diff options
Diffstat (limited to 'src/lib/libcrypto/sha/sha_locl.h')
-rw-r--r-- | src/lib/libcrypto/sha/sha_locl.h | 306 |
1 files changed, 174 insertions, 132 deletions
diff --git a/src/lib/libcrypto/sha/sha_locl.h b/src/lib/libcrypto/sha/sha_locl.h index e37e5726e3..a3623f72da 100644 --- a/src/lib/libcrypto/sha/sha_locl.h +++ b/src/lib/libcrypto/sha/sha_locl.h | |||
@@ -62,11 +62,17 @@ | |||
62 | #include <openssl/opensslconf.h> | 62 | #include <openssl/opensslconf.h> |
63 | #include <openssl/sha.h> | 63 | #include <openssl/sha.h> |
64 | 64 | ||
65 | #ifndef SHA_LONG_LOG2 | ||
66 | #define SHA_LONG_LOG2 2 /* default to 32 bits */ | ||
67 | #endif | ||
68 | |||
65 | #define DATA_ORDER_IS_BIG_ENDIAN | 69 | #define DATA_ORDER_IS_BIG_ENDIAN |
66 | 70 | ||
67 | #define HASH_LONG SHA_LONG | 71 | #define HASH_LONG SHA_LONG |
72 | #define HASH_LONG_LOG2 SHA_LONG_LOG2 | ||
68 | #define HASH_CTX SHA_CTX | 73 | #define HASH_CTX SHA_CTX |
69 | #define HASH_CBLOCK SHA_CBLOCK | 74 | #define HASH_CBLOCK SHA_CBLOCK |
75 | #define HASH_LBLOCK SHA_LBLOCK | ||
70 | #define HASH_MAKE_STRING(c,s) do { \ | 76 | #define HASH_MAKE_STRING(c,s) do { \ |
71 | unsigned long ll; \ | 77 | unsigned long ll; \ |
72 | ll=(c)->h0; HOST_l2c(ll,(s)); \ | 78 | ll=(c)->h0; HOST_l2c(ll,(s)); \ |
@@ -82,10 +88,12 @@ | |||
82 | # define HASH_TRANSFORM SHA_Transform | 88 | # define HASH_TRANSFORM SHA_Transform |
83 | # define HASH_FINAL SHA_Final | 89 | # define HASH_FINAL SHA_Final |
84 | # define HASH_INIT SHA_Init | 90 | # define HASH_INIT SHA_Init |
91 | # define HASH_BLOCK_HOST_ORDER sha_block_host_order | ||
85 | # define HASH_BLOCK_DATA_ORDER sha_block_data_order | 92 | # define HASH_BLOCK_DATA_ORDER sha_block_data_order |
86 | # define Xupdate(a,ix,ia,ib,ic,id) (ix=(a)=(ia^ib^ic^id)) | 93 | # define Xupdate(a,ix,ia,ib,ic,id) (ix=(a)=(ia^ib^ic^id)) |
87 | 94 | ||
88 | static void sha_block_data_order (SHA_CTX *c, const void *p,size_t num); | 95 | void sha_block_host_order (SHA_CTX *c, const void *p,int num); |
96 | void sha_block_data_order (SHA_CTX *c, const void *p,int num); | ||
89 | 97 | ||
90 | #elif defined(SHA_1) | 98 | #elif defined(SHA_1) |
91 | 99 | ||
@@ -93,6 +101,7 @@ static void sha_block_data_order (SHA_CTX *c, const void *p,size_t num); | |||
93 | # define HASH_TRANSFORM SHA1_Transform | 101 | # define HASH_TRANSFORM SHA1_Transform |
94 | # define HASH_FINAL SHA1_Final | 102 | # define HASH_FINAL SHA1_Final |
95 | # define HASH_INIT SHA1_Init | 103 | # define HASH_INIT SHA1_Init |
104 | # define HASH_BLOCK_HOST_ORDER sha1_block_host_order | ||
96 | # define HASH_BLOCK_DATA_ORDER sha1_block_data_order | 105 | # define HASH_BLOCK_DATA_ORDER sha1_block_data_order |
97 | # if defined(__MWERKS__) && defined(__MC68K__) | 106 | # if defined(__MWERKS__) && defined(__MC68K__) |
98 | /* Metrowerks for Motorola fails otherwise:-( <appro@fy.chalmers.se> */ | 107 | /* Metrowerks for Motorola fails otherwise:-( <appro@fy.chalmers.se> */ |
@@ -105,10 +114,22 @@ static void sha_block_data_order (SHA_CTX *c, const void *p,size_t num); | |||
105 | ) | 114 | ) |
106 | # endif | 115 | # endif |
107 | 116 | ||
108 | #ifndef SHA1_ASM | 117 | # ifdef SHA1_ASM |
109 | static | 118 | # if defined(__i386) || defined(__i386__) || defined(_M_IX86) || defined(__INTEL__) |
110 | #endif | 119 | # define sha1_block_host_order sha1_block_asm_host_order |
111 | void sha1_block_data_order (SHA_CTX *c, const void *p,size_t num); | 120 | # define DONT_IMPLEMENT_BLOCK_HOST_ORDER |
121 | # define sha1_block_data_order sha1_block_asm_data_order | ||
122 | # define DONT_IMPLEMENT_BLOCK_DATA_ORDER | ||
123 | # define HASH_BLOCK_DATA_ORDER_ALIGNED sha1_block_asm_data_order | ||
124 | # elif defined(__ia64) || defined(__ia64__) || defined(_M_IA64) | ||
125 | # define sha1_block_host_order sha1_block_asm_host_order | ||
126 | # define DONT_IMPLEMENT_BLOCK_HOST_ORDER | ||
127 | # define sha1_block_data_order sha1_block_asm_data_order | ||
128 | # define DONT_IMPLEMENT_BLOCK_DATA_ORDER | ||
129 | # endif | ||
130 | # endif | ||
131 | void sha1_block_host_order (SHA_CTX *c, const void *p,int num); | ||
132 | void sha1_block_data_order (SHA_CTX *c, const void *p,int num); | ||
112 | 133 | ||
113 | #else | 134 | #else |
114 | # error "Either SHA_0 or SHA_1 must be defined." | 135 | # error "Either SHA_0 or SHA_1 must be defined." |
@@ -122,7 +143,11 @@ void sha1_block_data_order (SHA_CTX *c, const void *p,size_t num); | |||
122 | #define INIT_DATA_h3 0x10325476UL | 143 | #define INIT_DATA_h3 0x10325476UL |
123 | #define INIT_DATA_h4 0xc3d2e1f0UL | 144 | #define INIT_DATA_h4 0xc3d2e1f0UL |
124 | 145 | ||
146 | #if defined(SHA_0) && defined(OPENSSL_FIPS) | ||
147 | FIPS_NON_FIPS_MD_Init(SHA) | ||
148 | #else | ||
125 | int HASH_INIT (SHA_CTX *c) | 149 | int HASH_INIT (SHA_CTX *c) |
150 | #endif | ||
126 | { | 151 | { |
127 | c->h0=INIT_DATA_h0; | 152 | c->h0=INIT_DATA_h0; |
128 | c->h1=INIT_DATA_h1; | 153 | c->h1=INIT_DATA_h1; |
@@ -152,8 +177,6 @@ int HASH_INIT (SHA_CTX *c) | |||
152 | #define F_40_59(b,c,d) (((b) & (c)) | (((b)|(c)) & (d))) | 177 | #define F_40_59(b,c,d) (((b) & (c)) | (((b)|(c)) & (d))) |
153 | #define F_60_79(b,c,d) F_20_39(b,c,d) | 178 | #define F_60_79(b,c,d) F_20_39(b,c,d) |
154 | 179 | ||
155 | #ifndef OPENSSL_SMALL_FOOTPRINT | ||
156 | |||
157 | #define BODY_00_15(i,a,b,c,d,e,f,xi) \ | 180 | #define BODY_00_15(i,a,b,c,d,e,f,xi) \ |
158 | (f)=xi+(e)+K_00_19+ROTATE((a),5)+F_00_19((b),(c),(d)); \ | 181 | (f)=xi+(e)+K_00_19+ROTATE((a),5)+F_00_19((b),(c),(d)); \ |
159 | (b)=ROTATE((b),30); | 182 | (b)=ROTATE((b),30); |
@@ -206,11 +229,11 @@ int HASH_INIT (SHA_CTX *c) | |||
206 | # define X(i) XX[i] | 229 | # define X(i) XX[i] |
207 | #endif | 230 | #endif |
208 | 231 | ||
209 | #if !defined(SHA_1) || !defined(SHA1_ASM) | 232 | #ifndef DONT_IMPLEMENT_BLOCK_HOST_ORDER |
210 | static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | 233 | void HASH_BLOCK_HOST_ORDER (SHA_CTX *c, const void *d, int num) |
211 | { | 234 | { |
212 | const unsigned char *data=p; | 235 | const SHA_LONG *W=d; |
213 | register unsigned MD32_REG_T A,B,C,D,E,T,l; | 236 | register unsigned MD32_REG_T A,B,C,D,E,T; |
214 | #ifndef MD32_XARRAY | 237 | #ifndef MD32_XARRAY |
215 | unsigned MD32_REG_T XX0, XX1, XX2, XX3, XX4, XX5, XX6, XX7, | 238 | unsigned MD32_REG_T XX0, XX1, XX2, XX3, XX4, XX5, XX6, XX7, |
216 | XX8, XX9,XX10,XX11,XX12,XX13,XX14,XX15; | 239 | XX8, XX9,XX10,XX11,XX12,XX13,XX14,XX15; |
@@ -225,71 +248,41 @@ static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | |||
225 | E=c->h4; | 248 | E=c->h4; |
226 | 249 | ||
227 | for (;;) | 250 | for (;;) |
228 | { | ||
229 | const union { long one; char little; } is_endian = {1}; | ||
230 | |||
231 | if (!is_endian.little && sizeof(SHA_LONG)==4 && ((size_t)p%4)==0) | ||
232 | { | ||
233 | const SHA_LONG *W=(const SHA_LONG *)data; | ||
234 | |||
235 | X( 0) = W[0]; X( 1) = W[ 1]; | ||
236 | BODY_00_15( 0,A,B,C,D,E,T,X( 0)); X( 2) = W[ 2]; | ||
237 | BODY_00_15( 1,T,A,B,C,D,E,X( 1)); X( 3) = W[ 3]; | ||
238 | BODY_00_15( 2,E,T,A,B,C,D,X( 2)); X( 4) = W[ 4]; | ||
239 | BODY_00_15( 3,D,E,T,A,B,C,X( 3)); X( 5) = W[ 5]; | ||
240 | BODY_00_15( 4,C,D,E,T,A,B,X( 4)); X( 6) = W[ 6]; | ||
241 | BODY_00_15( 5,B,C,D,E,T,A,X( 5)); X( 7) = W[ 7]; | ||
242 | BODY_00_15( 6,A,B,C,D,E,T,X( 6)); X( 8) = W[ 8]; | ||
243 | BODY_00_15( 7,T,A,B,C,D,E,X( 7)); X( 9) = W[ 9]; | ||
244 | BODY_00_15( 8,E,T,A,B,C,D,X( 8)); X(10) = W[10]; | ||
245 | BODY_00_15( 9,D,E,T,A,B,C,X( 9)); X(11) = W[11]; | ||
246 | BODY_00_15(10,C,D,E,T,A,B,X(10)); X(12) = W[12]; | ||
247 | BODY_00_15(11,B,C,D,E,T,A,X(11)); X(13) = W[13]; | ||
248 | BODY_00_15(12,A,B,C,D,E,T,X(12)); X(14) = W[14]; | ||
249 | BODY_00_15(13,T,A,B,C,D,E,X(13)); X(15) = W[15]; | ||
250 | BODY_00_15(14,E,T,A,B,C,D,X(14)); | ||
251 | BODY_00_15(15,D,E,T,A,B,C,X(15)); | ||
252 | |||
253 | data += SHA_CBLOCK; | ||
254 | } | ||
255 | else | ||
256 | { | 251 | { |
257 | HOST_c2l(data,l); X( 0)=l; HOST_c2l(data,l); X( 1)=l; | 252 | BODY_00_15( 0,A,B,C,D,E,T,W[ 0]); |
258 | BODY_00_15( 0,A,B,C,D,E,T,X( 0)); HOST_c2l(data,l); X( 2)=l; | 253 | BODY_00_15( 1,T,A,B,C,D,E,W[ 1]); |
259 | BODY_00_15( 1,T,A,B,C,D,E,X( 1)); HOST_c2l(data,l); X( 3)=l; | 254 | BODY_00_15( 2,E,T,A,B,C,D,W[ 2]); |
260 | BODY_00_15( 2,E,T,A,B,C,D,X( 2)); HOST_c2l(data,l); X( 4)=l; | 255 | BODY_00_15( 3,D,E,T,A,B,C,W[ 3]); |
261 | BODY_00_15( 3,D,E,T,A,B,C,X( 3)); HOST_c2l(data,l); X( 5)=l; | 256 | BODY_00_15( 4,C,D,E,T,A,B,W[ 4]); |
262 | BODY_00_15( 4,C,D,E,T,A,B,X( 4)); HOST_c2l(data,l); X( 6)=l; | 257 | BODY_00_15( 5,B,C,D,E,T,A,W[ 5]); |
263 | BODY_00_15( 5,B,C,D,E,T,A,X( 5)); HOST_c2l(data,l); X( 7)=l; | 258 | BODY_00_15( 6,A,B,C,D,E,T,W[ 6]); |
264 | BODY_00_15( 6,A,B,C,D,E,T,X( 6)); HOST_c2l(data,l); X( 8)=l; | 259 | BODY_00_15( 7,T,A,B,C,D,E,W[ 7]); |
265 | BODY_00_15( 7,T,A,B,C,D,E,X( 7)); HOST_c2l(data,l); X( 9)=l; | 260 | BODY_00_15( 8,E,T,A,B,C,D,W[ 8]); |
266 | BODY_00_15( 8,E,T,A,B,C,D,X( 8)); HOST_c2l(data,l); X(10)=l; | 261 | BODY_00_15( 9,D,E,T,A,B,C,W[ 9]); |
267 | BODY_00_15( 9,D,E,T,A,B,C,X( 9)); HOST_c2l(data,l); X(11)=l; | 262 | BODY_00_15(10,C,D,E,T,A,B,W[10]); |
268 | BODY_00_15(10,C,D,E,T,A,B,X(10)); HOST_c2l(data,l); X(12)=l; | 263 | BODY_00_15(11,B,C,D,E,T,A,W[11]); |
269 | BODY_00_15(11,B,C,D,E,T,A,X(11)); HOST_c2l(data,l); X(13)=l; | 264 | BODY_00_15(12,A,B,C,D,E,T,W[12]); |
270 | BODY_00_15(12,A,B,C,D,E,T,X(12)); HOST_c2l(data,l); X(14)=l; | 265 | BODY_00_15(13,T,A,B,C,D,E,W[13]); |
271 | BODY_00_15(13,T,A,B,C,D,E,X(13)); HOST_c2l(data,l); X(15)=l; | 266 | BODY_00_15(14,E,T,A,B,C,D,W[14]); |
272 | BODY_00_15(14,E,T,A,B,C,D,X(14)); | 267 | BODY_00_15(15,D,E,T,A,B,C,W[15]); |
273 | BODY_00_15(15,D,E,T,A,B,C,X(15)); | 268 | |
274 | } | 269 | BODY_16_19(16,C,D,E,T,A,B,X( 0),W[ 0],W[ 2],W[ 8],W[13]); |
275 | 270 | BODY_16_19(17,B,C,D,E,T,A,X( 1),W[ 1],W[ 3],W[ 9],W[14]); | |
276 | BODY_16_19(16,C,D,E,T,A,B,X( 0),X( 0),X( 2),X( 8),X(13)); | 271 | BODY_16_19(18,A,B,C,D,E,T,X( 2),W[ 2],W[ 4],W[10],W[15]); |
277 | BODY_16_19(17,B,C,D,E,T,A,X( 1),X( 1),X( 3),X( 9),X(14)); | 272 | BODY_16_19(19,T,A,B,C,D,E,X( 3),W[ 3],W[ 5],W[11],X( 0)); |
278 | BODY_16_19(18,A,B,C,D,E,T,X( 2),X( 2),X( 4),X(10),X(15)); | 273 | |
279 | BODY_16_19(19,T,A,B,C,D,E,X( 3),X( 3),X( 5),X(11),X( 0)); | 274 | BODY_20_31(20,E,T,A,B,C,D,X( 4),W[ 4],W[ 6],W[12],X( 1)); |
280 | 275 | BODY_20_31(21,D,E,T,A,B,C,X( 5),W[ 5],W[ 7],W[13],X( 2)); | |
281 | BODY_20_31(20,E,T,A,B,C,D,X( 4),X( 4),X( 6),X(12),X( 1)); | 276 | BODY_20_31(22,C,D,E,T,A,B,X( 6),W[ 6],W[ 8],W[14],X( 3)); |
282 | BODY_20_31(21,D,E,T,A,B,C,X( 5),X( 5),X( 7),X(13),X( 2)); | 277 | BODY_20_31(23,B,C,D,E,T,A,X( 7),W[ 7],W[ 9],W[15],X( 4)); |
283 | BODY_20_31(22,C,D,E,T,A,B,X( 6),X( 6),X( 8),X(14),X( 3)); | 278 | BODY_20_31(24,A,B,C,D,E,T,X( 8),W[ 8],W[10],X( 0),X( 5)); |
284 | BODY_20_31(23,B,C,D,E,T,A,X( 7),X( 7),X( 9),X(15),X( 4)); | 279 | BODY_20_31(25,T,A,B,C,D,E,X( 9),W[ 9],W[11],X( 1),X( 6)); |
285 | BODY_20_31(24,A,B,C,D,E,T,X( 8),X( 8),X(10),X( 0),X( 5)); | 280 | BODY_20_31(26,E,T,A,B,C,D,X(10),W[10],W[12],X( 2),X( 7)); |
286 | BODY_20_31(25,T,A,B,C,D,E,X( 9),X( 9),X(11),X( 1),X( 6)); | 281 | BODY_20_31(27,D,E,T,A,B,C,X(11),W[11],W[13],X( 3),X( 8)); |
287 | BODY_20_31(26,E,T,A,B,C,D,X(10),X(10),X(12),X( 2),X( 7)); | 282 | BODY_20_31(28,C,D,E,T,A,B,X(12),W[12],W[14],X( 4),X( 9)); |
288 | BODY_20_31(27,D,E,T,A,B,C,X(11),X(11),X(13),X( 3),X( 8)); | 283 | BODY_20_31(29,B,C,D,E,T,A,X(13),W[13],W[15],X( 5),X(10)); |
289 | BODY_20_31(28,C,D,E,T,A,B,X(12),X(12),X(14),X( 4),X( 9)); | 284 | BODY_20_31(30,A,B,C,D,E,T,X(14),W[14],X( 0),X( 6),X(11)); |
290 | BODY_20_31(29,B,C,D,E,T,A,X(13),X(13),X(15),X( 5),X(10)); | 285 | BODY_20_31(31,T,A,B,C,D,E,X(15),W[15],X( 1),X( 7),X(12)); |
291 | BODY_20_31(30,A,B,C,D,E,T,X(14),X(14),X( 0),X( 6),X(11)); | ||
292 | BODY_20_31(31,T,A,B,C,D,E,X(15),X(15),X( 1),X( 7),X(12)); | ||
293 | 286 | ||
294 | BODY_32_39(32,E,T,A,B,C,D,X( 0),X( 2),X( 8),X(13)); | 287 | BODY_32_39(32,E,T,A,B,C,D,X( 0),X( 2),X( 8),X(13)); |
295 | BODY_32_39(33,D,E,T,A,B,C,X( 1),X( 3),X( 9),X(14)); | 288 | BODY_32_39(33,D,E,T,A,B,C,X( 1),X( 3),X( 9),X(14)); |
@@ -348,7 +341,7 @@ static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | |||
348 | c->h3=(c->h3+B)&0xffffffffL; | 341 | c->h3=(c->h3+B)&0xffffffffL; |
349 | c->h4=(c->h4+C)&0xffffffffL; | 342 | c->h4=(c->h4+C)&0xffffffffL; |
350 | 343 | ||
351 | if (--num == 0) break; | 344 | if (--num <= 0) break; |
352 | 345 | ||
353 | A=c->h0; | 346 | A=c->h0; |
354 | B=c->h1; | 347 | B=c->h1; |
@@ -356,48 +349,22 @@ static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | |||
356 | D=c->h3; | 349 | D=c->h3; |
357 | E=c->h4; | 350 | E=c->h4; |
358 | 351 | ||
359 | } | 352 | W+=SHA_LBLOCK; |
353 | } | ||
360 | } | 354 | } |
361 | #endif | 355 | #endif |
362 | 356 | ||
363 | #else /* OPENSSL_SMALL_FOOTPRINT */ | 357 | #ifndef DONT_IMPLEMENT_BLOCK_DATA_ORDER |
364 | 358 | void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, int num) | |
365 | #define BODY_00_15(xi) do { \ | ||
366 | T=E+K_00_19+F_00_19(B,C,D); \ | ||
367 | E=D, D=C, C=ROTATE(B,30), B=A; \ | ||
368 | A=ROTATE(A,5)+T+xi; } while(0) | ||
369 | |||
370 | #define BODY_16_19(xa,xb,xc,xd) do { \ | ||
371 | Xupdate(T,xa,xa,xb,xc,xd); \ | ||
372 | T+=E+K_00_19+F_00_19(B,C,D); \ | ||
373 | E=D, D=C, C=ROTATE(B,30), B=A; \ | ||
374 | A=ROTATE(A,5)+T; } while(0) | ||
375 | |||
376 | #define BODY_20_39(xa,xb,xc,xd) do { \ | ||
377 | Xupdate(T,xa,xa,xb,xc,xd); \ | ||
378 | T+=E+K_20_39+F_20_39(B,C,D); \ | ||
379 | E=D, D=C, C=ROTATE(B,30), B=A; \ | ||
380 | A=ROTATE(A,5)+T; } while(0) | ||
381 | |||
382 | #define BODY_40_59(xa,xb,xc,xd) do { \ | ||
383 | Xupdate(T,xa,xa,xb,xc,xd); \ | ||
384 | T+=E+K_40_59+F_40_59(B,C,D); \ | ||
385 | E=D, D=C, C=ROTATE(B,30), B=A; \ | ||
386 | A=ROTATE(A,5)+T; } while(0) | ||
387 | |||
388 | #define BODY_60_79(xa,xb,xc,xd) do { \ | ||
389 | Xupdate(T,xa,xa,xb,xc,xd); \ | ||
390 | T=E+K_60_79+F_60_79(B,C,D); \ | ||
391 | E=D, D=C, C=ROTATE(B,30), B=A; \ | ||
392 | A=ROTATE(A,5)+T+xa; } while(0) | ||
393 | |||
394 | #if !defined(SHA_1) || !defined(SHA1_ASM) | ||
395 | static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | ||
396 | { | 359 | { |
397 | const unsigned char *data=p; | 360 | const unsigned char *data=p; |
398 | register unsigned MD32_REG_T A,B,C,D,E,T,l; | 361 | register unsigned MD32_REG_T A,B,C,D,E,T,l; |
399 | int i; | 362 | #ifndef MD32_XARRAY |
400 | SHA_LONG X[16]; | 363 | unsigned MD32_REG_T XX0, XX1, XX2, XX3, XX4, XX5, XX6, XX7, |
364 | XX8, XX9,XX10,XX11,XX12,XX13,XX14,XX15; | ||
365 | #else | ||
366 | SHA_LONG XX[16]; | ||
367 | #endif | ||
401 | 368 | ||
402 | A=c->h0; | 369 | A=c->h0; |
403 | B=c->h1; | 370 | B=c->h1; |
@@ -407,24 +374,101 @@ static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | |||
407 | 374 | ||
408 | for (;;) | 375 | for (;;) |
409 | { | 376 | { |
410 | for (i=0;i<16;i++) | 377 | |
411 | { HOST_c2l(data,l); X[i]=l; BODY_00_15(X[i]); } | 378 | HOST_c2l(data,l); X( 0)=l; HOST_c2l(data,l); X( 1)=l; |
412 | for (i=0;i<4;i++) | 379 | BODY_00_15( 0,A,B,C,D,E,T,X( 0)); HOST_c2l(data,l); X( 2)=l; |
413 | { BODY_16_19(X[i], X[i+2], X[i+8], X[(i+13)&15]); } | 380 | BODY_00_15( 1,T,A,B,C,D,E,X( 1)); HOST_c2l(data,l); X( 3)=l; |
414 | for (;i<24;i++) | 381 | BODY_00_15( 2,E,T,A,B,C,D,X( 2)); HOST_c2l(data,l); X( 4)=l; |
415 | { BODY_20_39(X[i&15], X[(i+2)&15], X[(i+8)&15],X[(i+13)&15]); } | 382 | BODY_00_15( 3,D,E,T,A,B,C,X( 3)); HOST_c2l(data,l); X( 5)=l; |
416 | for (i=0;i<20;i++) | 383 | BODY_00_15( 4,C,D,E,T,A,B,X( 4)); HOST_c2l(data,l); X( 6)=l; |
417 | { BODY_40_59(X[(i+8)&15],X[(i+10)&15],X[i&15], X[(i+5)&15]); } | 384 | BODY_00_15( 5,B,C,D,E,T,A,X( 5)); HOST_c2l(data,l); X( 7)=l; |
418 | for (i=4;i<24;i++) | 385 | BODY_00_15( 6,A,B,C,D,E,T,X( 6)); HOST_c2l(data,l); X( 8)=l; |
419 | { BODY_60_79(X[(i+8)&15],X[(i+10)&15],X[i&15], X[(i+5)&15]); } | 386 | BODY_00_15( 7,T,A,B,C,D,E,X( 7)); HOST_c2l(data,l); X( 9)=l; |
420 | 387 | BODY_00_15( 8,E,T,A,B,C,D,X( 8)); HOST_c2l(data,l); X(10)=l; | |
421 | c->h0=(c->h0+A)&0xffffffffL; | 388 | BODY_00_15( 9,D,E,T,A,B,C,X( 9)); HOST_c2l(data,l); X(11)=l; |
422 | c->h1=(c->h1+B)&0xffffffffL; | 389 | BODY_00_15(10,C,D,E,T,A,B,X(10)); HOST_c2l(data,l); X(12)=l; |
423 | c->h2=(c->h2+C)&0xffffffffL; | 390 | BODY_00_15(11,B,C,D,E,T,A,X(11)); HOST_c2l(data,l); X(13)=l; |
424 | c->h3=(c->h3+D)&0xffffffffL; | 391 | BODY_00_15(12,A,B,C,D,E,T,X(12)); HOST_c2l(data,l); X(14)=l; |
425 | c->h4=(c->h4+E)&0xffffffffL; | 392 | BODY_00_15(13,T,A,B,C,D,E,X(13)); HOST_c2l(data,l); X(15)=l; |
426 | 393 | BODY_00_15(14,E,T,A,B,C,D,X(14)); | |
427 | if (--num == 0) break; | 394 | BODY_00_15(15,D,E,T,A,B,C,X(15)); |
395 | |||
396 | BODY_16_19(16,C,D,E,T,A,B,X( 0),X( 0),X( 2),X( 8),X(13)); | ||
397 | BODY_16_19(17,B,C,D,E,T,A,X( 1),X( 1),X( 3),X( 9),X(14)); | ||
398 | BODY_16_19(18,A,B,C,D,E,T,X( 2),X( 2),X( 4),X(10),X(15)); | ||
399 | BODY_16_19(19,T,A,B,C,D,E,X( 3),X( 3),X( 5),X(11),X( 0)); | ||
400 | |||
401 | BODY_20_31(20,E,T,A,B,C,D,X( 4),X( 4),X( 6),X(12),X( 1)); | ||
402 | BODY_20_31(21,D,E,T,A,B,C,X( 5),X( 5),X( 7),X(13),X( 2)); | ||
403 | BODY_20_31(22,C,D,E,T,A,B,X( 6),X( 6),X( 8),X(14),X( 3)); | ||
404 | BODY_20_31(23,B,C,D,E,T,A,X( 7),X( 7),X( 9),X(15),X( 4)); | ||
405 | BODY_20_31(24,A,B,C,D,E,T,X( 8),X( 8),X(10),X( 0),X( 5)); | ||
406 | BODY_20_31(25,T,A,B,C,D,E,X( 9),X( 9),X(11),X( 1),X( 6)); | ||
407 | BODY_20_31(26,E,T,A,B,C,D,X(10),X(10),X(12),X( 2),X( 7)); | ||
408 | BODY_20_31(27,D,E,T,A,B,C,X(11),X(11),X(13),X( 3),X( 8)); | ||
409 | BODY_20_31(28,C,D,E,T,A,B,X(12),X(12),X(14),X( 4),X( 9)); | ||
410 | BODY_20_31(29,B,C,D,E,T,A,X(13),X(13),X(15),X( 5),X(10)); | ||
411 | BODY_20_31(30,A,B,C,D,E,T,X(14),X(14),X( 0),X( 6),X(11)); | ||
412 | BODY_20_31(31,T,A,B,C,D,E,X(15),X(15),X( 1),X( 7),X(12)); | ||
413 | |||
414 | BODY_32_39(32,E,T,A,B,C,D,X( 0),X( 2),X( 8),X(13)); | ||
415 | BODY_32_39(33,D,E,T,A,B,C,X( 1),X( 3),X( 9),X(14)); | ||
416 | BODY_32_39(34,C,D,E,T,A,B,X( 2),X( 4),X(10),X(15)); | ||
417 | BODY_32_39(35,B,C,D,E,T,A,X( 3),X( 5),X(11),X( 0)); | ||
418 | BODY_32_39(36,A,B,C,D,E,T,X( 4),X( 6),X(12),X( 1)); | ||
419 | BODY_32_39(37,T,A,B,C,D,E,X( 5),X( 7),X(13),X( 2)); | ||
420 | BODY_32_39(38,E,T,A,B,C,D,X( 6),X( 8),X(14),X( 3)); | ||
421 | BODY_32_39(39,D,E,T,A,B,C,X( 7),X( 9),X(15),X( 4)); | ||
422 | |||
423 | BODY_40_59(40,C,D,E,T,A,B,X( 8),X(10),X( 0),X( 5)); | ||
424 | BODY_40_59(41,B,C,D,E,T,A,X( 9),X(11),X( 1),X( 6)); | ||
425 | BODY_40_59(42,A,B,C,D,E,T,X(10),X(12),X( 2),X( 7)); | ||
426 | BODY_40_59(43,T,A,B,C,D,E,X(11),X(13),X( 3),X( 8)); | ||
427 | BODY_40_59(44,E,T,A,B,C,D,X(12),X(14),X( 4),X( 9)); | ||
428 | BODY_40_59(45,D,E,T,A,B,C,X(13),X(15),X( 5),X(10)); | ||
429 | BODY_40_59(46,C,D,E,T,A,B,X(14),X( 0),X( 6),X(11)); | ||
430 | BODY_40_59(47,B,C,D,E,T,A,X(15),X( 1),X( 7),X(12)); | ||
431 | BODY_40_59(48,A,B,C,D,E,T,X( 0),X( 2),X( 8),X(13)); | ||
432 | BODY_40_59(49,T,A,B,C,D,E,X( 1),X( 3),X( 9),X(14)); | ||
433 | BODY_40_59(50,E,T,A,B,C,D,X( 2),X( 4),X(10),X(15)); | ||
434 | BODY_40_59(51,D,E,T,A,B,C,X( 3),X( 5),X(11),X( 0)); | ||
435 | BODY_40_59(52,C,D,E,T,A,B,X( 4),X( 6),X(12),X( 1)); | ||
436 | BODY_40_59(53,B,C,D,E,T,A,X( 5),X( 7),X(13),X( 2)); | ||
437 | BODY_40_59(54,A,B,C,D,E,T,X( 6),X( 8),X(14),X( 3)); | ||
438 | BODY_40_59(55,T,A,B,C,D,E,X( 7),X( 9),X(15),X( 4)); | ||
439 | BODY_40_59(56,E,T,A,B,C,D,X( 8),X(10),X( 0),X( 5)); | ||
440 | BODY_40_59(57,D,E,T,A,B,C,X( 9),X(11),X( 1),X( 6)); | ||
441 | BODY_40_59(58,C,D,E,T,A,B,X(10),X(12),X( 2),X( 7)); | ||
442 | BODY_40_59(59,B,C,D,E,T,A,X(11),X(13),X( 3),X( 8)); | ||
443 | |||
444 | BODY_60_79(60,A,B,C,D,E,T,X(12),X(14),X( 4),X( 9)); | ||
445 | BODY_60_79(61,T,A,B,C,D,E,X(13),X(15),X( 5),X(10)); | ||
446 | BODY_60_79(62,E,T,A,B,C,D,X(14),X( 0),X( 6),X(11)); | ||
447 | BODY_60_79(63,D,E,T,A,B,C,X(15),X( 1),X( 7),X(12)); | ||
448 | BODY_60_79(64,C,D,E,T,A,B,X( 0),X( 2),X( 8),X(13)); | ||
449 | BODY_60_79(65,B,C,D,E,T,A,X( 1),X( 3),X( 9),X(14)); | ||
450 | BODY_60_79(66,A,B,C,D,E,T,X( 2),X( 4),X(10),X(15)); | ||
451 | BODY_60_79(67,T,A,B,C,D,E,X( 3),X( 5),X(11),X( 0)); | ||
452 | BODY_60_79(68,E,T,A,B,C,D,X( 4),X( 6),X(12),X( 1)); | ||
453 | BODY_60_79(69,D,E,T,A,B,C,X( 5),X( 7),X(13),X( 2)); | ||
454 | BODY_60_79(70,C,D,E,T,A,B,X( 6),X( 8),X(14),X( 3)); | ||
455 | BODY_60_79(71,B,C,D,E,T,A,X( 7),X( 9),X(15),X( 4)); | ||
456 | BODY_60_79(72,A,B,C,D,E,T,X( 8),X(10),X( 0),X( 5)); | ||
457 | BODY_60_79(73,T,A,B,C,D,E,X( 9),X(11),X( 1),X( 6)); | ||
458 | BODY_60_79(74,E,T,A,B,C,D,X(10),X(12),X( 2),X( 7)); | ||
459 | BODY_60_79(75,D,E,T,A,B,C,X(11),X(13),X( 3),X( 8)); | ||
460 | BODY_60_79(76,C,D,E,T,A,B,X(12),X(14),X( 4),X( 9)); | ||
461 | BODY_60_79(77,B,C,D,E,T,A,X(13),X(15),X( 5),X(10)); | ||
462 | BODY_60_79(78,A,B,C,D,E,T,X(14),X( 0),X( 6),X(11)); | ||
463 | BODY_60_79(79,T,A,B,C,D,E,X(15),X( 1),X( 7),X(12)); | ||
464 | |||
465 | c->h0=(c->h0+E)&0xffffffffL; | ||
466 | c->h1=(c->h1+T)&0xffffffffL; | ||
467 | c->h2=(c->h2+A)&0xffffffffL; | ||
468 | c->h3=(c->h3+B)&0xffffffffL; | ||
469 | c->h4=(c->h4+C)&0xffffffffL; | ||
470 | |||
471 | if (--num <= 0) break; | ||
428 | 472 | ||
429 | A=c->h0; | 473 | A=c->h0; |
430 | B=c->h1; | 474 | B=c->h1; |
@@ -435,5 +479,3 @@ static void HASH_BLOCK_DATA_ORDER (SHA_CTX *c, const void *p, size_t num) | |||
435 | } | 479 | } |
436 | } | 480 | } |
437 | #endif | 481 | #endif |
438 | |||
439 | #endif | ||