60#define ARCH_IS_BIG_ENDIAN ( SDL_BYTEORDER == SDL_BIG_ENDIAN )
63#ifdef ARCH_IS_BIG_ENDIAN
64#define BYTE_ORDER ( ARCH_IS_BIG_ENDIAN ? 1 : -1 )
69#define T_MASK ( (md5_word_t)~0 )
70#define T1 ( T_MASK ^ 0x28955b87 )
71#define T2 ( T_MASK ^ 0x173848a9 )
73#define T4 ( T_MASK ^ 0x3e423111 )
74#define T5 ( T_MASK ^ 0x0a83f050 )
76#define T7 ( T_MASK ^ 0x57cfb9ec )
77#define T8 ( T_MASK ^ 0x02b96afe )
79#define T10 ( T_MASK ^ 0x74bb0850 )
80#define T11 ( T_MASK ^ 0x0000a44e )
81#define T12 ( T_MASK ^ 0x76a32841 )
83#define T14 ( T_MASK ^ 0x02678e6c )
84#define T15 ( T_MASK ^ 0x5986bc71 )
86#define T17 ( T_MASK ^ 0x09e1da9d )
87#define T18 ( T_MASK ^ 0x3fbf4cbf )
89#define T20 ( T_MASK ^ 0x16493855 )
90#define T21 ( T_MASK ^ 0x29d0efa2 )
92#define T23 ( T_MASK ^ 0x275e197e )
93#define T24 ( T_MASK ^ 0x182c0437 )
95#define T26 ( T_MASK ^ 0x3cc8f829 )
96#define T27 ( T_MASK ^ 0x0b2af278 )
98#define T29 ( T_MASK ^ 0x561c16fa )
99#define T30 ( T_MASK ^ 0x03105c07 )
100#define T31 0x676f02d9
101#define T32 ( T_MASK ^ 0x72d5b375 )
102#define T33 ( T_MASK ^ 0x0005c6bd )
103#define T34 ( T_MASK ^ 0x788e097e )
104#define T35 0x6d9d6122
105#define T36 ( T_MASK ^ 0x021ac7f3 )
106#define T37 ( T_MASK ^ 0x5b4115bb )
107#define T38 0x4bdecfa9
108#define T39 ( T_MASK ^ 0x0944b49f )
109#define T40 ( T_MASK ^ 0x4140438f )
110#define T41 0x289b7ec6
111#define T42 ( T_MASK ^ 0x155ed805 )
112#define T43 ( T_MASK ^ 0x2b10cf7a )
113#define T44 0x04881d05
114#define T45 ( T_MASK ^ 0x262b2fc6 )
115#define T46 ( T_MASK ^ 0x1924661a )
116#define T47 0x1fa27cf8
117#define T48 ( T_MASK ^ 0x3b53a99a )
118#define T49 ( T_MASK ^ 0x0bd6ddbb )
119#define T50 0x432aff97
120#define T51 ( T_MASK ^ 0x546bdc58 )
121#define T52 ( T_MASK ^ 0x036c5fc6 )
122#define T53 0x655b59c3
123#define T54 ( T_MASK ^ 0x70f3336d )
124#define T55 ( T_MASK ^ 0x00100b82 )
125#define T56 ( T_MASK ^ 0x7a7ba22e )
126#define T57 0x6fa87e4f
127#define T58 ( T_MASK ^ 0x01d3191f )
128#define T59 ( T_MASK ^ 0x5cfebceb )
129#define T60 0x4e0811a1
130#define T61 ( T_MASK ^ 0x08ac817d )
131#define T62 ( T_MASK ^ 0x42c50dca )
132#define T63 0x2ad7d2bb
133#define T64 ( T_MASK ^ 0x14792c6e )
135static void md5_process(
md5_state_t *pms,
const md5_byte_t *data )
137 md5_word_t a = pms->
abcd[0], b = pms->
abcd[1],
c = pms->
abcd[2],
156 static const int w = 1;
158 if ( *( (
const md5_byte_t *)&w ) )
166 if ( !( ( (uintptr_t)data ) & 3 ) ) {
168 memcpy( &X, &data,
sizeof( md5_word_t * ) );
171 memcpy( xbuf, data, 64 );
185 const md5_byte_t *xp = data;
193 for ( i = 0; i < 16; ++i, xp += 4 )
195 xp[0] + ( xp[1] << 8 ) + ( xp[2] << 16 ) + ( xp[3] << 24 );
200#define ROTATE_LEFT( x, n ) ( ( ( x ) << ( n ) ) | ( ( x ) >> ( 32 - ( n ) ) ) )
205#define F( x, y, z ) ( ( ( x ) & ( y ) ) | ( ~( x ) & ( z ) ) )
206#define SET( a, b, c, d, k, s, Ti ) \
207 t = a + F( b, c, d ) + X[k] + Ti; \
208 a = ROTATE_LEFT( t, s ) + b
210 SET( a, b,
c,
d, 0, 7, T1 );
211 SET(
d, a, b,
c, 1, 12, T2 );
212 SET(
c,
d, a, b, 2, 17, T3 );
213 SET( b,
c,
d, a, 3, 22, T4 );
214 SET( a, b,
c,
d, 4, 7, T5 );
215 SET(
d, a, b,
c, 5, 12, T6 );
216 SET(
c,
d, a, b, 6, 17, T7 );
217 SET( b,
c,
d, a, 7, 22, T8 );
218 SET( a, b,
c,
d, 8, 7, T9 );
219 SET(
d, a, b,
c, 9, 12, T10 );
220 SET(
c,
d, a, b, 10, 17, T11 );
221 SET( b,
c,
d, a, 11, 22, T12 );
222 SET( a, b,
c,
d, 12, 7, T13 );
223 SET(
d, a, b,
c, 13, 12, T14 );
224 SET(
c,
d, a, b, 14, 17, T15 );
230#define G( x, y, z ) ( ( ( x ) & ( z ) ) | ( ( y ) & ~( z ) ) )
231#define SET( a, b, c, d, k, s, Ti ) \
232 t = a + G( b, c, d ) + X[k] + Ti; \
233 a = ROTATE_LEFT( t, s ) + b
235 SET( a, b,
c,
d, 1, 5, T17 );
236 SET(
d, a, b,
c, 6, 9, T18 );
237 SET(
c,
d, a, b, 11, 14, T19 );
238 SET( b,
c,
d, a, 0, 20, T20 );
239 SET( a, b,
c,
d, 5, 5, T21 );
240 SET(
d, a, b,
c, 10, 9, T22 );
241 SET(
c,
d, a, b, 15, 14, T23 );
242 SET( b,
c,
d, a, 4, 20, T24 );
243 SET( a, b,
c,
d, 9, 5, T25 );
244 SET(
d, a, b,
c, 14, 9, T26 );
245 SET(
c,
d, a, b, 3, 14, T27 );
246 SET( b,
c,
d, a, 8, 20, T28 );
247 SET( a, b,
c,
d, 13, 5, T29 );
248 SET(
d, a, b,
c, 2, 9, T30 );
249 SET(
c,
d, a, b, 7, 14, T31 );
250 SET( b,
c,
d, a, 12, 20, T32 );
256#define H( x, y, z ) ( ( x ) ^ ( y ) ^ ( z ) )
257#define SET( a, b, c, d, k, s, Ti ) \
258 t = a + H( b, c, d ) + X[k] + Ti; \
259 a = ROTATE_LEFT( t, s ) + b
261 SET( a, b,
c,
d, 5, 4, T33 );
262 SET(
d, a, b,
c, 8, 11, T34 );
263 SET(
c,
d, a, b, 11, 16, T35 );
264 SET( b,
c,
d, a, 14, 23, T36 );
265 SET( a, b,
c,
d, 1, 4, T37 );
266 SET(
d, a, b,
c, 4, 11, T38 );
267 SET(
c,
d, a, b, 7, 16, T39 );
268 SET( b,
c,
d, a, 10, 23, T40 );
269 SET( a, b,
c,
d, 13, 4, T41 );
270 SET(
d, a, b,
c, 0, 11, T42 );
271 SET(
c,
d, a, b, 3, 16, T43 );
272 SET( b,
c,
d, a, 6, 23, T44 );
273 SET( a, b,
c,
d, 9, 4, T45 );
274 SET(
d, a, b,
c, 12, 11, T46 );
275 SET(
c,
d, a, b, 15, 16, T47 );
276 SET( b,
c,
d, a, 2, 23, T48 );
282#define I( x, y, z ) ( ( y ) ^ ( ( x ) | ~( z ) ) )
283#define SET( a, b, c, d, k, s, Ti ) \
284 t = a + I( b, c, d ) + X[k] + Ti; \
285 a = ROTATE_LEFT( t, s ) + b
287 SET( a, b,
c,
d, 0, 6, T49 );
288 SET(
d, a, b,
c, 7, 10, T50 );
289 SET(
c,
d, a, b, 14, 15, T51 );
290 SET( b,
c,
d, a, 5, 21, T52 );
291 SET( a, b,
c,
d, 12, 6, T53 );
292 SET(
d, a, b,
c, 3, 10, T54 );
293 SET(
c,
d, a, b, 10, 15, T55 );
294 SET( b,
c,
d, a, 1, 21, T56 );
295 SET( a, b,
c,
d, 8, 6, T57 );
296 SET(
d, a, b,
c, 15, 10, T58 );
297 SET(
c,
d, a, b, 6, 15, T59 );
298 SET( b,
c,
d, a, 13, 21, T60 );
299 SET( a, b,
c,
d, 4, 6, T61 );
300 SET(
d, a, b,
c, 11, 10, T62 );
301 SET(
c,
d, a, b, 2, 15, T63 );
302 SET( b,
c,
d, a, 9, 21, T64 );
317 pms->
abcd[0] = 0x67452301;
318 pms->
abcd[1] = T_MASK ^ 0x10325476;
319 pms->
abcd[2] = T_MASK ^ 0x67452301;
320 pms->
abcd[3] = 0x10325476;
323void md5_append(
md5_state_t *pms,
const md5_byte_t *data,
int nbytes )
325 const md5_byte_t *p = data;
327 int offset = ( pms->
count[0] >> 3 ) & 63;
328 md5_word_t nbits = (md5_word_t)( nbytes << 3 );
334 pms->
count[1] += nbytes >> 29;
335 pms->
count[0] += nbits;
336 if ( pms->
count[0] < nbits )
341 int copy = ( offset + nbytes > 64 ? 64 - offset : nbytes );
343 memcpy( pms->
buf + offset, p, copy );
344 if ( offset + copy < 64 )
348 md5_process( pms, pms->
buf );
352 for ( ; left >= 64; p += 64, left -= 64 )
353 md5_process( pms, p );
357 memcpy( pms->
buf, p, left );
360void md5_finish(
md5_state_t *pms, md5_byte_t digest[16] )
362 static const md5_byte_t pad[64] = {
363 0x80, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
364 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0,
365 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0 };
370 for ( i = 0; i < 8; ++i )
371 data[i] = (md5_byte_t)( pms->
count[i >> 2] >> ( ( i & 3 ) << 3 ) );
373 md5_append( pms, pad, ( ( 55 - ( pms->
count[0] >> 3 ) ) & 63 ) + 1 );
375 md5_append( pms, data, 8 );
376 for ( i = 0; i < 16; ++i )
377 digest[i] = (md5_byte_t)( pms->
abcd[i >> 2] >> ( ( i & 3 ) << 3 ) );
Define the state of the MD5 Algorithm.