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@ -1,29 +1,3 @@
#### 简介 # hertz_scaffold
以golib.gaore.com/GaoreGo/hertz_demo为模板的hertz框架脚手架
#### 安装:
go install golib.gaore.com/GaoreGo/hertz_scaffold@latest
#### 命令行参数:
create 创建一个新项目
help Help about any command
update 更新项目
Usage:
hertz_scaffold create [flags]
hertz_scaffold update [flags]
Flags:
-h, --help help for create
-p, --project string 项目名称
-t, --tag string 指定tag (不指定默认拉取master)
#### 创建项目:
hertz_scaffold create -p hertz.gaore.com
#### 更新项目(注意,更新项目会覆盖本地项目,请谨慎操作):
hertz_scaffold update -p hertz.gaore.com -t 1.0.0
hertz 脚 手架

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@ -1,40 +0,0 @@
package cmd
import (
"fmt"
"github.com/spf13/cobra"
"log"
"os"
)
var (
template = "git@golib-ssh.gaore.com:GaoreGo/hertz_demo.git"
project string
branch string
)
var rootCmd = &cobra.Command{
Use: "hertz_scaffold",
Short: "hertz框架脚手架",
Long: `以golib.gaore.com/GaoreGo/hertz_demo为模板的脚手架`,
Run: func(cmd *cobra.Command, args []string) {
if len(args) == 0 {
cmd.Help()
} else {
fmt.Println("Invalid command")
}
},
}
// Execute 执行命令
func Execute() {
if err := rootCmd.Execute(); err != nil {
log.Println(err)
os.Exit(1)
}
}
func init() {
rootCmd.AddCommand(createCmd)
rootCmd.AddCommand(updateCmd)
}

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@ -1,44 +0,0 @@
package cmd
import (
"fmt"
"github.com/spf13/cobra"
"log"
"os"
)
var createCmd = &cobra.Command{
Use: "create",
Short: "创建一个新项目",
Long: `通过hertz_demo为模板创建一个新项目`,
Run: func(cmd *cobra.Command, args []string) {
handleCreateCommand(args)
},
}
func handleCreateCommand(args []string) {
if projectExists(project) {
log.Printf("Project %s already exists, use update", project)
os.Exit(1)
}
err := handleRemoteTemplate(template, branch, project)
if err != nil {
log.Printf("Error creating project: %s\n", err)
os.Exit(1)
}
fmt.Printf("Project %s created successfully!\n", project)
return
}
func init() {
initFlags(createCmd)
}
// projectExists 检查项目路径是否已经存在
func projectExists(projectPath string) bool {
info, err := os.Stat(projectPath)
if os.IsNotExist(err) {
return false
}
return info.IsDir()
}

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@ -1,142 +0,0 @@
package cmd
import (
"bytes"
"fmt"
"github.com/spf13/cobra"
"io"
"io/fs"
"log"
"os"
"os/exec"
"path/filepath"
"strings"
)
func getModuleName(goModPath string) (string, error) {
content, err := os.ReadFile(goModPath)
if err != nil {
return "", err
}
lines := strings.Split(string(content), "\n")
for _, line := range lines {
if strings.HasPrefix(line, "module ") {
return strings.TrimSpace(strings.TrimPrefix(line, "module ")), nil
}
}
return "", fmt.Errorf("module name not found in go.mod")
}
func handleRemoteTemplate(templateRepo, branch, projectPath string) (err error) {
// 创建临时目录
tempDir, err := os.MkdirTemp("", "template-*")
if err != nil {
return fmt.Errorf("error creating temporary directory: %s", err)
}
// 清理临时目录
defer os.RemoveAll(tempDir)
// 克隆模板仓库
cloneCmd := exec.Command("git", "clone", "--branch", branch, templateRepo, tempDir)
cloneCmd.Stdout = io.Discard
var stderr bytes.Buffer
cloneCmd.Stderr = &stderr
if err = cloneCmd.Run(); err != nil {
return fmt.Errorf("error cloning template repository: %s\n%s", err, extractError(stderr.String()))
}
return copyTemplate(tempDir, projectPath)
}
func copyTemplate(src, dist string) (err error) {
// 读取 go.mod 文件中的模块名称
oldModuleName, err := getModuleName(filepath.Join(src, "go.mod"))
if err != nil {
log.Printf("error reading module name: %s", err)
os.Exit(1)
}
replacements := map[string]string{
oldModuleName: filepath.Base(dist),
}
return filepath.Walk(src, func(path string, info fs.FileInfo, err error) error {
if err != nil {
return err
}
// 获取相对路径
relPath, err := filepath.Rel(src, path)
if err != nil {
return err
}
// 获取目标路径
targetPath := filepath.Join(dist, relPath)
if info.IsDir() && filepath.Base(path) == ".git" {
return filepath.SkipDir
}
if info.IsDir() {
// 创建目录
return os.MkdirAll(targetPath, info.Mode())
}
return copyAndReplaceFile(path, targetPath, info.Mode(), replacements)
})
}
func copyAndReplaceFile(src, dist string, mode os.FileMode, replacements map[string]string) (err error) {
// 读取源文件
sourceFile, err := os.Open(src)
if err != nil {
return err
}
defer sourceFile.Close()
content, err := io.ReadAll(sourceFile)
if err != nil {
return err
}
newContent := string(content)
for key, value := range replacements {
newContent = strings.ReplaceAll(newContent, key, value)
}
// 读取目标文件
targetFile, err := os.OpenFile(dist, os.O_CREATE|os.O_RDWR|os.O_TRUNC, mode)
if err != nil {
return err
}
defer targetFile.Close()
_, err = targetFile.WriteString(newContent)
return
}
// extractError 解析并提取实际的错误信息
func extractError(stderr string) string {
lines := strings.Split(stderr, "\n")
var errorLines []string
for _, line := range lines {
// 过滤掉非错误信息
if strings.HasPrefix(line, "fatal:") || strings.Contains(line, "error:") {
errorLines = append(errorLines, line)
}
}
return strings.Join(errorLines, "\n")
}
// initFlags 初始化通用的命令行参数
func initFlags(cmd *cobra.Command) {
cmd.Flags().StringVarP(&project, "project", "p", "", "项目名称")
cmd.Flags().StringVarP(&branch, "tag", "t", "master", "指定tag")
cmd.MarkFlagRequired("project")
}

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@ -1,31 +0,0 @@
package cmd
import (
"fmt"
"github.com/spf13/cobra"
"log"
"os"
)
var updateCmd = &cobra.Command{
Use: "update",
Short: "更新项目",
Long: `Update the current project`,
Run: func(cmd *cobra.Command, args []string) {
handleUpdateCommand(args)
},
}
func init() {
initFlags(updateCmd)
}
func handleUpdateCommand(args []string) {
err := handleRemoteTemplate(template, branch, project)
if err != nil {
log.Printf("Error update project: %s\n", err)
os.Exit(1)
}
fmt.Printf("Project %s update successfully!\n", project)
return
}

4
go.mod
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@ -1,6 +1,6 @@
module golib.gaore.com/GaoreGo/hertz_scaffold module hertz_scaffold
go 1.20 go 1.19
require github.com/spf13/cobra v1.8.1 require github.com/spf13/cobra v1.8.1

16
main.go
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@ -1,9 +1,17 @@
// Code generated by hertz generator.
package main package main
import "golib.gaore.com/GaoreGo/hertz_scaffold/cmd" import "fmt"
import "github.com/spf13/cobra"
var rootCmd = &cobra.Command{
Use: "hello",
Short: "Hello, World!",
Long: `Hello, World!`,
Run: func(cmd *cobra.Command, args []string) {
fmt.Println("Hello, World! corbra")
},
}
func main() { func main() {
cmd.Execute() rootCmd.Execute()
} }

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@ -27,23 +27,32 @@ unaffected.
Define flags using flag.String(), Bool(), Int(), etc. Define flags using flag.String(), Bool(), Int(), etc.
This declares an integer flag, -flagname, stored in the pointer ip, with type *int. This declares an integer flag, -flagname, stored in the pointer ip, with type *int.
var ip = flag.Int("flagname", 1234, "help message for flagname") var ip = flag.Int("flagname", 1234, "help message for flagname")
If you like, you can bind the flag to a variable using the Var() functions. If you like, you can bind the flag to a variable using the Var() functions.
var flagvar int var flagvar int
func init() { func init() {
flag.IntVar(&flagvar, "flagname", 1234, "help message for flagname") flag.IntVar(&flagvar, "flagname", 1234, "help message for flagname")
} }
Or you can create custom flags that satisfy the Value interface (with Or you can create custom flags that satisfy the Value interface (with
pointer receivers) and couple them to flag parsing by pointer receivers) and couple them to flag parsing by
flag.Var(&flagVal, "name", "help message for flagname") flag.Var(&flagVal, "name", "help message for flagname")
For such flags, the default value is just the initial value of the variable. For such flags, the default value is just the initial value of the variable.
After all flags are defined, call After all flags are defined, call
flag.Parse() flag.Parse()
to parse the command line into the defined flags. to parse the command line into the defined flags.
Flags may then be used directly. If you're using the flags themselves, Flags may then be used directly. If you're using the flags themselves,
they are all pointers; if you bind to variables, they're values. they are all pointers; if you bind to variables, they're values.
fmt.Println("ip has value ", *ip) fmt.Println("ip has value ", *ip)
fmt.Println("flagvar has value ", flagvar) fmt.Println("flagvar has value ", flagvar)
@ -54,22 +63,26 @@ The arguments are indexed from 0 through flag.NArg()-1.
The pflag package also defines some new functions that are not in flag, The pflag package also defines some new functions that are not in flag,
that give one-letter shorthands for flags. You can use these by appending that give one-letter shorthands for flags. You can use these by appending
'P' to the name of any function that defines a flag. 'P' to the name of any function that defines a flag.
var ip = flag.IntP("flagname", "f", 1234, "help message") var ip = flag.IntP("flagname", "f", 1234, "help message")
var flagvar bool var flagvar bool
func init() { func init() {
flag.BoolVarP(&flagvar, "boolname", "b", true, "help message") flag.BoolVarP(&flagvar, "boolname", "b", true, "help message")
} }
flag.VarP(&flagval, "varname", "v", "help message") flag.VarP(&flagval, "varname", "v", "help message")
Shorthand letters can be used with single dashes on the command line. Shorthand letters can be used with single dashes on the command line.
Boolean shorthand flags can be combined with other shorthand flags. Boolean shorthand flags can be combined with other shorthand flags.
Command line flag syntax: Command line flag syntax:
--flag // boolean flags only --flag // boolean flags only
--flag=x --flag=x
Unlike the flag package, a single dash before an option means something Unlike the flag package, a single dash before an option means something
different than a double dash. Single dashes signify a series of shorthand different than a double dash. Single dashes signify a series of shorthand
letters for flags. All but the last shorthand letter must be boolean flags. letters for flags. All but the last shorthand letter must be boolean flags.
// boolean flags // boolean flags
-f -f
-abc -abc
@ -927,9 +940,9 @@ func (f *FlagSet) usage() {
} }
} }
//--unknown (args will be empty) // --unknown (args will be empty)
//--unknown --next-flag ... (args will be --next-flag ...) // --unknown --next-flag ... (args will be --next-flag ...)
//--unknown arg ... (args will be arg ...) // --unknown arg ... (args will be arg ...)
func stripUnknownFlagValue(args []string) []string { func stripUnknownFlagValue(args []string) []string {
if len(args) == 0 { if len(args) == 0 {
//--unknown //--unknown

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@ -98,9 +98,12 @@ func (f *FlagSet) GetStringSlice(name string) ([]string, error) {
// The argument p points to a []string variable in which to store the value of the flag. // The argument p points to a []string variable in which to store the value of the flag.
// Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly. // Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly.
// For example: // For example:
// --ss="v1,v2" --ss="v3" //
// --ss="v1,v2" --ss="v3"
//
// will result in // will result in
// []string{"v1", "v2", "v3"} //
// []string{"v1", "v2", "v3"}
func (f *FlagSet) StringSliceVar(p *[]string, name string, value []string, usage string) { func (f *FlagSet) StringSliceVar(p *[]string, name string, value []string, usage string) {
f.VarP(newStringSliceValue(value, p), name, "", usage) f.VarP(newStringSliceValue(value, p), name, "", usage)
} }
@ -114,9 +117,12 @@ func (f *FlagSet) StringSliceVarP(p *[]string, name, shorthand string, value []s
// The argument p points to a []string variable in which to store the value of the flag. // The argument p points to a []string variable in which to store the value of the flag.
// Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly. // Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly.
// For example: // For example:
// --ss="v1,v2" --ss="v3" //
// --ss="v1,v2" --ss="v3"
//
// will result in // will result in
// []string{"v1", "v2", "v3"} //
// []string{"v1", "v2", "v3"}
func StringSliceVar(p *[]string, name string, value []string, usage string) { func StringSliceVar(p *[]string, name string, value []string, usage string) {
CommandLine.VarP(newStringSliceValue(value, p), name, "", usage) CommandLine.VarP(newStringSliceValue(value, p), name, "", usage)
} }
@ -130,9 +136,12 @@ func StringSliceVarP(p *[]string, name, shorthand string, value []string, usage
// The return value is the address of a []string variable that stores the value of the flag. // The return value is the address of a []string variable that stores the value of the flag.
// Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly. // Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly.
// For example: // For example:
// --ss="v1,v2" --ss="v3" //
// --ss="v1,v2" --ss="v3"
//
// will result in // will result in
// []string{"v1", "v2", "v3"} //
// []string{"v1", "v2", "v3"}
func (f *FlagSet) StringSlice(name string, value []string, usage string) *[]string { func (f *FlagSet) StringSlice(name string, value []string, usage string) *[]string {
p := []string{} p := []string{}
f.StringSliceVarP(&p, name, "", value, usage) f.StringSliceVarP(&p, name, "", value, usage)
@ -150,9 +159,12 @@ func (f *FlagSet) StringSliceP(name, shorthand string, value []string, usage str
// The return value is the address of a []string variable that stores the value of the flag. // The return value is the address of a []string variable that stores the value of the flag.
// Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly. // Compared to StringArray flags, StringSlice flags take comma-separated value as arguments and split them accordingly.
// For example: // For example:
// --ss="v1,v2" --ss="v3" //
// --ss="v1,v2" --ss="v3"
//
// will result in // will result in
// []string{"v1", "v2", "v3"} //
// []string{"v1", "v2", "v3"}
func StringSlice(name string, value []string, usage string) *[]string { func StringSlice(name string, value []string, usage string) *[]string {
return CommandLine.StringSliceP(name, "", value, usage) return CommandLine.StringSliceP(name, "", value, usage)
} }