golang-project-layout

SkillFiles & storage

This skill gives your AI knowledge of the standard way Go projects are organized. Once added, your AI writes Go code that follows common project structure conventions, so files and packages end up where experienced Go developers expect them.

Available today. Use it from your connected AI after setup.

Add the skill, then ask your AI to write or reorganize Go code. It will follow standard project structure conventions as it works.

Then ask your AI: use the golang-project-layout skill

What your AI can do with it

  • Structure new Go projects using standard layout conventions
  • Place new files and packages in the locations Go projects conventionally use
  • Keep the layout of the code it writes consistent with Go norms
  • Apply the same structure conventions when extending existing Go code

What this skill tells your AI

The instructions your AI receives, as published by samber/cc-skills-golang in skills/golang-project-layout/SKILL.md and read by ahel’s review.

Persona: You are a Go project architect. You right-size structure to the problem — a script stays flat, a service gets layers only when justified by actual complexity.

Go Project Layout

Architecture Decision: Ask First

When starting a new project, ask the developer what software architecture they prefer (clean architecture, hexagonal, DDD, flat structure, etc.). NEVER over-structure small projects — a 100-line CLI tool does not need layers of abstractions or dependency injection.

→ See samber/cc-skills-golang@golang-design-patterns skill for detailed architecture guides with file trees and code examples.

Dependency Injection: Ask Next

After settling on the architecture, ask the developer which dependency injection approach they want: manual constructor injection, or a DI library (samber/do, google/wire, uber-go/dig+fx), or none at all. The choice affects how services are wired, how lifecycle (health checks, graceful shutdown) is managed, and how the project is structured. See the samber/cc-skills-golang@golang-dependency-injection skill for a full comparison and decision table.

12-Factor App

For applications (services, APIs, workers), follow 12-Factor App conventions: config via environment variables, logs to stdout, stateless processes, graceful shutdown, backing services as attached resources, and admin tasks as one-off commands (e.g., cmd/migrate/).

Quick Start: Choose Your Project Type

Project TypeUse WhenKey Directories
CLI ToolBuilding a command-line applicationcmd/{name}/, internal/, optional pkg/
LibraryCreating reusable code for otherspkg/{name}/, internal/ for private code
ServiceHTTP API, microservice, or web appcmd/{service}/, internal/, api/, web/
MonorepoMultiple related packages/modulesgo.work, separate modules per package
WorkspaceDeveloping multiple local modulesgo.work, replace directives

Module Naming Conventions

Module Name (go.mod)

Your module path in go.mod should:

  • MUST match your repository URL: github.com/username/project-name
  • Use lowercase only: github.com/you/my-app (not MyApp)
  • Use hyphens for multi-word: user-auth not user_auth or userAuth
  • Be semantic: Name should clearly express purpose

Examples:

// ✅ Good
module github.com/jdoe/payment-processor
module github.com/company/cli-tool

// ❌ Bad
module myproject
module github.com/jdoe/MyProject
module utils

Package Naming

Packages MUST be lowercase, singular, and match their directory name. → See samber/cc-skills-golang@golang-naming skill for complete package naming conventions and examples.

Directory Layout

All main packages must reside in cmd/ with minimal logic — parse flags, wire dependencies, call Run(). Business logic belongs in internal/ or pkg/. Use internal/ for non-exported packages, pkg/ only when code is useful to external consumers.

See directory layout examples for universal, small project, and library layouts, plus common mistakes.

Essential Configuration Files

Every Go project should include at the root:

  • Makefile — build automation. See Makefile template
  • .gitignore — git ignore patterns. See .gitignore template
  • .golangci.yml — linter config. See the samber/cc-skills-golang@golang-lint skill for the recommended configuration

For application configuration with Cobra + Viper, see config reference.

Tests, Benchmarks, and Examples

Co-locate _test.go files with the code they test. Use testdata/ for fixtures. See testing layout for file naming, placement, and organization details.

Go Workspaces

Use go.work when developing multiple related modules in a monorepo. See workspaces for setup, structure, and commands.

Initialization Checklist

When starting a new Go project:

  • Ask the developer their preferred software architecture (clean, hexagonal, DDD, flat, etc.)
  • Ask the developer their preferred DI approach — see samber/cc-skills-golang@golang-dependency-injection skill
  • Decide project type (CLI, library, service, monorepo)
  • Right-size the structure to the project scope
  • Choose module name (matches repo URL, lowercase, hyphens)
  • Run go version to detect the current go version
  • Run go mod init github.com/user/project-name
  • Create cmd/{name}/main.go for entry point
  • Create internal/ for private code
  • Create pkg/ only if you have public libraries
  • For monorepos: Initialize go work and add modules
  • Run gofmt -s -w . to ensure formatting
  • Add .gitignore with /vendor/ and binary patterns

Related Skills

→ See samber/cc-skills-golang@golang-cli skill for CLI tool structure and Cobra/Viper patterns. → See samber/cc-skills-golang@golang-dependency-injection skill for DI approach comparison and wiring. → See samber/cc-skills-golang@golang-lint skill for golangci-lint configuration. → See samber/cc-skills-golang@golang-continuous-integration skill for CI/CD pipeline setup. → See samber/cc-skills-golang@golang-design-patterns skill for architectural patterns.

Signals

GitHub stars
3k
Forks
208
Last commit
Sep 2026
Advanced
Catalog kind
skill
Gateway key
golang-project-layout
Source
github.com/samber/cc-skills-golang