demo.c 17 KB

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  1. #include <time.h>
  2. #ifdef IOWNANATHLON
  3. #include <unistd.h>
  4. #define SLEEP sleep(4)
  5. #else
  6. #define SLEEP
  7. #endif
  8. #include "tommath.h"
  9. void ndraw(mp_int * a, char *name)
  10. {
  11. char buf[16000];
  12. printf("%s: ", name);
  13. mp_toradix(a, buf, 10);
  14. printf("%s\n", buf);
  15. }
  16. static void draw(mp_int * a)
  17. {
  18. ndraw(a, "");
  19. }
  20. unsigned long lfsr = 0xAAAAAAAAUL;
  21. int lbit(void)
  22. {
  23. if (lfsr & 0x80000000UL) {
  24. lfsr = ((lfsr << 1) ^ 0x8000001BUL) & 0xFFFFFFFFUL;
  25. return 1;
  26. } else {
  27. lfsr <<= 1;
  28. return 0;
  29. }
  30. }
  31. int myrng(unsigned char *dst, int len, void *dat)
  32. {
  33. int x;
  34. for (x = 0; x < len; x++)
  35. dst[x] = rand() & 0xFF;
  36. return len;
  37. }
  38. char cmd[4096], buf[4096];
  39. int main(void)
  40. {
  41. mp_int a, b, c, d, e, f;
  42. unsigned long expt_n, add_n, sub_n, mul_n, div_n, sqr_n, mul2d_n, div2d_n,
  43. gcd_n, lcm_n, inv_n, div2_n, mul2_n, add_d_n, sub_d_n, t;
  44. unsigned rr;
  45. int i, n, err, cnt, ix, old_kara_m, old_kara_s;
  46. mp_digit mp;
  47. mp_init(&a);
  48. mp_init(&b);
  49. mp_init(&c);
  50. mp_init(&d);
  51. mp_init(&e);
  52. mp_init(&f);
  53. srand(time(NULL));
  54. #if 0
  55. // test montgomery
  56. printf("Testing montgomery...\n");
  57. for (i = 1; i < 10; i++) {
  58. printf("Testing digit size: %d\n", i);
  59. for (n = 0; n < 1000; n++) {
  60. mp_rand(&a, i);
  61. a.dp[0] |= 1;
  62. // let's see if R is right
  63. mp_montgomery_calc_normalization(&b, &a);
  64. mp_montgomery_setup(&a, &mp);
  65. // now test a random reduction
  66. for (ix = 0; ix < 100; ix++) {
  67. mp_rand(&c, 1 + abs(rand()) % (2*i));
  68. mp_copy(&c, &d);
  69. mp_copy(&c, &e);
  70. mp_mod(&d, &a, &d);
  71. mp_montgomery_reduce(&c, &a, mp);
  72. mp_mulmod(&c, &b, &a, &c);
  73. if (mp_cmp(&c, &d) != MP_EQ) {
  74. printf("d = e mod a, c = e MOD a\n");
  75. mp_todecimal(&a, buf); printf("a = %s\n", buf);
  76. mp_todecimal(&e, buf); printf("e = %s\n", buf);
  77. mp_todecimal(&d, buf); printf("d = %s\n", buf);
  78. mp_todecimal(&c, buf); printf("c = %s\n", buf);
  79. printf("compare no compare!\n"); exit(EXIT_FAILURE); }
  80. }
  81. }
  82. }
  83. printf("done\n");
  84. // test mp_get_int
  85. printf("Testing: mp_get_int\n");
  86. for (i = 0; i < 1000; ++i) {
  87. t = ((unsigned long) rand() * rand() + 1) & 0xFFFFFFFF;
  88. mp_set_int(&a, t);
  89. if (t != mp_get_int(&a)) {
  90. printf("mp_get_int() bad result!\n");
  91. return 1;
  92. }
  93. }
  94. mp_set_int(&a, 0);
  95. if (mp_get_int(&a) != 0) {
  96. printf("mp_get_int() bad result!\n");
  97. return 1;
  98. }
  99. mp_set_int(&a, 0xffffffff);
  100. if (mp_get_int(&a) != 0xffffffff) {
  101. printf("mp_get_int() bad result!\n");
  102. return 1;
  103. }
  104. // test mp_sqrt
  105. printf("Testing: mp_sqrt\n");
  106. for (i = 0; i < 1000; ++i) {
  107. printf("%6d\r", i);
  108. fflush(stdout);
  109. n = (rand() & 15) + 1;
  110. mp_rand(&a, n);
  111. if (mp_sqrt(&a, &b) != MP_OKAY) {
  112. printf("mp_sqrt() error!\n");
  113. return 1;
  114. }
  115. mp_n_root(&a, 2, &a);
  116. if (mp_cmp_mag(&b, &a) != MP_EQ) {
  117. printf("mp_sqrt() bad result!\n");
  118. return 1;
  119. }
  120. }
  121. printf("\nTesting: mp_is_square\n");
  122. for (i = 0; i < 1000; ++i) {
  123. printf("%6d\r", i);
  124. fflush(stdout);
  125. /* test mp_is_square false negatives */
  126. n = (rand() & 7) + 1;
  127. mp_rand(&a, n);
  128. mp_sqr(&a, &a);
  129. if (mp_is_square(&a, &n) != MP_OKAY) {
  130. printf("fn:mp_is_square() error!\n");
  131. return 1;
  132. }
  133. if (n == 0) {
  134. printf("fn:mp_is_square() bad result!\n");
  135. return 1;
  136. }
  137. /* test for false positives */
  138. mp_add_d(&a, 1, &a);
  139. if (mp_is_square(&a, &n) != MP_OKAY) {
  140. printf("fp:mp_is_square() error!\n");
  141. return 1;
  142. }
  143. if (n == 1) {
  144. printf("fp:mp_is_square() bad result!\n");
  145. return 1;
  146. }
  147. }
  148. printf("\n\n");
  149. /* test for size */
  150. for (ix = 10; ix < 128; ix++) {
  151. printf("Testing (not safe-prime): %9d bits \r", ix);
  152. fflush(stdout);
  153. err =
  154. mp_prime_random_ex(&a, 8, ix,
  155. (rand() & 1) ? LTM_PRIME_2MSB_OFF :
  156. LTM_PRIME_2MSB_ON, myrng, NULL);
  157. if (err != MP_OKAY) {
  158. printf("failed with err code %d\n", err);
  159. return EXIT_FAILURE;
  160. }
  161. if (mp_count_bits(&a) != ix) {
  162. printf("Prime is %d not %d bits!!!\n", mp_count_bits(&a), ix);
  163. return EXIT_FAILURE;
  164. }
  165. }
  166. for (ix = 16; ix < 128; ix++) {
  167. printf("Testing ( safe-prime): %9d bits \r", ix);
  168. fflush(stdout);
  169. err =
  170. mp_prime_random_ex(&a, 8, ix,
  171. ((rand() & 1) ? LTM_PRIME_2MSB_OFF :
  172. LTM_PRIME_2MSB_ON) | LTM_PRIME_SAFE, myrng,
  173. NULL);
  174. if (err != MP_OKAY) {
  175. printf("failed with err code %d\n", err);
  176. return EXIT_FAILURE;
  177. }
  178. if (mp_count_bits(&a) != ix) {
  179. printf("Prime is %d not %d bits!!!\n", mp_count_bits(&a), ix);
  180. return EXIT_FAILURE;
  181. }
  182. /* let's see if it's really a safe prime */
  183. mp_sub_d(&a, 1, &a);
  184. mp_div_2(&a, &a);
  185. mp_prime_is_prime(&a, 8, &cnt);
  186. if (cnt != MP_YES) {
  187. printf("sub is not prime!\n");
  188. return EXIT_FAILURE;
  189. }
  190. }
  191. printf("\n\n");
  192. mp_read_radix(&a, "123456", 10);
  193. mp_toradix_n(&a, buf, 10, 3);
  194. printf("a == %s\n", buf);
  195. mp_toradix_n(&a, buf, 10, 4);
  196. printf("a == %s\n", buf);
  197. mp_toradix_n(&a, buf, 10, 30);
  198. printf("a == %s\n", buf);
  199. #if 0
  200. for (;;) {
  201. fgets(buf, sizeof(buf), stdin);
  202. mp_read_radix(&a, buf, 10);
  203. mp_prime_next_prime(&a, 5, 1);
  204. mp_toradix(&a, buf, 10);
  205. printf("%s, %lu\n", buf, a.dp[0] & 3);
  206. }
  207. #endif
  208. /* test mp_cnt_lsb */
  209. printf("testing mp_cnt_lsb...\n");
  210. mp_set(&a, 1);
  211. for (ix = 0; ix < 1024; ix++) {
  212. if (mp_cnt_lsb(&a) != ix) {
  213. printf("Failed at %d, %d\n", ix, mp_cnt_lsb(&a));
  214. return 0;
  215. }
  216. mp_mul_2(&a, &a);
  217. }
  218. /* test mp_reduce_2k */
  219. printf("Testing mp_reduce_2k...\n");
  220. for (cnt = 3; cnt <= 128; ++cnt) {
  221. mp_digit tmp;
  222. mp_2expt(&a, cnt);
  223. mp_sub_d(&a, 2, &a); /* a = 2**cnt - 2 */
  224. printf("\nTesting %4d bits", cnt);
  225. printf("(%d)", mp_reduce_is_2k(&a));
  226. mp_reduce_2k_setup(&a, &tmp);
  227. printf("(%d)", tmp);
  228. for (ix = 0; ix < 1000; ix++) {
  229. if (!(ix & 127)) {
  230. printf(".");
  231. fflush(stdout);
  232. }
  233. mp_rand(&b, (cnt / DIGIT_BIT + 1) * 2);
  234. mp_copy(&c, &b);
  235. mp_mod(&c, &a, &c);
  236. mp_reduce_2k(&b, &a, 2);
  237. if (mp_cmp(&c, &b)) {
  238. printf("FAILED\n");
  239. exit(0);
  240. }
  241. }
  242. }
  243. /* test mp_div_3 */
  244. printf("Testing mp_div_3...\n");
  245. mp_set(&d, 3);
  246. for (cnt = 0; cnt < 10000;) {
  247. mp_digit r1, r2;
  248. if (!(++cnt & 127))
  249. printf("%9d\r", cnt);
  250. mp_rand(&a, abs(rand()) % 128 + 1);
  251. mp_div(&a, &d, &b, &e);
  252. mp_div_3(&a, &c, &r2);
  253. if (mp_cmp(&b, &c) || mp_cmp_d(&e, r2)) {
  254. printf("\n\nmp_div_3 => Failure\n");
  255. }
  256. }
  257. printf("\n\nPassed div_3 testing\n");
  258. /* test the DR reduction */
  259. printf("testing mp_dr_reduce...\n");
  260. for (cnt = 2; cnt < 32; cnt++) {
  261. printf("%d digit modulus\n", cnt);
  262. mp_grow(&a, cnt);
  263. mp_zero(&a);
  264. for (ix = 1; ix < cnt; ix++) {
  265. a.dp[ix] = MP_MASK;
  266. }
  267. a.used = cnt;
  268. a.dp[0] = 3;
  269. mp_rand(&b, cnt - 1);
  270. mp_copy(&b, &c);
  271. rr = 0;
  272. do {
  273. if (!(rr & 127)) {
  274. printf("%9lu\r", rr);
  275. fflush(stdout);
  276. }
  277. mp_sqr(&b, &b);
  278. mp_add_d(&b, 1, &b);
  279. mp_copy(&b, &c);
  280. mp_mod(&b, &a, &b);
  281. mp_dr_reduce(&c, &a, (((mp_digit) 1) << DIGIT_BIT) - a.dp[0]);
  282. if (mp_cmp(&b, &c) != MP_EQ) {
  283. printf("Failed on trial %lu\n", rr);
  284. exit(-1);
  285. }
  286. } while (++rr < 500);
  287. printf("Passed DR test for %d digits\n", cnt);
  288. }
  289. #endif
  290. /* test the mp_reduce_2k_l code */
  291. #if 0
  292. #if 0
  293. /* first load P with 2^1024 - 0x2A434 B9FDEC95 D8F9D550 FFFFFFFF FFFFFFFF */
  294. mp_2expt(&a, 1024);
  295. mp_read_radix(&b, "2A434B9FDEC95D8F9D550FFFFFFFFFFFFFFFF", 16);
  296. mp_sub(&a, &b, &a);
  297. #elif 1
  298. /* p = 2^2048 - 0x1 00000000 00000000 00000000 00000000 4945DDBF 8EA2A91D 5776399B B83E188F */
  299. mp_2expt(&a, 2048);
  300. mp_read_radix(&b,
  301. "1000000000000000000000000000000004945DDBF8EA2A91D5776399BB83E188F",
  302. 16);
  303. mp_sub(&a, &b, &a);
  304. #endif
  305. mp_todecimal(&a, buf);
  306. printf("p==%s\n", buf);
  307. /* now mp_reduce_is_2k_l() should return */
  308. if (mp_reduce_is_2k_l(&a) != 1) {
  309. printf("mp_reduce_is_2k_l() return 0, should be 1\n");
  310. return EXIT_FAILURE;
  311. }
  312. mp_reduce_2k_setup_l(&a, &d);
  313. /* now do a million square+1 to see if it varies */
  314. mp_rand(&b, 64);
  315. mp_mod(&b, &a, &b);
  316. mp_copy(&b, &c);
  317. printf("testing mp_reduce_2k_l...");
  318. fflush(stdout);
  319. for (cnt = 0; cnt < (1UL << 20); cnt++) {
  320. mp_sqr(&b, &b);
  321. mp_add_d(&b, 1, &b);
  322. mp_reduce_2k_l(&b, &a, &d);
  323. mp_sqr(&c, &c);
  324. mp_add_d(&c, 1, &c);
  325. mp_mod(&c, &a, &c);
  326. if (mp_cmp(&b, &c) != MP_EQ) {
  327. printf("mp_reduce_2k_l() failed at step %lu\n", cnt);
  328. mp_tohex(&b, buf);
  329. printf("b == %s\n", buf);
  330. mp_tohex(&c, buf);
  331. printf("c == %s\n", buf);
  332. return EXIT_FAILURE;
  333. }
  334. }
  335. printf("...Passed\n");
  336. #endif
  337. div2_n = mul2_n = inv_n = expt_n = lcm_n = gcd_n = add_n =
  338. sub_n = mul_n = div_n = sqr_n = mul2d_n = div2d_n = cnt = add_d_n =
  339. sub_d_n = 0;
  340. /* force KARA and TOOM to enable despite cutoffs */
  341. KARATSUBA_SQR_CUTOFF = KARATSUBA_MUL_CUTOFF = 8;
  342. TOOM_SQR_CUTOFF = TOOM_MUL_CUTOFF = 16;
  343. for (;;) {
  344. /* randomly clear and re-init one variable, this has the affect of triming the alloc space */
  345. switch (abs(rand()) % 7) {
  346. case 0:
  347. mp_clear(&a);
  348. mp_init(&a);
  349. break;
  350. case 1:
  351. mp_clear(&b);
  352. mp_init(&b);
  353. break;
  354. case 2:
  355. mp_clear(&c);
  356. mp_init(&c);
  357. break;
  358. case 3:
  359. mp_clear(&d);
  360. mp_init(&d);
  361. break;
  362. case 4:
  363. mp_clear(&e);
  364. mp_init(&e);
  365. break;
  366. case 5:
  367. mp_clear(&f);
  368. mp_init(&f);
  369. break;
  370. case 6:
  371. break; /* don't clear any */
  372. }
  373. printf
  374. ("%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu/%4lu ",
  375. add_n, sub_n, mul_n, div_n, sqr_n, mul2d_n, div2d_n, gcd_n, lcm_n,
  376. expt_n, inv_n, div2_n, mul2_n, add_d_n, sub_d_n);
  377. fgets(cmd, 4095, stdin);
  378. cmd[strlen(cmd) - 1] = 0;
  379. printf("%s ]\r", cmd);
  380. fflush(stdout);
  381. if (!strcmp(cmd, "mul2d")) {
  382. ++mul2d_n;
  383. fgets(buf, 4095, stdin);
  384. mp_read_radix(&a, buf, 64);
  385. fgets(buf, 4095, stdin);
  386. sscanf(buf, "%d", &rr);
  387. fgets(buf, 4095, stdin);
  388. mp_read_radix(&b, buf, 64);
  389. mp_mul_2d(&a, rr, &a);
  390. a.sign = b.sign;
  391. if (mp_cmp(&a, &b) != MP_EQ) {
  392. printf("mul2d failed, rr == %d\n", rr);
  393. draw(&a);
  394. draw(&b);
  395. return 0;
  396. }
  397. } else if (!strcmp(cmd, "div2d")) {
  398. ++div2d_n;
  399. fgets(buf, 4095, stdin);
  400. mp_read_radix(&a, buf, 64);
  401. fgets(buf, 4095, stdin);
  402. sscanf(buf, "%d", &rr);
  403. fgets(buf, 4095, stdin);
  404. mp_read_radix(&b, buf, 64);
  405. mp_div_2d(&a, rr, &a, &e);
  406. a.sign = b.sign;
  407. if (a.used == b.used && a.used == 0) {
  408. a.sign = b.sign = MP_ZPOS;
  409. }
  410. if (mp_cmp(&a, &b) != MP_EQ) {
  411. printf("div2d failed, rr == %d\n", rr);
  412. draw(&a);
  413. draw(&b);
  414. return 0;
  415. }
  416. } else if (!strcmp(cmd, "add")) {
  417. ++add_n;
  418. fgets(buf, 4095, stdin);
  419. mp_read_radix(&a, buf, 64);
  420. fgets(buf, 4095, stdin);
  421. mp_read_radix(&b, buf, 64);
  422. fgets(buf, 4095, stdin);
  423. mp_read_radix(&c, buf, 64);
  424. mp_copy(&a, &d);
  425. mp_add(&d, &b, &d);
  426. if (mp_cmp(&c, &d) != MP_EQ) {
  427. printf("add %lu failure!\n", add_n);
  428. draw(&a);
  429. draw(&b);
  430. draw(&c);
  431. draw(&d);
  432. return 0;
  433. }
  434. /* test the sign/unsigned storage functions */
  435. rr = mp_signed_bin_size(&c);
  436. mp_to_signed_bin(&c, (unsigned char *) cmd);
  437. memset(cmd + rr, rand() & 255, sizeof(cmd) - rr);
  438. mp_read_signed_bin(&d, (unsigned char *) cmd, rr);
  439. if (mp_cmp(&c, &d) != MP_EQ) {
  440. printf("mp_signed_bin failure!\n");
  441. draw(&c);
  442. draw(&d);
  443. return 0;
  444. }
  445. rr = mp_unsigned_bin_size(&c);
  446. mp_to_unsigned_bin(&c, (unsigned char *) cmd);
  447. memset(cmd + rr, rand() & 255, sizeof(cmd) - rr);
  448. mp_read_unsigned_bin(&d, (unsigned char *) cmd, rr);
  449. if (mp_cmp_mag(&c, &d) != MP_EQ) {
  450. printf("mp_unsigned_bin failure!\n");
  451. draw(&c);
  452. draw(&d);
  453. return 0;
  454. }
  455. } else if (!strcmp(cmd, "sub")) {
  456. ++sub_n;
  457. fgets(buf, 4095, stdin);
  458. mp_read_radix(&a, buf, 64);
  459. fgets(buf, 4095, stdin);
  460. mp_read_radix(&b, buf, 64);
  461. fgets(buf, 4095, stdin);
  462. mp_read_radix(&c, buf, 64);
  463. mp_copy(&a, &d);
  464. mp_sub(&d, &b, &d);
  465. if (mp_cmp(&c, &d) != MP_EQ) {
  466. printf("sub %lu failure!\n", sub_n);
  467. draw(&a);
  468. draw(&b);
  469. draw(&c);
  470. draw(&d);
  471. return 0;
  472. }
  473. } else if (!strcmp(cmd, "mul")) {
  474. ++mul_n;
  475. fgets(buf, 4095, stdin);
  476. mp_read_radix(&a, buf, 64);
  477. fgets(buf, 4095, stdin);
  478. mp_read_radix(&b, buf, 64);
  479. fgets(buf, 4095, stdin);
  480. mp_read_radix(&c, buf, 64);
  481. mp_copy(&a, &d);
  482. mp_mul(&d, &b, &d);
  483. if (mp_cmp(&c, &d) != MP_EQ) {
  484. printf("mul %lu failure!\n", mul_n);
  485. draw(&a);
  486. draw(&b);
  487. draw(&c);
  488. draw(&d);
  489. return 0;
  490. }
  491. } else if (!strcmp(cmd, "div")) {
  492. ++div_n;
  493. fgets(buf, 4095, stdin);
  494. mp_read_radix(&a, buf, 64);
  495. fgets(buf, 4095, stdin);
  496. mp_read_radix(&b, buf, 64);
  497. fgets(buf, 4095, stdin);
  498. mp_read_radix(&c, buf, 64);
  499. fgets(buf, 4095, stdin);
  500. mp_read_radix(&d, buf, 64);
  501. mp_div(&a, &b, &e, &f);
  502. if (mp_cmp(&c, &e) != MP_EQ || mp_cmp(&d, &f) != MP_EQ) {
  503. printf("div %lu %d, %d, failure!\n", div_n, mp_cmp(&c, &e),
  504. mp_cmp(&d, &f));
  505. draw(&a);
  506. draw(&b);
  507. draw(&c);
  508. draw(&d);
  509. draw(&e);
  510. draw(&f);
  511. return 0;
  512. }
  513. } else if (!strcmp(cmd, "sqr")) {
  514. ++sqr_n;
  515. fgets(buf, 4095, stdin);
  516. mp_read_radix(&a, buf, 64);
  517. fgets(buf, 4095, stdin);
  518. mp_read_radix(&b, buf, 64);
  519. mp_copy(&a, &c);
  520. mp_sqr(&c, &c);
  521. if (mp_cmp(&b, &c) != MP_EQ) {
  522. printf("sqr %lu failure!\n", sqr_n);
  523. draw(&a);
  524. draw(&b);
  525. draw(&c);
  526. return 0;
  527. }
  528. } else if (!strcmp(cmd, "gcd")) {
  529. ++gcd_n;
  530. fgets(buf, 4095, stdin);
  531. mp_read_radix(&a, buf, 64);
  532. fgets(buf, 4095, stdin);
  533. mp_read_radix(&b, buf, 64);
  534. fgets(buf, 4095, stdin);
  535. mp_read_radix(&c, buf, 64);
  536. mp_copy(&a, &d);
  537. mp_gcd(&d, &b, &d);
  538. d.sign = c.sign;
  539. if (mp_cmp(&c, &d) != MP_EQ) {
  540. printf("gcd %lu failure!\n", gcd_n);
  541. draw(&a);
  542. draw(&b);
  543. draw(&c);
  544. draw(&d);
  545. return 0;
  546. }
  547. } else if (!strcmp(cmd, "lcm")) {
  548. ++lcm_n;
  549. fgets(buf, 4095, stdin);
  550. mp_read_radix(&a, buf, 64);
  551. fgets(buf, 4095, stdin);
  552. mp_read_radix(&b, buf, 64);
  553. fgets(buf, 4095, stdin);
  554. mp_read_radix(&c, buf, 64);
  555. mp_copy(&a, &d);
  556. mp_lcm(&d, &b, &d);
  557. d.sign = c.sign;
  558. if (mp_cmp(&c, &d) != MP_EQ) {
  559. printf("lcm %lu failure!\n", lcm_n);
  560. draw(&a);
  561. draw(&b);
  562. draw(&c);
  563. draw(&d);
  564. return 0;
  565. }
  566. } else if (!strcmp(cmd, "expt")) {
  567. ++expt_n;
  568. fgets(buf, 4095, stdin);
  569. mp_read_radix(&a, buf, 64);
  570. fgets(buf, 4095, stdin);
  571. mp_read_radix(&b, buf, 64);
  572. fgets(buf, 4095, stdin);
  573. mp_read_radix(&c, buf, 64);
  574. fgets(buf, 4095, stdin);
  575. mp_read_radix(&d, buf, 64);
  576. mp_copy(&a, &e);
  577. mp_exptmod(&e, &b, &c, &e);
  578. if (mp_cmp(&d, &e) != MP_EQ) {
  579. printf("expt %lu failure!\n", expt_n);
  580. draw(&a);
  581. draw(&b);
  582. draw(&c);
  583. draw(&d);
  584. draw(&e);
  585. return 0;
  586. }
  587. } else if (!strcmp(cmd, "invmod")) {
  588. ++inv_n;
  589. fgets(buf, 4095, stdin);
  590. mp_read_radix(&a, buf, 64);
  591. fgets(buf, 4095, stdin);
  592. mp_read_radix(&b, buf, 64);
  593. fgets(buf, 4095, stdin);
  594. mp_read_radix(&c, buf, 64);
  595. mp_invmod(&a, &b, &d);
  596. mp_mulmod(&d, &a, &b, &e);
  597. if (mp_cmp_d(&e, 1) != MP_EQ) {
  598. printf("inv [wrong value from MPI?!] failure\n");
  599. draw(&a);
  600. draw(&b);
  601. draw(&c);
  602. draw(&d);
  603. mp_gcd(&a, &b, &e);
  604. draw(&e);
  605. return 0;
  606. }
  607. } else if (!strcmp(cmd, "div2")) {
  608. ++div2_n;
  609. fgets(buf, 4095, stdin);
  610. mp_read_radix(&a, buf, 64);
  611. fgets(buf, 4095, stdin);
  612. mp_read_radix(&b, buf, 64);
  613. mp_div_2(&a, &c);
  614. if (mp_cmp(&c, &b) != MP_EQ) {
  615. printf("div_2 %lu failure\n", div2_n);
  616. draw(&a);
  617. draw(&b);
  618. draw(&c);
  619. return 0;
  620. }
  621. } else if (!strcmp(cmd, "mul2")) {
  622. ++mul2_n;
  623. fgets(buf, 4095, stdin);
  624. mp_read_radix(&a, buf, 64);
  625. fgets(buf, 4095, stdin);
  626. mp_read_radix(&b, buf, 64);
  627. mp_mul_2(&a, &c);
  628. if (mp_cmp(&c, &b) != MP_EQ) {
  629. printf("mul_2 %lu failure\n", mul2_n);
  630. draw(&a);
  631. draw(&b);
  632. draw(&c);
  633. return 0;
  634. }
  635. } else if (!strcmp(cmd, "add_d")) {
  636. ++add_d_n;
  637. fgets(buf, 4095, stdin);
  638. mp_read_radix(&a, buf, 64);
  639. fgets(buf, 4095, stdin);
  640. sscanf(buf, "%d", &ix);
  641. fgets(buf, 4095, stdin);
  642. mp_read_radix(&b, buf, 64);
  643. mp_add_d(&a, ix, &c);
  644. if (mp_cmp(&b, &c) != MP_EQ) {
  645. printf("add_d %lu failure\n", add_d_n);
  646. draw(&a);
  647. draw(&b);
  648. draw(&c);
  649. printf("d == %d\n", ix);
  650. return 0;
  651. }
  652. } else if (!strcmp(cmd, "sub_d")) {
  653. ++sub_d_n;
  654. fgets(buf, 4095, stdin);
  655. mp_read_radix(&a, buf, 64);
  656. fgets(buf, 4095, stdin);
  657. sscanf(buf, "%d", &ix);
  658. fgets(buf, 4095, stdin);
  659. mp_read_radix(&b, buf, 64);
  660. mp_sub_d(&a, ix, &c);
  661. if (mp_cmp(&b, &c) != MP_EQ) {
  662. printf("sub_d %lu failure\n", sub_d_n);
  663. draw(&a);
  664. draw(&b);
  665. draw(&c);
  666. printf("d == %d\n", ix);
  667. return 0;
  668. }
  669. }
  670. }
  671. return 0;
  672. }
  673. /* $Source: /cvs/libtom/libtommath/demo/demo.c,v $ */
  674. /* $Revision: 1.3 $ */
  675. /* $Date: 2005/06/24 11:32:07 $ */