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panxiao81 86953cd91a docs: 对齐产品里程碑与集成验证要求
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2026-09-21 05:21:22 +00:00
panxiao81 ddd717209e chore: 添加 homelab 知识维护 skill
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2026-09-21 05:14:04 +00:00
panxiao81 2756803ba4 docs: 保留 DBaaS 已批准设计合同
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2026-09-20 20:38:53 +00:00
panxiao81 76752c8443 docs: 统一 Database API 到 Ayatori 域 2026-09-20 20:38:53 +00:00
panxiao81 36138f835a docs: 允许 Database 模块无兼容负担重构 2026-09-20 20:38:52 +00:00
panxiao81 de8b7f9b04 docs: 记录 Compute 方向与 Database 模块合并 2026-09-20 20:38:51 +00:00
panxiao81 e6b9980b3e docs: 解耦内置 API 与上游实现组件 2026-09-20 20:38:50 +00:00
panxiao81 641db531a8 docs: 按实际管理缺口限定产品范围 2026-09-20 20:38:49 +00:00
panxiao81 7b841d7dba docs: 明确 API machinery 与领域控制循环边界 2026-09-20 20:38:48 +00:00
panxiao81 af001b6188 Merge pull request 'feat: scaffold job execution API' (#1) from feat/job-api-scaffold into main
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Reviewed-on: #1
2026-09-18 18:00:43 +00:00
panxiao81 7a972afaa6 test: ignore invalid embedlit suggestions
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2026-09-18 16:28:53 +00:00
panxiao81 5bd0455940 test: satisfy Go 1.27 modernization lint
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2026-09-17 19:06:39 +00:00
panxiao81 4846ff2aba feat: scaffold job execution API
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2026-09-17 18:58:11 +00:00
panxiao81 7a47221280 docs: design job execution APIs 2026-09-17 18:29:17 +00:00
panxiao81 f559ffebf9 docs: define ephemeral job retention 2026-09-17 17:42:48 +00:00
panxiao81 fd643da0ca docs: define modular controller boundaries 2026-09-17 17:16:54 +00:00
78 changed files with 6133 additions and 42 deletions
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---
name: homelab-knowledge
description: Query and maintain the shared homelab-wiki when working on homelab services, infrastructure, architecture, operations, or current service status. Use it to gather existing context before work and to keep durable knowledge synchronized after relevant changes; do not use it for unrelated software work or as a substitute for commit and PR history.
---
# Homelab Knowledge
Use `homelab-wiki` as the shared long-lived knowledge base for people and agents. Search it directly with `rg`; do not introduce a search index, vector database, or generated copy of the wiki.
## Locate the wiki
Resolve the checkout in this order:
1. `$HOMELAB_WIKI_PATH`, when set.
2. A sibling directory named `homelab-wiki` next to the current repository.
3. `/home/panxiao81/homelab-wiki` when it exists.
If no checkout is available, report that constraint. Do not silently skip the knowledge step, clone a repository, or create a replacement wiki without the user's authorization.
Before using the wiki, read its `AGENTS.md` completely. For edits, also read `README.md` and `CONTRIBUTING.md` completely and follow any more specific instructions associated with the target page.
## Gather context
At the beginning of a homelab task:
1. Derive search terms from the component name, service aliases, hostnames, Kubernetes resources, configuration keys, error text, and task intent.
2. Use `rg -n -i` in the wiki to find candidate pages. Prefer several precise searches over reading the whole repository.
3. Follow the wiki's task index, service index, architecture constraints, source records, and verification conflicts when they are relevant.
4. Read the closest authoritative pages and their material links before making decisions. Also read the corresponding source repository README or runbook when changing an implementation.
5. Distinguish documented design, declared configuration, deployment history, live verification, and work currently in progress. Do not present one as another.
For questions about current project or service status, first obtain the maintainer's current-work and ticket context as required by the wiki, unless the conversation already provides that authorization and scope. Reading documentation does not authorize live-system inspection.
Answer read-only questions from the evidence found. Include paths or links that let the user verify important claims, and state when evidence may be stale or conflicting.
## Maintain knowledge after changes
For any code, configuration, infrastructure, or operational change, perform a documentation-impact check before declaring the task complete.
Update the wiki in the same task when the change affects durable knowledge such as:
- service purpose, lifecycle, entry point, authentication, permissions, dependencies, or first-use path;
- architecture boundaries or accepted constraints;
- deployment ownership or persistent operating behavior;
- troubleshooting, recovery, verification, or maintenance procedures;
- the addition, replacement, or retirement of a service.
Keep one-time progress, implementation narration, and release-by-release history in commits, PRs, or tickets. Do not copy them into the wiki unless they change a durable stage summary. Implementation-specific parameters may remain in the source repository README or runbook when the wiki convention says to link rather than duplicate them.
When editing:
1. Inspect both the source-repository diff and the wiki working tree before writing. Preserve unrelated user changes in both repositories.
2. Update the page closest to the fact first, then only the navigation, indexes, constraints, or verification records that the wiki rules require.
3. Preserve evidence metadata. Never advance `last_verified` without performing the stated live verification; ordinary review may update only fields permitted by the wiki.
4. Link related source commits, PRs, or paths when available. Clearly mark uncommitted sources and unfinished cross-repository synchronization.
5. Record conflicts rather than resolving them by assumption. Ask before live inspection or before choosing among materially conflicting current-state claims.
6. Keep credentials, tokens, private keys, Terraform state, secret values, and sensitive command output out of documentation. Never read or copy known sensitive files merely to improve the wiki.
Wiki edits are a separate repository change. Do not commit, push, open a PR, or modify a live system unless the user has authorized that action.
## Verify and report
After editing the wiki, run from its root:
```bash
python3 scripts/check_docs.py
git diff --check
```
If the checker itself changed, also run:
```bash
python3 -m unittest discover -s tests -v
```
In the final response, report source-repository changes and wiki changes separately, including validation performed and anything still awaiting verification or cross-repository linkage. If no wiki update was needed, state the concrete reason; do not merely say that documentation was unaffected.
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# This file configures golangci-lint with module plugins.
# When you run 'make lint', it will automatically build a custom golangci-lint binary
# with all the plugins listed below.
#
# See: https://golangci-lint.run/plugins/module-plugins/
version: v2.13.1
plugins:
# logcheck validates structured logging calls and parameters (e.g., balanced key-value pairs)
- module: "sigs.k8s.io/logtools"
import: "sigs.k8s.io/logtools/logcheck/gclplugin"
version: latest
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# More info: https://docs.docker.com/engine/reference/builder/#dockerignore-file
# Ignore everything by default and re-include only needed files
**
# Re-include Go source files (but not *_test.go)
# If you use Podman, re-include your source directories by name,
# such as !cmd, !api, and !internal.
# See https://github.com/containers/buildah/issues/6417
!**/*.go
**/*_test.go
# Re-include Go module files
!go.mod
!go.sum
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name: Verify
on:
pull_request:
push:
branches: [main]
jobs:
test:
runs-on: [self-hosted, pod]
steps:
- name: Checkout
uses: actions/checkout@de0fac2e4500dabe0009e67214ff5f5447ce83dd
with:
persist-credentials: false
- name: Set up Go
uses: actions/setup-go@4b73464bb391d4059bd26b0524d20df3927bd417
with:
go-version-file: go.mod
cache: true
- name: Verify generated files and tests
run: |
make test
git diff --exit-code
lint:
runs-on: [self-hosted, pod]
steps:
- name: Checkout
uses: actions/checkout@de0fac2e4500dabe0009e67214ff5f5447ce83dd
with:
persist-credentials: false
- name: Set up Go
uses: actions/setup-go@4b73464bb391d4059bd26b0524d20df3927bd417
with:
go-version-file: go.mod
cache: true
- name: Lint
run: make lint
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/bin/ /bin/
/dist/ /dist/
/coverage/ /coverage/
/cover.out
# Local configuration and credentials # Local configuration and credentials
.env .env
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version: "2"
run:
allow-parallel-runners: true
linters:
default: none
enable:
- copyloopvar
- depguard
- dupl
- errcheck
- ginkgolinter
- goconst
- gocyclo
- govet
- ineffassign
- lll
- modernize
- misspell
- nakedret
- prealloc
- revive
- staticcheck
- unconvert
- unparam
- unused
- logcheck
settings:
custom:
logcheck:
type: "module"
description: Checks Go logging calls for Kubernetes logging conventions.
depguard:
rules:
forbid-sort-pkg:
deny:
- pkg: sort
desc: Should be replaced with slices package
revive:
rules:
- name: comment-spacings
- name: import-shadowing
modernize:
disable:
- omitzero
exclusions:
generated: lax
rules:
- linters:
- lll
path: api/*
- linters:
- dupl
- lll
path: internal/*
paths:
- third_party$
- builtin$
- examples$
formatters:
enable:
- gofmt
- goimports
exclusions:
generated: lax
paths:
- third_party$
- builtin$
- examples$
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- 本仓库是 ddupan.top homelab 的内部基础设施控制平面,不以通用发行版为初期目标。 - 本仓库是 ddupan.top homelab 的内部基础设施控制平面,不以通用发行版为初期目标。
- 提交、文档和代码注释优先使用中文;公共 API 标识符和代码遵循对应语言惯例。 - 提交、文档和代码注释优先使用中文;公共 API 标识符和代码遵循对应语言惯例。
- 不要重新实现已有成熟后端的核心能力;新增实现前先确认能否通过稳定 API 进行薄适配。 - 不要重新实现已有成熟后端的核心能力;新增实现前先确认能否通过稳定 API 进行薄适配。
- 不要按传统私有云或公有云产品清单推导 Ayatori 应实现的资源。新增北向 API 前必须证明 homelab
存在真实、重复的管理缺口,现有成熟 API/IaC 不能提供足够的生命周期、状态或权限体验;“后端
能做到”或“其他云平台提供”本身不是产品需求。
- 当前已确认的首要产品方向是 Database、LoadBalancer、Bucket/Object Storage;VirtualMachine
也具有明确价值,但南向实现较重。Run/Job 是验证 controller 与 adapter 的内部执行切片,不应
自动演化为 FaaS、Cloud Run 或应用托管产品。KaaS 仅在出现真实需求时评估,不是必达终点。
- Ayatori 复用 Kubernetes 的核心目标是 API machinery:对象存储与并发控制、list/watch、
informer、RBAC、admission、版本化 API 和审计;不要据此推断 Ayatori 是 Kubernetes
workload 平台,也不要默认复用 Kubernetes 的调度与数据面语义。
- 复用 Kubernetes 内置资源只表示采用其 API contract,不表示必须运行或模拟上游实现组件。
例如 Ayatori Compute Agent 可以直接实现 `core/v1 Node` 与 Lease 的状态语义,Ayatori
controller 可以自行消费 Node;不得仅因使用 Node 推导必须引入 kubelet、Pod、CRI、
kube-scheduler 或 kube-controller-manager。对每个复用资源分别明确 producer、consumer、
ownership 与实际采用的字段语义。
- kube-apiserver 是 Ayatori 的 API 与状态协调平面,不是领域调度器。资源的调度、生命周期、
故障恢复、垃圾回收和后端收敛由 Ayatori controllers 实现;新增能力前应明确其属于 API
machinery、Ayatori 领域控制循环还是外部 backend,避免把职责放错层。
- Kubernetes、OpenSandbox、Proxmox 等均是 Ayatori 的可替换 backend/executor。除管理组件自身
的部署外,不得仅因 controller 运行在 Kubernetes 中,就把原生 Pod、Job、Service、
NetworkPolicy、owner reference 或同 namespace 行为作为领域 API 的隐含语义;需要这些能力时
必须由 adapter 契约显式表达,并考虑后端位于其他集群或完全不是 Kubernetes 的情况。
- 不要以减少自有 controller 数量为目的引入 generic-apiserver、聚合 API Server 或自行实现
API Server。只有 CRD/kube-apiserver 在存储、API 语义或扩展能力上形成已验证的阻碍时,才评估
接管 watch、RBAC、版本兼容和存储迁移等复杂度;controller 工作本身不会因此消失。
- 在自行设计通用控制循环、资源生命周期、调度、回收或故障恢复机制前,先调查 Kubernetes
核心及成熟开源 controller/operator 的实现;优先复用经过验证的模式,并记录有意偏离的
理由。
- 不要引入统一包装所有能力的 Application CRD;应用应直接组合正交的平台资源。 - 不要引入统一包装所有能力的 Application CRD;应用应直接组合正交的平台资源。
- Proxmox VM 的北向管理不能假定单一 API 覆盖完整生命周期。允许按能力组合 Proxmox API、节点
上的受限强类型 Agent/CLI 操作和 ManualTask;节点 Agent 不得退化为无版本契约的任意远程 shell。
- 所有 controller 必须考虑幂等、observe、finalizer、conditions、删除策略和恢复行为。 - 所有 controller 必须考虑幂等、observe、finalizer、conditions、删除策略和恢复行为。
- Ayatori 会联动 Kubernetes API、虚拟化、存储、网络及其他外部控制面;集成测试是功能完成
标准的一部分,不得仅凭 fake client 或 mock 测试宣告 controller、adapter 或生命周期变更完成。
- 测试应按风险分层:纯领域规则使用快速单元测试;API schema、CEL、status subresource、
watch/cache、owner reference 和 reconcile 事件链使用 envtest;需要 scheduler、kubelet、网络、
存储或真实后端行为的路径在 Dev 集群或对应后端环境执行端到端测试。
- fake client 适合穷举状态机和错误分支,但它不会完整执行 API server defaulting、validation、
resourceVersion、garbage collection 或新版 Kubernetes 约束;涉及这些语义时必须增加真实 API
server 测试。跨 adapter 的共同契约应使用同一套 contract tests,避免各实现产生语义漂移。
- 集成测试必须覆盖正常路径以及幂等重试、controller 重启、依赖稍后出现、删除/finalizer、
后端结果不确定和并发竞态等恢复路径;无法在当前层测试的部分要明确记录由哪一层验证。
- Secret、token、kubeconfig 及具体生产凭据不得提交到仓库。 - Secret、token、kubeconfig 及具体生产凭据不得提交到仓库。
- `deploy/dev/` 与 `deploy/prod/` 使用相同制品;生产版本只通过 promotion 更新。 - `deploy/dev/` 与 `deploy/prod/` 使用相同制品;生产版本只通过 promotion 更新。
- 内部专用不构成降低测试、版本、恢复、安全和可审计要求的理由。 - 内部专用不构成降低测试、版本、恢复、安全和可审计要求的理由。
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# Build the manager binary
# Override BASE_IMAGE to build from another registry, e.g. docker.io/library/golang:1.27.1
ARG BASE_IMAGE=golang:1.27.1
FROM ${BASE_IMAGE} AS builder
ARG TARGETOS
ARG TARGETARCH
WORKDIR /workspace
# Copy the Go Modules manifests
COPY go.mod go.mod
COPY go.sum go.sum
# cache deps before building and copying source so that we don't need to re-download as much
# and so that source changes don't invalidate our downloaded layer
RUN go mod download
# Copy the Go source (relies on .dockerignore to filter)
COPY . .
# Build
# the GOARCH has no default value to allow the binary to be built according to the host where the command
# was called. For example, if we call make docker-build in a local env which has the Apple Silicon M1 SO
# the docker BUILDPLATFORM arg will be linux/arm64 when for Apple x86 it will be linux/amd64. Therefore,
# by leaving it empty we can ensure that the container and binary shipped on it will have the same platform.
RUN CGO_ENABLED=0 GOOS=${TARGETOS:-linux} GOARCH=${TARGETARCH} go build -a -o manager cmd/main.go
# Use distroless as minimal base image to package the manager binary
# Refer to https://github.com/GoogleContainerTools/distroless for more details
FROM gcr.io/distroless/static:nonroot
WORKDIR /
COPY --from=builder /workspace/manager .
USER 65532:65532
ENTRYPOINT ["/manager"]
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# Image URL to use all building/pushing image targets
IMG ?= controller:latest
# YEAR defines the year value used for substituting the YEAR placeholder in the boilerplate header.
YEAR ?= $(shell date +%Y)
# Get the currently used golang install path (in GOPATH/bin, unless GOBIN is set)
ifeq (,$(shell go env GOBIN))
GOBIN=$(shell go env GOPATH)/bin
else
GOBIN=$(shell go env GOBIN)
endif
# CONTAINER_TOOL defines the container tool to be used for building images.
# Be aware that the target commands are only tested with Docker which is
# scaffolded by default. However, you might want to replace it to use other
# tools. (i.e. podman)
CONTAINER_TOOL ?= docker
# Setting SHELL to bash allows bash commands to be executed by recipes.
# Options are set to exit when a recipe line exits non-zero or a piped command fails.
SHELL = /usr/bin/env bash -o pipefail
.SHELLFLAGS = -ec
.PHONY: all
all: build
##@ General
# The help target prints out all targets with their descriptions organized
# beneath their categories. The categories are represented by '##@' and the
# target descriptions by '##'. The awk command is responsible for reading the
# entire set of makefiles included in this invocation, looking for lines of the
# file as xyz: ## something, and then pretty-format the target and help. Then,
# if there's a line with ##@ something, that gets pretty-printed as a category.
# More info on the usage of ANSI control characters for terminal formatting:
# https://en.wikipedia.org/wiki/ANSI_escape_code#SGR_parameters
# More info on the awk command:
# http://linuxcommand.org/lc3_adv_awk.php
.PHONY: help
help: ## Display this help.
@awk 'BEGIN {FS = ":.*##"; printf "\nUsage:\n make \033[36m<target>\033[0m\n"} /^[a-zA-Z_0-9-]+:.*?##/ { printf " \033[36m%-15s\033[0m %s\n", $$1, $$2 } /^##@/ { printf "\n\033[1m%s\033[0m\n", substr($$0, 5) } ' $(MAKEFILE_LIST)
##@ Development
.PHONY: manifests
manifests: controller-gen ## Generate WebhookConfiguration, ClusterRole and CustomResourceDefinition objects.
"$(CONTROLLER_GEN)" rbac:roleName=manager-role crd webhook paths="./..." output:crd:artifacts:config=config/crd/bases
.PHONY: generate
generate: controller-gen ## Generate code containing DeepCopy, DeepCopyInto, and DeepCopyObject method implementations.
"$(CONTROLLER_GEN)" object paths="./..."
.PHONY: fmt
fmt: ## Run go fmt against code.
go fmt ./...
.PHONY: vet
vet: ## Run go vet against code.
go vet ./...
.PHONY: test
test: manifests generate fmt vet setup-envtest ## Run tests.
KUBEBUILDER_ASSETS="$(shell "$(ENVTEST)" use $(ENVTEST_K8S_VERSION) --bin-dir "$(LOCALBIN)" -p path)" go test ./... -coverprofile cover.out
.PHONY: lint
lint: golangci-lint ## Run golangci-lint linter
"$(GOLANGCI_LINT)" run
.PHONY: lint-fix
lint-fix: golangci-lint ## Run golangci-lint linter and perform fixes
"$(GOLANGCI_LINT)" run --fix
.PHONY: lint-config
lint-config: golangci-lint ## Verify golangci-lint linter configuration
"$(GOLANGCI_LINT)" config verify
##@ Build
.PHONY: build
build: manifests generate fmt vet ## Build manager binary.
go build -o bin/manager cmd/main.go
.PHONY: run
run: manifests generate fmt vet ## Run a controller from your host.
go run ./cmd/main.go
# If you wish to build the manager image targeting other platforms you can use the --platform flag.
# (i.e. docker build --platform linux/arm64). However, you must enable docker buildKit for it.
# More info: https://docs.docker.com/develop/develop-images/build_enhancements/
# Override BASE_IMAGE to build from another registry, e.g.
# make docker-build IMG=<img> BASE_IMAGE=docker.io/library/golang:1.27.1
.PHONY: docker-build
docker-build: ## Build docker image with the manager.
$(CONTAINER_TOOL) build $(if $(BASE_IMAGE),--build-arg BASE_IMAGE=$(BASE_IMAGE)) -t ${IMG} .
.PHONY: docker-push
docker-push: ## Push docker image with the manager.
$(CONTAINER_TOOL) push ${IMG}
# PLATFORMS defines the target platforms for the manager image be built to provide support to multiple
# architectures. (i.e. make docker-buildx IMG=myregistry/mypoperator:0.0.1). To use this option you need to:
# - be able to use docker buildx. More info: https://docs.docker.com/build/buildx/
# - have enabled BuildKit. More info: https://docs.docker.com/develop/develop-images/build_enhancements/
# - be able to push the image to your registry (i.e. if you do not set a valid value via IMG=<myregistry/image:<tag>> then the export will fail)
# To adequately provide solutions that are compatible with multiple platforms, you should consider using this option.
PLATFORMS ?= linux/arm64,linux/amd64,linux/s390x,linux/ppc64le
.PHONY: docker-buildx
docker-buildx: ## Build and push docker image for the manager for cross-platform support
# copy existing Dockerfile and insert --platform=${BUILDPLATFORM} into Dockerfile.cross, and preserve the original Dockerfile
sed -e '1 s/\(^FROM\)/FROM --platform=\$$\{BUILDPLATFORM\}/; t' -e ' 1,// s//FROM --platform=\$$\{BUILDPLATFORM\}/' Dockerfile > Dockerfile.cross
- $(CONTAINER_TOOL) buildx create --name ayatori-builder
$(CONTAINER_TOOL) buildx use ayatori-builder
- $(CONTAINER_TOOL) buildx build --push --platform=$(PLATFORMS) $(if $(BASE_IMAGE),--build-arg BASE_IMAGE=$(BASE_IMAGE)) --tag ${IMG} -f Dockerfile.cross .
- $(CONTAINER_TOOL) buildx rm ayatori-builder
rm Dockerfile.cross
.PHONY: build-installer
build-installer: manifests generate kustomize ## Generate a consolidated YAML with CRDs and deployment.
mkdir -p dist
cd config/manager && "$(KUSTOMIZE)" edit set image controller=${IMG}
"$(KUSTOMIZE)" build config/default > dist/install.yaml
##@ Deployment
ifndef ignore-not-found
ignore-not-found = false
endif
.PHONY: install
install: manifests kustomize ## Install CRDs into the K8s cluster specified in ~/.kube/config.
@out="$$( "$(KUSTOMIZE)" build config/crd 2>/dev/null || true )"; \
if [ -n "$$out" ]; then echo "$$out" | "$(KUBECTL)" apply -f -; else echo "No CRDs to install; skipping."; fi
.PHONY: uninstall
uninstall: manifests kustomize ## Uninstall CRDs from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
@out="$$( "$(KUSTOMIZE)" build config/crd 2>/dev/null || true )"; \
if [ -n "$$out" ]; then echo "$$out" | "$(KUBECTL)" delete --ignore-not-found=$(ignore-not-found) -f -; else echo "No CRDs to delete; skipping."; fi
.PHONY: deploy
deploy: manifests kustomize ## Deploy controller to the K8s cluster specified in ~/.kube/config.
cd config/manager && "$(KUSTOMIZE)" edit set image controller=${IMG}
"$(KUSTOMIZE)" build config/default | "$(KUBECTL)" apply -f -
.PHONY: undeploy
undeploy: kustomize ## Undeploy controller from the K8s cluster specified in ~/.kube/config. Call with ignore-not-found=true to ignore resource not found errors during deletion.
"$(KUSTOMIZE)" build config/default | "$(KUBECTL)" delete --ignore-not-found=$(ignore-not-found) -f -
##@ Dependencies
## Location to install dependencies to
LOCALBIN ?= $(shell pwd)/bin
$(LOCALBIN):
mkdir -p "$(LOCALBIN)"
## Tool Binaries
KUBECTL ?= kubectl
KUSTOMIZE ?= $(LOCALBIN)/kustomize
CONTROLLER_GEN ?= $(LOCALBIN)/controller-gen
ENVTEST ?= $(LOCALBIN)/setup-envtest
GOLANGCI_LINT = $(LOCALBIN)/golangci-lint
## Tool Versions
KUSTOMIZE_VERSION ?= v5.8.1
CONTROLLER_TOOLS_VERSION ?= v0.22.0
#ENVTEST_VERSION is the controller-runtime version to use for setup-envtest, derived from go.mod
ENVTEST_VERSION ?= $(shell v='$(call gomodver,sigs.k8s.io/controller-runtime)'; \
[ -n "$$v" ] || { echo "Set ENVTEST_VERSION manually (controller-runtime replace has no tag)" >&2; exit 1; }; \
printf '%s\n' "$$v")
#ENVTEST_K8S_VERSION is the version of Kubernetes to use for setting up ENVTEST binaries (i.e. 1.31)
ENVTEST_K8S_VERSION ?= $(shell v='$(call gomodver,k8s.io/api)'; \
[ -n "$$v" ] || { echo "Set ENVTEST_K8S_VERSION manually (k8s.io/api replace has no tag)" >&2; exit 1; }; \
printf '%s\n' "$$v" | sed -E 's/^v?[0-9]+\.([0-9]+).*/1.\1/')
GOLANGCI_LINT_VERSION ?= v2.13.1
.PHONY: kustomize
kustomize: $(KUSTOMIZE) ## Download kustomize locally if necessary.
$(KUSTOMIZE): $(LOCALBIN)
$(call go-install-tool,$(KUSTOMIZE),sigs.k8s.io/kustomize/kustomize/v5,$(KUSTOMIZE_VERSION))
.PHONY: controller-gen
controller-gen: $(CONTROLLER_GEN) ## Download controller-gen locally if necessary.
$(CONTROLLER_GEN): $(LOCALBIN)
$(call go-install-tool,$(CONTROLLER_GEN),sigs.k8s.io/controller-tools/cmd/controller-gen,$(CONTROLLER_TOOLS_VERSION))
.PHONY: setup-envtest
setup-envtest: envtest ## Download the binaries required for ENVTEST in the local bin directory.
@echo "Setting up envtest binaries for Kubernetes version $(ENVTEST_K8S_VERSION)..."
@"$(ENVTEST)" use $(ENVTEST_K8S_VERSION) --bin-dir "$(LOCALBIN)" -p path || { \
echo "Error: Failed to set up envtest binaries for version $(ENVTEST_K8S_VERSION)."; \
exit 1; \
}
.PHONY: envtest
envtest: $(ENVTEST) ## Download setup-envtest locally if necessary.
$(ENVTEST): $(LOCALBIN)
$(call go-install-tool,$(ENVTEST),sigs.k8s.io/controller-runtime/tools/setup-envtest,$(ENVTEST_VERSION))
.PHONY: golangci-lint
golangci-lint: $(GOLANGCI_LINT) ## Download golangci-lint locally if necessary.
$(GOLANGCI_LINT): $(LOCALBIN)
$(call go-install-tool,$(GOLANGCI_LINT),github.com/golangci/golangci-lint/v2/cmd/golangci-lint,$(GOLANGCI_LINT_VERSION))
@test -f .custom-gcl.yml && { \
echo "Building custom golangci-lint with plugins..." && \
$(GOLANGCI_LINT) custom --destination $(LOCALBIN) --name golangci-lint-custom && \
mv -f $(LOCALBIN)/golangci-lint-custom $(GOLANGCI_LINT); \
} || true
# go-install-tool will 'go install' any package with custom target and name of binary, if it doesn't exist
# $1 - target path with name of binary
# $2 - package url which can be installed
# $3 - specific version of package
define go-install-tool
@[ -f "$(1)-$(3)" ] && [ "$$(readlink -- "$(1)" 2>/dev/null)" = "$(1)-$(3)" ] || { \
set -e; \
package=$(2)@$(3) ;\
echo "Downloading $${package}" ;\
rm -f "$(1)" ;\
GOBIN="$(LOCALBIN)" go install $${package} ;\
mv "$(LOCALBIN)/$$(basename "$(1)")" "$(1)-$(3)" ;\
} ;\
ln -sf "$$(realpath "$(1)-$(3)")" "$(1)"
endef
define gomodver
$(shell go list -m -f '{{if .Replace}}{{.Replace.Version}}{{else}}{{.Version}}{{end}}' $(1) 2>/dev/null)
endef
+42
View File
@@ -0,0 +1,42 @@
# Code generated by tool. DO NOT EDIT.
# This file is used to track the info used to scaffold your project
# and allow the plugins properly work.
# More info: https://book.kubebuilder.io/reference/project-config.html
cliVersion: 4.16.0
domain: ayatori.ddupan.top
layout:
- go.kubebuilder.io/v4
multigroup: true
projectName: ayatori
repo: git.ddupan.top/panxiao81/ayatori
resources:
- api:
crdVersion: v1
namespaced: true
domain: ayatori.ddupan.top
group: execution
kind: Job
path: git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1
version: v1alpha1
- api:
crdVersion: v1
domain: ayatori.ddupan.top
group: execution
kind: JobClass
path: git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1
version: v1alpha1
- api:
crdVersion: v1
domain: ayatori.ddupan.top
group: execution
kind: KubernetesExecutionParameters
path: git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1
version: v1alpha1
- api:
crdVersion: v1
domain: ayatori.ddupan.top
group: execution
kind: OpenSandboxExecutionParameters
path: git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1
version: v1alpha1
version: "3"
+7 -3
View File
@@ -28,11 +28,15 @@ Ayatori 是 `ddupan.top` homelab 的内部基础设施控制平面。它以 Kube
- [执行模型](docs/concepts/execution-model.md) - [执行模型](docs/concepts/execution-model.md)
- [环境与发布](docs/concepts/environments.md) - [环境与发布](docs/concepts/environments.md)
- [路线图](docs/roadmap.md) - [路线图](docs/roadmap.md)
- [ADR-0001:采用 Kubernetes API 作为资源模型](docs/decisions/0001-kubernetes-api-machinery.md) - [ADR-0001:采用 Kubernetes API machinery 作为状态协调平面](docs/decisions/0001-kubernetes-api-machinery.md)
- [ADR-0002:采用 k0s 与可选工作负载运行时](docs/decisions/0002-k0s-optional-workload-runtime.md) - [ADR-0002:采用 k0s 与可选工作负载运行时](docs/decisions/0002-k0s-optional-workload-runtime.md)
- [ADR-0003:直接连接 Dev API 的开发循环](docs/decisions/0003-dev-api-development-loop.md) - [ADR-0003:直接连接 Dev API 的开发循环](docs/decisions/0003-dev-api-development-loop.md)
- [ADR-0006:按实际管理缺口扩展资源 API](docs/decisions/0006-demand-driven-resource-scope.md)
- [ADR-0007:复用 Node API 建立按需实现的 Compute 能力](docs/decisions/0007-compute-node-and-vm-boundary.md)
- [ADR-0008:将 PostgreSQL Tenant Operator 合并为 Ayatori Database 模块](docs/decisions/0008-merge-postgresql-tenant-operator.md)
## 当前状态 ## 当前状态
Ayatori 处于设计与早期实现阶段。第一个纵向切片计划是统一 Job API 与 Kubernetes Ayatori 处于设计与早期实现阶段。当前使用 Job controller 验证第一个完整控制循环与 adapter
Pod executor,随后接入 OpenSandbox executor。 边界;它不是通用 Job Service 或 FaaS 产品承诺。首批实际产品方向是 Database、LoadBalancer
和 Bucket/Object Storage,具体顺序按纵向价值决定。
@@ -0,0 +1,28 @@
// Package v1alpha1 contains API Schema definitions for the execution v1alpha1 API group.
// +kubebuilder:object:generate=true
// +groupName=execution.ayatori.ddupan.top
package v1alpha1
import (
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
"k8s.io/apimachinery/pkg/runtime/schema"
)
var (
// SchemeGroupVersion is group version used to register these objects.
// This name is used by applyconfiguration generators (e.g. controller-gen).
SchemeGroupVersion = schema.GroupVersion{Group: "execution.ayatori.ddupan.top", Version: "v1alpha1"}
// GroupVersion is an alias for SchemeGroupVersion, for backward compatibility.
GroupVersion = SchemeGroupVersion
// SchemeBuilder is used to add go types to the GroupVersionKind scheme.
SchemeBuilder = runtime.NewSchemeBuilder(func(scheme *runtime.Scheme) error {
metav1.AddToGroupVersion(scheme, SchemeGroupVersion)
return nil
})
// AddToScheme adds the types in this group-version to the given scheme.
AddToScheme = SchemeBuilder.AddToScheme
)
+180
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@@ -0,0 +1,180 @@
package v1alpha1
import (
corev1 "k8s.io/api/core/v1"
"k8s.io/apimachinery/pkg/api/resource"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
"k8s.io/apimachinery/pkg/types"
)
const (
JobConditionAccepted = "Accepted"
JobConditionScheduled = "Scheduled"
JobConditionSucceeded = "Succeeded"
)
type JobDesiredState string
const (
JobDesiredStateRunning JobDesiredState = "Running"
JobDesiredStateCancelled JobDesiredState = "Cancelled"
)
type TaskSpec struct {
// +kubebuilder:validation:MinLength=1
Image string `json:"image"`
// +optional
ImagePullSecrets []corev1.LocalObjectReference `json:"imagePullSecrets,omitempty"`
// +optional
Command []string `json:"command,omitempty"`
// +optional
Args []string `json:"args,omitempty"`
// +optional
WorkingDir string `json:"workingDir,omitempty"`
// +listType=map
// +listMapKey=name
// +optional
Env []EnvVar `json:"env,omitempty"`
}
// +kubebuilder:validation:XValidation:rule="has(self.value) != has(self.valueFrom)",message="exactly one of value or valueFrom must be set"
type EnvVar struct {
// +kubebuilder:validation:Pattern=`^[A-Za-z_][A-Za-z0-9_]*$`
Name string `json:"name"`
// +optional
Value *string `json:"value,omitempty"`
// +optional
ValueFrom *EnvVarSource `json:"valueFrom,omitempty"`
}
// +kubebuilder:validation:XValidation:rule="has(self.secretKeyRef) != has(self.configMapKeyRef)",message="exactly one key reference must be set"
type EnvVarSource struct {
// +optional
SecretKeyRef *corev1.SecretKeySelector `json:"secretKeyRef,omitempty"`
// +optional
ConfigMapKeyRef *corev1.ConfigMapKeySelector `json:"configMapKeyRef,omitempty"`
}
type ResourceValues struct {
// +optional
CPU *resource.Quantity `json:"cpu,omitempty"`
// +optional
Memory *resource.Quantity `json:"memory,omitempty"`
}
type ExecutionResourceRequirements struct {
// +optional
Requests ResourceValues `json:"requests,omitempty"`
// +optional
Limits ResourceValues `json:"limits,omitempty"`
}
// +kubebuilder:validation:XValidation:rule="self.task == oldSelf.task",message="task is immutable"
// +kubebuilder:validation:XValidation:rule="self.resources == oldSelf.resources",message="resources are immutable"
// +kubebuilder:validation:XValidation:rule="has(self.activeDeadlineSeconds) == has(oldSelf.activeDeadlineSeconds) && (!has(self.activeDeadlineSeconds) || self.activeDeadlineSeconds == oldSelf.activeDeadlineSeconds)",message="activeDeadlineSeconds is immutable"
// +kubebuilder:validation:XValidation:rule="has(self.jobClassName) == has(oldSelf.jobClassName) && (!has(self.jobClassName) || self.jobClassName == oldSelf.jobClassName)",message="jobClassName is immutable"
// +kubebuilder:validation:XValidation:rule="oldSelf.desiredState == self.desiredState || (oldSelf.desiredState == 'Running' && self.desiredState == 'Cancelled')",message="desiredState may only transition from Running to Cancelled"
type JobSpec struct {
// +optional
JobClassName string `json:"jobClassName,omitempty"`
Task TaskSpec `json:"task"`
// +optional
Resources ExecutionResourceRequirements `json:"resources,omitempty"`
// +kubebuilder:validation:Minimum=1
// +optional
ActiveDeadlineSeconds *int64 `json:"activeDeadlineSeconds,omitempty"`
// +kubebuilder:validation:Minimum=0
// +optional
TTLSecondsAfterFinished *int32 `json:"ttlSecondsAfterFinished,omitempty"`
// +kubebuilder:validation:Enum=Running;Cancelled
// +kubebuilder:default=Running
// +optional
DesiredState JobDesiredState `json:"desiredState,omitempty"`
}
type ParametersReference struct {
Group string `json:"group"`
Kind string `json:"kind"`
Name string `json:"name"`
// +optional
UID types.UID `json:"uid,omitempty"`
}
type ResolvedJobClassReference struct {
Name string `json:"name"`
UID types.UID `json:"uid"`
ControllerName string `json:"controllerName"`
ParametersRef ParametersReference `json:"parametersRef"`
}
type ExecutionReference struct {
// +kubebuilder:validation:MinLength=1
Type string `json:"type"`
// +kubebuilder:validation:MinLength=1
ID string `json:"id"`
}
type ExecutionStatus struct {
Adapter string `json:"adapter"`
// +listType=map
// +listMapKey=type
// +optional
References []ExecutionReference `json:"references,omitempty"`
}
type JobResult struct {
// +optional
ExitCode *int32 `json:"exitCode,omitempty"`
// +optional
Reason string `json:"reason,omitempty"`
}
type JobStatus struct {
// +optional
ObservedGeneration int64 `json:"observedGeneration,omitempty"`
// +listType=map
// +listMapKey=type
// +optional
Conditions []metav1.Condition `json:"conditions,omitempty"`
// +optional
ResolvedJobClass *ResolvedJobClassReference `json:"resolvedJobClass,omitempty"`
// +optional
EffectiveResources ExecutionResourceRequirements `json:"effectiveResources,omitempty"`
// +optional
Execution *ExecutionStatus `json:"execution,omitempty"`
// +optional
StartTime *metav1.Time `json:"startTime,omitempty"`
// +optional
CompletionTime *metav1.Time `json:"completionTime,omitempty"`
// +optional
Result *JobResult `json:"result,omitempty"`
}
// +kubebuilder:object:root=true
// +kubebuilder:subresource:status
// +kubebuilder:printcolumn:name="Accepted",type=string,JSONPath=`.status.conditions[?(@.type=='Accepted')].status`
// +kubebuilder:printcolumn:name="Scheduled",type=string,JSONPath=`.status.conditions[?(@.type=='Scheduled')].status`
// +kubebuilder:printcolumn:name="Succeeded",type=string,JSONPath=`.status.conditions[?(@.type=='Succeeded')].status`
// +kubebuilder:printcolumn:name="Age",type=date,JSONPath=`.metadata.creationTimestamp`
type Job struct {
metav1.TypeMeta `json:",inline"`
metav1.ObjectMeta `json:"metadata,omitzero"`
Spec JobSpec `json:"spec"`
// +optional
Status JobStatus `json:"status,omitzero"`
}
// +kubebuilder:object:root=true
type JobList struct {
metav1.TypeMeta `json:",inline"`
metav1.ListMeta `json:"metadata,omitzero"`
Items []Job `json:"items"`
}
func init() {
SchemeBuilder.Register(func(s *runtime.Scheme) error {
s.AddKnownTypes(SchemeGroupVersion, &Job{}, &JobList{})
return nil
})
}
+71
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@@ -0,0 +1,71 @@
package v1alpha1
import (
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
)
const (
JobClassConditionAccepted = "Accepted"
JobClassConditionReady = "Ready"
)
type ExecutionResourcePolicy struct {
// +optional
Defaults ExecutionResourceRequirements `json:"defaults,omitempty"`
// +optional
Minimum ExecutionResourceRequirements `json:"minimum,omitempty"`
// +optional
Maximum ExecutionResourceRequirements `json:"maximum,omitempty"`
}
// +kubebuilder:validation:XValidation:rule="self.controllerName == oldSelf.controllerName",message="controllerName is immutable"
// +kubebuilder:validation:XValidation:rule="self.parametersRef == oldSelf.parametersRef",message="parametersRef is immutable"
type JobClassSpec struct {
// +kubebuilder:validation:MinLength=1
// +kubebuilder:validation:MaxLength=253
ControllerName string `json:"controllerName"`
ParametersRef ParametersReference `json:"parametersRef"`
// +optional
AllowedNamespaces *metav1.LabelSelector `json:"allowedNamespaces,omitempty"`
// +optional
Resources ExecutionResourcePolicy `json:"resources,omitempty"`
}
type JobClassStatus struct {
// +optional
ObservedGeneration int64 `json:"observedGeneration,omitempty"`
// +listType=map
// +listMapKey=type
// +optional
Conditions []metav1.Condition `json:"conditions,omitempty"`
}
// +kubebuilder:object:root=true
// +kubebuilder:subresource:status
// +kubebuilder:resource:scope=Cluster
// +kubebuilder:printcolumn:name="Controller",type=string,JSONPath=`.spec.controllerName`
// +kubebuilder:printcolumn:name="Accepted",type=string,JSONPath=`.status.conditions[?(@.type=='Accepted')].status`
// +kubebuilder:printcolumn:name="Ready",type=string,JSONPath=`.status.conditions[?(@.type=='Ready')].status`
// +kubebuilder:printcolumn:name="Age",type=date,JSONPath=`.metadata.creationTimestamp`
type JobClass struct {
metav1.TypeMeta `json:",inline"`
metav1.ObjectMeta `json:"metadata,omitzero"`
Spec JobClassSpec `json:"spec"`
// +optional
Status JobClassStatus `json:"status,omitzero"`
}
// +kubebuilder:object:root=true
type JobClassList struct {
metav1.TypeMeta `json:",inline"`
metav1.ListMeta `json:"metadata,omitzero"`
Items []JobClass `json:"items"`
}
func init() {
SchemeBuilder.Register(func(s *runtime.Scheme) error {
s.AddKnownTypes(SchemeGroupVersion, &JobClass{}, &JobClassList{})
return nil
})
}
@@ -0,0 +1,51 @@
package v1alpha1
import (
corev1 "k8s.io/api/core/v1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
)
type KubernetesSchedulingParameters struct {
// +optional
NodeSelector map[string]string `json:"nodeSelector,omitempty"`
// +optional
Tolerations []corev1.Toleration `json:"tolerations,omitempty"`
}
type KubernetesExecutionParametersSpec struct {
// +kubebuilder:validation:MinLength=1
ServiceAccountName string `json:"serviceAccountName"`
// +optional
RuntimeClassName string `json:"runtimeClassName,omitempty"`
// +optional
Scheduling KubernetesSchedulingParameters `json:"scheduling,omitempty"`
// +optional
PodSecurityContext *corev1.PodSecurityContext `json:"podSecurityContext,omitempty"`
// +kubebuilder:validation:Enum=Always;Never;IfNotPresent
// +kubebuilder:default=IfNotPresent
// +optional
ImagePullPolicy corev1.PullPolicy `json:"imagePullPolicy,omitempty"`
}
// +kubebuilder:object:root=true
// +kubebuilder:resource:scope=Cluster
type KubernetesExecutionParameters struct {
metav1.TypeMeta `json:",inline"`
metav1.ObjectMeta `json:"metadata,omitzero"`
Spec KubernetesExecutionParametersSpec `json:"spec"`
}
// +kubebuilder:object:root=true
type KubernetesExecutionParametersList struct {
metav1.TypeMeta `json:",inline"`
metav1.ListMeta `json:"metadata,omitzero"`
Items []KubernetesExecutionParameters `json:"items"`
}
func init() {
SchemeBuilder.Register(func(s *runtime.Scheme) error {
s.AddKnownTypes(SchemeGroupVersion, &KubernetesExecutionParameters{}, &KubernetesExecutionParametersList{})
return nil
})
}
@@ -0,0 +1,61 @@
package v1alpha1
import (
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
)
type NamespacedKeyReference struct {
Namespace string `json:"namespace"`
Name string `json:"name"`
Key string `json:"key"`
}
type OpenSandboxRequestMapping string
const (
OpenSandboxRequestMappingAdmissionOnly OpenSandboxRequestMapping = "AdmissionOnly"
OpenSandboxRequestMappingNative OpenSandboxRequestMapping = "Native"
)
// +kubebuilder:validation:XValidation:rule="self.allowInsecureHTTP || self.endpoint.startsWith('https://')",message="endpoint must use HTTPS unless allowInsecureHTTP is true"
type OpenSandboxExecutionParametersSpec struct {
// +kubebuilder:validation:MinLength=1
Endpoint string `json:"endpoint"`
APIKeySecretRef NamespacedKeyReference `json:"apiKeySecretRef"`
// +optional
PoolRef string `json:"poolRef,omitempty"`
// +kubebuilder:validation:Enum=AdmissionOnly;Native
// +kubebuilder:default=AdmissionOnly
// +optional
RequestMapping OpenSandboxRequestMapping `json:"requestMapping,omitempty"`
// +optional
AllowSecretEnv bool `json:"allowSecretEnv,omitempty"`
// +optional
AllowImageAuth bool `json:"allowImageAuth,omitempty"`
// AllowInsecureHTTP is intended for isolated development environments only.
// +optional
AllowInsecureHTTP bool `json:"allowInsecureHTTP,omitempty"`
}
// +kubebuilder:object:root=true
// +kubebuilder:resource:scope=Cluster
type OpenSandboxExecutionParameters struct {
metav1.TypeMeta `json:",inline"`
metav1.ObjectMeta `json:"metadata,omitzero"`
Spec OpenSandboxExecutionParametersSpec `json:"spec"`
}
// +kubebuilder:object:root=true
type OpenSandboxExecutionParametersList struct {
metav1.TypeMeta `json:",inline"`
metav1.ListMeta `json:"metadata,omitzero"`
Items []OpenSandboxExecutionParameters `json:"items"`
}
func init() {
SchemeBuilder.Register(func(s *runtime.Scheme) error {
s.AddKnownTypes(SchemeGroupVersion, &OpenSandboxExecutionParameters{}, &OpenSandboxExecutionParametersList{})
return nil
})
}
+118
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@@ -0,0 +1,118 @@
package v1alpha1_test
import (
"context"
"os"
"path/filepath"
"testing"
executionv1alpha1 "git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1"
corev1 "k8s.io/api/core/v1"
apierrors "k8s.io/apimachinery/pkg/api/errors"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
ctrlclient "sigs.k8s.io/controller-runtime/pkg/client"
"sigs.k8s.io/controller-runtime/pkg/envtest"
)
func TestJobCRDValidation(t *testing.T) {
if os.Getenv("KUBEBUILDER_ASSETS") == "" {
t.Skip("KUBEBUILDER_ASSETS is unset; run make test to execute API integration tests")
}
scheme := runtime.NewScheme()
if err := executionv1alpha1.AddToScheme(scheme); err != nil {
t.Fatal(err)
}
if err := corev1.AddToScheme(scheme); err != nil {
t.Fatal(err)
}
crdPath, err := filepath.Abs("../../../config/crd/bases")
if err != nil {
t.Fatal(err)
}
environment := &envtest.Environment{CRDDirectoryPaths: []string{crdPath}}
config, err := environment.Start()
if err != nil {
t.Fatalf("start envtest: %v", err)
}
t.Cleanup(func() {
if err := environment.Stop(); err != nil {
t.Errorf("stop envtest: %v", err)
}
})
client, err := ctrlclient.New(config, ctrlclient.Options{Scheme: scheme})
if err != nil {
t.Fatal(err)
}
ctx := context.Background()
//nolint:modernize // ObjectMeta is promoted through embedded TypeMeta; embedlit produces invalid Go here.
namespace := &corev1.Namespace{ObjectMeta: metav1.ObjectMeta{Name: "api-validation"}}
if err := client.Create(ctx, namespace); err != nil {
t.Fatal(err)
}
t.Run("defaults desired state", func(t *testing.T) {
job := validJob("defaults")
if err := client.Create(ctx, job); err != nil {
t.Fatal(err)
}
if job.Spec.DesiredState != executionv1alpha1.JobDesiredStateRunning {
t.Fatalf("desiredState = %q, want Running", job.Spec.DesiredState)
}
})
t.Run("rejects ambiguous environment value", func(t *testing.T) {
literal := "visible"
job := validJob("invalid-env")
job.Spec.Task.Env = []executionv1alpha1.EnvVar{{
Name: "TOKEN",
Value: &literal,
ValueFrom: &executionv1alpha1.EnvVarSource{
//nolint:modernize // LocalObjectReference is an embedded Kubernetes API field.
SecretKeyRef: &corev1.SecretKeySelector{LocalObjectReference: corev1.LocalObjectReference{Name: "token"}, Key: "value"},
},
}}
if err := client.Create(ctx, job); !apierrors.IsInvalid(err) {
t.Fatalf("Create() error = %v, want Invalid", err)
}
})
t.Run("rejects immutable task update", func(t *testing.T) {
job := validJob("immutable")
if err := client.Create(ctx, job); err != nil {
t.Fatal(err)
}
job.Spec.Task.Image = "docker.io/library/busybox:1.37"
if err := client.Update(ctx, job); !apierrors.IsInvalid(err) {
t.Fatalf("Update() error = %v, want Invalid", err)
}
})
t.Run("allows one-way cancellation", func(t *testing.T) {
job := validJob("cancel")
if err := client.Create(ctx, job); err != nil {
t.Fatal(err)
}
job.Spec.DesiredState = executionv1alpha1.JobDesiredStateCancelled
if err := client.Update(ctx, job); err != nil {
t.Fatalf("cancel update: %v", err)
}
job.Spec.DesiredState = executionv1alpha1.JobDesiredStateRunning
if err := client.Update(ctx, job); !apierrors.IsInvalid(err) {
t.Fatalf("reverse cancellation error = %v, want Invalid", err)
}
})
}
func validJob(name string) *executionv1alpha1.Job {
//nolint:modernize // ObjectMeta is promoted through embedded TypeMeta; embedlit produces invalid Go here.
return &executionv1alpha1.Job{
ObjectMeta: metav1.ObjectMeta{Name: name, Namespace: "api-validation"},
Spec: executionv1alpha1.JobSpec{
Task: executionv1alpha1.TaskSpec{Image: "docker.io/library/alpine:3.22"},
},
}
}
@@ -0,0 +1,676 @@
//go:build !ignore_autogenerated
// Code generated by controller-gen. DO NOT EDIT.
package v1alpha1
import (
"k8s.io/api/core/v1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
"k8s.io/apimachinery/pkg/runtime"
)
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *EnvVar) DeepCopyInto(out *EnvVar) {
*out = *in
if in.Value != nil {
in, out := &in.Value, &out.Value
*out = new(string)
**out = **in
}
if in.ValueFrom != nil {
in, out := &in.ValueFrom, &out.ValueFrom
*out = new(EnvVarSource)
(*in).DeepCopyInto(*out)
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new EnvVar.
func (in *EnvVar) DeepCopy() *EnvVar {
if in == nil {
return nil
}
out := new(EnvVar)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *EnvVarSource) DeepCopyInto(out *EnvVarSource) {
*out = *in
if in.SecretKeyRef != nil {
in, out := &in.SecretKeyRef, &out.SecretKeyRef
*out = new(v1.SecretKeySelector)
(*in).DeepCopyInto(*out)
}
if in.ConfigMapKeyRef != nil {
in, out := &in.ConfigMapKeyRef, &out.ConfigMapKeyRef
*out = new(v1.ConfigMapKeySelector)
(*in).DeepCopyInto(*out)
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new EnvVarSource.
func (in *EnvVarSource) DeepCopy() *EnvVarSource {
if in == nil {
return nil
}
out := new(EnvVarSource)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ExecutionReference) DeepCopyInto(out *ExecutionReference) {
*out = *in
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ExecutionReference.
func (in *ExecutionReference) DeepCopy() *ExecutionReference {
if in == nil {
return nil
}
out := new(ExecutionReference)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ExecutionResourcePolicy) DeepCopyInto(out *ExecutionResourcePolicy) {
*out = *in
in.Defaults.DeepCopyInto(&out.Defaults)
in.Minimum.DeepCopyInto(&out.Minimum)
in.Maximum.DeepCopyInto(&out.Maximum)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ExecutionResourcePolicy.
func (in *ExecutionResourcePolicy) DeepCopy() *ExecutionResourcePolicy {
if in == nil {
return nil
}
out := new(ExecutionResourcePolicy)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ExecutionResourceRequirements) DeepCopyInto(out *ExecutionResourceRequirements) {
*out = *in
in.Requests.DeepCopyInto(&out.Requests)
in.Limits.DeepCopyInto(&out.Limits)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ExecutionResourceRequirements.
func (in *ExecutionResourceRequirements) DeepCopy() *ExecutionResourceRequirements {
if in == nil {
return nil
}
out := new(ExecutionResourceRequirements)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ExecutionStatus) DeepCopyInto(out *ExecutionStatus) {
*out = *in
if in.References != nil {
in, out := &in.References, &out.References
*out = make([]ExecutionReference, len(*in))
copy(*out, *in)
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ExecutionStatus.
func (in *ExecutionStatus) DeepCopy() *ExecutionStatus {
if in == nil {
return nil
}
out := new(ExecutionStatus)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *Job) DeepCopyInto(out *Job) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ObjectMeta.DeepCopyInto(&out.ObjectMeta)
in.Spec.DeepCopyInto(&out.Spec)
in.Status.DeepCopyInto(&out.Status)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new Job.
func (in *Job) DeepCopy() *Job {
if in == nil {
return nil
}
out := new(Job)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *Job) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobClass) DeepCopyInto(out *JobClass) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ObjectMeta.DeepCopyInto(&out.ObjectMeta)
in.Spec.DeepCopyInto(&out.Spec)
in.Status.DeepCopyInto(&out.Status)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobClass.
func (in *JobClass) DeepCopy() *JobClass {
if in == nil {
return nil
}
out := new(JobClass)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *JobClass) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobClassList) DeepCopyInto(out *JobClassList) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ListMeta.DeepCopyInto(&out.ListMeta)
if in.Items != nil {
in, out := &in.Items, &out.Items
*out = make([]JobClass, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobClassList.
func (in *JobClassList) DeepCopy() *JobClassList {
if in == nil {
return nil
}
out := new(JobClassList)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *JobClassList) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobClassSpec) DeepCopyInto(out *JobClassSpec) {
*out = *in
out.ParametersRef = in.ParametersRef
if in.AllowedNamespaces != nil {
in, out := &in.AllowedNamespaces, &out.AllowedNamespaces
*out = new(metav1.LabelSelector)
(*in).DeepCopyInto(*out)
}
in.Resources.DeepCopyInto(&out.Resources)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobClassSpec.
func (in *JobClassSpec) DeepCopy() *JobClassSpec {
if in == nil {
return nil
}
out := new(JobClassSpec)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobClassStatus) DeepCopyInto(out *JobClassStatus) {
*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])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobClassStatus.
func (in *JobClassStatus) DeepCopy() *JobClassStatus {
if in == nil {
return nil
}
out := new(JobClassStatus)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobList) DeepCopyInto(out *JobList) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ListMeta.DeepCopyInto(&out.ListMeta)
if in.Items != nil {
in, out := &in.Items, &out.Items
*out = make([]Job, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobList.
func (in *JobList) DeepCopy() *JobList {
if in == nil {
return nil
}
out := new(JobList)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *JobList) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobResult) DeepCopyInto(out *JobResult) {
*out = *in
if in.ExitCode != nil {
in, out := &in.ExitCode, &out.ExitCode
*out = new(int32)
**out = **in
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobResult.
func (in *JobResult) DeepCopy() *JobResult {
if in == nil {
return nil
}
out := new(JobResult)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobSpec) DeepCopyInto(out *JobSpec) {
*out = *in
in.Task.DeepCopyInto(&out.Task)
in.Resources.DeepCopyInto(&out.Resources)
if in.ActiveDeadlineSeconds != nil {
in, out := &in.ActiveDeadlineSeconds, &out.ActiveDeadlineSeconds
*out = new(int64)
**out = **in
}
if in.TTLSecondsAfterFinished != nil {
in, out := &in.TTLSecondsAfterFinished, &out.TTLSecondsAfterFinished
*out = new(int32)
**out = **in
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobSpec.
func (in *JobSpec) DeepCopy() *JobSpec {
if in == nil {
return nil
}
out := new(JobSpec)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *JobStatus) DeepCopyInto(out *JobStatus) {
*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])
}
}
if in.ResolvedJobClass != nil {
in, out := &in.ResolvedJobClass, &out.ResolvedJobClass
*out = new(ResolvedJobClassReference)
**out = **in
}
in.EffectiveResources.DeepCopyInto(&out.EffectiveResources)
if in.Execution != nil {
in, out := &in.Execution, &out.Execution
*out = new(ExecutionStatus)
(*in).DeepCopyInto(*out)
}
if in.StartTime != nil {
in, out := &in.StartTime, &out.StartTime
*out = (*in).DeepCopy()
}
if in.CompletionTime != nil {
in, out := &in.CompletionTime, &out.CompletionTime
*out = (*in).DeepCopy()
}
if in.Result != nil {
in, out := &in.Result, &out.Result
*out = new(JobResult)
(*in).DeepCopyInto(*out)
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new JobStatus.
func (in *JobStatus) DeepCopy() *JobStatus {
if in == nil {
return nil
}
out := new(JobStatus)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *KubernetesExecutionParameters) DeepCopyInto(out *KubernetesExecutionParameters) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ObjectMeta.DeepCopyInto(&out.ObjectMeta)
in.Spec.DeepCopyInto(&out.Spec)
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new KubernetesExecutionParameters.
func (in *KubernetesExecutionParameters) DeepCopy() *KubernetesExecutionParameters {
if in == nil {
return nil
}
out := new(KubernetesExecutionParameters)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *KubernetesExecutionParameters) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *KubernetesExecutionParametersList) DeepCopyInto(out *KubernetesExecutionParametersList) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ListMeta.DeepCopyInto(&out.ListMeta)
if in.Items != nil {
in, out := &in.Items, &out.Items
*out = make([]KubernetesExecutionParameters, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new KubernetesExecutionParametersList.
func (in *KubernetesExecutionParametersList) DeepCopy() *KubernetesExecutionParametersList {
if in == nil {
return nil
}
out := new(KubernetesExecutionParametersList)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *KubernetesExecutionParametersList) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *KubernetesExecutionParametersSpec) DeepCopyInto(out *KubernetesExecutionParametersSpec) {
*out = *in
in.Scheduling.DeepCopyInto(&out.Scheduling)
if in.PodSecurityContext != nil {
in, out := &in.PodSecurityContext, &out.PodSecurityContext
*out = new(v1.PodSecurityContext)
(*in).DeepCopyInto(*out)
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new KubernetesExecutionParametersSpec.
func (in *KubernetesExecutionParametersSpec) DeepCopy() *KubernetesExecutionParametersSpec {
if in == nil {
return nil
}
out := new(KubernetesExecutionParametersSpec)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *KubernetesSchedulingParameters) DeepCopyInto(out *KubernetesSchedulingParameters) {
*out = *in
if in.NodeSelector != nil {
in, out := &in.NodeSelector, &out.NodeSelector
*out = make(map[string]string, len(*in))
for key, val := range *in {
(*out)[key] = val
}
}
if in.Tolerations != nil {
in, out := &in.Tolerations, &out.Tolerations
*out = make([]v1.Toleration, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new KubernetesSchedulingParameters.
func (in *KubernetesSchedulingParameters) DeepCopy() *KubernetesSchedulingParameters {
if in == nil {
return nil
}
out := new(KubernetesSchedulingParameters)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *NamespacedKeyReference) DeepCopyInto(out *NamespacedKeyReference) {
*out = *in
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new NamespacedKeyReference.
func (in *NamespacedKeyReference) DeepCopy() *NamespacedKeyReference {
if in == nil {
return nil
}
out := new(NamespacedKeyReference)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *OpenSandboxExecutionParameters) DeepCopyInto(out *OpenSandboxExecutionParameters) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ObjectMeta.DeepCopyInto(&out.ObjectMeta)
out.Spec = in.Spec
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new OpenSandboxExecutionParameters.
func (in *OpenSandboxExecutionParameters) DeepCopy() *OpenSandboxExecutionParameters {
if in == nil {
return nil
}
out := new(OpenSandboxExecutionParameters)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *OpenSandboxExecutionParameters) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *OpenSandboxExecutionParametersList) DeepCopyInto(out *OpenSandboxExecutionParametersList) {
*out = *in
out.TypeMeta = in.TypeMeta
in.ListMeta.DeepCopyInto(&out.ListMeta)
if in.Items != nil {
in, out := &in.Items, &out.Items
*out = make([]OpenSandboxExecutionParameters, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new OpenSandboxExecutionParametersList.
func (in *OpenSandboxExecutionParametersList) DeepCopy() *OpenSandboxExecutionParametersList {
if in == nil {
return nil
}
out := new(OpenSandboxExecutionParametersList)
in.DeepCopyInto(out)
return out
}
// DeepCopyObject is an autogenerated deepcopy function, copying the receiver, creating a new runtime.Object.
func (in *OpenSandboxExecutionParametersList) DeepCopyObject() runtime.Object {
if c := in.DeepCopy(); c != nil {
return c
}
return nil
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *OpenSandboxExecutionParametersSpec) DeepCopyInto(out *OpenSandboxExecutionParametersSpec) {
*out = *in
out.APIKeySecretRef = in.APIKeySecretRef
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new OpenSandboxExecutionParametersSpec.
func (in *OpenSandboxExecutionParametersSpec) DeepCopy() *OpenSandboxExecutionParametersSpec {
if in == nil {
return nil
}
out := new(OpenSandboxExecutionParametersSpec)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ParametersReference) DeepCopyInto(out *ParametersReference) {
*out = *in
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ParametersReference.
func (in *ParametersReference) DeepCopy() *ParametersReference {
if in == nil {
return nil
}
out := new(ParametersReference)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ResolvedJobClassReference) DeepCopyInto(out *ResolvedJobClassReference) {
*out = *in
out.ParametersRef = in.ParametersRef
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ResolvedJobClassReference.
func (in *ResolvedJobClassReference) DeepCopy() *ResolvedJobClassReference {
if in == nil {
return nil
}
out := new(ResolvedJobClassReference)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *ResourceValues) DeepCopyInto(out *ResourceValues) {
*out = *in
if in.CPU != nil {
in, out := &in.CPU, &out.CPU
x := (*in).DeepCopy()
*out = &x
}
if in.Memory != nil {
in, out := &in.Memory, &out.Memory
x := (*in).DeepCopy()
*out = &x
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new ResourceValues.
func (in *ResourceValues) DeepCopy() *ResourceValues {
if in == nil {
return nil
}
out := new(ResourceValues)
in.DeepCopyInto(out)
return out
}
// DeepCopyInto is an autogenerated deepcopy function, copying the receiver, writing into out. in must be non-nil.
func (in *TaskSpec) DeepCopyInto(out *TaskSpec) {
*out = *in
if in.ImagePullSecrets != nil {
in, out := &in.ImagePullSecrets, &out.ImagePullSecrets
*out = make([]v1.LocalObjectReference, len(*in))
copy(*out, *in)
}
if in.Command != nil {
in, out := &in.Command, &out.Command
*out = make([]string, len(*in))
copy(*out, *in)
}
if in.Args != nil {
in, out := &in.Args, &out.Args
*out = make([]string, len(*in))
copy(*out, *in)
}
if in.Env != nil {
in, out := &in.Env, &out.Env
*out = make([]EnvVar, len(*in))
for i := range *in {
(*in)[i].DeepCopyInto(&(*out)[i])
}
}
}
// DeepCopy is an autogenerated deepcopy function, copying the receiver, creating a new TaskSpec.
func (in *TaskSpec) DeepCopy() *TaskSpec {
if in == nil {
return nil
}
out := new(TaskSpec)
in.DeepCopyInto(out)
return out
}
+184
View File
@@ -0,0 +1,184 @@
package main
import (
"crypto/tls"
"flag"
"os"
// Import all Kubernetes client auth plugins (e.g. Azure, GCP, OIDC, etc.)
// to ensure that exec-entrypoint and run can make use of them.
_ "k8s.io/client-go/plugin/pkg/client/auth"
"k8s.io/apimachinery/pkg/runtime"
utilruntime "k8s.io/apimachinery/pkg/util/runtime"
clientgoscheme "k8s.io/client-go/kubernetes/scheme"
ctrl "sigs.k8s.io/controller-runtime"
"sigs.k8s.io/controller-runtime/pkg/healthz"
"sigs.k8s.io/controller-runtime/pkg/log/zap"
"sigs.k8s.io/controller-runtime/pkg/metrics/filters"
metricsserver "sigs.k8s.io/controller-runtime/pkg/metrics/server"
"sigs.k8s.io/controller-runtime/pkg/webhook"
executionv1alpha1 "git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1"
// +kubebuilder:scaffold:imports
)
var (
scheme = runtime.NewScheme()
setupLog = ctrl.Log.WithName("setup")
)
func init() {
utilruntime.Must(clientgoscheme.AddToScheme(scheme))
utilruntime.Must(executionv1alpha1.AddToScheme(scheme))
// +kubebuilder:scaffold:scheme
}
// nolint:gocyclo
func main() {
var metricsAddr string
var metricsCertPath, metricsCertName, metricsCertKey string
var webhookCertPath, webhookCertName, webhookCertKey string
var webhookPort int
var enableLeaderElection bool
var probeAddr string
var secureMetrics bool
var enableHTTP2 bool
var tlsOpts []func(*tls.Config)
flag.StringVar(&metricsAddr, "metrics-bind-address", "0", "The address the metrics endpoint binds to. "+
"Use :8443 for HTTPS or :8080 for HTTP, or leave as 0 to disable the metrics service.")
flag.StringVar(&probeAddr, "health-probe-bind-address", ":8081", "The address the probe endpoint binds to.")
flag.BoolVar(&enableLeaderElection, "leader-elect", false,
"Enable leader election for controller manager. "+
"Enabling this will ensure there is only one active controller manager.")
flag.BoolVar(&secureMetrics, "metrics-secure", true,
"If set, the metrics endpoint is served securely via HTTPS. Use --metrics-secure=false to use HTTP instead.")
flag.StringVar(&webhookCertPath, "webhook-cert-path", "", "The directory that contains the webhook certificate.")
flag.StringVar(&webhookCertName, "webhook-cert-name", "tls.crt", "The name of the webhook certificate file.")
flag.StringVar(&webhookCertKey, "webhook-cert-key", "tls.key", "The name of the webhook key file.")
flag.IntVar(&webhookPort, "webhook-port", 9443, "Port the webhook server listens on. "+
"Defaults to 9443. Set -1 to disable the webhook server.")
flag.StringVar(&metricsCertPath, "metrics-cert-path", "",
"The directory that contains the metrics server certificate.")
flag.StringVar(&metricsCertName, "metrics-cert-name", "tls.crt", "The name of the metrics server certificate file.")
flag.StringVar(&metricsCertKey, "metrics-cert-key", "tls.key", "The name of the metrics server key file.")
flag.BoolVar(&enableHTTP2, "enable-http2", false,
"If set, HTTP/2 will be enabled for the metrics and webhook servers")
opts := zap.Options{
Development: true,
}
opts.BindFlags(flag.CommandLine)
flag.Parse()
ctrl.SetLogger(zap.New(zap.UseFlagOptions(&opts)))
// if the enable-http2 flag is false (the default), http/2 should be disabled
// due to its vulnerabilities. More specifically, disabling http/2 will
// prevent from being vulnerable to the HTTP/2 Stream Cancellation and
// Rapid Reset CVEs. For more information see:
// - https://github.com/advisories/GHSA-qppj-fm5r-hxr3
// - https://github.com/advisories/GHSA-4374-p667-p6c8
disableHTTP2 := func(c *tls.Config) {
setupLog.Info("Disabling HTTP/2")
c.NextProtos = []string{"http/1.1"}
}
if !enableHTTP2 {
tlsOpts = append(tlsOpts, disableHTTP2)
}
// Initial webhook TLS options
webhookTLSOpts := tlsOpts
webhookServerOptions := webhook.Options{
TLSOpts: webhookTLSOpts,
Port: webhookPort,
}
if len(webhookCertPath) > 0 {
setupLog.Info("Initializing webhook certificate watcher using provided certificates",
"webhook-cert-path", webhookCertPath, "webhook-cert-name", webhookCertName, "webhook-cert-key", webhookCertKey)
webhookServerOptions.CertDir = webhookCertPath
webhookServerOptions.CertName = webhookCertName
webhookServerOptions.KeyName = webhookCertKey
}
webhookServer := webhook.NewServer(webhookServerOptions)
// Metrics endpoint is enabled in 'config/default/kustomization.yaml'. The Metrics options configure the server.
// More info:
// - https://pkg.go.dev/sigs.k8s.io/[email protected]/pkg/metrics/server
// - https://book.kubebuilder.io/reference/metrics.html
metricsServerOptions := metricsserver.Options{
BindAddress: metricsAddr,
SecureServing: secureMetrics,
TLSOpts: tlsOpts,
}
if secureMetrics {
// FilterProvider is used to protect the metrics endpoint with authn/authz.
// These configurations ensure that only authorized users and service accounts
// can access the metrics endpoint. The RBAC are configured in 'config/rbac/kustomization.yaml'. More info:
// https://pkg.go.dev/sigs.k8s.io/[email protected]/pkg/metrics/filters#WithAuthenticationAndAuthorization
metricsServerOptions.FilterProvider = filters.WithAuthenticationAndAuthorization
}
// If the certificate is not specified, controller-runtime will automatically
// generate self-signed certificates for the metrics server. While convenient for development and testing,
// this setup is not recommended for production.
//
// TODO(user): If you enable certManager, uncomment the following lines:
// - [METRICS-WITH-CERTS] at config/default/kustomization.yaml to generate and use certificates
// managed by cert-manager for the metrics server.
// - [PROMETHEUS-WITH-CERTS] at config/prometheus/kustomization.yaml for TLS certification.
if len(metricsCertPath) > 0 {
setupLog.Info("Initializing metrics certificate watcher using provided certificates",
"metrics-cert-path", metricsCertPath, "metrics-cert-name", metricsCertName, "metrics-cert-key", metricsCertKey)
metricsServerOptions.CertDir = metricsCertPath
metricsServerOptions.CertName = metricsCertName
metricsServerOptions.KeyName = metricsCertKey
}
mgr, err := ctrl.NewManager(ctrl.GetConfigOrDie(), ctrl.Options{
Scheme: scheme,
Metrics: metricsServerOptions,
WebhookServer: webhookServer,
HealthProbeBindAddress: probeAddr,
LeaderElection: enableLeaderElection,
LeaderElectionID: "a6325ed6.ddupan.top",
// LeaderElectionReleaseOnCancel defines if the leader should step down voluntarily
// when the Manager ends. This requires the binary to immediately end when the
// Manager is stopped, otherwise, this setting is unsafe. Setting this significantly
// speeds up voluntary leader transitions as the new leader don't have to wait
// LeaseDuration time first.
//
// In the default scaffold provided, the program ends immediately after
// the manager stops, so would be fine to enable this option. However,
// if you are doing or is intended to do any operation such as perform cleanups
// after the manager stops then its usage might be unsafe.
// LeaderElectionReleaseOnCancel: true,
})
if err != nil {
setupLog.Error(err, "Failed to start manager")
os.Exit(1)
}
// +kubebuilder:scaffold:builder
if err := mgr.AddHealthzCheck("healthz", healthz.Ping); err != nil {
setupLog.Error(err, "Failed to set up health check")
os.Exit(1)
}
if err := mgr.AddReadyzCheck("readyz", healthz.Ping); err != nil {
setupLog.Error(err, "Failed to set up ready check")
os.Exit(1)
}
setupLog.Info("Starting manager")
if err := mgr.Start(ctrl.SetupSignalHandler()); err != nil {
setupLog.Error(err, "Failed to run manager")
os.Exit(1)
}
}
@@ -0,0 +1,307 @@
---
apiVersion: apiextensions.k8s.io/v1
kind: CustomResourceDefinition
metadata:
annotations:
controller-gen.kubebuilder.io/version: v0.22.0
name: jobclasses.execution.ayatori.ddupan.top
spec:
group: execution.ayatori.ddupan.top
names:
kind: JobClass
listKind: JobClassList
plural: jobclasses
singular: jobclass
scope: Cluster
versions:
- additionalPrinterColumns:
- jsonPath: .spec.controllerName
name: Controller
type: string
- jsonPath: .status.conditions[?(@.type=='Accepted')].status
name: Accepted
type: string
- jsonPath: .status.conditions[?(@.type=='Ready')].status
name: Ready
type: string
- jsonPath: .metadata.creationTimestamp
name: Age
type: date
name: v1alpha1
schema:
openAPIV3Schema:
properties:
apiVersion:
description: |-
APIVersion defines the versioned schema of this representation of an object.
Servers should convert recognized schemas to the latest internal value, and
may reject unrecognized values.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources
type: string
kind:
description: |-
Kind is a string value representing the REST resource this object represents.
Servers may infer this from the endpoint the client submits requests to.
Cannot be updated.
In CamelCase.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
type: string
metadata:
type: object
spec:
properties:
allowedNamespaces:
description: |-
A label selector is a label query over a set of resources. The result of matchLabels and
matchExpressions are ANDed. An empty label selector matches all objects. A null
label selector matches no objects.
properties:
matchExpressions:
description: matchExpressions is a list of label selector requirements.
The requirements are ANDed.
items:
description: |-
A label selector requirement is a selector that contains values, a key, and an operator that
relates the key and values.
properties:
key:
description: key is the label key that the selector applies
to.
type: string
operator:
description: |-
operator represents a key's relationship to a set of values.
Valid operators are In, NotIn, Exists and DoesNotExist.
type: string
values:
description: |-
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. This array is replaced during a strategic
merge patch.
items:
type: string
type: array
x-kubernetes-list-type: atomic
required:
- key
- operator
type: object
type: array
x-kubernetes-list-type: atomic
matchLabels:
additionalProperties:
type: string
description: |-
matchLabels is a map of {key,value} pairs. A single {key,value} in the matchLabels
map is equivalent to an element of matchExpressions, whose key field is "key", the
operator is "In", and the values array contains only "value". The requirements are ANDed.
type: object
type: object
x-kubernetes-map-type: atomic
controllerName:
maxLength: 253
minLength: 1
type: string
parametersRef:
properties:
group:
type: string
kind:
type: string
name:
type: string
uid:
description: |-
UID is a type that holds unique ID values, including UUIDs. Because we
don't ONLY use UUIDs, this is an alias to string. Being a type captures
intent and helps make sure that UIDs and names do not get conflated.
type: string
required:
- group
- kind
- name
type: object
resources:
properties:
defaults:
properties:
limits:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
requests:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
type: object
maximum:
properties:
limits:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
requests:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
type: object
minimum:
properties:
limits:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
requests:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
type: object
type: object
required:
- controllerName
- parametersRef
type: object
x-kubernetes-validations:
- message: controllerName is immutable
rule: self.controllerName == oldSelf.controllerName
- message: parametersRef is immutable
rule: self.parametersRef == oldSelf.parametersRef
status:
properties:
conditions:
items:
description: Condition contains details for one aspect of the current
state of this API Resource.
properties:
lastTransitionTime:
description: |-
lastTransitionTime is the last time the condition transitioned from one status to another.
This should be when the underlying condition changed. If that is not known, then using the time when the API field changed is acceptable.
format: date-time
type: string
message:
description: |-
message is a human readable message indicating details about the transition.
This may be an empty string.
maxLength: 32768
type: string
observedGeneration:
description: |-
observedGeneration represents the .metadata.generation that the condition was set based upon.
For instance, if .metadata.generation is currently 12, but the .status.conditions[x].observedGeneration is 9, the condition is out of date
with respect to the current state of the instance.
format: int64
minimum: 0
type: integer
reason:
description: |-
reason contains a programmatic identifier indicating the reason for the condition's last transition.
Producers of specific condition types may define expected values and meanings for this field,
and whether the values are considered a guaranteed API.
The value should be a CamelCase string.
This field may not be empty.
maxLength: 1024
minLength: 1
pattern: ^[A-Za-z]([A-Za-z0-9_,:]*[A-Za-z0-9_])?$
type: string
status:
description: status of the condition, one of True, False, Unknown.
enum:
- "True"
- "False"
- Unknown
type: string
type:
description: type of condition in CamelCase or in foo.example.com/CamelCase.
maxLength: 316
pattern: ^([a-z0-9]([-a-z0-9]*[a-z0-9])?(\.[a-z0-9]([-a-z0-9]*[a-z0-9])?)*/)?(([A-Za-z0-9][-A-Za-z0-9_.]*)?[A-Za-z0-9])$
type: string
required:
- lastTransitionTime
- message
- reason
- status
- type
type: object
type: array
x-kubernetes-list-map-keys:
- type
x-kubernetes-list-type: map
observedGeneration:
format: int64
type: integer
type: object
required:
- spec
type: object
served: true
storage: true
subresources:
status: {}
@@ -0,0 +1,408 @@
---
apiVersion: apiextensions.k8s.io/v1
kind: CustomResourceDefinition
metadata:
annotations:
controller-gen.kubebuilder.io/version: v0.22.0
name: jobs.execution.ayatori.ddupan.top
spec:
group: execution.ayatori.ddupan.top
names:
kind: Job
listKind: JobList
plural: jobs
singular: job
scope: Namespaced
versions:
- additionalPrinterColumns:
- jsonPath: .status.conditions[?(@.type=='Accepted')].status
name: Accepted
type: string
- jsonPath: .status.conditions[?(@.type=='Scheduled')].status
name: Scheduled
type: string
- jsonPath: .status.conditions[?(@.type=='Succeeded')].status
name: Succeeded
type: string
- jsonPath: .metadata.creationTimestamp
name: Age
type: date
name: v1alpha1
schema:
openAPIV3Schema:
properties:
apiVersion:
description: |-
APIVersion defines the versioned schema of this representation of an object.
Servers should convert recognized schemas to the latest internal value, and
may reject unrecognized values.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources
type: string
kind:
description: |-
Kind is a string value representing the REST resource this object represents.
Servers may infer this from the endpoint the client submits requests to.
Cannot be updated.
In CamelCase.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
type: string
metadata:
type: object
spec:
properties:
activeDeadlineSeconds:
format: int64
minimum: 1
type: integer
desiredState:
default: Running
enum:
- Running
- Cancelled
type: string
jobClassName:
type: string
resources:
properties:
limits:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
requests:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
type: object
task:
properties:
args:
items:
type: string
type: array
command:
items:
type: string
type: array
env:
items:
properties:
name:
pattern: ^[A-Za-z_][A-Za-z0-9_]*$
type: string
value:
type: string
valueFrom:
properties:
configMapKeyRef:
description: Selects a key from a ConfigMap.
properties:
key:
description: |-
The key to select from the ConfigMap's Data field.
Keys in the BinaryData field are not currently propagated to container env vars.
type: string
name:
default: ""
description: |-
Name of the referent.
This field is effectively required, but due to backwards compatibility is
allowed to be empty. Instances of this type with an empty value here are
almost certainly wrong.
More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names
type: string
optional:
description: Specify whether the ConfigMap or its
key must be defined
type: boolean
required:
- key
type: object
x-kubernetes-map-type: atomic
secretKeyRef:
description: SecretKeySelector selects a key of a Secret.
properties:
key:
description: The key of the secret to select from. Must
be a valid secret key.
type: string
name:
default: ""
description: |-
Name of the referent.
This field is effectively required, but due to backwards compatibility is
allowed to be empty. Instances of this type with an empty value here are
almost certainly wrong.
More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names
type: string
optional:
description: Specify whether the Secret or its key
must be defined
type: boolean
required:
- key
type: object
x-kubernetes-map-type: atomic
type: object
x-kubernetes-validations:
- message: exactly one key reference must be set
rule: has(self.secretKeyRef) != has(self.configMapKeyRef)
required:
- name
type: object
x-kubernetes-validations:
- message: exactly one of value or valueFrom must be set
rule: has(self.value) != has(self.valueFrom)
type: array
x-kubernetes-list-map-keys:
- name
x-kubernetes-list-type: map
image:
minLength: 1
type: string
imagePullSecrets:
items:
description: |-
LocalObjectReference contains enough information to let you locate the
referenced object inside the same namespace.
properties:
name:
default: ""
description: |-
Name of the referent.
This field is effectively required, but due to backwards compatibility is
allowed to be empty. Instances of this type with an empty value here are
almost certainly wrong.
More info: https://kubernetes.io/docs/concepts/overview/working-with-objects/names/#names
type: string
type: object
x-kubernetes-map-type: atomic
type: array
workingDir:
type: string
required:
- image
type: object
ttlSecondsAfterFinished:
format: int32
minimum: 0
type: integer
required:
- task
type: object
x-kubernetes-validations:
- message: task is immutable
rule: self.task == oldSelf.task
- message: resources are immutable
rule: self.resources == oldSelf.resources
- message: activeDeadlineSeconds is immutable
rule: has(self.activeDeadlineSeconds) == has(oldSelf.activeDeadlineSeconds)
&& (!has(self.activeDeadlineSeconds) || self.activeDeadlineSeconds
== oldSelf.activeDeadlineSeconds)
- message: jobClassName is immutable
rule: has(self.jobClassName) == has(oldSelf.jobClassName) && (!has(self.jobClassName)
|| self.jobClassName == oldSelf.jobClassName)
- message: desiredState may only transition from Running to Cancelled
rule: oldSelf.desiredState == self.desiredState || (oldSelf.desiredState
== 'Running' && self.desiredState == 'Cancelled')
status:
properties:
completionTime:
format: date-time
type: string
conditions:
items:
description: Condition contains details for one aspect of the current
state of this API Resource.
properties:
lastTransitionTime:
description: |-
lastTransitionTime is the last time the condition transitioned from one status to another.
This should be when the underlying condition changed. If that is not known, then using the time when the API field changed is acceptable.
format: date-time
type: string
message:
description: |-
message is a human readable message indicating details about the transition.
This may be an empty string.
maxLength: 32768
type: string
observedGeneration:
description: |-
observedGeneration represents the .metadata.generation that the condition was set based upon.
For instance, if .metadata.generation is currently 12, but the .status.conditions[x].observedGeneration is 9, the condition is out of date
with respect to the current state of the instance.
format: int64
minimum: 0
type: integer
reason:
description: |-
reason contains a programmatic identifier indicating the reason for the condition's last transition.
Producers of specific condition types may define expected values and meanings for this field,
and whether the values are considered a guaranteed API.
The value should be a CamelCase string.
This field may not be empty.
maxLength: 1024
minLength: 1
pattern: ^[A-Za-z]([A-Za-z0-9_,:]*[A-Za-z0-9_])?$
type: string
status:
description: status of the condition, one of True, False, Unknown.
enum:
- "True"
- "False"
- Unknown
type: string
type:
description: type of condition in CamelCase or in foo.example.com/CamelCase.
maxLength: 316
pattern: ^([a-z0-9]([-a-z0-9]*[a-z0-9])?(\.[a-z0-9]([-a-z0-9]*[a-z0-9])?)*/)?(([A-Za-z0-9][-A-Za-z0-9_.]*)?[A-Za-z0-9])$
type: string
required:
- lastTransitionTime
- message
- reason
- status
- type
type: object
type: array
x-kubernetes-list-map-keys:
- type
x-kubernetes-list-type: map
effectiveResources:
properties:
limits:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
requests:
properties:
cpu:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
memory:
anyOf:
- type: integer
- type: string
pattern: ^(\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))(([KMGTPE]i)|[numkMGTPE]|([eE](\+|-)?(([0-9]+(\.[0-9]*)?)|(\.[0-9]+))))?$
x-kubernetes-int-or-string: true
type: object
type: object
execution:
properties:
adapter:
type: string
references:
items:
properties:
id:
minLength: 1
type: string
type:
minLength: 1
type: string
required:
- id
- type
type: object
type: array
x-kubernetes-list-map-keys:
- type
x-kubernetes-list-type: map
required:
- adapter
type: object
observedGeneration:
format: int64
type: integer
resolvedJobClass:
properties:
controllerName:
type: string
name:
type: string
parametersRef:
properties:
group:
type: string
kind:
type: string
name:
type: string
uid:
description: |-
UID is a type that holds unique ID values, including UUIDs. Because we
don't ONLY use UUIDs, this is an alias to string. Being a type captures
intent and helps make sure that UIDs and names do not get conflated.
type: string
required:
- group
- kind
- name
type: object
uid:
description: |-
UID is a type that holds unique ID values, including UUIDs. Because we
don't ONLY use UUIDs, this is an alias to string. Being a type captures
intent and helps make sure that UIDs and names do not get conflated.
type: string
required:
- controllerName
- name
- parametersRef
- uid
type: object
result:
properties:
exitCode:
format: int32
type: integer
reason:
type: string
type: object
startTime:
format: date-time
type: string
type: object
required:
- spec
type: object
served: true
storage: true
subresources:
status: {}
@@ -0,0 +1,339 @@
---
apiVersion: apiextensions.k8s.io/v1
kind: CustomResourceDefinition
metadata:
annotations:
controller-gen.kubebuilder.io/version: v0.22.0
name: kubernetesexecutionparameters.execution.ayatori.ddupan.top
spec:
group: execution.ayatori.ddupan.top
names:
kind: KubernetesExecutionParameters
listKind: KubernetesExecutionParametersList
plural: kubernetesexecutionparameters
singular: kubernetesexecutionparameters
scope: Cluster
versions:
- name: v1alpha1
schema:
openAPIV3Schema:
properties:
apiVersion:
description: |-
APIVersion defines the versioned schema of this representation of an object.
Servers should convert recognized schemas to the latest internal value, and
may reject unrecognized values.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources
type: string
kind:
description: |-
Kind is a string value representing the REST resource this object represents.
Servers may infer this from the endpoint the client submits requests to.
Cannot be updated.
In CamelCase.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
type: string
metadata:
type: object
spec:
properties:
imagePullPolicy:
default: IfNotPresent
description: PullPolicy describes a policy for if/when to pull a container
image
enum:
- Always
- Never
- IfNotPresent
type: string
podSecurityContext:
description: |-
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.
properties:
appArmorProfile:
description: |-
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.
properties:
localhostProfile:
description: |-
localhostProfile indicates a profile loaded on the node that should be used.
The profile must be preconfigured on the node to work.
Must match the loaded name of the profile.
Must be set if and only if type is "Localhost".
type: string
type:
description: |-
type indicates which kind of AppArmor profile will be applied.
Valid options are:
Localhost - a profile pre-loaded on the node.
RuntimeDefault - the container runtime's default profile.
Unconfined - no AppArmor enforcement.
type: string
required:
- type
type: object
fsGroup:
description: |-
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:
1. 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----
If unset, the Kubelet will not modify the ownership and permissions of any volume.
Note that this field cannot be set when spec.os.name is windows.
format: int64
type: integer
fsGroupChangePolicy:
description: |-
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.
type: string
runAsGroup:
description: |-
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.
format: int64
type: integer
runAsNonRoot:
description: |-
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.
type: boolean
runAsUser:
description: |-
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.
format: int64
type: integer
seLinuxChangePolicy:
description: |-
seLinuxChangePolicy defines how the container's SELinux label is applied to all volumes used by the Pod.
It has no effect on nodes that do not support SELinux or to volumes does not support SELinux.
Valid values are "MountOption" and "Recursive".
"Recursive" means relabeling of all files on all Pod volumes by the container runtime.
This may be slow for large volumes, but allows mixing privileged and unprivileged Pods sharing the same volume on the same node.
"MountOption" mounts all eligible Pod volumes with `-o context` mount option.
This requires all Pods that share the same volume to use the same SELinux label.
It is not possible to share the same volume among privileged and unprivileged Pods.
Eligible volumes are in-tree FibreChannel and iSCSI volumes, and all CSI volumes
whose CSI driver announces SELinux support by setting spec.seLinuxMount: true in their
CSIDriver instance. Other volumes are always re-labelled recursively.
If not specified, "MountOption" is used.
This field affects only Pods that have SELinux label set, either in PodSecurityContext or in SecurityContext of all containers.
All Pods that use the same volume should use the same seLinuxChangePolicy, otherwise some pods can get stuck in ContainerCreating state.
Note that this field cannot be set when spec.os.name is windows.
type: string
seLinuxOptions:
description: |-
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.
properties:
level:
description: Level is SELinux level label that applies to
the container.
type: string
role:
description: Role is a SELinux role label that applies to
the container.
type: string
type:
description: Type is a SELinux type label that applies to
the container.
type: string
user:
description: User is a SELinux user label that applies to
the container.
type: string
type: object
seccompProfile:
description: |-
The seccomp options to use by the containers in this pod.
Note that this field cannot be set when spec.os.name is windows.
properties:
localhostProfile:
description: |-
localhostProfile indicates a profile defined in a file on the node should be used.
The profile must be preconfigured on the node to work.
Must be a descending path, relative to the kubelet's configured seccomp profile location.
Must be set if type is "Localhost". Must NOT be set for any other type.
type: string
type:
description: |-
type indicates which kind of seccomp profile will be applied.
Valid options are:
Localhost - a profile defined in a file on the node should be used.
RuntimeDefault - the container runtime default profile should be used.
Unconfined - no profile should be applied.
type: string
required:
- type
type: object
supplementalGroups:
description: |-
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.
items:
format: int64
type: integer
type: array
x-kubernetes-list-type: atomic
supplementalGroupsPolicy:
description: |-
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.
type: string
sysctls:
description: |-
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.
items:
description: Sysctl defines a kernel parameter to be set
properties:
name:
description: Name of a property to set
type: string
value:
description: Value of a property to set
type: string
required:
- name
- value
type: object
type: array
x-kubernetes-list-type: atomic
windowsOptions:
description: |-
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.
properties:
gmsaCredentialSpec:
description: |-
GMSACredentialSpec is where the GMSA admission webhook
(https://github.com/kubernetes-sigs/windows-gmsa) inlines the contents of the
GMSA credential spec named by the GMSACredentialSpecName field.
type: string
gmsaCredentialSpecName:
description: GMSACredentialSpecName is the name of the GMSA
credential spec to use.
type: string
hostProcess:
description: |-
HostProcess determines if a container should be run as a 'Host Process' container.
All of a Pod's containers must have the same effective HostProcess value
(it is not allowed to have a mix of HostProcess containers and non-HostProcess containers).
In addition, if HostProcess is true then HostNetwork must also be set to true.
type: boolean
runAsUserName:
description: |-
The UserName in Windows to run the entrypoint of the container process.
Defaults to the user specified in image metadata if unspecified.
May also be set in PodSecurityContext. If set in both SecurityContext and
PodSecurityContext, the value specified in SecurityContext takes precedence.
type: string
type: object
type: object
runtimeClassName:
type: string
scheduling:
properties:
nodeSelector:
additionalProperties:
type: string
type: object
tolerations:
items:
description: |-
The pod this Toleration is attached to tolerates any taint that matches
the triple <key,value,effect> using the matching operator <operator>.
properties:
effect:
description: |-
Effect indicates the taint effect to match. Empty means match all taint effects.
When specified, allowed values are NoSchedule, PreferNoSchedule and NoExecute.
type: string
key:
description: |-
Key is the taint key that the toleration applies to. Empty means match all taint keys.
If the key is empty, operator must be Exists; this combination means to match all values and all keys.
type: string
operator:
description: |-
Operator represents a key's relationship to the value.
Valid operators are Exists, Equal, Lt, and Gt. Defaults to Equal.
Exists is equivalent to wildcard for value, so that a pod can
tolerate all taints of a particular category.
Lt and Gt perform numeric comparisons (requires feature gate TaintTolerationComparisonOperators).
type: string
tolerationSeconds:
description: |-
TolerationSeconds represents the period of time the toleration (which must be
of effect NoExecute, otherwise this field is ignored) tolerates the taint. By default,
it is not set, which means tolerate the taint forever (do not evict). Zero and
negative values will be treated as 0 (evict immediately) by the system.
format: int64
type: integer
value:
description: |-
Value is the taint value the toleration matches to.
If the operator is Exists, the value should be empty, otherwise just a regular string.
type: string
type: object
type: array
type: object
serviceAccountName:
minLength: 1
type: string
required:
- serviceAccountName
type: object
required:
- spec
type: object
served: true
storage: true
@@ -0,0 +1,83 @@
---
apiVersion: apiextensions.k8s.io/v1
kind: CustomResourceDefinition
metadata:
annotations:
controller-gen.kubebuilder.io/version: v0.22.0
name: opensandboxexecutionparameters.execution.ayatori.ddupan.top
spec:
group: execution.ayatori.ddupan.top
names:
kind: OpenSandboxExecutionParameters
listKind: OpenSandboxExecutionParametersList
plural: opensandboxexecutionparameters
singular: opensandboxexecutionparameters
scope: Cluster
versions:
- name: v1alpha1
schema:
openAPIV3Schema:
properties:
apiVersion:
description: |-
APIVersion defines the versioned schema of this representation of an object.
Servers should convert recognized schemas to the latest internal value, and
may reject unrecognized values.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#resources
type: string
kind:
description: |-
Kind is a string value representing the REST resource this object represents.
Servers may infer this from the endpoint the client submits requests to.
Cannot be updated.
In CamelCase.
More info: https://git.k8s.io/community/contributors/devel/sig-architecture/api-conventions.md#types-kinds
type: string
metadata:
type: object
spec:
properties:
allowImageAuth:
type: boolean
allowInsecureHTTP:
description: AllowInsecureHTTP is intended for isolated development
environments only.
type: boolean
allowSecretEnv:
type: boolean
apiKeySecretRef:
properties:
key:
type: string
name:
type: string
namespace:
type: string
required:
- key
- name
- namespace
type: object
endpoint:
minLength: 1
type: string
poolRef:
type: string
requestMapping:
default: AdmissionOnly
enum:
- AdmissionOnly
- Native
type: string
required:
- apiKeySecretRef
- endpoint
type: object
x-kubernetes-validations:
- message: endpoint must use HTTPS unless allowInsecureHTTP is true
rule: self.allowInsecureHTTP || self.endpoint.startsWith('https://')
required:
- spec
type: object
served: true
storage: true
+19
View File
@@ -0,0 +1,19 @@
# This kustomization.yaml is not intended to be run by itself,
# since it depends on service name and namespace that are out of this kustomize package.
# It should be run by config/default
resources:
- bases/execution.ayatori.ddupan.top_jobs.yaml
- bases/execution.ayatori.ddupan.top_jobclasses.yaml
- bases/execution.ayatori.ddupan.top_kubernetesexecutionparameters.yaml
- bases/execution.ayatori.ddupan.top_opensandboxexecutionparameters.yaml
# +kubebuilder:scaffold:crdkustomizeresource
patches:
# [WEBHOOK] To enable webhook, uncomment all the sections with [WEBHOOK] prefix.
# patches here are for enabling the conversion webhook for each CRD
# +kubebuilder:scaffold:crdkustomizewebhookpatch
# [WEBHOOK] To enable webhook, uncomment the following section
# the following config is for teaching kustomize how to do kustomization for CRDs.
#configurations:
#- kustomizeconfig.yaml
+12
View File
@@ -0,0 +1,12 @@
# This file is for teaching kustomize how to substitute name and namespace reference in CRD
nameReference:
- kind: Service
version: v1
fieldSpecs:
- kind: CustomResourceDefinition
version: v1
group: apiextensions.k8s.io
path: spec/conversion/webhook/clientConfig/service/name
varReference:
- path: metadata/annotations
@@ -0,0 +1,30 @@
# This patch adds the args, volumes, and ports to allow the manager to use the metrics-server certs.
# Add the volumeMount for the metrics-server certs
- op: add
path: /spec/template/spec/containers/0/volumeMounts/-
value:
mountPath: /tmp/k8s-metrics-server/metrics-certs
name: metrics-certs
readOnly: true
# Add the --metrics-cert-path argument for the metrics server
- op: add
path: /spec/template/spec/containers/0/args/-
value: --metrics-cert-path=/tmp/k8s-metrics-server/metrics-certs
# Add the metrics-server certs volume configuration
- op: add
path: /spec/template/spec/volumes/-
value:
name: metrics-certs
secret:
secretName: metrics-server-cert
optional: false
items:
- key: ca.crt
path: ca.crt
- key: tls.crt
path: tls.crt
- key: tls.key
path: tls.key
+233
View File
@@ -0,0 +1,233 @@
# Adds namespace to all resources.
namespace: ayatori-system
# Value of this field is prepended to the
# names of all resources, e.g. a deployment named
# "wordpress" becomes "alices-wordpress".
# Note that it should also match with the prefix (text before '-') of the namespace
# field above.
namePrefix: ayatori-
# Labels to add to all resources and selectors.
#labels:
#- includeSelectors: true
# pairs:
# someName: someValue
resources:
- ../crd
- ../rbac
- ../manager
# [WEBHOOK] To enable webhook, uncomment all the sections with [WEBHOOK] prefix including the one in
# crd/kustomization.yaml
#- ../webhook
# [CERTMANAGER] To enable cert-manager, uncomment all sections with 'CERTMANAGER'. 'WEBHOOK' components are required.
#- ../certmanager
# [PROMETHEUS] To enable prometheus monitor, uncomment all sections with 'PROMETHEUS'.
#- ../prometheus
# [METRICS] Expose the controller manager metrics service.
- metrics_service.yaml
# [NETWORK POLICY] Control ingress to metrics and webhook ports.
# Allow metrics traffic from pods in namespaces labeled 'metrics: enabled'.
# Allow webhook traffic from all sources.
#- ../network-policy
# Uncomment the patches line if you enable Metrics
patches:
# [METRICS] The following patch will enable the metrics endpoint using HTTPS and the port :8443.
# More info: https://book.kubebuilder.io/reference/metrics
- path: manager_metrics_patch.yaml
target:
kind: Deployment
# Uncomment the patches line if you enable Metrics and CertManager
# [METRICS-WITH-CERTS] To enable metrics protected with certManager, uncomment the following line.
# This patch will protect the metrics with certManager self-signed certs.
#- path: cert_metrics_manager_patch.yaml
# target:
# kind: Deployment
# [WEBHOOK] To enable webhook, uncomment all the sections with [WEBHOOK] prefix including the one in
# crd/kustomization.yaml
#- path: manager_webhook_patch.yaml
# target:
# kind: Deployment
# [CERTMANAGER] To enable cert-manager, uncomment all sections with 'CERTMANAGER' prefix.
# Uncomment the following replacements to add the cert-manager CA injection annotations
#replacements:
# - source: # Uncomment the following block to enable certificates for metrics
# kind: Service
# version: v1
# name: controller-manager-metrics-service
# fieldPath: metadata.name
# targets:
# - select:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: metrics-certs
# fieldPaths:
# - spec.dnsNames.0
# - spec.dnsNames.1
# options:
# delimiter: '.'
# index: 0
# create: true
# - select: # Uncomment the following to set the Service name for TLS config in Prometheus ServiceMonitor
# kind: ServiceMonitor
# group: monitoring.coreos.com
# version: v1
# name: controller-manager-metrics-monitor
# fieldPaths:
# - spec.endpoints.0.tlsConfig.serverName
# options:
# delimiter: '.'
# index: 0
# create: true
# - source:
# kind: Service
# version: v1
# name: controller-manager-metrics-service
# fieldPath: metadata.namespace
# targets:
# - select:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: metrics-certs
# fieldPaths:
# - spec.dnsNames.0
# - spec.dnsNames.1
# options:
# delimiter: '.'
# index: 1
# create: true
# - select: # Uncomment the following to set the Service namespace for TLS in Prometheus ServiceMonitor
# kind: ServiceMonitor
# group: monitoring.coreos.com
# version: v1
# name: controller-manager-metrics-monitor
# fieldPaths:
# - spec.endpoints.0.tlsConfig.serverName
# options:
# delimiter: '.'
# index: 1
# create: true
# - source: # Uncomment the following block if you have any webhook
# kind: Service
# version: v1
# name: webhook-service
# fieldPath: .metadata.name # Name of the service
# targets:
# - select:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPaths:
# - .spec.dnsNames.0
# - .spec.dnsNames.1
# options:
# delimiter: '.'
# index: 0
# create: true
# - source:
# kind: Service
# version: v1
# name: webhook-service
# fieldPath: .metadata.namespace # Namespace of the service
# targets:
# - select:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPaths:
# - .spec.dnsNames.0
# - .spec.dnsNames.1
# options:
# delimiter: '.'
# index: 1
# create: true
# - source: # Uncomment the following block if you have a ValidatingWebhook (--programmatic-validation)
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert # This name should match the one in certificate.yaml
# fieldPath: .metadata.namespace # Namespace of the certificate CR
# targets:
# - select:
# kind: ValidatingWebhookConfiguration
# fieldPaths:
# - .metadata.annotations.[cert-manager.io/inject-ca-from]
# options:
# delimiter: '/'
# index: 0
# create: true
# - source:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPath: .metadata.name
# targets:
# - select:
# kind: ValidatingWebhookConfiguration
# fieldPaths:
# - .metadata.annotations.[cert-manager.io/inject-ca-from]
# options:
# delimiter: '/'
# index: 1
# create: true
# - source: # Uncomment the following block if you have a DefaultingWebhook (--defaulting )
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPath: .metadata.namespace # Namespace of the certificate CR
# targets:
# - select:
# kind: MutatingWebhookConfiguration
# fieldPaths:
# - .metadata.annotations.[cert-manager.io/inject-ca-from]
# options:
# delimiter: '/'
# index: 0
# create: true
# - source:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPath: .metadata.name
# targets:
# - select:
# kind: MutatingWebhookConfiguration
# fieldPaths:
# - .metadata.annotations.[cert-manager.io/inject-ca-from]
# options:
# delimiter: '/'
# index: 1
# create: true
# - source: # Uncomment the following block if you have a ConversionWebhook (--conversion)
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPath: .metadata.namespace # Namespace of the certificate CR
# targets: # Do not remove or uncomment the following scaffold marker; required to generate code for target CRD.
# +kubebuilder:scaffold:crdkustomizecainjectionns
# - source:
# kind: Certificate
# group: cert-manager.io
# version: v1
# name: serving-cert
# fieldPath: .metadata.name
# targets: # Do not remove or uncomment the following scaffold marker; required to generate code for target CRD.
# +kubebuilder:scaffold:crdkustomizecainjectionname
@@ -0,0 +1,4 @@
# This patch adds the args to allow exposing the metrics endpoint using HTTPS
- op: add
path: /spec/template/spec/containers/0/args/0
value: --metrics-bind-address=:8443
+18
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@@ -0,0 +1,18 @@
apiVersion: v1
kind: Service
metadata:
labels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: controller-manager-metrics-service
namespace: system
spec:
ports:
- name: https
port: 8443
protocol: TCP
targetPort: 8443
selector:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
+2
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@@ -0,0 +1,2 @@
resources:
- manager.yaml
+102
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@@ -0,0 +1,102 @@
apiVersion: v1
kind: Namespace
metadata:
labels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: system
---
apiVersion: apps/v1
kind: Deployment
metadata:
name: controller-manager
namespace: system
labels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
spec:
selector:
matchLabels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
replicas: 1
template:
metadata:
annotations:
kubectl.kubernetes.io/default-container: manager
labels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
spec:
# TODO(user): Uncomment the following code to configure the nodeAffinity expression
# according to the platforms which are supported by your solution.
# It is considered best practice to support multiple architectures. You can
# build your manager image using the makefile target docker-buildx.
# affinity:
# nodeAffinity:
# requiredDuringSchedulingIgnoredDuringExecution:
# nodeSelectorTerms:
# - matchExpressions:
# - key: kubernetes.io/arch
# operator: In
# values:
# - amd64
# - arm64
# - ppc64le
# - s390x
# - key: kubernetes.io/os
# operator: In
# values:
# - linux
securityContext:
# Projects are configured by default to adhere to the "restricted" Pod Security Standards.
# This ensures that deployments meet the highest security requirements for Kubernetes.
# For more details, see: https://kubernetes.io/docs/concepts/security/pod-security-standards/#restricted
runAsNonRoot: true
seccompProfile:
type: RuntimeDefault
containers:
- command:
- /manager
args:
- --leader-elect
- --health-probe-bind-address=:8081
image: controller:latest
name: manager
ports:
- containerPort: 8081
name: health
protocol: TCP
securityContext:
readOnlyRootFilesystem: true
allowPrivilegeEscalation: false
capabilities:
drop:
- "ALL"
livenessProbe:
httpGet:
path: /healthz
port: 8081
initialDelaySeconds: 15
periodSeconds: 20
readinessProbe:
httpGet:
path: /readyz
port: 8081
initialDelaySeconds: 5
periodSeconds: 10
# TODO(user): Configure the resources accordingly based on the project requirements.
# More info: https://kubernetes.io/docs/concepts/configuration/manage-resources-containers/
resources:
limits:
cpu: 500m
memory: 128Mi
requests:
cpu: 10m
memory: 64Mi
volumeMounts: []
volumes: []
serviceAccountName: controller-manager
terminationGracePeriodSeconds: 10
@@ -0,0 +1,26 @@
# Allow metrics traffic from pods in namespaces labeled 'metrics: enabled'.
# Add this label to namespaces whose pods should scrape metrics.
apiVersion: networking.k8s.io/v1
kind: NetworkPolicy
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: allow-metrics-traffic
namespace: system
spec:
podSelector:
matchLabels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
policyTypes:
- Ingress
ingress:
# Allow pods in namespaces labeled 'metrics: enabled' to scrape metrics.
- from:
- namespaceSelector:
matchLabels:
metrics: enabled # Only from namespaces with this label
ports:
- port: 8443
protocol: TCP
+2
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@@ -0,0 +1,2 @@
resources:
- allow-metrics-traffic.yaml
+11
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@@ -0,0 +1,11 @@
resources:
- monitor.yaml
# [PROMETHEUS-WITH-CERTS] The following patch configures the ServiceMonitor in ../prometheus
# to securely reference certificates created and managed by cert-manager.
# Additionally, ensure that you uncomment the [METRICS WITH CERTMANAGER] patch under config/default/kustomization.yaml
# to mount the "metrics-server-cert" secret in the Manager Deployment.
#patches:
# - path: monitor_tls_patch.yaml
# target:
# kind: ServiceMonitor
+27
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@@ -0,0 +1,27 @@
# Prometheus Monitor Service (Metrics)
apiVersion: monitoring.coreos.com/v1
kind: ServiceMonitor
metadata:
labels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: controller-manager-metrics-monitor
namespace: system
spec:
endpoints:
- path: /metrics
port: https # Ensure this is the name of the port that exposes HTTPS metrics
scheme: https
bearerTokenFile: /var/run/secrets/kubernetes.io/serviceaccount/token
tlsConfig:
# TODO(user): The option insecureSkipVerify: true is not recommended for production since it disables
# certificate verification, exposing the system to potential man-in-the-middle attacks.
# For production environments, it is recommended to use cert-manager for automatic TLS certificate management.
# To apply this configuration, enable cert-manager and use the patch located at config/prometheus/servicemonitor_tls_patch.yaml,
# which securely references the certificate from the 'metrics-server-cert' secret.
insecureSkipVerify: true
selector:
matchLabels:
control-plane: controller-manager
app.kubernetes.io/name: ayatori
+19
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@@ -0,0 +1,19 @@
# Patch for Prometheus ServiceMonitor to enable secure TLS configuration
# using certificates managed by cert-manager
- op: replace
path: /spec/endpoints/0/tlsConfig
value:
# SERVICE_NAME and SERVICE_NAMESPACE will be substituted by kustomize
serverName: SERVICE_NAME.SERVICE_NAMESPACE.svc
insecureSkipVerify: false
ca:
secret:
name: metrics-server-cert
key: ca.crt
cert:
secret:
name: metrics-server-cert
key: tls.crt
keySecret:
name: metrics-server-cert
key: tls.key
+27
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@@ -0,0 +1,27 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants full permissions ('*') over execution.ayatori.ddupan.top.
# This role is intended for users authorized to modify roles and bindings within the cluster,
# enabling them to delegate specific permissions to other users or groups as needed.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-job-admin-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs
verbs:
- '*'
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs/status
verbs:
- get
@@ -0,0 +1,33 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants permissions to create, update, and delete resources within the execution.ayatori.ddupan.top.
# This role is intended for users who need to manage these resources
# but should not control RBAC or manage permissions for others.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-job-editor-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs
verbs:
- create
- delete
- get
- list
- patch
- update
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs/status
verbs:
- get
@@ -0,0 +1,29 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants read-only access to execution.ayatori.ddupan.top resources.
# This role is intended for users who need visibility into these resources
# without permissions to modify them. It is ideal for monitoring purposes and limited-access viewing.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-job-viewer-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs
verbs:
- get
- list
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobs/status
verbs:
- get
@@ -0,0 +1,27 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants full permissions ('*') over execution.ayatori.ddupan.top.
# This role is intended for users authorized to modify roles and bindings within the cluster,
# enabling them to delegate specific permissions to other users or groups as needed.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-jobclass-admin-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses
verbs:
- '*'
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses/status
verbs:
- get
@@ -0,0 +1,33 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants permissions to create, update, and delete resources within the execution.ayatori.ddupan.top.
# This role is intended for users who need to manage these resources
# but should not control RBAC or manage permissions for others.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-jobclass-editor-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses
verbs:
- create
- delete
- get
- list
- patch
- update
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses/status
verbs:
- get
@@ -0,0 +1,29 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants read-only access to execution.ayatori.ddupan.top resources.
# This role is intended for users who need visibility into these resources
# without permissions to modify them. It is ideal for monitoring purposes and limited-access viewing.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-jobclass-viewer-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses
verbs:
- get
- list
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- jobclasses/status
verbs:
- get
@@ -0,0 +1,27 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants full permissions ('*') over execution.ayatori.ddupan.top.
# This role is intended for users authorized to modify roles and bindings within the cluster,
# enabling them to delegate specific permissions to other users or groups as needed.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-kubernetesexecutionparameters-admin-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters
verbs:
- '*'
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters/status
verbs:
- get
@@ -0,0 +1,33 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants permissions to create, update, and delete resources within the execution.ayatori.ddupan.top.
# This role is intended for users who need to manage these resources
# but should not control RBAC or manage permissions for others.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-kubernetesexecutionparameters-editor-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters
verbs:
- create
- delete
- get
- list
- patch
- update
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters/status
verbs:
- get
@@ -0,0 +1,29 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants read-only access to execution.ayatori.ddupan.top resources.
# This role is intended for users who need visibility into these resources
# without permissions to modify them. It is ideal for monitoring purposes and limited-access viewing.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-kubernetesexecutionparameters-viewer-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters
verbs:
- get
- list
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- kubernetesexecutionparameters/status
verbs:
- get
@@ -0,0 +1,27 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants full permissions ('*') over execution.ayatori.ddupan.top.
# This role is intended for users authorized to modify roles and bindings within the cluster,
# enabling them to delegate specific permissions to other users or groups as needed.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-opensandboxexecutionparameters-admin-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters
verbs:
- '*'
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters/status
verbs:
- get
@@ -0,0 +1,33 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants permissions to create, update, and delete resources within the execution.ayatori.ddupan.top.
# This role is intended for users who need to manage these resources
# but should not control RBAC or manage permissions for others.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-opensandboxexecutionparameters-editor-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters
verbs:
- create
- delete
- get
- list
- patch
- update
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters/status
verbs:
- get
@@ -0,0 +1,29 @@
# This rule is not used by the project ayatori itself.
# It is provided to allow the cluster admin to help manage permissions for users.
#
# Grants read-only access to execution.ayatori.ddupan.top resources.
# This role is intended for users who need visibility into these resources
# without permissions to modify them. It is ideal for monitoring purposes and limited-access viewing.
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: execution-opensandboxexecutionparameters-viewer-role
rules:
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters
verbs:
- get
- list
- watch
- apiGroups:
- execution.ayatori.ddupan.top
resources:
- opensandboxexecutionparameters/status
verbs:
- get
+36
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@@ -0,0 +1,36 @@
resources:
# All RBAC will be applied under this service account in
# the deployment namespace. You may comment out this resource
# if your manager will use a service account that exists at
# runtime. Be sure to update RoleBinding and ClusterRoleBinding
# subjects if changing service account names.
- service_account.yaml
- role.yaml
- role_binding.yaml
- leader_election_role.yaml
- leader_election_role_binding.yaml
# The following RBAC configurations are used to protect
# the metrics endpoint with authn/authz. These configurations
# ensure that only authorized users and service accounts
# can access the metrics endpoint. Comment the following
# permissions if you want to disable this protection.
# More info: https://book.kubebuilder.io/reference/metrics.html
- metrics_auth_role.yaml
- metrics_auth_role_binding.yaml
- metrics_reader_role.yaml
# For each CRD, "Admin", "Editor" and "Viewer" roles are scaffolded by
# default, aiding admins in cluster management. Those roles are
# not used by the ayatori itself. You can comment the following lines
# if you do not want those helpers be installed with your Project.
- execution_opensandboxexecutionparameters_admin_role.yaml
- execution_opensandboxexecutionparameters_editor_role.yaml
- execution_opensandboxexecutionparameters_viewer_role.yaml
- execution_kubernetesexecutionparameters_admin_role.yaml
- execution_kubernetesexecutionparameters_editor_role.yaml
- execution_kubernetesexecutionparameters_viewer_role.yaml
- execution_jobclass_admin_role.yaml
- execution_jobclass_editor_role.yaml
- execution_jobclass_viewer_role.yaml
- execution_job_admin_role.yaml
- execution_job_editor_role.yaml
- execution_job_viewer_role.yaml
+40
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@@ -0,0 +1,40 @@
# permissions to do leader election.
apiVersion: rbac.authorization.k8s.io/v1
kind: Role
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: leader-election-role
rules:
- apiGroups:
- ""
resources:
- configmaps
verbs:
- get
- list
- watch
- create
- update
- patch
- delete
- apiGroups:
- coordination.k8s.io
resources:
- leases
verbs:
- get
- list
- watch
- create
- update
- patch
- delete
- apiGroups:
- ""
resources:
- events
verbs:
- create
- patch
@@ -0,0 +1,15 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: RoleBinding
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: leader-election-rolebinding
roleRef:
apiGroup: rbac.authorization.k8s.io
kind: Role
name: leader-election-role
subjects:
- kind: ServiceAccount
name: controller-manager
namespace: system
+17
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@@ -0,0 +1,17 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
name: metrics-auth-role
rules:
- apiGroups:
- authentication.k8s.io
resources:
- tokenreviews
verbs:
- create
- apiGroups:
- authorization.k8s.io
resources:
- subjectaccessreviews
verbs:
- create
@@ -0,0 +1,12 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRoleBinding
metadata:
name: metrics-auth-rolebinding
roleRef:
apiGroup: rbac.authorization.k8s.io
kind: ClusterRole
name: metrics-auth-role
subjects:
- kind: ServiceAccount
name: controller-manager
namespace: system
+9
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@@ -0,0 +1,9 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
name: metrics-reader
rules:
- nonResourceURLs:
- "/metrics"
verbs:
- get
+11
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@@ -0,0 +1,11 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRole
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: manager-role
rules:
- apiGroups: [""]
resources: ["pods"]
verbs: ["get", "list", "watch"]
+15
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@@ -0,0 +1,15 @@
apiVersion: rbac.authorization.k8s.io/v1
kind: ClusterRoleBinding
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: manager-rolebinding
roleRef:
apiGroup: rbac.authorization.k8s.io
kind: ClusterRole
name: manager-role
subjects:
- kind: ServiceAccount
name: controller-manager
namespace: system
+8
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@@ -0,0 +1,8 @@
apiVersion: v1
kind: ServiceAccount
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: controller-manager
namespace: system
@@ -0,0 +1,14 @@
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: Job
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: job-sample
spec:
jobClassName: default
task:
image: docker.io/library/alpine:3.22
command: ["/bin/sh", "-c"]
args: ["echo hello from Ayatori"]
ttlSecondsAfterFinished: 3600
@@ -0,0 +1,13 @@
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: JobClass
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: default
spec:
controllerName: execution.ayatori.ddupan.top/kubernetes
parametersRef:
group: execution.ayatori.ddupan.top
kind: KubernetesExecutionParameters
name: default
@@ -0,0 +1,10 @@
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: KubernetesExecutionParameters
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: default
spec:
serviceAccountName: ayatori-job
imagePullPolicy: IfNotPresent
@@ -0,0 +1,14 @@
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: OpenSandboxExecutionParameters
metadata:
labels:
app.kubernetes.io/name: ayatori
app.kubernetes.io/managed-by: kustomize
name: microvm
spec:
endpoint: https://opensandbox-api.example.internal
apiKeySecretRef:
namespace: ayatori-system
name: opensandbox-api
key: api-key
requestMapping: AdmissionOnly
+7
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@@ -0,0 +1,7 @@
## Append samples of your project ##
resources:
- execution_v1alpha1_job.yaml
- execution_v1alpha1_jobclass.yaml
- execution_v1alpha1_kubernetesexecutionparameters.yaml
- execution_v1alpha1_opensandboxexecutionparameters.yaml
# +kubebuilder:scaffold:manifestskustomizesamples
+526
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@@ -0,0 +1,526 @@
# Job API v1alpha1 草案
- 状态:Draft
- 日期:2026-09-17
- API group:`execution.ayatori.ddupan.top`
- Kind:`Job`
- Scope:Namespaced
## 目标
`Job` 表达一次有限时长、有明确退出结果的机器执行。调用者描述任务载荷和资源需求,平台
选择 execution backend 并持续观察,直到任务成功、失败或取消。
首个 adapter 使用 Kubernetes `batch/v1 Job`,第二个 adapter 使用 OpenSandbox lifecycle
与 execd API。API 不暴露 PodSpec、sandbox ID 创建参数或具体 adapter 配置,但允许表达两个
真实后端共有的 OCI image、进程、环境变量和资源语义。
`Job` 是短生命周期控制对象。完成后依据 `ttlSecondsAfterFinished` 回收,长期业务状态由调用
者保存,日志由 observability 平台保存。详细保留策略见 ADR-0005。
## 非目标
v1alpha1 不提供:
- DAG、workflow 或多步骤 task;
- 定时执行与可复用 Job template;
- 并行 completions、indexed job 或 gang scheduling;
- 自动业务重试;
- 暂停后恢复;
- 交互式 shell、endpoint、snapshot 或长生命周期 sandbox;
- workspace、cache、artifact 上传协议或结构化 task outputs;
- 永久 Job history。
上述能力应由后续独立资源或经过真实需求验证的兼容字段提供,不能通过透传 PodSpec 或
OpenSandbox extensions 提前进入 API。
## 示例
```yaml
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: Job
metadata:
generateName: hello-
namespace: ci
spec:
jobClassName: default
task:
image: docker.io/library/alpine:3.22
imagePullSecrets: []
command: ["/bin/sh", "-c"]
args:
- echo "hello ${TARGET}"
workingDir: /workspace
env:
- name: TARGET
value: world
- name: TOKEN
valueFrom:
secretKeyRef:
name: example-token
key: token
- name: CONFIG_VALUE
valueFrom:
configMapKeyRef:
name: example-config
key: value
resources:
requests:
cpu: 100m
memory: 128Mi
limits:
cpu: "1"
memory: 512Mi
activeDeadlineSeconds: 600
ttlSecondsAfterFinished: 3600
desiredState: Running
```
## Spec
```yaml
spec:
jobClassName: string
task: TaskSpec
resources: ResourceRequirements
activeDeadlineSeconds: int64
ttlSecondsAfterFinished: int32
desiredState: Running | Cancelled
```
### `jobClassName`
可选。引用平台管理员维护的 cluster-scoped `JobClass`。调用者选择服务等级或执行
能力,而不是直接选择 adapter driver。省略时由 namespace policy 解析默认 class;不存在
默认值时 Job 保持未接受状态,不得静默选择任意后端。
一旦 Job 被接受,该字段不可变。解析出的实际 class 写入 status,以便默认策略后来变化时仍
能恢复原执行。
`JobClass` 及其强类型 parameters API 定义后端配置和调度策略。Job API 不暴露
Kubernetes namespace、OpenSandbox endpoint、API key 或 backend raw configuration。
### `task`
必填,创建后不可变。
```yaml
task:
image: string
imagePullSecrets: []LocalObjectReference
command: []string
args: []string
workingDir: string
env: []EnvVar
```
- `image`:必填 OCI image reference。首版允许 tag;生产策略可以通过 admission 要求 digest。
- `imagePullSecrets`:可选,同 namespace 的私有 registry 凭据引用。
- `command`:可选,覆盖 image entrypoint;空值表示使用 image 默认值。
- `args`:可选,传给 entrypoint/command。
- `workingDir`:可选;为空时使用 image/backend 默认值。
- `env`:可选,名称必须唯一。
`command` 和 `args` 使用 argv 语义,不隐式经过 shell。需要 shell 展开时,调用者必须显式
指定 `/bin/sh -c` 等命令。
#### 环境变量
```yaml
- name: EXAMPLE
value: literal
- name: TOKEN
valueFrom:
secretKeyRef:
name: example
key: token
optional: false
```
`value` 与 `valueFrom` 必须且只能设置一个。v1alpha1 支持同 namespace 的 `SecretKeyRef` 和
`ConfigMapKeyRef`,两者具有相同的引用、optional 和等待语义。Adapter 负责以适合后端且不
写入 Job status 的方式传递值。引用对象或 key 缺失时 Job 保持未开始并通过 Condition 报告。
Secret 内容不得复制到 Event、日志或 backend reference;ConfigMap 值虽然不视为机密,也不
写入 status,避免状态膨胀和不同后端行为不一致。
Kubernetes adapter 保留原生 `SecretKeyRef`/`ConfigMapKeyRef`,由 kubelet 在执行节点解析,
controller 不读取内容。OpenSandbox create API 只接收已经解析的环境变量值,因此该 adapter
必须读取引用并把值放入 sandbox create request。JobClass 必须明确允许 Secret 的这种
传递路径,且 controller 的日志、Event 和 status 不得记录请求正文。未来需要避免把真实凭据
暴露给 sandbox 进程时,使用 OpenSandbox Credential Vault 或 Ayatori 独立 Credential 能力,
而不是改变 `SecretKeyRef` 的既有语义。
私有镜像凭据采用 Kubernetes `kubernetes.io/dockerconfigjson` Secret。Kubernetes adapter
直接传递引用;OpenSandbox adapter 选择与目标 image registry 匹配的条目,并映射到其
`image.auth` create 参数。无法解析、没有匹配 registry 或所选 OpenSandbox runtime 不支持
per-request image auth 时,Job 以明确 reason 失败,不得退回匿名拉取后隐藏真实原因。
### `resources`
可选,使用 Kubernetes `resource.Quantity` 表示数值,但不复用完整 Pod
`ResourceRequirements` 行为。
v1alpha1 支持 `cpu` 和 `memory` 的 requests/limits。Requests 表达准入与调度需求,limits
表达执行上限。JobClass 可以提供默认值和允许范围;解析后的实际资源写入 status。
Adapter 必须显式验证能否满足请求,不能无提示地忽略 limit。后端无法区分 request 与 limit
时,其映射规则属于 JobClass,并在 Job 接受前确定。对 OpenSandbox,CPU 和内存
limits 直接映射为 sandbox VM/container 的 `resourceLimits`;requests 用于 Ayatori 的准入与
调度,并可由 JobClass 映射到后端 resource request 或 capacity profile。映射失败必须
显式拒绝或失败,不能静默降低资源保证。
### `activeDeadlineSeconds`
可选,必须大于零。表示从实际执行开始到任务必须终止的最长时间,不包含排队、class 解析或
后端 provisioning 时间。到期后 controller 请求终止后端,最终以 `Succeeded=False`、
`reason=DeadlineExceeded` 结束。
后端自身的 timeout 可以作为执行机制,但 Ayatori controller 仍以 `status.startTime` 和观察
结果维护领域语义。调度等待超时是不同概念,v1alpha1 不提供。
### `ttlSecondsAfterFinished`
可选,必须大于或等于零。语义与 Kubernetes Job 一致:从终态 transition time 起计算,零
表示立即具备删除资格。该字段在任务完成前后均可修改,但不能保证在既有 TTL 已过期后通过
延长 TTL 阻止并发删除。
平台应通过 schema、CEL 或 policy 设置最大值和推荐默认值。controller 本身不偷偷填充一个
无法从 spec 观察到的永久策略。
### `desiredState`
可选,默认 `Running`。允许的状态迁移只有:
```text
Running → Cancelled
```
设置 `Cancelled` 表示请求终止当前执行并保留 Job 至 TTL 到期。取消是尽力而为的异步操作;
只有 adapter 确认执行不会继续后,Job 才进入终态。字段不得从 `Cancelled` 改回 `Running`。
重新执行必须创建新的 Job。
v1alpha1 不提供 suspend/resume。对任意后端可靠实现 checkpoint/resume 并非共同能力,且暂停
不应被伪装为取消。
## 不可变性
创建后仅允许修改:
- `spec.desiredState`,且只能单向变为 `Cancelled`;
- `spec.ttlSecondsAfterFinished`。
`task`、`resources`、`activeDeadlineSeconds` 和 `jobClassName` 均不可变。首选 CRD CEL
validation 表达这些约束;只有 schema/CEL 无法正确表达时才引入 admission webhook。
Controller reconcile 的技术重试不表示任务重跑。v1alpha1 每个 Job 最多启动一个逻辑执行;
adapter 必须使用 Job UID 作为幂等键。若请求结果未知,controller 必须先 Observe,不能因为
网络超时重新创建可能已经开始的执行。
首个 Kubernetes adapter 创建 `backoffLimit: 0`、`restartPolicy: Never` 的原生 Job,避免继承
Kubernetes 默认的多次业务执行语义。需要重新执行时创建新的 Ayatori Job。
## Status
```yaml
status:
observedGeneration: 1
conditions:
- type: Accepted
status: "True"
reason: Valid
observedGeneration: 1
lastTransitionTime: ...
- type: Scheduled
status: "True"
reason: BackendCreated
observedGeneration: 1
lastTransitionTime: ...
- type: Succeeded
status: "Unknown"
reason: Running
observedGeneration: 1
lastTransitionTime: ...
resolvedJobClass:
name: default
uid: 8aa4...
controllerName: execution.ayatori.ddupan.top/kubernetes
parametersRef:
group: execution.ayatori.ddupan.top
kind: KubernetesExecutionParameters
name: default
uid: c413...
effectiveResources:
requests:
cpu: 100m
memory: 128Mi
limits:
cpu: "1"
memory: 512Mi
execution:
adapter: kubernetes
references:
- type: Job
id: 5cb0...
startTime: ...
completionTime: ...
result:
exitCode: 0
reason: Completed
```
### Conditions
使用标准 `metav1.Condition`。v1alpha1 定义三个核心 Condition:
- `Accepted`:spec、引用、policy 和 JobClass 已解析,可进入调度;
- `Scheduled`:后端已确定并存在可观察的逻辑执行;
- `Succeeded`:任务结果。`Unknown` 表示尚未结束,`True` 表示成功,`False` 表示已经失败或
取消。
失败不使用单独的 `Failed` Condition。`Succeeded=True` 与 `Failed=True` 会形成需要额外维护的
互斥状态,而标准三态 Condition 已能完整表达一次执行:运行中为 `Unknown`、成功为 `True`、
失败为 `False`。失败类型由稳定 reason 区分;这与 Tekton `TaskRun` 的状态约定一致。
不增加与 Conditions 重复的 `phase` 字段。面向 CLI 的阶段摘要由 printer columns 或客户端从
Conditions 推导,避免两个状态源发生漂移。
常用 `Succeeded` reason 初始包括:
- `Pending`、`Scheduling`、`Running`;
- `Completed`;
- `ProcessFailed`;
- `DeadlineExceeded`;
- `Cancelled`;
- `BackendLost`;
- `ResultUnknown`。
Reason 是稳定、机器可读的 PascalCase 标识;message 面向人类且不得承载程序逻辑。
## 状态机
状态机名称用于设计、测试和 metrics,不增加持久化 `status.phase`。当前状态必须能够从 spec、
deletionTimestamp、Conditions、时间和 execution references 唯一推导。
### 状态定义
| 状态 | 判定摘要 | 含义 |
|---|---|---|
| `Resolving` | `Accepted!=True`,非终态 | 等待 JobClass、Secret、ConfigMap 或 policy 解析 |
| `Scheduling` | `Accepted=True`、`Scheduled!=True` | 选择 adapter 并幂等创建后端执行 |
| `Starting` | `Scheduled=True`、无 `startTime` | 后端已存在,任务主体尚未确认开始 |
| `Running` | 有 `startTime`、`Succeeded=Unknown` | 任务主体正在执行 |
| `Cancelling` | `desiredState=Cancelled`、非终态 | 正在确认后端已经停止 |
| `ResultUnknown` | `Succeeded=Unknown/ResultUnknown` | 无法证明任务仍在运行或已经停止 |
| `Succeeded` | `Succeeded=True` | 成功终态 |
| `Failed` | `Succeeded=False`,reason 非 `Cancelled` | 失败终态 |
| `Cancelled` | `Succeeded=False/Cancelled` | 取消终态 |
| `Deleting` | 存在 `deletionTimestamp` | finalizer 正在停止并清理后端,覆盖其他状态 |
存在多个判定条件时按 `Deleting → terminal → Cancelling → ResultUnknown → Running → Starting →
Scheduling → Resolving` 的优先级推导,保证状态唯一。
`ResultUnknown` 不是终态,不设置 `completionTime`,也不启动 TTL。只有确认任务已经停止,才能
转为成功、失败或取消。暂时无法联系后端不等于后端执行失败。
### 正常转移
```text
Resolving
│ 引用与策略解析完成
▼
Scheduling
│ 后端逻辑执行已建立并持久化引用
▼
Starting
│ adapter 确认任务主体开始
▼
Running ───────────────→ Succeeded
└──────────────────→ Failed
```
后端在任务主体开始前就确定失败,例如 image pull、runtime 不兼容或 provisioning 失败,可以从
`Scheduling` 或 `Starting` 直接进入 `Failed`,此时 `startTime` 允许为空。
### 取消转移
```text
Resolving ─┐
Scheduling ─┤
Starting ─┼→ Cancelling → Cancelled
Running ─┤
ResultUnknown ─┘
```
尚未创建后端执行时,取消可以立即确认。已经存在或可能存在后端执行时,必须反复执行
Cancel/Observe,确认不会继续运行后才能进入 `Cancelled`。取消请求与成功完成并发时,以先从
后端确认到的不可逆事实为准:已经成功完成的任务保持 `Succeeded`,不能改写成 `Cancelled`。
### 不确定结果与恢复
```text
Ensure/Observe 返回歧义
↓
ResultUnknown
├── 找回执行 → Starting / Running
├── 找到终态 → Succeeded / Failed / Cancelled
└── 管理员确认无法继续 → Failed(BackendLost)
```
在 `Ensure` 请求超时且尚未成功写入 external reference 时,adapter 必须使用 Job UID 查询后端,
不能直接再次创建。Controller 重启后遵循相同规则。
### 删除与 TTL 转移
任意状态收到 deletionTimestamp 后进入 `Deleting`。若执行可能存在,先 Cancel/Observe,再
Delete 后端资源并移除 finalizer。TTL controller 只对具有 `completionTime` 的三个终态发起
删除;`Resolving`、`Scheduling`、`Starting`、`Running`、`Cancelling` 和 `ResultUnknown` 均不
具备 TTL 删除资格。
### 状态不变量
- `Succeeded=True/False` 是不可逆终态;终态 reason、`completionTime` 和 result 不再改变。
- `startTime` 和 `completionTime` 一旦设置不可改变;两者都存在时 completionTime 不早于
startTime。
- `Succeeded=True` 必须具有 `completionTime`,可以没有 exit code,但 adapter 应说明原因。
- `Succeeded=False` 必须具有 `completionTime`;进程失败且能取得退出码时必须保存 exit code。
- 非终态的 `Succeeded` 必须为 `Unknown`,不得省略为具有歧义的空状态。
- `Scheduled=True` 前不得设置 `startTime`;一旦为 True 不再回退。
- execution references 只能由 controller 写入;已有引用不能静默替换成新的逻辑执行。
- Job UID 是执行幂等键;同名但不同 UID 的 Job 必须被视为不同执行。
- `desiredState=Cancelled` 后不得创建新的后端执行。
- reconcile 错误和退避不得修改任务的业务结果。
### 状态机测试矩阵
实现必须至少覆盖以下 table-driven unit tests,并为关键恢复路径提供 envtest:
| 类别 | 场景 | 必要断言 |
|---|---|---|
| 正常 | 创建、开始、退出 0 | 单次 Ensure,时间与成功终态正确 |
| 正常 | 主进程非零退出 | `Succeeded=False/ProcessFailed` 与 exit code |
| 解析 | JobClass 后创建 | 不提前 Ensure,引用出现后继续 |
| 解析 | Secret/ConfigMap 或 key 后创建 | 不泄露值,解析后只启动一次 |
| 后端 | image pull 或 provisioning 失败 | 未设置 startTime 的失败终态合法 |
| 幂等 | Ensure 成功但 status 写入前崩溃 | 通过 UID 找回,不能创建第二次执行 |
| 幂等 | 重复 reconcile 与重复事件 | 不产生额外执行,不改变终态时间 |
| 恢复 | controller 在各非终态重启 | 从持久 status/reference 恢复正确状态 |
| 未知 | Ensure/Observe 超时且结果不明 | 保持非终态,不设 completionTime,不触发 TTL |
| 未知 | 后端恢复后找回运行任务 | 从 ResultUnknown 返回 Running |
| 未知 | 管理员确认执行丢失 | 只在确认后进入 `Failed/BackendLost` |
| 取消 | 在解析、调度、启动、运行阶段取消 | 不再创建或确认停止后才进入 Cancelled |
| 竞态 | 取消与成功完成并发 | 已确认成功不被取消覆盖 |
| 超时 | active deadline 到期 | 请求取消,确认停止后 `DeadlineExceeded` |
| 删除 | 每个非终态阶段删除 | finalizer 清理完成前对象不消失 |
| 删除 | 后端暂时不可达 | finalizer 保留并重试,不误报已清理 |
| TTL | 三种终态到期 | 到期前不删,到期后带 UID precondition 删除 |
| TTL | controller 在等待 TTL 时重启 | informer 恢复计时,最终删除一次 |
| TTL | 到期附近延长 TTL | 最终 GET 重新核对最新 TTL |
| 隔离 | 同名 Job 删除并以新 UID 重建 | 旧队列项和旧后端不得影响新 Job |
| 校验 | 修改不可变字段或取消后恢复 Running | schema/CEL 拒绝请求 |
| 引用 | OpenSandbox 保存 Sandbox 与 Command 引用 | 顺序重试后引用稳定且无凭据 |
### 时间
- `startTime`:adapter 确认任务主体开始执行的时间,而不是 CR 创建或 backend provisioning
时间;设置后不可改变。
- `completionTime`:进入最终成功、失败或取消状态的时间;设置后不可改变。
TTL 以 `completionTime` 为基准。若后端已经完成但结果暂时无法确认,不得猜测 completionTime。
### Execution reference
`status.execution` 是 execution 领域定义的正式 API 字段,保存 controller 重启后重新 Observe
所需的最小稳定引用:
- `adapter`:实际 adapter 类型;
- `references`:一个或多个由 adapter 定义的不透明外部引用。
```yaml
execution:
adapter: opensandbox
references:
- type: Sandbox
id: sandbox-123
- type: Command
id: command-456
```
单个 `externalID` 不足以表达 OpenSandbox 的 sandbox 与 command 两级资源。`type` 和 `id` 的
值由对应 adapter 定义,调用者只能用于诊断和关联,不能据此实现领域逻辑。execution 领域将
每个引用限制为 `type` 与 `id` 两个非空、有长度上限的字符串,不提供任意 metadata map 或
raw JSON。引用不包含 endpoint、凭据或 Secret 内容。Kubernetes adapter 可以另外通过 owner
reference 管理原生 Job,但仍需把恢复所需引用持久化,并保证同名重建安全。
该结构不提升为跨领域共享的万能 ExternalReference。VM、数据库和 LB 等领域根据真实后端
需要定义自己的受限引用 schema,只有多个领域出现语义完全一致的实际重复后才考虑共享。
### Result
`result.exitCode` 只在后端能够确定主进程退出码时设置。调度失败、取消、后端丢失等情况可以
没有退出码。`result.reason` 提供简短分类;详细诊断写入 Condition message 和 observability,
不得把完整日志写入 status。
Job UID 是跨后端日志、metrics 和 traces 的主要 correlation identity。Adapter 必须将
namespace、name 和 UID 传入执行环境或后端 metadata;高基数字段如何索引由 observability
平台决定,API 不要求把 UID 配置为日志 label。
## 删除与 finalizer
Execution controller 在可能创建外部执行前添加
`execution.ayatori.ddupan.top/job-cleanup` finalizer。
删除一个活动 Job 表示取消并清理,而不是 orphan:
1. 请求 adapter 终止执行;
2. Observe,确认执行不会继续;
3. 删除后端临时资源与短期凭据;
4. 移除 finalizer。
首版不提供用户可选 orphan policy。让一次性任务脱离控制面继续运行既难以观察,也可能产生
副作用。后端长期不可达时由管理员根据 runbook 判断并强制移除 finalizer,该操作必须可审计。
TTL controller 只发起 Job 删除,所有手工删除和 TTL 删除都经过相同 finalizer 路径。
## Adapter contract 对 API 的保证
每个 execution adapter 必须提供以下语义,而非暴露自身 SDK 类型:
```text
Ensure 幂等地建立以 Job UID 标识的一个逻辑执行
Observe 返回尚未开始、运行、成功、失败、取消或结果未知
Cancel 请求停止且可被重复调用
Delete 清理后端临时资源且可被重复调用
```
`Ensure` 的网络超时不能直接触发第二次执行。Adapter 必须能够通过 UID/metadata 查找已创建的
后端对象,或返回 `ResultUnknown` 交由人工处理。
Kubernetes adapter 与 OpenSandbox adapter 实现后,应复审 contract 和 API。只有两个真实
实现都需要且语义相同的字段才提升为通用能力;后端特有功能优先进入 JobClass 或独立
资源,不增加 `rawConfig`。
OpenSandbox 支持从 OCI image 创建 sandbox,但不保证每个 image 都能在所选 runtime、架构或
安全 profile 下成功启动。Adapter 对已知不支持的组合应尽早报告;image pull、进程启动或
运行时不兼容等实际后端失败最终统一表现为 `Succeeded=False`,并以 reason/message 保留可
诊断原因。这不要求 Ayatori 在提交前证明任意 OCI image 一定可运行。
## 待后续设计
- capability-based class 自动选择;
- 私有 image registry 的凭据和统一 workload identity;
- artifact、workspace 与 cache 的独立 API;
- Job 创建速率、并发、quota、公平调度以及是否集成 Kueue;
- observability correlation 的具体 OpenTelemetry/Loki 字段约定;
- 调用者错过 TTL 时是否需要可选的最小审计记录。
这些问题不阻塞首个 Kubernetes adapter 的 API review;image pull 的最小凭据路径必须在实现
前通过 Kubernetes 与 OpenSandbox adapter 测试验证。
## 成熟实现参考
- [Kubernetes Job](https://kubernetes.io/docs/concepts/workloads/controllers/job/)
- [Kubernetes Job API](https://kubernetes.io/docs/reference/kubernetes-api/batch/job-v1/)
- [Tekton Pipeline API](https://tekton.dev/docs/pipelines/pipeline-api/)
- [Kueue Workload](https://kueue.sigs.k8s.io/docs/concepts/workload/)
- [OpenSandbox API specifications](https://github.com/opensandbox-group/OpenSandbox/blob/main/docs/api/index.md)
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# JobClass API v1alpha1 草案
- 状态:Draft
- 日期:2026-09-17
- API group:`execution.ayatori.ddupan.top`
- Kind:`JobClass`
- Scope:Cluster
## 目标
`JobClass` 是平台管理员提供给 Job 调用者的执行服务等级。名称表达稳定的用户语义,
例如 `default`、`rootless`、`microvm` 或 `trusted-infra`;调用者不需要知道它当前由 Kubernetes
还是 OpenSandbox 实现。
JobClass 负责:
- 选择拥有该 class 的 adapter/controller;
- 引用 adapter 自己的强类型参数对象;
- 限制允许使用该 class 的 namespace;
- 提供跨后端一致的资源默认值与范围;
- 向 Job controller 报告配置是否被接受、后端是否可用。
它不负责保存队列状态、并发配额、Job history 或任意后端 raw config。
## 设计依据
- Kubernetes `RuntimeClass` 使用 cluster-scoped class 将调用者与具体 runtime handler、调度约束
和 overhead 隔离。
- `StorageClass` 允许管理员用稳定名称提供不同服务等级,并由调用者显式或默认选择。
- Gateway API `GatewayClass` 使用 `controllerName + parametersRef` 将稳定 class API 与实现专用
参数分离,并通过 `Accepted` Condition 报告配置有效性。
- Kueue `ResourceFlavor` 将资源规格与具体节点标签、taint 等 placement 细节分开。
Ayatori 采用 GatewayClass 风格的参数引用,不在 JobClass 中建立随 adapter 数量膨胀的
union,也不使用 `map[string]any`。
## 示例
### Kubernetes execution
```yaml
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: JobClass
metadata:
name: rootless
annotations:
execution.ayatori.ddupan.top/is-default-job-class: "true"
spec:
controllerName: execution.ayatori.ddupan.top/kubernetes
parametersRef:
group: execution.ayatori.ddupan.top
kind: KubernetesExecutionParameters
name: rootless
allowedNamespaces:
matchLabels:
ayatori.ddupan.top/execution: enabled
resources:
defaults:
requests:
cpu: 250m
memory: 256Mi
limits:
cpu: "2"
memory: 2Gi
maximum:
limits:
cpu: "8"
memory: 16Gi
---
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: KubernetesExecutionParameters
metadata:
name: rootless
spec:
serviceAccountName: ayatori-job
runtimeClassName: runc
scheduling:
nodeSelector:
ayatori.ddupan.top/node-role: execution
tolerations:
- key: ayatori.ddupan.top/execution
operator: Equal
value: "true"
effect: NoSchedule
podSecurityContext:
runAsNonRoot: true
seccompProfile:
type: RuntimeDefault
```
### OpenSandbox execution
```yaml
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: JobClass
metadata:
name: microvm
spec:
controllerName: execution.ayatori.ddupan.top/opensandbox
parametersRef:
group: execution.ayatori.ddupan.top
kind: OpenSandboxExecutionParameters
name: microvm
allowedNamespaces:
matchLabels:
ayatori.ddupan.top/microvm-access: "true"
resources:
defaults:
requests:
cpu: "1"
memory: 1Gi
limits:
cpu: "2"
memory: 2Gi
maximum:
limits:
cpu: "8"
memory: 16Gi
---
apiVersion: execution.ayatori.ddupan.top/v1alpha1
kind: OpenSandboxExecutionParameters
metadata:
name: microvm
spec:
endpoint: https://opensandbox-api.example.internal
apiKeySecretRef:
namespace: ayatori-system
name: opensandbox-api
key: api-key
poolRef: microvm
requestMapping: AdmissionOnly
allowSecretEnv: true
allowImageAuth: true
allowInsecureHTTP: false
```
`endpoint` 默认必须使用 HTTPS。隔离的本地开发环境可以显式设置
`allowInsecureHTTP: true` 使用 HTTP;生产配置不得启用该开关。
## JobClass spec
```yaml
spec:
controllerName: string
parametersRef: ParametersReference
allowedNamespaces: LabelSelector
resources: ExecutionResourcePolicy
```
### `controllerName`
必填、创建后不可变。使用 domain-prefixed path 标识负责处理该 class 和 Job 的 controller,例如:
```text
execution.ayatori.ddupan.top/kubernetes
execution.ayatori.ddupan.top/opensandbox
```
它是 controller 所有权标识,不是任意可执行插件名称。一个 controller 只能处理自己明确支持
的名称。未来 adapter 拆成独立 Deployment 时,class 和 Job API 无需改变。
### `parametersRef`
必填、创建后不可变:
```yaml
parametersRef:
group: execution.ayatori.ddupan.top
kind: KubernetesExecutionParameters
name: rootless
```
v1alpha1 只允许引用 cluster-scoped 参数对象,并限制 `group`、`kind`、`name` 的长度与格式。
每个 controller 明确列出支持的 kind;引用 ConfigMap、Secret 或未知 CRD 不被接受。
参数引用只有一层,参数 CRD 可以进一步引用 Secret 等运行配置。禁止嵌套通用参数链和 raw
JSON,避免 class 成为无法校验的配置转发器。
### `allowedNamespaces`
可选 Kubernetes `LabelSelector`。Job 所在 namespace 必须匹配才可使用该 class。省略表示允许
所有 namespace;这是显式的管理员选择,而不是用户能力。
该检查由 Job controller 执行,并应尽可能增加 CEL/admission policy 作为快速反馈。用户即使
知道 privileged class 名称,也不能仅靠设置 `jobClassName` 绕过授权。
Namespace label 在 Job 被接受后发生变化,不中断已经运行的 Job,但影响新的 Job。紧急终止
使用独立管理员操作,不通过修改 selector 隐式杀死任务。
### `resources`
可选,定义后端无关的 CPU、内存策略:
```yaml
resources:
defaults:
requests: {cpu, memory}
limits: {cpu, memory}
minimum:
requests: {cpu, memory}
limits: {cpu, memory}
maximum:
requests: {cpu, memory}
limits: {cpu, memory}
```
规则为:
1. Job 未设置的值由 defaults 补齐;
2. 解析结果必须满足 minimum/maximum;
3. CPU 与内存 request 不得大于对应 limit;
4. 解析后的 effective resources 写入 Job status;
5. 后续修改 class 不改变已经接受的 Job;
6. adapter 不能静默降低 effective resources。
只支持 CPU 和内存。GPU、临时磁盘等资源在出现真实后端需求后增加,不先复制完整 Kubernetes
ResourceList。
Runtime/VM overhead 是 adapter 参数或后端调度实现,不计入用户请求的 task resources。
Kubernetes adapter 应优先利用 RuntimeClass Pod overhead;OpenSandbox adapter 在其 capacity
profile 中计算 microVM overhead。
## 默认 class 选择
Job 显式设置 `spec.jobClassName` 时始终优先使用该值。省略时按以下顺序解析:
1. Job namespace annotation
`execution.ayatori.ddupan.top/default-job-class`;
2. 唯一带有
`execution.ayatori.ddupan.top/is-default-job-class: "true"` annotation 的 JobClass。
若不存在默认 class,Job 保持 `Accepted=False/NoDefaultJobClass`。若存在多个全局默认值,
Job 保持 `Accepted=False/AmbiguousDefaultJobClass`,同时产生平台告警;不得模仿
StorageClass 选择最新创建对象,因为执行隔离与权限不应随创建时间变化。
解析后 Job status 保存:
```yaml
resolvedJobClass:
name: rootless
uid: 8aa4...
controllerName: execution.ayatori.ddupan.top/kubernetes
parametersRef:
group: execution.ayatori.ddupan.top
kind: KubernetesExecutionParameters
name: rootless
uid: c413...
```
Job 后续 reconcile 使用已解析引用,不能因 namespace 默认值或全局默认 class 改变而切换
adapter。若同名 class 被删除并重建,UID 不匹配,现存 Job 不得自动采用新对象。
## Status
```yaml
status:
observedGeneration: 1
conditions:
- type: Accepted
status: "True"
reason: Accepted
observedGeneration: 1
lastTransitionTime: ...
- type: Ready
status: "True"
reason: BackendReachable
observedGeneration: 1
lastTransitionTime: ...
```
### `Accepted`
表示 controller 已识别 controllerName,parametersRef 指向受支持且 schema 有效的对象,通用
resource policy 自洽。无效 class 使用 `Accepted=False` 和稳定 reason,例如:
- `UnsupportedController`;
- `InvalidParametersReference`;
- `ParametersNotFound`;
- `InvalidResourcePolicy`。
### `Ready`
表示该 class 当前具备接受新执行的基本条件。Kubernetes adapter 检查 RuntimeClass 等集群级
依赖;具体 namespace 中的 ServiceAccount 在 Job 调度时检查。OpenSandbox adapter 检查参数
引用、认证材料和后端健康端点。
`Ready=False` 阻止创建新的后端执行,但不改变已经开始 Job 的终态。Controller 仍必须尝试
Observe、Cancel 和 Delete 已存在执行,不能因 class 不 Ready 而停止清理。
Ready 是观测值,不是容量预留。容量不足、排队和并发配额属于调度系统,不通过 Ready 频繁
抖动。
## 生命周期与修改
- `controllerName` 和 `parametersRef` 不可变;切换后端必须创建新 class 名称。
- `allowedNamespaces` 与 resource policy 可以修改,只影响尚未接受的新 Job。
- adapter 参数对象允许更新 endpoint、Secret 引用和其他运维配置,以支持凭据轮换与故障切换。
- 参数更新不得使 adapter 为现存 Job 创建新的逻辑执行;Job 中已持久化的 execution reference
始终优先。
JobClass controller 添加保护 finalizer。删除 class 前必须确认不存在引用其 UID 的非终态
Job。终态 Job 已完成后端清理,不阻塞 class 删除;其 TTL 回收不再需要 class 后端配置。
参数对象删除保护由各 adapter controller 负责。在仍有 class 引用时,参数对象不得被无提示
删除。强制移除 finalizer 是管理员恢复操作,必须有 runbook 和审计记录。
## KubernetesExecutionParameters
这是 Kubernetes adapter 自己拥有的 cluster-scoped 管理员 API,不是 Job 用户 API。首版字段:
```yaml
spec:
serviceAccountName: string
runtimeClassName: string
scheduling:
nodeSelector: map[string]string
tolerations: []Toleration
podSecurityContext: PodSecurityContext
imagePullPolicy: Always | IfNotPresent | Never
```
首版原生 `batch/v1 Job` 与 Ayatori Job 位于同一 namespace,因此 Secret/ConfigMap、ResourceQuota、
NetworkPolicy、日志和 owner reference 都保持原生语义。普通调用者只拥有 Ayatori Job 权限,
不应拥有修改生成的 batch Job/Pod 的权限。
`serviceAccountName` 是每个允许 namespace 中预先提供的同名 ServiceAccount。缺失时 Job 保持
未调度并报告原因,不回退到 `default` ServiceAccount。
参数允许使用 Kubernetes 强类型的 Toleration 和 PodSecurityContext,因为这是明确属于
Kubernetes adapter 的管理员 API;这不构成向 Job API 透传 PodSpec。
## OpenSandboxExecutionParameters
这是 OpenSandbox adapter 自己拥有的 cluster-scoped 管理员 API。首版字段:
```yaml
spec:
endpoint: string
apiKeySecretRef:
namespace: string
name: string
key: string
poolRef: string
requestMapping: AdmissionOnly | Native
allowSecretEnv: bool
allowImageAuth: bool
```
- endpoint 必须为 HTTPS,Dev 显式允许的本地配置除外;不得包含认证信息。
- API key 只通过 namespaced Secret 引用,status/Event 不显示内容。
- poolRef 映射为 OpenSandbox 支持的 pool/profile 选择,不允许 Job 覆盖。
- `requestMapping=Native` 要求后端忠实接受 requests 与 limits;`AdmissionOnly` 表示 requests
只参与 Ayatori 准入,limits 映射为 OpenSandbox resourceLimits。
- Secret env 与 per-request image auth 都会使 adapter 读取 Kubernetes Secret 并把解析值发送
到 OpenSandbox API,必须由管理员分别显式启用。
OpenSandbox 参数不暴露任意 `extensions` map。未来确需使用某项 extension 时,将其提升为该
参数 CRD 中经过校验的命名字段。
## Condition 与 Job 状态机交互
Job 只有在以下条件同时满足时进入 `Accepted=True`:
- class 已按默认或显式名称解析;
- class UID 与已解析引用一致;
- class `Accepted=True`;
- namespace 符合 allowedNamespaces;
- Job resources 成功解析并处于允许范围;
- Job 使用的 Secret/ConfigMap 存在且可以按 optional 语义解析。
`JobClass Ready=False` 时,Job 保持 `Accepted=True`、`Scheduled=False`,等待后端恢复。
这样 class 配置合法性与当前可用性不会混成同一状态。
若 Job 已经 Scheduled,后续 class Ready 或 namespace label 变化不撤销执行。若 class 或参数
对象意外消失,controller 仍以 Job status 中的 controllerName、参数 UID 和 execution
references 尝试恢复;无法安全观察时进入非终态 `ResultUnknown`,不能切换 class 重跑。
## 测试矩阵
实现至少覆盖:
- 显式 class、namespace 默认和全局默认的优先级;
- 零个与多个全局默认 class;
- allowedNamespaces 允许、拒绝及接受后 label 变化;
- unsupported controllerName 和错误 parameters kind;
- parameters 不存在、稍后出现、UID 删除重建;
- resource defaults、min/max、request 大于 limit 和 quantity 边界;
- class policy 更新不改变已接受 Job 的 effective resources;
- class Ready=False 阻止新 Ensure,但不阻止现存执行 Observe/Cancel/Delete;
- Kubernetes ServiceAccount/runtime 配置缺失且不回退;
- OpenSandbox API key Secret 缺失、轮换及后端健康恢复;
- allowSecretEnv/allowImageAuth 拒绝不允许的 Job;
- class 删除被非终态 Job 阻止,终态清理后允许删除;
- 同名 class 或参数对象以新 UID 重建时不劫持现存 Job。
## 延后事项
- class 级并发和速率限制;
- Kueue LocalQueue/ClusterQueue 映射;
- capability-based 自动 class 选择;
- 多集群 Kubernetes executor;
- GPU、临时磁盘和其他扩展资源;
- workload identity 与 OpenSandbox Credential Vault;
- class 成本、优先级与抢占策略。
## 成熟实现参考
- [Kubernetes RuntimeClass](https://kubernetes.io/docs/concepts/containers/runtime-class/)
- [Kubernetes StorageClass](https://kubernetes.io/docs/concepts/storage/storage-classes/)
- [Gateway API GatewayClass](https://gateway-api.sigs.k8s.io/reference/api-types/gatewayclass/)
- [Kueue ResourceFlavor](https://kueue.sigs.k8s.io/docs/concepts/resource_flavor/)
+36 -8
View File
@@ -4,9 +4,11 @@
Git / CLI / Backstage Git / CLI / Backstage
│ │
▼ ▼
Kubernetes API + CRD kube-apiserver + etcd + CRD
API / state coordination plane
│ │
Ayatori controllers Ayatori controller-manager
scheduling / lifecycle / recovery / GC
│ │
┌──────┼──────────────┐ ┌──────┼──────────────┐
│ │ │ │ │ │
@@ -19,6 +21,20 @@ Terraform OpenBao / DNS / KaaS
Ansible Ansible
``` ```
Ayatori 复用 Kubernetes 的 API machinery,而不是 Kubernetes 的容器编排产品边界。
kube-apiserver 提供版本化对象、并发控制、list/watch、RBAC、admission 和审计;Ayatori
controller-manager 承担所有领域控制循环。Kubernetes workload 集群只是与 OpenSandbox、
Proxmox 等并列的 executor/backend,不默认等于运行 controller 的 management environment。
因此,领域 API 不得依赖“资源最终一定变成同集群原生对象”的假设。原生 Pod、Job、Service、
NetworkPolicy、namespace 共置与 owner reference 只有在 Kubernetes adapter 内才具有原生含义;
跨后端所需能力必须由领域模型显式定义。
内置 API 类型也按相同原则选择性复用。采用 `core/v1 Node` 作为计算节点 API 时,可以由
Ayatori Compute Agent 写入状态、由 Ayatori 自有调度 controller 消费;这不会引入 kubelet、
Pod 或 kube-scheduler。API contract、负责实现它的 controller/agent 和数据面是三个独立决策,
不得从其中一个自动推导另外两个。
## 控制面 ## 控制面
Dev 与 Prod 使用独立的 Kubernetes API、数据库、身份和 controller 实例。两者可以 Dev 与 Prod 使用独立的 Kubernetes API、数据库、身份和 controller 实例。两者可以
@@ -34,16 +50,16 @@ Ayatori 不承载或重新实现数据面。控制面故障只应阻止创建与
## 资源分层 ## 资源分层
平台提供正交产品能力,例如: 平台只为已经验证的管理缺口提供正交产品能力。当前优先资源为:
- `Job`、`Sandbox`、`ManualTask`
- `VirtualMachine`
- `LoadBalancer` - `LoadBalancer`
- `Database` - `Database`
- `Bucket` - `Bucket`
- `DNSRecord` - `VirtualMachine`
- `Credential`
- `KubernetesCluster` `Run`/当前实验性的 `Job`、`ManualTask` 等可以作为控制面执行原语,但不是因为底层能运行 OCI
image 就自动成为面向使用者的计算产品。`DNSRecord`、`Credential`、`KubernetesCluster` 等只在
出现独立生命周期和真实消费者后加入;尤其 KaaS 不是预定终点。
只有具备独立领域生命周期的能力才应成为高阶资源。应用本身通过 GitOps 组合上述资源, 只有具备独立领域生命周期的能力才应成为高阶资源。应用本身通过 GitOps 组合上述资源,
重复组合可通过模板或 Composition 表达,而不是扩展中央 Application API。 重复组合可通过模板或 Composition 表达,而不是扩展中央 Application API。
@@ -56,5 +72,17 @@ Ayatori 不承载或重新实现数据面。控制面故障只应阻止创建与
2. 通过固定版本的 Terraform module 或 Ansible playbook 执行。 2. 通过固定版本的 Terraform module 或 Ansible playbook 执行。
3. 仅在必要时使用 GitOps bridge。 3. 仅在必要时使用 GitOps bridge。
Proxmox 是已知例外:其远程 API 不能覆盖所需的完整 VM 生命周期。VirtualMachine adapter 可以
按操作能力选择 Proxmox API、部署在节点上的受限强类型 Agent/CLI,或生成 `ManualTask`。Agent
必须提供版本化操作、幂等查询、operation ID 与审计,不能暴露任意 shell,也不能把 CLI 输出
直接当作长期稳定协议。
Controller 无论采用哪种执行方式,都必须提供一致的 ownership、conditions、删除语义、 Controller 无论采用哪种执行方式,都必须提供一致的 ownership、conditions、删除语义、
错误分类和恢复行为。 错误分类和恢复行为。
## API Server 边界
首选 kube-apiserver + CRD,持续复用其成熟的 watch、RBAC、版本化存储和 API 生态。
generic-apiserver 或聚合 API Server 不会减少领域 controller 的数量,只会把资源服务端、
兼容性和存储迁移责任转移给 Ayatori。只有 CRD 的限制已经形成可复现、不可通过合理领域建模
解决的阻碍时,才重新评估自建 API Server。
@@ -1,4 +1,4 @@
# ADR-0001:采用 Kubernetes API 作为资源模型 # ADR-0001:采用 Kubernetes API machinery 作为状态协调平面
- 状态:Accepted - 状态:Accepted
- 日期:2026-09-17 - 日期:2026-09-17
@@ -10,16 +10,49 @@ homelab 的基础设施状态分散在多套工具和后端中。仅集中 IaC
## 决策 ## 决策
Ayatori 使用 Kubernetes API machinery 与 CRD 表达平台资源、引用和状态,但不将平台 Ayatori 使用 kube-apiserver、etcd、Kubernetes API machinery 与 CRD 构成 API 和状态协调
限定为容器编排系统。Controller 可以运行于专用 management environment,并管理集群外 平面。主要复用的是以下难以可靠重建的能力:
的 VM、LB、数据库、对象存储、DNS、凭据和托管 Kubernetes 控制面。
- 版本化对象 API、schema、defaulting、validation 与 admission;
- 带 `resourceVersion` 的乐观并发、list/watch 与断线恢复;
- informer/cache/workqueue 生态;
- authentication、RBAC、namespace、审计与 API discovery;
- spec/status、conditions、finalizer 等控制面约定。
这项选择不把 Ayatori 限定为容器编排系统,也不意味着原生 Kubernetes workload API 是领域
模型。kube-apiserver 保存期望、引用和观察状态;Ayatori controller-manager 实现平台领域的
调度、生命周期、故障恢复、垃圾回收和后端收敛。Controller 可以运行于专用 management
environment,并管理集群外的 VM、LB、数据库、对象存储、DNS、凭据和托管 Kubernetes 控制面。
Ayatori 可以选择性复用 Kubernetes 内置资源的 API contract,而不采用其上游实现组件。例如,
`core/v1 Node` 可以表达计算节点身份、capacity、conditions、labels、taints 和维护状态,由
Ayatori Compute Agent 更新并由 Ayatori controller 消费;这不要求部署或模拟 kubelet,也不
要求存在 Pod、CRI、kube-scheduler 或 kube-controller-manager。`Lease`、`Namespace`、
`Secret`、`ConfigMap`、`Event` 和 RBAC 等资源同样按各自适用的 API 语义独立选择。
复用内置资源前必须明确其 producer、consumer、ownership、采用的字段和未采用的上游语义。
不能因为 Kubernetes 通常将若干组件一起部署,就把这些实现关系重新带入 Ayatori。
Kubernetes workload 集群与 OpenSandbox、Proxmox 等一样,是通过 adapter 接入的 backend 或
executor。它可以是远端集群,也可以完全不存在。除 Flux 和 Ayatori controllers 等管理组件的
部署外,领域 API 不得隐含依赖 controller 所在集群的 Pod、Job、Service、NetworkPolicy、
namespace 共置或 owner reference 语义;确有需要的能力必须由领域 API 和 adapter 契约显式表达。
GitOps 是长期期望状态的主要提交入口;API 是当前意图、关系和状态的在线控制面;真实后端 GitOps 是长期期望状态的主要提交入口;API 是当前意图、关系和状态的在线控制面;真实后端
仍是运行事实来源。Controller 负责三者之间持续收敛。 仍是运行事实来源。Controller 负责三者之间持续收敛。
`generic-apiserver` 或 Kubernetes API aggregation 只会让 Ayatori 接管资源的服务端实现,并不会
替代上述领域 controller。除非 CRD/kube-apiserver 的存储模型、API 语义或扩展边界形成经过验证的
阻碍,Ayatori 不自行承担 watch、RBAC、API 兼容、存储版本迁移和高可用 API Server 的实现与运维。
## 结果 ## 结果
- 获得统一声明式 API、watch、RBAC、admission、conditions 和 controller 生态。 - 获得统一声明式 API、watch、RBAC、admission、conditions 和 controller 生态。
- Ayatori controller-manager 实际承担类似 kube-controller-manager 的领域控制循环职责,必须把
reconcile、状态迁移、恢复与后端契约作为产品核心,而不是把它们误交给 kube-apiserver。
- 原生 Kubernetes workload 对象不能成为所有 adapter 的最低公共语义;Kubernetes 只是其中一种
执行后端。
- 允许由 Ayatori 自己实现合适的内置 API 资源语义;API 类型与上游 controller/runtime 不绑定。
- 可以把机器与人工执行统一建模为异步控制循环。 - 可以把机器与人工执行统一建模为异步控制循环。
- 必须维护 CRD 版本、conversion、认证、备份和控制面升级。 - 必须维护 CRD 版本、conversion、认证、备份和控制面升级。
- 不在 API 中保存日志、指标、大对象或业务数据,只保存控制所需状态及引用。 - 不在 API 中保存日志、指标、大对象或业务数据,只保存控制所需状态及引用。
@@ -0,0 +1,109 @@
# ADR-0004:采用可拆分的模块化 Controller 架构
- 状态:Accepted
- 日期:2026-09-17
## 背景
Ayatori 将逐步提供任务执行、虚拟机、数据库、负载均衡、对象存储、托管 Kubernetes 和
人工操作等领域能力。这些能力拥有不同的生命周期、权限、网络位置和后端实现,若直接在
一个 controller 中相互调用并共享内部状态,后续接入新后端时容易形成代码耦合,也难以
独立扩缩容、发布和隔离故障。
另一方面,在首个领域能力完成前就拆分为多个独立服务,会立即引入镜像与部署管理、服务
间认证、版本兼容、分布式观测和故障处理成本,而这些成本尚未由真实运行需求证明。
Job 是首个领域对象。它既是最初的单次任务调度 API,也用于验证领域状态机与 Kubernetes
Job、OpenSandbox 和未来执行后端之间的适配边界。
## 决策
Ayatori 初期采用模块化单体:多个领域 controller 可以编译进同一个 controller manager,
但代码、API 所有权和依赖方向按照未来可独立部署的服务边界组织。
### 领域所有权
每个领域模块拥有自己的:
- CRD 与 API 版本;
- reconciler 和状态机;
- finalizer、conditions、删除及恢复语义;
- backend adapter contract;
- 领域测试。
初始领域包括但不限于 execution、compute、database、networking 和 human operations。领域
模块不得导入其他领域的内部实现,也不得直接修改其他领域所拥有对象的 spec 或 status。
### 跨领域协作
领域间的持久协作通过 Kubernetes API 对象、typed reference、owner reference 和
conditions 完成,而不是通过进程内 service 方法调用。
例如虚拟机完成创建后需要执行 provision,应创建或引用 Run 对象并观察其状态,而不是
直接调用 execution 模块的内部 Go API。更高层的资源组合由专门的领域对象或 GitOps 声明
完成,不引入统一包装所有底层能力的 Application controller。
该约束使 controller 即使暂时位于同一进程,其通信、失败和恢复行为仍与未来分进程部署
一致。
### Backend adapter
领域状态机只依赖本领域定义的最小 adapter contract,不依赖 Kubernetes Job、Crossplane、
OpenTofu、OpenSandbox 或具体厂商 SDK 类型。Adapter 负责:
- 幂等地确保期望外部资源存在;
- 观察并翻译外部状态;
- 执行取消、删除或 orphan 策略;
- 返回稳定的外部引用、能力和分类错误。
不同领域分别定义 adapter contract,不建立能包装所有资源类型的万能 Provider 接口。
后端不具备的能力必须显式报告,不通过虚假的统一语义隐藏差异。
Crossplane、OpenTofu 和 Ansible 等系统是可替换的 backend 实现或执行机制,不构成 Ayatori
面向用户的稳定 API。它们的 ProviderConfig、Workspace、playbook 等实现细节不得直接成为
领域 API 的必填契约。
### 共享代码
默认不建立跨领域的万能 service、repository 或 util 层。共享并非禁止,但必须来自已经
存在的真实重复,并同时满足:
1. 至少有两个真实调用者;
2. 重复的行为和语义一致,而不只是代码形状相似;
3. 调用方对其生命周期和预期演化方向一致;
4. 共享包不依赖任何具体领域的内部包。
适合共享的通常是机制,例如 conditions 操作、typed reference、重试退避、Secret 引用
读取、观测初始化和测试环境。领域状态机、资源策略、错误含义及后端选择不得为了消除少量
重复而抽取到共享层。
共享包使用表达具体职责的窄名称,初期保留在 `internal/shared/`。不建立内容持续膨胀的
通用 `util` 包,也不在实现稳定前承诺公共 Go API。
### 部署与拆分
controller manager 应支持按领域或 controller 集合选择性启用。初期可以使用一个二进制和
一个 Deployment;需要隔离时,优先使用同一制品部署为多个 Deployment。只有独立版本和
依赖关系成为真实需求后,才进一步拆分二进制或仓库。
出现下列任一情况时,应评估拆分部署:
- 需要独立扩缩容或显著不同的 reconcile 并发;
- 权限边界要求独立 ServiceAccount 与 RBAC;
- 后端只能从特定网络或节点访问;
- 沉重、不可信或冲突的 SDK 需要隔离;
- 一个领域的故障不应影响其他控制循环;
- 发布节奏或维护责任已经明确分离。
拆分不得改变领域 API,也不应将原本通过 API 对象完成的协作改为同步 RPC 链路。
## 结果
- 首个 Job 实现需要同时建立 execution 状态机和 adapter 边界,不能把 Kubernetes Job
细节写入领域模型。
- 初期避免承担不必要的微服务运维成本,同时保留按权限、网络位置和故障域拆分的路径。
- Kubernetes API 成为领域间异步协作和恢复边界,领域 controller 必须正确处理最终一致性。
- 部分机械代码会有意保留重复,直到共享语义被至少两个真实实现证明。
- 代码评审需要检查跨领域 import、对象写入所有权和后端类型泄漏。
- 当 Job 同时拥有 Kubernetes Job 与 OpenSandbox adapter 后,应复审 adapter contract,确认
它来自真实后端差异而非单一实现假设。
@@ -0,0 +1,98 @@
# ADR-0005:Job 使用短生命周期控制对象与 TTL 回收
- 状态:Accepted
- 日期:2026-09-17
## 背景
Ayatori 的 `Job` 表达一次有限时长、有退出结果的执行。CI、基础设施 controller 和用户可能
持续创建大量 Job。若所有 Job CR、后端 Kubernetes Job、Pod、Event 和日志都长期保存在
Kubernetes 中,etcd、apiserver list/watch、controller cache、备份及恢复会持续承担历史
数据成本。
Kubernetes API 适合作为活动执行的在线控制与协调面,但不应在没有明确产品需求时兼任无限
增长的执行历史数据库。当前也尚未证明 Ayatori 必须独立于调用者提供长期历史或审计检索。
Gitea Actions 等调用方已经拥有自己的执行历史;基础设施 controller 也应把 Job 结果转化为
所属领域资源的 status。执行日志属于观测数据,应进入统一 observability 平台,而不是由
Job CR 或专用执行历史存储重复保存。
Kubernetes 原生 `batch/v1 Job` 使用独立的 TTL-after-finished controller 回收完成对象。
该 controller 只支持原生 Job,不能直接处理 Ayatori CRD,但其基于 informer 与延迟工作队列
的实现模式可以复用。
## 决策
Ayatori 提供 `execution.ayatori.ddupan.top` API group 下的 `Job` Kind。与 Kubernetes
`batch/v1 Job` 同名不构成冲突,完整 GVK 明确资源身份。
Ayatori Job 是短生命周期控制对象,不是永久执行记录。首版不要求将结果归档到 PostgreSQL,
也不引入 `Archived` condition 或 `JobRecord` CRD。
### 终态与 TTL
Job 到达成功、失败或取消终态后保留有限时间,随后由 Ayatori 自己的 TTL controller 删除。
API 提供与原生 Job 语义一致的 `spec.ttlSecondsAfterFinished`;未设置时是否允许无限保留由平台
准入策略决定,而不是隐式默认永久保存。
TTL 从 controller 写入的可信终态时间开始计算。TTL controller:
1. watch Job 的新增和更新;
2. 只处理已终止、设置 TTL 且尚未删除的对象;
3. 未到期时使用延迟工作队列在到期时间重新入队;
4. 到期时重新读取最新对象并复核 UID、终态和 TTL;
5. 使用 UID precondition 发起删除,防止删除同名重建对象;
6. 由 Job finalizer 完成实际执行后端与临时凭据清理。
Controller 重启后,informer 的初始 LIST 会重新触发现存对象的 reconcile 并重建内存中的延迟
任务,因此不以周期性全量扫描作为正确性基础。
### 结果消费
调用者必须在 TTL 窗口内观察 Job 终态,并把需要长期存在的业务事实写入自身状态。例如 VM
provision Job 成功后,VM controller 更新 `Provisioned` condition;之后删除 Job 不影响 VM
状态。CI 系统负责保存自身 workflow 历史。
Job status 只保存控制和短期诊断需要的结构化结果,不保存完整日志、大型输出或 artifact。
### 日志与 artifact
各 execution adapter 必须为执行实例注入稳定的关联信息,使 stdout/stderr 能由共享
observability 管道采集,并能够按 Ayatori Job 的 namespace、name 和 UID 查询。Job status
可以保存查询观测数据所需的关联标识或受控链接,但日志内容及其索引、保留和查询能力属于
observability 平台。
Job 与后端执行对象的 TTL 应为日志采集提供合理窗口,但 GC 不以日志归档成功作为前置条件,
避免观测平台故障阻塞控制面资源回收。日志采集延迟、丢失和后端不可用通过 observability
自身的监控和告警处理。
Artifact 与日志语义不同。调用者需要消费的构建产物、状态文件或结构化输出必须显式写入
对象存储等持久后端,并通过引用交付;不能依赖日志系统作为 artifact 存储。
### GitOps 边界
一次性 Job 不由 Flux 持续管理。否则 TTL 删除会被视为漂移并重新创建,从而重复执行。GitOps
可以管理 Job template、schedule、execution class 和策略;CI、CLI、UI 或其他 controller
通过 Kubernetes API 命令式创建 Job。
### 未来归档
只有出现长期历史查询、统一审计、调用者无法及时消费结果等真实需求时,才引入
外部 `JobRecord`/History API。届时可以为需要持久化的 retention policy 增加归档流程,并将
归档成功作为删除前置条件;不要求所有 Job 无条件承担该成本。
## 结果
- etcd 中只保留活动 Job、短期已完成 Job 和需要人工处理的异常 Job。
- 首版不依赖 PostgreSQL 和对象存储即可完成 Job 纵向切片。
- 调用者必须正确 watch 或轮询结果;TTL 配置必须为其提供足够消费窗口。
- 历史日志由共享 observability 平台查询,Job CR 只提供执行关联信息。
- Job 删除后的历史默认不可从 Kubernetes API 恢复,这是有意接受的语义。
- TTL controller 是 execution 领域的一部分,可以和其他 controller 编译、部署在同一个
controller manager 中。
- 若未来增加归档,应作为独立产品能力和 retention policy 演进,不改变 Job 作为短生命周期
控制对象的基本定位。
## 参考
- [Kubernetes Automatic Cleanup for Finished Jobs](https://kubernetes.io/docs/concepts/workloads/controllers/ttlafterfinished/)
- [Kubernetes TTL-after-finished controller](https://github.com/kubernetes/kubernetes/blob/master/pkg/controller/ttlafterfinished/ttlafterfinished_controller.go)
@@ -0,0 +1,45 @@
# ADR-0006:按实际管理缺口扩展资源 API
- 状态:Accepted
- 日期:2026-09-20
## 背景
Ayatori 可以在技术上逐步加入 VM、任务、数据库、负载均衡、对象存储、KaaS、FaaS 与应用
托管等能力。如果按传统私有云产品目录推进,项目会把后端“能够实现”的能力误当成 homelab
实际需要的产品,并承担没有消费者的 API、controller、升级和恢复成本。
当前真正反复出现的问题,是 Database、LoadBalancer 和 Bucket/Object Storage 缺少符合本环境
需求的稳定管理 API。Proxmox VM 也存在明确缺口:远程 API 能力有限,一部分操作只能登录节点
使用 CLI 完成,因此单靠 Terraform provider 或 Proxmox API 无法覆盖期望生命周期。
当前 `Job` controller 是验证 Kubernetes API machinery、状态机、finalizer、回收和 adapter 边界
的首个纵向切片。OpenSandbox 和 microVM 可以成为内部执行后端,但这不等于平台需要 Lambda、
Cloud Run 或其他 FaaS/PaaS 产品。
## 决策
Ayatori 不设置必须完成的云产品清单。新增北向资源必须由现实消费者、重复管理缺口和持续
reconcile 的明确收益驱动。
当前优先方向是:
1. `Database`;
2. `LoadBalancer`;
3. `Bucket` / Object Storage;
4. `VirtualMachine`,其价值已确认,但实现成本更高。
`Run`/当前实验性的 `Job` 定位为控制面执行原语和架构验证切片,不自动扩展为面向用户的计算
产品。KaaS 是可能有真实需求的候选能力,但不是必达终点。FaaS、Cloud Run 和应用托管默认不做,
除非未来以新的需求和 ADR 改变决定。
VirtualMachine controller 对外提供稳定北向 API;南向允许根据操作选择 Proxmox API、节点上的
受限强类型 Agent/CLI 或 `ManualTask`。节点 Agent 必须提供版本化、幂等、可观察和可审计的操作,
不能退化为任意远程 shell。
## 结果
- 路线图可以根据当前收益调整,不把技术可行性误作产品承诺。
- 第一个 Job controller 的实现仍有测试和架构验证价值,但其 API 不约束长期产品形态。
- VM 被保留为核心高价值方向,同时承认其南向集成不是单一 provider 能解决的问题。
- 每个新增资源都要独立证明生命周期和管理价值;已有 backend 不自动产生新的产品层。
@@ -0,0 +1,61 @@
# ADR-0007:复用 Node API 建立按需实现的 Compute 能力
- 状态:Accepted
- 日期:2026-09-20
- 实施优先级:Deferred;当前优先 Database、LoadBalancer 与 Bucket
## 背景
Ayatori 长期可能需要管理现有 Proxmox VM、当前 libvirt VM,以及允许普通计算节点临时加入、
排空和退出。Proxmox 的远程 API 不能覆盖全部所需操作;若 Ayatori 进一步实现节点 inventory、
简单 placement、fencing 和安全 reschedule,Proxmox 的控制面价值会逐步被替代。
同一物理节点未来也可能运行 OpenSandbox/Kata 等执行后端。Kata 虽然以 microVM 隔离 Pod 或
container,但其公开生命周期是 Sandbox/Run,不是具有磁盘、NIC、console、placement、迁移和
长期身份的 VirtualMachine 产品。
## 决策
### 节点 API
Ayatori 选择性复用 `core/v1 Node` 与 `coordination.k8s.io/v1 Lease` 表达计算节点身份、能力、
容量、健康、维护状态与心跳。它们只是 API contract:由 Ayatori Compute Agent 写入,并由
Ayatori 自有 controller 消费。
这项选择不引入 kubelet、Pod、CRI、kube-scheduler 或 kube-controller-manager。Compute Agent
不是对 kubelet 的模拟或兼容实现,而是 Node API 在 Ayatori Compute 领域中的正式 producer。
每个 Node 必须带 Ayatori ownership label;Agent 只能更新自己的 Node/status 与 Lease。
初版 VirtualMachine 显式指定 Node。出现实际需求后,再由 Ayatori controller 基于 Node 的
Ready、unschedulable、taints、labels、capacity 和已有 allocation 实现小规模 filter/score。
具体资源分配不能依靠多个 controller 反复改写 `Node.status.allocatable`;需要并发预留时增加
独立 Allocation 资源或等价的原子分配记录。
### VM 数据面
长期主路径可以是普通 Linux Compute Node 上的 libvirt/QEMU,由受限的 Compute Agent 执行
版本化、强类型、幂等且可观察的 VM 操作。Agent 不提供任意远程 shell。
Proxmox 是 brownfield 迁移后端:初期用于 adopt 现有 VM,并继续提供当前已有的集群、存储、
备份与 HA 能力。若 Ayatori Compute 已经可靠覆盖所需 placement、fencing、存储可移植性和恢复
语义,可以逐步把 PVE 节点迁移为普通 Compute Node;不为维持虚假 backend 对等性承诺永久支持
所有 Proxmox 特性。
### HA 边界
自动 reschedule 必须满足:旧节点已经可靠 fenced,且 Volume 明确报告可在目标节点使用。
任一条件无法证明时,VM 进入 Blocked/ManualTask,不得冒险在第二个节点启动。首版允许完全
人工 placement 与恢复;不以通用 Placement、透明 live migration、多租户 SDN 或 Nova 兼容为目标。
### Sandbox 边界
OpenSandbox/Kata microVM 归属于 Run/Sandbox backend 的隔离实现,不创建 VirtualMachine 资源。
若未来 VM 与 Sandbox 共享物理节点,容量协调必须另行形成经过验证的设计;不能仅因两者底层
都使用 KVM 就合并其北向生命周期。
## 结果
- 复用成熟 Node/Lease API,而不继承 Kubernetes workload plane。
- Compute 能力可以按 homelab 所需规模实现,不必复制完整 Nova。
- PVE 帮助现有资源平滑迁移,但不是长期架构必须保留的一层。
- Compute 方向已记录,但不改变当前 Database、LoadBalancer、Bucket 的产品优先级。
@@ -0,0 +1,92 @@
# ADR-0008:将 PostgreSQL Tenant Operator 合并为 Ayatori Database 模块
- 状态:Accepted
- 日期:2026-09-20
## 背景
独立仓库 `postgresql-tenant-operator` 已经为 homelab 共享 PostgreSQL 设计了
`PostgreSQLInstance` 与 `PostgreSQLTenant` API,并包含批准的行为规格、领域值对象、状态机、
PostgreSQL ownership registry、OpenBao/External Secrets 边界、迁移与恢复文档及测试。
Database 是 Ayatori 当前最优先的真实管理缺口之一。继续把该 controller 作为独立产品,会重复
维护 manager、API machinery、发布、认证、可观测性和通用 controller 约定,也会使后续应用组合
必须跨两个控制平面理解状态。
截至 2026-09-20,源仓库已经合并 Instance 的 Endpoint、凭据引用、身份/版本、定义与观测目标
等值对象,以及扩展支持模型和最小生命周期/checkpoint。它们尚未接入实际运行链路。完整 Ready
判定、Kubernetes Secret 管理凭据与连接刷新、应用层/数据库 adapter/controller 接入、CRD 规格
对齐及集成验证仍未完成;Tenant 的创建、凭据交付与 Retain/Delete 生命周期也未落地。
现有运行链路仍是直接读取 OpenBao 管理凭据的旧实现,不能作为新设计已经可用的证据。源仓库
本地 `feature/instance-extension-observations` 还保留两个未提交文件,用于 Instance 接受扩展观测
及测试;该工作已暂停,不能作为已合并能力或迁移基线。部分生成的 CRD/API 代码也仍落后于批准
规范,因此迁移不能把当前工作树或全部脚手架原样复制到 Ayatori。
## 决策
PostgreSQL Tenant Operator 合并为 Ayatori 的 Database 领域模块。保留已经批准且仍适用的安全、
所有权、幂等与删除行为,不重新发明 database、role、credential 和 registry 语义。
当前没有可用发布版本、没有被该 operator 托管的 PostgreSQL 实例或 Tenant,也没有需要在线
转换的已部署 CR。因此此次合并不承担旧实现兼容性:旧运行链路可以直接撤销,不保留直接读取
OpenBao 管理凭据的路径,也不兼容落后于规范的旧 CRD、samples 或实现细节。
没有部署兼容负担不等于重新设计已经批准的产品合同。源项目的系统规格、API 语义、Instance 与
Tenant 领域模型、状态机、ownership registry、OpenBao/ExternalSecret 凭据交付、Retain/Delete、
恢复与测试设计整体作为 Ayatori Database 模块的规范基线。除 API group、项目归属和装配结构外,
迁移不得静默改变这些行为;确需改变时必须先单独修订规格并记录决定。
目标结构遵守 Ayatori 的模块化单体边界:
```text
api/database/v1alpha1/
internal/database/domain/
internal/database/controller/
internal/database/adapter/postgresql/
internal/database/adapter/openbao/
internal/database/adapter/externalsecrets/
docs/database/
```
最终目录可按 Kubebuilder 与现有模块约定微调,但 Database 不依赖 execution/Job 模块,也不把
PostgreSQL、OpenBao 或 External Secrets 客户端放入共享万能 service/repository 层。
Database API 直接重构为 Ayatori 统一结构:API group 使用
`database.ayatori.ddupan.top/v1alpha1`,Go package 使用 `api/database/v1alpha1`,controller、
domain 与 adapter 放入 Ayatori 对应 Database 模块。原 `database.ddupan.top/v1alpha1` 不保留
别名、conversion 或兼容入口。
迁移前逐项核对批准规格、领域模型与当前 Go types;冲突时以批准规格为准。代码质量通过重写
旧运行链路、清晰 application/adapter 边界和测试实现,不通过改变已批准行为获得。无需实现在线
CRD conversion 或数据迁移。
## 迁移方式
1. 以包含已合并 Instance 领域基础和 CI #14 的最新 `main` commit 作为 source reference;记录
commit,将完整批准规格与设计文档迁入 Ayatori Database 文档,并迁移领域模型和纯单元测试。
设计合同直接复用;旧运行代码不逐文件复制。
2. 保留源仓库暂停中的脏工作树,不移动、提交或复制两个 extension observation 文件。以后可以
先在源仓库形成独立 commit,或在 Ayatori 根据批准合同重新实现,但不得把未提交内容描述为来源。
3. 在 Ayatori multi-group 项目中用 Kubebuilder 注册 Database API,按批准规格迁移 types,重新
生成 `database.ayatori.ddupan.top` CRD、DeepCopy 与 RBAC;不直接复制旧生成文件或旧 `PROJECT`。
4. 删除旧运行链路假设,以 Ayatori 当前 Go、Kubernetes 与 controller-runtime 版本重新建立
application ports 和 adapter contract;先恢复 PostgreSQL registry/adapter contract tests。
5. 逐片实现 Instance observe、Kubernetes Secret 管理凭据与连接刷新、Tenant provisioning、
OpenBao、ExternalSecret、删除与恢复流程;
每片必须包含对应单元、envtest 和真实 PostgreSQL/OpenBao 集成测试。
6. Ayatori 中的 Database 模块达到原项目验收标准并完成迁移演练后,冻结旧仓库并将其 README
指向 Ayatori;不同时运行两个 controller 管理同一组 CR。
不通过一次性 unrelated-history merge 或整仓复制保留表面上的 Git 历史。旧仓库和 source commit
保留完整来源历史;Ayatori 迁移提交按可审阅行为切片记录 provenance。
## 结果
- Ayatori 获得第一个真实产品领域,而不是继续围绕实验性 Job 扩张。
- 已批准的 DBaaS 设计与测试投资得到保留。
- 单一 manager/release 不意味着领域耦合;Database 仍保持独立 package、adapter 和测试边界。
- 可以从已合并的领域基础开始迁移;旧运行链路和未提交 extension observation 不进入首个切片。
- 无部署兼容负担允许彻底重写旧运行链路,不为尚未使用的实现技术债保留兼容层;已批准设计合同
仍然有效。
- Database 使用 Ayatori 统一 API group 与目录结构,不为未投入使用的旧 group 保留入口。
+26 -27
View File
@@ -9,53 +9,52 @@
- 定义 API、conditions、ownership 和 executor 公共约定。 - 定义 API、conditions、ownership 和 executor 公共约定。
- 建立不可变制品与 Dev 到 Prod promotion。 - 建立不可变制品与 Dev 到 Prod promotion。
## 1. Job Service ## 1. Controller 纵向验证切片
- 实现最小 `Job` API。 - 使用当前最小 `Job` API 验证 watch、状态机、finalizer、取消、TTL、external reference 与
- Kubernetes Pod executor。 backend adapter。
- 统一日志、退出状态、超时、workspace、cache 与 artifact。 - Kubernetes executor 不能与 management API client 或同集群 namespace 语义绑定。
- 接入 Gitea Actions 和平台内部 IaC 执行。 - 验证完成后,将可复用机制收敛为内部 `Run`/execution 能力;不把这一切片扩展为 FaaS、
Cloud Run 或通用 Job Service。
## 2. OpenSandbox Executor ## 2. 首批资源产品
- 通过 OpenSandbox lifecycle 与 execd API 创建、执行和清理 sandbox。 - `Database`:PostgreSQL database、role、credential 与回收。
- 支持强隔离任务、未知代码、嵌套容器和 AI agent。 - `LoadBalancer`:Envoy 配置/xDS、健康检查、固定 VIP 与 GoBGP 路由宣告。
- 增加交互式 `Sandbox` API、TTL、endpoint 与 snapshot。 - `Bucket`:SeaweedFS bucket、policy、credential 与删除策略。
- 按纵向价值选择先后,不为三者预先建立统一 provider 框架。
## 3. Human Executor ## 3. Human Executor 与延迟自动化
- `ManualTask`、`TaskReport` 和版本化 Runbook。 - `ManualTask`、`TaskReport` 和版本化 Runbook。
- Telegram/Email 通知、领取、提醒和升级。 - Telegram/Email 通知、领取、提醒和升级。
- 后端验证与上游 reconcile 恢复。 - 后端验证与上游 reconcile 恢复。
## 4. LBaaS ## 4. Compute 与节点生命周期
- Envoy 配置/xDS adapter。 - 建立稳定的 `VirtualMachine` 北向 API,并支持现有资源 adopt。
- 健康检查与 GoBGP 路由宣告。 - 南向按能力组合 Proxmox API、节点受限 Agent/CLI 与 `ManualTask`,不假设 Proxmox API 完整。
- 固定 VIP、listener/backend 引用和故障恢复。 - Node 加入、drain 和 `SafeToRemove`;Node API 由 Ayatori Compute Agent 实现,不依赖 kubelet。
## 5. Compute 与节点生命周期
- Proxmox VM adapter 与现有资源 adopt。
- ComputeNode 加入、drain 和 `SafeToRemove`。
- StorageClass、StoragePool、Volume 与迁移计划。 - StorageClass、StoragePool、Volume 与迁移计划。
- 先支持人工磁盘迁移,再通过 Job executor 自动化。 - 先支持人工磁盘迁移,再按实际收益自动化。
## 6. 数据服务 ## 5. 条件性扩展
- PostgreSQL database/role/credential。 - OpenSandbox/microVM 可以作为内部 Run backend,但不由此产生 FaaS 产品承诺。
- SeaweedFS bucket/policy/credential。 - DNS、证书和 Credential 只有在跨系统协调收益明确时形成独立资源。
- DNS 与证书资源。 - KaaS 只有出现托管控制面、租户隔离或频繁集群生命周期的真实需求时才立项。
## 7. KaaS ### KaaS 候选方案
- 采用成熟 hosted-control-plane 后端。 - 采用成熟 hosted-control-plane 后端。
- 组合控制面、worker、LB、DNS、网络和凭据。 - 组合控制面、worker、LB、DNS、网络和凭据。
- 用户集群只暴露 worker node,控制面完全由平台托管。 - 用户集群只暴露 worker node,控制面完全由平台托管。
- 本节记录候选实现边界,不构成路线图承诺。
## 首个业务里程碑 ## 后续 Compute 验收场景
完成 Laptop Rebuild Readiness: Database 等首批资源优先落地。Compute 开始实施后,以 Laptop Rebuild Readiness 验证节点
生命周期与恢复能力;该场景不作为首批 Database、LoadBalancer 或 Bucket 的交付前置条件:
1. 临时节点加入。 1. 临时节点加入。
2. laptop 上的 workload 被重建、迁移或形成可执行人工任务。 2. laptop 上的 workload 被重建、迁移或形成可执行人工任务。
+16
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@@ -29,6 +29,20 @@ Ayatori 是具有产品质量的内部平台,而非初期即面向公众的通
平台允许对当前环境形成明确意见:Proxmox、OpenSandbox、Envoy、GoBGP、OpenBao、 平台允许对当前环境形成明确意见:Proxmox、OpenSandbox、Envoy、GoBGP、OpenBao、
PostgreSQL、SeaweedFS、Samba AD DNS、Cloudflare 和 Flux 都可以是已知实现。 PostgreSQL、SeaweedFS、Samba AD DNS、Cloudflare 和 Flux 都可以是已知实现。
Ayatori 不以补齐传统私有云或公有云的产品目录为目标。一个资源只有同时满足以下条件,才进入
北向 API:
1. homelab 存在现实消费者和重复需求;
2. 现有后端 API 或 IaC 无法提供足够的管理体验;
3. 持续 observe/reconcile 明显优于一次性自动化;
4. 统一生命周期、状态、组合或权限能产生可验证的收益;
5. 收益足以承担长期 API 兼容、controller 和恢复测试成本。
当前最明确的管理缺口是 Database、LoadBalancer 与 Bucket/Object Storage。VirtualMachine 同样
具有明确价值:Proxmox 的 API 不能覆盖所需的全部生命周期,一部分操作必须在节点上通过 CLI
完成,因此 Ayatori 可以提供稳定北向 API,并在南向组合 Proxmox API、受限节点 Agent 与人工
任务。KaaS 只有在出现托管控制面的实际需求时才进入实现,不是产品路线的必达终点。
## 非目标 ## 非目标
- 不替代 hypervisor、microVM runtime、数据库、对象存储或网络协议栈。 - 不替代 hypervisor、microVM runtime、数据库、对象存储或网络协议栈。
@@ -36,3 +50,5 @@ PostgreSQL、SeaweedFS、Samba AD DNS、Cloudflare 和 Flux 都可以是已知
- 不以隐藏全部后端信息或制造虚假多云可移植性为目标。 - 不以隐藏全部后端信息或制造虚假多云可移植性为目标。
- 不创建理解所有应用需求的中央 Application controller。 - 不创建理解所有应用需求的中央 Application controller。
- 不要求所有人工步骤立即自动化。 - 不要求所有人工步骤立即自动化。
- 不因为已有 Run、OpenSandbox 或 microVM backend,就构建 FaaS、Cloud Run 或应用托管产品。
- 不预先承诺 KaaS;它是需求驱动的候选能力。
+99
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@@ -0,0 +1,99 @@
module git.ddupan.top/panxiao81/ayatori
go 1.27.1
require (
k8s.io/api v0.37.0
k8s.io/apimachinery v0.37.0
k8s.io/client-go v0.37.0
sigs.k8s.io/controller-runtime v0.25.0
)
require (
cel.dev/expr v0.25.1 // indirect
github.com/antlr4-go/antlr/v4 v4.13.1 // indirect
github.com/beorn7/perks v1.0.1 // indirect
github.com/blang/semver/v4 v4.0.0 // indirect
github.com/cenkalti/backoff/v5 v5.0.3 // indirect
github.com/cespare/xxhash/v2 v2.3.0 // indirect
github.com/davecgh/go-spew v1.1.2-0.20180830191138-d8f796af33cc // indirect
github.com/emicklei/go-restful/v3 v3.13.0 // indirect
github.com/evanphx/json-patch/v5 v5.9.11 // indirect
github.com/felixge/httpsnoop v1.0.4 // indirect
github.com/fsnotify/fsnotify v1.9.0 // indirect
github.com/fxamacker/cbor/v2 v2.9.1 // indirect
github.com/go-logr/logr v1.4.3 // indirect
github.com/go-logr/stdr v1.2.2 // indirect
github.com/go-logr/zapr v1.3.0 // indirect
github.com/go-openapi/jsonpointer v1.0.0 // indirect
github.com/go-openapi/jsonreference v1.0.0 // indirect
github.com/go-openapi/swag v0.27.1 // indirect
github.com/go-openapi/swag/cmdutils v0.27.1 // indirect
github.com/go-openapi/swag/conv v0.27.1 // indirect
github.com/go-openapi/swag/fileutils v0.27.1 // indirect
github.com/go-openapi/swag/jsonutils v0.27.1 // indirect
github.com/go-openapi/swag/loading v0.27.1 // indirect
github.com/go-openapi/swag/mangling v0.27.1 // indirect
github.com/go-openapi/swag/netutils v0.27.1 // indirect
github.com/go-openapi/swag/pools v0.27.1 // indirect
github.com/go-openapi/swag/stringutils v0.27.1 // indirect
github.com/go-openapi/swag/typeutils v0.27.1 // indirect
github.com/go-openapi/swag/yamlutils v0.27.1 // indirect
github.com/google/cel-go v0.29.2 // indirect
github.com/google/gnostic-models v0.7.0 // indirect
github.com/google/uuid v1.6.0 // indirect
github.com/grpc-ecosystem/grpc-gateway/v2 v2.29.0 // indirect
github.com/inconshreveable/mousetrap v1.1.0 // 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 v1.0.3-0.20250322232337-35a7c28c31ee // indirect
github.com/munnerz/goautoneg v0.0.0-20191010083416-a7dc8b61c822 // indirect
github.com/pmezard/go-difflib v1.0.1-0.20181226105442-5d4384ee4fb2 // indirect
github.com/prometheus/client_golang v1.24.0 // indirect
github.com/prometheus/client_model v0.6.2 // indirect
github.com/prometheus/common v0.70.0 // indirect
github.com/prometheus/procfs v0.21.1 // indirect
github.com/spf13/cobra v1.10.2 // indirect
github.com/spf13/pflag v1.0.10 // indirect
github.com/x448/float16 v0.8.4 // indirect
go.opentelemetry.io/auto/sdk v1.2.1 // indirect
go.opentelemetry.io/contrib/instrumentation/net/http/otelhttp v0.69.0 // indirect
go.opentelemetry.io/otel v1.44.0 // indirect
go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.44.0 // indirect
go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0 // indirect
go.opentelemetry.io/otel/metric v1.44.0 // indirect
go.opentelemetry.io/otel/sdk v1.44.0 // indirect
go.opentelemetry.io/otel/trace v1.44.0 // indirect
go.opentelemetry.io/proto/otlp v1.10.0 // indirect
go.uber.org/multierr v1.11.0 // indirect
go.uber.org/zap v1.27.1 // indirect
go.yaml.in/yaml/v2 v2.4.4 // indirect
go.yaml.in/yaml/v3 v3.0.4 // indirect
golang.org/x/exp v0.0.0-20260410095643-746e56fc9e2f // indirect
golang.org/x/net v0.57.0 // indirect
golang.org/x/oauth2 v0.36.0 // indirect
golang.org/x/sync v0.22.0 // indirect
golang.org/x/sys v0.47.0 // indirect
golang.org/x/term v0.45.0 // indirect
golang.org/x/text v0.40.0 // indirect
golang.org/x/time v0.15.0 // indirect
gomodules.xyz/jsonpatch/v2 v2.4.0 // indirect
google.golang.org/genproto/googleapis/api v0.0.0-20260526163538-3dc84a4a5aaa // indirect
google.golang.org/genproto/googleapis/rpc v0.0.0-20260526163538-3dc84a4a5aaa // indirect
google.golang.org/grpc v1.82.1 // indirect
google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af // indirect
gopkg.in/evanphx/json-patch.v4 v4.13.0 // indirect
gopkg.in/inf.v0 v0.9.1 // indirect
k8s.io/apiextensions-apiserver v0.37.0 // indirect
k8s.io/apiserver v0.37.0 // indirect
k8s.io/component-base v0.37.0 // indirect
k8s.io/klog/v2 v2.140.0 // indirect
k8s.io/kube-openapi v0.0.0-20260721132016-d427ff9ee9ad // indirect
k8s.io/streaming v0.37.0 // indirect
k8s.io/utils v0.0.0-20260626114624-be93311217bd // indirect
sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.36.0 // indirect
sigs.k8s.io/json v0.0.0-20250730193827-2d320260d730 // indirect
sigs.k8s.io/randfill v1.0.0 // indirect
sigs.k8s.io/structured-merge-diff/v6 v6.4.2 // indirect
sigs.k8s.io/yaml v1.6.0 // indirect
)
+247
View File
@@ -0,0 +1,247 @@
cel.dev/expr v0.25.1 h1:1KrZg61W6TWSxuNZ37Xy49ps13NUovb66QLprthtwi4=
cel.dev/expr v0.25.1/go.mod h1:hrXvqGP6G6gyx8UAHSHJ5RGk//1Oj5nXQ2NI02Nrsg4=
github.com/Masterminds/semver/v3 v3.4.0 h1:Zog+i5UMtVoCU8oKka5P7i9q9HgrJeGzI9SA1Xbatp0=
github.com/Masterminds/semver/v3 v3.4.0/go.mod h1:4V+yj/TJE1HU9XfppCwVMZq3I84lprf4nC11bSS5beM=
github.com/antlr4-go/antlr/v4 v4.13.1 h1:SqQKkuVZ+zWkMMNkjy5FZe5mr5WURWnlpmOuzYWrPrQ=
github.com/antlr4-go/antlr/v4 v4.13.1/go.mod h1:GKmUxMtwp6ZgGwZSva4eWPC5mS6vUAmOABFgjdkM7Nw=
github.com/beorn7/perks v1.0.1 h1:VlbKKnNfV8bJzeqoa4cOKqO6bYr3WgKZxO8Z16+hsOM=
github.com/beorn7/perks v1.0.1/go.mod h1:G2ZrVWU2WbWT9wwq4/hrbKbnv/1ERSJQ0ibhJ6rlkpw=
github.com/blang/semver/v4 v4.0.0 h1:1PFHFE6yCCTv8C1TeyNNarDzntLi7wMI5i/pzqYIsAM=
github.com/blang/semver/v4 v4.0.0/go.mod h1:IbckMUScFkM3pff0VJDNKRiT6TG/YpiHIM2yvyW5YoQ=
github.com/cenkalti/backoff/v5 v5.0.3 h1:ZN+IMa753KfX5hd8vVaMixjnqRZ3y8CuJKRKj1xcsSM=
github.com/cenkalti/backoff/v5 v5.0.3/go.mod h1:rkhZdG3JZukswDf7f0cwqPNk4K0sa+F97BxZthm/crw=
github.com/cespare/xxhash/v2 v2.3.0 h1:UL815xU9SqsFlibzuggzjXhog7bL6oX9BbNZnL2UFvs=
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go.opentelemetry.io/otel v1.44.0 h1:JjwHmHpA4iZ3wBxluu2fbbE7j4kqlE8jXyAyPXH7HqU=
go.opentelemetry.io/otel v1.44.0/go.mod h1:BMgjTHL9WPRlRjL2oZCBTL4whCGtXch2H4BhOPIAyYc=
go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.44.0 h1:4YsVu3B8+3qtWYYrsUYgn0OG78pN0rnNPRGX4SbokQI=
go.opentelemetry.io/otel/exporters/otlp/otlptrace v1.44.0/go.mod h1:+wnlSn0mD1ADVMe3v9Z/WIaiz6q6gL2J/ejaAmdmv80=
go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0 h1:qazEJlUOQzhCpzQpFETGby7EdqjI1wsd0W+6Gg1SCTU=
go.opentelemetry.io/otel/exporters/otlp/otlptrace/otlptracegrpc v1.44.0/go.mod h1:fOD2Yefuxixkx3ahVNf0O/PERb6r4OlbxfATVnYvzCo=
go.opentelemetry.io/otel/metric v1.44.0 h1:1w0gILTcHdr3YI+ixLyjemwrVnsMURbTZFrSYCdDdmc=
go.opentelemetry.io/otel/metric v1.44.0/go.mod h1:8O7hanEPBNgEMmybD3s2VBKcgWOCsA6tzHBPODAiquo=
go.opentelemetry.io/otel/sdk v1.44.0 h1:nHYwb9lK+fJPU/dnT6s7W7Z8itMWyqrnVfbheVYrZ58=
go.opentelemetry.io/otel/sdk v1.44.0/go.mod h1:Osuydd3Se74nqjAKxid74N5eC+jfEqfTegHRnq58oK0=
go.opentelemetry.io/otel/sdk/metric v1.44.0 h1:3LlKgI+VjbVsjNRFZJZAJ30WjXC5VkNRks6si09iEfI=
go.opentelemetry.io/otel/sdk/metric v1.44.0/go.mod h1:5B5pMARnXxKhltooO4xUuCBorl65a4EpnTalObqOigA=
go.opentelemetry.io/otel/trace v1.44.0 h1:jxF5CsGYCe74MCRx2X4g7WsY/VBKRqqpNvXlX/6gtIk=
go.opentelemetry.io/otel/trace v1.44.0/go.mod h1:oLl1jrMQAVo6v3GAggN+1VH9VIz9iUSvW53sW1Q8PIE=
go.opentelemetry.io/proto/otlp v1.10.0 h1:IQRWgT5srOCYfiWnpqUYz9CVmbO8bFmKcwYxpuCSL2g=
go.opentelemetry.io/proto/otlp v1.10.0/go.mod h1:/CV4QoCR/S9yaPj8utp3lvQPoqMtxXdzn7ozvvozVqk=
go.uber.org/goleak v1.3.0 h1:2K3zAYmnTNqV73imy9J1T3WC+gmCePx2hEGkimedGto=
go.uber.org/goleak v1.3.0/go.mod h1:CoHD4mav9JJNrW/WLlf7HGZPjdw8EucARQHekz1X6bE=
go.uber.org/multierr v1.11.0 h1:blXXJkSxSSfBVBlC76pxqeO+LN3aDfLQo+309xJstO0=
go.uber.org/multierr v1.11.0/go.mod h1:20+QtiLqy0Nd6FdQB9TLXag12DsQkrbs3htMFfDN80Y=
go.uber.org/zap v1.27.1 h1:08RqriUEv8+ArZRYSTXy1LeBScaMpVSTBhCeaZYfMYc=
go.uber.org/zap v1.27.1/go.mod h1:GB2qFLM7cTU87MWRP2mPIjqfIDnGu+VIO4V/SdhGo2E=
go.yaml.in/yaml/v2 v2.4.4 h1:tuyd0P+2Ont/d6e2rl3be67goVK4R6deVxCUX5vyPaQ=
go.yaml.in/yaml/v2 v2.4.4/go.mod h1:gMZqIpDtDqOfM0uNfy0SkpRhvUryYH0Z6wdMYcacYXQ=
go.yaml.in/yaml/v3 v3.0.4 h1:tfq32ie2Jv2UxXFdLJdh3jXuOzWiL1fo0bu/FbuKpbc=
go.yaml.in/yaml/v3 v3.0.4/go.mod h1:DhzuOOF2ATzADvBadXxruRBLzYTpT36CKvDb3+aBEFg=
golang.org/x/exp v0.0.0-20260410095643-746e56fc9e2f h1:W3F4c+6OLc6H2lb//N1q4WpJkhzJCK5J6kUi1NTVXfM=
golang.org/x/exp v0.0.0-20260410095643-746e56fc9e2f/go.mod h1:J1xhfL/vlindoeF/aINzNzt2Bket5bjo9sdOYzOsU80=
golang.org/x/mod v0.37.0 h1:vF1DjpVEshcIqoEaauuHebaLk1O1forxjxBaVn884JQ=
golang.org/x/mod v0.37.0/go.mod h1:m8S8VeM9r4dzDwjrKO0a1sZP3YjeMamRRlD+fmR2Q/0=
golang.org/x/net v0.57.0 h1:K5+3DljvIuDG9/Jv9rvyMywYNFCQ9RSUY6OOTTkT+tE=
golang.org/x/net v0.57.0/go.mod h1:KpXc8iv+r3XplLAG/f7Jsf9RPszJzdR0f58q9vGOuEU=
golang.org/x/oauth2 v0.36.0 h1:peZ/1z27fi9hUOFCAZaHyrpWG5lwe0RJEEEeH0ThlIs=
golang.org/x/oauth2 v0.36.0/go.mod h1:YDBUJMTkDnJS+A4BP4eZBjCqtokkg1hODuPjwiGPO7Q=
golang.org/x/sync v0.22.0 h1:SZjpbeLmrCk4xhRSZFNZW5gFUeCeFgjekvI/+gfScek=
golang.org/x/sync v0.22.0/go.mod h1:9xrNwdLfx4jkKbNva9FpL6vEN7evnE43NNNJQ2LF3+0=
golang.org/x/sys v0.47.0 h1:o7XGOvZQCADBQQ4Y7VNq2dRWQR7JmOUW8Kxx4ZsNgWs=
golang.org/x/sys v0.47.0/go.mod h1:4GL1E5IUh+htKOUEOaiffhrAeqysfVGipDYzABqnCmw=
golang.org/x/term v0.45.0 h1:NwWyBmoJCbfTHpxrWoZ9C6/VxOf7ic219I8xZZFdrf0=
golang.org/x/term v0.45.0/go.mod h1:9aqxs0blBcrm/n0L9QW0aRVD+ktan8ssZromtqJC43w=
golang.org/x/text v0.40.0 h1:Ub2Z6/xjgF1WrYQz2nuITOEegKFtiIy+rieRJ5lHZKs=
golang.org/x/text v0.40.0/go.mod h1:hpnzDAfGV753zIKo+wk3u1bVKCGPbrnF7+7LBF/UHVY=
golang.org/x/time v0.15.0 h1:bbrp8t3bGUeFOx08pvsMYRTCVSMk89u4tKbNOZbp88U=
golang.org/x/time v0.15.0/go.mod h1:Y4YMaQmXwGQZoFaVFk4YpCt4FLQMYKZe9oeV/f4MSno=
golang.org/x/tools v0.47.0 h1:7Kn5x/d1svx/PzryTsqeoZN4TZwqeH5pGWjefhLi/1Q=
golang.org/x/tools v0.47.0/go.mod h1:dFHnyTvFWY212G+h7ZY4Vsp/K3U4/7W9TyVaAul8uCA=
gomodules.xyz/jsonpatch/v2 v2.4.0 h1:Ci3iUJyx9UeRx7CeFN8ARgGbkESwJK+KB9lLcWxY/Zw=
gomodules.xyz/jsonpatch/v2 v2.4.0/go.mod h1:AH3dM2RI6uoBZxn3LVrfvJ3E0/9dG4cSrbuBJT4moAY=
gonum.org/v1/gonum v0.17.0 h1:VbpOemQlsSMrYmn7T2OUvQ4dqxQXU+ouZFQsZOx50z4=
gonum.org/v1/gonum v0.17.0/go.mod h1:El3tOrEuMpv2UdMrbNlKEh9vd86bmQ6vqIcDwxEOc1E=
google.golang.org/genproto/googleapis/api v0.0.0-20260526163538-3dc84a4a5aaa h1:Kjn0N0tCrDgiAFW+lGO4JZ3ck44CehvJQMAwj9QF0G8=
google.golang.org/genproto/googleapis/api v0.0.0-20260526163538-3dc84a4a5aaa/go.mod h1:q4lMZS6kskjT5HvCPrnnypcDPVJqT/f4nfxmkE7gryY=
google.golang.org/genproto/googleapis/rpc v0.0.0-20260526163538-3dc84a4a5aaa h1:mZHHdPZl0dbGHCflZgAq/Q468DWVFcU2whhB2KAo8fk=
google.golang.org/genproto/googleapis/rpc v0.0.0-20260526163538-3dc84a4a5aaa/go.mod h1:4Hqkh8ycfw05ld/3BWL7rJOSfebL2Q+DVDeRgYgxUU8=
google.golang.org/grpc v1.82.1 h1:NnAxzGRA0677vCa4BUkOAnO5+FfQqVl9iUXeD0IqcGE=
google.golang.org/grpc v1.82.1/go.mod h1:yzTZ1TB1Z3SG+LIYaI+WiE8D5+PZ3ArnrSp8zF3+/ZA=
google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af h1:+5/Sw3GsDNlEmu7TfklWKPdQ0Ykja5VEmq2i817+jbI=
google.golang.org/protobuf v1.36.12-0.20260120151049-f2248ac996af/go.mod h1:HTf+CrKn2C3g5S8VImy6tdcUvCska2kB7j23XfzDpco=
gopkg.in/check.v1 v0.0.0-20161208181325-20d25e280405/go.mod h1:Co6ibVJAznAaIkqp8huTwlJQCZ016jof/cbN4VW5Yz0=
gopkg.in/check.v1 v1.0.0-20201130134442-10cb98267c6c h1:Hei/4ADfdWqJk1ZMxUNpqntNwaWcugrBjAiHlqqRiVk=
gopkg.in/check.v1 v1.0.0-20201130134442-10cb98267c6c/go.mod h1:JHkPIbrfpd72SG/EVd6muEfDQjcINNoR0C8j2r3qZ4Q=
gopkg.in/evanphx/json-patch.v4 v4.13.0 h1:czT3CmqEaQ1aanPc5SdlgQrrEIb8w/wwCvWWnfEbYzo=
gopkg.in/evanphx/json-patch.v4 v4.13.0/go.mod h1:p8EYWUEYMpynmqDbY58zCKCFZw8pRWMG4EsWvDvM72M=
gopkg.in/inf.v0 v0.9.1 h1:73M5CoZyi3ZLMOyDlQh031Cx6N9NDJ2Vvfl76EDAgDc=
gopkg.in/inf.v0 v0.9.1/go.mod h1:cWUDdTG/fYaXco+Dcufb5Vnc6Gp2YChqWtbxRZE0mXw=
gopkg.in/yaml.v3 v3.0.1 h1:fxVm/GzAzEWqLHuvctI91KS9hhNmmWOoWu0XTYJS7CA=
gopkg.in/yaml.v3 v3.0.1/go.mod h1:K4uyk7z7BCEPqu6E+C64Yfv1cQ7kz7rIZviUmN+EgEM=
k8s.io/api v0.37.0 h1:Z//Vj9N7RA/yS2sDmxyeo7h+RR4zbUrd2vrd3Z0TbB4=
k8s.io/api v0.37.0/go.mod h1:LKXgcJWMc+f4OLbP5SFR8rulEg07zZhpi/zMULiBImk=
k8s.io/apiextensions-apiserver v0.37.0 h1:zRMQ3+/LIE5oZ0tVvXwYHC+dIkSP5cjNWju7AZU1LOI=
k8s.io/apiextensions-apiserver v0.37.0/go.mod h1:HU0PfSBwchHL5iDau6jjt9zU6ryWkDDlaVUiq91NK80=
k8s.io/apimachinery v0.37.0 h1:Np2AbDtf8x6RDHiD8T9LbKJ9gaegeVNa8yNm5FuGKm0=
k8s.io/apimachinery v0.37.0/go.mod h1:RN3nhprFSCxOi5Selxd7oMTXOe/c+ZbcE7Im+TS2zkE=
k8s.io/apiserver v0.37.0 h1:TXg7OxsOWrAH8J4Zi/gBAZuMw1Dfdd+6cca2h4qjRqo=
k8s.io/apiserver v0.37.0/go.mod h1:OddHDF4gy9qyIb8o/3+qaeP6S0vEObWLgOygVqXksv0=
k8s.io/client-go v0.37.0 h1:nsN31fy8wBySuZ+QRnKmrjRSQLOG2rvoGN0tKd12zhQ=
k8s.io/client-go v0.37.0/go.mod h1:FcGqw+Ll/gNQiq+nPGY1Oyt9y7SgDh1d3MW3RFDEbn0=
k8s.io/component-base v0.37.0 h1:3SdSa4+itMdFTDFTeR8CxKGmSTSMXFlKL4ky8OqjguM=
k8s.io/component-base v0.37.0/go.mod h1:LjOebp4R9y6LODWZQv102ZQxGheLcDO2ZJLAw6bbh4I=
k8s.io/klog/v2 v2.140.0 h1:Tf+J3AH7xnUzZyVVXhTgGhEKnFqye14aadWv7bzXdzc=
k8s.io/klog/v2 v2.140.0/go.mod h1:o+/RWfJ6PwpnFn7OyAG3QnO47BFsymfEfrz6XyYSSp0=
k8s.io/kube-openapi v0.0.0-20260721132016-d427ff9ee9ad h1:oXImqH8mQNk7PmvzKhmN3ddJoY6OnyM225MXwGHPm0A=
k8s.io/kube-openapi v0.0.0-20260721132016-d427ff9ee9ad/go.mod h1:0/mqHCVhlumdJ3BhCfnjSZQE037nAhNodh1/hK0T8/I=
k8s.io/streaming v0.37.0 h1:iPBUZLZiKt5bV+lxJurASMOV07VuBhNpiwJt2//AWrM=
k8s.io/streaming v0.37.0/go.mod h1:APlJR26ZWRcVy5bIEj0QRrKUXROtBHPcxl2NT7EAzPU=
k8s.io/utils v0.0.0-20260626114624-be93311217bd h1:Ea7fgQ5we8Y9T0OX5o0dAHzQOBRI07D/dEYRaB9ZZEs=
k8s.io/utils v0.0.0-20260626114624-be93311217bd/go.mod h1:xDxuJ0whA3d0I4mf/C4ppKHxXynQ+fxnkmQH0vTHnuk=
sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.36.0 h1:/YpDJ4vReG7ZmzSpBGxduXgywWkJU9zHubgJG03MT+Y=
sigs.k8s.io/apiserver-network-proxy/konnectivity-client v0.36.0/go.mod h1:tJo1aepTXyR+8Xs3sUsGBDk4Ub2AM5dPAPKJx0mpm5c=
sigs.k8s.io/controller-runtime v0.25.0 h1:44KgRUPew331KSJpNu8zJow3iTR5W0p/SfrHdw3lV40=
sigs.k8s.io/controller-runtime v0.25.0/go.mod h1:4QqLdT6z/L6Olj8JJCtvztid4/fnIiYsfaTFScegctc=
sigs.k8s.io/json v0.0.0-20250730193827-2d320260d730 h1:IpInykpT6ceI+QxKBbEflcR5EXP7sU1kvOlxwZh5txg=
sigs.k8s.io/json v0.0.0-20250730193827-2d320260d730/go.mod h1:mdzfpAEoE6DHQEN0uh9ZbOCuHbLK5wOm7dK4ctXE9Tg=
sigs.k8s.io/randfill v1.0.0 h1:JfjMILfT8A6RbawdsK2JXGBR5AQVfd+9TbzrlneTyrU=
sigs.k8s.io/randfill v1.0.0/go.mod h1:XeLlZ/jmk4i1HRopwe7/aU3H5n1zNUcX6TM94b3QxOY=
sigs.k8s.io/structured-merge-diff/v6 v6.4.2 h1:qdOxHwrl2Kaag1aQEarlYcOA9vSyGCp3CIki3aW8c4Q=
sigs.k8s.io/structured-merge-diff/v6 v6.4.2/go.mod h1:M3W8sfWvn2HhQDIbGWj3S099YozAsymCo/wrT5ohRUE=
sigs.k8s.io/yaml v1.6.0 h1:G8fkbMSAFqgEFgh4b1wmtzDnioxFCUgTZhlbj5P9QYs=
sigs.k8s.io/yaml v1.6.0/go.mod h1:796bPqUfzR/0jLAl6XjHl3Ck7MiyVv8dbTdyT3/pMf4=
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+94
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package execution
import (
"fmt"
executionv1alpha1 "git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
)
type JobState string
const (
JobStateResolving JobState = "Resolving"
JobStateScheduling JobState = "Scheduling"
JobStateStarting JobState = "Starting"
JobStateRunning JobState = "Running"
JobStateCancelling JobState = "Cancelling"
JobStateResultUnknown JobState = "ResultUnknown"
JobStateSucceeded JobState = "Succeeded"
JobStateFailed JobState = "Failed"
JobStateCancelled JobState = "Cancelled"
JobStateDeleting JobState = "Deleting"
)
// StateOf derives a presentation state from durable API facts. The derived
// state is deliberately not persisted as a second source of truth.
func StateOf(job *executionv1alpha1.Job) JobState {
if !job.DeletionTimestamp.IsZero() {
return JobStateDeleting
}
succeeded := condition(job.Status.Conditions, executionv1alpha1.JobConditionSucceeded)
if succeeded != nil {
switch succeeded.Status {
case metav1.ConditionTrue:
return JobStateSucceeded
case metav1.ConditionFalse:
if succeeded.Reason == "Cancelled" {
return JobStateCancelled
}
return JobStateFailed
}
}
if job.Spec.DesiredState == executionv1alpha1.JobDesiredStateCancelled {
return JobStateCancelling
}
if succeeded != nil && succeeded.Status == metav1.ConditionUnknown && succeeded.Reason == "ResultUnknown" {
return JobStateResultUnknown
}
if job.Status.StartTime != nil {
return JobStateRunning
}
if conditionTrue(job.Status.Conditions, executionv1alpha1.JobConditionScheduled) {
return JobStateStarting
}
if conditionTrue(job.Status.Conditions, executionv1alpha1.JobConditionAccepted) {
return JobStateScheduling
}
return JobStateResolving
}
// ValidateStatus checks invariants that every adapter must preserve.
func ValidateStatus(job *executionv1alpha1.Job) error {
succeeded := condition(job.Status.Conditions, executionv1alpha1.JobConditionSucceeded)
terminal := succeeded != nil && (succeeded.Status == metav1.ConditionTrue || succeeded.Status == metav1.ConditionFalse)
if terminal && job.Status.CompletionTime == nil {
return fmt.Errorf("terminal job must have completionTime")
}
if job.Status.CompletionTime != nil && !terminal {
return fmt.Errorf("completionTime requires a terminal Succeeded condition")
}
if job.Status.StartTime != nil && !conditionTrue(job.Status.Conditions, executionv1alpha1.JobConditionScheduled) {
return fmt.Errorf("startTime requires Scheduled=True")
}
if job.Status.StartTime != nil && job.Status.CompletionTime != nil && job.Status.CompletionTime.Before(job.Status.StartTime) {
return fmt.Errorf("completionTime must not precede startTime")
}
return nil
}
func condition(conditions []metav1.Condition, conditionType string) *metav1.Condition {
for i := range conditions {
if conditions[i].Type == conditionType {
return &conditions[i]
}
}
return nil
}
func conditionTrue(conditions []metav1.Condition, conditionType string) bool {
current := condition(conditions, conditionType)
return current != nil && current.Status == metav1.ConditionTrue
}
+85
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@@ -0,0 +1,85 @@
package execution
import (
"testing"
"time"
executionv1alpha1 "git.ddupan.top/panxiao81/ayatori/api/execution/v1alpha1"
metav1 "k8s.io/apimachinery/pkg/apis/meta/v1"
)
func TestStateOf(t *testing.T) {
now := metav1.NewTime(time.Now())
tests := []struct {
name string
job executionv1alpha1.Job
want JobState
}{
{name: "resolving", want: JobStateResolving},
{name: "scheduling", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionAccepted, metav1.ConditionTrue, "Valid")), want: JobStateScheduling},
{name: "starting", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionScheduled, metav1.ConditionTrue, "BackendCreated")), want: JobStateStarting},
{name: "running", job: executionv1alpha1.Job{Status: executionv1alpha1.JobStatus{StartTime: &now}}, want: JobStateRunning},
{name: "result unknown", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionUnknown, "ResultUnknown")), want: JobStateResultUnknown},
{name: "cancelling", job: executionv1alpha1.Job{Spec: executionv1alpha1.JobSpec{DesiredState: executionv1alpha1.JobDesiredStateCancelled}}, want: JobStateCancelling},
{name: "succeeded", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionTrue, "Completed")), want: JobStateSucceeded},
{name: "failed", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionFalse, "ExitCode")), want: JobStateFailed},
{name: "cancelled", job: jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionFalse, "Cancelled")), want: JobStateCancelled},
{name: "terminal beats desired cancellation", job: func() executionv1alpha1.Job {
j := jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionTrue, "Completed"))
j.Spec.DesiredState = executionv1alpha1.JobDesiredStateCancelled
return j
}(), want: JobStateSucceeded},
{name: "deleting beats terminal", job: func() executionv1alpha1.Job {
j := jobWithConditions(newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionTrue, "Completed"))
j.DeletionTimestamp = &now
return j
}(), want: JobStateDeleting},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
if got := StateOf(&tt.job); got != tt.want {
t.Fatalf("StateOf() = %q, want %q", got, tt.want)
}
})
}
}
func TestValidateStatus(t *testing.T) {
start := metav1.NewTime(time.Unix(100, 0))
finish := metav1.NewTime(time.Unix(200, 0))
earlier := metav1.NewTime(time.Unix(50, 0))
scheduled := newCondition(executionv1alpha1.JobConditionScheduled, metav1.ConditionTrue, "BackendCreated")
succeeded := newCondition(executionv1alpha1.JobConditionSucceeded, metav1.ConditionTrue, "Completed")
tests := []struct {
name string
status executionv1alpha1.JobStatus
wantErr bool
}{
{name: "empty status"},
{name: "running", status: executionv1alpha1.JobStatus{Conditions: []metav1.Condition{scheduled}, StartTime: &start}},
{name: "completed", status: executionv1alpha1.JobStatus{Conditions: []metav1.Condition{scheduled, succeeded}, StartTime: &start, CompletionTime: &finish}},
{name: "terminal without completion time", status: executionv1alpha1.JobStatus{Conditions: []metav1.Condition{succeeded}}, wantErr: true},
{name: "completion without terminal", status: executionv1alpha1.JobStatus{CompletionTime: &finish}, wantErr: true},
{name: "start without scheduling", status: executionv1alpha1.JobStatus{StartTime: &start}, wantErr: true},
{name: "completion before start", status: executionv1alpha1.JobStatus{Conditions: []metav1.Condition{scheduled, succeeded}, StartTime: &start, CompletionTime: &earlier}, wantErr: true},
}
for _, tt := range tests {
t.Run(tt.name, func(t *testing.T) {
err := ValidateStatus(&executionv1alpha1.Job{Status: tt.status})
if (err != nil) != tt.wantErr {
t.Fatalf("ValidateStatus() error = %v, wantErr %v", err, tt.wantErr)
}
})
}
}
func newCondition(conditionType string, status metav1.ConditionStatus, reason string) metav1.Condition {
return metav1.Condition{Type: conditionType, Status: status, Reason: reason}
}
func jobWithConditions(conditions ...metav1.Condition) executionv1alpha1.Job {
return executionv1alpha1.Job{Status: executionv1alpha1.JobStatus{Conditions: conditions}}
}