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author | cvs2svn <admin@example.com> | 2008-07-28 23:44:11 +0000 |
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committer | cvs2svn <admin@example.com> | 2008-07-28 23:44:11 +0000 |
commit | 466614843d3969042821d3844ede52cbbbef414e (patch) | |
tree | dd1b8dd6247047a42f65a4669d862134a8e90160 /src/lib/libcrypto/bn/bn_mont.c | |
parent | 10837c3c47f1b9d7d1a061fff2327a4e280ba338 (diff) | |
download | openbsd-OPENBSD_4_4_BASE.tar.gz openbsd-OPENBSD_4_4_BASE.tar.bz2 openbsd-OPENBSD_4_4_BASE.zip |
This commit was manufactured by cvs2git to create tag 'OPENBSD_4_4_BASE'.OPENBSD_4_4_BASE
Diffstat (limited to 'src/lib/libcrypto/bn/bn_mont.c')
-rw-r--r-- | src/lib/libcrypto/bn/bn_mont.c | 421 |
1 files changed, 0 insertions, 421 deletions
diff --git a/src/lib/libcrypto/bn/bn_mont.c b/src/lib/libcrypto/bn/bn_mont.c deleted file mode 100644 index 726d5f2b1b..0000000000 --- a/src/lib/libcrypto/bn/bn_mont.c +++ /dev/null | |||
@@ -1,421 +0,0 @@ | |||
1 | /* crypto/bn/bn_mont.c */ | ||
2 | /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) | ||
3 | * All rights reserved. | ||
4 | * | ||
5 | * This package is an SSL implementation written | ||
6 | * by Eric Young (eay@cryptsoft.com). | ||
7 | * The implementation was written so as to conform with Netscapes SSL. | ||
8 | * | ||
9 | * This library is free for commercial and non-commercial use as long as | ||
10 | * the following conditions are aheared to. The following conditions | ||
11 | * apply to all code found in this distribution, be it the RC4, RSA, | ||
12 | * lhash, DES, etc., code; not just the SSL code. The SSL documentation | ||
13 | * included with this distribution is covered by the same copyright terms | ||
14 | * except that the holder is Tim Hudson (tjh@cryptsoft.com). | ||
15 | * | ||
16 | * Copyright remains Eric Young's, and as such any Copyright notices in | ||
17 | * the code are not to be removed. | ||
18 | * If this package is used in a product, Eric Young should be given attribution | ||
19 | * as the author of the parts of the library used. | ||
20 | * This can be in the form of a textual message at program startup or | ||
21 | * in documentation (online or textual) provided with the package. | ||
22 | * | ||
23 | * Redistribution and use in source and binary forms, with or without | ||
24 | * modification, are permitted provided that the following conditions | ||
25 | * are met: | ||
26 | * 1. Redistributions of source code must retain the copyright | ||
27 | * notice, this list of conditions and the following disclaimer. | ||
28 | * 2. Redistributions in binary form must reproduce the above copyright | ||
29 | * notice, this list of conditions and the following disclaimer in the | ||
30 | * documentation and/or other materials provided with the distribution. | ||
31 | * 3. All advertising materials mentioning features or use of this software | ||
32 | * must display the following acknowledgement: | ||
33 | * "This product includes cryptographic software written by | ||
34 | * Eric Young (eay@cryptsoft.com)" | ||
35 | * The word 'cryptographic' can be left out if the rouines from the library | ||
36 | * being used are not cryptographic related :-). | ||
37 | * 4. If you include any Windows specific code (or a derivative thereof) from | ||
38 | * the apps directory (application code) you must include an acknowledgement: | ||
39 | * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" | ||
40 | * | ||
41 | * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND | ||
42 | * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | ||
43 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | ||
44 | * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE | ||
45 | * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL | ||
46 | * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS | ||
47 | * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) | ||
48 | * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT | ||
49 | * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY | ||
50 | * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF | ||
51 | * SUCH DAMAGE. | ||
52 | * | ||
53 | * The licence and distribution terms for any publically available version or | ||
54 | * derivative of this code cannot be changed. i.e. this code cannot simply be | ||
55 | * copied and put under another distribution licence | ||
56 | * [including the GNU Public Licence.] | ||
57 | */ | ||
58 | |||
59 | /* | ||
60 | * Details about Montgomery multiplication algorithms can be found at | ||
61 | * http://security.ece.orst.edu/publications.html, e.g. | ||
62 | * http://security.ece.orst.edu/koc/papers/j37acmon.pdf and | ||
63 | * sections 3.8 and 4.2 in http://security.ece.orst.edu/koc/papers/r01rsasw.pdf | ||
64 | */ | ||
65 | |||
66 | #include <stdio.h> | ||
67 | #include "cryptlib.h" | ||
68 | #include "bn_lcl.h" | ||
69 | |||
70 | #define MONT_WORD /* use the faster word-based algorithm */ | ||
71 | |||
72 | int BN_mod_mul_montgomery(BIGNUM *r, const BIGNUM *a, const BIGNUM *b, | ||
73 | BN_MONT_CTX *mont, BN_CTX *ctx) | ||
74 | { | ||
75 | BIGNUM *tmp; | ||
76 | int ret=0; | ||
77 | |||
78 | BN_CTX_start(ctx); | ||
79 | tmp = BN_CTX_get(ctx); | ||
80 | if (tmp == NULL) goto err; | ||
81 | |||
82 | bn_check_top(tmp); | ||
83 | if (a == b) | ||
84 | { | ||
85 | if (!BN_sqr(tmp,a,ctx)) goto err; | ||
86 | } | ||
87 | else | ||
88 | { | ||
89 | if (!BN_mul(tmp,a,b,ctx)) goto err; | ||
90 | } | ||
91 | /* reduce from aRR to aR */ | ||
92 | if (!BN_from_montgomery(r,tmp,mont,ctx)) goto err; | ||
93 | ret=1; | ||
94 | err: | ||
95 | BN_CTX_end(ctx); | ||
96 | return(ret); | ||
97 | } | ||
98 | |||
99 | int BN_from_montgomery(BIGNUM *ret, const BIGNUM *a, BN_MONT_CTX *mont, | ||
100 | BN_CTX *ctx) | ||
101 | { | ||
102 | int retn=0; | ||
103 | |||
104 | #ifdef MONT_WORD | ||
105 | BIGNUM *n,*r; | ||
106 | BN_ULONG *ap,*np,*rp,n0,v,*nrp; | ||
107 | int al,nl,max,i,x,ri; | ||
108 | |||
109 | BN_CTX_start(ctx); | ||
110 | if ((r = BN_CTX_get(ctx)) == NULL) goto err; | ||
111 | |||
112 | if (!BN_copy(r,a)) goto err; | ||
113 | n= &(mont->N); | ||
114 | |||
115 | ap=a->d; | ||
116 | /* mont->ri is the size of mont->N in bits (rounded up | ||
117 | to the word size) */ | ||
118 | al=ri=mont->ri/BN_BITS2; | ||
119 | |||
120 | nl=n->top; | ||
121 | if ((al == 0) || (nl == 0)) { r->top=0; return(1); } | ||
122 | |||
123 | max=(nl+al+1); /* allow for overflow (no?) XXX */ | ||
124 | if (bn_wexpand(r,max) == NULL) goto err; | ||
125 | |||
126 | r->neg=a->neg^n->neg; | ||
127 | np=n->d; | ||
128 | rp=r->d; | ||
129 | nrp= &(r->d[nl]); | ||
130 | |||
131 | /* clear the top words of T */ | ||
132 | #if 1 | ||
133 | for (i=r->top; i<max; i++) /* memset? XXX */ | ||
134 | r->d[i]=0; | ||
135 | #else | ||
136 | memset(&(r->d[r->top]),0,(max-r->top)*sizeof(BN_ULONG)); | ||
137 | #endif | ||
138 | |||
139 | r->top=max; | ||
140 | n0=mont->n0; | ||
141 | |||
142 | #ifdef BN_COUNT | ||
143 | fprintf(stderr,"word BN_from_montgomery %d * %d\n",nl,nl); | ||
144 | #endif | ||
145 | for (i=0; i<nl; i++) | ||
146 | { | ||
147 | #ifdef __TANDEM | ||
148 | { | ||
149 | long long t1; | ||
150 | long long t2; | ||
151 | long long t3; | ||
152 | t1 = rp[0] * (n0 & 0177777); | ||
153 | t2 = 037777600000l; | ||
154 | t2 = n0 & t2; | ||
155 | t3 = rp[0] & 0177777; | ||
156 | t2 = (t3 * t2) & BN_MASK2; | ||
157 | t1 = t1 + t2; | ||
158 | v=bn_mul_add_words(rp,np,nl,(BN_ULONG) t1); | ||
159 | } | ||
160 | #else | ||
161 | v=bn_mul_add_words(rp,np,nl,(rp[0]*n0)&BN_MASK2); | ||
162 | #endif | ||
163 | nrp++; | ||
164 | rp++; | ||
165 | if (((nrp[-1]+=v)&BN_MASK2) >= v) | ||
166 | continue; | ||
167 | else | ||
168 | { | ||
169 | if (((++nrp[0])&BN_MASK2) != 0) continue; | ||
170 | if (((++nrp[1])&BN_MASK2) != 0) continue; | ||
171 | for (x=2; (((++nrp[x])&BN_MASK2) == 0); x++) ; | ||
172 | } | ||
173 | } | ||
174 | bn_fix_top(r); | ||
175 | |||
176 | /* mont->ri will be a multiple of the word size and below code | ||
177 | * is kind of BN_rshift(ret,r,mont->ri) equivalent */ | ||
178 | if (r->top <= ri) | ||
179 | { | ||
180 | ret->top=0; | ||
181 | retn=1; | ||
182 | goto err; | ||
183 | } | ||
184 | al=r->top-ri; | ||
185 | |||
186 | # define BRANCH_FREE 1 | ||
187 | # if BRANCH_FREE | ||
188 | if (bn_wexpand(ret,ri) == NULL) goto err; | ||
189 | x=0-(((al-ri)>>(sizeof(al)*8-1))&1); | ||
190 | ret->top=x=(ri&~x)|(al&x); /* min(ri,al) */ | ||
191 | ret->neg=r->neg; | ||
192 | |||
193 | rp=ret->d; | ||
194 | ap=&(r->d[ri]); | ||
195 | |||
196 | { | ||
197 | size_t m1,m2; | ||
198 | |||
199 | v=bn_sub_words(rp,ap,np,ri); | ||
200 | /* this ----------------^^ works even in al<ri case | ||
201 | * thanks to zealous zeroing of top of the vector in the | ||
202 | * beginning. */ | ||
203 | |||
204 | /* if (al==ri && !v) || al>ri) nrp=rp; else nrp=ap; */ | ||
205 | /* in other words if subtraction result is real, then | ||
206 | * trick unconditional memcpy below to perform in-place | ||
207 | * "refresh" instead of actual copy. */ | ||
208 | m1=0-(size_t)(((al-ri)>>(sizeof(al)*8-1))&1); /* al<ri */ | ||
209 | m2=0-(size_t)(((ri-al)>>(sizeof(al)*8-1))&1); /* al>ri */ | ||
210 | m1|=m2; /* (al!=ri) */ | ||
211 | m1|=(0-(size_t)v); /* (al!=ri || v) */ | ||
212 | m1&=~m2; /* (al!=ri || v) && !al>ri */ | ||
213 | nrp=(BN_ULONG *)(((size_t)rp&~m1)|((size_t)ap&m1)); | ||
214 | } | ||
215 | |||
216 | /* 'i<ri' is chosen to eliminate dependency on input data, even | ||
217 | * though it results in redundant copy in al<ri case. */ | ||
218 | for (i=0,ri-=4; i<ri; i+=4) | ||
219 | { | ||
220 | BN_ULONG t1,t2,t3,t4; | ||
221 | |||
222 | t1=nrp[i+0]; | ||
223 | t2=nrp[i+1]; | ||
224 | t3=nrp[i+2]; ap[i+0]=0; | ||
225 | t4=nrp[i+3]; ap[i+1]=0; | ||
226 | rp[i+0]=t1; ap[i+2]=0; | ||
227 | rp[i+1]=t2; ap[i+3]=0; | ||
228 | rp[i+2]=t3; | ||
229 | rp[i+3]=t4; | ||
230 | } | ||
231 | for (ri+=4; i<ri; i++) | ||
232 | rp[i]=nrp[i], ap[i]=0; | ||
233 | # else | ||
234 | if (bn_wexpand(ret,al) == NULL) goto err; | ||
235 | ret->top=al; | ||
236 | ret->neg=r->neg; | ||
237 | |||
238 | rp=ret->d; | ||
239 | ap=&(r->d[ri]); | ||
240 | al-=4; | ||
241 | for (i=0; i<al; i+=4) | ||
242 | { | ||
243 | BN_ULONG t1,t2,t3,t4; | ||
244 | |||
245 | t1=ap[i+0]; | ||
246 | t2=ap[i+1]; | ||
247 | t3=ap[i+2]; | ||
248 | t4=ap[i+3]; | ||
249 | rp[i+0]=t1; | ||
250 | rp[i+1]=t2; | ||
251 | rp[i+2]=t3; | ||
252 | rp[i+3]=t4; | ||
253 | } | ||
254 | al+=4; | ||
255 | for (; i<al; i++) | ||
256 | rp[i]=ap[i]; | ||
257 | # endif | ||
258 | #else /* !MONT_WORD */ | ||
259 | BIGNUM *t1,*t2; | ||
260 | |||
261 | BN_CTX_start(ctx); | ||
262 | t1 = BN_CTX_get(ctx); | ||
263 | t2 = BN_CTX_get(ctx); | ||
264 | if (t1 == NULL || t2 == NULL) goto err; | ||
265 | |||
266 | if (!BN_copy(t1,a)) goto err; | ||
267 | BN_mask_bits(t1,mont->ri); | ||
268 | |||
269 | if (!BN_mul(t2,t1,&mont->Ni,ctx)) goto err; | ||
270 | BN_mask_bits(t2,mont->ri); | ||
271 | |||
272 | if (!BN_mul(t1,t2,&mont->N,ctx)) goto err; | ||
273 | if (!BN_add(t2,a,t1)) goto err; | ||
274 | if (!BN_rshift(ret,t2,mont->ri)) goto err; | ||
275 | #endif /* MONT_WORD */ | ||
276 | |||
277 | #if !defined(BRANCH_FREE) || BRANCH_FREE==0 | ||
278 | if (BN_ucmp(ret, &(mont->N)) >= 0) | ||
279 | { | ||
280 | if (!BN_usub(ret,ret,&(mont->N))) goto err; | ||
281 | } | ||
282 | #endif | ||
283 | retn=1; | ||
284 | err: | ||
285 | BN_CTX_end(ctx); | ||
286 | return(retn); | ||
287 | } | ||
288 | |||
289 | BN_MONT_CTX *BN_MONT_CTX_new(void) | ||
290 | { | ||
291 | BN_MONT_CTX *ret; | ||
292 | |||
293 | if ((ret=(BN_MONT_CTX *)OPENSSL_malloc(sizeof(BN_MONT_CTX))) == NULL) | ||
294 | return(NULL); | ||
295 | |||
296 | BN_MONT_CTX_init(ret); | ||
297 | ret->flags=BN_FLG_MALLOCED; | ||
298 | return(ret); | ||
299 | } | ||
300 | |||
301 | void BN_MONT_CTX_init(BN_MONT_CTX *ctx) | ||
302 | { | ||
303 | ctx->ri=0; | ||
304 | BN_init(&(ctx->RR)); | ||
305 | BN_init(&(ctx->N)); | ||
306 | BN_init(&(ctx->Ni)); | ||
307 | ctx->flags=0; | ||
308 | } | ||
309 | |||
310 | void BN_MONT_CTX_free(BN_MONT_CTX *mont) | ||
311 | { | ||
312 | if(mont == NULL) | ||
313 | return; | ||
314 | |||
315 | BN_free(&(mont->RR)); | ||
316 | BN_free(&(mont->N)); | ||
317 | BN_free(&(mont->Ni)); | ||
318 | if (mont->flags & BN_FLG_MALLOCED) | ||
319 | OPENSSL_free(mont); | ||
320 | } | ||
321 | |||
322 | int BN_MONT_CTX_set(BN_MONT_CTX *mont, const BIGNUM *mod, BN_CTX *ctx) | ||
323 | { | ||
324 | BIGNUM Ri,*R; | ||
325 | |||
326 | BN_init(&Ri); | ||
327 | R= &(mont->RR); /* grab RR as a temp */ | ||
328 | if (!BN_copy(&(mont->N),mod)) goto err; /* Set N */ | ||
329 | mont->N.neg = 0; | ||
330 | |||
331 | #ifdef MONT_WORD | ||
332 | { | ||
333 | BIGNUM tmod; | ||
334 | BN_ULONG buf[2]; | ||
335 | |||
336 | mont->ri=(BN_num_bits(mod)+(BN_BITS2-1))/BN_BITS2*BN_BITS2; | ||
337 | if (!(BN_zero(R))) goto err; | ||
338 | if (!(BN_set_bit(R,BN_BITS2))) goto err; /* R */ | ||
339 | |||
340 | buf[0]=mod->d[0]; /* tmod = N mod word size */ | ||
341 | buf[1]=0; | ||
342 | tmod.d=buf; | ||
343 | tmod.top=1; | ||
344 | tmod.dmax=2; | ||
345 | tmod.neg=0; | ||
346 | /* Ri = R^-1 mod N*/ | ||
347 | if ((BN_mod_inverse(&Ri,R,&tmod,ctx)) == NULL) | ||
348 | goto err; | ||
349 | if (!BN_lshift(&Ri,&Ri,BN_BITS2)) goto err; /* R*Ri */ | ||
350 | if (!BN_is_zero(&Ri)) | ||
351 | { | ||
352 | if (!BN_sub_word(&Ri,1)) goto err; | ||
353 | } | ||
354 | else /* if N mod word size == 1 */ | ||
355 | { | ||
356 | if (!BN_set_word(&Ri,BN_MASK2)) goto err; /* Ri-- (mod word size) */ | ||
357 | } | ||
358 | if (!BN_div(&Ri,NULL,&Ri,&tmod,ctx)) goto err; | ||
359 | /* Ni = (R*Ri-1)/N, | ||
360 | * keep only least significant word: */ | ||
361 | mont->n0 = (Ri.top > 0) ? Ri.d[0] : 0; | ||
362 | BN_free(&Ri); | ||
363 | } | ||
364 | #else /* !MONT_WORD */ | ||
365 | { /* bignum version */ | ||
366 | mont->ri=BN_num_bits(&mont->N); | ||
367 | if (!BN_zero(R)) goto err; | ||
368 | if (!BN_set_bit(R,mont->ri)) goto err; /* R = 2^ri */ | ||
369 | /* Ri = R^-1 mod N*/ | ||
370 | if ((BN_mod_inverse(&Ri,R,&mont->N,ctx)) == NULL) | ||
371 | goto err; | ||
372 | if (!BN_lshift(&Ri,&Ri,mont->ri)) goto err; /* R*Ri */ | ||
373 | if (!BN_sub_word(&Ri,1)) goto err; | ||
374 | /* Ni = (R*Ri-1) / N */ | ||
375 | if (!BN_div(&(mont->Ni),NULL,&Ri,&mont->N,ctx)) goto err; | ||
376 | BN_free(&Ri); | ||
377 | } | ||
378 | #endif | ||
379 | |||
380 | /* setup RR for conversions */ | ||
381 | if (!BN_zero(&(mont->RR))) goto err; | ||
382 | if (!BN_set_bit(&(mont->RR),mont->ri*2)) goto err; | ||
383 | if (!BN_mod(&(mont->RR),&(mont->RR),&(mont->N),ctx)) goto err; | ||
384 | |||
385 | return(1); | ||
386 | err: | ||
387 | return(0); | ||
388 | } | ||
389 | |||
390 | BN_MONT_CTX *BN_MONT_CTX_copy(BN_MONT_CTX *to, BN_MONT_CTX *from) | ||
391 | { | ||
392 | if (to == from) return(to); | ||
393 | |||
394 | if (!BN_copy(&(to->RR),&(from->RR))) return NULL; | ||
395 | if (!BN_copy(&(to->N),&(from->N))) return NULL; | ||
396 | if (!BN_copy(&(to->Ni),&(from->Ni))) return NULL; | ||
397 | to->ri=from->ri; | ||
398 | to->n0=from->n0; | ||
399 | return(to); | ||
400 | } | ||
401 | |||
402 | BN_MONT_CTX *BN_MONT_CTX_set_locked(BN_MONT_CTX **pmont, int lock, | ||
403 | const BIGNUM *mod, BN_CTX *ctx) | ||
404 | { | ||
405 | if (*pmont) | ||
406 | return *pmont; | ||
407 | CRYPTO_w_lock(lock); | ||
408 | if (!*pmont) | ||
409 | { | ||
410 | *pmont = BN_MONT_CTX_new(); | ||
411 | if (*pmont && !BN_MONT_CTX_set(*pmont, mod, ctx)) | ||
412 | { | ||
413 | BN_MONT_CTX_free(*pmont); | ||
414 | *pmont = NULL; | ||
415 | } | ||
416 | } | ||
417 | CRYPTO_w_unlock(lock); | ||
418 | return *pmont; | ||
419 | } | ||
420 | |||
421 | |||