添加文件: ymt_v3_generate/crypto.go

This commit is contained in:
renzhiyuan 2026-07-21 10:13:04 +08:00
parent 40bcb61c60
commit 3c626ba75f
1 changed files with 223 additions and 0 deletions

223
ymt_v3_generate/crypto.go Normal file
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package ymt_v3_generate
import (
"bytes"
"crypto/aes"
"crypto/cipher"
"crypto/rand"
"crypto/rsa"
"crypto/sha256"
"crypto/x509"
"encoding/base64"
"encoding/pem"
"errors"
"fmt"
"sort"
"strings"
)
// PKCS7Padding 填充
func pkcs7Padding(data []byte, blockSize int) []byte {
padding := blockSize - len(data)%blockSize
padtext := bytes.Repeat([]byte{byte(padding)}, padding)
return append(data, padtext...)
}
// pkcs7UnPadding 去除填充
func pkcs7UnPadding(data []byte) ([]byte, error) {
length := len(data)
if length == 0 {
return nil, errors.New("data is empty")
}
unpadding := int(data[length-1])
if unpadding > length || unpadding == 0 {
return nil, errors.New("invalid padding")
}
return data[:length-unpadding], nil
}
// aesECBEncrypt AES ECB 加密
func aesECBEncrypt(plaintext []byte, key []byte) ([]byte, error) {
block, err := aes.NewCipher(key)
if err != nil {
return nil, err
}
blockSize := block.BlockSize()
plaintext = pkcs7Padding(plaintext, blockSize)
ciphertext := make([]byte, len(plaintext))
// ECB 模式:逐块加密
for start := 0; start < len(plaintext); start += blockSize {
block.Encrypt(ciphertext[start:start+blockSize], plaintext[start:start+blockSize])
}
return ciphertext, nil
}
// aesECBDecrypt AES ECB 解密
func aesECBDecrypt(ciphertext []byte, key []byte) ([]byte, error) {
block, err := aes.NewCipher(key)
if err != nil {
return nil, err
}
blockSize := block.BlockSize()
if len(ciphertext)%blockSize != 0 {
return nil, errors.New("ciphertext is not a multiple of block size")
}
plaintext := make([]byte, len(ciphertext))
for start := 0; start < len(ciphertext); start += blockSize {
block.Decrypt(plaintext[start:start+blockSize], ciphertext[start:start+blockSize])
}
return pkcs7UnPadding(plaintext)
}
// EncryptPlaintext 加密明文AES ECB返回 base64 字符串
func EncryptPlaintext(plaintext string, key []byte) (string, error) {
ciphertext, err := aesECBEncrypt([]byte(plaintext), key)
if err != nil {
return "", err
}
return base64.StdEncoding.EncodeToString(ciphertext), nil
}
// DecryptCiphertext 解密密文base64 输入),返回明文字符串
func DecryptCiphertext(ciphertextBase64 string, key []byte) (string, error) {
ciphertext, err := base64.StdEncoding.DecodeString(ciphertextBase64)
if err != nil {
return "", err
}
plaintext, err := aesECBDecrypt(ciphertext, key)
if err != nil {
return "", err
}
return string(plaintext), nil
}
// Sign 生成签名appid + timestamp + ciphertext使用 RSA 私钥签名,返回 base64 签名
func Sign(appID, timestamp, ciphertext string, privateKey *rsa.PrivateKey) (string, error) {
data := appID + timestamp + ciphertext
hash := sha256.Sum256([]byte(data))
signature, err := rsa.SignPKCS1v15(rand.Reader, privateKey, crypto.SHA256, hash[:])
if err != nil {
return "", err
}
return base64.StdEncoding.EncodeToString(signature), nil
}
// VerifySign 验证签名
func VerifySign(appID, timestamp, ciphertext, signBase64 string, publicKey *rsa.PublicKey) error {
data := appID + timestamp + ciphertext
hash := sha256.Sum256([]byte(data))
signature, err := base64.StdEncoding.DecodeString(signBase64)
if err != nil {
return err
}
return rsa.VerifyPKCS1v15(publicKey, crypto.SHA256, hash[:], signature)
}
// ParsePrivateKey 解析 PEM 格式的 RSA 私钥
func ParsePrivateKey(pemStr string) (*rsa.PrivateKey, error) {
block, _ := pem.Decode([]byte(pemStr))
if block == nil {
return nil, errors.New("failed to parse PEM block containing private key")
}
// 尝试 PKCS1
key, err := x509.ParsePKCS1PrivateKey(block.Bytes)
if err == nil {
return key, nil
}
// 尝试 PKCS8
key8, err := x509.ParsePKCS8PrivateKey(block.Bytes)
if err == nil {
if rsaKey, ok := key8.(*rsa.PrivateKey); ok {
return rsaKey, nil
}
return nil, errors.New("parsed key is not RSA")
}
return nil, fmt.Errorf("failed to parse private key: %v", err)
}
// ParsePublicKey 解析 PEM 格式的 RSA 公钥
func ParsePublicKey(pemStr string) (*rsa.PublicKey, error) {
block, _ := pem.Decode([]byte(pemStr))
if block == nil {
return nil, errors.New("failed to parse PEM block containing public key")
}
// 尝试 PKIX
key, err := x509.ParsePKIXPublicKey(block.Bytes)
if err == nil {
if rsaKey, ok := key.(*rsa.PublicKey); ok {
return rsaKey, nil
}
return nil, errors.New("parsed key is not RSA")
}
// 尝试 PKCS1
rsaKey, err := x509.ParsePKCS1PublicKey(block.Bytes)
if err == nil {
return rsaKey, nil
}
return nil, fmt.Errorf("failed to parse public key: %v", err)
}
// RemoveZeroValuesAndSort 将结构体转为 map过滤零值按键排序返回 JSON 字符串
func RemoveZeroValuesAndSort(v interface{}) (string, error) {
// 使用反射获取字段
val := reflect.ValueOf(v)
if val.Kind() == reflect.Ptr {
val = val.Elem()
}
if val.Kind() != reflect.Struct {
return "", errors.New("input must be a struct")
}
typ := val.Type()
m := make(map[string]interface{})
for i := 0; i < val.NumField(); i++ {
field := typ.Field(i)
jsonTag := field.Tag.Get("json")
if jsonTag == "" || jsonTag == "-" {
continue
}
// 处理 omitempty
name := strings.Split(jsonTag, ",")[0]
fieldVal := val.Field(i)
// 检查零值
if fieldVal.IsZero() {
continue
}
m[name] = fieldVal.Interface()
}
// 按键排序
keys := make([]string, 0, len(m))
for k := range m {
keys = append(keys, k)
}
sort.Strings(keys)
// 构建 JSON
var buf bytes.Buffer
buf.WriteByte('{')
for i, k := range keys {
if i > 0 {
buf.WriteByte(',')
}
buf.WriteString(`"` + k + `":`)
// 简单序列化(仅支持基本类型)
v := m[k]
switch val := v.(type) {
case string:
buf.WriteString(`"` + val + `"`)
case int, int32, int64, uint, uint32, uint64:
fmt.Fprintf(&buf, "%d", val)
case float64:
fmt.Fprintf(&buf, "%v", val)
case bool:
fmt.Fprintf(&buf, "%t", val)
default:
// 使用 json.Marshal 处理复杂类型
b, err := json.Marshal(v)
if err != nil {
return "", err
}
buf.Write(b)
}
}
buf.WriteByte('}')
return buf.String(), nil
}