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[netbsd-mini2440.git] / crypto / dist / heimdal / lib / hcrypto / md5.c
blob493e3ea0075ed07025e6056d50176b9318418302
1 /*
2 * Copyright (c) 1995 - 2001 Kungliga Tekniska Högskolan
3 * (Royal Institute of Technology, Stockholm, Sweden).
4 * All rights reserved.
5 *
6 * Redistribution and use in source and binary forms, with or without
7 * modification, are permitted provided that the following conditions
8 * are met:
9 *
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
13 * 2. Redistributions in binary form must reproduce the above copyright
14 * notice, this list of conditions and the following disclaimer in the
15 * documentation and/or other materials provided with the distribution.
17 * 3. Neither the name of the Institute nor the names of its contributors
18 * may be used to endorse or promote products derived from this software
19 * without specific prior written permission.
21 * THIS SOFTWARE IS PROVIDED BY THE INSTITUTE AND CONTRIBUTORS ``AS IS'' AND
22 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
24 * ARE DISCLAIMED. IN NO EVENT SHALL THE INSTITUTE OR CONTRIBUTORS BE LIABLE
25 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
26 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
27 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
28 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
29 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
30 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
31 * SUCH DAMAGE.
34 #ifdef HAVE_CONFIG_H
35 #include "config.h"
37 __RCSID("$Heimdal: md5.c 17445 2006-05-05 10:37:46Z lha $"
38 "$NetBSD$");
39 #endif
41 #include "hash.h"
42 #include "md5.h"
44 #define A m->counter[0]
45 #define B m->counter[1]
46 #define C m->counter[2]
47 #define D m->counter[3]
48 #define X data
50 void
51 MD5_Init (struct md5 *m)
53 m->sz[0] = 0;
54 m->sz[1] = 0;
55 D = 0x10325476;
56 C = 0x98badcfe;
57 B = 0xefcdab89;
58 A = 0x67452301;
61 #define F(x,y,z) CRAYFIX((x & y) | (~x & z))
62 #define G(x,y,z) CRAYFIX((x & z) | (y & ~z))
63 #define H(x,y,z) (x ^ y ^ z)
64 #define I(x,y,z) CRAYFIX(y ^ (x | ~z))
66 #define DOIT(a,b,c,d,k,s,i,OP) \
67 a = b + cshift(a + OP(b,c,d) + X[k] + (i), s)
69 #define DO1(a,b,c,d,k,s,i) DOIT(a,b,c,d,k,s,i,F)
70 #define DO2(a,b,c,d,k,s,i) DOIT(a,b,c,d,k,s,i,G)
71 #define DO3(a,b,c,d,k,s,i) DOIT(a,b,c,d,k,s,i,H)
72 #define DO4(a,b,c,d,k,s,i) DOIT(a,b,c,d,k,s,i,I)
74 static inline void
75 calc (struct md5 *m, uint32_t *data)
77 uint32_t AA, BB, CC, DD;
79 AA = A;
80 BB = B;
81 CC = C;
82 DD = D;
84 /* Round 1 */
86 DO1(A,B,C,D,0,7,0xd76aa478);
87 DO1(D,A,B,C,1,12,0xe8c7b756);
88 DO1(C,D,A,B,2,17,0x242070db);
89 DO1(B,C,D,A,3,22,0xc1bdceee);
91 DO1(A,B,C,D,4,7,0xf57c0faf);
92 DO1(D,A,B,C,5,12,0x4787c62a);
93 DO1(C,D,A,B,6,17,0xa8304613);
94 DO1(B,C,D,A,7,22,0xfd469501);
96 DO1(A,B,C,D,8,7,0x698098d8);
97 DO1(D,A,B,C,9,12,0x8b44f7af);
98 DO1(C,D,A,B,10,17,0xffff5bb1);
99 DO1(B,C,D,A,11,22,0x895cd7be);
101 DO1(A,B,C,D,12,7,0x6b901122);
102 DO1(D,A,B,C,13,12,0xfd987193);
103 DO1(C,D,A,B,14,17,0xa679438e);
104 DO1(B,C,D,A,15,22,0x49b40821);
106 /* Round 2 */
108 DO2(A,B,C,D,1,5,0xf61e2562);
109 DO2(D,A,B,C,6,9,0xc040b340);
110 DO2(C,D,A,B,11,14,0x265e5a51);
111 DO2(B,C,D,A,0,20,0xe9b6c7aa);
113 DO2(A,B,C,D,5,5,0xd62f105d);
114 DO2(D,A,B,C,10,9,0x2441453);
115 DO2(C,D,A,B,15,14,0xd8a1e681);
116 DO2(B,C,D,A,4,20,0xe7d3fbc8);
118 DO2(A,B,C,D,9,5,0x21e1cde6);
119 DO2(D,A,B,C,14,9,0xc33707d6);
120 DO2(C,D,A,B,3,14,0xf4d50d87);
121 DO2(B,C,D,A,8,20,0x455a14ed);
123 DO2(A,B,C,D,13,5,0xa9e3e905);
124 DO2(D,A,B,C,2,9,0xfcefa3f8);
125 DO2(C,D,A,B,7,14,0x676f02d9);
126 DO2(B,C,D,A,12,20,0x8d2a4c8a);
128 /* Round 3 */
130 DO3(A,B,C,D,5,4,0xfffa3942);
131 DO3(D,A,B,C,8,11,0x8771f681);
132 DO3(C,D,A,B,11,16,0x6d9d6122);
133 DO3(B,C,D,A,14,23,0xfde5380c);
135 DO3(A,B,C,D,1,4,0xa4beea44);
136 DO3(D,A,B,C,4,11,0x4bdecfa9);
137 DO3(C,D,A,B,7,16,0xf6bb4b60);
138 DO3(B,C,D,A,10,23,0xbebfbc70);
140 DO3(A,B,C,D,13,4,0x289b7ec6);
141 DO3(D,A,B,C,0,11,0xeaa127fa);
142 DO3(C,D,A,B,3,16,0xd4ef3085);
143 DO3(B,C,D,A,6,23,0x4881d05);
145 DO3(A,B,C,D,9,4,0xd9d4d039);
146 DO3(D,A,B,C,12,11,0xe6db99e5);
147 DO3(C,D,A,B,15,16,0x1fa27cf8);
148 DO3(B,C,D,A,2,23,0xc4ac5665);
150 /* Round 4 */
152 DO4(A,B,C,D,0,6,0xf4292244);
153 DO4(D,A,B,C,7,10,0x432aff97);
154 DO4(C,D,A,B,14,15,0xab9423a7);
155 DO4(B,C,D,A,5,21,0xfc93a039);
157 DO4(A,B,C,D,12,6,0x655b59c3);
158 DO4(D,A,B,C,3,10,0x8f0ccc92);
159 DO4(C,D,A,B,10,15,0xffeff47d);
160 DO4(B,C,D,A,1,21,0x85845dd1);
162 DO4(A,B,C,D,8,6,0x6fa87e4f);
163 DO4(D,A,B,C,15,10,0xfe2ce6e0);
164 DO4(C,D,A,B,6,15,0xa3014314);
165 DO4(B,C,D,A,13,21,0x4e0811a1);
167 DO4(A,B,C,D,4,6,0xf7537e82);
168 DO4(D,A,B,C,11,10,0xbd3af235);
169 DO4(C,D,A,B,2,15,0x2ad7d2bb);
170 DO4(B,C,D,A,9,21,0xeb86d391);
172 A += AA;
173 B += BB;
174 C += CC;
175 D += DD;
179 * From `Performance analysis of MD5' by Joseph D. Touch <touch@isi.edu>
182 #if defined(WORDS_BIGENDIAN)
183 static inline uint32_t
184 swap_uint32_t (uint32_t t)
186 uint32_t temp1, temp2;
188 temp1 = cshift(t, 16);
189 temp2 = temp1 >> 8;
190 temp1 &= 0x00ff00ff;
191 temp2 &= 0x00ff00ff;
192 temp1 <<= 8;
193 return temp1 | temp2;
195 #endif
197 struct x32{
198 unsigned int a:32;
199 unsigned int b:32;
202 void
203 MD5_Update (struct md5 *m, const void *v, size_t len)
205 const unsigned char *p = v;
206 size_t old_sz = m->sz[0];
207 size_t offset;
209 m->sz[0] += len * 8;
210 if (m->sz[0] < old_sz)
211 ++m->sz[1];
212 offset = (old_sz / 8) % 64;
213 while(len > 0){
214 size_t l = min(len, 64 - offset);
215 memcpy(m->save + offset, p, l);
216 offset += l;
217 p += l;
218 len -= l;
219 if(offset == 64){
220 #if defined(WORDS_BIGENDIAN)
221 int i;
222 uint32_t current[16];
223 struct x32 *u = (struct x32*)m->save;
224 for(i = 0; i < 8; i++){
225 current[2*i+0] = swap_uint32_t(u[i].a);
226 current[2*i+1] = swap_uint32_t(u[i].b);
228 calc(m, current);
229 #else
230 calc(m, (uint32_t*)m->save);
231 #endif
232 offset = 0;
237 void
238 MD5_Final (void *res, struct md5 *m)
240 unsigned char zeros[72];
241 unsigned offset = (m->sz[0] / 8) % 64;
242 unsigned int dstart = (120 - offset - 1) % 64 + 1;
244 *zeros = 0x80;
245 memset (zeros + 1, 0, sizeof(zeros) - 1);
246 zeros[dstart+0] = (m->sz[0] >> 0) & 0xff;
247 zeros[dstart+1] = (m->sz[0] >> 8) & 0xff;
248 zeros[dstart+2] = (m->sz[0] >> 16) & 0xff;
249 zeros[dstart+3] = (m->sz[0] >> 24) & 0xff;
250 zeros[dstart+4] = (m->sz[1] >> 0) & 0xff;
251 zeros[dstart+5] = (m->sz[1] >> 8) & 0xff;
252 zeros[dstart+6] = (m->sz[1] >> 16) & 0xff;
253 zeros[dstart+7] = (m->sz[1] >> 24) & 0xff;
254 MD5_Update (m, zeros, dstart + 8);
256 int i;
257 unsigned char *r = (unsigned char *)res;
259 for (i = 0; i < 4; ++i) {
260 r[4*i] = m->counter[i] & 0xFF;
261 r[4*i+1] = (m->counter[i] >> 8) & 0xFF;
262 r[4*i+2] = (m->counter[i] >> 16) & 0xFF;
263 r[4*i+3] = (m->counter[i] >> 24) & 0xFF;
266 #if 0
268 int i;
269 uint32_t *r = (uint32_t *)res;
271 for (i = 0; i < 4; ++i)
272 r[i] = swap_uint32_t (m->counter[i]);
274 #endif