diff --git a/api/go.mod b/api/go.mod index 1fc5454a5..13f1c6729 100644 --- a/api/go.mod +++ b/api/go.mod @@ -3,28 +3,30 @@ module kubevirt.io/ssp-operator/api go 1.22.4 require ( - github.com/openshift/api v0.0.0-20240702171116-4b89b3a92a17 // release-4.16 - k8s.io/apimachinery v0.30.3 - kubevirt.io/containerized-data-importer-api v1.59.0 + github.com/openshift/api v0.0.0-20241114175301-1d987ad446cf // release-4.16 + k8s.io/apimachinery v0.31.2 + kubevirt.io/containerized-data-importer-api v1.60.3 kubevirt.io/controller-lifecycle-operator-sdk/api v0.2.4 - sigs.k8s.io/controller-runtime v0.18.4 + sigs.k8s.io/controller-runtime v0.19.1 ) require ( - github.com/go-logr/logr v1.4.1 // indirect + github.com/fxamacker/cbor/v2 v2.7.0 // indirect + github.com/go-logr/logr v1.4.2 // indirect github.com/gogo/protobuf v1.3.2 // indirect github.com/google/gofuzz v1.2.0 // indirect github.com/json-iterator/go v1.1.12 // indirect github.com/modern-go/concurrent v0.0.0-20180306012644-bacd9c7ef1dd // indirect github.com/modern-go/reflect2 v1.0.2 // indirect github.com/openshift/custom-resource-status v1.1.2 // indirect - golang.org/x/net v0.25.0 // indirect + github.com/x448/float16 v0.8.4 // indirect + golang.org/x/net v0.26.0 // indirect golang.org/x/text v0.16.0 // indirect gopkg.in/inf.v0 v0.9.1 // indirect gopkg.in/yaml.v2 v2.4.0 // indirect - k8s.io/api v0.30.1 // indirect - k8s.io/klog/v2 v2.120.1 // indirect - k8s.io/utils v0.0.0-20240310230437-4693a0247e57 // indirect + k8s.io/api v0.31.1 // indirect + k8s.io/klog/v2 v2.130.1 // indirect + k8s.io/utils v0.0.0-20240711033017-18e509b52bc8 // indirect sigs.k8s.io/json v0.0.0-20221116044647-bc3834ca7abd // indirect sigs.k8s.io/structured-merge-diff/v4 v4.4.1 // indirect ) diff --git a/api/go.sum b/api/go.sum index 98885fcc9..66bce2a59 100644 --- a/api/go.sum +++ b/api/go.sum @@ -23,6 +23,8 @@ github.com/envoyproxy/protoc-gen-validate v0.1.0/go.mod h1:iSmxcyjqTsJpI2R4NaDN7 github.com/evanphx/json-patch v4.12.0+incompatible/go.mod h1:50XU6AFN0ol/bzJsmQLiYLvXMP4fmwYFNcr97nuDLSk= github.com/fsnotify/fsnotify v1.4.7/go.mod h1:jwhsz4b93w/PPRr/qN1Yymfu8t87LnFCMoQvtojpjFo= github.com/fsnotify/fsnotify v1.4.9/go.mod h1:znqG4EE+3YCdAaPaxE2ZRY/06pZUdp0tY4IgpuI1SZQ= +github.com/fxamacker/cbor/v2 v2.7.0 h1:iM5WgngdRBanHcxugY4JySA0nk1wZorNOpTgCMedv5E= +github.com/fxamacker/cbor/v2 v2.7.0/go.mod h1:pxXPTn3joSm21Gbwsv0w9OSA2y1HFR9qXEeXQVeNoDQ= github.com/getkin/kin-openapi v0.76.0/go.mod h1:660oXbgy5JFMKreazJaQTw7o+X00qeSyhcnluiMv+Xg= github.com/ghodss/yaml v1.0.0/go.mod h1:4dBDuWmgqj2HViK6kFavaiC9ZROes6MMH2rRYeMEF04= github.com/go-logr/logr v0.1.0/go.mod h1:ixOQHD9gLJUVQQ2ZOR7zLEifBX6tGkNJF4QyIY7sIas= @@ -31,6 +33,8 @@ github.com/go-logr/logr v1.2.0/go.mod h1:jdQByPbusPIv2/zmleS9BjJVeZ6kBagPoEUsqbV github.com/go-logr/logr v1.2.2/go.mod h1:jdQByPbusPIv2/zmleS9BjJVeZ6kBagPoEUsqbVz/1A= github.com/go-logr/logr v1.4.1 h1:pKouT5E8xu9zeFC39JXRDukb6JFQPXM5p5I91188VAQ= github.com/go-logr/logr v1.4.1/go.mod h1:9T104GzyrTigFIr8wt5mBrctHMim0Nb2HLGrmQ40KvY= +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-openapi/jsonpointer v0.19.3/go.mod h1:Pl9vOtqEWErmShwVjC8pYs9cog34VGT37dQOVbmoatg= github.com/go-openapi/jsonpointer v0.19.5/go.mod h1:Pl9vOtqEWErmShwVjC8pYs9cog34VGT37dQOVbmoatg= github.com/go-openapi/jsonreference v0.19.3/go.mod h1:rjx6GuL8TTa9VaixXglHmQmIL98+wF9xc8zWvFonSJ8= @@ -128,6 +132,8 @@ github.com/onsi/gomega v1.32.0 h1:JRYU78fJ1LPxlckP6Txi/EYqJvjtMrDC04/MM5XRHPk= github.com/onsi/gomega v1.32.0/go.mod h1:a4x4gW6Pz2yK1MAmvluYme5lvYTn61afQ2ETw/8n4Lg= github.com/openshift/api v0.0.0-20240702171116-4b89b3a92a17 h1:Hl43oJR6bKPkW8xQty+N+/Ot8ioEyLwNU4CNvxik7iE= github.com/openshift/api v0.0.0-20240702171116-4b89b3a92a17/go.mod h1:CxgbWAlvu2iQB0UmKTtRu1YfepRg1/vJ64n2DlIEVz4= +github.com/openshift/api v0.0.0-20241114175301-1d987ad446cf h1:tFgVKwcH24iKFSF2xERS/payZL1BB/UwEJWeb/OO0xo= +github.com/openshift/api v0.0.0-20241114175301-1d987ad446cf/go.mod h1:Shkl4HanLwDiiBzakv+con/aMGnVE2MAGvoKp5oyYUo= github.com/openshift/custom-resource-status v1.1.2 h1:C3DL44LEbvlbItfd8mT5jWrqPfHnSOQoQf/sypqA6A4= github.com/openshift/custom-resource-status v1.1.2/go.mod h1:DB/Mf2oTeiAmVVX1gN+NEqweonAPY0TKUwADizj8+ZA= github.com/pkg/errors v0.9.1/go.mod h1:bwawxfHBFNV+L2hUp1rHADufV3IMtnDRdf1r5NINEl0= @@ -147,6 +153,8 @@ github.com/stretchr/testify v1.6.1/go.mod h1:6Fq8oRcR53rry900zMqJjRRixrwX3KX962/ github.com/stretchr/testify v1.7.0/go.mod h1:6Fq8oRcR53rry900zMqJjRRixrwX3KX962/h/Wwjteg= github.com/stretchr/testify v1.8.4 h1:CcVxjf3Q8PM0mHUKJCdn+eZZtm5yQwehR5yeSVQQcUk= github.com/stretchr/testify v1.8.4/go.mod h1:sz/lmYIOXD/1dqDmKjjqLyZ2RngseejIcXlSw2iwfAo= +github.com/x448/float16 v0.8.4 h1:qLwI1I70+NjRFUR3zs1JPUCgaCXSh3SW62uAKT1mSBM= +github.com/x448/float16 v0.8.4/go.mod h1:14CWIYCyZA/cWjXOioeEpHeN/83MdbZDRQHoFcYsOfg= github.com/yuin/goldmark v1.1.27/go.mod h1:3hX8gzYuyVAZsxl0MRgGTJEmQBFcNTphYh9decYSb74= github.com/yuin/goldmark v1.2.1/go.mod h1:3hX8gzYuyVAZsxl0MRgGTJEmQBFcNTphYh9decYSb74= github.com/yuin/goldmark v1.3.5/go.mod h1:mwnBkeHKe2W/ZEtQ+71ViKU8L12m81fl3OWwC1Zlc8k= @@ -183,6 +191,8 @@ golang.org/x/net v0.0.0-20211209124913-491a49abca63/go.mod h1:9nx3DQGgdP8bBQD5qx golang.org/x/net v0.0.0-20220127200216-cd36cc0744dd/go.mod h1:CfG3xpIq0wQ8r1q4Su4UZFWDARRcnwPjda9FqA0JpMk= golang.org/x/net v0.25.0 h1:d/OCCoBEUq33pjydKrGQhw7IlUPI2Oylr+8qLx49kac= golang.org/x/net v0.25.0/go.mod h1:JkAGAh7GEvH74S6FOH42FLoXpXbE/aqXSrIQjXgsiwM= +golang.org/x/net v0.26.0 h1:soB7SVo0PWrY4vPW/+ay0jKDNScG2X9wFeYlXIvJsOQ= +golang.org/x/net v0.26.0/go.mod h1:5YKkiSynbBIh3p6iOc/vibscux0x38BZDkn8sCUPxHE= golang.org/x/oauth2 v0.0.0-20180821212333-d2e6202438be/go.mod h1:N/0e6XlmueqKjAGxoOufVs8QHGRruUQn6yWY3a++T0U= 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= @@ -292,9 +302,13 @@ honnef.co/go/tools v0.0.0-20190523083050-ea95bdfd59fc/go.mod h1:rf3lG4BRIbNafJWh k8s.io/api v0.23.3/go.mod h1:w258XdGyvCmnBj/vGzQMj6kzdufJZVUwEM1U2fRJwSQ= k8s.io/api v0.30.1 h1:kCm/6mADMdbAxmIh0LBjS54nQBE+U4KmbCfIkF5CpJY= k8s.io/api v0.30.1/go.mod h1:ddbN2C0+0DIiPntan/bye3SW3PdwLa11/0yqwvuRrJM= +k8s.io/api v0.31.1 h1:Xe1hX/fPW3PXYYv8BlozYqw63ytA92snr96zMW9gWTU= +k8s.io/api v0.31.1/go.mod h1:sbN1g6eY6XVLeqNsZGLnI5FwVseTrZX7Fv3O26rhAaI= k8s.io/apimachinery v0.23.3/go.mod h1:BEuFMMBaIbcOqVIJqNZJXGFTP4W6AycEpb5+m/97hrM= k8s.io/apimachinery v0.30.3 h1:q1laaWCmrszyQuSQCfNB8cFgCuDAoPszKY4ucAjDwHc= k8s.io/apimachinery v0.30.3/go.mod h1:iexa2somDaxdnj7bha06bhb43Zpa6eWH8N8dbqVjTUc= +k8s.io/apimachinery v0.31.2 h1:i4vUt2hPK56W6mlT7Ry+AO8eEsyxMD1U44NR22CLTYw= +k8s.io/apimachinery v0.31.2/go.mod h1:rsPdaZJfTfLsNJSQzNHQvYoTmxhoOEofxtOsF3rtsMo= k8s.io/code-generator v0.23.3/go.mod h1:S0Q1JVA+kSzTI1oUvbKAxZY/DYbA/ZUb4Uknog12ETk= k8s.io/gengo v0.0.0-20210813121822-485abfe95c7c/go.mod h1:FiNAH4ZV3gBg2Kwh89tzAEV2be7d5xI0vBa/VySYy3E= k8s.io/gengo v0.0.0-20211129171323-c02415ce4185/go.mod h1:FiNAH4ZV3gBg2Kwh89tzAEV2be7d5xI0vBa/VySYy3E= @@ -304,18 +318,26 @@ k8s.io/klog/v2 v2.30.0/go.mod h1:y1WjHnz7Dj687irZUWR/WLkLc5N1YHtjLdmgWjndZn0= k8s.io/klog/v2 v2.40.1/go.mod h1:y1WjHnz7Dj687irZUWR/WLkLc5N1YHtjLdmgWjndZn0= k8s.io/klog/v2 v2.120.1 h1:QXU6cPEOIslTGvZaXvFWiP9VKyeet3sawzTOvdXb4Vw= k8s.io/klog/v2 v2.120.1/go.mod h1:3Jpz1GvMt720eyJH1ckRHK1EDfpxISzJ7I9OYgaDtPE= +k8s.io/klog/v2 v2.130.1 h1:n9Xl7H1Xvksem4KFG4PYbdQCQxqc/tTUyrgXaOhHSzk= +k8s.io/klog/v2 v2.130.1/go.mod h1:3Jpz1GvMt720eyJH1ckRHK1EDfpxISzJ7I9OYgaDtPE= k8s.io/kube-openapi v0.0.0-20211115234752-e816edb12b65/go.mod h1:sX9MT8g7NVZM5lVL/j8QyCCJe8YSMW30QvGZWaCIDIk= k8s.io/kube-openapi v0.0.0-20220124234850-424119656bbf/go.mod h1:sX9MT8g7NVZM5lVL/j8QyCCJe8YSMW30QvGZWaCIDIk= k8s.io/utils v0.0.0-20210802155522-efc7438f0176/go.mod h1:jPW/WVKK9YHAvNhRxK0md/EJ228hCsBRufyofKtW8HA= k8s.io/utils v0.0.0-20211116205334-6203023598ed/go.mod h1:jPW/WVKK9YHAvNhRxK0md/EJ228hCsBRufyofKtW8HA= k8s.io/utils v0.0.0-20240310230437-4693a0247e57 h1:gbqbevonBh57eILzModw6mrkbwM0gQBEuevE/AaBsHY= k8s.io/utils v0.0.0-20240310230437-4693a0247e57/go.mod h1:OLgZIPagt7ERELqWJFomSt595RzquPNLL48iOWgYOg0= +k8s.io/utils v0.0.0-20240711033017-18e509b52bc8 h1:pUdcCO1Lk/tbT5ztQWOBi5HBgbBP1J8+AsQnQCKsi8A= +k8s.io/utils v0.0.0-20240711033017-18e509b52bc8/go.mod h1:OLgZIPagt7ERELqWJFomSt595RzquPNLL48iOWgYOg0= kubevirt.io/containerized-data-importer-api v1.59.0 h1:GdDt9BlR0qHejpMaPfASbsG8JWDmBf1s7xZBj5W9qn0= kubevirt.io/containerized-data-importer-api v1.59.0/go.mod h1:4yOGtCE7HvgKp7wftZZ3TBvDJ0x9d6N6KaRjRYcUFpE= +kubevirt.io/containerized-data-importer-api v1.60.3 h1:kQEXi7scpzUa0RPf3/3MKk1Kmem0ZlqqiuK3kDF5L2I= +kubevirt.io/containerized-data-importer-api v1.60.3/go.mod h1:8mwrkZIdy8j/LmCyKt2wFXbiMavLUIqDaegaIF67CZs= kubevirt.io/controller-lifecycle-operator-sdk/api v0.2.4 h1:fZYvD3/Vnitfkx6IJxjLAk8ugnZQ7CXVYcRfkSKmuZY= kubevirt.io/controller-lifecycle-operator-sdk/api v0.2.4/go.mod h1:018lASpFYBsYN6XwmA2TIrPCx6e0gviTd/ZNtSitKgc= sigs.k8s.io/controller-runtime v0.18.4 h1:87+guW1zhvuPLh1PHybKdYFLU0YJp4FhJRmiHvm5BZw= sigs.k8s.io/controller-runtime v0.18.4/go.mod h1:TVoGrfdpbA9VRFaRnKgk9P5/atA0pMwq+f+msb9M8Sg= +sigs.k8s.io/controller-runtime v0.19.1 h1:Son+Q40+Be3QWb+niBXAg2vFiYWolDjjRfO8hn/cxOk= +sigs.k8s.io/controller-runtime v0.19.1/go.mod h1:iRmWllt8IlaLjvTTDLhRBXIEtkCK6hwVBJJsYS9Ajf4= sigs.k8s.io/json v0.0.0-20211020170558-c049b76a60c6/go.mod h1:p4QtZmO4uMYipTQNzagwnNoseA6OxSUutVw05NhYDRs= sigs.k8s.io/json v0.0.0-20221116044647-bc3834ca7abd h1:EDPBXCAspyGV4jQlpZSudPeMmr1bNJefnuqLsRAsHZo= sigs.k8s.io/json v0.0.0-20221116044647-bc3834ca7abd/go.mod h1:B8JuhiUyNFVKdsE8h686QcCxMaH6HrOAZj4vswFpcB0= diff --git a/api/vendor/github.com/fxamacker/cbor/v2/.gitignore b/api/vendor/github.com/fxamacker/cbor/v2/.gitignore new file mode 100644 index 000000000..f1c181ec9 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/.gitignore @@ -0,0 +1,12 @@ +# Binaries for programs and plugins +*.exe +*.exe~ +*.dll +*.so +*.dylib + +# Test binary, build with `go test -c` +*.test + +# Output of the go coverage tool, specifically when used with LiteIDE +*.out diff --git a/api/vendor/github.com/fxamacker/cbor/v2/.golangci.yml b/api/vendor/github.com/fxamacker/cbor/v2/.golangci.yml new file mode 100644 index 000000000..38cb9ae10 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/.golangci.yml @@ -0,0 +1,104 @@ +# Do not delete linter settings. Linters like gocritic can be enabled on the command line. + +linters-settings: + depguard: + rules: + prevent_unmaintained_packages: + list-mode: strict + files: + - $all + - "!$test" + allow: + - $gostd + - github.com/x448/float16 + deny: + - pkg: io/ioutil + desc: "replaced by io and os packages since Go 1.16: https://tip.golang.org/doc/go1.16#ioutil" + dupl: + threshold: 100 + funlen: + lines: 100 + statements: 50 + goconst: + ignore-tests: true + min-len: 2 + min-occurrences: 3 + gocritic: + enabled-tags: + - diagnostic + - experimental + - opinionated + - performance + - style + disabled-checks: + - commentedOutCode + - dupImport # https://github.com/go-critic/go-critic/issues/845 + - ifElseChain + - octalLiteral + - paramTypeCombine + - whyNoLint + gofmt: + simplify: false + goimports: + local-prefixes: github.com/fxamacker/cbor + golint: + min-confidence: 0 + govet: + check-shadowing: true + lll: + line-length: 140 + maligned: + suggest-new: true + misspell: + locale: US + staticcheck: + checks: ["all"] + +linters: + disable-all: true + enable: + - asciicheck + - bidichk + - depguard + - errcheck + - exportloopref + - goconst + - gocritic + - gocyclo + - gofmt + - goimports + - goprintffuncname + - gosec + - gosimple + - govet + - ineffassign + - misspell + - nilerr + - revive + - staticcheck + - stylecheck + - typecheck + - unconvert + - unused + +issues: + # max-issues-per-linter default is 50. Set to 0 to disable limit. + max-issues-per-linter: 0 + # max-same-issues default is 3. Set to 0 to disable limit. + max-same-issues: 0 + + exclude-rules: + - path: decode.go + text: "string ` overflows ` has (\\d+) occurrences, make it a constant" + - path: decode.go + text: "string ` \\(range is \\[` has (\\d+) occurrences, make it a constant" + - path: decode.go + text: "string `, ` has (\\d+) occurrences, make it a constant" + - path: decode.go + text: "string ` overflows Go's int64` has (\\d+) occurrences, make it a constant" + - path: decode.go + text: "string `\\]\\)` has (\\d+) occurrences, make it a constant" + - path: valid.go + text: "string ` for type ` has (\\d+) occurrences, make it a constant" + - path: valid.go + text: "string `cbor: ` has (\\d+) occurrences, make it a constant" diff --git a/api/vendor/github.com/fxamacker/cbor/v2/CODE_OF_CONDUCT.md b/api/vendor/github.com/fxamacker/cbor/v2/CODE_OF_CONDUCT.md new file mode 100644 index 000000000..c794b2b0c --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/CODE_OF_CONDUCT.md @@ -0,0 +1,133 @@ + +# Contributor Covenant Code of Conduct + +## Our Pledge + +We as members, contributors, and leaders pledge to make participation in our +community a harassment-free experience for everyone, regardless of age, body +size, visible or invisible disability, ethnicity, sex characteristics, gender +identity and expression, level of experience, education, socio-economic status, +nationality, personal appearance, race, caste, color, religion, or sexual +identity and orientation. + +We pledge to act and interact in ways that contribute to an open, welcoming, +diverse, inclusive, and healthy community. + +## Our Standards + +Examples of behavior that contributes to a positive environment for our +community include: + +* Demonstrating empathy and kindness toward other people +* Being respectful of differing opinions, viewpoints, and experiences +* Giving and gracefully accepting constructive feedback +* Accepting responsibility and apologizing to those affected by our mistakes, + and learning from the experience +* Focusing on what is best not just for us as individuals, but for the overall + community + +Examples of unacceptable behavior include: + +* The use of sexualized language or imagery, and sexual attention or advances of + any kind +* Trolling, insulting or derogatory comments, and personal or political attacks +* Public or private harassment +* Publishing others' private information, such as a physical or email address, + without their explicit permission +* Other conduct which could reasonably be considered inappropriate in a + professional setting + +## Enforcement Responsibilities + +Community leaders are responsible for clarifying and enforcing our standards of +acceptable behavior and will take appropriate and fair corrective action in +response to any behavior that they deem inappropriate, threatening, offensive, +or harmful. + +Community leaders have the right and responsibility to remove, edit, or reject +comments, commits, code, wiki edits, issues, and other contributions that are +not aligned to this Code of Conduct, and will communicate reasons for moderation +decisions when appropriate. + +## Scope + +This Code of Conduct applies within all community spaces, and also applies when +an individual is officially representing the community in public spaces. +Examples of representing our community include using an official e-mail address, +posting via an official social media account, or acting as an appointed +representative at an online or offline event. + +## Enforcement + +Instances of abusive, harassing, or otherwise unacceptable behavior may be +reported to the community leaders responsible for enforcement at +faye.github@gmail.com. +All complaints will be reviewed and investigated promptly and fairly. + +All community leaders are obligated to respect the privacy and security of the +reporter of any incident. + +## Enforcement Guidelines + +Community leaders will follow these Community Impact Guidelines in determining +the consequences for any action they deem in violation of this Code of Conduct: + +### 1. Correction + +**Community Impact**: Use of inappropriate language or other behavior deemed +unprofessional or unwelcome in the community. + +**Consequence**: A private, written warning from community leaders, providing +clarity around the nature of the violation and an explanation of why the +behavior was inappropriate. A public apology may be requested. + +### 2. Warning + +**Community Impact**: A violation through a single incident or series of +actions. + +**Consequence**: A warning with consequences for continued behavior. No +interaction with the people involved, including unsolicited interaction with +those enforcing the Code of Conduct, for a specified period of time. This +includes avoiding interactions in community spaces as well as external channels +like social media. Violating these terms may lead to a temporary or permanent +ban. + +### 3. Temporary Ban + +**Community Impact**: A serious violation of community standards, including +sustained inappropriate behavior. + +**Consequence**: A temporary ban from any sort of interaction or public +communication with the community for a specified period of time. No public or +private interaction with the people involved, including unsolicited interaction +with those enforcing the Code of Conduct, is allowed during this period. +Violating these terms may lead to a permanent ban. + +### 4. Permanent Ban + +**Community Impact**: Demonstrating a pattern of violation of community +standards, including sustained inappropriate behavior, harassment of an +individual, or aggression toward or disparagement of classes of individuals. + +**Consequence**: A permanent ban from any sort of public interaction within the +community. + +## Attribution + +This Code of Conduct is adapted from the [Contributor Covenant][homepage], +version 2.1, available at +[https://www.contributor-covenant.org/version/2/1/code_of_conduct.html][v2.1]. + +Community Impact Guidelines were inspired by +[Mozilla's code of conduct enforcement ladder][Mozilla CoC]. + +For answers to common questions about this code of conduct, see the FAQ at +[https://www.contributor-covenant.org/faq][FAQ]. Translations are available at +[https://www.contributor-covenant.org/translations][translations]. + +[homepage]: https://www.contributor-covenant.org +[v2.1]: https://www.contributor-covenant.org/version/2/1/code_of_conduct.html +[Mozilla CoC]: https://github.com/mozilla/diversity +[FAQ]: https://www.contributor-covenant.org/faq +[translations]: https://www.contributor-covenant.org/translations diff --git a/api/vendor/github.com/fxamacker/cbor/v2/CONTRIBUTING.md b/api/vendor/github.com/fxamacker/cbor/v2/CONTRIBUTING.md new file mode 100644 index 000000000..de0965e12 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/CONTRIBUTING.md @@ -0,0 +1,41 @@ +# How to contribute + +You can contribute by using the library, opening issues, or opening pull requests. + +## Bug reports and security vulnerabilities + +Most issues are tracked publicly on [GitHub](https://github.com/fxamacker/cbor/issues). + +To report security vulnerabilities, please email faye.github@gmail.com and allow time for the problem to be resolved before disclosing it to the public. For more info, see [Security Policy](https://github.com/fxamacker/cbor#security-policy). + +Please do not send data that might contain personally identifiable information, even if you think you have permission. That type of support requires payment and a signed contract where I'm indemnified, held harmless, and defended by you for any data you send to me. + +## Pull requests + +Please [create an issue](https://github.com/fxamacker/cbor/issues/new/choose) before you begin work on a PR. The improvement may have already been considered, etc. + +Pull requests have signing requirements and must not be anonymous. Exceptions are usually made for docs and CI scripts. + +See the [Pull Request Template](https://github.com/fxamacker/cbor/blob/master/.github/pull_request_template.md) for details. + +Pull requests have a greater chance of being approved if: +- it does not reduce speed, increase memory use, reduce security, etc. for people not using the new option or feature. +- it has > 97% code coverage. + +## Describe your issue + +Clearly describe the issue: +* If it's a bug, please provide: **version of this library** and **Go** (`go version`), **unmodified error message**, and describe **how to reproduce it**. Also state **what you expected to happen** instead of the error. +* If you propose a change or addition, try to give an example how the improved code could look like or how to use it. +* If you found a compilation error, please confirm you're using a supported version of Go. If you are, then provide the output of `go version` first, followed by the complete error message. + +## Please don't + +Please don't send data containing personally identifiable information, even if you think you have permission. That type of support requires payment and a contract where I'm indemnified, held harmless, and defended for any data you send to me. + +Please don't send CBOR data larger than 1024 bytes by email. If you want to send crash-producing CBOR data > 1024 bytes by email, please get my permission before sending it to me. + +## Credits + +- This guide used nlohmann/json contribution guidelines for inspiration as suggested in issue #22. +- Special thanks to @lukseven for pointing out the contribution guidelines didn't mention signing requirements. diff --git a/api/vendor/github.com/fxamacker/cbor/v2/LICENSE b/api/vendor/github.com/fxamacker/cbor/v2/LICENSE new file mode 100644 index 000000000..eaa850492 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/LICENSE @@ -0,0 +1,21 @@ +MIT License + +Copyright (c) 2019-present Faye Amacker + +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. \ No newline at end of file diff --git a/api/vendor/github.com/fxamacker/cbor/v2/README.md b/api/vendor/github.com/fxamacker/cbor/v2/README.md new file mode 100644 index 000000000..af0a79507 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/README.md @@ -0,0 +1,691 @@ +# CBOR Codec in Go + + + +[fxamacker/cbor](https://github.com/fxamacker/cbor) is a library for encoding and decoding [CBOR](https://www.rfc-editor.org/info/std94) and [CBOR Sequences](https://www.rfc-editor.org/rfc/rfc8742.html). + +CBOR is a [trusted alternative](https://www.rfc-editor.org/rfc/rfc8949.html#name-comparison-of-other-binary-) to JSON, MessagePack, Protocol Buffers, etc.  CBOR is an Internet Standard defined by [IETF STD 94 (RFC 8949)](https://www.rfc-editor.org/info/std94) and is designed to be relevant for decades. + +`fxamacker/cbor` is used in projects by Arm Ltd., Cisco, EdgeX Foundry, Flow Foundation, Fraunhofer‑AISEC, Kubernetes, Let's Encrypt (ISRG), Linux Foundation, Microsoft, Mozilla, Oasis Protocol, Tailscale, Teleport, [etc](https://github.com/fxamacker/cbor#who-uses-fxamackercbor). + +See [Quick Start](#quick-start) and [Releases](https://github.com/fxamacker/cbor/releases/). 🆕 `UnmarshalFirst` and `DiagnoseFirst` can decode CBOR Sequences. `cbor.MarshalToBuffer()` and `UserBufferEncMode` accepts user-specified buffer. + +## fxamacker/cbor + +[![](https://github.com/fxamacker/cbor/workflows/ci/badge.svg)](https://github.com/fxamacker/cbor/actions?query=workflow%3Aci) +[![](https://github.com/fxamacker/cbor/workflows/cover%20%E2%89%A596%25/badge.svg)](https://github.com/fxamacker/cbor/actions?query=workflow%3A%22cover+%E2%89%A596%25%22) +[![CodeQL](https://github.com/fxamacker/cbor/actions/workflows/codeql-analysis.yml/badge.svg)](https://github.com/fxamacker/cbor/actions/workflows/codeql-analysis.yml) +[![](https://img.shields.io/badge/fuzzing-passing-44c010)](#fuzzing-and-code-coverage) +[![Go Report Card](https://goreportcard.com/badge/github.com/fxamacker/cbor)](https://goreportcard.com/report/github.com/fxamacker/cbor) + +`fxamacker/cbor` is a CBOR codec in full conformance with [IETF STD 94 (RFC 8949)](https://www.rfc-editor.org/info/std94). It also supports CBOR Sequences ([RFC 8742](https://www.rfc-editor.org/rfc/rfc8742.html)) and Extended Diagnostic Notation ([Appendix G of RFC 8610](https://www.rfc-editor.org/rfc/rfc8610.html#appendix-G)). + +Features include full support for CBOR tags, [Core Deterministic Encoding](https://www.rfc-editor.org/rfc/rfc8949.html#name-core-deterministic-encoding), duplicate map key detection, etc. + +Design balances trade-offs between security, speed, concurrency, encoded data size, usability, etc. + +
Highlights

+ +__🚀  Speed__ + +Encoding and decoding is fast without using Go's `unsafe` package. Slower settings are opt-in. Default limits allow very fast and memory efficient rejection of malformed CBOR data. + +__🔒  Security__ + +Decoder has configurable limits that defend against malicious inputs. Duplicate map key detection is supported. By contrast, `encoding/gob` is [not designed to be hardened against adversarial inputs](https://pkg.go.dev/encoding/gob#hdr-Security). + +Codec passed multiple confidential security assessments in 2022. No vulnerabilities found in subset of codec in a [nonconfidential security assessment](https://github.com/veraison/go-cose/blob/v1.0.0-rc.1/reports/NCC_Microsoft-go-cose-Report_2022-05-26_v1.0.pdf) prepared by NCC Group for Microsoft Corporation. + +__🗜️  Data Size__ + +Struct tags (`toarray`, `keyasint`, `omitempty`) automatically reduce size of encoded structs. Encoding optionally shrinks float64→32→16 when values fit. + +__:jigsaw:  Usability__ + +API is mostly same as `encoding/json` plus interfaces that simplify concurrency for CBOR options. Encoding and decoding modes can be created at startup and reused by any goroutines. + +Presets include Core Deterministic Encoding, Preferred Serialization, CTAP2 Canonical CBOR, etc. + +__📆  Extensibility__ + +Features include CBOR [extension points](https://www.rfc-editor.org/rfc/rfc8949.html#section-7.1) (e.g. CBOR tags) and extensive settings. API has interfaces that allow users to create custom encoding and decoding without modifying this library. + +


+ +
+ +### Secure Decoding with Configurable Settings + +`fxamacker/cbor` has configurable limits, etc. that defend against malicious CBOR data. + +By contrast, `encoding/gob` is [not designed to be hardened against adversarial inputs](https://pkg.go.dev/encoding/gob#hdr-Security). + +
Example decoding with encoding/gob 💥 fatal error (out of memory)

+ +```Go +// Example of encoding/gob having "fatal error: runtime: out of memory" +// while decoding 181 bytes. +package main +import ( + "bytes" + "encoding/gob" + "encoding/hex" + "fmt" +) + +// Example data is from https://github.com/golang/go/issues/24446 +// (shortened to 181 bytes). +const data = "4dffb503010102303001ff30000109010130010800010130010800010130" + + "01ffb80001014a01ffb60001014b01ff860001013001ff860001013001ff" + + "860001013001ff860001013001ffb80000001eff850401010e3030303030" + + "30303030303030303001ff3000010c0104000016ffb70201010830303030" + + "3030303001ff3000010c000030ffb6040405fcff00303030303030303030" + + "303030303030303030303030303030303030303030303030303030303030" + + "30" + +type X struct { + J *X + K map[string]int +} + +func main() { + raw, _ := hex.DecodeString(data) + decoder := gob.NewDecoder(bytes.NewReader(raw)) + + var x X + decoder.Decode(&x) // fatal error: runtime: out of memory + fmt.Println("Decoding finished.") +} +``` + +


+ +
+ +`fxamacker/cbor` is fast at rejecting malformed CBOR data. E.g. attempts to +decode 10 bytes of malicious CBOR data to `[]byte` (with default settings): + +| Codec | Speed (ns/op) | Memory | Allocs | +| :---- | ------------: | -----: | -----: | +| fxamacker/cbor 2.5.0 | 44 ± 5% | 32 B/op | 2 allocs/op | +| ugorji/go 1.2.11 | 5353261 ± 4% | 67111321 B/op | 13 allocs/op | + +
Benchmark details

+ +Latest comparison used: +- Input: `[]byte{0x9B, 0x00, 0x00, 0x42, 0xFA, 0x42, 0xFA, 0x42, 0xFA, 0x42}` +- go1.19.10, linux/amd64, i5-13600K (disabled all e-cores, DDR4 @2933) +- go test -bench=. -benchmem -count=20 + +#### Prior comparisons + +| Codec | Speed (ns/op) | Memory | Allocs | +| :---- | ------------: | -----: | -----: | +| fxamacker/cbor 2.5.0-beta2 | 44.33 ± 2% | 32 B/op | 2 allocs/op | +| fxamacker/cbor 0.1.0 - 2.4.0 | ~44.68 ± 6% | 32 B/op | 2 allocs/op | +| ugorji/go 1.2.10 | 5524792.50 ± 3% | 67110491 B/op | 12 allocs/op | +| ugorji/go 1.1.0 - 1.2.6 | 💥 runtime: | out of memory: | cannot allocate | + +- Input: `[]byte{0x9B, 0x00, 0x00, 0x42, 0xFA, 0x42, 0xFA, 0x42, 0xFA, 0x42}` +- go1.19.6, linux/amd64, i5-13600K (DDR4) +- go test -bench=. -benchmem -count=20 + +


+ +
+ +### Smaller Encodings with Struct Tags + +Struct tags (`toarray`, `keyasint`, `omitempty`) reduce encoded size of structs. + +
Example encoding 3-level nested Go struct to 1 byte CBOR

+ +https://go.dev/play/p/YxwvfPdFQG2 + +```Go +// Example encoding nested struct (with omitempty tag) +// - encoding/json: 18 byte JSON +// - fxamacker/cbor: 1 byte CBOR +package main + +import ( + "encoding/hex" + "encoding/json" + "fmt" + + "github.com/fxamacker/cbor/v2" +) + +type GrandChild struct { + Quux int `json:",omitempty"` +} + +type Child struct { + Baz int `json:",omitempty"` + Qux GrandChild `json:",omitempty"` +} + +type Parent struct { + Foo Child `json:",omitempty"` + Bar int `json:",omitempty"` +} + +func cb() { + results, _ := cbor.Marshal(Parent{}) + fmt.Println("hex(CBOR): " + hex.EncodeToString(results)) + + text, _ := cbor.Diagnose(results) // Diagnostic Notation + fmt.Println("DN: " + text) +} + +func js() { + results, _ := json.Marshal(Parent{}) + fmt.Println("hex(JSON): " + hex.EncodeToString(results)) + + text := string(results) // JSON + fmt.Println("JSON: " + text) +} + +func main() { + cb() + fmt.Println("-------------") + js() +} +``` + +Output (DN is Diagnostic Notation): +``` +hex(CBOR): a0 +DN: {} +------------- +hex(JSON): 7b22466f6f223a7b22517578223a7b7d7d7d +JSON: {"Foo":{"Qux":{}}} +``` + +


+ +
+ +Example using different struct tags together: + +![alt text](https://github.com/fxamacker/images/raw/master/cbor/v2.3.0/cbor_struct_tags_api.svg?sanitize=1 "CBOR API and Go Struct Tags") + +API is mostly same as `encoding/json`, plus interfaces that simplify concurrency for CBOR options. + +## Quick Start + +__Install__: `go get github.com/fxamacker/cbor/v2` and `import "github.com/fxamacker/cbor/v2"`. + +### Key Points + +This library can encode and decode CBOR (RFC 8949) and CBOR Sequences (RFC 8742). + +- __CBOR data item__ is a single piece of CBOR data and its structure may contain 0 or more nested data items. +- __CBOR sequence__ is a concatenation of 0 or more encoded CBOR data items. + +Configurable limits and options can be used to balance trade-offs. + +- Encoding and decoding modes are created from options (settings). +- Modes can be created at startup and reused. +- Modes are safe for concurrent use. + +### Default Mode + +Package level functions only use this library's default settings. +They provide the "default mode" of encoding and decoding. + +```go +// API matches encoding/json for Marshal, Unmarshal, Encode, Decode, etc. +b, err = cbor.Marshal(v) // encode v to []byte b +err = cbor.Unmarshal(b, &v) // decode []byte b to v +decoder = cbor.NewDecoder(r) // create decoder with io.Reader r +err = decoder.Decode(&v) // decode a CBOR data item to v + +// v2.7.0 added MarshalToBuffer() and UserBufferEncMode interface. +err = cbor.MarshalToBuffer(v, b) // encode v to b instead of using built-in buf pool. + +// v2.5.0 added new functions that return remaining bytes. + +// UnmarshalFirst decodes first CBOR data item and returns remaining bytes. +rest, err = cbor.UnmarshalFirst(b, &v) // decode []byte b to v + +// DiagnoseFirst translates first CBOR data item to text and returns remaining bytes. +text, rest, err = cbor.DiagnoseFirst(b) // decode []byte b to Diagnostic Notation text + +// NOTE: Unmarshal returns ExtraneousDataError if there are remaining bytes, +// but new funcs UnmarshalFirst and DiagnoseFirst do not. +``` + +__IMPORTANT__: 👉 CBOR settings allow trade-offs between speed, security, encoding size, etc. + +- Different CBOR libraries may use different default settings. +- CBOR-based formats or protocols usually require specific settings. + +For example, WebAuthn uses "CTAP2 Canonical CBOR" which is available as a preset. + +### Presets + +Presets can be used as-is or as a starting point for custom settings. + +```go +// EncOptions is a struct of encoder settings. +func CoreDetEncOptions() EncOptions // RFC 8949 Core Deterministic Encoding +func PreferredUnsortedEncOptions() EncOptions // RFC 8949 Preferred Serialization +func CanonicalEncOptions() EncOptions // RFC 7049 Canonical CBOR +func CTAP2EncOptions() EncOptions // FIDO2 CTAP2 Canonical CBOR +``` + +Presets are used to create custom modes. + +### Custom Modes + +Modes are created from settings. Once created, modes have immutable settings. + +💡 Create the mode at startup and reuse it. It is safe for concurrent use. + +```Go +// Create encoding mode. +opts := cbor.CoreDetEncOptions() // use preset options as a starting point +opts.Time = cbor.TimeUnix // change any settings if needed +em, err := opts.EncMode() // create an immutable encoding mode + +// Reuse the encoding mode. It is safe for concurrent use. + +// API matches encoding/json. +b, err := em.Marshal(v) // encode v to []byte b +encoder := em.NewEncoder(w) // create encoder with io.Writer w +err := encoder.Encode(v) // encode v to io.Writer w +``` + +Default mode and custom modes automatically apply struct tags. + +### User Specified Buffer for Encoding (v2.7.0) + +`UserBufferEncMode` interface extends `EncMode` interface to add `MarshalToBuffer()`. It accepts a user-specified buffer instead of using built-in buffer pool. + +```Go +em, err := myEncOptions.UserBufferEncMode() // create UserBufferEncMode mode + +var buf bytes.Buffer +err = em.MarshalToBuffer(v, &buf) // encode v to provided buf +``` + +### Struct Tags + +Struct tags (`toarray`, `keyasint`, `omitempty`) reduce encoded size of structs. + +
Example encoding 3-level nested Go struct to 1 byte CBOR

+ +https://go.dev/play/p/YxwvfPdFQG2 + +```Go +// Example encoding nested struct (with omitempty tag) +// - encoding/json: 18 byte JSON +// - fxamacker/cbor: 1 byte CBOR +package main + +import ( + "encoding/hex" + "encoding/json" + "fmt" + + "github.com/fxamacker/cbor/v2" +) + +type GrandChild struct { + Quux int `json:",omitempty"` +} + +type Child struct { + Baz int `json:",omitempty"` + Qux GrandChild `json:",omitempty"` +} + +type Parent struct { + Foo Child `json:",omitempty"` + Bar int `json:",omitempty"` +} + +func cb() { + results, _ := cbor.Marshal(Parent{}) + fmt.Println("hex(CBOR): " + hex.EncodeToString(results)) + + text, _ := cbor.Diagnose(results) // Diagnostic Notation + fmt.Println("DN: " + text) +} + +func js() { + results, _ := json.Marshal(Parent{}) + fmt.Println("hex(JSON): " + hex.EncodeToString(results)) + + text := string(results) // JSON + fmt.Println("JSON: " + text) +} + +func main() { + cb() + fmt.Println("-------------") + js() +} +``` + +Output (DN is Diagnostic Notation): +``` +hex(CBOR): a0 +DN: {} +------------- +hex(JSON): 7b22466f6f223a7b22517578223a7b7d7d7d +JSON: {"Foo":{"Qux":{}}} +``` + +


+ +
+ +
Example using several struct tags

+ +![alt text](https://github.com/fxamacker/images/raw/master/cbor/v2.3.0/cbor_struct_tags_api.svg?sanitize=1 "CBOR API and Go Struct Tags") + +

+ +Struct tags simplify use of CBOR-based protocols that require CBOR arrays or maps with integer keys. + +### CBOR Tags + +CBOR tags are specified in a `TagSet`. + +Custom modes can be created with a `TagSet` to handle CBOR tags. + +```go +em, err := opts.EncMode() // no CBOR tags +em, err := opts.EncModeWithTags(ts) // immutable CBOR tags +em, err := opts.EncModeWithSharedTags(ts) // mutable shared CBOR tags +``` + +`TagSet` and modes using it are safe for concurrent use. Equivalent API is available for `DecMode`. + +
Example using TagSet and TagOptions

+ +```go +// Use signedCWT struct defined in "Decoding CWT" example. + +// Create TagSet (safe for concurrency). +tags := cbor.NewTagSet() +// Register tag COSE_Sign1 18 with signedCWT type. +tags.Add( + cbor.TagOptions{EncTag: cbor.EncTagRequired, DecTag: cbor.DecTagRequired}, + reflect.TypeOf(signedCWT{}), + 18) + +// Create DecMode with immutable tags. +dm, _ := cbor.DecOptions{}.DecModeWithTags(tags) + +// Unmarshal to signedCWT with tag support. +var v signedCWT +if err := dm.Unmarshal(data, &v); err != nil { + return err +} + +// Create EncMode with immutable tags. +em, _ := cbor.EncOptions{}.EncModeWithTags(tags) + +// Marshal signedCWT with tag number. +if data, err := cbor.Marshal(v); err != nil { + return err +} +``` + +

+ +### Functions and Interfaces + +
Functions and interfaces at a glance

+ +Common functions with same API as `encoding/json`: +- `Marshal`, `Unmarshal` +- `NewEncoder`, `(*Encoder).Encode` +- `NewDecoder`, `(*Decoder).Decode` + +NOTE: `Unmarshal` will return `ExtraneousDataError` if there are remaining bytes +because RFC 8949 treats CBOR data item with remaining bytes as malformed. +- 💡 Use `UnmarshalFirst` to decode first CBOR data item and return any remaining bytes. + +Other useful functions: +- `Diagnose`, `DiagnoseFirst` produce human-readable [Extended Diagnostic Notation](https://www.rfc-editor.org/rfc/rfc8610.html#appendix-G) from CBOR data. +- `UnmarshalFirst` decodes first CBOR data item and return any remaining bytes. +- `Wellformed` returns true if the the CBOR data item is well-formed. + +Interfaces identical or comparable to Go `encoding` packages include: +`Marshaler`, `Unmarshaler`, `BinaryMarshaler`, and `BinaryUnmarshaler`. + +The `RawMessage` type can be used to delay CBOR decoding or precompute CBOR encoding. + +

+ +### Security Tips + +🔒 Use Go's `io.LimitReader` to limit size when decoding very large or indefinite size data. + +Default limits may need to be increased for systems handling very large data (e.g. blockchains). + +`DecOptions` can be used to modify default limits for `MaxArrayElements`, `MaxMapPairs`, and `MaxNestedLevels`. + +## Status + +v2.7.0 (June 23, 2024) adds features and improvements that help large projects (e.g. Kubernetes) use CBOR as an alternative to JSON and Protocol Buffers. Other improvements include speedups, improved memory use, bug fixes, new serialization options, etc. It passed fuzz tests (5+ billion executions) and is production quality. + +For more details, see [release notes](https://github.com/fxamacker/cbor/releases). + +### Prior Release + +[v2.6.0](https://github.com/fxamacker/cbor/releases/tag/v2.6.0) (February 2024) adds important new features, optimizations, and bug fixes. It is especially useful to systems that need to convert data between CBOR and JSON. New options and optimizations improve handling of bignum, integers, maps, and strings. + +v2.5.0 was released on Sunday, August 13, 2023 with new features and important bug fixes. It is fuzz tested and production quality after extended beta [v2.5.0-beta](https://github.com/fxamacker/cbor/releases/tag/v2.5.0-beta) (Dec 2022) -> [v2.5.0](https://github.com/fxamacker/cbor/releases/tag/v2.5.0) (Aug 2023). + +__IMPORTANT__: 👉 Before upgrading from v2.4 or older release, please read the notable changes highlighted in the release notes. v2.5.0 is a large release with bug fixes to error handling for extraneous data in `Unmarshal`, etc. that should be reviewed before upgrading. + +See [v2.5.0 release notes](https://github.com/fxamacker/cbor/releases/tag/v2.5.0) for list of new features, improvements, and bug fixes. + +See ["Version and API Changes"](https://github.com/fxamacker/cbor#versions-and-api-changes) section for more info about version numbering, etc. + + + +## Who uses fxamacker/cbor + +`fxamacker/cbor` is used in projects by Arm Ltd., Berlin Institute of Health at Charité, Chainlink, Cisco, Confidential Computing Consortium, ConsenSys, Dapper Labs, EdgeX Foundry, F5, FIDO Alliance, Fraunhofer‑AISEC, Kubernetes, Let's Encrypt (ISRG), Linux Foundation, Matrix.org, Microsoft, Mozilla, National Cybersecurity Agency of France (govt), Netherlands (govt), Oasis Protocol, Smallstep, Tailscale, Taurus SA, Teleport, TIBCO, and others. + +`fxamacker/cbor` passed multiple confidential security assessments. A [nonconfidential security assessment](https://github.com/veraison/go-cose/blob/v1.0.0-rc.1/reports/NCC_Microsoft-go-cose-Report_2022-05-26_v1.0.pdf) (prepared by NCC Group for Microsoft Corporation) includes a subset of fxamacker/cbor v2.4.0 in its scope. + +## Standards + +`fxamacker/cbor` is a CBOR codec in full conformance with [IETF STD 94 (RFC 8949)](https://www.rfc-editor.org/info/std94). It also supports CBOR Sequences ([RFC 8742](https://www.rfc-editor.org/rfc/rfc8742.html)) and Extended Diagnostic Notation ([Appendix G of RFC 8610](https://www.rfc-editor.org/rfc/rfc8610.html#appendix-G)). + +Notable CBOR features include: + +| CBOR Feature | Description | +| :--- | :--- | +| CBOR tags | API supports built-in and user-defined tags. | +| Preferred serialization | Integers encode to fewest bytes. Optional float64 → float32 → float16. | +| Map key sorting | Unsorted, length-first (Canonical CBOR), and bytewise-lexicographic (CTAP2). | +| Duplicate map keys | Always forbid for encoding and option to allow/forbid for decoding. | +| Indefinite length data | Option to allow/forbid for encoding and decoding. | +| Well-formedness | Always checked and enforced. | +| Basic validity checks | Optionally check UTF-8 validity and duplicate map keys. | +| Security considerations | Prevent integer overflow and resource exhaustion (RFC 8949 Section 10). | + +Known limitations are noted in the [Limitations section](#limitations). + +Go nil values for slices, maps, pointers, etc. are encoded as CBOR null. Empty slices, maps, etc. are encoded as empty CBOR arrays and maps. + +Decoder checks for all required well-formedness errors, including all "subkinds" of syntax errors and too little data. + +After well-formedness is verified, basic validity errors are handled as follows: + +* Invalid UTF-8 string: Decoder has option to check and return invalid UTF-8 string error. This check is enabled by default. +* Duplicate keys in a map: Decoder has options to ignore or enforce rejection of duplicate map keys. + +When decoding well-formed CBOR arrays and maps, decoder saves the first error it encounters and continues with the next item. Options to handle this differently may be added in the future. + +By default, decoder treats time values of floating-point NaN and Infinity as if they are CBOR Null or CBOR Undefined. + +__Click to expand topic:__ + +
+ Duplicate Map Keys

+ +This library provides options for fast detection and rejection of duplicate map keys based on applying a Go-specific data model to CBOR's extended generic data model in order to determine duplicate vs distinct map keys. Detection relies on whether the CBOR map key would be a duplicate "key" when decoded and applied to the user-provided Go map or struct. + +`DupMapKeyQuiet` turns off detection of duplicate map keys. It tries to use a "keep fastest" method by choosing either "keep first" or "keep last" depending on the Go data type. + +`DupMapKeyEnforcedAPF` enforces detection and rejection of duplidate map keys. Decoding stops immediately and returns `DupMapKeyError` when the first duplicate key is detected. The error includes the duplicate map key and the index number. + +APF suffix means "Allow Partial Fill" so the destination map or struct can contain some decoded values at the time of error. It is the caller's responsibility to respond to the `DupMapKeyError` by discarding the partially filled result if that's required by their protocol. + +

+ +
+ Tag Validity

+ +This library checks tag validity for built-in tags (currently tag numbers 0, 1, 2, 3, and 55799): + +* Inadmissible type for tag content +* Inadmissible value for tag content + +Unknown tag data items (not tag number 0, 1, 2, 3, or 55799) are handled in two ways: + +* When decoding into an empty interface, unknown tag data item will be decoded into `cbor.Tag` data type, which contains tag number and tag content. The tag content will be decoded into the default Go data type for the CBOR data type. +* When decoding into other Go types, unknown tag data item is decoded into the specified Go type. If Go type is registered with a tag number, the tag number can optionally be verified. + +Decoder also has an option to forbid tag data items (treat any tag data item as error) which is specified by protocols such as CTAP2 Canonical CBOR. + +For more information, see [decoding options](#decoding-options-1) and [tag options](#tag-options). + +

+ +## Limitations + +If any of these limitations prevent you from using this library, please open an issue along with a link to your project. + +* CBOR `Undefined` (0xf7) value decodes to Go's `nil` value. CBOR `Null` (0xf6) more closely matches Go's `nil`. +* CBOR map keys with data types not supported by Go for map keys are ignored and an error is returned after continuing to decode remaining items. +* When decoding registered CBOR tag data to interface type, decoder creates a pointer to registered Go type matching CBOR tag number. Requiring a pointer for this is a Go limitation. + +## Fuzzing and Code Coverage + +__Code coverage__ is always 95% or higher (with `go test -cover`) when tagging a release. + +__Coverage-guided fuzzing__ must pass billions of execs using before tagging a release. Fuzzing is done using nonpublic code which may eventually get merged into this project. Until then, reports like OpenSSF Scorecard can't detect fuzz tests being used by this project. + +
+ +## Versions and API Changes +This project uses [Semantic Versioning](https://semver.org), so the API is always backwards compatible unless the major version number changes. + +These functions have signatures identical to encoding/json and their API will continue to match `encoding/json` even after major new releases: +`Marshal`, `Unmarshal`, `NewEncoder`, `NewDecoder`, `(*Encoder).Encode`, and `(*Decoder).Decode`. + +Exclusions from SemVer: +- Newly added API documented as "subject to change". +- Newly added API in the master branch that has never been tagged in non-beta release. +- If function parameters are unchanged, bug fixes that change behavior (e.g. return error for edge case was missed in prior version). We try to highlight these in the release notes and add extended beta period. E.g. [v2.5.0-beta](https://github.com/fxamacker/cbor/releases/tag/v2.5.0-beta) (Dec 2022) -> [v2.5.0](https://github.com/fxamacker/cbor/releases/tag/v2.5.0) (Aug 2023). + +This project avoids breaking changes to behavior of encoding and decoding functions unless required to improve conformance with supported RFCs (e.g. RFC 8949, RFC 8742, etc.) Visible changes that don't improve conformance to standards are typically made available as new opt-in settings or new functions. + +## Code of Conduct + +This project has adopted the [Contributor Covenant Code of Conduct](CODE_OF_CONDUCT.md). Contact [faye.github@gmail.com](mailto:faye.github@gmail.com) with any questions or comments. + +## Contributing + +Please open an issue before beginning work on a PR. The improvement may have already been considered, etc. + +For more info, see [How to Contribute](CONTRIBUTING.md). + +## Security Policy + +Security fixes are provided for the latest released version of fxamacker/cbor. + +For the full text of the Security Policy, see [SECURITY.md](SECURITY.md). + +## Acknowledgements + +Many thanks to all the contributors on this project! + +I'm especially grateful to Bastian Müller and Dieter Shirley for suggesting and collaborating on CBOR stream mode, and much more. + +I'm very grateful to Stefan Tatschner, Yawning Angel, Jernej Kos, x448, ZenGround0, and Jakob Borg for their contributions or support in the very early days. + +Big thanks to Ben Luddy for his contributions in v2.6.0 and v2.7.0. + +This library clearly wouldn't be possible without Carsten Bormann authoring CBOR RFCs. + +Special thanks to Laurence Lundblade and Jeffrey Yasskin for their help on IETF mailing list or at [7049bis](https://github.com/cbor-wg/CBORbis). + +Huge thanks to The Go Authors for creating a fun and practical programming language with batteries included! + +This library uses `x448/float16` which used to be included. As a standalone package, `x448/float16` is useful to other projects as well. + +## License + +Copyright © 2019-2024 [Faye Amacker](https://github.com/fxamacker). + +fxamacker/cbor is licensed under the MIT License. See [LICENSE](LICENSE) for the full license text. + +
diff --git a/api/vendor/github.com/fxamacker/cbor/v2/SECURITY.md b/api/vendor/github.com/fxamacker/cbor/v2/SECURITY.md new file mode 100644 index 000000000..9c05146d1 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/SECURITY.md @@ -0,0 +1,7 @@ +# Security Policy + +Security fixes are provided for the latest released version of fxamacker/cbor. + +If the security vulnerability is already known to the public, then you can open an issue as a bug report. + +To report security vulnerabilities not yet known to the public, please email faye.github@gmail.com and allow time for the problem to be resolved before reporting it to the public. diff --git a/api/vendor/github.com/fxamacker/cbor/v2/bytestring.go b/api/vendor/github.com/fxamacker/cbor/v2/bytestring.go new file mode 100644 index 000000000..823bff12c --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/bytestring.go @@ -0,0 +1,63 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "errors" +) + +// ByteString represents CBOR byte string (major type 2). ByteString can be used +// when using a Go []byte is not possible or convenient. For example, Go doesn't +// allow []byte as map key, so ByteString can be used to support data formats +// having CBOR map with byte string keys. ByteString can also be used to +// encode invalid UTF-8 string as CBOR byte string. +// See DecOption.MapKeyByteStringMode for more details. +type ByteString string + +// Bytes returns bytes representing ByteString. +func (bs ByteString) Bytes() []byte { + return []byte(bs) +} + +// MarshalCBOR encodes ByteString as CBOR byte string (major type 2). +func (bs ByteString) MarshalCBOR() ([]byte, error) { + e := getEncodeBuffer() + defer putEncodeBuffer(e) + + // Encode length + encodeHead(e, byte(cborTypeByteString), uint64(len(bs))) + + // Encode data + buf := make([]byte, e.Len()+len(bs)) + n := copy(buf, e.Bytes()) + copy(buf[n:], bs) + + return buf, nil +} + +// UnmarshalCBOR decodes CBOR byte string (major type 2) to ByteString. +// Decoding CBOR null and CBOR undefined sets ByteString to be empty. +func (bs *ByteString) UnmarshalCBOR(data []byte) error { + if bs == nil { + return errors.New("cbor.ByteString: UnmarshalCBOR on nil pointer") + } + + // Decoding CBOR null and CBOR undefined to ByteString resets data. + // This behavior is similar to decoding CBOR null and CBOR undefined to []byte. + if len(data) == 1 && (data[0] == 0xf6 || data[0] == 0xf7) { + *bs = "" + return nil + } + + d := decoder{data: data, dm: defaultDecMode} + + // Check if CBOR data type is byte string + if typ := d.nextCBORType(); typ != cborTypeByteString { + return &UnmarshalTypeError{CBORType: typ.String(), GoType: typeByteString.String()} + } + + b, _ := d.parseByteString() + *bs = ByteString(b) + return nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/cache.go b/api/vendor/github.com/fxamacker/cbor/v2/cache.go new file mode 100644 index 000000000..ea0f39e24 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/cache.go @@ -0,0 +1,363 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "bytes" + "errors" + "fmt" + "reflect" + "sort" + "strconv" + "strings" + "sync" +) + +type encodeFuncs struct { + ef encodeFunc + ief isEmptyFunc +} + +var ( + decodingStructTypeCache sync.Map // map[reflect.Type]*decodingStructType + encodingStructTypeCache sync.Map // map[reflect.Type]*encodingStructType + encodeFuncCache sync.Map // map[reflect.Type]encodeFuncs + typeInfoCache sync.Map // map[reflect.Type]*typeInfo +) + +type specialType int + +const ( + specialTypeNone specialType = iota + specialTypeUnmarshalerIface + specialTypeEmptyIface + specialTypeIface + specialTypeTag + specialTypeTime +) + +type typeInfo struct { + elemTypeInfo *typeInfo + keyTypeInfo *typeInfo + typ reflect.Type + kind reflect.Kind + nonPtrType reflect.Type + nonPtrKind reflect.Kind + spclType specialType +} + +func newTypeInfo(t reflect.Type) *typeInfo { + tInfo := typeInfo{typ: t, kind: t.Kind()} + + for t.Kind() == reflect.Ptr { + t = t.Elem() + } + + k := t.Kind() + + tInfo.nonPtrType = t + tInfo.nonPtrKind = k + + if k == reflect.Interface { + if t.NumMethod() == 0 { + tInfo.spclType = specialTypeEmptyIface + } else { + tInfo.spclType = specialTypeIface + } + } else if t == typeTag { + tInfo.spclType = specialTypeTag + } else if t == typeTime { + tInfo.spclType = specialTypeTime + } else if reflect.PtrTo(t).Implements(typeUnmarshaler) { + tInfo.spclType = specialTypeUnmarshalerIface + } + + switch k { + case reflect.Array, reflect.Slice: + tInfo.elemTypeInfo = getTypeInfo(t.Elem()) + case reflect.Map: + tInfo.keyTypeInfo = getTypeInfo(t.Key()) + tInfo.elemTypeInfo = getTypeInfo(t.Elem()) + } + + return &tInfo +} + +type decodingStructType struct { + fields fields + fieldIndicesByName map[string]int + err error + toArray bool +} + +// The stdlib errors.Join was introduced in Go 1.20, and we still support Go 1.17, so instead, +// here's a very basic implementation of an aggregated error. +type multierror []error + +func (m multierror) Error() string { + var sb strings.Builder + for i, err := range m { + sb.WriteString(err.Error()) + if i < len(m)-1 { + sb.WriteString(", ") + } + } + return sb.String() +} + +func getDecodingStructType(t reflect.Type) *decodingStructType { + if v, _ := decodingStructTypeCache.Load(t); v != nil { + return v.(*decodingStructType) + } + + flds, structOptions := getFields(t) + + toArray := hasToArrayOption(structOptions) + + var errs []error + for i := 0; i < len(flds); i++ { + if flds[i].keyAsInt { + nameAsInt, numErr := strconv.Atoi(flds[i].name) + if numErr != nil { + errs = append(errs, errors.New("cbor: failed to parse field name \""+flds[i].name+"\" to int ("+numErr.Error()+")")) + break + } + flds[i].nameAsInt = int64(nameAsInt) + } + + flds[i].typInfo = getTypeInfo(flds[i].typ) + } + + fieldIndicesByName := make(map[string]int, len(flds)) + for i, fld := range flds { + if _, ok := fieldIndicesByName[fld.name]; ok { + errs = append(errs, fmt.Errorf("cbor: two or more fields of %v have the same name %q", t, fld.name)) + continue + } + fieldIndicesByName[fld.name] = i + } + + var err error + { + var multi multierror + for _, each := range errs { + if each != nil { + multi = append(multi, each) + } + } + if len(multi) == 1 { + err = multi[0] + } else if len(multi) > 1 { + err = multi + } + } + + structType := &decodingStructType{ + fields: flds, + fieldIndicesByName: fieldIndicesByName, + err: err, + toArray: toArray, + } + decodingStructTypeCache.Store(t, structType) + return structType +} + +type encodingStructType struct { + fields fields + bytewiseFields fields + lengthFirstFields fields + omitEmptyFieldsIdx []int + err error + toArray bool +} + +func (st *encodingStructType) getFields(em *encMode) fields { + switch em.sort { + case SortNone, SortFastShuffle: + return st.fields + case SortLengthFirst: + return st.lengthFirstFields + default: + return st.bytewiseFields + } +} + +type bytewiseFieldSorter struct { + fields fields +} + +func (x *bytewiseFieldSorter) Len() int { + return len(x.fields) +} + +func (x *bytewiseFieldSorter) Swap(i, j int) { + x.fields[i], x.fields[j] = x.fields[j], x.fields[i] +} + +func (x *bytewiseFieldSorter) Less(i, j int) bool { + return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) <= 0 +} + +type lengthFirstFieldSorter struct { + fields fields +} + +func (x *lengthFirstFieldSorter) Len() int { + return len(x.fields) +} + +func (x *lengthFirstFieldSorter) Swap(i, j int) { + x.fields[i], x.fields[j] = x.fields[j], x.fields[i] +} + +func (x *lengthFirstFieldSorter) Less(i, j int) bool { + if len(x.fields[i].cborName) != len(x.fields[j].cborName) { + return len(x.fields[i].cborName) < len(x.fields[j].cborName) + } + return bytes.Compare(x.fields[i].cborName, x.fields[j].cborName) <= 0 +} + +func getEncodingStructType(t reflect.Type) (*encodingStructType, error) { + if v, _ := encodingStructTypeCache.Load(t); v != nil { + structType := v.(*encodingStructType) + return structType, structType.err + } + + flds, structOptions := getFields(t) + + if hasToArrayOption(structOptions) { + return getEncodingStructToArrayType(t, flds) + } + + var err error + var hasKeyAsInt bool + var hasKeyAsStr bool + var omitEmptyIdx []int + e := getEncodeBuffer() + for i := 0; i < len(flds); i++ { + // Get field's encodeFunc + flds[i].ef, flds[i].ief = getEncodeFunc(flds[i].typ) + if flds[i].ef == nil { + err = &UnsupportedTypeError{t} + break + } + + // Encode field name + if flds[i].keyAsInt { + nameAsInt, numErr := strconv.Atoi(flds[i].name) + if numErr != nil { + err = errors.New("cbor: failed to parse field name \"" + flds[i].name + "\" to int (" + numErr.Error() + ")") + break + } + flds[i].nameAsInt = int64(nameAsInt) + if nameAsInt >= 0 { + encodeHead(e, byte(cborTypePositiveInt), uint64(nameAsInt)) + } else { + n := nameAsInt*(-1) - 1 + encodeHead(e, byte(cborTypeNegativeInt), uint64(n)) + } + flds[i].cborName = make([]byte, e.Len()) + copy(flds[i].cborName, e.Bytes()) + e.Reset() + + hasKeyAsInt = true + } else { + encodeHead(e, byte(cborTypeTextString), uint64(len(flds[i].name))) + flds[i].cborName = make([]byte, e.Len()+len(flds[i].name)) + n := copy(flds[i].cborName, e.Bytes()) + copy(flds[i].cborName[n:], flds[i].name) + e.Reset() + + // If cborName contains a text string, then cborNameByteString contains a + // string that has the byte string major type but is otherwise identical to + // cborName. + flds[i].cborNameByteString = make([]byte, len(flds[i].cborName)) + copy(flds[i].cborNameByteString, flds[i].cborName) + // Reset encoded CBOR type to byte string, preserving the "additional + // information" bits: + flds[i].cborNameByteString[0] = byte(cborTypeByteString) | + getAdditionalInformation(flds[i].cborNameByteString[0]) + + hasKeyAsStr = true + } + + // Check if field can be omitted when empty + if flds[i].omitEmpty { + omitEmptyIdx = append(omitEmptyIdx, i) + } + } + putEncodeBuffer(e) + + if err != nil { + structType := &encodingStructType{err: err} + encodingStructTypeCache.Store(t, structType) + return structType, structType.err + } + + // Sort fields by canonical order + bytewiseFields := make(fields, len(flds)) + copy(bytewiseFields, flds) + sort.Sort(&bytewiseFieldSorter{bytewiseFields}) + + lengthFirstFields := bytewiseFields + if hasKeyAsInt && hasKeyAsStr { + lengthFirstFields = make(fields, len(flds)) + copy(lengthFirstFields, flds) + sort.Sort(&lengthFirstFieldSorter{lengthFirstFields}) + } + + structType := &encodingStructType{ + fields: flds, + bytewiseFields: bytewiseFields, + lengthFirstFields: lengthFirstFields, + omitEmptyFieldsIdx: omitEmptyIdx, + } + + encodingStructTypeCache.Store(t, structType) + return structType, structType.err +} + +func getEncodingStructToArrayType(t reflect.Type, flds fields) (*encodingStructType, error) { + for i := 0; i < len(flds); i++ { + // Get field's encodeFunc + flds[i].ef, flds[i].ief = getEncodeFunc(flds[i].typ) + if flds[i].ef == nil { + structType := &encodingStructType{err: &UnsupportedTypeError{t}} + encodingStructTypeCache.Store(t, structType) + return structType, structType.err + } + } + + structType := &encodingStructType{ + fields: flds, + toArray: true, + } + encodingStructTypeCache.Store(t, structType) + return structType, structType.err +} + +func getEncodeFunc(t reflect.Type) (encodeFunc, isEmptyFunc) { + if v, _ := encodeFuncCache.Load(t); v != nil { + fs := v.(encodeFuncs) + return fs.ef, fs.ief + } + ef, ief := getEncodeFuncInternal(t) + encodeFuncCache.Store(t, encodeFuncs{ef, ief}) + return ef, ief +} + +func getTypeInfo(t reflect.Type) *typeInfo { + if v, _ := typeInfoCache.Load(t); v != nil { + return v.(*typeInfo) + } + tInfo := newTypeInfo(t) + typeInfoCache.Store(t, tInfo) + return tInfo +} + +func hasToArrayOption(tag string) bool { + s := ",toarray" + idx := strings.Index(tag, s) + return idx >= 0 && (len(tag) == idx+len(s) || tag[idx+len(s)] == ',') +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/common.go b/api/vendor/github.com/fxamacker/cbor/v2/common.go new file mode 100644 index 000000000..ec038a49e --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/common.go @@ -0,0 +1,182 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "fmt" + "strconv" +) + +type cborType uint8 + +const ( + cborTypePositiveInt cborType = 0x00 + cborTypeNegativeInt cborType = 0x20 + cborTypeByteString cborType = 0x40 + cborTypeTextString cborType = 0x60 + cborTypeArray cborType = 0x80 + cborTypeMap cborType = 0xa0 + cborTypeTag cborType = 0xc0 + cborTypePrimitives cborType = 0xe0 +) + +func (t cborType) String() string { + switch t { + case cborTypePositiveInt: + return "positive integer" + case cborTypeNegativeInt: + return "negative integer" + case cborTypeByteString: + return "byte string" + case cborTypeTextString: + return "UTF-8 text string" + case cborTypeArray: + return "array" + case cborTypeMap: + return "map" + case cborTypeTag: + return "tag" + case cborTypePrimitives: + return "primitives" + default: + return "Invalid type " + strconv.Itoa(int(t)) + } +} + +type additionalInformation uint8 + +const ( + maxAdditionalInformationWithoutArgument = 23 + additionalInformationWith1ByteArgument = 24 + additionalInformationWith2ByteArgument = 25 + additionalInformationWith4ByteArgument = 26 + additionalInformationWith8ByteArgument = 27 + + // For major type 7. + additionalInformationAsFalse = 20 + additionalInformationAsTrue = 21 + additionalInformationAsNull = 22 + additionalInformationAsUndefined = 23 + additionalInformationAsFloat16 = 25 + additionalInformationAsFloat32 = 26 + additionalInformationAsFloat64 = 27 + + // For major type 2, 3, 4, 5. + additionalInformationAsIndefiniteLengthFlag = 31 +) + +const ( + maxSimpleValueInAdditionalInformation = 23 + minSimpleValueIn1ByteArgument = 32 +) + +func (ai additionalInformation) isIndefiniteLength() bool { + return ai == additionalInformationAsIndefiniteLengthFlag +} + +const ( + // From RFC 8949 Section 3: + // "The initial byte of each encoded data item contains both information about the major type + // (the high-order 3 bits, described in Section 3.1) and additional information + // (the low-order 5 bits)." + + // typeMask is used to extract major type in initial byte of encoded data item. + typeMask = 0xe0 + + // additionalInformationMask is used to extract additional information in initial byte of encoded data item. + additionalInformationMask = 0x1f +) + +func getType(raw byte) cborType { + return cborType(raw & typeMask) +} + +func getAdditionalInformation(raw byte) byte { + return raw & additionalInformationMask +} + +func isBreakFlag(raw byte) bool { + return raw == cborBreakFlag +} + +func parseInitialByte(b byte) (t cborType, ai byte) { + return getType(b), getAdditionalInformation(b) +} + +const ( + tagNumRFC3339Time = 0 + tagNumEpochTime = 1 + tagNumUnsignedBignum = 2 + tagNumNegativeBignum = 3 + tagNumExpectedLaterEncodingBase64URL = 21 + tagNumExpectedLaterEncodingBase64 = 22 + tagNumExpectedLaterEncodingBase16 = 23 + tagNumSelfDescribedCBOR = 55799 +) + +const ( + cborBreakFlag = byte(0xff) + cborByteStringWithIndefiniteLengthHead = byte(0x5f) + cborTextStringWithIndefiniteLengthHead = byte(0x7f) + cborArrayWithIndefiniteLengthHead = byte(0x9f) + cborMapWithIndefiniteLengthHead = byte(0xbf) +) + +var ( + cborFalse = []byte{0xf4} + cborTrue = []byte{0xf5} + cborNil = []byte{0xf6} + cborNaN = []byte{0xf9, 0x7e, 0x00} + cborPositiveInfinity = []byte{0xf9, 0x7c, 0x00} + cborNegativeInfinity = []byte{0xf9, 0xfc, 0x00} +) + +// validBuiltinTag checks that supported built-in tag numbers are followed by expected content types. +func validBuiltinTag(tagNum uint64, contentHead byte) error { + t := getType(contentHead) + switch tagNum { + case tagNumRFC3339Time: + // Tag content (date/time text string in RFC 3339 format) must be string type. + if t != cborTypeTextString { + return newInadmissibleTagContentTypeError( + tagNumRFC3339Time, + "text string", + t.String()) + } + return nil + + case tagNumEpochTime: + // Tag content (epoch date/time) must be uint, int, or float type. + if t != cborTypePositiveInt && t != cborTypeNegativeInt && (contentHead < 0xf9 || contentHead > 0xfb) { + return newInadmissibleTagContentTypeError( + tagNumEpochTime, + "integer or floating-point number", + t.String()) + } + return nil + + case tagNumUnsignedBignum, tagNumNegativeBignum: + // Tag content (bignum) must be byte type. + if t != cborTypeByteString { + return newInadmissibleTagContentTypeErrorf( + fmt.Sprintf( + "tag number %d or %d must be followed by byte string, got %s", + tagNumUnsignedBignum, + tagNumNegativeBignum, + t.String(), + )) + } + return nil + + case tagNumExpectedLaterEncodingBase64URL, tagNumExpectedLaterEncodingBase64, tagNumExpectedLaterEncodingBase16: + // From RFC 8949 3.4.5.2: + // The data item tagged can be a byte string or any other data item. In the latter + // case, the tag applies to all of the byte string data items contained in the data + // item, except for those contained in a nested data item tagged with an expected + // conversion. + return nil + } + + return nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/decode.go b/api/vendor/github.com/fxamacker/cbor/v2/decode.go new file mode 100644 index 000000000..85842ac73 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/decode.go @@ -0,0 +1,3187 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "encoding" + "encoding/base64" + "encoding/binary" + "encoding/hex" + "errors" + "fmt" + "io" + "math" + "math/big" + "reflect" + "strconv" + "strings" + "time" + "unicode/utf8" + + "github.com/x448/float16" +) + +// Unmarshal parses the CBOR-encoded data into the value pointed to by v +// using default decoding options. If v is nil, not a pointer, or +// a nil pointer, Unmarshal returns an error. +// +// To unmarshal CBOR into a value implementing the Unmarshaler interface, +// Unmarshal calls that value's UnmarshalCBOR method with a valid +// CBOR value. +// +// To unmarshal CBOR byte string into a value implementing the +// encoding.BinaryUnmarshaler interface, Unmarshal calls that value's +// UnmarshalBinary method with decoded CBOR byte string. +// +// To unmarshal CBOR into a pointer, Unmarshal sets the pointer to nil +// if CBOR data is null (0xf6) or undefined (0xf7). Otherwise, Unmarshal +// unmarshals CBOR into the value pointed to by the pointer. If the +// pointer is nil, Unmarshal creates a new value for it to point to. +// +// To unmarshal CBOR into an empty interface value, Unmarshal uses the +// following rules: +// +// CBOR booleans decode to bool. +// CBOR positive integers decode to uint64. +// CBOR negative integers decode to int64 (big.Int if value overflows). +// CBOR floating points decode to float64. +// CBOR byte strings decode to []byte. +// CBOR text strings decode to string. +// CBOR arrays decode to []interface{}. +// CBOR maps decode to map[interface{}]interface{}. +// CBOR null and undefined values decode to nil. +// CBOR times (tag 0 and 1) decode to time.Time. +// CBOR bignums (tag 2 and 3) decode to big.Int. +// CBOR tags with an unrecognized number decode to cbor.Tag +// +// To unmarshal a CBOR array into a slice, Unmarshal allocates a new slice +// if the CBOR array is empty or slice capacity is less than CBOR array length. +// Otherwise Unmarshal overwrites existing elements, and sets slice length +// to CBOR array length. +// +// To unmarshal a CBOR array into a Go array, Unmarshal decodes CBOR array +// elements into Go array elements. If the Go array is smaller than the +// CBOR array, the extra CBOR array elements are discarded. If the CBOR +// array is smaller than the Go array, the extra Go array elements are +// set to zero values. +// +// To unmarshal a CBOR array into a struct, struct must have a special field "_" +// with struct tag `cbor:",toarray"`. Go array elements are decoded into struct +// fields. Any "omitempty" struct field tag option is ignored in this case. +// +// To unmarshal a CBOR map into a map, Unmarshal allocates a new map only if the +// map is nil. Otherwise Unmarshal reuses the existing map and keeps existing +// entries. Unmarshal stores key-value pairs from the CBOR map into Go map. +// See DecOptions.DupMapKey to enable duplicate map key detection. +// +// To unmarshal a CBOR map into a struct, Unmarshal matches CBOR map keys to the +// keys in the following priority: +// +// 1. "cbor" key in struct field tag, +// 2. "json" key in struct field tag, +// 3. struct field name. +// +// Unmarshal tries an exact match for field name, then a case-insensitive match. +// Map key-value pairs without corresponding struct fields are ignored. See +// DecOptions.ExtraReturnErrors to return error at unknown field. +// +// To unmarshal a CBOR text string into a time.Time value, Unmarshal parses text +// string formatted in RFC3339. To unmarshal a CBOR integer/float into a +// time.Time value, Unmarshal creates an unix time with integer/float as seconds +// and fractional seconds since January 1, 1970 UTC. As a special case, Infinite +// and NaN float values decode to time.Time's zero value. +// +// To unmarshal CBOR null (0xf6) and undefined (0xf7) values into a +// slice/map/pointer, Unmarshal sets Go value to nil. Because null is often +// used to mean "not present", unmarshalling CBOR null and undefined value +// into any other Go type has no effect and returns no error. +// +// Unmarshal supports CBOR tag 55799 (self-describe CBOR), tag 0 and 1 (time), +// and tag 2 and 3 (bignum). +// +// Unmarshal returns ExtraneousDataError error (without decoding into v) +// if there are any remaining bytes following the first valid CBOR data item. +// See UnmarshalFirst, if you want to unmarshal only the first +// CBOR data item without ExtraneousDataError caused by remaining bytes. +func Unmarshal(data []byte, v interface{}) error { + return defaultDecMode.Unmarshal(data, v) +} + +// UnmarshalFirst parses the first CBOR data item into the value pointed to by v +// using default decoding options. Any remaining bytes are returned in rest. +// +// If v is nil, not a pointer, or a nil pointer, UnmarshalFirst returns an error. +// +// See the documentation for Unmarshal for details. +func UnmarshalFirst(data []byte, v interface{}) (rest []byte, err error) { + return defaultDecMode.UnmarshalFirst(data, v) +} + +// Valid checks whether data is a well-formed encoded CBOR data item and +// that it complies with default restrictions such as MaxNestedLevels, +// MaxArrayElements, MaxMapPairs, etc. +// +// If there are any remaining bytes after the CBOR data item, +// an ExtraneousDataError is returned. +// +// WARNING: Valid doesn't check if encoded CBOR data item is valid (i.e. validity) +// and RFC 8949 distinctly defines what is "Valid" and what is "Well-formed". +// +// Deprecated: Valid is kept for compatibility and should not be used. +// Use Wellformed instead because it has a more appropriate name. +func Valid(data []byte) error { + return defaultDecMode.Valid(data) +} + +// Wellformed checks whether data is a well-formed encoded CBOR data item and +// that it complies with default restrictions such as MaxNestedLevels, +// MaxArrayElements, MaxMapPairs, etc. +// +// If there are any remaining bytes after the CBOR data item, +// an ExtraneousDataError is returned. +func Wellformed(data []byte) error { + return defaultDecMode.Wellformed(data) +} + +// Unmarshaler is the interface implemented by types that wish to unmarshal +// CBOR data themselves. The input is a valid CBOR value. UnmarshalCBOR +// must copy the CBOR data if it needs to use it after returning. +type Unmarshaler interface { + UnmarshalCBOR([]byte) error +} + +// InvalidUnmarshalError describes an invalid argument passed to Unmarshal. +type InvalidUnmarshalError struct { + s string +} + +func (e *InvalidUnmarshalError) Error() string { + return e.s +} + +// UnmarshalTypeError describes a CBOR value that can't be decoded to a Go type. +type UnmarshalTypeError struct { + CBORType string // type of CBOR value + GoType string // type of Go value it could not be decoded into + StructFieldName string // name of the struct field holding the Go value (optional) + errorMsg string // additional error message (optional) +} + +func (e *UnmarshalTypeError) Error() string { + var s string + if e.StructFieldName != "" { + s = "cbor: cannot unmarshal " + e.CBORType + " into Go struct field " + e.StructFieldName + " of type " + e.GoType + } else { + s = "cbor: cannot unmarshal " + e.CBORType + " into Go value of type " + e.GoType + } + if e.errorMsg != "" { + s += " (" + e.errorMsg + ")" + } + return s +} + +// InvalidMapKeyTypeError describes invalid Go map key type when decoding CBOR map. +// For example, Go doesn't allow slice as map key. +type InvalidMapKeyTypeError struct { + GoType string +} + +func (e *InvalidMapKeyTypeError) Error() string { + return "cbor: invalid map key type: " + e.GoType +} + +// DupMapKeyError describes detected duplicate map key in CBOR map. +type DupMapKeyError struct { + Key interface{} + Index int +} + +func (e *DupMapKeyError) Error() string { + return fmt.Sprintf("cbor: found duplicate map key \"%v\" at map element index %d", e.Key, e.Index) +} + +// UnknownFieldError describes detected unknown field in CBOR map when decoding to Go struct. +type UnknownFieldError struct { + Index int +} + +func (e *UnknownFieldError) Error() string { + return fmt.Sprintf("cbor: found unknown field at map element index %d", e.Index) +} + +// UnacceptableDataItemError is returned when unmarshaling a CBOR input that contains a data item +// that is not acceptable to a specific CBOR-based application protocol ("invalid or unexpected" as +// described in RFC 8949 Section 5 Paragraph 3). +type UnacceptableDataItemError struct { + CBORType string + Message string +} + +func (e UnacceptableDataItemError) Error() string { + return fmt.Sprintf("cbor: data item of cbor type %s is not accepted by protocol: %s", e.CBORType, e.Message) +} + +// ByteStringExpectedFormatError is returned when unmarshaling CBOR byte string fails when +// using non-default ByteStringExpectedFormat decoding option that makes decoder expect +// a specified format such as base64, hex, etc. +type ByteStringExpectedFormatError struct { + expectedFormatOption ByteStringExpectedFormatMode + err error +} + +func newByteStringExpectedFormatError(expectedFormatOption ByteStringExpectedFormatMode, err error) *ByteStringExpectedFormatError { + return &ByteStringExpectedFormatError{expectedFormatOption, err} +} + +func (e *ByteStringExpectedFormatError) Error() string { + switch e.expectedFormatOption { + case ByteStringExpectedBase64URL: + return fmt.Sprintf("cbor: failed to decode base64url from byte string: %s", e.err) + + case ByteStringExpectedBase64: + return fmt.Sprintf("cbor: failed to decode base64 from byte string: %s", e.err) + + case ByteStringExpectedBase16: + return fmt.Sprintf("cbor: failed to decode hex from byte string: %s", e.err) + + default: + return fmt.Sprintf("cbor: failed to decode byte string in expected format %d: %s", e.expectedFormatOption, e.err) + } +} + +func (e *ByteStringExpectedFormatError) Unwrap() error { + return e.err +} + +// InadmissibleTagContentTypeError is returned when unmarshaling built-in CBOR tags +// fails because of inadmissible type for tag content. Currently, the built-in +// CBOR tags in this codec are tags 0-3 and 21-23. +// See "Tag validity" in RFC 8949 Section 5.3.2. +type InadmissibleTagContentTypeError struct { + s string + tagNum int + expectedTagContentType string + gotTagContentType string +} + +func newInadmissibleTagContentTypeError( + tagNum int, + expectedTagContentType string, + gotTagContentType string, +) *InadmissibleTagContentTypeError { + return &InadmissibleTagContentTypeError{ + tagNum: tagNum, + expectedTagContentType: expectedTagContentType, + gotTagContentType: gotTagContentType, + } +} + +func newInadmissibleTagContentTypeErrorf(s string) *InadmissibleTagContentTypeError { + return &InadmissibleTagContentTypeError{s: "cbor: " + s} //nolint:goconst // ignore "cbor" +} + +func (e *InadmissibleTagContentTypeError) Error() string { + if e.s == "" { + return fmt.Sprintf( + "cbor: tag number %d must be followed by %s, got %s", + e.tagNum, + e.expectedTagContentType, + e.gotTagContentType, + ) + } + return e.s +} + +// DupMapKeyMode specifies how to enforce duplicate map key. Two map keys are considered duplicates if: +// 1. When decoding into a struct, both keys match the same struct field. The keys are also +// considered duplicates if neither matches any field and decoding to interface{} would produce +// equal (==) values for both keys. +// 2. When decoding into a map, both keys are equal (==) when decoded into values of the +// destination map's key type. +type DupMapKeyMode int + +const ( + // DupMapKeyQuiet doesn't enforce duplicate map key. Decoder quietly (no error) + // uses faster of "keep first" or "keep last" depending on Go data type and other factors. + DupMapKeyQuiet DupMapKeyMode = iota + + // DupMapKeyEnforcedAPF enforces detection and rejection of duplicate map keys. + // APF means "Allow Partial Fill" and the destination map or struct can be partially filled. + // If a duplicate map key is detected, DupMapKeyError is returned without further decoding + // of the map. It's the caller's responsibility to respond to DupMapKeyError by + // discarding the partially filled result if their protocol requires it. + // WARNING: using DupMapKeyEnforcedAPF will decrease performance and increase memory use. + DupMapKeyEnforcedAPF + + maxDupMapKeyMode +) + +func (dmkm DupMapKeyMode) valid() bool { + return dmkm >= 0 && dmkm < maxDupMapKeyMode +} + +// IndefLengthMode specifies whether to allow indefinite length items. +type IndefLengthMode int + +const ( + // IndefLengthAllowed allows indefinite length items. + IndefLengthAllowed IndefLengthMode = iota + + // IndefLengthForbidden disallows indefinite length items. + IndefLengthForbidden + + maxIndefLengthMode +) + +func (m IndefLengthMode) valid() bool { + return m >= 0 && m < maxIndefLengthMode +} + +// TagsMode specifies whether to allow CBOR tags. +type TagsMode int + +const ( + // TagsAllowed allows CBOR tags. + TagsAllowed TagsMode = iota + + // TagsForbidden disallows CBOR tags. + TagsForbidden + + maxTagsMode +) + +func (tm TagsMode) valid() bool { + return tm >= 0 && tm < maxTagsMode +} + +// IntDecMode specifies which Go type (int64, uint64, or big.Int) should +// be used when decoding CBOR integers (major type 0 and 1) to Go interface{}. +type IntDecMode int + +const ( + // IntDecConvertNone affects how CBOR integers (major type 0 and 1) decode to Go interface{}. + // It decodes CBOR unsigned integer (major type 0) to: + // - uint64 + // It decodes CBOR negative integer (major type 1) to: + // - int64 if value fits + // - big.Int or *big.Int (see BigIntDecMode) if value doesn't fit into int64 + IntDecConvertNone IntDecMode = iota + + // IntDecConvertSigned affects how CBOR integers (major type 0 and 1) decode to Go interface{}. + // It decodes CBOR integers (major type 0 and 1) to: + // - int64 if value fits + // - big.Int or *big.Int (see BigIntDecMode) if value < math.MinInt64 + // - return UnmarshalTypeError if value > math.MaxInt64 + // Deprecated: IntDecConvertSigned should not be used. + // Please use other options, such as IntDecConvertSignedOrError, IntDecConvertSignedOrBigInt, IntDecConvertNone. + IntDecConvertSigned + + // IntDecConvertSignedOrFail affects how CBOR integers (major type 0 and 1) decode to Go interface{}. + // It decodes CBOR integers (major type 0 and 1) to: + // - int64 if value fits + // - return UnmarshalTypeError if value doesn't fit into int64 + IntDecConvertSignedOrFail + + // IntDecConvertSigned affects how CBOR integers (major type 0 and 1) decode to Go interface{}. + // It makes CBOR integers (major type 0 and 1) decode to: + // - int64 if value fits + // - big.Int or *big.Int (see BigIntDecMode) if value doesn't fit into int64 + IntDecConvertSignedOrBigInt + + maxIntDec +) + +func (idm IntDecMode) valid() bool { + return idm >= 0 && idm < maxIntDec +} + +// MapKeyByteStringMode specifies how to decode CBOR byte string (major type 2) +// as Go map key when decoding CBOR map key into an empty Go interface value. +// Specifically, this option applies when decoding CBOR map into +// - Go empty interface, or +// - Go map with empty interface as key type. +// The CBOR map key types handled by this option are +// - byte string +// - tagged byte string +// - nested tagged byte string +type MapKeyByteStringMode int + +const ( + // MapKeyByteStringAllowed allows CBOR byte string to be decoded as Go map key. + // Since Go doesn't allow []byte as map key, CBOR byte string is decoded to + // ByteString which has underlying string type. + // This is the default setting. + MapKeyByteStringAllowed MapKeyByteStringMode = iota + + // MapKeyByteStringForbidden forbids CBOR byte string being decoded as Go map key. + // Attempting to decode CBOR byte string as map key into empty interface value + // returns a decoding error. + MapKeyByteStringForbidden + + maxMapKeyByteStringMode +) + +func (mkbsm MapKeyByteStringMode) valid() bool { + return mkbsm >= 0 && mkbsm < maxMapKeyByteStringMode +} + +// ExtraDecErrorCond specifies extra conditions that should be treated as errors. +type ExtraDecErrorCond uint + +// ExtraDecErrorNone indicates no extra error condition. +const ExtraDecErrorNone ExtraDecErrorCond = 0 + +const ( + // ExtraDecErrorUnknownField indicates error condition when destination + // Go struct doesn't have a field matching a CBOR map key. + ExtraDecErrorUnknownField ExtraDecErrorCond = 1 << iota + + maxExtraDecError +) + +func (ec ExtraDecErrorCond) valid() bool { + return ec < maxExtraDecError +} + +// UTF8Mode option specifies if decoder should +// decode CBOR Text containing invalid UTF-8 string. +type UTF8Mode int + +const ( + // UTF8RejectInvalid rejects CBOR Text containing + // invalid UTF-8 string. + UTF8RejectInvalid UTF8Mode = iota + + // UTF8DecodeInvalid allows decoding CBOR Text containing + // invalid UTF-8 string. + UTF8DecodeInvalid + + maxUTF8Mode +) + +func (um UTF8Mode) valid() bool { + return um >= 0 && um < maxUTF8Mode +} + +// FieldNameMatchingMode specifies how string keys in CBOR maps are matched to Go struct field names. +type FieldNameMatchingMode int + +const ( + // FieldNameMatchingPreferCaseSensitive prefers to decode map items into struct fields whose names (or tag + // names) exactly match the item's key. If there is no such field, a map item will be decoded into a field whose + // name is a case-insensitive match for the item's key. + FieldNameMatchingPreferCaseSensitive FieldNameMatchingMode = iota + + // FieldNameMatchingCaseSensitive decodes map items only into a struct field whose name (or tag name) is an + // exact match for the item's key. + FieldNameMatchingCaseSensitive + + maxFieldNameMatchingMode +) + +func (fnmm FieldNameMatchingMode) valid() bool { + return fnmm >= 0 && fnmm < maxFieldNameMatchingMode +} + +// BigIntDecMode specifies how to decode CBOR bignum to Go interface{}. +type BigIntDecMode int + +const ( + // BigIntDecodeValue makes CBOR bignum decode to big.Int (instead of *big.Int) + // when unmarshalling into a Go interface{}. + BigIntDecodeValue BigIntDecMode = iota + + // BigIntDecodePointer makes CBOR bignum decode to *big.Int when + // unmarshalling into a Go interface{}. + BigIntDecodePointer + + maxBigIntDecMode +) + +func (bidm BigIntDecMode) valid() bool { + return bidm >= 0 && bidm < maxBigIntDecMode +} + +// ByteStringToStringMode specifies the behavior when decoding a CBOR byte string into a Go string. +type ByteStringToStringMode int + +const ( + // ByteStringToStringForbidden generates an error on an attempt to decode a CBOR byte string into a Go string. + ByteStringToStringForbidden ByteStringToStringMode = iota + + // ByteStringToStringAllowed permits decoding a CBOR byte string into a Go string. + ByteStringToStringAllowed + + // ByteStringToStringAllowedWithExpectedLaterEncoding permits decoding a CBOR byte string + // into a Go string. Also, if the byte string is enclosed (directly or indirectly) by one of + // the "expected later encoding" tags (numbers 21 through 23), the destination string will + // be populated by applying the designated text encoding to the contents of the input byte + // string. + ByteStringToStringAllowedWithExpectedLaterEncoding + + maxByteStringToStringMode +) + +func (bstsm ByteStringToStringMode) valid() bool { + return bstsm >= 0 && bstsm < maxByteStringToStringMode +} + +// FieldNameByteStringMode specifies the behavior when decoding a CBOR byte string map key as a Go struct field name. +type FieldNameByteStringMode int + +const ( + // FieldNameByteStringForbidden generates an error on an attempt to decode a CBOR byte string map key as a Go struct field name. + FieldNameByteStringForbidden FieldNameByteStringMode = iota + + // FieldNameByteStringAllowed permits CBOR byte string map keys to be recognized as Go struct field names. + FieldNameByteStringAllowed + + maxFieldNameByteStringMode +) + +func (fnbsm FieldNameByteStringMode) valid() bool { + return fnbsm >= 0 && fnbsm < maxFieldNameByteStringMode +} + +// UnrecognizedTagToAnyMode specifies how to decode unrecognized CBOR tag into an empty interface (any). +// Currently, recognized CBOR tag numbers are 0, 1, 2, 3, or registered by TagSet. +type UnrecognizedTagToAnyMode int + +const ( + // UnrecognizedTagNumAndContentToAny decodes CBOR tag number and tag content to cbor.Tag + // when decoding unrecognized CBOR tag into an empty interface. + UnrecognizedTagNumAndContentToAny UnrecognizedTagToAnyMode = iota + + // UnrecognizedTagContentToAny decodes only CBOR tag content (into its default type) + // when decoding unrecognized CBOR tag into an empty interface. + UnrecognizedTagContentToAny + + maxUnrecognizedTagToAny +) + +func (uttam UnrecognizedTagToAnyMode) valid() bool { + return uttam >= 0 && uttam < maxUnrecognizedTagToAny +} + +// TimeTagToAnyMode specifies how to decode CBOR tag 0 and 1 into an empty interface (any). +// Based on the specified mode, Unmarshal can return a time.Time value or a time string in a specific format. +type TimeTagToAnyMode int + +const ( + // TimeTagToTime decodes CBOR tag 0 and 1 into a time.Time value + // when decoding tag 0 or 1 into an empty interface. + TimeTagToTime TimeTagToAnyMode = iota + + // TimeTagToRFC3339 decodes CBOR tag 0 and 1 into a time string in RFC3339 format + // when decoding tag 0 or 1 into an empty interface. + TimeTagToRFC3339 + + // TimeTagToRFC3339Nano decodes CBOR tag 0 and 1 into a time string in RFC3339Nano format + // when decoding tag 0 or 1 into an empty interface. + TimeTagToRFC3339Nano + + maxTimeTagToAnyMode +) + +func (tttam TimeTagToAnyMode) valid() bool { + return tttam >= 0 && tttam < maxTimeTagToAnyMode +} + +// SimpleValueRegistry is a registry of unmarshaling behaviors for each possible CBOR simple value +// number (0...23 and 32...255). +type SimpleValueRegistry struct { + rejected [256]bool +} + +// WithRejectedSimpleValue registers the given simple value as rejected. If the simple value is +// encountered in a CBOR input during unmarshaling, an UnacceptableDataItemError is returned. +func WithRejectedSimpleValue(sv SimpleValue) func(*SimpleValueRegistry) error { + return func(r *SimpleValueRegistry) error { + if sv >= 24 && sv <= 31 { + return fmt.Errorf("cbor: cannot set analog for reserved simple value %d", sv) + } + r.rejected[sv] = true + return nil + } +} + +// Creates a new SimpleValueRegistry. The registry state is initialized by executing the provided +// functions in order against a registry that is pre-populated with the defaults for all well-formed +// simple value numbers. +func NewSimpleValueRegistryFromDefaults(fns ...func(*SimpleValueRegistry) error) (*SimpleValueRegistry, error) { + var r SimpleValueRegistry + for _, fn := range fns { + if err := fn(&r); err != nil { + return nil, err + } + } + return &r, nil +} + +// NaNMode specifies how to decode floating-point values (major type 7, additional information 25 +// through 27) representing NaN (not-a-number). +type NaNMode int + +const ( + // NaNDecodeAllowed will decode NaN values to Go float32 or float64. + NaNDecodeAllowed NaNMode = iota + + // NaNDecodeForbidden will return an UnacceptableDataItemError on an attempt to decode a NaN value. + NaNDecodeForbidden + + maxNaNDecode +) + +func (ndm NaNMode) valid() bool { + return ndm >= 0 && ndm < maxNaNDecode +} + +// InfMode specifies how to decode floating-point values (major type 7, additional information 25 +// through 27) representing positive or negative infinity. +type InfMode int + +const ( + // InfDecodeAllowed will decode infinite values to Go float32 or float64. + InfDecodeAllowed InfMode = iota + + // InfDecodeForbidden will return an UnacceptableDataItemError on an attempt to decode an + // infinite value. + InfDecodeForbidden + + maxInfDecode +) + +func (idm InfMode) valid() bool { + return idm >= 0 && idm < maxInfDecode +} + +// ByteStringToTimeMode specifies the behavior when decoding a CBOR byte string into a Go time.Time. +type ByteStringToTimeMode int + +const ( + // ByteStringToTimeForbidden generates an error on an attempt to decode a CBOR byte string into a Go time.Time. + ByteStringToTimeForbidden ByteStringToTimeMode = iota + + // ByteStringToTimeAllowed permits decoding a CBOR byte string into a Go time.Time. + ByteStringToTimeAllowed + + maxByteStringToTimeMode +) + +func (bttm ByteStringToTimeMode) valid() bool { + return bttm >= 0 && bttm < maxByteStringToTimeMode +} + +// ByteStringExpectedFormatMode specifies how to decode CBOR byte string into Go byte slice +// when the byte string is NOT enclosed in CBOR tag 21, 22, or 23. An error is returned if +// the CBOR byte string does not contain the expected format (e.g. base64) specified. +// For tags 21-23, see "Expected Later Encoding for CBOR-to-JSON Converters" +// in RFC 8949 Section 3.4.5.2. +type ByteStringExpectedFormatMode int + +const ( + // ByteStringExpectedFormatNone copies the unmodified CBOR byte string into Go byte slice + // if the byte string is not tagged by CBOR tag 21-23. + ByteStringExpectedFormatNone ByteStringExpectedFormatMode = iota + + // ByteStringExpectedBase64URL expects CBOR byte strings to contain base64url-encoded bytes + // if the byte string is not tagged by CBOR tag 21-23. The decoder will attempt to decode + // the base64url-encoded bytes into Go slice. + ByteStringExpectedBase64URL + + // ByteStringExpectedBase64 expects CBOR byte strings to contain base64-encoded bytes + // if the byte string is not tagged by CBOR tag 21-23. The decoder will attempt to decode + // the base64-encoded bytes into Go slice. + ByteStringExpectedBase64 + + // ByteStringExpectedBase16 expects CBOR byte strings to contain base16-encoded bytes + // if the byte string is not tagged by CBOR tag 21-23. The decoder will attempt to decode + // the base16-encoded bytes into Go slice. + ByteStringExpectedBase16 + + maxByteStringExpectedFormatMode +) + +func (bsefm ByteStringExpectedFormatMode) valid() bool { + return bsefm >= 0 && bsefm < maxByteStringExpectedFormatMode +} + +// BignumTagMode specifies whether or not the "bignum" tags 2 and 3 (RFC 8949 Section 3.4.3) can be +// decoded. +type BignumTagMode int + +const ( + // BignumTagAllowed allows bignum tags to be decoded. + BignumTagAllowed BignumTagMode = iota + + // BignumTagForbidden produces an UnacceptableDataItemError during Unmarshal if a bignum tag + // is encountered in the input. + BignumTagForbidden + + maxBignumTag +) + +func (btm BignumTagMode) valid() bool { + return btm >= 0 && btm < maxBignumTag +} + +// BinaryUnmarshalerMode specifies how to decode into types that implement +// encoding.BinaryUnmarshaler. +type BinaryUnmarshalerMode int + +const ( + // BinaryUnmarshalerByteString will invoke UnmarshalBinary on the contents of a CBOR byte + // string when decoding into a value that implements BinaryUnmarshaler. + BinaryUnmarshalerByteString BinaryUnmarshalerMode = iota + + // BinaryUnmarshalerNone does not recognize BinaryUnmarshaler implementations during decode. + BinaryUnmarshalerNone + + maxBinaryUnmarshalerMode +) + +func (bum BinaryUnmarshalerMode) valid() bool { + return bum >= 0 && bum < maxBinaryUnmarshalerMode +} + +// DecOptions specifies decoding options. +type DecOptions struct { + // DupMapKey specifies whether to enforce duplicate map key. + DupMapKey DupMapKeyMode + + // TimeTag specifies whether or not untagged data items, or tags other + // than tag 0 and tag 1, can be decoded to time.Time. If tag 0 or tag 1 + // appears in an input, the type of its content is always validated as + // specified in RFC 8949. That behavior is not controlled by this + // option. The behavior of the supported modes are: + // + // DecTagIgnored (default): Untagged text strings and text strings + // enclosed in tags other than 0 and 1 are decoded as though enclosed + // in tag 0. Untagged unsigned integers, negative integers, and + // floating-point numbers (or those enclosed in tags other than 0 and + // 1) are decoded as though enclosed in tag 1. Decoding a tag other + // than 0 or 1 enclosing simple values null or undefined into a + // time.Time does not modify the destination value. + // + // DecTagOptional: Untagged text strings are decoded as though + // enclosed in tag 0. Untagged unsigned integers, negative integers, + // and floating-point numbers are decoded as though enclosed in tag + // 1. Tags other than 0 and 1 will produce an error on attempts to + // decode them into a time.Time. + // + // DecTagRequired: Only tags 0 and 1 can be decoded to time.Time. Any + // other input will produce an error. + TimeTag DecTagMode + + // MaxNestedLevels specifies the max nested levels allowed for any combination of CBOR array, maps, and tags. + // Default is 32 levels and it can be set to [4, 65535]. Note that higher maximum levels of nesting can + // require larger amounts of stack to deserialize. Don't increase this higher than you require. + MaxNestedLevels int + + // MaxArrayElements specifies the max number of elements for CBOR arrays. + // Default is 128*1024=131072 and it can be set to [16, 2147483647] + MaxArrayElements int + + // MaxMapPairs specifies the max number of key-value pairs for CBOR maps. + // Default is 128*1024=131072 and it can be set to [16, 2147483647] + MaxMapPairs int + + // IndefLength specifies whether to allow indefinite length CBOR items. + IndefLength IndefLengthMode + + // TagsMd specifies whether to allow CBOR tags (major type 6). + TagsMd TagsMode + + // IntDec specifies which Go integer type (int64 or uint64) to use + // when decoding CBOR int (major type 0 and 1) to Go interface{}. + IntDec IntDecMode + + // MapKeyByteString specifies how to decode CBOR byte string as map key + // when decoding CBOR map with byte string key into an empty interface value. + // By default, an error is returned when attempting to decode CBOR byte string + // as map key because Go doesn't allow []byte as map key. + MapKeyByteString MapKeyByteStringMode + + // ExtraReturnErrors specifies extra conditions that should be treated as errors. + ExtraReturnErrors ExtraDecErrorCond + + // DefaultMapType specifies Go map type to create and decode to + // when unmarshalling CBOR into an empty interface value. + // By default, unmarshal uses map[interface{}]interface{}. + DefaultMapType reflect.Type + + // UTF8 specifies if decoder should decode CBOR Text containing invalid UTF-8. + // By default, unmarshal rejects CBOR text containing invalid UTF-8. + UTF8 UTF8Mode + + // FieldNameMatching specifies how string keys in CBOR maps are matched to Go struct field names. + FieldNameMatching FieldNameMatchingMode + + // BigIntDec specifies how to decode CBOR bignum to Go interface{}. + BigIntDec BigIntDecMode + + // DefaultByteStringType is the Go type that should be produced when decoding a CBOR byte + // string into an empty interface value. Types to which a []byte is convertible are valid + // for this option, except for array and pointer-to-array types. If nil, the default is + // []byte. + DefaultByteStringType reflect.Type + + // ByteStringToString specifies the behavior when decoding a CBOR byte string into a Go string. + ByteStringToString ByteStringToStringMode + + // FieldNameByteString specifies the behavior when decoding a CBOR byte string map key as a + // Go struct field name. + FieldNameByteString FieldNameByteStringMode + + // UnrecognizedTagToAny specifies how to decode unrecognized CBOR tag into an empty interface. + // Currently, recognized CBOR tag numbers are 0, 1, 2, 3, or registered by TagSet. + UnrecognizedTagToAny UnrecognizedTagToAnyMode + + // TimeTagToAny specifies how to decode CBOR tag 0 and 1 into an empty interface (any). + // Based on the specified mode, Unmarshal can return a time.Time value or a time string in a specific format. + TimeTagToAny TimeTagToAnyMode + + // SimpleValues is an immutable mapping from each CBOR simple value to a corresponding + // unmarshal behavior. If nil, the simple values false, true, null, and undefined are mapped + // to the Go analog values false, true, nil, and nil, respectively, and all other simple + // values N (except the reserved simple values 24 through 31) are mapped to + // cbor.SimpleValue(N). In other words, all well-formed simple values can be decoded. + // + // Users may provide a custom SimpleValueRegistry constructed via + // NewSimpleValueRegistryFromDefaults. + SimpleValues *SimpleValueRegistry + + // NaN specifies how to decode floating-point values (major type 7, additional information + // 25 through 27) representing NaN (not-a-number). + NaN NaNMode + + // Inf specifies how to decode floating-point values (major type 7, additional information + // 25 through 27) representing positive or negative infinity. + Inf InfMode + + // ByteStringToTime specifies how to decode CBOR byte string into Go time.Time. + ByteStringToTime ByteStringToTimeMode + + // ByteStringExpectedFormat specifies how to decode CBOR byte string into Go byte slice + // when the byte string is NOT enclosed in CBOR tag 21, 22, or 23. An error is returned if + // the CBOR byte string does not contain the expected format (e.g. base64) specified. + // For tags 21-23, see "Expected Later Encoding for CBOR-to-JSON Converters" + // in RFC 8949 Section 3.4.5.2. + ByteStringExpectedFormat ByteStringExpectedFormatMode + + // BignumTag specifies whether or not the "bignum" tags 2 and 3 (RFC 8949 Section 3.4.3) can + // be decoded. Unlike BigIntDec, this option applies to all bignum tags encountered in a + // CBOR input, independent of the type of the destination value of a particular Unmarshal + // operation. + BignumTag BignumTagMode + + // BinaryUnmarshaler specifies how to decode into types that implement + // encoding.BinaryUnmarshaler. + BinaryUnmarshaler BinaryUnmarshalerMode +} + +// DecMode returns DecMode with immutable options and no tags (safe for concurrency). +func (opts DecOptions) DecMode() (DecMode, error) { //nolint:gocritic // ignore hugeParam + return opts.decMode() +} + +// validForTags checks that the provided tag set is compatible with these options and returns a +// non-nil error if and only if the provided tag set is incompatible. +func (opts DecOptions) validForTags(tags TagSet) error { //nolint:gocritic // ignore hugeParam + if opts.TagsMd == TagsForbidden { + return errors.New("cbor: cannot create DecMode with TagSet when TagsMd is TagsForbidden") + } + if tags == nil { + return errors.New("cbor: cannot create DecMode with nil value as TagSet") + } + if opts.ByteStringToString == ByteStringToStringAllowedWithExpectedLaterEncoding || + opts.ByteStringExpectedFormat != ByteStringExpectedFormatNone { + for _, tagNum := range []uint64{ + tagNumExpectedLaterEncodingBase64URL, + tagNumExpectedLaterEncodingBase64, + tagNumExpectedLaterEncodingBase16, + } { + if rt := tags.getTypeFromTagNum([]uint64{tagNum}); rt != nil { + return fmt.Errorf("cbor: DecMode with non-default StringExpectedEncoding or ByteSliceExpectedEncoding treats tag %d as built-in and conflicts with the provided TagSet's registration of %v", tagNum, rt) + } + } + + } + return nil +} + +// DecModeWithTags returns DecMode with options and tags that are both immutable (safe for concurrency). +func (opts DecOptions) DecModeWithTags(tags TagSet) (DecMode, error) { //nolint:gocritic // ignore hugeParam + if err := opts.validForTags(tags); err != nil { + return nil, err + } + dm, err := opts.decMode() + if err != nil { + return nil, err + } + + // Copy tags + ts := tagSet(make(map[reflect.Type]*tagItem)) + syncTags := tags.(*syncTagSet) + syncTags.RLock() + for contentType, tag := range syncTags.t { + if tag.opts.DecTag != DecTagIgnored { + ts[contentType] = tag + } + } + syncTags.RUnlock() + + if len(ts) > 0 { + dm.tags = ts + } + + return dm, nil +} + +// DecModeWithSharedTags returns DecMode with immutable options and mutable shared tags (safe for concurrency). +func (opts DecOptions) DecModeWithSharedTags(tags TagSet) (DecMode, error) { //nolint:gocritic // ignore hugeParam + if err := opts.validForTags(tags); err != nil { + return nil, err + } + dm, err := opts.decMode() + if err != nil { + return nil, err + } + dm.tags = tags + return dm, nil +} + +const ( + defaultMaxArrayElements = 131072 + minMaxArrayElements = 16 + maxMaxArrayElements = 2147483647 + + defaultMaxMapPairs = 131072 + minMaxMapPairs = 16 + maxMaxMapPairs = 2147483647 + + defaultMaxNestedLevels = 32 + minMaxNestedLevels = 4 + maxMaxNestedLevels = 65535 +) + +var defaultSimpleValues = func() *SimpleValueRegistry { + registry, err := NewSimpleValueRegistryFromDefaults() + if err != nil { + panic(err) + } + return registry +}() + +//nolint:gocyclo // Each option comes with some manageable boilerplate +func (opts DecOptions) decMode() (*decMode, error) { //nolint:gocritic // ignore hugeParam + if !opts.DupMapKey.valid() { + return nil, errors.New("cbor: invalid DupMapKey " + strconv.Itoa(int(opts.DupMapKey))) + } + + if !opts.TimeTag.valid() { + return nil, errors.New("cbor: invalid TimeTag " + strconv.Itoa(int(opts.TimeTag))) + } + + if !opts.IndefLength.valid() { + return nil, errors.New("cbor: invalid IndefLength " + strconv.Itoa(int(opts.IndefLength))) + } + + if !opts.TagsMd.valid() { + return nil, errors.New("cbor: invalid TagsMd " + strconv.Itoa(int(opts.TagsMd))) + } + + if !opts.IntDec.valid() { + return nil, errors.New("cbor: invalid IntDec " + strconv.Itoa(int(opts.IntDec))) + } + + if !opts.MapKeyByteString.valid() { + return nil, errors.New("cbor: invalid MapKeyByteString " + strconv.Itoa(int(opts.MapKeyByteString))) + } + + if opts.MaxNestedLevels == 0 { + opts.MaxNestedLevels = defaultMaxNestedLevels + } else if opts.MaxNestedLevels < minMaxNestedLevels || opts.MaxNestedLevels > maxMaxNestedLevels { + return nil, errors.New("cbor: invalid MaxNestedLevels " + strconv.Itoa(opts.MaxNestedLevels) + + " (range is [" + strconv.Itoa(minMaxNestedLevels) + ", " + strconv.Itoa(maxMaxNestedLevels) + "])") + } + + if opts.MaxArrayElements == 0 { + opts.MaxArrayElements = defaultMaxArrayElements + } else if opts.MaxArrayElements < minMaxArrayElements || opts.MaxArrayElements > maxMaxArrayElements { + return nil, errors.New("cbor: invalid MaxArrayElements " + strconv.Itoa(opts.MaxArrayElements) + + " (range is [" + strconv.Itoa(minMaxArrayElements) + ", " + strconv.Itoa(maxMaxArrayElements) + "])") + } + + if opts.MaxMapPairs == 0 { + opts.MaxMapPairs = defaultMaxMapPairs + } else if opts.MaxMapPairs < minMaxMapPairs || opts.MaxMapPairs > maxMaxMapPairs { + return nil, errors.New("cbor: invalid MaxMapPairs " + strconv.Itoa(opts.MaxMapPairs) + + " (range is [" + strconv.Itoa(minMaxMapPairs) + ", " + strconv.Itoa(maxMaxMapPairs) + "])") + } + + if !opts.ExtraReturnErrors.valid() { + return nil, errors.New("cbor: invalid ExtraReturnErrors " + strconv.Itoa(int(opts.ExtraReturnErrors))) + } + + if opts.DefaultMapType != nil && opts.DefaultMapType.Kind() != reflect.Map { + return nil, fmt.Errorf("cbor: invalid DefaultMapType %s", opts.DefaultMapType) + } + + if !opts.UTF8.valid() { + return nil, errors.New("cbor: invalid UTF8 " + strconv.Itoa(int(opts.UTF8))) + } + + if !opts.FieldNameMatching.valid() { + return nil, errors.New("cbor: invalid FieldNameMatching " + strconv.Itoa(int(opts.FieldNameMatching))) + } + + if !opts.BigIntDec.valid() { + return nil, errors.New("cbor: invalid BigIntDec " + strconv.Itoa(int(opts.BigIntDec))) + } + + if opts.DefaultByteStringType != nil && + opts.DefaultByteStringType.Kind() != reflect.String && + (opts.DefaultByteStringType.Kind() != reflect.Slice || opts.DefaultByteStringType.Elem().Kind() != reflect.Uint8) { + return nil, fmt.Errorf("cbor: invalid DefaultByteStringType: %s is not of kind string or []uint8", opts.DefaultByteStringType) + } + + if !opts.ByteStringToString.valid() { + return nil, errors.New("cbor: invalid ByteStringToString " + strconv.Itoa(int(opts.ByteStringToString))) + } + + if !opts.FieldNameByteString.valid() { + return nil, errors.New("cbor: invalid FieldNameByteString " + strconv.Itoa(int(opts.FieldNameByteString))) + } + + if !opts.UnrecognizedTagToAny.valid() { + return nil, errors.New("cbor: invalid UnrecognizedTagToAnyMode " + strconv.Itoa(int(opts.UnrecognizedTagToAny))) + } + simpleValues := opts.SimpleValues + if simpleValues == nil { + simpleValues = defaultSimpleValues + } + + if !opts.TimeTagToAny.valid() { + return nil, errors.New("cbor: invalid TimeTagToAny " + strconv.Itoa(int(opts.TimeTagToAny))) + } + + if !opts.NaN.valid() { + return nil, errors.New("cbor: invalid NaNDec " + strconv.Itoa(int(opts.NaN))) + } + + if !opts.Inf.valid() { + return nil, errors.New("cbor: invalid InfDec " + strconv.Itoa(int(opts.Inf))) + } + + if !opts.ByteStringToTime.valid() { + return nil, errors.New("cbor: invalid ByteStringToTime " + strconv.Itoa(int(opts.ByteStringToTime))) + } + + if !opts.ByteStringExpectedFormat.valid() { + return nil, errors.New("cbor: invalid ByteStringExpectedFormat " + strconv.Itoa(int(opts.ByteStringExpectedFormat))) + } + + if !opts.BignumTag.valid() { + return nil, errors.New("cbor: invalid BignumTag " + strconv.Itoa(int(opts.BignumTag))) + } + + if !opts.BinaryUnmarshaler.valid() { + return nil, errors.New("cbor: invalid BinaryUnmarshaler " + strconv.Itoa(int(opts.BinaryUnmarshaler))) + } + + dm := decMode{ + dupMapKey: opts.DupMapKey, + timeTag: opts.TimeTag, + maxNestedLevels: opts.MaxNestedLevels, + maxArrayElements: opts.MaxArrayElements, + maxMapPairs: opts.MaxMapPairs, + indefLength: opts.IndefLength, + tagsMd: opts.TagsMd, + intDec: opts.IntDec, + mapKeyByteString: opts.MapKeyByteString, + extraReturnErrors: opts.ExtraReturnErrors, + defaultMapType: opts.DefaultMapType, + utf8: opts.UTF8, + fieldNameMatching: opts.FieldNameMatching, + bigIntDec: opts.BigIntDec, + defaultByteStringType: opts.DefaultByteStringType, + byteStringToString: opts.ByteStringToString, + fieldNameByteString: opts.FieldNameByteString, + unrecognizedTagToAny: opts.UnrecognizedTagToAny, + timeTagToAny: opts.TimeTagToAny, + simpleValues: simpleValues, + nanDec: opts.NaN, + infDec: opts.Inf, + byteStringToTime: opts.ByteStringToTime, + byteStringExpectedFormat: opts.ByteStringExpectedFormat, + bignumTag: opts.BignumTag, + binaryUnmarshaler: opts.BinaryUnmarshaler, + } + + return &dm, nil +} + +// DecMode is the main interface for CBOR decoding. +type DecMode interface { + // Unmarshal parses the CBOR-encoded data into the value pointed to by v + // using the decoding mode. If v is nil, not a pointer, or a nil pointer, + // Unmarshal returns an error. + // + // See the documentation for Unmarshal for details. + Unmarshal(data []byte, v interface{}) error + + // UnmarshalFirst parses the first CBOR data item into the value pointed to by v + // using the decoding mode. Any remaining bytes are returned in rest. + // + // If v is nil, not a pointer, or a nil pointer, UnmarshalFirst returns an error. + // + // See the documentation for Unmarshal for details. + UnmarshalFirst(data []byte, v interface{}) (rest []byte, err error) + + // Valid checks whether data is a well-formed encoded CBOR data item and + // that it complies with configurable restrictions such as MaxNestedLevels, + // MaxArrayElements, MaxMapPairs, etc. + // + // If there are any remaining bytes after the CBOR data item, + // an ExtraneousDataError is returned. + // + // WARNING: Valid doesn't check if encoded CBOR data item is valid (i.e. validity) + // and RFC 8949 distinctly defines what is "Valid" and what is "Well-formed". + // + // Deprecated: Valid is kept for compatibility and should not be used. + // Use Wellformed instead because it has a more appropriate name. + Valid(data []byte) error + + // Wellformed checks whether data is a well-formed encoded CBOR data item and + // that it complies with configurable restrictions such as MaxNestedLevels, + // MaxArrayElements, MaxMapPairs, etc. + // + // If there are any remaining bytes after the CBOR data item, + // an ExtraneousDataError is returned. + Wellformed(data []byte) error + + // NewDecoder returns a new decoder that reads from r using dm DecMode. + NewDecoder(r io.Reader) *Decoder + + // DecOptions returns user specified options used to create this DecMode. + DecOptions() DecOptions +} + +type decMode struct { + tags tagProvider + dupMapKey DupMapKeyMode + timeTag DecTagMode + maxNestedLevels int + maxArrayElements int + maxMapPairs int + indefLength IndefLengthMode + tagsMd TagsMode + intDec IntDecMode + mapKeyByteString MapKeyByteStringMode + extraReturnErrors ExtraDecErrorCond + defaultMapType reflect.Type + utf8 UTF8Mode + fieldNameMatching FieldNameMatchingMode + bigIntDec BigIntDecMode + defaultByteStringType reflect.Type + byteStringToString ByteStringToStringMode + fieldNameByteString FieldNameByteStringMode + unrecognizedTagToAny UnrecognizedTagToAnyMode + timeTagToAny TimeTagToAnyMode + simpleValues *SimpleValueRegistry + nanDec NaNMode + infDec InfMode + byteStringToTime ByteStringToTimeMode + byteStringExpectedFormat ByteStringExpectedFormatMode + bignumTag BignumTagMode + binaryUnmarshaler BinaryUnmarshalerMode +} + +var defaultDecMode, _ = DecOptions{}.decMode() + +// DecOptions returns user specified options used to create this DecMode. +func (dm *decMode) DecOptions() DecOptions { + simpleValues := dm.simpleValues + if simpleValues == defaultSimpleValues { + // Users can't explicitly set this to defaultSimpleValues. It must have been nil in + // the original DecOptions. + simpleValues = nil + } + + return DecOptions{ + DupMapKey: dm.dupMapKey, + TimeTag: dm.timeTag, + MaxNestedLevels: dm.maxNestedLevels, + MaxArrayElements: dm.maxArrayElements, + MaxMapPairs: dm.maxMapPairs, + IndefLength: dm.indefLength, + TagsMd: dm.tagsMd, + IntDec: dm.intDec, + MapKeyByteString: dm.mapKeyByteString, + ExtraReturnErrors: dm.extraReturnErrors, + DefaultMapType: dm.defaultMapType, + UTF8: dm.utf8, + FieldNameMatching: dm.fieldNameMatching, + BigIntDec: dm.bigIntDec, + DefaultByteStringType: dm.defaultByteStringType, + ByteStringToString: dm.byteStringToString, + FieldNameByteString: dm.fieldNameByteString, + UnrecognizedTagToAny: dm.unrecognizedTagToAny, + TimeTagToAny: dm.timeTagToAny, + SimpleValues: simpleValues, + NaN: dm.nanDec, + Inf: dm.infDec, + ByteStringToTime: dm.byteStringToTime, + ByteStringExpectedFormat: dm.byteStringExpectedFormat, + BignumTag: dm.bignumTag, + BinaryUnmarshaler: dm.binaryUnmarshaler, + } +} + +// Unmarshal parses the CBOR-encoded data into the value pointed to by v +// using dm decoding mode. If v is nil, not a pointer, or a nil pointer, +// Unmarshal returns an error. +// +// See the documentation for Unmarshal for details. +func (dm *decMode) Unmarshal(data []byte, v interface{}) error { + d := decoder{data: data, dm: dm} + + // Check well-formedness. + off := d.off // Save offset before data validation + err := d.wellformed(false, false) // don't allow any extra data after valid data item. + d.off = off // Restore offset + if err != nil { + return err + } + + return d.value(v) +} + +// UnmarshalFirst parses the first CBOR data item into the value pointed to by v +// using dm decoding mode. Any remaining bytes are returned in rest. +// +// If v is nil, not a pointer, or a nil pointer, UnmarshalFirst returns an error. +// +// See the documentation for Unmarshal for details. +func (dm *decMode) UnmarshalFirst(data []byte, v interface{}) (rest []byte, err error) { + d := decoder{data: data, dm: dm} + + // check well-formedness. + off := d.off // Save offset before data validation + err = d.wellformed(true, false) // allow extra data after well-formed data item + d.off = off // Restore offset + + // If it is well-formed, parse the value. This is structured like this to allow + // better test coverage + if err == nil { + err = d.value(v) + } + + // If either wellformed or value returned an error, do not return rest bytes + if err != nil { + return nil, err + } + + // Return the rest of the data slice (which might be len 0) + return d.data[d.off:], nil +} + +// Valid checks whether data is a well-formed encoded CBOR data item and +// that it complies with configurable restrictions such as MaxNestedLevels, +// MaxArrayElements, MaxMapPairs, etc. +// +// If there are any remaining bytes after the CBOR data item, +// an ExtraneousDataError is returned. +// +// WARNING: Valid doesn't check if encoded CBOR data item is valid (i.e. validity) +// and RFC 8949 distinctly defines what is "Valid" and what is "Well-formed". +// +// Deprecated: Valid is kept for compatibility and should not be used. +// Use Wellformed instead because it has a more appropriate name. +func (dm *decMode) Valid(data []byte) error { + return dm.Wellformed(data) +} + +// Wellformed checks whether data is a well-formed encoded CBOR data item and +// that it complies with configurable restrictions such as MaxNestedLevels, +// MaxArrayElements, MaxMapPairs, etc. +// +// If there are any remaining bytes after the CBOR data item, +// an ExtraneousDataError is returned. +func (dm *decMode) Wellformed(data []byte) error { + d := decoder{data: data, dm: dm} + return d.wellformed(false, false) +} + +// NewDecoder returns a new decoder that reads from r using dm DecMode. +func (dm *decMode) NewDecoder(r io.Reader) *Decoder { + return &Decoder{r: r, d: decoder{dm: dm}} +} + +type decoder struct { + data []byte + off int // next read offset in data + dm *decMode + + // expectedLaterEncodingTags stores a stack of encountered "Expected Later Encoding" tags, + // if any. + // + // The "Expected Later Encoding" tags (21 to 23) are valid for any data item. When decoding + // byte strings, the effective encoding comes from the tag nearest to the byte string being + // decoded. For example, the effective encoding of the byte string 21(22(h'41')) would be + // controlled by tag 22,and in the data item 23(h'42', 22([21(h'43')])]) the effective + // encoding of the byte strings h'42' and h'43' would be controlled by tag 23 and 21, + // respectively. + expectedLaterEncodingTags []uint64 +} + +// value decodes CBOR data item into the value pointed to by v. +// If CBOR data item fails to be decoded into v, +// error is returned and offset is moved to the next CBOR data item. +// Precondition: d.data contains at least one well-formed CBOR data item. +func (d *decoder) value(v interface{}) error { + // v can't be nil, non-pointer, or nil pointer value. + if v == nil { + return &InvalidUnmarshalError{"cbor: Unmarshal(nil)"} + } + rv := reflect.ValueOf(v) + if rv.Kind() != reflect.Ptr { + return &InvalidUnmarshalError{"cbor: Unmarshal(non-pointer " + rv.Type().String() + ")"} + } else if rv.IsNil() { + return &InvalidUnmarshalError{"cbor: Unmarshal(nil " + rv.Type().String() + ")"} + } + rv = rv.Elem() + return d.parseToValue(rv, getTypeInfo(rv.Type())) +} + +// parseToValue decodes CBOR data to value. It assumes data is well-formed, +// and does not perform bounds checking. +func (d *decoder) parseToValue(v reflect.Value, tInfo *typeInfo) error { //nolint:gocyclo + + // Decode CBOR nil or CBOR undefined to pointer value by setting pointer value to nil. + if d.nextCBORNil() && v.Kind() == reflect.Ptr { + d.skip() + v.Set(reflect.Zero(v.Type())) + return nil + } + + if tInfo.spclType == specialTypeIface { + if !v.IsNil() { + // Use value type + v = v.Elem() + tInfo = getTypeInfo(v.Type()) + } else { //nolint:gocritic + // Create and use registered type if CBOR data is registered tag + if d.dm.tags != nil && d.nextCBORType() == cborTypeTag { + + off := d.off + var tagNums []uint64 + for d.nextCBORType() == cborTypeTag { + _, _, tagNum := d.getHead() + tagNums = append(tagNums, tagNum) + } + d.off = off + + registeredType := d.dm.tags.getTypeFromTagNum(tagNums) + if registeredType != nil { + if registeredType.Implements(tInfo.nonPtrType) || + reflect.PtrTo(registeredType).Implements(tInfo.nonPtrType) { + v.Set(reflect.New(registeredType)) + v = v.Elem() + tInfo = getTypeInfo(registeredType) + } + } + } + } + } + + // Create new value for the pointer v to point to. + // At this point, CBOR value is not nil/undefined if v is a pointer. + for v.Kind() == reflect.Ptr { + if v.IsNil() { + if !v.CanSet() { + d.skip() + return errors.New("cbor: cannot set new value for " + v.Type().String()) + } + v.Set(reflect.New(v.Type().Elem())) + } + v = v.Elem() + } + + // Strip self-described CBOR tag number. + for d.nextCBORType() == cborTypeTag { + off := d.off + _, _, tagNum := d.getHead() + if tagNum != tagNumSelfDescribedCBOR { + d.off = off + break + } + } + + // Check validity of supported built-in tags. + off := d.off + for d.nextCBORType() == cborTypeTag { + _, _, tagNum := d.getHead() + if err := validBuiltinTag(tagNum, d.data[d.off]); err != nil { + d.skip() + return err + } + } + d.off = off + + if tInfo.spclType != specialTypeNone { + switch tInfo.spclType { + case specialTypeEmptyIface: + iv, err := d.parse(false) // Skipped self-described CBOR tag number already. + if iv != nil { + v.Set(reflect.ValueOf(iv)) + } + return err + + case specialTypeTag: + return d.parseToTag(v) + + case specialTypeTime: + if d.nextCBORNil() { + // Decoding CBOR null and undefined to time.Time is no-op. + d.skip() + return nil + } + tm, ok, err := d.parseToTime() + if err != nil { + return err + } + if ok { + v.Set(reflect.ValueOf(tm)) + } + return nil + + case specialTypeUnmarshalerIface: + return d.parseToUnmarshaler(v) + } + } + + // Check registered tag number + if tagItem := d.getRegisteredTagItem(tInfo.nonPtrType); tagItem != nil { + t := d.nextCBORType() + if t != cborTypeTag { + if tagItem.opts.DecTag == DecTagRequired { + d.skip() // Required tag number is absent, skip entire tag + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.typ.String(), + errorMsg: "expect CBOR tag value"} + } + } else if err := d.validRegisteredTagNums(tagItem); err != nil { + d.skip() // Skip tag content + return err + } + } + + t := d.nextCBORType() + + switch t { + case cborTypePositiveInt: + _, _, val := d.getHead() + return fillPositiveInt(t, val, v) + + case cborTypeNegativeInt: + _, _, val := d.getHead() + if val > math.MaxInt64 { + // CBOR negative integer overflows int64, use big.Int to store value. + bi := new(big.Int) + bi.SetUint64(val) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + + if tInfo.nonPtrType == typeBigInt { + v.Set(reflect.ValueOf(*bi)) + return nil + } + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.nonPtrType.String(), + errorMsg: bi.String() + " overflows Go's int64", + } + } + nValue := int64(-1) ^ int64(val) + return fillNegativeInt(t, nValue, v) + + case cborTypeByteString: + b, copied := d.parseByteString() + b, converted, err := d.applyByteStringTextConversion(b, v.Type()) + if err != nil { + return err + } + copied = copied || converted + return fillByteString(t, b, !copied, v, d.dm.byteStringToString, d.dm.binaryUnmarshaler) + + case cborTypeTextString: + b, err := d.parseTextString() + if err != nil { + return err + } + return fillTextString(t, b, v) + + case cborTypePrimitives: + _, ai, val := d.getHead() + switch ai { + case additionalInformationAsFloat16: + f := float64(float16.Frombits(uint16(val)).Float32()) + return fillFloat(t, f, v) + + case additionalInformationAsFloat32: + f := float64(math.Float32frombits(uint32(val))) + return fillFloat(t, f, v) + + case additionalInformationAsFloat64: + f := math.Float64frombits(val) + return fillFloat(t, f, v) + + default: // ai <= 24 + if d.dm.simpleValues.rejected[SimpleValue(val)] { + return &UnacceptableDataItemError{ + CBORType: t.String(), + Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", + } + } + + switch ai { + case additionalInformationAsFalse, + additionalInformationAsTrue: + return fillBool(t, ai == additionalInformationAsTrue, v) + + case additionalInformationAsNull, + additionalInformationAsUndefined: + return fillNil(t, v) + + default: + return fillPositiveInt(t, val, v) + } + } + + case cborTypeTag: + _, _, tagNum := d.getHead() + switch tagNum { + case tagNumUnsignedBignum: + // Bignum (tag 2) can be decoded to uint, int, float, slice, array, or big.Int. + b, copied := d.parseByteString() + bi := new(big.Int).SetBytes(b) + + if tInfo.nonPtrType == typeBigInt { + v.Set(reflect.ValueOf(*bi)) + return nil + } + if tInfo.nonPtrKind == reflect.Slice || tInfo.nonPtrKind == reflect.Array { + return fillByteString(t, b, !copied, v, ByteStringToStringForbidden, d.dm.binaryUnmarshaler) + } + if bi.IsUint64() { + return fillPositiveInt(t, bi.Uint64(), v) + } + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.nonPtrType.String(), + errorMsg: bi.String() + " overflows " + v.Type().String(), + } + + case tagNumNegativeBignum: + // Bignum (tag 3) can be decoded to int, float, slice, array, or big.Int. + b, copied := d.parseByteString() + bi := new(big.Int).SetBytes(b) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + + if tInfo.nonPtrType == typeBigInt { + v.Set(reflect.ValueOf(*bi)) + return nil + } + if tInfo.nonPtrKind == reflect.Slice || tInfo.nonPtrKind == reflect.Array { + return fillByteString(t, b, !copied, v, ByteStringToStringForbidden, d.dm.binaryUnmarshaler) + } + if bi.IsInt64() { + return fillNegativeInt(t, bi.Int64(), v) + } + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.nonPtrType.String(), + errorMsg: bi.String() + " overflows " + v.Type().String(), + } + + case tagNumExpectedLaterEncodingBase64URL, tagNumExpectedLaterEncodingBase64, tagNumExpectedLaterEncodingBase16: + // If conversion for interoperability with text encodings is not configured, + // treat tags 21-23 as unregistered tags. + if d.dm.byteStringToString == ByteStringToStringAllowedWithExpectedLaterEncoding || d.dm.byteStringExpectedFormat != ByteStringExpectedFormatNone { + d.expectedLaterEncodingTags = append(d.expectedLaterEncodingTags, tagNum) + defer func() { + d.expectedLaterEncodingTags = d.expectedLaterEncodingTags[:len(d.expectedLaterEncodingTags)-1] + }() + } + } + + return d.parseToValue(v, tInfo) + + case cborTypeArray: + if tInfo.nonPtrKind == reflect.Slice { + return d.parseArrayToSlice(v, tInfo) + } else if tInfo.nonPtrKind == reflect.Array { + return d.parseArrayToArray(v, tInfo) + } else if tInfo.nonPtrKind == reflect.Struct { + return d.parseArrayToStruct(v, tInfo) + } + d.skip() + return &UnmarshalTypeError{CBORType: t.String(), GoType: tInfo.nonPtrType.String()} + + case cborTypeMap: + if tInfo.nonPtrKind == reflect.Struct { + return d.parseMapToStruct(v, tInfo) + } else if tInfo.nonPtrKind == reflect.Map { + return d.parseMapToMap(v, tInfo) + } + d.skip() + return &UnmarshalTypeError{CBORType: t.String(), GoType: tInfo.nonPtrType.String()} + } + + return nil +} + +func (d *decoder) parseToTag(v reflect.Value) error { + if d.nextCBORNil() { + // Decoding CBOR null and undefined to cbor.Tag is no-op. + d.skip() + return nil + } + + t := d.nextCBORType() + if t != cborTypeTag { + d.skip() + return &UnmarshalTypeError{CBORType: t.String(), GoType: typeTag.String()} + } + + // Unmarshal tag number + _, _, num := d.getHead() + + // Unmarshal tag content + content, err := d.parse(false) + if err != nil { + return err + } + + v.Set(reflect.ValueOf(Tag{num, content})) + return nil +} + +// parseToTime decodes the current data item as a time.Time. The bool return value is false if and +// only if the destination value should remain unmodified. +func (d *decoder) parseToTime() (time.Time, bool, error) { + // Verify that tag number or absence of tag number is acceptable to specified timeTag. + if t := d.nextCBORType(); t == cborTypeTag { + if d.dm.timeTag == DecTagIgnored { + // Skip all enclosing tags + for t == cborTypeTag { + d.getHead() + t = d.nextCBORType() + } + if d.nextCBORNil() { + d.skip() + return time.Time{}, false, nil + } + } else { + // Read tag number + _, _, tagNum := d.getHead() + if tagNum != 0 && tagNum != 1 { + d.skip() // skip tag content + return time.Time{}, false, errors.New("cbor: wrong tag number for time.Time, got " + strconv.Itoa(int(tagNum)) + ", expect 0 or 1") + } + } + } else { + if d.dm.timeTag == DecTagRequired { + d.skip() + return time.Time{}, false, &UnmarshalTypeError{CBORType: t.String(), GoType: typeTime.String(), errorMsg: "expect CBOR tag value"} + } + } + + switch t := d.nextCBORType(); t { + case cborTypeByteString: + if d.dm.byteStringToTime == ByteStringToTimeAllowed { + b, _ := d.parseByteString() + t, err := time.Parse(time.RFC3339, string(b)) + if err != nil { + return time.Time{}, false, fmt.Errorf("cbor: cannot set %q for time.Time: %w", string(b), err) + } + return t, true, nil + } + return time.Time{}, false, &UnmarshalTypeError{CBORType: t.String(), GoType: typeTime.String()} + + case cborTypeTextString: + s, err := d.parseTextString() + if err != nil { + return time.Time{}, false, err + } + t, err := time.Parse(time.RFC3339, string(s)) + if err != nil { + return time.Time{}, false, errors.New("cbor: cannot set " + string(s) + " for time.Time: " + err.Error()) + } + return t, true, nil + + case cborTypePositiveInt: + _, _, val := d.getHead() + if val > math.MaxInt64 { + return time.Time{}, false, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: typeTime.String(), + errorMsg: fmt.Sprintf("%d overflows Go's int64", val), + } + } + return time.Unix(int64(val), 0), true, nil + + case cborTypeNegativeInt: + _, _, val := d.getHead() + if val > math.MaxInt64 { + if val == math.MaxUint64 { + // Maximum absolute value representable by negative integer is 2^64, + // not 2^64-1, so it overflows uint64. + return time.Time{}, false, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: typeTime.String(), + errorMsg: "-18446744073709551616 overflows Go's int64", + } + } + return time.Time{}, false, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: typeTime.String(), + errorMsg: fmt.Sprintf("-%d overflows Go's int64", val+1), + } + } + return time.Unix(int64(-1)^int64(val), 0), true, nil + + case cborTypePrimitives: + _, ai, val := d.getHead() + var f float64 + switch ai { + case additionalInformationAsFloat16: + f = float64(float16.Frombits(uint16(val)).Float32()) + + case additionalInformationAsFloat32: + f = float64(math.Float32frombits(uint32(val))) + + case additionalInformationAsFloat64: + f = math.Float64frombits(val) + + default: + return time.Time{}, false, &UnmarshalTypeError{CBORType: t.String(), GoType: typeTime.String()} + } + + if math.IsNaN(f) || math.IsInf(f, 0) { + // https://www.rfc-editor.org/rfc/rfc8949.html#section-3.4.2-6 + return time.Time{}, true, nil + } + seconds, fractional := math.Modf(f) + return time.Unix(int64(seconds), int64(fractional*1e9)), true, nil + + default: + return time.Time{}, false, &UnmarshalTypeError{CBORType: t.String(), GoType: typeTime.String()} + } +} + +// parseToUnmarshaler parses CBOR data to value implementing Unmarshaler interface. +// It assumes data is well-formed, and does not perform bounds checking. +func (d *decoder) parseToUnmarshaler(v reflect.Value) error { + if d.nextCBORNil() && v.Kind() == reflect.Ptr && v.IsNil() { + d.skip() + return nil + } + + if v.Kind() != reflect.Ptr && v.CanAddr() { + v = v.Addr() + } + if u, ok := v.Interface().(Unmarshaler); ok { + start := d.off + d.skip() + return u.UnmarshalCBOR(d.data[start:d.off]) + } + d.skip() + return errors.New("cbor: failed to assert " + v.Type().String() + " as cbor.Unmarshaler") +} + +// parse parses CBOR data and returns value in default Go type. +// It assumes data is well-formed, and does not perform bounds checking. +func (d *decoder) parse(skipSelfDescribedTag bool) (interface{}, error) { //nolint:gocyclo + // Strip self-described CBOR tag number. + if skipSelfDescribedTag { + for d.nextCBORType() == cborTypeTag { + off := d.off + _, _, tagNum := d.getHead() + if tagNum != tagNumSelfDescribedCBOR { + d.off = off + break + } + } + } + + // Check validity of supported built-in tags. + off := d.off + for d.nextCBORType() == cborTypeTag { + _, _, tagNum := d.getHead() + if err := validBuiltinTag(tagNum, d.data[d.off]); err != nil { + d.skip() + return nil, err + } + } + d.off = off + + t := d.nextCBORType() + switch t { + case cborTypePositiveInt: + _, _, val := d.getHead() + + switch d.dm.intDec { + case IntDecConvertNone: + return val, nil + + case IntDecConvertSigned, IntDecConvertSignedOrFail: + if val > math.MaxInt64 { + return nil, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: reflect.TypeOf(int64(0)).String(), + errorMsg: strconv.FormatUint(val, 10) + " overflows Go's int64", + } + } + + return int64(val), nil + + case IntDecConvertSignedOrBigInt: + if val > math.MaxInt64 { + bi := new(big.Int).SetUint64(val) + if d.dm.bigIntDec == BigIntDecodePointer { + return bi, nil + } + return *bi, nil + } + + return int64(val), nil + + default: + // not reachable + } + + case cborTypeNegativeInt: + _, _, val := d.getHead() + + if val > math.MaxInt64 { + // CBOR negative integer value overflows Go int64, use big.Int instead. + bi := new(big.Int).SetUint64(val) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + + if d.dm.intDec == IntDecConvertSignedOrFail { + return nil, &UnmarshalTypeError{ + CBORType: t.String(), + GoType: reflect.TypeOf(int64(0)).String(), + errorMsg: bi.String() + " overflows Go's int64", + } + } + + if d.dm.bigIntDec == BigIntDecodePointer { + return bi, nil + } + return *bi, nil + } + + nValue := int64(-1) ^ int64(val) + return nValue, nil + + case cborTypeByteString: + b, copied := d.parseByteString() + var effectiveByteStringType = d.dm.defaultByteStringType + if effectiveByteStringType == nil { + effectiveByteStringType = typeByteSlice + } + b, converted, err := d.applyByteStringTextConversion(b, effectiveByteStringType) + if err != nil { + return nil, err + } + copied = copied || converted + + switch effectiveByteStringType { + case typeByteSlice: + if copied { + return b, nil + } + clone := make([]byte, len(b)) + copy(clone, b) + return clone, nil + + case typeString: + return string(b), nil + + default: + if copied || d.dm.defaultByteStringType.Kind() == reflect.String { + // Avoid an unnecessary copy since the conversion to string must + // copy the underlying bytes. + return reflect.ValueOf(b).Convert(d.dm.defaultByteStringType).Interface(), nil + } + clone := make([]byte, len(b)) + copy(clone, b) + return reflect.ValueOf(clone).Convert(d.dm.defaultByteStringType).Interface(), nil + } + + case cborTypeTextString: + b, err := d.parseTextString() + if err != nil { + return nil, err + } + return string(b), nil + + case cborTypeTag: + tagOff := d.off + _, _, tagNum := d.getHead() + contentOff := d.off + + switch tagNum { + case tagNumRFC3339Time, tagNumEpochTime: + d.off = tagOff + tm, _, err := d.parseToTime() + if err != nil { + return nil, err + } + + switch d.dm.timeTagToAny { + case TimeTagToTime: + return tm, nil + + case TimeTagToRFC3339: + if tagNum == 1 { + tm = tm.UTC() + } + // Call time.MarshalText() to format decoded time to RFC3339 format, + // and return error on time value that cannot be represented in + // RFC3339 format. E.g. year cannot exceed 9999, etc. + text, err := tm.Truncate(time.Second).MarshalText() + if err != nil { + return nil, fmt.Errorf("cbor: decoded time cannot be represented in RFC3339 format: %v", err) + } + return string(text), nil + + case TimeTagToRFC3339Nano: + if tagNum == 1 { + tm = tm.UTC() + } + // Call time.MarshalText() to format decoded time to RFC3339 format, + // and return error on time value that cannot be represented in + // RFC3339 format with sub-second precision. + text, err := tm.MarshalText() + if err != nil { + return nil, fmt.Errorf("cbor: decoded time cannot be represented in RFC3339 format with sub-second precision: %v", err) + } + return string(text), nil + + default: + // not reachable + } + + case tagNumUnsignedBignum: + b, _ := d.parseByteString() + bi := new(big.Int).SetBytes(b) + + if d.dm.bigIntDec == BigIntDecodePointer { + return bi, nil + } + return *bi, nil + + case tagNumNegativeBignum: + b, _ := d.parseByteString() + bi := new(big.Int).SetBytes(b) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + + if d.dm.bigIntDec == BigIntDecodePointer { + return bi, nil + } + return *bi, nil + + case tagNumExpectedLaterEncodingBase64URL, tagNumExpectedLaterEncodingBase64, tagNumExpectedLaterEncodingBase16: + // If conversion for interoperability with text encodings is not configured, + // treat tags 21-23 as unregistered tags. + if d.dm.byteStringToString == ByteStringToStringAllowedWithExpectedLaterEncoding || + d.dm.byteStringExpectedFormat != ByteStringExpectedFormatNone { + d.expectedLaterEncodingTags = append(d.expectedLaterEncodingTags, tagNum) + defer func() { + d.expectedLaterEncodingTags = d.expectedLaterEncodingTags[:len(d.expectedLaterEncodingTags)-1] + }() + return d.parse(false) + } + } + + if d.dm.tags != nil { + // Parse to specified type if tag number is registered. + tagNums := []uint64{tagNum} + for d.nextCBORType() == cborTypeTag { + _, _, num := d.getHead() + tagNums = append(tagNums, num) + } + registeredType := d.dm.tags.getTypeFromTagNum(tagNums) + if registeredType != nil { + d.off = tagOff + rv := reflect.New(registeredType) + if err := d.parseToValue(rv.Elem(), getTypeInfo(registeredType)); err != nil { + return nil, err + } + return rv.Elem().Interface(), nil + } + } + + // Parse tag content + d.off = contentOff + content, err := d.parse(false) + if err != nil { + return nil, err + } + if d.dm.unrecognizedTagToAny == UnrecognizedTagContentToAny { + return content, nil + } + return Tag{tagNum, content}, nil + + case cborTypePrimitives: + _, ai, val := d.getHead() + if ai <= 24 && d.dm.simpleValues.rejected[SimpleValue(val)] { + return nil, &UnacceptableDataItemError{ + CBORType: t.String(), + Message: "simple value " + strconv.FormatInt(int64(val), 10) + " is not recognized", + } + } + if ai < 20 || ai == 24 { + return SimpleValue(val), nil + } + + switch ai { + case additionalInformationAsFalse, + additionalInformationAsTrue: + return (ai == additionalInformationAsTrue), nil + + case additionalInformationAsNull, + additionalInformationAsUndefined: + return nil, nil + + case additionalInformationAsFloat16: + f := float64(float16.Frombits(uint16(val)).Float32()) + return f, nil + + case additionalInformationAsFloat32: + f := float64(math.Float32frombits(uint32(val))) + return f, nil + + case additionalInformationAsFloat64: + f := math.Float64frombits(val) + return f, nil + } + + case cborTypeArray: + return d.parseArray() + + case cborTypeMap: + if d.dm.defaultMapType != nil { + m := reflect.New(d.dm.defaultMapType) + err := d.parseToValue(m, getTypeInfo(m.Elem().Type())) + if err != nil { + return nil, err + } + return m.Elem().Interface(), nil + } + return d.parseMap() + } + + return nil, nil +} + +// parseByteString parses a CBOR encoded byte string. The returned byte slice +// may be backed directly by the input. The second return value will be true if +// and only if the slice is backed by a copy of the input. Callers are +// responsible for making a copy if necessary. +func (d *decoder) parseByteString() ([]byte, bool) { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + if !indefiniteLength { + b := d.data[d.off : d.off+int(val)] + d.off += int(val) + return b, false + } + // Process indefinite length string chunks. + b := []byte{} + for !d.foundBreak() { + _, _, val = d.getHead() + b = append(b, d.data[d.off:d.off+int(val)]...) + d.off += int(val) + } + return b, true +} + +// applyByteStringTextConversion converts bytes read from a byte string to or from a configured text +// encoding. If no transformation was performed (because it was not required), the original byte +// slice is returned and the bool return value is false. Otherwise, a new slice containing the +// converted bytes is returned along with the bool value true. +func (d *decoder) applyByteStringTextConversion( + src []byte, + dstType reflect.Type, +) ( + dst []byte, + transformed bool, + err error, +) { + switch dstType.Kind() { + case reflect.String: + if d.dm.byteStringToString != ByteStringToStringAllowedWithExpectedLaterEncoding || len(d.expectedLaterEncodingTags) == 0 { + return src, false, nil + } + + switch d.expectedLaterEncodingTags[len(d.expectedLaterEncodingTags)-1] { + case tagNumExpectedLaterEncodingBase64URL: + encoded := make([]byte, base64.RawURLEncoding.EncodedLen(len(src))) + base64.RawURLEncoding.Encode(encoded, src) + return encoded, true, nil + + case tagNumExpectedLaterEncodingBase64: + encoded := make([]byte, base64.StdEncoding.EncodedLen(len(src))) + base64.StdEncoding.Encode(encoded, src) + return encoded, true, nil + + case tagNumExpectedLaterEncodingBase16: + encoded := make([]byte, hex.EncodedLen(len(src))) + hex.Encode(encoded, src) + return encoded, true, nil + + default: + // If this happens, there is a bug: the decoder has pushed an invalid + // "expected later encoding" tag to the stack. + panic(fmt.Sprintf("unrecognized expected later encoding tag: %d", d.expectedLaterEncodingTags)) + } + + case reflect.Slice: + if dstType.Elem().Kind() != reflect.Uint8 || len(d.expectedLaterEncodingTags) > 0 { + // Either the destination is not a slice of bytes, or the encoder that + // produced the input indicated an expected text encoding tag and therefore + // the content of the byte string has NOT been text encoded. + return src, false, nil + } + + switch d.dm.byteStringExpectedFormat { + case ByteStringExpectedBase64URL: + decoded := make([]byte, base64.RawURLEncoding.DecodedLen(len(src))) + n, err := base64.RawURLEncoding.Decode(decoded, src) + if err != nil { + return nil, false, newByteStringExpectedFormatError(ByteStringExpectedBase64URL, err) + } + return decoded[:n], true, nil + + case ByteStringExpectedBase64: + decoded := make([]byte, base64.StdEncoding.DecodedLen(len(src))) + n, err := base64.StdEncoding.Decode(decoded, src) + if err != nil { + return nil, false, newByteStringExpectedFormatError(ByteStringExpectedBase64, err) + } + return decoded[:n], true, nil + + case ByteStringExpectedBase16: + decoded := make([]byte, hex.DecodedLen(len(src))) + n, err := hex.Decode(decoded, src) + if err != nil { + return nil, false, newByteStringExpectedFormatError(ByteStringExpectedBase16, err) + } + return decoded[:n], true, nil + } + } + + return src, false, nil +} + +// parseTextString parses CBOR encoded text string. It returns a byte slice +// to prevent creating an extra copy of string. Caller should wrap returned +// byte slice as string when needed. +func (d *decoder) parseTextString() ([]byte, error) { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + if !indefiniteLength { + b := d.data[d.off : d.off+int(val)] + d.off += int(val) + if d.dm.utf8 == UTF8RejectInvalid && !utf8.Valid(b) { + return nil, &SemanticError{"cbor: invalid UTF-8 string"} + } + return b, nil + } + // Process indefinite length string chunks. + b := []byte{} + for !d.foundBreak() { + _, _, val = d.getHead() + x := d.data[d.off : d.off+int(val)] + d.off += int(val) + if d.dm.utf8 == UTF8RejectInvalid && !utf8.Valid(x) { + for !d.foundBreak() { + d.skip() // Skip remaining chunk on error + } + return nil, &SemanticError{"cbor: invalid UTF-8 string"} + } + b = append(b, x...) + } + return b, nil +} + +func (d *decoder) parseArray() ([]interface{}, error) { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + if !hasSize { + count = d.numOfItemsUntilBreak() // peek ahead to get array size to preallocate slice for better performance + } + v := make([]interface{}, count) + var e interface{} + var err, lastErr error + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + if e, lastErr = d.parse(true); lastErr != nil { + if err == nil { + err = lastErr + } + continue + } + v[i] = e + } + return v, err +} + +func (d *decoder) parseArrayToSlice(v reflect.Value, tInfo *typeInfo) error { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + if !hasSize { + count = d.numOfItemsUntilBreak() // peek ahead to get array size to preallocate slice for better performance + } + if v.IsNil() || v.Cap() < count || count == 0 { + v.Set(reflect.MakeSlice(tInfo.nonPtrType, count, count)) + } + v.SetLen(count) + var err error + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + if lastErr := d.parseToValue(v.Index(i), tInfo.elemTypeInfo); lastErr != nil { + if err == nil { + err = lastErr + } + } + } + return err +} + +func (d *decoder) parseArrayToArray(v reflect.Value, tInfo *typeInfo) error { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + gi := 0 + vLen := v.Len() + var err error + for ci := 0; (hasSize && ci < count) || (!hasSize && !d.foundBreak()); ci++ { + if gi < vLen { + // Read CBOR array element and set array element + if lastErr := d.parseToValue(v.Index(gi), tInfo.elemTypeInfo); lastErr != nil { + if err == nil { + err = lastErr + } + } + gi++ + } else { + d.skip() // Skip remaining CBOR array element + } + } + // Set remaining Go array elements to zero values. + if gi < vLen { + zeroV := reflect.Zero(tInfo.elemTypeInfo.typ) + for ; gi < vLen; gi++ { + v.Index(gi).Set(zeroV) + } + } + return err +} + +func (d *decoder) parseMap() (interface{}, error) { + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + m := make(map[interface{}]interface{}) + var k, e interface{} + var err, lastErr error + keyCount := 0 + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + // Parse CBOR map key. + if k, lastErr = d.parse(true); lastErr != nil { + if err == nil { + err = lastErr + } + d.skip() + continue + } + + // Detect if CBOR map key can be used as Go map key. + rv := reflect.ValueOf(k) + if !isHashableValue(rv) { + var converted bool + if d.dm.mapKeyByteString == MapKeyByteStringAllowed { + k, converted = convertByteSliceToByteString(k) + } + if !converted { + if err == nil { + err = &InvalidMapKeyTypeError{rv.Type().String()} + } + d.skip() + continue + } + } + + // Parse CBOR map value. + if e, lastErr = d.parse(true); lastErr != nil { + if err == nil { + err = lastErr + } + continue + } + + // Add key-value pair to Go map. + m[k] = e + + // Detect duplicate map key. + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + newKeyCount := len(m) + if newKeyCount == keyCount { + m[k] = nil + err = &DupMapKeyError{k, i} + i++ + // skip the rest of the map + for ; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + d.skip() // Skip map key + d.skip() // Skip map value + } + return m, err + } + keyCount = newKeyCount + } + } + return m, err +} + +func (d *decoder) parseMapToMap(v reflect.Value, tInfo *typeInfo) error { //nolint:gocyclo + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + if v.IsNil() { + mapsize := count + if !hasSize { + mapsize = 0 + } + v.Set(reflect.MakeMapWithSize(tInfo.nonPtrType, mapsize)) + } + keyType, eleType := tInfo.keyTypeInfo.typ, tInfo.elemTypeInfo.typ + reuseKey, reuseEle := isImmutableKind(tInfo.keyTypeInfo.kind), isImmutableKind(tInfo.elemTypeInfo.kind) + var keyValue, eleValue, zeroKeyValue, zeroEleValue reflect.Value + keyIsInterfaceType := keyType == typeIntf // If key type is interface{}, need to check if key value is hashable. + var err, lastErr error + keyCount := v.Len() + var existingKeys map[interface{}]bool // Store existing map keys, used for detecting duplicate map key. + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + existingKeys = make(map[interface{}]bool, keyCount) + if keyCount > 0 { + vKeys := v.MapKeys() + for i := 0; i < len(vKeys); i++ { + existingKeys[vKeys[i].Interface()] = true + } + } + } + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + // Parse CBOR map key. + if !keyValue.IsValid() { + keyValue = reflect.New(keyType).Elem() + } else if !reuseKey { + if !zeroKeyValue.IsValid() { + zeroKeyValue = reflect.Zero(keyType) + } + keyValue.Set(zeroKeyValue) + } + if lastErr = d.parseToValue(keyValue, tInfo.keyTypeInfo); lastErr != nil { + if err == nil { + err = lastErr + } + d.skip() + continue + } + + // Detect if CBOR map key can be used as Go map key. + if keyIsInterfaceType && keyValue.Elem().IsValid() { + if !isHashableValue(keyValue.Elem()) { + var converted bool + if d.dm.mapKeyByteString == MapKeyByteStringAllowed { + var k interface{} + k, converted = convertByteSliceToByteString(keyValue.Elem().Interface()) + if converted { + keyValue.Set(reflect.ValueOf(k)) + } + } + if !converted { + if err == nil { + err = &InvalidMapKeyTypeError{keyValue.Elem().Type().String()} + } + d.skip() + continue + } + } + } + + // Parse CBOR map value. + if !eleValue.IsValid() { + eleValue = reflect.New(eleType).Elem() + } else if !reuseEle { + if !zeroEleValue.IsValid() { + zeroEleValue = reflect.Zero(eleType) + } + eleValue.Set(zeroEleValue) + } + if lastErr := d.parseToValue(eleValue, tInfo.elemTypeInfo); lastErr != nil { + if err == nil { + err = lastErr + } + continue + } + + // Add key-value pair to Go map. + v.SetMapIndex(keyValue, eleValue) + + // Detect duplicate map key. + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + newKeyCount := v.Len() + if newKeyCount == keyCount { + kvi := keyValue.Interface() + if !existingKeys[kvi] { + v.SetMapIndex(keyValue, reflect.New(eleType).Elem()) + err = &DupMapKeyError{kvi, i} + i++ + // skip the rest of the map + for ; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + d.skip() // skip map key + d.skip() // skip map value + } + return err + } + delete(existingKeys, kvi) + } + keyCount = newKeyCount + } + } + return err +} + +func (d *decoder) parseArrayToStruct(v reflect.Value, tInfo *typeInfo) error { + structType := getDecodingStructType(tInfo.nonPtrType) + if structType.err != nil { + return structType.err + } + + if !structType.toArray { + t := d.nextCBORType() + d.skip() + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.nonPtrType.String(), + errorMsg: "cannot decode CBOR array to struct without toarray option", + } + } + + start := d.off + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + if !hasSize { + count = d.numOfItemsUntilBreak() // peek ahead to get array size + } + if count != len(structType.fields) { + d.off = start + d.skip() + return &UnmarshalTypeError{ + CBORType: cborTypeArray.String(), + GoType: tInfo.typ.String(), + errorMsg: "cannot decode CBOR array to struct with different number of elements", + } + } + var err, lastErr error + for i := 0; (hasSize && i < count) || (!hasSize && !d.foundBreak()); i++ { + f := structType.fields[i] + + // Get field value by index + var fv reflect.Value + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + fv, lastErr = getFieldValue(v, f.idx, func(v reflect.Value) (reflect.Value, error) { + // Return a new value for embedded field null pointer to point to, or return error. + if !v.CanSet() { + return reflect.Value{}, errors.New("cbor: cannot set embedded pointer to unexported struct: " + v.Type().String()) + } + v.Set(reflect.New(v.Type().Elem())) + return v, nil + }) + if lastErr != nil && err == nil { + err = lastErr + } + if !fv.IsValid() { + d.skip() + continue + } + } + + if lastErr = d.parseToValue(fv, f.typInfo); lastErr != nil { + if err == nil { + if typeError, ok := lastErr.(*UnmarshalTypeError); ok { + typeError.StructFieldName = tInfo.typ.String() + "." + f.name + err = typeError + } else { + err = lastErr + } + } + } + } + return err +} + +// parseMapToStruct needs to be fast so gocyclo can be ignored for now. +func (d *decoder) parseMapToStruct(v reflect.Value, tInfo *typeInfo) error { //nolint:gocyclo + structType := getDecodingStructType(tInfo.nonPtrType) + if structType.err != nil { + return structType.err + } + + if structType.toArray { + t := d.nextCBORType() + d.skip() + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: tInfo.nonPtrType.String(), + errorMsg: "cannot decode CBOR map to struct with toarray option", + } + } + + var err, lastErr error + + // Get CBOR map size + _, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + hasSize := !indefiniteLength + count := int(val) + + // Keeps track of matched struct fields + var foundFldIdx []bool + { + const maxStackFields = 128 + if nfields := len(structType.fields); nfields <= maxStackFields { + // For structs with typical field counts, expect that this can be + // stack-allocated. + var a [maxStackFields]bool + foundFldIdx = a[:nfields] + } else { + foundFldIdx = make([]bool, len(structType.fields)) + } + } + + // Keeps track of CBOR map keys to detect duplicate map key + keyCount := 0 + var mapKeys map[interface{}]struct{} + + errOnUnknownField := (d.dm.extraReturnErrors & ExtraDecErrorUnknownField) > 0 + +MapEntryLoop: + for j := 0; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + var f *field + + // If duplicate field detection is enabled and the key at index j did not match any + // field, k will hold the map key. + var k interface{} + + t := d.nextCBORType() + if t == cborTypeTextString || (t == cborTypeByteString && d.dm.fieldNameByteString == FieldNameByteStringAllowed) { + var keyBytes []byte + if t == cborTypeTextString { + keyBytes, lastErr = d.parseTextString() + if lastErr != nil { + if err == nil { + err = lastErr + } + d.skip() // skip value + continue + } + } else { // cborTypeByteString + keyBytes, _ = d.parseByteString() + } + + // Check for exact match on field name. + if i, ok := structType.fieldIndicesByName[string(keyBytes)]; ok { + fld := structType.fields[i] + + if !foundFldIdx[i] { + f = fld + foundFldIdx[i] = true + } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + err = &DupMapKeyError{fld.name, j} + d.skip() // skip value + j++ + // skip the rest of the map + for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + d.skip() + d.skip() + } + return err + } else { + // discard repeated match + d.skip() + continue MapEntryLoop + } + } + + // Find field with case-insensitive match + if f == nil && d.dm.fieldNameMatching == FieldNameMatchingPreferCaseSensitive { + keyLen := len(keyBytes) + keyString := string(keyBytes) + for i := 0; i < len(structType.fields); i++ { + fld := structType.fields[i] + if len(fld.name) == keyLen && strings.EqualFold(fld.name, keyString) { + if !foundFldIdx[i] { + f = fld + foundFldIdx[i] = true + } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + err = &DupMapKeyError{keyString, j} + d.skip() // skip value + j++ + // skip the rest of the map + for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + d.skip() + d.skip() + } + return err + } else { + // discard repeated match + d.skip() + continue MapEntryLoop + } + break + } + } + } + + if d.dm.dupMapKey == DupMapKeyEnforcedAPF && f == nil { + k = string(keyBytes) + } + } else if t <= cborTypeNegativeInt { // uint/int + var nameAsInt int64 + + if t == cborTypePositiveInt { + _, _, val := d.getHead() + nameAsInt = int64(val) + } else { + _, _, val := d.getHead() + if val > math.MaxInt64 { + if err == nil { + err = &UnmarshalTypeError{ + CBORType: t.String(), + GoType: reflect.TypeOf(int64(0)).String(), + errorMsg: "-1-" + strconv.FormatUint(val, 10) + " overflows Go's int64", + } + } + d.skip() // skip value + continue + } + nameAsInt = int64(-1) ^ int64(val) + } + + // Find field + for i := 0; i < len(structType.fields); i++ { + fld := structType.fields[i] + if fld.keyAsInt && fld.nameAsInt == nameAsInt { + if !foundFldIdx[i] { + f = fld + foundFldIdx[i] = true + } else if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + err = &DupMapKeyError{nameAsInt, j} + d.skip() // skip value + j++ + // skip the rest of the map + for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + d.skip() + d.skip() + } + return err + } else { + // discard repeated match + d.skip() + continue MapEntryLoop + } + break + } + } + + if d.dm.dupMapKey == DupMapKeyEnforcedAPF && f == nil { + k = nameAsInt + } + } else { + if err == nil { + err = &UnmarshalTypeError{ + CBORType: t.String(), + GoType: reflect.TypeOf("").String(), + errorMsg: "map key is of type " + t.String() + " and cannot be used to match struct field name", + } + } + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + // parse key + k, lastErr = d.parse(true) + if lastErr != nil { + d.skip() // skip value + continue + } + // Detect if CBOR map key can be used as Go map key. + if !isHashableValue(reflect.ValueOf(k)) { + d.skip() // skip value + continue + } + } else { + d.skip() // skip key + } + } + + if f == nil { + if errOnUnknownField { + err = &UnknownFieldError{j} + d.skip() // Skip value + j++ + // skip the rest of the map + for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + d.skip() + d.skip() + } + return err + } + + // Two map keys that match the same struct field are immediately considered + // duplicates. This check detects duplicates between two map keys that do + // not match a struct field. If unknown field errors are enabled, then this + // check is never reached. + if d.dm.dupMapKey == DupMapKeyEnforcedAPF { + if mapKeys == nil { + mapKeys = make(map[interface{}]struct{}, 1) + } + mapKeys[k] = struct{}{} + newKeyCount := len(mapKeys) + if newKeyCount == keyCount { + err = &DupMapKeyError{k, j} + d.skip() // skip value + j++ + // skip the rest of the map + for ; (hasSize && j < count) || (!hasSize && !d.foundBreak()); j++ { + d.skip() + d.skip() + } + return err + } + keyCount = newKeyCount + } + + d.skip() // Skip value + continue + } + + // Get field value by index + var fv reflect.Value + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + fv, lastErr = getFieldValue(v, f.idx, func(v reflect.Value) (reflect.Value, error) { + // Return a new value for embedded field null pointer to point to, or return error. + if !v.CanSet() { + return reflect.Value{}, errors.New("cbor: cannot set embedded pointer to unexported struct: " + v.Type().String()) + } + v.Set(reflect.New(v.Type().Elem())) + return v, nil + }) + if lastErr != nil && err == nil { + err = lastErr + } + if !fv.IsValid() { + d.skip() + continue + } + } + + if lastErr = d.parseToValue(fv, f.typInfo); lastErr != nil { + if err == nil { + if typeError, ok := lastErr.(*UnmarshalTypeError); ok { + typeError.StructFieldName = tInfo.nonPtrType.String() + "." + f.name + err = typeError + } else { + err = lastErr + } + } + } + } + return err +} + +// validRegisteredTagNums verifies that tag numbers match registered tag numbers of type t. +// validRegisteredTagNums assumes next CBOR data type is tag. It scans all tag numbers, and stops at tag content. +func (d *decoder) validRegisteredTagNums(registeredTag *tagItem) error { + // Scan until next cbor data is tag content. + tagNums := make([]uint64, 0, 1) + for d.nextCBORType() == cborTypeTag { + _, _, val := d.getHead() + tagNums = append(tagNums, val) + } + + if !registeredTag.equalTagNum(tagNums) { + return &WrongTagError{registeredTag.contentType, registeredTag.num, tagNums} + } + return nil +} + +func (d *decoder) getRegisteredTagItem(vt reflect.Type) *tagItem { + if d.dm.tags != nil { + return d.dm.tags.getTagItemFromType(vt) + } + return nil +} + +// skip moves data offset to the next item. skip assumes data is well-formed, +// and does not perform bounds checking. +func (d *decoder) skip() { + t, _, val, indefiniteLength := d.getHeadWithIndefiniteLengthFlag() + + if indefiniteLength { + switch t { + case cborTypeByteString, cborTypeTextString, cborTypeArray, cborTypeMap: + for { + if isBreakFlag(d.data[d.off]) { + d.off++ + return + } + d.skip() + } + } + } + + switch t { + case cborTypeByteString, cborTypeTextString: + d.off += int(val) + + case cborTypeArray: + for i := 0; i < int(val); i++ { + d.skip() + } + + case cborTypeMap: + for i := 0; i < int(val)*2; i++ { + d.skip() + } + + case cborTypeTag: + d.skip() + } +} + +func (d *decoder) getHeadWithIndefiniteLengthFlag() ( + t cborType, + ai byte, + val uint64, + indefiniteLength bool, +) { + t, ai, val = d.getHead() + indefiniteLength = additionalInformation(ai).isIndefiniteLength() + return +} + +// getHead assumes data is well-formed, and does not perform bounds checking. +func (d *decoder) getHead() (t cborType, ai byte, val uint64) { + t, ai = parseInitialByte(d.data[d.off]) + val = uint64(ai) + d.off++ + + if ai <= maxAdditionalInformationWithoutArgument { + return + } + + if ai == additionalInformationWith1ByteArgument { + val = uint64(d.data[d.off]) + d.off++ + return + } + + if ai == additionalInformationWith2ByteArgument { + const argumentSize = 2 + val = uint64(binary.BigEndian.Uint16(d.data[d.off : d.off+argumentSize])) + d.off += argumentSize + return + } + + if ai == additionalInformationWith4ByteArgument { + const argumentSize = 4 + val = uint64(binary.BigEndian.Uint32(d.data[d.off : d.off+argumentSize])) + d.off += argumentSize + return + } + + if ai == additionalInformationWith8ByteArgument { + const argumentSize = 8 + val = binary.BigEndian.Uint64(d.data[d.off : d.off+argumentSize]) + d.off += argumentSize + return + } + return +} + +func (d *decoder) numOfItemsUntilBreak() int { + savedOff := d.off + i := 0 + for !d.foundBreak() { + d.skip() + i++ + } + d.off = savedOff + return i +} + +// foundBreak returns true if next byte is CBOR break code and moves cursor by 1, +// otherwise it returns false. +// foundBreak assumes data is well-formed, and does not perform bounds checking. +func (d *decoder) foundBreak() bool { + if isBreakFlag(d.data[d.off]) { + d.off++ + return true + } + return false +} + +func (d *decoder) reset(data []byte) { + d.data = data + d.off = 0 + d.expectedLaterEncodingTags = d.expectedLaterEncodingTags[:0] +} + +func (d *decoder) nextCBORType() cborType { + return getType(d.data[d.off]) +} + +func (d *decoder) nextCBORNil() bool { + return d.data[d.off] == 0xf6 || d.data[d.off] == 0xf7 +} + +var ( + typeIntf = reflect.TypeOf([]interface{}(nil)).Elem() + typeTime = reflect.TypeOf(time.Time{}) + typeBigInt = reflect.TypeOf(big.Int{}) + typeUnmarshaler = reflect.TypeOf((*Unmarshaler)(nil)).Elem() + typeBinaryUnmarshaler = reflect.TypeOf((*encoding.BinaryUnmarshaler)(nil)).Elem() + typeString = reflect.TypeOf("") + typeByteSlice = reflect.TypeOf([]byte(nil)) +) + +func fillNil(_ cborType, v reflect.Value) error { + switch v.Kind() { + case reflect.Slice, reflect.Map, reflect.Interface, reflect.Ptr: + v.Set(reflect.Zero(v.Type())) + return nil + } + return nil +} + +func fillPositiveInt(t cborType, val uint64, v reflect.Value) error { + switch v.Kind() { + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + if val > math.MaxInt64 { + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: v.Type().String(), + errorMsg: strconv.FormatUint(val, 10) + " overflows " + v.Type().String(), + } + } + if v.OverflowInt(int64(val)) { + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: v.Type().String(), + errorMsg: strconv.FormatUint(val, 10) + " overflows " + v.Type().String(), + } + } + v.SetInt(int64(val)) + return nil + + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64: + if v.OverflowUint(val) { + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: v.Type().String(), + errorMsg: strconv.FormatUint(val, 10) + " overflows " + v.Type().String(), + } + } + v.SetUint(val) + return nil + + case reflect.Float32, reflect.Float64: + f := float64(val) + v.SetFloat(f) + return nil + } + + if v.Type() == typeBigInt { + i := new(big.Int).SetUint64(val) + v.Set(reflect.ValueOf(*i)) + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func fillNegativeInt(t cborType, val int64, v reflect.Value) error { + switch v.Kind() { + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + if v.OverflowInt(val) { + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: v.Type().String(), + errorMsg: strconv.FormatInt(val, 10) + " overflows " + v.Type().String(), + } + } + v.SetInt(val) + return nil + + case reflect.Float32, reflect.Float64: + f := float64(val) + v.SetFloat(f) + return nil + } + if v.Type() == typeBigInt { + i := new(big.Int).SetInt64(val) + v.Set(reflect.ValueOf(*i)) + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func fillBool(t cborType, val bool, v reflect.Value) error { + if v.Kind() == reflect.Bool { + v.SetBool(val) + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func fillFloat(t cborType, val float64, v reflect.Value) error { + switch v.Kind() { + case reflect.Float32, reflect.Float64: + if v.OverflowFloat(val) { + return &UnmarshalTypeError{ + CBORType: t.String(), + GoType: v.Type().String(), + errorMsg: strconv.FormatFloat(val, 'E', -1, 64) + " overflows " + v.Type().String(), + } + } + v.SetFloat(val) + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func fillByteString(t cborType, val []byte, shared bool, v reflect.Value, bsts ByteStringToStringMode, bum BinaryUnmarshalerMode) error { + if bum == BinaryUnmarshalerByteString && reflect.PtrTo(v.Type()).Implements(typeBinaryUnmarshaler) { + if v.CanAddr() { + v = v.Addr() + if u, ok := v.Interface().(encoding.BinaryUnmarshaler); ok { + // The contract of BinaryUnmarshaler forbids + // retaining the input bytes, so no copying is + // required even if val is shared. + return u.UnmarshalBinary(val) + } + } + return errors.New("cbor: cannot set new value for " + v.Type().String()) + } + if bsts != ByteStringToStringForbidden && v.Kind() == reflect.String { + v.SetString(string(val)) + return nil + } + if v.Kind() == reflect.Slice && v.Type().Elem().Kind() == reflect.Uint8 { + src := val + if shared { + // SetBytes shares the underlying bytes of the source slice. + src = make([]byte, len(val)) + copy(src, val) + } + v.SetBytes(src) + return nil + } + if v.Kind() == reflect.Array && v.Type().Elem().Kind() == reflect.Uint8 { + vLen := v.Len() + i := 0 + for ; i < vLen && i < len(val); i++ { + v.Index(i).SetUint(uint64(val[i])) + } + // Set remaining Go array elements to zero values. + if i < vLen { + zeroV := reflect.Zero(reflect.TypeOf(byte(0))) + for ; i < vLen; i++ { + v.Index(i).Set(zeroV) + } + } + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func fillTextString(t cborType, val []byte, v reflect.Value) error { + if v.Kind() == reflect.String { + v.SetString(string(val)) + return nil + } + return &UnmarshalTypeError{CBORType: t.String(), GoType: v.Type().String()} +} + +func isImmutableKind(k reflect.Kind) bool { + switch k { + case reflect.Bool, + reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, + reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, + reflect.Float32, reflect.Float64, + reflect.String: + return true + + default: + return false + } +} + +func isHashableValue(rv reflect.Value) bool { + switch rv.Kind() { + case reflect.Slice, reflect.Map, reflect.Func: + return false + + case reflect.Struct: + switch rv.Type() { + case typeTag: + tag := rv.Interface().(Tag) + return isHashableValue(reflect.ValueOf(tag.Content)) + case typeBigInt: + return false + } + } + return true +} + +// convertByteSliceToByteString converts []byte to ByteString if +// - v is []byte type, or +// - v is Tag type and tag content type is []byte +// This function also handles nested tags. +// CBOR data is already verified to be well-formed before this function is used, +// so the recursion won't exceed max nested levels. +func convertByteSliceToByteString(v interface{}) (interface{}, bool) { + switch v := v.(type) { + case []byte: + return ByteString(v), true + + case Tag: + content, converted := convertByteSliceToByteString(v.Content) + if converted { + return Tag{Number: v.Number, Content: content}, true + } + } + return v, false +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/diagnose.go b/api/vendor/github.com/fxamacker/cbor/v2/diagnose.go new file mode 100644 index 000000000..44afb8660 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/diagnose.go @@ -0,0 +1,724 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "bytes" + "encoding/base32" + "encoding/base64" + "encoding/hex" + "errors" + "fmt" + "io" + "math" + "math/big" + "strconv" + "unicode/utf16" + "unicode/utf8" + + "github.com/x448/float16" +) + +// DiagMode is the main interface for CBOR diagnostic notation. +type DiagMode interface { + // Diagnose returns extended diagnostic notation (EDN) of CBOR data items using this DiagMode. + Diagnose([]byte) (string, error) + + // DiagnoseFirst returns extended diagnostic notation (EDN) of the first CBOR data item using the DiagMode. Any remaining bytes are returned in rest. + DiagnoseFirst([]byte) (string, []byte, error) + + // DiagOptions returns user specified options used to create this DiagMode. + DiagOptions() DiagOptions +} + +// ByteStringEncoding specifies the base encoding that byte strings are notated. +type ByteStringEncoding uint8 + +const ( + // ByteStringBase16Encoding encodes byte strings in base16, without padding. + ByteStringBase16Encoding ByteStringEncoding = iota + + // ByteStringBase32Encoding encodes byte strings in base32, without padding. + ByteStringBase32Encoding + + // ByteStringBase32HexEncoding encodes byte strings in base32hex, without padding. + ByteStringBase32HexEncoding + + // ByteStringBase64Encoding encodes byte strings in base64url, without padding. + ByteStringBase64Encoding + + maxByteStringEncoding +) + +func (bse ByteStringEncoding) valid() error { + if bse >= maxByteStringEncoding { + return errors.New("cbor: invalid ByteStringEncoding " + strconv.Itoa(int(bse))) + } + return nil +} + +// DiagOptions specifies Diag options. +type DiagOptions struct { + // ByteStringEncoding specifies the base encoding that byte strings are notated. + // Default is ByteStringBase16Encoding. + ByteStringEncoding ByteStringEncoding + + // ByteStringHexWhitespace specifies notating with whitespace in byte string + // when ByteStringEncoding is ByteStringBase16Encoding. + ByteStringHexWhitespace bool + + // ByteStringText specifies notating with text in byte string + // if it is a valid UTF-8 text. + ByteStringText bool + + // ByteStringEmbeddedCBOR specifies notating embedded CBOR in byte string + // if it is a valid CBOR bytes. + ByteStringEmbeddedCBOR bool + + // CBORSequence specifies notating CBOR sequences. + // otherwise, it returns an error if there are more bytes after the first CBOR. + CBORSequence bool + + // FloatPrecisionIndicator specifies appending a suffix to indicate float precision. + // Refer to https://www.rfc-editor.org/rfc/rfc8949.html#name-encoding-indicators. + FloatPrecisionIndicator bool + + // MaxNestedLevels specifies the max nested levels allowed for any combination of CBOR array, maps, and tags. + // Default is 32 levels and it can be set to [4, 65535]. Note that higher maximum levels of nesting can + // require larger amounts of stack to deserialize. Don't increase this higher than you require. + MaxNestedLevels int + + // MaxArrayElements specifies the max number of elements for CBOR arrays. + // Default is 128*1024=131072 and it can be set to [16, 2147483647] + MaxArrayElements int + + // MaxMapPairs specifies the max number of key-value pairs for CBOR maps. + // Default is 128*1024=131072 and it can be set to [16, 2147483647] + MaxMapPairs int +} + +// DiagMode returns a DiagMode with immutable options. +func (opts DiagOptions) DiagMode() (DiagMode, error) { + return opts.diagMode() +} + +func (opts DiagOptions) diagMode() (*diagMode, error) { + if err := opts.ByteStringEncoding.valid(); err != nil { + return nil, err + } + + decMode, err := DecOptions{ + MaxNestedLevels: opts.MaxNestedLevels, + MaxArrayElements: opts.MaxArrayElements, + MaxMapPairs: opts.MaxMapPairs, + }.decMode() + if err != nil { + return nil, err + } + + return &diagMode{ + byteStringEncoding: opts.ByteStringEncoding, + byteStringHexWhitespace: opts.ByteStringHexWhitespace, + byteStringText: opts.ByteStringText, + byteStringEmbeddedCBOR: opts.ByteStringEmbeddedCBOR, + cborSequence: opts.CBORSequence, + floatPrecisionIndicator: opts.FloatPrecisionIndicator, + decMode: decMode, + }, nil +} + +type diagMode struct { + byteStringEncoding ByteStringEncoding + byteStringHexWhitespace bool + byteStringText bool + byteStringEmbeddedCBOR bool + cborSequence bool + floatPrecisionIndicator bool + decMode *decMode +} + +// DiagOptions returns user specified options used to create this DiagMode. +func (dm *diagMode) DiagOptions() DiagOptions { + return DiagOptions{ + ByteStringEncoding: dm.byteStringEncoding, + ByteStringHexWhitespace: dm.byteStringHexWhitespace, + ByteStringText: dm.byteStringText, + ByteStringEmbeddedCBOR: dm.byteStringEmbeddedCBOR, + CBORSequence: dm.cborSequence, + FloatPrecisionIndicator: dm.floatPrecisionIndicator, + MaxNestedLevels: dm.decMode.maxNestedLevels, + MaxArrayElements: dm.decMode.maxArrayElements, + MaxMapPairs: dm.decMode.maxMapPairs, + } +} + +// Diagnose returns extended diagnostic notation (EDN) of CBOR data items using the DiagMode. +func (dm *diagMode) Diagnose(data []byte) (string, error) { + return newDiagnose(data, dm.decMode, dm).diag(dm.cborSequence) +} + +// DiagnoseFirst returns extended diagnostic notation (EDN) of the first CBOR data item using the DiagMode. Any remaining bytes are returned in rest. +func (dm *diagMode) DiagnoseFirst(data []byte) (diagNotation string, rest []byte, err error) { + return newDiagnose(data, dm.decMode, dm).diagFirst() +} + +var defaultDiagMode, _ = DiagOptions{}.diagMode() + +// Diagnose returns extended diagnostic notation (EDN) of CBOR data items +// using the default diagnostic mode. +// +// Refer to https://www.rfc-editor.org/rfc/rfc8949.html#name-diagnostic-notation. +func Diagnose(data []byte) (string, error) { + return defaultDiagMode.Diagnose(data) +} + +// Diagnose returns extended diagnostic notation (EDN) of the first CBOR data item using the DiagMode. Any remaining bytes are returned in rest. +func DiagnoseFirst(data []byte) (diagNotation string, rest []byte, err error) { + return defaultDiagMode.DiagnoseFirst(data) +} + +type diagnose struct { + dm *diagMode + d *decoder + w *bytes.Buffer +} + +func newDiagnose(data []byte, decm *decMode, diagm *diagMode) *diagnose { + return &diagnose{ + dm: diagm, + d: &decoder{data: data, dm: decm}, + w: &bytes.Buffer{}, + } +} + +func (di *diagnose) diag(cborSequence bool) (string, error) { + // CBOR Sequence + firstItem := true + for { + switch err := di.wellformed(cborSequence); err { + case nil: + if !firstItem { + di.w.WriteString(", ") + } + firstItem = false + if itemErr := di.item(); itemErr != nil { + return di.w.String(), itemErr + } + + case io.EOF: + if firstItem { + return di.w.String(), err + } + return di.w.String(), nil + + default: + return di.w.String(), err + } + } +} + +func (di *diagnose) diagFirst() (diagNotation string, rest []byte, err error) { + err = di.wellformed(true) + if err == nil { + err = di.item() + } + + if err == nil { + // Return EDN and the rest of the data slice (which might be len 0) + return di.w.String(), di.d.data[di.d.off:], nil + } + + return di.w.String(), nil, err +} + +func (di *diagnose) wellformed(allowExtraData bool) error { + off := di.d.off + err := di.d.wellformed(allowExtraData, false) + di.d.off = off + return err +} + +func (di *diagnose) item() error { //nolint:gocyclo + initialByte := di.d.data[di.d.off] + switch initialByte { + case cborByteStringWithIndefiniteLengthHead, + cborTextStringWithIndefiniteLengthHead: // indefinite-length byte/text string + di.d.off++ + if isBreakFlag(di.d.data[di.d.off]) { + di.d.off++ + switch initialByte { + case cborByteStringWithIndefiniteLengthHead: + // indefinite-length bytes with no chunks. + di.w.WriteString(`''_`) + return nil + case cborTextStringWithIndefiniteLengthHead: + // indefinite-length text with no chunks. + di.w.WriteString(`""_`) + return nil + } + } + + di.w.WriteString("(_ ") + + i := 0 + for !di.d.foundBreak() { + if i > 0 { + di.w.WriteString(", ") + } + + i++ + // wellformedIndefiniteString() already checked that the next item is a byte/text string. + if err := di.item(); err != nil { + return err + } + } + + di.w.WriteByte(')') + return nil + + case cborArrayWithIndefiniteLengthHead: // indefinite-length array + di.d.off++ + di.w.WriteString("[_ ") + + i := 0 + for !di.d.foundBreak() { + if i > 0 { + di.w.WriteString(", ") + } + + i++ + if err := di.item(); err != nil { + return err + } + } + + di.w.WriteByte(']') + return nil + + case cborMapWithIndefiniteLengthHead: // indefinite-length map + di.d.off++ + di.w.WriteString("{_ ") + + i := 0 + for !di.d.foundBreak() { + if i > 0 { + di.w.WriteString(", ") + } + + i++ + // key + if err := di.item(); err != nil { + return err + } + + di.w.WriteString(": ") + + // value + if err := di.item(); err != nil { + return err + } + } + + di.w.WriteByte('}') + return nil + } + + t := di.d.nextCBORType() + switch t { + case cborTypePositiveInt: + _, _, val := di.d.getHead() + di.w.WriteString(strconv.FormatUint(val, 10)) + return nil + + case cborTypeNegativeInt: + _, _, val := di.d.getHead() + if val > math.MaxInt64 { + // CBOR negative integer overflows int64, use big.Int to store value. + bi := new(big.Int) + bi.SetUint64(val) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + di.w.WriteString(bi.String()) + return nil + } + + nValue := int64(-1) ^ int64(val) + di.w.WriteString(strconv.FormatInt(nValue, 10)) + return nil + + case cborTypeByteString: + b, _ := di.d.parseByteString() + return di.encodeByteString(b) + + case cborTypeTextString: + b, err := di.d.parseTextString() + if err != nil { + return err + } + return di.encodeTextString(string(b), '"') + + case cborTypeArray: + _, _, val := di.d.getHead() + count := int(val) + di.w.WriteByte('[') + + for i := 0; i < count; i++ { + if i > 0 { + di.w.WriteString(", ") + } + if err := di.item(); err != nil { + return err + } + } + di.w.WriteByte(']') + return nil + + case cborTypeMap: + _, _, val := di.d.getHead() + count := int(val) + di.w.WriteByte('{') + + for i := 0; i < count; i++ { + if i > 0 { + di.w.WriteString(", ") + } + // key + if err := di.item(); err != nil { + return err + } + di.w.WriteString(": ") + // value + if err := di.item(); err != nil { + return err + } + } + di.w.WriteByte('}') + return nil + + case cborTypeTag: + _, _, tagNum := di.d.getHead() + switch tagNum { + case tagNumUnsignedBignum: + if nt := di.d.nextCBORType(); nt != cborTypeByteString { + return newInadmissibleTagContentTypeError( + tagNumUnsignedBignum, + "byte string", + nt.String()) + } + + b, _ := di.d.parseByteString() + bi := new(big.Int).SetBytes(b) + di.w.WriteString(bi.String()) + return nil + + case tagNumNegativeBignum: + if nt := di.d.nextCBORType(); nt != cborTypeByteString { + return newInadmissibleTagContentTypeError( + tagNumNegativeBignum, + "byte string", + nt.String(), + ) + } + + b, _ := di.d.parseByteString() + bi := new(big.Int).SetBytes(b) + bi.Add(bi, big.NewInt(1)) + bi.Neg(bi) + di.w.WriteString(bi.String()) + return nil + + default: + di.w.WriteString(strconv.FormatUint(tagNum, 10)) + di.w.WriteByte('(') + if err := di.item(); err != nil { + return err + } + di.w.WriteByte(')') + return nil + } + + case cborTypePrimitives: + _, ai, val := di.d.getHead() + switch ai { + case additionalInformationAsFalse: + di.w.WriteString("false") + return nil + + case additionalInformationAsTrue: + di.w.WriteString("true") + return nil + + case additionalInformationAsNull: + di.w.WriteString("null") + return nil + + case additionalInformationAsUndefined: + di.w.WriteString("undefined") + return nil + + case additionalInformationAsFloat16, + additionalInformationAsFloat32, + additionalInformationAsFloat64: + return di.encodeFloat(ai, val) + + default: + di.w.WriteString("simple(") + di.w.WriteString(strconv.FormatUint(val, 10)) + di.w.WriteByte(')') + return nil + } + } + + return nil +} + +// writeU16 format a rune as "\uxxxx" +func (di *diagnose) writeU16(val rune) { + di.w.WriteString("\\u") + var in [2]byte + in[0] = byte(val >> 8) + in[1] = byte(val) + sz := hex.EncodedLen(len(in)) + di.w.Grow(sz) + dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] + hex.Encode(dst, in[:]) + di.w.Write(dst) +} + +var rawBase32Encoding = base32.StdEncoding.WithPadding(base32.NoPadding) +var rawBase32HexEncoding = base32.HexEncoding.WithPadding(base32.NoPadding) + +func (di *diagnose) encodeByteString(val []byte) error { + if len(val) > 0 { + if di.dm.byteStringText && utf8.Valid(val) { + return di.encodeTextString(string(val), '\'') + } + + if di.dm.byteStringEmbeddedCBOR { + di2 := newDiagnose(val, di.dm.decMode, di.dm) + // should always notating embedded CBOR sequence. + if str, err := di2.diag(true); err == nil { + di.w.WriteString("<<") + di.w.WriteString(str) + di.w.WriteString(">>") + return nil + } + } + } + + switch di.dm.byteStringEncoding { + case ByteStringBase16Encoding: + di.w.WriteString("h'") + if di.dm.byteStringHexWhitespace { + sz := hex.EncodedLen(len(val)) + if len(val) > 0 { + sz += len(val) - 1 + } + di.w.Grow(sz) + + dst := di.w.Bytes()[di.w.Len():] + for i := range val { + if i > 0 { + dst = append(dst, ' ') + } + hex.Encode(dst[len(dst):len(dst)+2], val[i:i+1]) + dst = dst[:len(dst)+2] + } + di.w.Write(dst) + } else { + sz := hex.EncodedLen(len(val)) + di.w.Grow(sz) + dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] + hex.Encode(dst, val) + di.w.Write(dst) + } + di.w.WriteByte('\'') + return nil + + case ByteStringBase32Encoding: + di.w.WriteString("b32'") + sz := rawBase32Encoding.EncodedLen(len(val)) + di.w.Grow(sz) + dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] + rawBase32Encoding.Encode(dst, val) + di.w.Write(dst) + di.w.WriteByte('\'') + return nil + + case ByteStringBase32HexEncoding: + di.w.WriteString("h32'") + sz := rawBase32HexEncoding.EncodedLen(len(val)) + di.w.Grow(sz) + dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] + rawBase32HexEncoding.Encode(dst, val) + di.w.Write(dst) + di.w.WriteByte('\'') + return nil + + case ByteStringBase64Encoding: + di.w.WriteString("b64'") + sz := base64.RawURLEncoding.EncodedLen(len(val)) + di.w.Grow(sz) + dst := di.w.Bytes()[di.w.Len() : di.w.Len()+sz] + base64.RawURLEncoding.Encode(dst, val) + di.w.Write(dst) + di.w.WriteByte('\'') + return nil + + default: + // It should not be possible for users to construct a *diagMode with an invalid byte + // string encoding. + panic(fmt.Sprintf("diagmode has invalid ByteStringEncoding %v", di.dm.byteStringEncoding)) + } +} + +const utf16SurrSelf = rune(0x10000) + +// quote should be either `'` or `"` +func (di *diagnose) encodeTextString(val string, quote byte) error { + di.w.WriteByte(quote) + + for i := 0; i < len(val); { + if b := val[i]; b < utf8.RuneSelf { + switch { + case b == '\t', b == '\n', b == '\r', b == '\\', b == quote: + di.w.WriteByte('\\') + + switch b { + case '\t': + b = 't' + case '\n': + b = 'n' + case '\r': + b = 'r' + } + di.w.WriteByte(b) + + case b >= ' ' && b <= '~': + di.w.WriteByte(b) + + default: + di.writeU16(rune(b)) + } + + i++ + continue + } + + c, size := utf8.DecodeRuneInString(val[i:]) + switch { + case c == utf8.RuneError: + return &SemanticError{"cbor: invalid UTF-8 string"} + + case c < utf16SurrSelf: + di.writeU16(c) + + default: + c1, c2 := utf16.EncodeRune(c) + di.writeU16(c1) + di.writeU16(c2) + } + + i += size + } + + di.w.WriteByte(quote) + return nil +} + +func (di *diagnose) encodeFloat(ai byte, val uint64) error { + f64 := float64(0) + switch ai { + case additionalInformationAsFloat16: + f16 := float16.Frombits(uint16(val)) + switch { + case f16.IsNaN(): + di.w.WriteString("NaN") + return nil + case f16.IsInf(1): + di.w.WriteString("Infinity") + return nil + case f16.IsInf(-1): + di.w.WriteString("-Infinity") + return nil + default: + f64 = float64(f16.Float32()) + } + + case additionalInformationAsFloat32: + f32 := math.Float32frombits(uint32(val)) + switch { + case f32 != f32: + di.w.WriteString("NaN") + return nil + case f32 > math.MaxFloat32: + di.w.WriteString("Infinity") + return nil + case f32 < -math.MaxFloat32: + di.w.WriteString("-Infinity") + return nil + default: + f64 = float64(f32) + } + + case additionalInformationAsFloat64: + f64 = math.Float64frombits(val) + switch { + case f64 != f64: + di.w.WriteString("NaN") + return nil + case f64 > math.MaxFloat64: + di.w.WriteString("Infinity") + return nil + case f64 < -math.MaxFloat64: + di.w.WriteString("-Infinity") + return nil + } + } + // Use ES6 number to string conversion which should match most JSON generators. + // Inspired by https://github.com/golang/go/blob/4df10fba1687a6d4f51d7238a403f8f2298f6a16/src/encoding/json/encode.go#L585 + const bitSize = 64 + b := make([]byte, 0, 32) + if abs := math.Abs(f64); abs != 0 && (abs < 1e-6 || abs >= 1e21) { + b = strconv.AppendFloat(b, f64, 'e', -1, bitSize) + // clean up e-09 to e-9 + n := len(b) + if n >= 4 && string(b[n-4:n-1]) == "e-0" { + b = append(b[:n-2], b[n-1]) + } + } else { + b = strconv.AppendFloat(b, f64, 'f', -1, bitSize) + } + + // add decimal point and trailing zero if needed + if bytes.IndexByte(b, '.') < 0 { + if i := bytes.IndexByte(b, 'e'); i < 0 { + b = append(b, '.', '0') + } else { + b = append(b[:i+2], b[i:]...) + b[i] = '.' + b[i+1] = '0' + } + } + + di.w.WriteString(string(b)) + + if di.dm.floatPrecisionIndicator { + switch ai { + case additionalInformationAsFloat16: + di.w.WriteString("_1") + return nil + + case additionalInformationAsFloat32: + di.w.WriteString("_2") + return nil + + case additionalInformationAsFloat64: + di.w.WriteString("_3") + return nil + } + } + + return nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/doc.go b/api/vendor/github.com/fxamacker/cbor/v2/doc.go new file mode 100644 index 000000000..23f68b984 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/doc.go @@ -0,0 +1,129 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +/* +Package cbor is a modern CBOR codec (RFC 8949 & RFC 7049) with CBOR tags, +Go struct tags (toarray/keyasint/omitempty), Core Deterministic Encoding, +CTAP2, Canonical CBOR, float64->32->16, and duplicate map key detection. + +Encoding options allow "preferred serialization" by encoding integers and floats +to their smallest forms (e.g. float16) when values fit. + +Struct tags like "keyasint", "toarray" and "omitempty" make CBOR data smaller +and easier to use with structs. + +For example, "toarray" tag makes struct fields encode to CBOR array elements. And +"keyasint" makes a field encode to an element of CBOR map with specified int key. + +Latest docs can be viewed at https://github.com/fxamacker/cbor#cbor-library-in-go + +# Basics + +The Quick Start guide is at https://github.com/fxamacker/cbor#quick-start + +Function signatures identical to encoding/json include: + + Marshal, Unmarshal, NewEncoder, NewDecoder, (*Encoder).Encode, (*Decoder).Decode. + +Standard interfaces include: + + BinaryMarshaler, BinaryUnmarshaler, Marshaler, and Unmarshaler. + +Custom encoding and decoding is possible by implementing standard interfaces for +user-defined Go types. + +Codec functions are available at package-level (using defaults options) or by +creating modes from options at runtime. + +"Mode" in this API means definite way of encoding (EncMode) or decoding (DecMode). + +EncMode and DecMode interfaces are created from EncOptions or DecOptions structs. + + em, err := cbor.EncOptions{...}.EncMode() + em, err := cbor.CanonicalEncOptions().EncMode() + em, err := cbor.CTAP2EncOptions().EncMode() + +Modes use immutable options to avoid side-effects and simplify concurrency. Behavior of +modes won't accidentally change at runtime after they're created. + +Modes are intended to be reused and are safe for concurrent use. + +EncMode and DecMode Interfaces + + // EncMode interface uses immutable options and is safe for concurrent use. + type EncMode interface { + Marshal(v interface{}) ([]byte, error) + NewEncoder(w io.Writer) *Encoder + EncOptions() EncOptions // returns copy of options + } + + // DecMode interface uses immutable options and is safe for concurrent use. + type DecMode interface { + Unmarshal(data []byte, v interface{}) error + NewDecoder(r io.Reader) *Decoder + DecOptions() DecOptions // returns copy of options + } + +Using Default Encoding Mode + + b, err := cbor.Marshal(v) + + encoder := cbor.NewEncoder(w) + err = encoder.Encode(v) + +Using Default Decoding Mode + + err := cbor.Unmarshal(b, &v) + + decoder := cbor.NewDecoder(r) + err = decoder.Decode(&v) + +Creating and Using Encoding Modes + + // Create EncOptions using either struct literal or a function. + opts := cbor.CanonicalEncOptions() + + // If needed, modify encoding options + opts.Time = cbor.TimeUnix + + // Create reusable EncMode interface with immutable options, safe for concurrent use. + em, err := opts.EncMode() + + // Use EncMode like encoding/json, with same function signatures. + b, err := em.Marshal(v) + // or + encoder := em.NewEncoder(w) + err := encoder.Encode(v) + + // NOTE: Both em.Marshal(v) and encoder.Encode(v) use encoding options + // specified during creation of em (encoding mode). + +# CBOR Options + +Predefined Encoding Options: https://github.com/fxamacker/cbor#predefined-encoding-options + +Encoding Options: https://github.com/fxamacker/cbor#encoding-options + +Decoding Options: https://github.com/fxamacker/cbor#decoding-options + +# Struct Tags + +Struct tags like `cbor:"name,omitempty"` and `json:"name,omitempty"` work as expected. +If both struct tags are specified then `cbor` is used. + +Struct tags like "keyasint", "toarray", and "omitempty" make it easy to use +very compact formats like COSE and CWT (CBOR Web Tokens) with structs. + +For example, "toarray" makes struct fields encode to array elements. And "keyasint" +makes struct fields encode to elements of CBOR map with int keys. + +https://raw.githubusercontent.com/fxamacker/images/master/cbor/v2.0.0/cbor_easy_api.png + +Struct tags are listed at https://github.com/fxamacker/cbor#struct-tags-1 + +# Tests and Fuzzing + +Over 375 tests are included in this package. Cover-guided fuzzing is handled by +a private fuzzer that replaced fxamacker/cbor-fuzz years ago. +*/ +package cbor diff --git a/api/vendor/github.com/fxamacker/cbor/v2/encode.go b/api/vendor/github.com/fxamacker/cbor/v2/encode.go new file mode 100644 index 000000000..6508e291d --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/encode.go @@ -0,0 +1,1989 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "bytes" + "encoding" + "encoding/binary" + "errors" + "fmt" + "io" + "math" + "math/big" + "math/rand" + "reflect" + "sort" + "strconv" + "sync" + "time" + + "github.com/x448/float16" +) + +// Marshal returns the CBOR encoding of v using default encoding options. +// See EncOptions for encoding options. +// +// Marshal uses the following encoding rules: +// +// If value implements the Marshaler interface, Marshal calls its +// MarshalCBOR method. +// +// If value implements encoding.BinaryMarshaler, Marhsal calls its +// MarshalBinary method and encode it as CBOR byte string. +// +// Boolean values encode as CBOR booleans (type 7). +// +// Positive integer values encode as CBOR positive integers (type 0). +// +// Negative integer values encode as CBOR negative integers (type 1). +// +// Floating point values encode as CBOR floating points (type 7). +// +// String values encode as CBOR text strings (type 3). +// +// []byte values encode as CBOR byte strings (type 2). +// +// Array and slice values encode as CBOR arrays (type 4). +// +// Map values encode as CBOR maps (type 5). +// +// Struct values encode as CBOR maps (type 5). Each exported struct field +// becomes a pair with field name encoded as CBOR text string (type 3) and +// field value encoded based on its type. See struct tag option "keyasint" +// to encode field name as CBOR integer (type 0 and 1). Also see struct +// tag option "toarray" for special field "_" to encode struct values as +// CBOR array (type 4). +// +// Marshal supports format string stored under the "cbor" key in the struct +// field's tag. CBOR format string can specify the name of the field, +// "omitempty" and "keyasint" options, and special case "-" for field omission. +// If "cbor" key is absent, Marshal uses "json" key. +// +// Struct field name is treated as integer if it has "keyasint" option in +// its format string. The format string must specify an integer as its +// field name. +// +// Special struct field "_" is used to specify struct level options, such as +// "toarray". "toarray" option enables Go struct to be encoded as CBOR array. +// "omitempty" is disabled by "toarray" to ensure that the same number +// of elements are encoded every time. +// +// Anonymous struct fields are marshaled as if their exported fields +// were fields in the outer struct. Marshal follows the same struct fields +// visibility rules used by JSON encoding package. +// +// time.Time values encode as text strings specified in RFC3339 or numerical +// representation of seconds since January 1, 1970 UTC depending on +// EncOptions.Time setting. Also See EncOptions.TimeTag to encode +// time.Time as CBOR tag with tag number 0 or 1. +// +// big.Int values encode as CBOR integers (type 0 and 1) if values fit. +// Otherwise, big.Int values encode as CBOR bignums (tag 2 and 3). See +// EncOptions.BigIntConvert to always encode big.Int values as CBOR +// bignums. +// +// Pointer values encode as the value pointed to. +// +// Interface values encode as the value stored in the interface. +// +// Nil slice/map/pointer/interface values encode as CBOR nulls (type 7). +// +// Values of other types cannot be encoded in CBOR. Attempting +// to encode such a value causes Marshal to return an UnsupportedTypeError. +func Marshal(v interface{}) ([]byte, error) { + return defaultEncMode.Marshal(v) +} + +// MarshalToBuffer encodes v into provided buffer (instead of using built-in buffer pool) +// and uses default encoding options. +// +// NOTE: Unlike Marshal, the buffer provided to MarshalToBuffer can contain +// partially encoded data if error is returned. +// +// See Marshal for more details. +func MarshalToBuffer(v interface{}, buf *bytes.Buffer) error { + return defaultEncMode.MarshalToBuffer(v, buf) +} + +// Marshaler is the interface implemented by types that can marshal themselves +// into valid CBOR. +type Marshaler interface { + MarshalCBOR() ([]byte, error) +} + +// MarshalerError represents error from checking encoded CBOR data item +// returned from MarshalCBOR for well-formedness and some very limited tag validation. +type MarshalerError struct { + typ reflect.Type + err error +} + +func (e *MarshalerError) Error() string { + return "cbor: error calling MarshalCBOR for type " + + e.typ.String() + + ": " + e.err.Error() +} + +func (e *MarshalerError) Unwrap() error { + return e.err +} + +// UnsupportedTypeError is returned by Marshal when attempting to encode value +// of an unsupported type. +type UnsupportedTypeError struct { + Type reflect.Type +} + +func (e *UnsupportedTypeError) Error() string { + return "cbor: unsupported type: " + e.Type.String() +} + +// UnsupportedValueError is returned by Marshal when attempting to encode an +// unsupported value. +type UnsupportedValueError struct { + msg string +} + +func (e *UnsupportedValueError) Error() string { + return "cbor: unsupported value: " + e.msg +} + +// SortMode identifies supported sorting order. +type SortMode int + +const ( + // SortNone encodes map pairs and struct fields in an arbitrary order. + SortNone SortMode = 0 + + // SortLengthFirst causes map keys or struct fields to be sorted such that: + // - If two keys have different lengths, the shorter one sorts earlier; + // - If two keys have the same length, the one with the lower value in + // (byte-wise) lexical order sorts earlier. + // It is used in "Canonical CBOR" encoding in RFC 7049 3.9. + SortLengthFirst SortMode = 1 + + // SortBytewiseLexical causes map keys or struct fields to be sorted in the + // bytewise lexicographic order of their deterministic CBOR encodings. + // It is used in "CTAP2 Canonical CBOR" and "Core Deterministic Encoding" + // in RFC 7049bis. + SortBytewiseLexical SortMode = 2 + + // SortShuffle encodes map pairs and struct fields in a shuffled + // order. This mode does not guarantee an unbiased permutation, but it + // does guarantee that the runtime of the shuffle algorithm used will be + // constant. + SortFastShuffle SortMode = 3 + + // SortCanonical is used in "Canonical CBOR" encoding in RFC 7049 3.9. + SortCanonical SortMode = SortLengthFirst + + // SortCTAP2 is used in "CTAP2 Canonical CBOR". + SortCTAP2 SortMode = SortBytewiseLexical + + // SortCoreDeterministic is used in "Core Deterministic Encoding" in RFC 7049bis. + SortCoreDeterministic SortMode = SortBytewiseLexical + + maxSortMode SortMode = 4 +) + +func (sm SortMode) valid() bool { + return sm >= 0 && sm < maxSortMode +} + +// StringMode specifies how to encode Go string values. +type StringMode int + +const ( + // StringToTextString encodes Go string to CBOR text string (major type 3). + StringToTextString StringMode = iota + + // StringToByteString encodes Go string to CBOR byte string (major type 2). + StringToByteString +) + +func (st StringMode) cborType() (cborType, error) { + switch st { + case StringToTextString: + return cborTypeTextString, nil + + case StringToByteString: + return cborTypeByteString, nil + } + return 0, errors.New("cbor: invalid StringType " + strconv.Itoa(int(st))) +} + +// ShortestFloatMode specifies which floating-point format should +// be used as the shortest possible format for CBOR encoding. +// It is not used for encoding Infinity and NaN values. +type ShortestFloatMode int + +const ( + // ShortestFloatNone makes float values encode without any conversion. + // This is the default for ShortestFloatMode in v1. + // E.g. a float32 in Go will encode to CBOR float32. And + // a float64 in Go will encode to CBOR float64. + ShortestFloatNone ShortestFloatMode = iota + + // ShortestFloat16 specifies float16 as the shortest form that preserves value. + // E.g. if float64 can convert to float32 while preserving value, then + // encoding will also try to convert float32 to float16. So a float64 might + // encode as CBOR float64, float32 or float16 depending on the value. + ShortestFloat16 + + maxShortestFloat +) + +func (sfm ShortestFloatMode) valid() bool { + return sfm >= 0 && sfm < maxShortestFloat +} + +// NaNConvertMode specifies how to encode NaN and overrides ShortestFloatMode. +// ShortestFloatMode is not used for encoding Infinity and NaN values. +type NaNConvertMode int + +const ( + // NaNConvert7e00 always encodes NaN to 0xf97e00 (CBOR float16 = 0x7e00). + NaNConvert7e00 NaNConvertMode = iota + + // NaNConvertNone never modifies or converts NaN to other representations + // (float64 NaN stays float64, etc. even if it can use float16 without losing + // any bits). + NaNConvertNone + + // NaNConvertPreserveSignal converts NaN to the smallest form that preserves + // value (quiet bit + payload) as described in RFC 7049bis Draft 12. + NaNConvertPreserveSignal + + // NaNConvertQuiet always forces quiet bit = 1 and shortest form that preserves + // NaN payload. + NaNConvertQuiet + + // NaNConvertReject returns UnsupportedValueError on attempts to encode a NaN value. + NaNConvertReject + + maxNaNConvert +) + +func (ncm NaNConvertMode) valid() bool { + return ncm >= 0 && ncm < maxNaNConvert +} + +// InfConvertMode specifies how to encode Infinity and overrides ShortestFloatMode. +// ShortestFloatMode is not used for encoding Infinity and NaN values. +type InfConvertMode int + +const ( + // InfConvertFloat16 always converts Inf to lossless IEEE binary16 (float16). + InfConvertFloat16 InfConvertMode = iota + + // InfConvertNone never converts (used by CTAP2 Canonical CBOR). + InfConvertNone + + // InfConvertReject returns UnsupportedValueError on attempts to encode an infinite value. + InfConvertReject + + maxInfConvert +) + +func (icm InfConvertMode) valid() bool { + return icm >= 0 && icm < maxInfConvert +} + +// TimeMode specifies how to encode time.Time values. +type TimeMode int + +const ( + // TimeUnix causes time.Time to be encoded as epoch time in integer with second precision. + TimeUnix TimeMode = iota + + // TimeUnixMicro causes time.Time to be encoded as epoch time in float-point rounded to microsecond precision. + TimeUnixMicro + + // TimeUnixDynamic causes time.Time to be encoded as integer if time.Time doesn't have fractional seconds, + // otherwise float-point rounded to microsecond precision. + TimeUnixDynamic + + // TimeRFC3339 causes time.Time to be encoded as RFC3339 formatted string with second precision. + TimeRFC3339 + + // TimeRFC3339Nano causes time.Time to be encoded as RFC3339 formatted string with nanosecond precision. + TimeRFC3339Nano + + maxTimeMode +) + +func (tm TimeMode) valid() bool { + return tm >= 0 && tm < maxTimeMode +} + +// BigIntConvertMode specifies how to encode big.Int values. +type BigIntConvertMode int + +const ( + // BigIntConvertShortest makes big.Int encode to CBOR integer if value fits. + // E.g. if big.Int value can be converted to CBOR integer while preserving + // value, encoder will encode it to CBOR integer (major type 0 or 1). + BigIntConvertShortest BigIntConvertMode = iota + + // BigIntConvertNone makes big.Int encode to CBOR bignum (tag 2 or 3) without + // converting it to another CBOR type. + BigIntConvertNone + + // BigIntConvertReject returns an UnsupportedTypeError instead of marshaling a big.Int. + BigIntConvertReject + + maxBigIntConvert +) + +func (bim BigIntConvertMode) valid() bool { + return bim >= 0 && bim < maxBigIntConvert +} + +// NilContainersMode specifies how to encode nil slices and maps. +type NilContainersMode int + +const ( + // NilContainerAsNull encodes nil slices and maps as CBOR null. + // This is the default. + NilContainerAsNull NilContainersMode = iota + + // NilContainerAsEmpty encodes nil slices and maps as + // empty container (CBOR bytestring, array, or map). + NilContainerAsEmpty + + maxNilContainersMode +) + +func (m NilContainersMode) valid() bool { + return m >= 0 && m < maxNilContainersMode +} + +// OmitEmptyMode specifies how to encode struct fields with omitempty tag. +// The default behavior omits if field value would encode as empty CBOR value. +type OmitEmptyMode int + +const ( + // OmitEmptyCBORValue specifies that struct fields tagged with "omitempty" + // should be omitted from encoding if the field would be encoded as an empty + // CBOR value, such as CBOR false, 0, 0.0, nil, empty byte, empty string, + // empty array, or empty map. + OmitEmptyCBORValue OmitEmptyMode = iota + + // OmitEmptyGoValue specifies that struct fields tagged with "omitempty" + // should be omitted from encoding if the field has an empty Go value, + // defined as false, 0, 0.0, a nil pointer, a nil interface value, and + // any empty array, slice, map, or string. + // This behavior is the same as the current (aka v1) encoding/json package + // included in Go. + OmitEmptyGoValue + + maxOmitEmptyMode +) + +func (om OmitEmptyMode) valid() bool { + return om >= 0 && om < maxOmitEmptyMode +} + +// FieldNameMode specifies the CBOR type to use when encoding struct field names. +type FieldNameMode int + +const ( + // FieldNameToTextString encodes struct fields to CBOR text string (major type 3). + FieldNameToTextString FieldNameMode = iota + + // FieldNameToTextString encodes struct fields to CBOR byte string (major type 2). + FieldNameToByteString + + maxFieldNameMode +) + +func (fnm FieldNameMode) valid() bool { + return fnm >= 0 && fnm < maxFieldNameMode +} + +// ByteSliceLaterFormatMode specifies which later format conversion hint (CBOR tag 21-23) +// to include (if any) when encoding Go byte slice to CBOR byte string. The encoder will +// always encode unmodified bytes from the byte slice and just wrap it within +// CBOR tag 21, 22, or 23 if specified. +// See "Expected Later Encoding for CBOR-to-JSON Converters" in RFC 8949 Section 3.4.5.2. +type ByteSliceLaterFormatMode int + +const ( + // ByteSliceLaterFormatNone encodes unmodified bytes from Go byte slice to CBOR byte string (major type 2) + // without adding CBOR tag 21, 22, or 23. + ByteSliceLaterFormatNone ByteSliceLaterFormatMode = iota + + // ByteSliceLaterFormatBase64URL encodes unmodified bytes from Go byte slice to CBOR byte string (major type 2) + // inside CBOR tag 21 (expected later conversion to base64url encoding, see RFC 8949 Section 3.4.5.2). + ByteSliceLaterFormatBase64URL + + // ByteSliceLaterFormatBase64 encodes unmodified bytes from Go byte slice to CBOR byte string (major type 2) + // inside CBOR tag 22 (expected later conversion to base64 encoding, see RFC 8949 Section 3.4.5.2). + ByteSliceLaterFormatBase64 + + // ByteSliceLaterFormatBase16 encodes unmodified bytes from Go byte slice to CBOR byte string (major type 2) + // inside CBOR tag 23 (expected later conversion to base16 encoding, see RFC 8949 Section 3.4.5.2). + ByteSliceLaterFormatBase16 +) + +func (bsefm ByteSliceLaterFormatMode) encodingTag() (uint64, error) { + switch bsefm { + case ByteSliceLaterFormatNone: + return 0, nil + + case ByteSliceLaterFormatBase64URL: + return tagNumExpectedLaterEncodingBase64URL, nil + + case ByteSliceLaterFormatBase64: + return tagNumExpectedLaterEncodingBase64, nil + + case ByteSliceLaterFormatBase16: + return tagNumExpectedLaterEncodingBase16, nil + } + return 0, errors.New("cbor: invalid ByteSliceLaterFormat " + strconv.Itoa(int(bsefm))) +} + +// ByteArrayMode specifies how to encode byte arrays. +type ByteArrayMode int + +const ( + // ByteArrayToByteSlice encodes byte arrays the same way that a byte slice with identical + // length and contents is encoded. + ByteArrayToByteSlice ByteArrayMode = iota + + // ByteArrayToArray encodes byte arrays to the CBOR array type with one unsigned integer + // item for each byte in the array. + ByteArrayToArray + + maxByteArrayMode +) + +func (bam ByteArrayMode) valid() bool { + return bam >= 0 && bam < maxByteArrayMode +} + +// BinaryMarshalerMode specifies how to encode types that implement encoding.BinaryMarshaler. +type BinaryMarshalerMode int + +const ( + // BinaryMarshalerByteString encodes the output of MarshalBinary to a CBOR byte string. + BinaryMarshalerByteString BinaryMarshalerMode = iota + + // BinaryMarshalerNone does not recognize BinaryMarshaler implementations during encode. + BinaryMarshalerNone + + maxBinaryMarshalerMode +) + +func (bmm BinaryMarshalerMode) valid() bool { + return bmm >= 0 && bmm < maxBinaryMarshalerMode +} + +// EncOptions specifies encoding options. +type EncOptions struct { + // Sort specifies sorting order. + Sort SortMode + + // ShortestFloat specifies the shortest floating-point encoding that preserves + // the value being encoded. + ShortestFloat ShortestFloatMode + + // NaNConvert specifies how to encode NaN and it overrides ShortestFloatMode. + NaNConvert NaNConvertMode + + // InfConvert specifies how to encode Inf and it overrides ShortestFloatMode. + InfConvert InfConvertMode + + // BigIntConvert specifies how to encode big.Int values. + BigIntConvert BigIntConvertMode + + // Time specifies how to encode time.Time. + Time TimeMode + + // TimeTag allows time.Time to be encoded with a tag number. + // RFC3339 format gets tag number 0, and numeric epoch time tag number 1. + TimeTag EncTagMode + + // IndefLength specifies whether to allow indefinite length CBOR items. + IndefLength IndefLengthMode + + // NilContainers specifies how to encode nil slices and maps. + NilContainers NilContainersMode + + // TagsMd specifies whether to allow CBOR tags (major type 6). + TagsMd TagsMode + + // OmitEmptyMode specifies how to encode struct fields with omitempty tag. + OmitEmpty OmitEmptyMode + + // String specifies which CBOR type to use when encoding Go strings. + // - CBOR text string (major type 3) is default + // - CBOR byte string (major type 2) + String StringMode + + // FieldName specifies the CBOR type to use when encoding struct field names. + FieldName FieldNameMode + + // ByteSliceLaterFormat specifies which later format conversion hint (CBOR tag 21-23) + // to include (if any) when encoding Go byte slice to CBOR byte string. The encoder will + // always encode unmodified bytes from the byte slice and just wrap it within + // CBOR tag 21, 22, or 23 if specified. + // See "Expected Later Encoding for CBOR-to-JSON Converters" in RFC 8949 Section 3.4.5.2. + ByteSliceLaterFormat ByteSliceLaterFormatMode + + // ByteArray specifies how to encode byte arrays. + ByteArray ByteArrayMode + + // BinaryMarshaler specifies how to encode types that implement encoding.BinaryMarshaler. + BinaryMarshaler BinaryMarshalerMode +} + +// CanonicalEncOptions returns EncOptions for "Canonical CBOR" encoding, +// defined in RFC 7049 Section 3.9 with the following rules: +// +// 1. "Integers must be as small as possible." +// 2. "The expression of lengths in major types 2 through 5 must be as short as possible." +// 3. The keys in every map must be sorted in length-first sorting order. +// See SortLengthFirst for details. +// 4. "Indefinite-length items must be made into definite-length items." +// 5. "If a protocol allows for IEEE floats, then additional canonicalization rules might +// need to be added. One example rule might be to have all floats start as a 64-bit +// float, then do a test conversion to a 32-bit float; if the result is the same numeric +// value, use the shorter value and repeat the process with a test conversion to a +// 16-bit float. (This rule selects 16-bit float for positive and negative Infinity +// as well.) Also, there are many representations for NaN. If NaN is an allowed value, +// it must always be represented as 0xf97e00." +func CanonicalEncOptions() EncOptions { + return EncOptions{ + Sort: SortCanonical, + ShortestFloat: ShortestFloat16, + NaNConvert: NaNConvert7e00, + InfConvert: InfConvertFloat16, + IndefLength: IndefLengthForbidden, + } +} + +// CTAP2EncOptions returns EncOptions for "CTAP2 Canonical CBOR" encoding, +// defined in CTAP specification, with the following rules: +// +// 1. "Integers must be encoded as small as possible." +// 2. "The representations of any floating-point values are not changed." +// 3. "The expression of lengths in major types 2 through 5 must be as short as possible." +// 4. "Indefinite-length items must be made into definite-length items."" +// 5. The keys in every map must be sorted in bytewise lexicographic order. +// See SortBytewiseLexical for details. +// 6. "Tags as defined in Section 2.4 in [RFC7049] MUST NOT be present." +func CTAP2EncOptions() EncOptions { + return EncOptions{ + Sort: SortCTAP2, + ShortestFloat: ShortestFloatNone, + NaNConvert: NaNConvertNone, + InfConvert: InfConvertNone, + IndefLength: IndefLengthForbidden, + TagsMd: TagsForbidden, + } +} + +// CoreDetEncOptions returns EncOptions for "Core Deterministic" encoding, +// defined in RFC 7049bis with the following rules: +// +// 1. "Preferred serialization MUST be used. In particular, this means that arguments +// (see Section 3) for integers, lengths in major types 2 through 5, and tags MUST +// be as short as possible" +// "Floating point values also MUST use the shortest form that preserves the value" +// 2. "Indefinite-length items MUST NOT appear." +// 3. "The keys in every map MUST be sorted in the bytewise lexicographic order of +// their deterministic encodings." +func CoreDetEncOptions() EncOptions { + return EncOptions{ + Sort: SortCoreDeterministic, + ShortestFloat: ShortestFloat16, + NaNConvert: NaNConvert7e00, + InfConvert: InfConvertFloat16, + IndefLength: IndefLengthForbidden, + } +} + +// PreferredUnsortedEncOptions returns EncOptions for "Preferred Serialization" encoding, +// defined in RFC 7049bis with the following rules: +// +// 1. "The preferred serialization always uses the shortest form of representing the argument +// (Section 3);" +// 2. "it also uses the shortest floating-point encoding that preserves the value being +// encoded (see Section 5.5)." +// "The preferred encoding for a floating-point value is the shortest floating-point encoding +// that preserves its value, e.g., 0xf94580 for the number 5.5, and 0xfa45ad9c00 for the +// number 5555.5, unless the CBOR-based protocol specifically excludes the use of the shorter +// floating-point encodings. For NaN values, a shorter encoding is preferred if zero-padding +// the shorter significand towards the right reconstitutes the original NaN value (for many +// applications, the single NaN encoding 0xf97e00 will suffice)." +// 3. "Definite length encoding is preferred whenever the length is known at the time the +// serialization of the item starts." +func PreferredUnsortedEncOptions() EncOptions { + return EncOptions{ + Sort: SortNone, + ShortestFloat: ShortestFloat16, + NaNConvert: NaNConvert7e00, + InfConvert: InfConvertFloat16, + } +} + +// EncMode returns EncMode with immutable options and no tags (safe for concurrency). +func (opts EncOptions) EncMode() (EncMode, error) { //nolint:gocritic // ignore hugeParam + return opts.encMode() +} + +// UserBufferEncMode returns UserBufferEncMode with immutable options and no tags (safe for concurrency). +func (opts EncOptions) UserBufferEncMode() (UserBufferEncMode, error) { //nolint:gocritic // ignore hugeParam + return opts.encMode() +} + +// EncModeWithTags returns EncMode with options and tags that are both immutable (safe for concurrency). +func (opts EncOptions) EncModeWithTags(tags TagSet) (EncMode, error) { //nolint:gocritic // ignore hugeParam + return opts.UserBufferEncModeWithTags(tags) +} + +// UserBufferEncModeWithTags returns UserBufferEncMode with options and tags that are both immutable (safe for concurrency). +func (opts EncOptions) UserBufferEncModeWithTags(tags TagSet) (UserBufferEncMode, error) { //nolint:gocritic // ignore hugeParam + if opts.TagsMd == TagsForbidden { + return nil, errors.New("cbor: cannot create EncMode with TagSet when TagsMd is TagsForbidden") + } + if tags == nil { + return nil, errors.New("cbor: cannot create EncMode with nil value as TagSet") + } + em, err := opts.encMode() + if err != nil { + return nil, err + } + // Copy tags + ts := tagSet(make(map[reflect.Type]*tagItem)) + syncTags := tags.(*syncTagSet) + syncTags.RLock() + for contentType, tag := range syncTags.t { + if tag.opts.EncTag != EncTagNone { + ts[contentType] = tag + } + } + syncTags.RUnlock() + if len(ts) > 0 { + em.tags = ts + } + return em, nil +} + +// EncModeWithSharedTags returns EncMode with immutable options and mutable shared tags (safe for concurrency). +func (opts EncOptions) EncModeWithSharedTags(tags TagSet) (EncMode, error) { //nolint:gocritic // ignore hugeParam + return opts.UserBufferEncModeWithSharedTags(tags) +} + +// UserBufferEncModeWithSharedTags returns UserBufferEncMode with immutable options and mutable shared tags (safe for concurrency). +func (opts EncOptions) UserBufferEncModeWithSharedTags(tags TagSet) (UserBufferEncMode, error) { //nolint:gocritic // ignore hugeParam + if opts.TagsMd == TagsForbidden { + return nil, errors.New("cbor: cannot create EncMode with TagSet when TagsMd is TagsForbidden") + } + if tags == nil { + return nil, errors.New("cbor: cannot create EncMode with nil value as TagSet") + } + em, err := opts.encMode() + if err != nil { + return nil, err + } + em.tags = tags + return em, nil +} + +func (opts EncOptions) encMode() (*encMode, error) { //nolint:gocritic // ignore hugeParam + if !opts.Sort.valid() { + return nil, errors.New("cbor: invalid SortMode " + strconv.Itoa(int(opts.Sort))) + } + if !opts.ShortestFloat.valid() { + return nil, errors.New("cbor: invalid ShortestFloatMode " + strconv.Itoa(int(opts.ShortestFloat))) + } + if !opts.NaNConvert.valid() { + return nil, errors.New("cbor: invalid NaNConvertMode " + strconv.Itoa(int(opts.NaNConvert))) + } + if !opts.InfConvert.valid() { + return nil, errors.New("cbor: invalid InfConvertMode " + strconv.Itoa(int(opts.InfConvert))) + } + if !opts.BigIntConvert.valid() { + return nil, errors.New("cbor: invalid BigIntConvertMode " + strconv.Itoa(int(opts.BigIntConvert))) + } + if !opts.Time.valid() { + return nil, errors.New("cbor: invalid TimeMode " + strconv.Itoa(int(opts.Time))) + } + if !opts.TimeTag.valid() { + return nil, errors.New("cbor: invalid TimeTag " + strconv.Itoa(int(opts.TimeTag))) + } + if !opts.IndefLength.valid() { + return nil, errors.New("cbor: invalid IndefLength " + strconv.Itoa(int(opts.IndefLength))) + } + if !opts.NilContainers.valid() { + return nil, errors.New("cbor: invalid NilContainers " + strconv.Itoa(int(opts.NilContainers))) + } + if !opts.TagsMd.valid() { + return nil, errors.New("cbor: invalid TagsMd " + strconv.Itoa(int(opts.TagsMd))) + } + if opts.TagsMd == TagsForbidden && opts.TimeTag == EncTagRequired { + return nil, errors.New("cbor: cannot set TagsMd to TagsForbidden when TimeTag is EncTagRequired") + } + if !opts.OmitEmpty.valid() { + return nil, errors.New("cbor: invalid OmitEmpty " + strconv.Itoa(int(opts.OmitEmpty))) + } + stringMajorType, err := opts.String.cborType() + if err != nil { + return nil, err + } + if !opts.FieldName.valid() { + return nil, errors.New("cbor: invalid FieldName " + strconv.Itoa(int(opts.FieldName))) + } + byteSliceLaterEncodingTag, err := opts.ByteSliceLaterFormat.encodingTag() + if err != nil { + return nil, err + } + if !opts.ByteArray.valid() { + return nil, errors.New("cbor: invalid ByteArray " + strconv.Itoa(int(opts.ByteArray))) + } + if !opts.BinaryMarshaler.valid() { + return nil, errors.New("cbor: invalid BinaryMarshaler " + strconv.Itoa(int(opts.BinaryMarshaler))) + } + em := encMode{ + sort: opts.Sort, + shortestFloat: opts.ShortestFloat, + nanConvert: opts.NaNConvert, + infConvert: opts.InfConvert, + bigIntConvert: opts.BigIntConvert, + time: opts.Time, + timeTag: opts.TimeTag, + indefLength: opts.IndefLength, + nilContainers: opts.NilContainers, + tagsMd: opts.TagsMd, + omitEmpty: opts.OmitEmpty, + stringType: opts.String, + stringMajorType: stringMajorType, + fieldName: opts.FieldName, + byteSliceLaterFormat: opts.ByteSliceLaterFormat, + byteSliceLaterEncodingTag: byteSliceLaterEncodingTag, + byteArray: opts.ByteArray, + binaryMarshaler: opts.BinaryMarshaler, + } + return &em, nil +} + +// EncMode is the main interface for CBOR encoding. +type EncMode interface { + Marshal(v interface{}) ([]byte, error) + NewEncoder(w io.Writer) *Encoder + EncOptions() EncOptions +} + +// UserBufferEncMode is an interface for CBOR encoding, which extends EncMode by +// adding MarshalToBuffer to support user specified buffer rather than encoding +// into the built-in buffer pool. +type UserBufferEncMode interface { + EncMode + MarshalToBuffer(v interface{}, buf *bytes.Buffer) error + + // This private method is to prevent users implementing + // this interface and so future additions to it will + // not be breaking changes. + // See https://go.dev/blog/module-compatibility + unexport() +} + +type encMode struct { + tags tagProvider + sort SortMode + shortestFloat ShortestFloatMode + nanConvert NaNConvertMode + infConvert InfConvertMode + bigIntConvert BigIntConvertMode + time TimeMode + timeTag EncTagMode + indefLength IndefLengthMode + nilContainers NilContainersMode + tagsMd TagsMode + omitEmpty OmitEmptyMode + stringType StringMode + stringMajorType cborType + fieldName FieldNameMode + byteSliceLaterFormat ByteSliceLaterFormatMode + byteSliceLaterEncodingTag uint64 + byteArray ByteArrayMode + binaryMarshaler BinaryMarshalerMode +} + +var defaultEncMode, _ = EncOptions{}.encMode() + +// These four decoding modes are used by getMarshalerDecMode. +// maxNestedLevels, maxArrayElements, and maxMapPairs are +// set to max allowed limits to avoid rejecting Marshaler +// output that would have been the allowable output of a +// non-Marshaler object that exceeds default limits. +var ( + marshalerForbidIndefLengthForbidTagsDecMode = decMode{ + maxNestedLevels: maxMaxNestedLevels, + maxArrayElements: maxMaxArrayElements, + maxMapPairs: maxMaxMapPairs, + indefLength: IndefLengthForbidden, + tagsMd: TagsForbidden, + } + + marshalerAllowIndefLengthForbidTagsDecMode = decMode{ + maxNestedLevels: maxMaxNestedLevels, + maxArrayElements: maxMaxArrayElements, + maxMapPairs: maxMaxMapPairs, + indefLength: IndefLengthAllowed, + tagsMd: TagsForbidden, + } + + marshalerForbidIndefLengthAllowTagsDecMode = decMode{ + maxNestedLevels: maxMaxNestedLevels, + maxArrayElements: maxMaxArrayElements, + maxMapPairs: maxMaxMapPairs, + indefLength: IndefLengthForbidden, + tagsMd: TagsAllowed, + } + + marshalerAllowIndefLengthAllowTagsDecMode = decMode{ + maxNestedLevels: maxMaxNestedLevels, + maxArrayElements: maxMaxArrayElements, + maxMapPairs: maxMaxMapPairs, + indefLength: IndefLengthAllowed, + tagsMd: TagsAllowed, + } +) + +// getMarshalerDecMode returns one of four existing decoding modes +// which can be reused (safe for parallel use) for the purpose of +// checking if data returned by Marshaler is well-formed. +func getMarshalerDecMode(indefLength IndefLengthMode, tagsMd TagsMode) *decMode { + switch { + case indefLength == IndefLengthAllowed && tagsMd == TagsAllowed: + return &marshalerAllowIndefLengthAllowTagsDecMode + + case indefLength == IndefLengthAllowed && tagsMd == TagsForbidden: + return &marshalerAllowIndefLengthForbidTagsDecMode + + case indefLength == IndefLengthForbidden && tagsMd == TagsAllowed: + return &marshalerForbidIndefLengthAllowTagsDecMode + + case indefLength == IndefLengthForbidden && tagsMd == TagsForbidden: + return &marshalerForbidIndefLengthForbidTagsDecMode + + default: + // This should never happen, unless we add new options to + // IndefLengthMode or TagsMode without updating this function. + return &decMode{ + maxNestedLevels: maxMaxNestedLevels, + maxArrayElements: maxMaxArrayElements, + maxMapPairs: maxMaxMapPairs, + indefLength: indefLength, + tagsMd: tagsMd, + } + } +} + +// EncOptions returns user specified options used to create this EncMode. +func (em *encMode) EncOptions() EncOptions { + return EncOptions{ + Sort: em.sort, + ShortestFloat: em.shortestFloat, + NaNConvert: em.nanConvert, + InfConvert: em.infConvert, + BigIntConvert: em.bigIntConvert, + Time: em.time, + TimeTag: em.timeTag, + IndefLength: em.indefLength, + NilContainers: em.nilContainers, + TagsMd: em.tagsMd, + OmitEmpty: em.omitEmpty, + String: em.stringType, + FieldName: em.fieldName, + ByteSliceLaterFormat: em.byteSliceLaterFormat, + ByteArray: em.byteArray, + BinaryMarshaler: em.binaryMarshaler, + } +} + +func (em *encMode) unexport() {} + +func (em *encMode) encTagBytes(t reflect.Type) []byte { + if em.tags != nil { + if tagItem := em.tags.getTagItemFromType(t); tagItem != nil { + return tagItem.cborTagNum + } + } + return nil +} + +// Marshal returns the CBOR encoding of v using em encoding mode. +// +// See the documentation for Marshal for details. +func (em *encMode) Marshal(v interface{}) ([]byte, error) { + e := getEncodeBuffer() + + if err := encode(e, em, reflect.ValueOf(v)); err != nil { + putEncodeBuffer(e) + return nil, err + } + + buf := make([]byte, e.Len()) + copy(buf, e.Bytes()) + + putEncodeBuffer(e) + return buf, nil +} + +// MarshalToBuffer encodes v into provided buffer (instead of using built-in buffer pool) +// and uses em encoding mode. +// +// NOTE: Unlike Marshal, the buffer provided to MarshalToBuffer can contain +// partially encoded data if error is returned. +// +// See Marshal for more details. +func (em *encMode) MarshalToBuffer(v interface{}, buf *bytes.Buffer) error { + if buf == nil { + return fmt.Errorf("cbor: encoding buffer provided by user is nil") + } + return encode(buf, em, reflect.ValueOf(v)) +} + +// NewEncoder returns a new encoder that writes to w using em EncMode. +func (em *encMode) NewEncoder(w io.Writer) *Encoder { + return &Encoder{w: w, em: em} +} + +// encodeBufferPool caches unused bytes.Buffer objects for later reuse. +var encodeBufferPool = sync.Pool{ + New: func() interface{} { + e := new(bytes.Buffer) + e.Grow(32) // TODO: make this configurable + return e + }, +} + +func getEncodeBuffer() *bytes.Buffer { + return encodeBufferPool.Get().(*bytes.Buffer) +} + +func putEncodeBuffer(e *bytes.Buffer) { + e.Reset() + encodeBufferPool.Put(e) +} + +type encodeFunc func(e *bytes.Buffer, em *encMode, v reflect.Value) error +type isEmptyFunc func(em *encMode, v reflect.Value) (empty bool, err error) + +func encode(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if !v.IsValid() { + // v is zero value + e.Write(cborNil) + return nil + } + vt := v.Type() + f, _ := getEncodeFunc(vt) + if f == nil { + return &UnsupportedTypeError{vt} + } + + return f(e, em, v) +} + +func encodeBool(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + b := cborFalse + if v.Bool() { + b = cborTrue + } + e.Write(b) + return nil +} + +func encodeInt(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + i := v.Int() + if i >= 0 { + encodeHead(e, byte(cborTypePositiveInt), uint64(i)) + return nil + } + i = i*(-1) - 1 + encodeHead(e, byte(cborTypeNegativeInt), uint64(i)) + return nil +} + +func encodeUint(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + encodeHead(e, byte(cborTypePositiveInt), v.Uint()) + return nil +} + +func encodeFloat(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + f64 := v.Float() + if math.IsNaN(f64) { + return encodeNaN(e, em, v) + } + if math.IsInf(f64, 0) { + return encodeInf(e, em, v) + } + fopt := em.shortestFloat + if v.Kind() == reflect.Float64 && (fopt == ShortestFloatNone || cannotFitFloat32(f64)) { + // Encode float64 + // Don't use encodeFloat64() because it cannot be inlined. + const argumentSize = 8 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | byte(additionalInformationAsFloat64) + binary.BigEndian.PutUint64(scratch[1:], math.Float64bits(f64)) + e.Write(scratch[:]) + return nil + } + + f32 := float32(f64) + if fopt == ShortestFloat16 { + var f16 float16.Float16 + p := float16.PrecisionFromfloat32(f32) + if p == float16.PrecisionExact { + // Roundtrip float32->float16->float32 test isn't needed. + f16 = float16.Fromfloat32(f32) + } else if p == float16.PrecisionUnknown { + // Try roundtrip float32->float16->float32 to determine if float32 can fit into float16. + f16 = float16.Fromfloat32(f32) + if f16.Float32() == f32 { + p = float16.PrecisionExact + } + } + if p == float16.PrecisionExact { + // Encode float16 + // Don't use encodeFloat16() because it cannot be inlined. + const argumentSize = 2 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | additionalInformationAsFloat16 + binary.BigEndian.PutUint16(scratch[1:], uint16(f16)) + e.Write(scratch[:]) + return nil + } + } + + // Encode float32 + // Don't use encodeFloat32() because it cannot be inlined. + const argumentSize = 4 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | additionalInformationAsFloat32 + binary.BigEndian.PutUint32(scratch[1:], math.Float32bits(f32)) + e.Write(scratch[:]) + return nil +} + +func encodeInf(e *bytes.Buffer, em *encMode, v reflect.Value) error { + f64 := v.Float() + switch em.infConvert { + case InfConvertReject: + return &UnsupportedValueError{msg: "floating-point infinity"} + + case InfConvertFloat16: + if f64 > 0 { + e.Write(cborPositiveInfinity) + } else { + e.Write(cborNegativeInfinity) + } + return nil + } + if v.Kind() == reflect.Float64 { + return encodeFloat64(e, f64) + } + return encodeFloat32(e, float32(f64)) +} + +func encodeNaN(e *bytes.Buffer, em *encMode, v reflect.Value) error { + switch em.nanConvert { + case NaNConvert7e00: + e.Write(cborNaN) + return nil + + case NaNConvertNone: + if v.Kind() == reflect.Float64 { + return encodeFloat64(e, v.Float()) + } + f32 := float32NaNFromReflectValue(v) + return encodeFloat32(e, f32) + + case NaNConvertReject: + return &UnsupportedValueError{msg: "floating-point NaN"} + + default: // NaNConvertPreserveSignal, NaNConvertQuiet + if v.Kind() == reflect.Float64 { + f64 := v.Float() + f64bits := math.Float64bits(f64) + if em.nanConvert == NaNConvertQuiet && f64bits&(1<<51) == 0 { + f64bits |= 1 << 51 // Set quiet bit = 1 + f64 = math.Float64frombits(f64bits) + } + // The lower 29 bits are dropped when converting from float64 to float32. + if f64bits&0x1fffffff != 0 { + // Encode NaN as float64 because dropped coef bits from float64 to float32 are not all 0s. + return encodeFloat64(e, f64) + } + // Create float32 from float64 manually because float32(f64) always turns on NaN's quiet bits. + sign := uint32(f64bits>>32) & (1 << 31) + exp := uint32(0x7f800000) + coef := uint32((f64bits & 0xfffffffffffff) >> 29) + f32bits := sign | exp | coef + f32 := math.Float32frombits(f32bits) + // The lower 13 bits are dropped when converting from float32 to float16. + if f32bits&0x1fff != 0 { + // Encode NaN as float32 because dropped coef bits from float32 to float16 are not all 0s. + return encodeFloat32(e, f32) + } + // Encode NaN as float16 + f16, _ := float16.FromNaN32ps(f32) // Ignore err because it only returns error when f32 is not a NaN. + return encodeFloat16(e, f16) + } + + f32 := float32NaNFromReflectValue(v) + f32bits := math.Float32bits(f32) + if em.nanConvert == NaNConvertQuiet && f32bits&(1<<22) == 0 { + f32bits |= 1 << 22 // Set quiet bit = 1 + f32 = math.Float32frombits(f32bits) + } + // The lower 13 bits are dropped coef bits when converting from float32 to float16. + if f32bits&0x1fff != 0 { + // Encode NaN as float32 because dropped coef bits from float32 to float16 are not all 0s. + return encodeFloat32(e, f32) + } + f16, _ := float16.FromNaN32ps(f32) // Ignore err because it only returns error when f32 is not a NaN. + return encodeFloat16(e, f16) + } +} + +func encodeFloat16(e *bytes.Buffer, f16 float16.Float16) error { + const argumentSize = 2 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | additionalInformationAsFloat16 + binary.BigEndian.PutUint16(scratch[1:], uint16(f16)) + e.Write(scratch[:]) + return nil +} + +func encodeFloat32(e *bytes.Buffer, f32 float32) error { + const argumentSize = 4 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | additionalInformationAsFloat32 + binary.BigEndian.PutUint32(scratch[1:], math.Float32bits(f32)) + e.Write(scratch[:]) + return nil +} + +func encodeFloat64(e *bytes.Buffer, f64 float64) error { + const argumentSize = 8 + const headSize = 1 + argumentSize + var scratch [headSize]byte + scratch[0] = byte(cborTypePrimitives) | additionalInformationAsFloat64 + binary.BigEndian.PutUint64(scratch[1:], math.Float64bits(f64)) + e.Write(scratch[:]) + return nil +} + +func encodeByteString(e *bytes.Buffer, em *encMode, v reflect.Value) error { + vk := v.Kind() + if vk == reflect.Slice && v.IsNil() && em.nilContainers == NilContainerAsNull { + e.Write(cborNil) + return nil + } + if vk == reflect.Slice && v.Type().Elem().Kind() == reflect.Uint8 && em.byteSliceLaterEncodingTag != 0 { + encodeHead(e, byte(cborTypeTag), em.byteSliceLaterEncodingTag) + } + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + slen := v.Len() + if slen == 0 { + return e.WriteByte(byte(cborTypeByteString)) + } + encodeHead(e, byte(cborTypeByteString), uint64(slen)) + if vk == reflect.Array { + for i := 0; i < slen; i++ { + e.WriteByte(byte(v.Index(i).Uint())) + } + return nil + } + e.Write(v.Bytes()) + return nil +} + +func encodeString(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + s := v.String() + encodeHead(e, byte(em.stringMajorType), uint64(len(s))) + e.WriteString(s) + return nil +} + +type arrayEncodeFunc struct { + f encodeFunc +} + +func (ae arrayEncodeFunc) encode(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if em.byteArray == ByteArrayToByteSlice && v.Type().Elem().Kind() == reflect.Uint8 { + return encodeByteString(e, em, v) + } + if v.Kind() == reflect.Slice && v.IsNil() && em.nilContainers == NilContainerAsNull { + e.Write(cborNil) + return nil + } + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + alen := v.Len() + if alen == 0 { + return e.WriteByte(byte(cborTypeArray)) + } + encodeHead(e, byte(cborTypeArray), uint64(alen)) + for i := 0; i < alen; i++ { + if err := ae.f(e, em, v.Index(i)); err != nil { + return err + } + } + return nil +} + +// encodeKeyValueFunc encodes key/value pairs in map (v). +// If kvs is provided (having the same length as v), length of encoded key and value are stored in kvs. +// kvs is used for canonical encoding of map. +type encodeKeyValueFunc func(e *bytes.Buffer, em *encMode, v reflect.Value, kvs []keyValue) error + +type mapEncodeFunc struct { + e encodeKeyValueFunc +} + +func (me mapEncodeFunc) encode(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if v.IsNil() && em.nilContainers == NilContainerAsNull { + e.Write(cborNil) + return nil + } + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + mlen := v.Len() + if mlen == 0 { + return e.WriteByte(byte(cborTypeMap)) + } + + encodeHead(e, byte(cborTypeMap), uint64(mlen)) + if em.sort == SortNone || em.sort == SortFastShuffle || mlen <= 1 { + return me.e(e, em, v, nil) + } + + kvsp := getKeyValues(v.Len()) // for sorting keys + defer putKeyValues(kvsp) + kvs := *kvsp + + kvBeginOffset := e.Len() + if err := me.e(e, em, v, kvs); err != nil { + return err + } + kvTotalLen := e.Len() - kvBeginOffset + + // Use the capacity at the tail of the encode buffer as a staging area to rearrange the + // encoded pairs into sorted order. + e.Grow(kvTotalLen) + tmp := e.Bytes()[e.Len() : e.Len()+kvTotalLen] // Can use e.AvailableBuffer() in Go 1.21+. + dst := e.Bytes()[kvBeginOffset:] + + if em.sort == SortBytewiseLexical { + sort.Sort(&bytewiseKeyValueSorter{kvs: kvs, data: dst}) + } else { + sort.Sort(&lengthFirstKeyValueSorter{kvs: kvs, data: dst}) + } + + // This is where the encoded bytes are actually rearranged in the output buffer to reflect + // the desired order. + sortedOffset := 0 + for _, kv := range kvs { + copy(tmp[sortedOffset:], dst[kv.offset:kv.nextOffset]) + sortedOffset += kv.nextOffset - kv.offset + } + copy(dst, tmp[:kvTotalLen]) + + return nil + +} + +// keyValue is the position of an encoded pair in a buffer. All offsets are zero-based and relative +// to the first byte of the first encoded pair. +type keyValue struct { + offset int + valueOffset int + nextOffset int +} + +type bytewiseKeyValueSorter struct { + kvs []keyValue + data []byte +} + +func (x *bytewiseKeyValueSorter) Len() int { + return len(x.kvs) +} + +func (x *bytewiseKeyValueSorter) Swap(i, j int) { + x.kvs[i], x.kvs[j] = x.kvs[j], x.kvs[i] +} + +func (x *bytewiseKeyValueSorter) Less(i, j int) bool { + kvi, kvj := x.kvs[i], x.kvs[j] + return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) <= 0 +} + +type lengthFirstKeyValueSorter struct { + kvs []keyValue + data []byte +} + +func (x *lengthFirstKeyValueSorter) Len() int { + return len(x.kvs) +} + +func (x *lengthFirstKeyValueSorter) Swap(i, j int) { + x.kvs[i], x.kvs[j] = x.kvs[j], x.kvs[i] +} + +func (x *lengthFirstKeyValueSorter) Less(i, j int) bool { + kvi, kvj := x.kvs[i], x.kvs[j] + if keyLengthDifference := (kvi.valueOffset - kvi.offset) - (kvj.valueOffset - kvj.offset); keyLengthDifference != 0 { + return keyLengthDifference < 0 + } + return bytes.Compare(x.data[kvi.offset:kvi.valueOffset], x.data[kvj.offset:kvj.valueOffset]) <= 0 +} + +var keyValuePool = sync.Pool{} + +func getKeyValues(length int) *[]keyValue { + v := keyValuePool.Get() + if v == nil { + y := make([]keyValue, length) + return &y + } + x := v.(*[]keyValue) + if cap(*x) >= length { + *x = (*x)[:length] + return x + } + // []keyValue from the pool does not have enough capacity. + // Return it back to the pool and create a new one. + keyValuePool.Put(x) + y := make([]keyValue, length) + return &y +} + +func putKeyValues(x *[]keyValue) { + *x = (*x)[:0] + keyValuePool.Put(x) +} + +func encodeStructToArray(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { + structType, err := getEncodingStructType(v.Type()) + if err != nil { + return err + } + + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + + flds := structType.fields + + encodeHead(e, byte(cborTypeArray), uint64(len(flds))) + for i := 0; i < len(flds); i++ { + f := flds[i] + + var fv reflect.Value + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + // Get embedded field value. No error is expected. + fv, _ = getFieldValue(v, f.idx, func(reflect.Value) (reflect.Value, error) { + // Write CBOR nil for null pointer to embedded struct + e.Write(cborNil) + return reflect.Value{}, nil + }) + if !fv.IsValid() { + continue + } + } + + if err := f.ef(e, em, fv); err != nil { + return err + } + } + return nil +} + +func encodeStruct(e *bytes.Buffer, em *encMode, v reflect.Value) (err error) { + structType, err := getEncodingStructType(v.Type()) + if err != nil { + return err + } + + flds := structType.getFields(em) + + start := 0 + if em.sort == SortFastShuffle && len(flds) > 0 { + start = rand.Intn(len(flds)) //nolint:gosec // Don't need a CSPRNG for deck cutting. + } + + if b := em.encTagBytes(v.Type()); b != nil { + e.Write(b) + } + + // Encode head with struct field count. + // Head is rewritten later if actual encoded field count is different from struct field count. + encodedHeadLen := encodeHead(e, byte(cborTypeMap), uint64(len(flds))) + + kvbegin := e.Len() + kvcount := 0 + for offset := 0; offset < len(flds); offset++ { + f := flds[(start+offset)%len(flds)] + + var fv reflect.Value + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + // Get embedded field value. No error is expected. + fv, _ = getFieldValue(v, f.idx, func(reflect.Value) (reflect.Value, error) { + // Skip null pointer to embedded struct + return reflect.Value{}, nil + }) + if !fv.IsValid() { + continue + } + } + if f.omitEmpty { + empty, err := f.ief(em, fv) + if err != nil { + return err + } + if empty { + continue + } + } + + if !f.keyAsInt && em.fieldName == FieldNameToByteString { + e.Write(f.cborNameByteString) + } else { // int or text string + e.Write(f.cborName) + } + + if err := f.ef(e, em, fv); err != nil { + return err + } + + kvcount++ + } + + if len(flds) == kvcount { + // Encoded element count in head is the same as actual element count. + return nil + } + + // Overwrite the bytes that were reserved for the head before encoding the map entries. + var actualHeadLen int + { + headbuf := *bytes.NewBuffer(e.Bytes()[kvbegin-encodedHeadLen : kvbegin-encodedHeadLen : kvbegin]) + actualHeadLen = encodeHead(&headbuf, byte(cborTypeMap), uint64(kvcount)) + } + + if actualHeadLen == encodedHeadLen { + // The bytes reserved for the encoded head were exactly the right size, so the + // encoded entries are already in their final positions. + return nil + } + + // We reserved more bytes than needed for the encoded head, based on the number of fields + // encoded. The encoded entries are offset to the right by the number of excess reserved + // bytes. Shift the entries left to remove the gap. + excessReservedBytes := encodedHeadLen - actualHeadLen + dst := e.Bytes()[kvbegin-excessReservedBytes : e.Len()-excessReservedBytes] + src := e.Bytes()[kvbegin:e.Len()] + copy(dst, src) + + // After shifting, the excess bytes are at the end of the output buffer and they are + // garbage. + e.Truncate(e.Len() - excessReservedBytes) + return nil +} + +func encodeIntf(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if v.IsNil() { + e.Write(cborNil) + return nil + } + return encode(e, em, v.Elem()) +} + +func encodeTime(e *bytes.Buffer, em *encMode, v reflect.Value) error { + t := v.Interface().(time.Time) + if t.IsZero() { + e.Write(cborNil) // Even if tag is required, encode as CBOR null. + return nil + } + if em.timeTag == EncTagRequired { + tagNumber := 1 + if em.time == TimeRFC3339 || em.time == TimeRFC3339Nano { + tagNumber = 0 + } + encodeHead(e, byte(cborTypeTag), uint64(tagNumber)) + } + switch em.time { + case TimeUnix: + secs := t.Unix() + return encodeInt(e, em, reflect.ValueOf(secs)) + + case TimeUnixMicro: + t = t.UTC().Round(time.Microsecond) + f := float64(t.UnixNano()) / 1e9 + return encodeFloat(e, em, reflect.ValueOf(f)) + + case TimeUnixDynamic: + t = t.UTC().Round(time.Microsecond) + secs, nsecs := t.Unix(), uint64(t.Nanosecond()) + if nsecs == 0 { + return encodeInt(e, em, reflect.ValueOf(secs)) + } + f := float64(secs) + float64(nsecs)/1e9 + return encodeFloat(e, em, reflect.ValueOf(f)) + + case TimeRFC3339: + s := t.Format(time.RFC3339) + return encodeString(e, em, reflect.ValueOf(s)) + + default: // TimeRFC3339Nano + s := t.Format(time.RFC3339Nano) + return encodeString(e, em, reflect.ValueOf(s)) + } +} + +func encodeBigInt(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if em.bigIntConvert == BigIntConvertReject { + return &UnsupportedTypeError{Type: typeBigInt} + } + + vbi := v.Interface().(big.Int) + sign := vbi.Sign() + bi := new(big.Int).SetBytes(vbi.Bytes()) // bi is absolute value of v + if sign < 0 { + // For negative number, convert to CBOR encoded number (-v-1). + bi.Sub(bi, big.NewInt(1)) + } + + if em.bigIntConvert == BigIntConvertShortest { + if bi.IsUint64() { + if sign >= 0 { + // Encode as CBOR pos int (major type 0) + encodeHead(e, byte(cborTypePositiveInt), bi.Uint64()) + return nil + } + // Encode as CBOR neg int (major type 1) + encodeHead(e, byte(cborTypeNegativeInt), bi.Uint64()) + return nil + } + } + + tagNum := 2 + if sign < 0 { + tagNum = 3 + } + // Write tag number + encodeHead(e, byte(cborTypeTag), uint64(tagNum)) + // Write bignum byte string + b := bi.Bytes() + encodeHead(e, byte(cborTypeByteString), uint64(len(b))) + e.Write(b) + return nil +} + +type binaryMarshalerEncoder struct { + alternateEncode encodeFunc + alternateIsEmpty isEmptyFunc +} + +func (bme binaryMarshalerEncoder) encode(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if em.binaryMarshaler != BinaryMarshalerByteString { + return bme.alternateEncode(e, em, v) + } + + vt := v.Type() + m, ok := v.Interface().(encoding.BinaryMarshaler) + if !ok { + pv := reflect.New(vt) + pv.Elem().Set(v) + m = pv.Interface().(encoding.BinaryMarshaler) + } + data, err := m.MarshalBinary() + if err != nil { + return err + } + if b := em.encTagBytes(vt); b != nil { + e.Write(b) + } + encodeHead(e, byte(cborTypeByteString), uint64(len(data))) + e.Write(data) + return nil +} + +func (bme binaryMarshalerEncoder) isEmpty(em *encMode, v reflect.Value) (bool, error) { + if em.binaryMarshaler != BinaryMarshalerByteString { + return bme.alternateIsEmpty(em, v) + } + + m, ok := v.Interface().(encoding.BinaryMarshaler) + if !ok { + pv := reflect.New(v.Type()) + pv.Elem().Set(v) + m = pv.Interface().(encoding.BinaryMarshaler) + } + data, err := m.MarshalBinary() + if err != nil { + return false, err + } + return len(data) == 0, nil +} + +func encodeMarshalerType(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if em.tagsMd == TagsForbidden && v.Type() == typeRawTag { + return errors.New("cbor: cannot encode cbor.RawTag when TagsMd is TagsForbidden") + } + m, ok := v.Interface().(Marshaler) + if !ok { + pv := reflect.New(v.Type()) + pv.Elem().Set(v) + m = pv.Interface().(Marshaler) + } + data, err := m.MarshalCBOR() + if err != nil { + return err + } + + // Verify returned CBOR data item from MarshalCBOR() is well-formed and passes tag validity for builtin tags 0-3. + d := decoder{data: data, dm: getMarshalerDecMode(em.indefLength, em.tagsMd)} + err = d.wellformed(false, true) + if err != nil { + return &MarshalerError{typ: v.Type(), err: err} + } + + e.Write(data) + return nil +} + +func encodeTag(e *bytes.Buffer, em *encMode, v reflect.Value) error { + if em.tagsMd == TagsForbidden { + return errors.New("cbor: cannot encode cbor.Tag when TagsMd is TagsForbidden") + } + + t := v.Interface().(Tag) + + if t.Number == 0 && t.Content == nil { + // Marshal uninitialized cbor.Tag + e.Write(cborNil) + return nil + } + + // Marshal tag number + encodeHead(e, byte(cborTypeTag), t.Number) + + vem := *em // shallow copy + + // For built-in tags, disable settings that may introduce tag validity errors when + // marshaling certain Content values. + switch t.Number { + case tagNumRFC3339Time: + vem.stringType = StringToTextString + vem.stringMajorType = cborTypeTextString + case tagNumUnsignedBignum, tagNumNegativeBignum: + vem.byteSliceLaterFormat = ByteSliceLaterFormatNone + vem.byteSliceLaterEncodingTag = 0 + } + + // Marshal tag content + return encode(e, &vem, reflect.ValueOf(t.Content)) +} + +// encodeHead writes CBOR head of specified type t and returns number of bytes written. +func encodeHead(e *bytes.Buffer, t byte, n uint64) int { + if n <= maxAdditionalInformationWithoutArgument { + const headSize = 1 + e.WriteByte(t | byte(n)) + return headSize + } + + if n <= math.MaxUint8 { + const headSize = 2 + scratch := [headSize]byte{ + t | byte(additionalInformationWith1ByteArgument), + byte(n), + } + e.Write(scratch[:]) + return headSize + } + + if n <= math.MaxUint16 { + const headSize = 3 + var scratch [headSize]byte + scratch[0] = t | byte(additionalInformationWith2ByteArgument) + binary.BigEndian.PutUint16(scratch[1:], uint16(n)) + e.Write(scratch[:]) + return headSize + } + + if n <= math.MaxUint32 { + const headSize = 5 + var scratch [headSize]byte + scratch[0] = t | byte(additionalInformationWith4ByteArgument) + binary.BigEndian.PutUint32(scratch[1:], uint32(n)) + e.Write(scratch[:]) + return headSize + } + + const headSize = 9 + var scratch [headSize]byte + scratch[0] = t | byte(additionalInformationWith8ByteArgument) + binary.BigEndian.PutUint64(scratch[1:], n) + e.Write(scratch[:]) + return headSize +} + +var ( + typeMarshaler = reflect.TypeOf((*Marshaler)(nil)).Elem() + typeBinaryMarshaler = reflect.TypeOf((*encoding.BinaryMarshaler)(nil)).Elem() + typeRawMessage = reflect.TypeOf(RawMessage(nil)) + typeByteString = reflect.TypeOf(ByteString("")) +) + +func getEncodeFuncInternal(t reflect.Type) (ef encodeFunc, ief isEmptyFunc) { + k := t.Kind() + if k == reflect.Ptr { + return getEncodeIndirectValueFunc(t), isEmptyPtr + } + switch t { + case typeSimpleValue: + return encodeMarshalerType, isEmptyUint + + case typeTag: + return encodeTag, alwaysNotEmpty + + case typeTime: + return encodeTime, alwaysNotEmpty + + case typeBigInt: + return encodeBigInt, alwaysNotEmpty + + case typeRawMessage: + return encodeMarshalerType, isEmptySlice + + case typeByteString: + return encodeMarshalerType, isEmptyString + } + if reflect.PtrTo(t).Implements(typeMarshaler) { + return encodeMarshalerType, alwaysNotEmpty + } + if reflect.PtrTo(t).Implements(typeBinaryMarshaler) { + defer func() { + // capture encoding method used for modes that disable BinaryMarshaler + bme := binaryMarshalerEncoder{ + alternateEncode: ef, + alternateIsEmpty: ief, + } + ef = bme.encode + ief = bme.isEmpty + }() + } + switch k { + case reflect.Bool: + return encodeBool, isEmptyBool + + case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: + return encodeInt, isEmptyInt + + case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64: + return encodeUint, isEmptyUint + + case reflect.Float32, reflect.Float64: + return encodeFloat, isEmptyFloat + + case reflect.String: + return encodeString, isEmptyString + + case reflect.Slice: + if t.Elem().Kind() == reflect.Uint8 { + return encodeByteString, isEmptySlice + } + fallthrough + + case reflect.Array: + f, _ := getEncodeFunc(t.Elem()) + if f == nil { + return nil, nil + } + return arrayEncodeFunc{f: f}.encode, isEmptySlice + + case reflect.Map: + f := getEncodeMapFunc(t) + if f == nil { + return nil, nil + } + return f, isEmptyMap + + case reflect.Struct: + // Get struct's special field "_" tag options + if f, ok := t.FieldByName("_"); ok { + tag := f.Tag.Get("cbor") + if tag != "-" { + if hasToArrayOption(tag) { + return encodeStructToArray, isEmptyStruct + } + } + } + return encodeStruct, isEmptyStruct + + case reflect.Interface: + return encodeIntf, isEmptyIntf + } + return nil, nil +} + +func getEncodeIndirectValueFunc(t reflect.Type) encodeFunc { + for t.Kind() == reflect.Ptr { + t = t.Elem() + } + f, _ := getEncodeFunc(t) + if f == nil { + return nil + } + return func(e *bytes.Buffer, em *encMode, v reflect.Value) error { + for v.Kind() == reflect.Ptr && !v.IsNil() { + v = v.Elem() + } + if v.Kind() == reflect.Ptr && v.IsNil() { + e.Write(cborNil) + return nil + } + return f(e, em, v) + } +} + +func alwaysNotEmpty(_ *encMode, _ reflect.Value) (empty bool, err error) { + return false, nil +} + +func isEmptyBool(_ *encMode, v reflect.Value) (bool, error) { + return !v.Bool(), nil +} + +func isEmptyInt(_ *encMode, v reflect.Value) (bool, error) { + return v.Int() == 0, nil +} + +func isEmptyUint(_ *encMode, v reflect.Value) (bool, error) { + return v.Uint() == 0, nil +} + +func isEmptyFloat(_ *encMode, v reflect.Value) (bool, error) { + return v.Float() == 0.0, nil +} + +func isEmptyString(_ *encMode, v reflect.Value) (bool, error) { + return v.Len() == 0, nil +} + +func isEmptySlice(_ *encMode, v reflect.Value) (bool, error) { + return v.Len() == 0, nil +} + +func isEmptyMap(_ *encMode, v reflect.Value) (bool, error) { + return v.Len() == 0, nil +} + +func isEmptyPtr(_ *encMode, v reflect.Value) (bool, error) { + return v.IsNil(), nil +} + +func isEmptyIntf(_ *encMode, v reflect.Value) (bool, error) { + return v.IsNil(), nil +} + +func isEmptyStruct(em *encMode, v reflect.Value) (bool, error) { + structType, err := getEncodingStructType(v.Type()) + if err != nil { + return false, err + } + + if em.omitEmpty == OmitEmptyGoValue { + return false, nil + } + + if structType.toArray { + return len(structType.fields) == 0, nil + } + + if len(structType.fields) > len(structType.omitEmptyFieldsIdx) { + return false, nil + } + + for _, i := range structType.omitEmptyFieldsIdx { + f := structType.fields[i] + + // Get field value + var fv reflect.Value + if len(f.idx) == 1 { + fv = v.Field(f.idx[0]) + } else { + // Get embedded field value. No error is expected. + fv, _ = getFieldValue(v, f.idx, func(reflect.Value) (reflect.Value, error) { + // Skip null pointer to embedded struct + return reflect.Value{}, nil + }) + if !fv.IsValid() { + continue + } + } + + empty, err := f.ief(em, fv) + if err != nil { + return false, err + } + if !empty { + return false, nil + } + } + return true, nil +} + +func cannotFitFloat32(f64 float64) bool { + f32 := float32(f64) + return float64(f32) != f64 +} + +// float32NaNFromReflectValue extracts float32 NaN from reflect.Value while preserving NaN's quiet bit. +func float32NaNFromReflectValue(v reflect.Value) float32 { + // Keith Randall's workaround for issue https://github.com/golang/go/issues/36400 + p := reflect.New(v.Type()) + p.Elem().Set(v) + f32 := p.Convert(reflect.TypeOf((*float32)(nil))).Elem().Interface().(float32) + return f32 +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/encode_map.go b/api/vendor/github.com/fxamacker/cbor/v2/encode_map.go new file mode 100644 index 000000000..8b4b4bbc5 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/encode_map.go @@ -0,0 +1,94 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +//go:build go1.20 + +package cbor + +import ( + "bytes" + "reflect" + "sync" +) + +type mapKeyValueEncodeFunc struct { + kf, ef encodeFunc + kpool, vpool sync.Pool +} + +func (me *mapKeyValueEncodeFunc) encodeKeyValues(e *bytes.Buffer, em *encMode, v reflect.Value, kvs []keyValue) error { + iterk := me.kpool.Get().(*reflect.Value) + defer func() { + iterk.SetZero() + me.kpool.Put(iterk) + }() + iterv := me.vpool.Get().(*reflect.Value) + defer func() { + iterv.SetZero() + me.vpool.Put(iterv) + }() + + if kvs == nil { + for i, iter := 0, v.MapRange(); iter.Next(); i++ { + iterk.SetIterKey(iter) + iterv.SetIterValue(iter) + + if err := me.kf(e, em, *iterk); err != nil { + return err + } + if err := me.ef(e, em, *iterv); err != nil { + return err + } + } + return nil + } + + initial := e.Len() + for i, iter := 0, v.MapRange(); iter.Next(); i++ { + iterk.SetIterKey(iter) + iterv.SetIterValue(iter) + + offset := e.Len() + if err := me.kf(e, em, *iterk); err != nil { + return err + } + valueOffset := e.Len() + if err := me.ef(e, em, *iterv); err != nil { + return err + } + kvs[i] = keyValue{ + offset: offset - initial, + valueOffset: valueOffset - initial, + nextOffset: e.Len() - initial, + } + } + + return nil +} + +func getEncodeMapFunc(t reflect.Type) encodeFunc { + kf, _ := getEncodeFunc(t.Key()) + ef, _ := getEncodeFunc(t.Elem()) + if kf == nil || ef == nil { + return nil + } + mkv := &mapKeyValueEncodeFunc{ + kf: kf, + ef: ef, + kpool: sync.Pool{ + New: func() interface{} { + rk := reflect.New(t.Key()).Elem() + return &rk + }, + }, + vpool: sync.Pool{ + New: func() interface{} { + rv := reflect.New(t.Elem()).Elem() + return &rv + }, + }, + } + return mapEncodeFunc{ + e: mkv.encodeKeyValues, + }.encode +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/encode_map_go117.go b/api/vendor/github.com/fxamacker/cbor/v2/encode_map_go117.go new file mode 100644 index 000000000..31c39336d --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/encode_map_go117.go @@ -0,0 +1,60 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +//go:build !go1.20 + +package cbor + +import ( + "bytes" + "reflect" +) + +type mapKeyValueEncodeFunc struct { + kf, ef encodeFunc +} + +func (me *mapKeyValueEncodeFunc) encodeKeyValues(e *bytes.Buffer, em *encMode, v reflect.Value, kvs []keyValue) error { + if kvs == nil { + for i, iter := 0, v.MapRange(); iter.Next(); i++ { + if err := me.kf(e, em, iter.Key()); err != nil { + return err + } + if err := me.ef(e, em, iter.Value()); err != nil { + return err + } + } + return nil + } + + initial := e.Len() + for i, iter := 0, v.MapRange(); iter.Next(); i++ { + offset := e.Len() + if err := me.kf(e, em, iter.Key()); err != nil { + return err + } + valueOffset := e.Len() + if err := me.ef(e, em, iter.Value()); err != nil { + return err + } + kvs[i] = keyValue{ + offset: offset - initial, + valueOffset: valueOffset - initial, + nextOffset: e.Len() - initial, + } + } + + return nil +} + +func getEncodeMapFunc(t reflect.Type) encodeFunc { + kf, _ := getEncodeFunc(t.Key()) + ef, _ := getEncodeFunc(t.Elem()) + if kf == nil || ef == nil { + return nil + } + mkv := &mapKeyValueEncodeFunc{kf: kf, ef: ef} + return mapEncodeFunc{ + e: mkv.encodeKeyValues, + }.encode +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/simplevalue.go b/api/vendor/github.com/fxamacker/cbor/v2/simplevalue.go new file mode 100644 index 000000000..de175cee4 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/simplevalue.go @@ -0,0 +1,69 @@ +package cbor + +import ( + "errors" + "fmt" + "reflect" +) + +// SimpleValue represents CBOR simple value. +// CBOR simple value is: +// - an extension point like CBOR tag. +// - a subset of CBOR major type 7 that isn't floating-point. +// - "identified by a number between 0 and 255, but distinct from that number itself". +// For example, "a simple value 2 is not equivalent to an integer 2" as a CBOR map key. +// +// CBOR simple values identified by 20..23 are: "false", "true" , "null", and "undefined". +// Other CBOR simple values are currently unassigned/reserved by IANA. +type SimpleValue uint8 + +var ( + typeSimpleValue = reflect.TypeOf(SimpleValue(0)) +) + +// MarshalCBOR encodes SimpleValue as CBOR simple value (major type 7). +func (sv SimpleValue) MarshalCBOR() ([]byte, error) { + // RFC 8949 3.3. Floating-Point Numbers and Values with No Content says: + // "An encoder MUST NOT issue two-byte sequences that start with 0xf8 + // (major type 7, additional information 24) and continue with a byte + // less than 0x20 (32 decimal). Such sequences are not well-formed. + // (This implies that an encoder cannot encode false, true, null, or + // undefined in two-byte sequences and that only the one-byte variants + // of these are well-formed; more generally speaking, each simple value + // only has a single representation variant)." + + switch { + case sv <= maxSimpleValueInAdditionalInformation: + return []byte{byte(cborTypePrimitives) | byte(sv)}, nil + + case sv >= minSimpleValueIn1ByteArgument: + return []byte{byte(cborTypePrimitives) | additionalInformationWith1ByteArgument, byte(sv)}, nil + + default: + return nil, &UnsupportedValueError{msg: fmt.Sprintf("SimpleValue(%d)", sv)} + } +} + +// UnmarshalCBOR decodes CBOR simple value (major type 7) to SimpleValue. +func (sv *SimpleValue) UnmarshalCBOR(data []byte) error { + if sv == nil { + return errors.New("cbor.SimpleValue: UnmarshalCBOR on nil pointer") + } + + d := decoder{data: data, dm: defaultDecMode} + + typ, ai, val := d.getHead() + + if typ != cborTypePrimitives { + return &UnmarshalTypeError{CBORType: typ.String(), GoType: "SimpleValue"} + } + if ai > additionalInformationWith1ByteArgument { + return &UnmarshalTypeError{CBORType: typ.String(), GoType: "SimpleValue", errorMsg: "not simple values"} + } + + // It is safe to cast val to uint8 here because + // - data is already verified to be well-formed CBOR simple value and + // - val is <= math.MaxUint8. + *sv = SimpleValue(val) + return nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/stream.go b/api/vendor/github.com/fxamacker/cbor/v2/stream.go new file mode 100644 index 000000000..507ab6c18 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/stream.go @@ -0,0 +1,277 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "bytes" + "errors" + "io" + "reflect" +) + +// Decoder reads and decodes CBOR values from io.Reader. +type Decoder struct { + r io.Reader + d decoder + buf []byte + off int // next read offset in buf + bytesRead int +} + +// NewDecoder returns a new decoder that reads and decodes from r using +// the default decoding options. +func NewDecoder(r io.Reader) *Decoder { + return defaultDecMode.NewDecoder(r) +} + +// Decode reads CBOR value and decodes it into the value pointed to by v. +func (dec *Decoder) Decode(v interface{}) error { + _, err := dec.readNext() + if err != nil { + // Return validation error or read error. + return err + } + + dec.d.reset(dec.buf[dec.off:]) + err = dec.d.value(v) + + // Increment dec.off even if decoding err is not nil because + // dec.d.off points to the next CBOR data item if current + // CBOR data item is valid but failed to be decoded into v. + // This allows next CBOR data item to be decoded in next + // call to this function. + dec.off += dec.d.off + dec.bytesRead += dec.d.off + + return err +} + +// Skip skips to the next CBOR data item (if there is any), +// otherwise it returns error such as io.EOF, io.UnexpectedEOF, etc. +func (dec *Decoder) Skip() error { + n, err := dec.readNext() + if err != nil { + // Return validation error or read error. + return err + } + + dec.off += n + dec.bytesRead += n + return nil +} + +// NumBytesRead returns the number of bytes read. +func (dec *Decoder) NumBytesRead() int { + return dec.bytesRead +} + +// Buffered returns a reader for data remaining in Decoder's buffer. +// Returned reader is valid until the next call to Decode or Skip. +func (dec *Decoder) Buffered() io.Reader { + return bytes.NewReader(dec.buf[dec.off:]) +} + +// readNext() reads next CBOR data item from Reader to buffer. +// It returns the size of next CBOR data item. +// It also returns validation error or read error if any. +func (dec *Decoder) readNext() (int, error) { + var readErr error + var validErr error + + for { + // Process any unread data in dec.buf. + if dec.off < len(dec.buf) { + dec.d.reset(dec.buf[dec.off:]) + off := dec.off // Save offset before data validation + validErr = dec.d.wellformed(true, false) + dec.off = off // Restore offset + + if validErr == nil { + return dec.d.off, nil + } + + if validErr != io.ErrUnexpectedEOF { + return 0, validErr + } + + // Process last read error on io.ErrUnexpectedEOF. + if readErr != nil { + if readErr == io.EOF { + // current CBOR data item is incomplete. + return 0, io.ErrUnexpectedEOF + } + return 0, readErr + } + } + + // More data is needed and there was no read error. + var n int + for n == 0 { + n, readErr = dec.read() + if n == 0 && readErr != nil { + // No more data can be read and read error is encountered. + // At this point, validErr is either nil or io.ErrUnexpectedEOF. + if readErr == io.EOF { + if validErr == io.ErrUnexpectedEOF { + // current CBOR data item is incomplete. + return 0, io.ErrUnexpectedEOF + } + } + return 0, readErr + } + } + + // At this point, dec.buf contains new data from last read (n > 0). + } +} + +// read() reads data from Reader to buffer. +// It returns number of bytes read and any read error encountered. +// Postconditions: +// - dec.buf contains previously unread data and new data. +// - dec.off is 0. +func (dec *Decoder) read() (int, error) { + // Grow buf if needed. + const minRead = 512 + if cap(dec.buf)-len(dec.buf)+dec.off < minRead { + oldUnreadBuf := dec.buf[dec.off:] + dec.buf = make([]byte, len(dec.buf)-dec.off, 2*cap(dec.buf)+minRead) + dec.overwriteBuf(oldUnreadBuf) + } + + // Copy unread data over read data and reset off to 0. + if dec.off > 0 { + dec.overwriteBuf(dec.buf[dec.off:]) + } + + // Read from reader and reslice buf. + n, err := dec.r.Read(dec.buf[len(dec.buf):cap(dec.buf)]) + dec.buf = dec.buf[0 : len(dec.buf)+n] + return n, err +} + +func (dec *Decoder) overwriteBuf(newBuf []byte) { + n := copy(dec.buf, newBuf) + dec.buf = dec.buf[:n] + dec.off = 0 +} + +// Encoder writes CBOR values to io.Writer. +type Encoder struct { + w io.Writer + em *encMode + indefTypes []cborType +} + +// NewEncoder returns a new encoder that writes to w using the default encoding options. +func NewEncoder(w io.Writer) *Encoder { + return defaultEncMode.NewEncoder(w) +} + +// Encode writes the CBOR encoding of v. +func (enc *Encoder) Encode(v interface{}) error { + if len(enc.indefTypes) > 0 && v != nil { + indefType := enc.indefTypes[len(enc.indefTypes)-1] + if indefType == cborTypeTextString { + k := reflect.TypeOf(v).Kind() + if k != reflect.String { + return errors.New("cbor: cannot encode item type " + k.String() + " for indefinite-length text string") + } + } else if indefType == cborTypeByteString { + t := reflect.TypeOf(v) + k := t.Kind() + if (k != reflect.Array && k != reflect.Slice) || t.Elem().Kind() != reflect.Uint8 { + return errors.New("cbor: cannot encode item type " + k.String() + " for indefinite-length byte string") + } + } + } + + buf := getEncodeBuffer() + + err := encode(buf, enc.em, reflect.ValueOf(v)) + if err == nil { + _, err = enc.w.Write(buf.Bytes()) + } + + putEncodeBuffer(buf) + return err +} + +// StartIndefiniteByteString starts byte string encoding of indefinite length. +// Subsequent calls of (*Encoder).Encode() encodes definite length byte strings +// ("chunks") as one contiguous string until EndIndefinite is called. +func (enc *Encoder) StartIndefiniteByteString() error { + return enc.startIndefinite(cborTypeByteString) +} + +// StartIndefiniteTextString starts text string encoding of indefinite length. +// Subsequent calls of (*Encoder).Encode() encodes definite length text strings +// ("chunks") as one contiguous string until EndIndefinite is called. +func (enc *Encoder) StartIndefiniteTextString() error { + return enc.startIndefinite(cborTypeTextString) +} + +// StartIndefiniteArray starts array encoding of indefinite length. +// Subsequent calls of (*Encoder).Encode() encodes elements of the array +// until EndIndefinite is called. +func (enc *Encoder) StartIndefiniteArray() error { + return enc.startIndefinite(cborTypeArray) +} + +// StartIndefiniteMap starts array encoding of indefinite length. +// Subsequent calls of (*Encoder).Encode() encodes elements of the map +// until EndIndefinite is called. +func (enc *Encoder) StartIndefiniteMap() error { + return enc.startIndefinite(cborTypeMap) +} + +// EndIndefinite closes last opened indefinite length value. +func (enc *Encoder) EndIndefinite() error { + if len(enc.indefTypes) == 0 { + return errors.New("cbor: cannot encode \"break\" code outside indefinite length values") + } + _, err := enc.w.Write([]byte{cborBreakFlag}) + if err == nil { + enc.indefTypes = enc.indefTypes[:len(enc.indefTypes)-1] + } + return err +} + +var cborIndefHeader = map[cborType][]byte{ + cborTypeByteString: {cborByteStringWithIndefiniteLengthHead}, + cborTypeTextString: {cborTextStringWithIndefiniteLengthHead}, + cborTypeArray: {cborArrayWithIndefiniteLengthHead}, + cborTypeMap: {cborMapWithIndefiniteLengthHead}, +} + +func (enc *Encoder) startIndefinite(typ cborType) error { + if enc.em.indefLength == IndefLengthForbidden { + return &IndefiniteLengthError{typ} + } + _, err := enc.w.Write(cborIndefHeader[typ]) + if err == nil { + enc.indefTypes = append(enc.indefTypes, typ) + } + return err +} + +// RawMessage is a raw encoded CBOR value. +type RawMessage []byte + +// MarshalCBOR returns m or CBOR nil if m is nil. +func (m RawMessage) MarshalCBOR() ([]byte, error) { + if len(m) == 0 { + return cborNil, nil + } + return m, nil +} + +// UnmarshalCBOR creates a copy of data and saves to *m. +func (m *RawMessage) UnmarshalCBOR(data []byte) error { + if m == nil { + return errors.New("cbor.RawMessage: UnmarshalCBOR on nil pointer") + } + *m = append((*m)[0:0], data...) + return nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/structfields.go b/api/vendor/github.com/fxamacker/cbor/v2/structfields.go new file mode 100644 index 000000000..81228acf0 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/structfields.go @@ -0,0 +1,260 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "reflect" + "sort" + "strings" +) + +type field struct { + name string + nameAsInt int64 // used to decoder to match field name with CBOR int + cborName []byte + cborNameByteString []byte // major type 2 name encoding iff cborName has major type 3 + idx []int + typ reflect.Type + ef encodeFunc + ief isEmptyFunc + typInfo *typeInfo // used to decoder to reuse type info + tagged bool // used to choose dominant field (at the same level tagged fields dominate untagged fields) + omitEmpty bool // used to skip empty field + keyAsInt bool // used to encode/decode field name as int +} + +type fields []*field + +// indexFieldSorter sorts fields by field idx at each level, breaking ties with idx depth. +type indexFieldSorter struct { + fields fields +} + +func (x *indexFieldSorter) Len() int { + return len(x.fields) +} + +func (x *indexFieldSorter) Swap(i, j int) { + x.fields[i], x.fields[j] = x.fields[j], x.fields[i] +} + +func (x *indexFieldSorter) Less(i, j int) bool { + iIdx, jIdx := x.fields[i].idx, x.fields[j].idx + for k := 0; k < len(iIdx) && k < len(jIdx); k++ { + if iIdx[k] != jIdx[k] { + return iIdx[k] < jIdx[k] + } + } + return len(iIdx) <= len(jIdx) +} + +// nameLevelAndTagFieldSorter sorts fields by field name, idx depth, and presence of tag. +type nameLevelAndTagFieldSorter struct { + fields fields +} + +func (x *nameLevelAndTagFieldSorter) Len() int { + return len(x.fields) +} + +func (x *nameLevelAndTagFieldSorter) Swap(i, j int) { + x.fields[i], x.fields[j] = x.fields[j], x.fields[i] +} + +func (x *nameLevelAndTagFieldSorter) Less(i, j int) bool { + fi, fj := x.fields[i], x.fields[j] + if fi.name != fj.name { + return fi.name < fj.name + } + if len(fi.idx) != len(fj.idx) { + return len(fi.idx) < len(fj.idx) + } + if fi.tagged != fj.tagged { + return fi.tagged + } + return i < j // Field i and j have the same name, depth, and tagged status. Nothing else matters. +} + +// getFields returns visible fields of struct type t following visibility rules for JSON encoding. +func getFields(t reflect.Type) (flds fields, structOptions string) { + // Get special field "_" tag options + if f, ok := t.FieldByName("_"); ok { + tag := f.Tag.Get("cbor") + if tag != "-" { + structOptions = tag + } + } + + // nTypes contains next level anonymous fields' types and indexes + // (there can be multiple fields of the same type at the same level) + flds, nTypes := appendFields(t, nil, nil, nil) + + if len(nTypes) > 0 { + + var cTypes map[reflect.Type][][]int // current level anonymous fields' types and indexes + vTypes := map[reflect.Type]bool{t: true} // visited field types at less nested levels + + for len(nTypes) > 0 { + cTypes, nTypes = nTypes, nil + + for t, idx := range cTypes { + // If there are multiple anonymous fields of the same struct type at the same level, all are ignored. + if len(idx) > 1 { + continue + } + + // Anonymous field of the same type at deeper nested level is ignored. + if vTypes[t] { + continue + } + vTypes[t] = true + + flds, nTypes = appendFields(t, idx[0], flds, nTypes) + } + } + } + + sort.Sort(&nameLevelAndTagFieldSorter{flds}) + + // Keep visible fields. + j := 0 // index of next unique field + for i := 0; i < len(flds); { + name := flds[i].name + if i == len(flds)-1 || // last field + name != flds[i+1].name || // field i has unique field name + len(flds[i].idx) < len(flds[i+1].idx) || // field i is at a less nested level than field i+1 + (flds[i].tagged && !flds[i+1].tagged) { // field i is tagged while field i+1 is not + flds[j] = flds[i] + j++ + } + + // Skip fields with the same field name. + for i++; i < len(flds) && name == flds[i].name; i++ { //nolint:revive + } + } + if j != len(flds) { + flds = flds[:j] + } + + // Sort fields by field index + sort.Sort(&indexFieldSorter{flds}) + + return flds, structOptions +} + +// appendFields appends type t's exportable fields to flds and anonymous struct fields to nTypes . +func appendFields( + t reflect.Type, + idx []int, + flds fields, + nTypes map[reflect.Type][][]int, +) ( + _flds fields, + _nTypes map[reflect.Type][][]int, +) { + for i := 0; i < t.NumField(); i++ { + f := t.Field(i) + + ft := f.Type + for ft.Kind() == reflect.Ptr { + ft = ft.Elem() + } + + if !isFieldExportable(f, ft.Kind()) { + continue + } + + tag := f.Tag.Get("cbor") + if tag == "" { + tag = f.Tag.Get("json") + } + if tag == "-" { + continue + } + + tagged := tag != "" + + // Parse field tag options + var tagFieldName string + var omitempty, keyasint bool + for j := 0; tag != ""; j++ { + var token string + idx := strings.IndexByte(tag, ',') + if idx == -1 { + token, tag = tag, "" + } else { + token, tag = tag[:idx], tag[idx+1:] + } + if j == 0 { + tagFieldName = token + } else { + switch token { + case "omitempty": + omitempty = true + case "keyasint": + keyasint = true + } + } + } + + fieldName := tagFieldName + if tagFieldName == "" { + fieldName = f.Name + } + + fIdx := make([]int, len(idx)+1) + copy(fIdx, idx) + fIdx[len(fIdx)-1] = i + + if !f.Anonymous || ft.Kind() != reflect.Struct || tagFieldName != "" { + flds = append(flds, &field{ + name: fieldName, + idx: fIdx, + typ: f.Type, + omitEmpty: omitempty, + keyAsInt: keyasint, + tagged: tagged}) + } else { + if nTypes == nil { + nTypes = make(map[reflect.Type][][]int) + } + nTypes[ft] = append(nTypes[ft], fIdx) + } + } + + return flds, nTypes +} + +// isFieldExportable returns true if f is an exportable (regular or anonymous) field or +// a nonexportable anonymous field of struct type. +// Nonexportable anonymous field of struct type can contain exportable fields. +func isFieldExportable(f reflect.StructField, fk reflect.Kind) bool { //nolint:gocritic // ignore hugeParam + exportable := f.PkgPath == "" + return exportable || (f.Anonymous && fk == reflect.Struct) +} + +type embeddedFieldNullPtrFunc func(reflect.Value) (reflect.Value, error) + +// getFieldValue returns field value of struct v by index. When encountering null pointer +// to anonymous (embedded) struct field, f is called with the last traversed field value. +func getFieldValue(v reflect.Value, idx []int, f embeddedFieldNullPtrFunc) (fv reflect.Value, err error) { + fv = v + for i, n := range idx { + fv = fv.Field(n) + + if i < len(idx)-1 { + if fv.Kind() == reflect.Ptr && fv.Type().Elem().Kind() == reflect.Struct { + if fv.IsNil() { + // Null pointer to embedded struct field + fv, err = f(fv) + if err != nil || !fv.IsValid() { + return fv, err + } + } + fv = fv.Elem() + } + } + } + return fv, nil +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/tag.go b/api/vendor/github.com/fxamacker/cbor/v2/tag.go new file mode 100644 index 000000000..5c4d2b7a4 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/tag.go @@ -0,0 +1,299 @@ +package cbor + +import ( + "errors" + "fmt" + "reflect" + "sync" +) + +// Tag represents CBOR tag data, including tag number and unmarshaled tag content. Marshaling and +// unmarshaling of tag content is subject to any encode and decode options that would apply to +// enclosed data item if it were to appear outside of a tag. +type Tag struct { + Number uint64 + Content interface{} +} + +// RawTag represents CBOR tag data, including tag number and raw tag content. +// RawTag implements Unmarshaler and Marshaler interfaces. +type RawTag struct { + Number uint64 + Content RawMessage +} + +// UnmarshalCBOR sets *t with tag number and raw tag content copied from data. +func (t *RawTag) UnmarshalCBOR(data []byte) error { + if t == nil { + return errors.New("cbor.RawTag: UnmarshalCBOR on nil pointer") + } + + // Decoding CBOR null and undefined to cbor.RawTag is no-op. + if len(data) == 1 && (data[0] == 0xf6 || data[0] == 0xf7) { + return nil + } + + d := decoder{data: data, dm: defaultDecMode} + + // Unmarshal tag number. + typ, _, num := d.getHead() + if typ != cborTypeTag { + return &UnmarshalTypeError{CBORType: typ.String(), GoType: typeRawTag.String()} + } + t.Number = num + + // Unmarshal tag content. + c := d.data[d.off:] + t.Content = make([]byte, len(c)) + copy(t.Content, c) + return nil +} + +// MarshalCBOR returns CBOR encoding of t. +func (t RawTag) MarshalCBOR() ([]byte, error) { + if t.Number == 0 && len(t.Content) == 0 { + // Marshal uninitialized cbor.RawTag + b := make([]byte, len(cborNil)) + copy(b, cborNil) + return b, nil + } + + e := getEncodeBuffer() + + encodeHead(e, byte(cborTypeTag), t.Number) + + content := t.Content + if len(content) == 0 { + content = cborNil + } + + buf := make([]byte, len(e.Bytes())+len(content)) + n := copy(buf, e.Bytes()) + copy(buf[n:], content) + + putEncodeBuffer(e) + return buf, nil +} + +// DecTagMode specifies how decoder handles tag number. +type DecTagMode int + +const ( + // DecTagIgnored makes decoder ignore tag number (skips if present). + DecTagIgnored DecTagMode = iota + + // DecTagOptional makes decoder verify tag number if it's present. + DecTagOptional + + // DecTagRequired makes decoder verify tag number and tag number must be present. + DecTagRequired + + maxDecTagMode +) + +func (dtm DecTagMode) valid() bool { + return dtm >= 0 && dtm < maxDecTagMode +} + +// EncTagMode specifies how encoder handles tag number. +type EncTagMode int + +const ( + // EncTagNone makes encoder not encode tag number. + EncTagNone EncTagMode = iota + + // EncTagRequired makes encoder encode tag number. + EncTagRequired + + maxEncTagMode +) + +func (etm EncTagMode) valid() bool { + return etm >= 0 && etm < maxEncTagMode +} + +// TagOptions specifies how encoder and decoder handle tag number. +type TagOptions struct { + DecTag DecTagMode + EncTag EncTagMode +} + +// TagSet is an interface to add and remove tag info. It is used by EncMode and DecMode +// to provide CBOR tag support. +type TagSet interface { + // Add adds given tag number(s), content type, and tag options to TagSet. + Add(opts TagOptions, contentType reflect.Type, num uint64, nestedNum ...uint64) error + + // Remove removes given tag content type from TagSet. + Remove(contentType reflect.Type) + + tagProvider +} + +type tagProvider interface { + getTagItemFromType(t reflect.Type) *tagItem + getTypeFromTagNum(num []uint64) reflect.Type +} + +type tagItem struct { + num []uint64 + cborTagNum []byte + contentType reflect.Type + opts TagOptions +} + +func (t *tagItem) equalTagNum(num []uint64) bool { + // Fast path to compare 1 tag number + if len(t.num) == 1 && len(num) == 1 && t.num[0] == num[0] { + return true + } + + if len(t.num) != len(num) { + return false + } + + for i := 0; i < len(t.num); i++ { + if t.num[i] != num[i] { + return false + } + } + + return true +} + +type ( + tagSet map[reflect.Type]*tagItem + + syncTagSet struct { + sync.RWMutex + t tagSet + } +) + +func (t tagSet) getTagItemFromType(typ reflect.Type) *tagItem { + return t[typ] +} + +func (t tagSet) getTypeFromTagNum(num []uint64) reflect.Type { + for typ, tag := range t { + if tag.equalTagNum(num) { + return typ + } + } + return nil +} + +// NewTagSet returns TagSet (safe for concurrency). +func NewTagSet() TagSet { + return &syncTagSet{t: make(map[reflect.Type]*tagItem)} +} + +// Add adds given tag number(s), content type, and tag options to TagSet. +func (t *syncTagSet) Add(opts TagOptions, contentType reflect.Type, num uint64, nestedNum ...uint64) error { + if contentType == nil { + return errors.New("cbor: cannot add nil content type to TagSet") + } + for contentType.Kind() == reflect.Ptr { + contentType = contentType.Elem() + } + tag, err := newTagItem(opts, contentType, num, nestedNum...) + if err != nil { + return err + } + t.Lock() + defer t.Unlock() + for typ, ti := range t.t { + if typ == contentType { + return errors.New("cbor: content type " + contentType.String() + " already exists in TagSet") + } + if ti.equalTagNum(tag.num) { + return fmt.Errorf("cbor: tag number %v already exists in TagSet", tag.num) + } + } + t.t[contentType] = tag + return nil +} + +// Remove removes given tag content type from TagSet. +func (t *syncTagSet) Remove(contentType reflect.Type) { + for contentType.Kind() == reflect.Ptr { + contentType = contentType.Elem() + } + t.Lock() + delete(t.t, contentType) + t.Unlock() +} + +func (t *syncTagSet) getTagItemFromType(typ reflect.Type) *tagItem { + t.RLock() + ti := t.t[typ] + t.RUnlock() + return ti +} + +func (t *syncTagSet) getTypeFromTagNum(num []uint64) reflect.Type { + t.RLock() + rt := t.t.getTypeFromTagNum(num) + t.RUnlock() + return rt +} + +func newTagItem(opts TagOptions, contentType reflect.Type, num uint64, nestedNum ...uint64) (*tagItem, error) { + if opts.DecTag == DecTagIgnored && opts.EncTag == EncTagNone { + return nil, errors.New("cbor: cannot add tag with DecTagIgnored and EncTagNone options to TagSet") + } + if contentType.PkgPath() == "" || contentType.Kind() == reflect.Interface { + return nil, errors.New("cbor: can only add named types to TagSet, got " + contentType.String()) + } + if contentType == typeTime { + return nil, errors.New("cbor: cannot add time.Time to TagSet, use EncOptions.TimeTag and DecOptions.TimeTag instead") + } + if contentType == typeBigInt { + return nil, errors.New("cbor: cannot add big.Int to TagSet, it's built-in and supported automatically") + } + if contentType == typeTag { + return nil, errors.New("cbor: cannot add cbor.Tag to TagSet") + } + if contentType == typeRawTag { + return nil, errors.New("cbor: cannot add cbor.RawTag to TagSet") + } + if num == 0 || num == 1 { + return nil, errors.New("cbor: cannot add tag number 0 or 1 to TagSet, use EncOptions.TimeTag and DecOptions.TimeTag instead") + } + if num == 2 || num == 3 { + return nil, errors.New("cbor: cannot add tag number 2 or 3 to TagSet, it's built-in and supported automatically") + } + if num == tagNumSelfDescribedCBOR { + return nil, errors.New("cbor: cannot add tag number 55799 to TagSet, it's built-in and ignored automatically") + } + + te := tagItem{num: []uint64{num}, opts: opts, contentType: contentType} + te.num = append(te.num, nestedNum...) + + // Cache encoded tag numbers + e := getEncodeBuffer() + for _, n := range te.num { + encodeHead(e, byte(cborTypeTag), n) + } + te.cborTagNum = make([]byte, e.Len()) + copy(te.cborTagNum, e.Bytes()) + putEncodeBuffer(e) + + return &te, nil +} + +var ( + typeTag = reflect.TypeOf(Tag{}) + typeRawTag = reflect.TypeOf(RawTag{}) +) + +// WrongTagError describes mismatch between CBOR tag and registered tag. +type WrongTagError struct { + RegisteredType reflect.Type + RegisteredTagNum []uint64 + TagNum []uint64 +} + +func (e *WrongTagError) Error() string { + return fmt.Sprintf("cbor: wrong tag number for %s, got %v, expected %v", e.RegisteredType.String(), e.TagNum, e.RegisteredTagNum) +} diff --git a/api/vendor/github.com/fxamacker/cbor/v2/valid.go b/api/vendor/github.com/fxamacker/cbor/v2/valid.go new file mode 100644 index 000000000..b40793b95 --- /dev/null +++ b/api/vendor/github.com/fxamacker/cbor/v2/valid.go @@ -0,0 +1,394 @@ +// Copyright (c) Faye Amacker. All rights reserved. +// Licensed under the MIT License. See LICENSE in the project root for license information. + +package cbor + +import ( + "encoding/binary" + "errors" + "io" + "math" + "strconv" + + "github.com/x448/float16" +) + +// SyntaxError is a description of a CBOR syntax error. +type SyntaxError struct { + msg string +} + +func (e *SyntaxError) Error() string { return e.msg } + +// SemanticError is a description of a CBOR semantic error. +type SemanticError struct { + msg string +} + +func (e *SemanticError) Error() string { return e.msg } + +// MaxNestedLevelError indicates exceeded max nested level of any combination of CBOR arrays/maps/tags. +type MaxNestedLevelError struct { + maxNestedLevels int +} + +func (e *MaxNestedLevelError) Error() string { + return "cbor: exceeded max nested level " + strconv.Itoa(e.maxNestedLevels) +} + +// MaxArrayElementsError indicates exceeded max number of elements for CBOR arrays. +type MaxArrayElementsError struct { + maxArrayElements int +} + +func (e *MaxArrayElementsError) Error() string { + return "cbor: exceeded max number of elements " + strconv.Itoa(e.maxArrayElements) + " for CBOR array" +} + +// MaxMapPairsError indicates exceeded max number of key-value pairs for CBOR maps. +type MaxMapPairsError struct { + maxMapPairs int +} + +func (e *MaxMapPairsError) Error() string { + return "cbor: exceeded max number of key-value pairs " + strconv.Itoa(e.maxMapPairs) + " for CBOR map" +} + +// IndefiniteLengthError indicates found disallowed indefinite length items. +type IndefiniteLengthError struct { + t cborType +} + +func (e *IndefiniteLengthError) Error() string { + return "cbor: indefinite-length " + e.t.String() + " isn't allowed" +} + +// TagsMdError indicates found disallowed CBOR tags. +type TagsMdError struct { +} + +func (e *TagsMdError) Error() string { + return "cbor: CBOR tag isn't allowed" +} + +// ExtraneousDataError indicates found extraneous data following well-formed CBOR data item. +type ExtraneousDataError struct { + numOfBytes int // number of bytes of extraneous data + index int // location of extraneous data +} + +func (e *ExtraneousDataError) Error() string { + return "cbor: " + strconv.Itoa(e.numOfBytes) + " bytes of extraneous data starting at index " + strconv.Itoa(e.index) +} + +// wellformed checks whether the CBOR data item is well-formed. +// allowExtraData indicates if extraneous data is allowed after the CBOR data item. +// - use allowExtraData = true when using Decoder.Decode() +// - use allowExtraData = false when using Unmarshal() +func (d *decoder) wellformed(allowExtraData bool, checkBuiltinTags bool) error { + if len(d.data) == d.off { + return io.EOF + } + _, err := d.wellformedInternal(0, checkBuiltinTags) + if err == nil { + if !allowExtraData && d.off != len(d.data) { + err = &ExtraneousDataError{len(d.data) - d.off, d.off} + } + } + return err +} + +// wellformedInternal checks data's well-formedness and returns max depth and error. +func (d *decoder) wellformedInternal(depth int, checkBuiltinTags bool) (int, error) { //nolint:gocyclo + t, _, val, indefiniteLength, err := d.wellformedHeadWithIndefiniteLengthFlag() + if err != nil { + return 0, err + } + + switch t { + case cborTypeByteString, cborTypeTextString: + if indefiniteLength { + if d.dm.indefLength == IndefLengthForbidden { + return 0, &IndefiniteLengthError{t} + } + return d.wellformedIndefiniteString(t, depth, checkBuiltinTags) + } + valInt := int(val) + if valInt < 0 { + // Detect integer overflow + return 0, errors.New("cbor: " + t.String() + " length " + strconv.FormatUint(val, 10) + " is too large, causing integer overflow") + } + if len(d.data)-d.off < valInt { // valInt+off may overflow integer + return 0, io.ErrUnexpectedEOF + } + d.off += valInt + + case cborTypeArray, cborTypeMap: + depth++ + if depth > d.dm.maxNestedLevels { + return 0, &MaxNestedLevelError{d.dm.maxNestedLevels} + } + + if indefiniteLength { + if d.dm.indefLength == IndefLengthForbidden { + return 0, &IndefiniteLengthError{t} + } + return d.wellformedIndefiniteArrayOrMap(t, depth, checkBuiltinTags) + } + + valInt := int(val) + if valInt < 0 { + // Detect integer overflow + return 0, errors.New("cbor: " + t.String() + " length " + strconv.FormatUint(val, 10) + " is too large, it would cause integer overflow") + } + + if t == cborTypeArray { + if valInt > d.dm.maxArrayElements { + return 0, &MaxArrayElementsError{d.dm.maxArrayElements} + } + } else { + if valInt > d.dm.maxMapPairs { + return 0, &MaxMapPairsError{d.dm.maxMapPairs} + } + } + + count := 1 + if t == cborTypeMap { + count = 2 + } + maxDepth := depth + for j := 0; j < count; j++ { + for i := 0; i < valInt; i++ { + var dpt int + if dpt, err = d.wellformedInternal(depth, checkBuiltinTags); err != nil { + return 0, err + } + if dpt > maxDepth { + maxDepth = dpt // Save max depth + } + } + } + depth = maxDepth + + case cborTypeTag: + if d.dm.tagsMd == TagsForbidden { + return 0, &TagsMdError{} + } + + tagNum := val + + // Scan nested tag numbers to avoid recursion. + for { + if len(d.data) == d.off { // Tag number must be followed by tag content. + return 0, io.ErrUnexpectedEOF + } + if checkBuiltinTags { + err = validBuiltinTag(tagNum, d.data[d.off]) + if err != nil { + return 0, err + } + } + if d.dm.bignumTag == BignumTagForbidden && (tagNum == 2 || tagNum == 3) { + return 0, &UnacceptableDataItemError{ + CBORType: cborTypeTag.String(), + Message: "bignum", + } + } + if getType(d.data[d.off]) != cborTypeTag { + break + } + if _, _, tagNum, err = d.wellformedHead(); err != nil { + return 0, err + } + depth++ + if depth > d.dm.maxNestedLevels { + return 0, &MaxNestedLevelError{d.dm.maxNestedLevels} + } + } + // Check tag content. + return d.wellformedInternal(depth, checkBuiltinTags) + } + + return depth, nil +} + +// wellformedIndefiniteString checks indefinite length byte/text string's well-formedness and returns max depth and error. +func (d *decoder) wellformedIndefiniteString(t cborType, depth int, checkBuiltinTags bool) (int, error) { + var err error + for { + if len(d.data) == d.off { + return 0, io.ErrUnexpectedEOF + } + if isBreakFlag(d.data[d.off]) { + d.off++ + break + } + // Peek ahead to get next type and indefinite length status. + nt, ai := parseInitialByte(d.data[d.off]) + if t != nt { + return 0, &SyntaxError{"cbor: wrong element type " + nt.String() + " for indefinite-length " + t.String()} + } + if additionalInformation(ai).isIndefiniteLength() { + return 0, &SyntaxError{"cbor: indefinite-length " + t.String() + " chunk is not definite-length"} + } + if depth, err = d.wellformedInternal(depth, checkBuiltinTags); err != nil { + return 0, err + } + } + return depth, nil +} + +// wellformedIndefiniteArrayOrMap checks indefinite length array/map's well-formedness and returns max depth and error. +func (d *decoder) wellformedIndefiniteArrayOrMap(t cborType, depth int, checkBuiltinTags bool) (int, error) { + var err error + maxDepth := depth + i := 0 + for { + if len(d.data) == d.off { + return 0, io.ErrUnexpectedEOF + } + if isBreakFlag(d.data[d.off]) { + d.off++ + break + } + var dpt int + if dpt, err = d.wellformedInternal(depth, checkBuiltinTags); err != nil { + return 0, err + } + if dpt > maxDepth { + maxDepth = dpt + } + i++ + if t == cborTypeArray { + if i > d.dm.maxArrayElements { + return 0, &MaxArrayElementsError{d.dm.maxArrayElements} + } + } else { + if i%2 == 0 && i/2 > d.dm.maxMapPairs { + return 0, &MaxMapPairsError{d.dm.maxMapPairs} + } + } + } + if t == cborTypeMap && i%2 == 1 { + return 0, &SyntaxError{"cbor: unexpected \"break\" code"} + } + return maxDepth, nil +} + +func (d *decoder) wellformedHeadWithIndefiniteLengthFlag() ( + t cborType, + ai byte, + val uint64, + indefiniteLength bool, + err error, +) { + t, ai, val, err = d.wellformedHead() + if err != nil { + return + } + indefiniteLength = additionalInformation(ai).isIndefiniteLength() + return +} + +func (d *decoder) wellformedHead() (t cborType, ai byte, val uint64, err error) { + dataLen := len(d.data) - d.off + if dataLen == 0 { + return 0, 0, 0, io.ErrUnexpectedEOF + } + + t, ai = parseInitialByte(d.data[d.off]) + val = uint64(ai) + d.off++ + dataLen-- + + if ai <= maxAdditionalInformationWithoutArgument { + return t, ai, val, nil + } + + if ai == additionalInformationWith1ByteArgument { + const argumentSize = 1 + if dataLen < argumentSize { + return 0, 0, 0, io.ErrUnexpectedEOF + } + val = uint64(d.data[d.off]) + d.off++ + if t == cborTypePrimitives && val < 32 { + return 0, 0, 0, &SyntaxError{"cbor: invalid simple value " + strconv.Itoa(int(val)) + " for type " + t.String()} + } + return t, ai, val, nil + } + + if ai == additionalInformationWith2ByteArgument { + const argumentSize = 2 + if dataLen < argumentSize { + return 0, 0, 0, io.ErrUnexpectedEOF + } + val = uint64(binary.BigEndian.Uint16(d.data[d.off : d.off+argumentSize])) + d.off += argumentSize + if t == cborTypePrimitives { + if err := d.acceptableFloat(float64(float16.Frombits(uint16(val)).Float32())); err != nil { + return 0, 0, 0, err + } + } + return t, ai, val, nil + } + + if ai == additionalInformationWith4ByteArgument { + const argumentSize = 4 + if dataLen < argumentSize { + return 0, 0, 0, io.ErrUnexpectedEOF + } + val = uint64(binary.BigEndian.Uint32(d.data[d.off : d.off+argumentSize])) + d.off += argumentSize + if t == cborTypePrimitives { + if err := d.acceptableFloat(float64(math.Float32frombits(uint32(val)))); err != nil { + return 0, 0, 0, err + } + } + return t, ai, val, nil + } + + if ai == additionalInformationWith8ByteArgument { + const argumentSize = 8 + if dataLen < argumentSize { + return 0, 0, 0, io.ErrUnexpectedEOF + } + val = binary.BigEndian.Uint64(d.data[d.off : d.off+argumentSize]) + d.off += argumentSize + if t == cborTypePrimitives { + if err := d.acceptableFloat(math.Float64frombits(val)); err != nil { + return 0, 0, 0, err + } + } + return t, ai, val, nil + } + + if additionalInformation(ai).isIndefiniteLength() { + switch t { + case cborTypePositiveInt, cborTypeNegativeInt, cborTypeTag: + return 0, 0, 0, &SyntaxError{"cbor: invalid additional information " + strconv.Itoa(int(ai)) + " for type " + t.String()} + case cborTypePrimitives: // 0xff (break code) should not be outside wellformedIndefinite(). + return 0, 0, 0, &SyntaxError{"cbor: unexpected \"break\" code"} + } + return t, ai, val, nil + } + + // ai == 28, 29, 30 + return 0, 0, 0, &SyntaxError{"cbor: invalid additional information " + strconv.Itoa(int(ai)) + " for type " + t.String()} +} + +func (d *decoder) acceptableFloat(f float64) error { + switch { + case d.dm.nanDec == NaNDecodeForbidden && math.IsNaN(f): + return &UnacceptableDataItemError{ + CBORType: cborTypePrimitives.String(), + Message: "floating-point NaN", + } + case d.dm.infDec == InfDecodeForbidden && math.IsInf(f, 0): + return &UnacceptableDataItemError{ + CBORType: cborTypePrimitives.String(), + Message: "floating-point infinity", + } + } + return nil +} diff --git a/api/vendor/github.com/go-logr/logr/README.md b/api/vendor/github.com/go-logr/logr/README.md index 8969526a6..7c7f0c69c 100644 --- a/api/vendor/github.com/go-logr/logr/README.md +++ b/api/vendor/github.com/go-logr/logr/README.md @@ -1,6 +1,7 @@ # A minimal logging API for Go [![Go Reference](https://pkg.go.dev/badge/github.com/go-logr/logr.svg)](https://pkg.go.dev/github.com/go-logr/logr) +[![Go Report Card](https://goreportcard.com/badge/github.com/go-logr/logr)](https://goreportcard.com/report/github.com/go-logr/logr) [![OpenSSF Scorecard](https://api.securityscorecards.dev/projects/github.com/go-logr/logr/badge)](https://securityscorecards.dev/viewer/?platform=github.com&org=go-logr&repo=logr) logr offers an(other) opinion on how Go programs and libraries can do logging diff --git a/api/vendor/github.com/openshift/api/config/v1/types.go b/api/vendor/github.com/openshift/api/config/v1/types.go index 6fb1b9adc..d4d09e7fe 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types.go +++ b/api/vendor/github.com/openshift/api/config/v1/types.go @@ -401,7 +401,7 @@ const ( // IBMCloudServiceName contains a value specifying the name of an IBM Cloud Service, // which are used by MAPI, CIRO, CIO, Installer, etc. -// +kubebuilder:validation:Enum=CIS;COS;DNSServices;GlobalSearch;GlobalTagging;HyperProtect;IAM;KeyProtect;ResourceController;ResourceManager;VPC +// +kubebuilder:validation:Enum=CIS;COS;COSConfig;DNSServices;GlobalCatalog;GlobalSearch;GlobalTagging;HyperProtect;IAM;KeyProtect;ResourceController;ResourceManager;VPC type IBMCloudServiceName string const ( @@ -409,8 +409,12 @@ const ( IBMCloudServiceCIS IBMCloudServiceName = "CIS" // IBMCloudServiceCOS is the name for IBM Cloud COS. IBMCloudServiceCOS IBMCloudServiceName = "COS" + // IBMCloudServiceCOSConfig is the name for IBM Cloud COS Config service. + IBMCloudServiceCOSConfig IBMCloudServiceName = "COSConfig" // IBMCloudServiceDNSServices is the name for IBM Cloud DNS Services. IBMCloudServiceDNSServices IBMCloudServiceName = "DNSServices" + // IBMCloudServiceGlobalCatalog is the name for IBM Cloud Global Catalog service. + IBMCloudServiceGlobalCatalog IBMCloudServiceName = "GlobalCatalog" // IBMCloudServiceGlobalSearch is the name for IBM Cloud Global Search. IBMCloudServiceGlobalSearch IBMCloudServiceName = "GlobalSearch" // IBMCloudServiceGlobalTagging is the name for IBM Cloud Global Tagging. diff --git a/api/vendor/github.com/openshift/api/config/v1/types_cluster_version.go b/api/vendor/github.com/openshift/api/config/v1/types_cluster_version.go index 2b8c30213..24e0b2f09 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_cluster_version.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_cluster_version.go @@ -18,7 +18,6 @@ import ( // +kubebuilder:object:root=true // +kubebuilder:subresource:status // +kubebuilder:resource:path=clusterversions,scope=Cluster -// +kubebuilder:validation:XValidation:rule="has(self.spec.capabilities) && has(self.spec.capabilities.additionalEnabledCapabilities) && self.spec.capabilities.baselineCapabilitySet == 'None' && 'baremetal' in self.spec.capabilities.additionalEnabledCapabilities ? 'MachineAPI' in self.spec.capabilities.additionalEnabledCapabilities || (has(self.status) && has(self.status.capabilities) && has(self.status.capabilities.enabledCapabilities) && 'MachineAPI' in self.status.capabilities.enabledCapabilities) : true",message="the `baremetal` capability requires the `MachineAPI` capability, which is neither explicitly or implicitly enabled in this cluster, please enable the `MachineAPI` capability" // +kubebuilder:validation:XValidation:rule="has(self.spec.capabilities) && has(self.spec.capabilities.additionalEnabledCapabilities) && self.spec.capabilities.baselineCapabilitySet == 'None' && 'marketplace' in self.spec.capabilities.additionalEnabledCapabilities ? 'OperatorLifecycleManager' in self.spec.capabilities.additionalEnabledCapabilities || (has(self.status) && has(self.status.capabilities) && has(self.status.capabilities.enabledCapabilities) && 'OperatorLifecycleManager' in self.status.capabilities.enabledCapabilities) : true",message="the `marketplace` capability requires the `OperatorLifecycleManager` capability, which is neither explicitly or implicitly enabled in this cluster, please enable the `OperatorLifecycleManager` capability" // +kubebuilder:printcolumn:name=Version,JSONPath=.status.history[?(@.state=="Completed")].version,type=string // +kubebuilder:printcolumn:name=Available,JSONPath=.status.conditions[?(@.type=="Available")].status,type=string @@ -289,7 +288,7 @@ const ( ) // ClusterVersionCapability enumerates optional, core cluster components. -// +kubebuilder:validation:Enum=openshift-samples;baremetal;marketplace;Console;Insights;Storage;CSISnapshot;NodeTuning;MachineAPI;Build;DeploymentConfig;ImageRegistry;OperatorLifecycleManager;CloudCredential;Ingress;CloudControllerManager +// +kubebuilder:validation:Enum=openshift-samples;baremetal;marketplace;Console;Insights;Storage;CSISnapshot;NodeTuning;MachineAPI;Build;DeploymentConfig;ImageRegistry;OperatorLifecycleManager;CloudCredential;Ingress;CloudControllerManager;OperatorLifecycleManagerV1 type ClusterVersionCapability string const ( @@ -380,10 +379,14 @@ const ( // allows to distribute Docker images ClusterVersionCapabilityImageRegistry ClusterVersionCapability = "ImageRegistry" - // ClusterVersionCapabilityOperatorLifecycleManager manages the Operator Lifecycle Manager + // ClusterVersionCapabilityOperatorLifecycleManager manages the Operator Lifecycle Manager (legacy) // which itself manages the lifecycle of operators ClusterVersionCapabilityOperatorLifecycleManager ClusterVersionCapability = "OperatorLifecycleManager" + // ClusterVersionCapabilityOperatorLifecycleManagerV1 manages the Operator Lifecycle Manager (v1) + // which itself manages the lifecycle of operators + ClusterVersionCapabilityOperatorLifecycleManagerV1 ClusterVersionCapability = "OperatorLifecycleManagerV1" + // ClusterVersionCapabilityCloudCredential manages credentials for cloud providers // in openshift cluster ClusterVersionCapabilityCloudCredential ClusterVersionCapability = "CloudCredential" @@ -423,13 +426,14 @@ var KnownClusterVersionCapabilities = []ClusterVersionCapability{ ClusterVersionCapabilityDeploymentConfig, ClusterVersionCapabilityImageRegistry, ClusterVersionCapabilityOperatorLifecycleManager, + ClusterVersionCapabilityOperatorLifecycleManagerV1, ClusterVersionCapabilityCloudCredential, ClusterVersionCapabilityIngress, ClusterVersionCapabilityCloudControllerManager, } // ClusterVersionCapabilitySet defines sets of cluster version capabilities. -// +kubebuilder:validation:Enum=None;v4.11;v4.12;v4.13;v4.14;v4.15;v4.16;vCurrent +// +kubebuilder:validation:Enum=None;v4.11;v4.12;v4.13;v4.14;v4.15;v4.16;v4.17;v4.18;vCurrent type ClusterVersionCapabilitySet string const ( @@ -473,6 +477,18 @@ const ( // version of OpenShift is installed. ClusterVersionCapabilitySet4_16 ClusterVersionCapabilitySet = "v4.16" + // ClusterVersionCapabilitySet4_17 is the recommended set of + // optional capabilities to enable for the 4.17 version of + // OpenShift. This list will remain the same no matter which + // version of OpenShift is installed. + ClusterVersionCapabilitySet4_17 ClusterVersionCapabilitySet = "v4.17" + + // ClusterVersionCapabilitySet4_18 is the recommended set of + // optional capabilities to enable for the 4.18 version of + // OpenShift. This list will remain the same no matter which + // version of OpenShift is installed. + ClusterVersionCapabilitySet4_18 ClusterVersionCapabilitySet = "v4.18" + // ClusterVersionCapabilitySetCurrent is the recommended set // of optional capabilities to enable for the cluster's // current version of OpenShift. @@ -557,6 +573,43 @@ var ClusterVersionCapabilitySets = map[ClusterVersionCapabilitySet][]ClusterVers ClusterVersionCapabilityIngress, ClusterVersionCapabilityCloudControllerManager, }, + ClusterVersionCapabilitySet4_17: { + ClusterVersionCapabilityBaremetal, + ClusterVersionCapabilityConsole, + ClusterVersionCapabilityInsights, + ClusterVersionCapabilityMarketplace, + ClusterVersionCapabilityStorage, + ClusterVersionCapabilityOpenShiftSamples, + ClusterVersionCapabilityCSISnapshot, + ClusterVersionCapabilityNodeTuning, + ClusterVersionCapabilityMachineAPI, + ClusterVersionCapabilityBuild, + ClusterVersionCapabilityDeploymentConfig, + ClusterVersionCapabilityImageRegistry, + ClusterVersionCapabilityOperatorLifecycleManager, + ClusterVersionCapabilityCloudCredential, + ClusterVersionCapabilityIngress, + ClusterVersionCapabilityCloudControllerManager, + }, + ClusterVersionCapabilitySet4_18: { + ClusterVersionCapabilityBaremetal, + ClusterVersionCapabilityConsole, + ClusterVersionCapabilityInsights, + ClusterVersionCapabilityMarketplace, + ClusterVersionCapabilityStorage, + ClusterVersionCapabilityOpenShiftSamples, + ClusterVersionCapabilityCSISnapshot, + ClusterVersionCapabilityNodeTuning, + ClusterVersionCapabilityMachineAPI, + ClusterVersionCapabilityBuild, + ClusterVersionCapabilityDeploymentConfig, + ClusterVersionCapabilityImageRegistry, + ClusterVersionCapabilityOperatorLifecycleManager, + ClusterVersionCapabilityOperatorLifecycleManagerV1, + ClusterVersionCapabilityCloudCredential, + ClusterVersionCapabilityIngress, + ClusterVersionCapabilityCloudControllerManager, + }, ClusterVersionCapabilitySetCurrent: { ClusterVersionCapabilityBaremetal, ClusterVersionCapabilityConsole, @@ -571,6 +624,7 @@ var ClusterVersionCapabilitySets = map[ClusterVersionCapabilitySet][]ClusterVers ClusterVersionCapabilityDeploymentConfig, ClusterVersionCapabilityImageRegistry, ClusterVersionCapabilityOperatorLifecycleManager, + ClusterVersionCapabilityOperatorLifecycleManagerV1, ClusterVersionCapabilityCloudCredential, ClusterVersionCapabilityIngress, ClusterVersionCapabilityCloudControllerManager, diff --git a/api/vendor/github.com/openshift/api/config/v1/types_feature.go b/api/vendor/github.com/openshift/api/config/v1/types_feature.go index 99d99f5b5..88d94ac52 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_feature.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_feature.go @@ -68,6 +68,7 @@ type FeatureGateSelection struct { // Turning on or off features may cause irreversible changes in your cluster which cannot be undone. // +unionDiscriminator // +optional + // +kubebuilder:validation:Enum=CustomNoUpgrade;DevPreviewNoUpgrade;TechPreviewNoUpgrade;"" // +kubebuilder:validation:XValidation:rule="oldSelf == 'CustomNoUpgrade' ? self == 'CustomNoUpgrade' : true",message="CustomNoUpgrade may not be changed" // +kubebuilder:validation:XValidation:rule="oldSelf == 'TechPreviewNoUpgrade' ? self == 'TechPreviewNoUpgrade' : true",message="TechPreviewNoUpgrade may not be changed" // +kubebuilder:validation:XValidation:rule="oldSelf == 'DevPreviewNoUpgrade' ? self == 'DevPreviewNoUpgrade' : true",message="DevPreviewNoUpgrade may not be changed" diff --git a/api/vendor/github.com/openshift/api/config/v1/types_image.go b/api/vendor/github.com/openshift/api/config/v1/types_image.go index a344086c0..d3c694a56 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_image.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_image.go @@ -37,6 +37,23 @@ type Image struct { Status ImageStatus `json:"status"` } +// ImportModeType describes how to import an image manifest. +// +enum +// +kubebuilder:validation:Enum:="";Legacy;PreserveOriginal +type ImportModeType string + +const ( + // ImportModeLegacy indicates that the legacy behaviour should be used. + // For manifest lists, the legacy behaviour will discard the manifest list and import a single + // sub-manifest. In this case, the platform is chosen in the following order of priority: + // 1. tag annotations; 2. control plane arch/os; 3. linux/amd64; 4. the first manifest in the list. + // This mode is the default. + ImportModeLegacy ImportModeType = "Legacy" + // ImportModePreserveOriginal indicates that the original manifest will be preserved. + // For manifest lists, the manifest list and all its sub-manifests will be imported. + ImportModePreserveOriginal ImportModeType = "PreserveOriginal" +) + type ImageSpec struct { // allowedRegistriesForImport limits the container image registries that normal users may import // images from. Set this list to the registries that you trust to contain valid Docker @@ -45,6 +62,7 @@ type ImageSpec struct { // this policy - typically only administrators or system integrations will have those // permissions. // +optional + // +listType=atomic AllowedRegistriesForImport []RegistryLocation `json:"allowedRegistriesForImport,omitempty"` // externalRegistryHostnames provides the hostnames for the default external image @@ -52,6 +70,7 @@ type ImageSpec struct { // is exposed externally. The first value is used in 'publicDockerImageRepository' // field in ImageStreams. The value must be in "hostname[:port]" format. // +optional + // +listType=atomic ExternalRegistryHostnames []string `json:"externalRegistryHostnames,omitempty"` // additionalTrustedCA is a reference to a ConfigMap containing additional CAs that @@ -67,6 +86,21 @@ type ImageSpec struct { // internal cluster registry. // +optional RegistrySources RegistrySources `json:"registrySources"` + + // imageStreamImportMode controls the import mode behaviour of imagestreams. + // It can be set to `Legacy` or `PreserveOriginal` or the empty string. If this value + // is specified, this setting is applied to all newly created imagestreams which do not have the + // value set. `Legacy` indicates that the legacy behaviour should be used. + // For manifest lists, the legacy behaviour will discard the manifest list and import a single + // sub-manifest. In this case, the platform is chosen in the following order of priority: + // 1. tag annotations; 2. control plane arch/os; 3. linux/amd64; 4. the first manifest in the list. + // `PreserveOriginal` indicates that the original manifest will be preserved. For manifest lists, + // the manifest list and all its sub-manifests will be imported. When empty, the behaviour will be + // decided based on the payload type advertised by the ClusterVersion status, i.e single arch payload + // implies the import mode is Legacy and multi payload implies PreserveOriginal. + // +openshift:enable:FeatureGate=ImageStreamImportMode + // +optional + ImageStreamImportMode ImportModeType `json:"imageStreamImportMode"` } type ImageStatus struct { @@ -82,7 +116,22 @@ type ImageStatus struct { // is exposed externally. The first value is used in 'publicDockerImageRepository' // field in ImageStreams. The value must be in "hostname[:port]" format. // +optional + // +listType=atomic ExternalRegistryHostnames []string `json:"externalRegistryHostnames,omitempty"` + + // imageStreamImportMode controls the import mode behaviour of imagestreams. It can be + // `Legacy` or `PreserveOriginal`. `Legacy` indicates that the legacy behaviour should be used. + // For manifest lists, the legacy behaviour will discard the manifest list and import a single + // sub-manifest. In this case, the platform is chosen in the following order of priority: + // 1. tag annotations; 2. control plane arch/os; 3. linux/amd64; 4. the first manifest in the list. + // `PreserveOriginal` indicates that the original manifest will be preserved. For manifest lists, + // the manifest list and all its sub-manifests will be imported. This value will be reconciled based + // on either the spec value or if no spec value is specified, the image registry operator would look + // at the ClusterVersion status to determine the payload type and set the import mode accordingly, + // i.e single arch payload implies the import mode is Legacy and multi payload implies PreserveOriginal. + // +openshift:enable:FeatureGate=ImageStreamImportMode + // +optional + ImageStreamImportMode ImportModeType `json:"imageStreamImportMode,omitempty"` } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object @@ -116,16 +165,19 @@ type RegistryLocation struct { type RegistrySources struct { // insecureRegistries are registries which do not have a valid TLS certificates or only support HTTP connections. // +optional + // +listType=atomic InsecureRegistries []string `json:"insecureRegistries,omitempty"` // blockedRegistries cannot be used for image pull and push actions. All other registries are permitted. // // Only one of BlockedRegistries or AllowedRegistries may be set. // +optional + // +listType=atomic BlockedRegistries []string `json:"blockedRegistries,omitempty"` // allowedRegistries are the only registries permitted for image pull and push actions. All other registries are denied. // // Only one of BlockedRegistries or AllowedRegistries may be set. // +optional + // +listType=atomic AllowedRegistries []string `json:"allowedRegistries,omitempty"` // containerRuntimeSearchRegistries are registries that will be searched when pulling images that do not have fully qualified // domains in their pull specs. Registries will be searched in the order provided in the list. diff --git a/api/vendor/github.com/openshift/api/config/v1/types_infrastructure.go b/api/vendor/github.com/openshift/api/config/v1/types_infrastructure.go index 8e50008ea..43d27c446 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_infrastructure.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_infrastructure.go @@ -269,6 +269,7 @@ type ExternalPlatformSpec struct { // PlatformSpec holds the desired state specific to the underlying infrastructure provider // of the current cluster. Since these are used at spec-level for the underlying cluster, it // is supposed that only one of the spec structs is set. +// +kubebuilder:validation:XValidation:rule="!has(oldSelf.vsphere) && has(self.vsphere) ? size(self.vsphere.vcenters) < 2 : true",message="vcenters can have at most 1 item when configured post-install" type PlatformSpec struct { // type is the underlying infrastructure provider for the cluster. This // value controls whether infrastructure automation such as service load @@ -506,6 +507,20 @@ type AWSPlatformStatus struct { // +listType=atomic // +optional ResourceTags []AWSResourceTag `json:"resourceTags,omitempty"` + + // cloudLoadBalancerConfig holds configuration related to DNS and cloud + // load balancers. It allows configuration of in-cluster DNS as an alternative + // to the platform default DNS implementation. + // When using the ClusterHosted DNS type, Load Balancer IP addresses + // must be provided for the API and internal API load balancers as well as the + // ingress load balancer. + // + // +default={"dnsType": "PlatformDefault"} + // +kubebuilder:default={"dnsType": "PlatformDefault"} + // +openshift:enable:FeatureGate=AWSClusterHostedDNS + // +optional + // +nullable + CloudLoadBalancerConfig *CloudLoadBalancerConfig `json:"cloudLoadBalancerConfig,omitempty"` } // AWSResourceTag is a tag to apply to AWS resources created for the cluster. @@ -646,12 +661,12 @@ type GCPPlatformStatus struct { // Tombstone the field as a reminder. // ClusterHostedDNS ClusterHostedDNS `json:"clusterHostedDNS,omitempty"` - // cloudLoadBalancerConfig is a union that contains the IP addresses of API, - // API-Int and Ingress Load Balancers created on the cloud platform. These - // values would not be populated on on-prem platforms. These Load Balancer - // IPs are used to configure the in-cluster DNS instances for API, API-Int - // and Ingress services. `dnsType` is expected to be set to `ClusterHosted` - // when these Load Balancer IP addresses are populated and used. + // cloudLoadBalancerConfig holds configuration related to DNS and cloud + // load balancers. It allows configuration of in-cluster DNS as an alternative + // to the platform default DNS implementation. + // When using the ClusterHosted DNS type, Load Balancer IP addresses + // must be provided for the API and internal API load balancers as well as the + // ingress load balancer. // // +default={"dnsType": "PlatformDefault"} // +kubebuilder:default={"dnsType": "PlatformDefault"} @@ -1205,13 +1220,16 @@ type VSpherePlatformTopology struct { ComputeCluster string `json:"computeCluster"` // networks is the list of port group network names within this failure domain. - // Currently, we only support a single interface per RHCOS virtual machine. + // If feature gate VSphereMultiNetworks is enabled, up to 10 network adapters may be defined. + // 10 is the maximum number of virtual network devices which may be attached to a VM as defined by: + // https://configmax.esp.vmware.com/guest?vmwareproduct=vSphere&release=vSphere%208.0&categories=1-0 // The available networks (port groups) can be listed using // `govc ls 'network/*'` - // The single interface should be the absolute path of the form + // Networks should be in the form of an absolute path: // //network/. // +kubebuilder:validation:Required - // +kubebuilder:validation:MaxItems=1 + // +openshift:validation:FeatureGateAwareMaxItems:featureGate="",maxItems=1 + // +openshift:validation:FeatureGateAwareMaxItems:featureGate=VSphereMultiNetworks,maxItems=10 // +kubebuilder:validation:MinItems=1 // +listType=atomic Networks []string `json:"networks"` @@ -1338,15 +1356,22 @@ type VSpherePlatformNodeNetworking struct { // use these fields for configuration. // +kubebuilder:validation:XValidation:rule="!has(oldSelf.apiServerInternalIPs) || has(self.apiServerInternalIPs)",message="apiServerInternalIPs list is required once set" // +kubebuilder:validation:XValidation:rule="!has(oldSelf.ingressIPs) || has(self.ingressIPs)",message="ingressIPs list is required once set" +// +kubebuilder:validation:XValidation:rule="!has(oldSelf.vcenters) && has(self.vcenters) ? size(self.vcenters) < 2 : true",message="vcenters can have at most 1 item when configured post-install" type VSpherePlatformSpec struct { // vcenters holds the connection details for services to communicate with vCenter. - // Currently, only a single vCenter is supported. + // Currently, only a single vCenter is supported, but in tech preview 3 vCenters are supported. + // Once the cluster has been installed, you are unable to change the current number of defined + // vCenters except in the case where the cluster has been upgraded from a version of OpenShift + // where the vsphere platform spec was not present. You may make modifications to the existing + // vCenters that are defined in the vcenters list in order to match with any added or modified + // failure domains. // --- // + If VCenters is not defined use the existing cloud-config configmap defined // + in openshift-config. // +kubebuilder:validation:MinItems=0 // +openshift:validation:FeatureGateAwareMaxItems:featureGate="",maxItems=1 // +openshift:validation:FeatureGateAwareMaxItems:featureGate=VSphereMultiVCenters,maxItems=3 + // +kubebuilder:validation:XValidation:rule="size(self) != size(oldSelf) ? size(oldSelf) == 0 && size(self) < 2 : true",message="vcenters cannot be added or removed once set" // +listType=atomic // +optional VCenters []VSpherePlatformVCenterSpec `json:"vcenters,omitempty"` @@ -1473,7 +1498,7 @@ type VSpherePlatformStatus struct { // override existing defaults of IBM Cloud Services. type IBMCloudServiceEndpoint struct { // name is the name of the IBM Cloud service. - // Possible values are: CIS, COS, DNSServices, GlobalSearch, GlobalTagging, HyperProtect, IAM, KeyProtect, ResourceController, ResourceManager, or VPC. + // Possible values are: CIS, COS, COSConfig, DNSServices, GlobalCatalog, GlobalSearch, GlobalTagging, HyperProtect, IAM, KeyProtect, ResourceController, ResourceManager, or VPC. // For example, the IBM Cloud Private IAM service could be configured with the // service `name` of `IAM` and `url` of `https://private.iam.cloud.ibm.com` // Whereas the IBM Cloud Private VPC service for US South (Dallas) could be configured @@ -1568,7 +1593,7 @@ type PowerVSServiceEndpoint struct { // Power Cloud - https://cloud.ibm.com/apidocs/power-cloud // // +kubebuilder:validation:Required - // +kubebuilder:validation:Pattern=`^[a-z0-9-]+$` + // +kubebuilder:validation:Enum=CIS;COS;COSConfig;DNSServices;GlobalCatalog;GlobalSearch;GlobalTagging;HyperProtect;IAM;KeyProtect;Power;ResourceController;ResourceManager;VPC Name string `json:"name"` // url is fully qualified URI with scheme https, that overrides the default generated diff --git a/api/vendor/github.com/openshift/api/config/v1/types_network.go b/api/vendor/github.com/openshift/api/config/v1/types_network.go index 211d5c088..1eeae69da 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_network.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_network.go @@ -55,11 +55,11 @@ type NetworkSpec struct { // +listType=atomic ServiceNetwork []string `json:"serviceNetwork"` - // NetworkType is the plugin that is to be deployed (e.g. OpenShiftSDN). + // NetworkType is the plugin that is to be deployed (e.g. OVNKubernetes). // This should match a value that the cluster-network-operator understands, // or else no networking will be installed. // Currently supported values are: - // - OpenShiftSDN + // - OVNKubernetes // This field is immutable after installation. NetworkType string `json:"networkType"` @@ -101,7 +101,7 @@ type NetworkStatus struct { // +listType=atomic ServiceNetwork []string `json:"serviceNetwork,omitempty"` - // NetworkType is the plugin that is deployed (e.g. OpenShiftSDN). + // NetworkType is the plugin that is deployed (e.g. OVNKubernetes). NetworkType string `json:"networkType,omitempty"` // ClusterNetworkMTU is the MTU for inter-pod networking. @@ -111,15 +111,12 @@ type NetworkStatus struct { Migration *NetworkMigration `json:"migration,omitempty"` // conditions represents the observations of a network.config current state. - // Known .status.conditions.type are: "NetworkTypeMigrationInProgress", "NetworkTypeMigrationMTUReady", - // "NetworkTypeMigrationTargetCNIAvailable", "NetworkTypeMigrationTargetCNIInUse", - // "NetworkTypeMigrationOriginalCNIPurged" and "NetworkDiagnosticsAvailable" + // Known .status.conditions.type are: "NetworkDiagnosticsAvailable" // +optional // +patchMergeKey=type // +patchStrategy=merge // +listType=map // +listMapKey=type - // +openshift:enable:FeatureGate=NetworkLiveMigration // +openshift:enable:FeatureGate=NetworkDiagnosticsConfig Conditions []metav1.Condition `json:"conditions,omitempty" patchStrategy:"merge" patchMergeKey:"type"` } @@ -186,15 +183,15 @@ type NetworkList struct { Items []Network `json:"items"` } -// NetworkMigration represents the cluster network configuration. +// NetworkMigration represents the network migration status. type NetworkMigration struct { - // NetworkType is the target plugin that is to be deployed. - // Currently supported values are: OpenShiftSDN, OVNKubernetes - // +kubebuilder:validation:Enum={"OpenShiftSDN","OVNKubernetes"} + // NetworkType is the target plugin that is being deployed. + // DEPRECATED: network type migration is no longer supported, + // so this should always be unset. // +optional NetworkType string `json:"networkType,omitempty"` - // MTU contains the MTU migration configuration. + // MTU is the MTU configuration that is being deployed. // +optional MTU *MTUMigration `json:"mtu,omitempty"` } diff --git a/api/vendor/github.com/openshift/api/config/v1/types_node.go b/api/vendor/github.com/openshift/api/config/v1/types_node.go index 8bf099bd5..a50328c91 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_node.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_node.go @@ -46,9 +46,36 @@ type NodeSpec struct { // the status and corresponding reaction of the cluster // +optional WorkerLatencyProfile WorkerLatencyProfileType `json:"workerLatencyProfile,omitempty"` + + // minimumKubeletVersion is the lowest version of a kubelet that can join the cluster. + // Specifically, the apiserver will deny most authorization requests of kubelets that are older + // than the specified version, only allowing the kubelet to get and update its node object, and perform + // subjectaccessreviews. + // This means any kubelet that attempts to join the cluster will not be able to run any assigned workloads, + // and will eventually be marked as not ready. + // Its max length is 8, so maximum version allowed is either "9.999.99" or "99.99.99". + // Since the kubelet reports the version of the kubernetes release, not Openshift, this field references + // the underlying kubernetes version this version of Openshift is based off of. + // In other words: if an admin wishes to ensure no nodes run an older version than Openshift 4.17, then + // they should set the minimumKubeletVersion to 1.30.0. + // When comparing versions, the kubelet's version is stripped of any contents outside of major.minor.patch version. + // Thus, a kubelet with version "1.0.0-ec.0" will be compatible with minimumKubeletVersion "1.0.0" or earlier. + // +kubebuilder:validation:XValidation:rule="self == \"\" || self.matches('^[0-9]*.[0-9]*.[0-9]*$')",message="minmumKubeletVersion must be in a semver compatible format of x.y.z, or empty" + // +kubebuilder:validation:MaxLength:=8 + // +openshift:enable:FeatureGate=MinimumKubeletVersion + // +optional + MinimumKubeletVersion string `json:"minimumKubeletVersion"` } -type NodeStatus struct{} +type NodeStatus struct { + // conditions contain the details and the current state of the nodes.config object + // +patchMergeKey=type + // +patchStrategy=merge + // +listType=map + // +listMapKey=type + // +optional + Conditions []metav1.Condition `json:"conditions,omitempty" patchStrategy:"merge" patchMergeKey:"type"` +} // +kubebuilder:validation:Enum=v1;v2;"" type CgroupMode string diff --git a/api/vendor/github.com/openshift/api/config/v1/types_tlssecurityprofile.go b/api/vendor/github.com/openshift/api/config/v1/types_tlssecurityprofile.go index c5dea1a03..b18ef647c 100644 --- a/api/vendor/github.com/openshift/api/config/v1/types_tlssecurityprofile.go +++ b/api/vendor/github.com/openshift/api/config/v1/types_tlssecurityprofile.go @@ -211,6 +211,7 @@ type TLSProfileSpec struct { // ciphers: // - DES-CBC3-SHA // + // +listType=atomic Ciphers []string `json:"ciphers"` // minTLSVersion is used to specify the minimal version of the TLS protocol // that is negotiated during the TLS handshake. For example, to use TLS diff --git a/api/vendor/github.com/openshift/api/config/v1/zz_generated.deepcopy.go b/api/vendor/github.com/openshift/api/config/v1/zz_generated.deepcopy.go index 9a81bc559..1b7fa44aa 100644 --- a/api/vendor/github.com/openshift/api/config/v1/zz_generated.deepcopy.go +++ b/api/vendor/github.com/openshift/api/config/v1/zz_generated.deepcopy.go @@ -245,6 +245,11 @@ func (in *AWSPlatformStatus) DeepCopyInto(out *AWSPlatformStatus) { *out = make([]AWSResourceTag, len(*in)) copy(*out, *in) } + if in.CloudLoadBalancerConfig != nil { + in, out := &in.CloudLoadBalancerConfig, &out.CloudLoadBalancerConfig + *out = new(CloudLoadBalancerConfig) + (*in).DeepCopyInto(*out) + } return } @@ -3783,7 +3788,7 @@ func (in *Node) DeepCopyInto(out *Node) { out.TypeMeta = in.TypeMeta in.ObjectMeta.DeepCopyInto(&out.ObjectMeta) out.Spec = in.Spec - out.Status = in.Status + in.Status.DeepCopyInto(&out.Status) return } @@ -3857,6 +3862,13 @@ func (in *NodeSpec) DeepCopy() *NodeSpec { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *NodeStatus) DeepCopyInto(out *NodeStatus) { *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 } diff --git a/api/vendor/github.com/openshift/api/config/v1/zz_generated.featuregated-crd-manifests.yaml b/api/vendor/github.com/openshift/api/config/v1/zz_generated.featuregated-crd-manifests.yaml index ddc7594f7..abfea5eaf 100644 --- a/api/vendor/github.com/openshift/api/config/v1/zz_generated.featuregated-crd-manifests.yaml +++ b/api/vendor/github.com/openshift/api/config/v1/zz_generated.featuregated-crd-manifests.yaml @@ -218,7 +218,8 @@ images.config.openshift.io: CRDName: images.config.openshift.io Capability: "" Category: "" - FeatureGates: [] + FeatureGates: + - ImageStreamImportMode FilenameOperatorName: config-operator FilenameOperatorOrdering: "01" FilenameRunLevel: "0000_10" @@ -309,10 +310,12 @@ infrastructures.config.openshift.io: Capability: "" Category: "" FeatureGates: + - AWSClusterHostedDNS - BareMetalLoadBalancer - GCPClusterHostedDNS - GCPLabelsTags - VSphereControlPlaneMachineSet + - VSphereMultiNetworks - VSphereMultiVCenters FilenameOperatorName: config-operator FilenameOperatorOrdering: "01" @@ -359,7 +362,6 @@ networks.config.openshift.io: Category: "" FeatureGates: - NetworkDiagnosticsConfig - - NetworkLiveMigration FilenameOperatorName: config-operator FilenameOperatorOrdering: "01" FilenameRunLevel: "0000_10" @@ -381,7 +383,8 @@ nodes.config.openshift.io: CRDName: nodes.config.openshift.io Capability: "" Category: "" - FeatureGates: [] + FeatureGates: + - MinimumKubeletVersion FilenameOperatorName: config-operator FilenameOperatorOrdering: "01" FilenameRunLevel: "0000_10" diff --git a/api/vendor/github.com/openshift/api/config/v1/zz_generated.swagger_doc_generated.go b/api/vendor/github.com/openshift/api/config/v1/zz_generated.swagger_doc_generated.go index fcb4fb9a4..145a7e4c0 100644 --- a/api/vendor/github.com/openshift/api/config/v1/zz_generated.swagger_doc_generated.go +++ b/api/vendor/github.com/openshift/api/config/v1/zz_generated.swagger_doc_generated.go @@ -1016,6 +1016,7 @@ var map_ImageSpec = map[string]string{ "externalRegistryHostnames": "externalRegistryHostnames provides the hostnames for the default external image registry. The external hostname should be set only when the image registry is exposed externally. The first value is used in 'publicDockerImageRepository' field in ImageStreams. The value must be in \"hostname[:port]\" format.", "additionalTrustedCA": "additionalTrustedCA is a reference to a ConfigMap containing additional CAs that should be trusted during imagestream import, pod image pull, build image pull, and imageregistry pullthrough. The namespace for this config map is openshift-config.", "registrySources": "registrySources contains configuration that determines how the container runtime should treat individual registries when accessing images for builds+pods. (e.g. whether or not to allow insecure access). It does not contain configuration for the internal cluster registry.", + "imageStreamImportMode": "imageStreamImportMode controls the import mode behaviour of imagestreams. It can be set to `Legacy` or `PreserveOriginal` or the empty string. If this value is specified, this setting is applied to all newly created imagestreams which do not have the value set. `Legacy` indicates that the legacy behaviour should be used. For manifest lists, the legacy behaviour will discard the manifest list and import a single sub-manifest. In this case, the platform is chosen in the following order of priority: 1. tag annotations; 2. control plane arch/os; 3. linux/amd64; 4. the first manifest in the list. `PreserveOriginal` indicates that the original manifest will be preserved. For manifest lists, the manifest list and all its sub-manifests will be imported. When empty, the behaviour will be decided based on the payload type advertised by the ClusterVersion status, i.e single arch payload implies the import mode is Legacy and multi payload implies PreserveOriginal.", } func (ImageSpec) SwaggerDoc() map[string]string { @@ -1025,6 +1026,7 @@ func (ImageSpec) SwaggerDoc() map[string]string { var map_ImageStatus = map[string]string{ "internalRegistryHostname": "internalRegistryHostname sets the hostname for the default internal image registry. The value must be in \"hostname[:port]\" format. This value is set by the image registry operator which controls the internal registry hostname.", "externalRegistryHostnames": "externalRegistryHostnames provides the hostnames for the default external image registry. The external hostname should be set only when the image registry is exposed externally. The first value is used in 'publicDockerImageRepository' field in ImageStreams. The value must be in \"hostname[:port]\" format.", + "imageStreamImportMode": "imageStreamImportMode controls the import mode behaviour of imagestreams. It can be `Legacy` or `PreserveOriginal`. `Legacy` indicates that the legacy behaviour should be used. For manifest lists, the legacy behaviour will discard the manifest list and import a single sub-manifest. In this case, the platform is chosen in the following order of priority: 1. tag annotations; 2. control plane arch/os; 3. linux/amd64; 4. the first manifest in the list. `PreserveOriginal` indicates that the original manifest will be preserved. For manifest lists, the manifest list and all its sub-manifests will be imported. This value will be reconciled based on either the spec value or if no spec value is specified, the image registry operator would look at the ClusterVersion status to determine the payload type and set the import mode accordingly, i.e single arch payload implies the import mode is Legacy and multi payload implies PreserveOriginal.", } func (ImageStatus) SwaggerDoc() map[string]string { @@ -1182,10 +1184,11 @@ func (AWSPlatformSpec) SwaggerDoc() map[string]string { } var map_AWSPlatformStatus = map[string]string{ - "": "AWSPlatformStatus holds the current status of the Amazon Web Services infrastructure provider.", - "region": "region holds the default AWS region for new AWS resources created by the cluster.", - "serviceEndpoints": "ServiceEndpoints list contains custom endpoints which will override default service endpoint of AWS Services. There must be only one ServiceEndpoint for a service.", - "resourceTags": "resourceTags is a list of additional tags to apply to AWS resources created for the cluster. See https://docs.aws.amazon.com/general/latest/gr/aws_tagging.html for information on tagging AWS resources. AWS supports a maximum of 50 tags per resource. OpenShift reserves 25 tags for its use, leaving 25 tags available for the user.", + "": "AWSPlatformStatus holds the current status of the Amazon Web Services infrastructure provider.", + "region": "region holds the default AWS region for new AWS resources created by the cluster.", + "serviceEndpoints": "ServiceEndpoints list contains custom endpoints which will override default service endpoint of AWS Services. There must be only one ServiceEndpoint for a service.", + "resourceTags": "resourceTags is a list of additional tags to apply to AWS resources created for the cluster. See https://docs.aws.amazon.com/general/latest/gr/aws_tagging.html for information on tagging AWS resources. AWS supports a maximum of 50 tags per resource. OpenShift reserves 25 tags for its use, leaving 25 tags available for the user.", + "cloudLoadBalancerConfig": "cloudLoadBalancerConfig holds configuration related to DNS and cloud load balancers. It allows configuration of in-cluster DNS as an alternative to the platform default DNS implementation. When using the ClusterHosted DNS type, Load Balancer IP addresses must be provided for the API and internal API load balancers as well as the ingress load balancer.", } func (AWSPlatformStatus) SwaggerDoc() map[string]string { @@ -1387,7 +1390,7 @@ var map_GCPPlatformStatus = map[string]string{ "region": "region holds the region for new GCP resources created for the cluster.", "resourceLabels": "resourceLabels is a list of additional labels to apply to GCP resources created for the cluster. See https://cloud.google.com/compute/docs/labeling-resources for information on labeling GCP resources. GCP supports a maximum of 64 labels per resource. OpenShift reserves 32 labels for internal use, allowing 32 labels for user configuration.", "resourceTags": "resourceTags is a list of additional tags to apply to GCP resources created for the cluster. See https://cloud.google.com/resource-manager/docs/tags/tags-overview for information on tagging GCP resources. GCP supports a maximum of 50 tags per resource.", - "cloudLoadBalancerConfig": "cloudLoadBalancerConfig is a union that contains the IP addresses of API, API-Int and Ingress Load Balancers created on the cloud platform. These values would not be populated on on-prem platforms. These Load Balancer IPs are used to configure the in-cluster DNS instances for API, API-Int and Ingress services. `dnsType` is expected to be set to `ClusterHosted` when these Load Balancer IP addresses are populated and used.", + "cloudLoadBalancerConfig": "cloudLoadBalancerConfig holds configuration related to DNS and cloud load balancers. It allows configuration of in-cluster DNS as an alternative to the platform default DNS implementation. When using the ClusterHosted DNS type, Load Balancer IP addresses must be provided for the API and internal API load balancers as well as the ingress load balancer.", } func (GCPPlatformStatus) SwaggerDoc() map[string]string { @@ -1439,7 +1442,7 @@ func (IBMCloudPlatformStatus) SwaggerDoc() map[string]string { var map_IBMCloudServiceEndpoint = map[string]string{ "": "IBMCloudServiceEndpoint stores the configuration of a custom url to override existing defaults of IBM Cloud Services.", - "name": "name is the name of the IBM Cloud service. Possible values are: CIS, COS, DNSServices, GlobalSearch, GlobalTagging, HyperProtect, IAM, KeyProtect, ResourceController, ResourceManager, or VPC. For example, the IBM Cloud Private IAM service could be configured with the service `name` of `IAM` and `url` of `https://private.iam.cloud.ibm.com` Whereas the IBM Cloud Private VPC service for US South (Dallas) could be configured with the service `name` of `VPC` and `url` of `https://us.south.private.iaas.cloud.ibm.com`", + "name": "name is the name of the IBM Cloud service. Possible values are: CIS, COS, COSConfig, DNSServices, GlobalCatalog, GlobalSearch, GlobalTagging, HyperProtect, IAM, KeyProtect, ResourceController, ResourceManager, or VPC. For example, the IBM Cloud Private IAM service could be configured with the service `name` of `IAM` and `url` of `https://private.iam.cloud.ibm.com` Whereas the IBM Cloud Private VPC service for US South (Dallas) could be configured with the service `name` of `VPC` and `url` of `https://us.south.private.iaas.cloud.ibm.com`", "url": "url is fully qualified URI with scheme https, that overrides the default generated endpoint for a client. This must be provided and cannot be empty.", } @@ -1778,7 +1781,7 @@ func (VSpherePlatformNodeNetworkingSpec) SwaggerDoc() map[string]string { var map_VSpherePlatformSpec = map[string]string{ "": "VSpherePlatformSpec holds the desired state of the vSphere infrastructure provider. In the future the cloud provider operator, storage operator and machine operator will use these fields for configuration.", - "vcenters": "vcenters holds the connection details for services to communicate with vCenter. Currently, only a single vCenter is supported.", + "vcenters": "vcenters holds the connection details for services to communicate with vCenter. Currently, only a single vCenter is supported, but in tech preview 3 vCenters are supported. Once the cluster has been installed, you are unable to change the current number of defined vCenters except in the case where the cluster has been upgraded from a version of OpenShift where the vsphere platform spec was not present. You may make modifications to the existing vCenters that are defined in the vcenters list in order to match with any added or modified failure domains.", "failureDomains": "failureDomains contains the definition of region, zone and the vCenter topology. If this is omitted failure domains (regions and zones) will not be used.", "nodeNetworking": "nodeNetworking contains the definition of internal and external network constraints for assigning the node's networking. If this field is omitted, networking defaults to the legacy address selection behavior which is to only support a single address and return the first one found.", "apiServerInternalIPs": "apiServerInternalIPs are the IP addresses to contact the Kubernetes API server that can be used by components inside the cluster, like kubelets using the infrastructure rather than Kubernetes networking. These are the IPs for a self-hosted load balancer in front of the API servers. In dual stack clusters this list contains two IP addresses, one from IPv4 family and one from IPv6. In single stack clusters a single IP address is expected. When omitted, values from the status.apiServerInternalIPs will be used. Once set, the list cannot be completely removed (but its second entry can).", @@ -1809,7 +1812,7 @@ var map_VSpherePlatformTopology = map[string]string{ "": "VSpherePlatformTopology holds the required and optional vCenter objects - datacenter, computeCluster, networks, datastore and resourcePool - to provision virtual machines.", "datacenter": "datacenter is the name of vCenter datacenter in which virtual machines will be located. The maximum length of the datacenter name is 80 characters.", "computeCluster": "computeCluster the absolute path of the vCenter cluster in which virtual machine will be located. The absolute path is of the form //host/. The maximum length of the path is 2048 characters.", - "networks": "networks is the list of port group network names within this failure domain. Currently, we only support a single interface per RHCOS virtual machine. The available networks (port groups) can be listed using `govc ls 'network/*'` The single interface should be the absolute path of the form //network/.", + "networks": "networks is the list of port group network names within this failure domain. If feature gate VSphereMultiNetworks is enabled, up to 10 network adapters may be defined. 10 is the maximum number of virtual network devices which may be attached to a VM as defined by: https://configmax.esp.vmware.com/guest?vmwareproduct=vSphere&release=vSphere%208.0&categories=1-0 The available networks (port groups) can be listed using `govc ls 'network/*'` Networks should be in the form of an absolute path: //network/.", "datastore": "datastore is the absolute path of the datastore in which the virtual machine is located. The absolute path is of the form //datastore/ The maximum length of the path is 2048 characters.", "resourcePool": "resourcePool is the absolute path of the resource pool where virtual machines will be created. The absolute path is of the form //host//Resources/. The maximum length of the path is 2048 characters.", "folder": "folder is the absolute path of the folder where virtual machines are located. The absolute path is of the form //vm/. The maximum length of the path is 2048 characters.", @@ -2027,9 +2030,9 @@ func (NetworkList) SwaggerDoc() map[string]string { } var map_NetworkMigration = map[string]string{ - "": "NetworkMigration represents the cluster network configuration.", - "networkType": "NetworkType is the target plugin that is to be deployed. Currently supported values are: OpenShiftSDN, OVNKubernetes", - "mtu": "MTU contains the MTU migration configuration.", + "": "NetworkMigration represents the network migration status.", + "networkType": "NetworkType is the target plugin that is being deployed. DEPRECATED: network type migration is no longer supported, so this should always be unset.", + "mtu": "MTU is the MTU configuration that is being deployed.", } func (NetworkMigration) SwaggerDoc() map[string]string { @@ -2040,7 +2043,7 @@ var map_NetworkSpec = map[string]string{ "": "NetworkSpec is the desired network configuration. As a general rule, this SHOULD NOT be read directly. Instead, you should consume the NetworkStatus, as it indicates the currently deployed configuration. Currently, most spec fields are immutable after installation. Please view the individual ones for further details on each.", "clusterNetwork": "IP address pool to use for pod IPs. This field is immutable after installation.", "serviceNetwork": "IP address pool for services. Currently, we only support a single entry here. This field is immutable after installation.", - "networkType": "NetworkType is the plugin that is to be deployed (e.g. OpenShiftSDN). This should match a value that the cluster-network-operator understands, or else no networking will be installed. Currently supported values are: - OpenShiftSDN This field is immutable after installation.", + "networkType": "NetworkType is the plugin that is to be deployed (e.g. OVNKubernetes). This should match a value that the cluster-network-operator understands, or else no networking will be installed. Currently supported values are: - OVNKubernetes This field is immutable after installation.", "externalIP": "externalIP defines configuration for controllers that affect Service.ExternalIP. If nil, then ExternalIP is not allowed to be set.", "serviceNodePortRange": "The port range allowed for Services of type NodePort. If not specified, the default of 30000-32767 will be used. Such Services without a NodePort specified will have one automatically allocated from this range. This parameter can be updated after the cluster is installed.", "networkDiagnostics": "networkDiagnostics defines network diagnostics configuration.\n\nTakes precedence over spec.disableNetworkDiagnostics in network.operator.openshift.io. If networkDiagnostics is not specified or is empty, and the spec.disableNetworkDiagnostics flag in network.operator.openshift.io is set to true, the network diagnostics feature will be disabled.", @@ -2054,10 +2057,10 @@ var map_NetworkStatus = map[string]string{ "": "NetworkStatus is the current network configuration.", "clusterNetwork": "IP address pool to use for pod IPs.", "serviceNetwork": "IP address pool for services. Currently, we only support a single entry here.", - "networkType": "NetworkType is the plugin that is deployed (e.g. OpenShiftSDN).", + "networkType": "NetworkType is the plugin that is deployed (e.g. OVNKubernetes).", "clusterNetworkMTU": "ClusterNetworkMTU is the MTU for inter-pod networking.", "migration": "Migration contains the cluster network migration configuration.", - "conditions": "conditions represents the observations of a network.config current state. Known .status.conditions.type are: \"NetworkTypeMigrationInProgress\", \"NetworkTypeMigrationMTUReady\", \"NetworkTypeMigrationTargetCNIAvailable\", \"NetworkTypeMigrationTargetCNIInUse\", \"NetworkTypeMigrationOriginalCNIPurged\" and \"NetworkDiagnosticsAvailable\"", + "conditions": "conditions represents the observations of a network.config current state. Known .status.conditions.type are: \"NetworkDiagnosticsAvailable\"", } func (NetworkStatus) SwaggerDoc() map[string]string { @@ -2085,14 +2088,23 @@ func (NodeList) SwaggerDoc() map[string]string { } var map_NodeSpec = map[string]string{ - "cgroupMode": "CgroupMode determines the cgroups version on the node", - "workerLatencyProfile": "WorkerLatencyProfile determins the how fast the kubelet is updating the status and corresponding reaction of the cluster", + "cgroupMode": "CgroupMode determines the cgroups version on the node", + "workerLatencyProfile": "WorkerLatencyProfile determins the how fast the kubelet is updating the status and corresponding reaction of the cluster", + "minimumKubeletVersion": "minimumKubeletVersion is the lowest version of a kubelet that can join the cluster. Specifically, the apiserver will deny most authorization requests of kubelets that are older than the specified version, only allowing the kubelet to get and update its node object, and perform subjectaccessreviews. This means any kubelet that attempts to join the cluster will not be able to run any assigned workloads, and will eventually be marked as not ready. Its max length is 8, so maximum version allowed is either \"9.999.99\" or \"99.99.99\". Since the kubelet reports the version of the kubernetes release, not Openshift, this field references the underlying kubernetes version this version of Openshift is based off of. In other words: if an admin wishes to ensure no nodes run an older version than Openshift 4.17, then they should set the minimumKubeletVersion to 1.30.0. When comparing versions, the kubelet's version is stripped of any contents outside of major.minor.patch version. Thus, a kubelet with version \"1.0.0-ec.0\" will be compatible with minimumKubeletVersion \"1.0.0\" or earlier.", } func (NodeSpec) SwaggerDoc() map[string]string { return map_NodeSpec } +var map_NodeStatus = map[string]string{ + "conditions": "conditions contain the details and the current state of the nodes.config object", +} + +func (NodeStatus) SwaggerDoc() map[string]string { + return map_NodeStatus +} + var map_BasicAuthIdentityProvider = map[string]string{ "": "BasicAuthPasswordIdentityProvider provides identities for users authenticating using HTTP basic auth credentials", } diff --git a/api/vendor/github.com/x448/float16/.travis.yml b/api/vendor/github.com/x448/float16/.travis.yml new file mode 100644 index 000000000..8902bdaaf --- /dev/null +++ b/api/vendor/github.com/x448/float16/.travis.yml @@ -0,0 +1,13 @@ +language: go + +go: + - 1.11.x + +env: + - GO111MODULE=on + +script: + - go test -short -coverprofile=coverage.txt -covermode=count ./... + +after_success: + - bash <(curl -s https://codecov.io/bash) diff --git a/api/vendor/github.com/x448/float16/LICENSE b/api/vendor/github.com/x448/float16/LICENSE new file mode 100644 index 000000000..bf6e35785 --- /dev/null +++ b/api/vendor/github.com/x448/float16/LICENSE @@ -0,0 +1,22 @@ +MIT License + +Copyright (c) 2019 Montgomery Edwards⁴⁴⁸ and Faye Amacker + +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/api/vendor/github.com/x448/float16/README.md b/api/vendor/github.com/x448/float16/README.md new file mode 100644 index 000000000..b524b8135 --- /dev/null +++ b/api/vendor/github.com/x448/float16/README.md @@ -0,0 +1,133 @@ +# Float16 (Binary16) in Go/Golang +[![Build Status](https://travis-ci.org/x448/float16.svg?branch=master)](https://travis-ci.org/x448/float16) +[![codecov](https://codecov.io/gh/x448/float16/branch/master/graph/badge.svg?v=4)](https://codecov.io/gh/x448/float16) +[![Go Report Card](https://goreportcard.com/badge/github.com/x448/float16)](https://goreportcard.com/report/github.com/x448/float16) +[![Release](https://img.shields.io/github/release/x448/float16.svg?style=flat-square)](https://github.com/x448/float16/releases) +[![License](http://img.shields.io/badge/license-mit-blue.svg?style=flat-square)](https://raw.githubusercontent.com/x448/float16/master/LICENSE) + +`float16` package provides [IEEE 754 half-precision floating-point format (binary16)](https://en.wikipedia.org/wiki/Half-precision_floating-point_format) with IEEE 754 default rounding for conversions. IEEE 754-2008 refers to this 16-bit floating-point format as binary16. + +IEEE 754 default rounding ("Round-to-Nearest RoundTiesToEven") is considered the most accurate and statistically unbiased estimate of the true result. + +All possible 4+ billion floating-point conversions with this library are verified to be correct. + +Lowercase "float16" refers to IEEE 754 binary16. And capitalized "Float16" refers to exported Go data type provided by this library. + +## Features +Current features include: + +* float16 to float32 conversions use lossless conversion. +* float32 to float16 conversions use IEEE 754-2008 "Round-to-Nearest RoundTiesToEven". +* conversions using pure Go take about 2.65 ns/op on a desktop amd64. +* unit tests provide 100% code coverage and check all possible 4+ billion conversions. +* other functions include: IsInf(), IsNaN(), IsNormal(), PrecisionFromfloat32(), String(), etc. +* all functions in this library use zero allocs except String(). + +## Status +This library is used by [fxamacker/cbor](https://github.com/fxamacker/cbor) and is ready for production use on supported platforms. The version number < 1.0 indicates more functions and options are planned but not yet published. + +Current status: + +* core API is done and breaking API changes are unlikely. +* 100% of unit tests pass: + * short mode (`go test -short`) tests around 65765 conversions in 0.005s. + * normal mode (`go test`) tests all possible 4+ billion conversions in about 95s. +* 100% code coverage with both short mode and normal mode. +* tested on amd64 but it should work on all little-endian platforms supported by Go. + +Roadmap: + +* add functions for fast batch conversions leveraging SIMD when supported by hardware. +* speed up unit test when verifying all possible 4+ billion conversions. +* test on additional platforms. + +## Float16 to Float32 Conversion +Conversions from float16 to float32 are lossless conversions. All 65536 possible float16 to float32 conversions (in pure Go) are confirmed to be correct. + +Unit tests take a fraction of a second to check all 65536 expected values for float16 to float32 conversions. + +## Float32 to Float16 Conversion +Conversions from float32 to float16 use IEEE 754 default rounding ("Round-to-Nearest RoundTiesToEven"). All 4294967296 possible float32 to float16 conversions (in pure Go) are confirmed to be correct. + +Unit tests in normal mode take about 1-2 minutes to check all 4+ billion float32 input values and results for Fromfloat32(), FromNaN32ps(), and PrecisionFromfloat32(). + +Unit tests in short mode use a small subset (around 229 float32 inputs) and finish in under 0.01 second while still reaching 100% code coverage. + +## Usage +Install with `go get github.com/x448/float16`. +``` +// Convert float32 to float16 +pi := float32(math.Pi) +pi16 := float16.Fromfloat32(pi) + +// Convert float16 to float32 +pi32 := pi16.Float32() + +// PrecisionFromfloat32() is faster than the overhead of calling a function. +// This example only converts if there's no data loss and input is not a subnormal. +if float16.PrecisionFromfloat32(pi) == float16.PrecisionExact { + pi16 := float16.Fromfloat32(pi) +} +``` + +## Float16 Type and API +Float16 (capitalized) is a Go type with uint16 as the underlying state. There are 6 exported functions and 9 exported methods. +``` +package float16 // import "github.com/x448/float16" + +// Exported types and consts +type Float16 uint16 +const ErrInvalidNaNValue = float16Error("float16: invalid NaN value, expected IEEE 754 NaN") + +// Exported functions +Fromfloat32(f32 float32) Float16 // Float16 number converted from f32 using IEEE 754 default rounding + with identical results to AMD and Intel F16C hardware. NaN inputs + are converted with quiet bit always set on, to be like F16C. + +FromNaN32ps(nan float32) (Float16, error) // Float16 NaN without modifying quiet bit. + // The "ps" suffix means "preserve signaling". + // Returns sNaN and ErrInvalidNaNValue if nan isn't a NaN. + +Frombits(b16 uint16) Float16 // Float16 number corresponding to b16 (IEEE 754 binary16 rep.) +NaN() Float16 // Float16 of IEEE 754 binary16 not-a-number +Inf(sign int) Float16 // Float16 of IEEE 754 binary16 infinity according to sign + +PrecisionFromfloat32(f32 float32) Precision // quickly indicates exact, ..., overflow, underflow + // (inline and < 1 ns/op) +// Exported methods +(f Float16) Float32() float32 // float32 number converted from f16 using lossless conversion +(f Float16) Bits() uint16 // the IEEE 754 binary16 representation of f +(f Float16) IsNaN() bool // true if f is not-a-number (NaN) +(f Float16) IsQuietNaN() bool // true if f is a quiet not-a-number (NaN) +(f Float16) IsInf(sign int) bool // true if f is infinite based on sign (-1=NegInf, 0=any, 1=PosInf) +(f Float16) IsFinite() bool // true if f is not infinite or NaN +(f Float16) IsNormal() bool // true if f is not zero, infinite, subnormal, or NaN. +(f Float16) Signbit() bool // true if f is negative or negative zero +(f Float16) String() string // string representation of f to satisfy fmt.Stringer interface +``` +See [API](https://godoc.org/github.com/x448/float16) at godoc.org for more info. + +## Benchmarks +Conversions (in pure Go) are around 2.65 ns/op for float16 -> float32 and float32 -> float16 on amd64. Speeds can vary depending on input value. + +``` +All functions have zero allocations except float16.String(). + +FromFloat32pi-2 2.59ns ± 0% // speed using Fromfloat32() to convert a float32 of math.Pi to Float16 +ToFloat32pi-2 2.69ns ± 0% // speed using Float32() to convert a float16 of math.Pi to float32 +Frombits-2 0.29ns ± 5% // speed using Frombits() to cast a uint16 to Float16 + +PrecisionFromFloat32-2 0.29ns ± 1% // speed using PrecisionFromfloat32() to check for overflows, etc. +``` + +## System Requirements +* Tested on Go 1.11, 1.12, and 1.13 but it should also work with older versions. +* Tested on amd64 but it should also work on all little-endian platforms supported by Go. + +## Special Thanks +Special thanks to Kathryn Long (starkat99) for creating [half-rs](https://github.com/starkat99/half-rs), a very nice rust implementation of float16. + +## License +Copyright (c) 2019 Montgomery Edwards⁴⁴⁸ and Faye Amacker + +Licensed under [MIT License](LICENSE) diff --git a/api/vendor/github.com/x448/float16/float16.go b/api/vendor/github.com/x448/float16/float16.go new file mode 100644 index 000000000..1a0e6dad0 --- /dev/null +++ b/api/vendor/github.com/x448/float16/float16.go @@ -0,0 +1,302 @@ +// Copyright 2019 Montgomery Edwards⁴⁴⁸ and Faye Amacker +// +// Special thanks to Kathryn Long for her Rust implementation +// of float16 at github.com/starkat99/half-rs (MIT license) + +package float16 + +import ( + "math" + "strconv" +) + +// Float16 represents IEEE 754 half-precision floating-point numbers (binary16). +type Float16 uint16 + +// Precision indicates whether the conversion to Float16 is +// exact, subnormal without dropped bits, inexact, underflow, or overflow. +type Precision int + +const ( + + // PrecisionExact is for non-subnormals that don't drop bits during conversion. + // All of these can round-trip. Should always convert to float16. + PrecisionExact Precision = iota + + // PrecisionUnknown is for subnormals that don't drop bits during conversion but + // not all of these can round-trip so precision is unknown without more effort. + // Only 2046 of these can round-trip and the rest cannot round-trip. + PrecisionUnknown + + // PrecisionInexact is for dropped significand bits and cannot round-trip. + // Some of these are subnormals. Cannot round-trip float32->float16->float32. + PrecisionInexact + + // PrecisionUnderflow is for Underflows. Cannot round-trip float32->float16->float32. + PrecisionUnderflow + + // PrecisionOverflow is for Overflows. Cannot round-trip float32->float16->float32. + PrecisionOverflow +) + +// PrecisionFromfloat32 returns Precision without performing +// the conversion. Conversions from both Infinity and NaN +// values will always report PrecisionExact even if NaN payload +// or NaN-Quiet-Bit is lost. This function is kept simple to +// allow inlining and run < 0.5 ns/op, to serve as a fast filter. +func PrecisionFromfloat32(f32 float32) Precision { + u32 := math.Float32bits(f32) + + if u32 == 0 || u32 == 0x80000000 { + // +- zero will always be exact conversion + return PrecisionExact + } + + const COEFMASK uint32 = 0x7fffff // 23 least significant bits + const EXPSHIFT uint32 = 23 + const EXPBIAS uint32 = 127 + const EXPMASK uint32 = uint32(0xff) << EXPSHIFT + const DROPMASK uint32 = COEFMASK >> 10 + + exp := int32(((u32 & EXPMASK) >> EXPSHIFT) - EXPBIAS) + coef := u32 & COEFMASK + + if exp == 128 { + // +- infinity or NaN + // apps may want to do extra checks for NaN separately + return PrecisionExact + } + + // https://en.wikipedia.org/wiki/Half-precision_floating-point_format says, + // "Decimals between 2^−24 (minimum positive subnormal) and 2^−14 (maximum subnormal): fixed interval 2^−24" + if exp < -24 { + return PrecisionUnderflow + } + if exp > 15 { + return PrecisionOverflow + } + if (coef & DROPMASK) != uint32(0) { + // these include subnormals and non-subnormals that dropped bits + return PrecisionInexact + } + + if exp < -14 { + // Subnormals. Caller may want to test these further. + // There are 2046 subnormals that can successfully round-trip f32->f16->f32 + // and 20 of those 2046 have 32-bit input coef == 0. + // RFC 7049 and 7049bis Draft 12 don't precisely define "preserves value" + // so some protocols and libraries will choose to handle subnormals differently + // when deciding to encode them to CBOR float32 vs float16. + return PrecisionUnknown + } + + return PrecisionExact +} + +// Frombits returns the float16 number corresponding to the IEEE 754 binary16 +// representation u16, with the sign bit of u16 and the result in the same bit +// position. Frombits(Bits(x)) == x. +func Frombits(u16 uint16) Float16 { + return Float16(u16) +} + +// Fromfloat32 returns a Float16 value converted from f32. Conversion uses +// IEEE default rounding (nearest int, with ties to even). +func Fromfloat32(f32 float32) Float16 { + return Float16(f32bitsToF16bits(math.Float32bits(f32))) +} + +// ErrInvalidNaNValue indicates a NaN was not received. +const ErrInvalidNaNValue = float16Error("float16: invalid NaN value, expected IEEE 754 NaN") + +type float16Error string + +func (e float16Error) Error() string { return string(e) } + +// FromNaN32ps converts nan to IEEE binary16 NaN while preserving both +// signaling and payload. Unlike Fromfloat32(), which can only return +// qNaN because it sets quiet bit = 1, this can return both sNaN and qNaN. +// If the result is infinity (sNaN with empty payload), then the +// lowest bit of payload is set to make the result a NaN. +// Returns ErrInvalidNaNValue and 0x7c01 (sNaN) if nan isn't IEEE 754 NaN. +// This function was kept simple to be able to inline. +func FromNaN32ps(nan float32) (Float16, error) { + const SNAN = Float16(uint16(0x7c01)) // signalling NaN + + u32 := math.Float32bits(nan) + sign := u32 & 0x80000000 + exp := u32 & 0x7f800000 + coef := u32 & 0x007fffff + + if (exp != 0x7f800000) || (coef == 0) { + return SNAN, ErrInvalidNaNValue + } + + u16 := uint16((sign >> 16) | uint32(0x7c00) | (coef >> 13)) + + if (u16 & 0x03ff) == 0 { + // result became infinity, make it NaN by setting lowest bit in payload + u16 = u16 | 0x0001 + } + + return Float16(u16), nil +} + +// NaN returns a Float16 of IEEE 754 binary16 not-a-number (NaN). +// Returned NaN value 0x7e01 has all exponent bits = 1 with the +// first and last bits = 1 in the significand. This is consistent +// with Go's 64-bit math.NaN(). Canonical CBOR in RFC 7049 uses 0x7e00. +func NaN() Float16 { + return Float16(0x7e01) +} + +// Inf returns a Float16 with an infinity value with the specified sign. +// A sign >= returns positive infinity. +// A sign < 0 returns negative infinity. +func Inf(sign int) Float16 { + if sign >= 0 { + return Float16(0x7c00) + } + return Float16(0x8000 | 0x7c00) +} + +// Float32 returns a float32 converted from f (Float16). +// This is a lossless conversion. +func (f Float16) Float32() float32 { + u32 := f16bitsToF32bits(uint16(f)) + return math.Float32frombits(u32) +} + +// Bits returns the IEEE 754 binary16 representation of f, with the sign bit +// of f and the result in the same bit position. Bits(Frombits(x)) == x. +func (f Float16) Bits() uint16 { + return uint16(f) +} + +// IsNaN reports whether f is an IEEE 754 binary16 “not-a-number” value. +func (f Float16) IsNaN() bool { + return (f&0x7c00 == 0x7c00) && (f&0x03ff != 0) +} + +// IsQuietNaN reports whether f is a quiet (non-signaling) IEEE 754 binary16 +// “not-a-number” value. +func (f Float16) IsQuietNaN() bool { + return (f&0x7c00 == 0x7c00) && (f&0x03ff != 0) && (f&0x0200 != 0) +} + +// IsInf reports whether f is an infinity (inf). +// A sign > 0 reports whether f is positive inf. +// A sign < 0 reports whether f is negative inf. +// A sign == 0 reports whether f is either inf. +func (f Float16) IsInf(sign int) bool { + return ((f == 0x7c00) && sign >= 0) || + (f == 0xfc00 && sign <= 0) +} + +// IsFinite returns true if f is neither infinite nor NaN. +func (f Float16) IsFinite() bool { + return (uint16(f) & uint16(0x7c00)) != uint16(0x7c00) +} + +// IsNormal returns true if f is neither zero, infinite, subnormal, or NaN. +func (f Float16) IsNormal() bool { + exp := uint16(f) & uint16(0x7c00) + return (exp != uint16(0x7c00)) && (exp != 0) +} + +// Signbit reports whether f is negative or negative zero. +func (f Float16) Signbit() bool { + return (uint16(f) & uint16(0x8000)) != 0 +} + +// String satisfies the fmt.Stringer interface. +func (f Float16) String() string { + return strconv.FormatFloat(float64(f.Float32()), 'f', -1, 32) +} + +// f16bitsToF32bits returns uint32 (float32 bits) converted from specified uint16. +func f16bitsToF32bits(in uint16) uint32 { + // All 65536 conversions with this were confirmed to be correct + // by Montgomery Edwards⁴⁴⁸ (github.com/x448). + + sign := uint32(in&0x8000) << 16 // sign for 32-bit + exp := uint32(in&0x7c00) >> 10 // exponenent for 16-bit + coef := uint32(in&0x03ff) << 13 // significand for 32-bit + + if exp == 0x1f { + if coef == 0 { + // infinity + return sign | 0x7f800000 | coef + } + // NaN + return sign | 0x7fc00000 | coef + } + + if exp == 0 { + if coef == 0 { + // zero + return sign + } + + // normalize subnormal numbers + exp++ + for coef&0x7f800000 == 0 { + coef <<= 1 + exp-- + } + coef &= 0x007fffff + } + + return sign | ((exp + (0x7f - 0xf)) << 23) | coef +} + +// f32bitsToF16bits returns uint16 (Float16 bits) converted from the specified float32. +// Conversion rounds to nearest integer with ties to even. +func f32bitsToF16bits(u32 uint32) uint16 { + // Translated from Rust to Go by Montgomery Edwards⁴⁴⁸ (github.com/x448). + // All 4294967296 conversions with this were confirmed to be correct by x448. + // Original Rust implementation is by Kathryn Long (github.com/starkat99) with MIT license. + + sign := u32 & 0x80000000 + exp := u32 & 0x7f800000 + coef := u32 & 0x007fffff + + if exp == 0x7f800000 { + // NaN or Infinity + nanBit := uint32(0) + if coef != 0 { + nanBit = uint32(0x0200) + } + return uint16((sign >> 16) | uint32(0x7c00) | nanBit | (coef >> 13)) + } + + halfSign := sign >> 16 + + unbiasedExp := int32(exp>>23) - 127 + halfExp := unbiasedExp + 15 + + if halfExp >= 0x1f { + return uint16(halfSign | uint32(0x7c00)) + } + + if halfExp <= 0 { + if 14-halfExp > 24 { + return uint16(halfSign) + } + coef := coef | uint32(0x00800000) + halfCoef := coef >> uint32(14-halfExp) + roundBit := uint32(1) << uint32(13-halfExp) + if (coef&roundBit) != 0 && (coef&(3*roundBit-1)) != 0 { + halfCoef++ + } + return uint16(halfSign | halfCoef) + } + + uHalfExp := uint32(halfExp) << 10 + halfCoef := coef >> 13 + roundBit := uint32(0x00001000) + if (coef&roundBit) != 0 && (coef&(3*roundBit-1)) != 0 { + return uint16((halfSign | uHalfExp | halfCoef) + 1) + } + return uint16(halfSign | uHalfExp | halfCoef) +} diff --git a/api/vendor/golang.org/x/net/http2/http2.go b/api/vendor/golang.org/x/net/http2/http2.go index 6f2df2818..003e649f3 100644 --- a/api/vendor/golang.org/x/net/http2/http2.go +++ b/api/vendor/golang.org/x/net/http2/http2.go @@ -17,6 +17,7 @@ package http2 // import "golang.org/x/net/http2" import ( "bufio" + "context" "crypto/tls" "fmt" "io" @@ -26,6 +27,7 @@ import ( "strconv" "strings" "sync" + "time" "golang.org/x/net/http/httpguts" ) @@ -210,12 +212,6 @@ type stringWriter interface { WriteString(s string) (n int, err error) } -// A gate lets two goroutines coordinate their activities. -type gate chan struct{} - -func (g gate) Done() { g <- struct{}{} } -func (g gate) Wait() { <-g } - // A closeWaiter is like a sync.WaitGroup but only goes 1 to 0 (open to closed). type closeWaiter chan struct{} @@ -383,3 +379,14 @@ func validPseudoPath(v string) bool { // makes that struct also non-comparable, and generally doesn't add // any size (as long as it's first). type incomparable [0]func() + +// synctestGroupInterface is the methods of synctestGroup used by Server and Transport. +// It's defined as an interface here to let us keep synctestGroup entirely test-only +// and not a part of non-test builds. +type synctestGroupInterface interface { + Join() + Now() time.Time + NewTimer(d time.Duration) timer + AfterFunc(d time.Duration, f func()) timer + ContextWithTimeout(ctx context.Context, d time.Duration) (context.Context, context.CancelFunc) +} diff --git a/api/vendor/golang.org/x/net/http2/server.go b/api/vendor/golang.org/x/net/http2/server.go index c5d081081..6c349f3ec 100644 --- a/api/vendor/golang.org/x/net/http2/server.go +++ b/api/vendor/golang.org/x/net/http2/server.go @@ -154,6 +154,39 @@ type Server struct { // so that we don't embed a Mutex in this struct, which will make the // struct non-copyable, which might break some callers. state *serverInternalState + + // Synchronization group used for testing. + // Outside of tests, this is nil. + group synctestGroupInterface +} + +func (s *Server) markNewGoroutine() { + if s.group != nil { + s.group.Join() + } +} + +func (s *Server) now() time.Time { + if s.group != nil { + return s.group.Now() + } + return time.Now() +} + +// newTimer creates a new time.Timer, or a synthetic timer in tests. +func (s *Server) newTimer(d time.Duration) timer { + if s.group != nil { + return s.group.NewTimer(d) + } + return timeTimer{time.NewTimer(d)} +} + +// afterFunc creates a new time.AfterFunc timer, or a synthetic timer in tests. +func (s *Server) afterFunc(d time.Duration, f func()) timer { + if s.group != nil { + return s.group.AfterFunc(d, f) + } + return timeTimer{time.AfterFunc(d, f)} } func (s *Server) initialConnRecvWindowSize() int32 { @@ -400,6 +433,10 @@ func (o *ServeConnOpts) handler() http.Handler { // // The opts parameter is optional. If nil, default values are used. func (s *Server) ServeConn(c net.Conn, opts *ServeConnOpts) { + s.serveConn(c, opts, nil) +} + +func (s *Server) serveConn(c net.Conn, opts *ServeConnOpts, newf func(*serverConn)) { baseCtx, cancel := serverConnBaseContext(c, opts) defer cancel() @@ -426,6 +463,9 @@ func (s *Server) ServeConn(c net.Conn, opts *ServeConnOpts) { pushEnabled: true, sawClientPreface: opts.SawClientPreface, } + if newf != nil { + newf(sc) + } s.state.registerConn(sc) defer s.state.unregisterConn(sc) @@ -599,8 +639,8 @@ type serverConn struct { inFrameScheduleLoop bool // whether we're in the scheduleFrameWrite loop needToSendGoAway bool // we need to schedule a GOAWAY frame write goAwayCode ErrCode - shutdownTimer *time.Timer // nil until used - idleTimer *time.Timer // nil if unused + shutdownTimer timer // nil until used + idleTimer timer // nil if unused // Owned by the writeFrameAsync goroutine: headerWriteBuf bytes.Buffer @@ -649,12 +689,12 @@ type stream struct { flow outflow // limits writing from Handler to client inflow inflow // what the client is allowed to POST/etc to us state streamState - resetQueued bool // RST_STREAM queued for write; set by sc.resetStream - gotTrailerHeader bool // HEADER frame for trailers was seen - wroteHeaders bool // whether we wrote headers (not status 100) - readDeadline *time.Timer // nil if unused - writeDeadline *time.Timer // nil if unused - closeErr error // set before cw is closed + resetQueued bool // RST_STREAM queued for write; set by sc.resetStream + gotTrailerHeader bool // HEADER frame for trailers was seen + wroteHeaders bool // whether we wrote headers (not status 100) + readDeadline timer // nil if unused + writeDeadline timer // nil if unused + closeErr error // set before cw is closed trailer http.Header // accumulated trailers reqTrailer http.Header // handler's Request.Trailer @@ -811,8 +851,9 @@ type readFrameResult struct { // consumer is done with the frame. // It's run on its own goroutine. func (sc *serverConn) readFrames() { - gate := make(gate) - gateDone := gate.Done + sc.srv.markNewGoroutine() + gate := make(chan struct{}) + gateDone := func() { gate <- struct{}{} } for { f, err := sc.framer.ReadFrame() select { @@ -843,6 +884,7 @@ type frameWriteResult struct { // At most one goroutine can be running writeFrameAsync at a time per // serverConn. func (sc *serverConn) writeFrameAsync(wr FrameWriteRequest, wd *writeData) { + sc.srv.markNewGoroutine() var err error if wd == nil { err = wr.write.writeFrame(sc) @@ -922,13 +964,13 @@ func (sc *serverConn) serve() { sc.setConnState(http.StateIdle) if sc.srv.IdleTimeout > 0 { - sc.idleTimer = time.AfterFunc(sc.srv.IdleTimeout, sc.onIdleTimer) + sc.idleTimer = sc.srv.afterFunc(sc.srv.IdleTimeout, sc.onIdleTimer) defer sc.idleTimer.Stop() } go sc.readFrames() // closed by defer sc.conn.Close above - settingsTimer := time.AfterFunc(firstSettingsTimeout, sc.onSettingsTimer) + settingsTimer := sc.srv.afterFunc(firstSettingsTimeout, sc.onSettingsTimer) defer settingsTimer.Stop() loopNum := 0 @@ -1057,10 +1099,10 @@ func (sc *serverConn) readPreface() error { errc <- nil } }() - timer := time.NewTimer(prefaceTimeout) // TODO: configurable on *Server? + timer := sc.srv.newTimer(prefaceTimeout) // TODO: configurable on *Server? defer timer.Stop() select { - case <-timer.C: + case <-timer.C(): return errPrefaceTimeout case err := <-errc: if err == nil { @@ -1425,7 +1467,7 @@ func (sc *serverConn) goAway(code ErrCode) { func (sc *serverConn) shutDownIn(d time.Duration) { sc.serveG.check() - sc.shutdownTimer = time.AfterFunc(d, sc.onShutdownTimer) + sc.shutdownTimer = sc.srv.afterFunc(d, sc.onShutdownTimer) } func (sc *serverConn) resetStream(se StreamError) { @@ -1639,7 +1681,7 @@ func (sc *serverConn) closeStream(st *stream, err error) { delete(sc.streams, st.id) if len(sc.streams) == 0 { sc.setConnState(http.StateIdle) - if sc.srv.IdleTimeout > 0 { + if sc.srv.IdleTimeout > 0 && sc.idleTimer != nil { sc.idleTimer.Reset(sc.srv.IdleTimeout) } if h1ServerKeepAlivesDisabled(sc.hs) { @@ -1661,6 +1703,7 @@ func (sc *serverConn) closeStream(st *stream, err error) { } } st.closeErr = err + st.cancelCtx() st.cw.Close() // signals Handler's CloseNotifier, unblocks writes, etc sc.writeSched.CloseStream(st.id) } @@ -2021,7 +2064,7 @@ func (sc *serverConn) processHeaders(f *MetaHeadersFrame) error { // (in Go 1.8), though. That's a more sane option anyway. if sc.hs.ReadTimeout > 0 { sc.conn.SetReadDeadline(time.Time{}) - st.readDeadline = time.AfterFunc(sc.hs.ReadTimeout, st.onReadTimeout) + st.readDeadline = sc.srv.afterFunc(sc.hs.ReadTimeout, st.onReadTimeout) } return sc.scheduleHandler(id, rw, req, handler) @@ -2119,7 +2162,7 @@ func (sc *serverConn) newStream(id, pusherID uint32, state streamState) *stream st.flow.add(sc.initialStreamSendWindowSize) st.inflow.init(sc.srv.initialStreamRecvWindowSize()) if sc.hs.WriteTimeout > 0 { - st.writeDeadline = time.AfterFunc(sc.hs.WriteTimeout, st.onWriteTimeout) + st.writeDeadline = sc.srv.afterFunc(sc.hs.WriteTimeout, st.onWriteTimeout) } sc.streams[id] = st @@ -2343,6 +2386,7 @@ func (sc *serverConn) handlerDone() { // Run on its own goroutine. func (sc *serverConn) runHandler(rw *responseWriter, req *http.Request, handler func(http.ResponseWriter, *http.Request)) { + sc.srv.markNewGoroutine() defer sc.sendServeMsg(handlerDoneMsg) didPanic := true defer func() { @@ -2639,7 +2683,7 @@ func (rws *responseWriterState) writeChunk(p []byte) (n int, err error) { var date string if _, ok := rws.snapHeader["Date"]; !ok { // TODO(bradfitz): be faster here, like net/http? measure. - date = time.Now().UTC().Format(http.TimeFormat) + date = rws.conn.srv.now().UTC().Format(http.TimeFormat) } for _, v := range rws.snapHeader["Trailer"] { @@ -2761,7 +2805,7 @@ func (rws *responseWriterState) promoteUndeclaredTrailers() { func (w *responseWriter) SetReadDeadline(deadline time.Time) error { st := w.rws.stream - if !deadline.IsZero() && deadline.Before(time.Now()) { + if !deadline.IsZero() && deadline.Before(w.rws.conn.srv.now()) { // If we're setting a deadline in the past, reset the stream immediately // so writes after SetWriteDeadline returns will fail. st.onReadTimeout() @@ -2777,9 +2821,9 @@ func (w *responseWriter) SetReadDeadline(deadline time.Time) error { if deadline.IsZero() { st.readDeadline = nil } else if st.readDeadline == nil { - st.readDeadline = time.AfterFunc(deadline.Sub(time.Now()), st.onReadTimeout) + st.readDeadline = sc.srv.afterFunc(deadline.Sub(sc.srv.now()), st.onReadTimeout) } else { - st.readDeadline.Reset(deadline.Sub(time.Now())) + st.readDeadline.Reset(deadline.Sub(sc.srv.now())) } }) return nil @@ -2787,7 +2831,7 @@ func (w *responseWriter) SetReadDeadline(deadline time.Time) error { func (w *responseWriter) SetWriteDeadline(deadline time.Time) error { st := w.rws.stream - if !deadline.IsZero() && deadline.Before(time.Now()) { + if !deadline.IsZero() && deadline.Before(w.rws.conn.srv.now()) { // If we're setting a deadline in the past, reset the stream immediately // so writes after SetWriteDeadline returns will fail. st.onWriteTimeout() @@ -2803,9 +2847,9 @@ func (w *responseWriter) SetWriteDeadline(deadline time.Time) error { if deadline.IsZero() { st.writeDeadline = nil } else if st.writeDeadline == nil { - st.writeDeadline = time.AfterFunc(deadline.Sub(time.Now()), st.onWriteTimeout) + st.writeDeadline = sc.srv.afterFunc(deadline.Sub(sc.srv.now()), st.onWriteTimeout) } else { - st.writeDeadline.Reset(deadline.Sub(time.Now())) + st.writeDeadline.Reset(deadline.Sub(sc.srv.now())) } }) return nil diff --git a/api/vendor/golang.org/x/net/http2/testsync.go b/api/vendor/golang.org/x/net/http2/testsync.go deleted file mode 100644 index 61075bd16..000000000 --- a/api/vendor/golang.org/x/net/http2/testsync.go +++ /dev/null @@ -1,331 +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 http2 - -import ( - "context" - "sync" - "time" -) - -// testSyncHooks coordinates goroutines in tests. -// -// For example, a call to ClientConn.RoundTrip involves several goroutines, including: -// - the goroutine running RoundTrip; -// - the clientStream.doRequest goroutine, which writes the request; and -// - the clientStream.readLoop goroutine, which reads the response. -// -// Using testSyncHooks, a test can start a RoundTrip and identify when all these goroutines -// are blocked waiting for some condition such as reading the Request.Body or waiting for -// flow control to become available. -// -// The testSyncHooks also manage timers and synthetic time in tests. -// This permits us to, for example, start a request and cause it to time out waiting for -// response headers without resorting to time.Sleep calls. -type testSyncHooks struct { - // active/inactive act as a mutex and condition variable. - // - // - neither chan contains a value: testSyncHooks is locked. - // - active contains a value: unlocked, and at least one goroutine is not blocked - // - inactive contains a value: unlocked, and all goroutines are blocked - active chan struct{} - inactive chan struct{} - - // goroutine counts - total int // total goroutines - condwait map[*sync.Cond]int // blocked in sync.Cond.Wait - blocked []*testBlockedGoroutine // otherwise blocked - - // fake time - now time.Time - timers []*fakeTimer - - // Transport testing: Report various events. - newclientconn func(*ClientConn) - newstream func(*clientStream) -} - -// testBlockedGoroutine is a blocked goroutine. -type testBlockedGoroutine struct { - f func() bool // blocked until f returns true - ch chan struct{} // closed when unblocked -} - -func newTestSyncHooks() *testSyncHooks { - h := &testSyncHooks{ - active: make(chan struct{}, 1), - inactive: make(chan struct{}, 1), - condwait: map[*sync.Cond]int{}, - } - h.inactive <- struct{}{} - h.now = time.Date(2000, 1, 1, 0, 0, 0, 0, time.UTC) - return h -} - -// lock acquires the testSyncHooks mutex. -func (h *testSyncHooks) lock() { - select { - case <-h.active: - case <-h.inactive: - } -} - -// waitInactive waits for all goroutines to become inactive. -func (h *testSyncHooks) waitInactive() { - for { - <-h.inactive - if !h.unlock() { - break - } - } -} - -// unlock releases the testSyncHooks mutex. -// It reports whether any goroutines are active. -func (h *testSyncHooks) unlock() (active bool) { - // Look for a blocked goroutine which can be unblocked. - blocked := h.blocked[:0] - unblocked := false - for _, b := range h.blocked { - if !unblocked && b.f() { - unblocked = true - close(b.ch) - } else { - blocked = append(blocked, b) - } - } - h.blocked = blocked - - // Count goroutines blocked on condition variables. - condwait := 0 - for _, count := range h.condwait { - condwait += count - } - - if h.total > condwait+len(blocked) { - h.active <- struct{}{} - return true - } else { - h.inactive <- struct{}{} - return false - } -} - -// goRun starts a new goroutine. -func (h *testSyncHooks) goRun(f func()) { - h.lock() - h.total++ - h.unlock() - go func() { - defer func() { - h.lock() - h.total-- - h.unlock() - }() - f() - }() -} - -// blockUntil indicates that a goroutine is blocked waiting for some condition to become true. -// It waits until f returns true before proceeding. -// -// Example usage: -// -// h.blockUntil(func() bool { -// // Is the context done yet? -// select { -// case <-ctx.Done(): -// default: -// return false -// } -// return true -// }) -// // Wait for the context to become done. -// <-ctx.Done() -// -// The function f passed to blockUntil must be non-blocking and idempotent. -func (h *testSyncHooks) blockUntil(f func() bool) { - if f() { - return - } - ch := make(chan struct{}) - h.lock() - h.blocked = append(h.blocked, &testBlockedGoroutine{ - f: f, - ch: ch, - }) - h.unlock() - <-ch -} - -// broadcast is sync.Cond.Broadcast. -func (h *testSyncHooks) condBroadcast(cond *sync.Cond) { - h.lock() - delete(h.condwait, cond) - h.unlock() - cond.Broadcast() -} - -// broadcast is sync.Cond.Wait. -func (h *testSyncHooks) condWait(cond *sync.Cond) { - h.lock() - h.condwait[cond]++ - h.unlock() -} - -// newTimer creates a new fake timer. -func (h *testSyncHooks) newTimer(d time.Duration) timer { - h.lock() - defer h.unlock() - t := &fakeTimer{ - hooks: h, - when: h.now.Add(d), - c: make(chan time.Time), - } - h.timers = append(h.timers, t) - return t -} - -// afterFunc creates a new fake AfterFunc timer. -func (h *testSyncHooks) afterFunc(d time.Duration, f func()) timer { - h.lock() - defer h.unlock() - t := &fakeTimer{ - hooks: h, - when: h.now.Add(d), - f: f, - } - h.timers = append(h.timers, t) - return t -} - -func (h *testSyncHooks) contextWithTimeout(ctx context.Context, d time.Duration) (context.Context, context.CancelFunc) { - ctx, cancel := context.WithCancel(ctx) - t := h.afterFunc(d, cancel) - return ctx, func() { - t.Stop() - cancel() - } -} - -func (h *testSyncHooks) timeUntilEvent() time.Duration { - h.lock() - defer h.unlock() - var next time.Time - for _, t := range h.timers { - if next.IsZero() || t.when.Before(next) { - next = t.when - } - } - if d := next.Sub(h.now); d > 0 { - return d - } - return 0 -} - -// advance advances time and causes synthetic timers to fire. -func (h *testSyncHooks) advance(d time.Duration) { - h.lock() - defer h.unlock() - h.now = h.now.Add(d) - timers := h.timers[:0] - for _, t := range h.timers { - t := t // remove after go.mod depends on go1.22 - t.mu.Lock() - switch { - case t.when.After(h.now): - timers = append(timers, t) - case t.when.IsZero(): - // stopped timer - default: - t.when = time.Time{} - if t.c != nil { - close(t.c) - } - if t.f != nil { - h.total++ - go func() { - defer func() { - h.lock() - h.total-- - h.unlock() - }() - t.f() - }() - } - } - t.mu.Unlock() - } - h.timers = timers -} - -// A timer wraps a time.Timer, or a synthetic equivalent in tests. -// Unlike time.Timer, timer is single-use: The timer channel is closed when the timer expires. -type timer interface { - C() <-chan time.Time - Stop() bool - Reset(d time.Duration) bool -} - -// timeTimer implements timer using real time. -type timeTimer struct { - t *time.Timer - c chan time.Time -} - -// newTimeTimer creates a new timer using real time. -func newTimeTimer(d time.Duration) timer { - ch := make(chan time.Time) - t := time.AfterFunc(d, func() { - close(ch) - }) - return &timeTimer{t, ch} -} - -// newTimeAfterFunc creates an AfterFunc timer using real time. -func newTimeAfterFunc(d time.Duration, f func()) timer { - return &timeTimer{ - t: time.AfterFunc(d, f), - } -} - -func (t timeTimer) C() <-chan time.Time { return t.c } -func (t timeTimer) Stop() bool { return t.t.Stop() } -func (t timeTimer) Reset(d time.Duration) bool { return t.t.Reset(d) } - -// fakeTimer implements timer using fake time. -type fakeTimer struct { - hooks *testSyncHooks - - mu sync.Mutex - when time.Time // when the timer will fire - c chan time.Time // closed when the timer fires; mutually exclusive with f - f func() // called when the timer fires; mutually exclusive with c -} - -func (t *fakeTimer) C() <-chan time.Time { return t.c } - -func (t *fakeTimer) Stop() bool { - t.mu.Lock() - defer t.mu.Unlock() - stopped := t.when.IsZero() - t.when = time.Time{} - return stopped -} - -func (t *fakeTimer) Reset(d time.Duration) bool { - if t.c != nil || t.f == nil { - panic("fakeTimer only supports Reset on AfterFunc timers") - } - t.mu.Lock() - defer t.mu.Unlock() - t.hooks.lock() - defer t.hooks.unlock() - active := !t.when.IsZero() - t.when = t.hooks.now.Add(d) - if !active { - t.hooks.timers = append(t.hooks.timers, t) - } - return active -} diff --git a/api/vendor/golang.org/x/net/http2/timer.go b/api/vendor/golang.org/x/net/http2/timer.go new file mode 100644 index 000000000..0b1c17b81 --- /dev/null +++ b/api/vendor/golang.org/x/net/http2/timer.go @@ -0,0 +1,20 @@ +// 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 http2 + +import "time" + +// A timer is a time.Timer, as an interface which can be replaced in tests. +type timer = interface { + C() <-chan time.Time + Reset(d time.Duration) bool + Stop() bool +} + +// timeTimer adapts a time.Timer to the timer interface. +type timeTimer struct { + *time.Timer +} + +func (t timeTimer) C() <-chan time.Time { return t.Timer.C } diff --git a/api/vendor/golang.org/x/net/http2/transport.go b/api/vendor/golang.org/x/net/http2/transport.go index 2fa49490c..98a49c6b6 100644 --- a/api/vendor/golang.org/x/net/http2/transport.go +++ b/api/vendor/golang.org/x/net/http2/transport.go @@ -185,7 +185,45 @@ type Transport struct { connPoolOnce sync.Once connPoolOrDef ClientConnPool // non-nil version of ConnPool - syncHooks *testSyncHooks + *transportTestHooks +} + +// Hook points used for testing. +// Outside of tests, t.transportTestHooks is nil and these all have minimal implementations. +// Inside tests, see the testSyncHooks function docs. + +type transportTestHooks struct { + newclientconn func(*ClientConn) + group synctestGroupInterface +} + +func (t *Transport) markNewGoroutine() { + if t != nil && t.transportTestHooks != nil { + t.transportTestHooks.group.Join() + } +} + +// newTimer creates a new time.Timer, or a synthetic timer in tests. +func (t *Transport) newTimer(d time.Duration) timer { + if t.transportTestHooks != nil { + return t.transportTestHooks.group.NewTimer(d) + } + return timeTimer{time.NewTimer(d)} +} + +// afterFunc creates a new time.AfterFunc timer, or a synthetic timer in tests. +func (t *Transport) afterFunc(d time.Duration, f func()) timer { + if t.transportTestHooks != nil { + return t.transportTestHooks.group.AfterFunc(d, f) + } + return timeTimer{time.AfterFunc(d, f)} +} + +func (t *Transport) contextWithTimeout(ctx context.Context, d time.Duration) (context.Context, context.CancelFunc) { + if t.transportTestHooks != nil { + return t.transportTestHooks.group.ContextWithTimeout(ctx, d) + } + return context.WithTimeout(ctx, d) } func (t *Transport) maxHeaderListSize() uint32 { @@ -352,60 +390,6 @@ type ClientConn struct { werr error // first write error that has occurred hbuf bytes.Buffer // HPACK encoder writes into this henc *hpack.Encoder - - syncHooks *testSyncHooks // can be nil -} - -// Hook points used for testing. -// Outside of tests, cc.syncHooks is nil and these all have minimal implementations. -// Inside tests, see the testSyncHooks function docs. - -// goRun starts a new goroutine. -func (cc *ClientConn) goRun(f func()) { - if cc.syncHooks != nil { - cc.syncHooks.goRun(f) - return - } - go f() -} - -// condBroadcast is cc.cond.Broadcast. -func (cc *ClientConn) condBroadcast() { - if cc.syncHooks != nil { - cc.syncHooks.condBroadcast(cc.cond) - } - cc.cond.Broadcast() -} - -// condWait is cc.cond.Wait. -func (cc *ClientConn) condWait() { - if cc.syncHooks != nil { - cc.syncHooks.condWait(cc.cond) - } - cc.cond.Wait() -} - -// newTimer creates a new time.Timer, or a synthetic timer in tests. -func (cc *ClientConn) newTimer(d time.Duration) timer { - if cc.syncHooks != nil { - return cc.syncHooks.newTimer(d) - } - return newTimeTimer(d) -} - -// afterFunc creates a new time.AfterFunc timer, or a synthetic timer in tests. -func (cc *ClientConn) afterFunc(d time.Duration, f func()) timer { - if cc.syncHooks != nil { - return cc.syncHooks.afterFunc(d, f) - } - return newTimeAfterFunc(d, f) -} - -func (cc *ClientConn) contextWithTimeout(ctx context.Context, d time.Duration) (context.Context, context.CancelFunc) { - if cc.syncHooks != nil { - return cc.syncHooks.contextWithTimeout(ctx, d) - } - return context.WithTimeout(ctx, d) } // clientStream is the state for a single HTTP/2 stream. One of these @@ -487,7 +471,7 @@ func (cs *clientStream) abortStreamLocked(err error) { // TODO(dneil): Clean up tests where cs.cc.cond is nil. if cs.cc.cond != nil { // Wake up writeRequestBody if it is waiting on flow control. - cs.cc.condBroadcast() + cs.cc.cond.Broadcast() } } @@ -497,7 +481,7 @@ func (cs *clientStream) abortRequestBodyWrite() { defer cc.mu.Unlock() if cs.reqBody != nil && cs.reqBodyClosed == nil { cs.closeReqBodyLocked() - cc.condBroadcast() + cc.cond.Broadcast() } } @@ -507,10 +491,11 @@ func (cs *clientStream) closeReqBodyLocked() { } cs.reqBodyClosed = make(chan struct{}) reqBodyClosed := cs.reqBodyClosed - cs.cc.goRun(func() { + go func() { + cs.cc.t.markNewGoroutine() cs.reqBody.Close() close(reqBodyClosed) - }) + }() } type stickyErrWriter struct { @@ -626,21 +611,7 @@ func (t *Transport) RoundTripOpt(req *http.Request, opt RoundTripOpt) (*http.Res backoff := float64(uint(1) << (uint(retry) - 1)) backoff += backoff * (0.1 * mathrand.Float64()) d := time.Second * time.Duration(backoff) - var tm timer - if t.syncHooks != nil { - tm = t.syncHooks.newTimer(d) - t.syncHooks.blockUntil(func() bool { - select { - case <-tm.C(): - case <-req.Context().Done(): - default: - return false - } - return true - }) - } else { - tm = newTimeTimer(d) - } + tm := t.newTimer(d) select { case <-tm.C(): t.vlogf("RoundTrip retrying after failure: %v", roundTripErr) @@ -725,8 +696,8 @@ func canRetryError(err error) bool { } func (t *Transport) dialClientConn(ctx context.Context, addr string, singleUse bool) (*ClientConn, error) { - if t.syncHooks != nil { - return t.newClientConn(nil, singleUse, t.syncHooks) + if t.transportTestHooks != nil { + return t.newClientConn(nil, singleUse) } host, _, err := net.SplitHostPort(addr) if err != nil { @@ -736,7 +707,7 @@ func (t *Transport) dialClientConn(ctx context.Context, addr string, singleUse b if err != nil { return nil, err } - return t.newClientConn(tconn, singleUse, nil) + return t.newClientConn(tconn, singleUse) } func (t *Transport) newTLSConfig(host string) *tls.Config { @@ -802,10 +773,10 @@ func (t *Transport) maxEncoderHeaderTableSize() uint32 { } func (t *Transport) NewClientConn(c net.Conn) (*ClientConn, error) { - return t.newClientConn(c, t.disableKeepAlives(), nil) + return t.newClientConn(c, t.disableKeepAlives()) } -func (t *Transport) newClientConn(c net.Conn, singleUse bool, hooks *testSyncHooks) (*ClientConn, error) { +func (t *Transport) newClientConn(c net.Conn, singleUse bool) (*ClientConn, error) { cc := &ClientConn{ t: t, tconn: c, @@ -820,16 +791,12 @@ func (t *Transport) newClientConn(c net.Conn, singleUse bool, hooks *testSyncHoo wantSettingsAck: true, pings: make(map[[8]byte]chan struct{}), reqHeaderMu: make(chan struct{}, 1), - syncHooks: hooks, } - if hooks != nil { - hooks.newclientconn(cc) + if t.transportTestHooks != nil { + t.markNewGoroutine() + t.transportTestHooks.newclientconn(cc) c = cc.tconn } - if d := t.idleConnTimeout(); d != 0 { - cc.idleTimeout = d - cc.idleTimer = cc.afterFunc(d, cc.onIdleTimeout) - } if VerboseLogs { t.vlogf("http2: Transport creating client conn %p to %v", cc, c.RemoteAddr()) } @@ -893,7 +860,13 @@ func (t *Transport) newClientConn(c net.Conn, singleUse bool, hooks *testSyncHoo return nil, cc.werr } - cc.goRun(cc.readLoop) + // Start the idle timer after the connection is fully initialized. + if d := t.idleConnTimeout(); d != 0 { + cc.idleTimeout = d + cc.idleTimer = t.afterFunc(d, cc.onIdleTimeout) + } + + go cc.readLoop() return cc, nil } @@ -901,7 +874,7 @@ func (cc *ClientConn) healthCheck() { pingTimeout := cc.t.pingTimeout() // We don't need to periodically ping in the health check, because the readLoop of ClientConn will // trigger the healthCheck again if there is no frame received. - ctx, cancel := cc.contextWithTimeout(context.Background(), pingTimeout) + ctx, cancel := cc.t.contextWithTimeout(context.Background(), pingTimeout) defer cancel() cc.vlogf("http2: Transport sending health check") err := cc.Ping(ctx) @@ -1144,7 +1117,8 @@ func (cc *ClientConn) Shutdown(ctx context.Context) error { // Wait for all in-flight streams to complete or connection to close done := make(chan struct{}) cancelled := false // guarded by cc.mu - cc.goRun(func() { + go func() { + cc.t.markNewGoroutine() cc.mu.Lock() defer cc.mu.Unlock() for { @@ -1156,9 +1130,9 @@ func (cc *ClientConn) Shutdown(ctx context.Context) error { if cancelled { break } - cc.condWait() + cc.cond.Wait() } - }) + }() shutdownEnterWaitStateHook() select { case <-done: @@ -1168,7 +1142,7 @@ func (cc *ClientConn) Shutdown(ctx context.Context) error { cc.mu.Lock() // Free the goroutine above cancelled = true - cc.condBroadcast() + cc.cond.Broadcast() cc.mu.Unlock() return ctx.Err() } @@ -1206,7 +1180,7 @@ func (cc *ClientConn) closeForError(err error) { for _, cs := range cc.streams { cs.abortStreamLocked(err) } - cc.condBroadcast() + cc.cond.Broadcast() cc.mu.Unlock() cc.closeConn() } @@ -1321,23 +1295,30 @@ func (cc *ClientConn) roundTrip(req *http.Request, streamf func(*clientStream)) respHeaderRecv: make(chan struct{}), donec: make(chan struct{}), } - cc.goRun(func() { - cs.doRequest(req) - }) + + // TODO(bradfitz): this is a copy of the logic in net/http. Unify somewhere? + if !cc.t.disableCompression() && + req.Header.Get("Accept-Encoding") == "" && + req.Header.Get("Range") == "" && + !cs.isHead { + // Request gzip only, not deflate. Deflate is ambiguous and + // not as universally supported anyway. + // See: https://zlib.net/zlib_faq.html#faq39 + // + // Note that we don't request this for HEAD requests, + // due to a bug in nginx: + // http://trac.nginx.org/nginx/ticket/358 + // https://golang.org/issue/5522 + // + // We don't request gzip if the request is for a range, since + // auto-decoding a portion of a gzipped document will just fail + // anyway. See https://golang.org/issue/8923 + cs.requestedGzip = true + } + + go cs.doRequest(req, streamf) waitDone := func() error { - if cc.syncHooks != nil { - cc.syncHooks.blockUntil(func() bool { - select { - case <-cs.donec: - case <-ctx.Done(): - case <-cs.reqCancel: - default: - return false - } - return true - }) - } select { case <-cs.donec: return nil @@ -1398,24 +1379,7 @@ func (cc *ClientConn) roundTrip(req *http.Request, streamf func(*clientStream)) return err } - if streamf != nil { - streamf(cs) - } - for { - if cc.syncHooks != nil { - cc.syncHooks.blockUntil(func() bool { - select { - case <-cs.respHeaderRecv: - case <-cs.abort: - case <-ctx.Done(): - case <-cs.reqCancel: - default: - return false - } - return true - }) - } select { case <-cs.respHeaderRecv: return handleResponseHeaders() @@ -1445,8 +1409,9 @@ func (cc *ClientConn) roundTrip(req *http.Request, streamf func(*clientStream)) // doRequest runs for the duration of the request lifetime. // // It sends the request and performs post-request cleanup (closing Request.Body, etc.). -func (cs *clientStream) doRequest(req *http.Request) { - err := cs.writeRequest(req) +func (cs *clientStream) doRequest(req *http.Request, streamf func(*clientStream)) { + cs.cc.t.markNewGoroutine() + err := cs.writeRequest(req, streamf) cs.cleanupWriteRequest(err) } @@ -1457,7 +1422,7 @@ func (cs *clientStream) doRequest(req *http.Request) { // // It returns non-nil if the request ends otherwise. // If the returned error is StreamError, the error Code may be used in resetting the stream. -func (cs *clientStream) writeRequest(req *http.Request) (err error) { +func (cs *clientStream) writeRequest(req *http.Request, streamf func(*clientStream)) (err error) { cc := cs.cc ctx := cs.ctx @@ -1471,21 +1436,6 @@ func (cs *clientStream) writeRequest(req *http.Request) (err error) { if cc.reqHeaderMu == nil { panic("RoundTrip on uninitialized ClientConn") // for tests } - var newStreamHook func(*clientStream) - if cc.syncHooks != nil { - newStreamHook = cc.syncHooks.newstream - cc.syncHooks.blockUntil(func() bool { - select { - case cc.reqHeaderMu <- struct{}{}: - <-cc.reqHeaderMu - case <-cs.reqCancel: - case <-ctx.Done(): - default: - return false - } - return true - }) - } select { case cc.reqHeaderMu <- struct{}{}: case <-cs.reqCancel: @@ -1510,28 +1460,8 @@ func (cs *clientStream) writeRequest(req *http.Request) (err error) { } cc.mu.Unlock() - if newStreamHook != nil { - newStreamHook(cs) - } - - // TODO(bradfitz): this is a copy of the logic in net/http. Unify somewhere? - if !cc.t.disableCompression() && - req.Header.Get("Accept-Encoding") == "" && - req.Header.Get("Range") == "" && - !cs.isHead { - // Request gzip only, not deflate. Deflate is ambiguous and - // not as universally supported anyway. - // See: https://zlib.net/zlib_faq.html#faq39 - // - // Note that we don't request this for HEAD requests, - // due to a bug in nginx: - // http://trac.nginx.org/nginx/ticket/358 - // https://golang.org/issue/5522 - // - // We don't request gzip if the request is for a range, since - // auto-decoding a portion of a gzipped document will just fail - // anyway. See https://golang.org/issue/8923 - cs.requestedGzip = true + if streamf != nil { + streamf(cs) } continueTimeout := cc.t.expectContinueTimeout() @@ -1594,7 +1524,7 @@ func (cs *clientStream) writeRequest(req *http.Request) (err error) { var respHeaderTimer <-chan time.Time var respHeaderRecv chan struct{} if d := cc.responseHeaderTimeout(); d != 0 { - timer := cc.newTimer(d) + timer := cc.t.newTimer(d) defer timer.Stop() respHeaderTimer = timer.C() respHeaderRecv = cs.respHeaderRecv @@ -1603,21 +1533,6 @@ func (cs *clientStream) writeRequest(req *http.Request) (err error) { // or until the request is aborted (via context, error, or otherwise), // whichever comes first. for { - if cc.syncHooks != nil { - cc.syncHooks.blockUntil(func() bool { - select { - case <-cs.peerClosed: - case <-respHeaderTimer: - case <-respHeaderRecv: - case <-cs.abort: - case <-ctx.Done(): - case <-cs.reqCancel: - default: - return false - } - return true - }) - } select { case <-cs.peerClosed: return nil @@ -1766,7 +1681,7 @@ func (cc *ClientConn) awaitOpenSlotForStreamLocked(cs *clientStream) error { return nil } cc.pendingRequests++ - cc.condWait() + cc.cond.Wait() cc.pendingRequests-- select { case <-cs.abort: @@ -2028,7 +1943,7 @@ func (cs *clientStream) awaitFlowControl(maxBytes int) (taken int32, err error) cs.flow.take(take) return take, nil } - cc.condWait() + cc.cond.Wait() } } @@ -2311,7 +2226,7 @@ func (cc *ClientConn) forgetStreamID(id uint32) { } // Wake up writeRequestBody via clientStream.awaitFlowControl and // wake up RoundTrip if there is a pending request. - cc.condBroadcast() + cc.cond.Broadcast() closeOnIdle := cc.singleUse || cc.doNotReuse || cc.t.disableKeepAlives() || cc.goAway != nil if closeOnIdle && cc.streamsReserved == 0 && len(cc.streams) == 0 { @@ -2333,6 +2248,7 @@ type clientConnReadLoop struct { // readLoop runs in its own goroutine and reads and dispatches frames. func (cc *ClientConn) readLoop() { + cc.t.markNewGoroutine() rl := &clientConnReadLoop{cc: cc} defer rl.cleanup() cc.readerErr = rl.run() @@ -2399,7 +2315,7 @@ func (rl *clientConnReadLoop) cleanup() { cs.abortStreamLocked(err) } } - cc.condBroadcast() + cc.cond.Broadcast() cc.mu.Unlock() } @@ -2436,7 +2352,7 @@ func (rl *clientConnReadLoop) run() error { readIdleTimeout := cc.t.ReadIdleTimeout var t timer if readIdleTimeout != 0 { - t = cc.afterFunc(readIdleTimeout, cc.healthCheck) + t = cc.t.afterFunc(readIdleTimeout, cc.healthCheck) } for { f, err := cc.fr.ReadFrame() @@ -3034,7 +2950,7 @@ func (rl *clientConnReadLoop) processSettingsNoWrite(f *SettingsFrame) error { for _, cs := range cc.streams { cs.flow.add(delta) } - cc.condBroadcast() + cc.cond.Broadcast() cc.initialWindowSize = s.Val case SettingHeaderTableSize: @@ -3089,7 +3005,7 @@ func (rl *clientConnReadLoop) processWindowUpdate(f *WindowUpdateFrame) error { return ConnectionError(ErrCodeFlowControl) } - cc.condBroadcast() + cc.cond.Broadcast() return nil } @@ -3133,7 +3049,8 @@ func (cc *ClientConn) Ping(ctx context.Context) error { } var pingError error errc := make(chan struct{}) - cc.goRun(func() { + go func() { + cc.t.markNewGoroutine() cc.wmu.Lock() defer cc.wmu.Unlock() if pingError = cc.fr.WritePing(false, p); pingError != nil { @@ -3144,20 +3061,7 @@ func (cc *ClientConn) Ping(ctx context.Context) error { close(errc) return } - }) - if cc.syncHooks != nil { - cc.syncHooks.blockUntil(func() bool { - select { - case <-c: - case <-errc: - case <-ctx.Done(): - case <-cc.readerDone: - default: - return false - } - return true - }) - } + }() select { case <-c: return nil diff --git a/api/vendor/golang.org/x/net/http2/writesched_priority.go b/api/vendor/golang.org/x/net/http2/writesched_priority.go index 0a242c669..f6783339d 100644 --- a/api/vendor/golang.org/x/net/http2/writesched_priority.go +++ b/api/vendor/golang.org/x/net/http2/writesched_priority.go @@ -443,8 +443,8 @@ func (ws *priorityWriteScheduler) addClosedOrIdleNode(list *[]*priorityNode, max } func (ws *priorityWriteScheduler) removeNode(n *priorityNode) { - for k := n.kids; k != nil; k = k.next { - k.setParent(n.parent) + for n.kids != nil { + n.kids.setParent(n.parent) } n.setParent(nil) delete(ws.nodes, n.id) diff --git a/api/vendor/k8s.io/api/authentication/v1/doc.go b/api/vendor/k8s.io/api/authentication/v1/doc.go index 1614265bd..3bdc89bad 100644 --- a/api/vendor/k8s.io/api/authentication/v1/doc.go +++ b/api/vendor/k8s.io/api/authentication/v1/doc.go @@ -18,5 +18,6 @@ limitations under the License. // +k8s:protobuf-gen=package // +groupName=authentication.k8s.io // +k8s:openapi-gen=true +// +k8s:prerelease-lifecycle-gen=true package v1 // import "k8s.io/api/authentication/v1" diff --git a/api/vendor/k8s.io/api/authentication/v1/generated.proto b/api/vendor/k8s.io/api/authentication/v1/generated.proto index 1fe2f4f2c..ae9763576 100644 --- a/api/vendor/k8s.io/api/authentication/v1/generated.proto +++ b/api/vendor/k8s.io/api/authentication/v1/generated.proto @@ -63,7 +63,7 @@ message SelfSubjectReview { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Status is filled in by the server with the user attributes. optional SelfSubjectReviewStatus status = 2; @@ -81,7 +81,7 @@ message TokenRequest { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated optional TokenRequestSpec spec = 2; @@ -123,7 +123,7 @@ message TokenRequestStatus { optional string token = 1; // ExpirationTimestamp is the time of expiration of the returned token. - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time expirationTimestamp = 2; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time expirationTimestamp = 2; } // TokenReview attempts to authenticate a token to a known user. @@ -133,7 +133,7 @@ message TokenReview { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated optional TokenReviewSpec spec = 2; diff --git a/api/vendor/k8s.io/api/authentication/v1/types.go b/api/vendor/k8s.io/api/authentication/v1/types.go index 4f4400e30..2dc0707c4 100644 --- a/api/vendor/k8s.io/api/authentication/v1/types.go +++ b/api/vendor/k8s.io/api/authentication/v1/types.go @@ -45,6 +45,7 @@ const ( // +genclient:nonNamespaced // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.6 // TokenReview attempts to authenticate a token to a known user. // Note: TokenReview requests may be cached by the webhook token authenticator @@ -134,6 +135,7 @@ func (t ExtraValue) String() string { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.10 // TokenRequest requests a token for a given service account. type TokenRequest struct { @@ -206,6 +208,7 @@ type BoundObjectReference struct { // +genclient:nonNamespaced // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.28 // SelfSubjectReview contains the user information that the kube-apiserver has about the user making this request. // When using impersonation, users will receive the user info of the user being impersonated. If impersonation or diff --git a/api/vendor/k8s.io/api/authentication/v1/zz_generated.prerelease-lifecycle.go b/api/vendor/k8s.io/api/authentication/v1/zz_generated.prerelease-lifecycle.go new file mode 100644 index 000000000..b612bdec4 --- /dev/null +++ b/api/vendor/k8s.io/api/authentication/v1/zz_generated.prerelease-lifecycle.go @@ -0,0 +1,40 @@ +//go:build !ignore_autogenerated +// +build !ignore_autogenerated + +/* +Copyright 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. +*/ + +// Code generated by prerelease-lifecycle-gen. DO NOT EDIT. + +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 *SelfSubjectReview) APILifecycleIntroduced() (major, minor int) { + return 1, 28 +} + +// 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 *TokenRequest) APILifecycleIntroduced() (major, minor int) { + return 1, 10 +} + +// 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 *TokenReview) APILifecycleIntroduced() (major, minor int) { + return 1, 6 +} diff --git a/api/vendor/k8s.io/api/authorization/v1/doc.go b/api/vendor/k8s.io/api/authorization/v1/doc.go index cf100e6b7..77e5a19c4 100644 --- a/api/vendor/k8s.io/api/authorization/v1/doc.go +++ b/api/vendor/k8s.io/api/authorization/v1/doc.go @@ -17,7 +17,7 @@ limitations under the License. // +k8s:deepcopy-gen=package // +k8s:protobuf-gen=package // +k8s:openapi-gen=true - +// +k8s:prerelease-lifecycle-gen=true // +groupName=authorization.k8s.io package v1 // import "k8s.io/api/authorization/v1" diff --git a/api/vendor/k8s.io/api/authorization/v1/generated.pb.go b/api/vendor/k8s.io/api/authorization/v1/generated.pb.go index dfa109b42..aed9a3a47 100644 --- a/api/vendor/k8s.io/api/authorization/v1/generated.pb.go +++ b/api/vendor/k8s.io/api/authorization/v1/generated.pb.go @@ -26,6 +26,7 @@ import ( proto "github.com/gogo/protobuf/proto" github_com_gogo_protobuf_sortkeys "github.com/gogo/protobuf/sortkeys" + v1 "k8s.io/apimachinery/pkg/apis/meta/v1" math "math" math_bits "math/bits" @@ -72,10 +73,66 @@ func (m *ExtraValue) XXX_DiscardUnknown() { var xxx_messageInfo_ExtraValue proto.InternalMessageInfo +func (m *FieldSelectorAttributes) Reset() { *m = FieldSelectorAttributes{} } +func (*FieldSelectorAttributes) ProtoMessage() {} +func (*FieldSelectorAttributes) Descriptor() ([]byte, []int) { + return fileDescriptor_aafd0e5e70cec678, []int{1} +} +func (m *FieldSelectorAttributes) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *FieldSelectorAttributes) 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 *FieldSelectorAttributes) XXX_Merge(src proto.Message) { + xxx_messageInfo_FieldSelectorAttributes.Merge(m, src) +} +func (m *FieldSelectorAttributes) XXX_Size() int { + return m.Size() +} +func (m *FieldSelectorAttributes) XXX_DiscardUnknown() { + xxx_messageInfo_FieldSelectorAttributes.DiscardUnknown(m) +} + +var xxx_messageInfo_FieldSelectorAttributes proto.InternalMessageInfo + +func (m *LabelSelectorAttributes) Reset() { *m = LabelSelectorAttributes{} } +func (*LabelSelectorAttributes) ProtoMessage() {} +func (*LabelSelectorAttributes) Descriptor() ([]byte, []int) { + return fileDescriptor_aafd0e5e70cec678, []int{2} +} +func (m *LabelSelectorAttributes) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *LabelSelectorAttributes) 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 *LabelSelectorAttributes) XXX_Merge(src proto.Message) { + xxx_messageInfo_LabelSelectorAttributes.Merge(m, src) +} +func (m *LabelSelectorAttributes) XXX_Size() int { + return m.Size() +} +func (m *LabelSelectorAttributes) XXX_DiscardUnknown() { + xxx_messageInfo_LabelSelectorAttributes.DiscardUnknown(m) +} + +var xxx_messageInfo_LabelSelectorAttributes proto.InternalMessageInfo + func (m *LocalSubjectAccessReview) Reset() { *m = LocalSubjectAccessReview{} } func (*LocalSubjectAccessReview) ProtoMessage() {} func (*LocalSubjectAccessReview) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{1} + return fileDescriptor_aafd0e5e70cec678, []int{3} } func (m *LocalSubjectAccessReview) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -103,7 +160,7 @@ var xxx_messageInfo_LocalSubjectAccessReview proto.InternalMessageInfo func (m *NonResourceAttributes) Reset() { *m = NonResourceAttributes{} } func (*NonResourceAttributes) ProtoMessage() {} func (*NonResourceAttributes) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{2} + return fileDescriptor_aafd0e5e70cec678, []int{4} } func (m *NonResourceAttributes) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -131,7 +188,7 @@ var xxx_messageInfo_NonResourceAttributes proto.InternalMessageInfo func (m *NonResourceRule) Reset() { *m = NonResourceRule{} } func (*NonResourceRule) ProtoMessage() {} func (*NonResourceRule) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{3} + return fileDescriptor_aafd0e5e70cec678, []int{5} } func (m *NonResourceRule) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -159,7 +216,7 @@ var xxx_messageInfo_NonResourceRule proto.InternalMessageInfo func (m *ResourceAttributes) Reset() { *m = ResourceAttributes{} } func (*ResourceAttributes) ProtoMessage() {} func (*ResourceAttributes) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{4} + return fileDescriptor_aafd0e5e70cec678, []int{6} } func (m *ResourceAttributes) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -187,7 +244,7 @@ var xxx_messageInfo_ResourceAttributes proto.InternalMessageInfo func (m *ResourceRule) Reset() { *m = ResourceRule{} } func (*ResourceRule) ProtoMessage() {} func (*ResourceRule) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{5} + return fileDescriptor_aafd0e5e70cec678, []int{7} } func (m *ResourceRule) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -215,7 +272,7 @@ var xxx_messageInfo_ResourceRule proto.InternalMessageInfo func (m *SelfSubjectAccessReview) Reset() { *m = SelfSubjectAccessReview{} } func (*SelfSubjectAccessReview) ProtoMessage() {} func (*SelfSubjectAccessReview) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{6} + return fileDescriptor_aafd0e5e70cec678, []int{8} } func (m *SelfSubjectAccessReview) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -243,7 +300,7 @@ var xxx_messageInfo_SelfSubjectAccessReview proto.InternalMessageInfo func (m *SelfSubjectAccessReviewSpec) Reset() { *m = SelfSubjectAccessReviewSpec{} } func (*SelfSubjectAccessReviewSpec) ProtoMessage() {} func (*SelfSubjectAccessReviewSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{7} + return fileDescriptor_aafd0e5e70cec678, []int{9} } func (m *SelfSubjectAccessReviewSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -271,7 +328,7 @@ var xxx_messageInfo_SelfSubjectAccessReviewSpec proto.InternalMessageInfo func (m *SelfSubjectRulesReview) Reset() { *m = SelfSubjectRulesReview{} } func (*SelfSubjectRulesReview) ProtoMessage() {} func (*SelfSubjectRulesReview) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{8} + return fileDescriptor_aafd0e5e70cec678, []int{10} } func (m *SelfSubjectRulesReview) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -299,7 +356,7 @@ var xxx_messageInfo_SelfSubjectRulesReview proto.InternalMessageInfo func (m *SelfSubjectRulesReviewSpec) Reset() { *m = SelfSubjectRulesReviewSpec{} } func (*SelfSubjectRulesReviewSpec) ProtoMessage() {} func (*SelfSubjectRulesReviewSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{9} + return fileDescriptor_aafd0e5e70cec678, []int{11} } func (m *SelfSubjectRulesReviewSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -327,7 +384,7 @@ var xxx_messageInfo_SelfSubjectRulesReviewSpec proto.InternalMessageInfo func (m *SubjectAccessReview) Reset() { *m = SubjectAccessReview{} } func (*SubjectAccessReview) ProtoMessage() {} func (*SubjectAccessReview) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{10} + return fileDescriptor_aafd0e5e70cec678, []int{12} } func (m *SubjectAccessReview) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -355,7 +412,7 @@ var xxx_messageInfo_SubjectAccessReview proto.InternalMessageInfo func (m *SubjectAccessReviewSpec) Reset() { *m = SubjectAccessReviewSpec{} } func (*SubjectAccessReviewSpec) ProtoMessage() {} func (*SubjectAccessReviewSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{11} + return fileDescriptor_aafd0e5e70cec678, []int{13} } func (m *SubjectAccessReviewSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -383,7 +440,7 @@ var xxx_messageInfo_SubjectAccessReviewSpec proto.InternalMessageInfo func (m *SubjectAccessReviewStatus) Reset() { *m = SubjectAccessReviewStatus{} } func (*SubjectAccessReviewStatus) ProtoMessage() {} func (*SubjectAccessReviewStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{12} + return fileDescriptor_aafd0e5e70cec678, []int{14} } func (m *SubjectAccessReviewStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -411,7 +468,7 @@ var xxx_messageInfo_SubjectAccessReviewStatus proto.InternalMessageInfo func (m *SubjectRulesReviewStatus) Reset() { *m = SubjectRulesReviewStatus{} } func (*SubjectRulesReviewStatus) ProtoMessage() {} func (*SubjectRulesReviewStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_aafd0e5e70cec678, []int{13} + return fileDescriptor_aafd0e5e70cec678, []int{15} } func (m *SubjectRulesReviewStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -438,6 +495,8 @@ var xxx_messageInfo_SubjectRulesReviewStatus proto.InternalMessageInfo func init() { proto.RegisterType((*ExtraValue)(nil), "k8s.io.api.authorization.v1.ExtraValue") + proto.RegisterType((*FieldSelectorAttributes)(nil), "k8s.io.api.authorization.v1.FieldSelectorAttributes") + proto.RegisterType((*LabelSelectorAttributes)(nil), "k8s.io.api.authorization.v1.LabelSelectorAttributes") proto.RegisterType((*LocalSubjectAccessReview)(nil), "k8s.io.api.authorization.v1.LocalSubjectAccessReview") proto.RegisterType((*NonResourceAttributes)(nil), "k8s.io.api.authorization.v1.NonResourceAttributes") proto.RegisterType((*NonResourceRule)(nil), "k8s.io.api.authorization.v1.NonResourceRule") @@ -459,78 +518,85 @@ func init() { } var fileDescriptor_aafd0e5e70cec678 = []byte{ - // 1126 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 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0xbf, + 0xd1, 0xc0, 0x92, 0x33, 0x6c, 0x0e, 0xab, 0x34, 0x6f, 0x8e, 0x35, 0x3e, 0x74, 0x82, 0x9b, 0xd7, + 0x7a, 0xdd, 0xd2, 0xf0, 0xe1, 0x8e, 0x86, 0xdb, 0x12, 0xdf, 0xd0, 0xab, 0x91, 0xf4, 0x88, 0x06, + 0xf9, 0xf7, 0xea, 0xea, 0xd3, 0x58, 0x5d, 0x6d, 0x4d, 0x5a, 0x57, 0x11, 0x27, 0x47, 0x96, 0xd5, + 0xe7, 0x17, 0xca, 0xea, 0xf6, 0x24, 0x65, 0x15, 0x55, 0x3c, 0xbe, 0xaa, 0x1e, 0x80, 0x95, 0xd1, + 0x0e, 0x4d, 0xfd, 0xe9, 0x29, 0xff, 0x90, 0x04, 0x8b, 0x6f, 0x96, 0x98, 0x69, 0xda, 0xfa, 0x97, + 0x34, 0x58, 0x7e, 0xd3, 0xd2, 0xa3, 0xd6, 0x38, 0x9f, 0x11, 0xaa, 0x96, 0x94, 0xc1, 0xe5, 0x1c, + 0x30, 0x42, 0x91, 0x44, 0x60, 0x19, 0xcc, 0x34, 0x82, 0xaf, 0x5b, 0xf0, 0xfd, 0x01, 0x22, 0xc1, + 0xea, 0xd3, 0xa6, 0x10, 0x58, 0x07, 0x19, 0x22, 0xde, 0x4b, 0x7a, 0x46, 0xee, 0xf3, 0x1f, 0xfe, + 0x93, 0xca, 0x30, 0xe4, 0x8b, 0x6b, 0xc7, 0xe1, 0xf4, 0x34, 0x5c, 0x96, 0x24, 0x0d, 0x05, 0xca, + 0xe1, 0x5b, 0x20, 0xe5, 0xdb, 0x75, 0xb5, 0xcb, 0xe4, 0x15, 0x4b, 0xea, 0x60, 0xf7, 0x3e, 0x12, + 0xf4, 0x15, 0xac, 0x1e, 0x6d, 0x52, 0x05, 0x5c, 0x00, 0xa9, 0x63, 0x72, 0x1a, 0x34, 0x14, 0x12, + 0x3f, 0xe1, 0x3d, 0x90, 0xe9, 0x88, 0xf7, 0x9c, 0xca, 0xef, 0xbb, 0x63, 0x9d, 0x0c, 0x9f, 0x7f, + 0x28, 0x90, 0xba, 0x9b, 0xdc, 0xd6, 0xca, 0xbf, 0x69, 0xe0, 0xda, 0xc8, 0xf2, 0x13, 0xcb, 0x1c, + 0x6e, 0xb5, 0xdc, 0x13, 0x52, 0x97, 0x66, 0xb3, 0xe1, 0x32, 0x57, 0x0d, 0xc8, 0xa8, 0x8f, 0xc3, + 0x77, 0xc0, 0x4c, 0x9d, 0x38, 0x36, 0xa9, 0xcb, 0xb5, 0x2f, 0x1b, 0x56, 0xee, 0x7d, 0x49, 0x45, + 0x0a, 0x15, 0x7c, 0x94, 0x60, 0xe6, 0x3a, 0x6a, 0xd1, 0x1c, 0xf0, 0x21, 0x49, 0x45, 0x0a, 0x85, + 0x55, 0x30, 0x4f, 0x84, 0x9b, 0xd2, 0xff, 0x1d, 0x4a, 0xdd, 0xfe, 0x8d, 0x2e, 0x2b, 0x81, 0xf9, + 0x9d, 0x38, 0x8c, 0x2e, 0xf2, 0x97, 0xff, 0x4a, 0x02, 0x7d, 0xd4, 0x68, 0x83, 0x47, 0xe1, 0x2e, + 0x22, 0x41, 0xb9, 0x0e, 0xe5, 0x37, 0xaf, 0x4f, 0xd4, 0x20, 0x42, 0xc2, 0x5c, 0x52, 0x8e, 0x14, + 0xa2, 0xd4, 0xc8, 0xea, 0x22, 0x8f, 0x90, 0x82, 0x05, 0x27, 0xfe, 0x22, 0xe8, 0xbf, 0x11, 0x6f, + 0x4e, 0xda, 0x0e, 0xd2, 0x9a, 0xae, 0xac, 0x2d, 0x5c, 0x00, 0x18, 0xba, 0xa4, 0x1f, 0x6e, 0x02, + 0x60, 0x3b, 0x96, 0xdb, 0xf6, 0x5a, 0x84, 0x13, 0x99, 0xb6, 0x6c, 0x38, 0x07, 0x77, 0x07, 0x08, + 0x8a, 0x70, 0x0d, 0xcb, 0x77, 0x7a, 0xba, 0x7c, 0x9b, 0xd5, 0xb3, 0xf3, 0x62, 0xe2, 0xc5, 0x79, + 0x31, 0xf1, 0xf2, 0xbc, 0x98, 0x78, 0xd6, 0x2b, 0x6a, 0x67, 0xbd, 0xa2, 0xf6, 0xa2, 0x57, 0xd4, + 0x5e, 0xf6, 0x8a, 0xda, 0x1f, 0xbd, 0xa2, 0xf6, 0xed, 0x9f, 0xc5, 0xc4, 0xe3, 0xd5, 0x31, 0xff, + 0xd0, 0xfc, 0x1d, 0x00, 0x00, 0xff, 0xff, 0xb5, 0x8c, 0x77, 0x0f, 0xbf, 0x11, 0x00, 0x00, } func (m ExtraValue) Marshal() (dAtA []byte, err error) { @@ -565,6 +631,90 @@ func (m ExtraValue) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *FieldSelectorAttributes) 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 *FieldSelectorAttributes) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *FieldSelectorAttributes) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Requirements) > 0 { + for iNdEx := len(m.Requirements) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Requirements[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } + i -= len(m.RawSelector) + copy(dAtA[i:], m.RawSelector) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.RawSelector))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + +func (m *LabelSelectorAttributes) 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 *LabelSelectorAttributes) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *LabelSelectorAttributes) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Requirements) > 0 { + for iNdEx := len(m.Requirements) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Requirements[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x12 + } + } + i -= len(m.RawSelector) + copy(dAtA[i:], m.RawSelector) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.RawSelector))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *LocalSubjectAccessReview) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -712,6 +862,30 @@ func (m *ResourceAttributes) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.LabelSelector != nil { + { + size, err := m.LabelSelector.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x4a + } + if m.FieldSelector != nil { + { + size, err := m.FieldSelector.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x42 + } i -= len(m.Name) copy(dAtA[i:], m.Name) i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) @@ -1277,6 +1451,40 @@ func (m ExtraValue) Size() (n int) { return n } +func (m *FieldSelectorAttributes) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.RawSelector) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Requirements) > 0 { + for _, e := range m.Requirements { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *LabelSelectorAttributes) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.RawSelector) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Requirements) > 0 { + for _, e := range m.Requirements { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + func (m *LocalSubjectAccessReview) Size() (n int) { if m == nil { return 0 @@ -1346,6 +1554,14 @@ func (m *ResourceAttributes) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) + if m.FieldSelector != nil { + l = m.FieldSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if m.LabelSelector != nil { + l = m.LabelSelector.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -1536,6 +1752,38 @@ func sovGenerated(x uint64) (n int) { func sozGenerated(x uint64) (n int) { return sovGenerated(uint64((x << 1) ^ uint64((int64(x) >> 63)))) } +func (this *FieldSelectorAttributes) String() string { + if this == nil { + return "nil" + } + repeatedStringForRequirements := "[]FieldSelectorRequirement{" + for _, f := range this.Requirements { + repeatedStringForRequirements += fmt.Sprintf("%v", f) + "," + } + repeatedStringForRequirements += "}" + s := strings.Join([]string{`&FieldSelectorAttributes{`, + `RawSelector:` + fmt.Sprintf("%v", this.RawSelector) + `,`, + `Requirements:` + repeatedStringForRequirements + `,`, + `}`, + }, "") + return s +} +func (this *LabelSelectorAttributes) String() string { + if this == nil { + return "nil" + } + repeatedStringForRequirements := "[]LabelSelectorRequirement{" + for _, f := range this.Requirements { + repeatedStringForRequirements += fmt.Sprintf("%v", f) + "," + } + repeatedStringForRequirements += "}" + s := strings.Join([]string{`&LabelSelectorAttributes{`, + `RawSelector:` + fmt.Sprintf("%v", this.RawSelector) + `,`, + `Requirements:` + repeatedStringForRequirements + `,`, + `}`, + }, "") + return s +} func (this *LocalSubjectAccessReview) String() string { if this == nil { return "nil" @@ -1582,6 +1830,8 @@ func (this *ResourceAttributes) String() string { `Resource:` + fmt.Sprintf("%v", this.Resource) + `,`, `Subresource:` + fmt.Sprintf("%v", this.Subresource) + `,`, `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `FieldSelector:` + strings.Replace(this.FieldSelector.String(), "FieldSelectorAttributes", "FieldSelectorAttributes", 1) + `,`, + `LabelSelector:` + strings.Replace(this.LabelSelector.String(), "LabelSelectorAttributes", "LabelSelectorAttributes", 1) + `,`, `}`, }, "") return s @@ -1807,6 +2057,238 @@ func (m *ExtraValue) Unmarshal(dAtA []byte) error { } return nil } +func (m *FieldSelectorAttributes) 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: FieldSelectorAttributes: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: FieldSelectorAttributes: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field RawSelector", 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.RawSelector = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Requirements", 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.Requirements = append(m.Requirements, v1.FieldSelectorRequirement{}) + if err := m.Requirements[len(m.Requirements)-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 *LabelSelectorAttributes) 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: LabelSelectorAttributes: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LabelSelectorAttributes: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field RawSelector", 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.RawSelector = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Requirements", 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.Requirements = append(m.Requirements, v1.LabelSelectorRequirement{}) + if err := m.Requirements[len(m.Requirements)-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 *LocalSubjectAccessReview) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 @@ -2437,6 +2919,78 @@ func (m *ResourceAttributes) Unmarshal(dAtA []byte) error { } m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex + case 8: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field FieldSelector", 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.FieldSelector == nil { + m.FieldSelector = &FieldSelectorAttributes{} + } + if err := m.FieldSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 9: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field LabelSelector", 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.LabelSelector == nil { + m.LabelSelector = &LabelSelectorAttributes{} + } + if err := m.LabelSelector.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/api/vendor/k8s.io/api/authorization/v1/generated.proto b/api/vendor/k8s.io/api/authorization/v1/generated.proto index 83283d0bd..37b05b855 100644 --- a/api/vendor/k8s.io/api/authorization/v1/generated.proto +++ b/api/vendor/k8s.io/api/authorization/v1/generated.proto @@ -37,6 +37,60 @@ message ExtraValue { repeated string items = 1; } +// FieldSelectorAttributes indicates a field limited access. +// Webhook authors are encouraged to +// * ensure rawSelector and requirements are not both set +// * consider the requirements field if set +// * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. +// For the *SubjectAccessReview endpoints of the kube-apiserver: +// * If rawSelector is empty and requirements are empty, the request is not limited. +// * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. +// * If rawSelector is empty and requirements are present, the requirements should be honored +// * If rawSelector is present and requirements are present, the request is invalid. +message FieldSelectorAttributes { + // rawSelector is the serialization of a field selector that would be included in a query parameter. + // Webhook implementations are encouraged to ignore rawSelector. + // The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present. + // +optional + optional string rawSelector = 1; + + // requirements is the parsed interpretation of a field selector. + // All requirements must be met for a resource instance to match the selector. + // Webhook implementations should handle requirements, but how to handle them is up to the webhook. + // Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements + // are not understood. + // +optional + // +listType=atomic + repeated .k8s.io.apimachinery.pkg.apis.meta.v1.FieldSelectorRequirement requirements = 2; +} + +// LabelSelectorAttributes indicates a label limited access. +// Webhook authors are encouraged to +// * ensure rawSelector and requirements are not both set +// * consider the requirements field if set +// * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. +// For the *SubjectAccessReview endpoints of the kube-apiserver: +// * If rawSelector is empty and requirements are empty, the request is not limited. +// * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. +// * If rawSelector is empty and requirements are present, the requirements should be honored +// * If rawSelector is present and requirements are present, the request is invalid. +message LabelSelectorAttributes { + // rawSelector is the serialization of a field selector that would be included in a query parameter. + // Webhook implementations are encouraged to ignore rawSelector. + // The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present. + // +optional + optional string rawSelector = 1; + + // requirements is the parsed interpretation of a label selector. + // All requirements must be met for a resource instance to match the selector. + // Webhook implementations should handle requirements, but how to handle them is up to the webhook. + // Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements + // are not understood. + // +optional + // +listType=atomic + repeated .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelectorRequirement requirements = 2; +} + // LocalSubjectAccessReview checks whether or not a user or group can perform an action in a given namespace. // Having a namespace scoped resource makes it much easier to grant namespace scoped policy that includes permissions // checking. @@ -44,7 +98,7 @@ message LocalSubjectAccessReview { // 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.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated. spec.namespace must be equal to the namespace // you made the request against. If empty, it is defaulted. @@ -111,6 +165,20 @@ message ResourceAttributes { // Name is the name of the resource being requested for a "get" or deleted for a "delete". "" (empty) means all. // +optional optional string name = 7; + + // fieldSelector describes the limitation on access based on field. It can only limit access, not broaden it. + // + // This field is alpha-level. To use this field, you must enable the + // `AuthorizeWithSelectors` feature gate (disabled by default). + // +optional + optional FieldSelectorAttributes fieldSelector = 8; + + // labelSelector describes the limitation on access based on labels. It can only limit access, not broaden it. + // + // This field is alpha-level. To use this field, you must enable the + // `AuthorizeWithSelectors` feature gate (disabled by default). + // +optional + optional LabelSelectorAttributes labelSelector = 9; } // ResourceRule is the list of actions the subject is allowed to perform on resources. The list ordering isn't significant, @@ -145,7 +213,7 @@ message SelfSubjectAccessReview { // 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.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated. user and groups must be empty optional SelfSubjectAccessReviewSpec spec = 2; @@ -177,7 +245,7 @@ message SelfSubjectRulesReview { // 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.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated. optional SelfSubjectRulesReviewSpec spec = 2; @@ -198,7 +266,7 @@ message SubjectAccessReview { // 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.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec holds information about the request being evaluated optional SubjectAccessReviewSpec spec = 2; diff --git a/api/vendor/k8s.io/api/authorization/v1/types.go b/api/vendor/k8s.io/api/authorization/v1/types.go index 3b42956f8..36f5fa410 100644 --- a/api/vendor/k8s.io/api/authorization/v1/types.go +++ b/api/vendor/k8s.io/api/authorization/v1/types.go @@ -26,6 +26,7 @@ import ( // +genclient:nonNamespaced // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.6 // SubjectAccessReview checks whether or not a user or group can perform an action. type SubjectAccessReview struct { @@ -47,6 +48,7 @@ type SubjectAccessReview struct { // +genclient:nonNamespaced // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.19 // SelfSubjectAccessReview checks whether or the current user can perform an action. Not filling in a // spec.namespace means "in all namespaces". Self is a special case, because users should always be able @@ -69,6 +71,7 @@ type SelfSubjectAccessReview struct { // +genclient // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.19 // LocalSubjectAccessReview checks whether or not a user or group can perform an action in a given namespace. // Having a namespace scoped resource makes it much easier to grant namespace scoped policy that includes permissions @@ -115,6 +118,72 @@ type ResourceAttributes struct { // Name is the name of the resource being requested for a "get" or deleted for a "delete". "" (empty) means all. // +optional Name string `json:"name,omitempty" protobuf:"bytes,7,opt,name=name"` + // fieldSelector describes the limitation on access based on field. It can only limit access, not broaden it. + // + // This field is alpha-level. To use this field, you must enable the + // `AuthorizeWithSelectors` feature gate (disabled by default). + // +optional + FieldSelector *FieldSelectorAttributes `json:"fieldSelector,omitempty" protobuf:"bytes,8,opt,name=fieldSelector"` + // labelSelector describes the limitation on access based on labels. It can only limit access, not broaden it. + // + // This field is alpha-level. To use this field, you must enable the + // `AuthorizeWithSelectors` feature gate (disabled by default). + // +optional + LabelSelector *LabelSelectorAttributes `json:"labelSelector,omitempty" protobuf:"bytes,9,opt,name=labelSelector"` +} + +// LabelSelectorAttributes indicates a label limited access. +// Webhook authors are encouraged to +// * ensure rawSelector and requirements are not both set +// * consider the requirements field if set +// * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. +// For the *SubjectAccessReview endpoints of the kube-apiserver: +// * If rawSelector is empty and requirements are empty, the request is not limited. +// * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. +// * If rawSelector is empty and requirements are present, the requirements should be honored +// * If rawSelector is present and requirements are present, the request is invalid. +type LabelSelectorAttributes struct { + // rawSelector is the serialization of a field selector that would be included in a query parameter. + // Webhook implementations are encouraged to ignore rawSelector. + // The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present. + // +optional + RawSelector string `json:"rawSelector,omitempty" protobuf:"bytes,1,opt,name=rawSelector"` + + // requirements is the parsed interpretation of a label selector. + // All requirements must be met for a resource instance to match the selector. + // Webhook implementations should handle requirements, but how to handle them is up to the webhook. + // Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements + // are not understood. + // +optional + // +listType=atomic + Requirements []metav1.LabelSelectorRequirement `json:"requirements,omitempty" protobuf:"bytes,2,rep,name=requirements"` +} + +// FieldSelectorAttributes indicates a field limited access. +// Webhook authors are encouraged to +// * ensure rawSelector and requirements are not both set +// * consider the requirements field if set +// * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. +// For the *SubjectAccessReview endpoints of the kube-apiserver: +// * If rawSelector is empty and requirements are empty, the request is not limited. +// * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. +// * If rawSelector is empty and requirements are present, the requirements should be honored +// * If rawSelector is present and requirements are present, the request is invalid. +type FieldSelectorAttributes struct { + // rawSelector is the serialization of a field selector that would be included in a query parameter. + // Webhook implementations are encouraged to ignore rawSelector. + // The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present. + // +optional + RawSelector string `json:"rawSelector,omitempty" protobuf:"bytes,1,opt,name=rawSelector"` + + // requirements is the parsed interpretation of a field selector. + // All requirements must be met for a resource instance to match the selector. + // Webhook implementations should handle requirements, but how to handle them is up to the webhook. + // Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements + // are not understood. + // +optional + // +listType=atomic + Requirements []metav1.FieldSelectorRequirement `json:"requirements,omitempty" protobuf:"bytes,2,rep,name=requirements"` } // NonResourceAttributes includes the authorization attributes available for non-resource requests to the Authorizer interface @@ -198,6 +267,7 @@ type SubjectAccessReviewStatus struct { // +genclient:nonNamespaced // +genclient:onlyVerbs=create // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.19 // SelfSubjectRulesReview enumerates the set of actions the current user can perform within a namespace. // The returned list of actions may be incomplete depending on the server's authorization mode, diff --git a/api/vendor/k8s.io/api/authorization/v1/types_swagger_doc_generated.go b/api/vendor/k8s.io/api/authorization/v1/types_swagger_doc_generated.go index 93229485c..dc6b8a89e 100644 --- a/api/vendor/k8s.io/api/authorization/v1/types_swagger_doc_generated.go +++ b/api/vendor/k8s.io/api/authorization/v1/types_swagger_doc_generated.go @@ -27,6 +27,26 @@ package v1 // Those methods can be generated by using hack/update-codegen.sh // AUTO-GENERATED FUNCTIONS START HERE. DO NOT EDIT. +var map_FieldSelectorAttributes = map[string]string{ + "": "FieldSelectorAttributes indicates a field limited access. Webhook authors are encouraged to * ensure rawSelector and requirements are not both set * consider the requirements field if set * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. For the *SubjectAccessReview endpoints of the kube-apiserver: * If rawSelector is empty and requirements are empty, the request is not limited. * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. * If rawSelector is empty and requirements are present, the requirements should be honored * If rawSelector is present and requirements are present, the request is invalid.", + "rawSelector": "rawSelector is the serialization of a field selector that would be included in a query parameter. Webhook implementations are encouraged to ignore rawSelector. The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present.", + "requirements": "requirements is the parsed interpretation of a field selector. All requirements must be met for a resource instance to match the selector. Webhook implementations should handle requirements, but how to handle them is up to the webhook. Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements are not understood.", +} + +func (FieldSelectorAttributes) SwaggerDoc() map[string]string { + return map_FieldSelectorAttributes +} + +var map_LabelSelectorAttributes = map[string]string{ + "": "LabelSelectorAttributes indicates a label limited access. Webhook authors are encouraged to * ensure rawSelector and requirements are not both set * consider the requirements field if set * not try to parse or consider the rawSelector field if set. This is to avoid another CVE-2022-2880 (i.e. getting different systems to agree on how exactly to parse a query is not something we want), see https://www.oxeye.io/resources/golang-parameter-smuggling-attack for more details. For the *SubjectAccessReview endpoints of the kube-apiserver: * If rawSelector is empty and requirements are empty, the request is not limited. * If rawSelector is present and requirements are empty, the rawSelector will be parsed and limited if the parsing succeeds. * If rawSelector is empty and requirements are present, the requirements should be honored * If rawSelector is present and requirements are present, the request is invalid.", + "rawSelector": "rawSelector is the serialization of a field selector that would be included in a query parameter. Webhook implementations are encouraged to ignore rawSelector. The kube-apiserver's *SubjectAccessReview will parse the rawSelector as long as the requirements are not present.", + "requirements": "requirements is the parsed interpretation of a label selector. All requirements must be met for a resource instance to match the selector. Webhook implementations should handle requirements, but how to handle them is up to the webhook. Since requirements can only limit the request, it is safe to authorize as unlimited request if the requirements are not understood.", +} + +func (LabelSelectorAttributes) SwaggerDoc() map[string]string { + return map_LabelSelectorAttributes +} + var map_LocalSubjectAccessReview = map[string]string{ "": "LocalSubjectAccessReview checks whether or not a user or group can perform an action in a given namespace. Having a namespace scoped resource makes it much easier to grant namespace scoped policy that includes permissions checking.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", @@ -59,14 +79,16 @@ func (NonResourceRule) SwaggerDoc() map[string]string { } var map_ResourceAttributes = map[string]string{ - "": "ResourceAttributes includes the authorization attributes available for resource requests to the Authorizer interface", - "namespace": "Namespace is the namespace of the action being requested. Currently, there is no distinction between no namespace and all namespaces \"\" (empty) is defaulted for LocalSubjectAccessReviews \"\" (empty) is empty for cluster-scoped resources \"\" (empty) means \"all\" for namespace scoped resources from a SubjectAccessReview or SelfSubjectAccessReview", - "verb": "Verb is a kubernetes resource API verb, like: get, list, watch, create, update, delete, proxy. \"*\" means all.", - "group": "Group is the API Group of the Resource. \"*\" means all.", - "version": "Version is the API Version of the Resource. \"*\" means all.", - "resource": "Resource is one of the existing resource types. \"*\" means all.", - "subresource": "Subresource is one of the existing resource types. \"\" means none.", - "name": "Name is the name of the resource being requested for a \"get\" or deleted for a \"delete\". \"\" (empty) means all.", + "": "ResourceAttributes includes the authorization attributes available for resource requests to the Authorizer interface", + "namespace": "Namespace is the namespace of the action being requested. Currently, there is no distinction between no namespace and all namespaces \"\" (empty) is defaulted for LocalSubjectAccessReviews \"\" (empty) is empty for cluster-scoped resources \"\" (empty) means \"all\" for namespace scoped resources from a SubjectAccessReview or SelfSubjectAccessReview", + "verb": "Verb is a kubernetes resource API verb, like: get, list, watch, create, update, delete, proxy. \"*\" means all.", + "group": "Group is the API Group of the Resource. \"*\" means all.", + "version": "Version is the API Version of the Resource. \"*\" means all.", + "resource": "Resource is one of the existing resource types. \"*\" means all.", + "subresource": "Subresource is one of the existing resource types. \"\" means none.", + "name": "Name is the name of the resource being requested for a \"get\" or deleted for a \"delete\". \"\" (empty) means all.", + "fieldSelector": "fieldSelector describes the limitation on access based on field. It can only limit access, not broaden it.\n\nThis field is alpha-level. To use this field, you must enable the `AuthorizeWithSelectors` feature gate (disabled by default).", + "labelSelector": "labelSelector describes the limitation on access based on labels. It can only limit access, not broaden it.\n\nThis field is alpha-level. To use this field, you must enable the `AuthorizeWithSelectors` feature gate (disabled by default).", } func (ResourceAttributes) SwaggerDoc() map[string]string { diff --git a/api/vendor/k8s.io/api/authorization/v1/zz_generated.deepcopy.go b/api/vendor/k8s.io/api/authorization/v1/zz_generated.deepcopy.go index f1d49eb38..7f040f5c5 100644 --- a/api/vendor/k8s.io/api/authorization/v1/zz_generated.deepcopy.go +++ b/api/vendor/k8s.io/api/authorization/v1/zz_generated.deepcopy.go @@ -22,6 +22,7 @@ limitations under the License. package v1 import ( + metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" runtime "k8s.io/apimachinery/pkg/runtime" ) @@ -45,6 +46,52 @@ func (in ExtraValue) DeepCopy() ExtraValue { return *out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *FieldSelectorAttributes) DeepCopyInto(out *FieldSelectorAttributes) { + *out = *in + if in.Requirements != nil { + in, out := &in.Requirements, &out.Requirements + *out = make([]metav1.FieldSelectorRequirement, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new FieldSelectorAttributes. +func (in *FieldSelectorAttributes) DeepCopy() *FieldSelectorAttributes { + if in == nil { + return nil + } + out := new(FieldSelectorAttributes) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *LabelSelectorAttributes) DeepCopyInto(out *LabelSelectorAttributes) { + *out = *in + if in.Requirements != nil { + in, out := &in.Requirements, &out.Requirements + *out = make([]metav1.LabelSelectorRequirement, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new LabelSelectorAttributes. +func (in *LabelSelectorAttributes) DeepCopy() *LabelSelectorAttributes { + if in == nil { + return nil + } + out := new(LabelSelectorAttributes) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *LocalSubjectAccessReview) DeepCopyInto(out *LocalSubjectAccessReview) { *out = *in @@ -118,6 +165,16 @@ func (in *NonResourceRule) DeepCopy() *NonResourceRule { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ResourceAttributes) DeepCopyInto(out *ResourceAttributes) { *out = *in + if in.FieldSelector != nil { + in, out := &in.FieldSelector, &out.FieldSelector + *out = new(FieldSelectorAttributes) + (*in).DeepCopyInto(*out) + } + if in.LabelSelector != nil { + in, out := &in.LabelSelector, &out.LabelSelector + *out = new(LabelSelectorAttributes) + (*in).DeepCopyInto(*out) + } return } @@ -201,7 +258,7 @@ func (in *SelfSubjectAccessReviewSpec) DeepCopyInto(out *SelfSubjectAccessReview if in.ResourceAttributes != nil { in, out := &in.ResourceAttributes, &out.ResourceAttributes *out = new(ResourceAttributes) - **out = **in + (*in).DeepCopyInto(*out) } if in.NonResourceAttributes != nil { in, out := &in.NonResourceAttributes, &out.NonResourceAttributes @@ -299,7 +356,7 @@ func (in *SubjectAccessReviewSpec) DeepCopyInto(out *SubjectAccessReviewSpec) { if in.ResourceAttributes != nil { in, out := &in.ResourceAttributes, &out.ResourceAttributes *out = new(ResourceAttributes) - **out = **in + (*in).DeepCopyInto(*out) } if in.NonResourceAttributes != nil { in, out := &in.NonResourceAttributes, &out.NonResourceAttributes diff --git a/api/vendor/k8s.io/api/authorization/v1/zz_generated.prerelease-lifecycle.go b/api/vendor/k8s.io/api/authorization/v1/zz_generated.prerelease-lifecycle.go new file mode 100644 index 000000000..b0c0475b4 --- /dev/null +++ b/api/vendor/k8s.io/api/authorization/v1/zz_generated.prerelease-lifecycle.go @@ -0,0 +1,46 @@ +//go:build !ignore_autogenerated +// +build !ignore_autogenerated + +/* +Copyright 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. +*/ + +// Code generated by prerelease-lifecycle-gen. DO NOT EDIT. + +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 *LocalSubjectAccessReview) 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 *SelfSubjectAccessReview) 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 *SelfSubjectRulesReview) 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 *SubjectAccessReview) APILifecycleIntroduced() (major, minor int) { + return 1, 6 +} diff --git a/api/vendor/k8s.io/api/core/v1/doc.go b/api/vendor/k8s.io/api/core/v1/doc.go index 1bdf0b25b..bc0041b33 100644 --- a/api/vendor/k8s.io/api/core/v1/doc.go +++ b/api/vendor/k8s.io/api/core/v1/doc.go @@ -17,6 +17,8 @@ limitations under the License. // +k8s:openapi-gen=true // +k8s:deepcopy-gen=package // +k8s:protobuf-gen=package +// +k8s:prerelease-lifecycle-gen=true +// +groupName= // Package v1 is the v1 version of the core API. package v1 // import "k8s.io/api/core/v1" diff --git a/api/vendor/k8s.io/api/core/v1/generated.pb.go b/api/vendor/k8s.io/api/core/v1/generated.pb.go index d52d8da18..5654ee482 100644 --- a/api/vendor/k8s.io/api/core/v1/generated.pb.go +++ b/api/vendor/k8s.io/api/core/v1/generated.pb.go @@ -497,38 +497,10 @@ func (m *CinderVolumeSource) XXX_DiscardUnknown() { var xxx_messageInfo_CinderVolumeSource proto.InternalMessageInfo -func (m *ClaimSource) Reset() { *m = ClaimSource{} } -func (*ClaimSource) ProtoMessage() {} -func (*ClaimSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{16} -} -func (m *ClaimSource) XXX_Unmarshal(b []byte) error { - return m.Unmarshal(b) -} -func (m *ClaimSource) 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 *ClaimSource) XXX_Merge(src proto.Message) { - xxx_messageInfo_ClaimSource.Merge(m, src) -} -func (m *ClaimSource) XXX_Size() int { - return m.Size() -} -func (m *ClaimSource) XXX_DiscardUnknown() { - xxx_messageInfo_ClaimSource.DiscardUnknown(m) -} - -var xxx_messageInfo_ClaimSource proto.InternalMessageInfo - func (m *ClientIPConfig) Reset() { *m = ClientIPConfig{} } func (*ClientIPConfig) ProtoMessage() {} func (*ClientIPConfig) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{17} + return fileDescriptor_6c07b07c062484ab, []int{16} } func (m *ClientIPConfig) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -556,7 +528,7 @@ var xxx_messageInfo_ClientIPConfig proto.InternalMessageInfo func (m *ClusterTrustBundleProjection) Reset() { *m = ClusterTrustBundleProjection{} } func (*ClusterTrustBundleProjection) ProtoMessage() {} func (*ClusterTrustBundleProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{18} + return fileDescriptor_6c07b07c062484ab, []int{17} } func (m *ClusterTrustBundleProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -584,7 +556,7 @@ var xxx_messageInfo_ClusterTrustBundleProjection proto.InternalMessageInfo func (m *ComponentCondition) Reset() { *m = ComponentCondition{} } func (*ComponentCondition) ProtoMessage() {} func (*ComponentCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{19} + return fileDescriptor_6c07b07c062484ab, []int{18} } func (m *ComponentCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -612,7 +584,7 @@ var xxx_messageInfo_ComponentCondition proto.InternalMessageInfo func (m *ComponentStatus) Reset() { *m = ComponentStatus{} } func (*ComponentStatus) ProtoMessage() {} func (*ComponentStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{20} + return fileDescriptor_6c07b07c062484ab, []int{19} } func (m *ComponentStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -640,7 +612,7 @@ var xxx_messageInfo_ComponentStatus proto.InternalMessageInfo func (m *ComponentStatusList) Reset() { *m = ComponentStatusList{} } func (*ComponentStatusList) ProtoMessage() {} func (*ComponentStatusList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{21} + return fileDescriptor_6c07b07c062484ab, []int{20} } func (m *ComponentStatusList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -668,7 +640,7 @@ var xxx_messageInfo_ComponentStatusList proto.InternalMessageInfo func (m *ConfigMap) Reset() { *m = ConfigMap{} } func (*ConfigMap) ProtoMessage() {} func (*ConfigMap) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{22} + return fileDescriptor_6c07b07c062484ab, []int{21} } func (m *ConfigMap) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -696,7 +668,7 @@ var xxx_messageInfo_ConfigMap proto.InternalMessageInfo func (m *ConfigMapEnvSource) Reset() { *m = ConfigMapEnvSource{} } func (*ConfigMapEnvSource) ProtoMessage() {} func (*ConfigMapEnvSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{23} + return fileDescriptor_6c07b07c062484ab, []int{22} } func (m *ConfigMapEnvSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -724,7 +696,7 @@ var xxx_messageInfo_ConfigMapEnvSource proto.InternalMessageInfo func (m *ConfigMapKeySelector) Reset() { *m = ConfigMapKeySelector{} } func (*ConfigMapKeySelector) ProtoMessage() {} func (*ConfigMapKeySelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{24} + return fileDescriptor_6c07b07c062484ab, []int{23} } func (m *ConfigMapKeySelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -752,7 +724,7 @@ var xxx_messageInfo_ConfigMapKeySelector proto.InternalMessageInfo func (m *ConfigMapList) Reset() { *m = ConfigMapList{} } func (*ConfigMapList) ProtoMessage() {} func (*ConfigMapList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{25} + return fileDescriptor_6c07b07c062484ab, []int{24} } func (m *ConfigMapList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -780,7 +752,7 @@ var xxx_messageInfo_ConfigMapList proto.InternalMessageInfo func (m *ConfigMapNodeConfigSource) Reset() { *m = ConfigMapNodeConfigSource{} } func (*ConfigMapNodeConfigSource) ProtoMessage() {} func (*ConfigMapNodeConfigSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{26} + return fileDescriptor_6c07b07c062484ab, []int{25} } func (m *ConfigMapNodeConfigSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -808,7 +780,7 @@ var xxx_messageInfo_ConfigMapNodeConfigSource proto.InternalMessageInfo func (m *ConfigMapProjection) Reset() { *m = ConfigMapProjection{} } func (*ConfigMapProjection) ProtoMessage() {} func (*ConfigMapProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{27} + return fileDescriptor_6c07b07c062484ab, []int{26} } func (m *ConfigMapProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -836,7 +808,7 @@ var xxx_messageInfo_ConfigMapProjection proto.InternalMessageInfo func (m *ConfigMapVolumeSource) Reset() { *m = ConfigMapVolumeSource{} } func (*ConfigMapVolumeSource) ProtoMessage() {} func (*ConfigMapVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{28} + return fileDescriptor_6c07b07c062484ab, []int{27} } func (m *ConfigMapVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -864,7 +836,7 @@ var xxx_messageInfo_ConfigMapVolumeSource proto.InternalMessageInfo func (m *Container) Reset() { *m = Container{} } func (*Container) ProtoMessage() {} func (*Container) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{29} + return fileDescriptor_6c07b07c062484ab, []int{28} } func (m *Container) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -892,7 +864,7 @@ var xxx_messageInfo_Container proto.InternalMessageInfo func (m *ContainerImage) Reset() { *m = ContainerImage{} } func (*ContainerImage) ProtoMessage() {} func (*ContainerImage) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{30} + return fileDescriptor_6c07b07c062484ab, []int{29} } func (m *ContainerImage) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -920,7 +892,7 @@ var xxx_messageInfo_ContainerImage proto.InternalMessageInfo func (m *ContainerPort) Reset() { *m = ContainerPort{} } func (*ContainerPort) ProtoMessage() {} func (*ContainerPort) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{31} + return fileDescriptor_6c07b07c062484ab, []int{30} } func (m *ContainerPort) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -948,7 +920,7 @@ var xxx_messageInfo_ContainerPort proto.InternalMessageInfo func (m *ContainerResizePolicy) Reset() { *m = ContainerResizePolicy{} } func (*ContainerResizePolicy) ProtoMessage() {} func (*ContainerResizePolicy) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{32} + return fileDescriptor_6c07b07c062484ab, []int{31} } func (m *ContainerResizePolicy) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -976,7 +948,7 @@ var xxx_messageInfo_ContainerResizePolicy proto.InternalMessageInfo func (m *ContainerState) Reset() { *m = ContainerState{} } func (*ContainerState) ProtoMessage() {} func (*ContainerState) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{33} + return fileDescriptor_6c07b07c062484ab, []int{32} } func (m *ContainerState) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1004,7 +976,7 @@ var xxx_messageInfo_ContainerState proto.InternalMessageInfo func (m *ContainerStateRunning) Reset() { *m = ContainerStateRunning{} } func (*ContainerStateRunning) ProtoMessage() {} func (*ContainerStateRunning) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{34} + return fileDescriptor_6c07b07c062484ab, []int{33} } func (m *ContainerStateRunning) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1032,7 +1004,7 @@ var xxx_messageInfo_ContainerStateRunning proto.InternalMessageInfo func (m *ContainerStateTerminated) Reset() { *m = ContainerStateTerminated{} } func (*ContainerStateTerminated) ProtoMessage() {} func (*ContainerStateTerminated) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{35} + return fileDescriptor_6c07b07c062484ab, []int{34} } func (m *ContainerStateTerminated) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1060,7 +1032,7 @@ var xxx_messageInfo_ContainerStateTerminated proto.InternalMessageInfo func (m *ContainerStateWaiting) Reset() { *m = ContainerStateWaiting{} } func (*ContainerStateWaiting) ProtoMessage() {} func (*ContainerStateWaiting) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{36} + return fileDescriptor_6c07b07c062484ab, []int{35} } func (m *ContainerStateWaiting) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1088,7 +1060,7 @@ var xxx_messageInfo_ContainerStateWaiting proto.InternalMessageInfo func (m *ContainerStatus) Reset() { *m = ContainerStatus{} } func (*ContainerStatus) ProtoMessage() {} func (*ContainerStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{37} + return fileDescriptor_6c07b07c062484ab, []int{36} } func (m *ContainerStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1113,6 +1085,34 @@ func (m *ContainerStatus) XXX_DiscardUnknown() { var xxx_messageInfo_ContainerStatus proto.InternalMessageInfo +func (m *ContainerUser) Reset() { *m = ContainerUser{} } +func (*ContainerUser) ProtoMessage() {} +func (*ContainerUser) Descriptor() ([]byte, []int) { + return fileDescriptor_6c07b07c062484ab, []int{37} +} +func (m *ContainerUser) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ContainerUser) 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 *ContainerUser) XXX_Merge(src proto.Message) { + xxx_messageInfo_ContainerUser.Merge(m, src) +} +func (m *ContainerUser) XXX_Size() int { + return m.Size() +} +func (m *ContainerUser) XXX_DiscardUnknown() { + xxx_messageInfo_ContainerUser.DiscardUnknown(m) +} + +var xxx_messageInfo_ContainerUser proto.InternalMessageInfo + func (m *DaemonEndpoint) Reset() { *m = DaemonEndpoint{} } func (*DaemonEndpoint) ProtoMessage() {} func (*DaemonEndpoint) Descriptor() ([]byte, []int) { @@ -2149,10 +2149,38 @@ func (m *ISCSIVolumeSource) XXX_DiscardUnknown() { var xxx_messageInfo_ISCSIVolumeSource proto.InternalMessageInfo +func (m *ImageVolumeSource) Reset() { *m = ImageVolumeSource{} } +func (*ImageVolumeSource) ProtoMessage() {} +func (*ImageVolumeSource) Descriptor() ([]byte, []int) { + return fileDescriptor_6c07b07c062484ab, []int{75} +} +func (m *ImageVolumeSource) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ImageVolumeSource) 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 *ImageVolumeSource) XXX_Merge(src proto.Message) { + xxx_messageInfo_ImageVolumeSource.Merge(m, src) +} +func (m *ImageVolumeSource) XXX_Size() int { + return m.Size() +} +func (m *ImageVolumeSource) XXX_DiscardUnknown() { + xxx_messageInfo_ImageVolumeSource.DiscardUnknown(m) +} + +var xxx_messageInfo_ImageVolumeSource proto.InternalMessageInfo + func (m *KeyToPath) Reset() { *m = KeyToPath{} } func (*KeyToPath) ProtoMessage() {} func (*KeyToPath) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{75} + return fileDescriptor_6c07b07c062484ab, []int{76} } func (m *KeyToPath) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2180,7 +2208,7 @@ var xxx_messageInfo_KeyToPath proto.InternalMessageInfo func (m *Lifecycle) Reset() { *m = Lifecycle{} } func (*Lifecycle) ProtoMessage() {} func (*Lifecycle) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{76} + return fileDescriptor_6c07b07c062484ab, []int{77} } func (m *Lifecycle) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2208,7 +2236,7 @@ var xxx_messageInfo_Lifecycle proto.InternalMessageInfo func (m *LifecycleHandler) Reset() { *m = LifecycleHandler{} } func (*LifecycleHandler) ProtoMessage() {} func (*LifecycleHandler) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{77} + return fileDescriptor_6c07b07c062484ab, []int{78} } func (m *LifecycleHandler) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2236,7 +2264,7 @@ var xxx_messageInfo_LifecycleHandler proto.InternalMessageInfo func (m *LimitRange) Reset() { *m = LimitRange{} } func (*LimitRange) ProtoMessage() {} func (*LimitRange) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{78} + return fileDescriptor_6c07b07c062484ab, []int{79} } func (m *LimitRange) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2264,7 +2292,7 @@ var xxx_messageInfo_LimitRange proto.InternalMessageInfo func (m *LimitRangeItem) Reset() { *m = LimitRangeItem{} } func (*LimitRangeItem) ProtoMessage() {} func (*LimitRangeItem) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{79} + return fileDescriptor_6c07b07c062484ab, []int{80} } func (m *LimitRangeItem) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2292,7 +2320,7 @@ var xxx_messageInfo_LimitRangeItem proto.InternalMessageInfo func (m *LimitRangeList) Reset() { *m = LimitRangeList{} } func (*LimitRangeList) ProtoMessage() {} func (*LimitRangeList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{80} + return fileDescriptor_6c07b07c062484ab, []int{81} } func (m *LimitRangeList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2320,7 +2348,7 @@ var xxx_messageInfo_LimitRangeList proto.InternalMessageInfo func (m *LimitRangeSpec) Reset() { *m = LimitRangeSpec{} } func (*LimitRangeSpec) ProtoMessage() {} func (*LimitRangeSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{81} + return fileDescriptor_6c07b07c062484ab, []int{82} } func (m *LimitRangeSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2345,10 +2373,38 @@ func (m *LimitRangeSpec) XXX_DiscardUnknown() { var xxx_messageInfo_LimitRangeSpec proto.InternalMessageInfo +func (m *LinuxContainerUser) Reset() { *m = LinuxContainerUser{} } +func (*LinuxContainerUser) ProtoMessage() {} +func (*LinuxContainerUser) Descriptor() ([]byte, []int) { + return fileDescriptor_6c07b07c062484ab, []int{83} +} +func (m *LinuxContainerUser) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *LinuxContainerUser) 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 *LinuxContainerUser) XXX_Merge(src proto.Message) { + xxx_messageInfo_LinuxContainerUser.Merge(m, src) +} +func (m *LinuxContainerUser) XXX_Size() int { + return m.Size() +} +func (m *LinuxContainerUser) XXX_DiscardUnknown() { + xxx_messageInfo_LinuxContainerUser.DiscardUnknown(m) +} + +var xxx_messageInfo_LinuxContainerUser proto.InternalMessageInfo + func (m *List) Reset() { *m = List{} } func (*List) ProtoMessage() {} func (*List) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{82} + return fileDescriptor_6c07b07c062484ab, []int{84} } func (m *List) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2376,7 +2432,7 @@ var xxx_messageInfo_List proto.InternalMessageInfo func (m *LoadBalancerIngress) Reset() { *m = LoadBalancerIngress{} } func (*LoadBalancerIngress) ProtoMessage() {} func (*LoadBalancerIngress) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{83} + return fileDescriptor_6c07b07c062484ab, []int{85} } func (m *LoadBalancerIngress) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2404,7 +2460,7 @@ var xxx_messageInfo_LoadBalancerIngress proto.InternalMessageInfo func (m *LoadBalancerStatus) Reset() { *m = LoadBalancerStatus{} } func (*LoadBalancerStatus) ProtoMessage() {} func (*LoadBalancerStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{84} + return fileDescriptor_6c07b07c062484ab, []int{86} } func (m *LoadBalancerStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2432,7 +2488,7 @@ var xxx_messageInfo_LoadBalancerStatus proto.InternalMessageInfo func (m *LocalObjectReference) Reset() { *m = LocalObjectReference{} } func (*LocalObjectReference) ProtoMessage() {} func (*LocalObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{85} + return fileDescriptor_6c07b07c062484ab, []int{87} } func (m *LocalObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2460,7 +2516,7 @@ var xxx_messageInfo_LocalObjectReference proto.InternalMessageInfo func (m *LocalVolumeSource) Reset() { *m = LocalVolumeSource{} } func (*LocalVolumeSource) ProtoMessage() {} func (*LocalVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{86} + return fileDescriptor_6c07b07c062484ab, []int{88} } func (m *LocalVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2488,7 +2544,7 @@ var xxx_messageInfo_LocalVolumeSource proto.InternalMessageInfo func (m *ModifyVolumeStatus) Reset() { *m = ModifyVolumeStatus{} } func (*ModifyVolumeStatus) ProtoMessage() {} func (*ModifyVolumeStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{87} + return fileDescriptor_6c07b07c062484ab, []int{89} } func (m *ModifyVolumeStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2516,7 +2572,7 @@ var xxx_messageInfo_ModifyVolumeStatus proto.InternalMessageInfo func (m *NFSVolumeSource) Reset() { *m = NFSVolumeSource{} } func (*NFSVolumeSource) ProtoMessage() {} func (*NFSVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{88} + return fileDescriptor_6c07b07c062484ab, []int{90} } func (m *NFSVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2544,7 +2600,7 @@ var xxx_messageInfo_NFSVolumeSource proto.InternalMessageInfo func (m *Namespace) Reset() { *m = Namespace{} } func (*Namespace) ProtoMessage() {} func (*Namespace) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{89} + return fileDescriptor_6c07b07c062484ab, []int{91} } func (m *Namespace) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2572,7 +2628,7 @@ var xxx_messageInfo_Namespace proto.InternalMessageInfo func (m *NamespaceCondition) Reset() { *m = NamespaceCondition{} } func (*NamespaceCondition) ProtoMessage() {} func (*NamespaceCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{90} + return fileDescriptor_6c07b07c062484ab, []int{92} } func (m *NamespaceCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2600,7 +2656,7 @@ var xxx_messageInfo_NamespaceCondition proto.InternalMessageInfo func (m *NamespaceList) Reset() { *m = NamespaceList{} } func (*NamespaceList) ProtoMessage() {} func (*NamespaceList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{91} + return fileDescriptor_6c07b07c062484ab, []int{93} } func (m *NamespaceList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2628,7 +2684,7 @@ var xxx_messageInfo_NamespaceList proto.InternalMessageInfo func (m *NamespaceSpec) Reset() { *m = NamespaceSpec{} } func (*NamespaceSpec) ProtoMessage() {} func (*NamespaceSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{92} + return fileDescriptor_6c07b07c062484ab, []int{94} } func (m *NamespaceSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2656,7 +2712,7 @@ var xxx_messageInfo_NamespaceSpec proto.InternalMessageInfo func (m *NamespaceStatus) Reset() { *m = NamespaceStatus{} } func (*NamespaceStatus) ProtoMessage() {} func (*NamespaceStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{93} + return fileDescriptor_6c07b07c062484ab, []int{95} } func (m *NamespaceStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2684,7 +2740,7 @@ var xxx_messageInfo_NamespaceStatus proto.InternalMessageInfo func (m *Node) Reset() { *m = Node{} } func (*Node) ProtoMessage() {} func (*Node) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{94} + return fileDescriptor_6c07b07c062484ab, []int{96} } func (m *Node) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2712,7 +2768,7 @@ var xxx_messageInfo_Node proto.InternalMessageInfo func (m *NodeAddress) Reset() { *m = NodeAddress{} } func (*NodeAddress) ProtoMessage() {} func (*NodeAddress) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{95} + return fileDescriptor_6c07b07c062484ab, []int{97} } func (m *NodeAddress) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2740,7 +2796,7 @@ var xxx_messageInfo_NodeAddress proto.InternalMessageInfo func (m *NodeAffinity) Reset() { *m = NodeAffinity{} } func (*NodeAffinity) ProtoMessage() {} func (*NodeAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{96} + return fileDescriptor_6c07b07c062484ab, []int{98} } func (m *NodeAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2768,7 +2824,7 @@ var xxx_messageInfo_NodeAffinity proto.InternalMessageInfo func (m *NodeCondition) Reset() { *m = NodeCondition{} } func (*NodeCondition) ProtoMessage() {} func (*NodeCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{97} + return fileDescriptor_6c07b07c062484ab, []int{99} } func (m *NodeCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2796,7 +2852,7 @@ var xxx_messageInfo_NodeCondition proto.InternalMessageInfo func (m *NodeConfigSource) Reset() { *m = NodeConfigSource{} } func (*NodeConfigSource) ProtoMessage() {} func (*NodeConfigSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{98} + return fileDescriptor_6c07b07c062484ab, []int{100} } func (m *NodeConfigSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2824,7 +2880,7 @@ var xxx_messageInfo_NodeConfigSource proto.InternalMessageInfo func (m *NodeConfigStatus) Reset() { *m = NodeConfigStatus{} } func (*NodeConfigStatus) ProtoMessage() {} func (*NodeConfigStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{99} + return fileDescriptor_6c07b07c062484ab, []int{101} } func (m *NodeConfigStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2852,7 +2908,7 @@ var xxx_messageInfo_NodeConfigStatus proto.InternalMessageInfo func (m *NodeDaemonEndpoints) Reset() { *m = NodeDaemonEndpoints{} } func (*NodeDaemonEndpoints) ProtoMessage() {} func (*NodeDaemonEndpoints) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{100} + return fileDescriptor_6c07b07c062484ab, []int{102} } func (m *NodeDaemonEndpoints) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2877,10 +2933,38 @@ func (m *NodeDaemonEndpoints) XXX_DiscardUnknown() { var xxx_messageInfo_NodeDaemonEndpoints proto.InternalMessageInfo +func (m *NodeFeatures) Reset() { *m = NodeFeatures{} } +func (*NodeFeatures) ProtoMessage() {} +func (*NodeFeatures) Descriptor() ([]byte, []int) { + return fileDescriptor_6c07b07c062484ab, []int{103} +} +func (m *NodeFeatures) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *NodeFeatures) 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 *NodeFeatures) XXX_Merge(src proto.Message) { + xxx_messageInfo_NodeFeatures.Merge(m, src) +} +func (m *NodeFeatures) XXX_Size() int { + return m.Size() +} +func (m *NodeFeatures) XXX_DiscardUnknown() { + xxx_messageInfo_NodeFeatures.DiscardUnknown(m) +} + +var xxx_messageInfo_NodeFeatures proto.InternalMessageInfo + func (m *NodeList) Reset() { *m = NodeList{} } func (*NodeList) ProtoMessage() {} func (*NodeList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{101} + return fileDescriptor_6c07b07c062484ab, []int{104} } func (m *NodeList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2908,7 +2992,7 @@ var xxx_messageInfo_NodeList proto.InternalMessageInfo func (m *NodeProxyOptions) Reset() { *m = NodeProxyOptions{} } func (*NodeProxyOptions) ProtoMessage() {} func (*NodeProxyOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{102} + return fileDescriptor_6c07b07c062484ab, []int{105} } func (m *NodeProxyOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2936,7 +3020,7 @@ var xxx_messageInfo_NodeProxyOptions proto.InternalMessageInfo func (m *NodeRuntimeHandler) Reset() { *m = NodeRuntimeHandler{} } func (*NodeRuntimeHandler) ProtoMessage() {} func (*NodeRuntimeHandler) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{103} + return fileDescriptor_6c07b07c062484ab, []int{106} } func (m *NodeRuntimeHandler) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2964,7 +3048,7 @@ var xxx_messageInfo_NodeRuntimeHandler proto.InternalMessageInfo func (m *NodeRuntimeHandlerFeatures) Reset() { *m = NodeRuntimeHandlerFeatures{} } func (*NodeRuntimeHandlerFeatures) ProtoMessage() {} func (*NodeRuntimeHandlerFeatures) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{104} + return fileDescriptor_6c07b07c062484ab, []int{107} } func (m *NodeRuntimeHandlerFeatures) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -2992,7 +3076,7 @@ var xxx_messageInfo_NodeRuntimeHandlerFeatures proto.InternalMessageInfo func (m *NodeSelector) Reset() { *m = NodeSelector{} } func (*NodeSelector) ProtoMessage() {} func (*NodeSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{105} + return fileDescriptor_6c07b07c062484ab, []int{108} } func (m *NodeSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3020,7 +3104,7 @@ var xxx_messageInfo_NodeSelector proto.InternalMessageInfo func (m *NodeSelectorRequirement) Reset() { *m = NodeSelectorRequirement{} } func (*NodeSelectorRequirement) ProtoMessage() {} func (*NodeSelectorRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{106} + return fileDescriptor_6c07b07c062484ab, []int{109} } func (m *NodeSelectorRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3048,7 +3132,7 @@ var xxx_messageInfo_NodeSelectorRequirement proto.InternalMessageInfo func (m *NodeSelectorTerm) Reset() { *m = NodeSelectorTerm{} } func (*NodeSelectorTerm) ProtoMessage() {} func (*NodeSelectorTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{107} + return fileDescriptor_6c07b07c062484ab, []int{110} } func (m *NodeSelectorTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3076,7 +3160,7 @@ var xxx_messageInfo_NodeSelectorTerm proto.InternalMessageInfo func (m *NodeSpec) Reset() { *m = NodeSpec{} } func (*NodeSpec) ProtoMessage() {} func (*NodeSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{108} + return fileDescriptor_6c07b07c062484ab, []int{111} } func (m *NodeSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3104,7 +3188,7 @@ var xxx_messageInfo_NodeSpec proto.InternalMessageInfo func (m *NodeStatus) Reset() { *m = NodeStatus{} } func (*NodeStatus) ProtoMessage() {} func (*NodeStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{109} + return fileDescriptor_6c07b07c062484ab, []int{112} } func (m *NodeStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3132,7 +3216,7 @@ var xxx_messageInfo_NodeStatus proto.InternalMessageInfo func (m *NodeSystemInfo) Reset() { *m = NodeSystemInfo{} } func (*NodeSystemInfo) ProtoMessage() {} func (*NodeSystemInfo) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{110} + return fileDescriptor_6c07b07c062484ab, []int{113} } func (m *NodeSystemInfo) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3160,7 +3244,7 @@ var xxx_messageInfo_NodeSystemInfo proto.InternalMessageInfo func (m *ObjectFieldSelector) Reset() { *m = ObjectFieldSelector{} } func (*ObjectFieldSelector) ProtoMessage() {} func (*ObjectFieldSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{111} + return fileDescriptor_6c07b07c062484ab, []int{114} } func (m *ObjectFieldSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3188,7 +3272,7 @@ var xxx_messageInfo_ObjectFieldSelector proto.InternalMessageInfo func (m *ObjectReference) Reset() { *m = ObjectReference{} } func (*ObjectReference) ProtoMessage() {} func (*ObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{112} + return fileDescriptor_6c07b07c062484ab, []int{115} } func (m *ObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3216,7 +3300,7 @@ var xxx_messageInfo_ObjectReference proto.InternalMessageInfo func (m *PersistentVolume) Reset() { *m = PersistentVolume{} } func (*PersistentVolume) ProtoMessage() {} func (*PersistentVolume) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{113} + return fileDescriptor_6c07b07c062484ab, []int{116} } func (m *PersistentVolume) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3244,7 +3328,7 @@ var xxx_messageInfo_PersistentVolume proto.InternalMessageInfo func (m *PersistentVolumeClaim) Reset() { *m = PersistentVolumeClaim{} } func (*PersistentVolumeClaim) ProtoMessage() {} func (*PersistentVolumeClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{114} + return fileDescriptor_6c07b07c062484ab, []int{117} } func (m *PersistentVolumeClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3272,7 +3356,7 @@ var xxx_messageInfo_PersistentVolumeClaim proto.InternalMessageInfo func (m *PersistentVolumeClaimCondition) Reset() { *m = PersistentVolumeClaimCondition{} } func (*PersistentVolumeClaimCondition) ProtoMessage() {} func (*PersistentVolumeClaimCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{115} + return fileDescriptor_6c07b07c062484ab, []int{118} } func (m *PersistentVolumeClaimCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3300,7 +3384,7 @@ var xxx_messageInfo_PersistentVolumeClaimCondition proto.InternalMessageInfo func (m *PersistentVolumeClaimList) Reset() { *m = PersistentVolumeClaimList{} } func (*PersistentVolumeClaimList) ProtoMessage() {} func (*PersistentVolumeClaimList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{116} + return fileDescriptor_6c07b07c062484ab, []int{119} } func (m *PersistentVolumeClaimList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3328,7 +3412,7 @@ var xxx_messageInfo_PersistentVolumeClaimList proto.InternalMessageInfo func (m *PersistentVolumeClaimSpec) Reset() { *m = PersistentVolumeClaimSpec{} } func (*PersistentVolumeClaimSpec) ProtoMessage() {} func (*PersistentVolumeClaimSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{117} + return fileDescriptor_6c07b07c062484ab, []int{120} } func (m *PersistentVolumeClaimSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3356,7 +3440,7 @@ var xxx_messageInfo_PersistentVolumeClaimSpec proto.InternalMessageInfo func (m *PersistentVolumeClaimStatus) Reset() { *m = PersistentVolumeClaimStatus{} } func (*PersistentVolumeClaimStatus) ProtoMessage() {} func (*PersistentVolumeClaimStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{118} + return fileDescriptor_6c07b07c062484ab, []int{121} } func (m *PersistentVolumeClaimStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3384,7 +3468,7 @@ var xxx_messageInfo_PersistentVolumeClaimStatus proto.InternalMessageInfo func (m *PersistentVolumeClaimTemplate) Reset() { *m = PersistentVolumeClaimTemplate{} } func (*PersistentVolumeClaimTemplate) ProtoMessage() {} func (*PersistentVolumeClaimTemplate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{119} + return fileDescriptor_6c07b07c062484ab, []int{122} } func (m *PersistentVolumeClaimTemplate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3412,7 +3496,7 @@ var xxx_messageInfo_PersistentVolumeClaimTemplate proto.InternalMessageInfo func (m *PersistentVolumeClaimVolumeSource) Reset() { *m = PersistentVolumeClaimVolumeSource{} } func (*PersistentVolumeClaimVolumeSource) ProtoMessage() {} func (*PersistentVolumeClaimVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{120} + return fileDescriptor_6c07b07c062484ab, []int{123} } func (m *PersistentVolumeClaimVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3440,7 +3524,7 @@ var xxx_messageInfo_PersistentVolumeClaimVolumeSource proto.InternalMessageInfo func (m *PersistentVolumeList) Reset() { *m = PersistentVolumeList{} } func (*PersistentVolumeList) ProtoMessage() {} func (*PersistentVolumeList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{121} + return fileDescriptor_6c07b07c062484ab, []int{124} } func (m *PersistentVolumeList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3468,7 +3552,7 @@ var xxx_messageInfo_PersistentVolumeList proto.InternalMessageInfo func (m *PersistentVolumeSource) Reset() { *m = PersistentVolumeSource{} } func (*PersistentVolumeSource) ProtoMessage() {} func (*PersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{122} + return fileDescriptor_6c07b07c062484ab, []int{125} } func (m *PersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3496,7 +3580,7 @@ var xxx_messageInfo_PersistentVolumeSource proto.InternalMessageInfo func (m *PersistentVolumeSpec) Reset() { *m = PersistentVolumeSpec{} } func (*PersistentVolumeSpec) ProtoMessage() {} func (*PersistentVolumeSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{123} + return fileDescriptor_6c07b07c062484ab, []int{126} } func (m *PersistentVolumeSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3524,7 +3608,7 @@ var xxx_messageInfo_PersistentVolumeSpec proto.InternalMessageInfo func (m *PersistentVolumeStatus) Reset() { *m = PersistentVolumeStatus{} } func (*PersistentVolumeStatus) ProtoMessage() {} func (*PersistentVolumeStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{124} + return fileDescriptor_6c07b07c062484ab, []int{127} } func (m *PersistentVolumeStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3552,7 +3636,7 @@ var xxx_messageInfo_PersistentVolumeStatus proto.InternalMessageInfo func (m *PhotonPersistentDiskVolumeSource) Reset() { *m = PhotonPersistentDiskVolumeSource{} } func (*PhotonPersistentDiskVolumeSource) ProtoMessage() {} func (*PhotonPersistentDiskVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{125} + return fileDescriptor_6c07b07c062484ab, []int{128} } func (m *PhotonPersistentDiskVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3580,7 +3664,7 @@ var xxx_messageInfo_PhotonPersistentDiskVolumeSource proto.InternalMessageInfo func (m *Pod) Reset() { *m = Pod{} } func (*Pod) ProtoMessage() {} func (*Pod) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{126} + return fileDescriptor_6c07b07c062484ab, []int{129} } func (m *Pod) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3608,7 +3692,7 @@ var xxx_messageInfo_Pod proto.InternalMessageInfo func (m *PodAffinity) Reset() { *m = PodAffinity{} } func (*PodAffinity) ProtoMessage() {} func (*PodAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{127} + return fileDescriptor_6c07b07c062484ab, []int{130} } func (m *PodAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3636,7 +3720,7 @@ var xxx_messageInfo_PodAffinity proto.InternalMessageInfo func (m *PodAffinityTerm) Reset() { *m = PodAffinityTerm{} } func (*PodAffinityTerm) ProtoMessage() {} func (*PodAffinityTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{128} + return fileDescriptor_6c07b07c062484ab, []int{131} } func (m *PodAffinityTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3664,7 +3748,7 @@ var xxx_messageInfo_PodAffinityTerm proto.InternalMessageInfo func (m *PodAntiAffinity) Reset() { *m = PodAntiAffinity{} } func (*PodAntiAffinity) ProtoMessage() {} func (*PodAntiAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{129} + return fileDescriptor_6c07b07c062484ab, []int{132} } func (m *PodAntiAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3692,7 +3776,7 @@ var xxx_messageInfo_PodAntiAffinity proto.InternalMessageInfo func (m *PodAttachOptions) Reset() { *m = PodAttachOptions{} } func (*PodAttachOptions) ProtoMessage() {} func (*PodAttachOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{130} + return fileDescriptor_6c07b07c062484ab, []int{133} } func (m *PodAttachOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3720,7 +3804,7 @@ var xxx_messageInfo_PodAttachOptions proto.InternalMessageInfo func (m *PodCondition) Reset() { *m = PodCondition{} } func (*PodCondition) ProtoMessage() {} func (*PodCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{131} + return fileDescriptor_6c07b07c062484ab, []int{134} } func (m *PodCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3748,7 +3832,7 @@ var xxx_messageInfo_PodCondition proto.InternalMessageInfo func (m *PodDNSConfig) Reset() { *m = PodDNSConfig{} } func (*PodDNSConfig) ProtoMessage() {} func (*PodDNSConfig) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{132} + return fileDescriptor_6c07b07c062484ab, []int{135} } func (m *PodDNSConfig) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3776,7 +3860,7 @@ var xxx_messageInfo_PodDNSConfig proto.InternalMessageInfo func (m *PodDNSConfigOption) Reset() { *m = PodDNSConfigOption{} } func (*PodDNSConfigOption) ProtoMessage() {} func (*PodDNSConfigOption) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{133} + return fileDescriptor_6c07b07c062484ab, []int{136} } func (m *PodDNSConfigOption) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3804,7 +3888,7 @@ var xxx_messageInfo_PodDNSConfigOption proto.InternalMessageInfo func (m *PodExecOptions) Reset() { *m = PodExecOptions{} } func (*PodExecOptions) ProtoMessage() {} func (*PodExecOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{134} + return fileDescriptor_6c07b07c062484ab, []int{137} } func (m *PodExecOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3832,7 +3916,7 @@ var xxx_messageInfo_PodExecOptions proto.InternalMessageInfo func (m *PodIP) Reset() { *m = PodIP{} } func (*PodIP) ProtoMessage() {} func (*PodIP) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{135} + return fileDescriptor_6c07b07c062484ab, []int{138} } func (m *PodIP) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3860,7 +3944,7 @@ var xxx_messageInfo_PodIP proto.InternalMessageInfo func (m *PodList) Reset() { *m = PodList{} } func (*PodList) ProtoMessage() {} func (*PodList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{136} + return fileDescriptor_6c07b07c062484ab, []int{139} } func (m *PodList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3888,7 +3972,7 @@ var xxx_messageInfo_PodList proto.InternalMessageInfo func (m *PodLogOptions) Reset() { *m = PodLogOptions{} } func (*PodLogOptions) ProtoMessage() {} func (*PodLogOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{137} + return fileDescriptor_6c07b07c062484ab, []int{140} } func (m *PodLogOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3916,7 +4000,7 @@ var xxx_messageInfo_PodLogOptions proto.InternalMessageInfo func (m *PodOS) Reset() { *m = PodOS{} } func (*PodOS) ProtoMessage() {} func (*PodOS) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{138} + return fileDescriptor_6c07b07c062484ab, []int{141} } func (m *PodOS) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3944,7 +4028,7 @@ var xxx_messageInfo_PodOS proto.InternalMessageInfo func (m *PodPortForwardOptions) Reset() { *m = PodPortForwardOptions{} } func (*PodPortForwardOptions) ProtoMessage() {} func (*PodPortForwardOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{139} + return fileDescriptor_6c07b07c062484ab, []int{142} } func (m *PodPortForwardOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -3972,7 +4056,7 @@ var xxx_messageInfo_PodPortForwardOptions proto.InternalMessageInfo func (m *PodProxyOptions) Reset() { *m = PodProxyOptions{} } func (*PodProxyOptions) ProtoMessage() {} func (*PodProxyOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{140} + return fileDescriptor_6c07b07c062484ab, []int{143} } func (m *PodProxyOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4000,7 +4084,7 @@ var xxx_messageInfo_PodProxyOptions proto.InternalMessageInfo func (m *PodReadinessGate) Reset() { *m = PodReadinessGate{} } func (*PodReadinessGate) ProtoMessage() {} func (*PodReadinessGate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{141} + return fileDescriptor_6c07b07c062484ab, []int{144} } func (m *PodReadinessGate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4028,7 +4112,7 @@ var xxx_messageInfo_PodReadinessGate proto.InternalMessageInfo func (m *PodResourceClaim) Reset() { *m = PodResourceClaim{} } func (*PodResourceClaim) ProtoMessage() {} func (*PodResourceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{142} + return fileDescriptor_6c07b07c062484ab, []int{145} } func (m *PodResourceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4056,7 +4140,7 @@ var xxx_messageInfo_PodResourceClaim proto.InternalMessageInfo func (m *PodResourceClaimStatus) Reset() { *m = PodResourceClaimStatus{} } func (*PodResourceClaimStatus) ProtoMessage() {} func (*PodResourceClaimStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{143} + return fileDescriptor_6c07b07c062484ab, []int{146} } func (m *PodResourceClaimStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4084,7 +4168,7 @@ var xxx_messageInfo_PodResourceClaimStatus proto.InternalMessageInfo func (m *PodSchedulingGate) Reset() { *m = PodSchedulingGate{} } func (*PodSchedulingGate) ProtoMessage() {} func (*PodSchedulingGate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{144} + return fileDescriptor_6c07b07c062484ab, []int{147} } func (m *PodSchedulingGate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4112,7 +4196,7 @@ var xxx_messageInfo_PodSchedulingGate proto.InternalMessageInfo func (m *PodSecurityContext) Reset() { *m = PodSecurityContext{} } func (*PodSecurityContext) ProtoMessage() {} func (*PodSecurityContext) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{145} + return fileDescriptor_6c07b07c062484ab, []int{148} } func (m *PodSecurityContext) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4140,7 +4224,7 @@ var xxx_messageInfo_PodSecurityContext proto.InternalMessageInfo func (m *PodSignature) Reset() { *m = PodSignature{} } func (*PodSignature) ProtoMessage() {} func (*PodSignature) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{146} + return fileDescriptor_6c07b07c062484ab, []int{149} } func (m *PodSignature) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4168,7 +4252,7 @@ var xxx_messageInfo_PodSignature proto.InternalMessageInfo func (m *PodSpec) Reset() { *m = PodSpec{} } func (*PodSpec) ProtoMessage() {} func (*PodSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{147} + return fileDescriptor_6c07b07c062484ab, []int{150} } func (m *PodSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4196,7 +4280,7 @@ var xxx_messageInfo_PodSpec proto.InternalMessageInfo func (m *PodStatus) Reset() { *m = PodStatus{} } func (*PodStatus) ProtoMessage() {} func (*PodStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{148} + return fileDescriptor_6c07b07c062484ab, []int{151} } func (m *PodStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4224,7 +4308,7 @@ var xxx_messageInfo_PodStatus proto.InternalMessageInfo func (m *PodStatusResult) Reset() { *m = PodStatusResult{} } func (*PodStatusResult) ProtoMessage() {} func (*PodStatusResult) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{149} + return fileDescriptor_6c07b07c062484ab, []int{152} } func (m *PodStatusResult) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4252,7 +4336,7 @@ var xxx_messageInfo_PodStatusResult proto.InternalMessageInfo func (m *PodTemplate) Reset() { *m = PodTemplate{} } func (*PodTemplate) ProtoMessage() {} func (*PodTemplate) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{150} + return fileDescriptor_6c07b07c062484ab, []int{153} } func (m *PodTemplate) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4280,7 +4364,7 @@ var xxx_messageInfo_PodTemplate proto.InternalMessageInfo func (m *PodTemplateList) Reset() { *m = PodTemplateList{} } func (*PodTemplateList) ProtoMessage() {} func (*PodTemplateList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{151} + return fileDescriptor_6c07b07c062484ab, []int{154} } func (m *PodTemplateList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4308,7 +4392,7 @@ var xxx_messageInfo_PodTemplateList proto.InternalMessageInfo func (m *PodTemplateSpec) Reset() { *m = PodTemplateSpec{} } func (*PodTemplateSpec) ProtoMessage() {} func (*PodTemplateSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{152} + return fileDescriptor_6c07b07c062484ab, []int{155} } func (m *PodTemplateSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4336,7 +4420,7 @@ var xxx_messageInfo_PodTemplateSpec proto.InternalMessageInfo func (m *PortStatus) Reset() { *m = PortStatus{} } func (*PortStatus) ProtoMessage() {} func (*PortStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{153} + return fileDescriptor_6c07b07c062484ab, []int{156} } func (m *PortStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4364,7 +4448,7 @@ var xxx_messageInfo_PortStatus proto.InternalMessageInfo func (m *PortworxVolumeSource) Reset() { *m = PortworxVolumeSource{} } func (*PortworxVolumeSource) ProtoMessage() {} func (*PortworxVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{154} + return fileDescriptor_6c07b07c062484ab, []int{157} } func (m *PortworxVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4392,7 +4476,7 @@ var xxx_messageInfo_PortworxVolumeSource proto.InternalMessageInfo func (m *Preconditions) Reset() { *m = Preconditions{} } func (*Preconditions) ProtoMessage() {} func (*Preconditions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{155} + return fileDescriptor_6c07b07c062484ab, []int{158} } func (m *Preconditions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4420,7 +4504,7 @@ var xxx_messageInfo_Preconditions proto.InternalMessageInfo func (m *PreferAvoidPodsEntry) Reset() { *m = PreferAvoidPodsEntry{} } func (*PreferAvoidPodsEntry) ProtoMessage() {} func (*PreferAvoidPodsEntry) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{156} + return fileDescriptor_6c07b07c062484ab, []int{159} } func (m *PreferAvoidPodsEntry) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4448,7 +4532,7 @@ var xxx_messageInfo_PreferAvoidPodsEntry proto.InternalMessageInfo func (m *PreferredSchedulingTerm) Reset() { *m = PreferredSchedulingTerm{} } func (*PreferredSchedulingTerm) ProtoMessage() {} func (*PreferredSchedulingTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{157} + return fileDescriptor_6c07b07c062484ab, []int{160} } func (m *PreferredSchedulingTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4476,7 +4560,7 @@ var xxx_messageInfo_PreferredSchedulingTerm proto.InternalMessageInfo func (m *Probe) Reset() { *m = Probe{} } func (*Probe) ProtoMessage() {} func (*Probe) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{158} + return fileDescriptor_6c07b07c062484ab, []int{161} } func (m *Probe) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4504,7 +4588,7 @@ var xxx_messageInfo_Probe proto.InternalMessageInfo func (m *ProbeHandler) Reset() { *m = ProbeHandler{} } func (*ProbeHandler) ProtoMessage() {} func (*ProbeHandler) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{159} + return fileDescriptor_6c07b07c062484ab, []int{162} } func (m *ProbeHandler) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4532,7 +4616,7 @@ var xxx_messageInfo_ProbeHandler proto.InternalMessageInfo func (m *ProjectedVolumeSource) Reset() { *m = ProjectedVolumeSource{} } func (*ProjectedVolumeSource) ProtoMessage() {} func (*ProjectedVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{160} + return fileDescriptor_6c07b07c062484ab, []int{163} } func (m *ProjectedVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4560,7 +4644,7 @@ var xxx_messageInfo_ProjectedVolumeSource proto.InternalMessageInfo func (m *QuobyteVolumeSource) Reset() { *m = QuobyteVolumeSource{} } func (*QuobyteVolumeSource) ProtoMessage() {} func (*QuobyteVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{161} + return fileDescriptor_6c07b07c062484ab, []int{164} } func (m *QuobyteVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4588,7 +4672,7 @@ var xxx_messageInfo_QuobyteVolumeSource proto.InternalMessageInfo func (m *RBDPersistentVolumeSource) Reset() { *m = RBDPersistentVolumeSource{} } func (*RBDPersistentVolumeSource) ProtoMessage() {} func (*RBDPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{162} + return fileDescriptor_6c07b07c062484ab, []int{165} } func (m *RBDPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4616,7 +4700,7 @@ var xxx_messageInfo_RBDPersistentVolumeSource proto.InternalMessageInfo func (m *RBDVolumeSource) Reset() { *m = RBDVolumeSource{} } func (*RBDVolumeSource) ProtoMessage() {} func (*RBDVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{163} + return fileDescriptor_6c07b07c062484ab, []int{166} } func (m *RBDVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4644,7 +4728,7 @@ var xxx_messageInfo_RBDVolumeSource proto.InternalMessageInfo func (m *RangeAllocation) Reset() { *m = RangeAllocation{} } func (*RangeAllocation) ProtoMessage() {} func (*RangeAllocation) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{164} + return fileDescriptor_6c07b07c062484ab, []int{167} } func (m *RangeAllocation) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4672,7 +4756,7 @@ var xxx_messageInfo_RangeAllocation proto.InternalMessageInfo func (m *ReplicationController) Reset() { *m = ReplicationController{} } func (*ReplicationController) ProtoMessage() {} func (*ReplicationController) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{165} + return fileDescriptor_6c07b07c062484ab, []int{168} } func (m *ReplicationController) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4700,7 +4784,7 @@ var xxx_messageInfo_ReplicationController proto.InternalMessageInfo func (m *ReplicationControllerCondition) Reset() { *m = ReplicationControllerCondition{} } func (*ReplicationControllerCondition) ProtoMessage() {} func (*ReplicationControllerCondition) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{166} + return fileDescriptor_6c07b07c062484ab, []int{169} } func (m *ReplicationControllerCondition) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4728,7 +4812,7 @@ var xxx_messageInfo_ReplicationControllerCondition proto.InternalMessageInfo func (m *ReplicationControllerList) Reset() { *m = ReplicationControllerList{} } func (*ReplicationControllerList) ProtoMessage() {} func (*ReplicationControllerList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{167} + return fileDescriptor_6c07b07c062484ab, []int{170} } func (m *ReplicationControllerList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4756,7 +4840,7 @@ var xxx_messageInfo_ReplicationControllerList proto.InternalMessageInfo func (m *ReplicationControllerSpec) Reset() { *m = ReplicationControllerSpec{} } func (*ReplicationControllerSpec) ProtoMessage() {} func (*ReplicationControllerSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{168} + return fileDescriptor_6c07b07c062484ab, []int{171} } func (m *ReplicationControllerSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4784,7 +4868,7 @@ var xxx_messageInfo_ReplicationControllerSpec proto.InternalMessageInfo func (m *ReplicationControllerStatus) Reset() { *m = ReplicationControllerStatus{} } func (*ReplicationControllerStatus) ProtoMessage() {} func (*ReplicationControllerStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{169} + return fileDescriptor_6c07b07c062484ab, []int{172} } func (m *ReplicationControllerStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4812,7 +4896,7 @@ var xxx_messageInfo_ReplicationControllerStatus proto.InternalMessageInfo func (m *ResourceClaim) Reset() { *m = ResourceClaim{} } func (*ResourceClaim) ProtoMessage() {} func (*ResourceClaim) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{170} + return fileDescriptor_6c07b07c062484ab, []int{173} } func (m *ResourceClaim) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4840,7 +4924,7 @@ var xxx_messageInfo_ResourceClaim proto.InternalMessageInfo func (m *ResourceFieldSelector) Reset() { *m = ResourceFieldSelector{} } func (*ResourceFieldSelector) ProtoMessage() {} func (*ResourceFieldSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{171} + return fileDescriptor_6c07b07c062484ab, []int{174} } func (m *ResourceFieldSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4865,10 +4949,38 @@ func (m *ResourceFieldSelector) XXX_DiscardUnknown() { 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} +} +func (m *ResourceHealth) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ResourceHealth) 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 *ResourceHealth) XXX_Merge(src proto.Message) { + xxx_messageInfo_ResourceHealth.Merge(m, src) +} +func (m *ResourceHealth) XXX_Size() int { + return m.Size() +} +func (m *ResourceHealth) XXX_DiscardUnknown() { + xxx_messageInfo_ResourceHealth.DiscardUnknown(m) +} + +var xxx_messageInfo_ResourceHealth proto.InternalMessageInfo + func (m *ResourceQuota) Reset() { *m = ResourceQuota{} } func (*ResourceQuota) ProtoMessage() {} func (*ResourceQuota) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{172} + return fileDescriptor_6c07b07c062484ab, []int{176} } func (m *ResourceQuota) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4896,7 +5008,7 @@ var xxx_messageInfo_ResourceQuota proto.InternalMessageInfo func (m *ResourceQuotaList) Reset() { *m = ResourceQuotaList{} } func (*ResourceQuotaList) ProtoMessage() {} func (*ResourceQuotaList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{173} + return fileDescriptor_6c07b07c062484ab, []int{177} } func (m *ResourceQuotaList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4924,7 +5036,7 @@ var xxx_messageInfo_ResourceQuotaList proto.InternalMessageInfo func (m *ResourceQuotaSpec) Reset() { *m = ResourceQuotaSpec{} } func (*ResourceQuotaSpec) ProtoMessage() {} func (*ResourceQuotaSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{174} + return fileDescriptor_6c07b07c062484ab, []int{178} } func (m *ResourceQuotaSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4952,7 +5064,7 @@ var xxx_messageInfo_ResourceQuotaSpec proto.InternalMessageInfo func (m *ResourceQuotaStatus) Reset() { *m = ResourceQuotaStatus{} } func (*ResourceQuotaStatus) ProtoMessage() {} func (*ResourceQuotaStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{175} + return fileDescriptor_6c07b07c062484ab, []int{179} } func (m *ResourceQuotaStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -4980,7 +5092,7 @@ var xxx_messageInfo_ResourceQuotaStatus proto.InternalMessageInfo func (m *ResourceRequirements) Reset() { *m = ResourceRequirements{} } func (*ResourceRequirements) ProtoMessage() {} func (*ResourceRequirements) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{176} + return fileDescriptor_6c07b07c062484ab, []int{180} } func (m *ResourceRequirements) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5005,10 +5117,38 @@ func (m *ResourceRequirements) XXX_DiscardUnknown() { 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} +} +func (m *ResourceStatus) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *ResourceStatus) 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 *ResourceStatus) XXX_Merge(src proto.Message) { + xxx_messageInfo_ResourceStatus.Merge(m, src) +} +func (m *ResourceStatus) XXX_Size() int { + return m.Size() +} +func (m *ResourceStatus) XXX_DiscardUnknown() { + xxx_messageInfo_ResourceStatus.DiscardUnknown(m) +} + +var xxx_messageInfo_ResourceStatus proto.InternalMessageInfo + func (m *SELinuxOptions) Reset() { *m = SELinuxOptions{} } func (*SELinuxOptions) ProtoMessage() {} func (*SELinuxOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{177} + return fileDescriptor_6c07b07c062484ab, []int{182} } func (m *SELinuxOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5036,7 +5176,7 @@ var xxx_messageInfo_SELinuxOptions proto.InternalMessageInfo func (m *ScaleIOPersistentVolumeSource) Reset() { *m = ScaleIOPersistentVolumeSource{} } func (*ScaleIOPersistentVolumeSource) ProtoMessage() {} func (*ScaleIOPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{178} + return fileDescriptor_6c07b07c062484ab, []int{183} } func (m *ScaleIOPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5064,7 +5204,7 @@ var xxx_messageInfo_ScaleIOPersistentVolumeSource proto.InternalMessageInfo func (m *ScaleIOVolumeSource) Reset() { *m = ScaleIOVolumeSource{} } func (*ScaleIOVolumeSource) ProtoMessage() {} func (*ScaleIOVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{179} + return fileDescriptor_6c07b07c062484ab, []int{184} } func (m *ScaleIOVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5092,7 +5232,7 @@ var xxx_messageInfo_ScaleIOVolumeSource proto.InternalMessageInfo func (m *ScopeSelector) Reset() { *m = ScopeSelector{} } func (*ScopeSelector) ProtoMessage() {} func (*ScopeSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{180} + return fileDescriptor_6c07b07c062484ab, []int{185} } func (m *ScopeSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5120,7 +5260,7 @@ var xxx_messageInfo_ScopeSelector proto.InternalMessageInfo func (m *ScopedResourceSelectorRequirement) Reset() { *m = ScopedResourceSelectorRequirement{} } func (*ScopedResourceSelectorRequirement) ProtoMessage() {} func (*ScopedResourceSelectorRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{181} + return fileDescriptor_6c07b07c062484ab, []int{186} } func (m *ScopedResourceSelectorRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5148,7 +5288,7 @@ var xxx_messageInfo_ScopedResourceSelectorRequirement proto.InternalMessageInfo func (m *SeccompProfile) Reset() { *m = SeccompProfile{} } func (*SeccompProfile) ProtoMessage() {} func (*SeccompProfile) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{182} + return fileDescriptor_6c07b07c062484ab, []int{187} } func (m *SeccompProfile) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5176,7 +5316,7 @@ var xxx_messageInfo_SeccompProfile proto.InternalMessageInfo func (m *Secret) Reset() { *m = Secret{} } func (*Secret) ProtoMessage() {} func (*Secret) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{183} + return fileDescriptor_6c07b07c062484ab, []int{188} } func (m *Secret) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5204,7 +5344,7 @@ var xxx_messageInfo_Secret proto.InternalMessageInfo func (m *SecretEnvSource) Reset() { *m = SecretEnvSource{} } func (*SecretEnvSource) ProtoMessage() {} func (*SecretEnvSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{184} + return fileDescriptor_6c07b07c062484ab, []int{189} } func (m *SecretEnvSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5232,7 +5372,7 @@ var xxx_messageInfo_SecretEnvSource proto.InternalMessageInfo func (m *SecretKeySelector) Reset() { *m = SecretKeySelector{} } func (*SecretKeySelector) ProtoMessage() {} func (*SecretKeySelector) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{185} + return fileDescriptor_6c07b07c062484ab, []int{190} } func (m *SecretKeySelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5260,7 +5400,7 @@ var xxx_messageInfo_SecretKeySelector proto.InternalMessageInfo func (m *SecretList) Reset() { *m = SecretList{} } func (*SecretList) ProtoMessage() {} func (*SecretList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{186} + return fileDescriptor_6c07b07c062484ab, []int{191} } func (m *SecretList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5288,7 +5428,7 @@ var xxx_messageInfo_SecretList proto.InternalMessageInfo func (m *SecretProjection) Reset() { *m = SecretProjection{} } func (*SecretProjection) ProtoMessage() {} func (*SecretProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{187} + return fileDescriptor_6c07b07c062484ab, []int{192} } func (m *SecretProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5316,7 +5456,7 @@ var xxx_messageInfo_SecretProjection proto.InternalMessageInfo func (m *SecretReference) Reset() { *m = SecretReference{} } func (*SecretReference) ProtoMessage() {} func (*SecretReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{188} + return fileDescriptor_6c07b07c062484ab, []int{193} } func (m *SecretReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5344,7 +5484,7 @@ var xxx_messageInfo_SecretReference proto.InternalMessageInfo func (m *SecretVolumeSource) Reset() { *m = SecretVolumeSource{} } func (*SecretVolumeSource) ProtoMessage() {} func (*SecretVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{189} + return fileDescriptor_6c07b07c062484ab, []int{194} } func (m *SecretVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5372,7 +5512,7 @@ var xxx_messageInfo_SecretVolumeSource proto.InternalMessageInfo func (m *SecurityContext) Reset() { *m = SecurityContext{} } func (*SecurityContext) ProtoMessage() {} func (*SecurityContext) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{190} + return fileDescriptor_6c07b07c062484ab, []int{195} } func (m *SecurityContext) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5400,7 +5540,7 @@ var xxx_messageInfo_SecurityContext proto.InternalMessageInfo func (m *SerializedReference) Reset() { *m = SerializedReference{} } func (*SerializedReference) ProtoMessage() {} func (*SerializedReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{191} + return fileDescriptor_6c07b07c062484ab, []int{196} } func (m *SerializedReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5428,7 +5568,7 @@ var xxx_messageInfo_SerializedReference proto.InternalMessageInfo func (m *Service) Reset() { *m = Service{} } func (*Service) ProtoMessage() {} func (*Service) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{192} + return fileDescriptor_6c07b07c062484ab, []int{197} } func (m *Service) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5456,7 +5596,7 @@ var xxx_messageInfo_Service proto.InternalMessageInfo func (m *ServiceAccount) Reset() { *m = ServiceAccount{} } func (*ServiceAccount) ProtoMessage() {} func (*ServiceAccount) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{193} + return fileDescriptor_6c07b07c062484ab, []int{198} } func (m *ServiceAccount) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5484,7 +5624,7 @@ var xxx_messageInfo_ServiceAccount proto.InternalMessageInfo func (m *ServiceAccountList) Reset() { *m = ServiceAccountList{} } func (*ServiceAccountList) ProtoMessage() {} func (*ServiceAccountList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{194} + return fileDescriptor_6c07b07c062484ab, []int{199} } func (m *ServiceAccountList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5512,7 +5652,7 @@ var xxx_messageInfo_ServiceAccountList proto.InternalMessageInfo func (m *ServiceAccountTokenProjection) Reset() { *m = ServiceAccountTokenProjection{} } func (*ServiceAccountTokenProjection) ProtoMessage() {} func (*ServiceAccountTokenProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{195} + return fileDescriptor_6c07b07c062484ab, []int{200} } func (m *ServiceAccountTokenProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5540,7 +5680,7 @@ var xxx_messageInfo_ServiceAccountTokenProjection proto.InternalMessageInfo func (m *ServiceList) Reset() { *m = ServiceList{} } func (*ServiceList) ProtoMessage() {} func (*ServiceList) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{196} + return fileDescriptor_6c07b07c062484ab, []int{201} } func (m *ServiceList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5568,7 +5708,7 @@ var xxx_messageInfo_ServiceList proto.InternalMessageInfo func (m *ServicePort) Reset() { *m = ServicePort{} } func (*ServicePort) ProtoMessage() {} func (*ServicePort) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{197} + return fileDescriptor_6c07b07c062484ab, []int{202} } func (m *ServicePort) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5596,7 +5736,7 @@ var xxx_messageInfo_ServicePort proto.InternalMessageInfo func (m *ServiceProxyOptions) Reset() { *m = ServiceProxyOptions{} } func (*ServiceProxyOptions) ProtoMessage() {} func (*ServiceProxyOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{198} + return fileDescriptor_6c07b07c062484ab, []int{203} } func (m *ServiceProxyOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5624,7 +5764,7 @@ var xxx_messageInfo_ServiceProxyOptions proto.InternalMessageInfo func (m *ServiceSpec) Reset() { *m = ServiceSpec{} } func (*ServiceSpec) ProtoMessage() {} func (*ServiceSpec) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{199} + return fileDescriptor_6c07b07c062484ab, []int{204} } func (m *ServiceSpec) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5652,7 +5792,7 @@ var xxx_messageInfo_ServiceSpec proto.InternalMessageInfo func (m *ServiceStatus) Reset() { *m = ServiceStatus{} } func (*ServiceStatus) ProtoMessage() {} func (*ServiceStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{200} + return fileDescriptor_6c07b07c062484ab, []int{205} } func (m *ServiceStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5680,7 +5820,7 @@ var xxx_messageInfo_ServiceStatus proto.InternalMessageInfo func (m *SessionAffinityConfig) Reset() { *m = SessionAffinityConfig{} } func (*SessionAffinityConfig) ProtoMessage() {} func (*SessionAffinityConfig) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{201} + return fileDescriptor_6c07b07c062484ab, []int{206} } func (m *SessionAffinityConfig) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5708,7 +5848,7 @@ var xxx_messageInfo_SessionAffinityConfig proto.InternalMessageInfo func (m *SleepAction) Reset() { *m = SleepAction{} } func (*SleepAction) ProtoMessage() {} func (*SleepAction) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{202} + return fileDescriptor_6c07b07c062484ab, []int{207} } func (m *SleepAction) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5736,7 +5876,7 @@ var xxx_messageInfo_SleepAction proto.InternalMessageInfo func (m *StorageOSPersistentVolumeSource) Reset() { *m = StorageOSPersistentVolumeSource{} } func (*StorageOSPersistentVolumeSource) ProtoMessage() {} func (*StorageOSPersistentVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{203} + return fileDescriptor_6c07b07c062484ab, []int{208} } func (m *StorageOSPersistentVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5764,7 +5904,7 @@ var xxx_messageInfo_StorageOSPersistentVolumeSource proto.InternalMessageInfo func (m *StorageOSVolumeSource) Reset() { *m = StorageOSVolumeSource{} } func (*StorageOSVolumeSource) ProtoMessage() {} func (*StorageOSVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{204} + return fileDescriptor_6c07b07c062484ab, []int{209} } func (m *StorageOSVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5792,7 +5932,7 @@ var xxx_messageInfo_StorageOSVolumeSource proto.InternalMessageInfo func (m *Sysctl) Reset() { *m = Sysctl{} } func (*Sysctl) ProtoMessage() {} func (*Sysctl) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{205} + return fileDescriptor_6c07b07c062484ab, []int{210} } func (m *Sysctl) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5820,7 +5960,7 @@ var xxx_messageInfo_Sysctl proto.InternalMessageInfo func (m *TCPSocketAction) Reset() { *m = TCPSocketAction{} } func (*TCPSocketAction) ProtoMessage() {} func (*TCPSocketAction) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{206} + return fileDescriptor_6c07b07c062484ab, []int{211} } func (m *TCPSocketAction) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5848,7 +5988,7 @@ var xxx_messageInfo_TCPSocketAction proto.InternalMessageInfo func (m *Taint) Reset() { *m = Taint{} } func (*Taint) ProtoMessage() {} func (*Taint) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{207} + return fileDescriptor_6c07b07c062484ab, []int{212} } func (m *Taint) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5876,7 +6016,7 @@ var xxx_messageInfo_Taint proto.InternalMessageInfo func (m *Toleration) Reset() { *m = Toleration{} } func (*Toleration) ProtoMessage() {} func (*Toleration) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{208} + return fileDescriptor_6c07b07c062484ab, []int{213} } func (m *Toleration) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5904,7 +6044,7 @@ var xxx_messageInfo_Toleration proto.InternalMessageInfo func (m *TopologySelectorLabelRequirement) Reset() { *m = TopologySelectorLabelRequirement{} } func (*TopologySelectorLabelRequirement) ProtoMessage() {} func (*TopologySelectorLabelRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{209} + return fileDescriptor_6c07b07c062484ab, []int{214} } func (m *TopologySelectorLabelRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5932,7 +6072,7 @@ var xxx_messageInfo_TopologySelectorLabelRequirement proto.InternalMessageInfo func (m *TopologySelectorTerm) Reset() { *m = TopologySelectorTerm{} } func (*TopologySelectorTerm) ProtoMessage() {} func (*TopologySelectorTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{210} + return fileDescriptor_6c07b07c062484ab, []int{215} } func (m *TopologySelectorTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5960,7 +6100,7 @@ var xxx_messageInfo_TopologySelectorTerm proto.InternalMessageInfo func (m *TopologySpreadConstraint) Reset() { *m = TopologySpreadConstraint{} } func (*TopologySpreadConstraint) ProtoMessage() {} func (*TopologySpreadConstraint) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{211} + return fileDescriptor_6c07b07c062484ab, []int{216} } func (m *TopologySpreadConstraint) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -5988,7 +6128,7 @@ var xxx_messageInfo_TopologySpreadConstraint proto.InternalMessageInfo func (m *TypedLocalObjectReference) Reset() { *m = TypedLocalObjectReference{} } func (*TypedLocalObjectReference) ProtoMessage() {} func (*TypedLocalObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{212} + return fileDescriptor_6c07b07c062484ab, []int{217} } func (m *TypedLocalObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6016,7 +6156,7 @@ var xxx_messageInfo_TypedLocalObjectReference proto.InternalMessageInfo func (m *TypedObjectReference) Reset() { *m = TypedObjectReference{} } func (*TypedObjectReference) ProtoMessage() {} func (*TypedObjectReference) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{213} + return fileDescriptor_6c07b07c062484ab, []int{218} } func (m *TypedObjectReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6044,7 +6184,7 @@ var xxx_messageInfo_TypedObjectReference proto.InternalMessageInfo func (m *Volume) Reset() { *m = Volume{} } func (*Volume) ProtoMessage() {} func (*Volume) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{214} + return fileDescriptor_6c07b07c062484ab, []int{219} } func (m *Volume) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6072,7 +6212,7 @@ var xxx_messageInfo_Volume proto.InternalMessageInfo func (m *VolumeDevice) Reset() { *m = VolumeDevice{} } func (*VolumeDevice) ProtoMessage() {} func (*VolumeDevice) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{215} + return fileDescriptor_6c07b07c062484ab, []int{220} } func (m *VolumeDevice) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6100,7 +6240,7 @@ var xxx_messageInfo_VolumeDevice proto.InternalMessageInfo func (m *VolumeMount) Reset() { *m = VolumeMount{} } func (*VolumeMount) ProtoMessage() {} func (*VolumeMount) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{216} + return fileDescriptor_6c07b07c062484ab, []int{221} } func (m *VolumeMount) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6128,7 +6268,7 @@ var xxx_messageInfo_VolumeMount proto.InternalMessageInfo func (m *VolumeMountStatus) Reset() { *m = VolumeMountStatus{} } func (*VolumeMountStatus) ProtoMessage() {} func (*VolumeMountStatus) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{217} + return fileDescriptor_6c07b07c062484ab, []int{222} } func (m *VolumeMountStatus) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6156,7 +6296,7 @@ var xxx_messageInfo_VolumeMountStatus proto.InternalMessageInfo func (m *VolumeNodeAffinity) Reset() { *m = VolumeNodeAffinity{} } func (*VolumeNodeAffinity) ProtoMessage() {} func (*VolumeNodeAffinity) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{218} + return fileDescriptor_6c07b07c062484ab, []int{223} } func (m *VolumeNodeAffinity) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6184,7 +6324,7 @@ var xxx_messageInfo_VolumeNodeAffinity proto.InternalMessageInfo func (m *VolumeProjection) Reset() { *m = VolumeProjection{} } func (*VolumeProjection) ProtoMessage() {} func (*VolumeProjection) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{219} + return fileDescriptor_6c07b07c062484ab, []int{224} } func (m *VolumeProjection) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6212,7 +6352,7 @@ var xxx_messageInfo_VolumeProjection proto.InternalMessageInfo func (m *VolumeResourceRequirements) Reset() { *m = VolumeResourceRequirements{} } func (*VolumeResourceRequirements) ProtoMessage() {} func (*VolumeResourceRequirements) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{220} + return fileDescriptor_6c07b07c062484ab, []int{225} } func (m *VolumeResourceRequirements) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6240,7 +6380,7 @@ var xxx_messageInfo_VolumeResourceRequirements proto.InternalMessageInfo func (m *VolumeSource) Reset() { *m = VolumeSource{} } func (*VolumeSource) ProtoMessage() {} func (*VolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{221} + return fileDescriptor_6c07b07c062484ab, []int{226} } func (m *VolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6268,7 +6408,7 @@ var xxx_messageInfo_VolumeSource proto.InternalMessageInfo func (m *VsphereVirtualDiskVolumeSource) Reset() { *m = VsphereVirtualDiskVolumeSource{} } func (*VsphereVirtualDiskVolumeSource) ProtoMessage() {} func (*VsphereVirtualDiskVolumeSource) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{222} + return fileDescriptor_6c07b07c062484ab, []int{227} } func (m *VsphereVirtualDiskVolumeSource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6296,7 +6436,7 @@ var xxx_messageInfo_VsphereVirtualDiskVolumeSource proto.InternalMessageInfo func (m *WeightedPodAffinityTerm) Reset() { *m = WeightedPodAffinityTerm{} } func (*WeightedPodAffinityTerm) ProtoMessage() {} func (*WeightedPodAffinityTerm) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{223} + return fileDescriptor_6c07b07c062484ab, []int{228} } func (m *WeightedPodAffinityTerm) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6324,7 +6464,7 @@ var xxx_messageInfo_WeightedPodAffinityTerm proto.InternalMessageInfo func (m *WindowsSecurityContextOptions) Reset() { *m = WindowsSecurityContextOptions{} } func (*WindowsSecurityContextOptions) ProtoMessage() {} func (*WindowsSecurityContextOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_6c07b07c062484ab, []int{224} + return fileDescriptor_6c07b07c062484ab, []int{229} } func (m *WindowsSecurityContextOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -6368,7 +6508,6 @@ func init() { proto.RegisterType((*CephFSVolumeSource)(nil), "k8s.io.api.core.v1.CephFSVolumeSource") proto.RegisterType((*CinderPersistentVolumeSource)(nil), "k8s.io.api.core.v1.CinderPersistentVolumeSource") proto.RegisterType((*CinderVolumeSource)(nil), "k8s.io.api.core.v1.CinderVolumeSource") - proto.RegisterType((*ClaimSource)(nil), "k8s.io.api.core.v1.ClaimSource") proto.RegisterType((*ClientIPConfig)(nil), "k8s.io.api.core.v1.ClientIPConfig") proto.RegisterType((*ClusterTrustBundleProjection)(nil), "k8s.io.api.core.v1.ClusterTrustBundleProjection") proto.RegisterType((*ComponentCondition)(nil), "k8s.io.api.core.v1.ComponentCondition") @@ -6393,6 +6532,7 @@ func init() { proto.RegisterType((*ContainerStateWaiting)(nil), "k8s.io.api.core.v1.ContainerStateWaiting") proto.RegisterType((*ContainerStatus)(nil), "k8s.io.api.core.v1.ContainerStatus") proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.ContainerStatus.AllocatedResourcesEntry") + proto.RegisterType((*ContainerUser)(nil), "k8s.io.api.core.v1.ContainerUser") proto.RegisterType((*DaemonEndpoint)(nil), "k8s.io.api.core.v1.DaemonEndpoint") proto.RegisterType((*DownwardAPIProjection)(nil), "k8s.io.api.core.v1.DownwardAPIProjection") proto.RegisterType((*DownwardAPIVolumeFile)(nil), "k8s.io.api.core.v1.DownwardAPIVolumeFile") @@ -6432,6 +6572,7 @@ func init() { proto.RegisterType((*HostPathVolumeSource)(nil), "k8s.io.api.core.v1.HostPathVolumeSource") proto.RegisterType((*ISCSIPersistentVolumeSource)(nil), "k8s.io.api.core.v1.ISCSIPersistentVolumeSource") proto.RegisterType((*ISCSIVolumeSource)(nil), "k8s.io.api.core.v1.ISCSIVolumeSource") + proto.RegisterType((*ImageVolumeSource)(nil), "k8s.io.api.core.v1.ImageVolumeSource") proto.RegisterType((*KeyToPath)(nil), "k8s.io.api.core.v1.KeyToPath") proto.RegisterType((*Lifecycle)(nil), "k8s.io.api.core.v1.Lifecycle") proto.RegisterType((*LifecycleHandler)(nil), "k8s.io.api.core.v1.LifecycleHandler") @@ -6444,6 +6585,7 @@ func init() { proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.LimitRangeItem.MinEntry") proto.RegisterType((*LimitRangeList)(nil), "k8s.io.api.core.v1.LimitRangeList") proto.RegisterType((*LimitRangeSpec)(nil), "k8s.io.api.core.v1.LimitRangeSpec") + proto.RegisterType((*LinuxContainerUser)(nil), "k8s.io.api.core.v1.LinuxContainerUser") proto.RegisterType((*List)(nil), "k8s.io.api.core.v1.List") proto.RegisterType((*LoadBalancerIngress)(nil), "k8s.io.api.core.v1.LoadBalancerIngress") proto.RegisterType((*LoadBalancerStatus)(nil), "k8s.io.api.core.v1.LoadBalancerStatus") @@ -6463,6 +6605,7 @@ func init() { proto.RegisterType((*NodeConfigSource)(nil), "k8s.io.api.core.v1.NodeConfigSource") proto.RegisterType((*NodeConfigStatus)(nil), "k8s.io.api.core.v1.NodeConfigStatus") proto.RegisterType((*NodeDaemonEndpoints)(nil), "k8s.io.api.core.v1.NodeDaemonEndpoints") + proto.RegisterType((*NodeFeatures)(nil), "k8s.io.api.core.v1.NodeFeatures") proto.RegisterType((*NodeList)(nil), "k8s.io.api.core.v1.NodeList") proto.RegisterType((*NodeProxyOptions)(nil), "k8s.io.api.core.v1.NodeProxyOptions") proto.RegisterType((*NodeRuntimeHandler)(nil), "k8s.io.api.core.v1.NodeRuntimeHandler") @@ -6543,6 +6686,7 @@ func init() { proto.RegisterType((*ReplicationControllerStatus)(nil), "k8s.io.api.core.v1.ReplicationControllerStatus") proto.RegisterType((*ResourceClaim)(nil), "k8s.io.api.core.v1.ResourceClaim") proto.RegisterType((*ResourceFieldSelector)(nil), "k8s.io.api.core.v1.ResourceFieldSelector") + proto.RegisterType((*ResourceHealth)(nil), "k8s.io.api.core.v1.ResourceHealth") proto.RegisterType((*ResourceQuota)(nil), "k8s.io.api.core.v1.ResourceQuota") proto.RegisterType((*ResourceQuotaList)(nil), "k8s.io.api.core.v1.ResourceQuotaList") proto.RegisterType((*ResourceQuotaSpec)(nil), "k8s.io.api.core.v1.ResourceQuotaSpec") @@ -6553,6 +6697,7 @@ func init() { proto.RegisterType((*ResourceRequirements)(nil), "k8s.io.api.core.v1.ResourceRequirements") proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.ResourceRequirements.LimitsEntry") proto.RegisterMapType((ResourceList)(nil), "k8s.io.api.core.v1.ResourceRequirements.RequestsEntry") + proto.RegisterType((*ResourceStatus)(nil), "k8s.io.api.core.v1.ResourceStatus") proto.RegisterType((*SELinuxOptions)(nil), "k8s.io.api.core.v1.SELinuxOptions") proto.RegisterType((*ScaleIOPersistentVolumeSource)(nil), "k8s.io.api.core.v1.ScaleIOPersistentVolumeSource") proto.RegisterType((*ScaleIOVolumeSource)(nil), "k8s.io.api.core.v1.ScaleIOVolumeSource") @@ -6613,989 +6758,1011 @@ func init() { } var fileDescriptor_6c07b07c062484ab = []byte{ - // 15708 bytes of a gzipped FileDescriptorProto - 0x1f, 0x8b, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0xff, 0xec, 0xbd, 0x59, 0x8c, 0x1c, 0xd9, - 0x75, 0x20, 0xaa, 0xc8, 0xac, 0xf5, 0xd4, 0x7e, 0x8b, 0x64, 0x17, 0xab, 0x49, 0x26, 0x3b, 0xba, - 0x9b, 0xcd, 0xde, 0x8a, 0x62, 0x2f, 0xea, 0x56, 0x77, 0xab, 0xad, 0x5a, 0xc9, 0x6c, 0x56, 0x15, - 0xb3, 0x6f, 0x16, 0x49, 0xa9, 0xd5, 0x92, 0x15, 0xcc, 0xbc, 0x55, 0x15, 0xaa, 0xcc, 0x88, 0xec, - 0x88, 0xc8, 0x22, 0x8b, 0x4f, 0x86, 0x6d, 0xf9, 0x59, 0xb6, 0x64, 0x3f, 0x40, 0x78, 0xf0, 0x5b, - 0x20, 0x1b, 0xc6, 0x83, 0x9f, 0x9f, 0x97, 0xa7, 0x67, 0xbf, 0xd1, 0xc8, 0xe3, 0x4d, 0xde, 0xc6, - 0x33, 0x03, 0xd8, 0x83, 0x81, 0xc7, 0x63, 0xc0, 0x96, 0x31, 0xc6, 0x94, 0x47, 0xf4, 0x00, 0x86, - 0x3f, 0xc6, 0x36, 0x3c, 0xf3, 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*m.ResourceClaimTemplateName) - i = encodeVarintGenerated(dAtA, i, uint64(len(*m.ResourceClaimTemplateName))) - i-- - dAtA[i] = 0x12 - } - if m.ResourceClaimName != nil { - i -= len(*m.ResourceClaimName) - copy(dAtA[i:], *m.ResourceClaimName) - i = encodeVarintGenerated(dAtA, i, uint64(len(*m.ResourceClaimName))) - i-- - dAtA[i] = 0xa - } - return len(dAtA) - i, nil -} - func (m *ClientIPConfig) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -9753,6 +9883,32 @@ func (m *ContainerStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if len(m.AllocatedResourcesStatus) > 0 { + for iNdEx := len(m.AllocatedResourcesStatus) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.AllocatedResourcesStatus[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x72 + } + } + if m.User != nil { + { + size, err := m.User.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x6a + } if len(m.VolumeMounts) > 0 { for iNdEx := len(m.VolumeMounts) - 1; iNdEx >= 0; iNdEx-- { { @@ -9872,6 +10028,41 @@ func (m *ContainerStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ContainerUser) 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 *ContainerUser) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ContainerUser) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if m.Linux != nil { + { + size, err := m.Linux.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 *DaemonEndpoint) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -11972,6 +12163,39 @@ func (m *ISCSIVolumeSource) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ImageVolumeSource) 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 *ImageVolumeSource) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ImageVolumeSource) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.PullPolicy) + copy(dAtA[i:], m.PullPolicy) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.PullPolicy))) + i-- + dAtA[i] = 0x12 + i -= len(m.Reference) + copy(dAtA[i:], m.Reference) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Reference))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *KeyToPath) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -12428,6 +12652,42 @@ func (m *LimitRangeSpec) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *LinuxContainerUser) 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 *LinuxContainerUser) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *LinuxContainerUser) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.SupplementalGroups) > 0 { + for iNdEx := len(m.SupplementalGroups) - 1; iNdEx >= 0; iNdEx-- { + i = encodeVarintGenerated(dAtA, i, uint64(m.SupplementalGroups[iNdEx])) + i-- + dAtA[i] = 0x18 + } + } + i = encodeVarintGenerated(dAtA, i, uint64(m.GID)) + i-- + dAtA[i] = 0x10 + i = encodeVarintGenerated(dAtA, i, uint64(m.UID)) + i-- + dAtA[i] = 0x8 + return len(dAtA) - i, nil +} + func (m *List) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -13260,6 +13520,39 @@ func (m *NodeDaemonEndpoints) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *NodeFeatures) 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 *NodeFeatures) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *NodeFeatures) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if m.SupplementalGroupsPolicy != nil { + i-- + if *m.SupplementalGroupsPolicy { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x8 + } + return len(dAtA) - i, nil +} + func (m *NodeList) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -13395,6 +13688,16 @@ func (m *NodeRuntimeHandlerFeatures) MarshalToSizedBuffer(dAtA []byte) (int, err _ = i var l int _ = l + if m.UserNamespaces != nil { + i-- + if *m.UserNamespaces { + dAtA[i] = 1 + } else { + dAtA[i] = 0 + } + i-- + dAtA[i] = 0x10 + } if m.RecursiveReadOnlyMounts != nil { i-- if *m.RecursiveReadOnlyMounts { @@ -13639,6 +13942,18 @@ func (m *NodeStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.Features != nil { + { + size, err := m.Features.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x6a + } if len(m.RuntimeHandlers) > 0 { for iNdEx := len(m.RuntimeHandlers) - 1; iNdEx >= 0; iNdEx-- { { @@ -15902,16 +16217,20 @@ func (m *PodResourceClaim) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l - { - size, err := m.Source.MarshalToSizedBuffer(dAtA[:i]) - if err != nil { - return 0, err - } - i -= size - i = encodeVarintGenerated(dAtA, i, uint64(size)) + if m.ResourceClaimTemplateName != nil { + i -= len(*m.ResourceClaimTemplateName) + copy(dAtA[i:], *m.ResourceClaimTemplateName) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.ResourceClaimTemplateName))) + i-- + dAtA[i] = 0x22 + } + if m.ResourceClaimName != nil { + i -= len(*m.ResourceClaimName) + copy(dAtA[i:], *m.ResourceClaimName) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.ResourceClaimName))) + i-- + dAtA[i] = 0x1a } - i-- - dAtA[i] = 0x12 i -= len(m.Name) copy(dAtA[i:], m.Name) i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) @@ -16003,6 +16322,13 @@ func (m *PodSecurityContext) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.SupplementalGroupsPolicy != nil { + i -= len(*m.SupplementalGroupsPolicy) + copy(dAtA[i:], *m.SupplementalGroupsPolicy) + i = encodeVarintGenerated(dAtA, i, uint64(len(*m.SupplementalGroupsPolicy))) + i-- + dAtA[i] = 0x62 + } if m.AppArmorProfile != nil { { size, err := m.AppArmorProfile.MarshalToSizedBuffer(dAtA[:i]) @@ -17878,6 +18204,11 @@ func (m *ResourceClaim) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + i -= len(m.Request) + copy(dAtA[i:], m.Request) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Request))) + i-- + dAtA[i] = 0x12 i -= len(m.Name) copy(dAtA[i:], m.Name) i = encodeVarintGenerated(dAtA, i, uint64(len(m.Name))) @@ -17929,6 +18260,39 @@ func (m *ResourceFieldSelector) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ResourceHealth) 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 *ResourceHealth) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceHealth) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + i -= len(m.Health) + copy(dAtA[i:], m.Health) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Health))) + i-- + dAtA[i] = 0x12 + i -= len(m.ResourceID) + copy(dAtA[i:], m.ResourceID) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.ResourceID))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *ResourceQuota) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -18278,6 +18642,48 @@ func (m *ResourceRequirements) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *ResourceStatus) 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 *ResourceStatus) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *ResourceStatus) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Resources) > 0 { + for iNdEx := len(m.Resources) - 1; iNdEx >= 0; iNdEx-- { + { + size, err := m.Resources[iNdEx].MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + 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 *SELinuxOptions) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -20738,6 +21144,20 @@ func (m *VolumeSource) MarshalToSizedBuffer(dAtA []byte) (int, error) { _ = i var l int _ = l + if m.Image != nil { + { + size, err := m.Image.MarshalToSizedBuffer(dAtA[:i]) + if err != nil { + return 0, err + } + i -= size + i = encodeVarintGenerated(dAtA, i, uint64(size)) + } + i-- + dAtA[i] = 0x1 + i-- + dAtA[i] = 0xf2 + } if m.Ephemeral != nil { { size, err := m.Ephemeral.MarshalToSizedBuffer(dAtA[:i]) @@ -21596,23 +22016,6 @@ func (m *CinderVolumeSource) Size() (n int) { return n } -func (m *ClaimSource) Size() (n int) { - if m == nil { - return 0 - } - var l int - _ = l - if m.ResourceClaimName != nil { - l = len(*m.ResourceClaimName) - n += 1 + l + sovGenerated(uint64(l)) - } - if m.ResourceClaimTemplateName != nil { - l = len(*m.ResourceClaimTemplateName) - n += 1 + l + sovGenerated(uint64(l)) - } - return n -} - func (m *ClientIPConfig) Size() (n int) { if m == nil { return 0 @@ -22097,6 +22500,29 @@ func (m *ContainerStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.User != nil { + l = m.User.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + if len(m.AllocatedResourcesStatus) > 0 { + for _, e := range m.AllocatedResourcesStatus { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + +func (m *ContainerUser) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.Linux != nil { + l = m.Linux.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -22881,6 +23307,19 @@ func (m *ISCSIVolumeSource) Size() (n int) { return n } +func (m *ImageVolumeSource) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Reference) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.PullPolicy) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *KeyToPath) Size() (n int) { if m == nil { return 0 @@ -23040,6 +23479,22 @@ func (m *LimitRangeSpec) Size() (n int) { return n } +func (m *LinuxContainerUser) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + n += 1 + sovGenerated(uint64(m.UID)) + n += 1 + sovGenerated(uint64(m.GID)) + if len(m.SupplementalGroups) > 0 { + for _, e := range m.SupplementalGroups { + n += 1 + sovGenerated(uint64(e)) + } + } + return n +} + func (m *List) Size() (n int) { if m == nil { return 0 @@ -23346,6 +23801,18 @@ func (m *NodeDaemonEndpoints) Size() (n int) { return n } +func (m *NodeFeatures) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + if m.SupplementalGroupsPolicy != nil { + n += 2 + } + return n +} + func (m *NodeList) Size() (n int) { if m == nil { return 0 @@ -23398,6 +23865,9 @@ func (m *NodeRuntimeHandlerFeatures) Size() (n int) { if m.RecursiveReadOnlyMounts != nil { n += 2 } + if m.UserNamespaces != nil { + n += 2 + } return n } @@ -23558,6 +24028,10 @@ func (m *NodeStatus) Size() (n int) { n += 1 + l + sovGenerated(uint64(l)) } } + if m.Features != nil { + l = m.Features.Size() + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -24321,8 +24795,14 @@ func (m *PodResourceClaim) Size() (n int) { _ = l l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) - l = m.Source.Size() - n += 1 + l + sovGenerated(uint64(l)) + if m.ResourceClaimName != nil { + l = len(*m.ResourceClaimName) + n += 1 + l + sovGenerated(uint64(l)) + } + if m.ResourceClaimTemplateName != nil { + l = len(*m.ResourceClaimTemplateName) + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -24401,6 +24881,10 @@ func (m *PodSecurityContext) Size() (n int) { l = m.AppArmorProfile.Size() n += 1 + l + sovGenerated(uint64(l)) } + if m.SupplementalGroupsPolicy != nil { + l = len(*m.SupplementalGroupsPolicy) + n += 1 + l + sovGenerated(uint64(l)) + } return n } @@ -25040,6 +25524,8 @@ func (m *ResourceClaim) Size() (n int) { _ = l l = len(m.Name) n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Request) + n += 1 + l + sovGenerated(uint64(l)) return n } @@ -25058,6 +25544,19 @@ func (m *ResourceFieldSelector) Size() (n int) { return n } +func (m *ResourceHealth) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.ResourceID) + n += 1 + l + sovGenerated(uint64(l)) + l = len(m.Health) + n += 1 + l + sovGenerated(uint64(l)) + return n +} + func (m *ResourceQuota) Size() (n int) { if m == nil { return 0 @@ -25178,6 +25677,23 @@ func (m *ResourceRequirements) Size() (n int) { return n } +func (m *ResourceStatus) Size() (n int) { + if m == nil { + return 0 + } + var l int + _ = l + l = len(m.Name) + n += 1 + l + sovGenerated(uint64(l)) + if len(m.Resources) > 0 { + for _, e := range m.Resources { + l = e.Size() + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + func (m *SELinuxOptions) Size() (n int) { if m == nil { return 0 @@ -26221,6 +26737,10 @@ func (m *VolumeSource) Size() (n int) { l = m.Ephemeral.Size() n += 2 + l + sovGenerated(uint64(l)) } + if m.Image != nil { + l = m.Image.Size() + n += 2 + l + sovGenerated(uint64(l)) + } return n } @@ -26516,17 +27036,6 @@ func (this *CinderVolumeSource) String() string { }, "") return s } -func (this *ClaimSource) String() string { - if this == nil { - return "nil" - } - s := strings.Join([]string{`&ClaimSource{`, - `ResourceClaimName:` + valueToStringGenerated(this.ResourceClaimName) + `,`, - `ResourceClaimTemplateName:` + valueToStringGenerated(this.ResourceClaimTemplateName) + `,`, - `}`, - }, "") - return s -} func (this *ClientIPConfig) String() string { if this == nil { return "nil" @@ -26874,6 +27383,11 @@ func (this *ContainerStatus) String() string { repeatedStringForVolumeMounts += strings.Replace(strings.Replace(f.String(), "VolumeMountStatus", "VolumeMountStatus", 1), `&`, ``, 1) + "," } repeatedStringForVolumeMounts += "}" + repeatedStringForAllocatedResourcesStatus := "[]ResourceStatus{" + for _, f := range this.AllocatedResourcesStatus { + repeatedStringForAllocatedResourcesStatus += strings.Replace(strings.Replace(f.String(), "ResourceStatus", "ResourceStatus", 1), `&`, ``, 1) + "," + } + repeatedStringForAllocatedResourcesStatus += "}" keysForAllocatedResources := make([]string, 0, len(this.AllocatedResources)) for k := range this.AllocatedResources { keysForAllocatedResources = append(keysForAllocatedResources, string(k)) @@ -26897,6 +27411,18 @@ func (this *ContainerStatus) String() string { `AllocatedResources:` + mapStringForAllocatedResources + `,`, `Resources:` + strings.Replace(this.Resources.String(), "ResourceRequirements", "ResourceRequirements", 1) + `,`, `VolumeMounts:` + repeatedStringForVolumeMounts + `,`, + `User:` + strings.Replace(this.User.String(), "ContainerUser", "ContainerUser", 1) + `,`, + `AllocatedResourcesStatus:` + repeatedStringForAllocatedResourcesStatus + `,`, + `}`, + }, "") + return s +} +func (this *ContainerUser) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ContainerUser{`, + `Linux:` + strings.Replace(this.Linux.String(), "LinuxContainerUser", "LinuxContainerUser", 1) + `,`, `}`, }, "") return s @@ -27480,6 +28006,17 @@ func (this *ISCSIVolumeSource) String() string { }, "") return s } +func (this *ImageVolumeSource) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ImageVolumeSource{`, + `Reference:` + fmt.Sprintf("%v", this.Reference) + `,`, + `PullPolicy:` + fmt.Sprintf("%v", this.PullPolicy) + `,`, + `}`, + }, "") + return s +} func (this *KeyToPath) String() string { if this == nil { return "nil" @@ -27623,6 +28160,18 @@ func (this *LimitRangeSpec) String() string { }, "") return s } +func (this *LinuxContainerUser) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&LinuxContainerUser{`, + `UID:` + fmt.Sprintf("%v", this.UID) + `,`, + `GID:` + fmt.Sprintf("%v", this.GID) + `,`, + `SupplementalGroups:` + fmt.Sprintf("%v", this.SupplementalGroups) + `,`, + `}`, + }, "") + return s +} func (this *List) String() string { if this == nil { return "nil" @@ -27871,6 +28420,16 @@ func (this *NodeDaemonEndpoints) String() string { }, "") return s } +func (this *NodeFeatures) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&NodeFeatures{`, + `SupplementalGroupsPolicy:` + valueToStringGenerated(this.SupplementalGroupsPolicy) + `,`, + `}`, + }, "") + return s +} func (this *NodeList) String() string { if this == nil { return "nil" @@ -27914,6 +28473,7 @@ func (this *NodeRuntimeHandlerFeatures) String() string { } s := strings.Join([]string{`&NodeRuntimeHandlerFeatures{`, `RecursiveReadOnlyMounts:` + valueToStringGenerated(this.RecursiveReadOnlyMounts) + `,`, + `UserNamespaces:` + valueToStringGenerated(this.UserNamespaces) + `,`, `}`, }, "") return s @@ -28049,6 +28609,7 @@ func (this *NodeStatus) String() string { `VolumesAttached:` + repeatedStringForVolumesAttached + `,`, `Config:` + strings.Replace(this.Config.String(), "NodeConfigStatus", "NodeConfigStatus", 1) + `,`, `RuntimeHandlers:` + repeatedStringForRuntimeHandlers + `,`, + `Features:` + strings.Replace(this.Features.String(), "NodeFeatures", "NodeFeatures", 1) + `,`, `}`, }, "") return s @@ -28577,7 +29138,8 @@ func (this *PodResourceClaim) String() string { } s := strings.Join([]string{`&PodResourceClaim{`, `Name:` + fmt.Sprintf("%v", this.Name) + `,`, - `Source:` + strings.Replace(strings.Replace(this.Source.String(), "ClaimSource", "ClaimSource", 1), `&`, ``, 1) + `,`, + `ResourceClaimName:` + valueToStringGenerated(this.ResourceClaimName) + `,`, + `ResourceClaimTemplateName:` + valueToStringGenerated(this.ResourceClaimTemplateName) + `,`, `}`, }, "") return s @@ -28624,6 +29186,7 @@ func (this *PodSecurityContext) String() string { `FSGroupChangePolicy:` + valueToStringGenerated(this.FSGroupChangePolicy) + `,`, `SeccompProfile:` + strings.Replace(this.SeccompProfile.String(), "SeccompProfile", "SeccompProfile", 1) + `,`, `AppArmorProfile:` + strings.Replace(this.AppArmorProfile.String(), "AppArmorProfile", "AppArmorProfile", 1) + `,`, + `SupplementalGroupsPolicy:` + valueToStringGenerated(this.SupplementalGroupsPolicy) + `,`, `}`, }, "") return s @@ -29125,6 +29688,7 @@ func (this *ResourceClaim) String() string { } s := strings.Join([]string{`&ResourceClaim{`, `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `Request:` + fmt.Sprintf("%v", this.Request) + `,`, `}`, }, "") return s @@ -29141,6 +29705,17 @@ func (this *ResourceFieldSelector) String() string { }, "") return s } +func (this *ResourceHealth) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&ResourceHealth{`, + `ResourceID:` + fmt.Sprintf("%v", this.ResourceID) + `,`, + `Health:` + fmt.Sprintf("%v", this.Health) + `,`, + `}`, + }, "") + return s +} func (this *ResourceQuota) String() string { if this == nil { return "nil" @@ -29259,6 +29834,22 @@ func (this *ResourceRequirements) String() string { }, "") return s } +func (this *ResourceStatus) String() string { + if this == nil { + return "nil" + } + repeatedStringForResources := "[]ResourceHealth{" + for _, f := range this.Resources { + repeatedStringForResources += strings.Replace(strings.Replace(f.String(), "ResourceHealth", "ResourceHealth", 1), `&`, ``, 1) + "," + } + repeatedStringForResources += "}" + s := strings.Join([]string{`&ResourceStatus{`, + `Name:` + fmt.Sprintf("%v", this.Name) + `,`, + `Resources:` + repeatedStringForResources + `,`, + `}`, + }, "") + return s +} func (this *SELinuxOptions) String() string { if this == nil { return "nil" @@ -29967,6 +30558,7 @@ func (this *VolumeSource) String() string { `StorageOS:` + strings.Replace(this.StorageOS.String(), "StorageOSVolumeSource", "StorageOSVolumeSource", 1) + `,`, `CSI:` + strings.Replace(this.CSI.String(), "CSIVolumeSource", "CSIVolumeSource", 1) + `,`, `Ephemeral:` + strings.Replace(this.Ephemeral.String(), "EphemeralVolumeSource", "EphemeralVolumeSource", 1) + `,`, + `Image:` + strings.Replace(this.Image.String(), "ImageVolumeSource", "ImageVolumeSource", 1) + `,`, `}`, }, "") return s @@ -32985,122 +33577,6 @@ func (m *CinderVolumeSource) Unmarshal(dAtA []byte) error { } return nil } -func (m *ClaimSource) 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: ClaimSource: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: ClaimSource: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ResourceClaimName", 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.ResourceClaimName = &s - iNdEx = postIndex - case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ResourceClaimTemplateName", 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.ResourceClaimTemplateName = &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 *ClientIPConfig) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 @@ -37312,6 +37788,162 @@ func (m *ContainerStatus) Unmarshal(dAtA []byte) error { 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 + 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 *ContainerUser) 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: ContainerUser: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ContainerUser: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Linux", 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.Linux == nil { + m.Linux = &LinuxContainerUser{} + } + if err := m.Linux.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -43256,11 +43888,369 @@ func (m *HostPathVolumeSource) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Path = string(dAtA[iNdEx:postIndex]) + m.Path = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Type", 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 := HostPathType(dAtA[iNdEx:postIndex]) + m.Type = &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 *ISCSIPersistentVolumeSource) 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: ISCSIPersistentVolumeSource: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ISCSIPersistentVolumeSource: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field TargetPortal", 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.TargetPortal = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field IQN", 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.IQN = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field Lun", wireType) + } + m.Lun = 0 + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + m.Lun |= int32(b&0x7F) << shift + if b < 0x80 { + break + } + } + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ISCSIInterface", 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.ISCSIInterface = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 5: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field FSType", 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.FSType = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 6: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field ReadOnly", 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 + } + } + m.ReadOnly = bool(v != 0) + case 7: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Portals", 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.Portals = append(m.Portals, string(dAtA[iNdEx:postIndex])) iNdEx = postIndex - case 2: + case 8: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field DiscoveryCHAPAuth", 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 + } + } + m.DiscoveryCHAPAuth = bool(v != 0) + case 10: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Type", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field SecretRef", 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.SecretRef == nil { + m.SecretRef = &SecretReference{} + } + if err := m.SecretRef.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex + case 11: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field SessionCHAPAuth", 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 + } + } + m.SessionCHAPAuth = bool(v != 0) + case 12: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field InitiatorName", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -43288,8 +44278,8 @@ func (m *HostPathVolumeSource) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - s := HostPathType(dAtA[iNdEx:postIndex]) - m.Type = &s + s := string(dAtA[iNdEx:postIndex]) + m.InitiatorName = &s iNdEx = postIndex default: iNdEx = preIndex @@ -43312,7 +44302,7 @@ func (m *HostPathVolumeSource) Unmarshal(dAtA []byte) error { } return nil } -func (m *ISCSIPersistentVolumeSource) Unmarshal(dAtA []byte) error { +func (m *ISCSIVolumeSource) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -43335,10 +44325,10 @@ func (m *ISCSIPersistentVolumeSource) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: ISCSIPersistentVolumeSource: wiretype end group for non-group") + return fmt.Errorf("proto: ISCSIVolumeSource: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: ISCSIPersistentVolumeSource: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ISCSIVolumeSource: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: @@ -43590,7 +44580,7 @@ func (m *ISCSIPersistentVolumeSource) Unmarshal(dAtA []byte) error { return io.ErrUnexpectedEOF } if m.SecretRef == nil { - m.SecretRef = &SecretReference{} + m.SecretRef = &LocalObjectReference{} } if err := m.SecretRef.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { return err @@ -43670,7 +44660,7 @@ func (m *ISCSIPersistentVolumeSource) Unmarshal(dAtA []byte) error { } return nil } -func (m *ISCSIVolumeSource) Unmarshal(dAtA []byte) error { +func (m *ImageVolumeSource) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -43693,182 +44683,15 @@ func (m *ISCSIVolumeSource) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: ISCSIVolumeSource: wiretype end group for non-group") + return fmt.Errorf("proto: ImageVolumeSource: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: ISCSIVolumeSource: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ImageVolumeSource: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field TargetPortal", 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.TargetPortal = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 2: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field IQN", 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.IQN = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 3: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field Lun", wireType) - } - m.Lun = 0 - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated - } - if iNdEx >= l { - return io.ErrUnexpectedEOF - } - b := dAtA[iNdEx] - iNdEx++ - m.Lun |= int32(b&0x7F) << shift - if b < 0x80 { - break - } - } - case 4: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ISCSIInterface", 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.ISCSIInterface = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 5: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field FSType", 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.FSType = string(dAtA[iNdEx:postIndex]) - iNdEx = postIndex - case 6: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field ReadOnly", 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 - } - } - m.ReadOnly = bool(v != 0) - case 7: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Portals", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Reference", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -43896,87 +44719,11 @@ func (m *ISCSIVolumeSource) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Portals = append(m.Portals, string(dAtA[iNdEx:postIndex])) + m.Reference = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 8: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field DiscoveryCHAPAuth", 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 - } - } - m.DiscoveryCHAPAuth = bool(v != 0) - case 10: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field SecretRef", 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.SecretRef == nil { - m.SecretRef = &LocalObjectReference{} - } - if err := m.SecretRef.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex - case 11: - if wireType != 0 { - return fmt.Errorf("proto: wrong wireType = %d for field SessionCHAPAuth", 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 - } - } - m.SessionCHAPAuth = bool(v != 0) - case 12: + case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field InitiatorName", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field PullPolicy", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -44004,8 +44751,7 @@ func (m *ISCSIVolumeSource) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - s := string(dAtA[iNdEx:postIndex]) - m.InitiatorName = &s + m.PullPolicy = PullPolicy(dAtA[iNdEx:postIndex]) iNdEx = postIndex default: iNdEx = preIndex @@ -45344,17 +46090,218 @@ func (m *LimitRangeList) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: LimitRangeList: wiretype end group for non-group") + return fmt.Errorf("proto: LimitRangeList: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LimitRangeList: 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, LimitRange{}) + 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 *LimitRangeSpec) 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: LimitRangeSpec: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: LimitRangeSpec: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Limits", 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.Limits = append(m.Limits, LimitRangeItem{}) + if err := m.Limits[len(m.Limits)-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 *LinuxContainerUser) 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: LinuxContainerUser: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: LimitRangeList: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: LinuxContainerUser: 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) + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field UID", wireType) } - var msglen int + m.UID = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -45364,30 +46311,16 @@ func (m *LimitRangeList) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + m.UID |= 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 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) + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field GID", wireType) } - var msglen int + m.GID = 0 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -45397,110 +46330,87 @@ func (m *LimitRangeList) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + m.GID |= 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 - } - m.Items = append(m.Items, LimitRange{}) - 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 *LimitRangeSpec) 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: LimitRangeSpec: wiretype end group for non-group") - } - if fieldNum <= 0 { - return fmt.Errorf("proto: LimitRangeSpec: illegal tag %d (wire type %d)", fieldNum, wire) - } - switch fieldNum { - case 1: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Limits", wireType) - } - var msglen int - for shift := uint(0); ; shift += 7 { - if shift >= 64 { - return ErrIntOverflowGenerated + case 3: + if wireType == 0 { + 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 + } } - if iNdEx >= l { + m.SupplementalGroups = append(m.SupplementalGroups, v) + } else if wireType == 2 { + var packedLen int + for shift := uint(0); ; shift += 7 { + if shift >= 64 { + return ErrIntOverflowGenerated + } + if iNdEx >= l { + return io.ErrUnexpectedEOF + } + b := dAtA[iNdEx] + iNdEx++ + packedLen |= int(b&0x7F) << shift + if b < 0x80 { + break + } + } + if packedLen < 0 { + return ErrInvalidLengthGenerated + } + postIndex := iNdEx + packedLen + if postIndex < 0 { + return ErrInvalidLengthGenerated + } + if postIndex > l { return io.ErrUnexpectedEOF } - b := dAtA[iNdEx] - iNdEx++ - msglen |= int(b&0x7F) << shift - if b < 0x80 { - break + var elementCount int + var count int + for _, integer := range dAtA[iNdEx:postIndex] { + if integer < 128 { + count++ + } } + elementCount = count + if elementCount != 0 && len(m.SupplementalGroups) == 0 { + m.SupplementalGroups = make([]int64, 0, elementCount) + } + for iNdEx < postIndex { + 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.SupplementalGroups = append(m.SupplementalGroups, v) + } + } else { + return fmt.Errorf("proto: wrong wireType = %d for field SupplementalGroups", wireType) } - if msglen < 0 { - return ErrInvalidLengthGenerated - } - postIndex := iNdEx + msglen - if postIndex < 0 { - return ErrInvalidLengthGenerated - } - if postIndex > l { - return io.ErrUnexpectedEOF - } - m.Limits = append(m.Limits, LimitRangeItem{}) - if err := m.Limits[len(m.Limits)-1].Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -47950,17 +48860,100 @@ func (m *NodeDaemonEndpoints) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: NodeDaemonEndpoints: wiretype end group for non-group") + return fmt.Errorf("proto: NodeDaemonEndpoints: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: NodeDaemonEndpoints: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field KubeletEndpoint", 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.KubeletEndpoint.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 *NodeFeatures) 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: NodeFeatures: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: NodeDaemonEndpoints: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: NodeFeatures: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: - if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field KubeletEndpoint", wireType) + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field SupplementalGroupsPolicy", wireType) } - var msglen int + var v int for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -47970,25 +48963,13 @@ func (m *NodeDaemonEndpoints) Unmarshal(dAtA []byte) error { } b := dAtA[iNdEx] iNdEx++ - msglen |= int(b&0x7F) << shift + v |= 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.KubeletEndpoint.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } - iNdEx = postIndex + b := bool(v != 0) + m.SupplementalGroupsPolicy = &b default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -48377,6 +49358,27 @@ func (m *NodeRuntimeHandlerFeatures) Unmarshal(dAtA []byte) error { } b := bool(v != 0) m.RecursiveReadOnlyMounts = &b + case 2: + if wireType != 0 { + return fmt.Errorf("proto: wrong wireType = %d for field UserNamespaces", 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.UserNamespaces = &b default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -49637,6 +50639,42 @@ func (m *NodeStatus) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 13: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Features", 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.Features == nil { + m.Features = &NodeFeatures{} + } + if err := m.Features.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -56370,11 +57408,11 @@ func (m *PodResourceClaim) Unmarshal(dAtA []byte) error { } m.Name = string(dAtA[iNdEx:postIndex]) iNdEx = postIndex - case 2: + case 3: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Source", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ResourceClaimName", wireType) } - var msglen int + var stringLen uint64 for shift := uint(0); ; shift += 7 { if shift >= 64 { return ErrIntOverflowGenerated @@ -56384,24 +57422,57 @@ func (m *PodResourceClaim) 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.Source.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err + s := string(dAtA[iNdEx:postIndex]) + m.ResourceClaimName = &s + iNdEx = postIndex + case 4: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field ResourceClaimTemplateName", 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.ResourceClaimTemplateName = &s iNdEx = postIndex default: iNdEx = preIndex @@ -57018,6 +58089,39 @@ func (m *PodSecurityContext) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 12: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field SupplementalGroupsPolicy", 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 := SupplementalGroupsPolicy(dAtA[iNdEx:postIndex]) + m.SupplementalGroupsPolicy = &s + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) @@ -62585,7 +63689,121 @@ func (m *ReplicationControllerStatus) Unmarshal(dAtA []byte) error { } return nil } -func (m *ResourceClaim) Unmarshal(dAtA []byte) error { +func (m *ResourceClaim) 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: ResourceClaim: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ResourceClaim: 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 Request", 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.Request = 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 *ResourceFieldSelector) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -62608,15 +63826,15 @@ func (m *ResourceClaim) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: ResourceClaim: wiretype end group for non-group") + return fmt.Errorf("proto: ResourceFieldSelector: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: ResourceClaim: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ResourceFieldSelector: 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 ContainerName", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -62644,7 +63862,72 @@ func (m *ResourceClaim) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.Name = string(dAtA[iNdEx:postIndex]) + m.ContainerName = 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 Divisor", 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.Divisor.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } iNdEx = postIndex default: iNdEx = preIndex @@ -62667,7 +63950,7 @@ func (m *ResourceClaim) Unmarshal(dAtA []byte) error { } return nil } -func (m *ResourceFieldSelector) Unmarshal(dAtA []byte) error { +func (m *ResourceHealth) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 for iNdEx < l { @@ -62690,15 +63973,15 @@ func (m *ResourceFieldSelector) Unmarshal(dAtA []byte) error { fieldNum := int32(wire >> 3) wireType := int(wire & 0x7) if wireType == 4 { - return fmt.Errorf("proto: ResourceFieldSelector: wiretype end group for non-group") + return fmt.Errorf("proto: ResourceHealth: wiretype end group for non-group") } if fieldNum <= 0 { - return fmt.Errorf("proto: ResourceFieldSelector: illegal tag %d (wire type %d)", fieldNum, wire) + return fmt.Errorf("proto: ResourceHealth: illegal tag %d (wire type %d)", fieldNum, wire) } switch fieldNum { case 1: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field ContainerName", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field ResourceID", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -62726,11 +64009,11 @@ func (m *ResourceFieldSelector) Unmarshal(dAtA []byte) error { if postIndex > l { return io.ErrUnexpectedEOF } - m.ContainerName = string(dAtA[iNdEx:postIndex]) + m.ResourceID = ResourceID(dAtA[iNdEx:postIndex]) iNdEx = postIndex case 2: if wireType != 2 { - return fmt.Errorf("proto: wrong wireType = %d for field Resource", wireType) + return fmt.Errorf("proto: wrong wireType = %d for field Health", wireType) } var stringLen uint64 for shift := uint(0); ; shift += 7 { @@ -62758,40 +64041,7 @@ func (m *ResourceFieldSelector) Unmarshal(dAtA []byte) error { 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 Divisor", 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.Divisor.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { - return err - } + m.Health = ResourceHealthStatus(dAtA[iNdEx:postIndex]) iNdEx = postIndex default: iNdEx = preIndex @@ -63977,6 +65227,122 @@ func (m *ResourceRequirements) Unmarshal(dAtA []byte) error { } return nil } +func (m *ResourceStatus) 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: ResourceStatus: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: ResourceStatus: 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 = ResourceName(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Resources", 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.Resources = append(m.Resources, ResourceHealth{}) + if err := m.Resources[len(m.Resources)-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 *SELinuxOptions) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 @@ -73029,6 +74395,42 @@ func (m *VolumeSource) Unmarshal(dAtA []byte) error { return err } iNdEx = postIndex + case 30: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Image", 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.Image == nil { + m.Image = &ImageVolumeSource{} + } + if err := m.Image.Unmarshal(dAtA[iNdEx:postIndex]); err != nil { + return err + } + iNdEx = postIndex default: iNdEx = preIndex skippy, err := skipGenerated(dAtA[iNdEx:]) diff --git a/api/vendor/k8s.io/api/core/v1/generated.proto b/api/vendor/k8s.io/api/core/v1/generated.proto index f3b47c722..68ac80ed0 100644 --- a/api/vendor/k8s.io/api/core/v1/generated.proto +++ b/api/vendor/k8s.io/api/core/v1/generated.proto @@ -126,20 +126,24 @@ message AzureDiskVolumeSource { // cachingMode is the Host Caching mode: None, Read Only, Read Write. // +optional + // +default=ref(AzureDataDiskCachingReadWrite) optional string cachingMode = 3; // fsType is Filesystem type to mount. // Must be a filesystem type supported by the host operating system. // Ex. "ext4", "xfs", "ntfs". Implicitly inferred to be "ext4" if unspecified. // +optional + // +default="ext4" optional string fsType = 4; // readOnly Defaults to false (read/write). ReadOnly here will force // the ReadOnly setting in VolumeMounts. // +optional + // +default=false optional bool readOnly = 5; // kind expected values are Shared: multiple blob disks per storage account Dedicated: single blob disk per storage account Managed: azure managed data disk (only in managed availability set). defaults to shared + // +default=ref(AzureSharedBlobDisk) optional string kind = 6; } @@ -182,7 +186,7 @@ message Binding { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // The target object that you want to bind to the standard object. optional ObjectReference target = 2; @@ -422,30 +426,6 @@ message CinderVolumeSource { optional LocalObjectReference secretRef = 4; } -// ClaimSource describes a reference to a ResourceClaim. -// -// Exactly one of these fields should be set. Consumers of this type must -// treat an empty object as if it has an unknown value. -message ClaimSource { - // ResourceClaimName is the name of a ResourceClaim object in the same - // namespace as this pod. - optional string resourceClaimName = 1; - - // ResourceClaimTemplateName is the name of a ResourceClaimTemplate - // object in the same namespace as this pod. - // - // The template will be used to create a new ResourceClaim, which will - // be bound to this pod. When this pod is deleted, the ResourceClaim - // will also be deleted. The pod name and resource name, along with a - // generated component, will be used to form a unique name for the - // ResourceClaim, which will be recorded in pod.status.resourceClaimStatuses. - // - // This field is immutable and no changes will be made to the - // corresponding ResourceClaim by the control plane after creating the - // ResourceClaim. - optional string resourceClaimTemplateName = 2; -} - // ClientIPConfig represents the configurations of Client IP based session affinity. message ClientIPConfig { // timeoutSeconds specifies the seconds of ClientIP type session sticky time. @@ -475,7 +455,7 @@ message ClusterTrustBundleProjection { // interpreted as "match nothing". If set but empty, interpreted as "match // everything". // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 3; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 3; // If true, don't block pod startup if the referenced ClusterTrustBundle(s) // aren't available. If using name, then the named ClusterTrustBundle is @@ -516,7 +496,7 @@ message ComponentStatus { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // List of component conditions observed // +optional @@ -533,7 +513,7 @@ message ComponentStatusList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of ComponentStatus objects. repeated ComponentStatus items = 2; @@ -544,7 +524,7 @@ message ConfigMap { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Immutable, if set to true, ensures that data stored in the ConfigMap cannot // be updated (only object metadata can be modified). @@ -604,7 +584,7 @@ message ConfigMapKeySelector { message ConfigMapList { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // Items is the list of ConfigMaps. repeated ConfigMap items = 2; @@ -984,7 +964,7 @@ message ContainerState { message ContainerStateRunning { // Time at which the container was last (re-)started // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time startedAt = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time startedAt = 1; } // ContainerStateTerminated is a terminated state of a container. @@ -1006,11 +986,11 @@ message ContainerStateTerminated { // Time at which previous execution of the container started // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time startedAt = 5; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time startedAt = 5; // Time at which the container last terminated // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time finishedAt = 6; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time finishedAt = 6; // Container's ID in the format '://' // +optional @@ -1093,7 +1073,7 @@ message ContainerStatus { // and after successfully admitting desired pod resize. // +featureGate=InPlacePodVerticalScaling // +optional - map allocatedResources = 10; + map allocatedResources = 10; // Resources represents the compute resource requests and limits that have been successfully // enacted on the running container after it has been started or has been successfully resized. @@ -1109,6 +1089,29 @@ message ContainerStatus { // +listMapKey=mountPath // +featureGate=RecursiveReadOnlyMounts repeated VolumeMountStatus volumeMounts = 12; + + // User represents user identity information initially attached to the first process of the container + // +featureGate=SupplementalGroupsPolicy + // +optional + optional ContainerUser user = 13; + + // AllocatedResourcesStatus represents the status of various resources + // allocated for this Pod. + // +featureGate=ResourceHealthStatus + // +optional + // +patchMergeKey=name + // +patchStrategy=merge + // +listType=map + // +listMapKey=name + repeated ResourceStatus allocatedResourcesStatus = 14; +} + +// ContainerUser represents user identity information +message ContainerUser { + // Linux holds user identity information initially attached to the first process of the containers in Linux. + // Note that the actual running identity can be changed if the process has enough privilege to do so. + // +optional + optional LinuxContainerUser linux = 1; } // DaemonEndpoint contains information about a single Daemon endpoint. @@ -1188,7 +1191,7 @@ message EmptyDirVolumeSource { // The default is nil which means that the limit is undefined. // More info: https://kubernetes.io/docs/concepts/storage/volumes#emptydir // +optional - optional k8s.io.apimachinery.pkg.api.resource.Quantity sizeLimit = 2; + optional .k8s.io.apimachinery.pkg.api.resource.Quantity sizeLimit = 2; } // EndpointAddress is a tuple that describes single IP address. @@ -1300,7 +1303,7 @@ message Endpoints { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // 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, @@ -1319,7 +1322,7 @@ message EndpointsList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of endpoints. repeated Endpoints items = 2; @@ -1622,7 +1625,7 @@ message EphemeralVolumeSource { message Event { // Standard object's metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata - optional k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // The object that this event is about. optional ObjectReference involvedObject = 2; @@ -1644,11 +1647,11 @@ message Event { // The time at which the event was first recorded. (Time of server receipt is in TypeMeta.) // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time firstTimestamp = 6; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time firstTimestamp = 6; // The time at which the most recent occurrence of this event was recorded. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTimestamp = 7; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTimestamp = 7; // The number of times this event has occurred. // +optional @@ -1660,7 +1663,7 @@ message Event { // Time when this Event was first observed. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime eventTime = 10; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime eventTime = 10; // Data about the Event series this event represents or nil if it's a singleton Event. // +optional @@ -1688,7 +1691,7 @@ message EventList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of events repeated Event items = 2; @@ -1701,7 +1704,7 @@ message EventSeries { optional int32 count = 1; // Time of the last occurrence observed - optional k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime lastObservedTime = 2; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.MicroTime lastObservedTime = 2; } // EventSource contains information for an event. @@ -1954,7 +1957,7 @@ message HTTPGetAction { // Name or number of the port to access on the container. // Number must be in the range 1 to 65535. // Name must be an IANA_SVC_NAME. - optional k8s.io.apimachinery.pkg.util.intstr.IntOrString port = 2; + optional .k8s.io.apimachinery.pkg.util.intstr.IntOrString port = 2; // Host name to connect to, defaults to the pod IP. You probably want to set // "Host" in httpHeaders instead. @@ -1997,6 +2000,7 @@ message HostAlias { // HostIP represents a single IP address allocated to the host. message HostIP { // IP is the IP address assigned to the host + // +required optional string ip = 1; } @@ -2032,6 +2036,7 @@ message ISCSIPersistentVolumeSource { // iscsiInterface is the interface Name that uses an iSCSI transport. // Defaults to 'default' (tcp). // +optional + // +default="default" optional string iscsiInterface = 4; // fsType is the filesystem type of the volume that you want to mount. @@ -2089,6 +2094,7 @@ message ISCSIVolumeSource { // iscsiInterface is the interface Name that uses an iSCSI transport. // Defaults to 'default' (tcp). // +optional + // +default="default" optional string iscsiInterface = 4; // fsType is the filesystem type of the volume that you want to mount. @@ -2129,6 +2135,26 @@ message ISCSIVolumeSource { optional string initiatorName = 12; } +// ImageVolumeSource represents a image volume resource. +message ImageVolumeSource { + // Required: Image or artifact reference to be used. + // Behaves in the same way as pod.spec.containers[*].image. + // Pull secrets will be assembled in the same way as for the container image by looking up node credentials, SA image pull secrets, and pod spec image pull secrets. + // More info: https://kubernetes.io/docs/concepts/containers/images + // This field is optional to allow higher level config management to default or override + // container images in workload controllers like Deployments and StatefulSets. + // +optional + optional string reference = 1; + + // Policy for pulling OCI objects. Possible values are: + // 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. + // Defaults to Always if :latest tag is specified, or IfNotPresent otherwise. + // +optional + optional string pullPolicy = 2; +} + // Maps a string key to a path within a volume. message KeyToPath { // key is the key to project. @@ -2202,7 +2228,7 @@ message LimitRange { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the limits enforced. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -2217,23 +2243,23 @@ message LimitRangeItem { // Max usage constraints on this kind by resource name. // +optional - map max = 2; + map max = 2; // Min usage constraints on this kind by resource name. // +optional - map min = 3; + map min = 3; // Default resource requirement limit value by resource name if resource limit is omitted. // +optional - map default = 4; + map default = 4; // DefaultRequest is the default resource requirement request value by resource name if resource request is omitted. // +optional - map defaultRequest = 5; + map defaultRequest = 5; // MaxLimitRequestRatio if specified, the named resource must have a request and limit that are both non-zero where limit divided by request is less than or equal to the enumerated value; this represents the max burst for the named resource. // +optional - map maxLimitRequestRatio = 6; + map maxLimitRequestRatio = 6; } // LimitRangeList is a list of LimitRange items. @@ -2241,7 +2267,7 @@ message LimitRangeList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // Items is a list of LimitRange objects. // More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/ @@ -2255,15 +2281,29 @@ message LimitRangeSpec { repeated LimitRangeItem limits = 1; } +// LinuxContainerUser represents user identity information in Linux containers +message LinuxContainerUser { + // UID is the primary uid initially attached to the first process in the container + optional int64 uid = 1; + + // GID is the primary gid initially attached to the first process in the container + optional int64 gid = 2; + + // SupplementalGroups are the supplemental groups initially attached to the first process in the container + // +optional + // +listType=atomic + repeated int64 supplementalGroups = 3; +} + // List holds a list of objects, which may not be known by the server. message List { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of objects - repeated k8s.io.apimachinery.pkg.runtime.RawExtension items = 2; + repeated .k8s.io.apimachinery.pkg.runtime.RawExtension items = 2; } // LoadBalancerIngress represents the status of a load-balancer ingress point: @@ -2377,7 +2417,7 @@ message Namespace { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the behavior of the Namespace. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -2399,7 +2439,7 @@ message NamespaceCondition { optional string status = 2; // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; // +optional optional string reason = 5; @@ -2413,7 +2453,7 @@ message NamespaceList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // Items is the list of Namespace objects in the list. // More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/namespaces/ @@ -2451,7 +2491,7 @@ message Node { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the behavior of a node. // https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -2509,11 +2549,11 @@ message NodeCondition { // Last time we got an update on a given condition. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastHeartbeatTime = 3; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastHeartbeatTime = 3; // Last time the condition transit from one status to another. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; // (brief) reason for the condition's last transition. // +optional @@ -2588,12 +2628,21 @@ message NodeDaemonEndpoints { optional DaemonEndpoint kubeletEndpoint = 1; } +// NodeFeatures describes the set of features implemented by the CRI implementation. +// The features contained in the NodeFeatures should depend only on the cri implementation +// independent of runtime handlers. +message NodeFeatures { + // SupplementalGroupsPolicy is set to true if the runtime supports SupplementalGroupsPolicy and ContainerUser. + // +optional + optional bool supplementalGroupsPolicy = 1; +} + // NodeList is the whole list of all Nodes which have been registered with master. message NodeList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of nodes repeated Node items = 2; @@ -2618,12 +2667,17 @@ message NodeRuntimeHandler { optional NodeRuntimeHandlerFeatures features = 2; } -// NodeRuntimeHandlerFeatures is a set of runtime features. +// NodeRuntimeHandlerFeatures is a set of features implemented by the runtime handler. message NodeRuntimeHandlerFeatures { // RecursiveReadOnlyMounts is set to true if the runtime handler supports RecursiveReadOnlyMounts. // +featureGate=RecursiveReadOnlyMounts // +optional optional bool recursiveReadOnlyMounts = 1; + + // UserNamespaces is set to true if the runtime handler supports UserNamespaces, including for volumes. + // +featureGate=UserNamespacesSupport + // +optional + optional bool userNamespaces = 2; } // A node selector represents the union of the results of one or more label queries @@ -2713,14 +2767,14 @@ message NodeSpec { // NodeStatus is information about the current status of a node. message NodeStatus { // Capacity represents the total resources of a node. - // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#capacity + // More info: https://kubernetes.io/docs/reference/node/node-status/#capacity // +optional - map capacity = 1; + map capacity = 1; // Allocatable represents the resources of a node that are available for scheduling. // Defaults to Capacity. // +optional - map allocatable = 2; + map allocatable = 2; // NodePhase is the recently observed lifecycle phase of the node. // More info: https://kubernetes.io/docs/concepts/nodes/node/#phase @@ -2784,9 +2838,15 @@ message NodeStatus { // The available runtime handlers. // +featureGate=RecursiveReadOnlyMounts + // +featureGate=UserNamespacesSupport // +optional // +listType=atomic repeated NodeRuntimeHandler runtimeHandlers = 12; + + // Features describes the set of features implemented by the CRI implementation. + // +featureGate=SupplementalGroupsPolicy + // +optional + optional NodeFeatures features = 13; } // NodeSystemInfo is a set of ids/uuids to uniquely identify the node. @@ -2816,7 +2876,7 @@ message NodeSystemInfo { // Kubelet Version reported by the node. optional string kubeletVersion = 7; - // KubeProxy Version reported by the node. + // Deprecated: KubeProxy Version reported by the node. optional string kubeProxyVersion = 8; // The Operating System reported by the node @@ -2904,7 +2964,7 @@ message PersistentVolume { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // spec defines a specification of a persistent volume owned by the cluster. // Provisioned by an administrator. @@ -2925,7 +2985,7 @@ message PersistentVolumeClaim { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // spec defines the desired characteristics of a volume requested by a pod author. // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims @@ -2947,11 +3007,11 @@ message PersistentVolumeClaimCondition { // lastProbeTime is the time we probed the condition. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastProbeTime = 3; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastProbeTime = 3; // lastTransitionTime is the time the condition transitioned from one status to another. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; // reason is a unique, this should be a short, machine understandable string that gives the reason // for condition's last transition. If it reports "Resizing" that means the underlying @@ -2969,7 +3029,7 @@ message PersistentVolumeClaimList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // items is a list of persistent volume claims. // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#persistentvolumeclaims @@ -2987,7 +3047,7 @@ message PersistentVolumeClaimSpec { // selector is a label query over volumes to consider for binding. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector selector = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector selector = 4; // resources represents the minimum resources the volume should have. // If RecoverVolumeExpansionFailure feature is enabled users are allowed to specify resource requirements @@ -3059,7 +3119,7 @@ message PersistentVolumeClaimSpec { // set to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource // exists. // More info: https://kubernetes.io/docs/concepts/storage/volume-attributes-classes/ - // (Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled. + // (Beta) Using this field requires the VolumeAttributesClass feature gate to be enabled (off by default). // +featureGate=VolumeAttributesClass // +optional optional string volumeAttributesClassName = 9; @@ -3079,7 +3139,7 @@ message PersistentVolumeClaimStatus { // capacity represents the actual resources of the underlying volume. // +optional - map capacity = 3; + map capacity = 3; // conditions is the current Condition of persistent volume claim. If underlying persistent volume is being // resized then the Condition will be set to 'Resizing'. @@ -3114,7 +3174,7 @@ message PersistentVolumeClaimStatus { // This is an alpha field and requires enabling RecoverVolumeExpansionFailure feature. // +featureGate=RecoverVolumeExpansionFailure // +optional - map allocatedResources = 5; + map allocatedResources = 5; // allocatedResourceStatuses stores status of resource being resized for the given PVC. // Key names follow standard Kubernetes label syntax. Valid values are either: @@ -3158,14 +3218,14 @@ message PersistentVolumeClaimStatus { // currentVolumeAttributesClassName is the current name of the VolumeAttributesClass the PVC is using. // When unset, there is no VolumeAttributeClass applied to this PersistentVolumeClaim - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional optional string currentVolumeAttributesClassName = 8; // ModifyVolumeStatus represents the status object of ControllerModifyVolume operation. // When this is unset, there is no ModifyVolume operation being attempted. - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional optional ModifyVolumeStatus modifyVolumeStatus = 9; @@ -3179,7 +3239,7 @@ message PersistentVolumeClaimTemplate { // validation. // // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // The specification for the PersistentVolumeClaim. The entire content is // copied unchanged into the PVC that gets created from this @@ -3208,7 +3268,7 @@ message PersistentVolumeList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // items is a list of persistent volumes. // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes @@ -3327,7 +3387,7 @@ message PersistentVolumeSpec { // capacity is the description of the persistent volume's resources and capacity. // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#capacity // +optional - map capacity = 1; + map capacity = 1; // persistentVolumeSource is the actual volume backing the persistent volume. optional PersistentVolumeSource persistentVolumeSource = 2; @@ -3382,7 +3442,7 @@ message PersistentVolumeSpec { // after a volume has been updated successfully to a new class. // For an unbound PersistentVolume, the volumeAttributesClassName will be matched with unbound // PersistentVolumeClaims during the binding process. - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional optional string volumeAttributesClassName = 10; @@ -3406,10 +3466,8 @@ message PersistentVolumeStatus { // lastPhaseTransitionTime is the time the phase transitioned from one to another // and automatically resets to current time everytime a volume phase transitions. - // This is a beta field and requires the PersistentVolumeLastPhaseTransitionTime feature to be enabled (enabled by default). - // +featureGate=PersistentVolumeLastPhaseTransitionTime // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastPhaseTransitionTime = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastPhaseTransitionTime = 4; } // Represents a Photon Controller persistent disk resource. @@ -3429,7 +3487,7 @@ message Pod { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Specification of the desired behavior of the pod. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -3482,7 +3540,7 @@ message PodAffinityTerm { // A label query over a set of resources, in this case pods. // If it's null, this PodAffinityTerm matches with no Pods. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 1; // 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 @@ -3505,7 +3563,7 @@ message PodAffinityTerm { // null selector and null or empty namespaces list means "this pod's namespace". // An empty selector ({}) matches all namespaces. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector namespaceSelector = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector namespaceSelector = 4; // 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 @@ -3515,7 +3573,8 @@ 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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate. + // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). + // // +listType=atomic // +optional repeated string matchLabelKeys = 5; @@ -3528,7 +3587,8 @@ 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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate. + // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). + // // +listType=atomic // +optional repeated string mismatchLabelKeys = 6; @@ -3607,11 +3667,11 @@ message PodCondition { // Last time we probed the condition. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastProbeTime = 3; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastProbeTime = 3; // Last time the condition transitioned from one status to another. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 4; // Unique, one-word, CamelCase reason for the condition's last transition. // +optional @@ -3693,6 +3753,7 @@ message PodExecOptions { // PodIP represents a single IP address allocated to the pod. message PodIP { // IP is the IP address assigned to the pod + // +required optional string ip = 1; } @@ -3701,7 +3762,7 @@ message PodList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of pods. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md @@ -3734,7 +3795,7 @@ message PodLogOptions { // If this value is in the future, no logs will be returned. // Only one of sinceSeconds or sinceTime may be specified. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time sinceTime = 5; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time sinceTime = 5; // If true, add an RFC3339 or RFC3339Nano timestamp at the beginning of every line // of log output. Defaults to false. @@ -3798,7 +3859,10 @@ message PodReadinessGate { optional string conditionType = 1; } -// PodResourceClaim references exactly one ResourceClaim through a ClaimSource. +// PodResourceClaim references exactly one ResourceClaim, either directly +// or by naming a ResourceClaimTemplate which is then turned into a ResourceClaim +// for the pod. +// // It adds a name to it that uniquely identifies the ResourceClaim inside the Pod. // Containers that need access to the ResourceClaim reference it with this name. message PodResourceClaim { @@ -3806,8 +3870,29 @@ message PodResourceClaim { // This must be a DNS_LABEL. optional string name = 1; - // Source describes where to find the ResourceClaim. - optional ClaimSource source = 2; + // ResourceClaimName is the name of a ResourceClaim object in the same + // namespace as this pod. + // + // Exactly one of ResourceClaimName and ResourceClaimTemplateName must + // be set. + optional string resourceClaimName = 3; + + // ResourceClaimTemplateName is the name of a ResourceClaimTemplate + // object in the same namespace as this pod. + // + // The template will be used to create a new ResourceClaim, which will + // be bound to this pod. When this pod is deleted, the ResourceClaim + // will also be deleted. The pod name and resource name, along with a + // generated component, will be used to form a unique name for the + // ResourceClaim, which will be recorded in pod.status.resourceClaimStatuses. + // + // This field is immutable and no changes will be made to the + // corresponding ResourceClaim by the control plane after creating the + // ResourceClaim. + // + // Exactly one of ResourceClaimName and ResourceClaimTemplateName must + // be set. + optional string resourceClaimTemplateName = 4; } // PodResourceClaimStatus is stored in the PodStatus for each PodResourceClaim @@ -3820,7 +3905,7 @@ message PodResourceClaimStatus { optional string name = 1; // ResourceClaimName is the name of the ResourceClaim that was - // generated for the Pod in the namespace of the Pod. It this is + // generated for the Pod in the namespace of the Pod. If this is // unset, then generating a ResourceClaim was not necessary. The // pod.spec.resourceClaims entry can be ignored in this case. // @@ -3882,17 +3967,29 @@ message PodSecurityContext { // +optional optional bool runAsNonRoot = 3; - // A list of groups applied to the first process run in each container, in addition - // to the container's primary GID, the fsGroup (if specified), and group memberships - // defined in the container image for the uid of the container process. If unspecified, - // no additional groups are added to any container. Note that group memberships - // defined in the container image for the uid of the container process are still effective, - // even if they are not included in this list. + // A list of groups applied to the first process run in each container, in + // addition to the container's primary GID and fsGroup (if specified). If + // the SupplementalGroupsPolicy feature is enabled, the + // supplementalGroupsPolicy field determines whether these are in addition + // to or instead of any group memberships defined in the container image. + // If unspecified, no additional groups are added, though group memberships + // defined in the container image may still be used, depending on the + // supplementalGroupsPolicy field. // Note that this field cannot be set when spec.os.name is windows. // +optional // +listType=atomic repeated int64 supplementalGroups = 4; + // Defines how supplemental groups of the first container processes are calculated. + // Valid values are "Merge" and "Strict". If not specified, "Merge" is used. + // (Alpha) Using the field requires the SupplementalGroupsPolicy feature gate to be enabled + // and the container runtime must implement support for this feature. + // Note that this field cannot be set when spec.os.name is windows. + // TODO: update the default value to "Merge" when spec.os.name is not windows in v1.34 + // +featureGate=SupplementalGroupsPolicy + // +optional + optional string supplementalGroupsPolicy = 12; + // A special supplemental group that applies to all containers in a pod. // Some volume types allow the Kubelet to change the ownership of that volume // to be owned by the pod: @@ -3939,7 +4036,7 @@ message PodSecurityContext { message PodSignature { // Reference to controller whose pods should avoid this node. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.OwnerReference podController = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.OwnerReference podController = 1; } // PodSpec is a description of a pod. @@ -4048,9 +4145,11 @@ message PodSpec { // +optional optional bool automountServiceAccountToken = 21; - // NodeName is a request to schedule this pod onto a specific node. If it is non-empty, - // the scheduler simply schedules this pod onto that node, assuming that it fits resource - // requirements. + // NodeName indicates in which node this pod is scheduled. + // If empty, this pod is a candidate for scheduling by the scheduler defined in schedulerName. + // Once this field is set, the kubelet for this node becomes responsible for the lifecycle of this pod. + // This field should not be used to express a desire for the pod to be scheduled on a specific node. + // https://kubernetes.io/docs/concepts/scheduling-eviction/assign-pod-node/#nodename // +optional optional string nodeName = 10; @@ -4189,7 +4288,7 @@ message PodSpec { // defined in the corresponding RuntimeClass, otherwise it will remain unset and treated as zero. // More info: https://git.k8s.io/enhancements/keps/sig-node/688-pod-overhead/README.md // +optional - map overhead = 32; + map overhead = 32; // TopologySpreadConstraints describes how a group of pods ought to spread across topology // domains. Scheduler will schedule pods in a way which abides by the constraints. @@ -4230,6 +4329,7 @@ message PodSpec { // - spec.securityContext.runAsUser // - spec.securityContext.runAsGroup // - spec.securityContext.supplementalGroups + // - spec.securityContext.supplementalGroupsPolicy // - spec.containers[*].securityContext.appArmorProfile // - spec.containers[*].securityContext.seLinuxOptions // - spec.containers[*].securityContext.seccompProfile @@ -4375,7 +4475,7 @@ message PodStatus { // RFC 3339 date and time at which the object was acknowledged by the Kubelet. // This is before the Kubelet pulled the container image(s) for the pod. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time startTime = 7; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time startTime = 7; // The list has one entry per init container in the manifest. The most recent successful // init container will have ready = true, the most recently started container will have @@ -4423,7 +4523,7 @@ message PodStatusResult { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Most recently observed status of the pod. // This data may not be up to date. @@ -4439,7 +4539,7 @@ message PodTemplate { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Template defines the pods that will be created from this pod template. // https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -4452,7 +4552,7 @@ message PodTemplateList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of pod templates repeated PodTemplate items = 2; @@ -4463,7 +4563,7 @@ message PodTemplateSpec { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Specification of the desired behavior of the pod. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -4525,7 +4625,7 @@ message PreferAvoidPodsEntry { // Time at which this entry was added to the list. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time evictionTime = 2; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time evictionTime = 2; // (brief) reason why this entry was added to the list. // +optional @@ -4614,7 +4714,8 @@ message ProbeHandler { // Represents a projected volume source message ProjectedVolumeSource { - // sources is the list of volume projections + // sources is the list of volume projections. Each entry in this list + // handles one source. // +optional // +listType=atomic repeated VolumeProjection sources = 1; @@ -4685,18 +4786,21 @@ message RBDPersistentVolumeSource { // Default is rbd. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="rbd" optional string pool = 4; // user is the rados user name. // Default is admin. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="admin" optional string user = 5; // keyring is the path to key ring for RBDUser. // Default is /etc/ceph/keyring. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="/etc/ceph/keyring" optional string keyring = 6; // secretRef is name of the authentication secret for RBDUser. If provided @@ -4737,18 +4841,21 @@ message RBDVolumeSource { // Default is rbd. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="rbd" optional string pool = 4; // user is the rados user name. // Default is admin. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="admin" optional string user = 5; // keyring is the path to key ring for RBDUser. // Default is /etc/ceph/keyring. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="/etc/ceph/keyring" optional string keyring = 6; // secretRef is name of the authentication secret for RBDUser. If provided @@ -4770,7 +4877,7 @@ message RangeAllocation { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Range is string that identifies the range represented by 'data'. optional string range = 2; @@ -4785,7 +4892,7 @@ message ReplicationController { // be the same as the Pod(s) that the replication controller manages. // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the specification of the desired behavior of the replication controller. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -4811,7 +4918,7 @@ message ReplicationControllerCondition { // The last time the condition transitioned from one status to another. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 3; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time lastTransitionTime = 3; // The reason for the condition's last transition. // +optional @@ -4827,7 +4934,7 @@ message ReplicationControllerList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of replication controllers. // More info: https://kubernetes.io/docs/concepts/workloads/controllers/replicationcontroller @@ -4904,6 +5011,13 @@ message ResourceClaim { // the Pod where this field is used. It makes that resource available // inside a container. optional string name = 1; + + // Request is the name chosen for a request in the referenced claim. + // If empty, everything from the claim is made available, otherwise + // only the result of this request. + // + // +optional + optional string request = 2; } // ResourceFieldSelector represents container resources (cpu, memory) and their output format @@ -4918,7 +5032,26 @@ message ResourceFieldSelector { // Specifies the output format of the exposed resources, defaults to "1" // +optional - optional k8s.io.apimachinery.pkg.api.resource.Quantity divisor = 3; + optional .k8s.io.apimachinery.pkg.api.resource.Quantity divisor = 3; +} + +// ResourceHealth represents the health of a resource. It has the latest device health information. +// This is a part of KEP https://kep.k8s.io/4680 and historical health changes are planned to be added in future iterations of a KEP. +message ResourceHealth { + // ResourceID is the unique identifier of the resource. See the ResourceID type for more information. + optional string resourceID = 1; + + // Health of the resource. + // can be one of: + // - Healthy: operates as normal + // - Unhealthy: reported unhealthy. We consider this a temporary health issue + // since we do not have a mechanism today to distinguish + // temporary and permanent issues. + // - Unknown: The status cannot be determined. + // For example, Device Plugin got unregistered and hasn't been re-registered since. + // + // In future we may want to introduce the PermanentlyUnhealthy Status. + optional string health = 2; } // ResourceQuota sets aggregate quota restrictions enforced per namespace @@ -4926,7 +5059,7 @@ message ResourceQuota { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the desired quota. // https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -4944,7 +5077,7 @@ message ResourceQuotaList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // Items is a list of ResourceQuota objects. // More info: https://kubernetes.io/docs/concepts/policy/resource-quotas/ @@ -4956,7 +5089,7 @@ message ResourceQuotaSpec { // hard is the set of desired hard limits for each named resource. // More info: https://kubernetes.io/docs/concepts/policy/resource-quotas/ // +optional - map hard = 1; + map hard = 1; // A collection of filters that must match each object tracked by a quota. // If not specified, the quota matches all objects. @@ -4976,11 +5109,11 @@ message ResourceQuotaStatus { // Hard is the set of enforced hard limits for each named resource. // More info: https://kubernetes.io/docs/concepts/policy/resource-quotas/ // +optional - map hard = 1; + map hard = 1; // Used is the current observed total usage of the resource in the namespace. // +optional - map used = 2; + map used = 2; } // ResourceRequirements describes the compute resource requirements. @@ -4988,14 +5121,14 @@ message ResourceRequirements { // Limits describes the maximum amount of compute resources allowed. // More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/ // +optional - map limits = 1; + map limits = 1; // Requests describes the minimum amount of compute resources required. // If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, // otherwise to an implementation-defined value. Requests cannot exceed Limits. // More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/ // +optional - map requests = 2; + map requests = 2; // Claims lists the names of resources, defined in spec.resourceClaims, // that are used by this container. @@ -5012,6 +5145,20 @@ message ResourceRequirements { repeated ResourceClaim claims = 3; } +message ResourceStatus { + // Name of the resource. Must be unique within the pod and match one of the resources from the pod spec. + // +required + optional string name = 1; + + // List of unique Resources health. Each element in the list contains an unique resource ID and resource health. + // At a minimum, ResourceID must uniquely identify the Resource + // allocated to the Pod on the Node for the lifetime of a Pod. + // See ResourceID type for it's definition. + // +listType=map + // +listMapKey=resourceID + repeated ResourceHealth resources = 2; +} + // SELinuxOptions are the labels to be applied to the container message SELinuxOptions { // User is a SELinux user label that applies to the container. @@ -5058,6 +5205,7 @@ message ScaleIOPersistentVolumeSource { // storageMode indicates whether the storage for a volume should be ThickProvisioned or ThinProvisioned. // Default is ThinProvisioned. // +optional + // +default="ThinProvisioned" optional string storageMode = 7; // volumeName is the name of a volume already created in the ScaleIO system @@ -5069,6 +5217,7 @@ message ScaleIOPersistentVolumeSource { // Ex. "ext4", "xfs", "ntfs". // Default is "xfs" // +optional + // +default="xfs" optional string fsType = 9; // readOnly defaults to false (read/write). ReadOnly here will force @@ -5104,6 +5253,7 @@ message ScaleIOVolumeSource { // storageMode indicates whether the storage for a volume should be ThickProvisioned or ThinProvisioned. // Default is ThinProvisioned. // +optional + // +default="ThinProvisioned" optional string storageMode = 7; // volumeName is the name of a volume already created in the ScaleIO system @@ -5115,6 +5265,7 @@ message ScaleIOVolumeSource { // Ex. "ext4", "xfs", "ntfs". // Default is "xfs". // +optional + // +default="xfs" optional string fsType = 9; // readOnly Defaults to false (read/write). ReadOnly here will force @@ -5179,7 +5330,7 @@ message Secret { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Immutable, if set to true, ensures that data stored in the Secret cannot // be updated (only object metadata can be modified). @@ -5242,7 +5393,7 @@ message SecretList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // Items is a list of secret objects. // More info: https://kubernetes.io/docs/concepts/configuration/secret @@ -5398,7 +5549,7 @@ message SecurityContext { optional bool allowPrivilegeEscalation = 7; // procMount denotes the type of proc mount to use for the containers. - // The default is DefaultProcMount which uses the container runtime defaults for + // The default value is Default which uses the container runtime defaults for // readonly paths and masked paths. // This requires the ProcMountType feature flag to be enabled. // Note that this field cannot be set when spec.os.name is windows. @@ -5433,7 +5584,7 @@ message Service { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Spec defines the behavior of a service. // https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#spec-and-status @@ -5456,7 +5607,7 @@ message ServiceAccount { // 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; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ObjectMeta metadata = 1; // Secrets is a list of the secrets in the same namespace that pods running using this ServiceAccount are allowed to use. // Pods are only limited to this list if this service account has a "kubernetes.io/enforce-mountable-secrets" annotation set to "true". @@ -5489,7 +5640,7 @@ message ServiceAccountList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of ServiceAccounts. // More info: https://kubernetes.io/docs/tasks/configure-pod-container/configure-service-account/ @@ -5527,7 +5678,7 @@ message ServiceList { // Standard list metadata. // More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.ListMeta metadata = 1; // List of services repeated Service items = 2; @@ -5579,7 +5730,7 @@ message ServicePort { // omitted or set equal to the 'port' field. // More info: https://kubernetes.io/docs/concepts/services-networking/service/#defining-a-service // +optional - optional k8s.io.apimachinery.pkg.util.intstr.IntOrString targetPort = 4; + optional .k8s.io.apimachinery.pkg.util.intstr.IntOrString targetPort = 4; // The port on each node on which this service is exposed when type is // NodePort or LoadBalancer. Usually assigned by the system. If a value is @@ -5864,7 +6015,7 @@ message ServiceStatus { // +patchStrategy=merge // +listType=map // +listMapKey=type - repeated k8s.io.apimachinery.pkg.apis.meta.v1.Condition conditions = 2; + repeated .k8s.io.apimachinery.pkg.apis.meta.v1.Condition conditions = 2; } // SessionAffinityConfig represents the configurations of session affinity. @@ -5958,7 +6109,7 @@ message TCPSocketAction { // Number or name of the port to access on the container. // Number must be in the range 1 to 65535. // Name must be an IANA_SVC_NAME. - optional k8s.io.apimachinery.pkg.util.intstr.IntOrString port = 1; + optional .k8s.io.apimachinery.pkg.util.intstr.IntOrString port = 1; // Optional: Host name to connect to, defaults to the pod IP. // +optional @@ -5983,7 +6134,7 @@ message Taint { // TimeAdded represents the time at which the taint was added. // It is only written for NoExecute taints. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.Time timeAdded = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.Time timeAdded = 4; } // The pod this Toleration is attached to tolerates any taint that matches @@ -6107,7 +6258,7 @@ message TopologySpreadConstraint { // Pods that match this label selector are counted to determine the number of pods // in their corresponding topology domain. // +optional - optional k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 4; + optional .k8s.io.apimachinery.pkg.apis.meta.v1.LabelSelector labelSelector = 4; // MinDomains indicates a minimum number of eligible domains. // When the number of eligible domains with matching topology keys is less than minDomains, @@ -6313,7 +6464,8 @@ message VolumeNodeAffinity { optional NodeSelector required = 1; } -// Projection that may be projected along with other supported volume types +// Projection that may be projected along with other supported volume types. +// Exactly one of these fields must be set. message VolumeProjection { // secret information about the secret data to project // +optional @@ -6355,14 +6507,14 @@ message VolumeResourceRequirements { // Limits describes the maximum amount of compute resources allowed. // More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/ // +optional - map limits = 1; + map limits = 1; // Requests describes the minimum amount of compute resources required. // If Requests is omitted for a container, it defaults to Limits if that is explicitly specified, // otherwise to an implementation-defined value. Requests cannot exceed Limits. // More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/ // +optional - map requests = 2; + map requests = 2; } // Represents the source of a volume to mount. @@ -6530,6 +6682,24 @@ message VolumeSource { // // +optional optional EphemeralVolumeSource ephemeral = 29; + + // 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: + // + // - 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. + // + // The 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. + // +featureGate=ImageVolume + // +optional + optional ImageVolumeSource image = 30; } // Represents a vSphere volume resource. diff --git a/api/vendor/k8s.io/api/core/v1/types.go b/api/vendor/k8s.io/api/core/v1/types.go index 328df9a7b..3a74138ba 100644 --- a/api/vendor/k8s.io/api/core/v1/types.go +++ b/api/vendor/k8s.io/api/core/v1/types.go @@ -181,6 +181,23 @@ type VolumeSource struct { // // +optional Ephemeral *EphemeralVolumeSource `json:"ephemeral,omitempty" protobuf:"bytes,29,opt,name=ephemeral"` + // 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: + // + // - 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. + // + // The 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. + // +featureGate=ImageVolume + // +optional + Image *ImageVolumeSource `json:"image,omitempty" protobuf:"bytes,30,opt,name=image"` } // PersistentVolumeClaimVolumeSource references the user's PVC in the same namespace. @@ -295,6 +312,7 @@ const ( // +genclient // +genclient:nonNamespaced // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PersistentVolume (PV) is a storage resource provisioned by an administrator. // It is analogous to a node. @@ -371,7 +389,7 @@ type PersistentVolumeSpec struct { // after a volume has been updated successfully to a new class. // For an unbound PersistentVolume, the volumeAttributesClassName will be matched with unbound // PersistentVolumeClaims during the binding process. - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional VolumeAttributesClassName *string `json:"volumeAttributesClassName,omitempty" protobuf:"bytes,10,opt,name=volumeAttributesClassName"` @@ -425,13 +443,12 @@ type PersistentVolumeStatus struct { Reason string `json:"reason,omitempty" protobuf:"bytes,3,opt,name=reason"` // lastPhaseTransitionTime is the time the phase transitioned from one to another // and automatically resets to current time everytime a volume phase transitions. - // This is a beta field and requires the PersistentVolumeLastPhaseTransitionTime feature to be enabled (enabled by default). - // +featureGate=PersistentVolumeLastPhaseTransitionTime // +optional LastPhaseTransitionTime *metav1.Time `json:"lastPhaseTransitionTime,omitempty" protobuf:"bytes,4,opt,name=lastPhaseTransitionTime"` } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PersistentVolumeList is a list of PersistentVolume items. type PersistentVolumeList struct { @@ -447,6 +464,7 @@ type PersistentVolumeList struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PersistentVolumeClaim is a user's request for and claim to a persistent volume type PersistentVolumeClaim struct { @@ -469,6 +487,7 @@ type PersistentVolumeClaim struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PersistentVolumeClaimList is a list of PersistentVolumeClaim items. type PersistentVolumeClaimList struct { @@ -557,7 +576,7 @@ type PersistentVolumeClaimSpec struct { // set to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource // exists. // More info: https://kubernetes.io/docs/concepts/storage/volume-attributes-classes/ - // (Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled. + // (Beta) Using this field requires the VolumeAttributesClass feature gate to be enabled (off by default). // +featureGate=VolumeAttributesClass // +optional VolumeAttributesClassName *string `json:"volumeAttributesClassName,omitempty" protobuf:"bytes,9,opt,name=volumeAttributesClassName"` @@ -581,15 +600,29 @@ type TypedObjectReference struct { Namespace *string `json:"namespace,omitempty" protobuf:"bytes,4,opt,name=namespace"` } -// PersistentVolumeClaimConditionType is a valid value of PersistentVolumeClaimCondition.Type +// PersistentVolumeClaimConditionType defines the condition of PV claim. +// Valid values are: +// - "Resizing", "FileSystemResizePending" +// +// If RecoverVolumeExpansionFailure feature gate is enabled, then following additional values can be expected: +// - "ControllerResizeError", "NodeResizeError" +// +// If VolumeAttributesClass feature gate is enabled, then following additional values can be expected: +// - "ModifyVolumeError", "ModifyingVolume" type PersistentVolumeClaimConditionType string +// These are valid conditions of PVC const ( // PersistentVolumeClaimResizing - a user trigger resize of pvc has been started PersistentVolumeClaimResizing PersistentVolumeClaimConditionType = "Resizing" // PersistentVolumeClaimFileSystemResizePending - controller resize is finished and a file system resize is pending on node PersistentVolumeClaimFileSystemResizePending PersistentVolumeClaimConditionType = "FileSystemResizePending" + // PersistentVolumeClaimControllerResizeError indicates an error while resizing volume for size in the controller + PersistentVolumeClaimControllerResizeError PersistentVolumeClaimConditionType = "ControllerResizeError" + // PersistentVolumeClaimNodeResizeError indicates an error while resizing volume for size in the node. + PersistentVolumeClaimNodeResizeError PersistentVolumeClaimConditionType = "NodeResizeError" + // Applying the target VolumeAttributesClass encountered an error PersistentVolumeClaimVolumeModifyVolumeError PersistentVolumeClaimConditionType = "ModifyVolumeError" // Volume is being modified @@ -606,18 +639,19 @@ const ( // State set when resize controller starts resizing the volume in control-plane. PersistentVolumeClaimControllerResizeInProgress ClaimResourceStatus = "ControllerResizeInProgress" - // State set when resize has failed in resize controller with a terminal error. + // State set when resize has failed in resize controller with a terminal unrecoverable error. // Transient errors such as timeout should not set this status and should leave allocatedResourceStatus // unmodified, so as resize controller can resume the volume expansion. - PersistentVolumeClaimControllerResizeFailed ClaimResourceStatus = "ControllerResizeFailed" + PersistentVolumeClaimControllerResizeInfeasible ClaimResourceStatus = "ControllerResizeInfeasible" // State set when resize controller has finished resizing the volume but further resizing of volume // is needed on the node. PersistentVolumeClaimNodeResizePending ClaimResourceStatus = "NodeResizePending" // State set when kubelet starts resizing the volume. PersistentVolumeClaimNodeResizeInProgress ClaimResourceStatus = "NodeResizeInProgress" - // State set when resizing has failed in kubelet with a terminal error. Transient errors don't set NodeResizeFailed - PersistentVolumeClaimNodeResizeFailed ClaimResourceStatus = "NodeResizeFailed" + // State set when resizing has failed in kubelet with a terminal unrecoverable error. Transient errors + // shouldn't set this status + PersistentVolumeClaimNodeResizeInfeasible ClaimResourceStatus = "NodeResizeInfeasible" ) // +enum @@ -763,13 +797,13 @@ type PersistentVolumeClaimStatus struct { AllocatedResourceStatuses map[ResourceName]ClaimResourceStatus `json:"allocatedResourceStatuses,omitempty" protobuf:"bytes,7,rep,name=allocatedResourceStatuses"` // currentVolumeAttributesClassName is the current name of the VolumeAttributesClass the PVC is using. // When unset, there is no VolumeAttributeClass applied to this PersistentVolumeClaim - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional CurrentVolumeAttributesClassName *string `json:"currentVolumeAttributesClassName,omitempty" protobuf:"bytes,8,opt,name=currentVolumeAttributesClassName"` // ModifyVolumeStatus represents the status object of ControllerModifyVolume operation. // When this is unset, there is no ModifyVolume operation being attempted. - // This is an alpha field and requires enabling VolumeAttributesClass feature. + // This is a beta field and requires enabling VolumeAttributesClass feature (off by default). // +featureGate=VolumeAttributesClass // +optional ModifyVolumeStatus *ModifyVolumeStatus `json:"modifyVolumeStatus,omitempty" protobuf:"bytes,9,opt,name=modifyVolumeStatus"` @@ -943,16 +977,19 @@ type RBDVolumeSource struct { // Default is rbd. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="rbd" RBDPool string `json:"pool,omitempty" protobuf:"bytes,4,opt,name=pool"` // user is the rados user name. // Default is admin. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="admin" RadosUser string `json:"user,omitempty" protobuf:"bytes,5,opt,name=user"` // keyring is the path to key ring for RBDUser. // Default is /etc/ceph/keyring. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="/etc/ceph/keyring" Keyring string `json:"keyring,omitempty" protobuf:"bytes,6,opt,name=keyring"` // secretRef is name of the authentication secret for RBDUser. If provided // overrides keyring. @@ -988,16 +1025,19 @@ type RBDPersistentVolumeSource struct { // Default is rbd. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="rbd" RBDPool string `json:"pool,omitempty" protobuf:"bytes,4,opt,name=pool"` // user is the rados user name. // Default is admin. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="admin" RadosUser string `json:"user,omitempty" protobuf:"bytes,5,opt,name=user"` // keyring is the path to key ring for RBDUser. // Default is /etc/ceph/keyring. // More info: https://examples.k8s.io/volumes/rbd/README.md#how-to-use-it // +optional + // +default="/etc/ceph/keyring" Keyring string `json:"keyring,omitempty" protobuf:"bytes,6,opt,name=keyring"` // secretRef is name of the authentication secret for RBDUser. If provided // overrides keyring. @@ -1426,6 +1466,7 @@ type ISCSIVolumeSource struct { // iscsiInterface is the interface Name that uses an iSCSI transport. // Defaults to 'default' (tcp). // +optional + // +default="default" ISCSIInterface string `json:"iscsiInterface,omitempty" protobuf:"bytes,4,opt,name=iscsiInterface"` // fsType is the filesystem type of the volume that you want to mount. // Tip: Ensure that the filesystem type is supported by the host operating system. @@ -1473,6 +1514,7 @@ type ISCSIPersistentVolumeSource struct { // iscsiInterface is the interface Name that uses an iSCSI transport. // Defaults to 'default' (tcp). // +optional + // +default="default" ISCSIInterface string `json:"iscsiInterface,omitempty" protobuf:"bytes,4,opt,name=iscsiInterface"` // fsType is the filesystem type of the volume that you want to mount. // Tip: Ensure that the filesystem type is supported by the host operating system. @@ -1613,17 +1655,21 @@ type AzureDiskVolumeSource struct { DataDiskURI string `json:"diskURI" protobuf:"bytes,2,opt,name=diskURI"` // cachingMode is the Host Caching mode: None, Read Only, Read Write. // +optional + // +default=ref(AzureDataDiskCachingReadWrite) CachingMode *AzureDataDiskCachingMode `json:"cachingMode,omitempty" protobuf:"bytes,3,opt,name=cachingMode,casttype=AzureDataDiskCachingMode"` // fsType is Filesystem type to mount. // Must be a filesystem type supported by the host operating system. // Ex. "ext4", "xfs", "ntfs". Implicitly inferred to be "ext4" if unspecified. // +optional + // +default="ext4" FSType *string `json:"fsType,omitempty" protobuf:"bytes,4,opt,name=fsType"` // readOnly Defaults to false (read/write). ReadOnly here will force // the ReadOnly setting in VolumeMounts. // +optional + // +default=false ReadOnly *bool `json:"readOnly,omitempty" protobuf:"varint,5,opt,name=readOnly"` // kind expected values are Shared: multiple blob disks per storage account Dedicated: single blob disk per storage account Managed: azure managed data disk (only in managed availability set). defaults to shared + // +default=ref(AzureSharedBlobDisk) Kind *AzureDataDiskKind `json:"kind,omitempty" protobuf:"bytes,6,opt,name=kind,casttype=AzureDataDiskKind"` } @@ -1662,6 +1708,7 @@ type ScaleIOVolumeSource struct { // storageMode indicates whether the storage for a volume should be ThickProvisioned or ThinProvisioned. // Default is ThinProvisioned. // +optional + // +default="ThinProvisioned" StorageMode string `json:"storageMode,omitempty" protobuf:"bytes,7,opt,name=storageMode"` // volumeName is the name of a volume already created in the ScaleIO system // that is associated with this volume source. @@ -1671,6 +1718,7 @@ type ScaleIOVolumeSource struct { // Ex. "ext4", "xfs", "ntfs". // Default is "xfs". // +optional + // +default="xfs" FSType string `json:"fsType,omitempty" protobuf:"bytes,9,opt,name=fsType"` // readOnly Defaults to false (read/write). ReadOnly here will force // the ReadOnly setting in VolumeMounts. @@ -1699,6 +1747,7 @@ type ScaleIOPersistentVolumeSource struct { // storageMode indicates whether the storage for a volume should be ThickProvisioned or ThinProvisioned. // Default is ThinProvisioned. // +optional + // +default="ThinProvisioned" StorageMode string `json:"storageMode,omitempty" protobuf:"bytes,7,opt,name=storageMode"` // volumeName is the name of a volume already created in the ScaleIO system // that is associated with this volume source. @@ -1708,6 +1757,7 @@ type ScaleIOPersistentVolumeSource struct { // Ex. "ext4", "xfs", "ntfs". // Default is "xfs" // +optional + // +default="xfs" FSType string `json:"fsType,omitempty" protobuf:"bytes,9,opt,name=fsType"` // readOnly defaults to false (read/write). ReadOnly here will force // the ReadOnly setting in VolumeMounts. @@ -1891,7 +1941,8 @@ type ClusterTrustBundleProjection struct { // Represents a projected volume source type ProjectedVolumeSource struct { - // sources is the list of volume projections + // sources is the list of volume projections. Each entry in this list + // handles one source. // +optional // +listType=atomic Sources []VolumeProjection `json:"sources" protobuf:"bytes,1,rep,name=sources"` @@ -1905,10 +1956,9 @@ type ProjectedVolumeSource struct { DefaultMode *int32 `json:"defaultMode,omitempty" protobuf:"varint,2,opt,name=defaultMode"` } -// Projection that may be projected along with other supported volume types +// Projection that may be projected along with other supported volume types. +// Exactly one of these fields must be set. type VolumeProjection struct { - // all types below are the supported types for projection into the same volume - // secret information about the secret data to project // +optional Secret *SecretProjection `json:"secret,omitempty" protobuf:"bytes,1,opt,name=secret"` @@ -2631,6 +2681,13 @@ type ResourceClaim struct { // the Pod where this field is used. It makes that resource available // inside a container. Name string `json:"name" protobuf:"bytes,1,opt,name=name"` + + // Request is the name chosen for a request in the referenced claim. + // If empty, everything from the claim is made available, otherwise + // only the result of this request. + // + // +optional + Request string `json:"request,omitempty" protobuf:"bytes,2,opt,name=request"` } const ( @@ -3030,6 +3087,93 @@ type ContainerStatus struct { // +listMapKey=mountPath // +featureGate=RecursiveReadOnlyMounts VolumeMounts []VolumeMountStatus `json:"volumeMounts,omitempty" patchStrategy:"merge" patchMergeKey:"mountPath" protobuf:"bytes,12,rep,name=volumeMounts"` + // User represents user identity information initially attached to the first process of the container + // +featureGate=SupplementalGroupsPolicy + // +optional + User *ContainerUser `json:"user,omitempty" protobuf:"bytes,13,opt,name=user,casttype=ContainerUser"` + // AllocatedResourcesStatus represents the status of various resources + // allocated for this Pod. + // +featureGate=ResourceHealthStatus + // +optional + // +patchMergeKey=name + // +patchStrategy=merge + // +listType=map + // +listMapKey=name + AllocatedResourcesStatus []ResourceStatus `json:"allocatedResourcesStatus,omitempty" patchStrategy:"merge" patchMergeKey:"name" protobuf:"bytes,14,rep,name=allocatedResourcesStatus"` +} + +type ResourceStatus struct { + // Name of the resource. Must be unique within the pod and match one of the resources from the pod spec. + // +required + Name ResourceName `json:"name" protobuf:"bytes,1,opt,name=name"` + // List of unique Resources health. Each element in the list contains an unique resource ID and resource health. + // At a minimum, ResourceID must uniquely identify the Resource + // allocated to the Pod on the Node for the lifetime of a Pod. + // See ResourceID type for it's definition. + // +listType=map + // +listMapKey=resourceID + Resources []ResourceHealth `json:"resources,omitempty" protobuf:"bytes,2,rep,name=resources"` +} + +type ResourceHealthStatus string + +const ( + ResourceHealthStatusHealthy ResourceHealthStatus = "Healthy" + ResourceHealthStatusUnhealthy ResourceHealthStatus = "Unhealthy" + ResourceHealthStatusUnknown ResourceHealthStatus = "Unknown" +) + +// ResourceID is calculated based on the source of this resource health information. +// For DevicePlugin: +// +// deviceplugin:DeviceID, where DeviceID is from the Device structure of DevicePlugin's ListAndWatchResponse type: https://github.com/kubernetes/kubernetes/blob/eda1c780543a27c078450e2f17d674471e00f494/staging/src/k8s.io/kubelet/pkg/apis/deviceplugin/v1alpha/api.proto#L61-L73 +// +// DevicePlugin ID is usually a constant for the lifetime of a Node and typically can be used to uniquely identify the device on the node. +// For DRA: +// +// dra://: such a device can be looked up in the information published by that DRA driver to learn more about it. It is designed to be globally unique in a cluster. +type ResourceID string + +// ResourceHealth represents the health of a resource. It has the latest device health information. +// This is a part of KEP https://kep.k8s.io/4680 and historical health changes are planned to be added in future iterations of a KEP. +type ResourceHealth struct { + // ResourceID is the unique identifier of the resource. See the ResourceID type for more information. + ResourceID ResourceID `json:"resourceID" protobuf:"bytes,1,opt,name=resourceID"` + // Health of the resource. + // can be one of: + // - Healthy: operates as normal + // - Unhealthy: reported unhealthy. We consider this a temporary health issue + // since we do not have a mechanism today to distinguish + // temporary and permanent issues. + // - Unknown: The status cannot be determined. + // For example, Device Plugin got unregistered and hasn't been re-registered since. + // + // In future we may want to introduce the PermanentlyUnhealthy Status. + Health ResourceHealthStatus `json:"health,omitempty" protobuf:"bytes,2,name=health"` +} + +// ContainerUser represents user identity information +type ContainerUser struct { + // Linux holds user identity information initially attached to the first process of the containers in Linux. + // Note that the actual running identity can be changed if the process has enough privilege to do so. + // +optional + Linux *LinuxContainerUser `json:"linux,omitempty" protobuf:"bytes,1,opt,name=linux,casttype=LinuxContainerUser"` + + // Windows holds user identity information initially attached to the first process of the containers in Windows + // This is just reserved for future use. + // Windows *WindowsContainerUser +} + +// LinuxContainerUser represents user identity information in Linux containers +type LinuxContainerUser struct { + // UID is the primary uid initially attached to the first process in the container + UID int64 `json:"uid" protobuf:"varint,1,name=uid"` + // GID is the primary gid initially attached to the first process in the container + GID int64 `json:"gid" protobuf:"varint,2,name=gid"` + // SupplementalGroups are the supplemental groups initially attached to the first process in the container + // +optional + // +listType=atomic + SupplementalGroups []int64 `json:"supplementalGroups,omitempty" protobuf:"varint,3,rep,name=supplementalGroups"` } // PodPhase is a label for the condition of a pod at the current time. @@ -3426,7 +3570,8 @@ 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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate. + // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). + // // +listType=atomic // +optional MatchLabelKeys []string `json:"matchLabelKeys,omitempty" protobuf:"bytes,5,opt,name=matchLabelKeys"` @@ -3438,7 +3583,8 @@ 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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate. + // This is a beta field and requires enabling MatchLabelKeysInPodAffinity feature gate (enabled by default). + // // +listType=atomic // +optional MismatchLabelKeys []string `json:"mismatchLabelKeys,omitempty" protobuf:"bytes,6,opt,name=mismatchLabelKeys"` @@ -3667,9 +3813,11 @@ type PodSpec struct { // +optional AutomountServiceAccountToken *bool `json:"automountServiceAccountToken,omitempty" protobuf:"varint,21,opt,name=automountServiceAccountToken"` - // NodeName is a request to schedule this pod onto a specific node. If it is non-empty, - // the scheduler simply schedules this pod onto that node, assuming that it fits resource - // requirements. + // NodeName indicates in which node this pod is scheduled. + // If empty, this pod is a candidate for scheduling by the scheduler defined in schedulerName. + // Once this field is set, the kubelet for this node becomes responsible for the lifecycle of this pod. + // This field should not be used to express a desire for the pod to be scheduled on a specific node. + // https://kubernetes.io/docs/concepts/scheduling-eviction/assign-pod-node/#nodename // +optional NodeName string `json:"nodeName,omitempty" protobuf:"bytes,10,opt,name=nodeName"` // Host networking requested for this pod. Use the host's network namespace. @@ -3826,6 +3974,7 @@ type PodSpec struct { // - spec.securityContext.runAsUser // - spec.securityContext.runAsGroup // - spec.securityContext.supplementalGroups + // - spec.securityContext.supplementalGroupsPolicy // - spec.containers[*].securityContext.appArmorProfile // - spec.containers[*].securityContext.seLinuxOptions // - spec.containers[*].securityContext.seccompProfile @@ -3883,7 +4032,10 @@ type PodSpec struct { ResourceClaims []PodResourceClaim `json:"resourceClaims,omitempty" patchStrategy:"merge,retainKeys" patchMergeKey:"name" protobuf:"bytes,39,rep,name=resourceClaims"` } -// PodResourceClaim references exactly one ResourceClaim through a ClaimSource. +// PodResourceClaim references exactly one ResourceClaim, either directly +// or by naming a ResourceClaimTemplate which is then turned into a ResourceClaim +// for the pod. +// // It adds a name to it that uniquely identifies the ResourceClaim inside the Pod. // Containers that need access to the ResourceClaim reference it with this name. type PodResourceClaim struct { @@ -3891,18 +4043,17 @@ type PodResourceClaim struct { // This must be a DNS_LABEL. Name string `json:"name" protobuf:"bytes,1,name=name"` - // Source describes where to find the ResourceClaim. - Source ClaimSource `json:"source,omitempty" protobuf:"bytes,2,name=source"` -} + // Source is tombstoned since Kubernetes 1.31 where it got replaced with + // the inlined fields below. + // + // Source ClaimSource `json:"source,omitempty" protobuf:"bytes,2,name=source"` -// ClaimSource describes a reference to a ResourceClaim. -// -// Exactly one of these fields should be set. Consumers of this type must -// treat an empty object as if it has an unknown value. -type ClaimSource struct { // ResourceClaimName is the name of a ResourceClaim object in the same // namespace as this pod. - ResourceClaimName *string `json:"resourceClaimName,omitempty" protobuf:"bytes,1,opt,name=resourceClaimName"` + // + // Exactly one of ResourceClaimName and ResourceClaimTemplateName must + // be set. + ResourceClaimName *string `json:"resourceClaimName,omitempty" protobuf:"bytes,3,opt,name=resourceClaimName"` // ResourceClaimTemplateName is the name of a ResourceClaimTemplate // object in the same namespace as this pod. @@ -3916,7 +4067,10 @@ type ClaimSource struct { // This field is immutable and no changes will be made to the // corresponding ResourceClaim by the control plane after creating the // ResourceClaim. - ResourceClaimTemplateName *string `json:"resourceClaimTemplateName,omitempty" protobuf:"bytes,2,opt,name=resourceClaimTemplateName"` + // + // Exactly one of ResourceClaimName and ResourceClaimTemplateName must + // be set. + ResourceClaimTemplateName *string `json:"resourceClaimTemplateName,omitempty" protobuf:"bytes,4,opt,name=resourceClaimTemplateName"` } // PodResourceClaimStatus is stored in the PodStatus for each PodResourceClaim @@ -3929,7 +4083,7 @@ type PodResourceClaimStatus struct { Name string `json:"name" protobuf:"bytes,1,name=name"` // ResourceClaimName is the name of the ResourceClaim that was - // generated for the Pod in the namespace of the Pod. It this is + // generated for the Pod in the namespace of the Pod. If this is // unset, then generating a ResourceClaim was not necessary. The // pod.spec.resourceClaims entry can be ignored in this case. // @@ -4137,6 +4291,23 @@ const ( FSGroupChangeAlways PodFSGroupChangePolicy = "Always" ) +// SupplementalGroupsPolicy defines how supplemental groups +// of the first container processes are calculated. +// +enum +type SupplementalGroupsPolicy string + +const ( + // SupplementalGroupsPolicyMerge means that the container's provided + // SupplementalGroups and FsGroup (specified in SecurityContext) will be + // merged with the primary user's groups as defined in the container image + // (in /etc/group). + SupplementalGroupsPolicyMerge SupplementalGroupsPolicy = "Merge" + // SupplementalGroupsPolicyStrict means that the container's provided + // SupplementalGroups and FsGroup (specified in SecurityContext) will be + // used instead of any groups defined in the container image. + SupplementalGroupsPolicyStrict SupplementalGroupsPolicy = "Strict" +) + // PodSecurityContext holds pod-level security attributes and common container settings. // Some fields are also present in container.securityContext. Field values of // container.securityContext take precedence over field values of PodSecurityContext. @@ -4179,16 +4350,27 @@ type PodSecurityContext struct { // PodSecurityContext, the value specified in SecurityContext takes precedence. // +optional RunAsNonRoot *bool `json:"runAsNonRoot,omitempty" protobuf:"varint,3,opt,name=runAsNonRoot"` - // A list of groups applied to the first process run in each container, in addition - // to the container's primary GID, the fsGroup (if specified), and group memberships - // defined in the container image for the uid of the container process. If unspecified, - // no additional groups are added to any container. Note that group memberships - // defined in the container image for the uid of the container process are still effective, - // even if they are not included in this list. + // A list of groups applied to the first process run in each container, in + // addition to the container's primary GID and fsGroup (if specified). If + // the SupplementalGroupsPolicy feature is enabled, the + // supplementalGroupsPolicy field determines whether these are in addition + // to or instead of any group memberships defined in the container image. + // If unspecified, no additional groups are added, though group memberships + // defined in the container image may still be used, depending on the + // supplementalGroupsPolicy field. // Note that this field cannot be set when spec.os.name is windows. // +optional // +listType=atomic SupplementalGroups []int64 `json:"supplementalGroups,omitempty" protobuf:"varint,4,rep,name=supplementalGroups"` + // Defines how supplemental groups of the first container processes are calculated. + // Valid values are "Merge" and "Strict". If not specified, "Merge" is used. + // (Alpha) Using the field requires the SupplementalGroupsPolicy feature gate to be enabled + // and the container runtime must implement support for this feature. + // Note that this field cannot be set when spec.os.name is windows. + // TODO: update the default value to "Merge" when spec.os.name is not windows in v1.34 + // +featureGate=SupplementalGroupsPolicy + // +optional + SupplementalGroupsPolicy *SupplementalGroupsPolicy `json:"supplementalGroupsPolicy,omitempty" protobuf:"bytes,12,opt,name=supplementalGroupsPolicy"` // A special supplemental group that applies to all containers in a pod. // Some volume types allow the Kubelet to change the ownership of that volume // to be owned by the pod: @@ -4340,13 +4522,15 @@ type PodDNSConfigOption struct { // PodIP represents a single IP address allocated to the pod. type PodIP struct { // IP is the IP address assigned to the pod - IP string `json:"ip,omitempty" protobuf:"bytes,1,opt,name=ip"` + // +required + IP string `json:"ip" protobuf:"bytes,1,opt,name=ip"` } // HostIP represents a single IP address allocated to the host. type HostIP struct { // IP is the IP address assigned to the host - IP string `json:"ip,omitempty" protobuf:"bytes,1,opt,name=ip"` + // +required + IP string `json:"ip" protobuf:"bytes,1,opt,name=ip"` } // EphemeralContainerCommon is a copy of all fields in Container to be inlined in @@ -4663,6 +4847,7 @@ type PodStatus struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodStatusResult is a wrapper for PodStatus returned by kubelet that can be encode/decoded type PodStatusResult struct { @@ -4683,6 +4868,7 @@ type PodStatusResult struct { // +genclient // +genclient:method=UpdateEphemeralContainers,verb=update,subresource=ephemeralcontainers // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Pod is a collection of containers that can run on a host. This resource is created // by clients and scheduled onto hosts. @@ -4708,6 +4894,7 @@ type Pod struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodList is a list of Pods. type PodList struct { @@ -4737,6 +4924,7 @@ type PodTemplateSpec struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodTemplate describes a template for creating copies of a predefined pod. type PodTemplate struct { @@ -4753,6 +4941,7 @@ type PodTemplate struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodTemplateList is a list of PodTemplates. type PodTemplateList struct { @@ -4867,6 +5056,7 @@ type ReplicationControllerCondition struct { // +genclient:method=GetScale,verb=get,subresource=scale,result=k8s.io/api/autoscaling/v1.Scale // +genclient:method=UpdateScale,verb=update,subresource=scale,input=k8s.io/api/autoscaling/v1.Scale,result=k8s.io/api/autoscaling/v1.Scale // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ReplicationController represents the configuration of a replication controller. type ReplicationController struct { @@ -4893,6 +5083,7 @@ type ReplicationController struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ReplicationControllerList is a collection of replication controllers. type ReplicationControllerList struct { @@ -5437,6 +5628,7 @@ type ServicePort struct { // +genclient // +genclient:skipVerbs=deleteCollection // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Service is a named abstraction of software service (for example, mysql) consisting of local port // (for example 3306) that the proxy listens on, and the selector that determines which pods @@ -5468,6 +5660,7 @@ const ( ) // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ServiceList holds a list of services. type ServiceList struct { @@ -5484,6 +5677,7 @@ type ServiceList struct { // +genclient // +genclient:method=CreateToken,verb=create,subresource=token,input=k8s.io/api/authentication/v1.TokenRequest,result=k8s.io/api/authentication/v1.TokenRequest // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ServiceAccount binds together: // * a name, understood by users, and perhaps by peripheral systems, for an identity @@ -5523,6 +5717,7 @@ type ServiceAccount struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ServiceAccountList is a list of ServiceAccount objects type ServiceAccountList struct { @@ -5539,6 +5734,7 @@ type ServiceAccountList struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Endpoints is a collection of endpoints that implement the actual service. Example: // @@ -5660,6 +5856,7 @@ type EndpointPort struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // EndpointsList is a list of endpoints. type EndpointsList struct { @@ -5772,13 +5969,16 @@ type NodeDaemonEndpoints struct { KubeletEndpoint DaemonEndpoint `json:"kubeletEndpoint,omitempty" protobuf:"bytes,1,opt,name=kubeletEndpoint"` } -// NodeRuntimeHandlerFeatures is a set of runtime features. +// NodeRuntimeHandlerFeatures is a set of features implemented by the runtime handler. type NodeRuntimeHandlerFeatures struct { // RecursiveReadOnlyMounts is set to true if the runtime handler supports RecursiveReadOnlyMounts. // +featureGate=RecursiveReadOnlyMounts // +optional RecursiveReadOnlyMounts *bool `json:"recursiveReadOnlyMounts,omitempty" protobuf:"varint,1,opt,name=recursiveReadOnlyMounts"` - // Reserved: UserNamespaces *bool (varint 2, for consistency with CRI API) + // UserNamespaces is set to true if the runtime handler supports UserNamespaces, including for volumes. + // +featureGate=UserNamespacesSupport + // +optional + UserNamespaces *bool `json:"userNamespaces,omitempty" protobuf:"varint,2,opt,name=userNamespaces"` } // NodeRuntimeHandler is a set of runtime handler information. @@ -5792,6 +5992,15 @@ type NodeRuntimeHandler struct { Features *NodeRuntimeHandlerFeatures `json:"features,omitempty" protobuf:"bytes,2,opt,name=features"` } +// NodeFeatures describes the set of features implemented by the CRI implementation. +// The features contained in the NodeFeatures should depend only on the cri implementation +// independent of runtime handlers. +type NodeFeatures struct { + // SupplementalGroupsPolicy is set to true if the runtime supports SupplementalGroupsPolicy and ContainerUser. + // +optional + SupplementalGroupsPolicy *bool `json:"supplementalGroupsPolicy,omitempty" protobuf:"varint,1,opt,name=supplementalGroupsPolicy"` +} + // NodeSystemInfo is a set of ids/uuids to uniquely identify the node. type NodeSystemInfo struct { // MachineID reported by the node. For unique machine identification @@ -5812,7 +6021,7 @@ type NodeSystemInfo struct { ContainerRuntimeVersion string `json:"containerRuntimeVersion" protobuf:"bytes,6,opt,name=containerRuntimeVersion"` // Kubelet Version reported by the node. KubeletVersion string `json:"kubeletVersion" protobuf:"bytes,7,opt,name=kubeletVersion"` - // KubeProxy Version reported by the node. + // Deprecated: KubeProxy Version reported by the node. KubeProxyVersion string `json:"kubeProxyVersion" protobuf:"bytes,8,opt,name=kubeProxyVersion"` // The Operating System reported by the node OperatingSystem string `json:"operatingSystem" protobuf:"bytes,9,opt,name=operatingSystem"` @@ -5870,7 +6079,7 @@ type NodeConfigStatus struct { // NodeStatus is information about the current status of a node. type NodeStatus struct { // Capacity represents the total resources of a node. - // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#capacity + // More info: https://kubernetes.io/docs/reference/node/node-status/#capacity // +optional Capacity ResourceList `json:"capacity,omitempty" protobuf:"bytes,1,rep,name=capacity,casttype=ResourceList,castkey=ResourceName"` // Allocatable represents the resources of a node that are available for scheduling. @@ -5930,9 +6139,14 @@ type NodeStatus struct { Config *NodeConfigStatus `json:"config,omitempty" protobuf:"bytes,11,opt,name=config"` // The available runtime handlers. // +featureGate=RecursiveReadOnlyMounts + // +featureGate=UserNamespacesSupport // +optional // +listType=atomic RuntimeHandlers []NodeRuntimeHandler `json:"runtimeHandlers,omitempty" protobuf:"bytes,12,rep,name=runtimeHandlers"` + // Features describes the set of features implemented by the CRI implementation. + // +featureGate=SupplementalGroupsPolicy + // +optional + Features *NodeFeatures `json:"features,omitempty" protobuf:"bytes,13,rep,name=features"` } type UniqueVolumeName string @@ -6128,6 +6342,7 @@ type ResourceList map[ResourceName]resource.Quantity // +genclient // +genclient:nonNamespaced // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Node is a worker node in Kubernetes. // Each node will have a unique identifier in the cache (i.e. in etcd). @@ -6152,6 +6367,7 @@ type Node struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // NodeList is the whole list of all Nodes which have been registered with master. type NodeList struct { @@ -6250,6 +6466,7 @@ type NamespaceCondition struct { // +genclient:nonNamespaced // +genclient:skipVerbs=deleteCollection // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Namespace provides a scope for Names. // Use of multiple namespaces is optional. @@ -6272,6 +6489,7 @@ type Namespace struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // NamespaceList is a list of Namespaces. type NamespaceList struct { @@ -6287,6 +6505,7 @@ type NamespaceList struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Binding ties one object to another; for example, a pod is bound to a node by a scheduler. // Deprecated in 1.7, please use the bindings subresource of pods instead. @@ -6311,6 +6530,7 @@ type Preconditions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodLogOptions is the query options for a Pod's logs REST call. type PodLogOptions struct { @@ -6363,6 +6583,7 @@ type PodLogOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.1 // PodAttachOptions is the query options to a Pod's remote attach call. // --- @@ -6401,6 +6622,7 @@ type PodAttachOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodExecOptions is the query options to a Pod's remote exec call. // --- @@ -6439,6 +6661,7 @@ type PodExecOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.6 // PodPortForwardOptions is the query options to a Pod's port forward call // when using WebSockets. @@ -6458,6 +6681,7 @@ type PodPortForwardOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // PodProxyOptions is the query options to a Pod's proxy call. type PodProxyOptions struct { @@ -6470,6 +6694,7 @@ type PodProxyOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.2 // NodeProxyOptions is the query options to a Node's proxy call. type NodeProxyOptions struct { @@ -6482,6 +6707,7 @@ type NodeProxyOptions struct { // +k8s:conversion-gen:explicit-from=net/url.Values // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.2 // ServiceProxyOptions is the query options to a Service's proxy call. type ServiceProxyOptions struct { @@ -6584,6 +6810,7 @@ type TypedLocalObjectReference struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // SerializedReference is a reference to serialized object. type SerializedReference struct { @@ -6613,6 +6840,7 @@ const ( // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Event is a report of an event somewhere in the cluster. Events // have a limited retention time and triggers and messages may evolve @@ -6697,6 +6925,7 @@ type EventSeries struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // EventList is a list of events. type EventList struct { @@ -6711,6 +6940,7 @@ type EventList struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // List holds a list of objects, which may not be known by the server. type List metav1.List @@ -6758,6 +6988,7 @@ type LimitRangeSpec struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // LimitRange sets resource usage limits for each kind of resource in a Namespace. type LimitRange struct { @@ -6774,6 +7005,7 @@ type LimitRange struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // LimitRangeList is a list of LimitRange items. type LimitRangeList struct { @@ -6822,6 +7054,8 @@ const ( ResourceLimitsMemory ResourceName = "limits.memory" // Local ephemeral storage limit, in bytes. (500Gi = 500GiB = 500 * 1024 * 1024 * 1024) ResourceLimitsEphemeralStorage ResourceName = "limits.ephemeral-storage" + // resource.k8s.io devices requested with a certain DeviceClass, number + ResourceClaimsPerClass string = ".deviceclass.resource.k8s.io/devices" ) // The following identify resource prefix for Kubernetes object types @@ -6922,6 +7156,7 @@ type ResourceQuotaStatus struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ResourceQuota sets aggregate quota restrictions enforced per namespace type ResourceQuota struct { @@ -6943,6 +7178,7 @@ type ResourceQuota struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ResourceQuotaList is a list of ResourceQuota items. type ResourceQuotaList struct { @@ -6959,6 +7195,7 @@ type ResourceQuotaList struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Secret holds secret data of a certain type. The total bytes of the values in // the Data field must be less than MaxSecretSize bytes. @@ -7085,6 +7322,7 @@ const ( ) // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // SecretList is a list of Secret. type SecretList struct { @@ -7101,6 +7339,7 @@ type SecretList struct { // +genclient // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.2 // ConfigMap holds configuration data for pods to consume. type ConfigMap struct { @@ -7137,6 +7376,7 @@ type ConfigMap struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.2 // ConfigMapList is a resource containing a list of ConfigMap objects. type ConfigMapList struct { @@ -7179,6 +7419,7 @@ type ComponentCondition struct { // +genclient // +genclient:nonNamespaced // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // ComponentStatus (and ComponentStatusList) holds the cluster validation info. // Deprecated: This API is deprecated in v1.19+ @@ -7199,6 +7440,7 @@ type ComponentStatus struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // Status of all the conditions for the component as a list of ComponentStatus objects. // Deprecated: This API is deprecated in v1.19+ @@ -7332,7 +7574,7 @@ type SecurityContext struct { // +optional AllowPrivilegeEscalation *bool `json:"allowPrivilegeEscalation,omitempty" protobuf:"varint,7,opt,name=allowPrivilegeEscalation"` // procMount denotes the type of proc mount to use for the containers. - // The default is DefaultProcMount which uses the container runtime defaults for + // The default value is Default which uses the container runtime defaults for // readonly paths and masked paths. // This requires the ProcMountType feature flag to be enabled. // Note that this field cannot be set when spec.os.name is windows. @@ -7410,6 +7652,7 @@ type WindowsSecurityContextOptions struct { } // +k8s:deepcopy-gen:interfaces=k8s.io/apimachinery/pkg/runtime.Object +// +k8s:prerelease-lifecycle-gen:introduced=1.0 // RangeAllocation is not a public type. type RangeAllocation struct { @@ -7519,3 +7762,23 @@ const ( // the destination set to the node's IP and port or the pod's IP and port. LoadBalancerIPModeProxy LoadBalancerIPMode = "Proxy" ) + +// ImageVolumeSource represents a image volume resource. +type ImageVolumeSource struct { + // Required: Image or artifact reference to be used. + // Behaves in the same way as pod.spec.containers[*].image. + // Pull secrets will be assembled in the same way as for the container image by looking up node credentials, SA image pull secrets, and pod spec image pull secrets. + // More info: https://kubernetes.io/docs/concepts/containers/images + // This field is optional to allow higher level config management to default or override + // container images in workload controllers like Deployments and StatefulSets. + // +optional + Reference string `json:"reference,omitempty" protobuf:"bytes,1,opt,name=reference"` + + // Policy for pulling OCI objects. Possible values are: + // 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. + // Defaults to Always if :latest tag is specified, or IfNotPresent otherwise. + // +optional + PullPolicy PullPolicy `json:"pullPolicy,omitempty" protobuf:"bytes,2,opt,name=pullPolicy,casttype=PullPolicy"` +} diff --git a/api/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go b/api/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go index c54f2a2fe..950806ef8 100644 --- a/api/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go +++ b/api/vendor/k8s.io/api/core/v1/types_swagger_doc_generated.go @@ -219,16 +219,6 @@ func (CinderVolumeSource) SwaggerDoc() map[string]string { return map_CinderVolumeSource } -var map_ClaimSource = map[string]string{ - "": "ClaimSource describes a reference to a ResourceClaim.\n\nExactly one of these fields should be set. Consumers of this type must treat an empty object as if it has an unknown value.", - "resourceClaimName": "ResourceClaimName is the name of a ResourceClaim object in the same namespace as this pod.", - "resourceClaimTemplateName": "ResourceClaimTemplateName is the name of a ResourceClaimTemplate object in the same namespace as this pod.\n\nThe template will be used to create a new ResourceClaim, which will be bound to this pod. When this pod is deleted, the ResourceClaim will also be deleted. The pod name and resource name, along with a generated component, will be used to form a unique name for the ResourceClaim, which will be recorded in pod.status.resourceClaimStatuses.\n\nThis field is immutable and no changes will be made to the corresponding ResourceClaim by the control plane after creating the ResourceClaim.", -} - -func (ClaimSource) SwaggerDoc() map[string]string { - return map_ClaimSource -} - var map_ClientIPConfig = map[string]string{ "": "ClientIPConfig represents the configurations of Client IP based session affinity.", "timeoutSeconds": "timeoutSeconds specifies the seconds of ClientIP type session sticky time. The value must be >0 && <=86400(for 1 day) if ServiceAffinity == \"ClientIP\". Default value is 10800(for 3 hours).", @@ -469,25 +459,36 @@ func (ContainerStateWaiting) SwaggerDoc() map[string]string { } var map_ContainerStatus = map[string]string{ - "": "ContainerStatus contains details for the current status of this container.", - "name": "Name is a DNS_LABEL representing the unique name of the container. Each container in a pod must have a unique name across all container types. Cannot be updated.", - "state": "State holds details about the container's current condition.", - "lastState": "LastTerminationState holds the last termination state of the container to help debug container crashes and restarts. This field is not populated if the container is still running and RestartCount is 0.", - "ready": "Ready specifies whether the container is currently passing its readiness check. The value will change as readiness probes keep executing. If no readiness probes are specified, this field defaults to true once the container is fully started (see Started field).\n\nThe value is typically used to determine whether a container is ready to accept traffic.", - "restartCount": "RestartCount holds the number of times the container has been restarted. Kubelet makes an effort to always increment the value, but there are cases when the state may be lost due to node restarts and then the value may be reset to 0. The value is never negative.", - "image": "Image is the name of container image that the container is running. The container image may not match the image used in the PodSpec, as it may have been resolved by the runtime. More info: https://kubernetes.io/docs/concepts/containers/images.", - "imageID": "ImageID is the image ID of the container's image. The image ID may not match the image ID of the image used in the PodSpec, as it may have been resolved by the runtime.", - "containerID": "ContainerID is the ID of the container in the format '://'. Where type is a container runtime identifier, returned from Version call of CRI API (for example \"containerd\").", - "started": "Started indicates whether the container has finished its postStart lifecycle hook and passed its startup probe. Initialized as false, becomes true after startupProbe is considered successful. Resets to false when the container is restarted, or if kubelet loses state temporarily. In both cases, startup probes will run again. Is always true when no startupProbe is defined and container is running and has passed the postStart lifecycle hook. The null value must be treated the same as false.", - "allocatedResources": "AllocatedResources represents the compute resources allocated for this container by the node. Kubelet sets this value to Container.Resources.Requests upon successful pod admission and after successfully admitting desired pod resize.", - "resources": "Resources represents the compute resource requests and limits that have been successfully enacted on the running container after it has been started or has been successfully resized.", - "volumeMounts": "Status of volume mounts.", + "": "ContainerStatus contains details for the current status of this container.", + "name": "Name is a DNS_LABEL representing the unique name of the container. Each container in a pod must have a unique name across all container types. Cannot be updated.", + "state": "State holds details about the container's current condition.", + "lastState": "LastTerminationState holds the last termination state of the container to help debug container crashes and restarts. This field is not populated if the container is still running and RestartCount is 0.", + "ready": "Ready specifies whether the container is currently passing its readiness check. The value will change as readiness probes keep executing. If no readiness probes are specified, this field defaults to true once the container is fully started (see Started field).\n\nThe value is typically used to determine whether a container is ready to accept traffic.", + "restartCount": "RestartCount holds the number of times the container has been restarted. Kubelet makes an effort to always increment the value, but there are cases when the state may be lost due to node restarts and then the value may be reset to 0. The value is never negative.", + "image": "Image is the name of container image that the container is running. The container image may not match the image used in the PodSpec, as it may have been resolved by the runtime. More info: https://kubernetes.io/docs/concepts/containers/images.", + "imageID": "ImageID is the image ID of the container's image. The image ID may not match the image ID of the image used in the PodSpec, as it may have been resolved by the runtime.", + "containerID": "ContainerID is the ID of the container in the format '://'. Where type is a container runtime identifier, returned from Version call of CRI API (for example \"containerd\").", + "started": "Started indicates whether the container has finished its postStart lifecycle hook and passed its startup probe. Initialized as false, becomes true after startupProbe is considered successful. Resets to false when the container is restarted, or if kubelet loses state temporarily. In both cases, startup probes will run again. Is always true when no startupProbe is defined and container is running and has passed the postStart lifecycle hook. The null value must be treated the same as false.", + "allocatedResources": "AllocatedResources represents the compute resources allocated for this container by the node. Kubelet sets this value to Container.Resources.Requests upon successful pod admission and after successfully admitting desired pod resize.", + "resources": "Resources represents the compute resource requests and limits that have been successfully enacted on the running container after it has been started or has been successfully resized.", + "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.", } func (ContainerStatus) SwaggerDoc() map[string]string { return map_ContainerStatus } +var map_ContainerUser = map[string]string{ + "": "ContainerUser represents user identity information", + "linux": "Linux holds user identity information initially attached to the first process of the containers in Linux. Note that the actual running identity can be changed if the process has enough privilege to do so.", +} + +func (ContainerUser) SwaggerDoc() map[string]string { + return map_ContainerUser +} + var map_DaemonEndpoint = map[string]string{ "": "DaemonEndpoint contains information about a single Daemon endpoint.", "Port": "Port number of the given endpoint.", @@ -933,6 +934,16 @@ func (ISCSIVolumeSource) SwaggerDoc() map[string]string { return map_ISCSIVolumeSource } +var map_ImageVolumeSource = map[string]string{ + "": "ImageVolumeSource represents a image volume resource.", + "reference": "Required: Image or artifact reference to be used. Behaves in the same way as pod.spec.containers[*].image. Pull secrets will be assembled in the same way as for the container image by looking up node credentials, SA image pull secrets, and pod spec image pull secrets. More info: https://kubernetes.io/docs/concepts/containers/images This field is optional to allow higher level config management to default or override container images in workload controllers like Deployments and StatefulSets.", + "pullPolicy": "Policy for pulling OCI objects. Possible values are: 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. Defaults to Always if :latest tag is specified, or IfNotPresent otherwise.", +} + +func (ImageVolumeSource) SwaggerDoc() map[string]string { + return map_ImageVolumeSource +} + var map_KeyToPath = map[string]string{ "": "Maps a string key to a path within a volume.", "key": "key is the key to project.", @@ -1009,6 +1020,17 @@ func (LimitRangeSpec) SwaggerDoc() map[string]string { return map_LimitRangeSpec } +var map_LinuxContainerUser = map[string]string{ + "": "LinuxContainerUser represents user identity information in Linux containers", + "uid": "UID is the primary uid initially attached to the first process in the container", + "gid": "GID is the primary gid initially attached to the first process in the container", + "supplementalGroups": "SupplementalGroups are the supplemental groups initially attached to the first process in the container", +} + +func (LinuxContainerUser) SwaggerDoc() map[string]string { + return map_LinuxContainerUser +} + var map_LoadBalancerIngress = map[string]string{ "": "LoadBalancerIngress represents the status of a load-balancer ingress point: traffic intended for the service should be sent to an ingress point.", "ip": "IP is set for load-balancer ingress points that are IP based (typically GCE or OpenStack load-balancers)", @@ -1195,6 +1217,15 @@ func (NodeDaemonEndpoints) SwaggerDoc() map[string]string { return map_NodeDaemonEndpoints } +var map_NodeFeatures = map[string]string{ + "": "NodeFeatures describes the set of features implemented by the CRI implementation. The features contained in the NodeFeatures should depend only on the cri implementation independent of runtime handlers.", + "supplementalGroupsPolicy": "SupplementalGroupsPolicy is set to true if the runtime supports SupplementalGroupsPolicy and ContainerUser.", +} + +func (NodeFeatures) SwaggerDoc() map[string]string { + return map_NodeFeatures +} + var map_NodeList = map[string]string{ "": "NodeList is the whole list of all Nodes which have been registered with master.", "metadata": "Standard list metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds", @@ -1225,8 +1256,9 @@ func (NodeRuntimeHandler) SwaggerDoc() map[string]string { } var map_NodeRuntimeHandlerFeatures = map[string]string{ - "": "NodeRuntimeHandlerFeatures is a set of runtime features.", + "": "NodeRuntimeHandlerFeatures is a set of features implemented by the runtime handler.", "recursiveReadOnlyMounts": "RecursiveReadOnlyMounts is set to true if the runtime handler supports RecursiveReadOnlyMounts.", + "userNamespaces": "UserNamespaces is set to true if the runtime handler supports UserNamespaces, including for volumes.", } func (NodeRuntimeHandlerFeatures) SwaggerDoc() map[string]string { @@ -1280,7 +1312,7 @@ func (NodeSpec) SwaggerDoc() map[string]string { var map_NodeStatus = map[string]string{ "": "NodeStatus is information about the current status of a node.", - "capacity": "Capacity represents the total resources of a node. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#capacity", + "capacity": "Capacity represents the total resources of a node. More info: https://kubernetes.io/docs/reference/node/node-status/#capacity", "allocatable": "Allocatable represents the resources of a node that are available for scheduling. Defaults to Capacity.", "phase": "NodePhase is the recently observed lifecycle phase of the node. More info: https://kubernetes.io/docs/concepts/nodes/node/#phase The field is never populated, and now is deprecated.", "conditions": "Conditions is an array of current observed node conditions. More info: https://kubernetes.io/docs/concepts/nodes/node/#condition", @@ -1292,6 +1324,7 @@ var map_NodeStatus = map[string]string{ "volumesAttached": "List of volumes that are attached to the node.", "config": "Status of the config assigned to the node via the dynamic Kubelet config feature.", "runtimeHandlers": "The available runtime handlers.", + "features": "Features describes the set of features implemented by the CRI implementation.", } func (NodeStatus) SwaggerDoc() map[string]string { @@ -1307,7 +1340,7 @@ var map_NodeSystemInfo = map[string]string{ "osImage": "OS Image reported by the node from /etc/os-release (e.g. Debian GNU/Linux 7 (wheezy)).", "containerRuntimeVersion": "ContainerRuntime Version reported by the node through runtime remote API (e.g. containerd://1.4.2).", "kubeletVersion": "Kubelet Version reported by the node.", - "kubeProxyVersion": "KubeProxy Version reported by the node.", + "kubeProxyVersion": "Deprecated: KubeProxy Version reported by the node.", "operatingSystem": "The Operating System reported by the node", "architecture": "The Architecture reported by the node", } @@ -1395,7 +1428,7 @@ var map_PersistentVolumeClaimSpec = map[string]string{ "volumeMode": "volumeMode defines what type of volume is required by the claim. Value of Filesystem is implied when not included in claim spec.", "dataSource": "dataSource field can be used to specify either: * An existing VolumeSnapshot object (snapshot.storage.k8s.io/VolumeSnapshot) * An existing PVC (PersistentVolumeClaim) If the provisioner or an external controller can support the specified data source, it will create a new volume based on the contents of the specified data source. When the AnyVolumeDataSource feature gate is enabled, dataSource contents will be copied to dataSourceRef, and dataSourceRef contents will be copied to dataSource when dataSourceRef.namespace is not specified. If the namespace is specified, then dataSourceRef will not be copied to dataSource.", "dataSourceRef": "dataSourceRef specifies the object from which to populate the volume with data, if a non-empty volume is desired. This may be any object from a non-empty API group (non core object) or a PersistentVolumeClaim object. When this field is specified, volume binding will only succeed if the type of the specified object matches some installed volume populator or dynamic provisioner. This field will replace the functionality of the dataSource field and as such if both fields are non-empty, they must have the same value. For backwards compatibility, when namespace isn't specified in dataSourceRef, both fields (dataSource and dataSourceRef) will be set to the same value automatically if one of them is empty and the other is non-empty. When namespace is specified in dataSourceRef, dataSource isn't set to the same value and must be empty. There are three important differences between dataSource and dataSourceRef: * While dataSource only allows two specific types of objects, dataSourceRef\n allows any non-core object, as well as PersistentVolumeClaim objects.\n* While dataSource ignores disallowed values (dropping them), dataSourceRef\n preserves all values, and generates an error if a disallowed value is\n specified.\n* While dataSource only allows local objects, dataSourceRef allows objects\n in any namespaces.\n(Beta) Using this field requires the AnyVolumeDataSource feature gate to be enabled. (Alpha) Using the namespace field of dataSourceRef requires the CrossNamespaceVolumeDataSource feature gate to be enabled.", - "volumeAttributesClassName": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim. If specified, the CSI driver will create or update the volume with the attributes defined in the corresponding VolumeAttributesClass. This has a different purpose than storageClassName, it can be changed after the claim is created. An empty string value means that no VolumeAttributesClass will be applied to the claim but it's not allowed to reset this field to empty string once it is set. If unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass will be set by the persistentvolume controller if it exists. If the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be set to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource exists. More info: https://kubernetes.io/docs/concepts/storage/volume-attributes-classes/ (Alpha) Using this field requires the VolumeAttributesClass feature gate to be enabled.", + "volumeAttributesClassName": "volumeAttributesClassName may be used to set the VolumeAttributesClass used by this claim. If specified, the CSI driver will create or update the volume with the attributes defined in the corresponding VolumeAttributesClass. This has a different purpose than storageClassName, it can be changed after the claim is created. An empty string value means that no VolumeAttributesClass will be applied to the claim but it's not allowed to reset this field to empty string once it is set. If unspecified and the PersistentVolumeClaim is unbound, the default VolumeAttributesClass will be set by the persistentvolume controller if it exists. If the resource referred to by volumeAttributesClass does not exist, this PersistentVolumeClaim will be set to a Pending state, as reflected by the modifyVolumeStatus field, until such as a resource exists. More info: https://kubernetes.io/docs/concepts/storage/volume-attributes-classes/ (Beta) Using this field requires the VolumeAttributesClass feature gate to be enabled (off by default).", } func (PersistentVolumeClaimSpec) SwaggerDoc() map[string]string { @@ -1410,8 +1443,8 @@ var map_PersistentVolumeClaimStatus = map[string]string{ "conditions": "conditions is the current Condition of persistent volume claim. If underlying persistent volume is being resized then the Condition will be set to 'Resizing'.", "allocatedResources": "allocatedResources tracks the resources allocated to a PVC including its capacity. Key names follow standard Kubernetes label syntax. Valid values are either:\n\t* Un-prefixed keys:\n\t\t- storage - the capacity of the volume.\n\t* Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\"\nApart from above values - keys that are unprefixed or have kubernetes.io prefix are considered reserved and hence may not be used.\n\nCapacity reported here may be larger than the actual capacity when a volume expansion operation is requested. For storage quota, the larger value from allocatedResources and PVC.spec.resources is used. If allocatedResources is not set, PVC.spec.resources alone is used for quota calculation. If a volume expansion capacity request is lowered, allocatedResources is only lowered if there are no expansion operations in progress and if the actual volume capacity is equal or lower than the requested capacity.\n\nA controller that receives PVC update with previously unknown resourceName should ignore the update for the purpose it was designed. For example - a controller that only is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid resources associated with PVC.\n\nThis is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", "allocatedResourceStatuses": "allocatedResourceStatuses stores status of resource being resized for the given PVC. Key names follow standard Kubernetes label syntax. Valid values are either:\n\t* Un-prefixed keys:\n\t\t- storage - the capacity of the volume.\n\t* Custom resources must use implementation-defined prefixed names such as \"example.com/my-custom-resource\"\nApart from above values - keys that are unprefixed or have kubernetes.io prefix are considered reserved and hence may not be used.\n\nClaimResourceStatus can be in any of following states:\n\t- ControllerResizeInProgress:\n\t\tState set when resize controller starts resizing the volume in control-plane.\n\t- ControllerResizeFailed:\n\t\tState set when resize has failed in resize controller with a terminal error.\n\t- NodeResizePending:\n\t\tState set when resize controller has finished resizing the volume but further resizing of\n\t\tvolume is needed on the node.\n\t- NodeResizeInProgress:\n\t\tState set when kubelet starts resizing the volume.\n\t- NodeResizeFailed:\n\t\tState set when resizing has failed in kubelet with a terminal error. Transient errors don't set\n\t\tNodeResizeFailed.\nFor example: if expanding a PVC for more capacity - this field can be one of the following states:\n\t- pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeInProgress\"\n - pvc.status.allocatedResourceStatus['storage'] = \"ControllerResizeFailed\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizePending\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeInProgress\"\n - pvc.status.allocatedResourceStatus['storage'] = \"NodeResizeFailed\"\nWhen this field is not set, it means that no resize operation is in progress for the given PVC.\n\nA controller that receives PVC update with previously unknown resourceName or ClaimResourceStatus should ignore the update for the purpose it was designed. For example - a controller that only is responsible for resizing capacity of the volume, should ignore PVC updates that change other valid resources associated with PVC.\n\nThis is an alpha field and requires enabling RecoverVolumeExpansionFailure feature.", - "currentVolumeAttributesClassName": "currentVolumeAttributesClassName is the current name of the VolumeAttributesClass the PVC is using. When unset, there is no VolumeAttributeClass applied to this PersistentVolumeClaim This is an alpha field and requires enabling VolumeAttributesClass feature.", - "modifyVolumeStatus": "ModifyVolumeStatus represents the status object of ControllerModifyVolume operation. When this is unset, there is no ModifyVolume operation being attempted. This is an alpha field and requires enabling VolumeAttributesClass feature.", + "currentVolumeAttributesClassName": "currentVolumeAttributesClassName is the current name of the VolumeAttributesClass the PVC is using. When unset, there is no VolumeAttributeClass applied to this PersistentVolumeClaim This is a beta field and requires enabling VolumeAttributesClass feature (off by default).", + "modifyVolumeStatus": "ModifyVolumeStatus represents the status object of ControllerModifyVolume operation. When this is unset, there is no ModifyVolume operation being attempted. This is a beta field and requires enabling VolumeAttributesClass feature (off by default).", } func (PersistentVolumeClaimStatus) SwaggerDoc() map[string]string { @@ -1488,7 +1521,7 @@ var map_PersistentVolumeSpec = map[string]string{ "mountOptions": "mountOptions is the list of mount options, e.g. [\"ro\", \"soft\"]. Not validated - mount will simply fail if one is invalid. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes/#mount-options", "volumeMode": "volumeMode defines if a volume is intended to be used with a formatted filesystem or to remain in raw block state. Value of Filesystem is implied when not included in spec.", "nodeAffinity": "nodeAffinity defines constraints that limit what nodes this volume can be accessed from. This field influences the scheduling of pods that use this volume.", - "volumeAttributesClassName": "Name of VolumeAttributesClass to which this persistent volume belongs. Empty value is not allowed. When this field is not set, it indicates that this volume does not belong to any VolumeAttributesClass. This field is mutable and can be changed by the CSI driver after a volume has been updated successfully to a new class. For an unbound PersistentVolume, the volumeAttributesClassName will be matched with unbound PersistentVolumeClaims during the binding process. This is an alpha field and requires enabling VolumeAttributesClass feature.", + "volumeAttributesClassName": "Name of VolumeAttributesClass to which this persistent volume belongs. Empty value is not allowed. When this field is not set, it indicates that this volume does not belong to any VolumeAttributesClass. This field is mutable and can be changed by the CSI driver after a volume has been updated successfully to a new class. For an unbound PersistentVolume, the volumeAttributesClassName will be matched with unbound PersistentVolumeClaims during the binding process. This is a beta field and requires enabling VolumeAttributesClass feature (off by default).", } func (PersistentVolumeSpec) SwaggerDoc() map[string]string { @@ -1500,7 +1533,7 @@ var map_PersistentVolumeStatus = map[string]string{ "phase": "phase indicates if a volume is available, bound to a claim, or released by a claim. More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#phase", "message": "message is a human-readable message indicating details about why the volume is in this state.", "reason": "reason is a brief CamelCase string that describes any failure and is meant for machine parsing and tidy display in the CLI.", - "lastPhaseTransitionTime": "lastPhaseTransitionTime is the time the phase transitioned from one to another and automatically resets to current time everytime a volume phase transitions. This is a beta field and requires the PersistentVolumeLastPhaseTransitionTime feature to be enabled (enabled by default).", + "lastPhaseTransitionTime": "lastPhaseTransitionTime is the time the phase transitioned from one to another and automatically resets to current time everytime a volume phase transitions.", } func (PersistentVolumeStatus) SwaggerDoc() map[string]string { @@ -1544,8 +1577,8 @@ 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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate.", - "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 an alpha field and requires enabling MatchLabelKeysInPodAffinity feature gate.", + "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).", } func (PodAffinityTerm) SwaggerDoc() map[string]string { @@ -1696,9 +1729,10 @@ func (PodReadinessGate) SwaggerDoc() map[string]string { } var map_PodResourceClaim = map[string]string{ - "": "PodResourceClaim references exactly one ResourceClaim through a ClaimSource. It adds a name to it that uniquely identifies the ResourceClaim inside the Pod. Containers that need access to the ResourceClaim reference it with this name.", - "name": "Name uniquely identifies this resource claim inside the pod. This must be a DNS_LABEL.", - "source": "Source describes where to find the ResourceClaim.", + "": "PodResourceClaim references exactly one ResourceClaim, either directly or by naming a ResourceClaimTemplate which is then turned into a ResourceClaim for the pod.\n\nIt adds a name to it that uniquely identifies the ResourceClaim inside the Pod. Containers that need access to the ResourceClaim reference it with this name.", + "name": "Name uniquely identifies this resource claim inside the pod. This must be a DNS_LABEL.", + "resourceClaimName": "ResourceClaimName is the name of a ResourceClaim object in the same namespace as this pod.\n\nExactly one of ResourceClaimName and ResourceClaimTemplateName must be set.", + "resourceClaimTemplateName": "ResourceClaimTemplateName is the name of a ResourceClaimTemplate object in the same namespace as this pod.\n\nThe template will be used to create a new ResourceClaim, which will be bound to this pod. When this pod is deleted, the ResourceClaim will also be deleted. The pod name and resource name, along with a generated component, will be used to form a unique name for the ResourceClaim, which will be recorded in pod.status.resourceClaimStatuses.\n\nThis field is immutable and no changes will be made to the corresponding ResourceClaim by the control plane after creating the ResourceClaim.\n\nExactly one of ResourceClaimName and ResourceClaimTemplateName must be set.", } func (PodResourceClaim) SwaggerDoc() map[string]string { @@ -1708,7 +1742,7 @@ func (PodResourceClaim) SwaggerDoc() map[string]string { var map_PodResourceClaimStatus = map[string]string{ "": "PodResourceClaimStatus is stored in the PodStatus for each PodResourceClaim which references a ResourceClaimTemplate. It stores the generated name for the corresponding ResourceClaim.", "name": "Name uniquely identifies this resource claim inside the pod. This must match the name of an entry in pod.spec.resourceClaims, which implies that the string must be a DNS_LABEL.", - "resourceClaimName": "ResourceClaimName is the name of the ResourceClaim that was generated for the Pod in the namespace of the Pod. It this is unset, then generating a ResourceClaim was not necessary. The pod.spec.resourceClaims entry can be ignored in this case.", + "resourceClaimName": "ResourceClaimName is the name of the ResourceClaim that was generated for the Pod in the namespace of the Pod. If this is unset, then generating a ResourceClaim was not necessary. The pod.spec.resourceClaims entry can be ignored in this case.", } func (PodResourceClaimStatus) SwaggerDoc() map[string]string { @@ -1725,18 +1759,19 @@ func (PodSchedulingGate) SwaggerDoc() map[string]string { } var map_PodSecurityContext = map[string]string{ - "": "PodSecurityContext holds pod-level security attributes and common container settings. Some fields are also present in container.securityContext. Field values of container.securityContext take precedence over field values of PodSecurityContext.", - "seLinuxOptions": "The SELinux context to be applied to all containers. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "windowsOptions": "The Windows specific settings applied to all containers. If unspecified, the options within a container's SecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", - "runAsUser": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "runAsGroup": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", - "runAsNonRoot": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", - "supplementalGroups": "A list of groups applied to the first process run in each container, in addition to the container's primary GID, the fsGroup (if specified), and group memberships defined in the container image for the uid of the container process. If unspecified, no additional groups are added to any container. Note that group memberships defined in the container image for the uid of the container process are still effective, even if they are not included in this list. Note that this field cannot be set when spec.os.name is windows.", - "fsGroup": "A special supplemental group that applies to all containers in a pod. Some volume types allow the Kubelet to change the ownership of that volume to be owned by the pod:\n\n1. The owning GID will be the FSGroup 2. The setgid bit is set (new files created in the volume will be owned by FSGroup) 3. The permission bits are OR'd with rw-rw ", - "sysctls": "Sysctls hold a list of namespaced sysctls used for the pod. Pods with unsupported sysctls (by the container runtime) might fail to launch. Note that this field cannot be set when spec.os.name is windows.", - "fsGroupChangePolicy": "fsGroupChangePolicy defines behavior of changing ownership and permission of the volume before being exposed inside Pod. This field will only apply to volume types which support fsGroup based ownership(and permissions). It will have no effect on ephemeral volume types such as: secret, configmaps and emptydir. Valid values are \"OnRootMismatch\" and \"Always\". If not specified, \"Always\" is used. Note that this field cannot be set when spec.os.name is windows.", - "seccompProfile": "The seccomp options to use by the containers in this pod. Note that this field cannot be set when spec.os.name is windows.", - "appArmorProfile": "appArmorProfile is the AppArmor options to use by the containers in this pod. Note that this field cannot be set when spec.os.name is windows.", + "": "PodSecurityContext holds pod-level security attributes and common container settings. Some fields are also present in container.securityContext. Field values of container.securityContext take precedence over field values of PodSecurityContext.", + "seLinuxOptions": "The SELinux context to be applied to all containers. If unspecified, the container runtime will allocate a random SELinux context for each container. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", + "windowsOptions": "The Windows specific settings applied to all containers. If unspecified, the options within a container's SecurityContext will be used. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence. Note that this field cannot be set when spec.os.name is linux.", + "runAsUser": "The UID to run the entrypoint of the container process. Defaults to user specified in image metadata if unspecified. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", + "runAsGroup": "The GID to run the entrypoint of the container process. Uses runtime default if unset. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence for that container. Note that this field cannot be set when spec.os.name is windows.", + "runAsNonRoot": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in SecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", + "supplementalGroups": "A list of groups applied to the first process run in each container, in addition to the container's primary GID and fsGroup (if specified). If the SupplementalGroupsPolicy feature is enabled, the supplementalGroupsPolicy field determines whether these are in addition to or instead of any group memberships defined in the container image. If unspecified, no additional groups are added, though group memberships defined in the container image may still be used, depending on the supplementalGroupsPolicy field. Note that this field cannot be set when spec.os.name is windows.", + "supplementalGroupsPolicy": "Defines how supplemental groups of the first container processes are calculated. Valid values are \"Merge\" and \"Strict\". If not specified, \"Merge\" is used. (Alpha) Using the field requires the SupplementalGroupsPolicy feature gate to be enabled and the container runtime must implement support for this feature. Note that this field cannot be set when spec.os.name is windows.", + "fsGroup": "A special supplemental group that applies to all containers in a pod. Some volume types allow the Kubelet to change the ownership of that volume to be owned by the pod:\n\n1. The owning GID will be the FSGroup 2. The setgid bit is set (new files created in the volume will be owned by FSGroup) 3. The permission bits are OR'd with rw-rw ", + "sysctls": "Sysctls hold a list of namespaced sysctls used for the pod. Pods with unsupported sysctls (by the container runtime) might fail to launch. Note that this field cannot be set when spec.os.name is windows.", + "fsGroupChangePolicy": "fsGroupChangePolicy defines behavior of changing ownership and permission of the volume before being exposed inside Pod. This field will only apply to volume types which support fsGroup based ownership(and permissions). It will have no effect on ephemeral volume types such as: secret, configmaps and emptydir. Valid values are \"OnRootMismatch\" and \"Always\". If not specified, \"Always\" is used. Note that this field cannot be set when spec.os.name is windows.", + "seccompProfile": "The seccomp options to use by the containers in this pod. Note that this field cannot be set when spec.os.name is windows.", + "appArmorProfile": "appArmorProfile is the AppArmor options to use by the containers in this pod. Note that this field cannot be set when spec.os.name is windows.", } func (PodSecurityContext) SwaggerDoc() map[string]string { @@ -1766,7 +1801,7 @@ var map_PodSpec = map[string]string{ "serviceAccountName": "ServiceAccountName is the name of the ServiceAccount to use to run this pod. More info: https://kubernetes.io/docs/tasks/configure-pod-container/configure-service-account/", "serviceAccount": "DeprecatedServiceAccount is a deprecated alias for ServiceAccountName. Deprecated: Use serviceAccountName instead.", "automountServiceAccountToken": "AutomountServiceAccountToken indicates whether a service account token should be automatically mounted.", - "nodeName": "NodeName is a request to schedule this pod onto a specific node. If it is non-empty, the scheduler simply schedules this pod onto that node, assuming that it fits resource requirements.", + "nodeName": "NodeName indicates in which node this pod is scheduled. If empty, this pod is a candidate for scheduling by the scheduler defined in schedulerName. Once this field is set, the kubelet for this node becomes responsible for the lifecycle of this pod. This field should not be used to express a desire for the pod to be scheduled on a specific node. https://kubernetes.io/docs/concepts/scheduling-eviction/assign-pod-node/#nodename", "hostNetwork": "Host networking requested for this pod. Use the host's network namespace. If this option is set, the ports that will be used must be specified. Default to false.", "hostPID": "Use the host's pid namespace. Optional: Default to false.", "hostIPC": "Use the host's ipc namespace. Optional: Default to false.", @@ -1789,7 +1824,7 @@ var map_PodSpec = map[string]string{ "overhead": "Overhead represents the resource overhead associated with running a pod for a given RuntimeClass. This field will be autopopulated at admission time by the RuntimeClass admission controller. If the RuntimeClass admission controller is enabled, overhead must not be set in Pod create requests. The RuntimeClass admission controller will reject Pod create requests which have the overhead already set. If RuntimeClass is configured and selected in the PodSpec, Overhead will be set to the value defined in the corresponding RuntimeClass, otherwise it will remain unset and treated as zero. More info: https://git.k8s.io/enhancements/keps/sig-node/688-pod-overhead/README.md", "topologySpreadConstraints": "TopologySpreadConstraints describes how a group of pods ought to spread across topology domains. Scheduler will schedule pods in a way which abides by the constraints. All topologySpreadConstraints are ANDed.", "setHostnameAsFQDN": "If true the pod's hostname will be configured as the pod's FQDN, rather than the leaf name (the default). In Linux containers, this means setting the FQDN in the hostname field of the kernel (the nodename field of struct utsname). In Windows containers, this means setting the registry value of hostname for the registry key HKEY_LOCAL_MACHINE\\SYSTEM\\CurrentControlSet\\Services\\Tcpip\\Parameters to FQDN. If a pod does not have FQDN, this has no effect. Default to false.", - "os": "Specifies the OS of the containers in the pod. Some pod and container fields are restricted if this is set.\n\nIf the OS field is set to linux, the following fields must be unset: -securityContext.windowsOptions\n\nIf the OS field is set to windows, following fields must be unset: - spec.hostPID - spec.hostIPC - spec.hostUsers - spec.securityContext.appArmorProfile - spec.securityContext.seLinuxOptions - spec.securityContext.seccompProfile - spec.securityContext.fsGroup - spec.securityContext.fsGroupChangePolicy - spec.securityContext.sysctls - spec.shareProcessNamespace - spec.securityContext.runAsUser - spec.securityContext.runAsGroup - spec.securityContext.supplementalGroups - spec.containers[*].securityContext.appArmorProfile - spec.containers[*].securityContext.seLinuxOptions - spec.containers[*].securityContext.seccompProfile - spec.containers[*].securityContext.capabilities - spec.containers[*].securityContext.readOnlyRootFilesystem - spec.containers[*].securityContext.privileged - spec.containers[*].securityContext.allowPrivilegeEscalation - spec.containers[*].securityContext.procMount - spec.containers[*].securityContext.runAsUser - spec.containers[*].securityContext.runAsGroup", + "os": "Specifies the OS of the containers in the pod. Some pod and container fields are restricted if this is set.\n\nIf the OS field is set to linux, the following fields must be unset: -securityContext.windowsOptions\n\nIf the OS field is set to windows, following fields must be unset: - spec.hostPID - spec.hostIPC - spec.hostUsers - spec.securityContext.appArmorProfile - spec.securityContext.seLinuxOptions - spec.securityContext.seccompProfile - spec.securityContext.fsGroup - spec.securityContext.fsGroupChangePolicy - spec.securityContext.sysctls - spec.shareProcessNamespace - spec.securityContext.runAsUser - spec.securityContext.runAsGroup - spec.securityContext.supplementalGroups - spec.securityContext.supplementalGroupsPolicy - spec.containers[*].securityContext.appArmorProfile - spec.containers[*].securityContext.seLinuxOptions - spec.containers[*].securityContext.seccompProfile - spec.containers[*].securityContext.capabilities - spec.containers[*].securityContext.readOnlyRootFilesystem - spec.containers[*].securityContext.privileged - spec.containers[*].securityContext.allowPrivilegeEscalation - spec.containers[*].securityContext.procMount - spec.containers[*].securityContext.runAsUser - spec.containers[*].securityContext.runAsGroup", "hostUsers": "Use the host's user namespace. Optional: Default to true. If set to true or not present, the pod will be run in the host user namespace, useful for when the pod needs a feature only available to the host user namespace, such as loading a kernel module with CAP_SYS_MODULE. When set to false, a new userns is created for the pod. Setting false is useful for mitigating container breakout vulnerabilities even allowing users to run their containers as root without actually having root privileges on the host. This field is alpha-level and is only honored by servers that enable the UserNamespacesSupport feature.", "schedulingGates": "SchedulingGates is an opaque list of values that if specified will block scheduling the pod. If schedulingGates is not empty, the pod will stay in the SchedulingGated state and the scheduler will not attempt to schedule the pod.\n\nSchedulingGates can only be set at pod creation time, and be removed only afterwards.", "resourceClaims": "ResourceClaims defines which ResourceClaims must be allocated and reserved before the Pod is allowed to start. The resources will be made available to those containers which consume them by name.\n\nThis is an alpha field and requires enabling the DynamicResourceAllocation feature gate.\n\nThis field is immutable.", @@ -1943,7 +1978,7 @@ func (ProbeHandler) SwaggerDoc() map[string]string { var map_ProjectedVolumeSource = map[string]string{ "": "Represents a projected volume source", - "sources": "sources is the list of volume projections", + "sources": "sources is the list of volume projections. Each entry in this list handles one source.", "defaultMode": "defaultMode are the mode bits used to set permissions on created files by default. Must be an octal value between 0000 and 0777 or a decimal value between 0 and 511. YAML accepts both octal and decimal values, JSON requires decimal values for mode bits. Directories within the path are not affected by this setting. This might be in conflict with other options that affect the file mode, like fsGroup, and the result can be other mode bits set.", } @@ -2069,8 +2104,9 @@ func (ReplicationControllerStatus) SwaggerDoc() map[string]string { } var map_ResourceClaim = map[string]string{ - "": "ResourceClaim references one entry in PodSpec.ResourceClaims.", - "name": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", + "": "ResourceClaim references one entry in PodSpec.ResourceClaims.", + "name": "Name must match the name of one entry in pod.spec.resourceClaims of the Pod where this field is used. It makes that resource available inside a container.", + "request": "Request is the name chosen for a request in the referenced claim. If empty, everything from the claim is made available, otherwise only the result of this request.", } func (ResourceClaim) SwaggerDoc() map[string]string { @@ -2088,6 +2124,16 @@ func (ResourceFieldSelector) SwaggerDoc() map[string]string { return map_ResourceFieldSelector } +var map_ResourceHealth = map[string]string{ + "": "ResourceHealth represents the health of a resource. It has the latest device health information. This is a part of KEP https://kep.k8s.io/4680 and historical health changes are planned to be added in future iterations of a KEP.", + "resourceID": "ResourceID is the unique identifier of the resource. See the ResourceID type for more information.", + "health": "Health of the resource. can be one of:\n - Healthy: operates as normal\n - Unhealthy: reported unhealthy. We consider this a temporary health issue\n since we do not have a mechanism today to distinguish\n temporary and permanent issues.\n - Unknown: The status cannot be determined.\n For example, Device Plugin got unregistered and hasn't been re-registered since.\n\nIn future we may want to introduce the PermanentlyUnhealthy Status.", +} + +func (ResourceHealth) SwaggerDoc() map[string]string { + return map_ResourceHealth +} + var map_ResourceQuota = map[string]string{ "": "ResourceQuota sets aggregate quota restrictions enforced per namespace", "metadata": "Standard object's metadata. More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#metadata", @@ -2141,6 +2187,15 @@ func (ResourceRequirements) SwaggerDoc() map[string]string { return map_ResourceRequirements } +var map_ResourceStatus = map[string]string{ + "name": "Name of the resource. Must be unique within the pod and match one of the resources from the pod spec.", + "resources": "List of unique Resources health. Each element in the list contains an unique resource ID and resource health. At a minimum, ResourceID must uniquely identify the Resource allocated to the Pod on the Node for the lifetime of a Pod. See ResourceID type for it's definition.", +} + +func (ResourceStatus) SwaggerDoc() map[string]string { + return map_ResourceStatus +} + var map_SELinuxOptions = map[string]string{ "": "SELinuxOptions are the labels to be applied to the container", "user": "User is a SELinux user label that applies to the container.", @@ -2304,7 +2359,7 @@ var map_SecurityContext = map[string]string{ "runAsNonRoot": "Indicates that the container must run as a non-root user. If true, the Kubelet will validate the image at runtime to ensure that it does not run as UID 0 (root) and fail to start the container if it does. If unset or false, no such validation will be performed. May also be set in PodSecurityContext. If set in both SecurityContext and PodSecurityContext, the value specified in SecurityContext takes precedence.", "readOnlyRootFilesystem": "Whether this container has a read-only root filesystem. Default is false. Note that this field cannot be set when spec.os.name is windows.", "allowPrivilegeEscalation": "AllowPrivilegeEscalation controls whether a process can gain more privileges than its parent process. This bool directly controls if the no_new_privs flag will be set on the container process. AllowPrivilegeEscalation is true always when the container is: 1) run as Privileged 2) has CAP_SYS_ADMIN Note that this field cannot be set when spec.os.name is windows.", - "procMount": "procMount denotes the type of proc mount to use for the containers. The default is DefaultProcMount which uses the container runtime defaults for readonly paths and masked paths. This requires the ProcMountType feature flag to be enabled. Note that this field cannot be set when spec.os.name is windows.", + "procMount": "procMount denotes the type of proc mount to use for the containers. The default value is Default which uses the container runtime defaults for readonly paths and masked paths. This requires the ProcMountType feature flag to be enabled. Note that this field cannot be set when spec.os.name is windows.", "seccompProfile": "The seccomp options to use by this container. If seccomp options are provided at both the pod & container level, the container options override the pod options. Note that this field cannot be set when spec.os.name is windows.", "appArmorProfile": "appArmorProfile is the AppArmor options to use by this container. If set, this profile overrides the pod's appArmorProfile. Note that this field cannot be set when spec.os.name is windows.", } @@ -2639,7 +2694,7 @@ func (VolumeNodeAffinity) SwaggerDoc() map[string]string { } var map_VolumeProjection = map[string]string{ - "": "Projection that may be projected along with other supported volume types", + "": "Projection that may be projected along with other supported volume types. Exactly one of these fields must be set.", "secret": "secret information about the secret data to project", "downwardAPI": "downwardAPI information about the downwardAPI data to project", "configMap": "configMap information about the configMap data to project", @@ -2692,6 +2747,7 @@ var map_VolumeSource = map[string]string{ "storageos": "storageOS represents a StorageOS volume attached and mounted on Kubernetes nodes.", "csi": "csi (Container Storage Interface) represents ephemeral storage that is handled by certain external CSI drivers (Beta feature).", "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.", } func (VolumeSource) SwaggerDoc() map[string]string { diff --git a/api/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go b/api/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go index 08e927848..3d23f7f62 100644 --- a/api/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go +++ b/api/vendor/k8s.io/api/core/v1/zz_generated.deepcopy.go @@ -440,32 +440,6 @@ func (in *CinderVolumeSource) DeepCopy() *CinderVolumeSource { return out } -// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. -func (in *ClaimSource) DeepCopyInto(out *ClaimSource) { - *out = *in - if in.ResourceClaimName != nil { - in, out := &in.ResourceClaimName, &out.ResourceClaimName - *out = new(string) - **out = **in - } - if in.ResourceClaimTemplateName != nil { - in, out := &in.ResourceClaimTemplateName, &out.ResourceClaimTemplateName - *out = new(string) - **out = **in - } - return -} - -// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ClaimSource. -func (in *ClaimSource) DeepCopy() *ClaimSource { - if in == nil { - return nil - } - out := new(ClaimSource) - in.DeepCopyInto(out) - return out -} - // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ClientIPConfig) DeepCopyInto(out *ClientIPConfig) { *out = *in @@ -1069,6 +1043,18 @@ func (in *ContainerStatus) DeepCopyInto(out *ContainerStatus) { (*in)[i].DeepCopyInto(&(*out)[i]) } } + if in.User != nil { + in, out := &in.User, &out.User + *out = new(ContainerUser) + (*in).DeepCopyInto(*out) + } + if in.AllocatedResourcesStatus != nil { + in, out := &in.AllocatedResourcesStatus, &out.AllocatedResourcesStatus + *out = make([]ResourceStatus, len(*in)) + for i := range *in { + (*in)[i].DeepCopyInto(&(*out)[i]) + } + } return } @@ -1082,6 +1068,27 @@ func (in *ContainerStatus) DeepCopy() *ContainerStatus { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ContainerUser) DeepCopyInto(out *ContainerUser) { + *out = *in + if in.Linux != nil { + in, out := &in.Linux, &out.Linux + *out = new(LinuxContainerUser) + (*in).DeepCopyInto(*out) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ContainerUser. +func (in *ContainerUser) DeepCopy() *ContainerUser { + if in == nil { + return nil + } + out := new(ContainerUser) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *DaemonEndpoint) DeepCopyInto(out *DaemonEndpoint) { *out = *in @@ -2044,6 +2051,22 @@ func (in *ISCSIVolumeSource) DeepCopy() *ISCSIVolumeSource { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ImageVolumeSource) DeepCopyInto(out *ImageVolumeSource) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ImageVolumeSource. +func (in *ImageVolumeSource) DeepCopy() *ImageVolumeSource { + if in == nil { + return nil + } + out := new(ImageVolumeSource) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *KeyToPath) DeepCopyInto(out *KeyToPath) { *out = *in @@ -2261,6 +2284,27 @@ func (in *LimitRangeSpec) DeepCopy() *LimitRangeSpec { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *LinuxContainerUser) DeepCopyInto(out *LinuxContainerUser) { + *out = *in + if in.SupplementalGroups != nil { + in, out := &in.SupplementalGroups, &out.SupplementalGroups + *out = make([]int64, len(*in)) + copy(*out, *in) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new LinuxContainerUser. +func (in *LinuxContainerUser) DeepCopy() *LinuxContainerUser { + if in == nil { + return nil + } + out := new(LinuxContainerUser) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *List) DeepCopyInto(out *List) { *out = *in @@ -2695,6 +2739,27 @@ func (in *NodeDaemonEndpoints) DeepCopy() *NodeDaemonEndpoints { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *NodeFeatures) DeepCopyInto(out *NodeFeatures) { + *out = *in + if in.SupplementalGroupsPolicy != nil { + in, out := &in.SupplementalGroupsPolicy, &out.SupplementalGroupsPolicy + *out = new(bool) + **out = **in + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NodeFeatures. +func (in *NodeFeatures) DeepCopy() *NodeFeatures { + if in == nil { + return nil + } + out := new(NodeFeatures) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *NodeList) DeepCopyInto(out *NodeList) { *out = *in @@ -2782,6 +2847,11 @@ func (in *NodeRuntimeHandlerFeatures) DeepCopyInto(out *NodeRuntimeHandlerFeatur *out = new(bool) **out = **in } + if in.UserNamespaces != nil { + in, out := &in.UserNamespaces, &out.UserNamespaces + *out = new(bool) + **out = **in + } return } @@ -2962,6 +3032,11 @@ func (in *NodeStatus) DeepCopyInto(out *NodeStatus) { (*in)[i].DeepCopyInto(&(*out)[i]) } } + if in.Features != nil { + in, out := &in.Features, &out.Features + *out = new(NodeFeatures) + (*in).DeepCopyInto(*out) + } return } @@ -3971,7 +4046,16 @@ func (in *PodReadinessGate) DeepCopy() *PodReadinessGate { // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *PodResourceClaim) DeepCopyInto(out *PodResourceClaim) { *out = *in - in.Source.DeepCopyInto(&out.Source) + if in.ResourceClaimName != nil { + in, out := &in.ResourceClaimName, &out.ResourceClaimName + *out = new(string) + **out = **in + } + if in.ResourceClaimTemplateName != nil { + in, out := &in.ResourceClaimTemplateName, &out.ResourceClaimTemplateName + *out = new(string) + **out = **in + } return } @@ -4055,6 +4139,11 @@ func (in *PodSecurityContext) DeepCopyInto(out *PodSecurityContext) { *out = make([]int64, len(*in)) copy(*out, *in) } + if in.SupplementalGroupsPolicy != nil { + in, out := &in.SupplementalGroupsPolicy, &out.SupplementalGroupsPolicy + *out = new(SupplementalGroupsPolicy) + **out = **in + } if in.FSGroup != nil { in, out := &in.FSGroup, &out.FSGroup *out = new(int64) @@ -4900,6 +4989,22 @@ func (in *ResourceFieldSelector) DeepCopy() *ResourceFieldSelector { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ResourceHealth) DeepCopyInto(out *ResourceHealth) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ResourceHealth. +func (in *ResourceHealth) DeepCopy() *ResourceHealth { + if in == nil { + return nil + } + out := new(ResourceHealth) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in ResourceList) DeepCopyInto(out *ResourceList) { { @@ -5081,6 +5186,27 @@ func (in *ResourceRequirements) DeepCopy() *ResourceRequirements { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ResourceStatus) DeepCopyInto(out *ResourceStatus) { + *out = *in + if in.Resources != nil { + in, out := &in.Resources, &out.Resources + *out = make([]ResourceHealth, len(*in)) + copy(*out, *in) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ResourceStatus. +func (in *ResourceStatus) DeepCopy() *ResourceStatus { + if in == nil { + return nil + } + out := new(ResourceStatus) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *SELinuxOptions) DeepCopyInto(out *SELinuxOptions) { *out = *in @@ -6426,6 +6552,11 @@ func (in *VolumeSource) DeepCopyInto(out *VolumeSource) { *out = new(EphemeralVolumeSource) (*in).DeepCopyInto(*out) } + if in.Image != nil { + in, out := &in.Image, &out.Image + *out = new(ImageVolumeSource) + **out = **in + } return } diff --git a/api/vendor/k8s.io/api/core/v1/zz_generated.prerelease-lifecycle.go b/api/vendor/k8s.io/api/core/v1/zz_generated.prerelease-lifecycle.go new file mode 100644 index 000000000..6710a96d1 --- /dev/null +++ b/api/vendor/k8s.io/api/core/v1/zz_generated.prerelease-lifecycle.go @@ -0,0 +1,274 @@ +//go:build !ignore_autogenerated +// +build !ignore_autogenerated + +/* +Copyright 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. +*/ + +// Code generated by prerelease-lifecycle-gen. DO NOT EDIT. + +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 *Binding) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ConfigMap) APILifecycleIntroduced() (major, minor int) { + return 1, 2 +} + +// 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 *ConfigMapList) APILifecycleIntroduced() (major, minor int) { + return 1, 2 +} + +// 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 *Endpoints) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *EndpointsList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Event) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *EventList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *LimitRange) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *LimitRangeList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *List) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Namespace) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *NamespaceList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Node) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *NodeList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *NodeProxyOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 2 +} + +// 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 *PersistentVolume) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PersistentVolumeClaim) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PersistentVolumeClaimList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PersistentVolumeList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Pod) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodAttachOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 1 +} + +// 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 *PodExecOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodLogOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodPortForwardOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 6 +} + +// 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 *PodProxyOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodStatusResult) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodTemplate) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *PodTemplateList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *RangeAllocation) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ReplicationController) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ReplicationControllerList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ResourceQuota) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ResourceQuotaList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Secret) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *SecretList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *SerializedReference) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *Service) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ServiceAccount) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ServiceAccountList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ServiceList) APILifecycleIntroduced() (major, minor int) { + return 1, 0 +} + +// 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 *ServiceProxyOptions) APILifecycleIntroduced() (major, minor int) { + return 1, 2 +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/api/resource/quantity.go b/api/vendor/k8s.io/apimachinery/pkg/api/resource/quantity.go index 69f1bc336..50af8334f 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/api/resource/quantity.go +++ b/api/vendor/k8s.io/apimachinery/pkg/api/resource/quantity.go @@ -25,6 +25,8 @@ import ( "strconv" "strings" + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" + inf "gopkg.in/inf.v0" ) @@ -683,6 +685,12 @@ func (q Quantity) MarshalJSON() ([]byte, error) { return result, nil } +func (q Quantity) MarshalCBOR() ([]byte, error) { + // The call to String() should never return the string "" because the receiver's + // address will never be nil. + return cbor.Marshal(q.String()) +} + // ToUnstructured implements the value.UnstructuredConverter interface. func (q Quantity) ToUnstructured() interface{} { return q.String() @@ -711,6 +719,27 @@ func (q *Quantity) UnmarshalJSON(value []byte) error { return nil } +func (q *Quantity) UnmarshalCBOR(value []byte) error { + var s *string + if err := cbor.Unmarshal(value, &s); err != nil { + return err + } + + if s == nil { + q.d.Dec = nil + q.i = int64Amount{} + return nil + } + + parsed, err := ParseQuantity(strings.TrimSpace(*s)) + if err != nil { + return err + } + + *q = parsed + return nil +} + // NewDecimalQuantity returns a new Quantity representing the given // value in the given format. func NewDecimalQuantity(b inf.Dec, format Format) *Quantity { diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/controller_ref.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/controller_ref.go index 15b45ffa8..5005beb12 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/controller_ref.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/controller_ref.go @@ -18,6 +18,7 @@ package v1 import ( "k8s.io/apimachinery/pkg/runtime/schema" + "k8s.io/utils/ptr" ) // IsControlledBy checks if the object has a controllerRef set to the given owner @@ -36,10 +37,14 @@ func GetControllerOf(controllee Object) *OwnerReference { return nil } cp := *ref + cp.Controller = ptr.To(*ref.Controller) + if ref.BlockOwnerDeletion != nil { + cp.BlockOwnerDeletion = ptr.To(*ref.BlockOwnerDeletion) + } return &cp } -// GetControllerOf returns a pointer to the controllerRef if controllee has a controller +// GetControllerOfNoCopy returns a pointer to the controllerRef if controllee has a controller func GetControllerOfNoCopy(controllee Object) *OwnerReference { refs := controllee.GetOwnerReferences() for i := range refs { @@ -52,14 +57,12 @@ func GetControllerOfNoCopy(controllee Object) *OwnerReference { // NewControllerRef creates an OwnerReference pointing to the given owner. func NewControllerRef(owner Object, gvk schema.GroupVersionKind) *OwnerReference { - blockOwnerDeletion := true - isController := true return &OwnerReference{ APIVersion: gvk.GroupVersion().String(), Kind: gvk.Kind, Name: owner.GetName(), UID: owner.GetUID(), - BlockOwnerDeletion: &blockOwnerDeletion, - Controller: &isController, + BlockOwnerDeletion: ptr.To(true), + Controller: ptr.To(true), } } diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.pb.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.pb.go index 75b88890f..229ea2c2c 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.pb.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.pb.go @@ -329,10 +329,38 @@ func (m *Duration) XXX_DiscardUnknown() { var xxx_messageInfo_Duration proto.InternalMessageInfo +func (m *FieldSelectorRequirement) Reset() { *m = FieldSelectorRequirement{} } +func (*FieldSelectorRequirement) ProtoMessage() {} +func (*FieldSelectorRequirement) Descriptor() ([]byte, []int) { + return fileDescriptor_a8431b6e0aeeb761, []int{10} +} +func (m *FieldSelectorRequirement) XXX_Unmarshal(b []byte) error { + return m.Unmarshal(b) +} +func (m *FieldSelectorRequirement) 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 *FieldSelectorRequirement) XXX_Merge(src proto.Message) { + xxx_messageInfo_FieldSelectorRequirement.Merge(m, src) +} +func (m *FieldSelectorRequirement) XXX_Size() int { + return m.Size() +} +func (m *FieldSelectorRequirement) XXX_DiscardUnknown() { + xxx_messageInfo_FieldSelectorRequirement.DiscardUnknown(m) +} + +var xxx_messageInfo_FieldSelectorRequirement proto.InternalMessageInfo + func (m *FieldsV1) Reset() { *m = FieldsV1{} } func (*FieldsV1) ProtoMessage() {} func (*FieldsV1) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{10} + return fileDescriptor_a8431b6e0aeeb761, []int{11} } func (m *FieldsV1) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -360,7 +388,7 @@ var xxx_messageInfo_FieldsV1 proto.InternalMessageInfo func (m *GetOptions) Reset() { *m = GetOptions{} } func (*GetOptions) ProtoMessage() {} func (*GetOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{11} + return fileDescriptor_a8431b6e0aeeb761, []int{12} } func (m *GetOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -388,7 +416,7 @@ var xxx_messageInfo_GetOptions proto.InternalMessageInfo func (m *GroupKind) Reset() { *m = GroupKind{} } func (*GroupKind) ProtoMessage() {} func (*GroupKind) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{12} + return fileDescriptor_a8431b6e0aeeb761, []int{13} } func (m *GroupKind) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -416,7 +444,7 @@ var xxx_messageInfo_GroupKind proto.InternalMessageInfo func (m *GroupResource) Reset() { *m = GroupResource{} } func (*GroupResource) ProtoMessage() {} func (*GroupResource) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{13} + return fileDescriptor_a8431b6e0aeeb761, []int{14} } func (m *GroupResource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -444,7 +472,7 @@ var xxx_messageInfo_GroupResource proto.InternalMessageInfo func (m *GroupVersion) Reset() { *m = GroupVersion{} } func (*GroupVersion) ProtoMessage() {} func (*GroupVersion) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{14} + return fileDescriptor_a8431b6e0aeeb761, []int{15} } func (m *GroupVersion) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -472,7 +500,7 @@ var xxx_messageInfo_GroupVersion proto.InternalMessageInfo func (m *GroupVersionForDiscovery) Reset() { *m = GroupVersionForDiscovery{} } func (*GroupVersionForDiscovery) ProtoMessage() {} func (*GroupVersionForDiscovery) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{15} + return fileDescriptor_a8431b6e0aeeb761, []int{16} } func (m *GroupVersionForDiscovery) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -500,7 +528,7 @@ var xxx_messageInfo_GroupVersionForDiscovery proto.InternalMessageInfo func (m *GroupVersionKind) Reset() { *m = GroupVersionKind{} } func (*GroupVersionKind) ProtoMessage() {} func (*GroupVersionKind) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{16} + return fileDescriptor_a8431b6e0aeeb761, []int{17} } func (m *GroupVersionKind) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -528,7 +556,7 @@ var xxx_messageInfo_GroupVersionKind proto.InternalMessageInfo func (m *GroupVersionResource) Reset() { *m = GroupVersionResource{} } func (*GroupVersionResource) ProtoMessage() {} func (*GroupVersionResource) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{17} + return fileDescriptor_a8431b6e0aeeb761, []int{18} } func (m *GroupVersionResource) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -556,7 +584,7 @@ var xxx_messageInfo_GroupVersionResource proto.InternalMessageInfo func (m *LabelSelector) Reset() { *m = LabelSelector{} } func (*LabelSelector) ProtoMessage() {} func (*LabelSelector) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{18} + return fileDescriptor_a8431b6e0aeeb761, []int{19} } func (m *LabelSelector) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -584,7 +612,7 @@ var xxx_messageInfo_LabelSelector proto.InternalMessageInfo func (m *LabelSelectorRequirement) Reset() { *m = LabelSelectorRequirement{} } func (*LabelSelectorRequirement) ProtoMessage() {} func (*LabelSelectorRequirement) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{19} + return fileDescriptor_a8431b6e0aeeb761, []int{20} } func (m *LabelSelectorRequirement) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -612,7 +640,7 @@ var xxx_messageInfo_LabelSelectorRequirement proto.InternalMessageInfo func (m *List) Reset() { *m = List{} } func (*List) ProtoMessage() {} func (*List) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{20} + return fileDescriptor_a8431b6e0aeeb761, []int{21} } func (m *List) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -640,7 +668,7 @@ var xxx_messageInfo_List proto.InternalMessageInfo func (m *ListMeta) Reset() { *m = ListMeta{} } func (*ListMeta) ProtoMessage() {} func (*ListMeta) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{21} + return fileDescriptor_a8431b6e0aeeb761, []int{22} } func (m *ListMeta) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -668,7 +696,7 @@ var xxx_messageInfo_ListMeta proto.InternalMessageInfo func (m *ListOptions) Reset() { *m = ListOptions{} } func (*ListOptions) ProtoMessage() {} func (*ListOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{22} + return fileDescriptor_a8431b6e0aeeb761, []int{23} } func (m *ListOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -696,7 +724,7 @@ var xxx_messageInfo_ListOptions proto.InternalMessageInfo func (m *ManagedFieldsEntry) Reset() { *m = ManagedFieldsEntry{} } func (*ManagedFieldsEntry) ProtoMessage() {} func (*ManagedFieldsEntry) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{23} + return fileDescriptor_a8431b6e0aeeb761, []int{24} } func (m *ManagedFieldsEntry) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -724,7 +752,7 @@ var xxx_messageInfo_ManagedFieldsEntry proto.InternalMessageInfo func (m *MicroTime) Reset() { *m = MicroTime{} } func (*MicroTime) ProtoMessage() {} func (*MicroTime) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{24} + return fileDescriptor_a8431b6e0aeeb761, []int{25} } func (m *MicroTime) XXX_Unmarshal(b []byte) error { return xxx_messageInfo_MicroTime.Unmarshal(m, b) @@ -747,7 +775,7 @@ var xxx_messageInfo_MicroTime proto.InternalMessageInfo func (m *ObjectMeta) Reset() { *m = ObjectMeta{} } func (*ObjectMeta) ProtoMessage() {} func (*ObjectMeta) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{25} + return fileDescriptor_a8431b6e0aeeb761, []int{26} } func (m *ObjectMeta) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -775,7 +803,7 @@ var xxx_messageInfo_ObjectMeta proto.InternalMessageInfo func (m *OwnerReference) Reset() { *m = OwnerReference{} } func (*OwnerReference) ProtoMessage() {} func (*OwnerReference) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{26} + return fileDescriptor_a8431b6e0aeeb761, []int{27} } func (m *OwnerReference) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -803,7 +831,7 @@ var xxx_messageInfo_OwnerReference proto.InternalMessageInfo func (m *PartialObjectMetadata) Reset() { *m = PartialObjectMetadata{} } func (*PartialObjectMetadata) ProtoMessage() {} func (*PartialObjectMetadata) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{27} + return fileDescriptor_a8431b6e0aeeb761, []int{28} } func (m *PartialObjectMetadata) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -831,7 +859,7 @@ var xxx_messageInfo_PartialObjectMetadata proto.InternalMessageInfo func (m *PartialObjectMetadataList) Reset() { *m = PartialObjectMetadataList{} } func (*PartialObjectMetadataList) ProtoMessage() {} func (*PartialObjectMetadataList) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{28} + return fileDescriptor_a8431b6e0aeeb761, []int{29} } func (m *PartialObjectMetadataList) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -859,7 +887,7 @@ var xxx_messageInfo_PartialObjectMetadataList proto.InternalMessageInfo func (m *Patch) Reset() { *m = Patch{} } func (*Patch) ProtoMessage() {} func (*Patch) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{29} + return fileDescriptor_a8431b6e0aeeb761, []int{30} } func (m *Patch) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -887,7 +915,7 @@ var xxx_messageInfo_Patch proto.InternalMessageInfo func (m *PatchOptions) Reset() { *m = PatchOptions{} } func (*PatchOptions) ProtoMessage() {} func (*PatchOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{30} + return fileDescriptor_a8431b6e0aeeb761, []int{31} } func (m *PatchOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -915,7 +943,7 @@ var xxx_messageInfo_PatchOptions proto.InternalMessageInfo func (m *Preconditions) Reset() { *m = Preconditions{} } func (*Preconditions) ProtoMessage() {} func (*Preconditions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{31} + return fileDescriptor_a8431b6e0aeeb761, []int{32} } func (m *Preconditions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -943,7 +971,7 @@ var xxx_messageInfo_Preconditions proto.InternalMessageInfo func (m *RootPaths) Reset() { *m = RootPaths{} } func (*RootPaths) ProtoMessage() {} func (*RootPaths) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{32} + return fileDescriptor_a8431b6e0aeeb761, []int{33} } func (m *RootPaths) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -971,7 +999,7 @@ var xxx_messageInfo_RootPaths proto.InternalMessageInfo func (m *ServerAddressByClientCIDR) Reset() { *m = ServerAddressByClientCIDR{} } func (*ServerAddressByClientCIDR) ProtoMessage() {} func (*ServerAddressByClientCIDR) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{33} + return fileDescriptor_a8431b6e0aeeb761, []int{34} } func (m *ServerAddressByClientCIDR) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -999,7 +1027,7 @@ var xxx_messageInfo_ServerAddressByClientCIDR proto.InternalMessageInfo func (m *Status) Reset() { *m = Status{} } func (*Status) ProtoMessage() {} func (*Status) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{34} + return fileDescriptor_a8431b6e0aeeb761, []int{35} } func (m *Status) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1027,7 +1055,7 @@ var xxx_messageInfo_Status proto.InternalMessageInfo func (m *StatusCause) Reset() { *m = StatusCause{} } func (*StatusCause) ProtoMessage() {} func (*StatusCause) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{35} + return fileDescriptor_a8431b6e0aeeb761, []int{36} } func (m *StatusCause) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1055,7 +1083,7 @@ var xxx_messageInfo_StatusCause proto.InternalMessageInfo func (m *StatusDetails) Reset() { *m = StatusDetails{} } func (*StatusDetails) ProtoMessage() {} func (*StatusDetails) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{36} + return fileDescriptor_a8431b6e0aeeb761, []int{37} } func (m *StatusDetails) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1083,7 +1111,7 @@ var xxx_messageInfo_StatusDetails proto.InternalMessageInfo func (m *TableOptions) Reset() { *m = TableOptions{} } func (*TableOptions) ProtoMessage() {} func (*TableOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{37} + return fileDescriptor_a8431b6e0aeeb761, []int{38} } func (m *TableOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1111,7 +1139,7 @@ var xxx_messageInfo_TableOptions proto.InternalMessageInfo func (m *Time) Reset() { *m = Time{} } func (*Time) ProtoMessage() {} func (*Time) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{38} + return fileDescriptor_a8431b6e0aeeb761, []int{39} } func (m *Time) XXX_Unmarshal(b []byte) error { return xxx_messageInfo_Time.Unmarshal(m, b) @@ -1134,7 +1162,7 @@ var xxx_messageInfo_Time proto.InternalMessageInfo func (m *Timestamp) Reset() { *m = Timestamp{} } func (*Timestamp) ProtoMessage() {} func (*Timestamp) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{39} + return fileDescriptor_a8431b6e0aeeb761, []int{40} } func (m *Timestamp) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1162,7 +1190,7 @@ var xxx_messageInfo_Timestamp proto.InternalMessageInfo func (m *TypeMeta) Reset() { *m = TypeMeta{} } func (*TypeMeta) ProtoMessage() {} func (*TypeMeta) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{40} + return fileDescriptor_a8431b6e0aeeb761, []int{41} } func (m *TypeMeta) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1190,7 +1218,7 @@ var xxx_messageInfo_TypeMeta proto.InternalMessageInfo func (m *UpdateOptions) Reset() { *m = UpdateOptions{} } func (*UpdateOptions) ProtoMessage() {} func (*UpdateOptions) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{41} + return fileDescriptor_a8431b6e0aeeb761, []int{42} } func (m *UpdateOptions) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1218,7 +1246,7 @@ var xxx_messageInfo_UpdateOptions proto.InternalMessageInfo func (m *Verbs) Reset() { *m = Verbs{} } func (*Verbs) ProtoMessage() {} func (*Verbs) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{42} + return fileDescriptor_a8431b6e0aeeb761, []int{43} } func (m *Verbs) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1246,7 +1274,7 @@ var xxx_messageInfo_Verbs proto.InternalMessageInfo func (m *WatchEvent) Reset() { *m = WatchEvent{} } func (*WatchEvent) ProtoMessage() {} func (*WatchEvent) Descriptor() ([]byte, []int) { - return fileDescriptor_a8431b6e0aeeb761, []int{43} + return fileDescriptor_a8431b6e0aeeb761, []int{44} } func (m *WatchEvent) XXX_Unmarshal(b []byte) error { return m.Unmarshal(b) @@ -1282,6 +1310,7 @@ func init() { proto.RegisterType((*CreateOptions)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.CreateOptions") proto.RegisterType((*DeleteOptions)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.DeleteOptions") proto.RegisterType((*Duration)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.Duration") + proto.RegisterType((*FieldSelectorRequirement)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.FieldSelectorRequirement") proto.RegisterType((*FieldsV1)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.FieldsV1") proto.RegisterType((*GetOptions)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.GetOptions") proto.RegisterType((*GroupKind)(nil), "k8s.io.apimachinery.pkg.apis.meta.v1.GroupKind") @@ -1326,186 +1355,187 @@ func init() { } var fileDescriptor_a8431b6e0aeeb761 = []byte{ - // 2853 bytes 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0x48, 0x80, 0x87, 0x79, 0xcc, 0x7d, 0x28, 0xdd, 0xb6, 0xf6, 0xdd, 0xe8, + 0x15, 0x0f, 0x43, 0xd9, 0xf1, 0x9a, 0x6e, 0xd7, 0x26, 0x32, 0xa1, 0x87, 0xd9, 0x2b, 0x0c, 0xda, + 0x2d, 0x1d, 0x79, 0xd6, 0xaf, 0x5e, 0x48, 0x00, 0xe4, 0xb3, 0x15, 0x4e, 0x8a, 0x30, 0x5d, 0x98, + 0xfe, 0x0c, 0x3b, 0xc9, 0xef, 0x40, 0x21, 0xae, 0xf5, 0x1f, 0xb1, 0x4a, 0xf3, 0x2d, 0xc8, 0x73, + 0x8f, 0x0f, 0x7b, 0xd4, 0x73, 0xaa, 0xa4, 0x64, 0xed, 0x95, 0x49, 0x53, 0x7b, 0x89, 0xb7, 0xe0, + 0x3b, 0x1d, 0xfb, 0x21, 0xdf, 0x82, 0x33, 0x0f, 0x73, 0xf3, 0x65, 0x27, 0xbc, 0xf9, 0xae, 0x82, + 0xfc, 0xbf, 0x0c, 0xbf, 0x64, 0x64, 0x01, 0xa1, 0x5d, 0x32, 0xfa, 0xfd, 0xaf, 0xbd, 0x30, 0xfc, + 0xd8, 0x00, 0x10, 0xa3, 0x3c, 0x31, 0x46, 0x4a, 0xf1, 0xaf, 0x83, 0x3b, 0x30, 0xe3, 0x4b, 0x8f, + 0x94, 0xef, 0xc1, 0x13, 0xce, 0x8b, 0xa3, 0x40, 0x92, 0x3e, 0x89, 0x95, 0xb0, 0xfa, 0xab, 0x1f, + 0xdd, 0x5b, 0x99, 0xfa, 0xf8, 0xde, 0xca, 0xd4, 0x27, 0xf7, 0x56, 0xa6, 0xde, 0x3d, 0x5d, 0x31, + 0x3e, 0x3a, 0x5d, 0x31, 0x3e, 0x3e, 0x5d, 0x31, 0x3e, 0x39, 0x5d, 0x31, 0x3e, 0x3d, 0x5d, 0x31, + 0xde, 0xff, 0xfb, 0xca, 0xd4, 0x1b, 0x4f, 0xa4, 0xf9, 0x1f, 0xe2, 0x7f, 0x03, 0x00, 0x00, 0xff, + 0xff, 0xd3, 0xee, 0xe4, 0x1c, 0xae, 0x28, 0x00, 0x00, } func (m *APIGroup) Marshal() (dAtA []byte, err error) { @@ -2025,6 +2055,48 @@ func (m *Duration) MarshalToSizedBuffer(dAtA []byte) (int, error) { return len(dAtA) - i, nil } +func (m *FieldSelectorRequirement) 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 *FieldSelectorRequirement) MarshalTo(dAtA []byte) (int, error) { + size := m.Size() + return m.MarshalToSizedBuffer(dAtA[:size]) +} + +func (m *FieldSelectorRequirement) MarshalToSizedBuffer(dAtA []byte) (int, error) { + i := len(dAtA) + _ = i + var l int + _ = l + if len(m.Values) > 0 { + for iNdEx := len(m.Values) - 1; iNdEx >= 0; iNdEx-- { + i -= len(m.Values[iNdEx]) + copy(dAtA[i:], m.Values[iNdEx]) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Values[iNdEx]))) + i-- + dAtA[i] = 0x1a + } + } + i -= len(m.Operator) + copy(dAtA[i:], m.Operator) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Operator))) + i-- + dAtA[i] = 0x12 + i -= len(m.Key) + copy(dAtA[i:], m.Key) + i = encodeVarintGenerated(dAtA, i, uint64(len(m.Key))) + i-- + dAtA[i] = 0xa + return len(dAtA) - i, nil +} + func (m *FieldsV1) Marshal() (dAtA []byte, err error) { size := m.Size() dAtA = make([]byte, size) @@ -3714,6 +3786,25 @@ func (m *Duration) Size() (n int) { return n } +func (m *FieldSelectorRequirement) 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)) + if len(m.Values) > 0 { + for _, s := range m.Values { + l = len(s) + n += 1 + l + sovGenerated(uint64(l)) + } + } + return n +} + func (m *FieldsV1) Size() (n int) { if m == nil { return 0 @@ -4429,6 +4520,18 @@ func (this *Duration) String() string { }, "") return s } +func (this *FieldSelectorRequirement) String() string { + if this == nil { + return "nil" + } + s := strings.Join([]string{`&FieldSelectorRequirement{`, + `Key:` + fmt.Sprintf("%v", this.Key) + `,`, + `Operator:` + fmt.Sprintf("%v", this.Operator) + `,`, + `Values:` + fmt.Sprintf("%v", this.Values) + `,`, + `}`, + }, "") + return s +} func (this *GetOptions) String() string { if this == nil { return "nil" @@ -6443,6 +6546,152 @@ func (m *Duration) Unmarshal(dAtA []byte) error { } return nil } +func (m *FieldSelectorRequirement) 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: FieldSelectorRequirement: wiretype end group for non-group") + } + if fieldNum <= 0 { + return fmt.Errorf("proto: FieldSelectorRequirement: illegal tag %d (wire type %d)", fieldNum, wire) + } + switch fieldNum { + case 1: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Key", 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.Key = string(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 2: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Operator", 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.Operator = FieldSelectorOperator(dAtA[iNdEx:postIndex]) + iNdEx = postIndex + case 3: + if wireType != 2 { + return fmt.Errorf("proto: wrong wireType = %d for field Values", 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.Values = append(m.Values, 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 *FieldsV1) Unmarshal(dAtA []byte) error { l := len(dAtA) iNdEx := 0 diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto index 2b95700f7..18dd0b067 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/generated.proto @@ -324,6 +324,25 @@ message Duration { optional int64 duration = 1; } +// FieldSelectorRequirement is a selector that contains values, a key, and an operator that +// relates the key and values. +message FieldSelectorRequirement { + // key is the field selector key that the requirement applies to. + optional string key = 1; + + // operator represents a key's relationship to a set of values. + // Valid operators are In, NotIn, Exists, DoesNotExist. + // The list of operators may grow in the future. + optional string operator = 2; + + // values is an array of string values. + // If the operator is In or NotIn, the values array must be non-empty. + // If the operator is Exists or DoesNotExist, the values array must be empty. + // +optional + // +listType=atomic + repeated string values = 3; +} + // FieldsV1 stores a set of fields in a data structure like a Trie, in JSON format. // // Each key is either a '.' representing the field itself, and will always map to an empty set, @@ -460,7 +479,7 @@ message List { optional ListMeta metadata = 1; // List of objects - repeated k8s.io.apimachinery.pkg.runtime.RawExtension items = 2; + repeated .k8s.io.apimachinery.pkg.runtime.RawExtension items = 2; } // ListMeta describes metadata that synthetic resources must have, including lists and @@ -1209,6 +1228,6 @@ message WatchEvent { // * If Type is Deleted: the state of the object immediately before deletion. // * If Type is Error: *Status is recommended; other types may make sense // depending on context. - optional k8s.io.apimachinery.pkg.runtime.RawExtension object = 2; + optional .k8s.io.apimachinery.pkg.runtime.RawExtension object = 2; } diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/helpers.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/helpers.go index 592dcb8a7..c748071ed 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/helpers.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/helpers.go @@ -24,8 +24,10 @@ import ( "k8s.io/apimachinery/pkg/fields" "k8s.io/apimachinery/pkg/labels" + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" "k8s.io/apimachinery/pkg/selection" "k8s.io/apimachinery/pkg/types" + utiljson "k8s.io/apimachinery/pkg/util/json" ) // LabelSelectorAsSelector converts the LabelSelector api type into a struct that implements @@ -280,13 +282,20 @@ func (f FieldsV1) MarshalJSON() ([]byte, error) { if f.Raw == nil { return []byte("null"), nil } + if f.getContentType() == fieldsV1InvalidOrValidCBORObject { + var u map[string]interface{} + if err := cbor.Unmarshal(f.Raw, &u); err != nil { + return nil, fmt.Errorf("metav1.FieldsV1 cbor invalid: %w", err) + } + return utiljson.Marshal(u) + } return f.Raw, nil } // UnmarshalJSON implements json.Unmarshaler func (f *FieldsV1) UnmarshalJSON(b []byte) error { if f == nil { - return errors.New("metav1.Fields: UnmarshalJSON on nil pointer") + return errors.New("metav1.FieldsV1: UnmarshalJSON on nil pointer") } if !bytes.Equal(b, []byte("null")) { f.Raw = append(f.Raw[0:0], b...) @@ -296,3 +305,75 @@ func (f *FieldsV1) UnmarshalJSON(b []byte) error { var _ json.Marshaler = FieldsV1{} var _ json.Unmarshaler = &FieldsV1{} + +func (f FieldsV1) MarshalCBOR() ([]byte, error) { + if f.Raw == nil { + return cbor.Marshal(nil) + } + if f.getContentType() == fieldsV1InvalidOrValidJSONObject { + var u map[string]interface{} + if err := utiljson.Unmarshal(f.Raw, &u); err != nil { + return nil, fmt.Errorf("metav1.FieldsV1 json invalid: %w", err) + } + return cbor.Marshal(u) + } + return f.Raw, nil +} + +var cborNull = []byte{0xf6} + +func (f *FieldsV1) UnmarshalCBOR(b []byte) error { + if f == nil { + return errors.New("metav1.FieldsV1: UnmarshalCBOR on nil pointer") + } + if !bytes.Equal(b, cborNull) { + f.Raw = append(f.Raw[0:0], b...) + } + return nil +} + +const ( + // fieldsV1InvalidOrEmpty indicates that a FieldsV1 either contains no raw bytes or its raw + // bytes don't represent an allowable value in any supported encoding. + fieldsV1InvalidOrEmpty = iota + + // fieldsV1InvalidOrValidJSONObject indicates that a FieldV1 either contains raw bytes that + // are a valid JSON encoding of an allowable value or don't represent an allowable value in + // any supported encoding. + fieldsV1InvalidOrValidJSONObject + + // fieldsV1InvalidOrValidCBORObject indicates that a FieldV1 either contains raw bytes that + // are a valid CBOR encoding of an allowable value or don't represent an allowable value in + // any supported encoding. + fieldsV1InvalidOrValidCBORObject +) + +// getContentType returns one of fieldsV1InvalidOrEmpty, fieldsV1InvalidOrValidJSONObject, +// fieldsV1InvalidOrValidCBORObject based on the value of Raw. +// +// Raw can be encoded in JSON or CBOR and is only valid if it is empty, null, or an object (map) +// value. It is invalid if it contains a JSON string, number, boolean, or array. If Raw is nonempty +// and represents an allowable value, then the initial byte unambiguously distinguishes a +// JSON-encoded value from a CBOR-encoded value. +// +// A valid JSON-encoded value can begin with any of the four JSON whitespace characters, the first +// character 'n' of null, or '{' (0x09, 0x0a, 0x0d, 0x20, 0x6e, or 0x7b, respectively). A valid +// CBOR-encoded value can begin with the null simple value, an initial byte with major type "map", +// or, if a tag-enclosed map, an initial byte with major type "tag" (0xf6, 0xa0...0xbf, or +// 0xc6...0xdb). The two sets of valid initial bytes don't intersect. +func (f FieldsV1) getContentType() int { + if len(f.Raw) > 0 { + p := f.Raw[0] + switch p { + case 'n', '{', '\t', '\r', '\n', ' ': + return fieldsV1InvalidOrValidJSONObject + case 0xf6: // null + return fieldsV1InvalidOrValidCBORObject + default: + if p >= 0xa0 && p <= 0xbf /* map */ || p >= 0xc6 && p <= 0xdb /* tag */ { + return fieldsV1InvalidOrValidCBORObject + } + } + } + return fieldsV1InvalidOrEmpty +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/micro_time.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/micro_time.go index 8eb37f436..9f302b3f3 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/micro_time.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/micro_time.go @@ -19,6 +19,8 @@ package v1 import ( "encoding/json" "time" + + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" ) const RFC3339Micro = "2006-01-02T15:04:05.000000Z07:00" @@ -129,6 +131,25 @@ func (t *MicroTime) UnmarshalJSON(b []byte) error { return nil } +func (t *MicroTime) UnmarshalCBOR(b []byte) error { + var s *string + if err := cbor.Unmarshal(b, &s); err != nil { + return err + } + if s == nil { + t.Time = time.Time{} + return nil + } + + parsed, err := time.Parse(RFC3339Micro, *s) + if err != nil { + return err + } + + t.Time = parsed.Local() + return nil +} + // UnmarshalQueryParameter converts from a URL query parameter value to an object func (t *MicroTime) UnmarshalQueryParameter(str string) error { if len(str) == 0 { @@ -160,6 +181,13 @@ func (t MicroTime) MarshalJSON() ([]byte, error) { return json.Marshal(t.UTC().Format(RFC3339Micro)) } +func (t MicroTime) MarshalCBOR() ([]byte, error) { + if t.IsZero() { + return cbor.Marshal(nil) + } + return cbor.Marshal(t.UTC().Format(RFC3339Micro)) +} + // OpenAPISchemaType is used by the kube-openapi generator when constructing // the OpenAPI spec of this type. // diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/time.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/time.go index 421770d43..0333cfdb3 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/time.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/time.go @@ -19,6 +19,8 @@ package v1 import ( "encoding/json" "time" + + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" ) // Time is a wrapper around time.Time which supports correct @@ -116,6 +118,25 @@ func (t *Time) UnmarshalJSON(b []byte) error { return nil } +func (t *Time) UnmarshalCBOR(b []byte) error { + var s *string + if err := cbor.Unmarshal(b, &s); err != nil { + return err + } + if s == nil { + t.Time = time.Time{} + return nil + } + + parsed, err := time.Parse(time.RFC3339, *s) + if err != nil { + return err + } + + t.Time = parsed.Local() + return nil +} + // UnmarshalQueryParameter converts from a URL query parameter value to an object func (t *Time) UnmarshalQueryParameter(str string) error { if len(str) == 0 { @@ -151,6 +172,14 @@ func (t Time) MarshalJSON() ([]byte, error) { return buf, nil } +func (t Time) MarshalCBOR() ([]byte, error) { + if t.IsZero() { + return cbor.Marshal(nil) + } + + return cbor.Marshal(t.UTC().Format(time.RFC3339)) +} + // ToUnstructured implements the value.UnstructuredConverter interface. func (t Time) ToUnstructured() interface{} { if t.IsZero() { diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types.go index 9695ba50b..473adb9ef 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types.go @@ -1278,6 +1278,33 @@ const ( LabelSelectorOpDoesNotExist LabelSelectorOperator = "DoesNotExist" ) +// FieldSelectorRequirement is a selector that contains values, a key, and an operator that +// relates the key and values. +type FieldSelectorRequirement struct { + // key is the field selector key that the requirement applies to. + Key string `json:"key" protobuf:"bytes,1,opt,name=key"` + // operator represents a key's relationship to a set of values. + // Valid operators are In, NotIn, Exists, DoesNotExist. + // The list of operators may grow in the future. + Operator FieldSelectorOperator `json:"operator" protobuf:"bytes,2,opt,name=operator,casttype=FieldSelectorOperator"` + // values is an array of string values. + // If the operator is In or NotIn, the values array must be non-empty. + // If the operator is Exists or DoesNotExist, the values array must be empty. + // +optional + // +listType=atomic + Values []string `json:"values,omitempty" protobuf:"bytes,3,rep,name=values"` +} + +// A field selector operator is the set of operators that can be used in a selector requirement. +type FieldSelectorOperator string + +const ( + FieldSelectorOpIn FieldSelectorOperator = "In" + FieldSelectorOpNotIn FieldSelectorOperator = "NotIn" + FieldSelectorOpExists FieldSelectorOperator = "Exists" + FieldSelectorOpDoesNotExist FieldSelectorOperator = "DoesNotExist" +) + // ManagedFieldsEntry is a workflow-id, a FieldSet and the group version of the resource // that the fieldset applies to. type ManagedFieldsEntry struct { diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types_swagger_doc_generated.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types_swagger_doc_generated.go index b736e8371..1fa37215c 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types_swagger_doc_generated.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/types_swagger_doc_generated.go @@ -135,6 +135,17 @@ func (DeleteOptions) SwaggerDoc() map[string]string { return map_DeleteOptions } +var map_FieldSelectorRequirement = map[string]string{ + "": "FieldSelectorRequirement is a selector that contains values, a key, and an operator that relates the key and values.", + "key": "key is the field selector key that the requirement applies to.", + "operator": "operator represents a key's relationship to a set of values. Valid operators are In, NotIn, Exists, DoesNotExist. The list of operators may grow in the future.", + "values": "values is an array of string values. If the operator is In or NotIn, the values array must be non-empty. If the operator is Exists or DoesNotExist, the values array must be empty.", +} + +func (FieldSelectorRequirement) SwaggerDoc() map[string]string { + return map_FieldSelectorRequirement +} + var map_FieldsV1 = map[string]string{ "": "FieldsV1 stores a set of fields in a data structure like a Trie, in JSON format.\n\nEach key is either a '.' representing the field itself, and will always map to an empty set, or a string representing a sub-field or item. The string will follow one of these four formats: 'f:', where is the name of a field in a struct, or key in a map 'v:', where is the exact json formatted value of a list item 'i:', where is position of a item in a list 'k:', where is a map of a list item's key fields to their unique values If a key maps to an empty Fields value, the field that key represents is part of the set.\n\nThe exact format is defined in sigs.k8s.io/structured-merge-diff", } diff --git a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/zz_generated.deepcopy.go b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/zz_generated.deepcopy.go index 7d29c504a..90cc54a7e 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/zz_generated.deepcopy.go +++ b/api/vendor/k8s.io/apimachinery/pkg/apis/meta/v1/zz_generated.deepcopy.go @@ -327,6 +327,27 @@ func (in *Duration) DeepCopy() *Duration { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *FieldSelectorRequirement) DeepCopyInto(out *FieldSelectorRequirement) { + *out = *in + if in.Values != nil { + in, out := &in.Values, &out.Values + *out = make([]string, len(*in)) + copy(*out, *in) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new FieldSelectorRequirement. +func (in *FieldSelectorRequirement) DeepCopy() *FieldSelectorRequirement { + if in == nil { + return nil + } + out := new(FieldSelectorRequirement) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *FieldsV1) DeepCopyInto(out *FieldsV1) { *out = *in diff --git a/api/vendor/k8s.io/apimachinery/pkg/labels/selector.go b/api/vendor/k8s.io/apimachinery/pkg/labels/selector.go index 5e6014240..9e22a0056 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/labels/selector.go +++ b/api/vendor/k8s.io/apimachinery/pkg/labels/selector.go @@ -45,6 +45,19 @@ var ( // Requirements is AND of all requirements. type Requirements []Requirement +func (r Requirements) String() string { + var sb strings.Builder + + for i, requirement := range r { + if i > 0 { + sb.WriteString(", ") + } + sb.WriteString(requirement.String()) + } + + return sb.String() +} + // Selector represents a label selector. type Selector interface { // Matches returns true if this selector matches the given set of labels. @@ -285,6 +298,13 @@ func (r *Requirement) Values() sets.String { return ret } +// ValuesUnsorted returns a copy of requirement values as passed to NewRequirement without sorting. +func (r *Requirement) ValuesUnsorted() []string { + ret := make([]string, 0, len(r.strValues)) + ret = append(ret, r.strValues...) + return ret +} + // Equal checks the equality of requirement. func (r Requirement) Equal(x Requirement) bool { if r.key != x.key { diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/extension.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/extension.go index 9056397fa..60c000bcb 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/runtime/extension.go +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/extension.go @@ -18,16 +18,77 @@ package runtime import ( "bytes" - "encoding/json" "errors" + "fmt" + + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" + "k8s.io/apimachinery/pkg/util/json" ) +// RawExtension intentionally avoids implementing value.UnstructuredConverter for now because the +// signature of ToUnstructured does not allow returning an error value in cases where the conversion +// is not possible (content type is unrecognized or bytes don't match content type). +func rawToUnstructured(raw []byte, contentType string) (interface{}, error) { + switch contentType { + case ContentTypeJSON: + var u interface{} + if err := json.Unmarshal(raw, &u); err != nil { + return nil, fmt.Errorf("failed to parse RawExtension bytes as JSON: %w", err) + } + return u, nil + case ContentTypeCBOR: + var u interface{} + if err := cbor.Unmarshal(raw, &u); err != nil { + return nil, fmt.Errorf("failed to parse RawExtension bytes as CBOR: %w", err) + } + return u, nil + default: + return nil, fmt.Errorf("cannot convert RawExtension with unrecognized content type to unstructured") + } +} + +func (re RawExtension) guessContentType() string { + switch { + case bytes.HasPrefix(re.Raw, cborSelfDescribed): + return ContentTypeCBOR + case len(re.Raw) > 0: + switch re.Raw[0] { + case '\t', '\r', '\n', ' ', '{', '[', 'n', 't', 'f', '"', '-', '0', '1', '2', '3', '4', '5', '6', '7', '8', '9': + // Prefixes for the four whitespace characters, objects, arrays, strings, numbers, true, false, and null. + return ContentTypeJSON + } + } + return "" +} + func (re *RawExtension) UnmarshalJSON(in []byte) error { if re == nil { return errors.New("runtime.RawExtension: UnmarshalJSON on nil pointer") } - if !bytes.Equal(in, []byte("null")) { - re.Raw = append(re.Raw[0:0], in...) + if bytes.Equal(in, []byte("null")) { + return nil + } + re.Raw = append(re.Raw[0:0], in...) + return nil +} + +var ( + cborNull = []byte{0xf6} + cborSelfDescribed = []byte{0xd9, 0xd9, 0xf7} +) + +func (re *RawExtension) UnmarshalCBOR(in []byte) error { + if re == nil { + return errors.New("runtime.RawExtension: UnmarshalCBOR on nil pointer") + } + if !bytes.Equal(in, cborNull) { + if !bytes.HasPrefix(in, cborSelfDescribed) { + // The self-described CBOR tag doesn't change the interpretation of the data + // item it encloses, but it is useful as a magic number. Its encoding is + // also what is used to implement the CBOR RecognizingDecoder. + re.Raw = append(re.Raw[:0], cborSelfDescribed...) + } + re.Raw = append(re.Raw, in...) } return nil } @@ -46,6 +107,35 @@ func (re RawExtension) MarshalJSON() ([]byte, error) { } return []byte("null"), nil } - // TODO: Check whether ContentType is actually JSON before returning it. - return re.Raw, nil + + contentType := re.guessContentType() + if contentType == ContentTypeJSON { + return re.Raw, nil + } + + u, err := rawToUnstructured(re.Raw, contentType) + if err != nil { + return nil, err + } + return json.Marshal(u) +} + +func (re RawExtension) MarshalCBOR() ([]byte, error) { + if re.Raw == nil { + if re.Object != nil { + return cbor.Marshal(re.Object) + } + return cbor.Marshal(nil) + } + + contentType := re.guessContentType() + if contentType == ContentTypeCBOR { + return re.Raw, nil + } + + u, err := rawToUnstructured(re.Raw, contentType) + if err != nil { + return nil, err + } + return cbor.Marshal(u) } diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct/direct.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct/direct.go new file mode 100644 index 000000000..cd78b1df2 --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct/direct.go @@ -0,0 +1,36 @@ +/* +Copyright 2024 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 direct provides functions for marshaling and unmarshaling between arbitrary Go values and +// CBOR data, with behavior that is compatible with that of the CBOR serializer. In particular, +// types that implement cbor.Marshaler and cbor.Unmarshaler should use these functions. +package direct + +import ( + "k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes" +) + +func Marshal(src interface{}) ([]byte, error) { + return modes.Encode.Marshal(src) +} + +func Unmarshal(src []byte, dst interface{}) error { + return modes.Decode.Unmarshal(src, dst) +} + +func Diagnose(src []byte) (string, error) { + return modes.Diagnostic.Diagnose(src) +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/buffers.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/buffers.go new file mode 100644 index 000000000..f14cbd6b5 --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/buffers.go @@ -0,0 +1,65 @@ +/* +Copyright 2024 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 modes + +import ( + "bytes" + "sync" +) + +var buffers = BufferProvider{p: new(sync.Pool)} + +type buffer struct { + bytes.Buffer +} + +type pool interface { + Get() interface{} + Put(interface{}) +} + +type BufferProvider struct { + p pool +} + +func (b *BufferProvider) Get() *buffer { + if buf, ok := b.p.Get().(*buffer); ok { + return buf + } + return &buffer{} +} + +func (b *BufferProvider) Put(buf *buffer) { + if buf.Cap() > 3*1024*1024 /* Default MaxRequestBodyBytes */ { + // Objects in a sync.Pool are assumed to be fungible. This is not a good assumption + // for pools of *bytes.Buffer because a *bytes.Buffer's underlying array grows as + // needed to accommodate writes. In Kubernetes, apiservers tend to encode "small" + // objects very frequently and much larger objects (especially large lists) only + // occasionally. Under steady load, pooled buffers tend to be borrowed frequently + // enough to prevent them from being released. Over time, each buffer is used to + // encode a large object and its capacity increases accordingly. The result is that + // practically all buffers in the pool retain much more capacity than needed to + // encode most objects. + + // As a basic mitigation for the worst case, buffers with more capacity than the + // default max request body size are never returned to the pool. + // TODO: Optimize for higher buffer utilization. + return + } + buf.Reset() + b.p.Put(buf) +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/custom.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/custom.go new file mode 100644 index 000000000..858529e95 --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/custom.go @@ -0,0 +1,422 @@ +/* +Copyright 2024 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 modes + +import ( + "encoding" + "encoding/json" + "errors" + "fmt" + "reflect" + "sync" + + "github.com/fxamacker/cbor/v2" +) + +// Returns a non-nil error if and only if the argument's type (or one of its component types, for +// composite types) implements json.Marshaler or encoding.TextMarshaler without also implementing +// cbor.Marshaler and likewise for the respective Unmarshaler interfaces. +// +// This is a temporary, graduation-blocking restriction and will be removed in favor of automatic +// transcoding between CBOR and JSON/text for these types. This restriction allows CBOR to be +// exercised for in-tree and unstructured types while mitigating the risk of mangling out-of-tree +// types in client programs. +func RejectCustomMarshalers(v interface{}) error { + if v == nil { + return nil + } + rv := reflect.ValueOf(v) + if err := marshalerCache.getChecker(rv.Type()).check(rv, maxDepth); err != nil { + return fmt.Errorf("unable to serialize %T: %w", v, err) + } + if err := unmarshalerCache.getChecker(rv.Type()).check(rv, maxDepth); err != nil { + return fmt.Errorf("unable to serialize %T: %w", v, err) + } + return nil +} + +// Recursion depth is limited as a basic mitigation against cyclic objects. Objects created by the +// decoder shouldn't be able to contain cycles, but practically any object can be passed to the +// encoder. +var errMaxDepthExceeded = errors.New("object depth exceeds limit (possible cycle?)") + +// The JSON encoder begins detecting cycles after depth 1000. Use a generous limit here, knowing +// that it can might deeply nested acyclic objects. The limit will be removed along with the rest of +// this mechanism. +const maxDepth = 2048 + +var marshalerCache = checkers{ + cborInterface: reflect.TypeFor[cbor.Marshaler](), + nonCBORInterfaces: []reflect.Type{ + reflect.TypeFor[json.Marshaler](), + reflect.TypeFor[encoding.TextMarshaler](), + }, +} + +var unmarshalerCache = checkers{ + cborInterface: reflect.TypeFor[cbor.Unmarshaler](), + nonCBORInterfaces: []reflect.Type{ + reflect.TypeFor[json.Unmarshaler](), + reflect.TypeFor[encoding.TextUnmarshaler](), + }, + assumeAddressableValues: true, +} + +// checker wraps a function for dynamically checking a value of a specific type for custom JSON +// behaviors not matched by a custom CBOR behavior. +type checker struct { + // check returns a non-nil error if the given value might be marshalled to or from CBOR + // using the default behavior for its kind, but marshalled to or from JSON using custom + // behavior. + check func(rv reflect.Value, depth int) error + + // safe returns true if all values of this type are safe from mismatched custom marshalers. + safe func() bool +} + +// TODO: stale +// Having a single addressable checker for comparisons lets us prune and collapse parts of the +// object traversal that are statically known to be safe. Depending on the type, it may be +// unnecessary to inspect each value of that type. For example, no value of the built-in type bool +// can implement json.Marshaler (a named type whose underlying type is bool could, but it is a +// distinct type from bool). +var noop = checker{ + safe: func() bool { + return true + }, + check: func(rv reflect.Value, depth int) error { + return nil + }, +} + +type checkers struct { + m sync.Map // reflect.Type => *checker + + cborInterface reflect.Type + nonCBORInterfaces []reflect.Type + + assumeAddressableValues bool +} + +func (cache *checkers) getChecker(rt reflect.Type) checker { + if ptr, ok := cache.m.Load(rt); ok { + return *ptr.(*checker) + } + + return cache.getCheckerInternal(rt, nil) +} + +// linked list node representing the path from a composite type to an element type +type path struct { + Type reflect.Type + Parent *path +} + +func (p path) cyclic(rt reflect.Type) bool { + for ancestor := &p; ancestor != nil; ancestor = ancestor.Parent { + if ancestor.Type == rt { + return true + } + } + return false +} + +func (cache *checkers) getCheckerInternal(rt reflect.Type, parent *path) (c checker) { + // Store a placeholder cache entry first to handle cyclic types. + var wg sync.WaitGroup + wg.Add(1) + defer wg.Done() + c = checker{ + safe: func() bool { + wg.Wait() + return c.safe() + }, + check: func(rv reflect.Value, depth int) error { + wg.Wait() + return c.check(rv, depth) + }, + } + if actual, loaded := cache.m.LoadOrStore(rt, &c); loaded { + // Someone else stored an entry for this type, use it. + return *actual.(*checker) + } + + // Take a nonreflective path for the unstructured container types. They're common and + // usually nested inside one another. + switch rt { + case reflect.TypeFor[map[string]interface{}](), reflect.TypeFor[[]interface{}](): + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + return checkUnstructuredValue(cache, rv.Interface(), depth) + }, + } + } + + // It's possible that one of the relevant interfaces is implemented on a type with a pointer + // receiver, but that a particular value of that type is not addressable. For example: + // + // func (Foo) MarshalText() ([]byte, error) { ... } + // func (*Foo) MarshalCBOR() ([]byte, error) { ... } + // + // Both methods are in the method set of *Foo, but the method set of Foo contains only + // MarshalText. + // + // Both the unmarshaler and marshaler checks assume that methods implementing a JSON or text + // interface with a pointer receiver are always accessible. Only the unmarshaler check + // assumes that CBOR methods with pointer receivers are accessible. + + if rt.Implements(cache.cborInterface) { + return noop + } + for _, unsafe := range cache.nonCBORInterfaces { + if rt.Implements(unsafe) { + err := fmt.Errorf("%v implements %v without corresponding cbor interface", rt, unsafe) + return checker{ + safe: func() bool { + return false + }, + check: func(reflect.Value, int) error { + return err + }, + } + } + } + + if cache.assumeAddressableValues && reflect.PointerTo(rt).Implements(cache.cborInterface) { + return noop + } + for _, unsafe := range cache.nonCBORInterfaces { + if reflect.PointerTo(rt).Implements(unsafe) { + err := fmt.Errorf("%v implements %v without corresponding cbor interface", reflect.PointerTo(rt), unsafe) + return checker{ + safe: func() bool { + return false + }, + check: func(reflect.Value, int) error { + return err + }, + } + } + } + + self := &path{Type: rt, Parent: parent} + + switch rt.Kind() { + case reflect.Array: + ce := cache.getCheckerInternal(rt.Elem(), self) + rtlen := rt.Len() + if rtlen == 0 || (!self.cyclic(rt.Elem()) && ce.safe()) { + return noop + } + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if depth <= 0 { + return errMaxDepthExceeded + } + for i := 0; i < rtlen; i++ { + if err := ce.check(rv.Index(i), depth-1); err != nil { + return err + } + } + return nil + }, + } + + case reflect.Interface: + // All interface values have to be checked because their dynamic type might + // implement one of the interesting interfaces or be composed of another type that + // does. + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if rv.IsNil() { + return nil + } + // Unpacking interfaces must count against recursion depth, + // consider this cycle: + // > var i interface{} + // > var p *interface{} = &i + // > i = p + // > rv := reflect.ValueOf(i) + // > for { + // > rv = rv.Elem() + // > } + if depth <= 0 { + return errMaxDepthExceeded + } + rv = rv.Elem() + return cache.getChecker(rv.Type()).check(rv, depth-1) + }, + } + + case reflect.Map: + rtk := rt.Key() + ck := cache.getCheckerInternal(rtk, self) + rte := rt.Elem() + ce := cache.getCheckerInternal(rte, self) + if !self.cyclic(rtk) && !self.cyclic(rte) && ck.safe() && ce.safe() { + return noop + } + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if depth <= 0 { + return errMaxDepthExceeded + } + iter := rv.MapRange() + rvk := reflect.New(rtk).Elem() + rve := reflect.New(rte).Elem() + for iter.Next() { + rvk.SetIterKey(iter) + if err := ck.check(rvk, depth-1); err != nil { + return err + } + rve.SetIterValue(iter) + if err := ce.check(rve, depth-1); err != nil { + return err + } + } + return nil + }, + } + + case reflect.Pointer: + ce := cache.getCheckerInternal(rt.Elem(), self) + if !self.cyclic(rt.Elem()) && ce.safe() { + return noop + } + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if rv.IsNil() { + return nil + } + if depth <= 0 { + return errMaxDepthExceeded + } + return ce.check(rv.Elem(), depth-1) + }, + } + + case reflect.Slice: + ce := cache.getCheckerInternal(rt.Elem(), self) + if !self.cyclic(rt.Elem()) && ce.safe() { + return noop + } + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if depth <= 0 { + return errMaxDepthExceeded + } + for i := 0; i < rv.Len(); i++ { + if err := ce.check(rv.Index(i), depth-1); err != nil { + return err + } + } + return nil + }, + } + + case reflect.Struct: + type field struct { + Index int + Checker checker + } + var fields []field + for i := 0; i < rt.NumField(); i++ { + f := rt.Field(i) + cf := cache.getCheckerInternal(f.Type, self) + if !self.cyclic(f.Type) && cf.safe() { + continue + } + fields = append(fields, field{Index: i, Checker: cf}) + } + if len(fields) == 0 { + return noop + } + return checker{ + safe: func() bool { + return false + }, + check: func(rv reflect.Value, depth int) error { + if depth <= 0 { + return errMaxDepthExceeded + } + for _, fi := range fields { + if err := fi.Checker.check(rv.Field(fi.Index), depth-1); err != nil { + return err + } + } + return nil + }, + } + + default: + // Not a serializable composite type (funcs and channels are composite types but are + // rejected by JSON and CBOR serialization). + return noop + + } +} + +func checkUnstructuredValue(cache *checkers, v interface{}, depth int) error { + switch v := v.(type) { + case nil, bool, int64, float64, string: + return nil + case []interface{}: + if depth <= 0 { + return errMaxDepthExceeded + } + for _, element := range v { + if err := checkUnstructuredValue(cache, element, depth-1); err != nil { + return err + } + } + return nil + case map[string]interface{}: + if depth <= 0 { + return errMaxDepthExceeded + } + for _, element := range v { + if err := checkUnstructuredValue(cache, element, depth-1); err != nil { + return err + } + } + return nil + default: + // Unmarshaling an unstructured doesn't use other dynamic types, but nothing + // prevents inserting values with arbitrary dynamic types into unstructured content, + // as long as they can be marshalled. + rv := reflect.ValueOf(v) + return cache.getChecker(rv.Type()).check(rv, depth) + } +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/decode.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/decode.go new file mode 100644 index 000000000..895b0deff --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/decode.go @@ -0,0 +1,158 @@ +/* +Copyright 2024 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 modes + +import ( + "reflect" + + "github.com/fxamacker/cbor/v2" +) + +var simpleValues *cbor.SimpleValueRegistry = func() *cbor.SimpleValueRegistry { + var opts []func(*cbor.SimpleValueRegistry) error + for sv := 0; sv <= 255; sv++ { + // Reject simple values 0-19, 23, and 32-255. The simple values 24-31 are reserved + // and considered ill-formed by the CBOR specification. We only accept false (20), + // true (21), and null (22). + switch sv { + case 20: // false + case 21: // true + case 22: // null + case 24, 25, 26, 27, 28, 29, 30, 31: // reserved + default: + opts = append(opts, cbor.WithRejectedSimpleValue(cbor.SimpleValue(sv))) + } + } + simpleValues, err := cbor.NewSimpleValueRegistryFromDefaults(opts...) + if err != nil { + panic(err) + } + return simpleValues +}() + +var Decode cbor.DecMode = func() cbor.DecMode { + decode, err := cbor.DecOptions{ + // Maps with duplicate keys are well-formed but invalid according to the CBOR spec + // and never acceptable. Unlike the JSON serializer, inputs containing duplicate map + // keys are rejected outright and not surfaced as a strict decoding error. + DupMapKey: cbor.DupMapKeyEnforcedAPF, + + // For JSON parity, decoding an RFC3339 string into time.Time needs to be accepted + // with or without tagging. If a tag number is present, it must be valid. + TimeTag: cbor.DecTagOptional, + + // Observed depth up to 16 in fuzzed batch/v1 CronJobList. JSON implementation limit + // is 10000. + MaxNestedLevels: 64, + + MaxArrayElements: 1024, + MaxMapPairs: 1024, + + // Indefinite-length sequences aren't produced by this serializer, but other + // implementations can. + IndefLength: cbor.IndefLengthAllowed, + + // Accept inputs that contain CBOR tags. + TagsMd: cbor.TagsAllowed, + + // Decode type 0 (unsigned integer) as int64. + // TODO: IntDecConvertSignedOrFail errors on overflow, JSON will try to fall back to float64. + IntDec: cbor.IntDecConvertSignedOrFail, + + // Disable producing map[cbor.ByteString]interface{}, which is not acceptable for + // decodes into interface{}. + MapKeyByteString: cbor.MapKeyByteStringForbidden, + + // Error on map keys that don't map to a field in the destination struct. + ExtraReturnErrors: cbor.ExtraDecErrorUnknownField, + + // Decode maps into concrete type map[string]interface{} when the destination is an + // interface{}. + DefaultMapType: reflect.TypeOf(map[string]interface{}(nil)), + + // A CBOR text string whose content is not a valid UTF-8 sequence is well-formed but + // invalid according to the CBOR spec. Reject invalid inputs. Encoders are + // responsible for ensuring that all text strings they produce contain valid UTF-8 + // sequences and may use the byte string major type to encode strings that have not + // been validated. + UTF8: cbor.UTF8RejectInvalid, + + // Never make a case-insensitive match between a map key and a struct field. + FieldNameMatching: cbor.FieldNameMatchingCaseSensitive, + + // Produce string concrete values when decoding a CBOR byte string into interface{}. + DefaultByteStringType: reflect.TypeOf(""), + + // Allow CBOR byte strings to be decoded into string destination values. If a byte + // string is enclosed in an "expected later encoding" tag + // (https://www.rfc-editor.org/rfc/rfc8949.html#section-3.4.5.2), then the text + // encoding indicated by that tag (e.g. base64) will be applied to the contents of + // the byte string. + ByteStringToString: cbor.ByteStringToStringAllowedWithExpectedLaterEncoding, + + // Allow CBOR byte strings to match struct fields when appearing as a map key. + FieldNameByteString: cbor.FieldNameByteStringAllowed, + + // When decoding an unrecognized tag to interface{}, return the decoded tag content + // instead of the default, a cbor.Tag representing a (number, content) pair. + UnrecognizedTagToAny: cbor.UnrecognizedTagContentToAny, + + // Decode time tags to interface{} as strings containing RFC 3339 timestamps. + TimeTagToAny: cbor.TimeTagToRFC3339Nano, + + // For parity with JSON, strings can be decoded into time.Time if they are RFC 3339 + // timestamps. + ByteStringToTime: cbor.ByteStringToTimeAllowed, + + // Reject NaN and infinite floating-point values since they don't have a JSON + // representation (RFC 8259 Section 6). + NaN: cbor.NaNDecodeForbidden, + Inf: cbor.InfDecodeForbidden, + + // When unmarshaling a byte string into a []byte, assume that the byte string + // contains base64-encoded bytes, unless explicitly counterindicated by an "expected + // later encoding" tag. This is consistent with the because of unmarshaling a JSON + // text into a []byte. + ByteStringExpectedFormat: cbor.ByteStringExpectedBase64, + + // Reject the arbitrary-precision integer tags because they can't be faithfully + // roundtripped through the allowable Unstructured types. + BignumTag: cbor.BignumTagForbidden, + + // Reject anything other than the simple values true, false, and null. + SimpleValues: simpleValues, + + // Disable default recognition of types implementing encoding.BinaryUnmarshaler, + // which is not recognized for JSON decoding. + BinaryUnmarshaler: cbor.BinaryUnmarshalerNone, + }.DecMode() + if err != nil { + panic(err) + } + return decode +}() + +// DecodeLax is derived from Decode, but does not complain about unknown fields in the input. +var DecodeLax cbor.DecMode = func() cbor.DecMode { + opts := Decode.DecOptions() + opts.ExtraReturnErrors &^= cbor.ExtraDecErrorUnknownField // clear bit + dm, err := opts.DecMode() + if err != nil { + panic(err) + } + return dm +}() diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/diagnostic.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/diagnostic.go new file mode 100644 index 000000000..61f3f145f --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/diagnostic.go @@ -0,0 +1,36 @@ +/* +Copyright 2024 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 modes + +import ( + "github.com/fxamacker/cbor/v2" +) + +var Diagnostic cbor.DiagMode = func() cbor.DiagMode { + opts := Decode.DecOptions() + diagnostic, err := cbor.DiagOptions{ + ByteStringText: true, + + MaxNestedLevels: opts.MaxNestedLevels, + MaxArrayElements: opts.MaxArrayElements, + MaxMapPairs: opts.MaxMapPairs, + }.DiagMode() + if err != nil { + panic(err) + } + return diagnostic +}() diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/encode.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/encode.go new file mode 100644 index 000000000..c66931384 --- /dev/null +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes/encode.go @@ -0,0 +1,155 @@ +/* +Copyright 2024 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 modes + +import ( + "io" + + "github.com/fxamacker/cbor/v2" +) + +var Encode = EncMode{ + delegate: func() cbor.UserBufferEncMode { + encode, err := cbor.EncOptions{ + // Map keys need to be sorted to have deterministic output, and this is the order + // defined in RFC 8949 4.2.1 "Core Deterministic Encoding Requirements". + Sort: cbor.SortBytewiseLexical, + + // CBOR supports distinct types for IEEE-754 float16, float32, and float64. Store + // floats in the smallest width that preserves value so that equivalent float32 and + // float64 values encode to identical bytes, as they do in a JSON + // encoding. Satisfies one of the "Core Deterministic Encoding Requirements". + ShortestFloat: cbor.ShortestFloat16, + + // Error on attempt to encode NaN and infinite values. This is what the JSON + // serializer does. + NaNConvert: cbor.NaNConvertReject, + InfConvert: cbor.InfConvertReject, + + // Error on attempt to encode math/big.Int values, which can't be faithfully + // roundtripped through Unstructured in general (the dynamic numeric types allowed + // in Unstructured are limited to float64 and int64). + BigIntConvert: cbor.BigIntConvertReject, + + // MarshalJSON for time.Time writes RFC3339 with nanos. + Time: cbor.TimeRFC3339Nano, + + // The decoder must be able to accept RFC3339 strings with or without tag 0 (e.g. by + // the end of time.Time -> JSON -> Unstructured -> CBOR, the CBOR encoder has no + // reliable way of knowing that a particular string originated from serializing a + // time.Time), so producing tag 0 has little use. + TimeTag: cbor.EncTagNone, + + // Indefinite-length items have multiple encodings and aren't being used anyway, so + // disable to avoid an opportunity for nondeterminism. + IndefLength: cbor.IndefLengthForbidden, + + // Preserve distinction between nil and empty for slices and maps. + NilContainers: cbor.NilContainerAsNull, + + // OK to produce tags. + TagsMd: cbor.TagsAllowed, + + // Use the same definition of "empty" as encoding/json. + OmitEmpty: cbor.OmitEmptyGoValue, + + // The CBOR types text string and byte string are structurally equivalent, with the + // semantic difference that a text string whose content is an invalid UTF-8 sequence + // is itself invalid. We reject all invalid text strings at decode time and do not + // validate or sanitize all Go strings at encode time. Encoding Go strings to the + // byte string type is comparable to the existing Protobuf behavior and cheaply + // ensures that the output is valid CBOR. + String: cbor.StringToByteString, + + // Encode struct field names to the byte string type rather than the text string + // type. + FieldName: cbor.FieldNameToByteString, + + // Marshal Go byte arrays to CBOR arrays of integers (as in JSON) instead of byte + // strings. + ByteArray: cbor.ByteArrayToArray, + + // Marshal []byte to CBOR byte string enclosed in tag 22 (expected later base64 + // encoding, https://www.rfc-editor.org/rfc/rfc8949.html#section-3.4.5.2), to + // interoperate with the existing JSON behavior. This indicates to the decoder that, + // when decoding into a string (or unstructured), the resulting value should be the + // base64 encoding of the original bytes. No base64 encoding or decoding needs to be + // performed for []byte-to-CBOR-to-[]byte roundtrips. + ByteSliceLaterFormat: cbor.ByteSliceLaterFormatBase64, + + // Disable default recognition of types implementing encoding.BinaryMarshaler, which + // is not recognized for JSON encoding. + BinaryMarshaler: cbor.BinaryMarshalerNone, + }.UserBufferEncMode() + if err != nil { + panic(err) + } + return encode + }(), +} + +var EncodeNondeterministic = EncMode{ + delegate: func() cbor.UserBufferEncMode { + opts := Encode.options() + opts.Sort = cbor.SortNone // TODO: Use cbor.SortFastShuffle after bump to v2.7.0. + em, err := opts.UserBufferEncMode() + if err != nil { + panic(err) + } + return em + }(), +} + +type EncMode struct { + delegate cbor.UserBufferEncMode +} + +func (em EncMode) options() cbor.EncOptions { + return em.delegate.EncOptions() +} + +func (em EncMode) MarshalTo(v interface{}, w io.Writer) error { + if buf, ok := w.(*buffer); ok { + return em.delegate.MarshalToBuffer(v, &buf.Buffer) + } + + buf := buffers.Get() + defer buffers.Put(buf) + if err := em.delegate.MarshalToBuffer(v, &buf.Buffer); err != nil { + return err + } + + if _, err := io.Copy(w, buf); err != nil { + return err + } + + return nil +} + +func (em EncMode) Marshal(v interface{}) ([]byte, error) { + buf := buffers.Get() + defer buffers.Put(buf) + + if err := em.MarshalTo(v, &buf.Buffer); err != nil { + return nil, err + } + + clone := make([]byte, buf.Len()) + copy(clone, buf.Bytes()) + + return clone, nil +} diff --git a/api/vendor/k8s.io/apimachinery/pkg/runtime/types.go b/api/vendor/k8s.io/apimachinery/pkg/runtime/types.go index ce77c7910..1680c149f 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/runtime/types.go +++ b/api/vendor/k8s.io/apimachinery/pkg/runtime/types.go @@ -46,6 +46,7 @@ const ( ContentTypeJSON string = "application/json" ContentTypeYAML string = "application/yaml" ContentTypeProtobuf string = "application/vnd.kubernetes.protobuf" + ContentTypeCBOR string = "application/cbor" ) // RawExtension is used to hold extensions in external versions. diff --git a/api/vendor/k8s.io/apimachinery/pkg/util/intstr/intstr.go b/api/vendor/k8s.io/apimachinery/pkg/util/intstr/intstr.go index f358c794d..5fd2e16c8 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/util/intstr/intstr.go +++ b/api/vendor/k8s.io/apimachinery/pkg/util/intstr/intstr.go @@ -25,6 +25,7 @@ import ( "strconv" "strings" + cbor "k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct" "k8s.io/klog/v2" ) @@ -92,6 +93,20 @@ func (intstr *IntOrString) UnmarshalJSON(value []byte) error { return json.Unmarshal(value, &intstr.IntVal) } +func (intstr *IntOrString) UnmarshalCBOR(value []byte) error { + if err := cbor.Unmarshal(value, &intstr.StrVal); err == nil { + intstr.Type = String + return nil + } + + if err := cbor.Unmarshal(value, &intstr.IntVal); err != nil { + return err + } + + intstr.Type = Int + return nil +} + // String returns the string value, or the Itoa of the int value. func (intstr *IntOrString) String() string { if intstr == nil { @@ -126,6 +141,17 @@ func (intstr IntOrString) MarshalJSON() ([]byte, error) { } } +func (intstr IntOrString) MarshalCBOR() ([]byte, error) { + switch intstr.Type { + case Int: + return cbor.Marshal(intstr.IntVal) + case String: + return cbor.Marshal(intstr.StrVal) + default: + return nil, fmt.Errorf("impossible IntOrString.Type") + } +} + // OpenAPISchemaType is used by the kube-openapi generator when constructing // the OpenAPI spec of this type. // diff --git a/api/vendor/k8s.io/apimachinery/pkg/util/runtime/runtime.go b/api/vendor/k8s.io/apimachinery/pkg/util/runtime/runtime.go index 3674914f7..4fe0c5eb2 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/util/runtime/runtime.go +++ b/api/vendor/k8s.io/apimachinery/pkg/util/runtime/runtime.go @@ -17,6 +17,7 @@ limitations under the License. package runtime import ( + "context" "fmt" "net/http" "runtime" @@ -35,7 +36,7 @@ var ( ) // PanicHandlers is a list of functions which will be invoked when a panic happens. -var PanicHandlers = []func(interface{}){logPanic} +var PanicHandlers = []func(context.Context, interface{}){logPanic} // HandleCrash simply catches a crash and logs an error. Meant to be called via // defer. Additional context-specific handlers can be provided, and will be @@ -43,23 +44,54 @@ var PanicHandlers = []func(interface{}){logPanic} // handlers and logging the panic message. // // E.g., you can provide one or more additional handlers for something like shutting down go routines gracefully. +// +// TODO(pohly): logcheck:context // HandleCrashWithContext should be used instead of HandleCrash in code which supports contextual logging. func HandleCrash(additionalHandlers ...func(interface{})) { if r := recover(); r != nil { - for _, fn := range PanicHandlers { - fn(r) - } - for _, fn := range additionalHandlers { - fn(r) - } - if ReallyCrash { - // Actually proceed to panic. - panic(r) + additionalHandlersWithContext := make([]func(context.Context, interface{}), len(additionalHandlers)) + for i, handler := range additionalHandlers { + handler := handler // capture loop variable + additionalHandlersWithContext[i] = func(_ context.Context, r interface{}) { + handler(r) + } } + + handleCrash(context.Background(), r, additionalHandlersWithContext...) + } +} + +// HandleCrashWithContext simply catches a crash and logs an error. Meant to be called via +// defer. Additional context-specific handlers can be provided, and will be +// called in case of panic. HandleCrash actually crashes, after calling the +// handlers and logging the panic message. +// +// E.g., you can provide one or more additional handlers for something like shutting down go routines gracefully. +// +// The context is used to determine how to log. +func HandleCrashWithContext(ctx context.Context, additionalHandlers ...func(context.Context, interface{})) { + if r := recover(); r != nil { + handleCrash(ctx, r, additionalHandlers...) + } +} + +// handleCrash is the common implementation of HandleCrash and HandleCrash. +// Having those call a common implementation ensures that the stack depth +// is the same regardless through which path the handlers get invoked. +func handleCrash(ctx context.Context, r any, additionalHandlers ...func(context.Context, interface{})) { + for _, fn := range PanicHandlers { + fn(ctx, r) + } + for _, fn := range additionalHandlers { + fn(ctx, r) + } + if ReallyCrash { + // Actually proceed to panic. + panic(r) } } // logPanic logs the caller tree when a panic occurs (except in the special case of http.ErrAbortHandler). -func logPanic(r interface{}) { +func logPanic(ctx context.Context, r interface{}) { if r == http.ErrAbortHandler { // honor the http.ErrAbortHandler sentinel panic value: // ErrAbortHandler is a sentinel panic value to abort a handler. @@ -73,10 +105,20 @@ func logPanic(r interface{}) { const size = 64 << 10 stacktrace := make([]byte, size) stacktrace = stacktrace[:runtime.Stack(stacktrace, false)] + + // We don't really know how many call frames to skip because the Go + // panic handler is between us and the code where the panic occurred. + // If it's one function (as in Go 1.21), then skipping four levels + // gets us to the function which called the `defer HandleCrashWithontext(...)`. + logger := klog.FromContext(ctx).WithCallDepth(4) + + // For backwards compatibility, conversion to string + // is handled here instead of defering to the logging + // backend. if _, ok := r.(string); ok { - klog.Errorf("Observed a panic: %s\n%s", r, stacktrace) + logger.Error(nil, "Observed a panic", "panic", r, "stacktrace", string(stacktrace)) } else { - klog.Errorf("Observed a panic: %#v (%v)\n%s", r, r, stacktrace) + logger.Error(nil, "Observed a panic", "panic", fmt.Sprintf("%v", r), "panicGoValue", fmt.Sprintf("%#v", r), "stacktrace", string(stacktrace)) } } @@ -84,35 +126,76 @@ func logPanic(r interface{}) { // error occurs. // TODO(lavalamp): for testability, this and the below HandleError function // should be packaged up into a testable and reusable object. -var ErrorHandlers = []func(error){ +var ErrorHandlers = []ErrorHandler{ logError, - (&rudimentaryErrorBackoff{ - lastErrorTime: time.Now(), - // 1ms was the number folks were able to stomach as a global rate limit. - // If you need to log errors more than 1000 times a second you - // should probably consider fixing your code instead. :) - minPeriod: time.Millisecond, - }).OnError, + func(_ context.Context, _ error, _ string, _ ...interface{}) { + (&rudimentaryErrorBackoff{ + lastErrorTime: time.Now(), + // 1ms was the number folks were able to stomach as a global rate limit. + // If you need to log errors more than 1000 times a second you + // should probably consider fixing your code instead. :) + minPeriod: time.Millisecond, + }).OnError() + }, } +type ErrorHandler func(ctx context.Context, err error, msg string, keysAndValues ...interface{}) + // HandlerError is a method to invoke when a non-user facing piece of code cannot // return an error and needs to indicate it has been ignored. Invoking this method // is preferable to logging the error - the default behavior is to log but the // errors may be sent to a remote server for analysis. +// +// TODO(pohly): logcheck:context // HandleErrorWithContext should be used instead of HandleError in code which supports contextual logging. func HandleError(err error) { // this is sometimes called with a nil error. We probably shouldn't fail and should do nothing instead if err == nil { return } + handleError(context.Background(), err, "Unhandled Error") +} + +// HandlerErrorWithContext is a method to invoke when a non-user facing piece of code cannot +// return an error and needs to indicate it has been ignored. Invoking this method +// is preferable to logging the error - the default behavior is to log but the +// errors may be sent to a remote server for analysis. The context is used to +// determine how to log the error. +// +// If contextual logging is enabled, the default log output is equivalent to +// +// logr.FromContext(ctx).WithName("UnhandledError").Error(err, msg, keysAndValues...) +// +// Without contextual logging, it is equivalent to: +// +// klog.ErrorS(err, msg, keysAndValues...) +// +// In contrast to HandleError, passing nil for the error is still going to +// trigger a log entry. Don't construct a new error or wrap an error +// with fmt.Errorf. Instead, add additional information via the mssage +// and key/value pairs. +// +// This variant should be used instead of HandleError because it supports +// structured, contextual logging. +func HandleErrorWithContext(ctx context.Context, err error, msg string, keysAndValues ...interface{}) { + handleError(ctx, err, msg, keysAndValues...) +} + +// handleError is the common implementation of HandleError and HandleErrorWithContext. +// Using this common implementation ensures that the stack depth +// is the same regardless through which path the handlers get invoked. +func handleError(ctx context.Context, err error, msg string, keysAndValues ...interface{}) { for _, fn := range ErrorHandlers { - fn(err) + fn(ctx, err, msg, keysAndValues...) } } -// logError prints an error with the call stack of the location it was reported -func logError(err error) { - klog.ErrorDepth(2, err) +// logError prints an error with the call stack of the location it was reported. +// It expects to be called as -> HandleError[WithContext] -> handleError -> logError. +func logError(ctx context.Context, err error, msg string, keysAndValues ...interface{}) { + logger := klog.FromContext(ctx).WithCallDepth(3) + logger = klog.LoggerWithName(logger, "UnhandledError") + logger.Error(err, msg, keysAndValues...) //nolint:logcheck // logcheck complains about unknown key/value pairs. } type rudimentaryErrorBackoff struct { @@ -125,7 +208,7 @@ type rudimentaryErrorBackoff struct { // OnError will block if it is called more often than the embedded period time. // This will prevent overly tight hot error loops. -func (r *rudimentaryErrorBackoff) OnError(error) { +func (r *rudimentaryErrorBackoff) OnError() { now := time.Now() // start the timer before acquiring the lock r.lastErrorTimeLock.Lock() d := now.Sub(r.lastErrorTime) diff --git a/api/vendor/k8s.io/apimachinery/pkg/util/sets/set.go b/api/vendor/k8s.io/apimachinery/pkg/util/sets/set.go index b76129a1c..cd961c8c5 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/util/sets/set.go +++ b/api/vendor/k8s.io/apimachinery/pkg/util/sets/set.go @@ -68,14 +68,8 @@ func (s Set[T]) Delete(items ...T) Set[T] { // Clear empties the set. // It is preferable to replace the set with a newly constructed set, // but not all callers can do that (when there are other references to the map). -// In some cases the set *won't* be fully cleared, e.g. a Set[float32] containing NaN -// can't be cleared because NaN can't be removed. -// For sets containing items of a type that is reflexive for ==, -// this is optimized to a single call to runtime.mapclear(). func (s Set[T]) Clear() Set[T] { - for key := range s { - delete(s, key) - } + clear(s) return s } diff --git a/api/vendor/k8s.io/apimachinery/pkg/watch/watch.go b/api/vendor/k8s.io/apimachinery/pkg/watch/watch.go index b6c7bbfa8..ce37fd8c1 100644 --- a/api/vendor/k8s.io/apimachinery/pkg/watch/watch.go +++ b/api/vendor/k8s.io/apimachinery/pkg/watch/watch.go @@ -27,13 +27,25 @@ import ( // Interface can be implemented by anything that knows how to watch and report changes. type Interface interface { - // Stop stops watching. Will close the channel returned by ResultChan(). Releases - // any resources used by the watch. + // Stop tells the producer that the consumer is done watching, so the + // producer should stop sending events and close the result channel. The + // consumer should keep watching for events until the result channel is + // closed. + // + // Because some implementations may create channels when constructed, Stop + // must always be called, even if the consumer has not yet called + // ResultChan(). + // + // Only the consumer should call Stop(), not the producer. If the producer + // errors and needs to stop the watch prematurely, it should instead send + // an error event and close the result channel. Stop() - // ResultChan returns a chan which will receive all the events. If an error occurs - // or Stop() is called, the implementation will close this channel and - // release any resources used by the watch. + // ResultChan returns a channel which will receive events from the event + // producer. If an error occurs or Stop() is called, the producer must + // close this channel and release any resources used by the watch. + // Closing the result channel tells the consumer that no more events will be + // sent. ResultChan() <-chan Event } @@ -322,3 +334,21 @@ func (pw *ProxyWatcher) ResultChan() <-chan Event { func (pw *ProxyWatcher) StopChan() <-chan struct{} { return pw.stopCh } + +// MockWatcher implements watch.Interface with mockable functions. +type MockWatcher struct { + StopFunc func() + ResultChanFunc func() <-chan Event +} + +var _ Interface = &MockWatcher{} + +// Stop calls StopFunc +func (mw MockWatcher) Stop() { + mw.StopFunc() +} + +// ResultChan calls ResultChanFunc +func (mw MockWatcher) ResultChan() <-chan Event { + return mw.ResultChanFunc() +} diff --git a/api/vendor/k8s.io/klog/v2/klog.go b/api/vendor/k8s.io/klog/v2/klog.go index 026be9e3b..47ec9466a 100644 --- a/api/vendor/k8s.io/klog/v2/klog.go +++ b/api/vendor/k8s.io/klog/v2/klog.go @@ -404,13 +404,6 @@ func (t *traceLocation) Set(value string) error { return nil } -// flushSyncWriter is the interface satisfied by logging destinations. -type flushSyncWriter interface { - Flush() error - Sync() error - io.Writer -} - var logging loggingT var commandLine flag.FlagSet @@ -486,7 +479,7 @@ type settings struct { // Access to all of the following fields must be protected via a mutex. // file holds writer for each of the log types. - file [severity.NumSeverity]flushSyncWriter + file [severity.NumSeverity]io.Writer // flushInterval is the interval for periodic flushing. If zero, // the global default will be used. flushInterval time.Duration @@ -831,32 +824,12 @@ func (l *loggingT) printS(err error, s severity.Severity, depth int, msg string, buffer.PutBuffer(b) } -// redirectBuffer is used to set an alternate destination for the logs -type redirectBuffer struct { - w io.Writer -} - -func (rb *redirectBuffer) Sync() error { - return nil -} - -func (rb *redirectBuffer) Flush() error { - return nil -} - -func (rb *redirectBuffer) Write(bytes []byte) (n int, err error) { - return rb.w.Write(bytes) -} - // SetOutput sets the output destination for all severities func SetOutput(w io.Writer) { logging.mu.Lock() defer logging.mu.Unlock() for s := severity.FatalLog; s >= severity.InfoLog; s-- { - rb := &redirectBuffer{ - w: w, - } - logging.file[s] = rb + logging.file[s] = w } } @@ -868,10 +841,7 @@ func SetOutputBySeverity(name string, w io.Writer) { if !ok { panic(fmt.Sprintf("SetOutputBySeverity(%q): unrecognized severity name", name)) } - rb := &redirectBuffer{ - w: w, - } - logging.file[sev] = rb + logging.file[sev] = w } // LogToStderr sets whether to log exclusively to stderr, bypassing outputs @@ -1011,7 +981,8 @@ func (l *loggingT) exit(err error) { logExitFunc(err) return } - l.flushAll() + needToSync := l.flushAll() + l.syncAll(needToSync) OsExit(2) } @@ -1028,10 +999,6 @@ type syncBuffer struct { maxbytes uint64 // The max number of bytes this syncBuffer.file can hold before cleaning up. } -func (sb *syncBuffer) Sync() error { - return sb.file.Sync() -} - // CalculateMaxSize returns the real max size in bytes after considering the default max size and the flag options. func CalculateMaxSize() uint64 { if logging.logFile != "" { @@ -1223,24 +1190,45 @@ func StartFlushDaemon(interval time.Duration) { // lockAndFlushAll is like flushAll but locks l.mu first. func (l *loggingT) lockAndFlushAll() { l.mu.Lock() - l.flushAll() + needToSync := l.flushAll() l.mu.Unlock() + // Some environments are slow when syncing and holding the lock might cause contention. + l.syncAll(needToSync) } -// flushAll flushes all the logs and attempts to "sync" their data to disk. +// flushAll flushes all the logs // l.mu is held. -func (l *loggingT) flushAll() { +// +// The result is the number of files which need to be synced and the pointers to them. +func (l *loggingT) flushAll() fileArray { + var needToSync fileArray + // Flush from fatal down, in case there's trouble flushing. for s := severity.FatalLog; s >= severity.InfoLog; s-- { file := l.file[s] - if file != nil { - _ = file.Flush() // ignore error - _ = file.Sync() // ignore error + if sb, ok := file.(*syncBuffer); ok && sb.file != nil { + _ = sb.Flush() // ignore error + needToSync.files[needToSync.num] = sb.file + needToSync.num++ } } if logging.loggerOptions.flush != nil { logging.loggerOptions.flush() } + return needToSync +} + +type fileArray struct { + num int + files [severity.NumSeverity]*os.File +} + +// syncAll attempts to "sync" their data to disk. +func (l *loggingT) syncAll(needToSync fileArray) { + // Flush from fatal down, in case there's trouble flushing. + for i := 0; i < needToSync.num; i++ { + _ = needToSync.files[i].Sync() // ignore error + } } // CopyStandardLogTo arranges for messages written to the Go "log" package's diff --git a/api/vendor/k8s.io/utils/net/multi_listen.go b/api/vendor/k8s.io/utils/net/multi_listen.go new file mode 100644 index 000000000..7cb7795be --- /dev/null +++ b/api/vendor/k8s.io/utils/net/multi_listen.go @@ -0,0 +1,195 @@ +/* +Copyright 2024 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 net + +import ( + "context" + "fmt" + "net" + "sync" +) + +// connErrPair pairs conn and error which is returned by accept on sub-listeners. +type connErrPair struct { + conn net.Conn + err error +} + +// multiListener implements net.Listener +type multiListener struct { + listeners []net.Listener + wg sync.WaitGroup + + // connCh passes accepted connections, from child listeners to parent. + connCh chan connErrPair + // stopCh communicates from parent to child listeners. + stopCh chan struct{} +} + +// compile time check to ensure *multiListener implements net.Listener +var _ net.Listener = &multiListener{} + +// MultiListen returns net.Listener which can listen on and accept connections for +// the given network on multiple addresses. Internally it uses stdlib to create +// sub-listener and multiplexes connection requests using go-routines. +// The network must be "tcp", "tcp4" or "tcp6". +// It follows the semantics of net.Listen that primarily means: +// 1. If the host is an unspecified/zero IP address with "tcp" network, MultiListen +// listens on all available unicast and anycast IP addresses of the local system. +// 2. Use "tcp4" or "tcp6" to exclusively listen on IPv4 or IPv6 family, respectively. +// 3. The host can accept names (e.g, localhost) and it will create a listener for at +// most one of the host's IP. +func MultiListen(ctx context.Context, network string, addrs ...string) (net.Listener, error) { + var lc net.ListenConfig + return multiListen( + ctx, + network, + addrs, + func(ctx context.Context, network, address string) (net.Listener, error) { + return lc.Listen(ctx, network, address) + }) +} + +// multiListen implements MultiListen by consuming stdlib functions as dependency allowing +// mocking for unit-testing. +func multiListen( + ctx context.Context, + network string, + addrs []string, + listenFunc func(ctx context.Context, network, address string) (net.Listener, error), +) (net.Listener, error) { + if !(network == "tcp" || network == "tcp4" || network == "tcp6") { + return nil, fmt.Errorf("network %q not supported", network) + } + if len(addrs) == 0 { + return nil, fmt.Errorf("no address provided to listen on") + } + + ml := &multiListener{ + connCh: make(chan connErrPair), + stopCh: make(chan struct{}), + } + for _, addr := range addrs { + l, err := listenFunc(ctx, network, addr) + if err != nil { + // close all the sub-listeners and exit + _ = ml.Close() + return nil, err + } + ml.listeners = append(ml.listeners, l) + } + + for _, l := range ml.listeners { + ml.wg.Add(1) + go func(l net.Listener) { + defer ml.wg.Done() + for { + // Accept() is blocking, unless ml.Close() is called, in which + // case it will return immediately with an error. + conn, err := l.Accept() + // This assumes that ANY error from Accept() will terminate the + // sub-listener. We could maybe be more precise, but it + // doesn't seem necessary. + terminate := err != nil + + select { + case ml.connCh <- connErrPair{conn: conn, err: err}: + case <-ml.stopCh: + // In case we accepted a connection AND were stopped, and + // this select-case was chosen, just throw away the + // connection. This avoids potentially blocking on connCh + // or leaking a connection. + if conn != nil { + _ = conn.Close() + } + terminate = true + } + // Make sure we don't loop on Accept() returning an error and + // the select choosing the channel case. + if terminate { + return + } + } + }(l) + } + return ml, nil +} + +// Accept implements net.Listener. It waits for and returns a connection from +// any of the sub-listener. +func (ml *multiListener) Accept() (net.Conn, error) { + // wait for any sub-listener to enqueue an accepted connection + connErr, ok := <-ml.connCh + if !ok { + // The channel will be closed only when Close() is called on the + // multiListener. Closing of this channel implies that all + // sub-listeners are also closed, which causes a "use of closed + // network connection" error on their Accept() calls. We return the + // same error for multiListener.Accept() if multiListener.Close() + // has already been called. + return nil, fmt.Errorf("use of closed network connection") + } + return connErr.conn, connErr.err +} + +// Close implements net.Listener. It will close all sub-listeners and wait for +// the go-routines to exit. +func (ml *multiListener) Close() error { + // Make sure this can be called repeatedly without explosions. + select { + case <-ml.stopCh: + return fmt.Errorf("use of closed network connection") + default: + } + + // Tell all sub-listeners to stop. + close(ml.stopCh) + + // Closing the listeners causes Accept() to immediately return an error in + // the sub-listener go-routines. + for _, l := range ml.listeners { + _ = l.Close() + } + + // Wait for all the sub-listener go-routines to exit. + ml.wg.Wait() + close(ml.connCh) + + // Drain any already-queued connections. + for connErr := range ml.connCh { + if connErr.conn != nil { + _ = connErr.conn.Close() + } + } + return nil +} + +// Addr is an implementation of the net.Listener interface. It always returns +// the address of the first listener. Callers should use conn.LocalAddr() to +// obtain the actual local address of the sub-listener. +func (ml *multiListener) Addr() net.Addr { + return ml.listeners[0].Addr() +} + +// Addrs is like Addr, but returns the address for all registered listeners. +func (ml *multiListener) Addrs() []net.Addr { + var ret []net.Addr + for _, l := range ml.listeners { + ret = append(ret, l.Addr()) + } + return ret +} diff --git a/api/vendor/k8s.io/utils/ptr/OWNERS b/api/vendor/k8s.io/utils/ptr/OWNERS new file mode 100644 index 000000000..0d6392752 --- /dev/null +++ b/api/vendor/k8s.io/utils/ptr/OWNERS @@ -0,0 +1,10 @@ +# See the OWNERS docs at https://go.k8s.io/owners + +approvers: +- apelisse +- stewart-yu +- thockin +reviewers: +- apelisse +- stewart-yu +- thockin diff --git a/api/vendor/k8s.io/utils/ptr/README.md b/api/vendor/k8s.io/utils/ptr/README.md new file mode 100644 index 000000000..2ca8073dc --- /dev/null +++ b/api/vendor/k8s.io/utils/ptr/README.md @@ -0,0 +1,3 @@ +# Pointer + +This package provides some functions for pointer-based operations. diff --git a/api/vendor/k8s.io/utils/ptr/ptr.go b/api/vendor/k8s.io/utils/ptr/ptr.go new file mode 100644 index 000000000..659ed3b9e --- /dev/null +++ b/api/vendor/k8s.io/utils/ptr/ptr.go @@ -0,0 +1,73 @@ +/* +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 ptr + +import ( + "fmt" + "reflect" +) + +// AllPtrFieldsNil tests whether all pointer fields in a struct are nil. This is useful when, +// for example, an API struct is handled by plugins which need to distinguish +// "no plugin accepted this spec" from "this spec is empty". +// +// This function is only valid for structs and pointers to structs. Any other +// type will cause a panic. Passing a typed nil pointer will return true. +func AllPtrFieldsNil(obj interface{}) bool { + v := reflect.ValueOf(obj) + if !v.IsValid() { + panic(fmt.Sprintf("reflect.ValueOf() produced a non-valid Value for %#v", obj)) + } + if v.Kind() == reflect.Ptr { + if v.IsNil() { + return true + } + v = v.Elem() + } + for i := 0; i < v.NumField(); i++ { + if v.Field(i).Kind() == reflect.Ptr && !v.Field(i).IsNil() { + return false + } + } + return true +} + +// To returns a pointer to the given value. +func To[T any](v T) *T { + return &v +} + +// Deref dereferences ptr and returns the value it points to if no nil, or else +// returns def. +func Deref[T any](ptr *T, def T) T { + if ptr != nil { + return *ptr + } + return def +} + +// Equal returns true if both arguments are nil or both arguments +// dereference to the same value. +func Equal[T comparable](a, b *T) bool { + if (a == nil) != (b == nil) { + return false + } + if a == nil { + return true + } + return *a == *b +} diff --git a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types.go b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types.go index e2c54111b..194e531b0 100644 --- a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types.go +++ b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types.go @@ -17,7 +17,6 @@ limitations under the License. package v1beta1 import ( - ocpconfigv1 "github.com/openshift/api/config/v1" corev1 "k8s.io/api/core/v1" metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" sdkapi "kubevirt.io/controller-lifecycle-operator-sdk/api" @@ -80,7 +79,7 @@ type StorageSpec struct { // Resources represents the minimum resources the volume should have. // More info: https://kubernetes.io/docs/concepts/storage/persistent-volumes#resources // +optional - Resources corev1.ResourceRequirements `json:"resources,omitempty"` + Resources corev1.VolumeResourceRequirements `json:"resources,omitempty"` // VolumeName is the binding reference to the PersistentVolume backing this claim. // +optional VolumeName string `json:"volumeName,omitempty"` @@ -820,6 +819,10 @@ type CDICertConfig struct { // Server configuration // Certs are rotated and discarded Server *CertConfig `json:"server,omitempty"` + + // Client configuration + // Certs are rotated and discarded + Client *CertConfig `json:"client,omitempty"` } // CDISpec defines our specification for the CDI installation @@ -1010,7 +1013,7 @@ type CDIConfigSpec struct { // +optional DataVolumeTTLSeconds *int32 `json:"dataVolumeTTLSeconds,omitempty"` // TLSSecurityProfile is used by operators to apply cluster-wide TLS security settings to operands. - TLSSecurityProfile *ocpconfigv1.TLSSecurityProfile `json:"tlsSecurityProfile,omitempty"` + TLSSecurityProfile *TLSSecurityProfile `json:"tlsSecurityProfile,omitempty"` // The imagePullSecrets used to pull the container images ImagePullSecrets []corev1.LocalObjectReference `json:"imagePullSecrets,omitempty"` // LogVerbosity overrides the default verbosity level used to initialize loggers @@ -1022,6 +1025,8 @@ type CDIConfigSpec struct { type CDIConfigStatus struct { // The calculated upload proxy URL UploadProxyURL *string `json:"uploadProxyURL,omitempty"` + // UploadProxyCA is the certificate authority of the upload proxy + UploadProxyCA *string `json:"uploadProxyCA,omitempty"` // ImportProxy contains importer pod proxy configuration. // +optional ImportProxy *ImportProxy `json:"importProxy,omitempty"` diff --git a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_swagger_generated.go b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_swagger_generated.go index 49246a912..fb5ab9c6a 100644 --- a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_swagger_generated.go +++ b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_swagger_generated.go @@ -420,6 +420,7 @@ func (CDICertConfig) SwaggerDoc() map[string]string { "": "CDICertConfig has the CertConfigs for CDI", "ca": "CA configuration\nCA certs are kept in the CA bundle as long as they are valid", "server": "Server configuration\nCerts are rotated and discarded", + "client": "Client configuration\nCerts are rotated and discarded", } } @@ -517,6 +518,7 @@ func (CDIConfigStatus) SwaggerDoc() map[string]string { return map[string]string{ "": "CDIConfigStatus provides the most recently observed status of the CDI Config resource", "uploadProxyURL": "The calculated upload proxy URL", + "uploadProxyCA": "UploadProxyCA is the certificate authority of the upload proxy", "importProxy": "ImportProxy contains importer pod proxy configuration.\n+optional", "scratchSpaceStorageClass": "The calculated storage class to be used for scratch space", "defaultPodResourceRequirements": "ResourceRequirements describes the compute resource requirements.", diff --git a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_tlssecurityprofile.go b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_tlssecurityprofile.go new file mode 100644 index 000000000..046ca82cb --- /dev/null +++ b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/types_tlssecurityprofile.go @@ -0,0 +1,264 @@ +package v1beta1 + +// following copied from github.com/openshift/api/config/v1 + +// TLSSecurityProfile defines the schema for a TLS security profile. This object +// is used by operators to apply TLS security settings to operands. +// +union +type TLSSecurityProfile struct { + // type is one of Old, Intermediate, Modern or Custom. Custom provides + // the ability to specify individual TLS security profile parameters. + // Old, Intermediate and Modern are TLS security profiles based on: + // + // https://wiki.mozilla.org/Security/Server_Side_TLS#Recommended_configurations + // + // The profiles are intent based, so they may change over time as new ciphers are developed and existing ciphers + // are found to be insecure. Depending on precisely which ciphers are available to a process, the list may be + // reduced. + // + // Note that the Modern profile is currently not supported because it is not + // yet well adopted by common software libraries. + // + // +unionDiscriminator + // +optional + Type TLSProfileType `json:"type"` + // old is a TLS security profile based on: + // + // https://wiki.mozilla.org/Security/Server_Side_TLS#Old_backward_compatibility + // + // and looks like this (yaml): + // + // ciphers: + // - TLS_AES_128_GCM_SHA256 + // - TLS_AES_256_GCM_SHA384 + // - TLS_CHACHA20_POLY1305_SHA256 + // - ECDHE-ECDSA-AES128-GCM-SHA256 + // - ECDHE-RSA-AES128-GCM-SHA256 + // - ECDHE-ECDSA-AES256-GCM-SHA384 + // - ECDHE-RSA-AES256-GCM-SHA384 + // - ECDHE-ECDSA-CHACHA20-POLY1305 + // - ECDHE-RSA-CHACHA20-POLY1305 + // - DHE-RSA-AES128-GCM-SHA256 + // - DHE-RSA-AES256-GCM-SHA384 + // - DHE-RSA-CHACHA20-POLY1305 + // - ECDHE-ECDSA-AES128-SHA256 + // - ECDHE-RSA-AES128-SHA256 + // - ECDHE-ECDSA-AES128-SHA + // - ECDHE-RSA-AES128-SHA + // - ECDHE-ECDSA-AES256-SHA384 + // - ECDHE-RSA-AES256-SHA384 + // - ECDHE-ECDSA-AES256-SHA + // - ECDHE-RSA-AES256-SHA + // - DHE-RSA-AES128-SHA256 + // - DHE-RSA-AES256-SHA256 + // - AES128-GCM-SHA256 + // - AES256-GCM-SHA384 + // - AES128-SHA256 + // - AES256-SHA256 + // - AES128-SHA + // - AES256-SHA + // - DES-CBC3-SHA + // minTLSVersion: VersionTLS10 + // + // +optional + // +nullable + Old *OldTLSProfile `json:"old,omitempty"` + // intermediate is a TLS security profile based on: + // + // https://wiki.mozilla.org/Security/Server_Side_TLS#Intermediate_compatibility_.28recommended.29 + // + // and looks like this (yaml): + // + // ciphers: + // - TLS_AES_128_GCM_SHA256 + // - TLS_AES_256_GCM_SHA384 + // - TLS_CHACHA20_POLY1305_SHA256 + // - ECDHE-ECDSA-AES128-GCM-SHA256 + // - ECDHE-RSA-AES128-GCM-SHA256 + // - ECDHE-ECDSA-AES256-GCM-SHA384 + // - ECDHE-RSA-AES256-GCM-SHA384 + // - ECDHE-ECDSA-CHACHA20-POLY1305 + // - ECDHE-RSA-CHACHA20-POLY1305 + // - DHE-RSA-AES128-GCM-SHA256 + // - DHE-RSA-AES256-GCM-SHA384 + // minTLSVersion: VersionTLS12 + // + // +optional + // +nullable + Intermediate *IntermediateTLSProfile `json:"intermediate,omitempty"` + // modern is a TLS security profile based on: + // + // https://wiki.mozilla.org/Security/Server_Side_TLS#Modern_compatibility + // + // and looks like this (yaml): + // + // ciphers: + // - TLS_AES_128_GCM_SHA256 + // - TLS_AES_256_GCM_SHA384 + // - TLS_CHACHA20_POLY1305_SHA256 + // minTLSVersion: VersionTLS13 + // + // NOTE: Currently unsupported. + // + // +optional + // +nullable + Modern *ModernTLSProfile `json:"modern,omitempty"` + // custom is a user-defined TLS security profile. Be extremely careful using a custom + // profile as invalid configurations can be catastrophic. An example custom profile + // looks like this: + // + // ciphers: + // - ECDHE-ECDSA-CHACHA20-POLY1305 + // - ECDHE-RSA-CHACHA20-POLY1305 + // - ECDHE-RSA-AES128-GCM-SHA256 + // - ECDHE-ECDSA-AES128-GCM-SHA256 + // minTLSVersion: VersionTLS11 + // + // +optional + // +nullable + Custom *CustomTLSProfile `json:"custom,omitempty"` +} + +// OldTLSProfile is a TLS security profile based on: +// https://wiki.mozilla.org/Security/Server_Side_TLS#Old_backward_compatibility +type OldTLSProfile struct{} + +// IntermediateTLSProfile is a TLS security profile based on: +// https://wiki.mozilla.org/Security/Server_Side_TLS#Intermediate_compatibility_.28default.29 +type IntermediateTLSProfile struct{} + +// ModernTLSProfile is a TLS security profile based on: +// https://wiki.mozilla.org/Security/Server_Side_TLS#Modern_compatibility +type ModernTLSProfile struct{} + +// CustomTLSProfile is a user-defined TLS security profile. Be extremely careful +// using a custom TLS profile as invalid configurations can be catastrophic. +type CustomTLSProfile struct { + TLSProfileSpec `json:",inline"` +} + +// TLSProfileType defines a TLS security profile type. +// +kubebuilder:validation:Enum=Old;Intermediate;Modern;Custom +type TLSProfileType string + +const ( + // TLSProfileOldType is a TLS security profile based on: + // https://wiki.mozilla.org/Security/Server_Side_TLS#Old_backward_compatibility + TLSProfileOldType TLSProfileType = "Old" + // TLSProfileIntermediateType is a TLS security profile based on: + // https://wiki.mozilla.org/Security/Server_Side_TLS#Intermediate_compatibility_.28default.29 + TLSProfileIntermediateType TLSProfileType = "Intermediate" + // TLSProfileModernType is a TLS security profile based on: + // https://wiki.mozilla.org/Security/Server_Side_TLS#Modern_compatibility + TLSProfileModernType TLSProfileType = "Modern" + // TLSProfileCustomType is a TLS security profile that allows for user-defined parameters. + TLSProfileCustomType TLSProfileType = "Custom" +) + +// TLSProfileSpec is the desired behavior of a TLSSecurityProfile. +type TLSProfileSpec struct { + // ciphers is used to specify the cipher algorithms that are negotiated + // during the TLS handshake. Operators may remove entries their operands + // do not support. For example, to use DES-CBC3-SHA (yaml): + // + // ciphers: + // - DES-CBC3-SHA + // + Ciphers []string `json:"ciphers"` + // minTLSVersion is used to specify the minimal version of the TLS protocol + // that is negotiated during the TLS handshake. For example, to use TLS + // versions 1.1, 1.2 and 1.3 (yaml): + // + // minTLSVersion: VersionTLS11 + // + // NOTE: currently the highest minTLSVersion allowed is VersionTLS12 + // + MinTLSVersion TLSProtocolVersion `json:"minTLSVersion"` +} + +// TLSProtocolVersion is a way to specify the protocol version used for TLS connections. +// Protocol versions are based on the following most common TLS configurations: +// +// https://ssl-config.mozilla.org/ +// +// Note that SSLv3.0 is not a supported protocol version due to well known +// vulnerabilities such as POODLE: https://en.wikipedia.org/wiki/POODLE +// +kubebuilder:validation:Enum=VersionTLS10;VersionTLS11;VersionTLS12;VersionTLS13 +type TLSProtocolVersion string + +const ( + // VersionTLS10 is version 1.0 of the TLS security protocol. + VersionTLS10 TLSProtocolVersion = "VersionTLS10" + // VersionTLS11 is version 1.1 of the TLS security protocol. + VersionTLS11 TLSProtocolVersion = "VersionTLS11" + // VersionTLS12 is version 1.2 of the TLS security protocol. + VersionTLS12 TLSProtocolVersion = "VersionTLS12" + // VersionTLS13 is version 1.3 of the TLS security protocol. + VersionTLS13 TLSProtocolVersion = "VersionTLS13" +) + +// TLSProfiles Contains a map of TLSProfileType names to TLSProfileSpec. +// +// NOTE: The caller needs to make sure to check that these constants are valid for their binary. Not all +// entries map to values for all binaries. In the case of ties, the kube-apiserver wins. Do not fail, +// just be sure to allowlist only and everything will be ok. +var TLSProfiles = map[TLSProfileType]*TLSProfileSpec{ + TLSProfileOldType: { + Ciphers: []string{ + "TLS_AES_128_GCM_SHA256", + "TLS_AES_256_GCM_SHA384", + "TLS_CHACHA20_POLY1305_SHA256", + "ECDHE-ECDSA-AES128-GCM-SHA256", + "ECDHE-RSA-AES128-GCM-SHA256", + "ECDHE-ECDSA-AES256-GCM-SHA384", + "ECDHE-RSA-AES256-GCM-SHA384", + "ECDHE-ECDSA-CHACHA20-POLY1305", + "ECDHE-RSA-CHACHA20-POLY1305", + "DHE-RSA-AES128-GCM-SHA256", + "DHE-RSA-AES256-GCM-SHA384", + "DHE-RSA-CHACHA20-POLY1305", + "ECDHE-ECDSA-AES128-SHA256", + "ECDHE-RSA-AES128-SHA256", + "ECDHE-ECDSA-AES128-SHA", + "ECDHE-RSA-AES128-SHA", + "ECDHE-ECDSA-AES256-SHA384", + "ECDHE-RSA-AES256-SHA384", + "ECDHE-ECDSA-AES256-SHA", + "ECDHE-RSA-AES256-SHA", + "DHE-RSA-AES128-SHA256", + "DHE-RSA-AES256-SHA256", + "AES128-GCM-SHA256", + "AES256-GCM-SHA384", + "AES128-SHA256", + "AES256-SHA256", + "AES128-SHA", + "AES256-SHA", + "DES-CBC3-SHA", + }, + MinTLSVersion: VersionTLS10, + }, + TLSProfileIntermediateType: { + Ciphers: []string{ + "TLS_AES_128_GCM_SHA256", + "TLS_AES_256_GCM_SHA384", + "TLS_CHACHA20_POLY1305_SHA256", + "ECDHE-ECDSA-AES128-GCM-SHA256", + "ECDHE-RSA-AES128-GCM-SHA256", + "ECDHE-ECDSA-AES256-GCM-SHA384", + "ECDHE-RSA-AES256-GCM-SHA384", + "ECDHE-ECDSA-CHACHA20-POLY1305", + "ECDHE-RSA-CHACHA20-POLY1305", + "DHE-RSA-AES128-GCM-SHA256", + "DHE-RSA-AES256-GCM-SHA384", + }, + MinTLSVersion: VersionTLS12, + }, + TLSProfileModernType: { + Ciphers: []string{ + "TLS_AES_128_GCM_SHA256", + "TLS_AES_256_GCM_SHA384", + "TLS_CHACHA20_POLY1305_SHA256", + }, + MinTLSVersion: VersionTLS13, + }, +} diff --git a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/zz_generated.deepcopy.go b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/zz_generated.deepcopy.go index 30b665b73..1fbe12689 100644 --- a/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/zz_generated.deepcopy.go +++ b/api/vendor/kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1/zz_generated.deepcopy.go @@ -22,7 +22,6 @@ limitations under the License. package v1beta1 import ( - configv1 "github.com/openshift/api/config/v1" v1 "k8s.io/api/core/v1" metav1 "k8s.io/apimachinery/pkg/apis/meta/v1" runtime "k8s.io/apimachinery/pkg/runtime" @@ -69,6 +68,11 @@ func (in *CDICertConfig) DeepCopyInto(out *CDICertConfig) { *out = new(CertConfig) (*in).DeepCopyInto(*out) } + if in.Client != nil { + in, out := &in.Client, &out.Client + *out = new(CertConfig) + (*in).DeepCopyInto(*out) + } return } @@ -193,7 +197,7 @@ func (in *CDIConfigSpec) DeepCopyInto(out *CDIConfigSpec) { } if in.TLSSecurityProfile != nil { in, out := &in.TLSSecurityProfile, &out.TLSSecurityProfile - *out = new(configv1.TLSSecurityProfile) + *out = new(TLSSecurityProfile) (*in).DeepCopyInto(*out) } if in.ImagePullSecrets != nil { @@ -227,6 +231,11 @@ func (in *CDIConfigStatus) DeepCopyInto(out *CDIConfigStatus) { *out = new(string) **out = **in } + if in.UploadProxyCA != nil { + in, out := &in.UploadProxyCA, &out.UploadProxyCA + *out = new(string) + **out = **in + } if in.ImportProxy != nil { in, out := &in.ImportProxy, &out.ImportProxy *out = new(ImportProxy) @@ -456,6 +465,23 @@ func (in *ConditionState) DeepCopy() *ConditionState { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *CustomTLSProfile) DeepCopyInto(out *CustomTLSProfile) { + *out = *in + in.TLSProfileSpec.DeepCopyInto(&out.TLSProfileSpec) + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new CustomTLSProfile. +func (in *CustomTLSProfile) DeepCopy() *CustomTLSProfile { + if in == nil { + return nil + } + out := new(CustomTLSProfile) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *CustomizeComponents) DeepCopyInto(out *CustomizeComponents) { *out = *in @@ -1408,6 +1434,38 @@ func (in *ImportStatus) DeepCopy() *ImportStatus { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *IntermediateTLSProfile) DeepCopyInto(out *IntermediateTLSProfile) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new IntermediateTLSProfile. +func (in *IntermediateTLSProfile) DeepCopy() *IntermediateTLSProfile { + if in == nil { + return nil + } + out := new(IntermediateTLSProfile) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *ModernTLSProfile) DeepCopyInto(out *ModernTLSProfile) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ModernTLSProfile. +func (in *ModernTLSProfile) DeepCopy() *ModernTLSProfile { + if in == nil { + return nil + } + out := new(ModernTLSProfile) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *ObjectTransfer) DeepCopyInto(out *ObjectTransfer) { *out = *in @@ -1540,6 +1598,22 @@ func (in *ObjectTransferStatus) DeepCopy() *ObjectTransferStatus { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *OldTLSProfile) DeepCopyInto(out *OldTLSProfile) { + *out = *in + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new OldTLSProfile. +func (in *OldTLSProfile) DeepCopy() *OldTLSProfile { + if in == nil { + return nil + } + out := new(OldTLSProfile) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *StorageProfile) DeepCopyInto(out *StorageProfile) { *out = *in @@ -1734,6 +1808,63 @@ func (in *StorageSpec) DeepCopy() *StorageSpec { return out } +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *TLSProfileSpec) DeepCopyInto(out *TLSProfileSpec) { + *out = *in + if in.Ciphers != nil { + in, out := &in.Ciphers, &out.Ciphers + *out = make([]string, len(*in)) + copy(*out, *in) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new TLSProfileSpec. +func (in *TLSProfileSpec) DeepCopy() *TLSProfileSpec { + if in == nil { + return nil + } + out := new(TLSProfileSpec) + in.DeepCopyInto(out) + return out +} + +// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. +func (in *TLSSecurityProfile) DeepCopyInto(out *TLSSecurityProfile) { + *out = *in + if in.Old != nil { + in, out := &in.Old, &out.Old + *out = new(OldTLSProfile) + **out = **in + } + if in.Intermediate != nil { + in, out := &in.Intermediate, &out.Intermediate + *out = new(IntermediateTLSProfile) + **out = **in + } + if in.Modern != nil { + in, out := &in.Modern, &out.Modern + *out = new(ModernTLSProfile) + **out = **in + } + if in.Custom != nil { + in, out := &in.Custom, &out.Custom + *out = new(CustomTLSProfile) + (*in).DeepCopyInto(*out) + } + return +} + +// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new TLSSecurityProfile. +func (in *TLSSecurityProfile) DeepCopy() *TLSSecurityProfile { + if in == nil { + return nil + } + out := new(TLSSecurityProfile) + in.DeepCopyInto(out) + return out +} + // DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil. func (in *TransferSource) DeepCopyInto(out *TransferSource) { *out = *in diff --git a/api/vendor/modules.txt b/api/vendor/modules.txt index 494c838b5..31b0c9d6d 100644 --- a/api/vendor/modules.txt +++ b/api/vendor/modules.txt @@ -1,4 +1,7 @@ -# github.com/go-logr/logr v1.4.1 +# github.com/fxamacker/cbor/v2 v2.7.0 +## explicit; go 1.17 +github.com/fxamacker/cbor/v2 +# github.com/go-logr/logr v1.4.2 ## explicit; go 1.18 github.com/go-logr/logr # github.com/gogo/protobuf v1.3.2 @@ -18,13 +21,16 @@ github.com/modern-go/concurrent # github.com/modern-go/reflect2 v1.0.2 ## explicit; go 1.12 github.com/modern-go/reflect2 -# github.com/openshift/api v0.0.0-20240702171116-4b89b3a92a17 -## explicit; go 1.21 +# github.com/openshift/api v0.0.0-20241114175301-1d987ad446cf +## explicit; go 1.22.0 github.com/openshift/api/config/v1 # github.com/openshift/custom-resource-status v1.1.2 ## explicit; go 1.12 github.com/openshift/custom-resource-status/conditions/v1 -# golang.org/x/net v0.25.0 +# github.com/x448/float16 v0.8.4 +## explicit; go 1.11 +github.com/x448/float16 +# golang.org/x/net v0.26.0 ## explicit; go 1.18 golang.org/x/net/http/httpguts golang.org/x/net/http2 @@ -42,12 +48,12 @@ gopkg.in/inf.v0 # gopkg.in/yaml.v2 v2.4.0 ## explicit; go 1.15 gopkg.in/yaml.v2 -# k8s.io/api v0.30.1 +# k8s.io/api v0.31.1 ## explicit; go 1.22.0 k8s.io/api/authentication/v1 k8s.io/api/authorization/v1 k8s.io/api/core/v1 -# k8s.io/apimachinery v0.30.3 +# k8s.io/apimachinery v0.31.2 ## explicit; go 1.22.0 k8s.io/apimachinery/pkg/api/errors k8s.io/apimachinery/pkg/api/resource @@ -58,6 +64,8 @@ k8s.io/apimachinery/pkg/fields k8s.io/apimachinery/pkg/labels k8s.io/apimachinery/pkg/runtime k8s.io/apimachinery/pkg/runtime/schema +k8s.io/apimachinery/pkg/runtime/serializer/cbor/direct +k8s.io/apimachinery/pkg/runtime/serializer/cbor/internal/modes k8s.io/apimachinery/pkg/selection k8s.io/apimachinery/pkg/types k8s.io/apimachinery/pkg/util/errors @@ -71,7 +79,7 @@ k8s.io/apimachinery/pkg/util/validation k8s.io/apimachinery/pkg/util/validation/field k8s.io/apimachinery/pkg/watch k8s.io/apimachinery/third_party/forked/golang/reflect -# k8s.io/klog/v2 v2.120.1 +# k8s.io/klog/v2 v2.130.1 ## explicit; go 1.18 k8s.io/klog/v2 k8s.io/klog/v2/internal/buffer @@ -80,19 +88,20 @@ k8s.io/klog/v2/internal/dbg k8s.io/klog/v2/internal/serialize k8s.io/klog/v2/internal/severity k8s.io/klog/v2/internal/sloghandler -# k8s.io/utils v0.0.0-20240310230437-4693a0247e57 +# k8s.io/utils v0.0.0-20240711033017-18e509b52bc8 ## explicit; go 1.18 k8s.io/utils/internal/third_party/forked/golang/net k8s.io/utils/net +k8s.io/utils/ptr k8s.io/utils/strings/slices -# kubevirt.io/containerized-data-importer-api v1.59.0 -## explicit; go 1.21 +# kubevirt.io/containerized-data-importer-api v1.60.3 +## explicit; go 1.22.3 kubevirt.io/containerized-data-importer-api/pkg/apis/core kubevirt.io/containerized-data-importer-api/pkg/apis/core/v1beta1 # kubevirt.io/controller-lifecycle-operator-sdk/api v0.2.4 ## explicit; go 1.17 kubevirt.io/controller-lifecycle-operator-sdk/api -# sigs.k8s.io/controller-runtime v0.18.4 +# sigs.k8s.io/controller-runtime v0.19.1 ## explicit; go 1.22.0 sigs.k8s.io/controller-runtime/pkg/scheme # sigs.k8s.io/json v0.0.0-20221116044647-bc3834ca7abd diff --git a/ci-builder/Dockerfile b/ci-builder/Dockerfile index d4895b8cb..1ed1d5d03 100644 --- a/ci-builder/Dockerfile +++ b/ci-builder/Dockerfile @@ -1,5 +1,5 @@ # This Dockerfile is used in openshift CI -FROM quay.io/fedora/fedora:40 +FROM quay.io/fedora/fedora:42 RUN curl -L https://go.dev/dl/go1.22.4.linux-amd64.tar.gz | tar -C /usr/local -xzf - ENV PATH=$PATH:/usr/local/go/bin diff --git a/go.mod b/go.mod index 86c568b70..e50db5e4d 100644 --- a/go.mod +++ b/go.mod @@ -4,37 +4,37 @@ go 1.22.4 require ( github.com/blang/semver/v4 v4.0.0 - github.com/fsnotify/fsnotify v1.7.0 + github.com/fsnotify/fsnotify v1.8.0 github.com/go-logr/logr v1.4.2 - github.com/kubevirt/monitoring/pkg/metrics/parser v0.0.0-20230706095033-373a95665d5a - github.com/machadovilaca/operator-observability v0.0.21 - github.com/onsi/ginkgo/v2 v2.19.0 - github.com/onsi/gomega v1.34.1 - github.com/openshift/api v0.0.0-20240702171116-4b89b3a92a17 // release-4.16 + github.com/kubevirt/monitoring/pkg/metrics/parser fb6012067fcc + github.com/machadovilaca/operator-observability v0.0.24 + github.com/onsi/ginkgo/v2 v2.21.0 + github.com/onsi/gomega v1.35.1 + github.com/openshift/api 1d987ad446cf // release-4.16 github.com/openshift/custom-resource-status v1.1.2 - github.com/openshift/library-go v0.0.0-20240711192904-190fec8c3f09 // release-4.16 - github.com/operator-framework/api v0.26.0 - github.com/operator-framework/operator-lib v0.14.0 - github.com/prometheus-operator/prometheus-operator/pkg/apis/monitoring v0.75.2 - github.com/prometheus/client_golang v1.19.1 + github.com/openshift/library-go 144cb72bbb39 // release-4.16 + github.com/operator-framework/api v0.27.0 + github.com/operator-framework/operator-lib v0.15.0 + github.com/prometheus-operator/prometheus-operator/pkg/apis/monitoring v0.78.1 + github.com/prometheus/client_golang v1.20.5 github.com/prometheus/client_model v0.6.1 - github.com/prometheus/common v0.55.0 + github.com/prometheus/common v0.60.1 github.com/spf13/cobra v1.8.1 github.com/spf13/pflag v1.0.5 - github.com/tektoncd/pipeline v0.62.1 - gomodules.xyz/jsonpatch/v2 v2.4.0 - k8s.io/api v0.30.3 - k8s.io/apiextensions-apiserver v0.30.3 - k8s.io/apimachinery v0.30.3 - k8s.io/client-go v0.30.3 - k8s.io/kube-aggregator v0.30.3 - k8s.io/utils v0.0.0-20240502163921-fe8a2dddb1d0 - kubevirt.io/api v1.3.0 - kubevirt.io/containerized-data-importer-api v1.59.0 + github.com/tektoncd/pipeline v0.65.1 + gomodules.xyz/jsonpatch/v2/v3 v3.0.1 + k8s.io/api v0.31.2 + k8s.io/apiextensions-apiserver v0.31.2 + k8s.io/apimachinery v0.31.2 + k8s.io/client-go v0.31.2 + k8s.io/kube-aggregator v0.31.2 + k8s.io/utils 6fe5fd82f078 + kubevirt.io/api v1.4.0 + kubevirt.io/containerized-data-importer-api v1.60.3 kubevirt.io/controller-lifecycle-operator-sdk/api v0.2.4 kubevirt.io/qe-tools v0.1.8 - kubevirt.io/ssp-operator/api v0.0.0 - sigs.k8s.io/controller-runtime v0.18.5 + kubevirt.io/ssp-operator/api v0.21.1 + sigs.k8s.io/controller-runtime v0.19.1 sigs.k8s.io/yaml v1.4.0 )