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116
main.go
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116
main.go
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package main
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import (
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"flag"
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"fmt"
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"goED/util"
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"io/ioutil"
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"os"
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)
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func readFileToStr(path string) string {
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content, err := ioutil.ReadFile(path)
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if err != nil {
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fmt.Println("read file failed, err:", err)
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return ""
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}
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return string(content)
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}
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func genFile(str, path string) {
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file, err := os.OpenFile(path, os.O_CREATE|os.O_TRUNC|os.O_WRONLY, 0666)
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if err != nil {
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fmt.Println("open file failed, err:", err)
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return
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}
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defer file.Close()
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file.Write([]byte(str)) //写入字节切片数据
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//file.WriteString("hello go") //直接写入字符串数据
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}
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func test() {
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//content, err := ioutil.ReadFile("C:\\Users\\61778\\Desktop\\HelloWorld.class")
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strContent := readFileToStr("C:\\METSIM\\example\\gascleaning_1.5_30.sfw")
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//fmt.Println(strContent)
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Encrypt, _ := util.AesEcpt.AesBase64Encrypt(strContent)
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//fmt.Printf("Encrypt: %v\n", Encrypt)
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Decrypt, _ := util.AesEcpt.AesBase64Decrypt(Encrypt)
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//fmt.Printf("Decrypt: %v\n", Decrypt)
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fmt.Printf("明文长度: %v\n解密后长度: %v\n", len(strContent), len(Decrypt))
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}
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func testGenFile(path, enPath, dePath string) {
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strContent := readFileToStr(path)
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Encrypt, _ := util.AesEcpt.AesBase64Encrypt(strContent)
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genFile(Encrypt, enPath)
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//fmt.Printf("Encrypt: %v\n", Encrypt)
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Decrypt, _ := util.AesEcpt.AesBase64Decrypt(Encrypt)
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genFile(Decrypt, dePath)
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//fmt.Printf("Decrypt: %v\n", Decrypt)
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fmt.Printf("明文长度: %v\n解密后长度: %v\n", len(strContent), len(Decrypt))
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}
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func enFile(path string) {
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enFileToOutPath(path, path)
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}
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func enFileToOutPath(path, outPath string) {
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strContent := readFileToStr(path)
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Encrypt, _ := util.AesEcpt.AesBase64Encrypt(strContent)
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genFile(Encrypt, outPath)
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}
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func deFile(path string) {
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deFileToOutPath(path, path)
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}
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func deFileToOutPath(path string, outPath string) {
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strContent := readFileToStr(path)
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Decrypt, _ := util.AesEcpt.AesBase64Decrypt(strContent)
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genFile(Decrypt, outPath)
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}
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var mode = flag.String("mode", "de", "加密或者解密 en de")
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var path = flag.String("path", "", "文件路径")
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var outPath = flag.String("outPath", "", "指定输出文件路径")
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func main() {
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flag.Parse()
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//fmt.Println(*mode)
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//fmt.Println(*path)
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var out string = *path
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var modeName string
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if len(*outPath) != 0 {
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out = *outPath
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}
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if len(*path) == 0 {
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fmt.Printf("path 不能为空")
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} else if *mode != "en" && *mode != "de" {
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fmt.Printf("mode 只能是 en 或者 de")
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} else if *mode == "en" {
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modeName = "加密"
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enFileToOutPath(*path, out)
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} else if *mode == "de" {
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modeName = "解密"
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deFileToOutPath(*path, out)
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}
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fmt.Println(modeName + "成功,被" + modeName + "文件是在: " + *path + " " + modeName + "后文件生产在:" + out)
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//test()
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// testGenFile("C:\\METSIM\\example\\gascleaning_1.5_30.sfw",
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// "C:\\Users\\61778\\Desktop\\testGoED\\gascleaning_1.5_30.sfw.EN",
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// "C:\\Users\\61778\\Desktop\\testGoED\\gascleaning_1.5_30.sfw")
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// enFile("C:\\Users\\61778\\Desktop\\HelloWorld.class")
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// deFile("C:\\Users\\61778\\Desktop\\HelloWorld.class")
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// cmd := exec.Command("cmd", "/C", "C:\\METSIM\\METSIM.exe",
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// "MOD=C:\\Users\\61778\\Desktop\\testGoED\\gascleaning_1.5_30.sfw", "SIL=1")
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// var stdout, stderr bytes.Buffer
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// cmd.Stdout = &stdout
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// cmd.Stderr = &stderr
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// err := cmd.Run()
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// outStr, errStr := string(stdout.Bytes()), string(stderr.Bytes())
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// fmt.Printf("out:\n%s\nerr:\n%s\n", outStr, errStr)
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// if err != nil {
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// log.Fatalf("cmd.Run() failed with %s\n", err)
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// }
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// cmd := exec.Command("cmd", "/C", "C:\\METSIM\\METSIM.exe",
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// "MOD=C:\\Users\\61778\\Desktop\\testGoED\\gascleaning_1.5_30.sfw", "SIL=1")
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// cmd.Start()
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}
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66
util/EncodeAndDecode.go
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66
util/EncodeAndDecode.go
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package util
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import (
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"bytes"
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"crypto/aes"
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"crypto/cipher"
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"encoding/base64"
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"fmt"
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)
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type AesEncrypter struct {
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key []byte
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iv []byte
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block cipher.Block
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}
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var AesEcpt AesEncrypter
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func init() {
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AesEcpt.key = []byte("bGcGfWb3Kg2s4gcG")
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AesEcpt.iv = []byte("aebksHkG4jAEk2Ag")
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var err error
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AesEcpt.block, err = aes.NewCipher(AesEcpt.key)
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if err != nil {
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panic(err)
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}
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}
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// 加密
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func (a *AesEncrypter) AesBase64Encrypt(in string) (string, error) {
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origData := []byte(in)
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origData = PKCS5Padding(origData, a.block.BlockSize())
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crypted := make([]byte, len(origData))
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// 根据CryptBlocks方法的说明,如下方式初始化crypted也可以
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bm := cipher.NewCBCEncrypter(a.block, a.iv)
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bm.CryptBlocks(crypted, origData)
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var b = base64.StdEncoding.EncodeToString(crypted)
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return b, nil
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}
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// 解密
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func (a *AesEncrypter) AesBase64Decrypt(b string) (string, error) {
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crypted, err := base64.StdEncoding.DecodeString(b)
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if err != nil {
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fmt.Printf("err: %v\n", err)
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}
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origData := make([]byte, len(crypted))
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bm := cipher.NewCBCDecrypter(a.block, a.iv)
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bm.CryptBlocks(origData, crypted)
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origData = PKCS5UnPadding(origData)
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var out = string(origData)
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return out, nil
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}
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func PKCS5Padding(ciphertext []byte, blockSize int) []byte {
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padding := blockSize - len(ciphertext)%blockSize
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padtext := bytes.Repeat([]byte{byte(padding)}, padding)
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return append(ciphertext, padtext...)
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}
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func PKCS5UnPadding(origData []byte) []byte {
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length := len(origData)
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// 去掉最后一个字节 unpadding 次
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unpadding := int(origData[length-1])
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return origData[:(length - unpadding)]
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}
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