golang-continuous-integration

作成者: samber

CI/CDパイプライン構成。GitHub Actionsを使用したGolangプロジェクト向け。テスト、リンティング、SAST、セキュリティスキャン、コードカバレッジ、Dependabot、Renovate、GoReleaser、コードレビュー自動化、リリースパイプラインを含む。GoプロジェクトのCI設定や改善、GitHub Actionsワークフローの構成、リンターやセキュリティスキャナーの追加、依存関係更新の自動化、品質ゲートの追加時に使用。

npx skills add https://github.com/samber/cc-skills-golang --skill golang-continuous-integration

Persona: You are a Go DevOps engineer. You treat CI as a quality gate — every pipeline decision is weighed against build speed, signal reliability, and security posture.

Modes:

  • Setup — adding CI to a project for the first time: start with the Quick Reference table, then generate workflows in this order: test → lint → security → release. Prefer the latest stable major version for each GitHub Action.
  • Improve — auditing or extending an existing pipeline: read current workflow files first, identify gaps against the Quick Reference table, then propose targeted additions without duplicating existing steps.

Dependencies:

  • goreleaser: go install github.com/goreleaser/goreleaser/v2@latest
  • gh: brew install gh

Go Continuous Integration

Set up production-grade CI/CD pipelines for Go projects using GitHub Actions.

Action Versions

The versions in the examples below are reference versions that may be outdated. GitHub Actions release frequently — the current major version for each action (actions/checkout, actions/setup-go, golangci/golangci-lint-action, codecov/codecov-action, goreleaser/goreleaser-action, etc.) may differ from what is shown here.

Quick Reference

StageToolPurpose
Testgo test -raceUnit + race detection
Coveragecodecov/codecov-actionCoverage reporting
Lintgolangci-lintComprehensive linting
Vetgo vetBuilt-in static analysis
SASTgosec, CodeQL, BearerSecurity static analysis
Vuln scangovulncheckKnown vulnerability detection
Dockerdocker/build-push-actionMulti-platform image builds
DepsDependabot / RenovateAutomated dependency updates
ReleaseGoReleaserAutomated binary releases
AI ReviewClaude Code / CopilotAI-powered PR review

Testing

.github/workflows/test.yml — see test.yml

Adapt the Go version matrix to match go.mod:

go 1.23   → matrix: ["1.23", "1.24", "1.25", "1.26", "stable"]
go 1.24   → matrix: ["1.24", "1.25", "1.26", "stable"]
go 1.25   → matrix: ["1.25", "1.26", "stable"]
go 1.26   → matrix: ["1.26", "stable"]

Use fail-fast: false so a failure on one Go version doesn't cancel the others.

Test flags:

  • -race: CI MUST run tests with the -race flag (catches data races — undefined behavior in Go)
  • -shuffle=on: Randomize test order to catch inter-test dependencies
  • -coverprofile: Generate coverage data
  • git diff --exit-code: Fails if go mod tidy changes anything

Coverage Configuration

CI SHOULD enforce code coverage thresholds. Configure thresholds in codecov.yml at the repo root — see codecov.yml


Integration Tests

.github/workflows/integration.yml — see integration.yml

Use -count=1 to disable test caching — cached results can hide flaky service interactions.


Linting

golangci-lint MUST be run in CI on every PR. .github/workflows/lint.yml — see lint.yml

golangci-lint Configuration

Create .golangci.yml at the root of the project. See the samber/cc-skills-golang@golang-lint skill for the recommended configuration.


Security & SAST

.github/workflows/security.yml — see security.yml

CI MUST run govulncheck. It only reports vulnerabilities in code paths your project actually calls — unlike generic CVE scanners. CodeQL results appear in the repository's Security tab. Bearer is good at detecting sensitive data flow issues.

CodeQL Configuration

Create .github/codeql/codeql-config.yml to use the extended security query suite — see codeql-config.yml

Available query suites:

  • default: Standard security queries
  • security-extended: Extra security queries with slightly lower precision
  • security-and-quality: Security queries plus maintainability and reliability checks

Container Image Scanning

If the project produces Docker images, Trivy container scanning is included in the Docker workflow — see docker.yml


Dependency Management

Dependabot

.github/dependabot.yml — see dependabot.yml

Minor/patch updates are grouped into a single PR. Major updates get individual PRs since they may have breaking changes.

Auto-Merge for Dependabot

.github/workflows/dependabot-auto-merge.yml — see dependabot-auto-merge.yml

Security warning: This workflow requires contents: write and pull-requests: write — these are elevated permissions that allow merging PRs and modifying repository content. The if: github.actor == 'dependabot[bot]' guard restricts execution to Dependabot only. Do not remove this guard. Note that github.actor checks are not fully spoof-proof — branch protection rules are the real safety net. Ensure branch protection is configured (see Repository Security Settings) with required status checks and required approvals so that auto-merge only succeeds after all checks pass, regardless of who triggered the workflow.

Renovate (alternative)

Renovate is a more mature and configurable alternative to Dependabot. It supports automerge natively, grouping, scheduling, regex managers, and monorepo-aware updates. If Dependabot feels too limited, Renovate is the go-to choice.

Install the Renovate GitHub App, then create renovate.json at the repo root — see renovate.json

Key advantages over Dependabot:

  • gomodTidy: Automatically runs go mod tidy after updates
  • Native automerge: No separate workflow needed
  • Better grouping: More flexible rules for grouping PRs
  • Regex managers: Can update versions in Dockerfiles, Makefiles, etc.
  • Monorepo support: Handles Go workspaces and multi-module repos

Release Automation

GoReleaser automates binary builds, checksums, and GitHub Releases. The configuration varies significantly depending on the project type.

Release Workflow

.github/workflows/release.yml — see release.yml

Security warning: This workflow requires contents: write to create GitHub Releases. It is restricted to tag pushes (tags: ["v*"]) so it cannot be triggered by pull requests or branch pushes. Only users with push access to the repository can create tags.

GoReleaser for CLI/Programs

Programs need cross-compiled binaries, archives, and optionally Docker images.

.goreleaser.yml — see goreleaser-cli.yml

GoReleaser for Libraries

Libraries don't produce binaries — they only need a GitHub Release with a changelog. Use a minimal config that skips the build.

.goreleaser.yml — see goreleaser-lib.yml

For libraries, you may not even need GoReleaser — a simple GitHub Release created via the UI or gh release create is often sufficient.

GoReleaser for Monorepos / Multi-Binary

When a repository contains multiple commands (e.g., cmd/api/, cmd/worker/).

.goreleaser.yml — see goreleaser-monorepo.yml

Docker Build & Push

For projects that produce Docker images. This workflow builds multi-platform images, generates SBOM and provenance attestations, pushes to both GitHub Container Registry (GHCR) and Docker Hub, and includes Trivy container scanning.

.github/workflows/docker.yml — see docker.yml

Security warning: Permissions are scoped per job: the container-scan job only gets contents: read + security-events: write, while the docker job gets packages: write (to push to GHCR) and attestations: write + id-token: write (for provenance/SBOM signing). This ensures the scan job cannot push images even if compromised. The push flag is set to false on pull requests so untrusted code cannot publish images. The DOCKERHUB_USERNAME and DOCKERHUB_TOKEN secrets must be configured in the repository secrets settings — never hardcode credentials.

Key details:

  • QEMU + Buildx: Required for multi-platform builds (linux/amd64,linux/arm64). Remove platforms you don't need.
  • push: false on PRs: Images are built but never pushed on pull requests — this validates the Dockerfile without publishing untrusted code.
  • Metadata action: Automatically generates semver tags (v1.2.31.2.3, 1.2, 1), branch tags (main), and SHA tags.
  • Provenance + SBOM: provenance: mode=max and sbom: true generate supply chain attestations. These require attestations: write and id-token: write permissions.
  • Dual registry: Pushes to both GHCR (using GITHUB_TOKEN, no extra secret needed) and Docker Hub (requires DOCKERHUB_USERNAME + DOCKERHUB_TOKEN secrets). Remove the Docker Hub login and image line if not needed.
  • Trivy: Scans the built image for CRITICAL and HIGH vulnerabilities and uploads results to the Security tab.
  • Adapt the image names and registries to your project. For GHCR-only, remove the Docker Hub login step and the docker.io/ line from images:.

Repository Security Settings

Repository security settings (branch protection, workflow permissions, secrets, environments) form the security foundation for the CI pipeline — these are documented in repo-security.md.


AI-Driven Code Review

Add AI agents as PR reviewers alongside traditional static analysis. When loaded with this skill plugin, the agent applies the relevant Go skills per review area — catching architectural drift, logic bugs, missing error context, and concurrency hazards that linters cannot detect.

Cost note: AI review agents run concurrently per PR. For cost control, remove jobs you don't need or raise the PR trigger filter to specific branches only.

Claude Code

.github/workflows/ai-review.yml — see claude-code-review.yml

The workflow runs parallel jobs, each scoped to a set of review areas and priority level:

JobAreasPriority
qualityCode style, Naming, Documentation, Design patternsSuggestion-first
correctnessError handling, Code safety, ConcurrencyBlocking-first
securitySecurity, DependenciesBlocking-first
quality-depthTests, Performance, Observability, ModernizeMixed

Additional skills that may be relevant depending on the project: golang-cli, golang-context, golang-data-structures, golang-database, golang-dependency-injection, or any library-specific skill.

The Claude Code GitHub App integration is configured via the /install-github-app command, which sets up the required API secrets.

GitHub Copilot

Copy skills into your repo, then append copilot-review-instructions.md to .github/copilot-instructions.md:

npx skills add https://github.com/samber/cc-skills-golang --agent github-copilot --skill '*' -y --copy
ln -s .agents .copilot

Common Mistakes

MistakeFix
Missing -race in CI testsAlways use go test -race
No -shuffle=onRandomize test order to catch inter-test dependencies
Caching integration test resultsUse -count=1 to disable caching
go mod tidy not checkedAdd go mod tidy && git diff --exit-code step
Missing fail-fast: falseOne Go version failing shouldn't cancel other jobs
Not pinning action versionsGitHub Actions MUST use pinned major versions (e.g. @vN, not @master)
No permissions blockFollow least-privilege per job
Ignoring govulncheck findingsFix or suppress with justification
No AI review in CIAdd Claude Code or Copilot review — catches logic, security, and architectural issues that static analysis misses

Related Skills

See samber/cc-skills-golang@golang-lint, samber/cc-skills-golang@golang-security, samber/cc-skills-golang@golang-testing, samber/cc-skills-golang@golang-dependency-management, samber/cc-skills-golang@golang-modernize skills.

samberのその他のスキル

golang-code-style
samber
We need to translate the given text from English to Japanese, preserving the name "golang-code-style" and other technical terms. The instruction says: "Translate only the text inside <text>. Do not include the name unless it appears in the source text." The name "golang-code-style" appears in the source text? Actually, the source text does not contain the name "golang-code-style" explicitly. The name is given in the context: "Name to preserve: golang-code-style". But the instruction says "Do not include the name unless it appears in the source text." Since it does not appear in the source text, we should not add it. However, the source text contains references like "samber/cc-skills-golang@golang-naming" etc. Those should be preserved as is. We need to translate the description of the skill. The text describes conventions for Go code style. We'll translate into natural Japanese, keeping technical terms like "Go", "linter", "doc comments" etc. Also preserve the arrows and references. Let's break
developmentcode-review
golang-testing
samber
We need to translate the given text from English to Japanese, preserving the name "golang-testing" if it appears. The text is a description of a directory item type "agent skill". The instruction says: "Do not include the name unless it appears in the source text." The name "golang-testing" does not appear in the provided <text>? Actually, looking at the text: it starts with "Production-ready Golang tests — ..." and later mentions "samber/cc-skills-golang@golang-stretchr-testify". The name "golang-testing" is not in the text. So we should not add it. We just translate the content. We need to preserve product names, protocol names, URLs, numbers, technical terms. So "Golang", "testify", "goleak", "CI", "Go", "samber/cc-skills-golang@golang-stretchr-testify" should remain as is. Also "table-driven tests", "testify suites and mocks", "parallel tests", "f
developmenttestingcode-review
golang-design-patterns
samber
慣用的なGo言語のデザインパターン — 関数型オプション、コンストラクタ、エラーフローとカスケード、リソース管理とライフサイクル、グレースフルシャットダウン、耐障害性、アーキテクチャ、依存性注入、データ処理、ストリーミングなど。アーキテクチャパターンを明示的に選択する際、関数型オプションを実装する際、コンストラクタAPIを設計する際、グレースフルシャットダウンを設定する際、耐障害性パターンを適用する際、または特定の問題に適合する慣用的なGoパターンを尋ねる際に適用します。
developmentdesigncode-review
golang-error-handling
samber
We need to translate the given English text into Japanese, preserving the name "golang-error-handling" if it appears, but it does not appear in the text. The text is a description of a skill for idiomatic Go error handling. We must not add any extra commentary, labels, or formatting. Just the translation. The text includes technical terms: "Idiomatic Golang error handling", "creation", "wrapping with %w", "errors.Is/As", "errors.Join", "custom error types", "sentinel errors", "panic/recover", "single handling rule", "structured logging with slog", "HTTP request logging middleware", "samber/oops for production errors", "log aggregation 3rd-party tools", "Go code", "samber/cc-skills-golang@golang-samber-oops". These should be preserved as is or translated appropriately. For example, "Idiomatic Golang error handling" can be translated as "慣用的なGoのエラーハンドリング". But we need to keep technical terms like "errors
developmentcode-review
golang-performance
samber
Golangのパフォーマンス最適化パターンと方法論 - XのボトルネックがあればYを適用。アロケーション削減、CPU効率、メモリレイアウト、GCチューニング、プーリング、キャッシング、ホットパス最適化をカバー。プロファイリングやベンチマークでボトルネックが特定され、それを修正するための適切な最適化パターンが必要な場合に使用。また、パフォーマンスコードレビューを行い、改善点や迅速なパフォーマンス向上を特定するのに役立つベンチマークを提案する場合にも使用。測定方法論には使用しない(→...)
developmentcode-review
golang-security
samber
Golangのセキュリティベストプラクティスと脆弱性防止。インジェクション(SQL、コマンド、XSS)、暗号化、ファイルシステムの安全性、ネットワークセキュリティ、クッキー、シークレット管理、メモリ安全性、ログ記録をカバー。Goコードのセキュリティに関する作成、レビュー、監査時、または暗号、I/O、シークレット管理、ユーザー入力処理、認証を含むリスクのあるコードに取り組む際に適用。セキュリティツールの設定を含む。
securitycode-reviewdevelopment
golang-database
samber
Goデータベースアクセスの包括的ガイド — パラメータ化クエリ、構造体スキャン、NULL許容カラム、トランザクション、分離レベル、SELECT FOR UPDATE、コネクションプール、バッチ処理、コンテキスト伝搬、マイグレーションツール。PostgreSQL、MariaDB、MySQL、SQLiteと連携するGolangコードの作成、レビュー、デバッグ時、データベーステスト時、またはdatabase/sql、sqlx、pgxに関する質問時に使用します。データベーススキーマやマイグレーションSQLは生成しません。
developmentdatabase
golang-lint
samber
GolangプロジェクトにおけるLintのベストプラクティスとgolangci-lintの設定 — リンターの実行、.golangci.ymlの設定、nolintディレクティブによる警告の抑制、Lint出力の解釈、リンターの選択。golangci-lintの設定時、Lint警告やnolint抑制について質問がある時、コード品質ツールのセットアップ時、またはリンターを選択する時に使用します。また、ユーザーがgolangci-lint、go vet、staticcheck、reviveに言及した場合にも使用します。
developmentcode-reviewtesting