Restructure README.md
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README.md
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README.md
@ -22,7 +22,7 @@ Many of the most widely used Go projects are built using Cobra including:
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![cobra](https://cloud.githubusercontent.com/assets/173412/10911369/84832a8e-8212-11e5-9f82-cc96660a4794.gif)
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## Overview
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# Overview
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Cobra is a library providing a simple interface to create powerful modern CLI
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interfaces similar to git & go tools.
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@ -52,21 +52,35 @@ constructors or initialization methods.
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Applications built with Cobra commands are designed to be as user-friendly as
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possible. Flags can be placed before or after the command (as long as a
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confusing space isn’t provided). Both short and long flags can be used. A
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command need not even be fully typed. The shortest unambiguous string will
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suffice. Help is automatically generated and available for the application or
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for a specific command using either the help command or the `--help` flag.
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command need not even be fully typed. Help is automatically generated and
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available for the application or for a specific command using either the help
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command or the `--help` flag.
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## Concepts
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# Concepts
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Cobra is built on a structure of commands & flags.
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Cobra is built on a structure of commands, arguments & flags.
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**Commands** represent actions and **Flags** are modifiers for those actions.
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**Commands** represent actions, **Args** are things and **Flags** are modifiers for those actions.
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The best applications will read like sentences when used. Users will know how
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to use the application because they will natively understand how to use it.
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The pattern to follow is
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`APPNAME VERB NOUN --ADJECTIVE.`
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or
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`APPNAME COMMAND ARG --FLAG`
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A few good real world examples may better illustrate this point.
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In the following example, 'server' is a command, and 'port' is a flag:
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> hugo server --port=1313
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> hugo serve --port=1313
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### Commands
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In this command we are telling Git to clone the url bare.
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> git clone URL --bare
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## Commands
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Command is the central point of the application. Each interaction that
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the application supports will be contained in a Command. A command can
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@ -85,7 +99,7 @@ type Command struct {
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}
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```
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### Flags
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## Flags
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A Flag is a way to modify the behavior of a command. Cobra supports
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fully POSIX-compliant flags as well as the Go [flag package](https://golang.org/pkg/flag/).
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@ -106,7 +120,7 @@ The tree defines the structure of the application.
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Once each command is defined with its corresponding flags, then the
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tree is assigned to the commander which is finally executed.
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### Installing
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# Installing
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Using Cobra is easy. First, use `go get` to install the latest version
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of the library:
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@ -118,14 +132,118 @@ Next, include Cobra in your application:
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import "github.com/spf13/cobra"
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```
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# Getting Started
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While you are welcome to provide your own organization, typically a Cobra based
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application will follow the following organizational structure.
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```
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▾ appName/
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▾ cmd/
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add.go
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your.go
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commands.go
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here.go
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main.go
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```
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In a Cobra app, typically the main.go file is very bare. It serves, one purpose, to initialize Cobra.
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```go
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package main
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import "{pathToYourApp}/cmd"
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func main() {
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RootCmd.Execute()
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}
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```
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## Using the Cobra Generator
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Cobra provides it's own program that will create your application and add any
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commands you want. It's the easiest way to incorporate Cobra into your application.
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### cobra init
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The `cobra init [yourApp]` command will create your initial application code
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for you. It is a very powerful application that will populate your program with
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the right structure so you can immediately enjoy all the benefits of Cobra. It
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will also automatically apply the license you specify to your application.
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Cobra init is pretty smart. You can provide it a full path, or simply a path
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similar to what is expected in the import.
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```
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cobra init github.com/spf13/newAppName
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```
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### cobra add
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Once an application is initialized Cobra can create additional commands for you.
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Let's say you created an app and you wanted the following commands for it:
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* app serve
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* app config
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* app config create
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In your project directory (where your main.go file is) you would run the following:
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```
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cobra add serve
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cobra add config
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cobra add create -p 'configCmd'
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```
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Once you have run these four commands you would have an app structure that would look like:
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```
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▾ app/
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▾ cmd/
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serve.go
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config.go
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create.go
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main.go
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```
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at this point you can run `go run main.go` and it would run your app. `go run
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main.go serve`, `go run main.go config`, `go run main.go config create` along
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with `go run main.go help serve`, etc would all work.
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Obviously you haven't added your own code to these yet, the commands are ready
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for you to give them their tasks. Have fun.
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### Configuring the cobra generator
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The cobra generator will be easier to use if you provide a simple configuration
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file which will help you eliminate providing a bunch of repeated information in
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flags over and over.
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an example ~/.cobra.yaml file:
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```yaml
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author: Steve Francia <spf@spf13.com>
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license: MIT
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```
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## Manually implementing Cobra
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To manually implement cobra you need to create a bare main.go file and a RootCmd file.
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You will optionally provide additional commands as you see fit.
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### Create the root command
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The root command represents your binary itself.
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#### Manually create rootCmd
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Cobra doesn't require any special constructors. Simply create your commands.
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Ideally you place this in app/cmd/root.go:
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```go
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var HugoCmd = &cobra.Command{
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var RootCmd = &cobra.Command{
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Use: "hugo",
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Short: "Hugo is a very fast static site generator",
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Long: `A Fast and Flexible Static Site Generator built with
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@ -137,11 +255,63 @@ var HugoCmd = &cobra.Command{
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}
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```
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### Create additional commands
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You will additionally define flags and handle configuration in your init() function.
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Additional commands can be defined.
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for example cmd/root.go:
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```go
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func init() {
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cobra.OnInitialize(initConfig)
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RootCmd.PersistentFlags().StringVar(&cfgFile, "config", "", "config file (default is $HOME/.cobra.yaml)")
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RootCmd.PersistentFlags().StringVarP(&projectBase, "projectbase", "b", "", "base project directory eg. github.com/spf13/")
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RootCmd.PersistentFlags().StringP("author", "a", "YOUR NAME", "Author name for copyright attribution")
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RootCmd.PersistentFlags().StringVarP(&userLicense, "license", "l", "", "Name of license for the project (can provide `licensetext` in config)")
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RootCmd.PersistentFlags().Bool("viper", true, "Use Viper for configuration")
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viper.BindPFlag("author", RootCmd.PersistentFlags().Lookup("author"))
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viper.BindPFlag("projectbase", RootCmd.PersistentFlags().Lookup("projectbase"))
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viper.BindPFlag("useViper", RootCmd.PersistentFlags().Lookup("viper"))
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viper.SetDefault("author", "NAME HERE <EMAIL ADDRESS>")
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viper.SetDefault("license", "apache")
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}
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```
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### Create your main.go
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With the root command you need to have your main function execute it.
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Execute should be run on the root for clarity, though it can be called on any command.
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In a Cobra app, typically the main.go file is very bare. It serves, one purpose, to initialize Cobra.
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```go
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package main
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import "{pathToYourApp}/cmd"
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func main() {
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RootCmd.Execute()
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}
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```
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### Create additional commands
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Additional commands can be defined and typically are each given their own file
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inside of the cmd/ directory.
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If you wanted to create a version command you would create cmd/version.go and
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populate it with the following:
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```go
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package cmd
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import (
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"github.com/spf13/cobra"
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)
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func init() {
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RootCmd.AddCommand(versionCmd)
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}
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var versionCmd = &cobra.Command{
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Use: "version",
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Short: "Print the version number of Hugo",
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@ -153,12 +323,33 @@ var versionCmd = &cobra.Command{
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```
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### Attach command to its parent
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In this example we are attaching it to the root, but commands can be attached at any level.
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If you notice in the above example we attach the command to it's parent. In
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this case the parent is the rootCmd. In this example we are attaching it to the
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root, but commands can be attached at any level.
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```go
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HugoCmd.AddCommand(versionCmd)
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RootCmd.AddCommand(versionCmd)
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```
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### Remove a command from its parent
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Removing a command is not a common action in simple programs, but it allows 3rd
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parties to customize an existing command tree.
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In this example, we remove the existing `VersionCmd` command of an existing
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root command, and we replace it with our own version:
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```go
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mainlib.RootCmd.RemoveCommand(mainlib.VersionCmd)
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mainlib.RootCmd.AddCommand(versionCmd)
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```
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## Working with Flags
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Flags provide modifiers to control how the action command operates.
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### Assign flags to a command
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Since the flags are defined and used in different locations, we need to
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@ -172,42 +363,24 @@ var Source string
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There are two different approaches to assign a flag.
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#### Persistent Flags
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### Persistent Flags
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A flag can be 'persistent' meaning that this flag will be available to the
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command it's assigned to as well as every command under that command. For
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global flags, assign a flag as a persistent flag on the root.
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```go
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HugoCmd.PersistentFlags().BoolVarP(&Verbose, "verbose", "v", false, "verbose output")
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RootCmd.PersistentFlags().BoolVarP(&Verbose, "verbose", "v", false, "verbose output")
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```
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#### Local Flags
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### Local Flags
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A flag can also be assigned locally which will only apply to that specific command.
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```go
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HugoCmd.Flags().StringVarP(&Source, "source", "s", "", "Source directory to read from")
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RootCmd.Flags().StringVarP(&Source, "source", "s", "", "Source directory to read from")
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```
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### Remove a command from its parent
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Removing a command is not a common action in simple programs, but it allows 3rd parties to customize an existing command tree.
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In this example, we remove the existing `VersionCmd` command of an existing root command, and we replace it with our own version:
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```go
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mainlib.RootCmd.RemoveCommand(mainlib.VersionCmd)
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mainlib.RootCmd.AddCommand(versionCmd)
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```
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### Once all commands and flags are defined, Execute the commands
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Execute should be run on the root for clarity, though it can be called on any command.
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```go
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HugoCmd.Execute()
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```
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## Example
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