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00054 #include "md5.h"
00055 #include <string.h>
00056
00057 #ifdef __cplusplus
00058 namespace MD5 {
00059
00060 namespace internal {
00061 #endif
00062
00063 #undef BYTE_ORDER
00064 #ifdef ARCH_IS_BIG_ENDIAN
00065 # define BYTE_ORDER (ARCH_IS_BIG_ENDIAN ? 1 : -1)
00066 #else
00067 # define BYTE_ORDER 0
00068 #endif
00069
00070 #define T_MASK ((md5_word_t)~0)
00071 #define T1 (T_MASK ^ 0x28955b87)
00072 #define T2 (T_MASK ^ 0x173848a9)
00073 #define T3 0x242070db
00074 #define T4 (T_MASK ^ 0x3e423111)
00075 #define T5 (T_MASK ^ 0x0a83f050)
00076 #define T6 0x4787c62a
00077 #define T7 (T_MASK ^ 0x57cfb9ec)
00078 #define T8 (T_MASK ^ 0x02b96afe)
00079 #define T9 0x698098d8
00080 #define T10 (T_MASK ^ 0x74bb0850)
00081 #define T11 (T_MASK ^ 0x0000a44e)
00082 #define T12 (T_MASK ^ 0x76a32841)
00083 #define T13 0x6b901122
00084 #define T14 (T_MASK ^ 0x02678e6c)
00085 #define T15 (T_MASK ^ 0x5986bc71)
00086 #define T16 0x49b40821
00087 #define T17 (T_MASK ^ 0x09e1da9d)
00088 #define T18 (T_MASK ^ 0x3fbf4cbf)
00089 #define T19 0x265e5a51
00090 #define T20 (T_MASK ^ 0x16493855)
00091 #define T21 (T_MASK ^ 0x29d0efa2)
00092 #define T22 0x02441453
00093 #define T23 (T_MASK ^ 0x275e197e)
00094 #define T24 (T_MASK ^ 0x182c0437)
00095 #define T25 0x21e1cde6
00096 #define T26 (T_MASK ^ 0x3cc8f829)
00097 #define T27 (T_MASK ^ 0x0b2af278)
00098 #define T28 0x455a14ed
00099 #define T29 (T_MASK ^ 0x561c16fa)
00100 #define T30 (T_MASK ^ 0x03105c07)
00101 #define T31 0x676f02d9
00102 #define T32 (T_MASK ^ 0x72d5b375)
00103 #define T33 (T_MASK ^ 0x0005c6bd)
00104 #define T34 (T_MASK ^ 0x788e097e)
00105 #define T35 0x6d9d6122
00106 #define T36 (T_MASK ^ 0x021ac7f3)
00107 #define T37 (T_MASK ^ 0x5b4115bb)
00108 #define T38 0x4bdecfa9
00109 #define T39 (T_MASK ^ 0x0944b49f)
00110 #define T40 (T_MASK ^ 0x4140438f)
00111 #define T41 0x289b7ec6
00112 #define T42 (T_MASK ^ 0x155ed805)
00113 #define T43 (T_MASK ^ 0x2b10cf7a)
00114 #define T44 0x04881d05
00115 #define T45 (T_MASK ^ 0x262b2fc6)
00116 #define T46 (T_MASK ^ 0x1924661a)
00117 #define T47 0x1fa27cf8
00118 #define T48 (T_MASK ^ 0x3b53a99a)
00119 #define T49 (T_MASK ^ 0x0bd6ddbb)
00120 #define T50 0x432aff97
00121 #define T51 (T_MASK ^ 0x546bdc58)
00122 #define T52 (T_MASK ^ 0x036c5fc6)
00123 #define T53 0x655b59c3
00124 #define T54 (T_MASK ^ 0x70f3336d)
00125 #define T55 (T_MASK ^ 0x00100b82)
00126 #define T56 (T_MASK ^ 0x7a7ba22e)
00127 #define T57 0x6fa87e4f
00128 #define T58 (T_MASK ^ 0x01d3191f)
00129 #define T59 (T_MASK ^ 0x5cfebceb)
00130 #define T60 0x4e0811a1
00131 #define T61 (T_MASK ^ 0x08ac817d)
00132 #define T62 (T_MASK ^ 0x42c50dca)
00133 #define T63 0x2ad7d2bb
00134 #define T64 (T_MASK ^ 0x14792c6e)
00135
00136
00137 static void
00138 md5_process(md5_state_t *pms, const md5_byte_t *data )
00139 {
00140 md5_word_t
00141 a = pms->abcd[0], b = pms->abcd[1],
00142 c = pms->abcd[2], d = pms->abcd[3];
00143 md5_word_t t;
00144 #if BYTE_ORDER > 0
00145
00146 md5_word_t X[16];
00147 #else
00148
00149 md5_word_t xbuf[16];
00150 const md5_word_t *X;
00151 #endif
00152
00153 {
00154 #if BYTE_ORDER == 0
00155
00156
00157
00158
00159
00160 static const int w = 1;
00161
00162 if (*((const md5_byte_t *)&w))
00163 #endif
00164 #if BYTE_ORDER <= 0
00165 {
00166
00167
00168
00169
00170 if (!((data - (const md5_byte_t *)0) & 3)) {
00171
00172 X = (const md5_word_t *)data;
00173 } else {
00174
00175 memcpy(xbuf, data, 64);
00176 X = xbuf;
00177 }
00178 }
00179 #endif
00180 #if BYTE_ORDER == 0
00181 else
00182 #endif
00183 #if BYTE_ORDER >= 0
00184 {
00185
00186
00187
00188
00189 const md5_byte_t *xp = data;
00190 int i;
00191
00192 # if BYTE_ORDER == 0
00193 X = xbuf;
00194 # else
00195 # define xbuf X
00196 # endif
00197 for (i = 0; i < 16; ++i, xp += 4)
00198 xbuf[i] = xp[0] + (xp[1] << 8) + (xp[2] << 16) + (xp[3] << 24);
00199 }
00200 #endif
00201 }
00202
00203 #define ROTATE_LEFT(x, n) (((x) << (n)) | ((x) >> (32 - (n))))
00204
00205
00206
00207
00208 #define F(x, y, z) (((x) & (y)) | (~(x) & (z)))
00209 #define SET(a, b, c, d, k, s, Ti)\
00210 t = a + F(b,c,d) + X[k] + Ti;\
00211 a = ROTATE_LEFT(t, s) + b
00212
00213 SET(a, b, c, d, 0, 7, T1);
00214 SET(d, a, b, c, 1, 12, T2);
00215 SET(c, d, a, b, 2, 17, T3);
00216 SET(b, c, d, a, 3, 22, T4);
00217 SET(a, b, c, d, 4, 7, T5);
00218 SET(d, a, b, c, 5, 12, T6);
00219 SET(c, d, a, b, 6, 17, T7);
00220 SET(b, c, d, a, 7, 22, T8);
00221 SET(a, b, c, d, 8, 7, T9);
00222 SET(d, a, b, c, 9, 12, T10);
00223 SET(c, d, a, b, 10, 17, T11);
00224 SET(b, c, d, a, 11, 22, T12);
00225 SET(a, b, c, d, 12, 7, T13);
00226 SET(d, a, b, c, 13, 12, T14);
00227 SET(c, d, a, b, 14, 17, T15);
00228 SET(b, c, d, a, 15, 22, T16);
00229 #undef SET
00230
00231
00232
00233
00234 #define G(x, y, z) (((x) & (z)) | ((y) & ~(z)))
00235 #define SET(a, b, c, d, k, s, Ti)\
00236 t = a + G(b,c,d) + X[k] + Ti;\
00237 a = ROTATE_LEFT(t, s) + b
00238
00239 SET(a, b, c, d, 1, 5, T17);
00240 SET(d, a, b, c, 6, 9, T18);
00241 SET(c, d, a, b, 11, 14, T19);
00242 SET(b, c, d, a, 0, 20, T20);
00243 SET(a, b, c, d, 5, 5, T21);
00244 SET(d, a, b, c, 10, 9, T22);
00245 SET(c, d, a, b, 15, 14, T23);
00246 SET(b, c, d, a, 4, 20, T24);
00247 SET(a, b, c, d, 9, 5, T25);
00248 SET(d, a, b, c, 14, 9, T26);
00249 SET(c, d, a, b, 3, 14, T27);
00250 SET(b, c, d, a, 8, 20, T28);
00251 SET(a, b, c, d, 13, 5, T29);
00252 SET(d, a, b, c, 2, 9, T30);
00253 SET(c, d, a, b, 7, 14, T31);
00254 SET(b, c, d, a, 12, 20, T32);
00255 #undef SET
00256
00257
00258
00259
00260 #define H(x, y, z) ((x) ^ (y) ^ (z))
00261 #define SET(a, b, c, d, k, s, Ti)\
00262 t = a + H(b,c,d) + X[k] + Ti;\
00263 a = ROTATE_LEFT(t, s) + b
00264
00265 SET(a, b, c, d, 5, 4, T33);
00266 SET(d, a, b, c, 8, 11, T34);
00267 SET(c, d, a, b, 11, 16, T35);
00268 SET(b, c, d, a, 14, 23, T36);
00269 SET(a, b, c, d, 1, 4, T37);
00270 SET(d, a, b, c, 4, 11, T38);
00271 SET(c, d, a, b, 7, 16, T39);
00272 SET(b, c, d, a, 10, 23, T40);
00273 SET(a, b, c, d, 13, 4, T41);
00274 SET(d, a, b, c, 0, 11, T42);
00275 SET(c, d, a, b, 3, 16, T43);
00276 SET(b, c, d, a, 6, 23, T44);
00277 SET(a, b, c, d, 9, 4, T45);
00278 SET(d, a, b, c, 12, 11, T46);
00279 SET(c, d, a, b, 15, 16, T47);
00280 SET(b, c, d, a, 2, 23, T48);
00281 #undef SET
00282
00283
00284
00285
00286 #define I(x, y, z) ((y) ^ ((x) | ~(z)))
00287 #define SET(a, b, c, d, k, s, Ti)\
00288 t = a + I(b,c,d) + X[k] + Ti;\
00289 a = ROTATE_LEFT(t, s) + b
00290
00291 SET(a, b, c, d, 0, 6, T49);
00292 SET(d, a, b, c, 7, 10, T50);
00293 SET(c, d, a, b, 14, 15, T51);
00294 SET(b, c, d, a, 5, 21, T52);
00295 SET(a, b, c, d, 12, 6, T53);
00296 SET(d, a, b, c, 3, 10, T54);
00297 SET(c, d, a, b, 10, 15, T55);
00298 SET(b, c, d, a, 1, 21, T56);
00299 SET(a, b, c, d, 8, 6, T57);
00300 SET(d, a, b, c, 15, 10, T58);
00301 SET(c, d, a, b, 6, 15, T59);
00302 SET(b, c, d, a, 13, 21, T60);
00303 SET(a, b, c, d, 4, 6, T61);
00304 SET(d, a, b, c, 11, 10, T62);
00305 SET(c, d, a, b, 2, 15, T63);
00306 SET(b, c, d, a, 9, 21, T64);
00307 #undef SET
00308
00309
00310
00311
00312 pms->abcd[0] += a;
00313 pms->abcd[1] += b;
00314 pms->abcd[2] += c;
00315 pms->abcd[3] += d;
00316 }
00317
00318 void
00319 md5_init(md5_state_t *pms)
00320 {
00321 pms->count[0] = pms->count[1] = 0;
00322 pms->abcd[0] = 0x67452301;
00323 pms->abcd[1] = T_MASK ^ 0x10325476;
00324 pms->abcd[2] = T_MASK ^ 0x67452301;
00325 pms->abcd[3] = 0x10325476;
00326 }
00327
00328 void
00329 md5_append(md5_state_t *pms, const md5_byte_t *data, int nbytes)
00330 {
00331 const md5_byte_t *p = data;
00332 int left = nbytes;
00333 int offset = (pms->count[0] >> 3) & 63;
00334 md5_word_t nbits = (md5_word_t)(nbytes << 3);
00335
00336 if (nbytes <= 0)
00337 return;
00338
00339
00340 pms->count[1] += nbytes >> 29;
00341 pms->count[0] += nbits;
00342 if (pms->count[0] < nbits)
00343 pms->count[1]++;
00344
00345
00346 if (offset) {
00347 int copy = (offset + nbytes > 64 ? 64 - offset : nbytes);
00348
00349 memcpy(pms->buf + offset, p, copy);
00350 if (offset + copy < 64)
00351 return;
00352 p += copy;
00353 left -= copy;
00354 md5_process(pms, pms->buf);
00355 }
00356
00357
00358 for (; left >= 64; p += 64, left -= 64)
00359 md5_process(pms, p);
00360
00361
00362 if (left)
00363 memcpy(pms->buf, p, left);
00364 }
00365
00366 void
00367 md5_finish(md5_state_t *pms, md5_byte_t digest[16])
00368 {
00369 static const md5_byte_t pad[64] = {
00370 0x80, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
00371 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
00372 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
00373 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0
00374 };
00375 md5_byte_t data[8];
00376 int i;
00377
00378
00379 for (i = 0; i < 8; ++i)
00380 data[i] = (md5_byte_t)(pms->count[i >> 2] >> ((i & 3) << 3));
00381
00382 md5_append(pms, pad, ((55 - (pms->count[0] >> 3)) & 63) + 1);
00383
00384 md5_append(pms, data, 8);
00385 for (i = 0; i < 16; ++i)
00386 digest[i] = (md5_byte_t)(pms->abcd[i >> 2] >> ((i & 3) << 3));
00387 }
00388
00389 #ifdef __cplusplus
00390 }
00391
00392 std::string hash(const std::string& str) {
00393 internal::md5_state_t state;
00394 internal::md5_byte_t digest[16];
00395 char hex_output[16*2 + 1];
00396
00397 internal::md5_init(&state);
00398 internal::md5_append(&state, reinterpret_cast<const internal::md5_byte_t *>(str.c_str()), str.size());
00399 internal::md5_finish(&state, digest);
00400
00401 sprintf(hex_output, "%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x%02x",
00402 digest[0], digest[1], digest[2], digest[3], digest[4], digest[5],
00403 digest[6], digest[7], digest[8], digest[9], digest[10], digest[11],
00404 digest[12], digest[13], digest[14], digest[15]);
00405
00406 return hex_output;
00407 }
00408 }
00409 #endif