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ofdgo/ofdgo_sign_sm2.go
T

164 lines
4.5 KiB
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// Copyright 2025-2026 肖其顿 (XIAO QI DUN)
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package ofdgo
import (
"crypto/elliptic"
"encoding/asn1"
"encoding/binary"
"math/big"
)
const sm2DefaultUserID = "1234567812345678"
var sm2P256 = newSM2P256()
// sm2PublicKey SM2公钥
type sm2PublicKey struct {
X *big.Int
Y *big.Int
}
// newSM2P256 创建SM2椭圆曲线
// 返回: elliptic.Curve SM2椭圆曲线
func newSM2P256() elliptic.Curve {
c := &elliptic.CurveParams{Name: "SM2-P-256"}
c.P = sm2Big("FFFFFFFEFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF00000000FFFFFFFFFFFFFFFF")
c.N = sm2Big("FFFFFFFEFFFFFFFFFFFFFFFFFFFFFFFF7203DF6B21C6052B53BBF40939D54123")
c.B = sm2Big("28E9FA9E9D9F5E344D5A9E4BCF6509A7F39789F515AB8F92DDBCBD414D940E93")
c.Gx = sm2Big("32C4AE2C1F1981195F9904466A39C9948FE30BBFF2660BE1715A4589334C74C7")
c.Gy = sm2Big("BC3736A2F4F6779C59BDCEE36B692153D0A9877CC62A474002DF32E52139F0A0")
c.BitSize = 256
return c
}
// sm2Big 解析SM2大整数常量
// 入参: s 十六进制字符串
// 返回: *big.Int 大整数
func sm2Big(s string) *big.Int {
n, _ := new(big.Int).SetString(s, 16)
return n
}
// sm2VerifySignature 验证SM2签名值
// 入参: pub 公钥, userID 用户标识, msg 原文, sig 签名值
// 返回: bool 是否验证通过
func sm2VerifySignature(pub sm2PublicKey, userID, msg, sig []byte) bool {
r, s, ok := parseSM2Signature(sig)
if !ok {
return false
}
return sm2Verify(pub, userID, msg, r, s)
}
// parseSM2Signature 解析SM2签名值
// 入参: sig 签名值
// 返回: *big.Int R值, *big.Int S值, bool 是否解析成功
func parseSM2Signature(sig []byte) (*big.Int, *big.Int, bool) {
if len(sig) == 64 {
return new(big.Int).SetBytes(sig[:32]), new(big.Int).SetBytes(sig[32:]), true
}
var rs struct {
R *big.Int
S *big.Int
}
rest, err := asn1.Unmarshal(sig, &rs)
if err != nil || len(rest) != 0 || rs.R == nil || rs.S == nil {
return nil, nil, false
}
return rs.R, rs.S, true
}
// sm2Verify 验证SM2签名
// 入参: pub 公钥, userID 用户标识, msg 原文, r R值, s S值
// 返回: bool 是否验证通过
func sm2Verify(pub sm2PublicKey, userID, msg []byte, r, s *big.Int) bool {
n := sm2P256.Params().N
if r.Sign() <= 0 || s.Sign() <= 0 || r.Cmp(n) >= 0 || s.Cmp(n) >= 0 {
return false
}
if pub.X == nil || pub.Y == nil || !sm2P256.IsOnCurve(pub.X, pub.Y) {
return false
}
e := new(big.Int).SetBytes(sm2MessageDigest(pub, userID, msg))
t := new(big.Int).Add(r, s)
t.Mod(t, n)
if t.Sign() == 0 {
return false
}
x1, y1 := sm2P256.ScalarBaseMult(s.Bytes())
x2, y2 := sm2P256.ScalarMult(pub.X, pub.Y, t.Bytes())
x, _ := sm2P256.Add(x1, y1, x2, y2)
if x == nil {
return false
}
v := new(big.Int).Add(e, x)
v.Mod(v, n)
return v.Cmp(r) == 0
}
// sm2MessageDigest 计算SM2签名摘要
// 入参: pub 公钥, userID 用户标识, msg 原文
// 返回: []byte 摘要值
func sm2MessageDigest(pub sm2PublicKey, userID, msg []byte) []byte {
h := newSM3()
h.Write(sm2ZA(pub, userID))
h.Write(msg)
return h.Sum(nil)
}
// sm2ZA 计算SM2用户标识杂凑值
// 入参: pub 公钥, userID 用户标识
// 返回: []byte ZA值
func sm2ZA(pub sm2PublicKey, userID []byte) []byte {
if len(userID) == 0 {
userID = []byte(sm2DefaultUserID)
}
h := newSM3()
var entl [2]byte
binary.BigEndian.PutUint16(entl[:], uint16(len(userID)*8))
h.Write(entl[:])
h.Write(userID)
h.Write(sm2Fixed(sm2A()))
h.Write(sm2Fixed(sm2P256.Params().B))
h.Write(sm2Fixed(sm2P256.Params().Gx))
h.Write(sm2Fixed(sm2P256.Params().Gy))
h.Write(sm2Fixed(pub.X))
h.Write(sm2Fixed(pub.Y))
return h.Sum(nil)
}
// sm2A 获取SM2曲线A参数
// 返回: *big.Int 曲线A参数
func sm2A() *big.Int {
return new(big.Int).Sub(sm2P256.Params().P, big.NewInt(3))
}
// sm2Fixed 转换为SM2固定长度字节
// 入参: n 大整数
// 返回: []byte 固定长度字节
func sm2Fixed(n *big.Int) []byte {
out := make([]byte, 32)
if n == nil {
return out
}
b := n.Bytes()
if len(b) > len(out) {
b = b[len(b)-len(out):]
}
copy(out[len(out)-len(b):], b)
return out
}