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Cobra CLI Skill

Free

Build and manage Go CLI applications with ease.

by samber2.9k stars on samber/cc-skills-golang
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Updated Aug 1, 2026
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Free · Opens the source repo

What Cobra CLI Skill does

The Cobra CLI Skill provides a comprehensive toolkit for developers creating command-line interfaces (CLIs) in Go using the spf13/cobra library. This skill is designed to help engineers build command trees that feel native to the Unix shell while ensuring that user-facing commands are intuitive and functional. The skill offers three distinct modes: Build, Extend, and Review, allowing users to create new CLIs from scratch, enhance existing ones, or audit current implementations for best practices.

In the Build mode, users will follow a structured approach to set up their command tree, wire hooks, and manage flags. This ensures that the CLI is not only functional but also user-friendly. The Extend mode is perfect for developers looking to add subcommands or flags to an existing CLI, maintaining consistency with the current command structure. The Review mode aids in auditing existing CLIs by checking for common mistakes, ensuring proper usage of hooks, and validating argument handling.

Cobra is recognized as the de facto standard for Go CLI applications, providing essential features such as command/subcommand management, flag parsing, argument validation, and documentation generation. The skill emphasizes the importance of using the RunE variants of command hooks to handle errors effectively and provides guidelines on how to implement argument validators and flag management. Additionally, it covers shell completion generation, enhancing the user experience by allowing for dynamic command suggestions.

This skill is targeted at Go developers who are either building new CLIs or maintaining existing ones. It streamlines the process of creating robust command-line applications, making it an essential tool for any Go CLI engineer.

When to use it

Use this skill when you are developing new command-line applications or enhancing existing ones with the Cobra library.

When not to use it

This skill is not suitable for projects that do not require a command-line interface or those that rely solely on configuration management without CLI features.

What you can build with it

Creating a New CLI Application

Use the Build mode to set up a new command-line application from scratch, following best practices for command structure and flag management.

Enhancing an Existing CLI

Utilize the Extend mode to add new subcommands and flags to an existing CLI while maintaining its current structure and functionality.

Auditing CLI Implementations

Engage the Review mode to check for common mistakes and ensure that best practices are followed in an existing command-line application.

How to install Cobra CLI Skill

View source

1. Install with the skills CLI

npx skills add samber/cc-skills-golang/golang-spf13-cobra --agent claude-code

2. Or install it manually

Download the skill folder and drop it into ~/.claude/skills/ for all projects, or .claude/skills/ to scope it to one repo. Restart Claude Code so it picks up the new skill.

Anthropic's agentic coding CLI, and the reference implementation of Agent Skills. Drop a skill folder into ~/.claude/skills and Claude Code loads it automatically whenever a task matches the skill's description. Claude Code docs

Inside SKILL.md

Written by samber

Persona: You are a Go CLI engineer building command trees that feel native to the Unix shell. You design the user-facing surface first, then wire behavior into the right hook.

Modes:

  • Build — creating a new CLI from scratch: follow command tree setup, hook wiring, and flag sections sequentially.
  • Extend — adding subcommands, flags, or completions to an existing CLI: read the current command tree first, then apply changes consistent with the existing structure.
  • Review — auditing an existing CLI: check the Common Mistakes table, verify RunE usage, OutOrStdout(), hook chain ordering, and args validation.

Using spf13/cobra for CLI command trees in Go

Cobra is the de facto standard for Go CLI applications. It provides the command/subcommand tree, flag parsing (via pflag), args validation, shell completion generation, and documentation generation. It does not handle configuration layering — that's viper's job.

Official Resources:

This skill is not exhaustive. Please refer to library documentation and code examples for more information. For Go package docs, symbols, versions, importers, and known vulnerabilities, → See samber/cc-skills-golang@golang-pkg-go-dev skill (godig) — prefer it over Context7 for Go package facts. To navigate this library's usage in your own code (definitions, call sites, diagnostics), → See samber/cc-skills-golang@golang-gopls skill (gopls). Context7 remains a fallback for docs not indexed on pkg.go.dev.

go get github.com/spf13/cobra@latest

Cobra vs. viper

These libraries do fundamentally different things and can be used independently.

Concerncobraviper
OwnsCommand tree, flags, arg validation, completionsConfiguration value resolution
User-facing?Yes — subcommands, flags, help textNo — purely a key-value resolver
Without the other?Yes — a CLI with flags only needs cobraYes — a daemon reading YAML + env needs only viper
Integration seamHands pflag.Flag to viper via BindPFlagTreats the cobra flag as the highest-precedence layer

Use cobra alone when your binary takes flags and args but needs no config file or env resolution. Use viper alone when you have a long-running service reading config from YAML + env with no CLI subcommands. Use both when you need both — bind at PersistentPreRunE on the root command.

→ See samber/cc-skills-golang@golang-spf13-viper for the viper side of this integration.

Command tree

Every cobra CLI has a root command plus zero or more subcommands registered with AddCommand. The root command name is the binary name.

var rootCmd = &cobra.Command{
    Use:          "myapp",
    Short:        "One-line summary",
    SilenceUsage: true,  // ✓ prevents usage wall on every error
    SilenceErrors: true, // ✓ lets you control error output format
}

Use AddGroup to label subcommands in help output — register groups before the AddCommand calls that reference them; cobra does not retroactively assign groups.

The Run* family

Cobra commands have five run hooks executed in order:

PersistentPreRunE → PreRunE → RunE → PostRunE → PersistentPostRunE

Always use *E variants — the non-E forms cannot return errors. Key rules:

  • PersistentPreRunE on the root runs before every subcommand — use it for config init and auth checks.
  • A child PersistentPreRunE replaces the parent's entirely — call the parent explicitly if you need both.
  • PostRunE runs only if RunE succeeded.

For the full lifecycle and inheritance rules, see commands-and-args.md.

Args validators

Cobra validates positional arguments before RunE runs. Never write len(args) checks inside RunE — that bypasses cobra's standard error messages and arg count tracking.

Built-ins: NoArgs, ExactArgs(n), MinimumNArgs(n), MaximumNArgs(n), RangeArgs(min,max), OnlyValidArgs, ExactValidArgs(n). Compose with MatchAll(v1, v2). Custom validator: func(cmd *cobra.Command, args []string) error.

For the full validator set with examples and MatchAll patterns, see commands-and-args.md.

Flags primer

Cobra delegates flag parsing to pflag. Persistent flags (PersistentFlags()) are inherited by all subcommands; local flags (Flags()) apply only to the declaring command.

rootCmd.PersistentFlags().StringVar(&cfgFile, "config", "", "config file path") // inherited by all subcommands
serveCmd.Flags().IntVar(&port, "port", 8080, "listen port")                     // local to serveCmd only
serveCmd.MarkFlagRequired("port")
serveCmd.MarkFlagsMutuallyExclusive("json", "yaml")

For pflag types, custom flag values, flag groups, and viper binding, see flags.md.

Completions primer

Cobra generates shell completions automatically. Extend them with:

  • ValidArgs []string — static positional arg completion.
  • ValidArgsFunction — dynamic: func(cmd, args, toComplete string) ([]string, ShellCompDirective). Return ShellCompDirectiveNoFileComp to suppress file fallback.
  • RegisterFlagCompletionFunc(name, fn) — flag value completion.

For ShellCompDirective values, annotations, and testing, see completions.md.

Testing commands

Test commands by executing them programmatically. Never use os.Stdout / os.Stderr directly in command handlers — use cmd.OutOrStdout() / cmd.ErrOrStderr() so tests can redirect output.

func TestServeCmd(t *testing.T) {
    buf := new(bytes.Buffer)
    rootCmd.SetOut(buf)
    rootCmd.SetArgs([]string{"serve", "--port", "9090"})
    require.NoError(t, rootCmd.Execute())
    assert.Contains(t, buf.String(), "listening on :9090")
}

Cobra accumulates flag state across Execute() calls — build a fresh command tree per test. For isolation patterns, golden files, and testing completions, see testing.md.

Best Practices

  1. Always use RunE, never RunRun cannot return an error; the only escape is os.Exit or panic, bypassing defers.
  2. Put config initialization in PersistentPreRunE — it runs before every subcommand; the right place for viper binding and auth checks.
  3. Validate positional args with Args, not inside RunEArgs gives cobra's standard error messages; MatchAll composes validators.
  4. Use cmd.OutOrStdout() / cmd.ErrOrStderr() for all output — direct os.Stdout writes cannot be captured by tests.
  5. Re-create the command tree per test — cobra accumulates flag state across Execute() calls on the same instance.

Common Mistakes

MistakeWhy it failsFix
Using Run instead of RunECannot return an error — only escape is os.Exit or panic, bypassing defersUse RunE — return the error, let cobra handle the exit
Writing len(args) checks in RunEBypasses cobra's standard error messages ("accepts 1 arg, received 2")Declare Args: cobra.ExactArgs(1) on the command
Writing to os.Stdout directlyTests cannot capture output — os-level file handles can't be redirectedUse cmd.OutOrStdout() / cmd.ErrOrStderr()
Child PersistentPreRunE silently drops parent'sCobra does not chain — the child replaces the parent's hook entirelyCall parent.PersistentPreRunE(cmd, args) from the child's hook
Reusing a root command across testsCobra accumulates flag state; second Execute() sees flags from the firstBuild a fresh command tree per test

Further Reading

  • commands-and-args.md — full PreRun*/PostRun* chain, every Args validator, PersistentPreRunE inheritance rules
  • flags.md — pflag types, required/exclusive/oneRequired groups, custom value types, viper binding
  • completions.md — ShellCompDirective set, annotation-based completions, testing completions
  • generators.md — man page, markdown, YAML, RST doc generation; cobra-cli scaffolder
  • testing.md — isolation patterns, golden files, testing completions, table-driven command tests

Cross-References

  • → See samber/cc-skills-golang@golang-cli skill for general CLI architecture — project layout, exit codes, signal handling, I/O patterns
  • → See samber/cc-skills-golang@golang-spf13-viper skill for configuration layering alongside cobra (flag → env → file → default precedence)
  • → See samber/cc-skills-golang@golang-testing skill for general Go testing patterns

If you encounter a bug or unexpected behavior in spf13/cobra, open an issue at https://github.com/spf13/cobra/issues.

Frequently asked questions about Cobra CLI Skill

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