test_suite_bignum.function 42 KB

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  1. /* BEGIN_HEADER */
  2. #include "mbedtls/bignum.h"
  3. #include "mbedtls/entropy.h"
  4. #include "constant_time_internal.h"
  5. #include "bignum_core.h"
  6. #include "test/constant_flow.h"
  7. #if MBEDTLS_MPI_MAX_BITS > 792
  8. #define MPI_MAX_BITS_LARGER_THAN_792
  9. #endif
  10. /* Check the validity of the sign bit in an MPI object. Reject representations
  11. * that are not supported by the rest of the library and indicate a bug when
  12. * constructing the value. */
  13. static int sign_is_valid(const mbedtls_mpi *X)
  14. {
  15. /* Only +1 and -1 are valid sign bits, not e.g. 0 */
  16. if (X->s != 1 && X->s != -1) {
  17. return 0;
  18. }
  19. /* The value 0 must be represented with the sign +1. A "negative zero"
  20. * with s=-1 is an invalid representation. Forbid that. As an exception,
  21. * we sometimes test the robustness of library functions when given
  22. * a negative zero input. If a test case has a negative zero as input,
  23. * we don't mind if the function has a negative zero output. */
  24. if (!mbedtls_test_case_uses_negative_0 &&
  25. mbedtls_mpi_bitlen(X) == 0 && X->s != 1) {
  26. return 0;
  27. }
  28. return 1;
  29. }
  30. typedef struct mbedtls_test_mpi_random {
  31. data_t *data;
  32. size_t pos;
  33. size_t chunk_len;
  34. } mbedtls_test_mpi_random;
  35. /*
  36. * This function is called by the Miller-Rabin primality test each time it
  37. * chooses a random witness. The witnesses (or non-witnesses as provided by the
  38. * test) are stored in the data member of the state structure. Each number is in
  39. * the format that mbedtls_mpi_read_string understands and is chunk_len long.
  40. */
  41. int mbedtls_test_mpi_miller_rabin_determinizer(void *state,
  42. unsigned char *buf,
  43. size_t len)
  44. {
  45. mbedtls_test_mpi_random *random = (mbedtls_test_mpi_random *) state;
  46. if (random == NULL || random->data->x == NULL || buf == NULL) {
  47. return -1;
  48. }
  49. if (random->pos + random->chunk_len > random->data->len
  50. || random->chunk_len > len) {
  51. return -1;
  52. }
  53. memset(buf, 0, len);
  54. /* The witness is written to the end of the buffer, since the buffer is
  55. * used as big endian, unsigned binary data in mbedtls_mpi_read_binary.
  56. * Writing the witness to the start of the buffer would result in the
  57. * buffer being 'witness 000...000', which would be treated as
  58. * witness * 2^n for some n. */
  59. memcpy(buf + len - random->chunk_len, &random->data->x[random->pos],
  60. random->chunk_len);
  61. random->pos += random->chunk_len;
  62. return 0;
  63. }
  64. /* Random generator that is told how many bytes to return. */
  65. static int f_rng_bytes_left(void *state, unsigned char *buf, size_t len)
  66. {
  67. size_t *bytes_left = state;
  68. size_t i;
  69. for (i = 0; i < len; i++) {
  70. if (*bytes_left == 0) {
  71. return MBEDTLS_ERR_ENTROPY_SOURCE_FAILED;
  72. }
  73. buf[i] = *bytes_left & 0xff;
  74. --(*bytes_left);
  75. }
  76. return 0;
  77. }
  78. /* END_HEADER */
  79. /* BEGIN_DEPENDENCIES
  80. * depends_on:MBEDTLS_BIGNUM_C
  81. * END_DEPENDENCIES
  82. */
  83. /* BEGIN_CASE */
  84. void mpi_null()
  85. {
  86. mbedtls_mpi X, Y, Z;
  87. mbedtls_mpi_init(&X);
  88. mbedtls_mpi_init(&Y);
  89. mbedtls_mpi_init(&Z);
  90. TEST_ASSERT(mbedtls_mpi_get_bit(&X, 42) == 0);
  91. TEST_ASSERT(mbedtls_mpi_lsb(&X) == 0);
  92. TEST_ASSERT(mbedtls_mpi_bitlen(&X) == 0);
  93. TEST_ASSERT(mbedtls_mpi_size(&X) == 0);
  94. exit:
  95. mbedtls_mpi_free(&X);
  96. }
  97. /* END_CASE */
  98. /* BEGIN_CASE */
  99. void mpi_read_write_string(int radix_X, char *input_X, int radix_A,
  100. char *input_A, int output_size, int result_read,
  101. int result_write)
  102. {
  103. mbedtls_mpi X;
  104. char str[1000];
  105. size_t len;
  106. mbedtls_mpi_init(&X);
  107. memset(str, '!', sizeof(str));
  108. TEST_ASSERT(mbedtls_mpi_read_string(&X, radix_X, input_X) == result_read);
  109. if (result_read == 0) {
  110. TEST_ASSERT(sign_is_valid(&X));
  111. TEST_ASSERT(mbedtls_mpi_write_string(&X, radix_A, str, output_size, &len) == result_write);
  112. if (result_write == 0) {
  113. TEST_ASSERT(strcasecmp(str, input_A) == 0);
  114. TEST_ASSERT(str[len] == '!');
  115. }
  116. }
  117. exit:
  118. mbedtls_mpi_free(&X);
  119. }
  120. /* END_CASE */
  121. /* BEGIN_CASE */
  122. void mpi_read_binary(data_t *buf, char *input_A)
  123. {
  124. mbedtls_mpi X;
  125. char str[1000];
  126. size_t len;
  127. mbedtls_mpi_init(&X);
  128. TEST_ASSERT(mbedtls_mpi_read_binary(&X, buf->x, buf->len) == 0);
  129. TEST_ASSERT(sign_is_valid(&X));
  130. TEST_ASSERT(mbedtls_mpi_write_string(&X, 16, str, sizeof(str), &len) == 0);
  131. TEST_ASSERT(strcmp((char *) str, input_A) == 0);
  132. exit:
  133. mbedtls_mpi_free(&X);
  134. }
  135. /* END_CASE */
  136. /* BEGIN_CASE */
  137. void mpi_read_binary_le(data_t *buf, char *input_A)
  138. {
  139. mbedtls_mpi X;
  140. char str[1000];
  141. size_t len;
  142. mbedtls_mpi_init(&X);
  143. TEST_ASSERT(mbedtls_mpi_read_binary_le(&X, buf->x, buf->len) == 0);
  144. TEST_ASSERT(sign_is_valid(&X));
  145. TEST_ASSERT(mbedtls_mpi_write_string(&X, 16, str, sizeof(str), &len) == 0);
  146. TEST_ASSERT(strcmp((char *) str, input_A) == 0);
  147. exit:
  148. mbedtls_mpi_free(&X);
  149. }
  150. /* END_CASE */
  151. /* BEGIN_CASE */
  152. void mpi_write_binary(char *input_X, data_t *input_A,
  153. int output_size, int result)
  154. {
  155. mbedtls_mpi X;
  156. unsigned char buf[1000];
  157. size_t buflen;
  158. memset(buf, 0x00, 1000);
  159. mbedtls_mpi_init(&X);
  160. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  161. buflen = mbedtls_mpi_size(&X);
  162. if (buflen > (size_t) output_size) {
  163. buflen = (size_t) output_size;
  164. }
  165. TEST_ASSERT(mbedtls_mpi_write_binary(&X, buf, buflen) == result);
  166. if (result == 0) {
  167. TEST_ASSERT(mbedtls_test_hexcmp(buf, input_A->x,
  168. buflen, input_A->len) == 0);
  169. }
  170. exit:
  171. mbedtls_mpi_free(&X);
  172. }
  173. /* END_CASE */
  174. /* BEGIN_CASE */
  175. void mpi_write_binary_le(char *input_X, data_t *input_A,
  176. int output_size, int result)
  177. {
  178. mbedtls_mpi X;
  179. unsigned char buf[1000];
  180. size_t buflen;
  181. memset(buf, 0x00, 1000);
  182. mbedtls_mpi_init(&X);
  183. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  184. buflen = mbedtls_mpi_size(&X);
  185. if (buflen > (size_t) output_size) {
  186. buflen = (size_t) output_size;
  187. }
  188. TEST_ASSERT(mbedtls_mpi_write_binary_le(&X, buf, buflen) == result);
  189. if (result == 0) {
  190. TEST_ASSERT(mbedtls_test_hexcmp(buf, input_A->x,
  191. buflen, input_A->len) == 0);
  192. }
  193. exit:
  194. mbedtls_mpi_free(&X);
  195. }
  196. /* END_CASE */
  197. /* BEGIN_CASE depends_on:MBEDTLS_FS_IO */
  198. void mpi_read_file(char *input_file, data_t *input_A, int result)
  199. {
  200. mbedtls_mpi X;
  201. unsigned char buf[1000];
  202. size_t buflen;
  203. FILE *file;
  204. int ret;
  205. memset(buf, 0x00, 1000);
  206. mbedtls_mpi_init(&X);
  207. file = fopen(input_file, "r");
  208. TEST_ASSERT(file != NULL);
  209. ret = mbedtls_mpi_read_file(&X, 16, file);
  210. fclose(file);
  211. TEST_ASSERT(ret == result);
  212. if (result == 0) {
  213. TEST_ASSERT(sign_is_valid(&X));
  214. buflen = mbedtls_mpi_size(&X);
  215. TEST_ASSERT(mbedtls_mpi_write_binary(&X, buf, buflen) == 0);
  216. TEST_ASSERT(mbedtls_test_hexcmp(buf, input_A->x,
  217. buflen, input_A->len) == 0);
  218. }
  219. exit:
  220. mbedtls_mpi_free(&X);
  221. }
  222. /* END_CASE */
  223. /* BEGIN_CASE depends_on:MBEDTLS_FS_IO */
  224. void mpi_write_file(char *input_X, char *output_file)
  225. {
  226. mbedtls_mpi X, Y;
  227. FILE *file_out, *file_in;
  228. int ret;
  229. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  230. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  231. file_out = fopen(output_file, "w");
  232. TEST_ASSERT(file_out != NULL);
  233. ret = mbedtls_mpi_write_file(NULL, &X, 16, file_out);
  234. fclose(file_out);
  235. TEST_ASSERT(ret == 0);
  236. file_in = fopen(output_file, "r");
  237. TEST_ASSERT(file_in != NULL);
  238. ret = mbedtls_mpi_read_file(&Y, 16, file_in);
  239. fclose(file_in);
  240. TEST_ASSERT(ret == 0);
  241. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &Y) == 0);
  242. exit:
  243. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  244. }
  245. /* END_CASE */
  246. /* BEGIN_CASE */
  247. void mpi_get_bit(char *input_X, int pos, int val)
  248. {
  249. mbedtls_mpi X;
  250. mbedtls_mpi_init(&X);
  251. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  252. TEST_ASSERT(mbedtls_mpi_get_bit(&X, pos) == val);
  253. exit:
  254. mbedtls_mpi_free(&X);
  255. }
  256. /* END_CASE */
  257. /* BEGIN_CASE */
  258. void mpi_set_bit(char *input_X, int pos, int val,
  259. char *output_Y, int result)
  260. {
  261. mbedtls_mpi X, Y;
  262. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  263. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  264. TEST_ASSERT(mbedtls_test_read_mpi(&Y, output_Y) == 0);
  265. TEST_ASSERT(mbedtls_mpi_set_bit(&X, pos, val) == result);
  266. if (result == 0) {
  267. TEST_ASSERT(sign_is_valid(&X));
  268. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &Y) == 0);
  269. }
  270. exit:
  271. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  272. }
  273. /* END_CASE */
  274. /* BEGIN_CASE */
  275. void mpi_lsb(char *input_X, int nr_bits)
  276. {
  277. mbedtls_mpi X;
  278. mbedtls_mpi_init(&X);
  279. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  280. TEST_ASSERT(mbedtls_mpi_lsb(&X) == (size_t) nr_bits);
  281. exit:
  282. mbedtls_mpi_free(&X);
  283. }
  284. /* END_CASE */
  285. /* BEGIN_CASE */
  286. void mpi_bitlen(char *input_X, int nr_bits)
  287. {
  288. mbedtls_mpi X;
  289. mbedtls_mpi_init(&X);
  290. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  291. TEST_ASSERT(mbedtls_mpi_bitlen(&X) == (size_t) nr_bits);
  292. exit:
  293. mbedtls_mpi_free(&X);
  294. }
  295. /* END_CASE */
  296. /* BEGIN_CASE */
  297. void mpi_gcd(char *input_X, char *input_Y,
  298. char *input_A)
  299. {
  300. mbedtls_mpi A, X, Y, Z;
  301. mbedtls_mpi_init(&A); mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z);
  302. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  303. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  304. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  305. TEST_ASSERT(mbedtls_mpi_gcd(&Z, &X, &Y) == 0);
  306. TEST_ASSERT(sign_is_valid(&Z));
  307. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  308. exit:
  309. mbedtls_mpi_free(&A); mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z);
  310. }
  311. /* END_CASE */
  312. /* BEGIN_CASE */
  313. void mpi_cmp_int(int input_X, int input_A, int result_CMP)
  314. {
  315. mbedtls_mpi X;
  316. mbedtls_mpi_init(&X);
  317. TEST_ASSERT(mbedtls_mpi_lset(&X, input_X) == 0);
  318. TEST_ASSERT(mbedtls_mpi_cmp_int(&X, input_A) == result_CMP);
  319. exit:
  320. mbedtls_mpi_free(&X);
  321. }
  322. /* END_CASE */
  323. /* BEGIN_CASE */
  324. void mpi_cmp_mpi(char *input_X, char *input_Y,
  325. int input_A)
  326. {
  327. mbedtls_mpi X, Y;
  328. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  329. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  330. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  331. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &Y) == input_A);
  332. exit:
  333. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  334. }
  335. /* END_CASE */
  336. /* BEGIN_CASE */
  337. void mpi_lt_mpi_ct(int size_X, char *input_X,
  338. int size_Y, char *input_Y,
  339. int input_ret, int input_err)
  340. {
  341. unsigned ret = -1;
  342. unsigned input_uret = input_ret;
  343. mbedtls_mpi X, Y;
  344. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  345. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  346. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  347. TEST_ASSERT(mbedtls_mpi_grow(&X, size_X) == 0);
  348. TEST_ASSERT(mbedtls_mpi_grow(&Y, size_Y) == 0);
  349. TEST_ASSERT(mbedtls_mpi_lt_mpi_ct(&X, &Y, &ret) == input_err);
  350. if (input_err == 0) {
  351. TEST_ASSERT(ret == input_uret);
  352. }
  353. exit:
  354. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  355. }
  356. /* END_CASE */
  357. /* BEGIN_CASE */
  358. void mpi_cmp_abs(char *input_X, char *input_Y,
  359. int input_A)
  360. {
  361. mbedtls_mpi X, Y;
  362. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  363. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  364. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  365. TEST_ASSERT(mbedtls_mpi_cmp_abs(&X, &Y) == input_A);
  366. exit:
  367. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  368. }
  369. /* END_CASE */
  370. /* BEGIN_CASE */
  371. void mpi_copy(char *src_hex, char *dst_hex)
  372. {
  373. mbedtls_mpi src, dst, ref;
  374. mbedtls_mpi_init(&src);
  375. mbedtls_mpi_init(&dst);
  376. mbedtls_mpi_init(&ref);
  377. TEST_ASSERT(mbedtls_test_read_mpi(&src, src_hex) == 0);
  378. TEST_ASSERT(mbedtls_test_read_mpi(&ref, dst_hex) == 0);
  379. /* mbedtls_mpi_copy() */
  380. TEST_ASSERT(mbedtls_test_read_mpi(&dst, dst_hex) == 0);
  381. TEST_ASSERT(mbedtls_mpi_copy(&dst, &src) == 0);
  382. TEST_ASSERT(sign_is_valid(&dst));
  383. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&dst, &src) == 0);
  384. /* mbedtls_mpi_safe_cond_assign(), assignment done */
  385. mbedtls_mpi_free(&dst);
  386. TEST_ASSERT(mbedtls_test_read_mpi(&dst, dst_hex) == 0);
  387. TEST_ASSERT(mbedtls_mpi_safe_cond_assign(&dst, &src, 1) == 0);
  388. TEST_ASSERT(sign_is_valid(&dst));
  389. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&dst, &src) == 0);
  390. /* mbedtls_mpi_safe_cond_assign(), assignment not done */
  391. mbedtls_mpi_free(&dst);
  392. TEST_ASSERT(mbedtls_test_read_mpi(&dst, dst_hex) == 0);
  393. TEST_ASSERT(mbedtls_mpi_safe_cond_assign(&dst, &src, 0) == 0);
  394. TEST_ASSERT(sign_is_valid(&dst));
  395. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&dst, &ref) == 0);
  396. exit:
  397. mbedtls_mpi_free(&src);
  398. mbedtls_mpi_free(&dst);
  399. mbedtls_mpi_free(&ref);
  400. }
  401. /* END_CASE */
  402. /* BEGIN_CASE */
  403. void mpi_copy_self(char *input_X)
  404. {
  405. mbedtls_mpi X, A;
  406. mbedtls_mpi_init(&A);
  407. mbedtls_mpi_init(&X);
  408. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  409. TEST_ASSERT(mbedtls_mpi_copy(&X, &X) == 0);
  410. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_X) == 0);
  411. TEST_ASSERT(sign_is_valid(&X));
  412. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  413. exit:
  414. mbedtls_mpi_free(&A);
  415. mbedtls_mpi_free(&X);
  416. }
  417. /* END_CASE */
  418. /* BEGIN_CASE */
  419. void mpi_swap(char *X_hex, char *Y_hex)
  420. {
  421. mbedtls_mpi X, Y, X0, Y0;
  422. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y);
  423. mbedtls_mpi_init(&X0); mbedtls_mpi_init(&Y0);
  424. TEST_ASSERT(mbedtls_test_read_mpi(&X0, X_hex) == 0);
  425. TEST_ASSERT(mbedtls_test_read_mpi(&Y0, Y_hex) == 0);
  426. /* mbedtls_mpi_swap() */
  427. TEST_ASSERT(mbedtls_test_read_mpi(&X, X_hex) == 0);
  428. TEST_ASSERT(mbedtls_test_read_mpi(&Y, Y_hex) == 0);
  429. mbedtls_mpi_swap(&X, &Y);
  430. TEST_ASSERT(sign_is_valid(&X));
  431. TEST_ASSERT(sign_is_valid(&Y));
  432. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &Y0) == 0);
  433. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &X0) == 0);
  434. /* mbedtls_mpi_safe_cond_swap(), swap done */
  435. mbedtls_mpi_free(&X);
  436. mbedtls_mpi_free(&Y);
  437. TEST_ASSERT(mbedtls_test_read_mpi(&X, X_hex) == 0);
  438. TEST_ASSERT(mbedtls_test_read_mpi(&Y, Y_hex) == 0);
  439. TEST_ASSERT(mbedtls_mpi_safe_cond_swap(&X, &Y, 1) == 0);
  440. TEST_ASSERT(sign_is_valid(&X));
  441. TEST_ASSERT(sign_is_valid(&Y));
  442. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &Y0) == 0);
  443. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &X0) == 0);
  444. /* mbedtls_mpi_safe_cond_swap(), swap not done */
  445. mbedtls_mpi_free(&X);
  446. mbedtls_mpi_free(&Y);
  447. TEST_ASSERT(mbedtls_test_read_mpi(&X, X_hex) == 0);
  448. TEST_ASSERT(mbedtls_test_read_mpi(&Y, Y_hex) == 0);
  449. TEST_ASSERT(mbedtls_mpi_safe_cond_swap(&X, &Y, 0) == 0);
  450. TEST_ASSERT(sign_is_valid(&X));
  451. TEST_ASSERT(sign_is_valid(&Y));
  452. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &X0) == 0);
  453. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &Y0) == 0);
  454. exit:
  455. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y);
  456. mbedtls_mpi_free(&X0); mbedtls_mpi_free(&Y0);
  457. }
  458. /* END_CASE */
  459. /* BEGIN_CASE */
  460. void mpi_swap_self(char *X_hex)
  461. {
  462. mbedtls_mpi X, X0;
  463. mbedtls_mpi_init(&X); mbedtls_mpi_init(&X0);
  464. TEST_ASSERT(mbedtls_test_read_mpi(&X, X_hex) == 0);
  465. TEST_ASSERT(mbedtls_test_read_mpi(&X0, X_hex) == 0);
  466. mbedtls_mpi_swap(&X, &X);
  467. TEST_ASSERT(sign_is_valid(&X));
  468. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &X0) == 0);
  469. exit:
  470. mbedtls_mpi_free(&X); mbedtls_mpi_free(&X0);
  471. }
  472. /* END_CASE */
  473. /* BEGIN_CASE */
  474. void mpi_shrink(int before, int used, int min, int after)
  475. {
  476. mbedtls_mpi X;
  477. mbedtls_mpi_init(&X);
  478. TEST_ASSERT(mbedtls_mpi_grow(&X, before) == 0);
  479. if (used > 0) {
  480. size_t used_bit_count = used * 8 * sizeof(mbedtls_mpi_uint);
  481. TEST_ASSERT(mbedtls_mpi_set_bit(&X, used_bit_count - 1, 1) == 0);
  482. }
  483. TEST_EQUAL(X.n, (size_t) before);
  484. TEST_ASSERT(mbedtls_mpi_shrink(&X, min) == 0);
  485. TEST_EQUAL(X.n, (size_t) after);
  486. exit:
  487. mbedtls_mpi_free(&X);
  488. }
  489. /* END_CASE */
  490. /* BEGIN_CASE */
  491. void mpi_add_mpi(char *input_X, char *input_Y,
  492. char *input_A)
  493. {
  494. mbedtls_mpi X, Y, Z, A;
  495. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  496. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  497. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  498. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  499. TEST_ASSERT(mbedtls_mpi_add_mpi(&Z, &X, &Y) == 0);
  500. TEST_ASSERT(sign_is_valid(&Z));
  501. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  502. /* result == first operand */
  503. TEST_ASSERT(mbedtls_mpi_add_mpi(&X, &X, &Y) == 0);
  504. TEST_ASSERT(sign_is_valid(&X));
  505. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  506. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  507. /* result == second operand */
  508. TEST_ASSERT(mbedtls_mpi_add_mpi(&Y, &X, &Y) == 0);
  509. TEST_ASSERT(sign_is_valid(&Y));
  510. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &A) == 0);
  511. exit:
  512. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  513. }
  514. /* END_CASE */
  515. /* BEGIN_CASE */
  516. void mpi_add_mpi_inplace(char *input_X, char *input_A)
  517. {
  518. mbedtls_mpi X, A;
  519. mbedtls_mpi_init(&X); mbedtls_mpi_init(&A);
  520. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  521. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  522. TEST_ASSERT(mbedtls_mpi_sub_abs(&X, &X, &X) == 0);
  523. TEST_ASSERT(mbedtls_mpi_cmp_int(&X, 0) == 0);
  524. TEST_ASSERT(sign_is_valid(&X));
  525. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  526. TEST_ASSERT(mbedtls_mpi_add_abs(&X, &X, &X) == 0);
  527. TEST_ASSERT(sign_is_valid(&X));
  528. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  529. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  530. TEST_ASSERT(mbedtls_mpi_add_mpi(&X, &X, &X) == 0);
  531. TEST_ASSERT(sign_is_valid(&X));
  532. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  533. exit:
  534. mbedtls_mpi_free(&X); mbedtls_mpi_free(&A);
  535. }
  536. /* END_CASE */
  537. /* BEGIN_CASE */
  538. void mpi_add_abs(char *input_X, char *input_Y,
  539. char *input_A)
  540. {
  541. mbedtls_mpi X, Y, Z, A;
  542. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  543. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  544. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  545. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  546. TEST_ASSERT(mbedtls_mpi_add_abs(&Z, &X, &Y) == 0);
  547. TEST_ASSERT(sign_is_valid(&Z));
  548. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  549. /* result == first operand */
  550. TEST_ASSERT(mbedtls_mpi_add_abs(&X, &X, &Y) == 0);
  551. TEST_ASSERT(sign_is_valid(&X));
  552. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  553. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  554. /* result == second operand */
  555. TEST_ASSERT(mbedtls_mpi_add_abs(&Y, &X, &Y) == 0);
  556. TEST_ASSERT(sign_is_valid(&Y));
  557. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &A) == 0);
  558. exit:
  559. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  560. }
  561. /* END_CASE */
  562. /* BEGIN_CASE */
  563. void mpi_add_int(char *input_X, int input_Y,
  564. char *input_A)
  565. {
  566. mbedtls_mpi X, Z, A;
  567. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  568. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  569. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  570. TEST_ASSERT(mbedtls_mpi_add_int(&Z, &X, input_Y) == 0);
  571. TEST_ASSERT(sign_is_valid(&Z));
  572. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  573. exit:
  574. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  575. }
  576. /* END_CASE */
  577. /* BEGIN_CASE */
  578. void mpi_sub_mpi(char *input_X, char *input_Y,
  579. char *input_A)
  580. {
  581. mbedtls_mpi X, Y, Z, A;
  582. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  583. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  584. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  585. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  586. TEST_ASSERT(mbedtls_mpi_sub_mpi(&Z, &X, &Y) == 0);
  587. TEST_ASSERT(sign_is_valid(&Z));
  588. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  589. /* result == first operand */
  590. TEST_ASSERT(mbedtls_mpi_sub_mpi(&X, &X, &Y) == 0);
  591. TEST_ASSERT(sign_is_valid(&X));
  592. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  593. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  594. /* result == second operand */
  595. TEST_ASSERT(mbedtls_mpi_sub_mpi(&Y, &X, &Y) == 0);
  596. TEST_ASSERT(sign_is_valid(&Y));
  597. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &A) == 0);
  598. exit:
  599. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  600. }
  601. /* END_CASE */
  602. /* BEGIN_CASE */
  603. void mpi_sub_abs(char *input_X, char *input_Y,
  604. char *input_A, int sub_result)
  605. {
  606. mbedtls_mpi X, Y, Z, A;
  607. int res;
  608. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  609. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  610. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  611. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  612. res = mbedtls_mpi_sub_abs(&Z, &X, &Y);
  613. TEST_ASSERT(res == sub_result);
  614. TEST_ASSERT(sign_is_valid(&Z));
  615. if (res == 0) {
  616. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  617. }
  618. /* result == first operand */
  619. TEST_ASSERT(mbedtls_mpi_sub_abs(&X, &X, &Y) == sub_result);
  620. TEST_ASSERT(sign_is_valid(&X));
  621. if (sub_result == 0) {
  622. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  623. }
  624. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  625. /* result == second operand */
  626. TEST_ASSERT(mbedtls_mpi_sub_abs(&Y, &X, &Y) == sub_result);
  627. TEST_ASSERT(sign_is_valid(&Y));
  628. if (sub_result == 0) {
  629. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Y, &A) == 0);
  630. }
  631. exit:
  632. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  633. }
  634. /* END_CASE */
  635. /* BEGIN_CASE */
  636. void mpi_sub_int(char *input_X, int input_Y,
  637. char *input_A)
  638. {
  639. mbedtls_mpi X, Z, A;
  640. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  641. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  642. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  643. TEST_ASSERT(mbedtls_mpi_sub_int(&Z, &X, input_Y) == 0);
  644. TEST_ASSERT(sign_is_valid(&Z));
  645. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  646. exit:
  647. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  648. }
  649. /* END_CASE */
  650. /* BEGIN_CASE */
  651. void mpi_mul_mpi(char *input_X, char *input_Y,
  652. char *input_A)
  653. {
  654. mbedtls_mpi X, Y, Z, A;
  655. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  656. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  657. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  658. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  659. TEST_ASSERT(mbedtls_mpi_mul_mpi(&Z, &X, &Y) == 0);
  660. TEST_ASSERT(sign_is_valid(&Z));
  661. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  662. exit:
  663. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  664. }
  665. /* END_CASE */
  666. /* BEGIN_CASE */
  667. void mpi_mul_int(char *input_X, int input_Y,
  668. char *input_A, char *result_comparison)
  669. {
  670. mbedtls_mpi X, Z, A;
  671. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  672. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  673. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  674. TEST_ASSERT(mbedtls_mpi_mul_int(&Z, &X, input_Y) == 0);
  675. TEST_ASSERT(sign_is_valid(&Z));
  676. if (strcmp(result_comparison, "==") == 0) {
  677. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  678. } else if (strcmp(result_comparison, "!=") == 0) {
  679. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) != 0);
  680. } else {
  681. TEST_ASSERT("unknown operator" == 0);
  682. }
  683. exit:
  684. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  685. }
  686. /* END_CASE */
  687. /* BEGIN_CASE */
  688. void mpi_div_mpi(char *input_X, char *input_Y,
  689. char *input_A, char *input_B,
  690. int div_result)
  691. {
  692. mbedtls_mpi X, Y, Q, R, A, B;
  693. int res;
  694. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Q); mbedtls_mpi_init(&R);
  695. mbedtls_mpi_init(&A); mbedtls_mpi_init(&B);
  696. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  697. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  698. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  699. TEST_ASSERT(mbedtls_test_read_mpi(&B, input_B) == 0);
  700. res = mbedtls_mpi_div_mpi(&Q, &R, &X, &Y);
  701. TEST_ASSERT(res == div_result);
  702. if (res == 0) {
  703. TEST_ASSERT(sign_is_valid(&Q));
  704. TEST_ASSERT(sign_is_valid(&R));
  705. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Q, &A) == 0);
  706. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&R, &B) == 0);
  707. }
  708. exit:
  709. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Q); mbedtls_mpi_free(&R);
  710. mbedtls_mpi_free(&A); mbedtls_mpi_free(&B);
  711. }
  712. /* END_CASE */
  713. /* BEGIN_CASE */
  714. void mpi_div_int(char *input_X, int input_Y,
  715. char *input_A, char *input_B,
  716. int div_result)
  717. {
  718. mbedtls_mpi X, Q, R, A, B;
  719. int res;
  720. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Q); mbedtls_mpi_init(&R); mbedtls_mpi_init(&A);
  721. mbedtls_mpi_init(&B);
  722. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  723. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  724. TEST_ASSERT(mbedtls_test_read_mpi(&B, input_B) == 0);
  725. res = mbedtls_mpi_div_int(&Q, &R, &X, input_Y);
  726. TEST_ASSERT(res == div_result);
  727. if (res == 0) {
  728. TEST_ASSERT(sign_is_valid(&Q));
  729. TEST_ASSERT(sign_is_valid(&R));
  730. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Q, &A) == 0);
  731. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&R, &B) == 0);
  732. }
  733. exit:
  734. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Q); mbedtls_mpi_free(&R); mbedtls_mpi_free(&A);
  735. mbedtls_mpi_free(&B);
  736. }
  737. /* END_CASE */
  738. /* BEGIN_CASE */
  739. void mpi_mod_mpi(char *input_X, char *input_Y,
  740. char *input_A, int div_result)
  741. {
  742. mbedtls_mpi X, Y, A;
  743. int res;
  744. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&A);
  745. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  746. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  747. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  748. res = mbedtls_mpi_mod_mpi(&X, &X, &Y);
  749. TEST_ASSERT(res == div_result);
  750. if (res == 0) {
  751. TEST_ASSERT(sign_is_valid(&X));
  752. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  753. }
  754. exit:
  755. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&A);
  756. }
  757. /* END_CASE */
  758. /* BEGIN_CASE */
  759. void mpi_mod_int(char *input_X, char *input_Y,
  760. char *input_A, int mod_result)
  761. {
  762. mbedtls_mpi X;
  763. mbedtls_mpi Y;
  764. mbedtls_mpi A;
  765. int res;
  766. mbedtls_mpi_uint r;
  767. mbedtls_mpi_init(&X);
  768. mbedtls_mpi_init(&Y);
  769. mbedtls_mpi_init(&A);
  770. /* We use MPIs to read Y and A since the test framework limits us to
  771. * ints, so we can't have 64-bit values */
  772. TEST_EQUAL(mbedtls_test_read_mpi(&X, input_X), 0);
  773. TEST_EQUAL(mbedtls_test_read_mpi(&Y, input_Y), 0);
  774. TEST_EQUAL(mbedtls_test_read_mpi(&A, input_A), 0);
  775. TEST_EQUAL(Y.n, 1);
  776. TEST_EQUAL(A.n, 1);
  777. /* Convert the MPIs for Y and A to (signed) mbedtls_mpi_sints */
  778. /* Since we're converting sign+magnitude to two's complement, we lose one
  779. * bit of value in the output. This means there are some values we can't
  780. * represent, e.g. (hex) -A0000000 on 32-bit systems. These are technically
  781. * invalid test cases, so could be considered "won't happen", but they are
  782. * easy to test for, and this helps guard against human error. */
  783. mbedtls_mpi_sint y = (mbedtls_mpi_sint) Y.p[0];
  784. TEST_ASSERT(y >= 0); /* If y < 0 here, we can't make negative y */
  785. if (Y.s == -1) {
  786. y = -y;
  787. }
  788. mbedtls_mpi_sint a = (mbedtls_mpi_sint) A.p[0];
  789. TEST_ASSERT(a >= 0); /* Same goes for a */
  790. if (A.s == -1) {
  791. a = -a;
  792. }
  793. res = mbedtls_mpi_mod_int(&r, &X, y);
  794. TEST_EQUAL(res, mod_result);
  795. if (res == 0) {
  796. TEST_EQUAL(r, a);
  797. }
  798. exit:
  799. mbedtls_mpi_free(&X);
  800. mbedtls_mpi_free(&Y);
  801. mbedtls_mpi_free(&A);
  802. }
  803. /* END_CASE */
  804. /* BEGIN_CASE */
  805. void mpi_exp_mod(char *input_A, char *input_E,
  806. char *input_N, char *input_X,
  807. int exp_result)
  808. {
  809. mbedtls_mpi A, E, N, RR, Z, X;
  810. int res;
  811. mbedtls_mpi_init(&A); mbedtls_mpi_init(&E); mbedtls_mpi_init(&N);
  812. mbedtls_mpi_init(&RR); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&X);
  813. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  814. TEST_ASSERT(mbedtls_test_read_mpi(&E, input_E) == 0);
  815. TEST_ASSERT(mbedtls_test_read_mpi(&N, input_N) == 0);
  816. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  817. res = mbedtls_mpi_exp_mod(&Z, &A, &E, &N, NULL);
  818. TEST_ASSERT(res == exp_result);
  819. if (res == 0) {
  820. TEST_ASSERT(sign_is_valid(&Z));
  821. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &X) == 0);
  822. }
  823. /* Now test again with the speed-up parameter supplied as an output. */
  824. res = mbedtls_mpi_exp_mod(&Z, &A, &E, &N, &RR);
  825. TEST_ASSERT(res == exp_result);
  826. if (res == 0) {
  827. TEST_ASSERT(sign_is_valid(&Z));
  828. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &X) == 0);
  829. }
  830. /* Now test again with the speed-up parameter supplied in calculated form. */
  831. res = mbedtls_mpi_exp_mod(&Z, &A, &E, &N, &RR);
  832. TEST_ASSERT(res == exp_result);
  833. if (res == 0) {
  834. TEST_ASSERT(sign_is_valid(&Z));
  835. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &X) == 0);
  836. }
  837. exit:
  838. mbedtls_mpi_free(&A); mbedtls_mpi_free(&E); mbedtls_mpi_free(&N);
  839. mbedtls_mpi_free(&RR); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&X);
  840. }
  841. /* END_CASE */
  842. /* BEGIN_CASE */
  843. void mpi_exp_mod_size(int A_bytes, int E_bytes, int N_bytes,
  844. char *input_RR, int exp_result)
  845. {
  846. mbedtls_mpi A, E, N, RR, Z;
  847. mbedtls_mpi_init(&A); mbedtls_mpi_init(&E); mbedtls_mpi_init(&N);
  848. mbedtls_mpi_init(&RR); mbedtls_mpi_init(&Z);
  849. /* Set A to 2^(A_bytes - 1) + 1 */
  850. TEST_ASSERT(mbedtls_mpi_lset(&A, 1) == 0);
  851. TEST_ASSERT(mbedtls_mpi_shift_l(&A, (A_bytes * 8) - 1) == 0);
  852. TEST_ASSERT(mbedtls_mpi_set_bit(&A, 0, 1) == 0);
  853. /* Set E to 2^(E_bytes - 1) + 1 */
  854. TEST_ASSERT(mbedtls_mpi_lset(&E, 1) == 0);
  855. TEST_ASSERT(mbedtls_mpi_shift_l(&E, (E_bytes * 8) - 1) == 0);
  856. TEST_ASSERT(mbedtls_mpi_set_bit(&E, 0, 1) == 0);
  857. /* Set N to 2^(N_bytes - 1) + 1 */
  858. TEST_ASSERT(mbedtls_mpi_lset(&N, 1) == 0);
  859. TEST_ASSERT(mbedtls_mpi_shift_l(&N, (N_bytes * 8) - 1) == 0);
  860. TEST_ASSERT(mbedtls_mpi_set_bit(&N, 0, 1) == 0);
  861. if (strlen(input_RR)) {
  862. TEST_ASSERT(mbedtls_test_read_mpi(&RR, input_RR) == 0);
  863. }
  864. TEST_ASSERT(mbedtls_mpi_exp_mod(&Z, &A, &E, &N, &RR) == exp_result);
  865. exit:
  866. mbedtls_mpi_free(&A); mbedtls_mpi_free(&E); mbedtls_mpi_free(&N);
  867. mbedtls_mpi_free(&RR); mbedtls_mpi_free(&Z);
  868. }
  869. /* END_CASE */
  870. /* BEGIN_CASE */
  871. void mpi_inv_mod(char *input_X, char *input_Y,
  872. char *input_A, int div_result)
  873. {
  874. mbedtls_mpi X, Y, Z, A;
  875. int res;
  876. mbedtls_mpi_init(&X); mbedtls_mpi_init(&Y); mbedtls_mpi_init(&Z); mbedtls_mpi_init(&A);
  877. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  878. TEST_ASSERT(mbedtls_test_read_mpi(&Y, input_Y) == 0);
  879. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  880. res = mbedtls_mpi_inv_mod(&Z, &X, &Y);
  881. TEST_ASSERT(res == div_result);
  882. if (res == 0) {
  883. TEST_ASSERT(sign_is_valid(&Z));
  884. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&Z, &A) == 0);
  885. }
  886. exit:
  887. mbedtls_mpi_free(&X); mbedtls_mpi_free(&Y); mbedtls_mpi_free(&Z); mbedtls_mpi_free(&A);
  888. }
  889. /* END_CASE */
  890. /* BEGIN_CASE depends_on:MBEDTLS_GENPRIME */
  891. void mpi_is_prime(char *input_X, int div_result)
  892. {
  893. mbedtls_mpi X;
  894. int res;
  895. mbedtls_mpi_init(&X);
  896. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  897. res = mbedtls_mpi_is_prime_ext(&X, 40, mbedtls_test_rnd_std_rand, NULL);
  898. TEST_ASSERT(res == div_result);
  899. exit:
  900. mbedtls_mpi_free(&X);
  901. }
  902. /* END_CASE */
  903. /* BEGIN_CASE depends_on:MBEDTLS_GENPRIME */
  904. void mpi_is_prime_det(data_t *input_X, data_t *witnesses,
  905. int chunk_len, int rounds)
  906. {
  907. mbedtls_mpi X;
  908. int res;
  909. mbedtls_test_mpi_random rand;
  910. mbedtls_mpi_init(&X);
  911. rand.data = witnesses;
  912. rand.pos = 0;
  913. rand.chunk_len = chunk_len;
  914. TEST_ASSERT(mbedtls_mpi_read_binary(&X, input_X->x, input_X->len) == 0);
  915. res = mbedtls_mpi_is_prime_ext(&X, rounds - 1,
  916. mbedtls_test_mpi_miller_rabin_determinizer,
  917. &rand);
  918. TEST_ASSERT(res == 0);
  919. rand.data = witnesses;
  920. rand.pos = 0;
  921. rand.chunk_len = chunk_len;
  922. res = mbedtls_mpi_is_prime_ext(&X, rounds,
  923. mbedtls_test_mpi_miller_rabin_determinizer,
  924. &rand);
  925. TEST_ASSERT(res == MBEDTLS_ERR_MPI_NOT_ACCEPTABLE);
  926. exit:
  927. mbedtls_mpi_free(&X);
  928. }
  929. /* END_CASE */
  930. /* BEGIN_CASE depends_on:MBEDTLS_GENPRIME */
  931. void mpi_gen_prime(int bits, int flags, int ref_ret)
  932. {
  933. mbedtls_mpi X;
  934. int my_ret;
  935. mbedtls_mpi_init(&X);
  936. my_ret = mbedtls_mpi_gen_prime(&X, bits, flags,
  937. mbedtls_test_rnd_std_rand, NULL);
  938. TEST_ASSERT(my_ret == ref_ret);
  939. if (ref_ret == 0) {
  940. size_t actual_bits = mbedtls_mpi_bitlen(&X);
  941. TEST_ASSERT(actual_bits >= (size_t) bits);
  942. TEST_ASSERT(actual_bits <= (size_t) bits + 1);
  943. TEST_ASSERT(sign_is_valid(&X));
  944. TEST_ASSERT(mbedtls_mpi_is_prime_ext(&X, 40,
  945. mbedtls_test_rnd_std_rand,
  946. NULL) == 0);
  947. if (flags & MBEDTLS_MPI_GEN_PRIME_FLAG_DH) {
  948. /* X = ( X - 1 ) / 2 */
  949. TEST_ASSERT(mbedtls_mpi_shift_r(&X, 1) == 0);
  950. TEST_ASSERT(mbedtls_mpi_is_prime_ext(&X, 40,
  951. mbedtls_test_rnd_std_rand,
  952. NULL) == 0);
  953. }
  954. }
  955. exit:
  956. mbedtls_mpi_free(&X);
  957. }
  958. /* END_CASE */
  959. /* BEGIN_CASE */
  960. void mpi_shift_l(char *input_X, int shift_X,
  961. char *input_A)
  962. {
  963. mbedtls_mpi X, A;
  964. mbedtls_mpi_init(&X); mbedtls_mpi_init(&A);
  965. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  966. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  967. TEST_ASSERT(mbedtls_mpi_shift_l(&X, shift_X) == 0);
  968. TEST_ASSERT(sign_is_valid(&X));
  969. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  970. exit:
  971. mbedtls_mpi_free(&X); mbedtls_mpi_free(&A);
  972. }
  973. /* END_CASE */
  974. /* BEGIN_CASE */
  975. void mpi_shift_r(char *input_X, int shift_X,
  976. char *input_A)
  977. {
  978. mbedtls_mpi X, A;
  979. mbedtls_mpi_init(&X); mbedtls_mpi_init(&A);
  980. TEST_ASSERT(mbedtls_test_read_mpi(&X, input_X) == 0);
  981. TEST_ASSERT(mbedtls_test_read_mpi(&A, input_A) == 0);
  982. TEST_ASSERT(mbedtls_mpi_shift_r(&X, shift_X) == 0);
  983. TEST_ASSERT(sign_is_valid(&X));
  984. TEST_ASSERT(mbedtls_mpi_cmp_mpi(&X, &A) == 0);
  985. exit:
  986. mbedtls_mpi_free(&X); mbedtls_mpi_free(&A);
  987. }
  988. /* END_CASE */
  989. /* BEGIN_CASE */
  990. void mpi_fill_random(int wanted_bytes, int rng_bytes,
  991. int before, int expected_ret)
  992. {
  993. mbedtls_mpi X;
  994. int ret;
  995. size_t bytes_left = rng_bytes;
  996. mbedtls_mpi_init(&X);
  997. if (before != 0) {
  998. /* Set X to sign(before) * 2^(|before|-1) */
  999. TEST_ASSERT(mbedtls_mpi_lset(&X, before > 0 ? 1 : -1) == 0);
  1000. if (before < 0) {
  1001. before = -before;
  1002. }
  1003. TEST_ASSERT(mbedtls_mpi_shift_l(&X, before - 1) == 0);
  1004. }
  1005. ret = mbedtls_mpi_fill_random(&X, wanted_bytes,
  1006. f_rng_bytes_left, &bytes_left);
  1007. TEST_ASSERT(ret == expected_ret);
  1008. if (expected_ret == 0) {
  1009. /* mbedtls_mpi_fill_random is documented to use bytes from the RNG
  1010. * as a big-endian representation of the number. We know when
  1011. * our RNG function returns null bytes, so we know how many
  1012. * leading zero bytes the number has. */
  1013. size_t leading_zeros = 0;
  1014. if (wanted_bytes > 0 && rng_bytes % 256 == 0) {
  1015. leading_zeros = 1;
  1016. }
  1017. TEST_ASSERT(mbedtls_mpi_size(&X) + leading_zeros ==
  1018. (size_t) wanted_bytes);
  1019. TEST_ASSERT((int) bytes_left == rng_bytes - wanted_bytes);
  1020. TEST_ASSERT(sign_is_valid(&X));
  1021. }
  1022. exit:
  1023. mbedtls_mpi_free(&X);
  1024. }
  1025. /* END_CASE */
  1026. /* BEGIN_CASE */
  1027. void most_negative_mpi_sint()
  1028. {
  1029. /* Ad hoc tests for n = -p = -2^(biL-1) as a mbedtls_mpi_sint. We
  1030. * guarantee that mbedtls_mpi_sint is a two's complement type, so this
  1031. * is a valid value. However, negating it (`-n`) has undefined behavior
  1032. * (although in practice `-n` evaluates to the value n).
  1033. *
  1034. * This function has ad hoc tests for this value. It's separated from other
  1035. * functions because the test framework makes it hard to pass this value
  1036. * into test cases.
  1037. *
  1038. * In the comments here:
  1039. * - biL = number of bits in limbs
  1040. * - p = 2^(biL-1) (smallest positive value not in mbedtls_mpi_sint range)
  1041. * - n = -2^(biL-1) (largest negative value in mbedtls_mpi_sint range)
  1042. */
  1043. mbedtls_mpi A, R, X;
  1044. mbedtls_mpi_init(&A);
  1045. mbedtls_mpi_init(&R);
  1046. mbedtls_mpi_init(&X);
  1047. mbedtls_mpi_uint most_positive_plus_1 = (mbedtls_mpi_uint) 1 << (biL - 1);
  1048. const mbedtls_mpi_sint most_positive = most_positive_plus_1 - 1;
  1049. const mbedtls_mpi_sint most_negative = -most_positive - 1;
  1050. TEST_EQUAL((mbedtls_mpi_uint) most_negative,
  1051. (mbedtls_mpi_uint) 1 << (biL - 1));
  1052. TEST_EQUAL((mbedtls_mpi_uint) most_negative << 1, 0);
  1053. /* Test mbedtls_mpi_lset() */
  1054. TEST_EQUAL(mbedtls_mpi_lset(&A, most_negative), 0);
  1055. TEST_EQUAL(A.s, -1);
  1056. TEST_EQUAL(A.n, 1);
  1057. TEST_EQUAL(A.p[0], most_positive_plus_1);
  1058. /* Test mbedtls_mpi_cmp_int(): -p == -p */
  1059. TEST_EQUAL(mbedtls_mpi_cmp_int(&A, most_negative), 0);
  1060. /* Test mbedtls_mpi_cmp_int(): -(p+1) < -p */
  1061. A.p[0] = most_positive_plus_1 + 1;
  1062. TEST_EQUAL(mbedtls_mpi_cmp_int(&A, most_negative), -1);
  1063. /* Test mbedtls_mpi_cmp_int(): -(p-1) > -p */
  1064. A.p[0] = most_positive_plus_1 - 1;
  1065. TEST_EQUAL(mbedtls_mpi_cmp_int(&A, most_negative), 1);
  1066. /* Test mbedtls_mpi_add_int(): (p-1) + (-p) */
  1067. TEST_EQUAL(mbedtls_mpi_lset(&A, most_positive), 0);
  1068. TEST_EQUAL(mbedtls_mpi_add_int(&X, &A, most_negative), 0);
  1069. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, -1), 0);
  1070. /* Test mbedtls_mpi_add_int(): (0) + (-p) */
  1071. TEST_EQUAL(mbedtls_mpi_lset(&A, 0), 0);
  1072. TEST_EQUAL(mbedtls_mpi_add_int(&X, &A, most_negative), 0);
  1073. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, most_negative), 0);
  1074. /* Test mbedtls_mpi_add_int(): (-p) + (-p) */
  1075. TEST_EQUAL(mbedtls_mpi_lset(&A, most_negative), 0);
  1076. TEST_EQUAL(mbedtls_mpi_add_int(&X, &A, most_negative), 0);
  1077. TEST_EQUAL(X.s, -1);
  1078. TEST_EQUAL(X.n, 2);
  1079. TEST_EQUAL(X.p[0], 0);
  1080. TEST_EQUAL(X.p[1], 1);
  1081. /* Test mbedtls_mpi_sub_int(): (p) - (-p) */
  1082. mbedtls_mpi_free(&X);
  1083. TEST_EQUAL(mbedtls_mpi_lset(&A, most_positive), 0);
  1084. TEST_EQUAL(mbedtls_mpi_sub_int(&X, &A, most_negative), 0);
  1085. TEST_EQUAL(X.s, 1);
  1086. TEST_EQUAL(X.n, 1);
  1087. TEST_EQUAL(X.p[0], ~(mbedtls_mpi_uint) 0);
  1088. /* Test mbedtls_mpi_sub_int(): (0) - (-p) */
  1089. TEST_EQUAL(mbedtls_mpi_lset(&A, 0), 0);
  1090. TEST_EQUAL(mbedtls_mpi_sub_int(&X, &A, most_negative), 0);
  1091. TEST_EQUAL(X.s, 1);
  1092. TEST_EQUAL(X.n, 1);
  1093. TEST_EQUAL(X.p[0], most_positive_plus_1);
  1094. /* Test mbedtls_mpi_sub_int(): (-p) - (-p) */
  1095. TEST_EQUAL(mbedtls_mpi_lset(&A, most_negative), 0);
  1096. TEST_EQUAL(mbedtls_mpi_sub_int(&X, &A, most_negative), 0);
  1097. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 0), 0);
  1098. /* Test mbedtls_mpi_div_int(): (-p+1) / (-p) */
  1099. TEST_EQUAL(mbedtls_mpi_lset(&A, -most_positive), 0);
  1100. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1101. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 0), 0);
  1102. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, -most_positive), 0);
  1103. /* Test mbedtls_mpi_div_int(): (-p) / (-p) */
  1104. TEST_EQUAL(mbedtls_mpi_lset(&A, most_negative), 0);
  1105. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1106. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 1), 0);
  1107. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, 0), 0);
  1108. /* Test mbedtls_mpi_div_int(): (-2*p) / (-p) */
  1109. TEST_EQUAL(mbedtls_mpi_shift_l(&A, 1), 0);
  1110. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1111. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 2), 0);
  1112. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, 0), 0);
  1113. /* Test mbedtls_mpi_div_int(): (-2*p+1) / (-p) */
  1114. TEST_EQUAL(mbedtls_mpi_add_int(&A, &A, 1), 0);
  1115. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1116. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 1), 0);
  1117. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, -most_positive), 0);
  1118. /* Test mbedtls_mpi_div_int(): (p-1) / (-p) */
  1119. TEST_EQUAL(mbedtls_mpi_lset(&A, most_positive), 0);
  1120. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1121. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, 0), 0);
  1122. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, most_positive), 0);
  1123. /* Test mbedtls_mpi_div_int(): (p) / (-p) */
  1124. TEST_EQUAL(mbedtls_mpi_add_int(&A, &A, 1), 0);
  1125. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1126. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, -1), 0);
  1127. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, 0), 0);
  1128. /* Test mbedtls_mpi_div_int(): (2*p) / (-p) */
  1129. TEST_EQUAL(mbedtls_mpi_shift_l(&A, 1), 0);
  1130. TEST_EQUAL(mbedtls_mpi_div_int(&X, &R, &A, most_negative), 0);
  1131. TEST_EQUAL(mbedtls_mpi_cmp_int(&X, -2), 0);
  1132. TEST_EQUAL(mbedtls_mpi_cmp_int(&R, 0), 0);
  1133. /* Test mbedtls_mpi_mod_int(): never valid */
  1134. TEST_EQUAL(mbedtls_mpi_mod_int(X.p, &A, most_negative),
  1135. MBEDTLS_ERR_MPI_NEGATIVE_VALUE);
  1136. /* Test mbedtls_mpi_random(): never valid */
  1137. TEST_EQUAL(mbedtls_mpi_random(&X, most_negative, &A,
  1138. mbedtls_test_rnd_std_rand, NULL),
  1139. MBEDTLS_ERR_MPI_BAD_INPUT_DATA);
  1140. exit:
  1141. mbedtls_mpi_free(&A);
  1142. mbedtls_mpi_free(&R);
  1143. mbedtls_mpi_free(&X);
  1144. }
  1145. /* END_CASE */
  1146. /* BEGIN_CASE depends_on:MBEDTLS_SELF_TEST */
  1147. void mpi_selftest()
  1148. {
  1149. TEST_ASSERT(mbedtls_mpi_self_test(1) == 0);
  1150. }
  1151. /* END_CASE */