eap_server_pwd.c 22 KB

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  1. /*
  2. * hostapd / EAP-pwd (RFC 5931) server
  3. * Copyright (c) 2010, Dan Harkins <dharkins@lounge.org>
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the BSD license.
  7. *
  8. * Alternatively, this software may be distributed under the terms of the
  9. * GNU General Public License version 2 as published by the Free Software
  10. * Foundation.
  11. *
  12. * See README and COPYING for more details.
  13. */
  14. #include "includes.h"
  15. #include "common.h"
  16. #include "eap_server/eap_i.h"
  17. #include "eap_common/eap_pwd_common.h"
  18. struct eap_pwd_data {
  19. enum {
  20. PWD_ID_Req, PWD_Commit_Req, PWD_Confirm_Req, SUCCESS, FAILURE
  21. } state;
  22. u8 *id_peer;
  23. size_t id_peer_len;
  24. u8 *id_server;
  25. size_t id_server_len;
  26. u8 *password;
  27. size_t password_len;
  28. u32 token;
  29. u16 group_num;
  30. EAP_PWD_group *grp;
  31. BIGNUM *k;
  32. BIGNUM *private_value;
  33. BIGNUM *peer_scalar;
  34. BIGNUM *my_scalar;
  35. EC_POINT *my_element;
  36. EC_POINT *peer_element;
  37. u8 my_confirm[SHA256_DIGEST_LENGTH];
  38. u8 msk[EAP_MSK_LEN];
  39. u8 emsk[EAP_EMSK_LEN];
  40. BN_CTX *bnctx;
  41. };
  42. static const char * eap_pwd_state_txt(int state)
  43. {
  44. switch (state) {
  45. case PWD_ID_Req:
  46. return "PWD-ID-Req";
  47. case PWD_Commit_Req:
  48. return "PWD-Commit-Req";
  49. case PWD_Confirm_Req:
  50. return "PWD-Confirm-Req";
  51. case SUCCESS:
  52. return "SUCCESS";
  53. case FAILURE:
  54. return "FAILURE";
  55. default:
  56. return "PWD-Unk";
  57. }
  58. }
  59. static void eap_pwd_state(struct eap_pwd_data *data, int state)
  60. {
  61. wpa_printf(MSG_DEBUG, "EAP-pwd: %s -> %s",
  62. eap_pwd_state_txt(data->state), eap_pwd_state_txt(state));
  63. data->state = state;
  64. }
  65. static void * eap_pwd_init(struct eap_sm *sm)
  66. {
  67. struct eap_pwd_data *data;
  68. if (sm->user == NULL || sm->user->password == NULL ||
  69. sm->user->password_len == 0) {
  70. wpa_printf(MSG_INFO, "EAP-PWD (server): Password is not "
  71. "configured");
  72. return NULL;
  73. }
  74. data = os_zalloc(sizeof(*data));
  75. if (data == NULL)
  76. return NULL;
  77. data->group_num = sm->pwd_group;
  78. wpa_printf(MSG_DEBUG, "EAP-pwd: Selected group number %d",
  79. data->group_num);
  80. data->state = PWD_ID_Req;
  81. data->id_server = (u8 *) os_strdup("server");
  82. if (data->id_server)
  83. data->id_server_len = os_strlen((char *) data->id_server);
  84. data->password = os_malloc(sm->user->password_len);
  85. if (data->password == NULL) {
  86. wpa_printf(MSG_INFO, "EAP-PWD: Memory allocation password "
  87. "fail");
  88. os_free(data->id_server);
  89. os_free(data);
  90. return NULL;
  91. }
  92. data->password_len = sm->user->password_len;
  93. os_memcpy(data->password, sm->user->password, data->password_len);
  94. data->bnctx = BN_CTX_new();
  95. if (data->bnctx == NULL) {
  96. wpa_printf(MSG_INFO, "EAP-PWD: bn context allocation fail");
  97. os_free(data->password);
  98. os_free(data->id_server);
  99. os_free(data);
  100. return NULL;
  101. }
  102. return data;
  103. }
  104. static void eap_pwd_reset(struct eap_sm *sm, void *priv)
  105. {
  106. struct eap_pwd_data *data = priv;
  107. BN_free(data->private_value);
  108. BN_free(data->peer_scalar);
  109. BN_free(data->my_scalar);
  110. BN_free(data->k);
  111. BN_CTX_free(data->bnctx);
  112. EC_POINT_free(data->my_element);
  113. EC_POINT_free(data->peer_element);
  114. os_free(data->id_peer);
  115. os_free(data->id_server);
  116. os_free(data->password);
  117. if (data->grp) {
  118. EC_GROUP_free(data->grp->group);
  119. EC_POINT_free(data->grp->pwe);
  120. BN_free(data->grp->order);
  121. BN_free(data->grp->prime);
  122. os_free(data->grp);
  123. }
  124. os_free(data);
  125. }
  126. static struct wpabuf *
  127. eap_pwd_build_id_req(struct eap_sm *sm, struct eap_pwd_data *data, u8 id)
  128. {
  129. struct wpabuf *req;
  130. wpa_printf(MSG_DEBUG, "EAP-pwd: ID/Request");
  131. req = eap_msg_alloc(EAP_VENDOR_IETF, EAP_TYPE_PWD,
  132. sizeof(struct eap_pwd_hdr) +
  133. sizeof(struct eap_pwd_id) + data->id_server_len,
  134. EAP_CODE_REQUEST, id);
  135. if (req == NULL) {
  136. eap_pwd_state(data, FAILURE);
  137. return NULL;
  138. }
  139. /* an lfsr is good enough to generate unpredictable tokens */
  140. data->token = os_random();
  141. wpabuf_put_u8(req, EAP_PWD_OPCODE_ID_EXCH);
  142. wpabuf_put_be16(req, data->group_num);
  143. wpabuf_put_u8(req, EAP_PWD_DEFAULT_RAND_FUNC);
  144. wpabuf_put_u8(req, EAP_PWD_DEFAULT_PRF);
  145. wpabuf_put_data(req, &data->token, sizeof(data->token));
  146. wpabuf_put_u8(req, EAP_PWD_PREP_NONE);
  147. wpabuf_put_data(req, data->id_server, data->id_server_len);
  148. return req;
  149. }
  150. static struct wpabuf *
  151. eap_pwd_build_commit_req(struct eap_sm *sm, struct eap_pwd_data *data, u8 id)
  152. {
  153. struct wpabuf *req = NULL;
  154. BIGNUM *mask = NULL, *x = NULL, *y = NULL;
  155. u8 *scalar = NULL, *element = NULL;
  156. u16 offset;
  157. wpa_printf(MSG_DEBUG, "EAP-pwd: Commit/Request");
  158. if (((data->private_value = BN_new()) == NULL) ||
  159. ((data->my_element = EC_POINT_new(data->grp->group)) == NULL) ||
  160. ((data->my_scalar = BN_new()) == NULL) ||
  161. ((mask = BN_new()) == NULL)) {
  162. wpa_printf(MSG_INFO, "EAP-PWD (server): scalar allocation "
  163. "fail");
  164. goto fin;
  165. }
  166. BN_rand_range(data->private_value, data->grp->order);
  167. BN_rand_range(mask, data->grp->order);
  168. BN_add(data->my_scalar, data->private_value, mask);
  169. BN_mod(data->my_scalar, data->my_scalar, data->grp->order,
  170. data->bnctx);
  171. if (!EC_POINT_mul(data->grp->group, data->my_element, NULL,
  172. data->grp->pwe, mask, data->bnctx)) {
  173. wpa_printf(MSG_INFO, "EAP-PWD (server): element allocation "
  174. "fail");
  175. eap_pwd_state(data, FAILURE);
  176. goto fin;
  177. }
  178. if (!EC_POINT_invert(data->grp->group, data->my_element, data->bnctx))
  179. {
  180. wpa_printf(MSG_INFO, "EAP-PWD (server): element inversion "
  181. "fail");
  182. goto fin;
  183. }
  184. BN_free(mask);
  185. if (((x = BN_new()) == NULL) ||
  186. ((y = BN_new()) == NULL)) {
  187. wpa_printf(MSG_INFO, "EAP-PWD (server): point allocation "
  188. "fail");
  189. goto fin;
  190. }
  191. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group,
  192. data->my_element, x, y,
  193. data->bnctx)) {
  194. wpa_printf(MSG_INFO, "EAP-PWD (server): point assignment "
  195. "fail");
  196. goto fin;
  197. }
  198. if (((scalar = os_malloc(BN_num_bytes(data->grp->order))) == NULL) ||
  199. ((element = os_malloc(BN_num_bytes(data->grp->prime) * 2)) ==
  200. NULL)) {
  201. wpa_printf(MSG_INFO, "EAP-PWD (server): data allocation fail");
  202. goto fin;
  203. }
  204. /*
  205. * bignums occupy as little memory as possible so one that is
  206. * sufficiently smaller than the prime or order might need pre-pending
  207. * with zeros.
  208. */
  209. os_memset(scalar, 0, BN_num_bytes(data->grp->order));
  210. os_memset(element, 0, BN_num_bytes(data->grp->prime) * 2);
  211. offset = BN_num_bytes(data->grp->order) -
  212. BN_num_bytes(data->my_scalar);
  213. BN_bn2bin(data->my_scalar, scalar + offset);
  214. offset = BN_num_bytes(data->grp->prime) - BN_num_bytes(x);
  215. BN_bn2bin(x, element + offset);
  216. offset = BN_num_bytes(data->grp->prime) - BN_num_bytes(y);
  217. BN_bn2bin(y, element + BN_num_bytes(data->grp->prime) + offset);
  218. req = eap_msg_alloc(EAP_VENDOR_IETF, EAP_TYPE_PWD,
  219. sizeof(struct eap_pwd_hdr) +
  220. (2 * BN_num_bytes(data->grp->prime)) +
  221. BN_num_bytes(data->grp->order),
  222. EAP_CODE_REQUEST, id);
  223. if (req == NULL)
  224. goto fin;
  225. wpabuf_put_u8(req, EAP_PWD_OPCODE_COMMIT_EXCH);
  226. /* We send the element as (x,y) followed by the scalar */
  227. wpabuf_put_data(req, element, (2 * BN_num_bytes(data->grp->prime)));
  228. wpabuf_put_data(req, scalar, BN_num_bytes(data->grp->order));
  229. fin:
  230. os_free(scalar);
  231. os_free(element);
  232. BN_free(x);
  233. BN_free(y);
  234. if (req == NULL)
  235. eap_pwd_state(data, FAILURE);
  236. return req;
  237. }
  238. static struct wpabuf *
  239. eap_pwd_build_confirm_req(struct eap_sm *sm, struct eap_pwd_data *data, u8 id)
  240. {
  241. struct wpabuf *req = NULL;
  242. BIGNUM *x = NULL, *y = NULL;
  243. HMAC_CTX ctx;
  244. u8 conf[SHA256_DIGEST_LENGTH], *cruft = NULL, *ptr;
  245. u16 grp;
  246. wpa_printf(MSG_DEBUG, "EAP-pwd: Confirm/Request");
  247. /* Each component of the cruft will be at most as big as the prime */
  248. if (((cruft = os_malloc(BN_num_bytes(data->grp->prime))) == NULL) ||
  249. ((x = BN_new()) == NULL) || ((y = BN_new()) == NULL)) {
  250. wpa_printf(MSG_INFO, "EAP-PWD (server): debug allocation "
  251. "fail");
  252. goto fin;
  253. }
  254. /*
  255. * commit is H(k | server_element | server_scalar | peer_element |
  256. * peer_scalar | ciphersuite)
  257. */
  258. H_Init(&ctx);
  259. /*
  260. * Zero the memory each time because this is mod prime math and some
  261. * value may start with a few zeros and the previous one did not.
  262. *
  263. * First is k
  264. */
  265. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  266. BN_bn2bin(data->k, cruft);
  267. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  268. /* server element: x, y */
  269. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group,
  270. data->my_element, x, y,
  271. data->bnctx)) {
  272. wpa_printf(MSG_INFO, "EAP-PWD (server): confirm point "
  273. "assignment fail");
  274. goto fin;
  275. }
  276. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  277. BN_bn2bin(x, cruft);
  278. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  279. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  280. BN_bn2bin(y, cruft);
  281. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  282. /* server scalar */
  283. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  284. BN_bn2bin(data->my_scalar, cruft);
  285. H_Update(&ctx, cruft, BN_num_bytes(data->grp->order));
  286. /* peer element: x, y */
  287. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group,
  288. data->peer_element, x, y,
  289. data->bnctx)) {
  290. wpa_printf(MSG_INFO, "EAP-PWD (server): confirm point "
  291. "assignment fail");
  292. goto fin;
  293. }
  294. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  295. BN_bn2bin(x, cruft);
  296. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  297. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  298. BN_bn2bin(y, cruft);
  299. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  300. /* peer scalar */
  301. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  302. BN_bn2bin(data->peer_scalar, cruft);
  303. H_Update(&ctx, cruft, BN_num_bytes(data->grp->order));
  304. /* ciphersuite */
  305. grp = htons(data->group_num);
  306. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  307. ptr = cruft;
  308. os_memcpy(ptr, &grp, sizeof(u16));
  309. ptr += sizeof(u16);
  310. *ptr = EAP_PWD_DEFAULT_RAND_FUNC;
  311. ptr += sizeof(u8);
  312. *ptr = EAP_PWD_DEFAULT_PRF;
  313. ptr += sizeof(u8);
  314. H_Update(&ctx, cruft, ptr-cruft);
  315. /* all done with the random function */
  316. H_Final(&ctx, conf);
  317. os_memcpy(data->my_confirm, conf, SHA256_DIGEST_LENGTH);
  318. req = eap_msg_alloc(EAP_VENDOR_IETF, EAP_TYPE_PWD,
  319. sizeof(struct eap_pwd_hdr) + SHA256_DIGEST_LENGTH,
  320. EAP_CODE_REQUEST, id);
  321. if (req == NULL)
  322. goto fin;
  323. wpabuf_put_u8(req, EAP_PWD_OPCODE_CONFIRM_EXCH);
  324. wpabuf_put_data(req, conf, SHA256_DIGEST_LENGTH);
  325. fin:
  326. os_free(cruft);
  327. BN_free(x);
  328. BN_free(y);
  329. if (req == NULL)
  330. eap_pwd_state(data, FAILURE);
  331. return req;
  332. }
  333. static struct wpabuf *
  334. eap_pwd_build_req(struct eap_sm *sm, void *priv, u8 id)
  335. {
  336. struct eap_pwd_data *data = priv;
  337. switch (data->state) {
  338. case PWD_ID_Req:
  339. return eap_pwd_build_id_req(sm, data, id);
  340. case PWD_Commit_Req:
  341. return eap_pwd_build_commit_req(sm, data, id);
  342. case PWD_Confirm_Req:
  343. return eap_pwd_build_confirm_req(sm, data, id);
  344. default:
  345. wpa_printf(MSG_INFO, "EAP-pwd: Unknown state %d in build_req",
  346. data->state);
  347. break;
  348. }
  349. return NULL;
  350. }
  351. static Boolean eap_pwd_check(struct eap_sm *sm, void *priv,
  352. struct wpabuf *respData)
  353. {
  354. struct eap_pwd_data *data = priv;
  355. const u8 *pos;
  356. size_t len;
  357. pos = eap_hdr_validate(EAP_VENDOR_IETF, EAP_TYPE_PWD, respData, &len);
  358. if (pos == NULL || len < 1) {
  359. wpa_printf(MSG_INFO, "EAP-pwd: Invalid frame");
  360. return TRUE;
  361. }
  362. wpa_printf(MSG_DEBUG, "EAP-pwd: Received frame: opcode=%d", *pos);
  363. if (data->state == PWD_ID_Req && *pos == EAP_PWD_OPCODE_ID_EXCH)
  364. return FALSE;
  365. if (data->state == PWD_Commit_Req &&
  366. *pos == EAP_PWD_OPCODE_COMMIT_EXCH)
  367. return FALSE;
  368. if (data->state == PWD_Confirm_Req &&
  369. *pos == EAP_PWD_OPCODE_CONFIRM_EXCH)
  370. return FALSE;
  371. wpa_printf(MSG_INFO, "EAP-pwd: Unexpected opcode=%d in state=%d",
  372. *pos, data->state);
  373. return TRUE;
  374. }
  375. static void eap_pwd_process_id_resp(struct eap_sm *sm,
  376. struct eap_pwd_data *data,
  377. const u8 *payload, size_t payload_len)
  378. {
  379. struct eap_pwd_id *id;
  380. if (payload_len < sizeof(struct eap_pwd_id)) {
  381. wpa_printf(MSG_INFO, "EAP-pwd: Invalid ID response");
  382. return;
  383. }
  384. id = (struct eap_pwd_id *) payload;
  385. if ((data->group_num != be_to_host16(id->group_num)) ||
  386. (id->random_function != EAP_PWD_DEFAULT_RAND_FUNC) ||
  387. (os_memcmp(id->token, (u8 *)&data->token, sizeof(data->token))) ||
  388. (id->prf != EAP_PWD_DEFAULT_PRF)) {
  389. wpa_printf(MSG_INFO, "EAP-pwd: peer changed parameters");
  390. eap_pwd_state(data, FAILURE);
  391. return;
  392. }
  393. data->id_peer = os_malloc(payload_len - sizeof(struct eap_pwd_id));
  394. if (data->id_peer == NULL) {
  395. wpa_printf(MSG_INFO, "EAP-PWD: memory allocation id fail");
  396. return;
  397. }
  398. data->id_peer_len = payload_len - sizeof(struct eap_pwd_id);
  399. os_memcpy(data->id_peer, id->identity, data->id_peer_len);
  400. wpa_hexdump_ascii(MSG_DEBUG, "EAP-PWD (server): peer sent id of",
  401. data->id_peer, data->id_peer_len);
  402. if ((data->grp = os_malloc(sizeof(EAP_PWD_group))) == NULL) {
  403. wpa_printf(MSG_INFO, "EAP-PWD: failed to allocate memory for "
  404. "group");
  405. return;
  406. }
  407. if (compute_password_element(data->grp, data->group_num,
  408. data->password, data->password_len,
  409. data->id_server, data->id_server_len,
  410. data->id_peer, data->id_peer_len,
  411. (u8 *) &data->token)) {
  412. wpa_printf(MSG_INFO, "EAP-PWD (server): unable to compute "
  413. "PWE");
  414. return;
  415. }
  416. wpa_printf(MSG_DEBUG, "EAP-PWD (server): computed %d bit PWE...",
  417. BN_num_bits(data->grp->prime));
  418. eap_pwd_state(data, PWD_Commit_Req);
  419. }
  420. static void
  421. eap_pwd_process_commit_resp(struct eap_sm *sm, struct eap_pwd_data *data,
  422. const u8 *payload, size_t payload_len)
  423. {
  424. u8 *ptr;
  425. BIGNUM *x = NULL, *y = NULL, *cofactor = NULL;
  426. EC_POINT *K = NULL, *point = NULL;
  427. int res = 0;
  428. wpa_printf(MSG_DEBUG, "EAP-pwd: Received commit response");
  429. if (((data->peer_scalar = BN_new()) == NULL) ||
  430. ((data->k = BN_new()) == NULL) ||
  431. ((cofactor = BN_new()) == NULL) ||
  432. ((x = BN_new()) == NULL) ||
  433. ((y = BN_new()) == NULL) ||
  434. ((point = EC_POINT_new(data->grp->group)) == NULL) ||
  435. ((K = EC_POINT_new(data->grp->group)) == NULL) ||
  436. ((data->peer_element = EC_POINT_new(data->grp->group)) == NULL)) {
  437. wpa_printf(MSG_INFO, "EAP-PWD (server): peer data allocation "
  438. "fail");
  439. goto fin;
  440. }
  441. if (!EC_GROUP_get_cofactor(data->grp->group, cofactor, NULL)) {
  442. wpa_printf(MSG_INFO, "EAP-PWD (server): unable to get "
  443. "cofactor for curve");
  444. goto fin;
  445. }
  446. /* element, x then y, followed by scalar */
  447. ptr = (u8 *) payload;
  448. BN_bin2bn(ptr, BN_num_bytes(data->grp->prime), x);
  449. ptr += BN_num_bytes(data->grp->prime);
  450. BN_bin2bn(ptr, BN_num_bytes(data->grp->prime), y);
  451. ptr += BN_num_bytes(data->grp->prime);
  452. BN_bin2bn(ptr, BN_num_bytes(data->grp->order), data->peer_scalar);
  453. if (!EC_POINT_set_affine_coordinates_GFp(data->grp->group,
  454. data->peer_element, x, y,
  455. data->bnctx)) {
  456. wpa_printf(MSG_INFO, "EAP-PWD (server): setting peer element "
  457. "fail");
  458. goto fin;
  459. }
  460. /* check to ensure peer's element is not in a small sub-group */
  461. if (BN_cmp(cofactor, BN_value_one())) {
  462. if (!EC_POINT_mul(data->grp->group, point, NULL,
  463. data->peer_element, cofactor, NULL)) {
  464. wpa_printf(MSG_INFO, "EAP-PWD (server): cannot "
  465. "multiply peer element by order");
  466. goto fin;
  467. }
  468. if (EC_POINT_is_at_infinity(data->grp->group, point)) {
  469. wpa_printf(MSG_INFO, "EAP-PWD (server): peer element "
  470. "is at infinity!\n");
  471. goto fin;
  472. }
  473. }
  474. /* compute the shared key, k */
  475. if ((!EC_POINT_mul(data->grp->group, K, NULL, data->grp->pwe,
  476. data->peer_scalar, data->bnctx)) ||
  477. (!EC_POINT_add(data->grp->group, K, K, data->peer_element,
  478. data->bnctx)) ||
  479. (!EC_POINT_mul(data->grp->group, K, NULL, K, data->private_value,
  480. data->bnctx))) {
  481. wpa_printf(MSG_INFO, "EAP-PWD (server): computing shared key "
  482. "fail");
  483. goto fin;
  484. }
  485. /* ensure that the shared key isn't in a small sub-group */
  486. if (BN_cmp(cofactor, BN_value_one())) {
  487. if (!EC_POINT_mul(data->grp->group, K, NULL, K, cofactor,
  488. NULL)) {
  489. wpa_printf(MSG_INFO, "EAP-PWD (server): cannot "
  490. "multiply shared key point by order!\n");
  491. goto fin;
  492. }
  493. }
  494. /*
  495. * This check is strictly speaking just for the case above where
  496. * co-factor > 1 but it was suggested that even though this is probably
  497. * never going to happen it is a simple and safe check "just to be
  498. * sure" so let's be safe.
  499. */
  500. if (EC_POINT_is_at_infinity(data->grp->group, K)) {
  501. wpa_printf(MSG_INFO, "EAP-PWD (server): shared key point is "
  502. "at infinity");
  503. goto fin;
  504. }
  505. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group, K, data->k,
  506. NULL, data->bnctx)) {
  507. wpa_printf(MSG_INFO, "EAP-PWD (server): unable to extract "
  508. "shared secret from secret point");
  509. goto fin;
  510. }
  511. res = 1;
  512. fin:
  513. EC_POINT_free(K);
  514. EC_POINT_free(point);
  515. BN_free(cofactor);
  516. BN_free(x);
  517. BN_free(y);
  518. if (res)
  519. eap_pwd_state(data, PWD_Confirm_Req);
  520. else
  521. eap_pwd_state(data, FAILURE);
  522. }
  523. static void
  524. eap_pwd_process_confirm_resp(struct eap_sm *sm, struct eap_pwd_data *data,
  525. const u8 *payload, size_t payload_len)
  526. {
  527. BIGNUM *x = NULL, *y = NULL;
  528. HMAC_CTX ctx;
  529. u32 cs;
  530. u16 grp;
  531. u8 conf[SHA256_DIGEST_LENGTH], *cruft = NULL, *ptr;
  532. /* build up the ciphersuite: group | random_function | prf */
  533. grp = htons(data->group_num);
  534. ptr = (u8 *) &cs;
  535. os_memcpy(ptr, &grp, sizeof(u16));
  536. ptr += sizeof(u16);
  537. *ptr = EAP_PWD_DEFAULT_RAND_FUNC;
  538. ptr += sizeof(u8);
  539. *ptr = EAP_PWD_DEFAULT_PRF;
  540. /* each component of the cruft will be at most as big as the prime */
  541. if (((cruft = os_malloc(BN_num_bytes(data->grp->prime))) == NULL) ||
  542. ((x = BN_new()) == NULL) || ((y = BN_new()) == NULL)) {
  543. wpa_printf(MSG_INFO, "EAP-PWD (peer): allocation fail");
  544. goto fin;
  545. }
  546. /*
  547. * commit is H(k | peer_element | peer_scalar | server_element |
  548. * server_scalar | ciphersuite)
  549. */
  550. H_Init(&ctx);
  551. /* k */
  552. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  553. BN_bn2bin(data->k, cruft);
  554. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  555. /* peer element: x, y */
  556. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group,
  557. data->peer_element, x, y,
  558. data->bnctx)) {
  559. wpa_printf(MSG_INFO, "EAP-PWD (server): confirm point "
  560. "assignment fail");
  561. goto fin;
  562. }
  563. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  564. BN_bn2bin(x, cruft);
  565. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  566. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  567. BN_bn2bin(y, cruft);
  568. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  569. /* peer scalar */
  570. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  571. BN_bn2bin(data->peer_scalar, cruft);
  572. H_Update(&ctx, cruft, BN_num_bytes(data->grp->order));
  573. /* server element: x, y */
  574. if (!EC_POINT_get_affine_coordinates_GFp(data->grp->group,
  575. data->my_element, x, y,
  576. data->bnctx)) {
  577. wpa_printf(MSG_INFO, "EAP-PWD (server): confirm point "
  578. "assignment fail");
  579. goto fin;
  580. }
  581. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  582. BN_bn2bin(x, cruft);
  583. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  584. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  585. BN_bn2bin(y, cruft);
  586. H_Update(&ctx, cruft, BN_num_bytes(data->grp->prime));
  587. /* server scalar */
  588. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  589. BN_bn2bin(data->my_scalar, cruft);
  590. H_Update(&ctx, cruft, BN_num_bytes(data->grp->order));
  591. /* ciphersuite */
  592. os_memset(cruft, 0, BN_num_bytes(data->grp->prime));
  593. H_Update(&ctx, (u8 *)&cs, sizeof(u32));
  594. /* all done */
  595. H_Final(&ctx, conf);
  596. ptr = (u8 *) payload;
  597. if (os_memcmp(conf, ptr, SHA256_DIGEST_LENGTH)) {
  598. wpa_printf(MSG_INFO, "EAP-PWD (server): confirm did not "
  599. "verify");
  600. goto fin;
  601. }
  602. wpa_printf(MSG_DEBUG, "EAP-pwd (server): confirm verified");
  603. if (compute_keys(data->grp, data->bnctx, data->k,
  604. data->peer_scalar, data->my_scalar, conf,
  605. data->my_confirm, &cs, data->msk, data->emsk) < 0)
  606. eap_pwd_state(data, FAILURE);
  607. else
  608. eap_pwd_state(data, SUCCESS);
  609. fin:
  610. os_free(cruft);
  611. BN_free(x);
  612. BN_free(y);
  613. }
  614. static void eap_pwd_process(struct eap_sm *sm, void *priv,
  615. struct wpabuf *respData)
  616. {
  617. struct eap_pwd_data *data = priv;
  618. const u8 *pos;
  619. size_t len;
  620. u8 exch;
  621. pos = eap_hdr_validate(EAP_VENDOR_IETF, EAP_TYPE_PWD, respData, &len);
  622. if ((pos == NULL) || (len < 1)) {
  623. wpa_printf(MSG_INFO, "Bad EAP header! pos %s and len = %d",
  624. (pos == NULL) ? "is NULL" : "is not NULL",
  625. (int) len);
  626. return;
  627. }
  628. exch = *pos & 0x3f;
  629. switch (exch) {
  630. case EAP_PWD_OPCODE_ID_EXCH:
  631. eap_pwd_process_id_resp(sm, data, pos + 1, len - 1);
  632. break;
  633. case EAP_PWD_OPCODE_COMMIT_EXCH:
  634. eap_pwd_process_commit_resp(sm, data, pos + 1, len - 1);
  635. break;
  636. case EAP_PWD_OPCODE_CONFIRM_EXCH:
  637. eap_pwd_process_confirm_resp(sm, data, pos + 1, len - 1);
  638. break;
  639. }
  640. }
  641. static u8 * eap_pwd_getkey(struct eap_sm *sm, void *priv, size_t *len)
  642. {
  643. struct eap_pwd_data *data = priv;
  644. u8 *key;
  645. if (data->state != SUCCESS)
  646. return NULL;
  647. key = os_malloc(EAP_MSK_LEN);
  648. if (key == NULL)
  649. return NULL;
  650. os_memcpy(key, data->msk, EAP_MSK_LEN);
  651. *len = EAP_MSK_LEN;
  652. return key;
  653. }
  654. static u8 * eap_pwd_get_emsk(struct eap_sm *sm, void *priv, size_t *len)
  655. {
  656. struct eap_pwd_data *data = priv;
  657. u8 *key;
  658. if (data->state != SUCCESS)
  659. return NULL;
  660. key = os_malloc(EAP_EMSK_LEN);
  661. if (key == NULL)
  662. return NULL;
  663. os_memcpy(key, data->emsk, EAP_EMSK_LEN);
  664. *len = EAP_EMSK_LEN;
  665. return key;
  666. }
  667. static Boolean eap_pwd_is_success(struct eap_sm *sm, void *priv)
  668. {
  669. struct eap_pwd_data *data = priv;
  670. return data->state == SUCCESS;
  671. }
  672. static Boolean eap_pwd_is_done(struct eap_sm *sm, void *priv)
  673. {
  674. struct eap_pwd_data *data = priv;
  675. return (data->state == SUCCESS) || (data->state == FAILURE);
  676. }
  677. int eap_server_pwd_register(void)
  678. {
  679. struct eap_method *eap;
  680. int ret;
  681. struct timeval tp;
  682. struct timezone tz;
  683. u32 sr;
  684. EVP_add_digest(EVP_sha256());
  685. sr = 0xdeaddada;
  686. (void) gettimeofday(&tp, &tz);
  687. sr ^= (tp.tv_sec ^ tp.tv_usec);
  688. srandom(sr);
  689. eap = eap_server_method_alloc(EAP_SERVER_METHOD_INTERFACE_VERSION,
  690. EAP_VENDOR_IETF, EAP_TYPE_PWD,
  691. "PWD");
  692. if (eap == NULL)
  693. return -1;
  694. eap->init = eap_pwd_init;
  695. eap->reset = eap_pwd_reset;
  696. eap->buildReq = eap_pwd_build_req;
  697. eap->check = eap_pwd_check;
  698. eap->process = eap_pwd_process;
  699. eap->isDone = eap_pwd_is_done;
  700. eap->getKey = eap_pwd_getkey;
  701. eap->get_emsk = eap_pwd_get_emsk;
  702. eap->isSuccess = eap_pwd_is_success;
  703. ret = eap_server_method_register(eap);
  704. if (ret)
  705. eap_server_method_free(eap);
  706. return ret;
  707. }