math/mpreduce.h: Missing include files.
[u/mdw/catacomb] / math / mpmont.c
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d3409d5e 1/* -*-c-*-
2 *
d3409d5e 3 * Montgomery reduction
4 *
5 * (c) 1999 Straylight/Edgeware
6 */
7
45c0fd36 8/*----- Licensing notice --------------------------------------------------*
d3409d5e 9 *
10 * This file is part of Catacomb.
11 *
12 * Catacomb is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU Library General Public License as
14 * published by the Free Software Foundation; either version 2 of the
15 * License, or (at your option) any later version.
45c0fd36 16 *
d3409d5e 17 * Catacomb is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU Library General Public License for more details.
45c0fd36 21 *
d3409d5e 22 * You should have received a copy of the GNU Library General Public
23 * License along with Catacomb; if not, write to the Free
24 * Software Foundation, Inc., 59 Temple Place - Suite 330, Boston,
25 * MA 02111-1307, USA.
26 */
27
d3409d5e 28/*----- Header files ------------------------------------------------------*/
29
30#include "mp.h"
31#include "mpmont.h"
32
52e4b041 33/*----- Tweakables --------------------------------------------------------*/
34
35/* --- @MPMONT_DISABLE@ --- *
36 *
37 * Replace all the clever Montgomery reduction with good old-fashioned long
38 * division.
39 */
40
41/* #define MPMONT_DISABLE */
42
4640a0dd 43/*----- Reduction and multiplication --------------------------------------*/
d3409d5e 44
45/* --- @mpmont_create@ --- *
46 *
47 * Arguments: @mpmont *mm@ = pointer to Montgomery reduction context
48 * @mp *m@ = modulus to use
49 *
f4535c64 50 * Returns: Zero on success, nonzero on error.
d3409d5e 51 *
52 * Use: Initializes a Montgomery reduction context ready for use.
ef5f4810 53 * The argument @m@ must be a positive odd integer.
d3409d5e 54 */
55
52e4b041 56#ifdef MPMONT_DISABLE
57
f4535c64 58int mpmont_create(mpmont *mm, mp *m)
52e4b041 59{
60 mp_shrink(m);
61 mm->m = MP_COPY(m);
62 mm->r = MP_ONE;
63 mm->r2 = MP_ONE;
f5f35081 64 mm->mi = MP_ONE;
f4535c64 65 return (0);
52e4b041 66}
67
68#else
69
f4535c64 70int mpmont_create(mpmont *mm, mp *m)
d3409d5e 71{
f5f35081 72 size_t n = MP_LEN(m);
d34decd2 73 mp *r2 = mp_new(2 * n + 1, 0);
f5f35081 74 mp r;
75
d3409d5e 76 /* --- Take a copy of the modulus --- */
77
f4535c64 78 if (!MP_POSP(m) || !MP_ODDP(m))
79 return (-1);
d3409d5e 80 mm->m = MP_COPY(m);
81
f5f35081 82 /* --- Determine %$R^2$% --- */
d3409d5e 83
f5f35081 84 mm->n = n;
85 MPX_ZERO(r2->v, r2->vl - 1);
86 r2->vl[-1] = 1;
d3409d5e 87
f5f35081 88 /* --- Find the magic value @mi@ --- */
89
90 mp_build(&r, r2->v + n, r2->vl);
b817bfc6 91 mm->mi = mp_modinv(MP_NEW, m, &r);
f5f35081 92 mm->mi = mp_sub(mm->mi, &r, mm->mi);
d3409d5e 93
94 /* --- Discover the values %$R \bmod m$% and %$R^2 \bmod m$% --- */
95
f5f35081 96 mm->r2 = MP_NEW;
97 mp_div(0, &mm->r2, r2, m);
98 mm->r = mpmont_reduce(mm, MP_NEW, mm->r2);
99 MP_DROP(r2);
f4535c64 100 return (0);
d3409d5e 101}
102
52e4b041 103#endif
104
d3409d5e 105/* --- @mpmont_destroy@ --- *
106 *
107 * Arguments: @mpmont *mm@ = pointer to a Montgomery reduction context
108 *
109 * Returns: ---
110 *
111 * Use: Disposes of a context when it's no longer of any use to
112 * anyone.
113 */
114
115void mpmont_destroy(mpmont *mm)
116{
117 MP_DROP(mm->m);
118 MP_DROP(mm->r);
119 MP_DROP(mm->r2);
f5f35081 120 MP_DROP(mm->mi);
d3409d5e 121}
122
123/* --- @mpmont_reduce@ --- *
124 *
125 * Arguments: @mpmont *mm@ = pointer to Montgomery reduction context
126 * @mp *d@ = destination
ef5f4810 127 * @mp *a@ = source, assumed positive
d3409d5e 128 *
129 * Returns: Result, %$a R^{-1} \bmod m$%.
130 */
131
52e4b041 132#ifdef MPMONT_DISABLE
133
ef5f4810 134mp *mpmont_reduce(mpmont *mm, mp *d, mp *a)
52e4b041 135{
136 mp_div(0, &d, a, mm->m);
137 return (d);
138}
139
140#else
141
ef5f4810 142mp *mpmont_reduce(mpmont *mm, mp *d, mp *a)
d3409d5e 143{
f5f35081 144 size_t n = mm->n;
145
146 /* --- Check for serious Karatsuba reduction --- */
147
52cdaca9 148 if (n > MPK_THRESH * 3) {
f5f35081 149 mp al;
150 mpw *vl;
151 mp *u;
152
153 if (MP_LEN(a) >= n)
154 vl = a->v + n;
155 else
156 vl = a->vl;
157 mp_build(&al, a->v, vl);
158 u = mp_mul(MP_NEW, &al, mm->mi);
159 if (MP_LEN(u) > n)
160 u->vl = u->v + n;
161 u = mp_mul(u, u, mm->m);
162 d = mp_add(d, a, u);
163 mp_drop(u);
164 }
d3409d5e 165
f5f35081 166 /* --- Otherwise do it the hard way --- */
d3409d5e 167
d3409d5e 168 else {
f5f35081 169 mpw *dv, *dvl;
170 mpw *mv, *mvl;
171 mpw mi;
172 size_t k = n;
173
174 /* --- Initial conditioning of the arguments --- */
175
d34decd2 176 a = MP_COPY(a);
177 if (d)
178 MP_DROP(d);
179 d = a;
180 MP_DEST(d, 2 * n + 1, a->f);
181
f5f35081 182 dv = d->v; dvl = d->vl;
183 mv = mm->m->v; mvl = mm->m->vl;
d3409d5e 184
f5f35081 185 /* --- Let's go to work --- */
d3409d5e 186
f5f35081 187 mi = mm->mi->v[0];
188 while (k--) {
189 mpw u = MPW(*dv * mi);
190 MPX_UMLAN(dv, dvl, mv, mvl, u);
191 dv++;
192 }
d3409d5e 193 }
194
f5f35081 195 /* --- Wrap everything up --- */
d3409d5e 196
f5f35081 197 memmove(d->v, d->v + n, MPWS(MP_LEN(d) - n));
198 d->vl -= n;
032099d1 199 if (MPX_UCMP(d->v, d->vl, >=, mm->m->v, mm->m->vl))
200 mpx_usub(d->v, d->vl, d->v, d->vl, mm->m->v, mm->m->vl);
201 if (d->f & MP_NEG) {
202 mpx_usub(d->v, d->vl, mm->m->v, mm->m->vl, d->v, d->vl);
203 d->f &= ~MP_NEG;
204 }
f5f35081 205 MP_SHRINK(d);
d3409d5e 206 return (d);
207}
208
52e4b041 209#endif
210
d3409d5e 211/* --- @mpmont_mul@ --- *
212 *
213 * Arguments: @mpmont *mm@ = pointer to Montgomery reduction context
214 * @mp *d@ = destination
ef5f4810 215 * @mp *a, *b@ = sources, assumed positive
d3409d5e 216 *
217 * Returns: Result, %$a b R^{-1} \bmod m$%.
218 */
219
52e4b041 220#ifdef MPMONT_DISABLE
221
ef5f4810 222mp *mpmont_mul(mpmont *mm, mp *d, mp *a, mp *b)
52e4b041 223{
224 d = mp_mul(d, a, b);
225 mp_div(0, &d, d, mm->m);
226 return (d);
227}
228
229#else
230
ef5f4810 231mp *mpmont_mul(mpmont *mm, mp *d, mp *a, mp *b)
d3409d5e 232{
52cdaca9 233 if (mm->n > MPK_THRESH * 3) {
ef5f4810 234 d = mp_mul(d, a, b);
235 d = mpmont_reduce(mm, d, d);
236 } else {
237 mpw *dv, *dvl;
238 mpw *av, *avl;
239 mpw *bv, *bvl;
240 mpw *mv, *mvl;
241 mpw y;
242 size_t n, i;
f5f35081 243 mpw mi;
ef5f4810 244
245 /* --- Initial conditioning of the arguments --- */
246
247 if (MP_LEN(a) > MP_LEN(b)) {
248 mp *t = a; a = b; b = t;
249 }
250 n = MP_LEN(mm->m);
d3409d5e 251
ef5f4810 252 a = MP_COPY(a);
253 b = MP_COPY(b);
d34decd2 254 MP_DEST(d, 2 * n + 1, a->f | b->f | MP_UNDEF);
ef5f4810 255 dv = d->v; dvl = d->vl;
256 MPX_ZERO(dv, dvl);
257 av = a->v; avl = a->vl;
258 bv = b->v; bvl = b->vl;
259 mv = mm->m->v; mvl = mm->m->vl;
260 y = *bv;
261
262 /* --- Montgomery multiplication phase --- */
263
264 i = 0;
f5f35081 265 mi = mm->mi->v[0];
ef5f4810 266 while (i < n && av < avl) {
267 mpw x = *av++;
f5f35081 268 mpw u = MPW((*dv + x * y) * mi);
ef5f4810 269 MPX_UMLAN(dv, dvl, bv, bvl, x);
270 MPX_UMLAN(dv, dvl, mv, mvl, u);
271 dv++;
272 i++;
273 }
d3409d5e 274
ef5f4810 275 /* --- Simpler Montgomery reduction phase --- */
d3409d5e 276
ef5f4810 277 while (i < n) {
f5f35081 278 mpw u = MPW(*dv * mi);
ef5f4810 279 MPX_UMLAN(dv, dvl, mv, mvl, u);
280 dv++;
281 i++;
282 }
d3409d5e 283
ef5f4810 284 /* --- Done --- */
d3409d5e 285
ef5f4810 286 memmove(d->v, dv, MPWS(dvl - dv));
287 d->vl -= dv - d->v;
032099d1 288 if (MPX_UCMP(d->v, d->vl, >=, mm->m->v, mm->m->vl))
289 mpx_usub(d->v, d->vl, d->v, d->vl, mm->m->v, mm->m->vl);
290 if ((a->f ^ b->f) & MP_NEG)
291 mpx_usub(d->v, d->vl, mm->m->v, mm->m->vl, d->v, d->vl);
ef5f4810 292 MP_SHRINK(d);
293 d->f = (a->f | b->f) & MP_BURN;
ef5f4810 294 MP_DROP(a);
295 MP_DROP(b);
d3409d5e 296 }
297
d3409d5e 298 return (d);
299}
300
52e4b041 301#endif
302
d3409d5e 303/*----- Test rig ----------------------------------------------------------*/
304
305#ifdef TEST_RIG
306
307static int tcreate(dstr *v)
308{
309 mp *m = *(mp **)v[0].buf;
310 mp *mi = *(mp **)v[1].buf;
311 mp *r = *(mp **)v[2].buf;
312 mp *r2 = *(mp **)v[3].buf;
313
314 mpmont mm;
315 int ok = 1;
316
317 mpmont_create(&mm, m);
318
f5f35081 319 if (mm.mi->v[0] != mi->v[0]) {
d3409d5e 320 fprintf(stderr, "\n*** bad mi: found %lu, expected %lu",
f5f35081 321 (unsigned long)mm.mi->v[0], (unsigned long)mi->v[0]);
d3409d5e 322 fputs("\nm = ", stderr); mp_writefile(m, stderr, 10);
323 fputc('\n', stderr);
324 ok = 0;
325 }
326
032099d1 327 if (!MP_EQ(mm.r, r)) {
d3409d5e 328 fputs("\n*** bad r", stderr);
329 fputs("\nm = ", stderr); mp_writefile(m, stderr, 10);
330 fputs("\nexpected ", stderr); mp_writefile(r, stderr, 10);
45c0fd36 331 fputs("\n found ", stderr); mp_writefile(mm.r, stderr, 10);
d3409d5e 332 fputc('\n', stderr);
333 ok = 0;
334 }
335
032099d1 336 if (!MP_EQ(mm.r2, r2)) {
d3409d5e 337 fputs("\n*** bad r2", stderr);
338 fputs("\nm = ", stderr); mp_writefile(m, stderr, 10);
339 fputs("\nexpected ", stderr); mp_writefile(r2, stderr, 10);
45c0fd36 340 fputs("\n found ", stderr); mp_writefile(mm.r2, stderr, 10);
d3409d5e 341 fputc('\n', stderr);
342 ok = 0;
343 }
344
345 MP_DROP(m);
346 MP_DROP(mi);
347 MP_DROP(r);
348 MP_DROP(r2);
349 mpmont_destroy(&mm);
ef5f4810 350 assert(mparena_count(MPARENA_GLOBAL) == 0);
d3409d5e 351 return (ok);
352}
353
354static int tmul(dstr *v)
355{
356 mp *m = *(mp **)v[0].buf;
357 mp *a = *(mp **)v[1].buf;
358 mp *b = *(mp **)v[2].buf;
359 mp *r = *(mp **)v[3].buf;
d3409d5e 360 int ok = 1;
361
362 mpmont mm;
363 mpmont_create(&mm, m);
364
365 {
79a34029 366 mp *qr = mp_mul(MP_NEW, a, b);
367 mp_div(0, &qr, qr, m);
368
032099d1 369 if (!MP_EQ(qr, r)) {
79a34029 370 fputs("\n*** classical modmul failed", stderr);
371 fputs("\n m = ", stderr); mp_writefile(m, stderr, 10);
372 fputs("\n a = ", stderr); mp_writefile(a, stderr, 10);
373 fputs("\n b = ", stderr); mp_writefile(b, stderr, 10);
374 fputs("\n r = ", stderr); mp_writefile(r, stderr, 10);
375 fputs("\nqr = ", stderr); mp_writefile(qr, stderr, 10);
376 fputc('\n', stderr);
377 ok = 0;
378 }
379
380 mp_drop(qr);
381 }
382
383 {
d3409d5e 384 mp *ar = mpmont_mul(&mm, MP_NEW, a, mm.r2);
385 mp *br = mpmont_mul(&mm, MP_NEW, b, mm.r2);
79a34029 386 mp *mr = mpmont_mul(&mm, MP_NEW, ar, br);
d3409d5e 387 mr = mpmont_reduce(&mm, mr, mr);
032099d1 388 if (!MP_EQ(mr, r)) {
79a34029 389 fputs("\n*** montgomery modmul failed", stderr);
390 fputs("\n m = ", stderr); mp_writefile(m, stderr, 10);
391 fputs("\n a = ", stderr); mp_writefile(a, stderr, 10);
392 fputs("\n b = ", stderr); mp_writefile(b, stderr, 10);
393 fputs("\n r = ", stderr); mp_writefile(r, stderr, 10);
394 fputs("\nmr = ", stderr); mp_writefile(mr, stderr, 10);
395 fputc('\n', stderr);
396 ok = 0;
397 }
d3409d5e 398 MP_DROP(ar); MP_DROP(br);
79a34029 399 mp_drop(mr);
d3409d5e 400 }
401
d3409d5e 402
403 MP_DROP(m);
404 MP_DROP(a);
405 MP_DROP(b);
406 MP_DROP(r);
d3409d5e 407 mpmont_destroy(&mm);
ef5f4810 408 assert(mparena_count(MPARENA_GLOBAL) == 0);
d3409d5e 409 return ok;
410}
411
d3409d5e 412static test_chunk tests[] = {
ef5f4810 413 { "create", tcreate, { &type_mp, &type_mp, &type_mp, &type_mp, 0 } },
414 { "mul", tmul, { &type_mp, &type_mp, &type_mp, &type_mp, 0 } },
d3409d5e 415 { 0, 0, { 0 } },
416};
417
418int main(int argc, char *argv[])
419{
420 sub_init();
0f00dc4c 421 test_run(argc, argv, tests, SRCDIR "/t/mpmont");
d3409d5e 422 return (0);
423}
424
425#endif
426
427/*----- That's all, folks -------------------------------------------------*/