ecjpake.c 37 KB

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  1. /*
  2. * Elliptic curve J-PAKE
  3. *
  4. * Copyright (C) 2006-2015, ARM Limited, All Rights Reserved
  5. * SPDX-License-Identifier: Apache-2.0
  6. *
  7. * Licensed under the Apache License, Version 2.0 (the "License"); you may
  8. * not use this file except in compliance with the License.
  9. * You may obtain a copy of the License at
  10. *
  11. * http://www.apache.org/licenses/LICENSE-2.0
  12. *
  13. * Unless required by applicable law or agreed to in writing, software
  14. * distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
  15. * WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  16. * See the License for the specific language governing permissions and
  17. * limitations under the License.
  18. *
  19. * This file is part of mbed TLS (https://tls.mbed.org)
  20. */
  21. /*
  22. * References in the code are to the Thread v1.0 Specification,
  23. * available to members of the Thread Group http://threadgroup.org/
  24. */
  25. #if !defined(MBEDTLS_CONFIG_FILE)
  26. #include "mbedtls/config.h"
  27. #else
  28. #include MBEDTLS_CONFIG_FILE
  29. #endif
  30. #if defined(MBEDTLS_ECJPAKE_C)
  31. #include "mbedtls/ecjpake.h"
  32. #include <string.h>
  33. /*
  34. * Convert a mbedtls_ecjpake_role to identifier string
  35. */
  36. static const char * const ecjpake_id[] = {
  37. "client",
  38. "server"
  39. };
  40. #define ID_MINE ( ecjpake_id[ ctx->role ] )
  41. #define ID_PEER ( ecjpake_id[ 1 - ctx->role ] )
  42. /*
  43. * Initialize context
  44. */
  45. void mbedtls_ecjpake_init( mbedtls_ecjpake_context *ctx )
  46. {
  47. if( ctx == NULL )
  48. return;
  49. ctx->md_info = NULL;
  50. mbedtls_ecp_group_init( &ctx->grp );
  51. ctx->point_format = MBEDTLS_ECP_PF_UNCOMPRESSED;
  52. mbedtls_ecp_point_init( &ctx->Xm1 );
  53. mbedtls_ecp_point_init( &ctx->Xm2 );
  54. mbedtls_ecp_point_init( &ctx->Xp1 );
  55. mbedtls_ecp_point_init( &ctx->Xp2 );
  56. mbedtls_ecp_point_init( &ctx->Xp );
  57. mbedtls_mpi_init( &ctx->xm1 );
  58. mbedtls_mpi_init( &ctx->xm2 );
  59. mbedtls_mpi_init( &ctx->s );
  60. }
  61. /*
  62. * Free context
  63. */
  64. void mbedtls_ecjpake_free( mbedtls_ecjpake_context *ctx )
  65. {
  66. if( ctx == NULL )
  67. return;
  68. ctx->md_info = NULL;
  69. mbedtls_ecp_group_free( &ctx->grp );
  70. mbedtls_ecp_point_free( &ctx->Xm1 );
  71. mbedtls_ecp_point_free( &ctx->Xm2 );
  72. mbedtls_ecp_point_free( &ctx->Xp1 );
  73. mbedtls_ecp_point_free( &ctx->Xp2 );
  74. mbedtls_ecp_point_free( &ctx->Xp );
  75. mbedtls_mpi_free( &ctx->xm1 );
  76. mbedtls_mpi_free( &ctx->xm2 );
  77. mbedtls_mpi_free( &ctx->s );
  78. }
  79. /*
  80. * Setup context
  81. */
  82. int mbedtls_ecjpake_setup( mbedtls_ecjpake_context *ctx,
  83. mbedtls_ecjpake_role role,
  84. mbedtls_md_type_t hash,
  85. mbedtls_ecp_group_id curve,
  86. const unsigned char *secret,
  87. size_t len )
  88. {
  89. int ret;
  90. ctx->role = role;
  91. if( ( ctx->md_info = mbedtls_md_info_from_type( hash ) ) == NULL )
  92. return( MBEDTLS_ERR_MD_FEATURE_UNAVAILABLE );
  93. MBEDTLS_MPI_CHK( mbedtls_ecp_group_load( &ctx->grp, curve ) );
  94. MBEDTLS_MPI_CHK( mbedtls_mpi_read_binary( &ctx->s, secret, len ) );
  95. cleanup:
  96. if( ret != 0 )
  97. mbedtls_ecjpake_free( ctx );
  98. return( ret );
  99. }
  100. /*
  101. * Check if context is ready for use
  102. */
  103. int mbedtls_ecjpake_check( const mbedtls_ecjpake_context *ctx )
  104. {
  105. if( ctx->md_info == NULL ||
  106. ctx->grp.id == MBEDTLS_ECP_DP_NONE ||
  107. ctx->s.p == NULL )
  108. {
  109. return( MBEDTLS_ERR_ECP_BAD_INPUT_DATA );
  110. }
  111. return( 0 );
  112. }
  113. /*
  114. * Write a point plus its length to a buffer
  115. */
  116. static int ecjpake_write_len_point( unsigned char **p,
  117. const unsigned char *end,
  118. const mbedtls_ecp_group *grp,
  119. const int pf,
  120. const mbedtls_ecp_point *P )
  121. {
  122. int ret;
  123. size_t len;
  124. /* Need at least 4 for length plus 1 for point */
  125. if( end < *p || end - *p < 5 )
  126. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  127. ret = mbedtls_ecp_point_write_binary( grp, P, pf,
  128. &len, *p + 4, end - ( *p + 4 ) );
  129. if( ret != 0 )
  130. return( ret );
  131. (*p)[0] = (unsigned char)( ( len >> 24 ) & 0xFF );
  132. (*p)[1] = (unsigned char)( ( len >> 16 ) & 0xFF );
  133. (*p)[2] = (unsigned char)( ( len >> 8 ) & 0xFF );
  134. (*p)[3] = (unsigned char)( ( len ) & 0xFF );
  135. *p += 4 + len;
  136. return( 0 );
  137. }
  138. /*
  139. * Size of the temporary buffer for ecjpake_hash:
  140. * 3 EC points plus their length, plus ID and its length (4 + 6 bytes)
  141. */
  142. #define ECJPAKE_HASH_BUF_LEN ( 3 * ( 4 + MBEDTLS_ECP_MAX_PT_LEN ) + 4 + 6 )
  143. /*
  144. * Compute hash for ZKP (7.4.2.2.2.1)
  145. */
  146. static int ecjpake_hash( const mbedtls_md_info_t *md_info,
  147. const mbedtls_ecp_group *grp,
  148. const int pf,
  149. const mbedtls_ecp_point *G,
  150. const mbedtls_ecp_point *V,
  151. const mbedtls_ecp_point *X,
  152. const char *id,
  153. mbedtls_mpi *h )
  154. {
  155. int ret;
  156. unsigned char buf[ECJPAKE_HASH_BUF_LEN];
  157. unsigned char *p = buf;
  158. const unsigned char *end = buf + sizeof( buf );
  159. const size_t id_len = strlen( id );
  160. unsigned char hash[MBEDTLS_MD_MAX_SIZE];
  161. /* Write things to temporary buffer */
  162. MBEDTLS_MPI_CHK( ecjpake_write_len_point( &p, end, grp, pf, G ) );
  163. MBEDTLS_MPI_CHK( ecjpake_write_len_point( &p, end, grp, pf, V ) );
  164. MBEDTLS_MPI_CHK( ecjpake_write_len_point( &p, end, grp, pf, X ) );
  165. if( end - p < 4 )
  166. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  167. *p++ = (unsigned char)( ( id_len >> 24 ) & 0xFF );
  168. *p++ = (unsigned char)( ( id_len >> 16 ) & 0xFF );
  169. *p++ = (unsigned char)( ( id_len >> 8 ) & 0xFF );
  170. *p++ = (unsigned char)( ( id_len ) & 0xFF );
  171. if( end < p || (size_t)( end - p ) < id_len )
  172. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  173. memcpy( p, id, id_len );
  174. p += id_len;
  175. /* Compute hash */
  176. mbedtls_md( md_info, buf, p - buf, hash );
  177. /* Turn it into an integer mod n */
  178. MBEDTLS_MPI_CHK( mbedtls_mpi_read_binary( h, hash,
  179. mbedtls_md_get_size( md_info ) ) );
  180. MBEDTLS_MPI_CHK( mbedtls_mpi_mod_mpi( h, h, &grp->N ) );
  181. cleanup:
  182. return( ret );
  183. }
  184. /*
  185. * Parse a ECShnorrZKP (7.4.2.2.2) and verify it (7.4.2.3.3)
  186. */
  187. static int ecjpake_zkp_read( const mbedtls_md_info_t *md_info,
  188. const mbedtls_ecp_group *grp,
  189. const int pf,
  190. const mbedtls_ecp_point *G,
  191. const mbedtls_ecp_point *X,
  192. const char *id,
  193. const unsigned char **p,
  194. const unsigned char *end )
  195. {
  196. int ret;
  197. mbedtls_ecp_point V, VV;
  198. mbedtls_mpi r, h;
  199. size_t r_len;
  200. mbedtls_ecp_point_init( &V );
  201. mbedtls_ecp_point_init( &VV );
  202. mbedtls_mpi_init( &r );
  203. mbedtls_mpi_init( &h );
  204. /*
  205. * struct {
  206. * ECPoint V;
  207. * opaque r<1..2^8-1>;
  208. * } ECSchnorrZKP;
  209. */
  210. if( end < *p )
  211. return( MBEDTLS_ERR_ECP_BAD_INPUT_DATA );
  212. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_read_point( grp, &V, p, end - *p ) );
  213. if( end < *p || (size_t)( end - *p ) < 1 )
  214. {
  215. ret = MBEDTLS_ERR_ECP_BAD_INPUT_DATA;
  216. goto cleanup;
  217. }
  218. r_len = *(*p)++;
  219. if( end < *p || (size_t)( end - *p ) < r_len )
  220. {
  221. ret = MBEDTLS_ERR_ECP_BAD_INPUT_DATA;
  222. goto cleanup;
  223. }
  224. MBEDTLS_MPI_CHK( mbedtls_mpi_read_binary( &r, *p, r_len ) );
  225. *p += r_len;
  226. /*
  227. * Verification
  228. */
  229. MBEDTLS_MPI_CHK( ecjpake_hash( md_info, grp, pf, G, &V, X, id, &h ) );
  230. MBEDTLS_MPI_CHK( mbedtls_ecp_muladd( (mbedtls_ecp_group *) grp,
  231. &VV, &h, X, &r, G ) );
  232. if( mbedtls_ecp_point_cmp( &VV, &V ) != 0 )
  233. {
  234. ret = MBEDTLS_ERR_ECP_VERIFY_FAILED;
  235. goto cleanup;
  236. }
  237. cleanup:
  238. mbedtls_ecp_point_free( &V );
  239. mbedtls_ecp_point_free( &VV );
  240. mbedtls_mpi_free( &r );
  241. mbedtls_mpi_free( &h );
  242. return( ret );
  243. }
  244. /*
  245. * Generate ZKP (7.4.2.3.2) and write it as ECSchnorrZKP (7.4.2.2.2)
  246. */
  247. static int ecjpake_zkp_write( const mbedtls_md_info_t *md_info,
  248. const mbedtls_ecp_group *grp,
  249. const int pf,
  250. const mbedtls_ecp_point *G,
  251. const mbedtls_mpi *x,
  252. const mbedtls_ecp_point *X,
  253. const char *id,
  254. unsigned char **p,
  255. const unsigned char *end,
  256. int (*f_rng)(void *, unsigned char *, size_t),
  257. void *p_rng )
  258. {
  259. int ret;
  260. mbedtls_ecp_point V;
  261. mbedtls_mpi v;
  262. mbedtls_mpi h; /* later recycled to hold r */
  263. size_t len;
  264. if( end < *p )
  265. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  266. mbedtls_ecp_point_init( &V );
  267. mbedtls_mpi_init( &v );
  268. mbedtls_mpi_init( &h );
  269. /* Compute signature */
  270. MBEDTLS_MPI_CHK( mbedtls_ecp_gen_keypair_base( (mbedtls_ecp_group *) grp,
  271. G, &v, &V, f_rng, p_rng ) );
  272. MBEDTLS_MPI_CHK( ecjpake_hash( md_info, grp, pf, G, &V, X, id, &h ) );
  273. MBEDTLS_MPI_CHK( mbedtls_mpi_mul_mpi( &h, &h, x ) ); /* x*h */
  274. MBEDTLS_MPI_CHK( mbedtls_mpi_sub_mpi( &h, &v, &h ) ); /* v - x*h */
  275. MBEDTLS_MPI_CHK( mbedtls_mpi_mod_mpi( &h, &h, &grp->N ) ); /* r */
  276. /* Write it out */
  277. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_write_point( grp, &V,
  278. pf, &len, *p, end - *p ) );
  279. *p += len;
  280. len = mbedtls_mpi_size( &h ); /* actually r */
  281. if( end < *p || (size_t)( end - *p ) < 1 + len || len > 255 )
  282. {
  283. ret = MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL;
  284. goto cleanup;
  285. }
  286. *(*p)++ = (unsigned char)( len & 0xFF );
  287. MBEDTLS_MPI_CHK( mbedtls_mpi_write_binary( &h, *p, len ) ); /* r */
  288. *p += len;
  289. cleanup:
  290. mbedtls_ecp_point_free( &V );
  291. mbedtls_mpi_free( &v );
  292. mbedtls_mpi_free( &h );
  293. return( ret );
  294. }
  295. /*
  296. * Parse a ECJPAKEKeyKP (7.4.2.2.1) and check proof
  297. * Output: verified public key X
  298. */
  299. static int ecjpake_kkp_read( const mbedtls_md_info_t *md_info,
  300. const mbedtls_ecp_group *grp,
  301. const int pf,
  302. const mbedtls_ecp_point *G,
  303. mbedtls_ecp_point *X,
  304. const char *id,
  305. const unsigned char **p,
  306. const unsigned char *end )
  307. {
  308. int ret;
  309. if( end < *p )
  310. return( MBEDTLS_ERR_ECP_BAD_INPUT_DATA );
  311. /*
  312. * struct {
  313. * ECPoint X;
  314. * ECSchnorrZKP zkp;
  315. * } ECJPAKEKeyKP;
  316. */
  317. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_read_point( grp, X, p, end - *p ) );
  318. if( mbedtls_ecp_is_zero( X ) )
  319. {
  320. ret = MBEDTLS_ERR_ECP_INVALID_KEY;
  321. goto cleanup;
  322. }
  323. MBEDTLS_MPI_CHK( ecjpake_zkp_read( md_info, grp, pf, G, X, id, p, end ) );
  324. cleanup:
  325. return( ret );
  326. }
  327. /*
  328. * Generate an ECJPAKEKeyKP
  329. * Output: the serialized structure, plus private/public key pair
  330. */
  331. static int ecjpake_kkp_write( const mbedtls_md_info_t *md_info,
  332. const mbedtls_ecp_group *grp,
  333. const int pf,
  334. const mbedtls_ecp_point *G,
  335. mbedtls_mpi *x,
  336. mbedtls_ecp_point *X,
  337. const char *id,
  338. unsigned char **p,
  339. const unsigned char *end,
  340. int (*f_rng)(void *, unsigned char *, size_t),
  341. void *p_rng )
  342. {
  343. int ret;
  344. size_t len;
  345. if( end < *p )
  346. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  347. /* Generate key (7.4.2.3.1) and write it out */
  348. MBEDTLS_MPI_CHK( mbedtls_ecp_gen_keypair_base( (mbedtls_ecp_group *) grp, G, x, X,
  349. f_rng, p_rng ) );
  350. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_write_point( grp, X,
  351. pf, &len, *p, end - *p ) );
  352. *p += len;
  353. /* Generate and write proof */
  354. MBEDTLS_MPI_CHK( ecjpake_zkp_write( md_info, grp, pf, G, x, X, id,
  355. p, end, f_rng, p_rng ) );
  356. cleanup:
  357. return( ret );
  358. }
  359. /*
  360. * Read a ECJPAKEKeyKPPairList (7.4.2.3) and check proofs
  361. * Ouputs: verified peer public keys Xa, Xb
  362. */
  363. static int ecjpake_kkpp_read( const mbedtls_md_info_t *md_info,
  364. const mbedtls_ecp_group *grp,
  365. const int pf,
  366. const mbedtls_ecp_point *G,
  367. mbedtls_ecp_point *Xa,
  368. mbedtls_ecp_point *Xb,
  369. const char *id,
  370. const unsigned char *buf,
  371. size_t len )
  372. {
  373. int ret;
  374. const unsigned char *p = buf;
  375. const unsigned char *end = buf + len;
  376. /*
  377. * struct {
  378. * ECJPAKEKeyKP ecjpake_key_kp_pair_list[2];
  379. * } ECJPAKEKeyKPPairList;
  380. */
  381. MBEDTLS_MPI_CHK( ecjpake_kkp_read( md_info, grp, pf, G, Xa, id, &p, end ) );
  382. MBEDTLS_MPI_CHK( ecjpake_kkp_read( md_info, grp, pf, G, Xb, id, &p, end ) );
  383. if( p != end )
  384. ret = MBEDTLS_ERR_ECP_BAD_INPUT_DATA;
  385. cleanup:
  386. return( ret );
  387. }
  388. /*
  389. * Generate a ECJPAKEKeyKPPairList
  390. * Outputs: the serialized structure, plus two private/public key pairs
  391. */
  392. static int ecjpake_kkpp_write( const mbedtls_md_info_t *md_info,
  393. const mbedtls_ecp_group *grp,
  394. const int pf,
  395. const mbedtls_ecp_point *G,
  396. mbedtls_mpi *xm1,
  397. mbedtls_ecp_point *Xa,
  398. mbedtls_mpi *xm2,
  399. mbedtls_ecp_point *Xb,
  400. const char *id,
  401. unsigned char *buf,
  402. size_t len,
  403. size_t *olen,
  404. int (*f_rng)(void *, unsigned char *, size_t),
  405. void *p_rng )
  406. {
  407. int ret;
  408. unsigned char *p = buf;
  409. const unsigned char *end = buf + len;
  410. MBEDTLS_MPI_CHK( ecjpake_kkp_write( md_info, grp, pf, G, xm1, Xa, id,
  411. &p, end, f_rng, p_rng ) );
  412. MBEDTLS_MPI_CHK( ecjpake_kkp_write( md_info, grp, pf, G, xm2, Xb, id,
  413. &p, end, f_rng, p_rng ) );
  414. *olen = p - buf;
  415. cleanup:
  416. return( ret );
  417. }
  418. /*
  419. * Read and process the first round message
  420. */
  421. int mbedtls_ecjpake_read_round_one( mbedtls_ecjpake_context *ctx,
  422. const unsigned char *buf,
  423. size_t len )
  424. {
  425. return( ecjpake_kkpp_read( ctx->md_info, &ctx->grp, ctx->point_format,
  426. &ctx->grp.G,
  427. &ctx->Xp1, &ctx->Xp2, ID_PEER,
  428. buf, len ) );
  429. }
  430. /*
  431. * Generate and write the first round message
  432. */
  433. int mbedtls_ecjpake_write_round_one( mbedtls_ecjpake_context *ctx,
  434. unsigned char *buf, size_t len, size_t *olen,
  435. int (*f_rng)(void *, unsigned char *, size_t),
  436. void *p_rng )
  437. {
  438. return( ecjpake_kkpp_write( ctx->md_info, &ctx->grp, ctx->point_format,
  439. &ctx->grp.G,
  440. &ctx->xm1, &ctx->Xm1, &ctx->xm2, &ctx->Xm2,
  441. ID_MINE, buf, len, olen, f_rng, p_rng ) );
  442. }
  443. /*
  444. * Compute the sum of three points R = A + B + C
  445. */
  446. static int ecjpake_ecp_add3( mbedtls_ecp_group *grp, mbedtls_ecp_point *R,
  447. const mbedtls_ecp_point *A,
  448. const mbedtls_ecp_point *B,
  449. const mbedtls_ecp_point *C )
  450. {
  451. int ret;
  452. mbedtls_mpi one;
  453. mbedtls_mpi_init( &one );
  454. MBEDTLS_MPI_CHK( mbedtls_mpi_lset( &one, 1 ) );
  455. MBEDTLS_MPI_CHK( mbedtls_ecp_muladd( grp, R, &one, A, &one, B ) );
  456. MBEDTLS_MPI_CHK( mbedtls_ecp_muladd( grp, R, &one, R, &one, C ) );
  457. cleanup:
  458. mbedtls_mpi_free( &one );
  459. return( ret );
  460. }
  461. /*
  462. * Read and process second round message (C: 7.4.2.5, S: 7.4.2.6)
  463. */
  464. int mbedtls_ecjpake_read_round_two( mbedtls_ecjpake_context *ctx,
  465. const unsigned char *buf,
  466. size_t len )
  467. {
  468. int ret;
  469. const unsigned char *p = buf;
  470. const unsigned char *end = buf + len;
  471. mbedtls_ecp_group grp;
  472. mbedtls_ecp_point G; /* C: GB, S: GA */
  473. mbedtls_ecp_group_init( &grp );
  474. mbedtls_ecp_point_init( &G );
  475. /*
  476. * Server: GA = X3 + X4 + X1 (7.4.2.6.1)
  477. * Client: GB = X1 + X2 + X3 (7.4.2.5.1)
  478. * Unified: G = Xm1 + Xm2 + Xp1
  479. * We need that before parsing in order to check Xp as we read it
  480. */
  481. MBEDTLS_MPI_CHK( ecjpake_ecp_add3( &ctx->grp, &G,
  482. &ctx->Xm1, &ctx->Xm2, &ctx->Xp1 ) );
  483. /*
  484. * struct {
  485. * ECParameters curve_params; // only client reading server msg
  486. * ECJPAKEKeyKP ecjpake_key_kp;
  487. * } Client/ServerECJPAKEParams;
  488. */
  489. if( ctx->role == MBEDTLS_ECJPAKE_CLIENT )
  490. {
  491. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_read_group( &grp, &p, len ) );
  492. if( grp.id != ctx->grp.id )
  493. {
  494. ret = MBEDTLS_ERR_ECP_FEATURE_UNAVAILABLE;
  495. goto cleanup;
  496. }
  497. }
  498. MBEDTLS_MPI_CHK( ecjpake_kkp_read( ctx->md_info, &ctx->grp,
  499. ctx->point_format,
  500. &G, &ctx->Xp, ID_PEER, &p, end ) );
  501. if( p != end )
  502. {
  503. ret = MBEDTLS_ERR_ECP_BAD_INPUT_DATA;
  504. goto cleanup;
  505. }
  506. cleanup:
  507. mbedtls_ecp_group_free( &grp );
  508. mbedtls_ecp_point_free( &G );
  509. return( ret );
  510. }
  511. /*
  512. * Compute R = +/- X * S mod N, taking care not to leak S
  513. */
  514. static int ecjpake_mul_secret( mbedtls_mpi *R, int sign,
  515. const mbedtls_mpi *X,
  516. const mbedtls_mpi *S,
  517. const mbedtls_mpi *N,
  518. int (*f_rng)(void *, unsigned char *, size_t),
  519. void *p_rng )
  520. {
  521. int ret;
  522. mbedtls_mpi b; /* Blinding value, then s + N * blinding */
  523. mbedtls_mpi_init( &b );
  524. /* b = s + rnd-128-bit * N */
  525. MBEDTLS_MPI_CHK( mbedtls_mpi_fill_random( &b, 16, f_rng, p_rng ) );
  526. MBEDTLS_MPI_CHK( mbedtls_mpi_mul_mpi( &b, &b, N ) );
  527. MBEDTLS_MPI_CHK( mbedtls_mpi_add_mpi( &b, &b, S ) );
  528. /* R = sign * X * b mod N */
  529. MBEDTLS_MPI_CHK( mbedtls_mpi_mul_mpi( R, X, &b ) );
  530. R->s *= sign;
  531. MBEDTLS_MPI_CHK( mbedtls_mpi_mod_mpi( R, R, N ) );
  532. cleanup:
  533. mbedtls_mpi_free( &b );
  534. return( ret );
  535. }
  536. /*
  537. * Generate and write the second round message (S: 7.4.2.5, C: 7.4.2.6)
  538. */
  539. int mbedtls_ecjpake_write_round_two( mbedtls_ecjpake_context *ctx,
  540. unsigned char *buf, size_t len, size_t *olen,
  541. int (*f_rng)(void *, unsigned char *, size_t),
  542. void *p_rng )
  543. {
  544. int ret;
  545. mbedtls_ecp_point G; /* C: GA, S: GB */
  546. mbedtls_ecp_point Xm; /* C: Xc, S: Xs */
  547. mbedtls_mpi xm; /* C: xc, S: xs */
  548. unsigned char *p = buf;
  549. const unsigned char *end = buf + len;
  550. size_t ec_len;
  551. mbedtls_ecp_point_init( &G );
  552. mbedtls_ecp_point_init( &Xm );
  553. mbedtls_mpi_init( &xm );
  554. /*
  555. * First generate private/public key pair (S: 7.4.2.5.1, C: 7.4.2.6.1)
  556. *
  557. * Client: GA = X1 + X3 + X4 | xs = x2 * s | Xc = xc * GA
  558. * Server: GB = X3 + X1 + X2 | xs = x4 * s | Xs = xs * GB
  559. * Unified: G = Xm1 + Xp1 + Xp2 | xm = xm2 * s | Xm = xm * G
  560. */
  561. MBEDTLS_MPI_CHK( ecjpake_ecp_add3( &ctx->grp, &G,
  562. &ctx->Xp1, &ctx->Xp2, &ctx->Xm1 ) );
  563. MBEDTLS_MPI_CHK( ecjpake_mul_secret( &xm, 1, &ctx->xm2, &ctx->s,
  564. &ctx->grp.N, f_rng, p_rng ) );
  565. MBEDTLS_MPI_CHK( mbedtls_ecp_mul( &ctx->grp, &Xm, &xm, &G, f_rng, p_rng ) );
  566. /*
  567. * Now write things out
  568. *
  569. * struct {
  570. * ECParameters curve_params; // only server writing its message
  571. * ECJPAKEKeyKP ecjpake_key_kp;
  572. * } Client/ServerECJPAKEParams;
  573. */
  574. if( ctx->role == MBEDTLS_ECJPAKE_SERVER )
  575. {
  576. if( end < p )
  577. {
  578. ret = MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL;
  579. goto cleanup;
  580. }
  581. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_write_group( &ctx->grp, &ec_len,
  582. p, end - p ) );
  583. p += ec_len;
  584. }
  585. if( end < p )
  586. {
  587. ret = MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL;
  588. goto cleanup;
  589. }
  590. MBEDTLS_MPI_CHK( mbedtls_ecp_tls_write_point( &ctx->grp, &Xm,
  591. ctx->point_format, &ec_len, p, end - p ) );
  592. p += ec_len;
  593. MBEDTLS_MPI_CHK( ecjpake_zkp_write( ctx->md_info, &ctx->grp,
  594. ctx->point_format,
  595. &G, &xm, &Xm, ID_MINE,
  596. &p, end, f_rng, p_rng ) );
  597. *olen = p - buf;
  598. cleanup:
  599. mbedtls_ecp_point_free( &G );
  600. mbedtls_ecp_point_free( &Xm );
  601. mbedtls_mpi_free( &xm );
  602. return( ret );
  603. }
  604. /*
  605. * Derive PMS (7.4.2.7 / 7.4.2.8)
  606. */
  607. int mbedtls_ecjpake_derive_secret( mbedtls_ecjpake_context *ctx,
  608. unsigned char *buf, size_t len, size_t *olen,
  609. int (*f_rng)(void *, unsigned char *, size_t),
  610. void *p_rng )
  611. {
  612. int ret;
  613. mbedtls_ecp_point K;
  614. mbedtls_mpi m_xm2_s, one;
  615. unsigned char kx[MBEDTLS_ECP_MAX_BYTES];
  616. size_t x_bytes;
  617. *olen = mbedtls_md_get_size( ctx->md_info );
  618. if( len < *olen )
  619. return( MBEDTLS_ERR_ECP_BUFFER_TOO_SMALL );
  620. mbedtls_ecp_point_init( &K );
  621. mbedtls_mpi_init( &m_xm2_s );
  622. mbedtls_mpi_init( &one );
  623. MBEDTLS_MPI_CHK( mbedtls_mpi_lset( &one, 1 ) );
  624. /*
  625. * Client: K = ( Xs - X4 * x2 * s ) * x2
  626. * Server: K = ( Xc - X2 * x4 * s ) * x4
  627. * Unified: K = ( Xp - Xp2 * xm2 * s ) * xm2
  628. */
  629. MBEDTLS_MPI_CHK( ecjpake_mul_secret( &m_xm2_s, -1, &ctx->xm2, &ctx->s,
  630. &ctx->grp.N, f_rng, p_rng ) );
  631. MBEDTLS_MPI_CHK( mbedtls_ecp_muladd( &ctx->grp, &K,
  632. &one, &ctx->Xp,
  633. &m_xm2_s, &ctx->Xp2 ) );
  634. MBEDTLS_MPI_CHK( mbedtls_ecp_mul( &ctx->grp, &K, &ctx->xm2, &K,
  635. f_rng, p_rng ) );
  636. /* PMS = SHA-256( K.X ) */
  637. x_bytes = ( ctx->grp.pbits + 7 ) / 8;
  638. MBEDTLS_MPI_CHK( mbedtls_mpi_write_binary( &K.X, kx, x_bytes ) );
  639. MBEDTLS_MPI_CHK( mbedtls_md( ctx->md_info, kx, x_bytes, buf ) );
  640. cleanup:
  641. mbedtls_ecp_point_free( &K );
  642. mbedtls_mpi_free( &m_xm2_s );
  643. mbedtls_mpi_free( &one );
  644. return( ret );
  645. }
  646. #undef ID_MINE
  647. #undef ID_PEER
  648. #if defined(MBEDTLS_SELF_TEST)
  649. #if defined(MBEDTLS_PLATFORM_C)
  650. #include "mbedtls/platform.h"
  651. #else
  652. #include <stdio.h>
  653. #define mbedtls_printf printf
  654. #endif
  655. #if !defined(MBEDTLS_ECP_DP_SECP256R1_ENABLED) || \
  656. !defined(MBEDTLS_SHA256_C)
  657. int mbedtls_ecjpake_self_test( int verbose )
  658. {
  659. (void) verbose;
  660. return( 0 );
  661. }
  662. #else
  663. static const unsigned char ecjpake_test_password[] = {
  664. 0x74, 0x68, 0x72, 0x65, 0x61, 0x64, 0x6a, 0x70, 0x61, 0x6b, 0x65, 0x74,
  665. 0x65, 0x73, 0x74
  666. };
  667. static const unsigned char ecjpake_test_x1[] = {
  668. 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07, 0x08, 0x09, 0x0a, 0x0b, 0x0c,
  669. 0x0d, 0x0e, 0x0f, 0x10, 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18,
  670. 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x21
  671. };
  672. static const unsigned char ecjpake_test_x2[] = {
  673. 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69, 0x6a, 0x6b, 0x6c,
  674. 0x6d, 0x6e, 0x6f, 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78,
  675. 0x79, 0x7a, 0x7b, 0x7c, 0x7d, 0x7e, 0x7f, 0x81
  676. };
  677. static const unsigned char ecjpake_test_x3[] = {
  678. 0x61, 0x62, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69, 0x6a, 0x6b, 0x6c,
  679. 0x6d, 0x6e, 0x6f, 0x70, 0x71, 0x72, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78,
  680. 0x79, 0x7a, 0x7b, 0x7c, 0x7d, 0x7e, 0x7f, 0x81
  681. };
  682. static const unsigned char ecjpake_test_x4[] = {
  683. 0xc1, 0xc2, 0xc3, 0xc4, 0xc5, 0xc6, 0xc7, 0xc8, 0xc9, 0xca, 0xcb, 0xcc,
  684. 0xcd, 0xce, 0xcf, 0xd0, 0xd1, 0xd2, 0xd3, 0xd4, 0xd5, 0xd6, 0xd7, 0xd8,
  685. 0xd9, 0xda, 0xdb, 0xdc, 0xdd, 0xde, 0xdf, 0xe1
  686. };
  687. static const unsigned char ecjpake_test_cli_one[] = {
  688. 0x41, 0x04, 0xac, 0xcf, 0x01, 0x06, 0xef, 0x85, 0x8f, 0xa2, 0xd9, 0x19,
  689. 0x33, 0x13, 0x46, 0x80, 0x5a, 0x78, 0xb5, 0x8b, 0xba, 0xd0, 0xb8, 0x44,
  690. 0xe5, 0xc7, 0x89, 0x28, 0x79, 0x14, 0x61, 0x87, 0xdd, 0x26, 0x66, 0xad,
  691. 0xa7, 0x81, 0xbb, 0x7f, 0x11, 0x13, 0x72, 0x25, 0x1a, 0x89, 0x10, 0x62,
  692. 0x1f, 0x63, 0x4d, 0xf1, 0x28, 0xac, 0x48, 0xe3, 0x81, 0xfd, 0x6e, 0xf9,
  693. 0x06, 0x07, 0x31, 0xf6, 0x94, 0xa4, 0x41, 0x04, 0x1d, 0xd0, 0xbd, 0x5d,
  694. 0x45, 0x66, 0xc9, 0xbe, 0xd9, 0xce, 0x7d, 0xe7, 0x01, 0xb5, 0xe8, 0x2e,
  695. 0x08, 0xe8, 0x4b, 0x73, 0x04, 0x66, 0x01, 0x8a, 0xb9, 0x03, 0xc7, 0x9e,
  696. 0xb9, 0x82, 0x17, 0x22, 0x36, 0xc0, 0xc1, 0x72, 0x8a, 0xe4, 0xbf, 0x73,
  697. 0x61, 0x0d, 0x34, 0xde, 0x44, 0x24, 0x6e, 0xf3, 0xd9, 0xc0, 0x5a, 0x22,
  698. 0x36, 0xfb, 0x66, 0xa6, 0x58, 0x3d, 0x74, 0x49, 0x30, 0x8b, 0xab, 0xce,
  699. 0x20, 0x72, 0xfe, 0x16, 0x66, 0x29, 0x92, 0xe9, 0x23, 0x5c, 0x25, 0x00,
  700. 0x2f, 0x11, 0xb1, 0x50, 0x87, 0xb8, 0x27, 0x38, 0xe0, 0x3c, 0x94, 0x5b,
  701. 0xf7, 0xa2, 0x99, 0x5d, 0xda, 0x1e, 0x98, 0x34, 0x58, 0x41, 0x04, 0x7e,
  702. 0xa6, 0xe3, 0xa4, 0x48, 0x70, 0x37, 0xa9, 0xe0, 0xdb, 0xd7, 0x92, 0x62,
  703. 0xb2, 0xcc, 0x27, 0x3e, 0x77, 0x99, 0x30, 0xfc, 0x18, 0x40, 0x9a, 0xc5,
  704. 0x36, 0x1c, 0x5f, 0xe6, 0x69, 0xd7, 0x02, 0xe1, 0x47, 0x79, 0x0a, 0xeb,
  705. 0x4c, 0xe7, 0xfd, 0x65, 0x75, 0xab, 0x0f, 0x6c, 0x7f, 0xd1, 0xc3, 0x35,
  706. 0x93, 0x9a, 0xa8, 0x63, 0xba, 0x37, 0xec, 0x91, 0xb7, 0xe3, 0x2b, 0xb0,
  707. 0x13, 0xbb, 0x2b, 0x41, 0x04, 0xa4, 0x95, 0x58, 0xd3, 0x2e, 0xd1, 0xeb,
  708. 0xfc, 0x18, 0x16, 0xaf, 0x4f, 0xf0, 0x9b, 0x55, 0xfc, 0xb4, 0xca, 0x47,
  709. 0xb2, 0xa0, 0x2d, 0x1e, 0x7c, 0xaf, 0x11, 0x79, 0xea, 0x3f, 0xe1, 0x39,
  710. 0x5b, 0x22, 0xb8, 0x61, 0x96, 0x40, 0x16, 0xfa, 0xba, 0xf7, 0x2c, 0x97,
  711. 0x56, 0x95, 0xd9, 0x3d, 0x4d, 0xf0, 0xe5, 0x19, 0x7f, 0xe9, 0xf0, 0x40,
  712. 0x63, 0x4e, 0xd5, 0x97, 0x64, 0x93, 0x77, 0x87, 0xbe, 0x20, 0xbc, 0x4d,
  713. 0xee, 0xbb, 0xf9, 0xb8, 0xd6, 0x0a, 0x33, 0x5f, 0x04, 0x6c, 0xa3, 0xaa,
  714. 0x94, 0x1e, 0x45, 0x86, 0x4c, 0x7c, 0xad, 0xef, 0x9c, 0xf7, 0x5b, 0x3d,
  715. 0x8b, 0x01, 0x0e, 0x44, 0x3e, 0xf0
  716. };
  717. static const unsigned char ecjpake_test_srv_one[] = {
  718. 0x41, 0x04, 0x7e, 0xa6, 0xe3, 0xa4, 0x48, 0x70, 0x37, 0xa9, 0xe0, 0xdb,
  719. 0xd7, 0x92, 0x62, 0xb2, 0xcc, 0x27, 0x3e, 0x77, 0x99, 0x30, 0xfc, 0x18,
  720. 0x40, 0x9a, 0xc5, 0x36, 0x1c, 0x5f, 0xe6, 0x69, 0xd7, 0x02, 0xe1, 0x47,
  721. 0x79, 0x0a, 0xeb, 0x4c, 0xe7, 0xfd, 0x65, 0x75, 0xab, 0x0f, 0x6c, 0x7f,
  722. 0xd1, 0xc3, 0x35, 0x93, 0x9a, 0xa8, 0x63, 0xba, 0x37, 0xec, 0x91, 0xb7,
  723. 0xe3, 0x2b, 0xb0, 0x13, 0xbb, 0x2b, 0x41, 0x04, 0x09, 0xf8, 0x5b, 0x3d,
  724. 0x20, 0xeb, 0xd7, 0x88, 0x5c, 0xe4, 0x64, 0xc0, 0x8d, 0x05, 0x6d, 0x64,
  725. 0x28, 0xfe, 0x4d, 0xd9, 0x28, 0x7a, 0xa3, 0x65, 0xf1, 0x31, 0xf4, 0x36,
  726. 0x0f, 0xf3, 0x86, 0xd8, 0x46, 0x89, 0x8b, 0xc4, 0xb4, 0x15, 0x83, 0xc2,
  727. 0xa5, 0x19, 0x7f, 0x65, 0xd7, 0x87, 0x42, 0x74, 0x6c, 0x12, 0xa5, 0xec,
  728. 0x0a, 0x4f, 0xfe, 0x2f, 0x27, 0x0a, 0x75, 0x0a, 0x1d, 0x8f, 0xb5, 0x16,
  729. 0x20, 0x93, 0x4d, 0x74, 0xeb, 0x43, 0xe5, 0x4d, 0xf4, 0x24, 0xfd, 0x96,
  730. 0x30, 0x6c, 0x01, 0x17, 0xbf, 0x13, 0x1a, 0xfa, 0xbf, 0x90, 0xa9, 0xd3,
  731. 0x3d, 0x11, 0x98, 0xd9, 0x05, 0x19, 0x37, 0x35, 0x14, 0x41, 0x04, 0x19,
  732. 0x0a, 0x07, 0x70, 0x0f, 0xfa, 0x4b, 0xe6, 0xae, 0x1d, 0x79, 0xee, 0x0f,
  733. 0x06, 0xae, 0xb5, 0x44, 0xcd, 0x5a, 0xdd, 0xaa, 0xbe, 0xdf, 0x70, 0xf8,
  734. 0x62, 0x33, 0x21, 0x33, 0x2c, 0x54, 0xf3, 0x55, 0xf0, 0xfb, 0xfe, 0xc7,
  735. 0x83, 0xed, 0x35, 0x9e, 0x5d, 0x0b, 0xf7, 0x37, 0x7a, 0x0f, 0xc4, 0xea,
  736. 0x7a, 0xce, 0x47, 0x3c, 0x9c, 0x11, 0x2b, 0x41, 0xcc, 0xd4, 0x1a, 0xc5,
  737. 0x6a, 0x56, 0x12, 0x41, 0x04, 0x36, 0x0a, 0x1c, 0xea, 0x33, 0xfc, 0xe6,
  738. 0x41, 0x15, 0x64, 0x58, 0xe0, 0xa4, 0xea, 0xc2, 0x19, 0xe9, 0x68, 0x31,
  739. 0xe6, 0xae, 0xbc, 0x88, 0xb3, 0xf3, 0x75, 0x2f, 0x93, 0xa0, 0x28, 0x1d,
  740. 0x1b, 0xf1, 0xfb, 0x10, 0x60, 0x51, 0xdb, 0x96, 0x94, 0xa8, 0xd6, 0xe8,
  741. 0x62, 0xa5, 0xef, 0x13, 0x24, 0xa3, 0xd9, 0xe2, 0x78, 0x94, 0xf1, 0xee,
  742. 0x4f, 0x7c, 0x59, 0x19, 0x99, 0x65, 0xa8, 0xdd, 0x4a, 0x20, 0x91, 0x84,
  743. 0x7d, 0x2d, 0x22, 0xdf, 0x3e, 0xe5, 0x5f, 0xaa, 0x2a, 0x3f, 0xb3, 0x3f,
  744. 0xd2, 0xd1, 0xe0, 0x55, 0xa0, 0x7a, 0x7c, 0x61, 0xec, 0xfb, 0x8d, 0x80,
  745. 0xec, 0x00, 0xc2, 0xc9, 0xeb, 0x12
  746. };
  747. static const unsigned char ecjpake_test_srv_two[] = {
  748. 0x03, 0x00, 0x17, 0x41, 0x04, 0x0f, 0xb2, 0x2b, 0x1d, 0x5d, 0x11, 0x23,
  749. 0xe0, 0xef, 0x9f, 0xeb, 0x9d, 0x8a, 0x2e, 0x59, 0x0a, 0x1f, 0x4d, 0x7c,
  750. 0xed, 0x2c, 0x2b, 0x06, 0x58, 0x6e, 0x8f, 0x2a, 0x16, 0xd4, 0xeb, 0x2f,
  751. 0xda, 0x43, 0x28, 0xa2, 0x0b, 0x07, 0xd8, 0xfd, 0x66, 0x76, 0x54, 0xca,
  752. 0x18, 0xc5, 0x4e, 0x32, 0xa3, 0x33, 0xa0, 0x84, 0x54, 0x51, 0xe9, 0x26,
  753. 0xee, 0x88, 0x04, 0xfd, 0x7a, 0xf0, 0xaa, 0xa7, 0xa6, 0x41, 0x04, 0x55,
  754. 0x16, 0xea, 0x3e, 0x54, 0xa0, 0xd5, 0xd8, 0xb2, 0xce, 0x78, 0x6b, 0x38,
  755. 0xd3, 0x83, 0x37, 0x00, 0x29, 0xa5, 0xdb, 0xe4, 0x45, 0x9c, 0x9d, 0xd6,
  756. 0x01, 0xb4, 0x08, 0xa2, 0x4a, 0xe6, 0x46, 0x5c, 0x8a, 0xc9, 0x05, 0xb9,
  757. 0xeb, 0x03, 0xb5, 0xd3, 0x69, 0x1c, 0x13, 0x9e, 0xf8, 0x3f, 0x1c, 0xd4,
  758. 0x20, 0x0f, 0x6c, 0x9c, 0xd4, 0xec, 0x39, 0x22, 0x18, 0xa5, 0x9e, 0xd2,
  759. 0x43, 0xd3, 0xc8, 0x20, 0xff, 0x72, 0x4a, 0x9a, 0x70, 0xb8, 0x8c, 0xb8,
  760. 0x6f, 0x20, 0xb4, 0x34, 0xc6, 0x86, 0x5a, 0xa1, 0xcd, 0x79, 0x06, 0xdd,
  761. 0x7c, 0x9b, 0xce, 0x35, 0x25, 0xf5, 0x08, 0x27, 0x6f, 0x26, 0x83, 0x6c
  762. };
  763. static const unsigned char ecjpake_test_cli_two[] = {
  764. 0x41, 0x04, 0x69, 0xd5, 0x4e, 0xe8, 0x5e, 0x90, 0xce, 0x3f, 0x12, 0x46,
  765. 0x74, 0x2d, 0xe5, 0x07, 0xe9, 0x39, 0xe8, 0x1d, 0x1d, 0xc1, 0xc5, 0xcb,
  766. 0x98, 0x8b, 0x58, 0xc3, 0x10, 0xc9, 0xfd, 0xd9, 0x52, 0x4d, 0x93, 0x72,
  767. 0x0b, 0x45, 0x54, 0x1c, 0x83, 0xee, 0x88, 0x41, 0x19, 0x1d, 0xa7, 0xce,
  768. 0xd8, 0x6e, 0x33, 0x12, 0xd4, 0x36, 0x23, 0xc1, 0xd6, 0x3e, 0x74, 0x98,
  769. 0x9a, 0xba, 0x4a, 0xff, 0xd1, 0xee, 0x41, 0x04, 0x07, 0x7e, 0x8c, 0x31,
  770. 0xe2, 0x0e, 0x6b, 0xed, 0xb7, 0x60, 0xc1, 0x35, 0x93, 0xe6, 0x9f, 0x15,
  771. 0xbe, 0x85, 0xc2, 0x7d, 0x68, 0xcd, 0x09, 0xcc, 0xb8, 0xc4, 0x18, 0x36,
  772. 0x08, 0x91, 0x7c, 0x5c, 0x3d, 0x40, 0x9f, 0xac, 0x39, 0xfe, 0xfe, 0xe8,
  773. 0x2f, 0x72, 0x92, 0xd3, 0x6f, 0x0d, 0x23, 0xe0, 0x55, 0x91, 0x3f, 0x45,
  774. 0xa5, 0x2b, 0x85, 0xdd, 0x8a, 0x20, 0x52, 0xe9, 0xe1, 0x29, 0xbb, 0x4d,
  775. 0x20, 0x0f, 0x01, 0x1f, 0x19, 0x48, 0x35, 0x35, 0xa6, 0xe8, 0x9a, 0x58,
  776. 0x0c, 0x9b, 0x00, 0x03, 0xba, 0xf2, 0x14, 0x62, 0xec, 0xe9, 0x1a, 0x82,
  777. 0xcc, 0x38, 0xdb, 0xdc, 0xae, 0x60, 0xd9, 0xc5, 0x4c
  778. };
  779. static const unsigned char ecjpake_test_pms[] = {
  780. 0xf3, 0xd4, 0x7f, 0x59, 0x98, 0x44, 0xdb, 0x92, 0xa5, 0x69, 0xbb, 0xe7,
  781. 0x98, 0x1e, 0x39, 0xd9, 0x31, 0xfd, 0x74, 0x3b, 0xf2, 0x2e, 0x98, 0xf9,
  782. 0xb4, 0x38, 0xf7, 0x19, 0xd3, 0xc4, 0xf3, 0x51
  783. };
  784. /* Load my private keys and generate the correponding public keys */
  785. static int ecjpake_test_load( mbedtls_ecjpake_context *ctx,
  786. const unsigned char *xm1, size_t len1,
  787. const unsigned char *xm2, size_t len2 )
  788. {
  789. int ret;
  790. MBEDTLS_MPI_CHK( mbedtls_mpi_read_binary( &ctx->xm1, xm1, len1 ) );
  791. MBEDTLS_MPI_CHK( mbedtls_mpi_read_binary( &ctx->xm2, xm2, len2 ) );
  792. MBEDTLS_MPI_CHK( mbedtls_ecp_mul( &ctx->grp, &ctx->Xm1, &ctx->xm1,
  793. &ctx->grp.G, NULL, NULL ) );
  794. MBEDTLS_MPI_CHK( mbedtls_ecp_mul( &ctx->grp, &ctx->Xm2, &ctx->xm2,
  795. &ctx->grp.G, NULL, NULL ) );
  796. cleanup:
  797. return( ret );
  798. }
  799. /* For tests we don't need a secure RNG;
  800. * use the LGC from Numerical Recipes for simplicity */
  801. static int ecjpake_lgc( void *p, unsigned char *out, size_t len )
  802. {
  803. static uint32_t x = 42;
  804. (void) p;
  805. while( len > 0 )
  806. {
  807. size_t use_len = len > 4 ? 4 : len;
  808. x = 1664525 * x + 1013904223;
  809. memcpy( out, &x, use_len );
  810. out += use_len;
  811. len -= use_len;
  812. }
  813. return( 0 );
  814. }
  815. #define TEST_ASSERT( x ) \
  816. do { \
  817. if( x ) \
  818. ret = 0; \
  819. else \
  820. { \
  821. ret = 1; \
  822. goto cleanup; \
  823. } \
  824. } while( 0 )
  825. /*
  826. * Checkup routine
  827. */
  828. int mbedtls_ecjpake_self_test( int verbose )
  829. {
  830. int ret;
  831. mbedtls_ecjpake_context cli;
  832. mbedtls_ecjpake_context srv;
  833. unsigned char buf[512], pms[32];
  834. size_t len, pmslen;
  835. mbedtls_ecjpake_init( &cli );
  836. mbedtls_ecjpake_init( &srv );
  837. if( verbose != 0 )
  838. mbedtls_printf( " ECJPAKE test #0 (setup): " );
  839. TEST_ASSERT( mbedtls_ecjpake_setup( &cli, MBEDTLS_ECJPAKE_CLIENT,
  840. MBEDTLS_MD_SHA256, MBEDTLS_ECP_DP_SECP256R1,
  841. ecjpake_test_password,
  842. sizeof( ecjpake_test_password ) ) == 0 );
  843. TEST_ASSERT( mbedtls_ecjpake_setup( &srv, MBEDTLS_ECJPAKE_SERVER,
  844. MBEDTLS_MD_SHA256, MBEDTLS_ECP_DP_SECP256R1,
  845. ecjpake_test_password,
  846. sizeof( ecjpake_test_password ) ) == 0 );
  847. if( verbose != 0 )
  848. mbedtls_printf( "passed\n" );
  849. if( verbose != 0 )
  850. mbedtls_printf( " ECJPAKE test #1 (random handshake): " );
  851. TEST_ASSERT( mbedtls_ecjpake_write_round_one( &cli,
  852. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  853. TEST_ASSERT( mbedtls_ecjpake_read_round_one( &srv, buf, len ) == 0 );
  854. TEST_ASSERT( mbedtls_ecjpake_write_round_one( &srv,
  855. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  856. TEST_ASSERT( mbedtls_ecjpake_read_round_one( &cli, buf, len ) == 0 );
  857. TEST_ASSERT( mbedtls_ecjpake_write_round_two( &srv,
  858. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  859. TEST_ASSERT( mbedtls_ecjpake_read_round_two( &cli, buf, len ) == 0 );
  860. TEST_ASSERT( mbedtls_ecjpake_derive_secret( &cli,
  861. pms, sizeof( pms ), &pmslen, ecjpake_lgc, NULL ) == 0 );
  862. TEST_ASSERT( mbedtls_ecjpake_write_round_two( &cli,
  863. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  864. TEST_ASSERT( mbedtls_ecjpake_read_round_two( &srv, buf, len ) == 0 );
  865. TEST_ASSERT( mbedtls_ecjpake_derive_secret( &srv,
  866. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  867. TEST_ASSERT( len == pmslen );
  868. TEST_ASSERT( memcmp( buf, pms, len ) == 0 );
  869. if( verbose != 0 )
  870. mbedtls_printf( "passed\n" );
  871. if( verbose != 0 )
  872. mbedtls_printf( " ECJPAKE test #2 (reference handshake): " );
  873. /* Simulate generation of round one */
  874. MBEDTLS_MPI_CHK( ecjpake_test_load( &cli,
  875. ecjpake_test_x1, sizeof( ecjpake_test_x1 ),
  876. ecjpake_test_x2, sizeof( ecjpake_test_x2 ) ) );
  877. MBEDTLS_MPI_CHK( ecjpake_test_load( &srv,
  878. ecjpake_test_x3, sizeof( ecjpake_test_x3 ),
  879. ecjpake_test_x4, sizeof( ecjpake_test_x4 ) ) );
  880. /* Read round one */
  881. TEST_ASSERT( mbedtls_ecjpake_read_round_one( &srv,
  882. ecjpake_test_cli_one,
  883. sizeof( ecjpake_test_cli_one ) ) == 0 );
  884. TEST_ASSERT( mbedtls_ecjpake_read_round_one( &cli,
  885. ecjpake_test_srv_one,
  886. sizeof( ecjpake_test_srv_one ) ) == 0 );
  887. /* Skip generation of round two, read round two */
  888. TEST_ASSERT( mbedtls_ecjpake_read_round_two( &cli,
  889. ecjpake_test_srv_two,
  890. sizeof( ecjpake_test_srv_two ) ) == 0 );
  891. TEST_ASSERT( mbedtls_ecjpake_read_round_two( &srv,
  892. ecjpake_test_cli_two,
  893. sizeof( ecjpake_test_cli_two ) ) == 0 );
  894. /* Server derives PMS */
  895. TEST_ASSERT( mbedtls_ecjpake_derive_secret( &srv,
  896. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  897. TEST_ASSERT( len == sizeof( ecjpake_test_pms ) );
  898. TEST_ASSERT( memcmp( buf, ecjpake_test_pms, len ) == 0 );
  899. memset( buf, 0, len ); /* Avoid interferences with next step */
  900. /* Client derives PMS */
  901. TEST_ASSERT( mbedtls_ecjpake_derive_secret( &cli,
  902. buf, sizeof( buf ), &len, ecjpake_lgc, NULL ) == 0 );
  903. TEST_ASSERT( len == sizeof( ecjpake_test_pms ) );
  904. TEST_ASSERT( memcmp( buf, ecjpake_test_pms, len ) == 0 );
  905. if( verbose != 0 )
  906. mbedtls_printf( "passed\n" );
  907. cleanup:
  908. mbedtls_ecjpake_free( &cli );
  909. mbedtls_ecjpake_free( &srv );
  910. if( ret != 0 )
  911. {
  912. if( verbose != 0 )
  913. mbedtls_printf( "failed\n" );
  914. ret = 1;
  915. }
  916. if( verbose != 0 )
  917. mbedtls_printf( "\n" );
  918. return( ret );
  919. }
  920. #undef TEST_ASSERT
  921. #endif /* MBEDTLS_ECP_DP_SECP256R1_ENABLED && MBEDTLS_SHA256_C */
  922. #endif /* MBEDTLS_SELF_TEST */
  923. #endif /* MBEDTLS_ECJPAKE_C */