root/oscgroups/trunk/md5.cpp

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1 /* MD5C.C - RSA Data Security, Inc., MD5 message-digest algorithm
2  */
3
4 /* Copyright (C) 1991-2, RSA Data Security, Inc. Created 1991. All
5 rights reserved.
6
7 License to copy and use this software is granted provided that it
8 is identified as the "RSA Data Security, Inc. MD5 Message-Digest
9 Algorithm" in all material mentioning or referencing this software
10 or this function.
11
12 License is also granted to make and use derivative works provided
13 that such works are identified as "derived from the RSA Data
14 Security, Inc. MD5 Message-Digest Algorithm" in all material
15 mentioning or referencing the derived work.
16
17 RSA Data Security, Inc. makes no representations concerning either
18 the merchantability of this software or the suitability of this
19 software for any particular purpose. It is provided "as is"
20 without express or implied warranty of any kind.
21
22 These notices must be retained in any copies of any part of this
23 documentation and/or software.
24  */
25
26 #include "md5.h"
27
28 /* Constants for MD5Transform routine.
29  */
30
31 #define S11 7
32 #define S12 12
33 #define S13 17
34 #define S14 22
35 #define S21 5
36 #define S22 9
37 #define S23 14
38 #define S24 20
39 #define S31 4
40 #define S32 11
41 #define S33 16
42 #define S34 23
43 #define S41 6
44 #define S42 10
45 #define S43 15
46 #define S44 21
47
48 static void MD5Transform(UINT4 [4], unsigned char [64]);
49 static void Encode(unsigned char *, UINT4 *, unsigned int);
50 static void Decode(UINT4 *, unsigned char *, unsigned int);
51 static void MD5_memcpy(POINTER, POINTER, unsigned int);
52 static void MD5_memset(POINTER, int, unsigned int);
53
54 static unsigned char PADDING[64] = {
55   0x80, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
56   0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
57   0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0
58 };
59
60 /* F, G, H and I are basic MD5 functions.
61  */
62 #define F(x, y, z) (((x) & (y)) | ((~x) & (z)))
63 #define G(x, y, z) (((x) & (z)) | ((y) & (~z)))
64 #define H(x, y, z) ((x) ^ (y) ^ (z))
65 #define I(x, y, z) ((y) ^ ((x) | (~z)))
66
67 /* ROTATE_LEFT rotates x left n bits.
68  */
69 #define ROTATE_LEFT(x, n) (((x) << (n)) | ((x) >> (32-(n))))
70
71 /* FF, GG, HH, and II transformations for rounds 1, 2, 3, and 4.
72 Rotation is separate from addition to prevent recomputation.
73  */
74 #define FF(a, b, c, d, x, s, ac) { \
75  (a) += F ((b), (c), (d)) + (x) + (UINT4)(ac); \
76  (a) = ROTATE_LEFT ((a), (s)); \
77  (a) += (b); \
78   }
79 #define GG(a, b, c, d, x, s, ac) { \
80  (a) += G ((b), (c), (d)) + (x) + (UINT4)(ac); \
81  (a) = ROTATE_LEFT ((a), (s)); \
82  (a) += (b); \
83   }
84 #define HH(a, b, c, d, x, s, ac) { \
85  (a) += H ((b), (c), (d)) + (x) + (UINT4)(ac); \
86  (a) = ROTATE_LEFT ((a), (s)); \
87  (a) += (b); \
88   }
89 #define II(a, b, c, d, x, s, ac) { \
90  (a) += I ((b), (c), (d)) + (x) + (UINT4)(ac); \
91  (a) = ROTATE_LEFT ((a), (s)); \
92  (a) += (b); \
93   }
94
95 /* MD5 initialization. Begins an MD5 operation, writing a new context.
96  */
97 void MD5Init( MD5_CTX *context )
98 {
99   context->count[0] = context->count[1] = 0;
100   /* Load magic initialization constants.
101 */
102   context->state[0] = 0x67452301;
103   context->state[1] = 0xefcdab89;
104   context->state[2] = 0x98badcfe;
105   context->state[3] = 0x10325476;
106 }
107
108 /* MD5 block update operation. Continues an MD5 message-digest
109   operation, processing another message block, and updating the
110   context.
111  */
112 void MD5Update( MD5_CTX *context, unsigned char *input, unsigned int inputLen )
113 {
114   unsigned int i, index, partLen;
115
116   /* Compute number of bytes mod 64 */
117   index = (unsigned int)((context->count[0] >> 3) & 0x3F);
118
119   /* Update number of bits */
120   if ((context->count[0] += ((UINT4)inputLen << 3))
121
122    < ((UINT4)inputLen << 3))
123  context->count[1]++;
124   context->count[1] += ((UINT4)inputLen >> 29);
125
126   partLen = 64 - index;
127
128   /* Transform as many times as possible.
129 */
130   if (inputLen >= partLen) {
131  MD5_memcpy
132    ((POINTER)&context->buffer[index], (POINTER)input, partLen);
133  MD5Transform (context->state, context->buffer);
134
135  for (i = partLen; i + 63 < inputLen; i += 64)
136    MD5Transform (context->state, &input[i]);
137
138  index = 0;
139   }
140   else
141  i = 0;
142
143   /* Buffer remaining input */
144   MD5_memcpy
145  ((POINTER)&context->buffer[index], (POINTER)&input[i],
146   inputLen-i);
147 }
148
149 /* MD5 finalization. Ends an MD5 message-digest operation, writing the
150   the message digest and zeroizing the context.
151  */
152 void MD5Final( unsigned char digest[16], MD5_CTX *context )
153 {
154   unsigned char bits[8];
155   unsigned int index, padLen;
156
157   /* Save number of bits */
158   Encode (bits, context->count, 8);
159
160   /* Pad out to 56 mod 64.
161 */
162   index = (unsigned int)((context->count[0] >> 3) & 0x3f);
163   padLen = (index < 56) ? (56 - index) : (120 - index);
164   MD5Update (context, PADDING, padLen);
165
166   /* Append length (before padding) */
167   MD5Update (context, bits, 8);
168
169   /* Store state in digest */
170   Encode (digest, context->state, 16);
171
172   /* Zeroize sensitive information.
173 */
174   MD5_memset ((POINTER)context, 0, sizeof (*context));
175 }
176
177 /* MD5 basic transformation. Transforms state based on block.
178  */
179 static void MD5Transform( UINT4 state[4], unsigned char block[64] )
180 {
181   UINT4 a = state[0], b = state[1], c = state[2], d = state[3], x[16];
182
183   Decode (x, block, 64);
184
185   /* Round 1 */
186   FF (a, b, c, d, x[ 0], S11, 0xd76aa478); /* 1 */
187   FF (d, a, b, c, x[ 1], S12, 0xe8c7b756); /* 2 */
188   FF (c, d, a, b, x[ 2], S13, 0x242070db); /* 3 */
189   FF (b, c, d, a, x[ 3], S14, 0xc1bdceee); /* 4 */
190   FF (a, b, c, d, x[ 4], S11, 0xf57c0faf); /* 5 */
191   FF (d, a, b, c, x[ 5], S12, 0x4787c62a); /* 6 */
192   FF (c, d, a, b, x[ 6], S13, 0xa8304613); /* 7 */
193   FF (b, c, d, a, x[ 7], S14, 0xfd469501); /* 8 */
194   FF (a, b, c, d, x[ 8], S11, 0x698098d8); /* 9 */
195   FF (d, a, b, c, x[ 9], S12, 0x8b44f7af); /* 10 */
196   FF (c, d, a, b, x[10], S13, 0xffff5bb1); /* 11 */
197   FF (b, c, d, a, x[11], S14, 0x895cd7be); /* 12 */
198   FF (a, b, c, d, x[12], S11, 0x6b901122); /* 13 */
199   FF (d, a, b, c, x[13], S12, 0xfd987193); /* 14 */
200   FF (c, d, a, b, x[14], S13, 0xa679438e); /* 15 */
201   FF (b, c, d, a, x[15], S14, 0x49b40821); /* 16 */
202
203  /* Round 2 */
204   GG (a, b, c, d, x[ 1], S21, 0xf61e2562); /* 17 */
205   GG (d, a, b, c, x[ 6], S22, 0xc040b340); /* 18 */
206   GG (c, d, a, b, x[11], S23, 0x265e5a51); /* 19 */
207   GG (b, c, d, a, x[ 0], S24, 0xe9b6c7aa); /* 20 */
208   GG (a, b, c, d, x[ 5], S21, 0xd62f105d); /* 21 */
209   GG (d, a, b, c, x[10], S22,  0x2441453); /* 22 */
210   GG (c, d, a, b, x[15], S23, 0xd8a1e681); /* 23 */
211   GG (b, c, d, a, x[ 4], S24, 0xe7d3fbc8); /* 24 */
212   GG (a, b, c, d, x[ 9], S21, 0x21e1cde6); /* 25 */
213   GG (d, a, b, c, x[14], S22, 0xc33707d6); /* 26 */
214   GG (c, d, a, b, x[ 3], S23, 0xf4d50d87); /* 27 */
215
216   GG (b, c, d, a, x[ 8], S24, 0x455a14ed); /* 28 */
217   GG (a, b, c, d, x[13], S21, 0xa9e3e905); /* 29 */
218   GG (d, a, b, c, x[ 2], S22, 0xfcefa3f8); /* 30 */
219   GG (c, d, a, b, x[ 7], S23, 0x676f02d9); /* 31 */
220   GG (b, c, d, a, x[12], S24, 0x8d2a4c8a); /* 32 */
221
222   /* Round 3 */
223   HH (a, b, c, d, x[ 5], S31, 0xfffa3942); /* 33 */
224   HH (d, a, b, c, x[ 8], S32, 0x8771f681); /* 34 */
225   HH (c, d, a, b, x[11], S33, 0x6d9d6122); /* 35 */
226   HH (b, c, d, a, x[14], S34, 0xfde5380c); /* 36 */
227   HH (a, b, c, d, x[ 1], S31, 0xa4beea44); /* 37 */
228   HH (d, a, b, c, x[ 4], S32, 0x4bdecfa9); /* 38 */
229   HH (c, d, a, b, x[ 7], S33, 0xf6bb4b60); /* 39 */
230   HH (b, c, d, a, x[10], S34, 0xbebfbc70); /* 40 */
231   HH (a, b, c, d, x[13], S31, 0x289b7ec6); /* 41 */
232   HH (d, a, b, c, x[ 0], S32, 0xeaa127fa); /* 42 */
233   HH (c, d, a, b, x[ 3], S33, 0xd4ef3085); /* 43 */
234   HH (b, c, d, a, x[ 6], S34,  0x4881d05); /* 44 */
235   HH (a, b, c, d, x[ 9], S31, 0xd9d4d039); /* 45 */
236   HH (d, a, b, c, x[12], S32, 0xe6db99e5); /* 46 */
237   HH (c, d, a, b, x[15], S33, 0x1fa27cf8); /* 47 */
238   HH (b, c, d, a, x[ 2], S34, 0xc4ac5665); /* 48 */
239
240   /* Round 4 */
241   II (a, b, c, d, x[ 0], S41, 0xf4292244); /* 49 */
242   II (d, a, b, c, x[ 7], S42, 0x432aff97); /* 50 */
243   II (c, d, a, b, x[14], S43, 0xab9423a7); /* 51 */
244   II (b, c, d, a, x[ 5], S44, 0xfc93a039); /* 52 */
245   II (a, b, c, d, x[12], S41, 0x655b59c3); /* 53 */
246   II (d, a, b, c, x[ 3], S42, 0x8f0ccc92); /* 54 */
247   II (c, d, a, b, x[10], S43, 0xffeff47d); /* 55 */
248   II (b, c, d, a, x[ 1], S44, 0x85845dd1); /* 56 */
249   II (a, b, c, d, x[ 8], S41, 0x6fa87e4f); /* 57 */
250   II (d, a, b, c, x[15], S42, 0xfe2ce6e0); /* 58 */
251   II (c, d, a, b, x[ 6], S43, 0xa3014314); /* 59 */
252   II (b, c, d, a, x[13], S44, 0x4e0811a1); /* 60 */
253   II (a, b, c, d, x[ 4], S41, 0xf7537e82); /* 61 */
254   II (d, a, b, c, x[11], S42, 0xbd3af235); /* 62 */
255   II (c, d, a, b, x[ 2], S43, 0x2ad7d2bb); /* 63 */
256   II (b, c, d, a, x[ 9], S44, 0xeb86d391); /* 64 */
257
258   state[0] += a;
259   state[1] += b;
260   state[2] += c;
261   state[3] += d;
262
263   /* Zeroize sensitive information.
264
265 */
266   MD5_memset ((POINTER)x, 0, sizeof (x));
267 }
268
269 /* Encodes input (UINT4) into output (unsigned char). Assumes len is
270   a multiple of 4.
271  */
272 static void Encode( unsigned char *output, UINT4 *input, unsigned int len )
273 {
274   unsigned int i, j;
275
276   for (i = 0, j = 0; j < len; i++, j += 4) {
277  output[j] = (unsigned char)(input[i] & 0xff);
278  output[j+1] = (unsigned char)((input[i] >> 8) & 0xff);
279  output[j+2] = (unsigned char)((input[i] >> 16) & 0xff);
280  output[j+3] = (unsigned char)((input[i] >> 24) & 0xff);
281   }
282 }
283
284 /* Decodes input (unsigned char) into output (UINT4). Assumes len is
285   a multiple of 4.
286  */
287 static void Decode( UINT4 *output, unsigned char *input, unsigned int len )
288 {
289   unsigned int i, j;
290
291   for (i = 0, j = 0; j < len; i++, j += 4)
292  output[i] = ((UINT4)input[j]) | (((UINT4)input[j+1]) << 8) |
293    (((UINT4)input[j+2]) << 16) | (((UINT4)input[j+3]) << 24);
294 }
295
296 /* Note: Replace "for loop" with standard memcpy if possible.
297  */
298
299 static void MD5_memcpy( POINTER output, POINTER input, unsigned int len )
300 {
301   unsigned int i;
302
303   for (i = 0; i < len; i++)
304
305  output[i] = input[i];
306 }
307
308 /* Note: Replace "for loop" with standard memset if possible.
309  */
310 static void MD5_memset( POINTER output, int value, unsigned int len )
311 {
312   unsigned int i;
313
314   for (i = 0; i < len; i++)
315  ((char *)output)[i] = (char)value;
316 }
317
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