md5算法定义在RFC 1321中,由Ron Rivest(RSA公司)在1992年提出。然而很多学者已经找出了构造md5冲突的方法。这些人中包括中国山东大学的王教授和Hans Dobbertin。所以,单纯使用md5的信息认证模式变得不可靠了。但并不是说md5不能够使用。
md5算法的计算步骤:
md5参考代码如下:
说明:
define.h的内容如下:
//define variable types
typedef unsigned char UI8;
typedef char I8;
typedef unsigned short UI16;
typedef short I16;
typedef unsigned int UI32;
typedef int I32;
typedef unsigned __int64 UI64;
typedef __int64 I64;
md5.h的内容如下:
#ifndef Goodzzp_MD5_05_10_13_16
#define Goodzzp_MD5_05_10_13_16
//md5 algorithm ,md5 class
//program by Goodzzp
//2005.10.13
#include "define.h"
//F, G, H and I are basic MD5 functions.
#define md5_F(x, y, z) (((x) & (y)) | ((~x) & (z)))
#define md5_G(x, y, z) (((x) & (z)) | ((y) & (~z)))
#define md5_H(x, y, z) ((x) ^ (y) ^ (z))
#define md5_I(x, y, z) ((y) ^ ((x) | (~z)))
// ROTATE_LEFT rotates x left n bits.
// x<<<=n;
#define md5_ROTATE_LEFT(x, n) (((x) << (n)) | ((x) >> (32-(n))))
// FF, GG, HH, and II transformations for rounds 1, 2, 3, and 4.
//Rotation is separate from addition to prevent recomputation.
#define md5_FF(a, b, c, d, x, s, ac) { /
(a) += md5_F ((b), (c), (d)) + (x) + (ac); /
(a) = md5_ROTATE_LEFT ((a), (s)); /
(a) += (b); /
}
#define md5_GG(a, b, c, d, x, s, ac) { /
(a) += md5_G ((b), (c), (d)) + (x) + (ac); /
(a) = md5_ROTATE_LEFT ((a), (s)); /
(a) += (b); /
}
#define md5_HH(a, b, c, d, x, s, ac) { /
(a) += md5_H ((b), (c), (d)) + (x) + (ac); /
(a) = md5_ROTATE_LEFT ((a), (s)); /
(a) += (b); /
}
#define md5_II(a, b, c, d, x, s, ac) { /
(a) += md5_I ((b), (c), (d)) + (x) + (ac); /
(a) = md5_ROTATE_LEFT ((a), (s)); /
(a) += (b); /
}
// Constants for MD5Transform routine.
#define md5_S11 7
#define md5_S12 12
#define md5_S13 17
#define md5_S14 22
#define md5_S21 5
#define md5_S22 9
#define md5_S23 14
#define md5_S24 20
#define md5_S31 4
#define md5_S32 11
#define md5_S33 16
#define md5_S34 23
#define md5_S41 6
#define md5_S42 10
#define md5_S43 15
#define md5_S44 21
//md5散列类
class MD5
{
public:
//输出结果的长度(字节)
static UI32 OutDataLength()
{
return 4*4;
}
//MD5变换函数
//out:输出,长度为16,要求事先已经分配了内存
//in:输入
//length:输入值的长度
void Hash(UI8 *out,const UI8 *in,UI32 length)
{
UI32 i = length>>6,j=(length&0x3f),k;
//对数据64 64个字节的计算
for(k=0;k {
StepTransform((UI8 *)(in + k * 64),64,length);
}
//最后计算尾数
StepTransform((UI8 *)(in + 64 * i),j,length);
//拷贝输出
memcpy(out,m_state,4*4);
//恢复m_state值
MD5();
}
//初始化
//这里就是4个刚开始的值
MD5()
{
m_state[0] = 0x67452301L;
m_state[1] = 0xefcdab89L;
m_state[2] = 0x98badcfeL;
m_state[3] = 0x10325476L;
}
private:
//每步的变换函数
//输入:
// data: 要处理的数据块(不大于64字节)
// dataBlockLen: 数据块的长度
// dataTotalLen: 要处理的所有数据块的总长度
//输出结果保存在m_state里面
void StepTransform(UI8 *data,UI32 dataBlockLen, UI32 dataTotalLen)
{
UI8 buffer[64];
UI32 len=dataTotalLen*8;
memset(buffer,0,64);//清空数据为0
memcpy(buffer,data,dataBlockLen);//拷贝数据到缓冲
if(dataBlockLen <64) //需要增加数据
{
if(dataBlockLen<56)//当前数据是最后若干个,而且不需要增加一次变换
{
//添加1和0
buffer[dataBlockLen]=0x80;
//添加长度
buffer[56]=(UI8)(len&0xff);
len>>=8;
buffer[57]=(UI8)(len&0xff);
len>>=8;
buffer[58]=(UI8)(len&0xff);
len>>=8;
buffer[59]=(UI8)(len&0xff);
//变换
FirstTransform((UI32*)buffer);
CoreTransform();
}
else if(dataBlockLen>=56)
{
//添加1和0
buffer[dataBlockLen]=0x80;
//变换
FirstTransform((UI32*)buffer);
CoreTransform();
//添加长度
memset(buffer,0,64);
buffer[56]=(UI8)(len&0xff);
len>>=8;
buffer[57]=(UI8)(len&0xff);
len>>=8;
buffer[58]=(UI8)(len&0xff);
len>>=8;
buffer[59]=(UI8)(len&0xff);
//变换
FirstTransform((UI32*)buffer);
CoreTransform();
}
}
else if(dataBlockLen == 64)
{
//变换
FirstTransform((UI32*)buffer);
CoreTransform();
}
}
//把64字节的原始数据data进行初步转化到m_data中去
void FirstTransform(UI32 *data)
{
memcpy(m_data,data,64);
}
//核心变换
void CoreTransform()
{
UI32 a = m_state[0];
UI32 b = m_state[1];
UI32 c = m_state[2];
UI32 d = m_state[3];
/* Round 1 */
md5_FF (a, b, c, d, m_data[ 0], md5_S11, 0xd76aa478); /* 1 */
md5_FF (d, a, b, c, m_data[ 1], md5_S12, 0xe8c7b756); /* 2 */
md5_FF (c, d, a, b, m_data[ 2], md5_S13, 0x242070db); /* 3 */
md5_FF (b, c, d, a, m_data[ 3], md5_S14, 0xc1bdceee); /* 4 */
md5_FF (a, b, c, d, m_data[ 4], md5_S11, 0xf57c0faf); /* 5 */
md5_FF (d, a, b, c, m_data[ 5], md5_S12, 0x4787c62a); /* 6 */
md5_FF (c, d, a, b, m_data[ 6], md5_S13, 0xa8304613); /* 7 */
md5_FF (b, c, d, a, m_data[ 7], md5_S14, 0xfd469501); /* 8 */
md5_FF (a, b, c, d, m_data[ 8], md5_S11, 0x698098d8); /* 9 */
md5_FF (d, a, b, c, m_data[ 9], md5_S12, 0x8b44f7af); /* 10 */
md5_FF (c, d, a, b, m_data[10], md5_S13, 0xffff5bb1); /* 11 */
md5_FF (b, c, d, a, m_data[11], md5_S14, 0x895cd7be); /* 12 */
md5_FF (a, b, c, d, m_data[12], md5_S11, 0x6b901122); /* 13 */
md5_FF (d, a, b, c, m_data[13], md5_S12, 0xfd987193); /* 14 */
md5_FF (c, d, a, b, m_data[14], md5_S13, 0xa679438e); /* 15 */
md5_FF (b, c, d, a, m_data[15], md5_S14, 0x49b40821); /* 16 */
/* Round 2 */
md5_GG (a, b, c, d, m_data[ 1], md5_S21, 0xf61e2562); /* 17 */
md5_GG (d, a, b, c, m_data[ 6], md5_S22, 0xc040b340); /* 18 */
md5_GG (c, d, a, b, m_data[11], md5_S23, 0x265e5a51); /* 19 */
md5_GG (b, c, d, a, m_data[ 0], md5_S24, 0xe9b6c7aa); /* 20 */
md5_GG (a, b, c, d, m_data[ 5], md5_S21, 0xd62f105d); /* 21 */
md5_GG (d, a, b, c, m_data[10], md5_S22, 0x2441453); /* 22 */
md5_GG (c, d, a, b, m_data[15], md5_S23, 0xd8a1e681); /* 23 */
md5_GG (b, c, d, a, m_data[ 4], md5_S24, 0xe7d3fbc8); /* 24 */
md5_GG (a, b, c, d, m_data[ 9], md5_S21, 0x21e1cde6); /* 25 */
md5_GG (d, a, b, c, m_data[14], md5_S22, 0xc33707d6); /* 26 */
md5_GG (c, d, a, b, m_data[ 3], md5_S23, 0xf4d50d87); /* 27 */
md5_GG (b, c, d, a, m_data[ 8], md5_S24, 0x455a14ed); /* 28 */
md5_GG (a, b, c, d, m_data[13], md5_S21, 0xa9e3e905); /* 29 */
md5_GG (d, a, b, c, m_data[ 2], md5_S22, 0xfcefa3f8); /* 30 */
md5_GG (c, d, a, b, m_data[ 7], md5_S23, 0x676f02d9); /* 31 */
md5_GG (b, c, d, a, m_data[12], md5_S24, 0x8d2a4c8a); /* 32 */
/* Round 3 */
md5_HH (a, b, c, d, m_data[ 5], md5_S31, 0xfffa3942); /* 33 */
md5_HH (d, a, b, c, m_data[ 8], md5_S32, 0x8771f681); /* 34 */
md5_HH (c, d, a, b, m_data[11], md5_S33, 0x6d9d6122); /* 35 */
md5_HH (b, c, d, a, m_data[14], md5_S34, 0xfde5380c); /* 36 */
md5_HH (a, b, c, d, m_data[ 1], md5_S31, 0xa4beea44); /* 37 */
md5_HH (d, a, b, c, m_data[ 4], md5_S32, 0x4bdecfa9); /* 38 */
md5_HH (c, d, a, b, m_data[ 7], md5_S33, 0xf6bb4b60); /* 39 */
md5_HH (b, c, d, a, m_data[10], md5_S34, 0xbebfbc70); /* 40 */
md5_HH (a, b, c, d, m_data[13], md5_S31, 0x289b7ec6); /* 41 */
md5_HH (d, a, b, c, m_data[ 0], md5_S32, 0xeaa127fa); /* 42 */
md5_HH (c, d, a, b, m_data[ 3], md5_S33, 0xd4ef3085); /* 43 */
md5_HH (b, c, d, a, m_data[ 6], md5_S34, 0x4881d05); /* 44 */
md5_HH (a, b, c, d, m_data[ 9], md5_S31, 0xd9d4d039); /* 45 */
md5_HH (d, a, b, c, m_data[12], md5_S32, 0xe6db99e5); /* 46 */
md5_HH (c, d, a, b, m_data[15], md5_S33, 0x1fa27cf8); /* 47 */
md5_HH (b, c, d, a, m_data[ 2], md5_S34, 0xc4ac5665); /* 48 */
/* Round 4 */
md5_II (a, b, c, d, m_data[ 0], md5_S41, 0xf4292244); /* 49 */
md5_II (d, a, b, c, m_data[ 7], md5_S42, 0x432aff97); /* 50 */
md5_II (c, d, a, b, m_data[14], md5_S43, 0xab9423a7); /* 51 */
md5_II (b, c, d, a, m_data[ 5], md5_S44, 0xfc93a039); /* 52 */
md5_II (a, b, c, d, m_data[12], md5_S41, 0x655b59c3); /* 53 */
md5_II (d, a, b, c, m_data[ 3], md5_S42, 0x8f0ccc92); /* 54 */
md5_II (c, d, a, b, m_data[10], md5_S43, 0xffeff47d); /* 55 */
md5_II (b, c, d, a, m_data[ 1], md5_S44, 0x85845dd1); /* 56 */
md5_II (a, b, c, d, m_data[ 8], md5_S41, 0x6fa87e4f); /* 57 */
md5_II (d, a, b, c, m_data[15], md5_S42, 0xfe2ce6e0); /* 58 */
md5_II (c, d, a, b, m_data[ 6], md5_S43, 0xa3014314); /* 59 */
md5_II (b, c, d, a, m_data[13], md5_S44, 0x4e0811a1); /* 60 */
md5_II (a, b, c, d, m_data[ 4], md5_S41, 0xf7537e82); /* 61 */
md5_II (d, a, b, c, m_data[11], md5_S42, 0xbd3af235); /* 62 */
md5_II (c, d, a, b, m_data[ 2], md5_S43, 0x2ad7d2bb); /* 63 */
md5_II (b, c, d, a, m_data[ 9], md5_S44, 0xeb86d391); /* 64 */
//拷贝回去
m_state[0] += a;
m_state[1] += b;
m_state[2] += c;
m_state[3] += d;
}
private:
UI32 m_state[4]; //保存有md5输出值
UI32 m_data[16]; //保存有每步变换时对输入的初始化转化值
};
#endif
说明:这个函数只有一个类和一个输出函数,直接使用以下方式就能进行计算:
MD5 md5;
UI8 dataOut[16];
char *s="abc";
md5.Hash(dataOut,(UI8*)s,strlen(s));
代码经过测试。作者欢迎您提出自己的意见和建议,但作者不对本代码的安全和正确性付任何责任。
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