieldPresence; fp != nil { - parentFS.IsFieldPresence = *fp == descriptorpb.FeatureSet_LEGACY_REQUIRED || - *fp == descriptorpb.FeatureSet_EXPLICIT - parentFS.IsLegacyRequired = *fp == descriptorpb.FeatureSet_LEGACY_REQUIRED - } - if et := child.EnumType; et != nil { - parentFS.IsOpenEnum = *et == descriptorpb.FeatureSet_OPEN - } - - if rfe := child.RepeatedFieldEncoding; rfe != nil { - parentFS.IsPacked = *rfe == descriptorpb.FeatureSet_PACKED - } - - if utf8val := child.Utf8Validation; utf8val != nil { - parentFS.IsUTF8Validated = *utf8val == descriptorpb.FeatureSet_VERIFY - } - - if me := child.MessageEncoding; me != nil { - parentFS.IsDelimitedEncoded = *me == descriptorpb.FeatureSet_DELIMITED - } - - if jf := child.JsonFormat; jf != nil { - parentFS.IsJSONCompliant = *jf == descriptorpb.FeatureSet_ALLOW - } - - // We must not use proto.GetExtension(child, gofeaturespb.E_Go) - // because that only works for messages we generated, but not for - // dynamicpb messages. See golang/protobuf#1669. - // - // Further, we harden this code against adversarial inputs: a - // service which accepts descriptors from a possibly malicious - // source shouldn't crash. - goFeatures := child.ProtoReflect().Get(gofeaturespb.E_Go.TypeDescriptor()) - if !goFeatures.IsValid() { - return parentFS - } - gf, ok := goFeatures.Interface().(protoreflect.Message) - if !ok { - return parentFS - } - // gf.Interface() could be *dynamicpb.Message or *gofeaturespb.GoFeatures. - fields := gf.Descriptor().Fields() - - if fd := fields.ByNumber(genid.GoFeatures_LegacyUnmarshalJsonEnum_field_number); fd != nil && - !fd.IsList() && - fd.Kind() == protoreflect.BoolKind && - gf.Has(fd) { - parentFS.GenerateLegacyUnmarshalJSON = gf.Get(fd).Bool() - } - - if fd := fields.ByNumber(genid.GoFeatures_StripEnumPrefix_field_number); fd != nil && - !fd.IsList() && - fd.Kind() == protoreflect.EnumKind && - gf.Has(fd) { - parentFS.StripEnumPrefix = int(gf.Get(fd).Enum()) - } - - if fd := fields.ByNumber(genid.GoFeatures_ApiLevel_field_number); fd != nil && - !fd.IsList() && - fd.Kind() == protoreflect.EnumKind && - gf.Has(fd) { - parentFS.APILevel = int(gf.Get(fd).Enum()) - } - - return parentFS -} - -// initFileDescFromFeatureSet initializes editions related fields in fd based -// on fs. If fs is nil it is assumed to be an empty featureset and all fields -// will be initialized with the appropriate default. fd.L1.Edition must be set -// before calling this function. -func initFileDescFromFeatureSet(fd *filedesc.File, fs *descriptorpb.FeatureSet) { - dfs := getFeatureSetFor(fd.L1.Edition) - // initialize the featureset with the defaults - fd.L1.EditionFeatures = mergeEditionFeatures(fd, dfs) - // overwrite any options explicitly specified - fd.L1.EditionFeatures = mergeEditionFeatures(fd, fs) -} diff --git a/vendor/google.golang.org/protobuf/reflect/protodesc/proto.go b/vendor/google.golang.org/protobuf/reflect/protodesc/proto.go deleted file mode 100644 index 9b880aa8c9..0000000000 --- a/vendor/google.golang.org/protobuf/reflect/protodesc/proto.go +++ /dev/null @@ -1,271 +0,0 @@ -// Copyright 2019 The Go Authors. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package protodesc - -import ( - "fmt" - "strings" - - "google.golang.org/protobuf/internal/encoding/defval" - "google.golang.org/protobuf/internal/strs" - "google.golang.org/protobuf/proto" - "google.golang.org/protobuf/reflect/protoreflect" - - "google.golang.org/protobuf/types/descriptorpb" -) - -// ToFileDescriptorProto copies a [protoreflect.FileDescriptor] into a -// google.protobuf.FileDescriptorProto message. -func ToFileDescriptorProto(file protoreflect.FileDescriptor) *descriptorpb.FileDescriptorProto { - p := &descriptorpb.FileDescriptorProto{ - Name: proto.String(file.Path()), - Options: proto.Clone(file.Options()).(*descriptorpb.FileOptions), - } - if file.Package() != "" { - p.Package = proto.String(string(file.Package())) - } - for i, imports := 0, file.Imports(); i < imports.Len(); i++ { - imp := imports.Get(i) - p.Dependency = append(p.Dependency, imp.Path()) - if imp.IsPublic { - p.PublicDependency = append(p.PublicDependency, int32(i)) - } - } - for i, locs := 0, file.SourceLocations(); i < locs.Len(); i++ { - loc := locs.Get(i) - l := &descriptorpb.SourceCodeInfo_Location{} - l.Path = append(l.Path, loc.Path...) - if loc.StartLine == loc.EndLine { - l.Span = []int32{int32(loc.StartLine), int32(loc.StartColumn), int32(loc.EndColumn)} - } else { - l.Span = []int32{int32(loc.StartLine), int32(loc.StartColumn), int32(loc.EndLine), int32(loc.EndColumn)} - } - l.LeadingDetachedComments = append([]string(nil), loc.LeadingDetachedComments...) - if loc.LeadingComments != "" { - l.LeadingComments = proto.String(loc.LeadingComments) - } - if loc.TrailingComments != "" { - l.TrailingComments = proto.String(loc.TrailingComments) - } - if p.SourceCodeInfo == nil { - p.SourceCodeInfo = &descriptorpb.SourceCodeInfo{} - } - p.SourceCodeInfo.Location = append(p.SourceCodeInfo.Location, l) - - } - for i, messages := 0, file.Messages(); i < messages.Len(); i++ { - p.MessageType = append(p.MessageType, ToDescriptorProto(messages.Get(i))) - } - for i, enums := 0, file.Enums(); i < enums.Len(); i++ { - p.EnumType = append(p.EnumType, ToEnumDescriptorProto(enums.Get(i))) - } - for i, services := 0, file.Services(); i < services.Len(); i++ { - p.Service = append(p.Service, ToServiceDescriptorProto(services.Get(i))) - } - for i, exts := 0, file.Extensions(); i < exts.Len(); i++ { - p.Extension = append(p.Extension, ToFieldDescriptorProto(exts.Get(i))) - } - if syntax := file.Syntax(); syntax != protoreflect.Proto2 && syntax.IsValid() { - p.Syntax = proto.String(file.Syntax().String()) - } - if file.Syntax() == protoreflect.Editions { - desc := file - if fileImportDesc, ok := file.(protoreflect.FileImport); ok { - desc = fileImportDesc.FileDescriptor - } - - if editionsInterface, ok := desc.(interface{ Edition() int32 }); ok { - p.Edition = descriptorpb.Edition(editionsInterface.Edition()).Enum() - } - } - return p -} - -// ToDescriptorProto copies a [protoreflect.MessageDescriptor] into a -// google.protobuf.DescriptorProto message. -func ToDescriptorProto(message protoreflect.MessageDescriptor) *descriptorpb.DescriptorProto { - p := &descriptorpb.DescriptorProto{ - Name: proto.String(string(message.Name())), - Options: proto.Clone(message.Options()).(*descriptorpb.MessageOptions), - } - for i, fields := 0, message.Fields(); i < fields.Len(); i++ { - p.Field = append(p.Field, ToFieldDescriptorProto(fields.Get(i))) - } - for i, exts := 0, message.Extensions(); i < exts.Len(); i++ { - p.Extension = append(p.Extension, ToFieldDescriptorProto(exts.Get(i))) - } - for i, messages := 0, message.Messages(); i < messages.Len(); i++ { - p.NestedType = append(p.NestedType, ToDescriptorProto(messages.Get(i))) - } - for i, enums := 0, message.Enums(); i < enums.Len(); i++ { - p.EnumType = append(p.EnumType, ToEnumDescriptorProto(enums.Get(i))) - } - for i, xranges := 0, message.ExtensionRanges(); i < xranges.Len(); i++ { - xrange := xranges.Get(i) - p.ExtensionRange = append(p.ExtensionRange, &descriptorpb.DescriptorProto_ExtensionRange{ - Start: proto.Int32(int32(xrange[0])), - End: proto.Int32(int32(xrange[1])), - Options: proto.Clone(message.ExtensionRangeOptions(i)).(*descriptorpb.ExtensionRangeOptions), - }) - } - for i, oneofs := 0, message.Oneofs(); i < oneofs.Len(); i++ { - p.OneofDecl = append(p.OneofDecl, ToOneofDescriptorProto(oneofs.Get(i))) - } - for i, ranges := 0, message.ReservedRanges(); i < ranges.Len(); i++ { - rrange := ranges.Get(i) - p.ReservedRange = append(p.ReservedRange, &descriptorpb.DescriptorProto_ReservedRange{ - Start: proto.Int32(int32(rrange[0])), - End: proto.Int32(int32(rrange[1])), - }) - } - for i, names := 0, message.ReservedNames(); i < names.Len(); i++ { - p.ReservedName = append(p.ReservedName, string(names.Get(i))) - } - return p -} - -// ToFieldDescriptorProto copies a [protoreflect.FieldDescriptor] into a -// google.protobuf.FieldDescriptorProto message. -func ToFieldDescriptorProto(field protoreflect.FieldDescriptor) *descriptorpb.FieldDescriptorProto { - p := &descriptorpb.FieldDescriptorProto{ - Name: proto.String(string(field.Name())), - Number: proto.Int32(int32(field.Number())), - Label: descriptorpb.FieldDescriptorProto_Label(field.Cardinality()).Enum(), - Options: proto.Clone(field.Options()).(*descriptorpb.FieldOptions), - } - if field.IsExtension() { - p.Extendee = fullNameOf(field.ContainingMessage()) - } - if field.Kind().IsValid() { - p.Type = descriptorpb.FieldDescriptorProto_Type(field.Kind()).Enum() - } - if field.Enum() != nil { - p.TypeName = fullNameOf(field.Enum()) - } - if field.Message() != nil { - p.TypeName = fullNameOf(field.Message()) - } - if field.HasJSONName() { - // A bug in older versions of protoc would always populate the - // "json_name" option for extensions when it is meaningless. - // When it did so, it would always use the camel-cased field name. - if field.IsExtension() { - p.JsonName = proto.String(strs.JSONCamelCase(string(field.Name()))) - } else { - p.JsonName = proto.String(field.JSONName()) - } - } - if field.Syntax() == protoreflect.Proto3 && field.HasOptionalKeyword() { - p.Proto3Optional = proto.Bool(true) - } - if field.Syntax() == protoreflect.Editions { - // Editions have no group keyword, this type is only set so that downstream users continue - // treating this as delimited encoding. - if p.GetType() == descriptorpb.FieldDescriptorProto_TYPE_GROUP { - p.Type = descriptorpb.FieldDescriptorProto_TYPE_MESSAGE.Enum() - } - // Editions have no required keyword, this label is only set so that downstream users continue - // treating it as required. - if p.GetLabel() == descriptorpb.FieldDescriptorProto_LABEL_REQUIRED { - p.Label = descriptorpb.FieldDescriptorProto_LABEL_OPTIONAL.Enum() - } - } - if field.HasDefault() { - def, err := defval.Marshal(field.Default(), field.DefaultEnumValue(), field.Kind(), defval.Descriptor) - if err != nil && field.DefaultEnumValue() != nil { - def = string(field.DefaultEnumValue().Name()) // occurs for unresolved enum values - } else if err != nil { - panic(fmt.Sprintf("%v: %v", field.FullName(), err)) - } - p.DefaultValue = proto.String(def) - } - if oneof := field.ContainingOneof(); oneof != nil { - p.OneofIndex = proto.Int32(int32(oneof.Index())) - } - return p -} - -// ToOneofDescriptorProto copies a [protoreflect.OneofDescriptor] into a -// google.protobuf.OneofDescriptorProto message. -func ToOneofDescriptorProto(oneof protoreflect.OneofDescriptor) *descriptorpb.OneofDescriptorProto { - return &descriptorpb.OneofDescriptorProto{ - Name: proto.String(string(oneof.Name())), - Options: proto.Clone(oneof.Options()).(*descriptorpb.OneofOptions), - } -} - -// ToEnumDescriptorProto copies a [protoreflect.EnumDescriptor] into a -// google.protobuf.EnumDescriptorProto message. -func ToEnumDescriptorProto(enum protoreflect.EnumDescriptor) *descriptorpb.EnumDescriptorProto { - p := &descriptorpb.EnumDescriptorProto{ - Name: proto.String(string(enum.Name())), - Options: proto.Clone(enum.Options()).(*descriptorpb.EnumOptions), - } - for i, values := 0, enum.Values(); i < values.Len(); i++ { - p.Value = append(p.Value, ToEnumValueDescriptorProto(values.Get(i))) - } - for i, ranges := 0, enum.ReservedRanges(); i < ranges.Len(); i++ { - rrange := ranges.Get(i) - p.ReservedRange = append(p.ReservedRange, &descriptorpb.EnumDescriptorProto_EnumReservedRange{ - Start: proto.Int32(int32(rrange[0])), - End: proto.Int32(int32(rrange[1])), - }) - } - for i, names := 0, enum.ReservedNames(); i < names.Len(); i++ { - p.ReservedName = append(p.ReservedName, string(names.Get(i))) - } - return p -} - -// ToEnumValueDescriptorProto copies a [protoreflect.EnumValueDescriptor] into a -// google.protobuf.EnumValueDescriptorProto message. -func ToEnumValueDescriptorProto(value protoreflect.EnumValueDescriptor) *descriptorpb.EnumValueDescriptorProto { - return &descriptorpb.EnumValueDescriptorProto{ - Name: proto.String(string(value.Name())), - Number: proto.Int32(int32(value.Number())), - Options: proto.Clone(value.Options()).(*descriptorpb.EnumValueOptions), - } -} - -// ToServiceDescriptorProto copies a [protoreflect.ServiceDescriptor] into a -// google.protobuf.ServiceDescriptorProto message. -func ToServiceDescriptorProto(service protoreflect.ServiceDescriptor) *descriptorpb.ServiceDescriptorProto { - p := &descriptorpb.ServiceDescriptorProto{ - Name: proto.String(string(service.Name())), - Options: proto.Clone(service.Options()).(*descriptorpb.ServiceOptions), - } - for i, methods := 0, service.Methods(); i < methods.Len(); i++ { - p.Method = append(p.Method, ToMethodDescriptorProto(methods.Get(i))) - } - return p -} - -// ToMethodDescriptorProto copies a [protoreflect.MethodDescriptor] into a -// google.protobuf.MethodDescriptorProto message. -func ToMethodDescriptorProto(method protoreflect.MethodDescriptor) *descriptorpb.MethodDescriptorProto { - p := &descriptorpb.MethodDescriptorProto{ - Name: proto.String(string(method.Name())), - InputType: fullNameOf(method.Input()), - OutputType: fullNameOf(method.Output()), - Options: proto.Clone(method.Options()).(*descriptorpb.MethodOptions), - } - if method.IsStreamingClient() { - p.ClientStreaming = proto.Bool(true) - } - if method.IsStreamingServer() { - p.ServerStreaming = proto.Bool(true) - } - return p -} - -func fullNameOf(d protoreflect.Descriptor) *string { - if d == nil { - return nil - } - if strings.HasPrefix(string(d.FullName()), unknownPrefix) { - return proto.String(string(d.FullName()[len(unknownPrefix):])) - } - return proto.String("." + string(d.FullName())) -} diff --git a/vendor/google.golang.org/protobuf/types/gofeaturespb/go_features.pb.go b/vendor/google.golang.org/protobuf/types/gofeaturespb/go_features.pb.go deleted file mode 100644 index 37e712b6b7..0000000000 --- a/vendor/google.golang.org/protobuf/types/gofeaturespb/go_features.pb.go +++ /dev/null @@ -1,311 +0,0 @@ -// Protocol Buffers - Google's data interchange format -// Copyright 2023 Google Inc. All rights reserved. -// -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file or at -// https://developers.google.com/open-source/licenses/bsd - -// Code generated by protoc-gen-go. DO NOT EDIT. -// source: google/protobuf/go_features.proto - -package gofeaturespb - -import ( - protoreflect "google.golang.org/protobuf/reflect/protoreflect" - protoimpl "google.golang.org/protobuf/runtime/protoimpl" - descriptorpb "google.golang.org/protobuf/types/descriptorpb" - reflect "reflect" - sync "sync" - unsafe "unsafe" -) - -type GoFeatures_APILevel int32 - -const ( - // API_LEVEL_UNSPECIFIED results in selecting the OPEN API, - // but needs to be a separate value to distinguish between - // an explicitly set api level or a missing api level. - GoFeatures_API_LEVEL_UNSPECIFIED GoFeatures_APILevel = 0 - GoFeatures_API_OPEN GoFeatures_APILevel = 1 - GoFeatures_API_HYBRID GoFeatures_APILevel = 2 - GoFeatures_API_OPAQUE GoFeatures_APILevel = 3 -) - -// Enum value maps for GoFeatures_APILevel. -var ( - GoFeatures_APILevel_name = map[int32]string{ - 0: "API_LEVEL_UNSPECIFIED", - 1: "API_OPEN", - 2: "API_HYBRID", - 3: "API_OPAQUE", - } - GoFeatures_APILevel_value = map[string]int32{ - "API_LEVEL_UNSPECIFIED": 0, - "API_OPEN": 1, - "API_HYBRID": 2, - "API_OPAQUE": 3, - } -) - -func (x GoFeatures_APILevel) Enum() *GoFeatures_APILevel { - p := new(GoFeatures_APILevel) - *p = x - return p -} - -func (x GoFeatures_APILevel) String() string { - return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) -} - -func (GoFeatures_APILevel) Descriptor() protoreflect.EnumDescriptor { - return file_google_protobuf_go_features_proto_enumTypes[0].Descriptor() -} - -func (GoFeatures_APILevel) Type() protoreflect.EnumType { - return &file_google_protobuf_go_features_proto_enumTypes[0] -} - -func (x GoFeatures_APILevel) Number() protoreflect.EnumNumber { - return protoreflect.EnumNumber(x) -} - -// Deprecated: Do not use. -func (x *GoFeatures_APILevel) UnmarshalJSON(b []byte) error { - num, err := protoimpl.X.UnmarshalJSONEnum(x.Descriptor(), b) - if err != nil { - return err - } - *x = GoFeatures_APILevel(num) - return nil -} - -// Deprecated: Use GoFeatures_APILevel.Descriptor instead. -func (GoFeatures_APILevel) EnumDescriptor() ([]byte, []int) { - return file_google_protobuf_go_features_proto_rawDescGZIP(), []int{0, 0} -} - -type GoFeatures_StripEnumPrefix int32 - -const ( - GoFeatures_STRIP_ENUM_PREFIX_UNSPECIFIED GoFeatures_StripEnumPrefix = 0 - GoFeatures_STRIP_ENUM_PREFIX_KEEP GoFeatures_StripEnumPrefix = 1 - GoFeatures_STRIP_ENUM_PREFIX_GENERATE_BOTH GoFeatures_StripEnumPrefix = 2 - GoFeatures_STRIP_ENUM_PREFIX_STRIP GoFeatures_StripEnumPrefix = 3 -) - -// Enum value maps for GoFeatures_StripEnumPrefix. -var ( - GoFeatures_StripEnumPrefix_name = map[int32]string{ - 0: "STRIP_ENUM_PREFIX_UNSPECIFIED", - 1: "STRIP_ENUM_PREFIX_KEEP", - 2: "STRIP_ENUM_PREFIX_GENERATE_BOTH", - 3: "STRIP_ENUM_PREFIX_STRIP", - } - GoFeatures_StripEnumPrefix_value = map[string]int32{ - "STRIP_ENUM_PREFIX_UNSPECIFIED": 0, - "STRIP_ENUM_PREFIX_KEEP": 1, - "STRIP_ENUM_PREFIX_GENERATE_BOTH": 2, - "STRIP_ENUM_PREFIX_STRIP": 3, - } -) - -func (x GoFeatures_StripEnumPrefix) Enum() *GoFeatures_StripEnumPrefix { - p := new(GoFeatures_StripEnumPrefix) - *p = x - return p -} - -func (x GoFeatures_StripEnumPrefix) String() string { - return protoimpl.X.EnumStringOf(x.Descriptor(), protoreflect.EnumNumber(x)) -} - -func (GoFeatures_StripEnumPrefix) Descriptor() protoreflect.EnumDescriptor { - return file_google_protobuf_go_features_proto_enumTypes[1].Descriptor() -} - -func (GoFeatures_StripEnumPrefix) Type() protoreflect.EnumType { - return &file_google_protobuf_go_features_proto_enumTypes[1] -} - -func (x GoFeatures_StripEnumPrefix) Number() protoreflect.EnumNumber { - return protoreflect.EnumNumber(x) -} - -// Deprecated: Do not use. -func (x *GoFeatures_StripEnumPrefix) UnmarshalJSON(b []byte) error { - num, err := protoimpl.X.UnmarshalJSONEnum(x.Descriptor(), b) - if err != nil { - return err - } - *x = GoFeatures_StripEnumPrefix(num) - return nil -} - -// Deprecated: Use GoFeatures_StripEnumPrefix.Descriptor instead. -func (GoFeatures_StripEnumPrefix) EnumDescriptor() ([]byte, []int) { - return file_google_protobuf_go_features_proto_rawDescGZIP(), []int{0, 1} -} - -type GoFeatures struct { - state protoimpl.MessageState `protogen:"open.v1"` - // Whether or not to generate the deprecated UnmarshalJSON method for enums. - // Can only be true for proto using the Open Struct api. - LegacyUnmarshalJsonEnum *bool `protobuf:"varint,1,opt,name=legacy_unmarshal_json_enum,json=legacyUnmarshalJsonEnum" json:"legacy_unmarshal_json_enum,omitempty"` - // One of OPEN, HYBRID or OPAQUE. - ApiLevel *GoFeatures_APILevel `protobuf:"varint,2,opt,name=api_level,json=apiLevel,enum=pb.GoFeatures_APILevel" json:"api_level,omitempty"` - StripEnumPrefix *GoFeatures_StripEnumPrefix `protobuf:"varint,3,opt,name=strip_enum_prefix,json=stripEnumPrefix,enum=pb.GoFeatures_StripEnumPrefix" json:"strip_enum_prefix,omitempty"` - unknownFields protoimpl.UnknownFields - sizeCache protoimpl.SizeCache -} - -func (x *GoFeatures) Reset() { - *x = GoFeatures{} - mi := &file_google_protobuf_go_features_proto_msgTypes[0] - ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) - ms.StoreMessageInfo(mi) -} - -func (x *GoFeatures) String() string { - return protoimpl.X.MessageStringOf(x) -} - -func (*GoFeatures) ProtoMessage() {} - -func (x *GoFeatures) ProtoReflect() protoreflect.Message { - mi := &file_google_protobuf_go_features_proto_msgTypes[0] - if x != nil { - ms := protoimpl.X.MessageStateOf(protoimpl.Pointer(x)) - if ms.LoadMessageInfo() == nil { - ms.StoreMessageInfo(mi) - } - return ms - } - return mi.MessageOf(x) -} - -// Deprecated: Use GoFeatures.ProtoReflect.Descriptor instead. -func (*GoFeatures) Descriptor() ([]byte, []int) { - return file_google_protobuf_go_features_proto_rawDescGZIP(), []int{0} -} - -func (x *GoFeatures) GetLegacyUnmarshalJsonEnum() bool { - if x != nil && x.LegacyUnmarshalJsonEnum != nil { - return *x.LegacyUnmarshalJsonEnum - } - return false -} - -func (x *GoFeatures) GetApiLevel() GoFeatures_APILevel { - if x != nil && x.ApiLevel != nil { - return *x.ApiLevel - } - return GoFeatures_API_LEVEL_UNSPECIFIED -} - -func (x *GoFeatures) GetStripEnumPrefix() GoFeatures_StripEnumPrefix { - if x != nil && x.StripEnumPrefix != nil { - return *x.StripEnumPrefix - } - return GoFeatures_STRIP_ENUM_PREFIX_UNSPECIFIED -} - -var file_google_protobuf_go_features_proto_extTypes = []protoimpl.ExtensionInfo{ - { - ExtendedType: (*descriptorpb.FeatureSet)(nil), - ExtensionType: (*GoFeatures)(nil), - Field: 1002, - Name: "pb.go", - Tag: "bytes,1002,opt,name=go", - Filename: "google/protobuf/go_features.proto", - }, -} - -// Extension fields to descriptorpb.FeatureSet. -var ( - // optional pb.GoFeatures go = 1002; - E_Go = &file_google_protobuf_go_features_proto_extTypes[0] -) - -var File_google_protobuf_go_features_proto protoreflect.FileDescriptor - -const file_google_protobuf_go_features_proto_rawDesc = "" + - "\n" + - "!google/protobuf/go_features.proto\x12\x02pb\x1a google/protobuf/descriptor.proto\"\xab\x05\n" + - "\n" + - "GoFeatures\x12\xbe\x01\n" + - "\x1alegacy_unmarshal_json_enum\x18\x01 \x01(\bB\x80\x01\x88\x01\x01\x98\x01\x06\x98\x01\x01\xa2\x01\t\x12\x04true\x18\x84\a\xa2\x01\n" + - "\x12\x05false\x18\xe7\a\xb2\x01[\b\xe8\a\x10\xe8\a\x1aSThe legacy UnmarshalJSON API is deprecated and will be removed in a future edition.R\x17legacyUnmarshalJsonEnum\x12t\n" + - "\tapi_level\x18\x02 \x01(\x0e2\x17.pb.GoFeatures.APILevelB>\x88\x01\x01\x98\x01\x03\x98\x01\x01\xa2\x01\x1a\x12\x15API_LEVEL_UNSPECIFIED\x18\x84\a\xa2\x01\x0f\x12\n" + - "API_OPAQUE\x18\xe9\a\xb2\x01\x03\b\xe8\aR\bapiLevel\x12|\n" + - "\x11strip_enum_prefix\x18\x03 \x01(\x0e2\x1e.pb.GoFeatures.StripEnumPrefixB0\x88\x01\x01\x98\x01\x06\x98\x01\a\x98\x01\x01\xa2\x01\x1b\x12\x16STRIP_ENUM_PREFIX_KEEP\x18\x84\a\xb2\x01\x03\b\xe9\aR\x0fstripEnumPrefix\"S\n" + - "\bAPILevel\x12\x19\n" + - "\x15API_LEVEL_UNSPECIFIED\x10\x00\x12\f\n" + - "\bAPI_OPEN\x10\x01\x12\x0e\n" + - "\n" + - "API_HYBRID\x10\x02\x12\x0e\n" + - "\n" + - "API_OPAQUE\x10\x03\"\x92\x01\n" + - "\x0fStripEnumPrefix\x12!\n" + - "\x1dSTRIP_ENUM_PREFIX_UNSPECIFIED\x10\x00\x12\x1a\n" + - "\x16STRIP_ENUM_PREFIX_KEEP\x10\x01\x12#\n" + - "\x1fSTRIP_ENUM_PREFIX_GENERATE_BOTH\x10\x02\x12\x1b\n" + - "\x17STRIP_ENUM_PREFIX_STRIP\x10\x03:<\n" + - "\x02go\x12\x1b.google.protobuf.FeatureSet\x18\xea\a \x01(\v2\x0e.pb.GoFeaturesR\x02goB/Z-google.golang.org/protobuf/types/gofeaturespb" - -var ( - file_google_protobuf_go_features_proto_rawDescOnce sync.Once - file_google_protobuf_go_features_proto_rawDescData []byte -) - -func file_google_protobuf_go_features_proto_rawDescGZIP() []byte { - file_google_protobuf_go_features_proto_rawDescOnce.Do(func() { - file_google_protobuf_go_features_proto_rawDescData = protoimpl.X.CompressGZIP(unsafe.Slice(unsafe.StringData(file_google_protobuf_go_features_proto_rawDesc), len(file_google_protobuf_go_features_proto_rawDesc))) - }) - return file_google_protobuf_go_features_proto_rawDescData -} - -var file_google_protobuf_go_features_proto_enumTypes = make([]protoimpl.EnumInfo, 2) -var file_google_protobuf_go_features_proto_msgTypes = make([]protoimpl.MessageInfo, 1) -var file_google_protobuf_go_features_proto_goTypes = []any{ - (GoFeatures_APILevel)(0), // 0: pb.GoFeatures.APILevel - (GoFeatures_StripEnumPrefix)(0), // 1: pb.GoFeatures.StripEnumPrefix - (*GoFeatures)(nil), // 2: pb.GoFeatures - (*descriptorpb.FeatureSet)(nil), // 3: google.protobuf.FeatureSet -} -var file_google_protobuf_go_features_proto_depIdxs = []int32{ - 0, // 0: pb.GoFeatures.api_level:type_name -> pb.GoFeatures.APILevel - 1, // 1: pb.GoFeatures.strip_enum_prefix:type_name -> pb.GoFeatures.StripEnumPrefix - 3, // 2: pb.go:extendee -> google.protobuf.FeatureSet - 2, // 3: pb.go:type_name -> pb.GoFeatures - 4, // [4:4] is the sub-list for method output_type - 4, // [4:4] is the sub-list for method input_type - 3, // [3:4] is the sub-list for extension type_name - 2, // [2:3] is the sub-list for extension extendee - 0, // [0:2] is the sub-list for field type_name -} - -func init() { file_google_protobuf_go_features_proto_init() } -func file_google_protobuf_go_features_proto_init() { - if File_google_protobuf_go_features_proto != nil { - return - } - type x struct{} - out := protoimpl.TypeBuilder{ - File: protoimpl.DescBuilder{ - GoPackagePath: reflect.TypeOf(x{}).PkgPath(), - RawDescriptor: unsafe.Slice(unsafe.StringData(file_google_protobuf_go_features_proto_rawDesc), len(file_google_protobuf_go_features_proto_rawDesc)), - NumEnums: 2, - NumMessages: 1, - NumExtensions: 1, - NumServices: 0, - }, - GoTypes: file_google_protobuf_go_features_proto_goTypes, - DependencyIndexes: file_google_protobuf_go_features_proto_depIdxs, - EnumInfos: file_google_protobuf_go_features_proto_enumTypes, - MessageInfos: file_google_protobuf_go_features_proto_msgTypes, - ExtensionInfos: file_google_protobuf_go_features_proto_extTypes, - }.Build() - File_google_protobuf_go_features_proto = out.File - file_google_protobuf_go_features_proto_goTypes = nil - file_google_protobuf_go_features_proto_depIdxs = nil -} diff --git a/vendor/k8s.io/api/admission/v1/doc.go b/vendor/k8s.io/api/admission/v1/doc.go index e7df9f629c..cab6528214 100644 --- a/vendor/k8s.io/api/admission/v1/doc.go +++ b/vendor/k8s.io/api/admission/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=admission.k8s.io -package v1 // import "k8s.io/api/admission/v1" +package v1 diff --git a/vendor/k8s.io/api/admission/v1beta1/doc.go b/vendor/k8s.io/api/admission/v1beta1/doc.go index a5669022a0..447495684e 100644 --- a/vendor/k8s.io/api/admission/v1beta1/doc.go +++ b/vendor/k8s.io/api/admission/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=admission.k8s.io -package v1beta1 // import "k8s.io/api/admission/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/admissionregistration/v1/doc.go b/vendor/k8s.io/api/admissionregistration/v1/doc.go index ca0086188a..ec0ebb9c49 100644 --- a/vendor/k8s.io/api/admissionregistration/v1/doc.go +++ b/vendor/k8s.io/api/admissionregistration/v1/doc.go @@ -24,4 +24,4 @@ limitations under the License. // AdmissionConfiguration and AdmissionPluginConfiguration are legacy static admission plugin configuration // MutatingWebhookConfiguration and ValidatingWebhookConfiguration are for the // new dynamic admission controller configuration. -package v1 // import "k8s.io/api/admissionregistration/v1" +package v1 diff --git a/vendor/k8s.io/api/admissionregistration/v1alpha1/doc.go b/vendor/k8s.io/api/admissionregistration/v1alpha1/doc.go index 98066211d8..344af9ae09 100644 --- a/vendor/k8s.io/api/admissionregistration/v1alpha1/doc.go +++ b/vendor/k8s.io/api/admissionregistration/v1alpha1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=admissionregistration.k8s.io // Package v1alpha1 is the v1alpha1 version of the API. -package v1alpha1 // import "k8s.io/api/admissionregistration/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/admissionregistration/v1alpha1/generated.proto b/vendor/k8s.io/api/admissionregistration/v1alpha1/generated.proto index 88344ce87a..d23f21cc84 100644 --- a/vendor/k8s.io/api/admissionregistration/v1alpha1/generated.proto +++ b/vendor/k8s.io/api/admissionregistration/v1alpha1/generated.proto @@ -272,9 +272,9 @@ message MatchResources { // +optional optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector namespaceSelector = 1; - // ObjectSelector decides whether to run the validation based on if the + // ObjectSelector decides whether to run the policy based on if the // object has matching labels. objectSelector is evaluated against both - // the oldObject and newObject that would be sent to the cel validation, and + // the oldObject and newObject that would be sent to the policy's expression (CEL), and // is considered to match if either object matches the selector. A null // object (oldObject in the case of create, or newObject in the case of // delete) or an object that cannot have labels (like a @@ -286,13 +286,13 @@ message MatchResources { // +optional optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector objectSelector = 2; - // ResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy matches. + // ResourceRules describes what operations on what resources/subresources the admission policy matches. // The policy cares about an operation if it matches _any_ Rule. // +listType=atomic // +optional repeated NamedRuleWithOperations resourceRules = 3; - // ExcludeResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy should not care about. + // ExcludeResourceRules describes what operations on what resources/subresources the policy should not care about. // The exclude rules take precedence over include rules (if a resource matches both, it is excluded) // +listType=atomic // +optional @@ -304,12 +304,13 @@ message MatchResources { // - Exact: match a request only if it exactly matches a specified rule. // For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, // but "rules" only included `apiGroups:["apps"], apiVersions:["v1"], resources: ["deployments"]`, - // a request to apps/v1beta1 or extensions/v1beta1 would not be sent to the ValidatingAdmissionPolicy. + // the admission policy does not consider requests to apps/v1beta1 or extensions/v1beta1 API groups. // // - Equivalent: match a request if modifies a resource listed in rules, even via another API group or version. // For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, // and "rules" only included `apiGroups:["apps"], apiVersions:["v1"], resources: ["deployments"]`, - // a request to apps/v1beta1 or extensions/v1beta1 would be converted to apps/v1 and sent to the ValidatingAdmissionPolicy. + // the admission policy **does** consider requests made to apps/v1beta1 or extensions/v1beta1 + // API groups. The API server translates the request to a matched resource API if necessary. // // Defaults to "Equivalent" // +optional diff --git a/vendor/k8s.io/api/admissionregistration/v1alpha1/types.go b/vendor/k8s.io/api/admissionregistration/v1alpha1/types.go index ee50fbe2d4..f183498a55 100644 --- a/vendor/k8s.io/api/admissionregistration/v1alpha1/types.go +++ b/vendor/k8s.io/api/admissionregistration/v1alpha1/types.go @@ -56,9 +56,9 @@ const ( type FailurePolicyType string const ( - // Ignore means that an error calling the webhook is ignored. + // Ignore means that an error calling the admission webhook or admission policy is ignored. Ignore FailurePolicyType = "Ignore" - // Fail means that an error calling the webhook causes the admission to fail. + // Fail means that an error calling the admission webhook or admission policy causes resource admission to fail. Fail FailurePolicyType = "Fail" ) @@ -67,9 +67,11 @@ const ( type MatchPolicyType string const ( - // Exact means requests should only be sent to the webhook if they exactly match a given rule. + // Exact means requests should only be sent to the admission webhook or admission policy if they exactly match a given rule. Exact MatchPolicyType = "Exact" - // Equivalent means requests should be sent to the webhook if they modify a resource listed in rules via another API group or version. + // Equivalent means requests should be sent to the admission webhook or admission policy if they modify a resource listed + // in rules via an equivalent API group or version. For example, `autoscaling/v1` and `autoscaling/v2` + // HorizontalPodAutoscalers are equivalent: the same set of resources appear via both APIs. Equivalent MatchPolicyType = "Equivalent" ) @@ -577,9 +579,9 @@ type MatchResources struct { // Default to the empty LabelSelector, which matches everything. // +optional NamespaceSelector *metav1.LabelSelector `json:"namespaceSelector,omitempty" protobuf:"bytes,1,opt,name=namespaceSelector"` - // ObjectSelector decides whether to run the validation based on if the + // ObjectSelector decides whether to run the policy based on if the // object has matching labels. objectSelector is evaluated against both - // the oldObject and newObject that would be sent to the cel validation, and + // the oldObject and newObject that would be sent to the policy's expression (CEL), and // is considered to match if either object matches the selector. A null // object (oldObject in the case of create, or newObject in the case of // delete) or an object that cannot have labels (like a @@ -590,12 +592,12 @@ type MatchResources struct { // Default to the empty LabelSelector, which matches everything. // +optional ObjectSelector *metav1.LabelSelector `json:"objectSelector,omitempty" protobuf:"bytes,2,opt,name=objectSelector"` - // ResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy matches. + // ResourceRules describes what operations on what resources/subresources the admission policy matches. // The policy cares about an operation if it matches _any_ Rule. // +listType=atomic // +optional ResourceRules []NamedRuleWithOperations `json:"resourceRules,omitempty" protobuf:"bytes,3,rep,name=resourceRules"` - // ExcludeResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy should not care about. + // ExcludeResourceRules describes what operations on what resources/subresources the policy should not care about. // The exclude rules take precedence over include rules (if a resource matches both, it is excluded) // +listType=atomic // +optional @@ -606,12 +608,13 @@ type MatchResources struct { // - Exact: match a request only if it exactly matches a specified rule. // For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, // but "rules" only included `apiGroups:["apps"], apiVersions:["v1"], resources: ["deployments"]`, - // a request to apps/v1beta1 or extensions/v1beta1 would not be sent to the ValidatingAdmissionPolicy. + // the admission policy does not consider requests to apps/v1beta1 or extensions/v1beta1 API groups. // // - Equivalent: match a request if modifies a resource listed in rules, even via another API group or version. // For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, // and "rules" only included `apiGroups:["apps"], apiVersions:["v1"], resources: ["deployments"]`, - // a request to apps/v1beta1 or extensions/v1beta1 would be converted to apps/v1 and sent to the ValidatingAdmissionPolicy. + // the admission policy **does** consider requests made to apps/v1beta1 or extensions/v1beta1 + // API groups. The API server translates the request to a matched resource API if necessary. // // Defaults to "Equivalent" // +optional diff --git a/vendor/k8s.io/api/admissionregistration/v1alpha1/types_swagger_doc_generated.go b/vendor/k8s.io/api/admissionregistration/v1alpha1/types_swagger_doc_generated.go index 32222a81b8..116e56e065 100644 --- a/vendor/k8s.io/api/admissionregistration/v1alpha1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/admissionregistration/v1alpha1/types_swagger_doc_generated.go @@ -68,10 +68,10 @@ func (JSONPatch) SwaggerDoc() map[string]string { var map_MatchResources = map[string]string{ "": "MatchResources decides whether to run the admission control policy on an object based on whether it meets the match criteria. The exclude rules take precedence over include rules (if a resource matches both, it is excluded)", "namespaceSelector": "NamespaceSelector decides whether to run the admission control policy on an object based on whether the namespace for that object matches the selector. If the object itself is a namespace, the matching is performed on object.metadata.labels. If the object is another cluster scoped resource, it never skips the policy.\n\nFor example, to run the webhook on any objects whose namespace is not associated with \"runlevel\" of \"0\" or \"1\"; you will set the selector as follows: \"namespaceSelector\": {\n \"matchExpressions\": [\n {\n \"key\": \"runlevel\",\n \"operator\": \"NotIn\",\n \"values\": [\n \"0\",\n \"1\"\n ]\n }\n ]\n}\n\nIf instead you want to only run the policy on any objects whose namespace is associated with the \"environment\" of \"prod\" or \"staging\"; you will set the selector as follows: \"namespaceSelector\": {\n \"matchExpressions\": [\n {\n \"key\": \"environment\",\n \"operator\": \"In\",\n \"values\": [\n \"prod\",\n \"staging\"\n ]\n }\n ]\n}\n\nSee https://kubernetes.io/docs/concepts/overview/working-with-objects/labels/ for more examples of label selectors.\n\nDefault to the empty LabelSelector, which matches everything.", - "objectSelector": "ObjectSelector decides whether to run the validation based on if the object has matching labels. objectSelector is evaluated against both the oldObject and newObject that would be sent to the cel validation, and is considered to match if either object matches the selector. A null object (oldObject in the case of create, or newObject in the case of delete) or an object that cannot have labels (like a DeploymentRollback or a PodProxyOptions object) is not considered to match. Use the object selector only if the webhook is opt-in, because end users may skip the admission webhook by setting the labels. Default to the empty LabelSelector, which matches everything.", - "resourceRules": "ResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy matches. The policy cares about an operation if it matches _any_ Rule.", - "excludeResourceRules": "ExcludeResourceRules describes what operations on what resources/subresources the ValidatingAdmissionPolicy should not care about. The exclude rules take precedence over include rules (if a resource matches both, it is excluded)", - "matchPolicy": "matchPolicy defines how the \"MatchResources\" list is used to match incoming requests. Allowed values are \"Exact\" or \"Equivalent\".\n\n- Exact: match a request only if it exactly matches a specified rule. For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, but \"rules\" only included `apiGroups:[\"apps\"], apiVersions:[\"v1\"], resources: [\"deployments\"]`, a request to apps/v1beta1 or extensions/v1beta1 would not be sent to the ValidatingAdmissionPolicy.\n\n- Equivalent: match a request if modifies a resource listed in rules, even via another API group or version. For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, and \"rules\" only included `apiGroups:[\"apps\"], apiVersions:[\"v1\"], resources: [\"deployments\"]`, a request to apps/v1beta1 or extensions/v1beta1 would be converted to apps/v1 and sent to the ValidatingAdmissionPolicy.\n\nDefaults to \"Equivalent\"", + "objectSelector": "ObjectSelector decides whether to run the policy based on if the object has matching labels. objectSelector is evaluated against both the oldObject and newObject that would be sent to the policy's expression (CEL), and is considered to match if either object matches the selector. A null object (oldObject in the case of create, or newObject in the case of delete) or an object that cannot have labels (like a DeploymentRollback or a PodProxyOptions object) is not considered to match. Use the object selector only if the webhook is opt-in, because end users may skip the admission webhook by setting the labels. Default to the empty LabelSelector, which matches everything.", + "resourceRules": "ResourceRules describes what operations on what resources/subresources the admission policy matches. The policy cares about an operation if it matches _any_ Rule.", + "excludeResourceRules": "ExcludeResourceRules describes what operations on what resources/subresources the policy should not care about. The exclude rules take precedence over include rules (if a resource matches both, it is excluded)", + "matchPolicy": "matchPolicy defines how the \"MatchResources\" list is used to match incoming requests. Allowed values are \"Exact\" or \"Equivalent\".\n\n- Exact: match a request only if it exactly matches a specified rule. For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, but \"rules\" only included `apiGroups:[\"apps\"], apiVersions:[\"v1\"], resources: [\"deployments\"]`, the admission policy does not consider requests to apps/v1beta1 or extensions/v1beta1 API groups.\n\n- Equivalent: match a request if modifies a resource listed in rules, even via another API group or version. For example, if deployments can be modified via apps/v1, apps/v1beta1, and extensions/v1beta1, and \"rules\" only included `apiGroups:[\"apps\"], apiVersions:[\"v1\"], resources: [\"deployments\"]`, the admission policy **does** consider requests made to apps/v1beta1 or extensions/v1beta1 API groups. The API server translates the request to a matched resource API if necessary.\n\nDefaults to \"Equivalent\"", } func (MatchResources) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/admissionregistration/v1beta1/doc.go b/vendor/k8s.io/api/admissionregistration/v1beta1/doc.go index 0095cb257a..40d8315738 100644 --- a/vendor/k8s.io/api/admissionregistration/v1beta1/doc.go +++ b/vendor/k8s.io/api/admissionregistration/v1beta1/doc.go @@ -24,4 +24,4 @@ limitations under the License. // AdmissionConfiguration and AdmissionPluginConfiguration are legacy static admission plugin configuration // MutatingWebhookConfiguration and ValidatingWebhookConfiguration are for the // new dynamic admission controller configuration. -package v1beta1 // import "k8s.io/api/admissionregistration/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/apidiscovery/v2/doc.go b/vendor/k8s.io/api/apidiscovery/v2/doc.go index 4f3ad5f139..f46d33e942 100644 --- a/vendor/k8s.io/api/apidiscovery/v2/doc.go +++ b/vendor/k8s.io/api/apidiscovery/v2/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=apidiscovery.k8s.io -package v2 // import "k8s.io/api/apidiscovery/v2" +package v2 diff --git a/vendor/k8s.io/api/apidiscovery/v2beta1/doc.go b/vendor/k8s.io/api/apidiscovery/v2beta1/doc.go index e85da226e0..d4fceab68d 100644 --- a/vendor/k8s.io/api/apidiscovery/v2beta1/doc.go +++ b/vendor/k8s.io/api/apidiscovery/v2beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=apidiscovery.k8s.io -package v2beta1 // import "k8s.io/api/apidiscovery/v2beta1" +package v2beta1 diff --git a/vendor/k8s.io/api/apiserverinternal/v1alpha1/doc.go b/vendor/k8s.io/api/apiserverinternal/v1alpha1/doc.go index a4da95d44d..867d741651 100644 --- a/vendor/k8s.io/api/apiserverinternal/v1alpha1/doc.go +++ b/vendor/k8s.io/api/apiserverinternal/v1alpha1/doc.go @@ -22,4 +22,4 @@ limitations under the License. // Package v1alpha1 contains the v1alpha1 version of the API used by the // apiservers themselves. -package v1alpha1 // import "k8s.io/api/apiserverinternal/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/apps/v1/doc.go b/vendor/k8s.io/api/apps/v1/doc.go index d189e860f2..51fe12c53d 100644 --- a/vendor/k8s.io/api/apps/v1/doc.go +++ b/vendor/k8s.io/api/apps/v1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1 // import "k8s.io/api/apps/v1" +package v1 diff --git a/vendor/k8s.io/api/apps/v1/generated.pb.go b/vendor/k8s.io/api/apps/v1/generated.pb.go index ea62a099fe..eacc25931b 100644 --- a/vendor/k8s.io/api/apps/v1/generated.pb.go +++ b/vendor/k8s.io/api/apps/v1/generated.pb.go @@ -928,145 +928,147 @@ func init() { } var fileDescriptor_5b781835628d5338 = []byte{ - // 2194 bytes of a gzipped FileDescriptorProto + // 2225 bytes of a gzipped FileDescriptorProto 0x1f, 0x8b, 0x08, 0x00, 0x00, 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*ControllerRevision) Marshal() (dAtA []byte, err error) { @@ -1748,6 +1750,11 @@ func (m *DeploymentStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x48 + } if m.CollisionCount != nil { i = encodeVarintGenerated(dAtA, i, uint64(*m.CollisionCount)) i-- @@ -2054,6 +2061,11 @@ func (m *ReplicaSetStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x38 + } if len(m.Conditions) > 0 { for iNdEx := len(m.Conditions) - 1; iNdEx >= 0; iNdEx-- { { @@ -2915,6 +2927,9 @@ func (m *DeploymentStatus) Size() (n int) { if m.CollisionCount != nil { n += 1 + sovGenerated(uint64(*m.CollisionCount)) } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -3020,6 +3035,9 @@ func (m *ReplicaSetStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -3435,6 +3453,7 @@ func (this *DeploymentStatus) String() string { `Conditions:` + repeatedStringForConditions + `,`, `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `CollisionCount:` + valueToStringGenerated(this.CollisionCount) + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -3521,6 +3540,7 @@ func (this *ReplicaSetStatus) String() string { `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `AvailableReplicas:` + fmt.Sprintf("%v", this.AvailableReplicas) + `,`, `Conditions:` + repeatedStringForConditions + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -5941,6 +5961,26 @@ func (m *DeploymentStatus) Unmarshal(dAtA []byte) error { } } m.CollisionCount = &v + case 9: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -6873,6 +6913,26 @@ func (m *ReplicaSetStatus) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 7: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/apps/v1/generated.proto b/vendor/k8s.io/api/apps/v1/generated.proto index 388e638f4d..38c8997e99 100644 --- a/vendor/k8s.io/api/apps/v1/generated.proto +++ b/vendor/k8s.io/api/apps/v1/generated.proto @@ -318,19 +318,19 @@ message DeploymentStatus { // +optional optional int64 observedGeneration = 1; - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional optional int32 replicas = 2; - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional optional int32 updatedReplicas = 3; - // readyReplicas is the number of pods targeted by this Deployment with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional optional int32 readyReplicas = 7; - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional optional int32 availableReplicas = 4; @@ -340,6 +340,13 @@ message DeploymentStatus { // +optional optional int32 unavailableReplicas = 5; + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 9; + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -421,16 +428,16 @@ message ReplicaSetList { optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset repeated ReplicaSet items = 2; } // ReplicaSetSpec is the specification of a ReplicaSet. message ReplicaSetSpec { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional optional int32 replicas = 1; @@ -448,29 +455,36 @@ message ReplicaSetSpec { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional optional .k8s.io.api.core.v1.PodTemplateSpec template = 3; } // ReplicaSetStatus represents the current status of a ReplicaSet. message ReplicaSetStatus { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset optional int32 replicas = 1; - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional optional int32 fullyLabeledReplicas = 2; - // readyReplicas is the number of pods targeted by this ReplicaSet with a Ready Condition. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional optional int32 readyReplicas = 4; - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional optional int32 availableReplicas = 5; + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 7; + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional optional int64 observedGeneration = 3; @@ -702,6 +716,7 @@ message StatefulSetSpec { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional optional string serviceName = 5; // podManagementPolicy controls how pods are created during initial scale up, diff --git a/vendor/k8s.io/api/apps/v1/types.go b/vendor/k8s.io/api/apps/v1/types.go index a68690b447..1362d875d8 100644 --- a/vendor/k8s.io/api/apps/v1/types.go +++ b/vendor/k8s.io/api/apps/v1/types.go @@ -220,6 +220,7 @@ type StatefulSetSpec struct { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional ServiceName string `json:"serviceName" protobuf:"bytes,5,opt,name=serviceName"` // podManagementPolicy controls how pods are created during initial scale up, @@ -486,19 +487,19 @@ type DeploymentStatus struct { // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,1,opt,name=observedGeneration"` - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional Replicas int32 `json:"replicas,omitempty" protobuf:"varint,2,opt,name=replicas"` - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional UpdatedReplicas int32 `json:"updatedReplicas,omitempty" protobuf:"varint,3,opt,name=updatedReplicas"` - // readyReplicas is the number of pods targeted by this Deployment with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,7,opt,name=readyReplicas"` - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,4,opt,name=availableReplicas"` @@ -508,6 +509,13 @@ type DeploymentStatus struct { // +optional UnavailableReplicas int32 `json:"unavailableReplicas,omitempty" protobuf:"varint,5,opt,name=unavailableReplicas"` + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,9,opt,name=terminatingReplicas"` + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -839,16 +847,16 @@ type ReplicaSetList struct { metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Items []ReplicaSet `json:"items" protobuf:"bytes,2,rep,name=items"` } // ReplicaSetSpec is the specification of a ReplicaSet. type ReplicaSetSpec struct { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional Replicas *int32 `json:"replicas,omitempty" protobuf:"varint,1,opt,name=replicas"` @@ -866,29 +874,36 @@ type ReplicaSetSpec struct { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional Template v1.PodTemplateSpec `json:"template,omitempty" protobuf:"bytes,3,opt,name=template"` } // ReplicaSetStatus represents the current status of a ReplicaSet. type ReplicaSetStatus struct { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Replicas int32 `json:"replicas" protobuf:"varint,1,opt,name=replicas"` - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional FullyLabeledReplicas int32 `json:"fullyLabeledReplicas,omitempty" protobuf:"varint,2,opt,name=fullyLabeledReplicas"` - // readyReplicas is the number of pods targeted by this ReplicaSet with a Ready Condition. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,4,opt,name=readyReplicas"` - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,5,opt,name=availableReplicas"` + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,7,opt,name=terminatingReplicas"` + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,3,opt,name=observedGeneration"` diff --git a/vendor/k8s.io/api/apps/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/apps/v1/types_swagger_doc_generated.go index 341ecdadb2..f44ba7bc33 100644 --- a/vendor/k8s.io/api/apps/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/apps/v1/types_swagger_doc_generated.go @@ -177,11 +177,12 @@ func (DeploymentSpec) SwaggerDoc() map[string]string { var map_DeploymentStatus = map[string]string{ "": "DeploymentStatus is the most recently observed status of the Deployment.", "observedGeneration": "The generation observed by the deployment controller.", - "replicas": "Total number of non-terminated pods targeted by this deployment (their labels match the selector).", - "updatedReplicas": "Total number of non-terminated pods targeted by this deployment that have the desired template spec.", - "readyReplicas": "readyReplicas is the number of pods targeted by this Deployment with a Ready Condition.", - "availableReplicas": "Total number of available pods (ready for at least minReadySeconds) targeted by this deployment.", + "replicas": "Total number of non-terminating pods targeted by this deployment (their labels match the selector).", + "updatedReplicas": "Total number of non-terminating pods targeted by this deployment that have the desired template spec.", + "readyReplicas": "Total number of non-terminating pods targeted by this Deployment with a Ready Condition.", + "availableReplicas": "Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment.", "unavailableReplicas": "Total number of unavailable pods targeted by this deployment. This is the total number of pods that are still required for the deployment to have 100% available capacity. They may either be pods that are running but not yet available or pods that still have not been created.", + "terminatingReplicas": "Total number of terminating pods targeted by this deployment. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "conditions": "Represents the latest available observations of a deployment's current state.", "collisionCount": "Count of hash collisions for the Deployment. The Deployment controller uses this field as a collision avoidance mechanism when it needs to create the name for the newest ReplicaSet.", } @@ -227,7 +228,7 @@ func (ReplicaSetCondition) SwaggerDoc() map[string]string { var map_ReplicaSetList = map[string]string{ "": "ReplicaSetList is a collection of ReplicaSets.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", - "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller", + "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", } func (ReplicaSetList) SwaggerDoc() map[string]string { @@ -236,10 +237,10 @@ func (ReplicaSetList) SwaggerDoc() map[string]string { var map_ReplicaSetSpec = map[string]string{ "": "ReplicaSetSpec is the specification of a ReplicaSet.", - "replicas": "Replicas is the number of desired replicas. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", + "replicas": "Replicas is the number of desired pods. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", "minReadySeconds": "Minimum number of seconds for which a newly created pod should be ready without any of its container crashing, for it to be considered available. Defaults to 0 (pod will be considered available as soon as it is ready)", "selector": "Selector is a label query over pods that should match the replica count. Label keys and values that must match in order to be controlled by this replica set. It must match the pod template's labels. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/labels/#label-selectors", - "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template", + "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template", } func (ReplicaSetSpec) SwaggerDoc() map[string]string { @@ -248,10 +249,11 @@ func (ReplicaSetSpec) SwaggerDoc() map[string]string { var map_ReplicaSetStatus = map[string]string{ "": "ReplicaSetStatus represents the current status of a ReplicaSet.", - "replicas": "Replicas is the most recently observed number of replicas. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", - "fullyLabeledReplicas": "The number of pods that have labels matching the labels of the pod template of the replicaset.", - "readyReplicas": "readyReplicas is the number of pods targeted by this ReplicaSet with a Ready Condition.", - "availableReplicas": "The number of available replicas (ready for at least minReadySeconds) for this replica set.", + "replicas": "Replicas is the most recently observed number of non-terminating pods. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", + "fullyLabeledReplicas": "The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset.", + "readyReplicas": "The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition.", + "availableReplicas": "The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set.", + "terminatingReplicas": "The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "observedGeneration": "ObservedGeneration reflects the generation of the most recently observed ReplicaSet.", "conditions": "Represents the latest available observations of a replica set's current state.", } diff --git a/vendor/k8s.io/api/apps/v1/zz_generated.deepcopy.go b/vendor/k8s.io/api/apps/v1/zz_generated.deepcopy.go index 6912986ac3..9e67658ba6 100644 --- a/vendor/k8s.io/api/apps/v1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/apps/v1/zz_generated.deepcopy.go @@ -363,6 +363,11 @@ func (in *DeploymentSpec) DeepCopy() *DeploymentSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *DeploymentStatus) DeepCopyInto(out *DeploymentStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]DeploymentCondition, len(*in)) @@ -517,6 +522,11 @@ func (in *ReplicaSetSpec) DeepCopy() *ReplicaSetSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ReplicaSetStatus) DeepCopyInto(out *ReplicaSetStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]ReplicaSetCondition, len(*in)) diff --git a/vendor/k8s.io/api/apps/v1beta1/doc.go b/vendor/k8s.io/api/apps/v1beta1/doc.go index 38a358551a..7770fab5d2 100644 --- a/vendor/k8s.io/api/apps/v1beta1/doc.go +++ b/vendor/k8s.io/api/apps/v1beta1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1beta1 // import "k8s.io/api/apps/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/apps/v1beta1/generated.pb.go b/vendor/k8s.io/api/apps/v1beta1/generated.pb.go index 76e755b4a3..ae84aaf487 100644 --- a/vendor/k8s.io/api/apps/v1beta1/generated.pb.go +++ b/vendor/k8s.io/api/apps/v1beta1/generated.pb.go @@ -728,134 +728,135 @@ func init() { } var fileDescriptor_2747f709ac7c95e7 = []byte{ - // 2018 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xdc, 0x59, 0xcd, 0x6f, 0x1b, 0xc7, - 0x15, 0xf7, 0x52, 0xa2, 0x44, 0x3d, 0x45, 0x94, 0x3d, 0x52, 0x2d, 0x46, 0x69, 0x25, 0x61, 0x63, - 0xc4, 0x4a, 0x62, 0x2f, 0x63, 0x25, 0x0d, 0x12, 0xbb, 0x75, 0x21, 0x4a, 0x6e, 0xec, 0x40, 0x8a, - 0x94, 0x91, 0x64, 0xa3, 0xe9, 0x07, 0x32, 0x22, 0xc7, 0xd4, 0x46, 0xfb, 0x85, 0xdd, 0x21, 0x63, - 0xa2, 0x97, 0xfe, 0x01, 0x05, 0xd2, 0x73, 0xff, 0x8a, 0xf6, 0xd4, 0xa2, 0x45, 0x2f, 0x3d, 0x14, - 0x3e, 0x06, 0xbd, 0x34, 0x27, 0xa2, 0x66, 0xae, 0xed, 0xad, 0xbd, 0x18, 0x28, 0x50, 0xcc, 0xec, - 0xec, 0xf7, 0xae, 0xb4, 0x2c, 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0xc7, 0xbe, 0x7c, 0xb6, 0x3c, 0xf6, 0xd5, 0xb3, 0xe5, 0xb1, 0x5f, 0x0c, 0x97, + 0x95, 0xa7, 0xc3, 0x65, 0xe5, 0xcb, 0xe1, 0xb2, 0xf2, 0xd5, 0x70, 0x59, 0xf9, 0xfb, 0x70, 0x59, + 0xf9, 0xf5, 0xd7, 0xcb, 0x63, 0x9f, 0x2c, 0x16, 0xfc, 0xb1, 0xfd, 0xdf, 0x00, 0x00, 0x00, 0xff, + 0xff, 0x40, 0xa4, 0x4b, 0xb9, 0xf2, 0x1e, 0x00, 0x00, } func (m *ControllerRevision) Marshal() (dAtA []byte, err error) { @@ -1289,6 +1290,11 @@ func (m *DeploymentStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x48 + } if m.CollisionCount != nil { i = encodeVarintGenerated(dAtA, i, uint64(*m.CollisionCount)) i-- @@ -2225,6 +2231,9 @@ func (m *DeploymentStatus) Size() (n int) { if m.CollisionCount != nil { n += 1 + sovGenerated(uint64(*m.CollisionCount)) } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -2627,6 +2636,7 @@ func (this *DeploymentStatus) String() string { `Conditions:` + repeatedStringForConditions + `,`, `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `CollisionCount:` + valueToStringGenerated(this.CollisionCount) + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -4337,6 +4347,26 @@ func (m *DeploymentStatus) Unmarshal(dAtA []byte) error { } } m.CollisionCount = &v + case 9: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/apps/v1beta1/generated.proto b/vendor/k8s.io/api/apps/v1beta1/generated.proto index 46d7bfdf92..0601efc3c4 100644 --- a/vendor/k8s.io/api/apps/v1beta1/generated.proto +++ b/vendor/k8s.io/api/apps/v1beta1/generated.proto @@ -179,33 +179,40 @@ message DeploymentSpec { // DeploymentStatus is the most recently observed status of the Deployment. message DeploymentStatus { - // observedGeneration is the generation observed by the deployment controller. + // The generation observed by the deployment controller. // +optional optional int64 observedGeneration = 1; - // replicas is the total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional optional int32 replicas = 2; - // updatedReplicas is the total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional optional int32 updatedReplicas = 3; - // readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional optional int32 readyReplicas = 7; - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional optional int32 availableReplicas = 4; - // unavailableReplicas is the total number of unavailable pods targeted by this deployment. This is the total number of + // Total number of unavailable pods targeted by this deployment. This is the total number of // pods that are still required for the deployment to have 100% available capacity. They may // either be pods that are running but not yet available or pods that still have not been created. // +optional optional int32 unavailableReplicas = 5; - // Conditions represent the latest available observations of a deployment's current state. + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 9; + + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge // +listType=map @@ -455,6 +462,7 @@ message StatefulSetSpec { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional optional string serviceName = 5; // podManagementPolicy controls how pods are created during initial scale up, diff --git a/vendor/k8s.io/api/apps/v1beta1/types.go b/vendor/k8s.io/api/apps/v1beta1/types.go index bc48519578..5530c990da 100644 --- a/vendor/k8s.io/api/apps/v1beta1/types.go +++ b/vendor/k8s.io/api/apps/v1beta1/types.go @@ -259,6 +259,7 @@ type StatefulSetSpec struct { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional ServiceName string `json:"serviceName" protobuf:"bytes,5,opt,name=serviceName"` // podManagementPolicy controls how pods are created during initial scale up, @@ -548,33 +549,40 @@ type RollingUpdateDeployment struct { // DeploymentStatus is the most recently observed status of the Deployment. type DeploymentStatus struct { - // observedGeneration is the generation observed by the deployment controller. + // The generation observed by the deployment controller. // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,1,opt,name=observedGeneration"` - // replicas is the total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional Replicas int32 `json:"replicas,omitempty" protobuf:"varint,2,opt,name=replicas"` - // updatedReplicas is the total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional UpdatedReplicas int32 `json:"updatedReplicas,omitempty" protobuf:"varint,3,opt,name=updatedReplicas"` - // readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,7,opt,name=readyReplicas"` - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,4,opt,name=availableReplicas"` - // unavailableReplicas is the total number of unavailable pods targeted by this deployment. This is the total number of + // Total number of unavailable pods targeted by this deployment. This is the total number of // pods that are still required for the deployment to have 100% available capacity. They may // either be pods that are running but not yet available or pods that still have not been created. // +optional UnavailableReplicas int32 `json:"unavailableReplicas,omitempty" protobuf:"varint,5,opt,name=unavailableReplicas"` - // Conditions represent the latest available observations of a deployment's current state. + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,9,opt,name=terminatingReplicas"` + + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge // +listType=map diff --git a/vendor/k8s.io/api/apps/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/apps/v1beta1/types_swagger_doc_generated.go index 1381d75dc0..02ea5f7f26 100644 --- a/vendor/k8s.io/api/apps/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/apps/v1beta1/types_swagger_doc_generated.go @@ -113,13 +113,14 @@ func (DeploymentSpec) SwaggerDoc() map[string]string { var map_DeploymentStatus = map[string]string{ "": "DeploymentStatus is the most recently observed status of the Deployment.", - "observedGeneration": "observedGeneration is the generation observed by the deployment controller.", - "replicas": "replicas is the total number of non-terminated pods targeted by this deployment (their labels match the selector).", - "updatedReplicas": "updatedReplicas is the total number of non-terminated pods targeted by this deployment that have the desired template spec.", - "readyReplicas": "readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition.", - "availableReplicas": "Total number of available pods (ready for at least minReadySeconds) targeted by this deployment.", - "unavailableReplicas": "unavailableReplicas is the total number of unavailable pods targeted by this deployment. This is the total number of pods that are still required for the deployment to have 100% available capacity. They may either be pods that are running but not yet available or pods that still have not been created.", - "conditions": "Conditions represent the latest available observations of a deployment's current state.", + "observedGeneration": "The generation observed by the deployment controller.", + "replicas": "Total number of non-terminating pods targeted by this deployment (their labels match the selector).", + "updatedReplicas": "Total number of non-terminating pods targeted by this deployment that have the desired template spec.", + "readyReplicas": "Total number of non-terminating pods targeted by this Deployment with a Ready Condition.", + "availableReplicas": "Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment.", + "unavailableReplicas": "Total number of unavailable pods targeted by this deployment. This is the total number of pods that are still required for the deployment to have 100% available capacity. They may either be pods that are running but not yet available or pods that still have not been created.", + "terminatingReplicas": "Total number of terminating pods targeted by this deployment. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", + "conditions": "Represents the latest available observations of a deployment's current state.", "collisionCount": "collisionCount is the count of hash collisions for the Deployment. The Deployment controller uses this field as a collision avoidance mechanism when it needs to create the name for the newest ReplicaSet.", } diff --git a/vendor/k8s.io/api/apps/v1beta1/zz_generated.deepcopy.go b/vendor/k8s.io/api/apps/v1beta1/zz_generated.deepcopy.go index dd73f1a5a9..e8594766c7 100644 --- a/vendor/k8s.io/api/apps/v1beta1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/apps/v1beta1/zz_generated.deepcopy.go @@ -246,6 +246,11 @@ func (in *DeploymentSpec) DeepCopy() *DeploymentSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *DeploymentStatus) DeepCopyInto(out *DeploymentStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]DeploymentCondition, len(*in)) diff --git a/vendor/k8s.io/api/apps/v1beta2/doc.go b/vendor/k8s.io/api/apps/v1beta2/doc.go index ac91fddfd5..7d28fe42df 100644 --- a/vendor/k8s.io/api/apps/v1beta2/doc.go +++ b/vendor/k8s.io/api/apps/v1beta2/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1beta2 // import "k8s.io/api/apps/v1beta2" +package v1beta2 diff --git a/vendor/k8s.io/api/apps/v1beta2/generated.pb.go b/vendor/k8s.io/api/apps/v1beta2/generated.pb.go index 1c3d3be5bc..9fcba6feb1 100644 --- a/vendor/k8s.io/api/apps/v1beta2/generated.pb.go +++ b/vendor/k8s.io/api/apps/v1beta2/generated.pb.go @@ -1017,153 +1017,155 @@ func init() { } var fileDescriptor_c423c016abf485d4 = []byte{ - // 2328 bytes of a gzipped FileDescriptorProto + // 2359 bytes of a gzipped FileDescriptorProto 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xec, 0x5a, 0xcd, 0x6f, 0x1b, 0xc7, - 0x15, 0xf7, 0xf2, 0x43, 0x26, 0x87, 0x96, 0x64, 0x8f, 0x54, 0x89, 0xb1, 0x5b, 0xd2, 0x58, 0x1b, - 0xb6, 0x12, 0xdb, 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0xfe, 0xab, 0x04, 0xce, + 0x99, 0x19, 0x72, 0xa9, 0x0a, 0xf8, 0xde, 0xdc, 0xcc, 0xb2, 0x37, 0x59, 0x72, 0xb3, 0xb5, 0x3a, + 0x1e, 0xd5, 0xcf, 0x65, 0xd1, 0x44, 0x99, 0xfc, 0x83, 0x77, 0x41, 0xd1, 0x10, 0x77, 0x60, 0xb5, + 0xcc, 0x7d, 0xbd, 0x94, 0xc5, 0x57, 0xf7, 0xde, 0x74, 0xd2, 0xd2, 0x7d, 0x42, 0x1e, 0x96, 0xfc, + 0x71, 0x01, 0x9c, 0x8c, 0x55, 0xf0, 0xaf, 0xb0, 0xab, 0x1e, 0x7b, 0x2f, 0xcf, 0x4f, 0xf1, 0x5e, + 0xbe, 0x0e, 0x16, 0xc5, 0x87, 0x1a, 0x91, 0xd7, 0x7a, 0x2f, 0x60, 0x36, 0xc2, 0x62, 0x14, 0xd5, + 0x4f, 0xea, 0xea, 0x17, 0xa6, 0xec, 0xea, 0x07, 0xbd, 0x10, 0x1f, 0x1e, 0x3a, 0xe9, 0x1d, 0xf7, + 0x42, 0x7c, 0x7f, 0x18, 0xd5, 0x67, 0xc4, 0xd5, 0x41, 0xf5, 0x10, 0xe6, 0xc2, 0xc4, 0x75, 0x37, + 0x24, 0x45, 0x11, 0xed, 0x2f, 0xf5, 0x31, 0x02, 0x4e, 0xf8, 0x18, 0xe1, 0x72, 0x96, 0x58, 0xcb, + 0xde, 0x75, 0x4f, 0xec, 0x9f, 0x94, 0xa7, 0xef, 0x9f, 0xc8, 0x7f, 0x93, 0xc0, 0x0b, 0xa9, 0xb7, + 0x16, 0x5c, 0x0f, 0xd1, 0xca, 0xcb, 0x11, 0x5a, 0xf9, 0xbd, 0x54, 0xc3, 0x00, 0xb7, 0xb4, 0x92, + 0x1b, 0xf2, 0x6f, 0x64, 0x6b, 0xc8, 0x27, 0xbc, 0x09, 0x4f, 0xee, 0xcc, 0xb7, 0x7e, 0xf0, 0xe8, + 0x71, 0xed, 0xd8, 0xa7, 0x8f, 0x6b, 0xc7, 0x3e, 0x7f, 0x5c, 0x3b, 0xf6, 0x8b, 0x71, 0x4d, 0x7a, + 0x34, 0xae, 0x49, 0x9f, 0x8e, 0x6b, 0xd2, 0xe7, 0xe3, 0x9a, 0xf4, 0xf7, 0x71, 0x4d, 0xfa, 0xed, + 0x17, 0xb5, 0x63, 0xef, 0x57, 0x52, 0x3e, 0x85, 0xfe, 0x5f, 0x00, 0x00, 0x00, 0xff, 0xff, 0xd4, + 0x01, 0x82, 0xf5, 0x24, 0x2d, 0x00, 0x00, } func (m *ControllerRevision) Marshal() (dAtA []byte, err error) { @@ -1845,6 +1847,11 @@ func (m *DeploymentStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x48 + } if m.CollisionCount != nil { i = encodeVarintGenerated(dAtA, i, uint64(*m.CollisionCount)) i-- @@ -2151,6 +2158,11 @@ func (m *ReplicaSetStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x38 + } if len(m.Conditions) > 0 { for iNdEx := len(m.Conditions) - 1; iNdEx >= 0; iNdEx-- { { @@ -3146,6 +3158,9 @@ func (m *DeploymentStatus) Size() (n int) { if m.CollisionCount != nil { n += 1 + sovGenerated(uint64(*m.CollisionCount)) } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -3251,6 +3266,9 @@ func (m *ReplicaSetStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -3711,6 +3729,7 @@ func (this *DeploymentStatus) String() string { `Conditions:` + repeatedStringForConditions + `,`, `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `CollisionCount:` + valueToStringGenerated(this.CollisionCount) + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -3797,6 +3816,7 @@ func (this *ReplicaSetStatus) String() string { `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `AvailableReplicas:` + fmt.Sprintf("%v", this.AvailableReplicas) + `,`, `Conditions:` + repeatedStringForConditions + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -6261,6 +6281,26 @@ func (m *DeploymentStatus) Unmarshal(dAtA []byte) error { } } m.CollisionCount = &v + case 9: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -7193,6 +7233,26 @@ func (m *ReplicaSetStatus) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 7: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/apps/v1beta2/generated.proto b/vendor/k8s.io/api/apps/v1beta2/generated.proto index c08a4c78bc..68c463e257 100644 --- a/vendor/k8s.io/api/apps/v1beta2/generated.proto +++ b/vendor/k8s.io/api/apps/v1beta2/generated.proto @@ -323,19 +323,19 @@ message DeploymentStatus { // +optional optional int64 observedGeneration = 1; - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional optional int32 replicas = 2; - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional optional int32 updatedReplicas = 3; - // readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional optional int32 readyReplicas = 7; - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional optional int32 availableReplicas = 4; @@ -345,6 +345,13 @@ message DeploymentStatus { // +optional optional int32 unavailableReplicas = 5; + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 9; + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -427,16 +434,16 @@ message ReplicaSetList { optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset repeated ReplicaSet items = 2; } // ReplicaSetSpec is the specification of a ReplicaSet. message ReplicaSetSpec { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional optional int32 replicas = 1; @@ -454,29 +461,36 @@ message ReplicaSetSpec { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional optional .k8s.io.api.core.v1.PodTemplateSpec template = 3; } // ReplicaSetStatus represents the current status of a ReplicaSet. message ReplicaSetStatus { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset optional int32 replicas = 1; - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional optional int32 fullyLabeledReplicas = 2; - // readyReplicas is the number of pods targeted by this ReplicaSet controller with a Ready Condition. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional optional int32 readyReplicas = 4; - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional optional int32 availableReplicas = 5; + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 7; + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional optional int64 observedGeneration = 3; @@ -747,6 +761,7 @@ message StatefulSetSpec { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional optional string serviceName = 5; // podManagementPolicy controls how pods are created during initial scale up, diff --git a/vendor/k8s.io/api/apps/v1beta2/types.go b/vendor/k8s.io/api/apps/v1beta2/types.go index c2624a941d..491afc59f5 100644 --- a/vendor/k8s.io/api/apps/v1beta2/types.go +++ b/vendor/k8s.io/api/apps/v1beta2/types.go @@ -269,6 +269,7 @@ type StatefulSetSpec struct { // the network identity of the set. Pods get DNS/hostnames that follow the // pattern: pod-specific-string.serviceName.default.svc.cluster.local // where "pod-specific-string" is managed by the StatefulSet controller. + // +optional ServiceName string `json:"serviceName" protobuf:"bytes,5,opt,name=serviceName"` // podManagementPolicy controls how pods are created during initial scale up, @@ -530,19 +531,19 @@ type DeploymentStatus struct { // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,1,opt,name=observedGeneration"` - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional Replicas int32 `json:"replicas,omitempty" protobuf:"varint,2,opt,name=replicas"` - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional UpdatedReplicas int32 `json:"updatedReplicas,omitempty" protobuf:"varint,3,opt,name=updatedReplicas"` - // readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,7,opt,name=readyReplicas"` - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,4,opt,name=availableReplicas"` @@ -552,6 +553,13 @@ type DeploymentStatus struct { // +optional UnavailableReplicas int32 `json:"unavailableReplicas,omitempty" protobuf:"varint,5,opt,name=unavailableReplicas"` + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,9,opt,name=terminatingReplicas"` + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -897,16 +905,16 @@ type ReplicaSetList struct { metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Items []ReplicaSet `json:"items" protobuf:"bytes,2,rep,name=items"` } // ReplicaSetSpec is the specification of a ReplicaSet. type ReplicaSetSpec struct { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional Replicas *int32 `json:"replicas,omitempty" protobuf:"varint,1,opt,name=replicas"` @@ -924,29 +932,36 @@ type ReplicaSetSpec struct { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional Template v1.PodTemplateSpec `json:"template,omitempty" protobuf:"bytes,3,opt,name=template"` } // ReplicaSetStatus represents the current status of a ReplicaSet. type ReplicaSetStatus struct { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Replicas int32 `json:"replicas" protobuf:"varint,1,opt,name=replicas"` - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional FullyLabeledReplicas int32 `json:"fullyLabeledReplicas,omitempty" protobuf:"varint,2,opt,name=fullyLabeledReplicas"` - // readyReplicas is the number of pods targeted by this ReplicaSet controller with a Ready Condition. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,4,opt,name=readyReplicas"` - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,5,opt,name=availableReplicas"` + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,7,opt,name=terminatingReplicas"` + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,3,opt,name=observedGeneration"` diff --git a/vendor/k8s.io/api/apps/v1beta2/types_swagger_doc_generated.go b/vendor/k8s.io/api/apps/v1beta2/types_swagger_doc_generated.go index beec4b7555..4089434151 100644 --- a/vendor/k8s.io/api/apps/v1beta2/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/apps/v1beta2/types_swagger_doc_generated.go @@ -177,11 +177,12 @@ func (DeploymentSpec) SwaggerDoc() map[string]string { var map_DeploymentStatus = map[string]string{ "": "DeploymentStatus is the most recently observed status of the Deployment.", "observedGeneration": "The generation observed by the deployment controller.", - "replicas": "Total number of non-terminated pods targeted by this deployment (their labels match the selector).", - "updatedReplicas": "Total number of non-terminated pods targeted by this deployment that have the desired template spec.", - "readyReplicas": "readyReplicas is the number of pods targeted by this Deployment controller with a Ready Condition.", - "availableReplicas": "Total number of available pods (ready for at least minReadySeconds) targeted by this deployment.", + "replicas": "Total number of non-terminating pods targeted by this deployment (their labels match the selector).", + "updatedReplicas": "Total number of non-terminating pods targeted by this deployment that have the desired template spec.", + "readyReplicas": "Total number of non-terminating pods targeted by this Deployment with a Ready Condition.", + "availableReplicas": "Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment.", "unavailableReplicas": "Total number of unavailable pods targeted by this deployment. This is the total number of pods that are still required for the deployment to have 100% available capacity. They may either be pods that are running but not yet available or pods that still have not been created.", + "terminatingReplicas": "Total number of terminating pods targeted by this deployment. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "conditions": "Represents the latest available observations of a deployment's current state.", "collisionCount": "Count of hash collisions for the Deployment. The Deployment controller uses this field as a collision avoidance mechanism when it needs to create the name for the newest ReplicaSet.", } @@ -227,7 +228,7 @@ func (ReplicaSetCondition) SwaggerDoc() map[string]string { var map_ReplicaSetList = map[string]string{ "": "ReplicaSetList is a collection of ReplicaSets.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", - "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller", + "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", } func (ReplicaSetList) SwaggerDoc() map[string]string { @@ -236,10 +237,10 @@ func (ReplicaSetList) SwaggerDoc() map[string]string { var map_ReplicaSetSpec = map[string]string{ "": "ReplicaSetSpec is the specification of a ReplicaSet.", - "replicas": "Replicas is the number of desired replicas. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", + "replicas": "Replicas is the number of desired pods. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", "minReadySeconds": "Minimum number of seconds for which a newly created pod should be ready without any of its container crashing, for it to be considered available. Defaults to 0 (pod will be considered available as soon as it is ready)", "selector": "Selector is a label query over pods that should match the replica count. Label keys and values that must match in order to be controlled by this replica set. It must match the pod template's labels. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/labels/#label-selectors", - "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template", + "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template", } func (ReplicaSetSpec) SwaggerDoc() map[string]string { @@ -248,10 +249,11 @@ func (ReplicaSetSpec) SwaggerDoc() map[string]string { var map_ReplicaSetStatus = map[string]string{ "": "ReplicaSetStatus represents the current status of a ReplicaSet.", - "replicas": "Replicas is the most recently observed number of replicas. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", - "fullyLabeledReplicas": "The number of pods that have labels matching the labels of the pod template of the replicaset.", - "readyReplicas": "readyReplicas is the number of pods targeted by this ReplicaSet controller with a Ready Condition.", - "availableReplicas": "The number of available replicas (ready for at least minReadySeconds) for this replica set.", + "replicas": "Replicas is the most recently observed number of non-terminating pods. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", + "fullyLabeledReplicas": "The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset.", + "readyReplicas": "The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition.", + "availableReplicas": "The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set.", + "terminatingReplicas": "The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "observedGeneration": "ObservedGeneration reflects the generation of the most recently observed ReplicaSet.", "conditions": "Represents the latest available observations of a replica set's current state.", } diff --git a/vendor/k8s.io/api/apps/v1beta2/zz_generated.deepcopy.go b/vendor/k8s.io/api/apps/v1beta2/zz_generated.deepcopy.go index cd92792db5..917ad4a22f 100644 --- a/vendor/k8s.io/api/apps/v1beta2/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/apps/v1beta2/zz_generated.deepcopy.go @@ -363,6 +363,11 @@ func (in *DeploymentSpec) DeepCopy() *DeploymentSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *DeploymentStatus) DeepCopyInto(out *DeploymentStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]DeploymentCondition, len(*in)) @@ -517,6 +522,11 @@ func (in *ReplicaSetSpec) DeepCopy() *ReplicaSetSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ReplicaSetStatus) DeepCopyInto(out *ReplicaSetStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]ReplicaSetCondition, len(*in)) diff --git a/vendor/k8s.io/api/authentication/v1/doc.go b/vendor/k8s.io/api/authentication/v1/doc.go index 3bdc89badc..dc3aed4e4f 100644 --- a/vendor/k8s.io/api/authentication/v1/doc.go +++ b/vendor/k8s.io/api/authentication/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1 // import "k8s.io/api/authentication/v1" +package v1 diff --git a/vendor/k8s.io/api/authentication/v1alpha1/doc.go b/vendor/k8s.io/api/authentication/v1alpha1/doc.go index eb32def904..c199ccd499 100644 --- a/vendor/k8s.io/api/authentication/v1alpha1/doc.go +++ b/vendor/k8s.io/api/authentication/v1alpha1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1alpha1 // import "k8s.io/api/authentication/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/authentication/v1beta1/doc.go b/vendor/k8s.io/api/authentication/v1beta1/doc.go index 2a2b176e43..af63dc845b 100644 --- a/vendor/k8s.io/api/authentication/v1beta1/doc.go +++ b/vendor/k8s.io/api/authentication/v1beta1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1beta1 // import "k8s.io/api/authentication/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/authorization/v1/doc.go b/vendor/k8s.io/api/authorization/v1/doc.go index 77e5a19c4c..40bf8006e0 100644 --- a/vendor/k8s.io/api/authorization/v1/doc.go +++ b/vendor/k8s.io/api/authorization/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=authorization.k8s.io -package v1 // import "k8s.io/api/authorization/v1" +package v1 diff --git a/vendor/k8s.io/api/authorization/v1beta1/doc.go b/vendor/k8s.io/api/authorization/v1beta1/doc.go index c996e35ccc..9f7332d493 100644 --- a/vendor/k8s.io/api/authorization/v1beta1/doc.go +++ b/vendor/k8s.io/api/authorization/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=authorization.k8s.io -package v1beta1 // import "k8s.io/api/authorization/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/autoscaling/v1/doc.go b/vendor/k8s.io/api/autoscaling/v1/doc.go index d64c9cbc1a..4ee085e165 100644 --- a/vendor/k8s.io/api/autoscaling/v1/doc.go +++ b/vendor/k8s.io/api/autoscaling/v1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1 // import "k8s.io/api/autoscaling/v1" +package v1 diff --git a/vendor/k8s.io/api/autoscaling/v2/doc.go b/vendor/k8s.io/api/autoscaling/v2/doc.go index aafa2d4de2..8dea6339df 100644 --- a/vendor/k8s.io/api/autoscaling/v2/doc.go +++ b/vendor/k8s.io/api/autoscaling/v2/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v2 // import "k8s.io/api/autoscaling/v2" +package v2 diff --git a/vendor/k8s.io/api/autoscaling/v2/generated.pb.go b/vendor/k8s.io/api/autoscaling/v2/generated.pb.go index ece6dedadb..40b60ebeca 100644 --- a/vendor/k8s.io/api/autoscaling/v2/generated.pb.go +++ b/vendor/k8s.io/api/autoscaling/v2/generated.pb.go @@ -751,115 +751,116 @@ func init() { } var fileDescriptor_4d5f2c8767749221 = []byte{ - // 1722 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 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0x3c, 0xcb, 0x31, 0x71, 0x63, 0x54, 0xce, + 0xa6, 0xe3, 0x25, 0xf0, 0x32, 0x1b, 0x35, 0x36, 0xa3, 0x20, 0x28, 0x8e, 0x09, 0xd7, 0xc0, 0xa2, + 0x1c, 0x93, 0x12, 0x37, 0x78, 0x41, 0xfa, 0x79, 0x71, 0x3d, 0x7e, 0x8c, 0x92, 0xf4, 0x0c, 0xc2, + 0x24, 0x2e, 0x75, 0x88, 0x19, 0x40, 0x64, 0xe2, 0x10, 0xf7, 0xe3, 0xc7, 0x28, 0x49, 0x0f, 0x6b, + 0x60, 0x41, 0xa2, 0xca, 0x5b, 0xcd, 0x4d, 0xf2, 0x98, 0x18, 0x3d, 0xc1, 0xca, 0xb6, 0x14, 0xc4, + 0xf7, 0x7a, 0x0c, 0x06, 0x25, 0x60, 0xa1, 0x0d, 0x80, 0xe1, 0x17, 0x4d, 0x37, 0x37, 0xc5, 0x85, + 0xdc, 0x1b, 0x3f, 0x4a, 0x82, 0xc2, 0x1b, 0x76, 0xf4, 0x60, 0xcb, 0x45, 0x11, 0x11, 0xea, 0x1f, + 0x15, 0xb0, 0x94, 0x9c, 0x80, 0x83, 0xc7, 0x86, 0x32, 0xf0, 0xb1, 0xf1, 0x4b, 0x30, 0x23, 0x06, + 0x2a, 0xdb, 0x91, 0xd7, 0xfe, 0x9d, 0x23, 0x96, 0x35, 0x5c, 0x25, 0xf5, 0x8a, 0x64, 0x15, 0x41, + 0xec, 0xaf, 0x50, 0x00, 0xa9, 0xbe, 0xcc, 0x00, 0x10, 0xe6, 0x14, 0xbc, 0x1d, 0xeb, 0x63, 0xab, + 0x89, 0x3e, 0xb6, 0x14, 0x7d, 0xb9, 0x44, 0x7a, 0xd6, 0x23, 0x30, 0x65, 0xf3, 0x32, 0x23, 0x35, + 0xbc, 0x39, 0xc4, 0x8f, 0xc1, 0xbc, 0x13, 0x00, 0xe9, 0x80, 0x35, 0x06, 0x59, 0xa7, 0x24, 0x10, + 0xdc, 0x00, 0x99, 0xa6, 0x6d, 0xfa, 0x53, 0xca, 0xb0, 0x99, 0xb1, 0x6c, 0x9b, 0x6e, 0x0c, 0x6e, + 0x86, 0x69, 0xcc, 0x76, 0x11, 0x87, 0x60, 0x23, 0xa8, 0x3f, 0xf9, 0xc9, 0x31, 0xb1, 0x38, 0x04, + 0xae, 0xdf, 0xd7, 0x00, 0xe1, 0x3d, 0xff, 0x04, 0x05, 0x70, 0xf0, 0x37, 0x60, 0xd9, 0x48, 0xbe, + 0xae, 0x73, 0xd3, 0x23, 0x07, 0xab, 0xa1, 0x9f, 0x1e, 0xf4, 0x73, 0xdd, 0x4e, 0x61, 0xb9, 0x87, + 0x04, 0xf5, 0x4a, 0x62, 0x96, 0x11, 0xf9, 0x28, 0x93, 0x75, 0x6e, 0x98, 0x65, 0xfd, 0x9e, 0x9f, + 0xc2, 0x32, 0xff, 0x04, 0x05, 0x70, 0xea, 0x9f, 0x32, 0x60, 0x2e, 0xf6, 0xd0, 0x3b, 0xe1, 0xc8, + 0x10, 0xc9, 0x7c, 0x6c, 0x91, 0x21, 0xe0, 0x8e, 0x35, 0x32, 0x04, 0xe4, 0x09, 0x45, 0x86, 0x10, + 0x76, 0x42, 0x91, 0x11, 0xb1, 0xac, 0x4f, 0x64, 0xfc, 0x2b, 0xe5, 0x47, 0x86, 0x18, 0x16, 0x8e, + 0x16, 0x19, 0x82, 0x36, 0x12, 0x19, 0xdb, 0xd1, 0xb7, 0xf3, 0xf8, 0x2f, 0xb7, 0xd9, 0x9e, 0x77, + 0xb6, 0x09, 0xe6, 0x70, 0x9b, 0x38, 0xb8, 0x46, 0xf8, 0xb6, 0x8c, 0x8f, 0x71, 0x71, 0x97, 0xd8, + 0x33, 0x77, 0x2d, 0x82, 0x83, 0x62, 0xa8, 0xac, 0xa5, 0xcb, 0xf5, 0x63, 0x2f, 0x78, 0x3f, 0xcb, + 0x2e, 0xc7, 0x5b, 0xfa, 0x5a, 0xcf, 0x29, 0xea, 0xc3, 0xa1, 0xfe, 0x21, 0x05, 0x96, 0x7b, 0xbe, + 0x5c, 0x84, 0x4e, 0x51, 0x3e, 0x91, 0x53, 0x52, 0x27, 0xe8, 0x94, 0xf4, 0xd8, 0x4e, 0xf9, 0x6b, + 0x0a, 0xc0, 0xde, 0xfe, 0x00, 0x0f, 0xf9, 0x58, 0x61, 0x38, 0xb4, 0x4a, 0x4c, 0x71, 0xfc, 0x15, + 0x67, 0xe0, 0xe8, 0x38, 0x12, 0x85, 0x45, 0x49, 0x39, 0xc7, 0xff, 0x05, 0x37, 0xfc, 0x5e, 0x96, + 0x3e, 0xb6, 0xef, 0x65, 0xea, 0x3f, 0x92, 0x7e, 0x3b, 0x85, 0xdf, 0xe6, 0xfa, 0xdd, 0x72, 0xfa, + 0x64, 0x6e, 0x59, 0xfd, 0x9b, 0x02, 0x96, 0x92, 0x63, 0xc4, 0x29, 0xf9, 0x30, 0xfb, 0xcf, 0xb8, + 0xea, 0xa7, 0xf1, 0xa3, 0xec, 0x2b, 0x05, 0x9c, 0x3d, 0x3d, 0xff, 0xc1, 0xa8, 0x7f, 0xe9, 0x55, + 0xf7, 0x14, 0xfc, 0x93, 0xa2, 0x7f, 0xff, 0xcd, 0xfb, 0xfc, 0xc4, 0xdb, 0xf7, 0xf9, 0x89, 0x77, + 0xef, 0xf3, 0x13, 0xbf, 0xed, 0xe6, 0x95, 0x37, 0xdd, 0xbc, 0xf2, 0xb6, 0x9b, 0x57, 0xde, 0x75, + 0xf3, 0xca, 0xff, 0xba, 0x79, 0xe5, 0xf7, 0xff, 0xcf, 0x4f, 0xfc, 0xec, 0xe2, 0xc0, 0xbf, 0x21, + 0xbf, 0x0c, 0x00, 0x00, 0xff, 0xff, 0xbe, 0x23, 0xae, 0x54, 0xa2, 0x1c, 0x00, 0x00, } func (m *ContainerResourceMetricSource) Marshal() (dAtA []byte, err error) { @@ -1126,6 +1127,18 @@ func (m *HPAScalingRules) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.Tolerance != nil { + { + size, err := m.Tolerance.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x22 + } if m.StabilizationWindowSeconds != nil { i = encodeVarintGenerated(dAtA, i, uint64(*m.StabilizationWindowSeconds)) i-- @@ -2203,6 +2216,10 @@ func (m *HPAScalingRules) Size() (n int) { if m.StabilizationWindowSeconds != nil { n += 1 + sovGenerated(uint64(*m.StabilizationWindowSeconds)) } + if m.Tolerance != nil { + l = m.Tolerance.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -2619,6 +2636,7 @@ func (this *HPAScalingRules) String() string { `SelectPolicy:` + valueToStringGenerated(this.SelectPolicy) + `,`, `Policies:` + repeatedStringForPolicies + `,`, `StabilizationWindowSeconds:` + valueToStringGenerated(this.StabilizationWindowSeconds) + `,`, + `Tolerance:` + strings.Replace(fmt.Sprintf("%v", this.Tolerance), "Quantity", "resource.Quantity", 1) + `,`, `}`, }, "") return s @@ -3770,6 +3788,42 @@ func (m *HPAScalingRules) Unmarshal(dAtA []byte) error { } } m.StabilizationWindowSeconds = &v + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Tolerance", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Tolerance == nil { + m.Tolerance = &resource.Quantity{} + } + if err := m.Tolerance.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/autoscaling/v2/generated.proto b/vendor/k8s.io/api/autoscaling/v2/generated.proto index 4e6dc0592a..04c34d6e16 100644 --- a/vendor/k8s.io/api/autoscaling/v2/generated.proto +++ b/vendor/k8s.io/api/autoscaling/v2/generated.proto @@ -112,12 +112,18 @@ message HPAScalingPolicy { optional int32 periodSeconds = 3; } -// HPAScalingRules configures the scaling behavior for one direction. -// These Rules are applied after calculating DesiredReplicas from metrics for the HPA. +// HPAScalingRules configures the scaling behavior for one direction via +// scaling Policy Rules and a configurable metric tolerance. +// +// Scaling Policy Rules are applied after calculating DesiredReplicas from metrics for the HPA. // They can limit the scaling velocity by specifying scaling policies. // They can prevent flapping by specifying the stabilization window, so that the // number of replicas is not set instantly, instead, the safest value from the stabilization // window is chosen. +// +// The tolerance is applied to the metric values and prevents scaling too +// eagerly for small metric variations. (Note that setting a tolerance requires +// enabling the alpha HPAConfigurableTolerance feature gate.) message HPAScalingRules { // stabilizationWindowSeconds is the number of seconds for which past recommendations should be // considered while scaling up or scaling down. @@ -134,10 +140,28 @@ message HPAScalingRules { optional string selectPolicy = 1; // policies is a list of potential scaling polices which can be used during scaling. - // At least one policy must be specified, otherwise the HPAScalingRules will be discarded as invalid + // If not set, use the default values: + // - For scale up: allow doubling the number of pods, or an absolute change of 4 pods in a 15s window. + // - For scale down: allow all pods to be removed in a 15s window. // +listType=atomic // +optional repeated HPAScalingPolicy policies = 2; + + // tolerance is the tolerance on the ratio between the current and desired + // metric value under which no updates are made to the desired number of + // replicas (e.g. 0.01 for 1%). Must be greater than or equal to zero. If not + // set, the default cluster-wide tolerance is applied (by default 10%). + // + // For example, if autoscaling is configured with a memory consumption target of 100Mi, + // and scale-down and scale-up tolerances of 5% and 1% respectively, scaling will be + // triggered when the actual consumption falls below 95Mi or exceeds 101Mi. + // + // This is an alpha field and requires enabling the HPAConfigurableTolerance + // feature gate. + // + // +featureGate=HPAConfigurableTolerance + // +optional + optional .k8s.io.apimachinery.pkg.api.resource.Quantity tolerance = 4; } // HorizontalPodAutoscaler is the configuration for a horizontal pod diff --git a/vendor/k8s.io/api/autoscaling/v2/types.go b/vendor/k8s.io/api/autoscaling/v2/types.go index 99e8db09dc..9ce69b1edc 100644 --- a/vendor/k8s.io/api/autoscaling/v2/types.go +++ b/vendor/k8s.io/api/autoscaling/v2/types.go @@ -171,12 +171,18 @@ const ( DisabledPolicySelect ScalingPolicySelect = "Disabled" ) -// HPAScalingRules configures the scaling behavior for one direction. -// These Rules are applied after calculating DesiredReplicas from metrics for the HPA. +// HPAScalingRules configures the scaling behavior for one direction via +// scaling Policy Rules and a configurable metric tolerance. +// +// Scaling Policy Rules are applied after calculating DesiredReplicas from metrics for the HPA. // They can limit the scaling velocity by specifying scaling policies. // They can prevent flapping by specifying the stabilization window, so that the // number of replicas is not set instantly, instead, the safest value from the stabilization // window is chosen. +// +// The tolerance is applied to the metric values and prevents scaling too +// eagerly for small metric variations. (Note that setting a tolerance requires +// enabling the alpha HPAConfigurableTolerance feature gate.) type HPAScalingRules struct { // stabilizationWindowSeconds is the number of seconds for which past recommendations should be // considered while scaling up or scaling down. @@ -193,10 +199,28 @@ type HPAScalingRules struct { SelectPolicy *ScalingPolicySelect `json:"selectPolicy,omitempty" protobuf:"bytes,1,opt,name=selectPolicy"` // policies is a list of potential scaling polices which can be used during scaling. - // At least one policy must be specified, otherwise the HPAScalingRules will be discarded as invalid + // If not set, use the default values: + // - For scale up: allow doubling the number of pods, or an absolute change of 4 pods in a 15s window. + // - For scale down: allow all pods to be removed in a 15s window. // +listType=atomic // +optional Policies []HPAScalingPolicy `json:"policies,omitempty" listType:"atomic" protobuf:"bytes,2,rep,name=policies"` + + // tolerance is the tolerance on the ratio between the current and desired + // metric value under which no updates are made to the desired number of + // replicas (e.g. 0.01 for 1%). Must be greater than or equal to zero. If not + // set, the default cluster-wide tolerance is applied (by default 10%). + // + // For example, if autoscaling is configured with a memory consumption target of 100Mi, + // and scale-down and scale-up tolerances of 5% and 1% respectively, scaling will be + // triggered when the actual consumption falls below 95Mi or exceeds 101Mi. + // + // This is an alpha field and requires enabling the HPAConfigurableTolerance + // feature gate. + // + // +featureGate=HPAConfigurableTolerance + // +optional + Tolerance *resource.Quantity `json:"tolerance,omitempty" protobuf:"bytes,4,opt,name=tolerance"` } // HPAScalingPolicyType is the type of the policy which could be used while making scaling decisions. diff --git a/vendor/k8s.io/api/autoscaling/v2/types_swagger_doc_generated.go b/vendor/k8s.io/api/autoscaling/v2/types_swagger_doc_generated.go index 649cd04a03..017fefcde7 100644 --- a/vendor/k8s.io/api/autoscaling/v2/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/autoscaling/v2/types_swagger_doc_generated.go @@ -92,10 +92,11 @@ func (HPAScalingPolicy) SwaggerDoc() map[string]string { } var map_HPAScalingRules = map[string]string{ - "": "HPAScalingRules configures the scaling behavior for one direction. These Rules are applied after calculating DesiredReplicas from metrics for the HPA. They can limit the scaling velocity by specifying scaling policies. They can prevent flapping by specifying the stabilization window, so that the number of replicas is not set instantly, instead, the safest value from the stabilization window is chosen.", + "": "HPAScalingRules configures the scaling behavior for one direction via scaling Policy Rules and a configurable metric tolerance.\n\nScaling Policy Rules are applied after calculating DesiredReplicas from metrics for the HPA. They can limit the scaling velocity by specifying scaling policies. They can prevent flapping by specifying the stabilization window, so that the number of replicas is not set instantly, instead, the safest value from the stabilization window is chosen.\n\nThe tolerance is applied to the metric values and prevents scaling too eagerly for small metric variations. (Note that setting a tolerance requires enabling the alpha HPAConfigurableTolerance feature gate.)", "stabilizationWindowSeconds": "stabilizationWindowSeconds is the number of seconds for which past recommendations should be considered while scaling up or scaling down. StabilizationWindowSeconds must be greater than or equal to zero and less than or equal to 3600 (one hour). If not set, use the default values: - For scale up: 0 (i.e. no stabilization is done). - For scale down: 300 (i.e. the stabilization window is 300 seconds long).", "selectPolicy": "selectPolicy is used to specify which policy should be used. If not set, the default value Max is used.", - "policies": "policies is a list of potential scaling polices which can be used during scaling. At least one policy must be specified, otherwise the HPAScalingRules will be discarded as invalid", + "policies": "policies is a list of potential scaling polices which can be used during scaling. If not set, use the default values: - For scale up: allow doubling the number of pods, or an absolute change of 4 pods in a 15s window. - For scale down: allow all pods to be removed in a 15s window.", + "tolerance": "tolerance is the tolerance on the ratio between the current and desired metric value under which no updates are made to the desired number of replicas (e.g. 0.01 for 1%). Must be greater than or equal to zero. If not set, the default cluster-wide tolerance is applied (by default 10%).\n\nFor example, if autoscaling is configured with a memory consumption target of 100Mi, and scale-down and scale-up tolerances of 5% and 1% respectively, scaling will be triggered when the actual consumption falls below 95Mi or exceeds 101Mi.\n\nThis is an alpha field and requires enabling the HPAConfigurableTolerance feature gate.", } func (HPAScalingRules) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/autoscaling/v2/zz_generated.deepcopy.go b/vendor/k8s.io/api/autoscaling/v2/zz_generated.deepcopy.go index 125708d6fd..5fbcf9f807 100644 --- a/vendor/k8s.io/api/autoscaling/v2/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/autoscaling/v2/zz_generated.deepcopy.go @@ -146,6 +146,11 @@ func (in *HPAScalingRules) DeepCopyInto(out *HPAScalingRules) { *out = make([]HPAScalingPolicy, len(*in)) copy(*out, *in) } + if in.Tolerance != nil { + in, out := &in.Tolerance, &out.Tolerance + x := (*in).DeepCopy() + *out = &x + } return } diff --git a/vendor/k8s.io/api/autoscaling/v2beta1/doc.go b/vendor/k8s.io/api/autoscaling/v2beta1/doc.go index 25ca507bba..eac92e86e8 100644 --- a/vendor/k8s.io/api/autoscaling/v2beta1/doc.go +++ b/vendor/k8s.io/api/autoscaling/v2beta1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v2beta1 // import "k8s.io/api/autoscaling/v2beta1" +package v2beta1 diff --git a/vendor/k8s.io/api/autoscaling/v2beta2/doc.go b/vendor/k8s.io/api/autoscaling/v2beta2/doc.go index 76fb0aff87..1500372978 100644 --- a/vendor/k8s.io/api/autoscaling/v2beta2/doc.go +++ b/vendor/k8s.io/api/autoscaling/v2beta2/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v2beta2 // import "k8s.io/api/autoscaling/v2beta2" +package v2beta2 diff --git a/vendor/k8s.io/api/batch/v1/doc.go b/vendor/k8s.io/api/batch/v1/doc.go index cb5cbb6002..69088e2c5b 100644 --- a/vendor/k8s.io/api/batch/v1/doc.go +++ b/vendor/k8s.io/api/batch/v1/doc.go @@ -18,4 +18,4 @@ limitations under the License. // +k8s:protobuf-gen=package // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1 // import "k8s.io/api/batch/v1" +package v1 diff --git a/vendor/k8s.io/api/batch/v1/generated.proto b/vendor/k8s.io/api/batch/v1/generated.proto index 361ebdca12..d3aeae0adb 100644 --- a/vendor/k8s.io/api/batch/v1/generated.proto +++ b/vendor/k8s.io/api/batch/v1/generated.proto @@ -222,8 +222,6 @@ message JobSpec { // When the field is specified, it must be immutable and works only for the Indexed Jobs. // Once the Job meets the SuccessPolicy, the lingering pods are terminated. // - // This field is beta-level. To use this field, you must enable the - // `JobSuccessPolicy` feature gate (enabled by default). // +optional optional SuccessPolicy successPolicy = 16; @@ -238,8 +236,6 @@ message JobSpec { // batch.kubernetes.io/job-index-failure-count annotation. It can only // be set when Job's completionMode=Indexed, and the Pod's restart // policy is Never. The field is immutable. - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional optional int32 backoffLimitPerIndex = 12; @@ -251,8 +247,6 @@ message JobSpec { // It can only be specified when backoffLimitPerIndex is set. // It can be null or up to completions. It is required and must be // less than or equal to 10^4 when is completions greater than 10^5. - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional optional int32 maxFailedIndexes = 13; @@ -442,8 +436,6 @@ message JobStatus { // represented as "1,3-5,7". // The set of failed indexes cannot overlap with the set of completed indexes. // - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional optional string failedIndexes = 10; @@ -554,8 +546,6 @@ message PodFailurePolicyRule { // running pods are terminated. // - FailIndex: indicates that the pod's index is marked as Failed and will // not be restarted. - // This value is beta-level. It can be used when the - // `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default). // - Ignore: indicates that the counter towards the .backoffLimit is not // incremented and a replacement pod is created. // - Count: indicates that the pod is handled in the default way - the diff --git a/vendor/k8s.io/api/batch/v1/types.go b/vendor/k8s.io/api/batch/v1/types.go index 8e9a761b95..6c0007c21e 100644 --- a/vendor/k8s.io/api/batch/v1/types.go +++ b/vendor/k8s.io/api/batch/v1/types.go @@ -128,7 +128,6 @@ const ( // This is an action which might be taken on a pod failure - mark the // Job's index as failed to avoid restarts within this index. This action // can only be used when backoffLimitPerIndex is set. - // This value is beta-level. PodFailurePolicyActionFailIndex PodFailurePolicyAction = "FailIndex" // This is an action which might be taken on a pod failure - the counter towards @@ -223,8 +222,6 @@ type PodFailurePolicyRule struct { // running pods are terminated. // - FailIndex: indicates that the pod's index is marked as Failed and will // not be restarted. - // This value is beta-level. It can be used when the - // `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default). // - Ignore: indicates that the counter towards the .backoffLimit is not // incremented and a replacement pod is created. // - Count: indicates that the pod is handled in the default way - the @@ -346,8 +343,6 @@ type JobSpec struct { // When the field is specified, it must be immutable and works only for the Indexed Jobs. // Once the Job meets the SuccessPolicy, the lingering pods are terminated. // - // This field is beta-level. To use this field, you must enable the - // `JobSuccessPolicy` feature gate (enabled by default). // +optional SuccessPolicy *SuccessPolicy `json:"successPolicy,omitempty" protobuf:"bytes,16,opt,name=successPolicy"` @@ -362,8 +357,6 @@ type JobSpec struct { // batch.kubernetes.io/job-index-failure-count annotation. It can only // be set when Job's completionMode=Indexed, and the Pod's restart // policy is Never. The field is immutable. - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional BackoffLimitPerIndex *int32 `json:"backoffLimitPerIndex,omitempty" protobuf:"varint,12,opt,name=backoffLimitPerIndex"` @@ -375,8 +368,6 @@ type JobSpec struct { // It can only be specified when backoffLimitPerIndex is set. // It can be null or up to completions. It is required and must be // less than or equal to 10^4 when is completions greater than 10^5. - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional MaxFailedIndexes *int32 `json:"maxFailedIndexes,omitempty" protobuf:"varint,13,opt,name=maxFailedIndexes"` @@ -571,8 +562,6 @@ type JobStatus struct { // represented as "1,3-5,7". // The set of failed indexes cannot overlap with the set of completed indexes. // - // This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` - // feature gate is enabled (enabled by default). // +optional FailedIndexes *string `json:"failedIndexes,omitempty" protobuf:"bytes,10,opt,name=failedIndexes"` @@ -647,13 +636,9 @@ const ( JobReasonFailedIndexes string = "FailedIndexes" // JobReasonSuccessPolicy reason indicates a SuccessCriteriaMet condition is added due to // a Job met successPolicy. - // https://kep.k8s.io/3998 - // This is currently a beta field. JobReasonSuccessPolicy string = "SuccessPolicy" // JobReasonCompletionsReached reason indicates a SuccessCriteriaMet condition is added due to // a number of succeeded Job pods met completions. - // - https://kep.k8s.io/3998 - // This is currently a beta field. JobReasonCompletionsReached string = "CompletionsReached" ) diff --git a/vendor/k8s.io/api/batch/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/batch/v1/types_swagger_doc_generated.go index 893f3371f0..ffd4e4f5fe 100644 --- a/vendor/k8s.io/api/batch/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/batch/v1/types_swagger_doc_generated.go @@ -116,10 +116,10 @@ var map_JobSpec = map[string]string{ "completions": "Specifies the desired number of successfully finished pods the job should be run with. Setting to null means that the success of any pod signals the success of all pods, and allows parallelism to have any positive value. Setting to 1 means that parallelism is limited to 1 and the success of that pod signals the success of the job. More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/", "activeDeadlineSeconds": "Specifies the duration in seconds relative to the startTime that the job may be continuously active before the system tries to terminate it; value must be positive integer. If a Job is suspended (at creation or through an update), this timer will effectively be stopped and reset when the Job is resumed again.", "podFailurePolicy": "Specifies the policy of handling failed pods. In particular, it allows to specify the set of actions and conditions which need to be satisfied to take the associated action. If empty, the default behaviour applies - the counter of failed pods, represented by the jobs's .status.failed field, is incremented and it is checked against the backoffLimit. This field cannot be used in combination with restartPolicy=OnFailure.", - "successPolicy": "successPolicy specifies the policy when the Job can be declared as succeeded. If empty, the default behavior applies - the Job is declared as succeeded only when the number of succeeded pods equals to the completions. When the field is specified, it must be immutable and works only for the Indexed Jobs. Once the Job meets the SuccessPolicy, the lingering pods are terminated.\n\nThis field is beta-level. To use this field, you must enable the `JobSuccessPolicy` feature gate (enabled by default).", + "successPolicy": "successPolicy specifies the policy when the Job can be declared as succeeded. If empty, the default behavior applies - the Job is declared as succeeded only when the number of succeeded pods equals to the completions. When the field is specified, it must be immutable and works only for the Indexed Jobs. Once the Job meets the SuccessPolicy, the lingering pods are terminated.", "backoffLimit": "Specifies the number of retries before marking this job failed. Defaults to 6", - "backoffLimitPerIndex": "Specifies the limit for the number of retries within an index before marking this index as failed. When enabled the number of failures per index is kept in the pod's batch.kubernetes.io/job-index-failure-count annotation. It can only be set when Job's completionMode=Indexed, and the Pod's restart policy is Never. The field is immutable. This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).", - "maxFailedIndexes": "Specifies the maximal number of failed indexes before marking the Job as failed, when backoffLimitPerIndex is set. Once the number of failed indexes exceeds this number the entire Job is marked as Failed and its execution is terminated. When left as null the job continues execution of all of its indexes and is marked with the `Complete` Job condition. It can only be specified when backoffLimitPerIndex is set. It can be null or up to completions. It is required and must be less than or equal to 10^4 when is completions greater than 10^5. This field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).", + "backoffLimitPerIndex": "Specifies the limit for the number of retries within an index before marking this index as failed. When enabled the number of failures per index is kept in the pod's batch.kubernetes.io/job-index-failure-count annotation. It can only be set when Job's completionMode=Indexed, and the Pod's restart policy is Never. The field is immutable.", + "maxFailedIndexes": "Specifies the maximal number of failed indexes before marking the Job as failed, when backoffLimitPerIndex is set. Once the number of failed indexes exceeds this number the entire Job is marked as Failed and its execution is terminated. When left as null the job continues execution of all of its indexes and is marked with the `Complete` Job condition. It can only be specified when backoffLimitPerIndex is set. It can be null or up to completions. It is required and must be less than or equal to 10^4 when is completions greater than 10^5.", "selector": "A label query over pods that should match the pod count. Normally, the system sets this field for you. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/labels/#label-selectors", "manualSelector": "manualSelector controls generation of pod labels and pod selectors. Leave `manualSelector` unset unless you are certain what you are doing. When false or unset, the system pick labels unique to this job and appends those labels to the pod template. When true, the user is responsible for picking unique labels and specifying the selector. Failure to pick a unique label may cause this and other jobs to not function correctly. However, You may see `manualSelector=true` in jobs that were created with the old `extensions/v1beta1` API. More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/#specifying-your-own-pod-selector", "template": "Describes the pod that will be created when executing a job. The only allowed template.spec.restartPolicy values are \"Never\" or \"OnFailure\". More info: https://kubernetes.io/docs/concepts/workloads/controllers/jobs-run-to-completion/", @@ -144,7 +144,7 @@ var map_JobStatus = map[string]string{ "failed": "The number of pods which reached phase Failed. The value increases monotonically.", "terminating": "The number of pods which are terminating (in phase Pending or Running and have a deletionTimestamp).\n\nThis field is beta-level. The job controller populates the field when the feature gate JobPodReplacementPolicy is enabled (enabled by default).", "completedIndexes": "completedIndexes holds the completed indexes when .spec.completionMode = \"Indexed\" in a text format. The indexes are represented as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the completed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\".", - "failedIndexes": "FailedIndexes holds the failed indexes when spec.backoffLimitPerIndex is set. The indexes are represented in the text format analogous as for the `completedIndexes` field, ie. they are kept as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the failed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\". The set of failed indexes cannot overlap with the set of completed indexes.\n\nThis field is beta-level. It can be used when the `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).", + "failedIndexes": "FailedIndexes holds the failed indexes when spec.backoffLimitPerIndex is set. The indexes are represented in the text format analogous as for the `completedIndexes` field, ie. they are kept as decimal integers separated by commas. The numbers are listed in increasing order. Three or more consecutive numbers are compressed and represented by the first and last element of the series, separated by a hyphen. For example, if the failed indexes are 1, 3, 4, 5 and 7, they are represented as \"1,3-5,7\". The set of failed indexes cannot overlap with the set of completed indexes.", "uncountedTerminatedPods": "uncountedTerminatedPods holds the UIDs of Pods that have terminated but the job controller hasn't yet accounted for in the status counters.\n\nThe job controller creates pods with a finalizer. When a pod terminates (succeeded or failed), the controller does three steps to account for it in the job status:\n\n1. Add the pod UID to the arrays in this field. 2. Remove the pod finalizer. 3. Remove the pod UID from the arrays while increasing the corresponding\n counter.\n\nOld jobs might not be tracked using this field, in which case the field remains null. The structure is empty for finished jobs.", "ready": "The number of active pods which have a Ready condition and are not terminating (without a deletionTimestamp).", } @@ -195,7 +195,7 @@ func (PodFailurePolicyOnPodConditionsPattern) SwaggerDoc() map[string]string { var map_PodFailurePolicyRule = map[string]string{ "": "PodFailurePolicyRule describes how a pod failure is handled when the requirements are met. One of onExitCodes and onPodConditions, but not both, can be used in each rule.", - "action": "Specifies the action taken on a pod failure when the requirements are satisfied. Possible values are:\n\n- FailJob: indicates that the pod's job is marked as Failed and all\n running pods are terminated.\n- FailIndex: indicates that the pod's index is marked as Failed and will\n not be restarted.\n This value is beta-level. It can be used when the\n `JobBackoffLimitPerIndex` feature gate is enabled (enabled by default).\n- Ignore: indicates that the counter towards the .backoffLimit is not\n incremented and a replacement pod is created.\n- Count: indicates that the pod is handled in the default way - the\n counter towards the .backoffLimit is incremented.\nAdditional values are considered to be added in the future. Clients should react to an unknown action by skipping the rule.", + "action": "Specifies the action taken on a pod failure when the requirements are satisfied. Possible values are:\n\n- FailJob: indicates that the pod's job is marked as Failed and all\n running pods are terminated.\n- FailIndex: indicates that the pod's index is marked as Failed and will\n not be restarted.\n- Ignore: indicates that the counter towards the .backoffLimit is not\n incremented and a replacement pod is created.\n- Count: indicates that the pod is handled in the default way - the\n counter towards the .backoffLimit is incremented.\nAdditional values are considered to be added in the future. Clients should react to an unknown action by skipping the rule.", "onExitCodes": "Represents the requirement on the container exit codes.", "onPodConditions": "Represents the requirement on the pod conditions. The requirement is represented as a list of pod condition patterns. The requirement is satisfied if at least one pattern matches an actual pod condition. At most 20 elements are allowed.", } diff --git a/vendor/k8s.io/api/batch/v1beta1/doc.go b/vendor/k8s.io/api/batch/v1beta1/doc.go index cb2572f5da..3430d6939d 100644 --- a/vendor/k8s.io/api/batch/v1beta1/doc.go +++ b/vendor/k8s.io/api/batch/v1beta1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1beta1 // import "k8s.io/api/batch/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/certificates/v1/doc.go b/vendor/k8s.io/api/certificates/v1/doc.go index 78434478e8..6c16fc29b8 100644 --- a/vendor/k8s.io/api/certificates/v1/doc.go +++ b/vendor/k8s.io/api/certificates/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=certificates.k8s.io -package v1 // import "k8s.io/api/certificates/v1" +package v1 diff --git a/vendor/k8s.io/api/certificates/v1alpha1/doc.go b/vendor/k8s.io/api/certificates/v1alpha1/doc.go index d83d0e8207..01481df8e5 100644 --- a/vendor/k8s.io/api/certificates/v1alpha1/doc.go +++ b/vendor/k8s.io/api/certificates/v1alpha1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=certificates.k8s.io -package v1alpha1 // import "k8s.io/api/certificates/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/certificates/v1beta1/doc.go b/vendor/k8s.io/api/certificates/v1beta1/doc.go index 1165518c67..81608a554c 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/doc.go +++ b/vendor/k8s.io/api/certificates/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=certificates.k8s.io -package v1beta1 // import "k8s.io/api/certificates/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/certificates/v1beta1/generated.pb.go b/vendor/k8s.io/api/certificates/v1beta1/generated.pb.go index b6d8ab3f59..199a54496a 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/generated.pb.go +++ b/vendor/k8s.io/api/certificates/v1beta1/generated.pb.go @@ -186,10 +186,94 @@ func (m *CertificateSigningRequestStatus) XXX_DiscardUnknown() { var xxx_messageInfo_CertificateSigningRequestStatus proto.InternalMessageInfo +func (m *ClusterTrustBundle) Reset() { *m = ClusterTrustBundle{} } +func (*ClusterTrustBundle) ProtoMessage() {} +func (*ClusterTrustBundle) Descriptor() ([]byte, []int) { + return fileDescriptor_6529c11a462c48a5, []int{5} +} +func (m *ClusterTrustBundle) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ClusterTrustBundle) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ClusterTrustBundle) XXX_Merge(src proto.Message) { + xxx_messageInfo_ClusterTrustBundle.Merge(m, src) +} +func (m *ClusterTrustBundle) XXX_Size() int { + return m.Size() +} +func (m *ClusterTrustBundle) XXX_DiscardUnknown() { + xxx_messageInfo_ClusterTrustBundle.DiscardUnknown(m) +} + +var xxx_messageInfo_ClusterTrustBundle proto.InternalMessageInfo + +func (m *ClusterTrustBundleList) Reset() { *m = ClusterTrustBundleList{} } +func (*ClusterTrustBundleList) ProtoMessage() {} +func (*ClusterTrustBundleList) Descriptor() ([]byte, []int) { + return fileDescriptor_6529c11a462c48a5, []int{6} +} +func (m *ClusterTrustBundleList) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ClusterTrustBundleList) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ClusterTrustBundleList) XXX_Merge(src proto.Message) { + xxx_messageInfo_ClusterTrustBundleList.Merge(m, src) +} +func (m *ClusterTrustBundleList) XXX_Size() int { + return m.Size() +} +func (m *ClusterTrustBundleList) XXX_DiscardUnknown() { + xxx_messageInfo_ClusterTrustBundleList.DiscardUnknown(m) +} + +var xxx_messageInfo_ClusterTrustBundleList proto.InternalMessageInfo + +func (m *ClusterTrustBundleSpec) Reset() { *m = ClusterTrustBundleSpec{} } +func (*ClusterTrustBundleSpec) ProtoMessage() {} +func (*ClusterTrustBundleSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_6529c11a462c48a5, []int{7} +} +func (m *ClusterTrustBundleSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ClusterTrustBundleSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ClusterTrustBundleSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_ClusterTrustBundleSpec.Merge(m, src) +} +func (m *ClusterTrustBundleSpec) XXX_Size() int { + return m.Size() +} +func (m *ClusterTrustBundleSpec) XXX_DiscardUnknown() { + xxx_messageInfo_ClusterTrustBundleSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_ClusterTrustBundleSpec proto.InternalMessageInfo + func (m *ExtraValue) Reset() { *m = ExtraValue{} } func (*ExtraValue) ProtoMessage() {} func (*ExtraValue) Descriptor() ([]byte, []int) { - return fileDescriptor_6529c11a462c48a5, []int{5} + return fileDescriptor_6529c11a462c48a5, []int{8} } func (m *ExtraValue) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -221,6 +305,9 @@ func init() { proto.RegisterType((*CertificateSigningRequestSpec)(nil), "k8s.io.api.certificates.v1beta1.CertificateSigningRequestSpec") proto.RegisterMapType((map[string]ExtraValue)(nil), "k8s.io.api.certificates.v1beta1.CertificateSigningRequestSpec.ExtraEntry") proto.RegisterType((*CertificateSigningRequestStatus)(nil), "k8s.io.api.certificates.v1beta1.CertificateSigningRequestStatus") + proto.RegisterType((*ClusterTrustBundle)(nil), "k8s.io.api.certificates.v1beta1.ClusterTrustBundle") + proto.RegisterType((*ClusterTrustBundleList)(nil), "k8s.io.api.certificates.v1beta1.ClusterTrustBundleList") + proto.RegisterType((*ClusterTrustBundleSpec)(nil), "k8s.io.api.certificates.v1beta1.ClusterTrustBundleSpec") proto.RegisterType((*ExtraValue)(nil), "k8s.io.api.certificates.v1beta1.ExtraValue") } @@ -229,64 +316,69 @@ func init() { } var fileDescriptor_6529c11a462c48a5 = []byte{ - // 901 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xa4, 0x56, 0x4d, 0x6f, 0x1b, 0x45, - 0x18, 0xf6, 0xc6, 0x1f, 0xb1, 0xc7, 0x21, 0x6d, 0x47, 0x50, 0x2d, 0x96, 0xea, 0xb5, 0x56, 0x80, - 0xc2, 0xd7, 0x2c, 0xa9, 0x2a, 0x88, 0x72, 0x40, 0xb0, 0x21, 0x42, 0x11, 0x29, 0x48, 0x93, 0x84, - 0x03, 0x42, 0xa2, 0x93, 0xf5, 0xdb, 0xcd, 0x34, 0xdd, 0x0f, 0x76, 0x66, 0x4d, 0x7d, 0xeb, 0x4f, - 0xe0, 0xc8, 0x91, 0xff, 0xc0, 0x9f, 0x08, 0x07, 0xa4, 0x1e, 0x7b, 0x40, 0x16, 0x71, 0xff, 0x45, - 0x4e, 0x68, 0x66, 0xc7, 0x6b, 0xc7, 0x4e, 0x70, 0x69, 0x6f, 0x3b, 0xcf, 0xbc, 0xcf, 0xf3, 0xbc, - 0xf3, 0xce, 0xfb, 0x8e, 0x8d, 0xbc, 0xd3, 0x2d, 0x41, 0x78, 0xe2, 0xb1, 0x94, 0x7b, 0x01, 0x64, - 0x92, 0x3f, 0xe4, 0x01, 0x93, 0x20, 0xbc, 0xc1, 0xe6, 0x31, 0x48, 0xb6, 0xe9, 0x85, 0x10, 0x43, - 0xc6, 0x24, 0xf4, 0x49, 0x9a, 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0x08, 0x3b, 0x36, 0x51, 0xc5, 0x8b, 0xc3, 0x24, 0x62, 0x7a, 0x49, 0x8a, 0x23, + 0x21, 0xfe, 0xb9, 0xb4, 0x10, 0x75, 0x83, 0x03, 0x54, 0x86, 0x47, 0x3c, 0xa6, 0x7a, 0x45, 0x7e, + 0xbf, 0xdd, 0xe7, 0x5b, 0x79, 0xd6, 0x8e, 0xe0, 0xda, 0x09, 0x78, 0xdc, 0x1f, 0x7f, 0x4e, 0x69, + 0x23, 0xa9, 0x4c, 0x03, 0x10, 0x1a, 0xfb, 0xe0, 0x9b, 0xa8, 0x78, 0x02, 0xfd, 0x74, 0xf7, 0x10, + 0xf1, 0x13, 0x7f, 0x8a, 0xca, 0x3d, 0x7a, 0x9a, 0x80, 0x5a, 0xc1, 0xef, 0x2c, 0x8c, 0x47, 0xb2, + 0x7d, 0x2d, 0x20, 0x24, 0x45, 0x6e, 0x2f, 0x6d, 0x69, 0xe6, 0x9f, 0x1a, 0x32, 0x16, 0x2c, 0x4e, + 0xfc, 0x13, 0x42, 0xee, 0x68, 0x19, 0x31, 0x5d, 0x93, 0xf9, 0xb7, 0xaf, 0x9f, 0x7f, 0xb6, 0xd8, + 0xc6, 0x6f, 0x4c, 0x66, 0x62, 0x24, 0x27, 0x85, 0x37, 0x50, 0x3d, 0x47, 0x2d, 0x33, 0x5d, 0x71, + 0x6e, 0x0c, 0x07, 0x46, 0x3d, 0x47, 0x4e, 0xf2, 0x3e, 0xe6, 0x5f, 0x1a, 0xc2, 0xed, 0xd3, 0x84, + 0x71, 0x88, 0x0f, 0xe2, 0x84, 0x71, 0x27, 0x09, 0x3a, 0xa7, 0xf0, 0x02, 0x5e, 0xc4, 0x6f, 0x27, + 0x5e, 0xc4, 0xbb, 0x8b, 0xcb, 0x33, 0x13, 0xe4, 0xbc, 0xa7, 0xd0, 0x3c, 0xd7, 0xd0, 0xda, 0xac, + 0xfb, 0x0b, 0xd8, 0x59, 0xdf, 0x4c, 0xee, 0xac, 0x0f, 0xae, 0x91, 0xd4, 0x9c, 0x65, 0xf5, 0xf3, + 0x95, 0x29, 0xc9, 0x2d, 0xb5, 0x39, 0xb1, 0x7e, 0xd2, 0xd7, 0x36, 0x2b, 0xfd, 0x9c, 0x15, 0xf4, + 0x21, 0xaa, 0xf3, 0x31, 0x8d, 0x5a, 0x08, 0x2f, 0x2b, 0x50, 0x3d, 0xa7, 0x40, 0xf2, 0x7e, 0xe6, + 0x5d, 0x35, 0x63, 0x72, 0x2a, 0xb0, 0x31, 0xca, 0x56, 0x93, 0x4b, 0xa0, 0x36, 0x1d, 0xf4, 0x76, + 0xf5, 0xd7, 0xdf, 0x8c, 0xc2, 0xe3, 0xbf, 0x5b, 0x05, 0x67, 0xe7, 0xec, 0xa2, 0x59, 0x38, 0xbf, + 0x68, 0x16, 0x9e, 0x5c, 0x34, 0x0b, 0x8f, 0x87, 0x4d, 0xed, 0x6c, 0xd8, 0xd4, 0xce, 0x87, 0x4d, + 0xed, 0xc9, 0xb0, 0xa9, 0xfd, 0x33, 0x6c, 0x6a, 0xbf, 0x3c, 0x6d, 0x16, 0xbe, 0x33, 0x16, 0xfc, + 0xd1, 0xfd, 0x37, 0x00, 0x00, 0xff, 0xff, 0x17, 0xbe, 0xe3, 0x02, 0x0a, 0x0b, 0x00, 0x00, } func (m *CertificateSigningRequest) Marshal() (dAtA []byte, err error) { @@ -595,6 +687,129 @@ func (m *CertificateSigningRequestStatus) MarshalToSizedBuffer(dAtA []byte) (int return len(dAtA) - i, nil } +func (m *ClusterTrustBundle) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ClusterTrustBundle) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ClusterTrustBundle) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *ClusterTrustBundleList) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ClusterTrustBundleList) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ClusterTrustBundleList) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } + { + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *ClusterTrustBundleSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ClusterTrustBundleSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ClusterTrustBundleSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.TrustBundle) + copy(dAtA[i:], m.TrustBundle) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.TrustBundle))) + i-- + dAtA[i] = 0x12 + i -= len(m.SignerName) + copy(dAtA[i:], m.SignerName) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.SignerName))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m ExtraValue) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -755,6 +970,49 @@ func (m *CertificateSigningRequestStatus) Size() (n int) { return n } +func (m *ClusterTrustBundle) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ClusterTrustBundleList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ClusterTrustBundleSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.SignerName) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.TrustBundle) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m ExtraValue) Size() (n int) { if m == nil { return 0 @@ -862,6 +1120,44 @@ func (this *CertificateSigningRequestStatus) String() string { }, "") return s } +func (this *ClusterTrustBundle) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ClusterTrustBundle{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "ClusterTrustBundleSpec", "ClusterTrustBundleSpec", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *ClusterTrustBundleList) String() string { + if this == nil { + return "nil" + } + repeatedStringForItems := "[]ClusterTrustBundle{" + for _, f := range this.Items { + repeatedStringForItems += strings.Replace(strings.Replace(f.String(), "ClusterTrustBundle", "ClusterTrustBundle", 1), `&`, ``, 1) + "," + } + repeatedStringForItems += "}" + s := strings.Join([]string{`&ClusterTrustBundleList{`, + `ListMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ListMeta), "ListMeta", "v1.ListMeta", 1), `&`, ``, 1) + `,`, + `Items:` + repeatedStringForItems + `,`, + `}`, + }, "") + return s +} +func (this *ClusterTrustBundleSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ClusterTrustBundleSpec{`, + `SignerName:` + fmt.Sprintf("%v", this.SignerName) + `,`, + `TrustBundle:` + fmt.Sprintf("%v", this.TrustBundle) + `,`, + `}`, + }, "") + return s +} func valueToStringGenerated(v interface{}) string { rv := reflect.ValueOf(v) if rv.IsNil() { @@ -1892,6 +2188,353 @@ func (m *CertificateSigningRequestStatus) Unmarshal(dAtA []byte) error { } return nil } +func (m *ClusterTrustBundle) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ClusterTrustBundle: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ClusterTrustBundle: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ClusterTrustBundleList) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ClusterTrustBundleList: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ClusterTrustBundleList: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Items = append(m.Items, ClusterTrustBundle{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ClusterTrustBundleSpec) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ClusterTrustBundleSpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ClusterTrustBundleSpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field SignerName", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.SignerName = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field TrustBundle", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.TrustBundle = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} func (m *ExtraValue) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 diff --git a/vendor/k8s.io/api/certificates/v1beta1/generated.proto b/vendor/k8s.io/api/certificates/v1beta1/generated.proto index f3ec4c06e4..7c48270f65 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/generated.proto +++ b/vendor/k8s.io/api/certificates/v1beta1/generated.proto @@ -190,6 +190,79 @@ message CertificateSigningRequestStatus { optional bytes certificate = 2; } +// ClusterTrustBundle is a cluster-scoped container for X.509 trust anchors +// (root certificates). +// +// ClusterTrustBundle objects are considered to be readable by any authenticated +// user in the cluster, because they can be mounted by pods using the +// `clusterTrustBundle` projection. All service accounts have read access to +// ClusterTrustBundles by default. Users who only have namespace-level access +// to a cluster can read ClusterTrustBundles by impersonating a serviceaccount +// that they have access to. +// +// It can be optionally associated with a particular assigner, in which case it +// contains one valid set of trust anchors for that signer. Signers may have +// multiple associated ClusterTrustBundles; each is an independent set of trust +// anchors for that signer. Admission control is used to enforce that only users +// with permissions on the signer can create or modify the corresponding bundle. +message ClusterTrustBundle { + // metadata contains the object metadata. + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // spec contains the signer (if any) and trust anchors. + optional ClusterTrustBundleSpec spec = 2; +} + +// ClusterTrustBundleList is a collection of ClusterTrustBundle objects +message ClusterTrustBundleList { + // metadata contains the list metadata. + // + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + + // items is a collection of ClusterTrustBundle objects + repeated ClusterTrustBundle items = 2; +} + +// ClusterTrustBundleSpec contains the signer and trust anchors. +message ClusterTrustBundleSpec { + // signerName indicates the associated signer, if any. + // + // In order to create or update a ClusterTrustBundle that sets signerName, + // you must have the following cluster-scoped permission: + // group=certificates.k8s.io resource=signers resourceName= + // verb=attest. + // + // If signerName is not empty, then the ClusterTrustBundle object must be + // named with the signer name as a prefix (translating slashes to colons). + // For example, for the signer name `example.com/foo`, valid + // ClusterTrustBundle object names include `example.com:foo:abc` and + // `example.com:foo:v1`. + // + // If signerName is empty, then the ClusterTrustBundle object's name must + // not have such a prefix. + // + // List/watch requests for ClusterTrustBundles can filter on this field + // using a `spec.signerName=NAME` field selector. + // + // +optional + optional string signerName = 1; + + // trustBundle contains the individual X.509 trust anchors for this + // bundle, as PEM bundle of PEM-wrapped, DER-formatted X.509 certificates. + // + // The data must consist only of PEM certificate blocks that parse as valid + // X.509 certificates. Each certificate must include a basic constraints + // extension with the CA bit set. The API server will reject objects that + // contain duplicate certificates, or that use PEM block headers. + // + // Users of ClusterTrustBundles, including Kubelet, are free to reorder and + // deduplicate certificate blocks in this file according to their own logic, + // as well as to drop PEM block headers and inter-block data. + optional string trustBundle = 2; +} + // ExtraValue masks the value so protobuf can generate // +protobuf.nullable=true // +protobuf.options.(gogoproto.goproto_stringer)=false diff --git a/vendor/k8s.io/api/certificates/v1beta1/register.go b/vendor/k8s.io/api/certificates/v1beta1/register.go index b4f3af9b9c..800dccd07d 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/register.go +++ b/vendor/k8s.io/api/certificates/v1beta1/register.go @@ -51,6 +51,8 @@ func addKnownTypes(scheme *runtime.Scheme) error { scheme.AddKnownTypes(SchemeGroupVersion, &CertificateSigningRequest{}, &CertificateSigningRequestList{}, + &ClusterTrustBundle{}, + &ClusterTrustBundleList{}, ) // Add the watch version that applies diff --git a/vendor/k8s.io/api/certificates/v1beta1/types.go b/vendor/k8s.io/api/certificates/v1beta1/types.go index 7e5a5c198a..1ce104807d 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/types.go +++ b/vendor/k8s.io/api/certificates/v1beta1/types.go @@ -262,3 +262,88 @@ const ( UsageMicrosoftSGC KeyUsage = "microsoft sgc" UsageNetscapeSGC KeyUsage = "netscape sgc" ) + +// +genclient +// +genclient:nonNamespaced +// +k8s:prerelease-lifecycle-gen:introduced=1.33 +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object + +// ClusterTrustBundle is a cluster-scoped container for X.509 trust anchors +// (root certificates). +// +// ClusterTrustBundle objects are considered to be readable by any authenticated +// user in the cluster, because they can be mounted by pods using the +// `clusterTrustBundle` projection. All service accounts have read access to +// ClusterTrustBundles by default. Users who only have namespace-level access +// to a cluster can read ClusterTrustBundles by impersonating a serviceaccount +// that they have access to. +// +// It can be optionally associated with a particular assigner, in which case it +// contains one valid set of trust anchors for that signer. Signers may have +// multiple associated ClusterTrustBundles; each is an independent set of trust +// anchors for that signer. Admission control is used to enforce that only users +// with permissions on the signer can create or modify the corresponding bundle. +type ClusterTrustBundle struct { + metav1.TypeMeta `json:",inline"` + + // metadata contains the object metadata. + // +optional + metav1.ObjectMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + + // spec contains the signer (if any) and trust anchors. + Spec ClusterTrustBundleSpec `json:"spec" protobuf:"bytes,2,opt,name=spec"` +} + +// ClusterTrustBundleSpec contains the signer and trust anchors. +type ClusterTrustBundleSpec struct { + // signerName indicates the associated signer, if any. + // + // In order to create or update a ClusterTrustBundle that sets signerName, + // you must have the following cluster-scoped permission: + // group=certificates.k8s.io resource=signers resourceName= + // verb=attest. + // + // If signerName is not empty, then the ClusterTrustBundle object must be + // named with the signer name as a prefix (translating slashes to colons). + // For example, for the signer name `example.com/foo`, valid + // ClusterTrustBundle object names include `example.com:foo:abc` and + // `example.com:foo:v1`. + // + // If signerName is empty, then the ClusterTrustBundle object's name must + // not have such a prefix. + // + // List/watch requests for ClusterTrustBundles can filter on this field + // using a `spec.signerName=NAME` field selector. + // + // +optional + SignerName string `json:"signerName,omitempty" protobuf:"bytes,1,opt,name=signerName"` + + // trustBundle contains the individual X.509 trust anchors for this + // bundle, as PEM bundle of PEM-wrapped, DER-formatted X.509 certificates. + // + // The data must consist only of PEM certificate blocks that parse as valid + // X.509 certificates. Each certificate must include a basic constraints + // extension with the CA bit set. The API server will reject objects that + // contain duplicate certificates, or that use PEM block headers. + // + // Users of ClusterTrustBundles, including Kubelet, are free to reorder and + // deduplicate certificate blocks in this file according to their own logic, + // as well as to drop PEM block headers and inter-block data. + TrustBundle string `json:"trustBundle" protobuf:"bytes,2,opt,name=trustBundle"` +} + +// +k8s:prerelease-lifecycle-gen:introduced=1.33 +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object + +// ClusterTrustBundleList is a collection of ClusterTrustBundle objects +type ClusterTrustBundleList struct { + metav1.TypeMeta `json:",inline"` + + // metadata contains the list metadata. + // + // +optional + metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + + // items is a collection of ClusterTrustBundle objects + Items []ClusterTrustBundle `json:"items" protobuf:"bytes,2,rep,name=items"` +} diff --git a/vendor/k8s.io/api/certificates/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/certificates/v1beta1/types_swagger_doc_generated.go index f9ab1f13de..58c69e54d3 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/certificates/v1beta1/types_swagger_doc_generated.go @@ -75,4 +75,34 @@ func (CertificateSigningRequestStatus) SwaggerDoc() map[string]string { return map_CertificateSigningRequestStatus } +var map_ClusterTrustBundle = map[string]string{ + "": "ClusterTrustBundle is a cluster-scoped container for X.509 trust anchors (root certificates).\n\nClusterTrustBundle objects are considered to be readable by any authenticated user in the cluster, because they can be mounted by pods using the `clusterTrustBundle` projection. All service accounts have read access to ClusterTrustBundles by default. Users who only have namespace-level access to a cluster can read ClusterTrustBundles by impersonating a serviceaccount that they have access to.\n\nIt can be optionally associated with a particular assigner, in which case it contains one valid set of trust anchors for that signer. Signers may have multiple associated ClusterTrustBundles; each is an independent set of trust anchors for that signer. Admission control is used to enforce that only users with permissions on the signer can create or modify the corresponding bundle.", + "metadata": "metadata contains the object metadata.", + "spec": "spec contains the signer (if any) and trust anchors.", +} + +func (ClusterTrustBundle) SwaggerDoc() map[string]string { + return map_ClusterTrustBundle +} + +var map_ClusterTrustBundleList = map[string]string{ + "": "ClusterTrustBundleList is a collection of ClusterTrustBundle objects", + "metadata": "metadata contains the list metadata.", + "items": "items is a collection of ClusterTrustBundle objects", +} + +func (ClusterTrustBundleList) SwaggerDoc() map[string]string { + return map_ClusterTrustBundleList +} + +var map_ClusterTrustBundleSpec = map[string]string{ + "": "ClusterTrustBundleSpec contains the signer and trust anchors.", + "signerName": "signerName indicates the associated signer, if any.\n\nIn order to create or update a ClusterTrustBundle that sets signerName, you must have the following cluster-scoped permission: group=certificates.k8s.io resource=signers resourceName= verb=attest.\n\nIf signerName is not empty, then the ClusterTrustBundle object must be named with the signer name as a prefix (translating slashes to colons). For example, for the signer name `example.com/foo`, valid ClusterTrustBundle object names include `example.com:foo:abc` and `example.com:foo:v1`.\n\nIf signerName is empty, then the ClusterTrustBundle object's name must not have such a prefix.\n\nList/watch requests for ClusterTrustBundles can filter on this field using a `spec.signerName=NAME` field selector.", + "trustBundle": "trustBundle contains the individual X.509 trust anchors for this bundle, as PEM bundle of PEM-wrapped, DER-formatted X.509 certificates.\n\nThe data must consist only of PEM certificate blocks that parse as valid X.509 certificates. Each certificate must include a basic constraints extension with the CA bit set. The API server will reject objects that contain duplicate certificates, or that use PEM block headers.\n\nUsers of ClusterTrustBundles, including Kubelet, are free to reorder and deduplicate certificate blocks in this file according to their own logic, as well as to drop PEM block headers and inter-block data.", +} + +func (ClusterTrustBundleSpec) SwaggerDoc() map[string]string { + return map_ClusterTrustBundleSpec +} + // AUTO-GENERATED FUNCTIONS END HERE diff --git a/vendor/k8s.io/api/certificates/v1beta1/zz_generated.deepcopy.go b/vendor/k8s.io/api/certificates/v1beta1/zz_generated.deepcopy.go index a315e2ac60..854e834739 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/certificates/v1beta1/zz_generated.deepcopy.go @@ -188,6 +188,82 @@ func (in *CertificateSigningRequestStatus) DeepCopy() *CertificateSigningRequest return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ClusterTrustBundle) DeepCopyInto(out *ClusterTrustBundle) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) + out.Spec = in.Spec + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ClusterTrustBundle. +func (in *ClusterTrustBundle) DeepCopy() *ClusterTrustBundle { + if in == nil { + return nil + } + out := new(ClusterTrustBundle) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *ClusterTrustBundle) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ClusterTrustBundleList) DeepCopyInto(out *ClusterTrustBundleList) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ListMeta.DeepCopyInto(&out.ListMeta) + if in.Items != nil { + in, out := &in.Items, &out.Items + *out = make([]ClusterTrustBundle, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ClusterTrustBundleList. +func (in *ClusterTrustBundleList) DeepCopy() *ClusterTrustBundleList { + if in == nil { + return nil + } + out := new(ClusterTrustBundleList) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *ClusterTrustBundleList) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ClusterTrustBundleSpec) DeepCopyInto(out *ClusterTrustBundleSpec) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ClusterTrustBundleSpec. +func (in *ClusterTrustBundleSpec) DeepCopy() *ClusterTrustBundleSpec { + if in == nil { + return nil + } + out := new(ClusterTrustBundleSpec) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in ExtraValue) DeepCopyInto(out *ExtraValue) { { diff --git a/vendor/k8s.io/api/certificates/v1beta1/zz_generated.prerelease-lifecycle.go b/vendor/k8s.io/api/certificates/v1beta1/zz_generated.prerelease-lifecycle.go index 480a329361..062b46f164 100644 --- a/vendor/k8s.io/api/certificates/v1beta1/zz_generated.prerelease-lifecycle.go +++ b/vendor/k8s.io/api/certificates/v1beta1/zz_generated.prerelease-lifecycle.go @@ -72,3 +72,39 @@ func (in *CertificateSigningRequestList) APILifecycleReplacement() schema.GroupV func (in *CertificateSigningRequestList) APILifecycleRemoved() (major, minor int) { return 1, 22 } + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *ClusterTrustBundle) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleDeprecated is an autogenerated function, returning the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:deprecated" tags in types.go or "k8s:prerelease-lifecycle-gen:introduced" plus three minor. +func (in *ClusterTrustBundle) APILifecycleDeprecated() (major, minor int) { + return 1, 36 +} + +// APILifecycleRemoved is an autogenerated function, returning the release in which the API is no longer served as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:removed" tags in types.go or "k8s:prerelease-lifecycle-gen:deprecated" plus three minor. +func (in *ClusterTrustBundle) APILifecycleRemoved() (major, minor int) { + return 1, 39 +} + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *ClusterTrustBundleList) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleDeprecated is an autogenerated function, returning the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:deprecated" tags in types.go or "k8s:prerelease-lifecycle-gen:introduced" plus three minor. +func (in *ClusterTrustBundleList) APILifecycleDeprecated() (major, minor int) { + return 1, 36 +} + +// APILifecycleRemoved is an autogenerated function, returning the release in which the API is no longer served as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:removed" tags in types.go or "k8s:prerelease-lifecycle-gen:deprecated" plus three minor. +func (in *ClusterTrustBundleList) APILifecycleRemoved() (major, minor int) { + return 1, 39 +} diff --git a/vendor/k8s.io/api/coordination/v1/doc.go b/vendor/k8s.io/api/coordination/v1/doc.go index 9b2fbbda3a..82ae6340c7 100644 --- a/vendor/k8s.io/api/coordination/v1/doc.go +++ b/vendor/k8s.io/api/coordination/v1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=coordination.k8s.io -package v1 // import "k8s.io/api/coordination/v1" +package v1 diff --git a/vendor/k8s.io/api/coordination/v1alpha2/doc.go b/vendor/k8s.io/api/coordination/v1alpha2/doc.go index 5e6d655302..dff7df47fc 100644 --- a/vendor/k8s.io/api/coordination/v1alpha2/doc.go +++ b/vendor/k8s.io/api/coordination/v1alpha2/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=coordination.k8s.io -package v1alpha2 // import "k8s.io/api/coordination/v1alpha2" +package v1alpha2 diff --git a/vendor/k8s.io/api/coordination/v1alpha2/generated.proto b/vendor/k8s.io/api/coordination/v1alpha2/generated.proto index 7e56cd7f96..250c6113ec 100644 --- a/vendor/k8s.io/api/coordination/v1alpha2/generated.proto +++ b/vendor/k8s.io/api/coordination/v1alpha2/generated.proto @@ -92,8 +92,6 @@ message LeaseCandidateSpec { // If multiple candidates for the same Lease return different strategies, the strategy provided // by the candidate with the latest BinaryVersion will be used. If there is still conflict, // this is a user error and coordinated leader election will not operate the Lease until resolved. - // (Alpha) Using this field requires the CoordinatedLeaderElection feature gate to be enabled. - // +featureGate=CoordinatedLeaderElection // +required optional string strategy = 6; } diff --git a/vendor/k8s.io/api/coordination/v1alpha2/types.go b/vendor/k8s.io/api/coordination/v1alpha2/types.go index 2f53b097a2..13e1deb067 100644 --- a/vendor/k8s.io/api/coordination/v1alpha2/types.go +++ b/vendor/k8s.io/api/coordination/v1alpha2/types.go @@ -73,8 +73,6 @@ type LeaseCandidateSpec struct { // If multiple candidates for the same Lease return different strategies, the strategy provided // by the candidate with the latest BinaryVersion will be used. If there is still conflict, // this is a user error and coordinated leader election will not operate the Lease until resolved. - // (Alpha) Using this field requires the CoordinatedLeaderElection feature gate to be enabled. - // +featureGate=CoordinatedLeaderElection // +required Strategy v1.CoordinatedLeaseStrategy `json:"strategy,omitempty" protobuf:"bytes,6,opt,name=strategy"` } diff --git a/vendor/k8s.io/api/coordination/v1alpha2/types_swagger_doc_generated.go b/vendor/k8s.io/api/coordination/v1alpha2/types_swagger_doc_generated.go index 39534e6adb..f7e29849e4 100644 --- a/vendor/k8s.io/api/coordination/v1alpha2/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/coordination/v1alpha2/types_swagger_doc_generated.go @@ -54,7 +54,7 @@ var map_LeaseCandidateSpec = map[string]string{ "renewTime": "RenewTime is the time that the LeaseCandidate was last updated. Any time a Lease needs to do leader election, the PingTime field is updated to signal to the LeaseCandidate that they should update the RenewTime. Old LeaseCandidate objects are also garbage collected if it has been hours since the last renew. The PingTime field is updated regularly to prevent garbage collection for still active LeaseCandidates.", "binaryVersion": "BinaryVersion is the binary version. It must be in a semver format without leading `v`. This field is required.", "emulationVersion": "EmulationVersion is the emulation version. It must be in a semver format without leading `v`. EmulationVersion must be less than or equal to BinaryVersion. This field is required when strategy is \"OldestEmulationVersion\"", - "strategy": "Strategy is the strategy that coordinated leader election will use for picking the leader. If multiple candidates for the same Lease return different strategies, the strategy provided by the candidate with the latest BinaryVersion will be used. If there is still conflict, this is a user error and coordinated leader election will not operate the Lease until resolved. (Alpha) Using this field requires the CoordinatedLeaderElection feature gate to be enabled.", + "strategy": "Strategy is the strategy that coordinated leader election will use for picking the leader. If multiple candidates for the same Lease return different strategies, the strategy provided by the candidate with the latest BinaryVersion will be used. If there is still conflict, this is a user error and coordinated leader election will not operate the Lease until resolved.", } func (LeaseCandidateSpec) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/coordination/v1beta1/doc.go b/vendor/k8s.io/api/coordination/v1beta1/doc.go index e733411aa9..cab8becf67 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/doc.go +++ b/vendor/k8s.io/api/coordination/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=coordination.k8s.io -package v1beta1 // import "k8s.io/api/coordination/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/coordination/v1beta1/generated.pb.go b/vendor/k8s.io/api/coordination/v1beta1/generated.pb.go index bea9b8146a..52fd4167fa 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/generated.pb.go +++ b/vendor/k8s.io/api/coordination/v1beta1/generated.pb.go @@ -74,10 +74,94 @@ func (m *Lease) XXX_DiscardUnknown() { var xxx_messageInfo_Lease proto.InternalMessageInfo +func (m *LeaseCandidate) Reset() { *m = LeaseCandidate{} } +func (*LeaseCandidate) ProtoMessage() {} +func (*LeaseCandidate) Descriptor() ([]byte, []int) { + return fileDescriptor_8d4e223b8bb23da3, []int{1} +} +func (m *LeaseCandidate) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *LeaseCandidate) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *LeaseCandidate) XXX_Merge(src proto.Message) { + xxx_messageInfo_LeaseCandidate.Merge(m, src) +} +func (m *LeaseCandidate) XXX_Size() int { + return m.Size() +} +func (m *LeaseCandidate) XXX_DiscardUnknown() { + xxx_messageInfo_LeaseCandidate.DiscardUnknown(m) +} + +var xxx_messageInfo_LeaseCandidate proto.InternalMessageInfo + +func (m *LeaseCandidateList) Reset() { *m = LeaseCandidateList{} } +func (*LeaseCandidateList) ProtoMessage() {} +func (*LeaseCandidateList) Descriptor() ([]byte, []int) { + return fileDescriptor_8d4e223b8bb23da3, []int{2} +} +func (m *LeaseCandidateList) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *LeaseCandidateList) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *LeaseCandidateList) XXX_Merge(src proto.Message) { + xxx_messageInfo_LeaseCandidateList.Merge(m, src) +} +func (m *LeaseCandidateList) XXX_Size() int { + return m.Size() +} +func (m *LeaseCandidateList) XXX_DiscardUnknown() { + xxx_messageInfo_LeaseCandidateList.DiscardUnknown(m) +} + +var xxx_messageInfo_LeaseCandidateList proto.InternalMessageInfo + +func (m *LeaseCandidateSpec) Reset() { *m = LeaseCandidateSpec{} } +func (*LeaseCandidateSpec) ProtoMessage() {} +func (*LeaseCandidateSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_8d4e223b8bb23da3, []int{3} +} +func (m *LeaseCandidateSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *LeaseCandidateSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *LeaseCandidateSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_LeaseCandidateSpec.Merge(m, src) +} +func (m *LeaseCandidateSpec) XXX_Size() int { + return m.Size() +} +func (m *LeaseCandidateSpec) XXX_DiscardUnknown() { + xxx_messageInfo_LeaseCandidateSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_LeaseCandidateSpec proto.InternalMessageInfo + func (m *LeaseList) Reset() { *m = LeaseList{} } func (*LeaseList) ProtoMessage() {} func (*LeaseList) Descriptor() ([]byte, []int) { - return fileDescriptor_8d4e223b8bb23da3, []int{1} + return fileDescriptor_8d4e223b8bb23da3, []int{4} } func (m *LeaseList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -105,7 +189,7 @@ var xxx_messageInfo_LeaseList proto.InternalMessageInfo func (m *LeaseSpec) Reset() { *m = LeaseSpec{} } func (*LeaseSpec) ProtoMessage() {} func (*LeaseSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_8d4e223b8bb23da3, []int{2} + return fileDescriptor_8d4e223b8bb23da3, []int{5} } func (m *LeaseSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -132,6 +216,9 @@ var xxx_messageInfo_LeaseSpec proto.InternalMessageInfo func init() { proto.RegisterType((*Lease)(nil), "k8s.io.api.coordination.v1beta1.Lease") + proto.RegisterType((*LeaseCandidate)(nil), "k8s.io.api.coordination.v1beta1.LeaseCandidate") + proto.RegisterType((*LeaseCandidateList)(nil), "k8s.io.api.coordination.v1beta1.LeaseCandidateList") + proto.RegisterType((*LeaseCandidateSpec)(nil), "k8s.io.api.coordination.v1beta1.LeaseCandidateSpec") proto.RegisterType((*LeaseList)(nil), "k8s.io.api.coordination.v1beta1.LeaseList") proto.RegisterType((*LeaseSpec)(nil), "k8s.io.api.coordination.v1beta1.LeaseSpec") } @@ -141,45 +228,54 @@ func 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0xe5, 0x9c, 0xba, 0x9d, 0xdb, 0xd5, 0x7f, 0x55, 0xfb, + 0xfc, 0x9e, 0xb4, 0xcd, 0x85, 0xbd, 0xe1, 0x16, 0x1e, 0xc5, 0xda, 0xdb, 0xad, 0x0b, 0x23, 0x73, + 0x76, 0x61, 0x64, 0xce, 0x2f, 0x8c, 0xcc, 0x9b, 0xc4, 0xd0, 0x5a, 0x89, 0xa1, 0x9d, 0x25, 0x86, + 0x76, 0x9e, 0x18, 0xda, 0xa7, 0xc4, 0xd0, 0xde, 0x7e, 0x36, 0x32, 0xcf, 0xcc, 0x2b, 0x3e, 0x50, + 0xbe, 0x05, 0x00, 0x00, 0xff, 0xff, 0xff, 0x56, 0x51, 0x57, 0xc2, 0x08, 0x00, 0x00, } func (m *Lease) Marshal() (dAtA []byte, err error) { @@ -225,6 +321,163 @@ func (m *Lease) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *LeaseCandidate) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *LeaseCandidate) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *LeaseCandidate) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *LeaseCandidateList) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *LeaseCandidateList) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *LeaseCandidateList) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } + { + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *LeaseCandidateSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *LeaseCandidateSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *LeaseCandidateSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Strategy) + copy(dAtA[i:], m.Strategy) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Strategy))) + i-- + dAtA[i] = 0x32 + i -= len(m.EmulationVersion) + copy(dAtA[i:], m.EmulationVersion) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.EmulationVersion))) + i-- + dAtA[i] = 0x2a + i -= len(m.BinaryVersion) + copy(dAtA[i:], m.BinaryVersion) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.BinaryVersion))) + i-- + dAtA[i] = 0x22 + if m.RenewTime != nil { + { + size, err := m.RenewTime.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1a + } + if m.PingTime != nil { + { + size, err := m.PingTime.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + i -= len(m.LeaseName) + copy(dAtA[i:], m.LeaseName) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.LeaseName))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *LeaseList) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -374,6 +627,61 @@ func (m *Lease) Size() (n int) { return n } +func (m *LeaseCandidate) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *LeaseCandidateList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *LeaseCandidateSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.LeaseName) + n += 1 + l + sovGenerated(uint64(l)) + if m.PingTime != nil { + l = m.PingTime.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if m.RenewTime != nil { + l = m.RenewTime.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + l = len(m.BinaryVersion) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.EmulationVersion) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Strategy) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *LeaseList) Size() (n int) { if m == nil { return 0 @@ -443,6 +751,48 @@ func (this *Lease) String() string { }, "") return s } +func (this *LeaseCandidate) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&LeaseCandidate{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "LeaseCandidateSpec", "LeaseCandidateSpec", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *LeaseCandidateList) String() string { + if this == nil { + return "nil" + } + repeatedStringForItems := "[]LeaseCandidate{" + for _, f := range this.Items { + repeatedStringForItems += strings.Replace(strings.Replace(f.String(), "LeaseCandidate", "LeaseCandidate", 1), `&`, ``, 1) + "," + } + repeatedStringForItems += "}" + s := strings.Join([]string{`&LeaseCandidateList{`, + `ListMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ListMeta), "ListMeta", "v1.ListMeta", 1), `&`, ``, 1) + `,`, + `Items:` + repeatedStringForItems + `,`, + `}`, + }, "") + return s +} +func (this *LeaseCandidateSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&LeaseCandidateSpec{`, + `LeaseName:` + fmt.Sprintf("%v", this.LeaseName) + `,`, + `PingTime:` + strings.Replace(fmt.Sprintf("%v", this.PingTime), "MicroTime", "v1.MicroTime", 1) + `,`, + `RenewTime:` + strings.Replace(fmt.Sprintf("%v", this.RenewTime), "MicroTime", "v1.MicroTime", 1) + `,`, + `BinaryVersion:` + fmt.Sprintf("%v", this.BinaryVersion) + `,`, + `EmulationVersion:` + fmt.Sprintf("%v", this.EmulationVersion) + `,`, + `Strategy:` + fmt.Sprintf("%v", this.Strategy) + `,`, + `}`, + }, "") + return s +} func (this *LeaseList) String() string { if this == nil { return "nil" @@ -599,6 +949,489 @@ func (m *Lease) Unmarshal(dAtA []byte) error { } return nil } +func (m *LeaseCandidate) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: LeaseCandidate: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LeaseCandidate: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *LeaseCandidateList) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: LeaseCandidateList: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LeaseCandidateList: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Items = append(m.Items, LeaseCandidate{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *LeaseCandidateSpec) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: LeaseCandidateSpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LeaseCandidateSpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field LeaseName", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.LeaseName = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field PingTime", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.PingTime == nil { + m.PingTime = &v1.MicroTime{} + } + if err := m.PingTime.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field RenewTime", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.RenewTime == nil { + m.RenewTime = &v1.MicroTime{} + } + if err := m.RenewTime.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field BinaryVersion", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.BinaryVersion = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field EmulationVersion", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.EmulationVersion = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 6: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Strategy", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Strategy = k8s_io_api_coordination_v1.CoordinatedLeaseStrategy(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} func (m *LeaseList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 diff --git a/vendor/k8s.io/api/coordination/v1beta1/generated.proto b/vendor/k8s.io/api/coordination/v1beta1/generated.proto index 088811a74b..7ca043f528 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/generated.proto +++ b/vendor/k8s.io/api/coordination/v1beta1/generated.proto @@ -41,6 +41,75 @@ message Lease { optional LeaseSpec spec = 2; } +// LeaseCandidate defines a candidate for a Lease object. +// Candidates are created such that coordinated leader election will pick the best leader from the list of candidates. +message LeaseCandidate { + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // spec contains the specification of the Lease. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + optional LeaseCandidateSpec spec = 2; +} + +// LeaseCandidateList is a list of Lease objects. +message LeaseCandidateList { + // Standard list metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + + // items is a list of schema objects. + repeated LeaseCandidate items = 2; +} + +// LeaseCandidateSpec is a specification of a Lease. +message LeaseCandidateSpec { + // LeaseName is the name of the lease for which this candidate is contending. + // The limits on this field are the same as on Lease.name. Multiple lease candidates + // may reference the same Lease.name. + // This field is immutable. + // +required + optional string leaseName = 1; + + // PingTime is the last time that the server has requested the LeaseCandidate + // to renew. It is only done during leader election to check if any + // LeaseCandidates have become ineligible. When PingTime is updated, the + // LeaseCandidate will respond by updating RenewTime. + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime pingTime = 2; + + // RenewTime is the time that the LeaseCandidate was last updated. + // Any time a Lease needs to do leader election, the PingTime field + // is updated to signal to the LeaseCandidate that they should update + // the RenewTime. + // Old LeaseCandidate objects are also garbage collected if it has been hours + // since the last renew. The PingTime field is updated regularly to prevent + // garbage collection for still active LeaseCandidates. + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime renewTime = 3; + + // BinaryVersion is the binary version. It must be in a semver format without leading `v`. + // This field is required. + // +required + optional string binaryVersion = 4; + + // EmulationVersion is the emulation version. It must be in a semver format without leading `v`. + // EmulationVersion must be less than or equal to BinaryVersion. + // This field is required when strategy is "OldestEmulationVersion" + // +optional + optional string emulationVersion = 5; + + // Strategy is the strategy that coordinated leader election will use for picking the leader. + // If multiple candidates for the same Lease return different strategies, the strategy provided + // by the candidate with the latest BinaryVersion will be used. If there is still conflict, + // this is a user error and coordinated leader election will not operate the Lease until resolved. + // +required + optional string strategy = 6; +} + // LeaseList is a list of Lease objects. message LeaseList { // Standard list metadata. diff --git a/vendor/k8s.io/api/coordination/v1beta1/register.go b/vendor/k8s.io/api/coordination/v1beta1/register.go index 85efaa64e7..bd00164233 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/register.go +++ b/vendor/k8s.io/api/coordination/v1beta1/register.go @@ -46,6 +46,8 @@ func addKnownTypes(scheme *runtime.Scheme) error { scheme.AddKnownTypes(SchemeGroupVersion, &Lease{}, &LeaseList{}, + &LeaseCandidate{}, + &LeaseCandidateList{}, ) metav1.AddToGroupVersion(scheme, SchemeGroupVersion) diff --git a/vendor/k8s.io/api/coordination/v1beta1/types.go b/vendor/k8s.io/api/coordination/v1beta1/types.go index d63fc30a9e..781d29efce 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/types.go +++ b/vendor/k8s.io/api/coordination/v1beta1/types.go @@ -91,3 +91,76 @@ type LeaseList struct { // items is a list of schema objects. Items []Lease `json:"items" protobuf:"bytes,2,rep,name=items"` } + +// +genclient +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// LeaseCandidate defines a candidate for a Lease object. +// Candidates are created such that coordinated leader election will pick the best leader from the list of candidates. +type LeaseCandidate struct { + metav1.TypeMeta `json:",inline"` + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ObjectMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + + // spec contains the specification of the Lease. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + Spec LeaseCandidateSpec `json:"spec,omitempty" protobuf:"bytes,2,opt,name=spec"` +} + +// LeaseCandidateSpec is a specification of a Lease. +type LeaseCandidateSpec struct { + // LeaseName is the name of the lease for which this candidate is contending. + // The limits on this field are the same as on Lease.name. Multiple lease candidates + // may reference the same Lease.name. + // This field is immutable. + // +required + LeaseName string `json:"leaseName" protobuf:"bytes,1,name=leaseName"` + // PingTime is the last time that the server has requested the LeaseCandidate + // to renew. It is only done during leader election to check if any + // LeaseCandidates have become ineligible. When PingTime is updated, the + // LeaseCandidate will respond by updating RenewTime. + // +optional + PingTime *metav1.MicroTime `json:"pingTime,omitempty" protobuf:"bytes,2,opt,name=pingTime"` + // RenewTime is the time that the LeaseCandidate was last updated. + // Any time a Lease needs to do leader election, the PingTime field + // is updated to signal to the LeaseCandidate that they should update + // the RenewTime. + // Old LeaseCandidate objects are also garbage collected if it has been hours + // since the last renew. The PingTime field is updated regularly to prevent + // garbage collection for still active LeaseCandidates. + // +optional + RenewTime *metav1.MicroTime `json:"renewTime,omitempty" protobuf:"bytes,3,opt,name=renewTime"` + // BinaryVersion is the binary version. It must be in a semver format without leading `v`. + // This field is required. + // +required + BinaryVersion string `json:"binaryVersion" protobuf:"bytes,4,name=binaryVersion"` + // EmulationVersion is the emulation version. It must be in a semver format without leading `v`. + // EmulationVersion must be less than or equal to BinaryVersion. + // This field is required when strategy is "OldestEmulationVersion" + // +optional + EmulationVersion string `json:"emulationVersion,omitempty" protobuf:"bytes,5,opt,name=emulationVersion"` + // Strategy is the strategy that coordinated leader election will use for picking the leader. + // If multiple candidates for the same Lease return different strategies, the strategy provided + // by the candidate with the latest BinaryVersion will be used. If there is still conflict, + // this is a user error and coordinated leader election will not operate the Lease until resolved. + // +required + Strategy v1.CoordinatedLeaseStrategy `json:"strategy,omitempty" protobuf:"bytes,6,opt,name=strategy"` +} + +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// LeaseCandidateList is a list of Lease objects. +type LeaseCandidateList struct { + metav1.TypeMeta `json:",inline"` + // Standard list metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + + // items is a list of schema objects. + Items []LeaseCandidate `json:"items" protobuf:"bytes,2,rep,name=items"` +} diff --git a/vendor/k8s.io/api/coordination/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/coordination/v1beta1/types_swagger_doc_generated.go index 50fe8ea189..35812b77f3 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/coordination/v1beta1/types_swagger_doc_generated.go @@ -37,6 +37,40 @@ func (Lease) SwaggerDoc() map[string]string { return map_Lease } +var map_LeaseCandidate = map[string]string{ + "": "LeaseCandidate defines a candidate for a Lease object. Candidates are created such that coordinated leader election will pick the best leader from the list of candidates.", + "metadata": "More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "spec": "spec contains the specification of the Lease. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status", +} + +func (LeaseCandidate) SwaggerDoc() map[string]string { + return map_LeaseCandidate +} + +var map_LeaseCandidateList = map[string]string{ + "": "LeaseCandidateList is a list of Lease objects.", + "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "items": "items is a list of schema objects.", +} + +func (LeaseCandidateList) SwaggerDoc() map[string]string { + return map_LeaseCandidateList +} + +var map_LeaseCandidateSpec = map[string]string{ + "": "LeaseCandidateSpec is a specification of a Lease.", + "leaseName": "LeaseName is the name of the lease for which this candidate is contending. The limits on this field are the same as on Lease.name. Multiple lease candidates may reference the same Lease.name. This field is immutable.", + "pingTime": "PingTime is the last time that the server has requested the LeaseCandidate to renew. It is only done during leader election to check if any LeaseCandidates have become ineligible. When PingTime is updated, the LeaseCandidate will respond by updating RenewTime.", + "renewTime": "RenewTime is the time that the LeaseCandidate was last updated. Any time a Lease needs to do leader election, the PingTime field is updated to signal to the LeaseCandidate that they should update the RenewTime. Old LeaseCandidate objects are also garbage collected if it has been hours since the last renew. The PingTime field is updated regularly to prevent garbage collection for still active LeaseCandidates.", + "binaryVersion": "BinaryVersion is the binary version. It must be in a semver format without leading `v`. This field is required.", + "emulationVersion": "EmulationVersion is the emulation version. It must be in a semver format without leading `v`. EmulationVersion must be less than or equal to BinaryVersion. This field is required when strategy is \"OldestEmulationVersion\"", + "strategy": "Strategy is the strategy that coordinated leader election will use for picking the leader. If multiple candidates for the same Lease return different strategies, the strategy provided by the candidate with the latest BinaryVersion will be used. If there is still conflict, this is a user error and coordinated leader election will not operate the Lease until resolved.", +} + +func (LeaseCandidateSpec) SwaggerDoc() map[string]string { + return map_LeaseCandidateSpec +} + var map_LeaseList = map[string]string{ "": "LeaseList is a list of Lease objects.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", diff --git a/vendor/k8s.io/api/coordination/v1beta1/zz_generated.deepcopy.go b/vendor/k8s.io/api/coordination/v1beta1/zz_generated.deepcopy.go index dcef1e346a..b990ee247f 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/coordination/v1beta1/zz_generated.deepcopy.go @@ -53,6 +53,90 @@ func (in *Lease) DeepCopyObject() runtime.Object { return nil } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *LeaseCandidate) DeepCopyInto(out *LeaseCandidate) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) + in.Spec.DeepCopyInto(&out.Spec) + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new LeaseCandidate. +func (in *LeaseCandidate) DeepCopy() *LeaseCandidate { + if in == nil { + return nil + } + out := new(LeaseCandidate) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *LeaseCandidate) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *LeaseCandidateList) DeepCopyInto(out *LeaseCandidateList) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ListMeta.DeepCopyInto(&out.ListMeta) + if in.Items != nil { + in, out := &in.Items, &out.Items + *out = make([]LeaseCandidate, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new LeaseCandidateList. +func (in *LeaseCandidateList) DeepCopy() *LeaseCandidateList { + if in == nil { + return nil + } + out := new(LeaseCandidateList) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *LeaseCandidateList) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *LeaseCandidateSpec) DeepCopyInto(out *LeaseCandidateSpec) { + *out = *in + if in.PingTime != nil { + in, out := &in.PingTime, &out.PingTime + *out = (*in).DeepCopy() + } + if in.RenewTime != nil { + in, out := &in.RenewTime, &out.RenewTime + *out = (*in).DeepCopy() + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new LeaseCandidateSpec. +func (in *LeaseCandidateSpec) DeepCopy() *LeaseCandidateSpec { + if in == nil { + return nil + } + out := new(LeaseCandidateSpec) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *LeaseList) DeepCopyInto(out *LeaseList) { *out = *in diff --git a/vendor/k8s.io/api/coordination/v1beta1/zz_generated.prerelease-lifecycle.go b/vendor/k8s.io/api/coordination/v1beta1/zz_generated.prerelease-lifecycle.go index 18926aa108..73636edfa3 100644 --- a/vendor/k8s.io/api/coordination/v1beta1/zz_generated.prerelease-lifecycle.go +++ b/vendor/k8s.io/api/coordination/v1beta1/zz_generated.prerelease-lifecycle.go @@ -49,6 +49,42 @@ func (in *Lease) APILifecycleRemoved() (major, minor int) { return 1, 22 } +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *LeaseCandidate) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleDeprecated is an autogenerated function, returning the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:deprecated" tags in types.go or "k8s:prerelease-lifecycle-gen:introduced" plus three minor. +func (in *LeaseCandidate) APILifecycleDeprecated() (major, minor int) { + return 1, 36 +} + +// APILifecycleRemoved is an autogenerated function, returning the release in which the API is no longer served as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:removed" tags in types.go or "k8s:prerelease-lifecycle-gen:deprecated" plus three minor. +func (in *LeaseCandidate) APILifecycleRemoved() (major, minor int) { + return 1, 39 +} + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *LeaseCandidateList) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleDeprecated is an autogenerated function, returning the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:deprecated" tags in types.go or "k8s:prerelease-lifecycle-gen:introduced" plus three minor. +func (in *LeaseCandidateList) APILifecycleDeprecated() (major, minor int) { + return 1, 36 +} + +// APILifecycleRemoved is an autogenerated function, returning the release in which the API is no longer served as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:removed" tags in types.go or "k8s:prerelease-lifecycle-gen:deprecated" plus three minor. +func (in *LeaseCandidateList) APILifecycleRemoved() (major, minor int) { + return 1, 39 +} + // APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. // It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. func (in *LeaseList) APILifecycleIntroduced() (major, minor int) { diff --git a/vendor/k8s.io/api/core/v1/doc.go b/vendor/k8s.io/api/core/v1/doc.go index bc0041b331..e4e9196aeb 100644 --- a/vendor/k8s.io/api/core/v1/doc.go +++ b/vendor/k8s.io/api/core/v1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName= // Package v1 is the v1 version of the core API. -package v1 // import "k8s.io/api/core/v1" +package v1 diff --git a/vendor/k8s.io/api/core/v1/generated.pb.go b/vendor/k8s.io/api/core/v1/generated.pb.go index 9d466c6d79..a4b8f58429 100644 --- a/vendor/k8s.io/api/core/v1/generated.pb.go +++ b/vendor/k8s.io/api/core/v1/generated.pb.go @@ -3213,10 +3213,38 @@ func (m *NodeStatus) XXX_DiscardUnknown() { var xxx_messageInfo_NodeStatus proto.InternalMessageInfo +func (m *NodeSwapStatus) Reset() { *m = NodeSwapStatus{} } +func (*NodeSwapStatus) ProtoMessage() {} +func (*NodeSwapStatus) Descriptor() ([]byte, []int) { + return fileDescriptor_6c07b07c062484ab, []int{113} +} +func (m *NodeSwapStatus) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *NodeSwapStatus) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *NodeSwapStatus) XXX_Merge(src proto.Message) { + xxx_messageInfo_NodeSwapStatus.Merge(m, src) +} +func (m *NodeSwapStatus) XXX_Size() int { + return m.Size() +} +func (m *NodeSwapStatus) XXX_DiscardUnknown() { + xxx_messageInfo_NodeSwapStatus.DiscardUnknown(m) +} + +var xxx_messageInfo_NodeSwapStatus proto.InternalMessageInfo + func (m *NodeSystemInfo) Reset() { *m = NodeSystemInfo{} } func (*NodeSystemInfo) ProtoMessage() {} func (*NodeSystemInfo) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{113} + return fileDescriptor_6c07b07c062484ab, []int{114} } func (m *NodeSystemInfo) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3244,7 +3272,7 @@ var xxx_messageInfo_NodeSystemInfo proto.InternalMessageInfo func (m *ObjectFieldSelector) Reset() { *m = ObjectFieldSelector{} } func (*ObjectFieldSelector) ProtoMessage() {} func (*ObjectFieldSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{114} + return fileDescriptor_6c07b07c062484ab, []int{115} } func (m *ObjectFieldSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3272,7 +3300,7 @@ var xxx_messageInfo_ObjectFieldSelector proto.InternalMessageInfo func (m *ObjectReference) Reset() { *m = ObjectReference{} } func (*ObjectReference) ProtoMessage() {} func (*ObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{115} + return fileDescriptor_6c07b07c062484ab, []int{116} } func (m *ObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3300,7 +3328,7 @@ var xxx_messageInfo_ObjectReference proto.InternalMessageInfo func (m *PersistentVolume) Reset() { *m = PersistentVolume{} } func (*PersistentVolume) ProtoMessage() {} func (*PersistentVolume) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{116} + return fileDescriptor_6c07b07c062484ab, []int{117} } func (m *PersistentVolume) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3328,7 +3356,7 @@ var xxx_messageInfo_PersistentVolume proto.InternalMessageInfo func (m *PersistentVolumeClaim) Reset() { *m = PersistentVolumeClaim{} } func (*PersistentVolumeClaim) ProtoMessage() {} func (*PersistentVolumeClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{117} + return fileDescriptor_6c07b07c062484ab, []int{118} } func (m *PersistentVolumeClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3356,7 +3384,7 @@ var xxx_messageInfo_PersistentVolumeClaim proto.InternalMessageInfo func (m *PersistentVolumeClaimCondition) Reset() { *m = PersistentVolumeClaimCondition{} } func (*PersistentVolumeClaimCondition) ProtoMessage() {} func (*PersistentVolumeClaimCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{118} + return fileDescriptor_6c07b07c062484ab, []int{119} } func (m *PersistentVolumeClaimCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3384,7 +3412,7 @@ var xxx_messageInfo_PersistentVolumeClaimCondition proto.InternalMessageInfo func (m *PersistentVolumeClaimList) Reset() { *m = PersistentVolumeClaimList{} } func (*PersistentVolumeClaimList) ProtoMessage() {} func (*PersistentVolumeClaimList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{119} + return fileDescriptor_6c07b07c062484ab, []int{120} } func (m *PersistentVolumeClaimList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3412,7 +3440,7 @@ var xxx_messageInfo_PersistentVolumeClaimList proto.InternalMessageInfo func (m *PersistentVolumeClaimSpec) Reset() { *m = PersistentVolumeClaimSpec{} } func (*PersistentVolumeClaimSpec) ProtoMessage() {} func (*PersistentVolumeClaimSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{120} + return fileDescriptor_6c07b07c062484ab, []int{121} } func (m *PersistentVolumeClaimSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3440,7 +3468,7 @@ var xxx_messageInfo_PersistentVolumeClaimSpec proto.InternalMessageInfo func (m *PersistentVolumeClaimStatus) Reset() { *m = PersistentVolumeClaimStatus{} } func (*PersistentVolumeClaimStatus) ProtoMessage() {} func (*PersistentVolumeClaimStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{121} + return fileDescriptor_6c07b07c062484ab, []int{122} } func (m *PersistentVolumeClaimStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3468,7 +3496,7 @@ var xxx_messageInfo_PersistentVolumeClaimStatus proto.InternalMessageInfo func (m *PersistentVolumeClaimTemplate) Reset() { *m = PersistentVolumeClaimTemplate{} } func (*PersistentVolumeClaimTemplate) ProtoMessage() {} func (*PersistentVolumeClaimTemplate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{122} + return fileDescriptor_6c07b07c062484ab, []int{123} } func (m *PersistentVolumeClaimTemplate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3496,7 +3524,7 @@ var xxx_messageInfo_PersistentVolumeClaimTemplate proto.InternalMessageInfo func (m *PersistentVolumeClaimVolumeSource) Reset() { *m = PersistentVolumeClaimVolumeSource{} } func (*PersistentVolumeClaimVolumeSource) ProtoMessage() {} func (*PersistentVolumeClaimVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{123} + return fileDescriptor_6c07b07c062484ab, []int{124} } func (m *PersistentVolumeClaimVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3524,7 +3552,7 @@ var xxx_messageInfo_PersistentVolumeClaimVolumeSource proto.InternalMessageInfo func (m *PersistentVolumeList) Reset() { *m = PersistentVolumeList{} } func (*PersistentVolumeList) ProtoMessage() {} func (*PersistentVolumeList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{124} + return fileDescriptor_6c07b07c062484ab, []int{125} } func (m *PersistentVolumeList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3552,7 +3580,7 @@ var xxx_messageInfo_PersistentVolumeList proto.InternalMessageInfo func (m *PersistentVolumeSource) Reset() { *m = PersistentVolumeSource{} } func (*PersistentVolumeSource) ProtoMessage() {} func (*PersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{125} + return fileDescriptor_6c07b07c062484ab, []int{126} } func (m *PersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3580,7 +3608,7 @@ var xxx_messageInfo_PersistentVolumeSource proto.InternalMessageInfo func (m *PersistentVolumeSpec) Reset() { *m = PersistentVolumeSpec{} } func (*PersistentVolumeSpec) ProtoMessage() {} func (*PersistentVolumeSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{126} + return fileDescriptor_6c07b07c062484ab, []int{127} } func (m *PersistentVolumeSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3608,7 +3636,7 @@ var xxx_messageInfo_PersistentVolumeSpec proto.InternalMessageInfo func (m *PersistentVolumeStatus) Reset() { *m = PersistentVolumeStatus{} } func (*PersistentVolumeStatus) ProtoMessage() {} func (*PersistentVolumeStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{127} + return fileDescriptor_6c07b07c062484ab, []int{128} } func (m *PersistentVolumeStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3636,7 +3664,7 @@ var xxx_messageInfo_PersistentVolumeStatus proto.InternalMessageInfo func (m *PhotonPersistentDiskVolumeSource) Reset() { *m = PhotonPersistentDiskVolumeSource{} } func (*PhotonPersistentDiskVolumeSource) ProtoMessage() {} func (*PhotonPersistentDiskVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{128} + return fileDescriptor_6c07b07c062484ab, []int{129} } func (m *PhotonPersistentDiskVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3664,7 +3692,7 @@ var xxx_messageInfo_PhotonPersistentDiskVolumeSource proto.InternalMessageInfo func (m *Pod) Reset() { *m = Pod{} } func (*Pod) ProtoMessage() {} func (*Pod) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{129} + return fileDescriptor_6c07b07c062484ab, []int{130} } func (m *Pod) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3692,7 +3720,7 @@ var xxx_messageInfo_Pod proto.InternalMessageInfo func (m *PodAffinity) Reset() { *m = PodAffinity{} } func (*PodAffinity) ProtoMessage() {} func (*PodAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{130} + return fileDescriptor_6c07b07c062484ab, []int{131} } func (m *PodAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3720,7 +3748,7 @@ var xxx_messageInfo_PodAffinity proto.InternalMessageInfo func (m *PodAffinityTerm) Reset() { *m = PodAffinityTerm{} } func (*PodAffinityTerm) ProtoMessage() {} func (*PodAffinityTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{131} + return fileDescriptor_6c07b07c062484ab, []int{132} } func (m *PodAffinityTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3748,7 +3776,7 @@ var xxx_messageInfo_PodAffinityTerm proto.InternalMessageInfo func (m *PodAntiAffinity) Reset() { *m = PodAntiAffinity{} } func (*PodAntiAffinity) ProtoMessage() {} func (*PodAntiAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{132} + return fileDescriptor_6c07b07c062484ab, []int{133} } func (m *PodAntiAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3776,7 +3804,7 @@ var xxx_messageInfo_PodAntiAffinity proto.InternalMessageInfo func (m *PodAttachOptions) Reset() { *m = PodAttachOptions{} } func (*PodAttachOptions) ProtoMessage() {} func (*PodAttachOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{133} + return fileDescriptor_6c07b07c062484ab, []int{134} } func (m *PodAttachOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3804,7 +3832,7 @@ var xxx_messageInfo_PodAttachOptions proto.InternalMessageInfo func (m *PodCondition) Reset() { *m = PodCondition{} } func (*PodCondition) ProtoMessage() {} func (*PodCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{134} + return fileDescriptor_6c07b07c062484ab, []int{135} } func (m *PodCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3832,7 +3860,7 @@ var xxx_messageInfo_PodCondition proto.InternalMessageInfo func (m *PodDNSConfig) Reset() { *m = PodDNSConfig{} } func (*PodDNSConfig) ProtoMessage() {} func (*PodDNSConfig) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{135} + return fileDescriptor_6c07b07c062484ab, []int{136} } func (m *PodDNSConfig) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3860,7 +3888,7 @@ var xxx_messageInfo_PodDNSConfig proto.InternalMessageInfo func (m *PodDNSConfigOption) Reset() { *m = PodDNSConfigOption{} } func (*PodDNSConfigOption) ProtoMessage() {} func (*PodDNSConfigOption) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{136} + return fileDescriptor_6c07b07c062484ab, []int{137} } func (m *PodDNSConfigOption) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3888,7 +3916,7 @@ var xxx_messageInfo_PodDNSConfigOption proto.InternalMessageInfo func (m *PodExecOptions) Reset() { *m = PodExecOptions{} } func (*PodExecOptions) ProtoMessage() {} func (*PodExecOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{137} + return fileDescriptor_6c07b07c062484ab, []int{138} } func (m *PodExecOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3916,7 +3944,7 @@ var xxx_messageInfo_PodExecOptions proto.InternalMessageInfo func (m *PodIP) Reset() { *m = PodIP{} } func (*PodIP) ProtoMessage() {} func (*PodIP) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{138} + return fileDescriptor_6c07b07c062484ab, []int{139} } func (m *PodIP) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3944,7 +3972,7 @@ var xxx_messageInfo_PodIP proto.InternalMessageInfo func (m *PodList) Reset() { *m = PodList{} } func (*PodList) ProtoMessage() {} func (*PodList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{139} + return fileDescriptor_6c07b07c062484ab, []int{140} } func (m *PodList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3972,7 +4000,7 @@ var xxx_messageInfo_PodList proto.InternalMessageInfo func (m *PodLogOptions) Reset() { *m = PodLogOptions{} } func (*PodLogOptions) ProtoMessage() {} func (*PodLogOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{140} + return fileDescriptor_6c07b07c062484ab, []int{141} } func (m *PodLogOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4000,7 +4028,7 @@ var xxx_messageInfo_PodLogOptions proto.InternalMessageInfo func (m *PodOS) Reset() { *m = PodOS{} } func (*PodOS) ProtoMessage() {} func (*PodOS) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{141} + return fileDescriptor_6c07b07c062484ab, []int{142} } func (m *PodOS) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4028,7 +4056,7 @@ var xxx_messageInfo_PodOS proto.InternalMessageInfo func (m *PodPortForwardOptions) Reset() { *m = PodPortForwardOptions{} } func (*PodPortForwardOptions) ProtoMessage() {} func (*PodPortForwardOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{142} + return fileDescriptor_6c07b07c062484ab, []int{143} } func (m *PodPortForwardOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4056,7 +4084,7 @@ var xxx_messageInfo_PodPortForwardOptions proto.InternalMessageInfo func (m *PodProxyOptions) Reset() { *m = PodProxyOptions{} } func (*PodProxyOptions) ProtoMessage() {} func (*PodProxyOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{143} + return fileDescriptor_6c07b07c062484ab, []int{144} } func (m *PodProxyOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4084,7 +4112,7 @@ var xxx_messageInfo_PodProxyOptions proto.InternalMessageInfo func (m *PodReadinessGate) Reset() { *m = PodReadinessGate{} } func (*PodReadinessGate) ProtoMessage() {} func (*PodReadinessGate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{144} + return fileDescriptor_6c07b07c062484ab, []int{145} } func (m *PodReadinessGate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4112,7 +4140,7 @@ var xxx_messageInfo_PodReadinessGate proto.InternalMessageInfo func (m *PodResourceClaim) Reset() { *m = PodResourceClaim{} } func (*PodResourceClaim) ProtoMessage() {} func (*PodResourceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{145} + return fileDescriptor_6c07b07c062484ab, []int{146} } func (m *PodResourceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4140,7 +4168,7 @@ var xxx_messageInfo_PodResourceClaim proto.InternalMessageInfo func (m *PodResourceClaimStatus) Reset() { *m = PodResourceClaimStatus{} } func (*PodResourceClaimStatus) ProtoMessage() {} func (*PodResourceClaimStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{146} + return fileDescriptor_6c07b07c062484ab, []int{147} } func (m *PodResourceClaimStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4168,7 +4196,7 @@ var xxx_messageInfo_PodResourceClaimStatus proto.InternalMessageInfo func (m *PodSchedulingGate) Reset() { *m = PodSchedulingGate{} } func (*PodSchedulingGate) ProtoMessage() {} func (*PodSchedulingGate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{147} + return fileDescriptor_6c07b07c062484ab, []int{148} } func (m *PodSchedulingGate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4196,7 +4224,7 @@ var xxx_messageInfo_PodSchedulingGate proto.InternalMessageInfo func (m *PodSecurityContext) Reset() { *m = PodSecurityContext{} } func (*PodSecurityContext) ProtoMessage() {} func (*PodSecurityContext) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{148} + return fileDescriptor_6c07b07c062484ab, []int{149} } func (m *PodSecurityContext) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4224,7 +4252,7 @@ var xxx_messageInfo_PodSecurityContext proto.InternalMessageInfo func (m *PodSignature) Reset() { *m = PodSignature{} } func (*PodSignature) ProtoMessage() {} func (*PodSignature) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{149} + return fileDescriptor_6c07b07c062484ab, []int{150} } func (m *PodSignature) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4252,7 +4280,7 @@ var xxx_messageInfo_PodSignature proto.InternalMessageInfo func (m *PodSpec) Reset() { *m = PodSpec{} } func (*PodSpec) ProtoMessage() {} func (*PodSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{150} + return fileDescriptor_6c07b07c062484ab, []int{151} } func (m *PodSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4280,7 +4308,7 @@ var xxx_messageInfo_PodSpec proto.InternalMessageInfo func (m *PodStatus) Reset() { *m = PodStatus{} } func (*PodStatus) ProtoMessage() {} func (*PodStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{151} + return fileDescriptor_6c07b07c062484ab, []int{152} } func (m *PodStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4308,7 +4336,7 @@ var xxx_messageInfo_PodStatus proto.InternalMessageInfo func (m *PodStatusResult) Reset() { *m = PodStatusResult{} } func (*PodStatusResult) ProtoMessage() {} func (*PodStatusResult) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{152} + return fileDescriptor_6c07b07c062484ab, []int{153} } func (m *PodStatusResult) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4336,7 +4364,7 @@ var xxx_messageInfo_PodStatusResult proto.InternalMessageInfo func (m *PodTemplate) Reset() { *m = PodTemplate{} } func (*PodTemplate) ProtoMessage() {} func (*PodTemplate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{153} + return fileDescriptor_6c07b07c062484ab, []int{154} } func (m *PodTemplate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4364,7 +4392,7 @@ var xxx_messageInfo_PodTemplate proto.InternalMessageInfo func (m *PodTemplateList) Reset() { *m = PodTemplateList{} } func (*PodTemplateList) ProtoMessage() {} func (*PodTemplateList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{154} + return fileDescriptor_6c07b07c062484ab, []int{155} } func (m *PodTemplateList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4392,7 +4420,7 @@ var xxx_messageInfo_PodTemplateList proto.InternalMessageInfo func (m *PodTemplateSpec) Reset() { *m = PodTemplateSpec{} } func (*PodTemplateSpec) ProtoMessage() {} func (*PodTemplateSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{155} + return fileDescriptor_6c07b07c062484ab, []int{156} } func (m *PodTemplateSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4420,7 +4448,7 @@ var xxx_messageInfo_PodTemplateSpec proto.InternalMessageInfo func (m *PortStatus) Reset() { *m = PortStatus{} } func (*PortStatus) ProtoMessage() {} func (*PortStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{156} + return fileDescriptor_6c07b07c062484ab, []int{157} } func (m *PortStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4448,7 +4476,7 @@ var xxx_messageInfo_PortStatus proto.InternalMessageInfo func (m *PortworxVolumeSource) Reset() { *m = PortworxVolumeSource{} } func (*PortworxVolumeSource) ProtoMessage() {} func (*PortworxVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{157} + return fileDescriptor_6c07b07c062484ab, []int{158} } func (m *PortworxVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4476,7 +4504,7 @@ var xxx_messageInfo_PortworxVolumeSource proto.InternalMessageInfo func (m *Preconditions) Reset() { *m = Preconditions{} } func (*Preconditions) ProtoMessage() {} func (*Preconditions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{158} + return fileDescriptor_6c07b07c062484ab, []int{159} } func (m *Preconditions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4504,7 +4532,7 @@ var xxx_messageInfo_Preconditions proto.InternalMessageInfo func (m *PreferAvoidPodsEntry) Reset() { *m = PreferAvoidPodsEntry{} } func (*PreferAvoidPodsEntry) ProtoMessage() {} func (*PreferAvoidPodsEntry) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{159} + return fileDescriptor_6c07b07c062484ab, []int{160} } func (m *PreferAvoidPodsEntry) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4532,7 +4560,7 @@ var xxx_messageInfo_PreferAvoidPodsEntry proto.InternalMessageInfo func (m *PreferredSchedulingTerm) Reset() { *m = PreferredSchedulingTerm{} } func (*PreferredSchedulingTerm) ProtoMessage() {} func (*PreferredSchedulingTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{160} + return fileDescriptor_6c07b07c062484ab, []int{161} } func (m *PreferredSchedulingTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4560,7 +4588,7 @@ var xxx_messageInfo_PreferredSchedulingTerm proto.InternalMessageInfo func (m *Probe) Reset() { *m = Probe{} } func (*Probe) ProtoMessage() {} func (*Probe) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{161} + return fileDescriptor_6c07b07c062484ab, []int{162} } func (m *Probe) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4588,7 +4616,7 @@ var xxx_messageInfo_Probe proto.InternalMessageInfo func (m *ProbeHandler) Reset() { *m = ProbeHandler{} } func (*ProbeHandler) ProtoMessage() {} func (*ProbeHandler) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{162} + return fileDescriptor_6c07b07c062484ab, []int{163} } func (m *ProbeHandler) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4616,7 +4644,7 @@ var xxx_messageInfo_ProbeHandler proto.InternalMessageInfo func (m *ProjectedVolumeSource) Reset() { *m = ProjectedVolumeSource{} } func (*ProjectedVolumeSource) ProtoMessage() {} func (*ProjectedVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{163} + return fileDescriptor_6c07b07c062484ab, []int{164} } func (m *ProjectedVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4644,7 +4672,7 @@ var xxx_messageInfo_ProjectedVolumeSource proto.InternalMessageInfo func (m *QuobyteVolumeSource) Reset() { *m = QuobyteVolumeSource{} } func (*QuobyteVolumeSource) ProtoMessage() {} func (*QuobyteVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{164} + return fileDescriptor_6c07b07c062484ab, []int{165} } func (m *QuobyteVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4672,7 +4700,7 @@ var xxx_messageInfo_QuobyteVolumeSource proto.InternalMessageInfo func (m *RBDPersistentVolumeSource) Reset() { *m = RBDPersistentVolumeSource{} } func (*RBDPersistentVolumeSource) ProtoMessage() {} func (*RBDPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{165} + return fileDescriptor_6c07b07c062484ab, []int{166} } func (m *RBDPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4700,7 +4728,7 @@ var xxx_messageInfo_RBDPersistentVolumeSource proto.InternalMessageInfo func (m *RBDVolumeSource) Reset() { *m = RBDVolumeSource{} } func (*RBDVolumeSource) ProtoMessage() {} func (*RBDVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{166} + return fileDescriptor_6c07b07c062484ab, []int{167} } func (m *RBDVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4728,7 +4756,7 @@ var xxx_messageInfo_RBDVolumeSource proto.InternalMessageInfo func (m *RangeAllocation) Reset() { *m = RangeAllocation{} } func (*RangeAllocation) ProtoMessage() {} func (*RangeAllocation) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{167} + return fileDescriptor_6c07b07c062484ab, []int{168} } func (m *RangeAllocation) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4756,7 +4784,7 @@ var xxx_messageInfo_RangeAllocation proto.InternalMessageInfo func (m *ReplicationController) Reset() { *m = ReplicationController{} } func (*ReplicationController) ProtoMessage() {} func (*ReplicationController) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{168} + return fileDescriptor_6c07b07c062484ab, []int{169} } func (m *ReplicationController) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4784,7 +4812,7 @@ var xxx_messageInfo_ReplicationController proto.InternalMessageInfo func (m *ReplicationControllerCondition) Reset() { *m = ReplicationControllerCondition{} } func (*ReplicationControllerCondition) ProtoMessage() {} func (*ReplicationControllerCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{169} + return fileDescriptor_6c07b07c062484ab, []int{170} } func (m *ReplicationControllerCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4812,7 +4840,7 @@ var xxx_messageInfo_ReplicationControllerCondition proto.InternalMessageInfo func (m *ReplicationControllerList) Reset() { *m = ReplicationControllerList{} } func (*ReplicationControllerList) ProtoMessage() {} func (*ReplicationControllerList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{170} + return fileDescriptor_6c07b07c062484ab, []int{171} } func (m *ReplicationControllerList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4840,7 +4868,7 @@ var xxx_messageInfo_ReplicationControllerList proto.InternalMessageInfo func (m *ReplicationControllerSpec) Reset() { *m = ReplicationControllerSpec{} } func (*ReplicationControllerSpec) ProtoMessage() {} func (*ReplicationControllerSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{171} + return fileDescriptor_6c07b07c062484ab, []int{172} } func (m *ReplicationControllerSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4868,7 +4896,7 @@ var xxx_messageInfo_ReplicationControllerSpec proto.InternalMessageInfo func (m *ReplicationControllerStatus) Reset() { *m = ReplicationControllerStatus{} } func (*ReplicationControllerStatus) ProtoMessage() {} func (*ReplicationControllerStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{172} + return fileDescriptor_6c07b07c062484ab, []int{173} } func (m *ReplicationControllerStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4896,7 +4924,7 @@ var xxx_messageInfo_ReplicationControllerStatus proto.InternalMessageInfo func (m *ResourceClaim) Reset() { *m = ResourceClaim{} } func (*ResourceClaim) ProtoMessage() {} func (*ResourceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{173} + return fileDescriptor_6c07b07c062484ab, []int{174} } func (m *ResourceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4924,7 +4952,7 @@ var xxx_messageInfo_ResourceClaim proto.InternalMessageInfo func (m *ResourceFieldSelector) Reset() { *m = ResourceFieldSelector{} } func (*ResourceFieldSelector) ProtoMessage() {} func (*ResourceFieldSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{174} + return fileDescriptor_6c07b07c062484ab, []int{175} } func (m *ResourceFieldSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4952,7 +4980,7 @@ var xxx_messageInfo_ResourceFieldSelector proto.InternalMessageInfo func (m *ResourceHealth) Reset() { *m = ResourceHealth{} } func (*ResourceHealth) ProtoMessage() {} func (*ResourceHealth) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{175} + return fileDescriptor_6c07b07c062484ab, []int{176} } func (m *ResourceHealth) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4980,7 +5008,7 @@ var xxx_messageInfo_ResourceHealth proto.InternalMessageInfo func (m *ResourceQuota) Reset() { *m = ResourceQuota{} } func (*ResourceQuota) ProtoMessage() {} func (*ResourceQuota) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{176} + return fileDescriptor_6c07b07c062484ab, []int{177} } func (m *ResourceQuota) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5008,7 +5036,7 @@ var xxx_messageInfo_ResourceQuota proto.InternalMessageInfo func (m *ResourceQuotaList) Reset() { *m = ResourceQuotaList{} } func (*ResourceQuotaList) ProtoMessage() {} func (*ResourceQuotaList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{177} + return fileDescriptor_6c07b07c062484ab, []int{178} } func (m *ResourceQuotaList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5036,7 +5064,7 @@ var xxx_messageInfo_ResourceQuotaList proto.InternalMessageInfo func (m *ResourceQuotaSpec) Reset() { *m = ResourceQuotaSpec{} } func (*ResourceQuotaSpec) ProtoMessage() {} func (*ResourceQuotaSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{178} + return fileDescriptor_6c07b07c062484ab, []int{179} } func (m *ResourceQuotaSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5064,7 +5092,7 @@ var xxx_messageInfo_ResourceQuotaSpec proto.InternalMessageInfo func (m *ResourceQuotaStatus) Reset() { *m = ResourceQuotaStatus{} } func (*ResourceQuotaStatus) ProtoMessage() {} func (*ResourceQuotaStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{179} + return fileDescriptor_6c07b07c062484ab, []int{180} } func (m *ResourceQuotaStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5092,7 +5120,7 @@ var xxx_messageInfo_ResourceQuotaStatus proto.InternalMessageInfo func (m *ResourceRequirements) Reset() { *m = ResourceRequirements{} } func (*ResourceRequirements) ProtoMessage() {} func (*ResourceRequirements) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{180} + return fileDescriptor_6c07b07c062484ab, []int{181} } func (m *ResourceRequirements) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5120,7 +5148,7 @@ var xxx_messageInfo_ResourceRequirements proto.InternalMessageInfo func (m *ResourceStatus) Reset() { *m = ResourceStatus{} } func (*ResourceStatus) ProtoMessage() {} func (*ResourceStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{181} + return fileDescriptor_6c07b07c062484ab, []int{182} } func (m *ResourceStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5148,7 +5176,7 @@ var xxx_messageInfo_ResourceStatus proto.InternalMessageInfo func (m *SELinuxOptions) Reset() { *m = SELinuxOptions{} } func (*SELinuxOptions) ProtoMessage() {} func (*SELinuxOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{182} + return fileDescriptor_6c07b07c062484ab, []int{183} } func (m *SELinuxOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5176,7 +5204,7 @@ var xxx_messageInfo_SELinuxOptions proto.InternalMessageInfo func (m *ScaleIOPersistentVolumeSource) Reset() { *m = ScaleIOPersistentVolumeSource{} } func (*ScaleIOPersistentVolumeSource) ProtoMessage() {} func (*ScaleIOPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{183} + return fileDescriptor_6c07b07c062484ab, []int{184} } func (m *ScaleIOPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5204,7 +5232,7 @@ var xxx_messageInfo_ScaleIOPersistentVolumeSource proto.InternalMessageInfo func (m *ScaleIOVolumeSource) Reset() { *m = ScaleIOVolumeSource{} } func (*ScaleIOVolumeSource) ProtoMessage() {} func (*ScaleIOVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{184} + return fileDescriptor_6c07b07c062484ab, []int{185} } func (m *ScaleIOVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5232,7 +5260,7 @@ var xxx_messageInfo_ScaleIOVolumeSource proto.InternalMessageInfo func (m *ScopeSelector) Reset() { *m = ScopeSelector{} } func (*ScopeSelector) ProtoMessage() {} func (*ScopeSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{185} + return fileDescriptor_6c07b07c062484ab, []int{186} } func (m *ScopeSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5260,7 +5288,7 @@ var xxx_messageInfo_ScopeSelector proto.InternalMessageInfo func (m *ScopedResourceSelectorRequirement) Reset() { *m = ScopedResourceSelectorRequirement{} } func (*ScopedResourceSelectorRequirement) ProtoMessage() {} func (*ScopedResourceSelectorRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{186} + return fileDescriptor_6c07b07c062484ab, []int{187} } func (m *ScopedResourceSelectorRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5288,7 +5316,7 @@ var xxx_messageInfo_ScopedResourceSelectorRequirement proto.InternalMessageInfo func (m *SeccompProfile) Reset() { *m = SeccompProfile{} } func (*SeccompProfile) ProtoMessage() {} func (*SeccompProfile) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{187} + return fileDescriptor_6c07b07c062484ab, []int{188} } func (m *SeccompProfile) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5316,7 +5344,7 @@ var xxx_messageInfo_SeccompProfile proto.InternalMessageInfo func (m *Secret) Reset() { *m = Secret{} } func (*Secret) ProtoMessage() {} func (*Secret) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{188} + return fileDescriptor_6c07b07c062484ab, []int{189} } func (m *Secret) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5344,7 +5372,7 @@ var xxx_messageInfo_Secret proto.InternalMessageInfo func (m *SecretEnvSource) Reset() { *m = SecretEnvSource{} } func (*SecretEnvSource) ProtoMessage() {} func (*SecretEnvSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{189} + return fileDescriptor_6c07b07c062484ab, []int{190} } func (m *SecretEnvSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5372,7 +5400,7 @@ var xxx_messageInfo_SecretEnvSource proto.InternalMessageInfo func (m *SecretKeySelector) Reset() { *m = SecretKeySelector{} } func (*SecretKeySelector) ProtoMessage() {} func (*SecretKeySelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{190} + return fileDescriptor_6c07b07c062484ab, []int{191} } func (m *SecretKeySelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5400,7 +5428,7 @@ var xxx_messageInfo_SecretKeySelector proto.InternalMessageInfo func (m *SecretList) Reset() { *m = SecretList{} } func (*SecretList) ProtoMessage() {} func (*SecretList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{191} + return fileDescriptor_6c07b07c062484ab, []int{192} } func (m *SecretList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5428,7 +5456,7 @@ var xxx_messageInfo_SecretList proto.InternalMessageInfo func (m *SecretProjection) Reset() { *m = SecretProjection{} } func (*SecretProjection) ProtoMessage() {} func (*SecretProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{192} + return fileDescriptor_6c07b07c062484ab, []int{193} } func (m *SecretProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5456,7 +5484,7 @@ var xxx_messageInfo_SecretProjection proto.InternalMessageInfo func (m *SecretReference) Reset() { *m = SecretReference{} } func (*SecretReference) ProtoMessage() {} func (*SecretReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{193} + return fileDescriptor_6c07b07c062484ab, []int{194} } func (m *SecretReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5484,7 +5512,7 @@ var xxx_messageInfo_SecretReference proto.InternalMessageInfo func (m *SecretVolumeSource) Reset() { *m = SecretVolumeSource{} } func (*SecretVolumeSource) ProtoMessage() {} func (*SecretVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{194} + return fileDescriptor_6c07b07c062484ab, []int{195} } func (m *SecretVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5512,7 +5540,7 @@ var xxx_messageInfo_SecretVolumeSource proto.InternalMessageInfo func (m *SecurityContext) Reset() { *m = SecurityContext{} } func (*SecurityContext) ProtoMessage() {} func (*SecurityContext) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{195} + return fileDescriptor_6c07b07c062484ab, []int{196} } func (m *SecurityContext) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5540,7 +5568,7 @@ var xxx_messageInfo_SecurityContext proto.InternalMessageInfo func (m *SerializedReference) Reset() { *m = SerializedReference{} } func (*SerializedReference) ProtoMessage() {} func (*SerializedReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{196} + return fileDescriptor_6c07b07c062484ab, []int{197} } func (m *SerializedReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5568,7 +5596,7 @@ var xxx_messageInfo_SerializedReference proto.InternalMessageInfo func (m *Service) Reset() { *m = Service{} } func (*Service) ProtoMessage() {} func (*Service) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{197} + return fileDescriptor_6c07b07c062484ab, []int{198} } func (m *Service) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5596,7 +5624,7 @@ var xxx_messageInfo_Service proto.InternalMessageInfo func (m *ServiceAccount) Reset() { *m = ServiceAccount{} } func (*ServiceAccount) ProtoMessage() {} func (*ServiceAccount) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{198} + return fileDescriptor_6c07b07c062484ab, []int{199} } func (m *ServiceAccount) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5624,7 +5652,7 @@ var xxx_messageInfo_ServiceAccount proto.InternalMessageInfo func (m *ServiceAccountList) Reset() { *m = ServiceAccountList{} } func (*ServiceAccountList) ProtoMessage() {} func (*ServiceAccountList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{199} + return fileDescriptor_6c07b07c062484ab, []int{200} } func (m *ServiceAccountList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5652,7 +5680,7 @@ var xxx_messageInfo_ServiceAccountList proto.InternalMessageInfo func (m *ServiceAccountTokenProjection) Reset() { *m = ServiceAccountTokenProjection{} } func (*ServiceAccountTokenProjection) ProtoMessage() {} func (*ServiceAccountTokenProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{200} + return fileDescriptor_6c07b07c062484ab, []int{201} } func (m *ServiceAccountTokenProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5680,7 +5708,7 @@ var xxx_messageInfo_ServiceAccountTokenProjection proto.InternalMessageInfo func (m *ServiceList) Reset() { *m = ServiceList{} } func (*ServiceList) ProtoMessage() {} func (*ServiceList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{201} + return fileDescriptor_6c07b07c062484ab, []int{202} } func (m *ServiceList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5708,7 +5736,7 @@ var xxx_messageInfo_ServiceList proto.InternalMessageInfo func (m *ServicePort) Reset() { *m = ServicePort{} } func (*ServicePort) ProtoMessage() {} func (*ServicePort) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{202} + return fileDescriptor_6c07b07c062484ab, []int{203} } func (m *ServicePort) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5736,7 +5764,7 @@ var xxx_messageInfo_ServicePort proto.InternalMessageInfo func (m *ServiceProxyOptions) Reset() { *m = ServiceProxyOptions{} } func (*ServiceProxyOptions) ProtoMessage() {} func (*ServiceProxyOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{203} + return fileDescriptor_6c07b07c062484ab, []int{204} } func (m *ServiceProxyOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5764,7 +5792,7 @@ var xxx_messageInfo_ServiceProxyOptions proto.InternalMessageInfo func (m *ServiceSpec) Reset() { *m = ServiceSpec{} } func (*ServiceSpec) ProtoMessage() {} func (*ServiceSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{204} + return fileDescriptor_6c07b07c062484ab, []int{205} } func (m *ServiceSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5792,7 +5820,7 @@ var xxx_messageInfo_ServiceSpec proto.InternalMessageInfo func (m *ServiceStatus) Reset() { *m = ServiceStatus{} } func (*ServiceStatus) ProtoMessage() {} func (*ServiceStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{205} + return fileDescriptor_6c07b07c062484ab, []int{206} } func (m *ServiceStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5820,7 +5848,7 @@ var xxx_messageInfo_ServiceStatus proto.InternalMessageInfo func (m *SessionAffinityConfig) Reset() { *m = SessionAffinityConfig{} } func (*SessionAffinityConfig) ProtoMessage() {} func (*SessionAffinityConfig) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{206} + return fileDescriptor_6c07b07c062484ab, []int{207} } func (m *SessionAffinityConfig) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5848,7 +5876,7 @@ var xxx_messageInfo_SessionAffinityConfig proto.InternalMessageInfo func (m *SleepAction) Reset() { *m = SleepAction{} } func (*SleepAction) ProtoMessage() {} func (*SleepAction) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{207} + return fileDescriptor_6c07b07c062484ab, []int{208} } func (m *SleepAction) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5876,7 +5904,7 @@ var xxx_messageInfo_SleepAction proto.InternalMessageInfo func (m *StorageOSPersistentVolumeSource) Reset() { *m = StorageOSPersistentVolumeSource{} } func (*StorageOSPersistentVolumeSource) ProtoMessage() {} func (*StorageOSPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{208} + return fileDescriptor_6c07b07c062484ab, []int{209} } func (m *StorageOSPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5904,7 +5932,7 @@ var xxx_messageInfo_StorageOSPersistentVolumeSource proto.InternalMessageInfo func (m *StorageOSVolumeSource) Reset() { *m = StorageOSVolumeSource{} } func (*StorageOSVolumeSource) ProtoMessage() {} func (*StorageOSVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{209} + return fileDescriptor_6c07b07c062484ab, []int{210} } func (m *StorageOSVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5932,7 +5960,7 @@ var xxx_messageInfo_StorageOSVolumeSource proto.InternalMessageInfo func (m *Sysctl) Reset() { *m = Sysctl{} } func (*Sysctl) ProtoMessage() {} func (*Sysctl) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{210} + return fileDescriptor_6c07b07c062484ab, []int{211} } func (m *Sysctl) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5960,7 +5988,7 @@ var xxx_messageInfo_Sysctl proto.InternalMessageInfo func (m *TCPSocketAction) Reset() { *m = TCPSocketAction{} } func (*TCPSocketAction) ProtoMessage() {} func (*TCPSocketAction) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{211} + return fileDescriptor_6c07b07c062484ab, []int{212} } func (m *TCPSocketAction) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5988,7 +6016,7 @@ var xxx_messageInfo_TCPSocketAction proto.InternalMessageInfo func (m *Taint) Reset() { *m = Taint{} } func (*Taint) ProtoMessage() {} func (*Taint) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{212} + return fileDescriptor_6c07b07c062484ab, []int{213} } func (m *Taint) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6016,7 +6044,7 @@ var xxx_messageInfo_Taint proto.InternalMessageInfo func (m *Toleration) Reset() { *m = Toleration{} } func (*Toleration) ProtoMessage() {} func (*Toleration) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{213} + return fileDescriptor_6c07b07c062484ab, []int{214} } func (m *Toleration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6044,7 +6072,7 @@ var xxx_messageInfo_Toleration proto.InternalMessageInfo func (m *TopologySelectorLabelRequirement) Reset() { *m = TopologySelectorLabelRequirement{} } func (*TopologySelectorLabelRequirement) ProtoMessage() {} func (*TopologySelectorLabelRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{214} + return fileDescriptor_6c07b07c062484ab, []int{215} } func (m *TopologySelectorLabelRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6072,7 +6100,7 @@ var xxx_messageInfo_TopologySelectorLabelRequirement proto.InternalMessageInfo func (m *TopologySelectorTerm) Reset() { *m = TopologySelectorTerm{} } func (*TopologySelectorTerm) ProtoMessage() {} func (*TopologySelectorTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{215} + return fileDescriptor_6c07b07c062484ab, []int{216} } func (m *TopologySelectorTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6100,7 +6128,7 @@ var xxx_messageInfo_TopologySelectorTerm proto.InternalMessageInfo func (m *TopologySpreadConstraint) Reset() { *m = TopologySpreadConstraint{} } func (*TopologySpreadConstraint) ProtoMessage() {} func (*TopologySpreadConstraint) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{216} + return fileDescriptor_6c07b07c062484ab, []int{217} } func (m *TopologySpreadConstraint) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6128,7 +6156,7 @@ var xxx_messageInfo_TopologySpreadConstraint proto.InternalMessageInfo func (m *TypedLocalObjectReference) Reset() { *m = TypedLocalObjectReference{} } func (*TypedLocalObjectReference) ProtoMessage() {} func (*TypedLocalObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{217} + return fileDescriptor_6c07b07c062484ab, []int{218} } func (m *TypedLocalObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6156,7 +6184,7 @@ var xxx_messageInfo_TypedLocalObjectReference proto.InternalMessageInfo func (m *TypedObjectReference) Reset() { *m = TypedObjectReference{} } func (*TypedObjectReference) ProtoMessage() {} func (*TypedObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{218} + return fileDescriptor_6c07b07c062484ab, []int{219} } func (m *TypedObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6184,7 +6212,7 @@ var xxx_messageInfo_TypedObjectReference proto.InternalMessageInfo func (m *Volume) Reset() { *m = Volume{} } func (*Volume) ProtoMessage() {} func (*Volume) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{219} + return fileDescriptor_6c07b07c062484ab, []int{220} } func (m *Volume) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6212,7 +6240,7 @@ var xxx_messageInfo_Volume proto.InternalMessageInfo func (m *VolumeDevice) Reset() { *m = VolumeDevice{} } func (*VolumeDevice) ProtoMessage() {} func (*VolumeDevice) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{220} + return fileDescriptor_6c07b07c062484ab, []int{221} } func (m *VolumeDevice) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6240,7 +6268,7 @@ var xxx_messageInfo_VolumeDevice proto.InternalMessageInfo func (m *VolumeMount) Reset() { *m = VolumeMount{} } func (*VolumeMount) ProtoMessage() {} func (*VolumeMount) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{221} + return fileDescriptor_6c07b07c062484ab, []int{222} } func (m *VolumeMount) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6268,7 +6296,7 @@ var xxx_messageInfo_VolumeMount proto.InternalMessageInfo func (m *VolumeMountStatus) Reset() { *m = VolumeMountStatus{} } func (*VolumeMountStatus) ProtoMessage() {} func (*VolumeMountStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{222} + return fileDescriptor_6c07b07c062484ab, []int{223} } func (m *VolumeMountStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6296,7 +6324,7 @@ var xxx_messageInfo_VolumeMountStatus proto.InternalMessageInfo func (m *VolumeNodeAffinity) Reset() { *m = VolumeNodeAffinity{} } func (*VolumeNodeAffinity) ProtoMessage() {} func (*VolumeNodeAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{223} + return fileDescriptor_6c07b07c062484ab, []int{224} } func (m *VolumeNodeAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6324,7 +6352,7 @@ var xxx_messageInfo_VolumeNodeAffinity proto.InternalMessageInfo func (m *VolumeProjection) Reset() { *m = VolumeProjection{} } func (*VolumeProjection) ProtoMessage() {} func (*VolumeProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{224} + return fileDescriptor_6c07b07c062484ab, []int{225} } func (m *VolumeProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6352,7 +6380,7 @@ var xxx_messageInfo_VolumeProjection proto.InternalMessageInfo func (m *VolumeResourceRequirements) Reset() { *m = VolumeResourceRequirements{} } func (*VolumeResourceRequirements) ProtoMessage() {} func (*VolumeResourceRequirements) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{225} + return fileDescriptor_6c07b07c062484ab, []int{226} } func (m *VolumeResourceRequirements) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6380,7 +6408,7 @@ var xxx_messageInfo_VolumeResourceRequirements proto.InternalMessageInfo func (m *VolumeSource) Reset() { *m = VolumeSource{} } func (*VolumeSource) ProtoMessage() {} func (*VolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{226} + return fileDescriptor_6c07b07c062484ab, []int{227} } func (m *VolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6408,7 +6436,7 @@ var xxx_messageInfo_VolumeSource proto.InternalMessageInfo func (m *VsphereVirtualDiskVolumeSource) Reset() { *m = VsphereVirtualDiskVolumeSource{} } func (*VsphereVirtualDiskVolumeSource) ProtoMessage() {} func (*VsphereVirtualDiskVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{227} + return fileDescriptor_6c07b07c062484ab, []int{228} } func (m *VsphereVirtualDiskVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6436,7 +6464,7 @@ var xxx_messageInfo_VsphereVirtualDiskVolumeSource proto.InternalMessageInfo func (m *WeightedPodAffinityTerm) Reset() { *m = WeightedPodAffinityTerm{} } func (*WeightedPodAffinityTerm) ProtoMessage() {} func (*WeightedPodAffinityTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{228} + return fileDescriptor_6c07b07c062484ab, []int{229} } func (m *WeightedPodAffinityTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6464,7 +6492,7 @@ var xxx_messageInfo_WeightedPodAffinityTerm proto.InternalMessageInfo func (m *WindowsSecurityContextOptions) Reset() { *m = WindowsSecurityContextOptions{} } func (*WindowsSecurityContextOptions) ProtoMessage() {} func (*WindowsSecurityContextOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{229} + return fileDescriptor_6c07b07c062484ab, []int{230} } func (m *WindowsSecurityContextOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6617,6 +6645,7 @@ func init() { proto.RegisterType((*NodeStatus)(nil), "k8s.io.api.core.v1.NodeStatus") proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.NodeStatus.AllocatableEntry") proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.NodeStatus.CapacityEntry") + proto.RegisterType((*NodeSwapStatus)(nil), "k8s.io.api.core.v1.NodeSwapStatus") proto.RegisterType((*NodeSystemInfo)(nil), "k8s.io.api.core.v1.NodeSystemInfo") proto.RegisterType((*ObjectFieldSelector)(nil), "k8s.io.api.core.v1.ObjectFieldSelector") proto.RegisterType((*ObjectReference)(nil), "k8s.io.api.core.v1.ObjectReference") @@ -6758,1015 +6787,1020 @@ func init() { } var fileDescriptor_6c07b07c062484ab = []byte{ - // 16114 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xec, 0xbd, 0x69, 0x90, 0x64, 0xd9, - 0x59, 0x28, 0xa6, 0x9b, 0x59, 0xeb, 0x57, 0xfb, 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0x5f, + 0xfe, 0x3f, 0xce, 0x7c, 0xe8, 0x6d, 0x14, 0x47, 0xa8, 0xbe, 0x40, 0x67, 0xe7, 0xc2, 0xf6, 0xc5, + 0xff, 0x10, 0x00, 0x00, 0xff, 0xff, 0xf5, 0xf1, 0x8c, 0x4c, 0x2d, 0x26, 0x01, 0x00, } func (m *AWSElasticBlockStoreVolumeSource) Marshal() (dAtA []byte, err error) { @@ -9887,6 +9921,13 @@ func (m *ContainerStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.StopSignal != nil { + i -= len(*m.StopSignal) + copy(dAtA[i:], *m.StopSignal) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.StopSignal))) + i-- + dAtA[i] = 0x7a + } if len(m.AllocatedResourcesStatus) > 0 { for iNdEx := len(m.AllocatedResourcesStatus) - 1; iNdEx >= 0; iNdEx-- { { @@ -12258,6 +12299,13 @@ func (m *Lifecycle) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.StopSignal != nil { + i -= len(*m.StopSignal) + copy(dAtA[i:], *m.StopSignal) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.StopSignal))) + i-- + dAtA[i] = 0x1a + } if m.PreStop != nil { { size, err := m.PreStop.MarshalToSizedBuffer(dAtA[:i]) @@ -14135,6 +14183,34 @@ func (m *NodeStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *NodeSwapStatus) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *NodeSwapStatus) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *NodeSwapStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if m.Capacity != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.Capacity)) + i-- + dAtA[i] = 0x8 + } + return len(dAtA) - i, nil +} + func (m *NodeSystemInfo) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -14155,6 +14231,18 @@ func (m *NodeSystemInfo) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.Swap != nil { + { + size, err := m.Swap.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x5a + } i -= len(m.Architecture) copy(dAtA[i:], m.Architecture) i = encodeVarintGenerated(dAtA, i, uint64(len(m.Architecture))) @@ -15723,6 +15811,9 @@ func (m *PodCondition) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + i = encodeVarintGenerated(dAtA, i, uint64(m.ObservedGeneration)) + i-- + dAtA[i] = 0x38 i -= len(m.Message) copy(dAtA[i:], m.Message) i = encodeVarintGenerated(dAtA, i, uint64(len(m.Message))) @@ -16994,6 +17085,11 @@ func (m *PodStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + i = encodeVarintGenerated(dAtA, i, uint64(m.ObservedGeneration)) + i-- + dAtA[i] = 0x1 + i-- + dAtA[i] = 0x88 if len(m.HostIPs) > 0 { for iNdEx := len(m.HostIPs) - 1; iNdEx >= 0; iNdEx-- { { @@ -22542,6 +22638,10 @@ func (m *ContainerStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.StopSignal != nil { + l = len(*m.StopSignal) + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -23382,6 +23482,10 @@ func (m *Lifecycle) Size() (n int) { l = m.PreStop.Size() n += 1 + l + sovGenerated(uint64(l)) } + if m.StopSignal != nil { + l = len(*m.StopSignal) + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -24067,6 +24171,18 @@ func (m *NodeStatus) Size() (n int) { return n } +func (m *NodeSwapStatus) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.Capacity != nil { + n += 1 + sovGenerated(uint64(*m.Capacity)) + } + return n +} + func (m *NodeSystemInfo) Size() (n int) { if m == nil { return 0 @@ -24093,6 +24209,10 @@ func (m *NodeSystemInfo) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) l = len(m.Architecture) n += 1 + l + sovGenerated(uint64(l)) + if m.Swap != nil { + l = m.Swap.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -24650,6 +24770,7 @@ func (m *PodCondition) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) l = len(m.Message) n += 1 + l + sovGenerated(uint64(l)) + n += 1 + sovGenerated(uint64(m.ObservedGeneration)) return n } @@ -25174,6 +25295,7 @@ func (m *PodStatus) Size() (n int) { n += 2 + l + sovGenerated(uint64(l)) } } + n += 2 + sovGenerated(uint64(m.ObservedGeneration)) return n } @@ -27457,6 +27579,7 @@ func (this *ContainerStatus) String() string { `VolumeMounts:` + repeatedStringForVolumeMounts + `,`, `User:` + strings.Replace(this.User.String(), "ContainerUser", "ContainerUser", 1) + `,`, `AllocatedResourcesStatus:` + repeatedStringForAllocatedResourcesStatus + `,`, + `StopSignal:` + valueToStringGenerated(this.StopSignal) + `,`, `}`, }, "") return s @@ -28080,6 +28203,7 @@ func (this *Lifecycle) String() string { s := strings.Join([]string{`&Lifecycle{`, `PostStart:` + strings.Replace(this.PostStart.String(), "LifecycleHandler", "LifecycleHandler", 1) + `,`, `PreStop:` + strings.Replace(this.PreStop.String(), "LifecycleHandler", "LifecycleHandler", 1) + `,`, + `StopSignal:` + valueToStringGenerated(this.StopSignal) + `,`, `}`, }, "") return s @@ -28658,6 +28782,16 @@ func (this *NodeStatus) String() string { }, "") return s } +func (this *NodeSwapStatus) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&NodeSwapStatus{`, + `Capacity:` + valueToStringGenerated(this.Capacity) + `,`, + `}`, + }, "") + return s +} func (this *NodeSystemInfo) String() string { if this == nil { return "nil" @@ -28673,6 +28807,7 @@ func (this *NodeSystemInfo) String() string { `KubeProxyVersion:` + fmt.Sprintf("%v", this.KubeProxyVersion) + `,`, `OperatingSystem:` + fmt.Sprintf("%v", this.OperatingSystem) + `,`, `Architecture:` + fmt.Sprintf("%v", this.Architecture) + `,`, + `Swap:` + strings.Replace(this.Swap.String(), "NodeSwapStatus", "NodeSwapStatus", 1) + `,`, `}`, }, "") return s @@ -29045,6 +29180,7 @@ func (this *PodCondition) String() string { `LastTransitionTime:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.LastTransitionTime), "Time", "v1.Time", 1), `&`, ``, 1) + `,`, `Reason:` + fmt.Sprintf("%v", this.Reason) + `,`, `Message:` + fmt.Sprintf("%v", this.Message) + `,`, + `ObservedGeneration:` + fmt.Sprintf("%v", this.ObservedGeneration) + `,`, `}`, }, "") return s @@ -29427,6 +29563,7 @@ func (this *PodStatus) String() string { `Resize:` + fmt.Sprintf("%v", this.Resize) + `,`, `ResourceClaimStatuses:` + repeatedStringForResourceClaimStatuses + `,`, `HostIPs:` + repeatedStringForHostIPs + `,`, + `ObservedGeneration:` + fmt.Sprintf("%v", this.ObservedGeneration) + `,`, `}`, }, "") return s @@ -37794,88 +37931,122 @@ func (m *ContainerStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Resources == nil { - m.Resources = &ResourceRequirements{} - } - if err := m.Resources.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 12: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field VolumeMounts", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.VolumeMounts = append(m.VolumeMounts, VolumeMountStatus{}) - if err := m.VolumeMounts[len(m.VolumeMounts)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 13: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field User", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if m.User == nil { - m.User = &ContainerUser{} - } - if err := m.User.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if m.Resources == nil { + m.Resources = &ResourceRequirements{} + } + if err := m.Resources.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 12: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field VolumeMounts", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.VolumeMounts = append(m.VolumeMounts, VolumeMountStatus{}) + if err := m.VolumeMounts[len(m.VolumeMounts)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 13: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field User", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.User == nil { + m.User = &ContainerUser{} + } + if err := m.User.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 14: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field AllocatedResourcesStatus", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.AllocatedResourcesStatus = append(m.AllocatedResourcesStatus, ResourceStatus{}) + if err := m.AllocatedResourcesStatus[len(m.AllocatedResourcesStatus)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 14: + case 15: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field AllocatedResourcesStatus", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field StopSignal", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -37885,25 +38056,24 @@ func (m *ContainerStatus) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.AllocatedResourcesStatus = append(m.AllocatedResourcesStatus, ResourceStatus{}) - if err := m.AllocatedResourcesStatus[len(m.AllocatedResourcesStatus)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + s := Signal(dAtA[iNdEx:postIndex]) + m.StopSignal = &s iNdEx = postIndex default: iNdEx = preIndex @@ -45056,6 +45226,39 @@ func (m *Lifecycle) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field StopSignal", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := Signal(dAtA[iNdEx:postIndex]) + m.StopSignal = &s + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -50743,6 +50946,76 @@ func (m *NodeStatus) Unmarshal(dAtA []byte) error { } return nil } +func (m *NodeSwapStatus) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NodeSwapStatus: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NodeSwapStatus: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Capacity", wireType) + } + var v int64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int64(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.Capacity = &v + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} func (m *NodeSystemInfo) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 @@ -51092,6 +51365,42 @@ func (m *NodeSystemInfo) Unmarshal(dAtA []byte) error { } m.Architecture = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex + case 11: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Swap", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Swap == nil { + m.Swap = &NodeSwapStatus{} + } + if err := m.Swap.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -56087,6 +56396,25 @@ func (m *PodCondition) Unmarshal(dAtA []byte) error { } m.Message = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex + case 7: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field ObservedGeneration", wireType) + } + m.ObservedGeneration = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.ObservedGeneration |= int64(b&0x7F) << shift + if b < 0x80 { + break + } + } default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -60340,6 +60668,25 @@ func (m *PodStatus) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 17: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field ObservedGeneration", wireType) + } + m.ObservedGeneration = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.ObservedGeneration |= int64(b&0x7F) << shift + if b < 0x80 { + break + } + } default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/core/v1/generated.proto b/vendor/k8s.io/api/core/v1/generated.proto index 08706987c5..9b48fb1c39 100644 --- a/vendor/k8s.io/api/core/v1/generated.proto +++ b/vendor/k8s.io/api/core/v1/generated.proto @@ -1103,6 +1103,11 @@ message ContainerStatus { // +listType=map // +listMapKey=name repeated ResourceStatus allocatedResourcesStatus = 14; + + // StopSignal reports the effective stop signal for this container + // +featureGate=ContainerStopSignals + // +optional + optional string stopSignal = 15; } // ContainerUser represents user identity information @@ -1194,6 +1199,7 @@ message EmptyDirVolumeSource { } // EndpointAddress is a tuple that describes single IP address. +// Deprecated: This API is deprecated in v1.33+. // +structType=atomic message EndpointAddress { // The IP of this endpoint. @@ -1215,6 +1221,7 @@ message EndpointAddress { } // EndpointPort is a tuple that describes a single port. +// Deprecated: This API is deprecated in v1.33+. // +structType=atomic message EndpointPort { // The name of this port. This must match the 'name' field in the @@ -1265,6 +1272,8 @@ message EndpointPort { // // a: [ 10.10.1.1:8675, 10.10.2.2:8675 ], // b: [ 10.10.1.1:309, 10.10.2.2:309 ] +// +// Deprecated: This API is deprecated in v1.33+. message EndpointSubset { // IP addresses which offer the related ports that are marked as ready. These endpoints // should be considered safe for load balancers and clients to utilize. @@ -1298,6 +1307,11 @@ message EndpointSubset { // Ports: [{"name": "a", "port": 93}, {"name": "b", "port": 76}] // }, // ] +// +// Endpoints is a legacy API and does not contain information about all Service features. +// Use discoveryv1.EndpointSlice for complete information about Service endpoints. +// +// Deprecated: This API is deprecated in v1.33+. Use discoveryv1.EndpointSlice. message Endpoints { // Standard object's metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata @@ -1317,6 +1331,7 @@ message Endpoints { } // EndpointsList is a list of endpoints. +// Deprecated: This API is deprecated in v1.33+. message EndpointsList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds @@ -1327,9 +1342,9 @@ message EndpointsList { repeated Endpoints items = 2; } -// EnvFromSource represents the source of a set of ConfigMaps +// EnvFromSource represents the source of a set of ConfigMaps or Secrets message EnvFromSource { - // An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER. + // Optional text to prepend to the name of each environment variable. Must be a C_IDENTIFIER. // +optional optional string prefix = 1; @@ -2198,6 +2213,12 @@ message Lifecycle { // More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks // +optional optional LifecycleHandler preStop = 2; + + // StopSignal defines which signal will be sent to a container when it is being stopped. + // If not specified, the default is defined by the container runtime in use. + // StopSignal can only be set for Pods with a non-empty .spec.os.name + // +optional + optional string stopSignal = 3; } // LifecycleHandler defines a specific action that should be taken in a lifecycle @@ -2862,6 +2883,13 @@ message NodeStatus { optional NodeFeatures features = 13; } +// NodeSwapStatus represents swap memory information. +message NodeSwapStatus { + // Total amount of swap memory in bytes. + // +optional + optional int64 capacity = 1; +} + // NodeSystemInfo is a set of ids/uuids to uniquely identify the node. message NodeSystemInfo { // MachineID reported by the node. For unique machine identification @@ -2897,6 +2925,9 @@ message NodeSystemInfo { // The Architecture reported by the node optional string architecture = 10; + + // Swap Info reported by the node. + optional NodeSwapStatus swap = 11; } // ObjectFieldSelector selects an APIVersioned field of an object. @@ -3615,7 +3646,6 @@ message PodAffinityTerm { // pod labels will be ignored. The default value is empty. // The same key is forbidden to exist in both matchLabelKeys and labelSelector. // Also, matchLabelKeys cannot be set when labelSelector isn't set. - // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). // // +listType=atomic // +optional @@ -3629,7 +3659,6 @@ message PodAffinityTerm { // pod labels will be ignored. The default value is empty. // The same key is forbidden to exist in both mismatchLabelKeys and labelSelector. // Also, mismatchLabelKeys cannot be set when labelSelector isn't set. - // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). // // +listType=atomic // +optional @@ -3702,6 +3731,12 @@ message PodCondition { // More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions optional string type = 1; + // If set, this represents the .metadata.generation that the pod condition was set based upon. + // This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field. + // +featureGate=PodObservedGenerationTracking + // +optional + optional int64 observedGeneration = 7; + // Status is the status of the condition. // Can be True, False, Unknown. // More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions @@ -4138,7 +4173,7 @@ message PodSpec { // Init containers may not have Lifecycle actions, Readiness probes, Liveness probes, or Startup probes. // The resourceRequirements of an init container are taken into account during scheduling // by finding the highest request/limit for each resource type, and then using the max of - // of that value or the sum of the normal containers. Limits are applied to init containers + // that value or the sum of the normal containers. Limits are applied to init containers // in a similar fashion. // Init containers cannot currently be added or removed. // Cannot be updated. @@ -4487,6 +4522,12 @@ message PodSpec { // state of a system, especially if the node that hosts the pod cannot contact the control // plane. message PodStatus { + // If set, this represents the .metadata.generation that the pod status was set based upon. + // This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field. + // +featureGate=PodObservedGenerationTracking + // +optional + optional int64 observedGeneration = 17; + // The phase of a Pod is a simple, high-level summary of where the Pod is in its lifecycle. // The conditions array, the reason and message fields, and the individual container status // arrays contain more detail about the pod's status. @@ -4618,6 +4659,9 @@ message PodStatus { // Status of resources resize desired for pod's containers. // It is empty if no resources resize is pending. // Any changes to container resources will automatically set this to "Proposed" + // Deprecated: Resize status is moved to two pod conditions PodResizePending and PodResizeInProgress. + // PodResizePending will track states where the spec has been resized, but the Kubelet has not yet allocated the resources. + // PodResizeInProgress will track in-progress resizes, and should be present whenever allocated resources != acknowledged resources. // +featureGate=InPlacePodVerticalScaling // +optional optional string resize = 14; @@ -5063,12 +5107,18 @@ message ReplicationControllerSpec { // Defaults to 1. // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#what-is-a-replicationcontroller // +optional + // +k8s:optional + // +default=1 + // +k8s:minimum=0 optional int32 replicas = 1; // Minimum number of seconds for which a newly created pod should be ready // without any of its container crashing, for it to be considered available. // Defaults to 0 (pod will be considered available as soon as it is ready) // +optional + // +k8s:optional + // +default=0 + // +k8s:minimum=0 optional int32 minReadySeconds = 4; // Selector is a label query over pods that should match the Replicas count. @@ -6110,13 +6160,12 @@ message ServiceSpec { // +optional optional string internalTrafficPolicy = 22; - // TrafficDistribution offers a way to express preferences for how traffic is - // distributed to Service endpoints. Implementations can use this field as a - // hint, but are not required to guarantee strict adherence. If the field is - // not set, the implementation will apply its default routing strategy. If set - // to "PreferClose", implementations should prioritize endpoints that are - // topologically close (e.g., same zone). - // This is a beta field and requires enabling ServiceTrafficDistribution feature. + // TrafficDistribution offers a way to express preferences for how traffic + // is distributed to Service endpoints. Implementations can use this field + // as a hint, but are not required to guarantee strict adherence. If the + // field is not set, the implementation will apply its default routing + // strategy. If set to "PreferClose", implementations should prioritize + // endpoints that are in the same zone. // +featureGate=ServiceTrafficDistribution // +optional optional string trafficDistribution = 23; @@ -6411,7 +6460,6 @@ message TopologySpreadConstraint { // - Ignore: nodeAffinity/nodeSelector are ignored. All nodes are included in the calculations. // // If this value is nil, the behavior is equivalent to the Honor policy. - // This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag. // +optional optional string nodeAffinityPolicy = 6; @@ -6422,7 +6470,6 @@ message TopologySpreadConstraint { // - Ignore: node taints are ignored. All nodes are included. // // If this value is nil, the behavior is equivalent to the Ignore policy. - // This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag. // +optional optional string nodeTaintsPolicy = 7; @@ -6854,7 +6901,7 @@ message VolumeSource { // The types of objects that may be mounted by this volume are defined by the container runtime implementation on a host machine and at minimum must include all valid types supported by the container image field. // The OCI object gets mounted in a single directory (spec.containers[*].volumeMounts.mountPath) by merging the manifest layers in the same way as for container images. // The volume will be mounted read-only (ro) and non-executable files (noexec). - // Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath). + // Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath) before 1.33. // The field spec.securityContext.fsGroupChangePolicy has no effect on this volume type. // +featureGate=ImageVolume // +optional diff --git a/vendor/k8s.io/api/core/v1/lifecycle.go b/vendor/k8s.io/api/core/v1/lifecycle.go index 21ca90e815..21b931b67a 100644 --- a/vendor/k8s.io/api/core/v1/lifecycle.go +++ b/vendor/k8s.io/api/core/v1/lifecycle.go @@ -16,6 +16,10 @@ limitations under the License. package v1 +import ( + "k8s.io/apimachinery/pkg/runtime/schema" +) + // APILifecycleIntroduced returns the release in which the API struct was introduced as int versions of major and minor for comparison. func (in *ComponentStatus) APILifecycleIntroduced() (major, minor int) { return 1, 0 @@ -35,3 +39,23 @@ func (in *ComponentStatusList) APILifecycleIntroduced() (major, minor int) { func (in *ComponentStatusList) APILifecycleDeprecated() (major, minor int) { return 1, 19 } + +// APILifecycleDeprecated returns the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +func (in *Endpoints) APILifecycleDeprecated() (major, minor int) { + return 1, 33 +} + +// APILifecycleReplacement returns the GVK of the replacement for the given API +func (in *Endpoints) APILifecycleReplacement() schema.GroupVersionKind { + return schema.GroupVersionKind{Group: "discovery.k8s.io", Version: "v1", Kind: "EndpointSlice"} +} + +// APILifecycleDeprecated returns the release in which the API struct was or will be deprecated as int versions of major and minor for comparison. +func (in *EndpointsList) APILifecycleDeprecated() (major, minor int) { + return 1, 33 +} + +// APILifecycleReplacement returns the GVK of the replacement for the given API +func (in *EndpointsList) APILifecycleReplacement() schema.GroupVersionKind { + return schema.GroupVersionKind{Group: "discovery.k8s.io", Version: "v1", Kind: "EndpointSliceList"} +} diff --git a/vendor/k8s.io/api/core/v1/types.go b/vendor/k8s.io/api/core/v1/types.go index fb2c1c7453..f7641e485a 100644 --- a/vendor/k8s.io/api/core/v1/types.go +++ b/vendor/k8s.io/api/core/v1/types.go @@ -217,7 +217,7 @@ type VolumeSource struct { // The types of objects that may be mounted by this volume are defined by the container runtime implementation on a host machine and at minimum must include all valid types supported by the container image field. // The OCI object gets mounted in a single directory (spec.containers[*].volumeMounts.mountPath) by merging the manifest layers in the same way as for container images. // The volume will be mounted read-only (ro) and non-executable files (noexec). - // Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath). + // Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath) before 1.33. // The field spec.securityContext.fsGroupChangePolicy has no effect on this volume type. // +featureGate=ImageVolume // +optional @@ -2437,9 +2437,9 @@ type SecretKeySelector struct { Optional *bool `json:"optional,omitempty" protobuf:"varint,3,opt,name=optional"` } -// EnvFromSource represents the source of a set of ConfigMaps +// EnvFromSource represents the source of a set of ConfigMaps or Secrets type EnvFromSource struct { - // An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER. + // Optional text to prepend to the name of each environment variable. Must be a C_IDENTIFIER. // +optional Prefix string `json:"prefix,omitempty" protobuf:"bytes,1,opt,name=prefix"` // The ConfigMap to select from @@ -2980,6 +2980,78 @@ type LifecycleHandler struct { Sleep *SleepAction `json:"sleep,omitempty" protobuf:"bytes,4,opt,name=sleep"` } +// Signal defines the stop signal of containers +// +enum +type Signal string + +const ( + SIGABRT Signal = "SIGABRT" + SIGALRM Signal = "SIGALRM" + SIGBUS Signal = "SIGBUS" + SIGCHLD Signal = "SIGCHLD" + SIGCLD Signal = "SIGCLD" + SIGCONT Signal = "SIGCONT" + SIGFPE Signal = "SIGFPE" + SIGHUP Signal = "SIGHUP" + SIGILL Signal = "SIGILL" + SIGINT Signal = "SIGINT" + SIGIO Signal = "SIGIO" + SIGIOT Signal = "SIGIOT" + SIGKILL Signal = "SIGKILL" + SIGPIPE Signal = "SIGPIPE" + SIGPOLL Signal = "SIGPOLL" + SIGPROF Signal = "SIGPROF" + SIGPWR Signal = "SIGPWR" + SIGQUIT Signal = "SIGQUIT" + SIGSEGV Signal = "SIGSEGV" + SIGSTKFLT Signal = "SIGSTKFLT" + SIGSTOP Signal = "SIGSTOP" + SIGSYS Signal = "SIGSYS" + SIGTERM Signal = "SIGTERM" + SIGTRAP Signal = "SIGTRAP" + SIGTSTP Signal = "SIGTSTP" + SIGTTIN Signal = "SIGTTIN" + SIGTTOU Signal = "SIGTTOU" + SIGURG Signal = "SIGURG" + SIGUSR1 Signal = "SIGUSR1" + SIGUSR2 Signal = "SIGUSR2" + SIGVTALRM Signal = "SIGVTALRM" + SIGWINCH Signal = "SIGWINCH" + SIGXCPU Signal = "SIGXCPU" + SIGXFSZ Signal = "SIGXFSZ" + SIGRTMIN Signal = "SIGRTMIN" + SIGRTMINPLUS1 Signal = "SIGRTMIN+1" + SIGRTMINPLUS2 Signal = "SIGRTMIN+2" + SIGRTMINPLUS3 Signal = "SIGRTMIN+3" + SIGRTMINPLUS4 Signal = "SIGRTMIN+4" + SIGRTMINPLUS5 Signal = "SIGRTMIN+5" + SIGRTMINPLUS6 Signal = "SIGRTMIN+6" + SIGRTMINPLUS7 Signal = "SIGRTMIN+7" + SIGRTMINPLUS8 Signal = "SIGRTMIN+8" + SIGRTMINPLUS9 Signal = "SIGRTMIN+9" + SIGRTMINPLUS10 Signal = "SIGRTMIN+10" + SIGRTMINPLUS11 Signal = "SIGRTMIN+11" + SIGRTMINPLUS12 Signal = "SIGRTMIN+12" + SIGRTMINPLUS13 Signal = "SIGRTMIN+13" + SIGRTMINPLUS14 Signal = "SIGRTMIN+14" + SIGRTMINPLUS15 Signal = "SIGRTMIN+15" + SIGRTMAXMINUS14 Signal = "SIGRTMAX-14" + SIGRTMAXMINUS13 Signal = "SIGRTMAX-13" + SIGRTMAXMINUS12 Signal = "SIGRTMAX-12" + SIGRTMAXMINUS11 Signal = "SIGRTMAX-11" + SIGRTMAXMINUS10 Signal = "SIGRTMAX-10" + SIGRTMAXMINUS9 Signal = "SIGRTMAX-9" + SIGRTMAXMINUS8 Signal = "SIGRTMAX-8" + SIGRTMAXMINUS7 Signal = "SIGRTMAX-7" + SIGRTMAXMINUS6 Signal = "SIGRTMAX-6" + SIGRTMAXMINUS5 Signal = "SIGRTMAX-5" + SIGRTMAXMINUS4 Signal = "SIGRTMAX-4" + SIGRTMAXMINUS3 Signal = "SIGRTMAX-3" + SIGRTMAXMINUS2 Signal = "SIGRTMAX-2" + SIGRTMAXMINUS1 Signal = "SIGRTMAX-1" + SIGRTMAX Signal = "SIGRTMAX" +) + // Lifecycle describes actions that the management system should take in response to container lifecycle // events. For the PostStart and PreStop lifecycle handlers, management of the container blocks // until the action is complete, unless the container process fails, in which case the handler is aborted. @@ -3001,6 +3073,11 @@ type Lifecycle struct { // More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks // +optional PreStop *LifecycleHandler `json:"preStop,omitempty" protobuf:"bytes,2,opt,name=preStop"` + // StopSignal defines which signal will be sent to a container when it is being stopped. + // If not specified, the default is defined by the container runtime in use. + // StopSignal can only be set for Pods with a non-empty .spec.os.name + // +optional + StopSignal *Signal `json:"stopSignal,omitempty" protobuf:"bytes,3,opt,name=stopSignal"` } type ConditionStatus string @@ -3154,6 +3231,10 @@ type ContainerStatus struct { // +listType=map // +listMapKey=name AllocatedResourcesStatus []ResourceStatus `json:"allocatedResourcesStatus,omitempty" patchStrategy:"merge" patchMergeKey:"name" protobuf:"bytes,14,rep,name=allocatedResourcesStatus"` + // StopSignal reports the effective stop signal for this container + // +featureGate=ContainerStopSignals + // +optional + StopSignal *Signal `json:"stopSignal,omitempty" protobuf:"bytes,15,opt,name=stopSignal"` } // ResourceStatus represents the status of a single resource allocated to a Pod. @@ -3278,6 +3359,17 @@ const ( // PodReadyToStartContainers pod sandbox is successfully configured and // the pod is ready to launch containers. PodReadyToStartContainers PodConditionType = "PodReadyToStartContainers" + // PodResizePending indicates that the pod has been resized, but kubelet has not + // yet allocated the resources. If both PodResizePending and PodResizeInProgress + // are set, it means that a new resize was requested in the middle of a previous + // pod resize that is still in progress. + PodResizePending PodConditionType = "PodResizePending" + // PodResizeInProgress indicates that a resize is in progress, and is present whenever + // the Kubelet has allocated resources for the resize, but has not yet actuated all of + // the required changes. + // If both PodResizePending and PodResizeInProgress are set, it means that a new resize was + // requested in the middle of a previous pod resize that is still in progress. + PodResizeInProgress PodConditionType = "PodResizeInProgress" ) // These are reasons for a pod's transition to a condition. @@ -3301,6 +3393,18 @@ const ( // PodReasonPreemptionByScheduler reason in DisruptionTarget pod condition indicates that the // disruption was initiated by scheduler's preemption. PodReasonPreemptionByScheduler = "PreemptionByScheduler" + + // PodReasonDeferred reason in PodResizePending pod condition indicates the proposed resize is feasible in + // theory (it fits on this node) but is not possible right now. + PodReasonDeferred = "Deferred" + + // PodReasonInfeasible reason in PodResizePending pod condition indicates the proposed resize is not + // feasible and is rejected; it may not be re-evaluated + PodReasonInfeasible = "Infeasible" + + // PodReasonError reason in PodResizeInProgress pod condition indicates that an error occurred while + // actuating the resize. + PodReasonError = "Error" ) // PodCondition contains details for the current condition of this pod. @@ -3308,6 +3412,11 @@ type PodCondition struct { // Type is the type of the condition. // More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions Type PodConditionType `json:"type" protobuf:"bytes,1,opt,name=type,casttype=PodConditionType"` + // If set, this represents the .metadata.generation that the pod condition was set based upon. + // This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field. + // +featureGate=PodObservedGenerationTracking + // +optional + ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,7,opt,name=observedGeneration"` // Status is the status of the condition. // Can be True, False, Unknown. // More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions @@ -3326,12 +3435,10 @@ type PodCondition struct { Message string `json:"message,omitempty" protobuf:"bytes,6,opt,name=message"` } -// PodResizeStatus shows status of desired resize of a pod's containers. +// Deprecated: PodResizeStatus shows status of desired resize of a pod's containers. type PodResizeStatus string const ( - // Pod resources resize has been requested and will be evaluated by node. - PodResizeStatusProposed PodResizeStatus = "Proposed" // Pod resources resize has been accepted by node and is being actuated. PodResizeStatusInProgress PodResizeStatus = "InProgress" // Node cannot resize the pod at this time and will keep retrying. @@ -3627,7 +3734,6 @@ type PodAffinityTerm struct { // pod labels will be ignored. The default value is empty. // The same key is forbidden to exist in both matchLabelKeys and labelSelector. // Also, matchLabelKeys cannot be set when labelSelector isn't set. - // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). // // +listType=atomic // +optional @@ -3640,7 +3746,6 @@ type PodAffinityTerm struct { // pod labels will be ignored. The default value is empty. // The same key is forbidden to exist in both mismatchLabelKeys and labelSelector. // Also, mismatchLabelKeys cannot be set when labelSelector isn't set. - // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). // // +listType=atomic // +optional @@ -3792,7 +3897,7 @@ type PodSpec struct { // Init containers may not have Lifecycle actions, Readiness probes, Liveness probes, or Startup probes. // The resourceRequirements of an init container are taken into account during scheduling // by finding the highest request/limit for each resource type, and then using the max of - // of that value or the sum of the normal containers. Limits are applied to init containers + // that value or the sum of the normal containers. Limits are applied to init containers // in a similar fashion. // Init containers cannot currently be added or removed. // Cannot be updated. @@ -4301,7 +4406,6 @@ type TopologySpreadConstraint struct { // - Ignore: nodeAffinity/nodeSelector are ignored. All nodes are included in the calculations. // // If this value is nil, the behavior is equivalent to the Honor policy. - // This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag. // +optional NodeAffinityPolicy *NodeInclusionPolicy `json:"nodeAffinityPolicy,omitempty" protobuf:"bytes,6,opt,name=nodeAffinityPolicy"` // NodeTaintsPolicy indicates how we will treat node taints when calculating @@ -4311,7 +4415,6 @@ type TopologySpreadConstraint struct { // - Ignore: node taints are ignored. All nodes are included. // // If this value is nil, the behavior is equivalent to the Ignore policy. - // This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag. // +optional NodeTaintsPolicy *NodeInclusionPolicy `json:"nodeTaintsPolicy,omitempty" protobuf:"bytes,7,opt,name=nodeTaintsPolicy"` // MatchLabelKeys is a set of pod label keys to select the pods over which @@ -4841,6 +4944,11 @@ type EphemeralContainer struct { // state of a system, especially if the node that hosts the pod cannot contact the control // plane. type PodStatus struct { + // If set, this represents the .metadata.generation that the pod status was set based upon. + // This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field. + // +featureGate=PodObservedGenerationTracking + // +optional + ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,17,opt,name=observedGeneration"` // The phase of a Pod is a simple, high-level summary of where the Pod is in its lifecycle. // The conditions array, the reason and message fields, and the individual container status // arrays contain more detail about the pod's status. @@ -4968,6 +5076,9 @@ type PodStatus struct { // Status of resources resize desired for pod's containers. // It is empty if no resources resize is pending. // Any changes to container resources will automatically set this to "Proposed" + // Deprecated: Resize status is moved to two pod conditions PodResizePending and PodResizeInProgress. + // PodResizePending will track states where the spec has been resized, but the Kubelet has not yet allocated the resources. + // PodResizeInProgress will track in-progress resizes, and should be present whenever allocated resources != acknowledged resources. // +featureGate=InPlacePodVerticalScaling // +optional Resize PodResizeStatus `json:"resize,omitempty" protobuf:"bytes,14,opt,name=resize,casttype=PodResizeStatus"` @@ -5099,12 +5210,18 @@ type ReplicationControllerSpec struct { // Defaults to 1. // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#what-is-a-replicationcontroller // +optional + // +k8s:optional + // +default=1 + // +k8s:minimum=0 Replicas *int32 `json:"replicas,omitempty" protobuf:"varint,1,opt,name=replicas"` // Minimum number of seconds for which a newly created pod should be ready // without any of its container crashing, for it to be considered available. // Defaults to 0 (pod will be considered available as soon as it is ready) // +optional + // +k8s:optional + // +default=0 + // +k8s:minimum=0 MinReadySeconds int32 `json:"minReadySeconds,omitempty" protobuf:"varint,4,opt,name=minReadySeconds"` // Selector is a label query over pods that should match the Replicas count. @@ -5334,14 +5451,27 @@ const ( // These are valid values for the TrafficDistribution field of a Service. const ( - // Indicates a preference for routing traffic to endpoints that are - // topologically proximate to the client. The interpretation of "topologically - // proximate" may vary across implementations and could encompass endpoints - // within the same node, rack, zone, or even region. Setting this value gives - // implementations permission to make different tradeoffs, e.g. optimizing for - // proximity rather than equal distribution of load. Users should not set this - // value if such tradeoffs are not acceptable. + // Indicates a preference for routing traffic to endpoints that are in the same + // zone as the client. Users should not set this value unless they have ensured + // that clients and endpoints are distributed in such a way that the "same zone" + // preference will not result in endpoints getting overloaded. ServiceTrafficDistributionPreferClose = "PreferClose" + + // Indicates a preference for routing traffic to endpoints that are in the same + // zone as the client. Users should not set this value unless they have ensured + // that clients and endpoints are distributed in such a way that the "same zone" + // preference will not result in endpoints getting overloaded. + // This is an alias for "PreferClose", but it is an Alpha feature and is only + // recognized if the PreferSameTrafficDistribution feature gate is enabled. + ServiceTrafficDistributionPreferSameZone = "PreferSameZone" + + // Indicates a preference for routing traffic to endpoints that are on the same + // node as the client. Users should not set this value unless they have ensured + // that clients and endpoints are distributed in such a way that the "same node" + // preference will not result in endpoints getting overloaded. + // This is an Alpha feature and is only recognized if the + // PreferSameTrafficDistribution feature gate is enabled. + ServiceTrafficDistributionPreferSameNode = "PreferSameNode" ) // These are the valid conditions of a service. @@ -5689,13 +5819,12 @@ type ServiceSpec struct { // +optional InternalTrafficPolicy *ServiceInternalTrafficPolicy `json:"internalTrafficPolicy,omitempty" protobuf:"bytes,22,opt,name=internalTrafficPolicy"` - // TrafficDistribution offers a way to express preferences for how traffic is - // distributed to Service endpoints. Implementations can use this field as a - // hint, but are not required to guarantee strict adherence. If the field is - // not set, the implementation will apply its default routing strategy. If set - // to "PreferClose", implementations should prioritize endpoints that are - // topologically close (e.g., same zone). - // This is a beta field and requires enabling ServiceTrafficDistribution feature. + // TrafficDistribution offers a way to express preferences for how traffic + // is distributed to Service endpoints. Implementations can use this field + // as a hint, but are not required to guarantee strict adherence. If the + // field is not set, the implementation will apply its default routing + // strategy. If set to "PreferClose", implementations should prioritize + // endpoints that are in the same zone. // +featureGate=ServiceTrafficDistribution // +optional TrafficDistribution *string `json:"trafficDistribution,omitempty" protobuf:"bytes,23,opt,name=trafficDistribution"` @@ -5888,6 +6017,11 @@ type ServiceAccountList struct { // Ports: [{"name": "a", "port": 93}, {"name": "b", "port": 76}] // }, // ] +// +// Endpoints is a legacy API and does not contain information about all Service features. +// Use discoveryv1.EndpointSlice for complete information about Service endpoints. +// +// Deprecated: This API is deprecated in v1.33+. Use discoveryv1.EndpointSlice. type Endpoints struct { metav1.TypeMeta `json:",inline"` // Standard object's metadata. @@ -5920,6 +6054,8 @@ type Endpoints struct { // // a: [ 10.10.1.1:8675, 10.10.2.2:8675 ], // b: [ 10.10.1.1:309, 10.10.2.2:309 ] +// +// Deprecated: This API is deprecated in v1.33+. type EndpointSubset struct { // IP addresses which offer the related ports that are marked as ready. These endpoints // should be considered safe for load balancers and clients to utilize. @@ -5939,6 +6075,7 @@ type EndpointSubset struct { } // EndpointAddress is a tuple that describes single IP address. +// Deprecated: This API is deprecated in v1.33+. // +structType=atomic type EndpointAddress struct { // The IP of this endpoint. @@ -5957,6 +6094,7 @@ type EndpointAddress struct { } // EndpointPort is a tuple that describes a single port. +// Deprecated: This API is deprecated in v1.33+. // +structType=atomic type EndpointPort struct { // The name of this port. This must match the 'name' field in the @@ -5998,6 +6136,7 @@ type EndpointPort struct { // +k8s:prerelease-lifecycle-gen:introduced=1.0 // EndpointsList is a list of endpoints. +// Deprecated: This API is deprecated in v1.33+. type EndpointsList struct { metav1.TypeMeta `json:",inline"` // Standard list metadata. @@ -6166,6 +6305,15 @@ type NodeSystemInfo struct { OperatingSystem string `json:"operatingSystem" protobuf:"bytes,9,opt,name=operatingSystem"` // The Architecture reported by the node Architecture string `json:"architecture" protobuf:"bytes,10,opt,name=architecture"` + // Swap Info reported by the node. + Swap *NodeSwapStatus `json:"swap,omitempty" protobuf:"bytes,11,opt,name=swap"` +} + +// NodeSwapStatus represents swap memory information. +type NodeSwapStatus struct { + // Total amount of swap memory in bytes. + // +optional + Capacity *int64 `json:"capacity,omitempty" protobuf:"varint,1,opt,name=capacity"` } // NodeConfigStatus describes the status of the config assigned by Node.Spec.ConfigSource. @@ -7267,6 +7415,9 @@ const ( ResourceQuotaScopePriorityClass ResourceQuotaScope = "PriorityClass" // Match all pod objects that have cross-namespace pod (anti)affinity mentioned. ResourceQuotaScopeCrossNamespacePodAffinity ResourceQuotaScope = "CrossNamespacePodAffinity" + + // Match all pvc objects that have volume attributes class mentioned. + ResourceQuotaScopeVolumeAttributesClass ResourceQuotaScope = "VolumeAttributesClass" ) // ResourceQuotaSpec defines the desired hard limits to enforce for Quota. diff --git a/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go index 89ce3d2303..9e987eefdd 100644 --- a/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go @@ -474,6 +474,7 @@ var map_ContainerStatus = map[string]string{ "volumeMounts": "Status of volume mounts.", "user": "User represents user identity information initially attached to the first process of the container", "allocatedResourcesStatus": "AllocatedResourcesStatus represents the status of various resources allocated for this Pod.", + "stopSignal": "StopSignal reports the effective stop signal for this container", } func (ContainerStatus) SwaggerDoc() map[string]string { @@ -540,7 +541,7 @@ func (EmptyDirVolumeSource) SwaggerDoc() map[string]string { } var map_EndpointAddress = map[string]string{ - "": "EndpointAddress is a tuple that describes single IP address.", + "": "EndpointAddress is a tuple that describes single IP address. Deprecated: This API is deprecated in v1.33+.", "ip": "The IP of this endpoint. May not be loopback (127.0.0.0/8 or ::1), link-local (169.254.0.0/16 or fe80::/10), or link-local multicast (224.0.0.0/24 or ff02::/16).", "hostname": "The Hostname of this endpoint", "nodeName": "Optional: Node hosting this endpoint. This can be used to determine endpoints local to a node.", @@ -552,7 +553,7 @@ func (EndpointAddress) SwaggerDoc() map[string]string { } var map_EndpointPort = map[string]string{ - "": "EndpointPort is a tuple that describes a single port.", + "": "EndpointPort is a tuple that describes a single port. Deprecated: This API is deprecated in v1.33+.", "name": "The name of this port. This must match the 'name' field in the corresponding ServicePort. Must be a DNS_LABEL. Optional only if one port is defined.", "port": "The port number of the endpoint.", "protocol": "The IP protocol for this port. Must be UDP, TCP, or SCTP. Default is TCP.", @@ -564,7 +565,7 @@ func (EndpointPort) SwaggerDoc() map[string]string { } var map_EndpointSubset = map[string]string{ - "": "EndpointSubset is a group of addresses with a common set of ports. The expanded set of endpoints is the Cartesian product of Addresses x Ports. For example, given:\n\n\t{\n\t Addresses: [{\"ip\": \"10.10.1.1\"}, {\"ip\": \"10.10.2.2\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 8675}, {\"name\": \"b\", \"port\": 309}]\n\t}\n\nThe resulting set of endpoints can be viewed as:\n\n\ta: [ 10.10.1.1:8675, 10.10.2.2:8675 ],\n\tb: [ 10.10.1.1:309, 10.10.2.2:309 ]", + "": "EndpointSubset is a group of addresses with a common set of ports. The expanded set of endpoints is the Cartesian product of Addresses x Ports. For example, given:\n\n\t{\n\t Addresses: [{\"ip\": \"10.10.1.1\"}, {\"ip\": \"10.10.2.2\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 8675}, {\"name\": \"b\", \"port\": 309}]\n\t}\n\nThe resulting set of endpoints can be viewed as:\n\n\ta: [ 10.10.1.1:8675, 10.10.2.2:8675 ],\n\tb: [ 10.10.1.1:309, 10.10.2.2:309 ]\n\nDeprecated: This API is deprecated in v1.33+.", "addresses": "IP addresses which offer the related ports that are marked as ready. These endpoints should be considered safe for load balancers and clients to utilize.", "notReadyAddresses": "IP addresses which offer the related ports but are not currently marked as ready because they have not yet finished starting, have recently failed a readiness check, or have recently failed a liveness check.", "ports": "Port numbers available on the related IP addresses.", @@ -575,7 +576,7 @@ func (EndpointSubset) SwaggerDoc() map[string]string { } var map_Endpoints = map[string]string{ - "": "Endpoints is a collection of endpoints that implement the actual service. Example:\n\n\t Name: \"mysvc\",\n\t Subsets: [\n\t {\n\t Addresses: [{\"ip\": \"10.10.1.1\"}, {\"ip\": \"10.10.2.2\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 8675}, {\"name\": \"b\", \"port\": 309}]\n\t },\n\t {\n\t Addresses: [{\"ip\": \"10.10.3.3\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 93}, {\"name\": \"b\", \"port\": 76}]\n\t },\n\t]", + "": "Endpoints is a collection of endpoints that implement the actual service. Example:\n\n\t Name: \"mysvc\",\n\t Subsets: [\n\t {\n\t Addresses: [{\"ip\": \"10.10.1.1\"}, {\"ip\": \"10.10.2.2\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 8675}, {\"name\": \"b\", \"port\": 309}]\n\t },\n\t {\n\t Addresses: [{\"ip\": \"10.10.3.3\"}],\n\t Ports: [{\"name\": \"a\", \"port\": 93}, {\"name\": \"b\", \"port\": 76}]\n\t },\n\t]\n\nEndpoints is a legacy API and does not contain information about all Service features. Use discoveryv1.EndpointSlice for complete information about Service endpoints.\n\nDeprecated: This API is deprecated in v1.33+. Use discoveryv1.EndpointSlice.", "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", "subsets": "The set of all endpoints is the union of all subsets. Addresses are placed into subsets according to the IPs they share. A single address with multiple ports, some of which are ready and some of which are not (because they come from different containers) will result in the address being displayed in different subsets for the different ports. No address will appear in both Addresses and NotReadyAddresses in the same subset. Sets of addresses and ports that comprise a service.", } @@ -585,7 +586,7 @@ func (Endpoints) SwaggerDoc() map[string]string { } var map_EndpointsList = map[string]string{ - "": "EndpointsList is a list of endpoints.", + "": "EndpointsList is a list of endpoints. Deprecated: This API is deprecated in v1.33+.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", "items": "List of endpoints.", } @@ -595,8 +596,8 @@ func (EndpointsList) SwaggerDoc() map[string]string { } var map_EnvFromSource = map[string]string{ - "": "EnvFromSource represents the source of a set of ConfigMaps", - "prefix": "An optional identifier to prepend to each key in the ConfigMap. Must be a C_IDENTIFIER.", + "": "EnvFromSource represents the source of a set of ConfigMaps or Secrets", + "prefix": "Optional text to prepend to the name of each environment variable. Must be a C_IDENTIFIER.", "configMapRef": "The ConfigMap to select from", "secretRef": "The Secret to select from", } @@ -957,9 +958,10 @@ func (KeyToPath) SwaggerDoc() map[string]string { } var map_Lifecycle = map[string]string{ - "": "Lifecycle describes actions that the management system should take in response to container lifecycle events. For the PostStart and PreStop lifecycle handlers, management of the container blocks until the action is complete, unless the container process fails, in which case the handler is aborted.", - "postStart": "PostStart is called immediately after a container is created. If the handler fails, the container is terminated and restarted according to its restart policy. Other management of the container blocks until the hook completes. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", - "preStop": "PreStop is called immediately before a container is terminated due to an API request or management event such as liveness/startup probe failure, preemption, resource contention, etc. The handler is not called if the container crashes or exits. The Pod's termination grace period countdown begins before the PreStop hook is executed. Regardless of the outcome of the handler, the container will eventually terminate within the Pod's termination grace period (unless delayed by finalizers). Other management of the container blocks until the hook completes or until the termination grace period is reached. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", + "": "Lifecycle describes actions that the management system should take in response to container lifecycle events. For the PostStart and PreStop lifecycle handlers, management of the container blocks until the action is complete, unless the container process fails, in which case the handler is aborted.", + "postStart": "PostStart is called immediately after a container is created. If the handler fails, the container is terminated and restarted according to its restart policy. Other management of the container blocks until the hook completes. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", + "preStop": "PreStop is called immediately before a container is terminated due to an API request or management event such as liveness/startup probe failure, preemption, resource contention, etc. The handler is not called if the container crashes or exits. The Pod's termination grace period countdown begins before the PreStop hook is executed. Regardless of the outcome of the handler, the container will eventually terminate within the Pod's termination grace period (unless delayed by finalizers). Other management of the container blocks until the hook completes or until the termination grace period is reached. More info: https://kubernetes.io/docs/concepts/containers/container-lifecycle-hooks/#container-hooks", + "stopSignal": "StopSignal defines which signal will be sent to a container when it is being stopped. If not specified, the default is defined by the container runtime in use. StopSignal can only be set for Pods with a non-empty .spec.os.name", } func (Lifecycle) SwaggerDoc() map[string]string { @@ -1335,6 +1337,15 @@ func (NodeStatus) SwaggerDoc() map[string]string { return map_NodeStatus } +var map_NodeSwapStatus = map[string]string{ + "": "NodeSwapStatus represents swap memory information.", + "capacity": "Total amount of swap memory in bytes.", +} + +func (NodeSwapStatus) SwaggerDoc() map[string]string { + return map_NodeSwapStatus +} + var map_NodeSystemInfo = map[string]string{ "": "NodeSystemInfo is a set of ids/uuids to uniquely identify the node.", "machineID": "MachineID reported by the node. For unique machine identification in the cluster this field is preferred. Learn more from man(5) machine-id: http://man7.org/linux/man-pages/man5/machine-id.5.html", @@ -1347,6 +1358,7 @@ var map_NodeSystemInfo = map[string]string{ "kubeProxyVersion": "Deprecated: KubeProxy Version reported by the node.", "operatingSystem": "The Operating System reported by the node", "architecture": "The Architecture reported by the node", + "swap": "Swap Info reported by the node.", } func (NodeSystemInfo) SwaggerDoc() map[string]string { @@ -1583,8 +1595,8 @@ var map_PodAffinityTerm = map[string]string{ "namespaces": "namespaces specifies a static list of namespace names that the term applies to. The term is applied to the union of the namespaces listed in this field and the ones selected by namespaceSelector. null or empty namespaces list and null namespaceSelector means \"this pod's namespace\".", "topologyKey": "This pod should be co-located (affinity) or not co-located (anti-affinity) with the pods matching the labelSelector in the specified namespaces, where co-located is defined as running on a node whose value of the label with key topologyKey matches that of any node on which any of the selected pods is running. Empty topologyKey is not allowed.", "namespaceSelector": "A label query over the set of namespaces that the term applies to. The term is applied to the union of the namespaces selected by this field and the ones listed in the namespaces field. null selector and null or empty namespaces list means \"this pod's namespace\". An empty selector ({}) matches all namespaces.", - "matchLabelKeys": "MatchLabelKeys is a set of pod label keys to select which pods will be taken into consideration. The keys are used to lookup values from the incoming pod labels, those key-value labels are merged with `labelSelector` as `key in (value)` to select the group of existing pods which pods will be taken into consideration for the incoming pod's pod (anti) affinity. Keys that don't exist in the incoming pod labels will be ignored. The default value is empty. The same key is forbidden to exist in both matchLabelKeys and labelSelector. Also, matchLabelKeys cannot be set when labelSelector isn't set. This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default).", - "mismatchLabelKeys": "MismatchLabelKeys is a set of pod label keys to select which pods will be taken into consideration. The keys are used to lookup values from the incoming pod labels, those key-value labels are merged with `labelSelector` as `key notin (value)` to select the group of existing pods which pods will be taken into consideration for the incoming pod's pod (anti) affinity. Keys that don't exist in the incoming pod labels will be ignored. The default value is empty. The same key is forbidden to exist in both mismatchLabelKeys and labelSelector. Also, mismatchLabelKeys cannot be set when labelSelector isn't set. This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default).", + "matchLabelKeys": "MatchLabelKeys is a set of pod label keys to select which pods will be taken into consideration. The keys are used to lookup values from the incoming pod labels, those key-value labels are merged with `labelSelector` as `key in (value)` to select the group of existing pods which pods will be taken into consideration for the incoming pod's pod (anti) affinity. Keys that don't exist in the incoming pod labels will be ignored. The default value is empty. The same key is forbidden to exist in both matchLabelKeys and labelSelector. Also, matchLabelKeys cannot be set when labelSelector isn't set.", + "mismatchLabelKeys": "MismatchLabelKeys is a set of pod label keys to select which pods will be taken into consideration. The keys are used to lookup values from the incoming pod labels, those key-value labels are merged with `labelSelector` as `key notin (value)` to select the group of existing pods which pods will be taken into consideration for the incoming pod's pod (anti) affinity. Keys that don't exist in the incoming pod labels will be ignored. The default value is empty. The same key is forbidden to exist in both mismatchLabelKeys and labelSelector. Also, mismatchLabelKeys cannot be set when labelSelector isn't set.", } func (PodAffinityTerm) SwaggerDoc() map[string]string { @@ -1617,6 +1629,7 @@ func (PodAttachOptions) SwaggerDoc() map[string]string { var map_PodCondition = map[string]string{ "": "PodCondition contains details for the current condition of this pod.", "type": "Type is the type of the condition. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions", + "observedGeneration": "If set, this represents the .metadata.generation that the pod condition was set based upon. This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field.", "status": "Status is the status of the condition. Can be True, False, Unknown. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions", "lastProbeTime": "Last time we probed the condition.", "lastTransitionTime": "Last time the condition transitioned from one status to another.", @@ -1799,7 +1812,7 @@ func (PodSignature) SwaggerDoc() map[string]string { var map_PodSpec = map[string]string{ "": "PodSpec is a description of a pod.", "volumes": "List of volumes that can be mounted by containers belonging to the pod. More info: https://kubernetes.io/docs/concepts/storage/volumes", - "initContainers": "List of initialization containers belonging to the pod. Init containers are executed in order prior to containers being started. If any init container fails, the pod is considered to have failed and is handled according to its restartPolicy. The name for an init container or normal container must be unique among all containers. Init containers may not have Lifecycle actions, Readiness probes, Liveness probes, or Startup probes. The resourceRequirements of an init container are taken into account during scheduling by finding the highest request/limit for each resource type, and then using the max of of that value or the sum of the normal containers. Limits are applied to init containers in a similar fashion. Init containers cannot currently be added or removed. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/init-containers/", + "initContainers": "List of initialization containers belonging to the pod. Init containers are executed in order prior to containers being started. If any init container fails, the pod is considered to have failed and is handled according to its restartPolicy. The name for an init container or normal container must be unique among all containers. Init containers may not have Lifecycle actions, Readiness probes, Liveness probes, or Startup probes. The resourceRequirements of an init container are taken into account during scheduling by finding the highest request/limit for each resource type, and then using the max of that value or the sum of the normal containers. Limits are applied to init containers in a similar fashion. Init containers cannot currently be added or removed. Cannot be updated. More info: https://kubernetes.io/docs/concepts/workloads/pods/init-containers/", "containers": "List of containers belonging to the pod. Containers cannot currently be added or removed. There must be at least one container in a Pod. Cannot be updated.", "ephemeralContainers": "List of ephemeral containers run in this pod. Ephemeral containers may be run in an existing pod to perform user-initiated actions such as debugging. This list cannot be specified when creating a pod, and it cannot be modified by updating the pod spec. In order to add an ephemeral container to an existing pod, use the pod's ephemeralcontainers subresource.", "restartPolicy": "Restart policy for all containers within the pod. One of Always, OnFailure, Never. In some contexts, only a subset of those values may be permitted. Default to Always. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle/#restart-policy", @@ -1846,6 +1859,7 @@ func (PodSpec) SwaggerDoc() map[string]string { var map_PodStatus = map[string]string{ "": "PodStatus represents information about the status of a pod. Status may trail the actual state of a system, especially if the node that hosts the pod cannot contact the control plane.", + "observedGeneration": "If set, this represents the .metadata.generation that the pod status was set based upon. This is an alpha field. Enable PodObservedGenerationTracking to be able to use this field.", "phase": "The phase of a Pod is a simple, high-level summary of where the Pod is in its lifecycle. The conditions array, the reason and message fields, and the individual container status arrays contain more detail about the pod's status. There are five possible phase values:\n\nPending: The pod has been accepted by the Kubernetes system, but one or more of the container images has not been created. This includes time before being scheduled as well as time spent downloading images over the network, which could take a while. Running: The pod has been bound to a node, and all of the containers have been created. At least one container is still running, or is in the process of starting or restarting. Succeeded: All containers in the pod have terminated in success, and will not be restarted. Failed: All containers in the pod have terminated, and at least one container has terminated in failure. The container either exited with non-zero status or was terminated by the system. Unknown: For some reason the state of the pod could not be obtained, typically due to an error in communicating with the host of the pod.\n\nMore info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-phase", "conditions": "Current service state of pod. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-conditions", "message": "A human readable message indicating details about why the pod is in this condition.", @@ -1860,7 +1874,7 @@ var map_PodStatus = map[string]string{ "containerStatuses": "Statuses of containers in this pod. Each container in the pod should have at most one status in this list, and all statuses should be for containers in the pod. However this is not enforced. If a status for a non-existent container is present in the list, or the list has duplicate names, the behavior of various Kubernetes components is not defined and those statuses might be ignored. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-and-container-status", "qosClass": "The Quality of Service (QOS) classification assigned to the pod based on resource requirements See PodQOSClass type for available QOS classes More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-qos/#quality-of-service-classes", "ephemeralContainerStatuses": "Statuses for any ephemeral containers that have run in this pod. Each ephemeral container in the pod should have at most one status in this list, and all statuses should be for containers in the pod. However this is not enforced. If a status for a non-existent container is present in the list, or the list has duplicate names, the behavior of various Kubernetes components is not defined and those statuses might be ignored. More info: https://kubernetes.io/docs/concepts/workloads/pods/pod-lifecycle#pod-and-container-status", - "resize": "Status of resources resize desired for pod's containers. It is empty if no resources resize is pending. Any changes to container resources will automatically set this to \"Proposed\"", + "resize": "Status of resources resize desired for pod's containers. It is empty if no resources resize is pending. Any changes to container resources will automatically set this to \"Proposed\" Deprecated: Resize status is moved to two pod conditions PodResizePending and PodResizeInProgress. PodResizePending will track states where the spec has been resized, but the Kubelet has not yet allocated the resources. PodResizeInProgress will track in-progress resizes, and should be present whenever allocated resources != acknowledged resources.", "resourceClaimStatuses": "Status of resource claims.", } @@ -2487,7 +2501,7 @@ var map_ServiceSpec = map[string]string{ "allocateLoadBalancerNodePorts": "allocateLoadBalancerNodePorts defines if NodePorts will be automatically allocated for services with type LoadBalancer. Default is \"true\". It may be set to \"false\" if the cluster load-balancer does not rely on NodePorts. If the caller requests specific NodePorts (by specifying a value), those requests will be respected, regardless of this field. This field may only be set for services with type LoadBalancer and will be cleared if the type is changed to any other type.", "loadBalancerClass": "loadBalancerClass is the class of the load balancer implementation this Service belongs to. If specified, the value of this field must be a label-style identifier, with an optional prefix, e.g. \"internal-vip\" or \"example.com/internal-vip\". Unprefixed names are reserved for end-users. This field can only be set when the Service type is 'LoadBalancer'. If not set, the default load balancer implementation is used, today this is typically done through the cloud provider integration, but should apply for any default implementation. If set, it is assumed that a load balancer implementation is watching for Services with a matching class. Any default load balancer implementation (e.g. cloud providers) should ignore Services that set this field. This field can only be set when creating or updating a Service to type 'LoadBalancer'. Once set, it can not be changed. This field will be wiped when a service is updated to a non 'LoadBalancer' type.", "internalTrafficPolicy": "InternalTrafficPolicy describes how nodes distribute service traffic they receive on the ClusterIP. If set to \"Local\", the proxy will assume that pods only want to talk to endpoints of the service on the same node as the pod, dropping the traffic if there are no local endpoints. The default value, \"Cluster\", uses the standard behavior of routing to all endpoints evenly (possibly modified by topology and other features).", - "trafficDistribution": "TrafficDistribution offers a way to express preferences for how traffic is distributed to Service endpoints. Implementations can use this field as a hint, but are not required to guarantee strict adherence. If the field is not set, the implementation will apply its default routing strategy. If set to \"PreferClose\", implementations should prioritize endpoints that are topologically close (e.g., same zone). This is a beta field and requires enabling ServiceTrafficDistribution feature.", + "trafficDistribution": "TrafficDistribution offers a way to express preferences for how traffic is distributed to Service endpoints. Implementations can use this field as a hint, but are not required to guarantee strict adherence. If the field is not set, the implementation will apply its default routing strategy. If set to \"PreferClose\", implementations should prioritize endpoints that are in the same zone.", } func (ServiceSpec) SwaggerDoc() map[string]string { @@ -2619,8 +2633,8 @@ var map_TopologySpreadConstraint = map[string]string{ "whenUnsatisfiable": "WhenUnsatisfiable indicates how to deal with a pod if it doesn't satisfy the spread constraint. - DoNotSchedule (default) tells the scheduler not to schedule it. - ScheduleAnyway tells the scheduler to schedule the pod in any location,\n but giving higher precedence to topologies that would help reduce the\n skew.\nA constraint is considered \"Unsatisfiable\" for an incoming pod if and only if every possible node assignment for that pod would violate \"MaxSkew\" on some topology. For example, in a 3-zone cluster, MaxSkew is set to 1, and pods with the same labelSelector spread as 3/1/1: ", "labelSelector": "LabelSelector is used to find matching pods. Pods that match this label selector are counted to determine the number of pods in their corresponding topology domain.", "minDomains": "MinDomains indicates a minimum number of eligible domains. When the number of eligible domains with matching topology keys is less than minDomains, Pod Topology Spread treats \"global minimum\" as 0, and then the calculation of Skew is performed. And when the number of eligible domains with matching topology keys equals or greater than minDomains, this value has no effect on scheduling. As a result, when the number of eligible domains is less than minDomains, scheduler won't schedule more than maxSkew Pods to those domains. If value is nil, the constraint behaves as if MinDomains is equal to 1. Valid values are integers greater than 0. When value is not nil, WhenUnsatisfiable must be DoNotSchedule.\n\nFor example, in a 3-zone cluster, MaxSkew is set to 2, MinDomains is set to 5 and pods with the same labelSelector spread as 2/2/2: ", - "nodeAffinityPolicy": "NodeAffinityPolicy indicates how we will treat Pod's nodeAffinity/nodeSelector when calculating pod topology spread skew. Options are: - Honor: only nodes matching nodeAffinity/nodeSelector are included in the calculations. - Ignore: nodeAffinity/nodeSelector are ignored. All nodes are included in the calculations.\n\nIf this value is nil, the behavior is equivalent to the Honor policy. This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag.", - "nodeTaintsPolicy": "NodeTaintsPolicy indicates how we will treat node taints when calculating pod topology spread skew. Options are: - Honor: nodes without taints, along with tainted nodes for which the incoming pod has a toleration, are included. - Ignore: node taints are ignored. All nodes are included.\n\nIf this value is nil, the behavior is equivalent to the Ignore policy. This is a beta-level feature default enabled by the NodeInclusionPolicyInPodTopologySpread feature flag.", + "nodeAffinityPolicy": "NodeAffinityPolicy indicates how we will treat Pod's nodeAffinity/nodeSelector when calculating pod topology spread skew. Options are: - Honor: only nodes matching nodeAffinity/nodeSelector are included in the calculations. - Ignore: nodeAffinity/nodeSelector are ignored. All nodes are included in the calculations.\n\nIf this value is nil, the behavior is equivalent to the Honor policy.", + "nodeTaintsPolicy": "NodeTaintsPolicy indicates how we will treat node taints when calculating pod topology spread skew. Options are: - Honor: nodes without taints, along with tainted nodes for which the incoming pod has a toleration, are included. - Ignore: node taints are ignored. All nodes are included.\n\nIf this value is nil, the behavior is equivalent to the Ignore policy.", "matchLabelKeys": "MatchLabelKeys is a set of pod label keys to select the pods over which spreading will be calculated. The keys are used to lookup values from the incoming pod labels, those key-value labels are ANDed with labelSelector to select the group of existing pods over which spreading will be calculated for the incoming pod. The same key is forbidden to exist in both MatchLabelKeys and LabelSelector. MatchLabelKeys cannot be set when LabelSelector isn't set. Keys that don't exist in the incoming pod labels will be ignored. A null or empty list means only match against labelSelector.\n\nThis is a beta field and requires the MatchLabelKeysInPodTopologySpread feature gate to be enabled (enabled by default).", } @@ -2760,7 +2774,7 @@ var map_VolumeSource = map[string]string{ "storageos": "storageOS represents a StorageOS volume attached and mounted on Kubernetes nodes. Deprecated: StorageOS is deprecated and the in-tree storageos type is no longer supported.", "csi": "csi (Container Storage Interface) represents ephemeral storage that is handled by certain external CSI drivers.", "ephemeral": "ephemeral represents a volume that is handled by a cluster storage driver. The volume's lifecycle is tied to the pod that defines it - it will be created before the pod starts, and deleted when the pod is removed.\n\nUse this if: a) the volume is only needed while the pod runs, b) features of normal volumes like restoring from snapshot or capacity\n tracking are needed,\nc) the storage driver is specified through a storage class, and d) the storage driver supports dynamic volume provisioning through\n a PersistentVolumeClaim (see EphemeralVolumeSource for more\n information on the connection between this volume type\n and PersistentVolumeClaim).\n\nUse PersistentVolumeClaim or one of the vendor-specific APIs for volumes that persist for longer than the lifecycle of an individual pod.\n\nUse CSI for light-weight local ephemeral volumes if the CSI driver is meant to be used that way - see the documentation of the driver for more information.\n\nA pod can use both types of ephemeral volumes and persistent volumes at the same time.", - "image": "image represents an OCI object (a container image or artifact) pulled and mounted on the kubelet's host machine. The volume is resolved at pod startup depending on which PullPolicy value is provided:\n\n- Always: the kubelet always attempts to pull the reference. Container creation will fail If the pull fails. - Never: the kubelet never pulls the reference and only uses a local image or artifact. Container creation will fail if the reference isn't present. - IfNotPresent: the kubelet pulls if the reference isn't already present on disk. Container creation will fail if the reference isn't present and the pull fails.\n\nThe volume gets re-resolved if the pod gets deleted and recreated, which means that new remote content will become available on pod recreation. A failure to resolve or pull the image during pod startup will block containers from starting and may add significant latency. Failures will be retried using normal volume backoff and will be reported on the pod reason and message. The types of objects that may be mounted by this volume are defined by the container runtime implementation on a host machine and at minimum must include all valid types supported by the container image field. The OCI object gets mounted in a single directory (spec.containers[*].volumeMounts.mountPath) by merging the manifest layers in the same way as for container images. The volume will be mounted read-only (ro) and non-executable files (noexec). Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath). The field spec.securityContext.fsGroupChangePolicy has no effect on this volume type.", + "image": "image represents an OCI object (a container image or artifact) pulled and mounted on the kubelet's host machine. The volume is resolved at pod startup depending on which PullPolicy value is provided:\n\n- Always: the kubelet always attempts to pull the reference. Container creation will fail If the pull fails. - Never: the kubelet never pulls the reference and only uses a local image or artifact. Container creation will fail if the reference isn't present. - IfNotPresent: the kubelet pulls if the reference isn't already present on disk. Container creation will fail if the reference isn't present and the pull fails.\n\nThe volume gets re-resolved if the pod gets deleted and recreated, which means that new remote content will become available on pod recreation. A failure to resolve or pull the image during pod startup will block containers from starting and may add significant latency. Failures will be retried using normal volume backoff and will be reported on the pod reason and message. The types of objects that may be mounted by this volume are defined by the container runtime implementation on a host machine and at minimum must include all valid types supported by the container image field. The OCI object gets mounted in a single directory (spec.containers[*].volumeMounts.mountPath) by merging the manifest layers in the same way as for container images. The volume will be mounted read-only (ro) and non-executable files (noexec). Sub path mounts for containers are not supported (spec.containers[*].volumeMounts.subpath) before 1.33. The field spec.securityContext.fsGroupChangePolicy has no effect on this volume type.", } func (VolumeSource) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go b/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go index 3f669092ef..619c525427 100644 --- a/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go @@ -1055,6 +1055,11 @@ func (in *ContainerStatus) DeepCopyInto(out *ContainerStatus) { (*in)[i].DeepCopyInto(&(*out)[i]) } } + if in.StopSignal != nil { + in, out := &in.StopSignal, &out.StopSignal + *out = new(Signal) + **out = **in + } return } @@ -2101,6 +2106,11 @@ func (in *Lifecycle) DeepCopyInto(out *Lifecycle) { *out = new(LifecycleHandler) (*in).DeepCopyInto(*out) } + if in.StopSignal != nil { + in, out := &in.StopSignal, &out.StopSignal + *out = new(Signal) + **out = **in + } return } @@ -3002,7 +3012,7 @@ func (in *NodeStatus) DeepCopyInto(out *NodeStatus) { copy(*out, *in) } out.DaemonEndpoints = in.DaemonEndpoints - out.NodeInfo = in.NodeInfo + in.NodeInfo.DeepCopyInto(&out.NodeInfo) if in.Images != nil { in, out := &in.Images, &out.Images *out = make([]ContainerImage, len(*in)) @@ -3050,9 +3060,35 @@ func (in *NodeStatus) DeepCopy() *NodeStatus { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *NodeSwapStatus) DeepCopyInto(out *NodeSwapStatus) { + *out = *in + if in.Capacity != nil { + in, out := &in.Capacity, &out.Capacity + *out = new(int64) + **out = **in + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NodeSwapStatus. +func (in *NodeSwapStatus) DeepCopy() *NodeSwapStatus { + if in == nil { + return nil + } + out := new(NodeSwapStatus) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *NodeSystemInfo) DeepCopyInto(out *NodeSystemInfo) { *out = *in + if in.Swap != nil { + in, out := &in.Swap, &out.Swap + *out = new(NodeSwapStatus) + (*in).DeepCopyInto(*out) + } return } diff --git a/vendor/k8s.io/api/discovery/v1/doc.go b/vendor/k8s.io/api/discovery/v1/doc.go index 01913669ff..43e30b7f43 100644 --- a/vendor/k8s.io/api/discovery/v1/doc.go +++ b/vendor/k8s.io/api/discovery/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=discovery.k8s.io -package v1 // import "k8s.io/api/discovery/v1" +package v1 diff --git a/vendor/k8s.io/api/discovery/v1/generated.pb.go b/vendor/k8s.io/api/discovery/v1/generated.pb.go index 5792481dc1..443ff8f8f3 100644 --- a/vendor/k8s.io/api/discovery/v1/generated.pb.go +++ b/vendor/k8s.io/api/discovery/v1/generated.pb.go @@ -214,10 +214,38 @@ func (m *EndpointSliceList) XXX_DiscardUnknown() { var xxx_messageInfo_EndpointSliceList proto.InternalMessageInfo +func (m *ForNode) Reset() { *m = ForNode{} } +func (*ForNode) ProtoMessage() {} +func (*ForNode) Descriptor() ([]byte, []int) { + return fileDescriptor_2237b452324cf77e, []int{6} +} +func (m *ForNode) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ForNode) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ForNode) XXX_Merge(src proto.Message) { + xxx_messageInfo_ForNode.Merge(m, src) +} +func (m *ForNode) XXX_Size() int { + return m.Size() +} +func (m *ForNode) XXX_DiscardUnknown() { + xxx_messageInfo_ForNode.DiscardUnknown(m) +} + +var xxx_messageInfo_ForNode proto.InternalMessageInfo + func (m *ForZone) Reset() { *m = ForZone{} } func (*ForZone) ProtoMessage() {} func (*ForZone) Descriptor() ([]byte, []int) { - return fileDescriptor_2237b452324cf77e, []int{6} + return fileDescriptor_2237b452324cf77e, []int{7} } func (m *ForZone) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -250,6 +278,7 @@ func init() { proto.RegisterType((*EndpointPort)(nil), "k8s.io.api.discovery.v1.EndpointPort") proto.RegisterType((*EndpointSlice)(nil), "k8s.io.api.discovery.v1.EndpointSlice") proto.RegisterType((*EndpointSliceList)(nil), "k8s.io.api.discovery.v1.EndpointSliceList") + proto.RegisterType((*ForNode)(nil), "k8s.io.api.discovery.v1.ForNode") proto.RegisterType((*ForZone)(nil), "k8s.io.api.discovery.v1.ForZone") } @@ -258,62 +287,64 @@ func init() { } var fileDescriptor_2237b452324cf77e = []byte{ - // 877 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0x8c, 0x55, 0x4d, 0x6f, 0xdc, 0x44, - 0x18, 0x5e, 0x67, 0x63, 0x62, 0x8f, 0x13, 0xd1, 0x8e, 0x90, 0x62, 0x2d, 0xc8, 0x5e, 0x8c, 0x0a, - 0x2b, 0x45, 0x78, 0x49, 0x84, 0x50, 0x41, 0xe2, 0x10, 0xd3, 0xd0, 0xf2, 0x15, 0xa2, 0x69, 0x4e, - 0x15, 0x52, 0x71, 0xec, 0x37, 0x5e, 0x93, 0xd8, 0x63, 0x79, 0x26, 0x2b, 0x2d, 0x27, 0x2e, 0x9c, - 0xe1, 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0x05, 0xe1, 0xd5, 0x96, 0xc0, 0x36, 0x52, 0x33, 0xf0, 0xc3, 0x52, 0x44, + 0x2b, 0xd3, 0x13, 0x01, 0x90, 0x12, 0xc7, 0x0f, 0xd0, 0x0e, 0x83, 0x6c, 0x1e, 0x27, 0x91, 0xd4, + 0xd4, 0x3c, 0xa3, 0xc8, 0xed, 0x9d, 0xa7, 0x25, 0x44, 0xea, 0x3d, 0x7c, 0x88, 0x0c, 0x0e, 0xd9, + 0x34, 0x4e, 0x7c, 0x2e, 0xa8, 0x7d, 0x49, 0x7d, 0xbd, 0xc8, 0x6d, 0xe3, 0xbc, 0x85, 0x49, 0x97, + 0xe3, 0xfc, 0xae, 0xa0, 0xbd, 0xa5, 0xc3, 0xe3, 0x53, 0xa4, 0x5d, 0xd2, 0x4c, 0x98, 0x58, 0x0e, + 0x83, 0x71, 0x34, 0x5c, 0x6b, 0xdb, 0xe7, 0x25, 0xd1, 0xbb, 0x57, 0xdd, 0xaf, 0x56, 0x01, 0x8c, + 0x34, 0x1a, 0x95, 0x9e, 0xb8, 0x3a, 0x31, 0x2e, 0x1b, 0xf5, 0x04, 0x71, 0x49, 0x4f, 0x46, 0x92, + 0x46, 0xc3, 0xf9, 0x53, 0x41, 0xbb, 0x75, 0xc5, 0x67, 0x34, 0xe3, 0xa2, 0x05, 0xe4, 0xb0, 0x28, + 0x6d, 0x0b, 0xc8, 0x26, 0x91, 0x28, 0x7e, 0x8c, 0x34, 0x39, 0xf2, 0x01, 0xbd, 0x2e, 0xef, 0xc3, + 0x3b, 0x10, 0xc2, 0x67, 0x15, 0xf6, 0x32, 0xb7, 0xdf, 0x5c, 0x7d, 0xce, 0xdc, 0x7a, 0x9b, 0x34, + 0xc1, 0x22, 0x4d, 0x4a, 0x33, 0x2e, 0x5d, 0x55, 0xcb, 0x34, 0x22, 0x3d, 0x91, 0xa8, 0xb0, 0xde, + 0x4f, 0xd3, 0x3a, 0x4c, 0x4e, 0xa3, 0x5e, 0x5a, 0x7f, 0xdc, 0xc2, 0xa4, 0xcb, 0x71, 0xfe, 0xda, + 0x6a, 0xad, 0x7f, 0x7a, 0x1d, 0x07, 0x80, 0x7f, 0x40, 0x9a, 0x78, 0x19, 0x43, 0x9f, 0xfb, 0xf2, + 0x34, 0xc6, 0xd1, 0x07, 0x1d, 0xab, 0x9a, 0x07, 0xce, 0x4d, 0xaf, 0x22, 0x01, 0x30, 0x57, 0xb0, + 0xdb, 0x09, 0xff, 0x06, 0xb8, 0xdf, 0x3e, 0x2f, 0x2d, 0x46, 0x1a, 0x55, 0xfc, 0x08, 0x19, 0xd5, + 0x53, 0x76, 0xbe, 0x48, 0xa1, 0x2a, 0xd3, 0xa9, 0x42, 0x8c, 0xe3, 0x76, 0xeb, 0xe5, 0xf2, 0x92, + 0x74, 0xc3, 0x30, 0x41, 0x3a, 0x54, 0x85, 0xd7, 0x77, 0xfa, 0xf6, 0xc6, 0xd1, 0xf2, 0xee, 0x57, + 0x69, 0xf4, 0x1a, 0x61, 0xa4, 0x95, 0xc1, 0x5f, 0x22, 0x55, 0x18, 0xc9, 0xcc, 0xbe, 0xd4, 0x7b, + 0xb0, 0x51, 0x4f, 0x98, 0xef, 0xed, 0x55, 0x9a, 0xaa, 0x58, 0x31, 0x52, 0x4a, 0x38, 0x7f, 0x28, + 0xe8, 0xfe, 0x92, 0xb3, 0x5f, 0xc7, 0x8c, 0xe3, 0xef, 0x56, 0xdc, 0x75, 0x5f, 0xcd, 0x5d, 0x11, + 0x2d, 0xbd, 0x6d, 0xda, 0xb2, 0x46, 0x3a, 0xce, 0x7e, 0x85, 0xd4, 0x98, 0xc3, 0xb4, 0xf6, 0x63, + 0xf3, 0x53, 0x23, 0x0b, 0x6b, 0x0f, 0xf0, 0x85, 0x08, 0x26, 0xa5, 0x86, 0x73, 0x80, 0x76, 0xaa, + 0xce, 0xc7, 0xc3, 0xa5, 0xee, 0xde, 0xad, 0xe8, 0x9d, 0x0e, 0xaf, 0xc8, 0x62, 0xd8, 0x36, 0x93, + 0xbd, 0x4f, 0x6f, 0x6e, 0xad, 0xde, 0xf3, 0x5b, 0xab, 0xf7, 0xe2, 0xd6, 0xea, 0xfd, 0x5c, 0x58, + 0xca, 0x4d, 0x61, 0x29, 0xcf, 0x0b, 0x4b, 0x79, 0x51, 0x58, 0xca, 0xdf, 0x85, 0xa5, 0xfc, 0xf6, + 0x8f, 0xd5, 0x7b, 0xb6, 0xbf, 0xe6, 0x97, 0xe2, 0xbf, 0x00, 0x00, 0x00, 0xff, 0xff, 0xf4, 0xfc, + 0xbe, 0xad, 0x6c, 0x08, 0x00, 0x00, } func (m *Endpoint) Marshal() (dAtA []byte, err error) { @@ -500,6 +531,20 @@ func (m *EndpointHints) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if len(m.ForNodes) > 0 { + for iNdEx := len(m.ForNodes) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.ForNodes[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } if len(m.ForZones) > 0 { for iNdEx := len(m.ForZones) - 1; iNdEx >= 0; iNdEx-- { { @@ -679,6 +724,34 @@ func (m *EndpointSliceList) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ForNode) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ForNode) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ForNode) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *ForZone) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -793,6 +866,12 @@ func (m *EndpointHints) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if len(m.ForNodes) > 0 { + for _, e := range m.ForNodes { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } return n } @@ -862,6 +941,17 @@ func (m *EndpointSliceList) Size() (n int) { return n } +func (m *ForNode) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *ForZone) Size() (n int) { if m == nil { return 0 @@ -927,8 +1017,14 @@ func (this *EndpointHints) String() string { repeatedStringForForZones += strings.Replace(strings.Replace(f.String(), "ForZone", "ForZone", 1), `&`, ``, 1) + "," } repeatedStringForForZones += "}" + repeatedStringForForNodes := "[]ForNode{" + for _, f := range this.ForNodes { + repeatedStringForForNodes += strings.Replace(strings.Replace(f.String(), "ForNode", "ForNode", 1), `&`, ``, 1) + "," + } + repeatedStringForForNodes += "}" s := strings.Join([]string{`&EndpointHints{`, `ForZones:` + repeatedStringForForZones + `,`, + `ForNodes:` + repeatedStringForForNodes + `,`, `}`, }, "") return s @@ -985,6 +1081,16 @@ func (this *EndpointSliceList) String() string { }, "") return s } +func (this *ForNode) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ForNode{`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `}`, + }, "") + return s +} func (this *ForZone) String() string { if this == nil { return "nil" @@ -1592,6 +1698,40 @@ func (m *EndpointHints) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ForNodes", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.ForNodes = append(m.ForNodes, ForNode{}) + if err := m.ForNodes[len(m.ForNodes)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -2082,6 +2222,88 @@ func (m *EndpointSliceList) Unmarshal(dAtA []byte) error { } return nil } +func (m *ForNode) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ForNode: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ForNode: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} func (m *ForZone) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 diff --git a/vendor/k8s.io/api/discovery/v1/generated.proto b/vendor/k8s.io/api/discovery/v1/generated.proto index 8ddf0dc5d3..569d8a916e 100644 --- a/vendor/k8s.io/api/discovery/v1/generated.proto +++ b/vendor/k8s.io/api/discovery/v1/generated.proto @@ -31,12 +31,12 @@ option go_package = "k8s.io/api/discovery/v1"; // Endpoint represents a single logical "backend" implementing a service. message Endpoint { - // addresses of this endpoint. The contents of this field are interpreted - // according to the corresponding EndpointSlice addressType field. Consumers - // must handle different types of addresses in the context of their own - // capabilities. This must contain at least one address but no more than - // 100. These are all assumed to be fungible and clients may choose to only - // use the first element. Refer to: https://issue.k8s.io/106267 + // addresses of this endpoint. For EndpointSlices of addressType "IPv4" or "IPv6", + // the values are IP addresses in canonical form. The syntax and semantics of + // other addressType values are not defined. This must contain at least one + // address but no more than 100. EndpointSlices generated by the EndpointSlice + // controller will always have exactly 1 address. No semantics are defined for + // additional addresses beyond the first, and kube-proxy does not look at them. // +listType=set repeated string addresses = 1; @@ -82,36 +82,42 @@ message Endpoint { // EndpointConditions represents the current condition of an endpoint. message EndpointConditions { - // ready indicates that this endpoint is prepared to receive traffic, + // ready indicates that this endpoint is ready to receive traffic, // according to whatever system is managing the endpoint. A nil value - // indicates an unknown state. In most cases consumers should interpret this - // unknown state as ready. For compatibility reasons, ready should never be - // "true" for terminating endpoints, except when the normal readiness - // behavior is being explicitly overridden, for example when the associated - // Service has set the publishNotReadyAddresses flag. + // should be interpreted as "true". In general, an endpoint should be + // marked ready if it is serving and not terminating, though this can + // be overridden in some cases, such as when the associated Service has + // set the publishNotReadyAddresses flag. // +optional optional bool ready = 1; - // serving is identical to ready except that it is set regardless of the - // terminating state of endpoints. This condition should be set to true for - // a ready endpoint that is terminating. If nil, consumers should defer to - // the ready condition. + // serving indicates that this endpoint is able to receive traffic, + // according to whatever system is managing the endpoint. For endpoints + // backed by pods, the EndpointSlice controller will mark the endpoint + // as serving if the pod's Ready condition is True. A nil value should be + // interpreted as "true". // +optional optional bool serving = 2; // terminating indicates that this endpoint is terminating. A nil value - // indicates an unknown state. Consumers should interpret this unknown state - // to mean that the endpoint is not terminating. + // should be interpreted as "false". // +optional optional bool terminating = 3; } // EndpointHints provides hints describing how an endpoint should be consumed. message EndpointHints { - // forZones indicates the zone(s) this endpoint should be consumed by to - // enable topology aware routing. + // forZones indicates the zone(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. // +listType=atomic repeated ForZone forZones = 1; + + // forNodes indicates the node(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. + // This is an Alpha feature and is only used when the PreferSameTrafficDistribution + // feature gate is enabled. + // +listType=atomic + repeated ForNode forNodes = 2; } // EndpointPort represents a Port used by an EndpointSlice @@ -132,8 +138,9 @@ message EndpointPort { optional string protocol = 2; // port represents the port number of the endpoint. - // If this is not specified, ports are not restricted and must be - // interpreted in the context of the specific consumer. + // If the EndpointSlice is derived from a Kubernetes service, this must be set + // to the service's target port. EndpointSlices used for other purposes may have + // a nil port. optional int32 port = 3; // The application protocol for this port. @@ -155,9 +162,12 @@ message EndpointPort { optional string appProtocol = 4; } -// EndpointSlice represents a subset of the endpoints that implement a service. -// For a given service there may be multiple EndpointSlice objects, selected by -// labels, which must be joined to produce the full set of endpoints. +// EndpointSlice represents a set of service endpoints. Most EndpointSlices are created by +// the EndpointSlice controller to represent the Pods selected by Service objects. For a +// given service there may be multiple EndpointSlice objects which must be joined to +// produce the full set of endpoints; you can find all of the slices for a given service +// by listing EndpointSlices in the service's namespace whose `kubernetes.io/service-name` +// label contains the service's name. message EndpointSlice { // Standard object's metadata. // +optional @@ -169,7 +179,10 @@ message EndpointSlice { // supported: // * IPv4: Represents an IPv4 Address. // * IPv6: Represents an IPv6 Address. - // * FQDN: Represents a Fully Qualified Domain Name. + // * FQDN: Represents a Fully Qualified Domain Name. (Deprecated) + // The EndpointSlice controller only generates, and kube-proxy only processes, + // slices of addressType "IPv4" and "IPv6". No semantics are defined for + // the "FQDN" type. optional string addressType = 4; // endpoints is a list of unique endpoints in this slice. Each slice may @@ -178,10 +191,11 @@ message EndpointSlice { repeated Endpoint endpoints = 2; // ports specifies the list of network ports exposed by each endpoint in - // this slice. Each port must have a unique name. When ports is empty, it - // indicates that there are no defined ports. When a port is defined with a - // nil port value, it indicates "all ports". Each slice may include a + // this slice. Each port must have a unique name. Each slice may include a // maximum of 100 ports. + // Services always have at least 1 port, so EndpointSlices generated by the + // EndpointSlice controller will likewise always have at least 1 port. + // EndpointSlices used for other purposes may have an empty ports list. // +optional // +listType=atomic repeated EndpointPort ports = 3; @@ -197,6 +211,12 @@ message EndpointSliceList { repeated EndpointSlice items = 2; } +// ForNode provides information about which nodes should consume this endpoint. +message ForNode { + // name represents the name of the node. + optional string name = 1; +} + // ForZone provides information about which zones should consume this endpoint. message ForZone { // name represents the name of the zone. diff --git a/vendor/k8s.io/api/discovery/v1/types.go b/vendor/k8s.io/api/discovery/v1/types.go index d6a9d0fced..6f26953169 100644 --- a/vendor/k8s.io/api/discovery/v1/types.go +++ b/vendor/k8s.io/api/discovery/v1/types.go @@ -25,9 +25,12 @@ import ( // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object // +k8s:prerelease-lifecycle-gen:introduced=1.21 -// EndpointSlice represents a subset of the endpoints that implement a service. -// For a given service there may be multiple EndpointSlice objects, selected by -// labels, which must be joined to produce the full set of endpoints. +// EndpointSlice represents a set of service endpoints. Most EndpointSlices are created by +// the EndpointSlice controller to represent the Pods selected by Service objects. For a +// given service there may be multiple EndpointSlice objects which must be joined to +// produce the full set of endpoints; you can find all of the slices for a given service +// by listing EndpointSlices in the service's namespace whose `kubernetes.io/service-name` +// label contains the service's name. type EndpointSlice struct { metav1.TypeMeta `json:",inline"` @@ -41,7 +44,10 @@ type EndpointSlice struct { // supported: // * IPv4: Represents an IPv4 Address. // * IPv6: Represents an IPv6 Address. - // * FQDN: Represents a Fully Qualified Domain Name. + // * FQDN: Represents a Fully Qualified Domain Name. (Deprecated) + // The EndpointSlice controller only generates, and kube-proxy only processes, + // slices of addressType "IPv4" and "IPv6". No semantics are defined for + // the "FQDN" type. AddressType AddressType `json:"addressType" protobuf:"bytes,4,rep,name=addressType"` // endpoints is a list of unique endpoints in this slice. Each slice may @@ -50,10 +56,11 @@ type EndpointSlice struct { Endpoints []Endpoint `json:"endpoints" protobuf:"bytes,2,rep,name=endpoints"` // ports specifies the list of network ports exposed by each endpoint in - // this slice. Each port must have a unique name. When ports is empty, it - // indicates that there are no defined ports. When a port is defined with a - // nil port value, it indicates "all ports". Each slice may include a + // this slice. Each port must have a unique name. Each slice may include a // maximum of 100 ports. + // Services always have at least 1 port, so EndpointSlices generated by the + // EndpointSlice controller will likewise always have at least 1 port. + // EndpointSlices used for other purposes may have an empty ports list. // +optional // +listType=atomic Ports []EndpointPort `json:"ports" protobuf:"bytes,3,rep,name=ports"` @@ -76,12 +83,12 @@ const ( // Endpoint represents a single logical "backend" implementing a service. type Endpoint struct { - // addresses of this endpoint. The contents of this field are interpreted - // according to the corresponding EndpointSlice addressType field. Consumers - // must handle different types of addresses in the context of their own - // capabilities. This must contain at least one address but no more than - // 100. These are all assumed to be fungible and clients may choose to only - // use the first element. Refer to: https://issue.k8s.io/106267 + // addresses of this endpoint. For EndpointSlices of addressType "IPv4" or "IPv6", + // the values are IP addresses in canonical form. The syntax and semantics of + // other addressType values are not defined. This must contain at least one + // address but no more than 100. EndpointSlices generated by the EndpointSlice + // controller will always have exactly 1 address. No semantics are defined for + // additional addresses beyond the first, and kube-proxy does not look at them. // +listType=set Addresses []string `json:"addresses" protobuf:"bytes,1,rep,name=addresses"` @@ -127,36 +134,42 @@ type Endpoint struct { // EndpointConditions represents the current condition of an endpoint. type EndpointConditions struct { - // ready indicates that this endpoint is prepared to receive traffic, + // ready indicates that this endpoint is ready to receive traffic, // according to whatever system is managing the endpoint. A nil value - // indicates an unknown state. In most cases consumers should interpret this - // unknown state as ready. For compatibility reasons, ready should never be - // "true" for terminating endpoints, except when the normal readiness - // behavior is being explicitly overridden, for example when the associated - // Service has set the publishNotReadyAddresses flag. + // should be interpreted as "true". In general, an endpoint should be + // marked ready if it is serving and not terminating, though this can + // be overridden in some cases, such as when the associated Service has + // set the publishNotReadyAddresses flag. // +optional Ready *bool `json:"ready,omitempty" protobuf:"bytes,1,name=ready"` - // serving is identical to ready except that it is set regardless of the - // terminating state of endpoints. This condition should be set to true for - // a ready endpoint that is terminating. If nil, consumers should defer to - // the ready condition. + // serving indicates that this endpoint is able to receive traffic, + // according to whatever system is managing the endpoint. For endpoints + // backed by pods, the EndpointSlice controller will mark the endpoint + // as serving if the pod's Ready condition is True. A nil value should be + // interpreted as "true". // +optional Serving *bool `json:"serving,omitempty" protobuf:"bytes,2,name=serving"` // terminating indicates that this endpoint is terminating. A nil value - // indicates an unknown state. Consumers should interpret this unknown state - // to mean that the endpoint is not terminating. + // should be interpreted as "false". // +optional Terminating *bool `json:"terminating,omitempty" protobuf:"bytes,3,name=terminating"` } // EndpointHints provides hints describing how an endpoint should be consumed. type EndpointHints struct { - // forZones indicates the zone(s) this endpoint should be consumed by to - // enable topology aware routing. + // forZones indicates the zone(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. // +listType=atomic ForZones []ForZone `json:"forZones,omitempty" protobuf:"bytes,1,name=forZones"` + + // forNodes indicates the node(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. + // This is an Alpha feature and is only used when the PreferSameTrafficDistribution + // feature gate is enabled. + // +listType=atomic + ForNodes []ForNode `json:"forNodes,omitempty" protobuf:"bytes,2,name=forNodes"` } // ForZone provides information about which zones should consume this endpoint. @@ -165,6 +178,12 @@ type ForZone struct { Name string `json:"name" protobuf:"bytes,1,name=name"` } +// ForNode provides information about which nodes should consume this endpoint. +type ForNode struct { + // name represents the name of the node. + Name string `json:"name" protobuf:"bytes,1,name=name"` +} + // EndpointPort represents a Port used by an EndpointSlice // +structType=atomic type EndpointPort struct { @@ -183,8 +202,9 @@ type EndpointPort struct { Protocol *v1.Protocol `json:"protocol,omitempty" protobuf:"bytes,2,name=protocol"` // port represents the port number of the endpoint. - // If this is not specified, ports are not restricted and must be - // interpreted in the context of the specific consumer. + // If the EndpointSlice is derived from a Kubernetes service, this must be set + // to the service's target port. EndpointSlices used for other purposes may have + // a nil port. Port *int32 `json:"port,omitempty" protobuf:"bytes,3,opt,name=port"` // The application protocol for this port. diff --git a/vendor/k8s.io/api/discovery/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/discovery/v1/types_swagger_doc_generated.go index 41c3060568..ac5b853b9e 100644 --- a/vendor/k8s.io/api/discovery/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/discovery/v1/types_swagger_doc_generated.go @@ -29,7 +29,7 @@ package v1 // AUTO-GENERATED FUNCTIONS START HERE. DO NOT EDIT. var map_Endpoint = map[string]string{ "": "Endpoint represents a single logical \"backend\" implementing a service.", - "addresses": "addresses of this endpoint. The contents of this field are interpreted according to the corresponding EndpointSlice addressType field. Consumers must handle different types of addresses in the context of their own capabilities. This must contain at least one address but no more than 100. These are all assumed to be fungible and clients may choose to only use the first element. Refer to: https://issue.k8s.io/106267", + "addresses": "addresses of this endpoint. For EndpointSlices of addressType \"IPv4\" or \"IPv6\", the values are IP addresses in canonical form. The syntax and semantics of other addressType values are not defined. This must contain at least one address but no more than 100. EndpointSlices generated by the EndpointSlice controller will always have exactly 1 address. No semantics are defined for additional addresses beyond the first, and kube-proxy does not look at them.", "conditions": "conditions contains information about the current status of the endpoint.", "hostname": "hostname of this endpoint. This field may be used by consumers of endpoints to distinguish endpoints from each other (e.g. in DNS names). Multiple endpoints which use the same hostname should be considered fungible (e.g. multiple A values in DNS). Must be lowercase and pass DNS Label (RFC 1123) validation.", "targetRef": "targetRef is a reference to a Kubernetes object that represents this endpoint.", @@ -45,9 +45,9 @@ func (Endpoint) SwaggerDoc() map[string]string { var map_EndpointConditions = map[string]string{ "": "EndpointConditions represents the current condition of an endpoint.", - "ready": "ready indicates that this endpoint is prepared to receive traffic, according to whatever system is managing the endpoint. A nil value indicates an unknown state. In most cases consumers should interpret this unknown state as ready. For compatibility reasons, ready should never be \"true\" for terminating endpoints, except when the normal readiness behavior is being explicitly overridden, for example when the associated Service has set the publishNotReadyAddresses flag.", - "serving": "serving is identical to ready except that it is set regardless of the terminating state of endpoints. This condition should be set to true for a ready endpoint that is terminating. If nil, consumers should defer to the ready condition.", - "terminating": "terminating indicates that this endpoint is terminating. A nil value indicates an unknown state. Consumers should interpret this unknown state to mean that the endpoint is not terminating.", + "ready": "ready indicates that this endpoint is ready to receive traffic, according to whatever system is managing the endpoint. A nil value should be interpreted as \"true\". In general, an endpoint should be marked ready if it is serving and not terminating, though this can be overridden in some cases, such as when the associated Service has set the publishNotReadyAddresses flag.", + "serving": "serving indicates that this endpoint is able to receive traffic, according to whatever system is managing the endpoint. For endpoints backed by pods, the EndpointSlice controller will mark the endpoint as serving if the pod's Ready condition is True. A nil value should be interpreted as \"true\".", + "terminating": "terminating indicates that this endpoint is terminating. A nil value should be interpreted as \"false\".", } func (EndpointConditions) SwaggerDoc() map[string]string { @@ -56,7 +56,8 @@ func (EndpointConditions) SwaggerDoc() map[string]string { var map_EndpointHints = map[string]string{ "": "EndpointHints provides hints describing how an endpoint should be consumed.", - "forZones": "forZones indicates the zone(s) this endpoint should be consumed by to enable topology aware routing.", + "forZones": "forZones indicates the zone(s) this endpoint should be consumed by when using topology aware routing. May contain a maximum of 8 entries.", + "forNodes": "forNodes indicates the node(s) this endpoint should be consumed by when using topology aware routing. May contain a maximum of 8 entries. This is an Alpha feature and is only used when the PreferSameTrafficDistribution feature gate is enabled.", } func (EndpointHints) SwaggerDoc() map[string]string { @@ -67,7 +68,7 @@ var map_EndpointPort = map[string]string{ "": "EndpointPort represents a Port used by an EndpointSlice", "name": "name represents the name of this port. All ports in an EndpointSlice must have a unique name. If the EndpointSlice is derived from a Kubernetes service, this corresponds to the Service.ports[].name. Name must either be an empty string or pass DNS_LABEL validation: * must be no more than 63 characters long. * must consist of lower case alphanumeric characters or '-'. * must start and end with an alphanumeric character. Default is empty string.", "protocol": "protocol represents the IP protocol for this port. Must be UDP, TCP, or SCTP. Default is TCP.", - "port": "port represents the port number of the endpoint. If this is not specified, ports are not restricted and must be interpreted in the context of the specific consumer.", + "port": "port represents the port number of the endpoint. If the EndpointSlice is derived from a Kubernetes service, this must be set to the service's target port. EndpointSlices used for other purposes may have a nil port.", "appProtocol": "The application protocol for this port. This is used as a hint for implementations to offer richer behavior for protocols that they understand. This field follows standard Kubernetes label syntax. Valid values are either:\n\n* Un-prefixed protocol names - reserved for IANA standard service names (as per RFC-6335 and https://www.iana.org/assignments/service-names).\n\n* Kubernetes-defined prefixed names:\n * 'kubernetes.io/h2c' - HTTP/2 prior knowledge over cleartext as described in https://www.rfc-editor.org/rfc/rfc9113.html#name-starting-http-2-with-prior-\n * 'kubernetes.io/ws' - WebSocket over cleartext as described in https://www.rfc-editor.org/rfc/rfc6455\n * 'kubernetes.io/wss' - WebSocket over TLS as described in https://www.rfc-editor.org/rfc/rfc6455\n\n* Other protocols should use implementation-defined prefixed names such as mycompany.com/my-custom-protocol.", } @@ -76,11 +77,11 @@ func (EndpointPort) SwaggerDoc() map[string]string { } var map_EndpointSlice = map[string]string{ - "": "EndpointSlice represents a subset of the endpoints that implement a service. For a given service there may be multiple EndpointSlice objects, selected by labels, which must be joined to produce the full set of endpoints.", + "": "EndpointSlice represents a set of service endpoints. Most EndpointSlices are created by the EndpointSlice controller to represent the Pods selected by Service objects. For a given service there may be multiple EndpointSlice objects which must be joined to produce the full set of endpoints; you can find all of the slices for a given service by listing EndpointSlices in the service's namespace whose `kubernetes.io/service-name` label contains the service's name.", "metadata": "Standard object's metadata.", - "addressType": "addressType specifies the type of address carried by this EndpointSlice. All addresses in this slice must be the same type. This field is immutable after creation. The following address types are currently supported: * IPv4: Represents an IPv4 Address. * IPv6: Represents an IPv6 Address. * FQDN: Represents a Fully Qualified Domain Name.", + "addressType": "addressType specifies the type of address carried by this EndpointSlice. All addresses in this slice must be the same type. This field is immutable after creation. The following address types are currently supported: * IPv4: Represents an IPv4 Address. * IPv6: Represents an IPv6 Address. * FQDN: Represents a Fully Qualified Domain Name. (Deprecated) The EndpointSlice controller only generates, and kube-proxy only processes, slices of addressType \"IPv4\" and \"IPv6\". No semantics are defined for the \"FQDN\" type.", "endpoints": "endpoints is a list of unique endpoints in this slice. Each slice may include a maximum of 1000 endpoints.", - "ports": "ports specifies the list of network ports exposed by each endpoint in this slice. Each port must have a unique name. When ports is empty, it indicates that there are no defined ports. When a port is defined with a nil port value, it indicates \"all ports\". Each slice may include a maximum of 100 ports.", + "ports": "ports specifies the list of network ports exposed by each endpoint in this slice. Each port must have a unique name. Each slice may include a maximum of 100 ports. Services always have at least 1 port, so EndpointSlices generated by the EndpointSlice controller will likewise always have at least 1 port. EndpointSlices used for other purposes may have an empty ports list.", } func (EndpointSlice) SwaggerDoc() map[string]string { @@ -97,6 +98,15 @@ func (EndpointSliceList) SwaggerDoc() map[string]string { return map_EndpointSliceList } +var map_ForNode = map[string]string{ + "": "ForNode provides information about which nodes should consume this endpoint.", + "name": "name represents the name of the node.", +} + +func (ForNode) SwaggerDoc() map[string]string { + return map_ForNode +} + var map_ForZone = map[string]string{ "": "ForZone provides information about which zones should consume this endpoint.", "name": "name represents the name of the zone.", diff --git a/vendor/k8s.io/api/discovery/v1/zz_generated.deepcopy.go b/vendor/k8s.io/api/discovery/v1/zz_generated.deepcopy.go index caa872af00..60eada3b9f 100644 --- a/vendor/k8s.io/api/discovery/v1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/discovery/v1/zz_generated.deepcopy.go @@ -119,6 +119,11 @@ func (in *EndpointHints) DeepCopyInto(out *EndpointHints) { *out = make([]ForZone, len(*in)) copy(*out, *in) } + if in.ForNodes != nil { + in, out := &in.ForNodes, &out.ForNodes + *out = make([]ForNode, len(*in)) + copy(*out, *in) + } return } @@ -241,6 +246,22 @@ func (in *EndpointSliceList) DeepCopyObject() runtime.Object { return nil } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ForNode) DeepCopyInto(out *ForNode) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ForNode. +func (in *ForNode) DeepCopy() *ForNode { + if in == nil { + return nil + } + out := new(ForNode) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ForZone) DeepCopyInto(out *ForZone) { *out = *in diff --git a/vendor/k8s.io/api/discovery/v1beta1/doc.go b/vendor/k8s.io/api/discovery/v1beta1/doc.go index 7d7084802d..f12087eff1 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/doc.go +++ b/vendor/k8s.io/api/discovery/v1beta1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=discovery.k8s.io -package v1beta1 // import "k8s.io/api/discovery/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/discovery/v1beta1/generated.pb.go b/vendor/k8s.io/api/discovery/v1beta1/generated.pb.go index 46935574bf..de32577864 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/generated.pb.go +++ b/vendor/k8s.io/api/discovery/v1beta1/generated.pb.go @@ -214,10 +214,38 @@ func (m *EndpointSliceList) XXX_DiscardUnknown() { var xxx_messageInfo_EndpointSliceList proto.InternalMessageInfo +func (m *ForNode) Reset() { *m = ForNode{} } +func (*ForNode) ProtoMessage() {} +func (*ForNode) Descriptor() ([]byte, []int) { + return fileDescriptor_6555bad15de200e0, []int{6} +} +func (m *ForNode) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ForNode) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ForNode) XXX_Merge(src proto.Message) { + xxx_messageInfo_ForNode.Merge(m, src) +} +func (m *ForNode) XXX_Size() int { + return m.Size() +} +func (m *ForNode) XXX_DiscardUnknown() { + xxx_messageInfo_ForNode.DiscardUnknown(m) +} + +var xxx_messageInfo_ForNode proto.InternalMessageInfo + func (m *ForZone) Reset() { *m = ForZone{} } func (*ForZone) ProtoMessage() {} func (*ForZone) Descriptor() ([]byte, []int) { - return fileDescriptor_6555bad15de200e0, []int{6} + return fileDescriptor_6555bad15de200e0, []int{7} } func (m *ForZone) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -250,6 +278,7 @@ func init() { proto.RegisterType((*EndpointPort)(nil), "k8s.io.api.discovery.v1beta1.EndpointPort") proto.RegisterType((*EndpointSlice)(nil), "k8s.io.api.discovery.v1beta1.EndpointSlice") proto.RegisterType((*EndpointSliceList)(nil), "k8s.io.api.discovery.v1beta1.EndpointSliceList") + proto.RegisterType((*ForNode)(nil), "k8s.io.api.discovery.v1beta1.ForNode") proto.RegisterType((*ForZone)(nil), "k8s.io.api.discovery.v1beta1.ForZone") } @@ -258,61 +287,62 @@ func init() { } var fileDescriptor_6555bad15de200e0 = []byte{ - // 857 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0x8c, 0x55, 0x4f, 0x6f, 0xe4, 0x34, - 0x14, 0x9f, 0x74, 0x1a, 0x9a, 0x78, 0x5a, 0xb1, 0x6b, 0x71, 0x18, 0x95, 0x2a, 0x19, 0x05, 0x2d, + // 877 bytes of a gzipped FileDescriptorProto + 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0x8c, 0x56, 0x4f, 0x6f, 0xe4, 0x34, + 0x1c, 0x9d, 0x74, 0x1a, 0x9a, 0x78, 0x5a, 0xb1, 0x6b, 0x71, 0x18, 0x95, 0x2a, 0x19, 0x05, 0x2d, 0x1a, 0x51, 0x48, 0x68, 0xb5, 0x42, 0x2b, 0x38, 0x35, 0xb0, 0xb0, 0x48, 0xcb, 0x6e, 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0xb0, 0x1f, 0x6e, 0x76, 0xbf, 0xc2, 0x87, 0x3a, 0x96, 0xdd, 0x20, 0x1c, 0x75, 0x5e, 0xf0, 0x25, + 0x30, 0x65, 0x37, 0xf9, 0x78, 0xa8, 0x4c, 0x3f, 0xda, 0xcc, 0x54, 0x8e, 0x21, 0xdc, 0xd3, 0xc6, + 0xa6, 0x5c, 0x71, 0x54, 0xfb, 0x78, 0x7f, 0x18, 0xe0, 0xe1, 0x4a, 0x8f, 0x9f, 0x53, 0x2e, 0xe0, + 0x0f, 0x6b, 0x7d, 0xf6, 0x37, 0xeb, 0xb3, 0x54, 0xab, 0x2e, 0xb7, 0x07, 0xb4, 0x41, 0x7a, 0x3d, + 0x3e, 0x05, 0x26, 0x15, 0x24, 0x6d, 0x3a, 0xb3, 0xe1, 0xcb, 0xa3, 0xb2, 0xeb, 0xaa, 0xf8, 0x56, + 0x3a, 0xa0, 0xda, 0xc8, 0x3b, 0x04, 0x3b, 0xfa, 0x22, 0xc0, 0xc9, 0xca, 0x61, 0xdf, 0xd5, 0xf4, + 0xde, 0x81, 0xd7, 0x64, 0x79, 0x01, 0xef, 0x27, 0x87, 0xe1, 0xcd, 0xad, 0x33, 0x78, 0x7d, 0xeb, + 0x0c, 0xde, 0xdc, 0x3a, 0x83, 0x9f, 0x2b, 0xc7, 0xb8, 0xa9, 0x1c, 0xe3, 0x75, 0xe5, 0x18, 0x6f, + 0x2a, 0xc7, 0xf8, 0xab, 0x72, 0x8c, 0x5f, 0xff, 0x76, 0x06, 0xaf, 0x0e, 0xee, 0xfa, 0x67, 0xf8, + 0x27, 0x00, 0x00, 0xff, 0xff, 0x76, 0x8e, 0x48, 0x7e, 0x52, 0x08, 0x00, 0x00, } func (m *Endpoint) Marshal() (dAtA []byte, err error) { @@ -492,6 +522,20 @@ func (m *EndpointHints) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if len(m.ForNodes) > 0 { + for iNdEx := len(m.ForNodes) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.ForNodes[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } if len(m.ForZones) > 0 { for iNdEx := len(m.ForZones) - 1; iNdEx >= 0; iNdEx-- { { @@ -671,6 +715,34 @@ func (m *EndpointSliceList) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ForNode) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ForNode) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ForNode) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *ForZone) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -781,6 +853,12 @@ func (m *EndpointHints) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if len(m.ForNodes) > 0 { + for _, e := range m.ForNodes { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } return n } @@ -850,6 +928,17 @@ func (m *EndpointSliceList) Size() (n int) { return n } +func (m *ForNode) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *ForZone) Size() (n int) { if m == nil { return 0 @@ -914,8 +1003,14 @@ func (this *EndpointHints) String() string { repeatedStringForForZones += strings.Replace(strings.Replace(f.String(), "ForZone", "ForZone", 1), `&`, ``, 1) + "," } repeatedStringForForZones += "}" + repeatedStringForForNodes := "[]ForNode{" + for _, f := range this.ForNodes { + repeatedStringForForNodes += strings.Replace(strings.Replace(f.String(), "ForNode", "ForNode", 1), `&`, ``, 1) + "," + } + repeatedStringForForNodes += "}" s := strings.Join([]string{`&EndpointHints{`, `ForZones:` + repeatedStringForForZones + `,`, + `ForNodes:` + repeatedStringForForNodes + `,`, `}`, }, "") return s @@ -972,6 +1067,16 @@ func (this *EndpointSliceList) String() string { }, "") return s } +func (this *ForNode) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ForNode{`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `}`, + }, "") + return s +} func (this *ForZone) String() string { if this == nil { return "nil" @@ -1546,6 +1651,40 @@ func (m *EndpointHints) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ForNodes", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.ForNodes = append(m.ForNodes, ForNode{}) + if err := m.ForNodes[len(m.ForNodes)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -2036,6 +2175,88 @@ func (m *EndpointSliceList) Unmarshal(dAtA []byte) error { } return nil } +func (m *ForNode) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ForNode: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ForNode: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} func (m *ForZone) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 diff --git a/vendor/k8s.io/api/discovery/v1beta1/generated.proto b/vendor/k8s.io/api/discovery/v1beta1/generated.proto index 55828dd97d..907050da1c 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/generated.proto +++ b/vendor/k8s.io/api/discovery/v1beta1/generated.proto @@ -114,6 +114,13 @@ message EndpointHints { // enable topology aware routing. May contain a maximum of 8 entries. // +listType=atomic repeated ForZone forZones = 1; + + // forNodes indicates the node(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. + // This is an Alpha feature and is only used when the PreferSameTrafficDistribution + // feature gate is enabled. + // +listType=atomic + repeated ForNode forNodes = 2; } // EndpointPort represents a Port used by an EndpointSlice @@ -189,6 +196,12 @@ message EndpointSliceList { repeated EndpointSlice items = 2; } +// ForNode provides information about which nodes should consume this endpoint. +message ForNode { + // name represents the name of the node. + optional string name = 1; +} + // ForZone provides information about which zones should consume this endpoint. message ForZone { // name represents the name of the zone. diff --git a/vendor/k8s.io/api/discovery/v1beta1/types.go b/vendor/k8s.io/api/discovery/v1beta1/types.go index defd8e2ce6..fa9d1eae43 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/types.go +++ b/vendor/k8s.io/api/discovery/v1beta1/types.go @@ -161,6 +161,13 @@ type EndpointHints struct { // enable topology aware routing. May contain a maximum of 8 entries. // +listType=atomic ForZones []ForZone `json:"forZones,omitempty" protobuf:"bytes,1,name=forZones"` + + // forNodes indicates the node(s) this endpoint should be consumed by when + // using topology aware routing. May contain a maximum of 8 entries. + // This is an Alpha feature and is only used when the PreferSameTrafficDistribution + // feature gate is enabled. + // +listType=atomic + ForNodes []ForNode `json:"forNodes,omitempty" protobuf:"bytes,2,name=forNodes"` } // ForZone provides information about which zones should consume this endpoint. @@ -169,6 +176,12 @@ type ForZone struct { Name string `json:"name" protobuf:"bytes,1,name=name"` } +// ForNode provides information about which nodes should consume this endpoint. +type ForNode struct { + // name represents the name of the node. + Name string `json:"name" protobuf:"bytes,1,name=name"` +} + // EndpointPort represents a Port used by an EndpointSlice type EndpointPort struct { // name represents the name of this port. All ports in an EndpointSlice must have a unique name. diff --git a/vendor/k8s.io/api/discovery/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/discovery/v1beta1/types_swagger_doc_generated.go index 847d4d58e0..72aa0cb9b2 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/discovery/v1beta1/types_swagger_doc_generated.go @@ -56,6 +56,7 @@ func (EndpointConditions) SwaggerDoc() map[string]string { var map_EndpointHints = map[string]string{ "": "EndpointHints provides hints describing how an endpoint should be consumed.", "forZones": "forZones indicates the zone(s) this endpoint should be consumed by to enable topology aware routing. May contain a maximum of 8 entries.", + "forNodes": "forNodes indicates the node(s) this endpoint should be consumed by when using topology aware routing. May contain a maximum of 8 entries. This is an Alpha feature and is only used when the PreferSameTrafficDistribution feature gate is enabled.", } func (EndpointHints) SwaggerDoc() map[string]string { @@ -96,6 +97,15 @@ func (EndpointSliceList) SwaggerDoc() map[string]string { return map_EndpointSliceList } +var map_ForNode = map[string]string{ + "": "ForNode provides information about which nodes should consume this endpoint.", + "name": "name represents the name of the node.", +} + +func (ForNode) SwaggerDoc() map[string]string { + return map_ForNode +} + var map_ForZone = map[string]string{ "": "ForZone provides information about which zones should consume this endpoint.", "name": "name represents the name of the zone.", diff --git a/vendor/k8s.io/api/discovery/v1beta1/zz_generated.deepcopy.go b/vendor/k8s.io/api/discovery/v1beta1/zz_generated.deepcopy.go index 13b9544b0c..72490d6adf 100644 --- a/vendor/k8s.io/api/discovery/v1beta1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/discovery/v1beta1/zz_generated.deepcopy.go @@ -114,6 +114,11 @@ func (in *EndpointHints) DeepCopyInto(out *EndpointHints) { *out = make([]ForZone, len(*in)) copy(*out, *in) } + if in.ForNodes != nil { + in, out := &in.ForNodes, &out.ForNodes + *out = make([]ForNode, len(*in)) + copy(*out, *in) + } return } @@ -236,6 +241,22 @@ func (in *EndpointSliceList) DeepCopyObject() runtime.Object { return nil } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ForNode) DeepCopyInto(out *ForNode) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ForNode. +func (in *ForNode) DeepCopy() *ForNode { + if in == nil { + return nil + } + out := new(ForNode) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ForZone) DeepCopyInto(out *ForZone) { *out = *in diff --git a/vendor/k8s.io/api/events/v1/doc.go b/vendor/k8s.io/api/events/v1/doc.go index 5fe700ffcf..911639044f 100644 --- a/vendor/k8s.io/api/events/v1/doc.go +++ b/vendor/k8s.io/api/events/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=events.k8s.io -package v1 // import "k8s.io/api/events/v1" +package v1 diff --git a/vendor/k8s.io/api/events/v1beta1/doc.go b/vendor/k8s.io/api/events/v1beta1/doc.go index 46048a65b4..e4864294fd 100644 --- a/vendor/k8s.io/api/events/v1beta1/doc.go +++ b/vendor/k8s.io/api/events/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=events.k8s.io -package v1beta1 // import "k8s.io/api/events/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/extensions/v1beta1/doc.go b/vendor/k8s.io/api/extensions/v1beta1/doc.go index c9af49d55c..7770fab5d2 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/doc.go +++ b/vendor/k8s.io/api/extensions/v1beta1/doc.go @@ -19,4 +19,4 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:prerelease-lifecycle-gen=true -package v1beta1 // import "k8s.io/api/extensions/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/extensions/v1beta1/generated.pb.go b/vendor/k8s.io/api/extensions/v1beta1/generated.pb.go index 818486f39d..35b9a4ff2a 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/generated.pb.go +++ b/vendor/k8s.io/api/extensions/v1beta1/generated.pb.go @@ -1364,185 +1364,187 @@ func init() { } var fileDescriptor_90a532284de28347 = []byte{ - // 2842 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xec, 0x5b, 0xcd, 0x6f, 0x24, 0x47, - 0x15, 0xdf, 0x9e, 0xf1, 0xd8, 0xe3, 0xe7, 0xb5, 0xbd, 0x5b, 0xeb, 0xac, 0x1d, 0x2f, 0xb1, 0xa3, - 0x46, 0x84, 0x4d, 0xd8, 0x9d, 0x61, 0x37, 0xc9, 0x92, 0x0f, 0x29, 0x61, 0xc7, 0xbb, 0xc9, 0x3a, - 0xb1, 0xc7, 0x93, 0x9a, 0x71, 0x82, 0x22, 0x02, 0xb4, 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0x75, 0x3a, 0x5c, + 0xa2, 0xd4, 0x7f, 0x59, 0x82, 0xa9, 0x48, 0x17, 0x43, 0xa6, 0xd9, 0x9d, 0x58, 0x6d, 0x29, 0x17, + 0xb8, 0xb4, 0x89, 0xf4, 0x55, 0x0b, 0xaa, 0x89, 0xf8, 0x46, 0x23, 0x7c, 0x95, 0x4f, 0x17, 0x99, + 0x97, 0x60, 0x86, 0x1a, 0x5e, 0x97, 0x50, 0x75, 0x02, 0x10, 0xf7, 0x95, 0xea, 0x63, 0xa1, 0x76, + 0x4c, 0x8a, 0x13, 0xda, 0x8b, 0x2f, 0xc2, 0x74, 0xac, 0xb3, 0x61, 0x3e, 0xb1, 0x68, 0xac, 0x7c, + 0xf2, 0xf9, 0xd2, 0xb9, 0x4f, 0x3f, 0x5f, 0x3a, 0xf7, 0xd9, 0xe7, 0x4b, 0xe7, 0x7e, 0x70, 0xb4, + 0xa4, 0x7d, 0x72, 0xb4, 0xa4, 0x7d, 0x7a, 0xb4, 0xa4, 0x7d, 0x76, 0xb4, 0xa4, 0xfd, 0xed, 0x68, + 0x49, 0xfb, 0xe9, 0x17, 0x4b, 0xe7, 0xde, 0x7e, 0xec, 0xd8, 0xff, 0x71, 0xf1, 0xaf, 0x00, 0x00, + 0x00, 0xff, 0xff, 0x6a, 0x79, 0xb9, 0xab, 0x91, 0x31, 0x00, 0x00, } func (m *DaemonSet) Marshal() (dAtA []byte, err error) { @@ -2208,6 +2210,11 @@ func (m *DeploymentStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x48 + } if m.CollisionCount != nil { i = encodeVarintGenerated(dAtA, i, uint64(*m.CollisionCount)) i-- @@ -3486,6 +3493,11 @@ func (m *ReplicaSetStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.TerminatingReplicas != nil { + i = encodeVarintGenerated(dAtA, i, uint64(*m.TerminatingReplicas)) + i-- + dAtA[i] = 0x38 + } if len(m.Conditions) > 0 { for iNdEx := len(m.Conditions) - 1; iNdEx >= 0; iNdEx-- { { @@ -4024,6 +4036,9 @@ func (m *DeploymentStatus) Size() (n int) { if m.CollisionCount != nil { n += 1 + sovGenerated(uint64(*m.CollisionCount)) } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -4502,6 +4517,9 @@ func (m *ReplicaSetStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.TerminatingReplicas != nil { + n += 1 + sovGenerated(uint64(*m.TerminatingReplicas)) + } return n } @@ -4793,6 +4811,7 @@ func (this *DeploymentStatus) String() string { `Conditions:` + repeatedStringForConditions + `,`, `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `CollisionCount:` + valueToStringGenerated(this.CollisionCount) + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -5182,6 +5201,7 @@ func (this *ReplicaSetStatus) String() string { `ReadyReplicas:` + fmt.Sprintf("%v", this.ReadyReplicas) + `,`, `AvailableReplicas:` + fmt.Sprintf("%v", this.AvailableReplicas) + `,`, `Conditions:` + repeatedStringForConditions + `,`, + `TerminatingReplicas:` + valueToStringGenerated(this.TerminatingReplicas) + `,`, `}`, }, "") return s @@ -7567,6 +7587,26 @@ func (m *DeploymentStatus) Unmarshal(dAtA []byte) error { } } m.CollisionCount = &v + case 9: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -11162,6 +11202,26 @@ func (m *ReplicaSetStatus) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 7: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field TerminatingReplicas", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.TerminatingReplicas = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/extensions/v1beta1/generated.proto b/vendor/k8s.io/api/extensions/v1beta1/generated.proto index 9bbcaa0e26..70fcec0cc5 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/generated.proto +++ b/vendor/k8s.io/api/extensions/v1beta1/generated.proto @@ -320,19 +320,19 @@ message DeploymentStatus { // +optional optional int64 observedGeneration = 1; - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional optional int32 replicas = 2; - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional optional int32 updatedReplicas = 3; - // Total number of ready pods targeted by this deployment. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional optional int32 readyReplicas = 7; - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional optional int32 availableReplicas = 4; @@ -342,6 +342,13 @@ message DeploymentStatus { // +optional optional int32 unavailableReplicas = 5; + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 9; + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -863,16 +870,16 @@ message ReplicaSetList { optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset repeated ReplicaSet items = 2; } // ReplicaSetSpec is the specification of a ReplicaSet. message ReplicaSetSpec { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional optional int32 replicas = 1; @@ -891,29 +898,36 @@ message ReplicaSetSpec { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional optional .k8s.io.api.core.v1.PodTemplateSpec template = 3; } // ReplicaSetStatus represents the current status of a ReplicaSet. message ReplicaSetStatus { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset optional int32 replicas = 1; - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional optional int32 fullyLabeledReplicas = 2; - // The number of ready replicas for this replica set. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional optional int32 readyReplicas = 4; - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional optional int32 availableReplicas = 5; + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + optional int32 terminatingReplicas = 7; + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional optional int64 observedGeneration = 3; diff --git a/vendor/k8s.io/api/extensions/v1beta1/types.go b/vendor/k8s.io/api/extensions/v1beta1/types.go index 09f58692f4..b80a7a7e16 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/types.go +++ b/vendor/k8s.io/api/extensions/v1beta1/types.go @@ -245,19 +245,19 @@ type DeploymentStatus struct { // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,1,opt,name=observedGeneration"` - // Total number of non-terminated pods targeted by this deployment (their labels match the selector). + // Total number of non-terminating pods targeted by this deployment (their labels match the selector). // +optional Replicas int32 `json:"replicas,omitempty" protobuf:"varint,2,opt,name=replicas"` - // Total number of non-terminated pods targeted by this deployment that have the desired template spec. + // Total number of non-terminating pods targeted by this deployment that have the desired template spec. // +optional UpdatedReplicas int32 `json:"updatedReplicas,omitempty" protobuf:"varint,3,opt,name=updatedReplicas"` - // Total number of ready pods targeted by this deployment. + // Total number of non-terminating pods targeted by this Deployment with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,7,opt,name=readyReplicas"` - // Total number of available pods (ready for at least minReadySeconds) targeted by this deployment. + // Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,4,opt,name=availableReplicas"` @@ -267,6 +267,13 @@ type DeploymentStatus struct { // +optional UnavailableReplicas int32 `json:"unavailableReplicas,omitempty" protobuf:"varint,5,opt,name=unavailableReplicas"` + // Total number of terminating pods targeted by this deployment. Terminating pods have a non-null + // .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,9,opt,name=terminatingReplicas"` + // Represents the latest available observations of a deployment's current state. // +patchMergeKey=type // +patchStrategy=merge @@ -941,16 +948,16 @@ type ReplicaSetList struct { metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` // List of ReplicaSets. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Items []ReplicaSet `json:"items" protobuf:"bytes,2,rep,name=items"` } // ReplicaSetSpec is the specification of a ReplicaSet. type ReplicaSetSpec struct { - // Replicas is the number of desired replicas. + // Replicas is the number of desired pods. // This is a pointer to distinguish between explicit zero and unspecified. // Defaults to 1. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset // +optional Replicas *int32 `json:"replicas,omitempty" protobuf:"varint,1,opt,name=replicas"` @@ -969,29 +976,36 @@ type ReplicaSetSpec struct { // Template is the object that describes the pod that will be created if // insufficient replicas are detected. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template // +optional Template v1.PodTemplateSpec `json:"template,omitempty" protobuf:"bytes,3,opt,name=template"` } // ReplicaSetStatus represents the current status of a ReplicaSet. type ReplicaSetStatus struct { - // Replicas is the most recently observed number of replicas. - // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller + // Replicas is the most recently observed number of non-terminating pods. + // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset Replicas int32 `json:"replicas" protobuf:"varint,1,opt,name=replicas"` - // The number of pods that have labels matching the labels of the pod template of the replicaset. + // The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset. // +optional FullyLabeledReplicas int32 `json:"fullyLabeledReplicas,omitempty" protobuf:"varint,2,opt,name=fullyLabeledReplicas"` - // The number of ready replicas for this replica set. + // The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition. // +optional ReadyReplicas int32 `json:"readyReplicas,omitempty" protobuf:"varint,4,opt,name=readyReplicas"` - // The number of available replicas (ready for at least minReadySeconds) for this replica set. + // The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set. // +optional AvailableReplicas int32 `json:"availableReplicas,omitempty" protobuf:"varint,5,opt,name=availableReplicas"` + // The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp + // and have not yet reached the Failed or Succeeded .status.phase. + // + // This is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field. + // +optional + TerminatingReplicas *int32 `json:"terminatingReplicas,omitempty" protobuf:"varint,7,opt,name=terminatingReplicas"` + // ObservedGeneration reflects the generation of the most recently observed ReplicaSet. // +optional ObservedGeneration int64 `json:"observedGeneration,omitempty" protobuf:"varint,3,opt,name=observedGeneration"` diff --git a/vendor/k8s.io/api/extensions/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/extensions/v1beta1/types_swagger_doc_generated.go index 408022c9d8..923fab3aa1 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/extensions/v1beta1/types_swagger_doc_generated.go @@ -169,11 +169,12 @@ func (DeploymentSpec) SwaggerDoc() map[string]string { var map_DeploymentStatus = map[string]string{ "": "DeploymentStatus is the most recently observed status of the Deployment.", "observedGeneration": "The generation observed by the deployment controller.", - "replicas": "Total number of non-terminated pods targeted by this deployment (their labels match the selector).", - "updatedReplicas": "Total number of non-terminated pods targeted by this deployment that have the desired template spec.", - "readyReplicas": "Total number of ready pods targeted by this deployment.", - "availableReplicas": "Total number of available pods (ready for at least minReadySeconds) targeted by this deployment.", + "replicas": "Total number of non-terminating pods targeted by this deployment (their labels match the selector).", + "updatedReplicas": "Total number of non-terminating pods targeted by this deployment that have the desired template spec.", + "readyReplicas": "Total number of non-terminating pods targeted by this Deployment with a Ready Condition.", + "availableReplicas": "Total number of available non-terminating pods (ready for at least minReadySeconds) targeted by this deployment.", "unavailableReplicas": "Total number of unavailable pods targeted by this deployment. This is the total number of pods that are still required for the deployment to have 100% available capacity. They may either be pods that are running but not yet available or pods that still have not been created.", + "terminatingReplicas": "Total number of terminating pods targeted by this deployment. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "conditions": "Represents the latest available observations of a deployment's current state.", "collisionCount": "Count of hash collisions for the Deployment. The Deployment controller uses this field as a collision avoidance mechanism when it needs to create the name for the newest ReplicaSet.", } @@ -435,7 +436,7 @@ func (ReplicaSetCondition) SwaggerDoc() map[string]string { var map_ReplicaSetList = map[string]string{ "": "ReplicaSetList is a collection of ReplicaSets.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", - "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller", + "items": "List of ReplicaSets. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", } func (ReplicaSetList) SwaggerDoc() map[string]string { @@ -444,10 +445,10 @@ func (ReplicaSetList) SwaggerDoc() map[string]string { var map_ReplicaSetSpec = map[string]string{ "": "ReplicaSetSpec is the specification of a ReplicaSet.", - "replicas": "Replicas is the number of desired replicas. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", + "replicas": "Replicas is the number of desired pods. This is a pointer to distinguish between explicit zero and unspecified. Defaults to 1. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", "minReadySeconds": "Minimum number of seconds for which a newly created pod should be ready without any of its container crashing, for it to be considered available. Defaults to 0 (pod will be considered available as soon as it is ready)", "selector": "Selector is a label query over pods that should match the replica count. If the selector is empty, it is defaulted to the labels present on the pod template. Label keys and values that must match in order to be controlled by this replica set. More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/labels/#label-selectors", - "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller#pod-template", + "template": "Template is the object that describes the pod that will be created if insufficient replicas are detected. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset/#pod-template", } func (ReplicaSetSpec) SwaggerDoc() map[string]string { @@ -456,10 +457,11 @@ func (ReplicaSetSpec) SwaggerDoc() map[string]string { var map_ReplicaSetStatus = map[string]string{ "": "ReplicaSetStatus represents the current status of a ReplicaSet.", - "replicas": "Replicas is the most recently observed number of replicas. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller/#what-is-a-replicationcontroller", - "fullyLabeledReplicas": "The number of pods that have labels matching the labels of the pod template of the replicaset.", - "readyReplicas": "The number of ready replicas for this replica set.", - "availableReplicas": "The number of available replicas (ready for at least minReadySeconds) for this replica set.", + "replicas": "Replicas is the most recently observed number of non-terminating pods. More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicaset", + "fullyLabeledReplicas": "The number of non-terminating pods that have labels matching the labels of the pod template of the replicaset.", + "readyReplicas": "The number of non-terminating pods targeted by this ReplicaSet with a Ready Condition.", + "availableReplicas": "The number of available non-terminating pods (ready for at least minReadySeconds) for this replica set.", + "terminatingReplicas": "The number of terminating pods for this replica set. Terminating pods have a non-null .metadata.deletionTimestamp and have not yet reached the Failed or Succeeded .status.phase.\n\nThis is an alpha field. Enable DeploymentReplicaSetTerminatingReplicas to be able to use this field.", "observedGeneration": "ObservedGeneration reflects the generation of the most recently observed ReplicaSet.", "conditions": "Represents the latest available observations of a replica set's current state.", } diff --git a/vendor/k8s.io/api/extensions/v1beta1/zz_generated.deepcopy.go b/vendor/k8s.io/api/extensions/v1beta1/zz_generated.deepcopy.go index 6b474ae483..2c7a8524ea 100644 --- a/vendor/k8s.io/api/extensions/v1beta1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/extensions/v1beta1/zz_generated.deepcopy.go @@ -341,6 +341,11 @@ func (in *DeploymentSpec) DeepCopy() *DeploymentSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *DeploymentStatus) DeepCopyInto(out *DeploymentStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]DeploymentCondition, len(*in)) @@ -1045,6 +1050,11 @@ func (in *ReplicaSetSpec) DeepCopy() *ReplicaSetSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ReplicaSetStatus) DeepCopyInto(out *ReplicaSetStatus) { *out = *in + if in.TerminatingReplicas != nil { + in, out := &in.TerminatingReplicas, &out.TerminatingReplicas + *out = new(int32) + **out = **in + } if in.Conditions != nil { in, out := &in.Conditions, &out.Conditions *out = make([]ReplicaSetCondition, len(*in)) diff --git a/vendor/k8s.io/api/flowcontrol/v1/doc.go b/vendor/k8s.io/api/flowcontrol/v1/doc.go index c9e7db1589..ad5f457919 100644 --- a/vendor/k8s.io/api/flowcontrol/v1/doc.go +++ b/vendor/k8s.io/api/flowcontrol/v1/doc.go @@ -22,4 +22,4 @@ limitations under the License. // +groupName=flowcontrol.apiserver.k8s.io // Package v1 holds api types of version v1 for group "flowcontrol.apiserver.k8s.io". -package v1 // import "k8s.io/api/flowcontrol/v1" +package v1 diff --git a/vendor/k8s.io/api/flowcontrol/v1beta1/doc.go b/vendor/k8s.io/api/flowcontrol/v1beta1/doc.go index 50897b7eb5..20268c1f2d 100644 --- a/vendor/k8s.io/api/flowcontrol/v1beta1/doc.go +++ b/vendor/k8s.io/api/flowcontrol/v1beta1/doc.go @@ -22,4 +22,4 @@ limitations under the License. // +groupName=flowcontrol.apiserver.k8s.io // Package v1beta1 holds api types of version v1alpha1 for group "flowcontrol.apiserver.k8s.io". -package v1beta1 // import "k8s.io/api/flowcontrol/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/flowcontrol/v1beta2/doc.go b/vendor/k8s.io/api/flowcontrol/v1beta2/doc.go index 53b460d374..2dcad11ad9 100644 --- a/vendor/k8s.io/api/flowcontrol/v1beta2/doc.go +++ b/vendor/k8s.io/api/flowcontrol/v1beta2/doc.go @@ -22,4 +22,4 @@ limitations under the License. // +groupName=flowcontrol.apiserver.k8s.io // Package v1beta2 holds api types of version v1alpha1 for group "flowcontrol.apiserver.k8s.io". -package v1beta2 // import "k8s.io/api/flowcontrol/v1beta2" +package v1beta2 diff --git a/vendor/k8s.io/api/flowcontrol/v1beta3/doc.go b/vendor/k8s.io/api/flowcontrol/v1beta3/doc.go index cd60cfef7f..95f4430d38 100644 --- a/vendor/k8s.io/api/flowcontrol/v1beta3/doc.go +++ b/vendor/k8s.io/api/flowcontrol/v1beta3/doc.go @@ -22,4 +22,4 @@ limitations under the License. // +groupName=flowcontrol.apiserver.k8s.io // Package v1beta3 holds api types of version v1beta3 for group "flowcontrol.apiserver.k8s.io". -package v1beta3 // import "k8s.io/api/flowcontrol/v1beta3" +package v1beta3 diff --git a/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go b/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go index 5db6d52d47..f5fbbdbf0c 100644 --- a/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go +++ b/vendor/k8s.io/api/imagepolicy/v1alpha1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +groupName=imagepolicy.k8s.io -package v1alpha1 // import "k8s.io/api/imagepolicy/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/networking/v1/doc.go b/vendor/k8s.io/api/networking/v1/doc.go index 1d13e7bab3..e2093b7df6 100644 --- a/vendor/k8s.io/api/networking/v1/doc.go +++ b/vendor/k8s.io/api/networking/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=networking.k8s.io -package v1 // import "k8s.io/api/networking/v1" +package v1 diff --git a/vendor/k8s.io/api/networking/v1/generated.pb.go b/vendor/k8s.io/api/networking/v1/generated.pb.go index 7c023e6903..062382b633 100644 --- a/vendor/k8s.io/api/networking/v1/generated.pb.go +++ b/vendor/k8s.io/api/networking/v1/generated.pb.go @@ -104,10 +104,94 @@ func (m *HTTPIngressRuleValue) XXX_DiscardUnknown() { var xxx_messageInfo_HTTPIngressRuleValue proto.InternalMessageInfo +func (m *IPAddress) Reset() { *m = IPAddress{} } +func (*IPAddress) ProtoMessage() {} +func (*IPAddress) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{2} +} +func (m *IPAddress) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *IPAddress) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *IPAddress) XXX_Merge(src proto.Message) { + xxx_messageInfo_IPAddress.Merge(m, src) +} +func (m *IPAddress) XXX_Size() int { + return m.Size() +} +func (m *IPAddress) XXX_DiscardUnknown() { + xxx_messageInfo_IPAddress.DiscardUnknown(m) +} + +var xxx_messageInfo_IPAddress proto.InternalMessageInfo + +func (m *IPAddressList) Reset() { *m = IPAddressList{} } +func (*IPAddressList) ProtoMessage() {} +func (*IPAddressList) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{3} +} +func (m *IPAddressList) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *IPAddressList) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *IPAddressList) XXX_Merge(src proto.Message) { + xxx_messageInfo_IPAddressList.Merge(m, src) +} +func (m *IPAddressList) XXX_Size() int { + return m.Size() +} +func (m *IPAddressList) XXX_DiscardUnknown() { + xxx_messageInfo_IPAddressList.DiscardUnknown(m) +} + +var xxx_messageInfo_IPAddressList proto.InternalMessageInfo + +func (m *IPAddressSpec) Reset() { *m = IPAddressSpec{} } +func (*IPAddressSpec) ProtoMessage() {} +func (*IPAddressSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{4} +} +func (m *IPAddressSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *IPAddressSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *IPAddressSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_IPAddressSpec.Merge(m, src) +} +func (m *IPAddressSpec) XXX_Size() int { + return m.Size() +} +func (m *IPAddressSpec) XXX_DiscardUnknown() { + xxx_messageInfo_IPAddressSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_IPAddressSpec proto.InternalMessageInfo + func (m *IPBlock) Reset() { *m = IPBlock{} } func (*IPBlock) ProtoMessage() {} func (*IPBlock) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{2} + return fileDescriptor_2c41434372fec1d7, []int{5} } func (m *IPBlock) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -135,7 +219,7 @@ var xxx_messageInfo_IPBlock proto.InternalMessageInfo func (m *Ingress) Reset() { *m = Ingress{} } func (*Ingress) ProtoMessage() {} func (*Ingress) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{3} + return fileDescriptor_2c41434372fec1d7, []int{6} } func (m *Ingress) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -163,7 +247,7 @@ var xxx_messageInfo_Ingress proto.InternalMessageInfo func (m *IngressBackend) Reset() { *m = IngressBackend{} } func (*IngressBackend) ProtoMessage() {} func (*IngressBackend) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{4} + return fileDescriptor_2c41434372fec1d7, []int{7} } func (m *IngressBackend) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -191,7 +275,7 @@ var xxx_messageInfo_IngressBackend proto.InternalMessageInfo func (m *IngressClass) Reset() { *m = IngressClass{} } func (*IngressClass) ProtoMessage() {} func (*IngressClass) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{5} + return fileDescriptor_2c41434372fec1d7, []int{8} } func (m *IngressClass) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -219,7 +303,7 @@ var xxx_messageInfo_IngressClass proto.InternalMessageInfo func (m *IngressClassList) Reset() { *m = IngressClassList{} } func (*IngressClassList) ProtoMessage() {} func (*IngressClassList) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{6} + return fileDescriptor_2c41434372fec1d7, []int{9} } func (m *IngressClassList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -247,7 +331,7 @@ var xxx_messageInfo_IngressClassList proto.InternalMessageInfo func (m *IngressClassParametersReference) Reset() { *m = IngressClassParametersReference{} } func (*IngressClassParametersReference) ProtoMessage() {} func (*IngressClassParametersReference) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{7} + return fileDescriptor_2c41434372fec1d7, []int{10} } func (m *IngressClassParametersReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -275,7 +359,7 @@ var xxx_messageInfo_IngressClassParametersReference proto.InternalMessageInfo func (m *IngressClassSpec) Reset() { *m = IngressClassSpec{} } func (*IngressClassSpec) ProtoMessage() {} func (*IngressClassSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{8} + return fileDescriptor_2c41434372fec1d7, []int{11} } func (m *IngressClassSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -303,7 +387,7 @@ var xxx_messageInfo_IngressClassSpec proto.InternalMessageInfo func (m *IngressList) Reset() { *m = IngressList{} } func (*IngressList) ProtoMessage() {} func (*IngressList) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{9} + return fileDescriptor_2c41434372fec1d7, []int{12} } func (m *IngressList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -331,7 +415,7 @@ var xxx_messageInfo_IngressList proto.InternalMessageInfo func (m *IngressLoadBalancerIngress) Reset() { *m = IngressLoadBalancerIngress{} } func (*IngressLoadBalancerIngress) ProtoMessage() {} func (*IngressLoadBalancerIngress) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{10} + return fileDescriptor_2c41434372fec1d7, []int{13} } func (m *IngressLoadBalancerIngress) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -359,7 +443,7 @@ var xxx_messageInfo_IngressLoadBalancerIngress proto.InternalMessageInfo func (m *IngressLoadBalancerStatus) Reset() { *m = IngressLoadBalancerStatus{} } func (*IngressLoadBalancerStatus) ProtoMessage() {} func (*IngressLoadBalancerStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{11} + return fileDescriptor_2c41434372fec1d7, []int{14} } func (m *IngressLoadBalancerStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -387,7 +471,7 @@ var xxx_messageInfo_IngressLoadBalancerStatus proto.InternalMessageInfo func (m *IngressPortStatus) Reset() { *m = IngressPortStatus{} } func (*IngressPortStatus) ProtoMessage() {} func (*IngressPortStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{12} + return fileDescriptor_2c41434372fec1d7, []int{15} } func (m *IngressPortStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -415,7 +499,7 @@ var xxx_messageInfo_IngressPortStatus proto.InternalMessageInfo func (m *IngressRule) Reset() { *m = IngressRule{} } func (*IngressRule) ProtoMessage() {} func (*IngressRule) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{13} + return fileDescriptor_2c41434372fec1d7, []int{16} } func (m *IngressRule) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -443,7 +527,7 @@ var xxx_messageInfo_IngressRule proto.InternalMessageInfo func (m *IngressRuleValue) Reset() { *m = IngressRuleValue{} } func (*IngressRuleValue) ProtoMessage() {} func (*IngressRuleValue) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{14} + return fileDescriptor_2c41434372fec1d7, []int{17} } func (m *IngressRuleValue) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -471,7 +555,7 @@ var xxx_messageInfo_IngressRuleValue proto.InternalMessageInfo func (m *IngressServiceBackend) Reset() { *m = IngressServiceBackend{} } func (*IngressServiceBackend) ProtoMessage() {} func (*IngressServiceBackend) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{15} + return fileDescriptor_2c41434372fec1d7, []int{18} } func (m *IngressServiceBackend) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -499,7 +583,7 @@ var xxx_messageInfo_IngressServiceBackend proto.InternalMessageInfo func (m *IngressSpec) Reset() { *m = IngressSpec{} } func (*IngressSpec) ProtoMessage() {} func (*IngressSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{16} + return fileDescriptor_2c41434372fec1d7, []int{19} } func (m *IngressSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -527,7 +611,7 @@ var xxx_messageInfo_IngressSpec proto.InternalMessageInfo func (m *IngressStatus) Reset() { *m = IngressStatus{} } func (*IngressStatus) ProtoMessage() {} func (*IngressStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{17} + return fileDescriptor_2c41434372fec1d7, []int{20} } func (m *IngressStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -555,7 +639,7 @@ var xxx_messageInfo_IngressStatus proto.InternalMessageInfo func (m *IngressTLS) Reset() { *m = IngressTLS{} } func (*IngressTLS) ProtoMessage() {} func (*IngressTLS) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{18} + return fileDescriptor_2c41434372fec1d7, []int{21} } func (m *IngressTLS) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -583,7 +667,7 @@ var xxx_messageInfo_IngressTLS proto.InternalMessageInfo func (m *NetworkPolicy) Reset() { *m = NetworkPolicy{} } func (*NetworkPolicy) ProtoMessage() {} func (*NetworkPolicy) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{19} + return fileDescriptor_2c41434372fec1d7, []int{22} } func (m *NetworkPolicy) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -611,7 +695,7 @@ var xxx_messageInfo_NetworkPolicy proto.InternalMessageInfo func (m *NetworkPolicyEgressRule) Reset() { *m = NetworkPolicyEgressRule{} } func (*NetworkPolicyEgressRule) ProtoMessage() {} func (*NetworkPolicyEgressRule) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{20} + return fileDescriptor_2c41434372fec1d7, []int{23} } func (m *NetworkPolicyEgressRule) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -639,7 +723,7 @@ var xxx_messageInfo_NetworkPolicyEgressRule proto.InternalMessageInfo func (m *NetworkPolicyIngressRule) Reset() { *m = NetworkPolicyIngressRule{} } func (*NetworkPolicyIngressRule) ProtoMessage() {} func (*NetworkPolicyIngressRule) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{21} + return fileDescriptor_2c41434372fec1d7, []int{24} } func (m *NetworkPolicyIngressRule) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -667,7 +751,7 @@ var xxx_messageInfo_NetworkPolicyIngressRule proto.InternalMessageInfo func (m *NetworkPolicyList) Reset() { *m = NetworkPolicyList{} } func (*NetworkPolicyList) ProtoMessage() {} func (*NetworkPolicyList) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{22} + return fileDescriptor_2c41434372fec1d7, []int{25} } func (m *NetworkPolicyList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -695,7 +779,7 @@ var xxx_messageInfo_NetworkPolicyList proto.InternalMessageInfo func (m *NetworkPolicyPeer) Reset() { *m = NetworkPolicyPeer{} } func (*NetworkPolicyPeer) ProtoMessage() {} func (*NetworkPolicyPeer) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{23} + return fileDescriptor_2c41434372fec1d7, []int{26} } func (m *NetworkPolicyPeer) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -723,7 +807,7 @@ var xxx_messageInfo_NetworkPolicyPeer proto.InternalMessageInfo func (m *NetworkPolicyPort) Reset() { *m = NetworkPolicyPort{} } func (*NetworkPolicyPort) ProtoMessage() {} func (*NetworkPolicyPort) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{24} + return fileDescriptor_2c41434372fec1d7, []int{27} } func (m *NetworkPolicyPort) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -751,7 +835,7 @@ var xxx_messageInfo_NetworkPolicyPort proto.InternalMessageInfo func (m *NetworkPolicySpec) Reset() { *m = NetworkPolicySpec{} } func (*NetworkPolicySpec) ProtoMessage() {} func (*NetworkPolicySpec) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{25} + return fileDescriptor_2c41434372fec1d7, []int{28} } func (m *NetworkPolicySpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -776,10 +860,38 @@ func (m *NetworkPolicySpec) XXX_DiscardUnknown() { var xxx_messageInfo_NetworkPolicySpec proto.InternalMessageInfo +func (m *ParentReference) Reset() { *m = ParentReference{} } +func (*ParentReference) ProtoMessage() {} +func (*ParentReference) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{29} +} +func (m *ParentReference) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ParentReference) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ParentReference) XXX_Merge(src proto.Message) { + xxx_messageInfo_ParentReference.Merge(m, src) +} +func (m *ParentReference) XXX_Size() int { + return m.Size() +} +func (m *ParentReference) XXX_DiscardUnknown() { + xxx_messageInfo_ParentReference.DiscardUnknown(m) +} + +var xxx_messageInfo_ParentReference proto.InternalMessageInfo + func (m *ServiceBackendPort) Reset() { *m = ServiceBackendPort{} } func (*ServiceBackendPort) ProtoMessage() {} func (*ServiceBackendPort) Descriptor() ([]byte, []int) { - return fileDescriptor_2c41434372fec1d7, []int{26} + return fileDescriptor_2c41434372fec1d7, []int{30} } func (m *ServiceBackendPort) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -804,9 +916,124 @@ func (m *ServiceBackendPort) XXX_DiscardUnknown() { var xxx_messageInfo_ServiceBackendPort proto.InternalMessageInfo +func (m *ServiceCIDR) Reset() { *m = ServiceCIDR{} } +func (*ServiceCIDR) ProtoMessage() {} +func (*ServiceCIDR) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{31} +} +func (m *ServiceCIDR) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ServiceCIDR) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ServiceCIDR) XXX_Merge(src proto.Message) { + xxx_messageInfo_ServiceCIDR.Merge(m, src) +} +func (m *ServiceCIDR) XXX_Size() int { + return m.Size() +} +func (m *ServiceCIDR) XXX_DiscardUnknown() { + xxx_messageInfo_ServiceCIDR.DiscardUnknown(m) +} + +var xxx_messageInfo_ServiceCIDR proto.InternalMessageInfo + +func (m *ServiceCIDRList) Reset() { *m = ServiceCIDRList{} } +func (*ServiceCIDRList) ProtoMessage() {} +func (*ServiceCIDRList) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{32} +} +func (m *ServiceCIDRList) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ServiceCIDRList) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ServiceCIDRList) XXX_Merge(src proto.Message) { + xxx_messageInfo_ServiceCIDRList.Merge(m, src) +} +func (m *ServiceCIDRList) XXX_Size() int { + return m.Size() +} +func (m *ServiceCIDRList) XXX_DiscardUnknown() { + xxx_messageInfo_ServiceCIDRList.DiscardUnknown(m) +} + +var xxx_messageInfo_ServiceCIDRList proto.InternalMessageInfo + +func (m *ServiceCIDRSpec) Reset() { *m = ServiceCIDRSpec{} } +func (*ServiceCIDRSpec) ProtoMessage() {} +func (*ServiceCIDRSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{33} +} +func (m *ServiceCIDRSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ServiceCIDRSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ServiceCIDRSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_ServiceCIDRSpec.Merge(m, src) +} +func (m *ServiceCIDRSpec) XXX_Size() int { + return m.Size() +} +func (m *ServiceCIDRSpec) XXX_DiscardUnknown() { + xxx_messageInfo_ServiceCIDRSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_ServiceCIDRSpec proto.InternalMessageInfo + +func (m *ServiceCIDRStatus) Reset() { *m = ServiceCIDRStatus{} } +func (*ServiceCIDRStatus) ProtoMessage() {} +func (*ServiceCIDRStatus) Descriptor() ([]byte, []int) { + return fileDescriptor_2c41434372fec1d7, []int{34} +} +func (m *ServiceCIDRStatus) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ServiceCIDRStatus) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *ServiceCIDRStatus) XXX_Merge(src proto.Message) { + xxx_messageInfo_ServiceCIDRStatus.Merge(m, src) +} +func (m *ServiceCIDRStatus) XXX_Size() int { + return m.Size() +} +func (m *ServiceCIDRStatus) XXX_DiscardUnknown() { + xxx_messageInfo_ServiceCIDRStatus.DiscardUnknown(m) +} + +var xxx_messageInfo_ServiceCIDRStatus proto.InternalMessageInfo + func init() { proto.RegisterType((*HTTPIngressPath)(nil), "k8s.io.api.networking.v1.HTTPIngressPath") proto.RegisterType((*HTTPIngressRuleValue)(nil), "k8s.io.api.networking.v1.HTTPIngressRuleValue") + proto.RegisterType((*IPAddress)(nil), "k8s.io.api.networking.v1.IPAddress") + proto.RegisterType((*IPAddressList)(nil), "k8s.io.api.networking.v1.IPAddressList") + proto.RegisterType((*IPAddressSpec)(nil), "k8s.io.api.networking.v1.IPAddressSpec") proto.RegisterType((*IPBlock)(nil), "k8s.io.api.networking.v1.IPBlock") proto.RegisterType((*Ingress)(nil), "k8s.io.api.networking.v1.Ingress") proto.RegisterType((*IngressBackend)(nil), "k8s.io.api.networking.v1.IngressBackend") @@ -831,7 +1058,12 @@ func init() { proto.RegisterType((*NetworkPolicyPeer)(nil), "k8s.io.api.networking.v1.NetworkPolicyPeer") proto.RegisterType((*NetworkPolicyPort)(nil), "k8s.io.api.networking.v1.NetworkPolicyPort") proto.RegisterType((*NetworkPolicySpec)(nil), "k8s.io.api.networking.v1.NetworkPolicySpec") + proto.RegisterType((*ParentReference)(nil), "k8s.io.api.networking.v1.ParentReference") proto.RegisterType((*ServiceBackendPort)(nil), "k8s.io.api.networking.v1.ServiceBackendPort") + proto.RegisterType((*ServiceCIDR)(nil), "k8s.io.api.networking.v1.ServiceCIDR") + proto.RegisterType((*ServiceCIDRList)(nil), "k8s.io.api.networking.v1.ServiceCIDRList") + proto.RegisterType((*ServiceCIDRSpec)(nil), "k8s.io.api.networking.v1.ServiceCIDRSpec") + proto.RegisterType((*ServiceCIDRStatus)(nil), "k8s.io.api.networking.v1.ServiceCIDRStatus") } func init() { @@ -839,111 +1071,125 @@ func init() { } var fileDescriptor_2c41434372fec1d7 = []byte{ - // 1652 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xbc, 0x58, 0x4b, 0x6f, 0x1b, 0x55, - 0x14, 0xce, 0x38, 0x71, 0xec, 0x1c, 0x27, 0x69, 0x72, 0x69, 0x85, 0x09, 0xc2, 0x0e, 0x23, 0xda, - 0x06, 0xda, 0xda, 0x34, 0xad, 0x10, 0x6c, 0x78, 0x4c, 0x9a, 0xa6, 0xa1, 0xa9, 0x63, 0x5d, 0x5b, - 0x45, 0x20, 0x1e, 0x9d, 0x8c, 0x6f, 0x9c, 0x69, 0xc6, 0x33, 0xa3, 0x3b, 0xd7, 0xa5, 0x95, 0x10, - 0x62, 0xc3, 0x82, 0x1d, 0x7f, 0x01, 0xf1, 0x0b, 0x10, 0x2c, 0x90, 0x10, 0x14, 0x36, 0xa8, 0xcb, - 0x4a, 0x6c, 0xba, 0xc1, 0xa2, 0xe6, 0x5f, 0x64, 0x85, 0xee, 0x63, 0x1e, 0x7e, 0xd5, 0xa6, 0xaa, - 0xb2, 0x4a, 0xee, 0x39, 0xe7, 0x7e, 0xe7, 0x71, 0xcf, 0x6b, 0x0c, 0x6b, 0x87, 0x6f, 0x06, 0x25, - 0xdb, 0x2b, 0x9b, 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copy(dAtA[i:], m.Except[iNdEx]) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.Except[iNdEx]))) - i-- - dAtA[i] = 0x12 + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - i -= len(m.CIDR) - copy(dAtA[i:], m.CIDR) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.CIDR))) i-- dAtA[i] = 0xa return len(dAtA) - i, nil } -func (m *Ingress) Marshal() (dAtA []byte, err error) { +func (m *IPAddressList) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -1075,38 +1327,32 @@ func (m *Ingress) Marshal() (dAtA []byte, err error) { return dAtA[:n], nil } -func (m *Ingress) MarshalTo(dAtA []byte) (int, error) { +func (m *IPAddressList) MarshalTo(dAtA []byte) (int, error) { size := m.Size() return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *Ingress) MarshalToSizedBuffer(dAtA []byte) (int, error) { +func (m *IPAddressList) MarshalToSizedBuffer(dAtA []byte) (int, error) { i := len(dAtA) _ = i var l int _ = l - { - size, err := m.Status.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) - } - i-- - dAtA[i] = 0x1a - { - size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) } - i-- - dAtA[i] = 0x12 { - size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) if err != nil { return 0, err } @@ -1118,7 +1364,7 @@ func (m *Ingress) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } -func (m *IngressBackend) Marshal() (dAtA []byte, err error) { +func (m *IPAddressSpec) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -1128,19 +1374,19 @@ func (m *IngressBackend) Marshal() (dAtA []byte, err error) { return dAtA[:n], nil } -func (m *IngressBackend) MarshalTo(dAtA []byte) (int, error) { +func (m *IPAddressSpec) MarshalTo(dAtA []byte) (int, error) { size := m.Size() return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *IngressBackend) MarshalToSizedBuffer(dAtA []byte) (int, error) { +func (m *IPAddressSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { i := len(dAtA) _ = i var l int _ = l - if m.Service != nil { + if m.ParentRef != nil { { - size, err := m.Service.MarshalToSizedBuffer(dAtA[:i]) + size, err := m.ParentRef.MarshalToSizedBuffer(dAtA[:i]) if err != nil { return 0, err } @@ -1148,15 +1394,140 @@ func (m *IngressBackend) MarshalToSizedBuffer(dAtA []byte) (int, error) { i = encodeVarintGenerated(dAtA, i, uint64(size)) } i-- - dAtA[i] = 0x22 + dAtA[i] = 0xa } - if m.Resource != nil { - { - size, err := m.Resource.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size + return len(dAtA) - i, nil +} + +func (m *IPBlock) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *IPBlock) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *IPBlock) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Except) > 0 { + for iNdEx := len(m.Except) - 1; iNdEx >= 0; iNdEx-- { + i -= len(m.Except[iNdEx]) + copy(dAtA[i:], m.Except[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Except[iNdEx]))) + i-- + dAtA[i] = 0x12 + } + } + i -= len(m.CIDR) + copy(dAtA[i:], m.CIDR) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.CIDR))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *Ingress) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *Ingress) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *Ingress) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + { + size, err := m.Status.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1a + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *IngressBackend) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *IngressBackend) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *IngressBackend) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if m.Service != nil { + { + size, err := m.Service.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x22 + } + if m.Resource != nil { + { + size, err := m.Resource.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size i = encodeVarintGenerated(dAtA, i, uint64(size)) } i-- @@ -2137,6 +2508,49 @@ func (m *NetworkPolicySpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ParentReference) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ParentReference) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ParentReference) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0x22 + i -= len(m.Namespace) + copy(dAtA[i:], m.Namespace) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Namespace))) + i-- + dAtA[i] = 0x1a + i -= len(m.Resource) + copy(dAtA[i:], m.Resource) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Resource))) + i-- + dAtA[i] = 0x12 + i -= len(m.Group) + copy(dAtA[i:], m.Group) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Group))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *ServiceBackendPort) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -2168,72 +2582,284 @@ func (m *ServiceBackendPort) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } -func encodeVarintGenerated(dAtA []byte, offset int, v uint64) int { - offset -= sovGenerated(v) - base := offset - for v >= 1<<7 { - dAtA[offset] = uint8(v&0x7f | 0x80) - v >>= 7 - offset++ +func (m *ServiceCIDR) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - dAtA[offset] = uint8(v) - return base + return dAtA[:n], nil } -func (m *HTTPIngressPath) Size() (n int) { - if m == nil { - return 0 - } - var l int - _ = l - l = len(m.Path) - n += 1 + l + sovGenerated(uint64(l)) - l = m.Backend.Size() - n += 1 + l + sovGenerated(uint64(l)) - if m.PathType != nil { - l = len(*m.PathType) - n += 1 + l + sovGenerated(uint64(l)) - } - return n + +func (m *ServiceCIDR) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *HTTPIngressRuleValue) Size() (n int) { - if m == nil { - return 0 - } +func (m *ServiceCIDR) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - if len(m.Paths) > 0 { - for _, e := range m.Paths { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + { + size, err := m.Status.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n -} - -func (m *IPBlock) Size() (n int) { - if m == nil { - return 0 + i-- + dAtA[i] = 0x1a + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - var l int - _ = l - l = len(m.CIDR) - n += 1 + l + sovGenerated(uint64(l)) - if len(m.Except) > 0 { - for _, s := range m.Except { - l = len(s) - n += 1 + l + sovGenerated(uint64(l)) + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *Ingress) Size() (n int) { - if m == nil { - return 0 +func (m *ServiceCIDRList) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - var l int - _ = l + return dAtA[:n], nil +} + +func (m *ServiceCIDRList) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ServiceCIDRList) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } + { + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *ServiceCIDRSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ServiceCIDRSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ServiceCIDRSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.CIDRs) > 0 { + for iNdEx := len(m.CIDRs) - 1; iNdEx >= 0; iNdEx-- { + i -= len(m.CIDRs[iNdEx]) + copy(dAtA[i:], m.CIDRs[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.CIDRs[iNdEx]))) + i-- + dAtA[i] = 0xa + } + } + return len(dAtA) - i, nil +} + +func (m *ServiceCIDRStatus) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ServiceCIDRStatus) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ServiceCIDRStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Conditions) > 0 { + for iNdEx := len(m.Conditions) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Conditions[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + } + } + return len(dAtA) - i, nil +} + +func encodeVarintGenerated(dAtA []byte, offset int, v uint64) int { + offset -= sovGenerated(v) + base := offset + for v >= 1<<7 { + dAtA[offset] = uint8(v&0x7f | 0x80) + v >>= 7 + offset++ + } + dAtA[offset] = uint8(v) + return base +} +func (m *HTTPIngressPath) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Path) + n += 1 + l + sovGenerated(uint64(l)) + l = m.Backend.Size() + n += 1 + l + sovGenerated(uint64(l)) + if m.PathType != nil { + l = len(*m.PathType) + n += 1 + l + sovGenerated(uint64(l)) + } + return n +} + +func (m *HTTPIngressRuleValue) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Paths) > 0 { + for _, e := range m.Paths { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *IPAddress) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *IPAddressList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *IPAddressSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.ParentRef != nil { + l = m.ParentRef.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + return n +} + +func (m *IPBlock) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.CIDR) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Except) > 0 { + for _, s := range m.Except { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *Ingress) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l l = m.ObjectMeta.Size() n += 1 + l + sovGenerated(uint64(l)) l = m.Spec.Size() @@ -2635,6 +3261,23 @@ func (m *NetworkPolicySpec) Size() (n int) { return n } +func (m *ParentReference) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Group) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Resource) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Namespace) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *ServiceBackendPort) Size() (n int) { if m == nil { return 0 @@ -2647,39 +3290,138 @@ func (m *ServiceBackendPort) Size() (n int) { return n } -func sovGenerated(x uint64) (n int) { - return (math_bits.Len64(x|1) + 6) / 7 -} -func sozGenerated(x uint64) (n int) { - return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) -} -func (this *HTTPIngressPath) String() string { - if this == nil { - return "nil" +func (m *ServiceCIDR) Size() (n int) { + if m == nil { + return 0 } - s := strings.Join([]string{`&HTTPIngressPath{`, - `Path:` + fmt.Sprintf("%v", this.Path) + `,`, - `Backend:` + strings.Replace(strings.Replace(this.Backend.String(), "IngressBackend", "IngressBackend", 1), `&`, ``, 1) + `,`, - `PathType:` + valueToStringGenerated(this.PathType) + `,`, - `}`, - }, "") - return s + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Status.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n } -func (this *HTTPIngressRuleValue) String() string { - if this == nil { - return "nil" + +func (m *ServiceCIDRList) Size() (n int) { + if m == nil { + return 0 } - repeatedStringForPaths := "[]HTTPIngressPath{" - for _, f := range this.Paths { - repeatedStringForPaths += strings.Replace(strings.Replace(f.String(), "HTTPIngressPath", "HTTPIngressPath", 1), `&`, ``, 1) + "," + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } } - repeatedStringForPaths += "}" + return n +} + +func (m *ServiceCIDRSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.CIDRs) > 0 { + for _, s := range m.CIDRs { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ServiceCIDRStatus) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Conditions) > 0 { + for _, e := range m.Conditions { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func sovGenerated(x uint64) (n int) { + return (math_bits.Len64(x|1) + 6) / 7 +} +func sozGenerated(x uint64) (n int) { + return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) +} +func (this *HTTPIngressPath) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&HTTPIngressPath{`, + `Path:` + fmt.Sprintf("%v", this.Path) + `,`, + `Backend:` + strings.Replace(strings.Replace(this.Backend.String(), "IngressBackend", "IngressBackend", 1), `&`, ``, 1) + `,`, + `PathType:` + valueToStringGenerated(this.PathType) + `,`, + `}`, + }, "") + return s +} +func (this *HTTPIngressRuleValue) String() string { + if this == nil { + return "nil" + } + repeatedStringForPaths := "[]HTTPIngressPath{" + for _, f := range this.Paths { + repeatedStringForPaths += strings.Replace(strings.Replace(f.String(), "HTTPIngressPath", "HTTPIngressPath", 1), `&`, ``, 1) + "," + } + repeatedStringForPaths += "}" s := strings.Join([]string{`&HTTPIngressRuleValue{`, `Paths:` + repeatedStringForPaths + `,`, `}`, }, "") return s } +func (this *IPAddress) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&IPAddress{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "IPAddressSpec", "IPAddressSpec", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *IPAddressList) String() string { + if this == nil { + return "nil" + } + repeatedStringForItems := "[]IPAddress{" + for _, f := range this.Items { + repeatedStringForItems += strings.Replace(strings.Replace(f.String(), "IPAddress", "IPAddress", 1), `&`, ``, 1) + "," + } + repeatedStringForItems += "}" + s := strings.Join([]string{`&IPAddressList{`, + `ListMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ListMeta), "ListMeta", "v1.ListMeta", 1), `&`, ``, 1) + `,`, + `Items:` + repeatedStringForItems + `,`, + `}`, + }, "") + return s +} +func (this *IPAddressSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&IPAddressSpec{`, + `ParentRef:` + strings.Replace(this.ParentRef.String(), "ParentReference", "ParentReference", 1) + `,`, + `}`, + }, "") + return s +} func (this *IPBlock) String() string { if this == nil { return "nil" @@ -3018,6 +3760,19 @@ func (this *NetworkPolicySpec) String() string { }, "") return s } +func (this *ParentReference) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ParentReference{`, + `Group:` + fmt.Sprintf("%v", this.Group) + `,`, + `Resource:` + fmt.Sprintf("%v", this.Resource) + `,`, + `Namespace:` + fmt.Sprintf("%v", this.Namespace) + `,`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `}`, + }, "") + return s +} func (this *ServiceBackendPort) String() string { if this == nil { return "nil" @@ -3029,6 +3784,59 @@ func (this *ServiceBackendPort) String() string { }, "") return s } +func (this *ServiceCIDR) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ServiceCIDR{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "ServiceCIDRSpec", "ServiceCIDRSpec", 1), `&`, ``, 1) + `,`, + `Status:` + strings.Replace(strings.Replace(this.Status.String(), "ServiceCIDRStatus", "ServiceCIDRStatus", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *ServiceCIDRList) String() string { + if this == nil { + return "nil" + } + repeatedStringForItems := "[]ServiceCIDR{" + for _, f := range this.Items { + repeatedStringForItems += strings.Replace(strings.Replace(f.String(), "ServiceCIDR", "ServiceCIDR", 1), `&`, ``, 1) + "," + } + repeatedStringForItems += "}" + s := strings.Join([]string{`&ServiceCIDRList{`, + `ListMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ListMeta), "ListMeta", "v1.ListMeta", 1), `&`, ``, 1) + `,`, + `Items:` + repeatedStringForItems + `,`, + `}`, + }, "") + return s +} +func (this *ServiceCIDRSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ServiceCIDRSpec{`, + `CIDRs:` + fmt.Sprintf("%v", this.CIDRs) + `,`, + `}`, + }, "") + return s +} +func (this *ServiceCIDRStatus) String() string { + if this == nil { + return "nil" + } + repeatedStringForConditions := "[]Condition{" + for _, f := range this.Conditions { + repeatedStringForConditions += fmt.Sprintf("%v", f) + "," + } + repeatedStringForConditions += "}" + s := strings.Join([]string{`&ServiceCIDRStatus{`, + `Conditions:` + repeatedStringForConditions + `,`, + `}`, + }, "") + return s +} func valueToStringGenerated(v interface{}) string { rv := reflect.ValueOf(v) if rv.IsNil() { @@ -3269,7 +4077,7 @@ func (m *HTTPIngressRuleValue) Unmarshal(dAtA []byte) error { } return nil } -func (m *IPBlock) Unmarshal(dAtA []byte) error { +func (m *IPAddress) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3292,17 +4100,17 @@ func (m *IPBlock) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IPBlock: wiretype end group for non-group") + return fmt.Errorf("proto: IPAddress: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IPBlock: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IPAddress: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field CIDR", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3312,29 +4120,30 @@ func (m *IPBlock) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.CIDR = string(dAtA[iNdEx:postIndex]) + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Except", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3344,23 +4153,24 @@ func (m *IPBlock) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Except = append(m.Except, string(dAtA[iNdEx:postIndex])) + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -3383,7 +4193,7 @@ func (m *IPBlock) Unmarshal(dAtA []byte) error { } return nil } -func (m *Ingress) Unmarshal(dAtA []byte) error { +func (m *IPAddressList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3406,15 +4216,15 @@ func (m *Ingress) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: Ingress: wiretype end group for non-group") + return fmt.Errorf("proto: IPAddressList: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: Ingress: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IPAddressList: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3441,46 +4251,13 @@ func (m *Ingress) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Status", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3507,7 +4284,8 @@ func (m *Ingress) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Status.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Items = append(m.Items, IPAddress{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -3532,7 +4310,7 @@ func (m *Ingress) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressBackend) Unmarshal(dAtA []byte) error { +func (m *IPAddressSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3555,51 +4333,15 @@ func (m *IngressBackend) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressBackend: wiretype end group for non-group") + return fmt.Errorf("proto: IPAddressSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressBackend: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IPAddressSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Resource", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if m.Resource == nil { - m.Resource = &v11.TypedLocalObjectReference{} - } - if err := m.Resource.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 4: + case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Service", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ParentRef", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3626,10 +4368,10 @@ func (m *IngressBackend) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Service == nil { - m.Service = &IngressServiceBackend{} + if m.ParentRef == nil { + m.ParentRef = &ParentReference{} } - if err := m.Service.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ParentRef.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -3654,7 +4396,7 @@ func (m *IngressBackend) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressClass) Unmarshal(dAtA []byte) error { +func (m *IPBlock) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3677,17 +4419,17 @@ func (m *IngressClass) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressClass: wiretype end group for non-group") + return fmt.Errorf("proto: IPBlock: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressClass: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IPBlock: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field CIDR", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3697,30 +4439,29 @@ func (m *IngressClass) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.CIDR = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Except", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3730,24 +4471,23 @@ func (m *IngressClass) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Except = append(m.Except, string(dAtA[iNdEx:postIndex])) iNdEx = postIndex default: iNdEx = preIndex @@ -3770,7 +4510,7 @@ func (m *IngressClass) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressClassList) Unmarshal(dAtA []byte) error { +func (m *Ingress) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3793,15 +4533,15 @@ func (m *IngressClassList) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressClassList: wiretype end group for non-group") + return fmt.Errorf("proto: Ingress: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressClassList: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: Ingress: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3828,13 +4568,13 @@ func (m *IngressClassList) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3861,8 +4601,40 @@ func (m *IngressClassList) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Items = append(m.Items, IngressClass{}) - if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Status", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Status.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -3887,7 +4659,7 @@ func (m *IngressClassList) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { +func (m *IngressBackend) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3910,50 +4682,17 @@ func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressClassParametersReference: wiretype end group for non-group") + return fmt.Errorf("proto: IngressBackend: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressClassParametersReference: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressBackend: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { - case 1: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field APIGroup", wireType) - } - var stringLen uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLen |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLen := int(stringLen) - if intStringLen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + intStringLen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - s := string(dAtA[iNdEx:postIndex]) - m.APIGroup = &s - iNdEx = postIndex - case 2: + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Kind", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Resource", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3963,61 +4702,33 @@ func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Kind = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) - } - var stringLen uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLen |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLen := int(stringLen) - if intStringLen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + intStringLen - if postIndex < 0 { - return ErrInvalidLengthGenerated + if m.Resource == nil { + m.Resource = &v11.TypedLocalObjectReference{} } - if postIndex > l { - return io.ErrUnexpectedEOF + if err := m.Resource.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err } - m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Scope", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Service", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4027,57 +4738,27 @@ func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - s := string(dAtA[iNdEx:postIndex]) - m.Scope = &s - iNdEx = postIndex - case 5: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Namespace", wireType) - } - var stringLen uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLen |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLen := int(stringLen) - if intStringLen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + intStringLen - if postIndex < 0 { - return ErrInvalidLengthGenerated + if m.Service == nil { + m.Service = &IngressServiceBackend{} } - if postIndex > l { - return io.ErrUnexpectedEOF + if err := m.Service.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err } - s := string(dAtA[iNdEx:postIndex]) - m.Namespace = &s iNdEx = postIndex default: iNdEx = preIndex @@ -4100,7 +4781,7 @@ func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { +func (m *IngressClass) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4123,17 +4804,17 @@ func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressClassSpec: wiretype end group for non-group") + return fmt.Errorf("proto: IngressClass: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressClassSpec: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressClass: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Controller", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4143,27 +4824,28 @@ func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Controller = string(dAtA[iNdEx:postIndex]) + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Parameters", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4190,10 +4872,7 @@ func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Parameters == nil { - m.Parameters = &IngressClassParametersReference{} - } - if err := m.Parameters.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4218,7 +4897,7 @@ func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressList) Unmarshal(dAtA []byte) error { +func (m *IngressClassList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4241,10 +4920,10 @@ func (m *IngressList) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressList: wiretype end group for non-group") + return fmt.Errorf("proto: IngressClassList: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressList: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressClassList: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: @@ -4309,7 +4988,7 @@ func (m *IngressList) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Items = append(m.Items, Ingress{}) + m.Items = append(m.Items, IngressClass{}) if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } @@ -4335,7 +5014,7 @@ func (m *IngressList) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { +func (m *IngressClassParametersReference) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4358,15 +5037,15 @@ func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressLoadBalancerIngress: wiretype end group for non-group") + return fmt.Errorf("proto: IngressClassParametersReference: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressLoadBalancerIngress: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressClassParametersReference: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field IP", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field APIGroup", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4394,11 +5073,12 @@ func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.IP = string(dAtA[iNdEx:postIndex]) + s := string(dAtA[iNdEx:postIndex]) + m.APIGroup = &s iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Hostname", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Kind", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4426,13 +5106,45 @@ func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Hostname = string(dAtA[iNdEx:postIndex]) + m.Kind = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Scope", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4442,25 +5154,57 @@ func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Ports = append(m.Ports, IngressPortStatus{}) - if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err + s := string(dAtA[iNdEx:postIndex]) + m.Scope = &s + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Namespace", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF } + s := string(dAtA[iNdEx:postIndex]) + m.Namespace = &s iNdEx = postIndex default: iNdEx = preIndex @@ -4483,7 +5227,7 @@ func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressLoadBalancerStatus) Unmarshal(dAtA []byte) error { +func (m *IngressClassSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4506,15 +5250,47 @@ func (m *IngressLoadBalancerStatus) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressLoadBalancerStatus: wiretype end group for non-group") + return fmt.Errorf("proto: IngressClassSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressLoadBalancerStatus: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressClassSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Ingress", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Controller", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Controller = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Parameters", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4541,8 +5317,10 @@ func (m *IngressLoadBalancerStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Ingress = append(m.Ingress, IngressLoadBalancerIngress{}) - if err := m.Ingress[len(m.Ingress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if m.Parameters == nil { + m.Parameters = &IngressClassParametersReference{} + } + if err := m.Parameters.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4567,7 +5345,7 @@ func (m *IngressLoadBalancerStatus) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { +func (m *IngressList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4590,36 +5368,17 @@ func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressPortStatus: wiretype end group for non-group") + return fmt.Errorf("proto: IngressList: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressPortStatus: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressList: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) - } - m.Port = 0 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - m.Port |= int32(b&0x7F) << shift - if b < 0x80 { - break - } - } - case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Protocol", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4629,29 +5388,30 @@ func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Protocol = k8s_io_api_core_v1.Protocol(dAtA[iNdEx:postIndex]) + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex - case 3: + case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Error", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4661,24 +5421,25 @@ func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - s := string(dAtA[iNdEx:postIndex]) - m.Error = &s + m.Items = append(m.Items, Ingress{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -4701,7 +5462,7 @@ func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressRule) Unmarshal(dAtA []byte) error { +func (m *IngressLoadBalancerIngress) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4724,15 +5485,15 @@ func (m *IngressRule) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressRule: wiretype end group for non-group") + return fmt.Errorf("proto: IngressLoadBalancerIngress: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressRule: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressLoadBalancerIngress: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Host", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field IP", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4760,11 +5521,43 @@ func (m *IngressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Host = string(dAtA[iNdEx:postIndex]) + m.IP = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field IngressRuleValue", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Hostname", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Hostname = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4791,7 +5584,8 @@ func (m *IngressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.IngressRuleValue.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Ports = append(m.Ports, IngressPortStatus{}) + if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4816,7 +5610,7 @@ func (m *IngressRule) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressRuleValue) Unmarshal(dAtA []byte) error { +func (m *IngressLoadBalancerStatus) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4839,15 +5633,15 @@ func (m *IngressRuleValue) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressRuleValue: wiretype end group for non-group") + return fmt.Errorf("proto: IngressLoadBalancerStatus: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressRuleValue: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressLoadBalancerStatus: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field HTTP", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Ingress", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4874,10 +5668,8 @@ func (m *IngressRuleValue) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.HTTP == nil { - m.HTTP = &HTTPIngressRuleValue{} - } - if err := m.HTTP.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Ingress = append(m.Ingress, IngressLoadBalancerIngress{}) + if err := m.Ingress[len(m.Ingress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4902,7 +5694,7 @@ func (m *IngressRuleValue) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { +func (m *IngressPortStatus) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4925,15 +5717,34 @@ func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressServiceBackend: wiretype end group for non-group") + return fmt.Errorf("proto: IngressPortStatus: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressServiceBackend: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressPortStatus: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) + } + m.Port = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.Port |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Protocol", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4961,13 +5772,13 @@ func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Name = string(dAtA[iNdEx:postIndex]) + m.Protocol = k8s_io_api_core_v1.Protocol(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 2: + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Error", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -4977,24 +5788,24 @@ func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Port.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + s := string(dAtA[iNdEx:postIndex]) + m.Error = &s iNdEx = postIndex default: iNdEx = preIndex @@ -5017,7 +5828,7 @@ func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressSpec) Unmarshal(dAtA []byte) error { +func (m *IngressRule) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5040,17 +5851,17 @@ func (m *IngressSpec) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressSpec: wiretype end group for non-group") + return fmt.Errorf("proto: IngressRule: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressSpec: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressRule: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field DefaultBackend", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Host", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5060,65 +5871,27 @@ func (m *IngressSpec) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if m.DefaultBackend == nil { - m.DefaultBackend = &IngressBackend{} - } - if err := m.DefaultBackend.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Host = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field TLS", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.TLS = append(m.TLS, IngressTLS{}) - if err := m.TLS[len(m.TLS)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Rules", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field IngressRuleValue", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5145,44 +5918,10 @@ func (m *IngressSpec) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Rules = append(m.Rules, IngressRule{}) - if err := m.Rules[len(m.Rules)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.IngressRuleValue.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 4: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field IngressClassName", wireType) - } - var stringLen uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLen |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLen := int(stringLen) - if intStringLen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + intStringLen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - s := string(dAtA[iNdEx:postIndex]) - m.IngressClassName = &s - iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -5204,7 +5943,7 @@ func (m *IngressSpec) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressStatus) Unmarshal(dAtA []byte) error { +func (m *IngressRuleValue) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5227,15 +5966,15 @@ func (m *IngressStatus) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressStatus: wiretype end group for non-group") + return fmt.Errorf("proto: IngressRuleValue: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressStatus: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressRuleValue: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field LoadBalancer", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field HTTP", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5262,7 +6001,10 @@ func (m *IngressStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.LoadBalancer.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if m.HTTP == nil { + m.HTTP = &HTTPIngressRuleValue{} + } + if err := m.HTTP.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5287,7 +6029,7 @@ func (m *IngressStatus) Unmarshal(dAtA []byte) error { } return nil } -func (m *IngressTLS) Unmarshal(dAtA []byte) error { +func (m *IngressServiceBackend) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5310,15 +6052,15 @@ func (m *IngressTLS) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: IngressTLS: wiretype end group for non-group") + return fmt.Errorf("proto: IngressServiceBackend: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: IngressTLS: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressServiceBackend: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Hosts", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -5346,13 +6088,13 @@ func (m *IngressTLS) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Hosts = append(m.Hosts, string(dAtA[iNdEx:postIndex])) + m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field SecretName", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5362,23 +6104,24 @@ func (m *IngressTLS) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.SecretName = string(dAtA[iNdEx:postIndex]) + if err := m.Port.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -5401,7 +6144,7 @@ func (m *IngressTLS) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicy) Unmarshal(dAtA []byte) error { +func (m *IngressSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5424,15 +6167,15 @@ func (m *NetworkPolicy) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicy: wiretype end group for non-group") + return fmt.Errorf("proto: IngressSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicy: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DefaultBackend", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5459,13 +6202,16 @@ func (m *NetworkPolicy) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if m.DefaultBackend == nil { + m.DefaultBackend = &IngressBackend{} + } + if err := m.DefaultBackend.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field TLS", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5492,63 +6238,14 @@ func (m *NetworkPolicy) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.TLS = append(m.TLS, IngressTLS{}) + if err := m.TLS[len(m.TLS)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - default: - iNdEx = preIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err - } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated - } - if (iNdEx + skippy) > l { - return io.ErrUnexpectedEOF - } - iNdEx += skippy - } - } - - if iNdEx > l { - return io.ErrUnexpectedEOF - } - return nil -} -func (m *NetworkPolicyEgressRule) Unmarshal(dAtA []byte) error { - l := len(dAtA) - iNdEx := 0 - for iNdEx < l { - preIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - wireType := int(wire & 0x7) - if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicyEgressRule: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicyEgressRule: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Rules", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5575,16 +6272,99 @@ func (m *NetworkPolicyEgressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Ports = append(m.Ports, NetworkPolicyPort{}) - if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Rules = append(m.Rules, IngressRule{}) + if err := m.Rules[len(m.Rules)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 2: + case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field To", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field IngressClassName", wireType) } - var msglen int + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := string(dAtA[iNdEx:postIndex]) + m.IngressClassName = &s + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *IngressStatus) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: IngressStatus: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: IngressStatus: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field LoadBalancer", wireType) + } + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5609,8 +6389,7 @@ func (m *NetworkPolicyEgressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.To = append(m.To, NetworkPolicyPeer{}) - if err := m.To[len(m.To)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.LoadBalancer.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5635,7 +6414,7 @@ func (m *NetworkPolicyEgressRule) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { +func (m *IngressTLS) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5658,15 +6437,129 @@ func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicyIngressRule: wiretype end group for non-group") + return fmt.Errorf("proto: IngressTLS: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicyIngressRule: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: IngressTLS: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Hosts", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Hosts = append(m.Hosts, string(dAtA[iNdEx:postIndex])) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field SecretName", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.SecretName = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicy) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicy: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicy: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5693,14 +6586,13 @@ func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Ports = append(m.Ports, NetworkPolicyPort{}) - if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field From", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5727,10 +6619,1020 @@ func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.From = append(m.From, NetworkPolicyPeer{}) - if err := m.From[len(m.From)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { return err } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicyEgressRule) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicyEgressRule: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicyEgressRule: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Ports = append(m.Ports, NetworkPolicyPort{}) + if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field To", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.To = append(m.To, NetworkPolicyPeer{}) + if err := m.To[len(m.To)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicyIngressRule: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicyIngressRule: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Ports", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Ports = append(m.Ports, NetworkPolicyPort{}) + if err := m.Ports[len(m.Ports)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field From", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.From = append(m.From, NetworkPolicyPeer{}) + if err := m.From[len(m.From)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicyList: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicyList: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Items = append(m.Items, NetworkPolicy{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicyPeer: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicyPeer: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field PodSelector", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.PodSelector == nil { + m.PodSelector = &v1.LabelSelector{} + } + if err := m.PodSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field NamespaceSelector", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.NamespaceSelector == nil { + m.NamespaceSelector = &v1.LabelSelector{} + } + if err := m.NamespaceSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field IPBlock", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.IPBlock == nil { + m.IPBlock = &IPBlock{} + } + if err := m.IPBlock.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicyPort: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicyPort: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Protocol", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := k8s_io_api_core_v1.Protocol(dAtA[iNdEx:postIndex]) + m.Protocol = &s + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Port == nil { + m.Port = &intstr.IntOrString{} + } + if err := m.Port.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field EndPort", wireType) + } + var v int32 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.EndPort = &v + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: NetworkPolicySpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NetworkPolicySpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field PodSelector", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.PodSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Ingress", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Ingress = append(m.Ingress, NetworkPolicyIngressRule{}) + if err := m.Ingress[len(m.Ingress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Egress", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Egress = append(m.Egress, NetworkPolicyEgressRule{}) + if err := m.Egress[len(m.Egress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field PolicyTypes", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.PolicyTypes = append(m.PolicyTypes, PolicyType(dAtA[iNdEx:postIndex])) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *ParentReference) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: ParentReference: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ParentReference: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Group", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Group = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Resource", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Resource = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Namespace", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Namespace = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex default: iNdEx = preIndex @@ -5753,7 +7655,7 @@ func (m *NetworkPolicyIngressRule) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { +func (m *ServiceBackendPort) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5776,17 +7678,17 @@ func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicyList: wiretype end group for non-group") + return fmt.Errorf("proto: ServiceBackendPort: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicyList: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ServiceBackendPort: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5796,30 +7698,29 @@ func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Number", wireType) } - var msglen int + m.Number = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5829,26 +7730,11 @@ func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + m.Number |= int32(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.Items = append(m.Items, NetworkPolicy{}) - if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -5870,7 +7756,7 @@ func (m *NetworkPolicyList) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { +func (m *ServiceCIDR) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5893,15 +7779,15 @@ func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicyPeer: wiretype end group for non-group") + return fmt.Errorf("proto: ServiceCIDR: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicyPeer: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ServiceCIDR: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field PodSelector", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5928,16 +7814,13 @@ func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.PodSelector == nil { - m.PodSelector = &v1.LabelSelector{} - } - if err := m.PodSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field NamespaceSelector", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5964,16 +7847,13 @@ func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.NamespaceSelector == nil { - m.NamespaceSelector = &v1.LabelSelector{} - } - if err := m.NamespaceSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field IPBlock", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Status", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -6000,10 +7880,7 @@ func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.IPBlock == nil { - m.IPBlock = &IPBlock{} - } - if err := m.IPBlock.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Status.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -6028,7 +7905,7 @@ func (m *NetworkPolicyPeer) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { +func (m *ServiceCIDRList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -6051,17 +7928,17 @@ func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicyPort: wiretype end group for non-group") + return fmt.Errorf("proto: ServiceCIDRList: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicyPort: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ServiceCIDRList: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Protocol", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -6071,28 +7948,28 @@ func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - s := k8s_io_api_core_v1.Protocol(dAtA[iNdEx:postIndex]) - m.Protocol = &s + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Port", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -6119,33 +7996,11 @@ func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Port == nil { - m.Port = &intstr.IntOrString{} - } - if err := m.Port.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Items = append(m.Items, ServiceCIDR{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 3: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field EndPort", wireType) - } - var v int32 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - v |= int32(b&0x7F) << shift - if b < 0x80 { - break - } - } - m.EndPort = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -6167,7 +8022,7 @@ func (m *NetworkPolicyPort) Unmarshal(dAtA []byte) error { } return nil } -func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error { +func (m *ServiceCIDRSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -6190,116 +8045,15 @@ func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NetworkPolicySpec: wiretype end group for non-group") + return fmt.Errorf("proto: ServiceCIDRSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NetworkPolicySpec: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ServiceCIDRSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field PodSelector", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if err := m.PodSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Ingress", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.Ingress = append(m.Ingress, NetworkPolicyIngressRule{}) - if err := m.Ingress[len(m.Ingress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Egress", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.Egress = append(m.Egress, NetworkPolicyEgressRule{}) - if err := m.Egress[len(m.Egress)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 4: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field PolicyTypes", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field CIDRs", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6327,7 +8081,7 @@ func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.PolicyTypes = append(m.PolicyTypes, PolicyType(dAtA[iNdEx:postIndex])) + m.CIDRs = append(m.CIDRs, string(dAtA[iNdEx:postIndex])) iNdEx = postIndex default: iNdEx = preIndex @@ -6350,7 +8104,7 @@ func (m *NetworkPolicySpec) Unmarshal(dAtA []byte) error { } return nil } -func (m *ServiceBackendPort) Unmarshal(dAtA []byte) error { +func (m *ServiceCIDRStatus) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -6373,17 +8127,17 @@ func (m *ServiceBackendPort) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: ServiceBackendPort: wiretype end group for non-group") + return fmt.Errorf("proto: ServiceCIDRStatus: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: ServiceBackendPort: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ServiceCIDRStatus: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Conditions", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -6393,43 +8147,26 @@ func (m *ServiceBackendPort) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Name = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 2: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field Number", wireType) - } - m.Number = 0 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - m.Number |= int32(b&0x7F) << shift - if b < 0x80 { - break - } + m.Conditions = append(m.Conditions, v1.Condition{}) + if err := m.Conditions[len(m.Conditions)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/networking/v1/generated.proto b/vendor/k8s.io/api/networking/v1/generated.proto index c72fdc8f37..e3e3e9215e 100644 --- a/vendor/k8s.io/api/networking/v1/generated.proto +++ b/vendor/k8s.io/api/networking/v1/generated.proto @@ -72,6 +72,44 @@ message HTTPIngressRuleValue { repeated HTTPIngressPath paths = 1; } +// IPAddress represents a single IP of a single IP Family. The object is designed to be used by APIs +// that operate on IP addresses. The object is used by the Service core API for allocation of IP addresses. +// An IP address can be represented in different formats, to guarantee the uniqueness of the IP, +// the name of the object is the IP address in canonical format, four decimal digits separated +// by dots suppressing leading zeros for IPv4 and the representation defined by RFC 5952 for IPv6. +// Valid: 192.168.1.5 or 2001:db8::1 or 2001:db8:aaaa:bbbb:cccc:dddd:eeee:1 +// Invalid: 10.01.2.3 or 2001:db8:0:0:0::1 +message IPAddress { + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // spec is the desired state of the IPAddress. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + optional IPAddressSpec spec = 2; +} + +// IPAddressList contains a list of IPAddress. +message IPAddressList { + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + + // items is the list of IPAddresses. + repeated IPAddress items = 2; +} + +// IPAddressSpec describe the attributes in an IP Address. +message IPAddressSpec { + // ParentRef references the resource that an IPAddress is attached to. + // An IPAddress must reference a parent object. + // +required + optional ParentReference parentRef = 1; +} + // IPBlock describes a particular CIDR (Ex. "192.168.1.0/24","2001:db8::/64") that is allowed // to the pods matched by a NetworkPolicySpec's podSelector. The except entry describes CIDRs // that should not be included within this rule. @@ -540,6 +578,25 @@ message NetworkPolicySpec { repeated string policyTypes = 4; } +// ParentReference describes a reference to a parent object. +message ParentReference { + // Group is the group of the object being referenced. + // +optional + optional string group = 1; + + // Resource is the resource of the object being referenced. + // +required + optional string resource = 2; + + // Namespace is the namespace of the object being referenced. + // +optional + optional string namespace = 3; + + // Name is the name of the object being referenced. + // +required + optional string name = 4; +} + // ServiceBackendPort is the service port being referenced. // +structType=atomic message ServiceBackendPort { @@ -554,3 +611,55 @@ message ServiceBackendPort { optional int32 number = 2; } +// ServiceCIDR defines a range of IP addresses using CIDR format (e.g. 192.168.0.0/24 or 2001:db2::/64). +// This range is used to allocate ClusterIPs to Service objects. +message ServiceCIDR { + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // spec is the desired state of the ServiceCIDR. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + optional ServiceCIDRSpec spec = 2; + + // status represents the current state of the ServiceCIDR. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + optional ServiceCIDRStatus status = 3; +} + +// ServiceCIDRList contains a list of ServiceCIDR objects. +message ServiceCIDRList { + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + + // items is the list of ServiceCIDRs. + repeated ServiceCIDR items = 2; +} + +// ServiceCIDRSpec define the CIDRs the user wants to use for allocating ClusterIPs for Services. +message ServiceCIDRSpec { + // CIDRs defines the IP blocks in CIDR notation (e.g. "192.168.0.0/24" or "2001:db8::/64") + // from which to assign service cluster IPs. Max of two CIDRs is allowed, one of each IP family. + // This field is immutable. + // +optional + // +listType=atomic + repeated string cidrs = 1; +} + +// ServiceCIDRStatus describes the current state of the ServiceCIDR. +message ServiceCIDRStatus { + // conditions holds an array of metav1.Condition that describe the state of the ServiceCIDR. + // Current service state + // +optional + // +patchMergeKey=type + // +patchStrategy=merge + // +listType=map + // +listMapKey=type + repeated .k8s.io.apimachinery.pkg.apis.meta.v1.Condition conditions = 1; +} + diff --git a/vendor/k8s.io/api/networking/v1/register.go b/vendor/k8s.io/api/networking/v1/register.go index a200d54370..b9bdcb78c9 100644 --- a/vendor/k8s.io/api/networking/v1/register.go +++ b/vendor/k8s.io/api/networking/v1/register.go @@ -50,6 +50,10 @@ func addKnownTypes(scheme *runtime.Scheme) error { &IngressClassList{}, &NetworkPolicy{}, &NetworkPolicyList{}, + &IPAddress{}, + &IPAddressList{}, + &ServiceCIDR{}, + &ServiceCIDRList{}, ) metav1.AddToGroupVersion(scheme, SchemeGroupVersion) diff --git a/vendor/k8s.io/api/networking/v1/types.go b/vendor/k8s.io/api/networking/v1/types.go index d75e27558d..216647ceeb 100644 --- a/vendor/k8s.io/api/networking/v1/types.go +++ b/vendor/k8s.io/api/networking/v1/types.go @@ -635,3 +635,133 @@ type IngressClassList struct { // items is the list of IngressClasses. Items []IngressClass `json:"items" protobuf:"bytes,2,rep,name=items"` } + +// +genclient +// +genclient:nonNamespaced +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// IPAddress represents a single IP of a single IP Family. The object is designed to be used by APIs +// that operate on IP addresses. The object is used by the Service core API for allocation of IP addresses. +// An IP address can be represented in different formats, to guarantee the uniqueness of the IP, +// the name of the object is the IP address in canonical format, four decimal digits separated +// by dots suppressing leading zeros for IPv4 and the representation defined by RFC 5952 for IPv6. +// Valid: 192.168.1.5 or 2001:db8::1 or 2001:db8:aaaa:bbbb:cccc:dddd:eeee:1 +// Invalid: 10.01.2.3 or 2001:db8:0:0:0::1 +type IPAddress struct { + metav1.TypeMeta `json:",inline"` + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ObjectMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + // spec is the desired state of the IPAddress. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + Spec IPAddressSpec `json:"spec,omitempty" protobuf:"bytes,2,opt,name=spec"` +} + +// IPAddressSpec describe the attributes in an IP Address. +type IPAddressSpec struct { + // ParentRef references the resource that an IPAddress is attached to. + // An IPAddress must reference a parent object. + // +required + ParentRef *ParentReference `json:"parentRef,omitempty" protobuf:"bytes,1,opt,name=parentRef"` +} + +// ParentReference describes a reference to a parent object. +type ParentReference struct { + // Group is the group of the object being referenced. + // +optional + Group string `json:"group,omitempty" protobuf:"bytes,1,opt,name=group"` + // Resource is the resource of the object being referenced. + // +required + Resource string `json:"resource,omitempty" protobuf:"bytes,2,opt,name=resource"` + // Namespace is the namespace of the object being referenced. + // +optional + Namespace string `json:"namespace,omitempty" protobuf:"bytes,3,opt,name=namespace"` + // Name is the name of the object being referenced. + // +required + Name string `json:"name,omitempty" protobuf:"bytes,4,opt,name=name"` +} + +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// IPAddressList contains a list of IPAddress. +type IPAddressList struct { + metav1.TypeMeta `json:",inline"` + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + // items is the list of IPAddresses. + Items []IPAddress `json:"items" protobuf:"bytes,2,rep,name=items"` +} + +// +genclient +// +genclient:nonNamespaced +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// ServiceCIDR defines a range of IP addresses using CIDR format (e.g. 192.168.0.0/24 or 2001:db2::/64). +// This range is used to allocate ClusterIPs to Service objects. +type ServiceCIDR struct { + metav1.TypeMeta `json:",inline"` + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ObjectMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + // spec is the desired state of the ServiceCIDR. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + Spec ServiceCIDRSpec `json:"spec,omitempty" protobuf:"bytes,2,opt,name=spec"` + // status represents the current state of the ServiceCIDR. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status + // +optional + Status ServiceCIDRStatus `json:"status,omitempty" protobuf:"bytes,3,opt,name=status"` +} + +// ServiceCIDRSpec define the CIDRs the user wants to use for allocating ClusterIPs for Services. +type ServiceCIDRSpec struct { + // CIDRs defines the IP blocks in CIDR notation (e.g. "192.168.0.0/24" or "2001:db8::/64") + // from which to assign service cluster IPs. Max of two CIDRs is allowed, one of each IP family. + // This field is immutable. + // +optional + // +listType=atomic + CIDRs []string `json:"cidrs,omitempty" protobuf:"bytes,1,opt,name=cidrs"` +} + +const ( + // ServiceCIDRConditionReady represents status of a ServiceCIDR that is ready to be used by the + // apiserver to allocate ClusterIPs for Services. + ServiceCIDRConditionReady = "Ready" + // ServiceCIDRReasonTerminating represents a reason where a ServiceCIDR is not ready because it is + // being deleted. + ServiceCIDRReasonTerminating = "Terminating" +) + +// ServiceCIDRStatus describes the current state of the ServiceCIDR. +type ServiceCIDRStatus struct { + // conditions holds an array of metav1.Condition that describe the state of the ServiceCIDR. + // Current service state + // +optional + // +patchMergeKey=type + // +patchStrategy=merge + // +listType=map + // +listMapKey=type + Conditions []metav1.Condition `json:"conditions,omitempty" patchStrategy:"merge" patchMergeKey:"type" protobuf:"bytes,1,rep,name=conditions"` +} + +// +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.33 + +// ServiceCIDRList contains a list of ServiceCIDR objects. +type ServiceCIDRList struct { + metav1.TypeMeta `json:",inline"` + // Standard object's metadata. + // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata + // +optional + metav1.ListMeta `json:"metadata,omitempty" protobuf:"bytes,1,opt,name=metadata"` + // items is the list of ServiceCIDRs. + Items []ServiceCIDR `json:"items" protobuf:"bytes,2,rep,name=items"` +} diff --git a/vendor/k8s.io/api/networking/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/networking/v1/types_swagger_doc_generated.go index ff080540d3..0e294848ba 100644 --- a/vendor/k8s.io/api/networking/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/networking/v1/types_swagger_doc_generated.go @@ -47,6 +47,35 @@ func (HTTPIngressRuleValue) SwaggerDoc() map[string]string { return map_HTTPIngressRuleValue } +var map_IPAddress = map[string]string{ + "": "IPAddress represents a single IP of a single IP Family. The object is designed to be used by APIs that operate on IP addresses. The object is used by the Service core API for allocation of IP addresses. An IP address can be represented in different formats, to guarantee the uniqueness of the IP, the name of the object is the IP address in canonical format, four decimal digits separated by dots suppressing leading zeros for IPv4 and the representation defined by RFC 5952 for IPv6. Valid: 192.168.1.5 or 2001:db8::1 or 2001:db8:aaaa:bbbb:cccc:dddd:eeee:1 Invalid: 10.01.2.3 or 2001:db8:0:0:0::1", + "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "spec": "spec is the desired state of the IPAddress. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status", +} + +func (IPAddress) SwaggerDoc() map[string]string { + return map_IPAddress +} + +var map_IPAddressList = map[string]string{ + "": "IPAddressList contains a list of IPAddress.", + "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "items": "items is the list of IPAddresses.", +} + +func (IPAddressList) SwaggerDoc() map[string]string { + return map_IPAddressList +} + +var map_IPAddressSpec = map[string]string{ + "": "IPAddressSpec describe the attributes in an IP Address.", + "parentRef": "ParentRef references the resource that an IPAddress is attached to. An IPAddress must reference a parent object.", +} + +func (IPAddressSpec) SwaggerDoc() map[string]string { + return map_IPAddressSpec +} + var map_IPBlock = map[string]string{ "": "IPBlock describes a particular CIDR (Ex. \"192.168.1.0/24\",\"2001:db8::/64\") that is allowed to the pods matched by a NetworkPolicySpec's podSelector. The except entry describes CIDRs that should not be included within this rule.", "cidr": "cidr is a string representing the IPBlock Valid examples are \"192.168.1.0/24\" or \"2001:db8::/64\"", @@ -294,6 +323,18 @@ func (NetworkPolicySpec) SwaggerDoc() map[string]string { return map_NetworkPolicySpec } +var map_ParentReference = map[string]string{ + "": "ParentReference describes a reference to a parent object.", + "group": "Group is the group of the object being referenced.", + "resource": "Resource is the resource of the object being referenced.", + "namespace": "Namespace is the namespace of the object being referenced.", + "name": "Name is the name of the object being referenced.", +} + +func (ParentReference) SwaggerDoc() map[string]string { + return map_ParentReference +} + var map_ServiceBackendPort = map[string]string{ "": "ServiceBackendPort is the service port being referenced.", "name": "name is the name of the port on the Service. This is a mutually exclusive setting with \"Number\".", @@ -304,4 +345,43 @@ func (ServiceBackendPort) SwaggerDoc() map[string]string { return map_ServiceBackendPort } +var map_ServiceCIDR = map[string]string{ + "": "ServiceCIDR defines a range of IP addresses using CIDR format (e.g. 192.168.0.0/24 or 2001:db2::/64). This range is used to allocate ClusterIPs to Service objects.", + "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "spec": "spec is the desired state of the ServiceCIDR. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status", + "status": "status represents the current state of the ServiceCIDR. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status", +} + +func (ServiceCIDR) SwaggerDoc() map[string]string { + return map_ServiceCIDR +} + +var map_ServiceCIDRList = map[string]string{ + "": "ServiceCIDRList contains a list of ServiceCIDR objects.", + "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", + "items": "items is the list of ServiceCIDRs.", +} + +func (ServiceCIDRList) SwaggerDoc() map[string]string { + return map_ServiceCIDRList +} + +var map_ServiceCIDRSpec = map[string]string{ + "": "ServiceCIDRSpec define the CIDRs the user wants to use for allocating ClusterIPs for Services.", + "cidrs": "CIDRs defines the IP blocks in CIDR notation (e.g. \"192.168.0.0/24\" or \"2001:db8::/64\") from which to assign service cluster IPs. Max of two CIDRs is allowed, one of each IP family. This field is immutable.", +} + +func (ServiceCIDRSpec) SwaggerDoc() map[string]string { + return map_ServiceCIDRSpec +} + +var map_ServiceCIDRStatus = map[string]string{ + "": "ServiceCIDRStatus describes the current state of the ServiceCIDR.", + "conditions": "conditions holds an array of metav1.Condition that describe the state of the ServiceCIDR. Current service state", +} + +func (ServiceCIDRStatus) SwaggerDoc() map[string]string { + return map_ServiceCIDRStatus +} + // AUTO-GENERATED FUNCTIONS END HERE diff --git a/vendor/k8s.io/api/networking/v1/well_known_labels.go b/vendor/k8s.io/api/networking/v1/well_known_labels.go new file mode 100644 index 0000000000..28e2e8f3f6 --- /dev/null +++ b/vendor/k8s.io/api/networking/v1/well_known_labels.go @@ -0,0 +1,33 @@ +/* +Copyright 2023 The Kubernetes Authors. + +Licensed under the Apache License, Version 2.0 (the "License"); +you may not use this file except in compliance with the License. +You may obtain a copy of the License at + + http://www.apache.org/licenses/LICENSE-2.0 + +Unless required by applicable law or agreed to in writing, software +distributed under the License is distributed on an "AS IS" BASIS, +WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. +See the License for the specific language governing permissions and +limitations under the License. +*/ + +package v1 + +const ( + + // TODO: Use IPFamily as field with a field selector,And the value is set based on + // the name at create time and immutable. + // LabelIPAddressFamily is used to indicate the IP family of a Kubernetes IPAddress. + // This label simplify dual-stack client operations allowing to obtain the list of + // IP addresses filtered by family. + LabelIPAddressFamily = "ipaddress.kubernetes.io/ip-family" + // LabelManagedBy is used to indicate the controller or entity that manages + // an IPAddress. This label aims to enable different IPAddress + // objects to be managed by different controllers or entities within the + // same cluster. It is highly recommended to configure this label for all + // IPAddress objects. + LabelManagedBy = "ipaddress.kubernetes.io/managed-by" +) diff --git a/vendor/k8s.io/api/networking/v1/zz_generated.deepcopy.go b/vendor/k8s.io/api/networking/v1/zz_generated.deepcopy.go index 540873833f..9ce6435a46 100644 --- a/vendor/k8s.io/api/networking/v1/zz_generated.deepcopy.go +++ b/vendor/k8s.io/api/networking/v1/zz_generated.deepcopy.go @@ -73,6 +73,87 @@ func (in *HTTPIngressRuleValue) DeepCopy() *HTTPIngressRuleValue { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *IPAddress) DeepCopyInto(out *IPAddress) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) + in.Spec.DeepCopyInto(&out.Spec) + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new IPAddress. +func (in *IPAddress) DeepCopy() *IPAddress { + if in == nil { + return nil + } + out := new(IPAddress) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *IPAddress) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *IPAddressList) DeepCopyInto(out *IPAddressList) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ListMeta.DeepCopyInto(&out.ListMeta) + if in.Items != nil { + in, out := &in.Items, &out.Items + *out = make([]IPAddress, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new IPAddressList. +func (in *IPAddressList) DeepCopy() *IPAddressList { + if in == nil { + return nil + } + out := new(IPAddressList) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *IPAddressList) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *IPAddressSpec) DeepCopyInto(out *IPAddressSpec) { + *out = *in + if in.ParentRef != nil { + in, out := &in.ParentRef, &out.ParentRef + *out = new(ParentReference) + **out = **in + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new IPAddressSpec. +func (in *IPAddressSpec) DeepCopy() *IPAddressSpec { + if in == nil { + return nil + } + out := new(IPAddressSpec) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *IPBlock) DeepCopyInto(out *IPBlock) { *out = *in @@ -711,6 +792,22 @@ func (in *NetworkPolicySpec) DeepCopy() *NetworkPolicySpec { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ParentReference) DeepCopyInto(out *ParentReference) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ParentReference. +func (in *ParentReference) DeepCopy() *ParentReference { + if in == nil { + return nil + } + out := new(ParentReference) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ServiceBackendPort) DeepCopyInto(out *ServiceBackendPort) { *out = *in @@ -726,3 +823,108 @@ func (in *ServiceBackendPort) DeepCopy() *ServiceBackendPort { in.DeepCopyInto(out) return out } + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ServiceCIDR) DeepCopyInto(out *ServiceCIDR) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) + in.Spec.DeepCopyInto(&out.Spec) + in.Status.DeepCopyInto(&out.Status) + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ServiceCIDR. +func (in *ServiceCIDR) DeepCopy() *ServiceCIDR { + if in == nil { + return nil + } + out := new(ServiceCIDR) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *ServiceCIDR) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ServiceCIDRList) DeepCopyInto(out *ServiceCIDRList) { + *out = *in + out.TypeMeta = in.TypeMeta + in.ListMeta.DeepCopyInto(&out.ListMeta) + if in.Items != nil { + in, out := &in.Items, &out.Items + *out = make([]ServiceCIDR, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ServiceCIDRList. +func (in *ServiceCIDRList) DeepCopy() *ServiceCIDRList { + if in == nil { + return nil + } + out := new(ServiceCIDRList) + in.DeepCopyInto(out) + return out +} + +// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object. +func (in *ServiceCIDRList) DeepCopyObject() runtime.Object { + if c := in.DeepCopy(); c != nil { + return c + } + return nil +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ServiceCIDRSpec) DeepCopyInto(out *ServiceCIDRSpec) { + *out = *in + if in.CIDRs != nil { + in, out := &in.CIDRs, &out.CIDRs + *out = make([]string, len(*in)) + copy(*out, *in) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ServiceCIDRSpec. +func (in *ServiceCIDRSpec) DeepCopy() *ServiceCIDRSpec { + if in == nil { + return nil + } + out := new(ServiceCIDRSpec) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ServiceCIDRStatus) DeepCopyInto(out *ServiceCIDRStatus) { + *out = *in + if in.Conditions != nil { + in, out := &in.Conditions, &out.Conditions + *out = make([]metav1.Condition, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ServiceCIDRStatus. +func (in *ServiceCIDRStatus) DeepCopy() *ServiceCIDRStatus { + if in == nil { + return nil + } + out := new(ServiceCIDRStatus) + in.DeepCopyInto(out) + return out +} diff --git a/vendor/k8s.io/api/networking/v1/zz_generated.prerelease-lifecycle.go b/vendor/k8s.io/api/networking/v1/zz_generated.prerelease-lifecycle.go index 21e8c671a5..6894d8c539 100644 --- a/vendor/k8s.io/api/networking/v1/zz_generated.prerelease-lifecycle.go +++ b/vendor/k8s.io/api/networking/v1/zz_generated.prerelease-lifecycle.go @@ -21,6 +21,18 @@ limitations under the License. package v1 +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *IPAddress) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *IPAddressList) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + // APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. // It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. func (in *Ingress) APILifecycleIntroduced() (major, minor int) { @@ -56,3 +68,15 @@ func (in *NetworkPolicy) APILifecycleIntroduced() (major, minor int) { func (in *NetworkPolicyList) APILifecycleIntroduced() (major, minor int) { return 1, 19 } + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *ServiceCIDR) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} + +// APILifecycleIntroduced is an autogenerated function, returning the release in which the API struct was introduced as int versions of major and minor for comparison. +// It is controlled by "k8s:prerelease-lifecycle-gen:introduced" tags in types.go. +func (in *ServiceCIDRList) APILifecycleIntroduced() (major, minor int) { + return 1, 33 +} diff --git a/vendor/k8s.io/api/networking/v1alpha1/doc.go b/vendor/k8s.io/api/networking/v1alpha1/doc.go index 3827b0418f..55264ae707 100644 --- a/vendor/k8s.io/api/networking/v1alpha1/doc.go +++ b/vendor/k8s.io/api/networking/v1alpha1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=networking.k8s.io -package v1alpha1 // import "k8s.io/api/networking/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/networking/v1beta1/doc.go b/vendor/k8s.io/api/networking/v1beta1/doc.go index fa6d01cea0..c5a03e04e8 100644 --- a/vendor/k8s.io/api/networking/v1beta1/doc.go +++ b/vendor/k8s.io/api/networking/v1beta1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=networking.k8s.io -package v1beta1 // import "k8s.io/api/networking/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/node/v1/doc.go b/vendor/k8s.io/api/node/v1/doc.go index 57ca52445b..3239af7039 100644 --- a/vendor/k8s.io/api/node/v1/doc.go +++ b/vendor/k8s.io/api/node/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=node.k8s.io -package v1 // import "k8s.io/api/node/v1" +package v1 diff --git a/vendor/k8s.io/api/node/v1alpha1/doc.go b/vendor/k8s.io/api/node/v1alpha1/doc.go index dfe99540b5..2f3d46ac20 100644 --- a/vendor/k8s.io/api/node/v1alpha1/doc.go +++ b/vendor/k8s.io/api/node/v1alpha1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +groupName=node.k8s.io -package v1alpha1 // import "k8s.io/api/node/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/node/v1beta1/doc.go b/vendor/k8s.io/api/node/v1beta1/doc.go index c76ba89c48..7b47c8df66 100644 --- a/vendor/k8s.io/api/node/v1beta1/doc.go +++ b/vendor/k8s.io/api/node/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=node.k8s.io -package v1beta1 // import "k8s.io/api/node/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/policy/v1/doc.go b/vendor/k8s.io/api/policy/v1/doc.go index c51e02685a..ff47e7fd49 100644 --- a/vendor/k8s.io/api/policy/v1/doc.go +++ b/vendor/k8s.io/api/policy/v1/doc.go @@ -22,4 +22,4 @@ limitations under the License. // Package policy is for any kind of policy object. Suitable examples, even if // they aren't all here, are PodDisruptionBudget, // NetworkPolicy, etc. -package v1 // import "k8s.io/api/policy/v1" +package v1 diff --git a/vendor/k8s.io/api/policy/v1/generated.proto b/vendor/k8s.io/api/policy/v1/generated.proto index 57128e8112..9534890723 100644 --- a/vendor/k8s.io/api/policy/v1/generated.proto +++ b/vendor/k8s.io/api/policy/v1/generated.proto @@ -115,9 +115,6 @@ message PodDisruptionBudgetSpec { // Additional policies may be added in the future. // Clients making eviction decisions should disallow eviction of unhealthy pods // if they encounter an unrecognized policy in this field. - // - // This field is beta-level. The eviction API uses this field when - // the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default). // +optional optional string unhealthyPodEvictionPolicy = 4; } diff --git a/vendor/k8s.io/api/policy/v1/types.go b/vendor/k8s.io/api/policy/v1/types.go index f05367ebe4..4e74367894 100644 --- a/vendor/k8s.io/api/policy/v1/types.go +++ b/vendor/k8s.io/api/policy/v1/types.go @@ -70,9 +70,6 @@ type PodDisruptionBudgetSpec struct { // Additional policies may be added in the future. // Clients making eviction decisions should disallow eviction of unhealthy pods // if they encounter an unrecognized policy in this field. - // - // This field is beta-level. The eviction API uses this field when - // the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default). // +optional UnhealthyPodEvictionPolicy *UnhealthyPodEvictionPolicyType `json:"unhealthyPodEvictionPolicy,omitempty" protobuf:"bytes,4,opt,name=unhealthyPodEvictionPolicy"` } diff --git a/vendor/k8s.io/api/policy/v1/types_swagger_doc_generated.go b/vendor/k8s.io/api/policy/v1/types_swagger_doc_generated.go index 799b0794a9..9b2f5b9450 100644 --- a/vendor/k8s.io/api/policy/v1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/policy/v1/types_swagger_doc_generated.go @@ -63,7 +63,7 @@ var map_PodDisruptionBudgetSpec = map[string]string{ "minAvailable": "An eviction is allowed if at least \"minAvailable\" pods selected by \"selector\" will still be available after the eviction, i.e. even in the absence of the evicted pod. So for example you can prevent all voluntary evictions by specifying \"100%\".", "selector": "Label query over pods whose evictions are managed by the disruption budget. A null selector will match no pods, while an empty ({}) selector will select all pods within the namespace.", "maxUnavailable": "An eviction is allowed if at most \"maxUnavailable\" pods selected by \"selector\" are unavailable after the eviction, i.e. even in absence of the evicted pod. For example, one can prevent all voluntary evictions by specifying 0. This is a mutually exclusive setting with \"minAvailable\".", - "unhealthyPodEvictionPolicy": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods should be considered for eviction. Current implementation considers healthy pods, as pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\nValid policies are IfHealthyBudget and AlwaysAllow. If no policy is specified, the default behavior will be used, which corresponds to the IfHealthyBudget policy.\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"), but not yet healthy can be evicted only if the guarded application is not disrupted (status.currentHealthy is at least equal to status.desiredHealthy). Healthy pods will be subject to the PDB for eviction.\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"), but not yet healthy are considered disrupted and can be evicted regardless of whether the criteria in a PDB is met. This means perspective running pods of a disrupted application might not get a chance to become healthy. Healthy pods will be subject to the PDB for eviction.\n\nAdditional policies may be added in the future. Clients making eviction decisions should disallow eviction of unhealthy pods if they encounter an unrecognized policy in this field.\n\nThis field is beta-level. The eviction API uses this field when the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default).", + "unhealthyPodEvictionPolicy": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods should be considered for eviction. Current implementation considers healthy pods, as pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\nValid policies are IfHealthyBudget and AlwaysAllow. If no policy is specified, the default behavior will be used, which corresponds to the IfHealthyBudget policy.\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"), but not yet healthy can be evicted only if the guarded application is not disrupted (status.currentHealthy is at least equal to status.desiredHealthy). Healthy pods will be subject to the PDB for eviction.\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"), but not yet healthy are considered disrupted and can be evicted regardless of whether the criteria in a PDB is met. This means perspective running pods of a disrupted application might not get a chance to become healthy. Healthy pods will be subject to the PDB for eviction.\n\nAdditional policies may be added in the future. Clients making eviction decisions should disallow eviction of unhealthy pods if they encounter an unrecognized policy in this field.", } func (PodDisruptionBudgetSpec) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/policy/v1beta1/doc.go b/vendor/k8s.io/api/policy/v1beta1/doc.go index 76da54b4c7..777106c600 100644 --- a/vendor/k8s.io/api/policy/v1beta1/doc.go +++ b/vendor/k8s.io/api/policy/v1beta1/doc.go @@ -22,4 +22,4 @@ limitations under the License. // Package policy is for any kind of policy object. Suitable examples, even if // they aren't all here, are PodDisruptionBudget, // NetworkPolicy, etc. -package v1beta1 // import "k8s.io/api/policy/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/policy/v1beta1/generated.proto b/vendor/k8s.io/api/policy/v1beta1/generated.proto index 91e33f2332..e0cbe00f1c 100644 --- a/vendor/k8s.io/api/policy/v1beta1/generated.proto +++ b/vendor/k8s.io/api/policy/v1beta1/generated.proto @@ -115,9 +115,6 @@ message PodDisruptionBudgetSpec { // Additional policies may be added in the future. // Clients making eviction decisions should disallow eviction of unhealthy pods // if they encounter an unrecognized policy in this field. - // - // This field is beta-level. The eviction API uses this field when - // the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default). // +optional optional string unhealthyPodEvictionPolicy = 4; } diff --git a/vendor/k8s.io/api/policy/v1beta1/types.go b/vendor/k8s.io/api/policy/v1beta1/types.go index bc5f970d27..9bba454f94 100644 --- a/vendor/k8s.io/api/policy/v1beta1/types.go +++ b/vendor/k8s.io/api/policy/v1beta1/types.go @@ -67,9 +67,6 @@ type PodDisruptionBudgetSpec struct { // Additional policies may be added in the future. // Clients making eviction decisions should disallow eviction of unhealthy pods // if they encounter an unrecognized policy in this field. - // - // This field is beta-level. The eviction API uses this field when - // the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default). // +optional UnhealthyPodEvictionPolicy *UnhealthyPodEvictionPolicyType `json:"unhealthyPodEvictionPolicy,omitempty" protobuf:"bytes,4,opt,name=unhealthyPodEvictionPolicy"` } diff --git a/vendor/k8s.io/api/policy/v1beta1/types_swagger_doc_generated.go b/vendor/k8s.io/api/policy/v1beta1/types_swagger_doc_generated.go index 4a79d75949..cffc9a548c 100644 --- a/vendor/k8s.io/api/policy/v1beta1/types_swagger_doc_generated.go +++ b/vendor/k8s.io/api/policy/v1beta1/types_swagger_doc_generated.go @@ -63,7 +63,7 @@ var map_PodDisruptionBudgetSpec = map[string]string{ "minAvailable": "An eviction is allowed if at least \"minAvailable\" pods selected by \"selector\" will still be available after the eviction, i.e. even in the absence of the evicted pod. So for example you can prevent all voluntary evictions by specifying \"100%\".", "selector": "Label query over pods whose evictions are managed by the disruption budget. A null selector selects no pods. An empty selector ({}) also selects no pods, which differs from standard behavior of selecting all pods. In policy/v1, an empty selector will select all pods in the namespace.", "maxUnavailable": "An eviction is allowed if at most \"maxUnavailable\" pods selected by \"selector\" are unavailable after the eviction, i.e. even in absence of the evicted pod. For example, one can prevent all voluntary evictions by specifying 0. This is a mutually exclusive setting with \"minAvailable\".", - "unhealthyPodEvictionPolicy": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods should be considered for eviction. Current implementation considers healthy pods, as pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\nValid policies are IfHealthyBudget and AlwaysAllow. If no policy is specified, the default behavior will be used, which corresponds to the IfHealthyBudget policy.\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"), but not yet healthy can be evicted only if the guarded application is not disrupted (status.currentHealthy is at least equal to status.desiredHealthy). Healthy pods will be subject to the PDB for eviction.\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"), but not yet healthy are considered disrupted and can be evicted regardless of whether the criteria in a PDB is met. This means perspective running pods of a disrupted application might not get a chance to become healthy. Healthy pods will be subject to the PDB for eviction.\n\nAdditional policies may be added in the future. Clients making eviction decisions should disallow eviction of unhealthy pods if they encounter an unrecognized policy in this field.\n\nThis field is beta-level. The eviction API uses this field when the feature gate PDBUnhealthyPodEvictionPolicy is enabled (enabled by default).", + "unhealthyPodEvictionPolicy": "UnhealthyPodEvictionPolicy defines the criteria for when unhealthy pods should be considered for eviction. Current implementation considers healthy pods, as pods that have status.conditions item with type=\"Ready\",status=\"True\".\n\nValid policies are IfHealthyBudget and AlwaysAllow. If no policy is specified, the default behavior will be used, which corresponds to the IfHealthyBudget policy.\n\nIfHealthyBudget policy means that running pods (status.phase=\"Running\"), but not yet healthy can be evicted only if the guarded application is not disrupted (status.currentHealthy is at least equal to status.desiredHealthy). Healthy pods will be subject to the PDB for eviction.\n\nAlwaysAllow policy means that all running pods (status.phase=\"Running\"), but not yet healthy are considered disrupted and can be evicted regardless of whether the criteria in a PDB is met. This means perspective running pods of a disrupted application might not get a chance to become healthy. Healthy pods will be subject to the PDB for eviction.\n\nAdditional policies may be added in the future. Clients making eviction decisions should disallow eviction of unhealthy pods if they encounter an unrecognized policy in this field.", } func (PodDisruptionBudgetSpec) SwaggerDoc() map[string]string { diff --git a/vendor/k8s.io/api/rbac/v1/doc.go b/vendor/k8s.io/api/rbac/v1/doc.go index b0e4e5b5b5..408546274b 100644 --- a/vendor/k8s.io/api/rbac/v1/doc.go +++ b/vendor/k8s.io/api/rbac/v1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +k8s:prerelease-lifecycle-gen=true // +groupName=rbac.authorization.k8s.io -package v1 // import "k8s.io/api/rbac/v1" +package v1 diff --git a/vendor/k8s.io/api/rbac/v1alpha1/doc.go b/vendor/k8s.io/api/rbac/v1alpha1/doc.go index 918b8a337c..70d3c0e971 100644 --- a/vendor/k8s.io/api/rbac/v1alpha1/doc.go +++ b/vendor/k8s.io/api/rbac/v1alpha1/doc.go @@ -20,4 +20,4 @@ limitations under the License. // +groupName=rbac.authorization.k8s.io -package v1alpha1 // import "k8s.io/api/rbac/v1alpha1" +package v1alpha1 diff --git a/vendor/k8s.io/api/rbac/v1beta1/doc.go b/vendor/k8s.io/api/rbac/v1beta1/doc.go index 156f273e69..504a58d8bf 100644 --- a/vendor/k8s.io/api/rbac/v1beta1/doc.go +++ b/vendor/k8s.io/api/rbac/v1beta1/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=rbac.authorization.k8s.io -package v1beta1 // import "k8s.io/api/rbac/v1beta1" +package v1beta1 diff --git a/vendor/k8s.io/api/resource/v1alpha3/doc.go b/vendor/k8s.io/api/resource/v1alpha3/doc.go index ffc21307d0..82e64f1d00 100644 --- a/vendor/k8s.io/api/resource/v1alpha3/doc.go +++ b/vendor/k8s.io/api/resource/v1alpha3/doc.go @@ -21,4 +21,4 @@ limitations under the License. // +groupName=resource.k8s.io // Package v1alpha3 is the v1alpha3 version of the resource API. -package v1alpha3 // import "k8s.io/api/resource/v1alpha3" +package v1alpha3 diff --git a/vendor/k8s.io/api/resource/v1alpha3/generated.pb.go b/vendor/k8s.io/api/resource/v1alpha3/generated.pb.go index 540f7b8184..716492fea4 100644 --- a/vendor/k8s.io/api/resource/v1alpha3/generated.pb.go +++ b/vendor/k8s.io/api/resource/v1alpha3/generated.pb.go @@ -29,6 +29,7 @@ import ( v11 "k8s.io/api/core/v1" resource "k8s.io/apimachinery/pkg/api/resource" v1 "k8s.io/apimachinery/pkg/apis/meta/v1" + runtime "k8s.io/apimachinery/pkg/runtime" math "math" math_bits "math/bits" @@ -161,10 +162,66 @@ func (m *CELDeviceSelector) XXX_DiscardUnknown() { var xxx_messageInfo_CELDeviceSelector proto.InternalMessageInfo +func (m *Counter) Reset() { *m = Counter{} } +func (*Counter) ProtoMessage() {} +func (*Counter) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{4} +} +func (m *Counter) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *Counter) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *Counter) XXX_Merge(src proto.Message) { + xxx_messageInfo_Counter.Merge(m, src) +} +func (m *Counter) XXX_Size() int { + return m.Size() +} +func (m *Counter) XXX_DiscardUnknown() { + xxx_messageInfo_Counter.DiscardUnknown(m) +} + +var xxx_messageInfo_Counter proto.InternalMessageInfo + +func (m *CounterSet) Reset() { *m = CounterSet{} } +func (*CounterSet) ProtoMessage() {} +func (*CounterSet) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{5} +} +func (m *CounterSet) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *CounterSet) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *CounterSet) XXX_Merge(src proto.Message) { + xxx_messageInfo_CounterSet.Merge(m, src) +} +func (m *CounterSet) XXX_Size() int { + return m.Size() +} +func (m *CounterSet) XXX_DiscardUnknown() { + xxx_messageInfo_CounterSet.DiscardUnknown(m) +} + +var xxx_messageInfo_CounterSet proto.InternalMessageInfo + func (m *Device) Reset() { *m = Device{} } func (*Device) ProtoMessage() {} func (*Device) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{4} + return fileDescriptor_66649ee9bbcd89d2, []int{6} } func (m *Device) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -192,7 +249,7 @@ var xxx_messageInfo_Device proto.InternalMessageInfo func (m *DeviceAllocationConfiguration) Reset() { *m = DeviceAllocationConfiguration{} } func (*DeviceAllocationConfiguration) ProtoMessage() {} func (*DeviceAllocationConfiguration) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{5} + return fileDescriptor_66649ee9bbcd89d2, []int{7} } func (m *DeviceAllocationConfiguration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -220,7 +277,7 @@ var xxx_messageInfo_DeviceAllocationConfiguration proto.InternalMessageInfo func (m *DeviceAllocationResult) Reset() { *m = DeviceAllocationResult{} } func (*DeviceAllocationResult) ProtoMessage() {} func (*DeviceAllocationResult) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{6} + return fileDescriptor_66649ee9bbcd89d2, []int{8} } func (m *DeviceAllocationResult) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -248,7 +305,7 @@ var xxx_messageInfo_DeviceAllocationResult proto.InternalMessageInfo func (m *DeviceAttribute) Reset() { *m = DeviceAttribute{} } func (*DeviceAttribute) ProtoMessage() {} func (*DeviceAttribute) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{7} + return fileDescriptor_66649ee9bbcd89d2, []int{9} } func (m *DeviceAttribute) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -276,7 +333,7 @@ var xxx_messageInfo_DeviceAttribute proto.InternalMessageInfo func (m *DeviceClaim) Reset() { *m = DeviceClaim{} } func (*DeviceClaim) ProtoMessage() {} func (*DeviceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{8} + return fileDescriptor_66649ee9bbcd89d2, []int{10} } func (m *DeviceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -304,7 +361,7 @@ var xxx_messageInfo_DeviceClaim proto.InternalMessageInfo func (m *DeviceClaimConfiguration) Reset() { *m = DeviceClaimConfiguration{} } func (*DeviceClaimConfiguration) ProtoMessage() {} func (*DeviceClaimConfiguration) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{9} + return fileDescriptor_66649ee9bbcd89d2, []int{11} } func (m *DeviceClaimConfiguration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -332,7 +389,7 @@ var xxx_messageInfo_DeviceClaimConfiguration proto.InternalMessageInfo func (m *DeviceClass) Reset() { *m = DeviceClass{} } func (*DeviceClass) ProtoMessage() {} func (*DeviceClass) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{10} + return fileDescriptor_66649ee9bbcd89d2, []int{12} } func (m *DeviceClass) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -360,7 +417,7 @@ var xxx_messageInfo_DeviceClass proto.InternalMessageInfo func (m *DeviceClassConfiguration) Reset() { *m = DeviceClassConfiguration{} } func (*DeviceClassConfiguration) ProtoMessage() {} func (*DeviceClassConfiguration) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{11} + return fileDescriptor_66649ee9bbcd89d2, []int{13} } func (m *DeviceClassConfiguration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -388,7 +445,7 @@ var xxx_messageInfo_DeviceClassConfiguration proto.InternalMessageInfo func (m *DeviceClassList) Reset() { *m = DeviceClassList{} } func (*DeviceClassList) ProtoMessage() {} func (*DeviceClassList) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{12} + return fileDescriptor_66649ee9bbcd89d2, []int{14} } func (m *DeviceClassList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -416,7 +473,7 @@ var xxx_messageInfo_DeviceClassList proto.InternalMessageInfo func (m *DeviceClassSpec) Reset() { *m = DeviceClassSpec{} } func (*DeviceClassSpec) ProtoMessage() {} func (*DeviceClassSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{13} + return fileDescriptor_66649ee9bbcd89d2, []int{15} } func (m *DeviceClassSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -444,7 +501,7 @@ var xxx_messageInfo_DeviceClassSpec proto.InternalMessageInfo func (m *DeviceConfiguration) Reset() { *m = DeviceConfiguration{} } func (*DeviceConfiguration) ProtoMessage() {} func (*DeviceConfiguration) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{14} + return fileDescriptor_66649ee9bbcd89d2, []int{16} } func (m *DeviceConfiguration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -472,7 +529,7 @@ var xxx_messageInfo_DeviceConfiguration proto.InternalMessageInfo func (m *DeviceConstraint) Reset() { *m = DeviceConstraint{} } func (*DeviceConstraint) ProtoMessage() {} func (*DeviceConstraint) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{15} + return fileDescriptor_66649ee9bbcd89d2, []int{17} } func (m *DeviceConstraint) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -497,10 +554,38 @@ func (m *DeviceConstraint) XXX_DiscardUnknown() { var xxx_messageInfo_DeviceConstraint proto.InternalMessageInfo +func (m *DeviceCounterConsumption) Reset() { *m = DeviceCounterConsumption{} } +func (*DeviceCounterConsumption) ProtoMessage() {} +func (*DeviceCounterConsumption) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{18} +} +func (m *DeviceCounterConsumption) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceCounterConsumption) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceCounterConsumption) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceCounterConsumption.Merge(m, src) +} +func (m *DeviceCounterConsumption) XXX_Size() int { + return m.Size() +} +func (m *DeviceCounterConsumption) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceCounterConsumption.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceCounterConsumption proto.InternalMessageInfo + func (m *DeviceRequest) Reset() { *m = DeviceRequest{} } func (*DeviceRequest) ProtoMessage() {} func (*DeviceRequest) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{16} + return fileDescriptor_66649ee9bbcd89d2, []int{19} } func (m *DeviceRequest) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -528,7 +613,7 @@ var xxx_messageInfo_DeviceRequest proto.InternalMessageInfo func (m *DeviceRequestAllocationResult) Reset() { *m = DeviceRequestAllocationResult{} } func (*DeviceRequestAllocationResult) ProtoMessage() {} func (*DeviceRequestAllocationResult) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{17} + return fileDescriptor_66649ee9bbcd89d2, []int{20} } func (m *DeviceRequestAllocationResult) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -556,7 +641,7 @@ var xxx_messageInfo_DeviceRequestAllocationResult proto.InternalMessageInfo func (m *DeviceSelector) Reset() { *m = DeviceSelector{} } func (*DeviceSelector) ProtoMessage() {} func (*DeviceSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{18} + return fileDescriptor_66649ee9bbcd89d2, []int{21} } func (m *DeviceSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -581,10 +666,206 @@ func (m *DeviceSelector) XXX_DiscardUnknown() { var xxx_messageInfo_DeviceSelector proto.InternalMessageInfo +func (m *DeviceSubRequest) Reset() { *m = DeviceSubRequest{} } +func (*DeviceSubRequest) ProtoMessage() {} +func (*DeviceSubRequest) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{22} +} +func (m *DeviceSubRequest) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceSubRequest) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceSubRequest) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceSubRequest.Merge(m, src) +} +func (m *DeviceSubRequest) XXX_Size() int { + return m.Size() +} +func (m *DeviceSubRequest) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceSubRequest.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceSubRequest proto.InternalMessageInfo + +func (m *DeviceTaint) Reset() { *m = DeviceTaint{} } +func (*DeviceTaint) ProtoMessage() {} +func (*DeviceTaint) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{23} +} +func (m *DeviceTaint) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceTaint) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceTaint) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceTaint.Merge(m, src) +} +func (m *DeviceTaint) XXX_Size() int { + return m.Size() +} +func (m *DeviceTaint) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceTaint.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceTaint proto.InternalMessageInfo + +func (m *DeviceTaintRule) Reset() { *m = DeviceTaintRule{} } +func (*DeviceTaintRule) ProtoMessage() {} +func (*DeviceTaintRule) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{24} +} +func (m *DeviceTaintRule) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceTaintRule) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceTaintRule) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceTaintRule.Merge(m, src) +} +func (m *DeviceTaintRule) XXX_Size() int { + return m.Size() +} +func (m *DeviceTaintRule) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceTaintRule.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceTaintRule proto.InternalMessageInfo + +func (m *DeviceTaintRuleList) Reset() { *m = DeviceTaintRuleList{} } +func (*DeviceTaintRuleList) ProtoMessage() {} +func (*DeviceTaintRuleList) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{25} +} +func (m *DeviceTaintRuleList) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceTaintRuleList) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceTaintRuleList) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceTaintRuleList.Merge(m, src) +} +func (m *DeviceTaintRuleList) XXX_Size() int { + return m.Size() +} +func (m *DeviceTaintRuleList) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceTaintRuleList.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceTaintRuleList proto.InternalMessageInfo + +func (m *DeviceTaintRuleSpec) Reset() { *m = DeviceTaintRuleSpec{} } +func (*DeviceTaintRuleSpec) ProtoMessage() {} +func (*DeviceTaintRuleSpec) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{26} +} +func (m *DeviceTaintRuleSpec) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceTaintRuleSpec) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceTaintRuleSpec) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceTaintRuleSpec.Merge(m, src) +} +func (m *DeviceTaintRuleSpec) XXX_Size() int { + return m.Size() +} +func (m *DeviceTaintRuleSpec) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceTaintRuleSpec.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceTaintRuleSpec proto.InternalMessageInfo + +func (m *DeviceTaintSelector) Reset() { *m = DeviceTaintSelector{} } +func (*DeviceTaintSelector) ProtoMessage() {} +func (*DeviceTaintSelector) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{27} +} +func (m *DeviceTaintSelector) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceTaintSelector) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceTaintSelector) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceTaintSelector.Merge(m, src) +} +func (m *DeviceTaintSelector) XXX_Size() int { + return m.Size() +} +func (m *DeviceTaintSelector) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceTaintSelector.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceTaintSelector proto.InternalMessageInfo + +func (m *DeviceToleration) Reset() { *m = DeviceToleration{} } +func (*DeviceToleration) ProtoMessage() {} +func (*DeviceToleration) Descriptor() ([]byte, []int) { + return fileDescriptor_66649ee9bbcd89d2, []int{28} +} +func (m *DeviceToleration) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *DeviceToleration) XXX_Marshal(b []byte, deterministic bool) ([]byte, error) { + b = b[:cap(b)] + n, err := m.MarshalToSizedBuffer(b) + if err != nil { + return nil, err + } + return b[:n], nil +} +func (m *DeviceToleration) XXX_Merge(src proto.Message) { + xxx_messageInfo_DeviceToleration.Merge(m, src) +} +func (m *DeviceToleration) XXX_Size() int { + return m.Size() +} +func (m *DeviceToleration) XXX_DiscardUnknown() { + xxx_messageInfo_DeviceToleration.DiscardUnknown(m) +} + +var xxx_messageInfo_DeviceToleration proto.InternalMessageInfo + func (m *NetworkDeviceData) Reset() { *m = NetworkDeviceData{} } func (*NetworkDeviceData) ProtoMessage() {} func (*NetworkDeviceData) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{19} + return fileDescriptor_66649ee9bbcd89d2, []int{29} } func (m *NetworkDeviceData) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -612,7 +893,7 @@ var xxx_messageInfo_NetworkDeviceData proto.InternalMessageInfo func (m *OpaqueDeviceConfiguration) Reset() { *m = OpaqueDeviceConfiguration{} } func (*OpaqueDeviceConfiguration) ProtoMessage() {} func (*OpaqueDeviceConfiguration) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{20} + return fileDescriptor_66649ee9bbcd89d2, []int{30} } func (m *OpaqueDeviceConfiguration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -640,7 +921,7 @@ var xxx_messageInfo_OpaqueDeviceConfiguration proto.InternalMessageInfo func (m *ResourceClaim) Reset() { *m = ResourceClaim{} } func (*ResourceClaim) ProtoMessage() {} func (*ResourceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{21} + return fileDescriptor_66649ee9bbcd89d2, []int{31} } func (m *ResourceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -668,7 +949,7 @@ var xxx_messageInfo_ResourceClaim proto.InternalMessageInfo func (m *ResourceClaimConsumerReference) Reset() { *m = ResourceClaimConsumerReference{} } func (*ResourceClaimConsumerReference) ProtoMessage() {} func (*ResourceClaimConsumerReference) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{22} + return fileDescriptor_66649ee9bbcd89d2, []int{32} } func (m *ResourceClaimConsumerReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -696,7 +977,7 @@ var xxx_messageInfo_ResourceClaimConsumerReference proto.InternalMessageInfo func (m *ResourceClaimList) Reset() { *m = ResourceClaimList{} } func (*ResourceClaimList) ProtoMessage() {} func (*ResourceClaimList) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{23} + return fileDescriptor_66649ee9bbcd89d2, []int{33} } func (m *ResourceClaimList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -724,7 +1005,7 @@ var xxx_messageInfo_ResourceClaimList proto.InternalMessageInfo func (m *ResourceClaimSpec) Reset() { *m = ResourceClaimSpec{} } func (*ResourceClaimSpec) ProtoMessage() {} func (*ResourceClaimSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{24} + return fileDescriptor_66649ee9bbcd89d2, []int{34} } func (m *ResourceClaimSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -752,7 +1033,7 @@ var xxx_messageInfo_ResourceClaimSpec proto.InternalMessageInfo func (m *ResourceClaimStatus) Reset() { *m = ResourceClaimStatus{} } func (*ResourceClaimStatus) ProtoMessage() {} func (*ResourceClaimStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{25} + return fileDescriptor_66649ee9bbcd89d2, []int{35} } func (m *ResourceClaimStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -780,7 +1061,7 @@ var xxx_messageInfo_ResourceClaimStatus proto.InternalMessageInfo func (m *ResourceClaimTemplate) Reset() { *m = ResourceClaimTemplate{} } func (*ResourceClaimTemplate) ProtoMessage() {} func (*ResourceClaimTemplate) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{26} + return fileDescriptor_66649ee9bbcd89d2, []int{36} } func (m *ResourceClaimTemplate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -808,7 +1089,7 @@ var xxx_messageInfo_ResourceClaimTemplate proto.InternalMessageInfo func (m *ResourceClaimTemplateList) Reset() { *m = ResourceClaimTemplateList{} } func (*ResourceClaimTemplateList) ProtoMessage() {} func (*ResourceClaimTemplateList) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{27} + return fileDescriptor_66649ee9bbcd89d2, []int{37} } func (m *ResourceClaimTemplateList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -836,7 +1117,7 @@ var xxx_messageInfo_ResourceClaimTemplateList proto.InternalMessageInfo func (m *ResourceClaimTemplateSpec) Reset() { *m = ResourceClaimTemplateSpec{} } func (*ResourceClaimTemplateSpec) ProtoMessage() {} func (*ResourceClaimTemplateSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{28} + return fileDescriptor_66649ee9bbcd89d2, []int{38} } func (m *ResourceClaimTemplateSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -864,7 +1145,7 @@ var xxx_messageInfo_ResourceClaimTemplateSpec proto.InternalMessageInfo func (m *ResourcePool) Reset() { *m = ResourcePool{} } func (*ResourcePool) ProtoMessage() {} func (*ResourcePool) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{29} + return fileDescriptor_66649ee9bbcd89d2, []int{39} } func (m *ResourcePool) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -892,7 +1173,7 @@ var xxx_messageInfo_ResourcePool proto.InternalMessageInfo func (m *ResourceSlice) Reset() { *m = ResourceSlice{} } func (*ResourceSlice) ProtoMessage() {} func (*ResourceSlice) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{30} + return fileDescriptor_66649ee9bbcd89d2, []int{40} } func (m *ResourceSlice) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -920,7 +1201,7 @@ var xxx_messageInfo_ResourceSlice proto.InternalMessageInfo func (m *ResourceSliceList) Reset() { *m = ResourceSliceList{} } func (*ResourceSliceList) ProtoMessage() {} func (*ResourceSliceList) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{31} + return fileDescriptor_66649ee9bbcd89d2, []int{41} } func (m *ResourceSliceList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -948,7 +1229,7 @@ var xxx_messageInfo_ResourceSliceList proto.InternalMessageInfo func (m *ResourceSliceSpec) Reset() { *m = ResourceSliceSpec{} } func (*ResourceSliceSpec) ProtoMessage() {} func (*ResourceSliceSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_66649ee9bbcd89d2, []int{32} + return fileDescriptor_66649ee9bbcd89d2, []int{42} } func (m *ResourceSliceSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -980,6 +1261,9 @@ func init() { proto.RegisterMapType((map[QualifiedName]DeviceAttribute)(nil), "k8s.io.api.resource.v1alpha3.BasicDevice.AttributesEntry") proto.RegisterMapType((map[QualifiedName]resource.Quantity)(nil), "k8s.io.api.resource.v1alpha3.BasicDevice.CapacityEntry") proto.RegisterType((*CELDeviceSelector)(nil), "k8s.io.api.resource.v1alpha3.CELDeviceSelector") + proto.RegisterType((*Counter)(nil), "k8s.io.api.resource.v1alpha3.Counter") + proto.RegisterType((*CounterSet)(nil), "k8s.io.api.resource.v1alpha3.CounterSet") + proto.RegisterMapType((map[string]Counter)(nil), "k8s.io.api.resource.v1alpha3.CounterSet.CountersEntry") proto.RegisterType((*Device)(nil), "k8s.io.api.resource.v1alpha3.Device") proto.RegisterType((*DeviceAllocationConfiguration)(nil), "k8s.io.api.resource.v1alpha3.DeviceAllocationConfiguration") proto.RegisterType((*DeviceAllocationResult)(nil), "k8s.io.api.resource.v1alpha3.DeviceAllocationResult") @@ -992,9 +1276,18 @@ func init() { proto.RegisterType((*DeviceClassSpec)(nil), "k8s.io.api.resource.v1alpha3.DeviceClassSpec") proto.RegisterType((*DeviceConfiguration)(nil), "k8s.io.api.resource.v1alpha3.DeviceConfiguration") proto.RegisterType((*DeviceConstraint)(nil), "k8s.io.api.resource.v1alpha3.DeviceConstraint") + proto.RegisterType((*DeviceCounterConsumption)(nil), "k8s.io.api.resource.v1alpha3.DeviceCounterConsumption") + proto.RegisterMapType((map[string]Counter)(nil), "k8s.io.api.resource.v1alpha3.DeviceCounterConsumption.CountersEntry") proto.RegisterType((*DeviceRequest)(nil), "k8s.io.api.resource.v1alpha3.DeviceRequest") proto.RegisterType((*DeviceRequestAllocationResult)(nil), "k8s.io.api.resource.v1alpha3.DeviceRequestAllocationResult") proto.RegisterType((*DeviceSelector)(nil), "k8s.io.api.resource.v1alpha3.DeviceSelector") + proto.RegisterType((*DeviceSubRequest)(nil), "k8s.io.api.resource.v1alpha3.DeviceSubRequest") + proto.RegisterType((*DeviceTaint)(nil), "k8s.io.api.resource.v1alpha3.DeviceTaint") + proto.RegisterType((*DeviceTaintRule)(nil), "k8s.io.api.resource.v1alpha3.DeviceTaintRule") + proto.RegisterType((*DeviceTaintRuleList)(nil), "k8s.io.api.resource.v1alpha3.DeviceTaintRuleList") + proto.RegisterType((*DeviceTaintRuleSpec)(nil), "k8s.io.api.resource.v1alpha3.DeviceTaintRuleSpec") + proto.RegisterType((*DeviceTaintSelector)(nil), "k8s.io.api.resource.v1alpha3.DeviceTaintSelector") + proto.RegisterType((*DeviceToleration)(nil), "k8s.io.api.resource.v1alpha3.DeviceToleration") proto.RegisterType((*NetworkDeviceData)(nil), "k8s.io.api.resource.v1alpha3.NetworkDeviceData") proto.RegisterType((*OpaqueDeviceConfiguration)(nil), "k8s.io.api.resource.v1alpha3.OpaqueDeviceConfiguration") proto.RegisterType((*ResourceClaim)(nil), 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MarshalToSizedBuffer(dAtA []byte) (int, error) { i-- dAtA[i] = 0x32 } - { - size, err := m.Data.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err + if m.Data != nil { + { + size, err := m.Data.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) + i-- + dAtA[i] = 0x2a } - i-- - dAtA[i] = 0x2a if len(m.Conditions) > 0 { for iNdEx := len(m.Conditions) - 1; iNdEx >= 0; iNdEx-- { { @@ -1285,17 +1618,10 @@ func (m *BasicDevice) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l - if len(m.Capacity) > 0 { - keysForCapacity := make([]string, 0, len(m.Capacity)) - for k := range m.Capacity { - keysForCapacity = append(keysForCapacity, string(k)) - } - github_com_gogo_protobuf_sortkeys.Strings(keysForCapacity) - for iNdEx := len(keysForCapacity) - 1; iNdEx >= 0; iNdEx-- { - v := m.Capacity[QualifiedName(keysForCapacity[iNdEx])] - baseI := i + if len(m.Taints) > 0 { + for iNdEx := len(m.Taints) - 1; iNdEx >= 0; iNdEx-- { { - size, err := (&v).MarshalToSizedBuffer(dAtA[:i]) + size, err := m.Taints[iNdEx].MarshalToSizedBuffer(dAtA[:i]) if err != nil { return 0, err } @@ -1303,21 +1629,85 @@ func (m *BasicDevice) MarshalToSizedBuffer(dAtA []byte) (int, error) { i = encodeVarintGenerated(dAtA, i, uint64(size)) } i-- - dAtA[i] = 0x12 - i -= len(keysForCapacity[iNdEx]) - copy(dAtA[i:], keysForCapacity[iNdEx]) - i = encodeVarintGenerated(dAtA, i, uint64(len(keysForCapacity[iNdEx]))) - i-- - dAtA[i] = 0xa - i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) - i-- - dAtA[i] = 0x12 + dAtA[i] = 0x3a } } - if len(m.Attributes) > 0 { - keysForAttributes := make([]string, 0, len(m.Attributes)) - for k := range m.Attributes { - keysForAttributes = append(keysForAttributes, string(k)) + if m.AllNodes != nil { + i-- + if *m.AllNodes { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x30 + } + if m.NodeSelector != nil { + { + size, err := m.NodeSelector.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x2a + } + if m.NodeName != nil { + i -= len(*m.NodeName) + copy(dAtA[i:], *m.NodeName) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.NodeName))) + i-- + dAtA[i] = 0x22 + } + if len(m.ConsumesCounters) > 0 { + for iNdEx := len(m.ConsumesCounters) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.ConsumesCounters[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1a + } + } + if len(m.Capacity) > 0 { + keysForCapacity := make([]string, 0, len(m.Capacity)) + for k := range m.Capacity { + keysForCapacity = append(keysForCapacity, string(k)) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForCapacity) + for iNdEx := len(keysForCapacity) - 1; iNdEx >= 0; iNdEx-- { + v := m.Capacity[QualifiedName(keysForCapacity[iNdEx])] + baseI := i + { + size, err := (&v).MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + i -= len(keysForCapacity[iNdEx]) + copy(dAtA[i:], keysForCapacity[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(keysForCapacity[iNdEx]))) + i-- + dAtA[i] = 0xa + i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) + i-- + dAtA[i] = 0x12 + } + } + if len(m.Attributes) > 0 { + keysForAttributes := make([]string, 0, len(m.Attributes)) + for k := range m.Attributes { + keysForAttributes = append(keysForAttributes, string(k)) } github_com_gogo_protobuf_sortkeys.Strings(keysForAttributes) for iNdEx := len(keysForAttributes) - 1; iNdEx >= 0; iNdEx-- { @@ -1374,6 +1764,96 @@ func (m *CELDeviceSelector) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *Counter) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *Counter) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *Counter) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + { + size, err := m.Value.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *CounterSet) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *CounterSet) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *CounterSet) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Counters) > 0 { + keysForCounters := make([]string, 0, len(m.Counters)) + for k := range m.Counters { + keysForCounters = append(keysForCounters, string(k)) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForCounters) + for iNdEx := len(keysForCounters) - 1; iNdEx >= 0; iNdEx-- { + v := m.Counters[string(keysForCounters[iNdEx])] + baseI := i + { + size, err := (&v).MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + i -= len(keysForCounters[iNdEx]) + copy(dAtA[i:], keysForCounters[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(keysForCounters[iNdEx]))) + i-- + dAtA[i] = 0xa + i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) + i-- + dAtA[i] = 0x12 + } + } + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *Device) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -1919,6 +2399,63 @@ func (m *DeviceConstraint) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *DeviceCounterConsumption) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *DeviceCounterConsumption) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *DeviceCounterConsumption) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Counters) > 0 { + keysForCounters := make([]string, 0, len(m.Counters)) + for k := range m.Counters { + keysForCounters = append(keysForCounters, string(k)) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForCounters) + for iNdEx := len(keysForCounters) - 1; iNdEx >= 0; iNdEx-- { + v := m.Counters[string(keysForCounters[iNdEx])] + baseI := i + { + size, err := (&v).MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + i -= len(keysForCounters[iNdEx]) + copy(dAtA[i:], keysForCounters[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(keysForCounters[iNdEx]))) + i-- + dAtA[i] = 0xa + i = encodeVarintGenerated(dAtA, i, uint64(baseI-i)) + i-- + dAtA[i] = 0x12 + } + } + i -= len(m.CounterSet) + copy(dAtA[i:], m.CounterSet) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.CounterSet))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *DeviceRequest) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -1939,6 +2476,34 @@ func (m *DeviceRequest) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if len(m.Tolerations) > 0 { + for iNdEx := len(m.Tolerations) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Tolerations[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x42 + } + } + if len(m.FirstAvailable) > 0 { + for iNdEx := len(m.FirstAvailable) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.FirstAvailable[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x3a + } + } if m.AdminAccess != nil { i-- if *m.AdminAccess { @@ -2004,6 +2569,20 @@ func (m *DeviceRequestAllocationResult) MarshalToSizedBuffer(dAtA []byte) (int, _ = i var l int _ = l + if len(m.Tolerations) > 0 { + for iNdEx := len(m.Tolerations) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Tolerations[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x32 + } + } if m.AdminAccess != nil { i-- if *m.AdminAccess { @@ -2072,7 +2651,7 @@ func (m *DeviceSelector) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } -func (m *NetworkDeviceData) Marshal() (dAtA []byte, err error) { +func (m *DeviceSubRequest) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -2082,77 +2661,66 @@ func (m *NetworkDeviceData) Marshal() (dAtA []byte, err error) { return dAtA[:n], nil } -func (m *NetworkDeviceData) MarshalTo(dAtA []byte) (int, error) { +func (m *DeviceSubRequest) MarshalTo(dAtA []byte) (int, error) { size := m.Size() return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *NetworkDeviceData) MarshalToSizedBuffer(dAtA []byte) (int, error) { +func (m *DeviceSubRequest) MarshalToSizedBuffer(dAtA []byte) (int, error) { i := len(dAtA) _ = i var l int _ = l - i -= len(m.HardwareAddress) - copy(dAtA[i:], m.HardwareAddress) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.HardwareAddress))) - i-- - dAtA[i] = 0x1a - if len(m.IPs) > 0 { - for iNdEx := len(m.IPs) - 1; iNdEx >= 0; iNdEx-- { - i -= len(m.IPs[iNdEx]) - copy(dAtA[i:], m.IPs[iNdEx]) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.IPs[iNdEx]))) + if len(m.Tolerations) > 0 { + for iNdEx := len(m.Tolerations) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Tolerations[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } i-- - dAtA[i] = 0x12 + dAtA[i] = 0x3a } } - i -= len(m.InterfaceName) - copy(dAtA[i:], m.InterfaceName) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.InterfaceName))) + i = encodeVarintGenerated(dAtA, i, uint64(m.Count)) i-- - dAtA[i] = 0xa - return len(dAtA) - i, nil -} - -func (m *OpaqueDeviceConfiguration) Marshal() (dAtA []byte, err error) { - size := m.Size() - dAtA = make([]byte, size) - n, err := m.MarshalToSizedBuffer(dAtA[:size]) - if err != nil { - return nil, err - } - return dAtA[:n], nil -} - -func (m *OpaqueDeviceConfiguration) MarshalTo(dAtA []byte) (int, error) { - size := m.Size() - return m.MarshalToSizedBuffer(dAtA[:size]) -} - -func (m *OpaqueDeviceConfiguration) MarshalToSizedBuffer(dAtA []byte) (int, error) { - i := len(dAtA) - _ = i - var l int - _ = l - { - size, err := m.Parameters.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err + dAtA[i] = 0x28 + i -= len(m.AllocationMode) + copy(dAtA[i:], m.AllocationMode) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.AllocationMode))) + i-- + dAtA[i] = 0x22 + if len(m.Selectors) > 0 { + for iNdEx := len(m.Selectors) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Selectors[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1a } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) } + i -= len(m.DeviceClassName) + copy(dAtA[i:], m.DeviceClassName) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.DeviceClassName))) i-- dAtA[i] = 0x12 - i -= len(m.Driver) - copy(dAtA[i:], m.Driver) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.Driver))) + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) i-- dAtA[i] = 0xa return len(dAtA) - i, nil } -func (m *ResourceClaim) Marshal() (dAtA []byte, err error) { +func (m *DeviceTaint) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -2162,50 +2730,47 @@ func (m *ResourceClaim) Marshal() (dAtA []byte, err error) { return dAtA[:n], nil } -func (m *ResourceClaim) MarshalTo(dAtA []byte) (int, error) { +func (m *DeviceTaint) MarshalTo(dAtA []byte) (int, error) { size := 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MarshalToSizedBuffer(dAtA []byte) (int, error) { +func (m *NetworkDeviceData) MarshalToSizedBuffer(dAtA []byte) (int, error) { i := len(dAtA) _ = i var l int _ = l - if len(m.Items) > 0 { - for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { - { - size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) - } + i -= len(m.HardwareAddress) + copy(dAtA[i:], m.HardwareAddress) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.HardwareAddress))) + i-- + dAtA[i] = 0x1a + if len(m.IPs) > 0 { + for iNdEx := len(m.IPs) - 1; iNdEx >= 0; iNdEx-- { + i -= len(m.IPs[iNdEx]) + copy(dAtA[i:], m.IPs[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.IPs[iNdEx]))) i-- dAtA[i] = 0x12 } } - { - size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) - } + i -= len(m.InterfaceName) + copy(dAtA[i:], 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encodeVarintGenerated(dAtA, i, uint64(size)) + } i-- dAtA[i] = 0xa return len(dAtA) - i, nil } -func (m *ResourceSlice) Marshal() (dAtA []byte, err error) { +func (m *ResourceClaimConsumerReference) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -2568,40 +3161,40 @@ func (m *ResourceSlice) Marshal() (dAtA []byte, err error) { return dAtA[:n], nil } -func (m *ResourceSlice) MarshalTo(dAtA []byte) (int, error) { +func (m *ResourceClaimConsumerReference) MarshalTo(dAtA []byte) (int, error) { size := m.Size() return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *ResourceSlice) MarshalToSizedBuffer(dAtA []byte) (int, error) { +func (m *ResourceClaimConsumerReference) MarshalToSizedBuffer(dAtA []byte) (int, error) { i := len(dAtA) _ = i var l int _ = l - { - size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) - } + i -= len(m.UID) + copy(dAtA[i:], m.UID) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.UID))) i-- - dAtA[i] = 0x12 - { - size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) - } + dAtA[i] = 0x2a + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0x22 + i -= len(m.Resource) + copy(dAtA[i:], m.Resource) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Resource))) + i-- + dAtA[i] = 0x1a + i -= len(m.APIGroup) + copy(dAtA[i:], m.APIGroup) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.APIGroup))) i-- dAtA[i] = 0xa return len(dAtA) - i, nil } -func (m *ResourceSliceList) Marshal() (dAtA []byte, err error) { +func (m *ResourceClaimList) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) n, err := m.MarshalToSizedBuffer(dAtA[:size]) @@ -2611,12 +3204,12 @@ func (m 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len(dAtA) _ = i var l int @@ -2679,20 +3305,26 @@ func (m *ResourceSliceSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { i = encodeVarintGenerated(dAtA, i, uint64(size)) } i-- - dAtA[i] = 0x32 + dAtA[i] = 0x22 } } - i-- - if m.AllNodes { - dAtA[i] = 1 - } else { - dAtA[i] = 0 + if len(m.ReservedFor) > 0 { + for iNdEx := len(m.ReservedFor) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.ReservedFor[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } } - i-- - dAtA[i] = 0x28 - if m.NodeSelector != nil { + if m.Allocation != nil { { - size, err := m.NodeSelector.MarshalToSizedBuffer(dAtA[:i]) + size, err := m.Allocation.MarshalToSizedBuffer(dAtA[:i]) if err != nil { return 0, err } @@ -2700,15 +3332,33 @@ func (m *ResourceSliceSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { i = encodeVarintGenerated(dAtA, i, uint64(size)) } i-- - dAtA[i] = 0x22 + dAtA[i] = 0xa } - i -= len(m.NodeName) - copy(dAtA[i:], m.NodeName) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.NodeName))) - i-- - dAtA[i] = 0x1a + return len(dAtA) - i, nil +} + +func (m *ResourceClaimTemplate) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err + } + return dAtA[:n], nil +} + +func (m *ResourceClaimTemplate) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceClaimTemplate) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l { - size, err := m.Pool.MarshalToSizedBuffer(dAtA[:i]) + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) if err != nil { return 0, err } @@ -2717,282 +3367,432 @@ func (m *ResourceSliceSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { } i-- dAtA[i] = 0x12 - i -= len(m.Driver) - copy(dAtA[i:], m.Driver) - i = encodeVarintGenerated(dAtA, i, uint64(len(m.Driver))) + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } i-- dAtA[i] = 0xa return len(dAtA) - i, nil } -func encodeVarintGenerated(dAtA []byte, offset int, v uint64) int { - offset -= sovGenerated(v) - base := offset - for v >= 1<<7 { - dAtA[offset] = uint8(v&0x7f | 0x80) - v >>= 7 - offset++ +func (m *ResourceClaimTemplateList) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - dAtA[offset] = uint8(v) - return base + return dAtA[:n], nil } -func (m *AllocatedDeviceStatus) Size() (n int) { - if m == nil { - return 0 - } + +func (m *ResourceClaimTemplateList) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceClaimTemplateList) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - l = len(m.Driver) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Pool) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Device) - n += 1 + l + sovGenerated(uint64(l)) - if len(m.Conditions) > 0 { - for _, e := range m.Conditions { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 } } - l = m.Data.Size() - n += 1 + l + sovGenerated(uint64(l)) - if m.NetworkData != nil { - l = m.NetworkData.Size() - n += 1 + l + sovGenerated(uint64(l)) + { + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *AllocationResult) Size() (n int) { - if m == nil { - return 0 - } - var l int - _ = l - l = m.Devices.Size() - n += 1 + l + sovGenerated(uint64(l)) - if m.NodeSelector != nil { - l = m.NodeSelector.Size() - n += 1 + l + sovGenerated(uint64(l)) +func (m *ResourceClaimTemplateSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - return n + return dAtA[:n], nil } -func (m *BasicDevice) Size() (n int) { - if m == nil { - return 0 - } +func (m *ResourceClaimTemplateSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceClaimTemplateSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - if len(m.Attributes) > 0 { - for k, v := range m.Attributes { - _ = k - _ = v - l = v.Size() - mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) - n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - if len(m.Capacity) > 0 { - for k, v := range m.Capacity { - _ = k - _ = v - l = v.Size() - mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) - n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *CELDeviceSelector) Size() (n int) { - if m == nil { - return 0 +func (m *ResourcePool) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - var l int - _ = l - l = len(m.Expression) - n += 1 + l + sovGenerated(uint64(l)) - return n + return dAtA[:n], nil } -func (m *Device) Size() (n int) { - if m == nil { - return 0 - } - var l int - _ = l - l = len(m.Name) - n += 1 + l + sovGenerated(uint64(l)) - if m.Basic != nil { - l = m.Basic.Size() - n += 1 + l + sovGenerated(uint64(l)) - } - return n +func (m *ResourcePool) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) } -func (m *DeviceAllocationConfiguration) Size() (n int) { - if m == nil { - return 0 - } +func (m *ResourcePool) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - l = len(m.Source) - n += 1 + l + sovGenerated(uint64(l)) - if len(m.Requests) > 0 { - for _, s := range m.Requests { - l = len(s) - n += 1 + l + sovGenerated(uint64(l)) - } - } - l = m.DeviceConfiguration.Size() - n += 1 + l + sovGenerated(uint64(l)) - return n + i = encodeVarintGenerated(dAtA, i, uint64(m.ResourceSliceCount)) + i-- + dAtA[i] = 0x18 + i = encodeVarintGenerated(dAtA, i, uint64(m.Generation)) + i-- + dAtA[i] = 0x10 + i -= len(m.Name) + copy(dAtA[i:], m.Name) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *DeviceAllocationResult) Size() (n int) { - if m == nil { - return 0 +func (m *ResourceSlice) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } + return dAtA[:n], nil +} + +func (m *ResourceSlice) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceSlice) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - if len(m.Results) > 0 { - for _, e := range m.Results { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + { + size, err := m.Spec.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - if len(m.Config) > 0 { - for _, e := range m.Config { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + i-- + dAtA[i] = 0x12 + { + size, err := m.ObjectMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *DeviceAttribute) Size() (n int) { - if m == nil { - return 0 - } - var l int - _ = l - if m.IntValue != nil { - n += 1 + sovGenerated(uint64(*m.IntValue)) - } - if m.BoolValue != nil { - n += 2 - } - if m.StringValue != nil { - l = len(*m.StringValue) - n += 1 + l + sovGenerated(uint64(l)) - } - if m.VersionValue != nil { - l = len(*m.VersionValue) - n += 1 + l + sovGenerated(uint64(l)) +func (m *ResourceSliceList) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - return n + return dAtA[:n], nil } -func (m *DeviceClaim) Size() (n int) { - if m == nil { - return 0 - } +func (m *ResourceSliceList) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceSliceList) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i var l int _ = l - if len(m.Requests) > 0 { - for _, e := range m.Requests { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) - } - } - if len(m.Constraints) > 0 { - for _, e := range m.Constraints { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for iNdEx := len(m.Items) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Items[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 } } - if len(m.Config) > 0 { - for _, e := range m.Config { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + { + size, err := m.ListMeta.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) } - return n + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *DeviceClaimConfiguration) Size() (n int) { - if m == nil { - return 0 +func (m *ResourceSliceSpec) Marshal() (dAtA []byte, err error) { + size := m.Size() + dAtA = make([]byte, size) + n, err := m.MarshalToSizedBuffer(dAtA[:size]) + if err != nil { + return nil, err } - var l int - _ = l - if len(m.Requests) > 0 { - for _, s := range m.Requests { - l = len(s) - n += 1 + l + sovGenerated(uint64(l)) + return dAtA[:n], nil +} + +func (m *ResourceSliceSpec) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceSliceSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.SharedCounters) > 0 { + for iNdEx := len(m.SharedCounters) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.SharedCounters[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x42 } } - l = m.DeviceConfiguration.Size() - n += 1 + l + sovGenerated(uint64(l)) - return n + if m.PerDeviceNodeSelection != nil { + i-- + if *m.PerDeviceNodeSelection { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x38 + } + if len(m.Devices) > 0 { + for iNdEx := len(m.Devices) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Devices[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x32 + } + } + i-- + if m.AllNodes { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x28 + if m.NodeSelector != nil { + { + size, err := m.NodeSelector.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x22 + } + i -= len(m.NodeName) + copy(dAtA[i:], m.NodeName) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.NodeName))) + i-- + dAtA[i] = 0x1a + { + size, err := m.Pool.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + i -= len(m.Driver) + copy(dAtA[i:], m.Driver) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Driver))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil } -func (m *DeviceClass) Size() (n int) { +func encodeVarintGenerated(dAtA []byte, offset int, v uint64) int { + offset -= sovGenerated(v) + base := offset + for v >= 1<<7 { + dAtA[offset] = uint8(v&0x7f | 0x80) + v >>= 7 + offset++ + } + dAtA[offset] = uint8(v) + return base +} +func (m *AllocatedDeviceStatus) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.ObjectMeta.Size() + l = len(m.Driver) n += 1 + l + sovGenerated(uint64(l)) - l = m.Spec.Size() + l = len(m.Pool) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Device) n += 1 + l + sovGenerated(uint64(l)) + if len(m.Conditions) > 0 { + for _, e := range m.Conditions { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if m.Data != nil { + l = m.Data.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if m.NetworkData != nil { + l = m.NetworkData.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } -func (m *DeviceClassConfiguration) Size() (n int) { +func (m *AllocationResult) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.DeviceConfiguration.Size() + l = m.Devices.Size() n += 1 + l + sovGenerated(uint64(l)) + if m.NodeSelector != nil { + l = m.NodeSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } -func (m *DeviceClassList) Size() (n int) { +func (m *BasicDevice) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.ListMeta.Size() - n += 1 + l + sovGenerated(uint64(l)) - if len(m.Items) > 0 { - for _, e := range m.Items { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + if len(m.Attributes) > 0 { + for k, v := range m.Attributes { + _ = k + _ = v + l = v.Size() + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) } } - return n -} - -func (m *DeviceClassSpec) Size() (n int) { - if m == nil { - return 0 + if len(m.Capacity) > 0 { + for k, v := range m.Capacity { + _ = k + _ = v + l = v.Size() + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) + } } - var l int - _ = l - if len(m.Selectors) > 0 { - for _, e := range m.Selectors { + if len(m.ConsumesCounters) > 0 { + for _, e := range m.ConsumesCounters { l = e.Size() n += 1 + l + sovGenerated(uint64(l)) } } - if len(m.Config) > 0 { - for _, e := range m.Config { + if m.NodeName != nil { + l = len(*m.NodeName) + n += 1 + l + sovGenerated(uint64(l)) + } + if m.NodeSelector != nil { + l = m.NodeSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if m.AllNodes != nil { + n += 2 + } + if len(m.Taints) > 0 { + for _, e := range m.Taints { l = e.Size() n += 1 + l + sovGenerated(uint64(l)) } @@ -3000,39 +3800,29 @@ func (m *DeviceClassSpec) Size() (n int) { return n } -func (m *DeviceConfiguration) Size() (n int) { +func (m *CELDeviceSelector) Size() (n int) { if m == nil { return 0 } var l int _ = l - if m.Opaque != nil { - l = m.Opaque.Size() - n += 1 + l + sovGenerated(uint64(l)) - } + l = len(m.Expression) + n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *DeviceConstraint) Size() (n int) { +func (m *Counter) Size() (n int) { if m == nil { return 0 } var l int _ = l - if len(m.Requests) > 0 { - for _, s := range m.Requests { - l = len(s) - n += 1 + l + sovGenerated(uint64(l)) - } - } - if m.MatchAttribute != nil { - l = len(*m.MatchAttribute) - n += 1 + l + sovGenerated(uint64(l)) - } + l = m.Value.Size() + n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *DeviceRequest) Size() (n int) { +func (m *CounterSet) Size() (n int) { if m == nil { return 0 } @@ -3040,89 +3830,141 @@ func (m *DeviceRequest) Size() (n int) { _ = l l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) - l = len(m.DeviceClassName) - n += 1 + l + sovGenerated(uint64(l)) - if len(m.Selectors) > 0 { - for _, e := range m.Selectors { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + if len(m.Counters) > 0 { + for k, v := range m.Counters { + _ = k + _ = v + l = v.Size() + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) } } - l = len(m.AllocationMode) - n += 1 + l + sovGenerated(uint64(l)) - n += 1 + sovGenerated(uint64(m.Count)) - if m.AdminAccess != nil { - n += 2 - } return n } -func (m *DeviceRequestAllocationResult) Size() (n int) { +func (m *Device) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.Request) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Driver) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Pool) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Device) + l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) - if m.AdminAccess != nil { - n += 2 + if m.Basic != nil { + l = m.Basic.Size() + n += 1 + l + sovGenerated(uint64(l)) } return n } -func (m *DeviceSelector) Size() (n int) { +func (m *DeviceAllocationConfiguration) Size() (n int) { if m == nil { return 0 } var l int _ = l - if m.CEL != nil { - l = m.CEL.Size() - n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Source) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Requests) > 0 { + for _, s := range m.Requests { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } } + l = m.DeviceConfiguration.Size() + n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *NetworkDeviceData) Size() (n int) { +func (m *DeviceAllocationResult) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.InterfaceName) - n += 1 + l + sovGenerated(uint64(l)) - if len(m.IPs) > 0 { - for _, s := range m.IPs { - l = len(s) + if len(m.Results) > 0 { + for _, e := range m.Results { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Config) > 0 { + for _, e := range m.Config { + l = e.Size() n += 1 + l + sovGenerated(uint64(l)) } } - l = len(m.HardwareAddress) - n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *OpaqueDeviceConfiguration) Size() (n int) { +func (m *DeviceAttribute) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.Driver) - n += 1 + l + sovGenerated(uint64(l)) - l = m.Parameters.Size() + if m.IntValue != nil { + n += 1 + sovGenerated(uint64(*m.IntValue)) + } + if m.BoolValue != nil { + n += 2 + } + if m.StringValue != nil { + l = len(*m.StringValue) + n += 1 + l + sovGenerated(uint64(l)) + } + if m.VersionValue != nil { + l = len(*m.VersionValue) + n += 1 + l + sovGenerated(uint64(l)) + } + return n +} + +func (m *DeviceClaim) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Requests) > 0 { + for _, e := range m.Requests { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Constraints) > 0 { + for _, e := range m.Constraints { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Config) > 0 { + for _, e := range m.Config { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *DeviceClaimConfiguration) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Requests) > 0 { + for _, s := range m.Requests { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } + } + l = m.DeviceConfiguration.Size() n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *ResourceClaim) Size() (n int) { +func (m *DeviceClass) Size() (n int) { if m == nil { return 0 } @@ -3132,29 +3974,21 @@ func (m *ResourceClaim) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) l = m.Spec.Size() n += 1 + l + sovGenerated(uint64(l)) - l = m.Status.Size() - n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *ResourceClaimConsumerReference) Size() (n int) { +func (m *DeviceClassConfiguration) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.APIGroup) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Resource) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.Name) - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.UID) + l = m.DeviceConfiguration.Size() n += 1 + l + sovGenerated(uint64(l)) return n } -func (m *ResourceClaimList) Size() (n int) { +func (m *DeviceClassList) Size() (n int) { if m == nil { return 0 } @@ -3171,65 +4005,135 @@ func (m *ResourceClaimList) Size() (n int) { return n } -func (m *ResourceClaimSpec) Size() (n int) { +func (m *DeviceClassSpec) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.Devices.Size() - n += 1 + l + sovGenerated(uint64(l)) + if len(m.Selectors) > 0 { + for _, e := range m.Selectors { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Config) > 0 { + for _, e := range m.Config { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } return n } -func (m *ResourceClaimStatus) Size() (n int) { +func (m *DeviceConfiguration) Size() (n int) { if m == nil { return 0 } var l int _ = l - if m.Allocation != nil { - l = m.Allocation.Size() + if m.Opaque != nil { + l = m.Opaque.Size() n += 1 + l + sovGenerated(uint64(l)) } - if len(m.ReservedFor) > 0 { - for _, e := range m.ReservedFor { - l = e.Size() + return n +} + +func (m *DeviceConstraint) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if len(m.Requests) > 0 { + for _, s := range m.Requests { + l = len(s) n += 1 + l + sovGenerated(uint64(l)) } } - if len(m.Devices) > 0 { - for _, e := range m.Devices { - l = e.Size() - n += 1 + l + sovGenerated(uint64(l)) + if m.MatchAttribute != nil { + l = len(*m.MatchAttribute) + n += 1 + l + sovGenerated(uint64(l)) + } + return n +} + +func (m *DeviceCounterConsumption) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.CounterSet) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Counters) > 0 { + for k, v := range m.Counters { + _ = k + _ = v + l = v.Size() + mapEntrySize := 1 + len(k) + sovGenerated(uint64(len(k))) + 1 + l + sovGenerated(uint64(l)) + n += mapEntrySize + 1 + sovGenerated(uint64(mapEntrySize)) } } return n } -func (m *ResourceClaimTemplate) Size() (n int) { +func (m *DeviceRequest) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.ObjectMeta.Size() + l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) - l = m.Spec.Size() + l = len(m.DeviceClassName) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Selectors) > 0 { + for _, e := range m.Selectors { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + l = len(m.AllocationMode) n += 1 + l + sovGenerated(uint64(l)) + n += 1 + sovGenerated(uint64(m.Count)) + if m.AdminAccess != nil { + n += 2 + } + if len(m.FirstAvailable) > 0 { + for _, e := range m.FirstAvailable { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Tolerations) > 0 { + for _, e := range m.Tolerations { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } return n } -func (m *ResourceClaimTemplateList) Size() (n int) { +func (m *DeviceRequestAllocationResult) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.ListMeta.Size() + l = len(m.Request) n += 1 + l + sovGenerated(uint64(l)) - if len(m.Items) > 0 { - for _, e := range m.Items { + l = len(m.Driver) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Pool) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Device) + n += 1 + l + sovGenerated(uint64(l)) + if m.AdminAccess != nil { + n += 2 + } + if len(m.Tolerations) > 0 { + for _, e := range m.Tolerations { l = e.Size() n += 1 + l + sovGenerated(uint64(l)) } @@ -3237,33 +4141,67 @@ func (m *ResourceClaimTemplateList) Size() (n int) { return n } -func (m *ResourceClaimTemplateSpec) Size() (n int) { +func (m *DeviceSelector) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = m.ObjectMeta.Size() + if m.CEL != nil { + l = m.CEL.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + return n +} + +func (m *DeviceSubRequest) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) - l = m.Spec.Size() + l = len(m.DeviceClassName) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Selectors) > 0 { + for _, e := range m.Selectors { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + l = len(m.AllocationMode) n += 1 + l + sovGenerated(uint64(l)) + n += 1 + sovGenerated(uint64(m.Count)) + if len(m.Tolerations) > 0 { + for _, e := range m.Tolerations { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } return n } -func (m *ResourcePool) Size() (n int) { +func (m *DeviceTaint) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.Name) + l = len(m.Key) n += 1 + l + sovGenerated(uint64(l)) - n += 1 + sovGenerated(uint64(m.Generation)) - n += 1 + sovGenerated(uint64(m.ResourceSliceCount)) + l = len(m.Value) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Effect) + n += 1 + l + sovGenerated(uint64(l)) + if m.TimeAdded != nil { + l = m.TimeAdded.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } -func (m *ResourceSlice) Size() (n int) { +func (m *DeviceTaintRule) Size() (n int) { if m == nil { return 0 } @@ -3276,7 +4214,7 @@ func (m *ResourceSlice) Size() (n int) { return n } -func (m *ResourceSliceList) Size() (n int) { +func (m *DeviceTaintRuleList) Size() (n int) { if m == nil { return 0 } @@ -3293,25 +4231,45 @@ func (m *ResourceSliceList) Size() (n int) { return n } -func (m *ResourceSliceSpec) Size() (n int) { +func (m *DeviceTaintRuleSpec) Size() (n int) { if m == nil { return 0 } var l int _ = l - l = len(m.Driver) - n += 1 + l + sovGenerated(uint64(l)) - l = m.Pool.Size() - n += 1 + l + sovGenerated(uint64(l)) - l = len(m.NodeName) + if m.DeviceSelector != nil { + l = m.DeviceSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + l = m.Taint.Size() n += 1 + l + sovGenerated(uint64(l)) - if m.NodeSelector != nil { - l = m.NodeSelector.Size() + return n +} + +func (m *DeviceTaintSelector) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.DeviceClassName != nil { + l = len(*m.DeviceClassName) n += 1 + l + sovGenerated(uint64(l)) } - n += 2 - if len(m.Devices) > 0 { - for _, e := range m.Devices { + if m.Driver != nil { + l = len(*m.Driver) + n += 1 + l + sovGenerated(uint64(l)) + } + if m.Pool != nil { + l = len(*m.Pool) + n += 1 + l + sovGenerated(uint64(l)) + } + if m.Device != nil { + l = len(*m.Device) + n += 1 + l + sovGenerated(uint64(l)) + } + if len(m.Selectors) > 0 { + for _, e := range m.Selectors { l = e.Size() n += 1 + l + sovGenerated(uint64(l)) } @@ -3319,15 +4277,273 @@ func (m *ResourceSliceSpec) Size() (n int) { return n } -func sovGenerated(x uint64) (n int) { - return (math_bits.Len64(x|1) + 6) / 7 -} -func sozGenerated(x uint64) (n int) { - return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) -} -func (this *AllocatedDeviceStatus) String() string { - if this == nil { - return "nil" +func (m *DeviceToleration) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Key) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Operator) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Value) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Effect) + n += 1 + l + sovGenerated(uint64(l)) + if m.TolerationSeconds != nil { + n += 1 + sovGenerated(uint64(*m.TolerationSeconds)) + } + return n +} + +func (m *NetworkDeviceData) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.InterfaceName) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.IPs) > 0 { + for _, s := range m.IPs { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } + } + l = len(m.HardwareAddress) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *OpaqueDeviceConfiguration) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Driver) + n += 1 + l + sovGenerated(uint64(l)) + l = m.Parameters.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceClaim) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Status.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceClaimConsumerReference) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.APIGroup) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Resource) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.UID) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceClaimList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ResourceClaimSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.Devices.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceClaimStatus) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.Allocation != nil { + l = m.Allocation.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if len(m.ReservedFor) > 0 { + for _, e := range m.ReservedFor { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if len(m.Devices) > 0 { + for _, e := range m.Devices { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ResourceClaimTemplate) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceClaimTemplateList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ResourceClaimTemplateSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourcePool) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + n += 1 + sovGenerated(uint64(m.Generation)) + n += 1 + sovGenerated(uint64(m.ResourceSliceCount)) + return n +} + +func (m *ResourceSlice) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ObjectMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = m.Spec.Size() + n += 1 + l + sovGenerated(uint64(l)) + return n +} + +func (m *ResourceSliceList) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = m.ListMeta.Size() + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Items) > 0 { + for _, e := range m.Items { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ResourceSliceSpec) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Driver) + n += 1 + l + sovGenerated(uint64(l)) + l = m.Pool.Size() + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.NodeName) + n += 1 + l + sovGenerated(uint64(l)) + if m.NodeSelector != nil { + l = m.NodeSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + n += 2 + if len(m.Devices) > 0 { + for _, e := range m.Devices { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + if m.PerDeviceNodeSelection != nil { + n += 2 + } + if len(m.SharedCounters) > 0 { + for _, e := range m.SharedCounters { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func sovGenerated(x uint64) (n int) { + return (math_bits.Len64(x|1) + 6) / 7 +} +func sozGenerated(x uint64) (n int) { + return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) +} +func (this *AllocatedDeviceStatus) String() string { + if this == nil { + return "nil" } repeatedStringForConditions := "[]Condition{" for _, f := range this.Conditions { @@ -3339,7 +4555,7 @@ func (this *AllocatedDeviceStatus) String() string { `Pool:` + fmt.Sprintf("%v", this.Pool) + `,`, `Device:` + fmt.Sprintf("%v", this.Device) + `,`, `Conditions:` + repeatedStringForConditions + `,`, - `Data:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Data), "RawExtension", "runtime.RawExtension", 1), `&`, ``, 1) + `,`, + `Data:` + strings.Replace(fmt.Sprintf("%v", this.Data), "RawExtension", "runtime.RawExtension", 1) + `,`, `NetworkData:` + strings.Replace(this.NetworkData.String(), "NetworkDeviceData", "NetworkDeviceData", 1) + `,`, `}`, }, "") @@ -3360,7 +4576,17 @@ func (this *BasicDevice) String() string { if this == nil { return "nil" } - keysForAttributes := make([]string, 0, len(this.Attributes)) + repeatedStringForConsumesCounters := "[]DeviceCounterConsumption{" + for _, f := range this.ConsumesCounters { + repeatedStringForConsumesCounters += strings.Replace(strings.Replace(f.String(), "DeviceCounterConsumption", "DeviceCounterConsumption", 1), `&`, ``, 1) + "," + } + repeatedStringForConsumesCounters += "}" + repeatedStringForTaints := "[]DeviceTaint{" + for _, f := range this.Taints { + repeatedStringForTaints += strings.Replace(strings.Replace(f.String(), "DeviceTaint", "DeviceTaint", 1), `&`, ``, 1) + "," + } + repeatedStringForTaints += "}" + keysForAttributes := make([]string, 0, len(this.Attributes)) for k := range this.Attributes { keysForAttributes = append(keysForAttributes, string(k)) } @@ -3383,6 +4609,11 @@ func (this *BasicDevice) String() string { s := strings.Join([]string{`&BasicDevice{`, `Attributes:` + mapStringForAttributes + `,`, `Capacity:` + mapStringForCapacity + `,`, + `ConsumesCounters:` + repeatedStringForConsumesCounters + `,`, + `NodeName:` + valueToStringGenerated(this.NodeName) + `,`, + `NodeSelector:` + strings.Replace(fmt.Sprintf("%v", this.NodeSelector), "NodeSelector", "v11.NodeSelector", 1) + `,`, + `AllNodes:` + valueToStringGenerated(this.AllNodes) + `,`, + `Taints:` + repeatedStringForTaints + `,`, `}`, }, "") return s @@ -3397,6 +4628,37 @@ func (this *CELDeviceSelector) String() string { }, "") return s } +func (this *Counter) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&Counter{`, + `Value:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.Value), "Quantity", "resource.Quantity", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *CounterSet) String() string { + if this == nil { + return "nil" + } + keysForCounters := make([]string, 0, len(this.Counters)) + for k := range this.Counters { + keysForCounters = append(keysForCounters, k) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForCounters) + mapStringForCounters := "map[string]Counter{" + for _, k := range keysForCounters { + mapStringForCounters += fmt.Sprintf("%v: %v,", k, this.Counters[k]) + } + mapStringForCounters += "}" + s := strings.Join([]string{`&CounterSet{`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `Counters:` + mapStringForCounters + `,`, + `}`, + }, "") + return s +} func (this *Device) String() string { if this == nil { return "nil" @@ -3571,6 +4833,27 @@ func (this *DeviceConstraint) String() string { }, "") return s } +func (this *DeviceCounterConsumption) String() string { + if this == nil { + return "nil" + } + keysForCounters := make([]string, 0, len(this.Counters)) + for k := range this.Counters { + keysForCounters = append(keysForCounters, k) + } + github_com_gogo_protobuf_sortkeys.Strings(keysForCounters) + mapStringForCounters := "map[string]Counter{" + for _, k := range keysForCounters { + mapStringForCounters += fmt.Sprintf("%v: %v,", k, this.Counters[k]) + } + mapStringForCounters += "}" + s := strings.Join([]string{`&DeviceCounterConsumption{`, + `CounterSet:` + fmt.Sprintf("%v", this.CounterSet) + `,`, + `Counters:` + mapStringForCounters + `,`, + `}`, + }, "") + return s +} func (this *DeviceRequest) String() string { if this == nil { return "nil" @@ -3580,6 +4863,16 @@ func (this *DeviceRequest) String() string { repeatedStringForSelectors += strings.Replace(strings.Replace(f.String(), "DeviceSelector", "DeviceSelector", 1), `&`, ``, 1) + "," } repeatedStringForSelectors += "}" + repeatedStringForFirstAvailable := "[]DeviceSubRequest{" + for _, f := range this.FirstAvailable { + repeatedStringForFirstAvailable += strings.Replace(strings.Replace(f.String(), "DeviceSubRequest", "DeviceSubRequest", 1), `&`, ``, 1) + "," + } + repeatedStringForFirstAvailable += "}" + repeatedStringForTolerations := "[]DeviceToleration{" + for _, f := range this.Tolerations { + repeatedStringForTolerations += strings.Replace(strings.Replace(f.String(), "DeviceToleration", "DeviceToleration", 1), `&`, ``, 1) + "," + } + repeatedStringForTolerations += "}" s := strings.Join([]string{`&DeviceRequest{`, `Name:` + fmt.Sprintf("%v", this.Name) + `,`, `DeviceClassName:` + fmt.Sprintf("%v", this.DeviceClassName) + `,`, @@ -3587,6 +4880,8 @@ func (this *DeviceRequest) String() string { `AllocationMode:` + fmt.Sprintf("%v", this.AllocationMode) + `,`, `Count:` + fmt.Sprintf("%v", this.Count) + `,`, `AdminAccess:` + valueToStringGenerated(this.AdminAccess) + `,`, + `FirstAvailable:` + repeatedStringForFirstAvailable + `,`, + `Tolerations:` + repeatedStringForTolerations + `,`, `}`, }, "") return s @@ -3595,12 +4890,18 @@ func (this *DeviceRequestAllocationResult) String() string { if this == nil { return "nil" } + repeatedStringForTolerations := "[]DeviceToleration{" + for _, f := range this.Tolerations { + repeatedStringForTolerations += strings.Replace(strings.Replace(f.String(), "DeviceToleration", "DeviceToleration", 1), `&`, ``, 1) + "," + } + repeatedStringForTolerations += "}" s := strings.Join([]string{`&DeviceRequestAllocationResult{`, `Request:` + fmt.Sprintf("%v", this.Request) + `,`, `Driver:` + fmt.Sprintf("%v", this.Driver) + `,`, `Pool:` + fmt.Sprintf("%v", this.Pool) + `,`, `Device:` + fmt.Sprintf("%v", this.Device) + `,`, `AdminAccess:` + valueToStringGenerated(this.AdminAccess) + `,`, + `Tolerations:` + repeatedStringForTolerations + `,`, `}`, }, "") return s @@ -3615,6 +4916,115 @@ func (this *DeviceSelector) String() string { }, "") return s } +func (this *DeviceSubRequest) String() string { + if this == nil { + return "nil" + } + repeatedStringForSelectors := "[]DeviceSelector{" + for _, f := range this.Selectors { + repeatedStringForSelectors += strings.Replace(strings.Replace(f.String(), "DeviceSelector", "DeviceSelector", 1), `&`, ``, 1) + "," + } + repeatedStringForSelectors += "}" + repeatedStringForTolerations := "[]DeviceToleration{" + for _, f := range this.Tolerations { + repeatedStringForTolerations += strings.Replace(strings.Replace(f.String(), "DeviceToleration", "DeviceToleration", 1), `&`, ``, 1) + "," + } + repeatedStringForTolerations += "}" + s := strings.Join([]string{`&DeviceSubRequest{`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `DeviceClassName:` + fmt.Sprintf("%v", this.DeviceClassName) + `,`, + `Selectors:` + repeatedStringForSelectors + `,`, + `AllocationMode:` + fmt.Sprintf("%v", this.AllocationMode) + `,`, + `Count:` + fmt.Sprintf("%v", this.Count) + `,`, + `Tolerations:` + repeatedStringForTolerations + `,`, + `}`, + }, "") + return s +} +func (this *DeviceTaint) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&DeviceTaint{`, + `Key:` + fmt.Sprintf("%v", this.Key) + `,`, + `Value:` + fmt.Sprintf("%v", this.Value) + `,`, + `Effect:` + fmt.Sprintf("%v", this.Effect) + `,`, + `TimeAdded:` + strings.Replace(fmt.Sprintf("%v", this.TimeAdded), "Time", "v1.Time", 1) + `,`, + `}`, + }, "") + return s +} +func (this *DeviceTaintRule) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&DeviceTaintRule{`, + `ObjectMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ObjectMeta), "ObjectMeta", "v1.ObjectMeta", 1), `&`, ``, 1) + `,`, + `Spec:` + strings.Replace(strings.Replace(this.Spec.String(), "DeviceTaintRuleSpec", "DeviceTaintRuleSpec", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *DeviceTaintRuleList) String() string { + if this == nil { + return "nil" + } + repeatedStringForItems := "[]DeviceTaintRule{" + for _, f := range this.Items { + repeatedStringForItems += strings.Replace(strings.Replace(f.String(), "DeviceTaintRule", "DeviceTaintRule", 1), `&`, ``, 1) + "," + } + repeatedStringForItems += "}" + s := strings.Join([]string{`&DeviceTaintRuleList{`, + `ListMeta:` + strings.Replace(strings.Replace(fmt.Sprintf("%v", this.ListMeta), "ListMeta", "v1.ListMeta", 1), `&`, ``, 1) + `,`, + `Items:` + repeatedStringForItems + `,`, + `}`, + }, "") + return s +} +func (this *DeviceTaintRuleSpec) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&DeviceTaintRuleSpec{`, + `DeviceSelector:` + strings.Replace(this.DeviceSelector.String(), "DeviceTaintSelector", "DeviceTaintSelector", 1) + `,`, + `Taint:` + strings.Replace(strings.Replace(this.Taint.String(), "DeviceTaint", "DeviceTaint", 1), `&`, ``, 1) + `,`, + `}`, + }, "") + return s +} +func (this *DeviceTaintSelector) String() string { + if this == nil { + return "nil" + } + repeatedStringForSelectors := "[]DeviceSelector{" + for _, f := range this.Selectors { + repeatedStringForSelectors += strings.Replace(strings.Replace(f.String(), "DeviceSelector", "DeviceSelector", 1), `&`, ``, 1) + "," + } + repeatedStringForSelectors += "}" + s := strings.Join([]string{`&DeviceTaintSelector{`, + `DeviceClassName:` + valueToStringGenerated(this.DeviceClassName) + `,`, + `Driver:` + valueToStringGenerated(this.Driver) + `,`, + `Pool:` + valueToStringGenerated(this.Pool) + `,`, + `Device:` + valueToStringGenerated(this.Device) + `,`, + `Selectors:` + repeatedStringForSelectors + `,`, + `}`, + }, "") + return s +} +func (this *DeviceToleration) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&DeviceToleration{`, + `Key:` + fmt.Sprintf("%v", this.Key) + `,`, + `Operator:` + fmt.Sprintf("%v", this.Operator) + `,`, + `Value:` + fmt.Sprintf("%v", this.Value) + `,`, + `Effect:` + fmt.Sprintf("%v", this.Effect) + `,`, + `TolerationSeconds:` + valueToStringGenerated(this.TolerationSeconds) + `,`, + `}`, + }, "") + return s +} func (this *NetworkDeviceData) String() string { if this == nil { return "nil" @@ -3797,6 +5207,11 @@ func (this *ResourceSliceSpec) String() string { repeatedStringForDevices += strings.Replace(strings.Replace(f.String(), "Device", "Device", 1), `&`, ``, 1) + "," } repeatedStringForDevices += "}" + repeatedStringForSharedCounters := "[]CounterSet{" + for _, f := range this.SharedCounters { + repeatedStringForSharedCounters += strings.Replace(strings.Replace(f.String(), "CounterSet", "CounterSet", 1), `&`, ``, 1) + "," + } + repeatedStringForSharedCounters += "}" s := strings.Join([]string{`&ResourceSliceSpec{`, `Driver:` + fmt.Sprintf("%v", this.Driver) + `,`, `Pool:` + strings.Replace(strings.Replace(this.Pool.String(), "ResourcePool", "ResourcePool", 1), `&`, ``, 1) + `,`, @@ -3804,6 +5219,8 @@ func (this *ResourceSliceSpec) String() string { `NodeSelector:` + strings.Replace(fmt.Sprintf("%v", this.NodeSelector), "NodeSelector", "v11.NodeSelector", 1) + `,`, `AllNodes:` + fmt.Sprintf("%v", this.AllNodes) + `,`, `Devices:` + repeatedStringForDevices + `,`, + `PerDeviceNodeSelection:` + valueToStringGenerated(this.PerDeviceNodeSelection) + `,`, + `SharedCounters:` + repeatedStringForSharedCounters + `,`, `}`, }, "") return s @@ -3813,10 +5230,1915 @@ func valueToStringGenerated(v interface{}) string { if rv.IsNil() { return "nil" } - pv := reflect.Indirect(rv).Interface() - return fmt.Sprintf("*%v", pv) + pv := reflect.Indirect(rv).Interface() + return fmt.Sprintf("*%v", pv) +} +func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: AllocatedDeviceStatus: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: AllocatedDeviceStatus: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Driver", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Driver = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Pool", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Pool = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Device", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Device = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Conditions", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Conditions = append(m.Conditions, v1.Condition{}) + if err := m.Conditions[len(m.Conditions)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Data", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Data == nil { + m.Data = &runtime.RawExtension{} + } + if err := m.Data.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 6: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field NetworkData", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.NetworkData == nil { + m.NetworkData = &NetworkDeviceData{} + } + if err := m.NetworkData.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *AllocationResult) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: AllocationResult: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: AllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Devices", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Devices.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field NodeSelector", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.NodeSelector == nil { + m.NodeSelector = &v11.NodeSelector{} + } + if err := m.NodeSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *BasicDevice) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: BasicDevice: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: BasicDevice: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Attributes", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Attributes == nil { + m.Attributes = make(map[QualifiedName]DeviceAttribute) + } + var mapkey QualifiedName + mapvalue := &DeviceAttribute{} + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = QualifiedName(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var mapmsglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + mapmsglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if mapmsglen < 0 { + return ErrInvalidLengthGenerated + } + postmsgIndex := iNdEx + mapmsglen + if postmsgIndex < 0 { + return ErrInvalidLengthGenerated + } + if postmsgIndex > l { + return io.ErrUnexpectedEOF + } + mapvalue = &DeviceAttribute{} + if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { + return err + } + iNdEx = postmsgIndex + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + m.Attributes[QualifiedName(mapkey)] = *mapvalue + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Capacity", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Capacity == nil { + m.Capacity = make(map[QualifiedName]resource.Quantity) + } + var mapkey QualifiedName + mapvalue := &resource.Quantity{} + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = QualifiedName(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var mapmsglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + mapmsglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if mapmsglen < 0 { + return ErrInvalidLengthGenerated + } + postmsgIndex := iNdEx + mapmsglen + if postmsgIndex < 0 { + return ErrInvalidLengthGenerated + } + if postmsgIndex > l { + return io.ErrUnexpectedEOF + } + mapvalue = &resource.Quantity{} + if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { + return err + } + iNdEx = postmsgIndex + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + m.Capacity[QualifiedName(mapkey)] = *mapvalue + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ConsumesCounters", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.ConsumesCounters = append(m.ConsumesCounters, DeviceCounterConsumption{}) + if err := m.ConsumesCounters[len(m.ConsumesCounters)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field NodeName", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := string(dAtA[iNdEx:postIndex]) + m.NodeName = &s + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field NodeSelector", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.NodeSelector == nil { + m.NodeSelector = &v11.NodeSelector{} + } + if err := m.NodeSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 6: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field AllNodes", wireType) + } + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + b := bool(v != 0) + m.AllNodes = &b + case 7: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Taints", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Taints = append(m.Taints, DeviceTaint{}) + if err := m.Taints[len(m.Taints)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *CELDeviceSelector) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: CELDeviceSelector: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: CELDeviceSelector: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Expression", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Expression = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *Counter) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: Counter: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: Counter: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Value", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.Value.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *CounterSet) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: CounterSet: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: CounterSet: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Counters", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Counters == nil { + m.Counters = make(map[string]Counter) + } + var mapkey string + mapvalue := &Counter{} + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = string(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var mapmsglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + mapmsglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if mapmsglen < 0 { + return ErrInvalidLengthGenerated + } + postmsgIndex := iNdEx + mapmsglen + if postmsgIndex < 0 { + return ErrInvalidLengthGenerated + } + if postmsgIndex > l { + return io.ErrUnexpectedEOF + } + mapvalue = &Counter{} + if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { + return err + } + iNdEx = postmsgIndex + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + m.Counters[mapkey] = *mapvalue + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *Device) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: Device: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: Device: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Basic", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if m.Basic == nil { + m.Basic = &BasicDevice{} + } + if err := m.Basic.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceAllocationConfiguration: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceAllocationConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Source", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Source = AllocationConfigSource(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceAllocationResult) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceAllocationResult: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceAllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Results", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Results = append(m.Results, DeviceRequestAllocationResult{}) + if err := m.Results[len(m.Results)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Config = append(m.Config, DeviceAllocationConfiguration{}) + if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceAttribute: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceAttribute: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 2: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field IntValue", wireType) + } + var v int64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int64(b&0x7F) << shift + if b < 0x80 { + break + } + } + m.IntValue = &v + case 3: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field BoolValue", wireType) + } + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + b := bool(v != 0) + m.BoolValue = &b + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field StringValue", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := string(dAtA[iNdEx:postIndex]) + m.StringValue = &s + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field VersionValue", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := string(dAtA[iNdEx:postIndex]) + m.VersionValue = &s + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceClaim) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceClaim: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceClaim: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Requests = append(m.Requests, DeviceRequest{}) + if err := m.Requests[len(m.Requests)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Constraints", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Constraints = append(m.Constraints, DeviceConstraint{}) + if err := m.Constraints[len(m.Constraints)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Config = append(m.Config, DeviceClaimConfiguration{}) + if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil } -func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { +func (m *DeviceClaimConfiguration) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -3839,15 +7161,15 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: AllocatedDeviceStatus: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceClaimConfiguration: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: AllocatedDeviceStatus: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceClaimConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Driver", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -3875,13 +7197,13 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Driver = string(dAtA[iNdEx:postIndex]) + m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Pool", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3891,29 +7213,80 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Pool = string(dAtA[iNdEx:postIndex]) + if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex - case 3: + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceClass) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceClass: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceClass: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Device", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -3923,27 +7296,28 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Device = string(dAtA[iNdEx:postIndex]) + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex - case 4: + case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Conditions", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -3970,14 +7344,63 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Conditions = append(m.Conditions, v1.Condition{}) - if err := m.Conditions[len(m.Conditions)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 5: + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceClassConfiguration) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceClassConfiguration: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceClassConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Data", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4004,13 +7427,63 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Data.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 6: + default: + iNdEx = preIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > l { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } + } + + if iNdEx > l { + return io.ErrUnexpectedEOF + } + return nil +} +func (m *DeviceClassList) Unmarshal(dAtA []byte) error { + l := len(dAtA) + iNdEx := 0 + for iNdEx < l { + preIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + wireType := int(wire & 0x7) + if wireType == 4 { + return fmt.Errorf("proto: DeviceClassList: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: DeviceClassList: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field NetworkData", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4037,10 +7510,41 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.NetworkData == nil { - m.NetworkData = &NetworkDeviceData{} + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err } - if err := m.NetworkData.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Items = append(m.Items, DeviceClass{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4065,7 +7569,7 @@ func (m *AllocatedDeviceStatus) Unmarshal(dAtA []byte) error { } return nil } -func (m *AllocationResult) Unmarshal(dAtA []byte) error { +func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4088,15 +7592,15 @@ func (m *AllocationResult) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: AllocationResult: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceClassSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: AllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceClassSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Devices", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4123,13 +7627,14 @@ func (m *AllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Devices.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Selectors = append(m.Selectors, DeviceSelector{}) + if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 3: + case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field NodeSelector", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4156,10 +7661,8 @@ func (m *AllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.NodeSelector == nil { - m.NodeSelector = &v11.NodeSelector{} - } - if err := m.NodeSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Config = append(m.Config, DeviceClassConfiguration{}) + if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4184,7 +7687,7 @@ func (m *AllocationResult) Unmarshal(dAtA []byte) error { } return nil } -func (m *BasicDevice) Unmarshal(dAtA []byte) error { +func (m *DeviceConfiguration) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4207,144 +7710,15 @@ func (m *BasicDevice) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: BasicDevice: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceConfiguration: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: BasicDevice: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Attributes", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if m.Attributes == nil { - m.Attributes = make(map[QualifiedName]DeviceAttribute) - } - var mapkey QualifiedName - mapvalue := &DeviceAttribute{} - for iNdEx < postIndex { - entryPreIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - if fieldNum == 1 { - var stringLenmapkey uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLenmapkey |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLenmapkey := int(stringLenmapkey) - if intStringLenmapkey < 0 { - return ErrInvalidLengthGenerated - } - postStringIndexmapkey := iNdEx + intStringLenmapkey - if postStringIndexmapkey < 0 { - return ErrInvalidLengthGenerated - } - if postStringIndexmapkey > l { - return io.ErrUnexpectedEOF - } - mapkey = QualifiedName(dAtA[iNdEx:postStringIndexmapkey]) - iNdEx = postStringIndexmapkey - } else if fieldNum == 2 { - var mapmsglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - mapmsglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if mapmsglen < 0 { - return ErrInvalidLengthGenerated - } - postmsgIndex := iNdEx + mapmsglen - if postmsgIndex < 0 { - return ErrInvalidLengthGenerated - } - if postmsgIndex > l { - return io.ErrUnexpectedEOF - } - mapvalue = &DeviceAttribute{} - if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { - return err - } - iNdEx = postmsgIndex - } else { - iNdEx = entryPreIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err - } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated - } - if (iNdEx + skippy) > postIndex { - return io.ErrUnexpectedEOF - } - iNdEx += skippy - } - } - m.Attributes[QualifiedName(mapkey)] = *mapvalue - iNdEx = postIndex - case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Capacity", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Opaque", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4371,105 +7745,12 @@ func (m *BasicDevice) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Capacity == nil { - m.Capacity = make(map[QualifiedName]resource.Quantity) + if m.Opaque == nil { + m.Opaque = &OpaqueDeviceConfiguration{} } - var mapkey QualifiedName - mapvalue := &resource.Quantity{} - for iNdEx < postIndex { - entryPreIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - if fieldNum == 1 { - var stringLenmapkey uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - stringLenmapkey |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - intStringLenmapkey := int(stringLenmapkey) - if intStringLenmapkey < 0 { - return ErrInvalidLengthGenerated - } - postStringIndexmapkey := iNdEx + intStringLenmapkey - if postStringIndexmapkey < 0 { - return ErrInvalidLengthGenerated - } - if postStringIndexmapkey > l { - return io.ErrUnexpectedEOF - } - mapkey = QualifiedName(dAtA[iNdEx:postStringIndexmapkey]) - iNdEx = postStringIndexmapkey - } else if fieldNum == 2 { - var mapmsglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - mapmsglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if mapmsglen < 0 { - return ErrInvalidLengthGenerated - } - postmsgIndex := iNdEx + mapmsglen - if postmsgIndex < 0 { - return ErrInvalidLengthGenerated - } - if postmsgIndex > l { - return io.ErrUnexpectedEOF - } - mapvalue = &resource.Quantity{} - if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { - return err - } - iNdEx = postmsgIndex - } else { - iNdEx = entryPreIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err - } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated - } - if (iNdEx + skippy) > postIndex { - return io.ErrUnexpectedEOF - } - iNdEx += skippy - } + if err := m.Opaque.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err } - m.Capacity[QualifiedName(mapkey)] = *mapvalue iNdEx = postIndex default: iNdEx = preIndex @@ -4492,7 +7773,7 @@ func (m *BasicDevice) Unmarshal(dAtA []byte) error { } return nil } -func (m *CELDeviceSelector) Unmarshal(dAtA []byte) error { +func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4515,15 +7796,15 @@ func (m *CELDeviceSelector) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: CELDeviceSelector: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceConstraint: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: CELDeviceSelector: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceConstraint: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Expression", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4551,7 +7832,40 @@ func (m *CELDeviceSelector) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Expression = string(dAtA[iNdEx:postIndex]) + m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field MatchAttribute", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + s := FullyQualifiedName(dAtA[iNdEx:postIndex]) + m.MatchAttribute = &s iNdEx = postIndex default: iNdEx = preIndex @@ -4574,7 +7888,7 @@ func (m *CELDeviceSelector) Unmarshal(dAtA []byte) error { } return nil } -func (m *Device) Unmarshal(dAtA []byte) error { +func (m *DeviceCounterConsumption) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4597,15 +7911,15 @@ func (m *Device) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: Device: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceCounterConsumption: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: Device: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceCounterConsumption: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field CounterSet", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4633,11 +7947,11 @@ func (m *Device) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Name = string(dAtA[iNdEx:postIndex]) + m.CounterSet = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Basic", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Counters", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4664,12 +7978,105 @@ func (m *Device) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Basic == nil { - m.Basic = &BasicDevice{} + if m.Counters == nil { + m.Counters = make(map[string]Counter) } - if err := m.Basic.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err + var mapkey string + mapvalue := &Counter{} + for iNdEx < postIndex { + entryPreIndex := iNdEx + var wire uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + wire |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + fieldNum := int32(wire >> 3) + if fieldNum == 1 { + var stringLenmapkey uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLenmapkey |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLenmapkey := int(stringLenmapkey) + if intStringLenmapkey < 0 { + return ErrInvalidLengthGenerated + } + postStringIndexmapkey := iNdEx + intStringLenmapkey + if postStringIndexmapkey < 0 { + return ErrInvalidLengthGenerated + } + if postStringIndexmapkey > l { + return io.ErrUnexpectedEOF + } + mapkey = string(dAtA[iNdEx:postStringIndexmapkey]) + iNdEx = postStringIndexmapkey + } else if fieldNum == 2 { + var mapmsglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + mapmsglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if mapmsglen < 0 { + return ErrInvalidLengthGenerated + } + postmsgIndex := iNdEx + mapmsglen + if postmsgIndex < 0 { + return ErrInvalidLengthGenerated + } + if postmsgIndex > l { + return io.ErrUnexpectedEOF + } + mapvalue = &Counter{} + if err := mapvalue.Unmarshal(dAtA[iNdEx:postmsgIndex]); err != nil { + return err + } + iNdEx = postmsgIndex + } else { + iNdEx = entryPreIndex + skippy, err := skipGenerated(dAtA[iNdEx:]) + if err != nil { + return err + } + if (skippy < 0) || (iNdEx+skippy) < 0 { + return ErrInvalidLengthGenerated + } + if (iNdEx + skippy) > postIndex { + return io.ErrUnexpectedEOF + } + iNdEx += skippy + } } + m.Counters[mapkey] = *mapvalue iNdEx = postIndex default: iNdEx = preIndex @@ -4692,7 +8099,7 @@ func (m *Device) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { +func (m *DeviceRequest) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4715,15 +8122,15 @@ func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceAllocationConfiguration: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceRequest: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceAllocationConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceRequest: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Source", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4751,11 +8158,11 @@ func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Source = AllocationConfigSource(dAtA[iNdEx:postIndex]) + m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DeviceClassName", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -4783,11 +8190,11 @@ func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) + m.DeviceClassName = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4814,63 +8221,86 @@ func (m *DeviceAllocationConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Selectors = append(m.Selectors, DeviceSelector{}) + if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - default: - iNdEx = preIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field AllocationMode", wireType) } - if (skippy < 0) || (iNdEx+skippy) < 0 { + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - if (iNdEx + skippy) > l { + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { return io.ErrUnexpectedEOF } - iNdEx += skippy - } - } - - if iNdEx > l { - return io.ErrUnexpectedEOF - } - return nil -} -func (m *DeviceAllocationResult) Unmarshal(dAtA []byte) error { - l := len(dAtA) - iNdEx := 0 - for iNdEx < l { - preIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated + m.AllocationMode = DeviceAllocationMode(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 5: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Count", wireType) } - if iNdEx >= l { - return io.ErrUnexpectedEOF + m.Count = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.Count |= int64(b&0x7F) << shift + if b < 0x80 { + break + } } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break + case 6: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field AdminAccess", wireType) } - } - fieldNum := int32(wire >> 3) - wireType := int(wire & 0x7) - if wireType == 4 { - return fmt.Errorf("proto: DeviceAllocationResult: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceAllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + b := bool(v != 0) + m.AdminAccess = &b + case 7: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Results", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field FirstAvailable", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4897,14 +8327,14 @@ func (m *DeviceAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Results = append(m.Results, DeviceRequestAllocationResult{}) - if err := m.Results[len(m.Results)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.FirstAvailable = append(m.FirstAvailable, DeviceSubRequest{}) + if err := m.FirstAvailable[len(m.FirstAvailable)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - case 2: + case 8: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Tolerations", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -4931,8 +8361,8 @@ func (m *DeviceAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Config = append(m.Config, DeviceAllocationConfiguration{}) - if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Tolerations = append(m.Tolerations, DeviceToleration{}) + if err := m.Tolerations[len(m.Tolerations)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -4957,7 +8387,7 @@ func (m *DeviceAllocationResult) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { +func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -4980,17 +8410,17 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceAttribute: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceRequestAllocationResult: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceAttribute: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceRequestAllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { - case 2: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field IntValue", wireType) + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Request", wireType) } - var v int64 + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5000,17 +8430,29 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - v |= int64(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - m.IntValue = &v - case 3: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field BoolValue", wireType) + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated } - var v int + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Request = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Driver", wireType) + } + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5020,16 +8462,27 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - v |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - b := bool(v != 0) - m.BoolValue = &b - case 4: + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Driver = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field StringValue", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Pool", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -5057,12 +8510,11 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - s := string(dAtA[iNdEx:postIndex]) - m.StringValue = &s + m.Pool = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 5: + case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field VersionValue", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Device", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -5090,8 +8542,62 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - s := string(dAtA[iNdEx:postIndex]) - m.VersionValue = &s + m.Device = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 5: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field AdminAccess", wireType) + } + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + b := bool(v != 0) + m.AdminAccess = &b + case 6: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Tolerations", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Tolerations = append(m.Tolerations, DeviceToleration{}) + if err := m.Tolerations[len(m.Tolerations)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -5114,7 +8620,7 @@ func (m *DeviceAttribute) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceClaim) Unmarshal(dAtA []byte) error { +func (m *DeviceSelector) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5137,49 +8643,15 @@ func (m *DeviceClaim) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceClaim: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceSelector: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClaim: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceSelector: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.Requests = append(m.Requests, DeviceRequest{}) - if err := m.Requests[len(m.Requests)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Constraints", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field CEL", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5206,42 +8678,10 @@ func (m *DeviceClaim) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Constraints = append(m.Constraints, DeviceConstraint{}) - if err := m.Constraints[len(m.Constraints)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 3: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF + if m.CEL == nil { + m.CEL = &CELDeviceSelector{} } - m.Config = append(m.Config, DeviceClaimConfiguration{}) - if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.CEL.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5266,7 +8706,7 @@ func (m *DeviceClaim) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceClaimConfiguration) Unmarshal(dAtA []byte) error { +func (m *DeviceSubRequest) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5289,15 +8729,47 @@ func (m *DeviceClaimConfiguration) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceClaimConfiguration: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceSubRequest: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClaimConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceSubRequest: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + } + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } + } + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Name = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field DeviceClassName", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -5325,11 +8797,11 @@ func (m *DeviceClaimConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) + m.DeviceClassName = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 2: + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5356,65 +8828,16 @@ func (m *DeviceClaimConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Selectors = append(m.Selectors, DeviceSelector{}) + if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex - default: - iNdEx = preIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err - } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated - } - if (iNdEx + skippy) > l { - return io.ErrUnexpectedEOF - } - iNdEx += skippy - } - } - - if iNdEx > l { - return io.ErrUnexpectedEOF - } - return nil -} -func (m *DeviceClass) Unmarshal(dAtA []byte) error { - l := len(dAtA) - iNdEx := 0 - for iNdEx < l { - preIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - wireType := int(wire & 0x7) - if wireType == 4 { - return fmt.Errorf("proto: DeviceClass: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClass: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: + case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field AllocationMode", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5424,28 +8847,46 @@ func (m *DeviceClass) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.AllocationMode = DeviceAllocationMode(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 2: + case 5: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Count", wireType) + } + m.Count = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.Count |= int64(b&0x7F) << shift + if b < 0x80 { + break + } + } + case 7: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Tolerations", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5472,7 +8913,8 @@ func (m *DeviceClass) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Tolerations = append(m.Tolerations, DeviceToleration{}) + if err := m.Tolerations[len(m.Tolerations)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5497,7 +8939,7 @@ func (m *DeviceClass) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceClassConfiguration) Unmarshal(dAtA []byte) error { +func (m *DeviceTaint) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5520,17 +8962,17 @@ func (m *DeviceClassConfiguration) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceClassConfiguration: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceTaint: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClassConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceTaint: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field DeviceConfiguration", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Key", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5540,80 +8982,61 @@ func (m *DeviceClassConfiguration) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.DeviceConfiguration.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Key = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex - default: - iNdEx = preIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Value", wireType) } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated + var stringLen uint64 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + stringLen |= uint64(b&0x7F) << shift + if b < 0x80 { + break + } } - if (iNdEx + skippy) > l { - return io.ErrUnexpectedEOF + intStringLen := int(stringLen) + if intStringLen < 0 { + return ErrInvalidLengthGenerated } - iNdEx += skippy - } - } - - if iNdEx > l { - return io.ErrUnexpectedEOF - } - return nil -} -func (m *DeviceClassList) Unmarshal(dAtA []byte) error { - l := len(dAtA) - iNdEx := 0 - for iNdEx < l { - preIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated + postIndex := iNdEx + intStringLen + if postIndex < 0 { + return ErrInvalidLengthGenerated } - if iNdEx >= l { + if postIndex > l { return io.ErrUnexpectedEOF } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - wireType := int(wire & 0x7) - if wireType == 4 { - return fmt.Errorf("proto: DeviceClassList: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClassList: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: + m.Value = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Effect", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5623,28 +9046,27 @@ func (m *DeviceClassList) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Effect = DeviceTaintEffect(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 2: + case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field TimeAdded", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5671,8 +9093,10 @@ func (m *DeviceClassList) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Items = append(m.Items, DeviceClass{}) - if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if m.TimeAdded == nil { + m.TimeAdded = &v1.Time{} + } + if err := m.TimeAdded.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5697,7 +9121,7 @@ func (m *DeviceClassList) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { +func (m *DeviceTaintRule) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5720,15 +9144,15 @@ func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceClassSpec: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceTaintRule: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceClassSpec: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceTaintRule: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ObjectMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5755,14 +9179,13 @@ func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Selectors = append(m.Selectors, DeviceSelector{}) - if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.ObjectMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Config", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Spec", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5789,8 +9212,7 @@ func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Config = append(m.Config, DeviceClassConfiguration{}) - if err := m.Config[len(m.Config)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + if err := m.Spec.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5815,7 +9237,7 @@ func (m *DeviceClassSpec) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceConfiguration) Unmarshal(dAtA []byte) error { +func (m *DeviceTaintRuleList) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5838,15 +9260,15 @@ func (m *DeviceConfiguration) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceConfiguration: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceTaintRuleList: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceConfiguration: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceTaintRuleList: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Opaque", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ListMeta", wireType) } var msglen int for shift := uint(0); ; shift += 7 { @@ -5873,10 +9295,41 @@ func (m *DeviceConfiguration) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - if m.Opaque == nil { - m.Opaque = &OpaqueDeviceConfiguration{} + if err := m.ListMeta.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Items", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF } - if err := m.Opaque.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + m.Items = append(m.Items, DeviceTaintRule{}) + if err := m.Items[len(m.Items)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err } iNdEx = postIndex @@ -5901,7 +9354,7 @@ func (m *DeviceConfiguration) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { +func (m *DeviceTaintRuleSpec) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -5924,17 +9377,17 @@ func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceConstraint: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceTaintRuleSpec: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceConstraint: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceTaintRuleSpec: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Requests", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DeviceSelector", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5944,29 +9397,33 @@ func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Requests = append(m.Requests, string(dAtA[iNdEx:postIndex])) + if m.DeviceSelector == nil { + m.DeviceSelector = &DeviceTaintSelector{} + } + if err := m.DeviceSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field MatchAttribute", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Taint", wireType) } - var stringLen uint64 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -5976,24 +9433,24 @@ func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - stringLen |= uint64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - intStringLen := int(stringLen) - if intStringLen < 0 { + if msglen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + intStringLen + postIndex := iNdEx + msglen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - s := FullyQualifiedName(dAtA[iNdEx:postIndex]) - m.MatchAttribute = &s + if err := m.Taint.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -6016,7 +9473,7 @@ func (m *DeviceConstraint) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceRequest) Unmarshal(dAtA []byte) error { +func (m *DeviceTaintSelector) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -6039,15 +9496,15 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceRequest: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceTaintSelector: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceRequest: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceTaintSelector: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Name", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field DeviceClassName", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6075,11 +9532,12 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Name = string(dAtA[iNdEx:postIndex]) + s := string(dAtA[iNdEx:postIndex]) + m.DeviceClassName = &s iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field DeviceClassName", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Driver", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6107,13 +9565,14 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.DeviceClassName = string(dAtA[iNdEx:postIndex]) + s := string(dAtA[iNdEx:postIndex]) + m.Driver = &s iNdEx = postIndex case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Pool", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -6123,29 +9582,28 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + stringLen |= uint64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { + intStringLen := int(stringLen) + if intStringLen < 0 { return ErrInvalidLengthGenerated } - postIndex := iNdEx + msglen + postIndex := iNdEx + intStringLen if postIndex < 0 { return ErrInvalidLengthGenerated } if postIndex > l { return io.ErrUnexpectedEOF } - m.Selectors = append(m.Selectors, DeviceSelector{}) - if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + s := string(dAtA[iNdEx:postIndex]) + m.Pool = &s iNdEx = postIndex case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field AllocationMode", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Device", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6173,13 +9631,14 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.AllocationMode = DeviceAllocationMode(dAtA[iNdEx:postIndex]) + s := string(dAtA[iNdEx:postIndex]) + m.Device = &s iNdEx = postIndex case 5: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field Count", wireType) + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Selectors", wireType) } - m.Count = 0 + var msglen int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -6189,32 +9648,26 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - m.Count |= int64(b&0x7F) << shift + msglen |= int(b&0x7F) << shift if b < 0x80 { break } } - case 6: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field AdminAccess", wireType) + if msglen < 0 { + return ErrInvalidLengthGenerated } - var v int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - v |= int(b&0x7F) << shift - if b < 0x80 { - break - } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated } - b := bool(v != 0) - m.AdminAccess = &b + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.Selectors = append(m.Selectors, DeviceSelector{}) + if err := m.Selectors[len(m.Selectors)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -6236,7 +9689,7 @@ func (m *DeviceRequest) Unmarshal(dAtA []byte) error { } return nil } -func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { +func (m *DeviceToleration) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -6259,15 +9712,15 @@ func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: DeviceRequestAllocationResult: wiretype end group for non-group") + return fmt.Errorf("proto: DeviceToleration: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceRequestAllocationResult: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: DeviceToleration: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Request", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Key", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6295,11 +9748,11 @@ func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Request = string(dAtA[iNdEx:postIndex]) + m.Key = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Driver", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Operator", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6327,11 +9780,11 @@ func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Driver = string(dAtA[iNdEx:postIndex]) + m.Operator = DeviceTolerationOperator(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Pool", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Value", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6359,11 +9812,11 @@ func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Pool = string(dAtA[iNdEx:postIndex]) + m.Value = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 4: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Device", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Effect", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -6391,84 +9844,13 @@ func (m *DeviceRequestAllocationResult) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Device = string(dAtA[iNdEx:postIndex]) + m.Effect = DeviceTaintEffect(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 5: if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field AdminAccess", wireType) - } - var v int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - v |= int(b&0x7F) << shift - if b < 0x80 { - break - } - } - b := bool(v != 0) - m.AdminAccess = &b - default: - iNdEx = preIndex - skippy, err := skipGenerated(dAtA[iNdEx:]) - if err != nil { - return err - } - if (skippy < 0) || (iNdEx+skippy) < 0 { - return ErrInvalidLengthGenerated - } - if (iNdEx + skippy) > l { - return io.ErrUnexpectedEOF - } - iNdEx += skippy - } - } - - if iNdEx > l { - return io.ErrUnexpectedEOF - } - return nil -} -func (m *DeviceSelector) Unmarshal(dAtA []byte) error { - l := len(dAtA) - iNdEx := 0 - for iNdEx < l { - preIndex := iNdEx - var wire uint64 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - wire |= uint64(b&0x7F) << shift - if b < 0x80 { - break - } - } - fieldNum := int32(wire >> 3) - wireType := int(wire & 0x7) - if wireType == 4 { - return fmt.Errorf("proto: DeviceSelector: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: DeviceSelector: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field CEL", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field TolerationSeconds", wireType) } - var msglen int + var v int64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -6478,28 +9860,12 @@ func (m *DeviceSelector) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + v |= int64(b&0x7F) << shift if b < 0x80 { break } } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - if m.CEL == nil { - m.CEL = &CELDeviceSelector{} - } - if err := m.CEL.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex + m.TolerationSeconds = &v default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -8381,6 +11747,61 @@ func (m *ResourceSliceSpec) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 7: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field PerDeviceNodeSelection", wireType) + } + var v int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + v |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + b := bool(v != 0) + m.PerDeviceNodeSelection = &b + case 8: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field SharedCounters", wireType) + } + var msglen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + msglen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if msglen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + msglen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { + return io.ErrUnexpectedEOF + } + m.SharedCounters = append(m.SharedCounters, CounterSet{}) + if err := m.SharedCounters[len(m.SharedCounters)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/vendor/k8s.io/api/resource/v1alpha3/generated.proto b/vendor/k8s.io/api/resource/v1alpha3/generated.proto index e802a01439..103cafc6ad 100644 --- a/vendor/k8s.io/api/resource/v1alpha3/generated.proto +++ b/vendor/k8s.io/api/resource/v1alpha3/generated.proto @@ -62,6 +62,8 @@ message AllocatedDeviceStatus { // If the device has been configured according to the class and claim // config references, the `Ready` condition should be True. // + // Must not contain more than 8 entries. + // // +optional // +listType=map // +listMapKey=type @@ -111,6 +113,64 @@ message BasicDevice { // // +optional map capacity = 2; + + // ConsumesCounters defines a list of references to sharedCounters + // and the set of counters that the device will + // consume from those counter sets. + // + // There can only be a single entry per counterSet. + // + // The total number of device counter consumption entries + // must be <= 32. In addition, the total number in the + // entire ResourceSlice must be <= 1024 (for example, + // 64 devices with 16 counters each). + // + // +optional + // +listType=atomic + // +featureGate=DRAPartitionableDevices + repeated DeviceCounterConsumption consumesCounters = 3; + + // NodeName identifies the node where the device is available. + // + // Must only be set if Spec.PerDeviceNodeSelection is set to true. + // At most one of NodeName, NodeSelector and AllNodes can be set. + // + // +optional + // +oneOf=DeviceNodeSelection + // +featureGate=DRAPartitionableDevices + optional string nodeName = 4; + + // NodeSelector defines the nodes where the device is available. + // + // Must only be set if Spec.PerDeviceNodeSelection is set to true. + // At most one of NodeName, NodeSelector and AllNodes can be set. + // + // +optional + // +oneOf=DeviceNodeSelection + // +featureGate=DRAPartitionableDevices + optional .k8s.io.api.core.v1.NodeSelector nodeSelector = 5; + + // AllNodes indicates that all nodes have access to the device. + // + // Must only be set if Spec.PerDeviceNodeSelection is set to true. + // At most one of NodeName, NodeSelector and AllNodes can be set. + // + // +optional + // +oneOf=DeviceNodeSelection + // +featureGate=DRAPartitionableDevices + optional bool allNodes = 6; + + // If specified, these are the driver-defined taints. + // + // The maximum number of taints is 4. + // + // This is an alpha field and requires enabling the DRADeviceTaints + // feature gate. + // + // +optional + // +listType=atomic + // +featureGate=DRADeviceTaints + repeated DeviceTaint taints = 7; } // CELDeviceSelector contains a CEL expression for selecting a device. @@ -170,6 +230,42 @@ message CELDeviceSelector { optional string expression = 1; } +// Counter describes a quantity associated with a device. +message Counter { + // Value defines how much of a certain device counter is available. + // + // +required + optional .k8s.io.apimachinery.pkg.api.resource.Quantity value = 1; +} + +// CounterSet defines a named set of counters +// that are available to be used by devices defined in the +// ResourceSlice. +// +// The counters are not allocatable by themselves, but +// can be referenced by devices. When a device is allocated, +// the portion of counters it uses will no longer be available for use +// by other devices. +message CounterSet { + // CounterSet is the name of the set from which the + // counters defined will be consumed. + // + // +required + optional string name = 1; + + // Counters defines the counters that will be consumed by the device. + // The name of each counter must be unique in that set and must be a DNS label. + // + // To ensure this uniqueness, capacities defined by the vendor + // must be listed without the driver name as domain prefix in + // their name. All others must be listed with their domain prefix. + // + // The maximum number of counters is 32. + // + // +required + map counters = 2; +} + // Device represents one individual hardware instance that can be selected based // on its attributes. Besides the name, exactly one field must be set. message Device { @@ -198,6 +294,10 @@ message DeviceAllocationConfiguration { // Requests lists the names of requests where the configuration applies. // If empty, its applies to all requests. // + // References to subrequests must include the name of the main request + // and may include the subrequest using the format
[/]. If just + // the main request is given, the configuration applies to all subrequests. + // // +optional // +listType=atomic repeated string requests = 2; @@ -284,6 +384,10 @@ message DeviceClaimConfiguration { // Requests lists the names of requests where the configuration applies. // If empty, it applies to all requests. // + // References to subrequests must include the name of the main request + // and may include the subrequest using the format
[/]. If just + // the main request is given, the configuration applies to all subrequests. + // // +optional // +listType=atomic repeated string requests = 1; @@ -368,6 +472,10 @@ message DeviceConstraint { // constraint. If this is not specified, this constraint applies to all // requests in this claim. // + // References to subrequests must include the name of the main request + // and may include the subrequest using the format
[/]. If just + // the main request is given, the constraint applies to all subrequests. + // // +optional // +listType=atomic repeated string requests = 1; @@ -390,14 +498,30 @@ message DeviceConstraint { optional string matchAttribute = 2; } +// DeviceCounterConsumption defines a set of counters that +// a device will consume from a CounterSet. +message DeviceCounterConsumption { + // CounterSet defines the set from which the + // counters defined will be consumed. + // + // +required + optional string counterSet = 1; + + // Counters defines the Counter that will be consumed by + // the device. + // + // The maximum number counters in a device is 32. + // In addition, the maximum number of all counters + // in all devices is 1024 (for example, 64 devices with + // 16 counters each). + // + // +required + map counters = 2; +} + // DeviceRequest is a request for devices required for a claim. // This is typically a request for a single resource like a device, but can // also ask for several identical devices. -// -// A DeviceClassName is currently required. Clients must check that it is -// indeed set. It's absence indicates that something changed in a way that -// is not supported by the client yet, in which case it must refuse to -// handle the request. message DeviceRequest { // Name can be used to reference this request in a pod.spec.containers[].resources.claims // entry and in a constraint of the claim. @@ -411,7 +535,10 @@ message DeviceRequest { // additional configuration and selectors to be inherited by this // request. // - // A class is required. Which classes are available depends on the cluster. + // A class is required if no subrequests are specified in the + // firstAvailable list and no class can be set if subrequests + // are specified in the firstAvailable list. + // Which classes are available depends on the cluster. // // Administrators may use this to restrict which devices may get // requested by only installing classes with selectors for permitted @@ -419,7 +546,8 @@ message DeviceRequest { // then administrators can create an empty DeviceClass for users // to reference. // - // +required + // +optional + // +oneOf=deviceRequestType optional string deviceClassName = 2; // Selectors define criteria which must be satisfied by a specific @@ -427,6 +555,9 @@ message DeviceRequest { // request. All selectors must be satisfied for a device to be // considered. // + // This field can only be set when deviceClassName is set and no subrequests + // are specified in the firstAvailable list. + // // +optional // +listType=atomic repeated DeviceSelector selectors = 3; @@ -439,13 +570,17 @@ message DeviceRequest { // count field. // // - All: This request is for all of the matching devices in a pool. + // At least one device must exist on the node for the allocation to succeed. // Allocation will fail if some devices are already allocated, // unless adminAccess is requested. // - // If AlloctionMode is not specified, the default mode is ExactCount. If + // If AllocationMode is not specified, the default mode is ExactCount. If // the mode is ExactCount and count is not specified, the default count is // one. Any other requests must specify this field. // + // This field can only be set when deviceClassName is set and no subrequests + // are specified in the firstAvailable list. + // // More modes may get added in the future. Clients must refuse to handle // requests with unknown modes. // @@ -455,6 +590,9 @@ message DeviceRequest { // Count is used only when the count mode is "ExactCount". Must be greater than zero. // If AllocationMode is ExactCount and this field is not specified, the default is one. // + // This field can only be set when deviceClassName is set and no subrequests + // are specified in the firstAvailable list. + // // +optional // +oneOf=AllocationMode optional int64 count = 5; @@ -465,6 +603,9 @@ message DeviceRequest { // all ordinary claims to the device with respect to access modes and // any resource allocations. // + // This field can only be set when deviceClassName is set and no subrequests + // are specified in the firstAvailable list. + // // This is an alpha field and requires enabling the DRAAdminAccess // feature gate. Admin access is disabled if this field is unset or // set to false, otherwise it is enabled. @@ -472,13 +613,65 @@ message DeviceRequest { // +optional // +featureGate=DRAAdminAccess optional bool adminAccess = 6; + + // FirstAvailable contains subrequests, of which exactly one will be + // satisfied by the scheduler to satisfy this request. It tries to + // satisfy them in the order in which they are listed here. So if + // there are two entries in the list, the scheduler will only check + // the second one if it determines that the first one cannot be used. + // + // This field may only be set in the entries of DeviceClaim.Requests. + // + // DRA does not yet implement scoring, so the scheduler will + // select the first set of devices that satisfies all the + // requests in the claim. And if the requirements can + // be satisfied on more than one node, other scheduling features + // will determine which node is chosen. This means that the set of + // devices allocated to a claim might not be the optimal set + // available to the cluster. Scoring will be implemented later. + // + // +optional + // +oneOf=deviceRequestType + // +listType=atomic + // +featureGate=DRAPrioritizedList + repeated DeviceSubRequest firstAvailable = 7; + + // If specified, the request's tolerations. + // + // Tolerations for NoSchedule are required to allocate a + // device which has a taint with that effect. The same applies + // to NoExecute. + // + // In addition, should any of the allocated devices get tainted + // with NoExecute after allocation and that effect is not tolerated, + // then all pods consuming the ResourceClaim get deleted to evict + // them. The scheduler will not let new pods reserve the claim while + // it has these tainted devices. Once all pods are evicted, the + // claim will get deallocated. + // + // The maximum number of tolerations is 16. + // + // This field can only be set when deviceClassName is set and no subrequests + // are specified in the firstAvailable list. + // + // This is an alpha field and requires enabling the DRADeviceTaints + // feature gate. + // + // +optional + // +listType=atomic + // +featureGate=DRADeviceTaints + repeated DeviceToleration tolerations = 8; } // DeviceRequestAllocationResult contains the allocation result for one request. message DeviceRequestAllocationResult { // Request is the name of the request in the claim which caused this - // device to be allocated. Multiple devices may have been allocated - // per request. + // device to be allocated. If it references a subrequest in the + // firstAvailable list on a DeviceRequest, this field must + // include both the name of the main request and the subrequest + // using the format
/. + // + // Multiple devices may have been allocated per request. // // +required optional string request = 1; @@ -519,6 +712,19 @@ message DeviceRequestAllocationResult { // +optional // +featureGate=DRAAdminAccess optional bool adminAccess = 5; + + // A copy of all tolerations specified in the request at the time + // when the device got allocated. + // + // The maximum number of tolerations is 16. + // + // This is an alpha field and requires enabling the DRADeviceTaints + // feature gate. + // + // +optional + // +listType=atomic + // +featureGate=DRADeviceTaints + repeated DeviceToleration tolerations = 6; } // DeviceSelector must have exactly one field set. @@ -530,6 +736,262 @@ message DeviceSelector { optional CELDeviceSelector cel = 1; } +// DeviceSubRequest describes a request for device provided in the +// claim.spec.devices.requests[].firstAvailable array. Each +// is typically a request for a single resource like a device, but can +// also ask for several identical devices. +// +// DeviceSubRequest is similar to Request, but doesn't expose the AdminAccess +// or FirstAvailable fields, as those can only be set on the top-level request. +// AdminAccess is not supported for requests with a prioritized list, and +// recursive FirstAvailable fields are not supported. +message DeviceSubRequest { + // Name can be used to reference this subrequest in the list of constraints + // or the list of configurations for the claim. References must use the + // format
/. + // + // Must be a DNS label. + // + // +required + optional string name = 1; + + // DeviceClassName references a specific DeviceClass, which can define + // additional configuration and selectors to be inherited by this + // subrequest. + // + // A class is required. Which classes are available depends on the cluster. + // + // Administrators may use this to restrict which devices may get + // requested by only installing classes with selectors for permitted + // devices. If users are free to request anything without restrictions, + // then administrators can create an empty DeviceClass for users + // to reference. + // + // +required + optional string deviceClassName = 2; + + // Selectors define criteria which must be satisfied by a specific + // device in order for that device to be considered for this + // request. All selectors must be satisfied for a device to be + // considered. + // + // +optional + // +listType=atomic + repeated DeviceSelector selectors = 3; + + // AllocationMode and its related fields define how devices are allocated + // to satisfy this request. Supported values are: + // + // - ExactCount: This request is for a specific number of devices. + // This is the default. The exact number is provided in the + // count field. + // + // - All: This request is for all of the matching devices in a pool. + // Allocation will fail if some devices are already allocated, + // unless adminAccess is requested. + // + // If AllocationMode is not specified, the default mode is ExactCount. If + // the mode is ExactCount and count is not specified, the default count is + // one. Any other requests must specify this field. + // + // More modes may get added in the future. Clients must refuse to handle + // requests with unknown modes. + // + // +optional + optional string allocationMode = 4; + + // Count is used only when the count mode is "ExactCount". Must be greater than zero. + // If AllocationMode is ExactCount and this field is not specified, the default is one. + // + // +optional + // +oneOf=AllocationMode + optional int64 count = 5; + + // If specified, the request's tolerations. + // + // Tolerations for NoSchedule are required to allocate a + // device which has a taint with that effect. The same applies + // to NoExecute. + // + // In addition, should any of the allocated devices get tainted + // with NoExecute after allocation and that effect is not tolerated, + // then all pods consuming the ResourceClaim get deleted to evict + // them. The scheduler will not let new pods reserve the claim while + // it has these tainted devices. Once all pods are evicted, the + // claim will get deallocated. + // + // The maximum number of tolerations is 16. + // + // This is an alpha field and requires enabling the DRADeviceTaints + // feature gate. + // + // +optional + // +listType=atomic + // +featureGate=DRADeviceTaints + repeated DeviceToleration tolerations = 7; +} + +// The device this taint is attached to has the "effect" on +// any claim which does not tolerate the taint and, through the claim, +// to pods using the claim. +message DeviceTaint { + // The taint key to be applied to a device. + // Must be a label name. + // + // +required + optional string key = 1; + + // The taint value corresponding to the taint key. + // Must be a label value. + // + // +optional + optional string value = 2; + + // The effect of the taint on claims that do not tolerate the taint + // and through such claims on the pods using them. + // Valid effects are NoSchedule and NoExecute. PreferNoSchedule as used for + // nodes is not valid here. + // + // +required + optional string effect = 3; + + // TimeAdded represents the time at which the taint was added. + // Added automatically during create or update if not set. + // + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time timeAdded = 4; +} + +// DeviceTaintRule adds one taint to all devices which match the selector. +// This has the same effect as if the taint was specified directly +// in the ResourceSlice by the DRA driver. +message DeviceTaintRule { + // Standard object metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + + // Spec specifies the selector and one taint. + // + // Changing the spec automatically increments the metadata.generation number. + optional DeviceTaintRuleSpec spec = 2; +} + +// DeviceTaintRuleList is a collection of DeviceTaintRules. +message DeviceTaintRuleList { + // Standard list metadata + // +optional + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + + // Items is the list of DeviceTaintRules. + repeated DeviceTaintRule items = 2; +} + +// DeviceTaintRuleSpec specifies the selector and one taint. +message DeviceTaintRuleSpec { + // DeviceSelector defines which device(s) the taint is applied to. + // All selector criteria must be satified for a device to + // match. The empty selector matches all devices. Without + // a selector, no devices are matches. + // + // +optional + optional DeviceTaintSelector deviceSelector = 1; + + // The taint that gets applied to matching devices. + // + // +required + optional DeviceTaint taint = 2; +} + +// DeviceTaintSelector defines which device(s) a DeviceTaintRule applies to. +// The empty selector matches all devices. Without a selector, no devices +// are matched. +message DeviceTaintSelector { + // If DeviceClassName is set, the selectors defined there must be + // satisfied by a device to be selected. This field corresponds + // to class.metadata.name. + // + // +optional + optional string deviceClassName = 1; + + // If driver is set, only devices from that driver are selected. + // This fields corresponds to slice.spec.driver. + // + // +optional + optional string driver = 2; + + // If pool is set, only devices in that pool are selected. + // + // Also setting the driver name may be useful to avoid + // ambiguity when different drivers use the same pool name, + // but this is not required because selecting pools from + // different drivers may also be useful, for example when + // drivers with node-local devices use the node name as + // their pool name. + // + // +optional + optional string pool = 3; + + // If device is set, only devices with that name are selected. + // This field corresponds to slice.spec.devices[].name. + // + // Setting also driver and pool may be required to avoid ambiguity, + // but is not required. + // + // +optional + optional string device = 4; + + // Selectors contains the same selection criteria as a ResourceClaim. + // Currently, CEL expressions are supported. All of these selectors + // must be satisfied. + // + // +optional + // +listType=atomic + repeated DeviceSelector selectors = 5; +} + +// The ResourceClaim this DeviceToleration is attached to tolerates any taint that matches +// the triple using the matching operator . +message DeviceToleration { + // Key is the taint key that the toleration applies to. Empty means match all taint keys. + // If the key is empty, operator must be Exists; this combination means to match all values and all keys. + // Must be a label name. + // + // +optional + optional string key = 1; + + // Operator represents a key's relationship to the value. + // Valid operators are Exists and Equal. Defaults to Equal. + // Exists is equivalent to wildcard for value, so that a ResourceClaim can + // tolerate all taints of a particular category. + // + // +optional + // +default="Equal" + optional string operator = 2; + + // Value is the taint value the toleration matches to. + // If the operator is Exists, the value must be empty, otherwise just a regular string. + // Must be a label value. + // + // +optional + optional string value = 3; + + // Effect indicates the taint effect to match. Empty means match all taint effects. + // When specified, allowed values are NoSchedule and NoExecute. + // + // +optional + optional string effect = 4; + + // TolerationSeconds represents the period of time the toleration (which must be + // of effect NoExecute, otherwise this field is ignored) tolerates the taint. By default, + // it is not set, which means tolerate the taint forever (do not evict). Zero and + // negative values will be treated as 0 (evict immediately) by the system. + // If larger than zero, the time when the pod needs to be evicted is calculated as