eap_eke.c 20 KB

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  1. /*
  2. * EAP peer method: EAP-EKE (RFC 6124)
  3. * Copyright (c) 2013, Jouni Malinen <j@w1.fi>
  4. *
  5. * This software may be distributed under the terms of the BSD license.
  6. * See README for more details.
  7. */
  8. #include "includes.h"
  9. #include "common.h"
  10. #include "crypto/random.h"
  11. #include "eap_peer/eap_i.h"
  12. #include "eap_common/eap_eke_common.h"
  13. struct eap_eke_data {
  14. enum {
  15. IDENTITY, COMMIT, CONFIRM, SUCCESS, FAILURE
  16. } state;
  17. u8 msk[EAP_MSK_LEN];
  18. u8 emsk[EAP_EMSK_LEN];
  19. u8 *peerid;
  20. size_t peerid_len;
  21. u8 *serverid;
  22. size_t serverid_len;
  23. u8 dh_priv[EAP_EKE_MAX_DH_LEN];
  24. struct eap_eke_session sess;
  25. u8 nonce_p[EAP_EKE_MAX_NONCE_LEN];
  26. u8 nonce_s[EAP_EKE_MAX_NONCE_LEN];
  27. struct wpabuf *msgs;
  28. u8 dhgroup; /* forced DH group or 0 to allow all supported */
  29. u8 encr; /* forced encryption algorithm or 0 to allow all supported */
  30. u8 prf; /* forced PRF or 0 to allow all supported */
  31. u8 mac; /* forced MAC or 0 to allow all supported */
  32. };
  33. static const char * eap_eke_state_txt(int state)
  34. {
  35. switch (state) {
  36. case IDENTITY:
  37. return "IDENTITY";
  38. case COMMIT:
  39. return "COMMIT";
  40. case CONFIRM:
  41. return "CONFIRM";
  42. case SUCCESS:
  43. return "SUCCESS";
  44. case FAILURE:
  45. return "FAILURE";
  46. default:
  47. return "?";
  48. }
  49. }
  50. static void eap_eke_state(struct eap_eke_data *data, int state)
  51. {
  52. wpa_printf(MSG_DEBUG, "EAP-EKE: %s -> %s",
  53. eap_eke_state_txt(data->state), eap_eke_state_txt(state));
  54. data->state = state;
  55. }
  56. static void eap_eke_deinit(struct eap_sm *sm, void *priv);
  57. static void * eap_eke_init(struct eap_sm *sm)
  58. {
  59. struct eap_eke_data *data;
  60. const u8 *identity, *password;
  61. size_t identity_len, password_len;
  62. const char *phase1;
  63. password = eap_get_config_password(sm, &password_len);
  64. if (!password) {
  65. wpa_printf(MSG_INFO, "EAP-EKE: No password configured");
  66. return NULL;
  67. }
  68. data = os_zalloc(sizeof(*data));
  69. if (data == NULL)
  70. return NULL;
  71. eap_eke_state(data, IDENTITY);
  72. identity = eap_get_config_identity(sm, &identity_len);
  73. if (identity) {
  74. data->peerid = os_malloc(identity_len);
  75. if (data->peerid == NULL) {
  76. eap_eke_deinit(sm, data);
  77. return NULL;
  78. }
  79. os_memcpy(data->peerid, identity, identity_len);
  80. data->peerid_len = identity_len;
  81. }
  82. phase1 = eap_get_config_phase1(sm);
  83. if (phase1) {
  84. const char *pos;
  85. pos = os_strstr(phase1, "dhgroup=");
  86. if (pos) {
  87. data->dhgroup = atoi(pos + 8);
  88. wpa_printf(MSG_DEBUG, "EAP-EKE: Forced dhgroup %u",
  89. data->dhgroup);
  90. }
  91. pos = os_strstr(phase1, "encr=");
  92. if (pos) {
  93. data->encr = atoi(pos + 5);
  94. wpa_printf(MSG_DEBUG, "EAP-EKE: Forced encr %u",
  95. data->encr);
  96. }
  97. pos = os_strstr(phase1, "prf=");
  98. if (pos) {
  99. data->prf = atoi(pos + 4);
  100. wpa_printf(MSG_DEBUG, "EAP-EKE: Forced prf %u",
  101. data->prf);
  102. }
  103. pos = os_strstr(phase1, "mac=");
  104. if (pos) {
  105. data->mac = atoi(pos + 4);
  106. wpa_printf(MSG_DEBUG, "EAP-EKE: Forced mac %u",
  107. data->mac);
  108. }
  109. }
  110. return data;
  111. }
  112. static void eap_eke_deinit(struct eap_sm *sm, void *priv)
  113. {
  114. struct eap_eke_data *data = priv;
  115. eap_eke_session_clean(&data->sess);
  116. os_free(data->serverid);
  117. os_free(data->peerid);
  118. wpabuf_free(data->msgs);
  119. bin_clear_free(data, sizeof(*data));
  120. }
  121. static struct wpabuf * eap_eke_build_msg(struct eap_eke_data *data, int id,
  122. size_t length, u8 eke_exch)
  123. {
  124. struct wpabuf *msg;
  125. size_t plen;
  126. plen = 1 + length;
  127. msg = eap_msg_alloc(EAP_VENDOR_IETF, EAP_TYPE_EKE, plen,
  128. EAP_CODE_RESPONSE, id);
  129. if (msg == NULL) {
  130. wpa_printf(MSG_ERROR, "EAP-EKE: Failed to allocate memory");
  131. return NULL;
  132. }
  133. wpabuf_put_u8(msg, eke_exch);
  134. return msg;
  135. }
  136. static int eap_eke_supp_dhgroup(u8 dhgroup)
  137. {
  138. return dhgroup == EAP_EKE_DHGROUP_EKE_2 ||
  139. dhgroup == EAP_EKE_DHGROUP_EKE_5 ||
  140. dhgroup == EAP_EKE_DHGROUP_EKE_14 ||
  141. dhgroup == EAP_EKE_DHGROUP_EKE_15 ||
  142. dhgroup == EAP_EKE_DHGROUP_EKE_16;
  143. }
  144. static int eap_eke_supp_encr(u8 encr)
  145. {
  146. return encr == EAP_EKE_ENCR_AES128_CBC;
  147. }
  148. static int eap_eke_supp_prf(u8 prf)
  149. {
  150. return prf == EAP_EKE_PRF_HMAC_SHA1 ||
  151. prf == EAP_EKE_PRF_HMAC_SHA2_256;
  152. }
  153. static int eap_eke_supp_mac(u8 mac)
  154. {
  155. return mac == EAP_EKE_MAC_HMAC_SHA1 ||
  156. mac == EAP_EKE_MAC_HMAC_SHA2_256;
  157. }
  158. static struct wpabuf * eap_eke_build_fail(struct eap_eke_data *data,
  159. struct eap_method_ret *ret,
  160. u8 id, u32 failure_code)
  161. {
  162. struct wpabuf *resp;
  163. wpa_printf(MSG_DEBUG, "EAP-EKE: Sending EAP-EKE-Failure/Response - code=0x%x",
  164. failure_code);
  165. resp = eap_eke_build_msg(data, id, 4, EAP_EKE_FAILURE);
  166. if (resp)
  167. wpabuf_put_be32(resp, failure_code);
  168. os_memset(data->dh_priv, 0, sizeof(data->dh_priv));
  169. eap_eke_session_clean(&data->sess);
  170. eap_eke_state(data, FAILURE);
  171. ret->methodState = METHOD_DONE;
  172. ret->decision = DECISION_FAIL;
  173. ret->allowNotifications = FALSE;
  174. return resp;
  175. }
  176. static struct wpabuf * eap_eke_process_id(struct eap_eke_data *data,
  177. struct eap_method_ret *ret,
  178. const struct wpabuf *reqData,
  179. const u8 *payload,
  180. size_t payload_len)
  181. {
  182. struct wpabuf *resp;
  183. unsigned num_prop, i;
  184. const u8 *pos, *end;
  185. const u8 *prop = NULL;
  186. u8 idtype;
  187. u8 id = eap_get_id(reqData);
  188. if (data->state != IDENTITY) {
  189. return eap_eke_build_fail(data, ret, id,
  190. EAP_EKE_FAIL_PROTO_ERROR);
  191. }
  192. wpa_printf(MSG_DEBUG, "EAP-EKE: Received EAP-EKE-ID/Request");
  193. if (payload_len < 2 + 4) {
  194. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short ID/Request Data");
  195. return eap_eke_build_fail(data, ret, id,
  196. EAP_EKE_FAIL_PROTO_ERROR);
  197. }
  198. pos = payload;
  199. end = payload + payload_len;
  200. num_prop = *pos++;
  201. pos++; /* Ignore Reserved field */
  202. if (pos + num_prop * 4 > end) {
  203. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short ID/Request Data (num_prop=%u)",
  204. num_prop);
  205. return eap_eke_build_fail(data, ret, id,
  206. EAP_EKE_FAIL_PROTO_ERROR);
  207. }
  208. for (i = 0; i < num_prop; i++) {
  209. const u8 *tmp = pos;
  210. wpa_printf(MSG_DEBUG, "EAP-EKE: Proposal #%u: dh=%u encr=%u prf=%u mac=%u",
  211. i, pos[0], pos[1], pos[2], pos[3]);
  212. pos += 4;
  213. if ((data->dhgroup && data->dhgroup != *tmp) ||
  214. !eap_eke_supp_dhgroup(*tmp))
  215. continue;
  216. tmp++;
  217. if ((data->encr && data->encr != *tmp) ||
  218. !eap_eke_supp_encr(*tmp))
  219. continue;
  220. tmp++;
  221. if ((data->prf && data->prf != *tmp) ||
  222. !eap_eke_supp_prf(*tmp))
  223. continue;
  224. tmp++;
  225. if ((data->mac && data->mac != *tmp) ||
  226. !eap_eke_supp_mac(*tmp))
  227. continue;
  228. prop = tmp - 3;
  229. if (eap_eke_session_init(&data->sess, prop[0], prop[1], prop[2],
  230. prop[3]) < 0) {
  231. prop = NULL;
  232. continue;
  233. }
  234. wpa_printf(MSG_DEBUG, "EAP-EKE: Selected proposal");
  235. break;
  236. }
  237. if (prop == NULL) {
  238. wpa_printf(MSG_DEBUG, "EAP-EKE: No acceptable proposal found");
  239. return eap_eke_build_fail(data, ret, id,
  240. EAP_EKE_FAIL_NO_PROPOSAL_CHOSEN);
  241. }
  242. pos += (num_prop - i - 1) * 4;
  243. if (pos == end) {
  244. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short ID/Request Data to include IDType/Identity");
  245. return eap_eke_build_fail(data, ret, id,
  246. EAP_EKE_FAIL_PROTO_ERROR);
  247. }
  248. idtype = *pos++;
  249. wpa_printf(MSG_DEBUG, "EAP-EKE: Server IDType %u", idtype);
  250. wpa_hexdump_ascii(MSG_DEBUG, "EAP-EKE: Server Identity",
  251. pos, end - pos);
  252. os_free(data->serverid);
  253. data->serverid = os_malloc(end - pos);
  254. if (data->serverid == NULL) {
  255. return eap_eke_build_fail(data, ret, id,
  256. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  257. }
  258. os_memcpy(data->serverid, pos, end - pos);
  259. data->serverid_len = end - pos;
  260. wpa_printf(MSG_DEBUG, "EAP-EKE: Sending EAP-EKE-ID/Response");
  261. resp = eap_eke_build_msg(data, id,
  262. 2 + 4 + 1 + data->peerid_len,
  263. EAP_EKE_ID);
  264. if (resp == NULL) {
  265. return eap_eke_build_fail(data, ret, id,
  266. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  267. }
  268. wpabuf_put_u8(resp, 1); /* NumProposals */
  269. wpabuf_put_u8(resp, 0); /* Reserved */
  270. wpabuf_put_data(resp, prop, 4); /* Selected Proposal */
  271. wpabuf_put_u8(resp, EAP_EKE_ID_NAI);
  272. if (data->peerid)
  273. wpabuf_put_data(resp, data->peerid, data->peerid_len);
  274. wpabuf_free(data->msgs);
  275. data->msgs = wpabuf_alloc(wpabuf_len(reqData) + wpabuf_len(resp));
  276. if (data->msgs == NULL) {
  277. wpabuf_free(resp);
  278. return eap_eke_build_fail(data, ret, id,
  279. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  280. }
  281. wpabuf_put_buf(data->msgs, reqData);
  282. wpabuf_put_buf(data->msgs, resp);
  283. eap_eke_state(data, COMMIT);
  284. return resp;
  285. }
  286. static struct wpabuf * eap_eke_process_commit(struct eap_sm *sm,
  287. struct eap_eke_data *data,
  288. struct eap_method_ret *ret,
  289. const struct wpabuf *reqData,
  290. const u8 *payload,
  291. size_t payload_len)
  292. {
  293. struct wpabuf *resp;
  294. const u8 *pos, *end, *dhcomp;
  295. size_t prot_len;
  296. u8 *rpos;
  297. u8 key[EAP_EKE_MAX_KEY_LEN];
  298. u8 pub[EAP_EKE_MAX_DH_LEN];
  299. const u8 *password;
  300. size_t password_len;
  301. u8 id = eap_get_id(reqData);
  302. if (data->state != COMMIT) {
  303. wpa_printf(MSG_DEBUG, "EAP-EKE: EAP-EKE-Commit/Request received in unexpected state (%d)", data->state);
  304. return eap_eke_build_fail(data, ret, id,
  305. EAP_EKE_FAIL_PROTO_ERROR);
  306. }
  307. wpa_printf(MSG_DEBUG, "EAP-EKE: Received EAP-EKE-Commit/Request");
  308. password = eap_get_config_password(sm, &password_len);
  309. if (password == NULL) {
  310. wpa_printf(MSG_INFO, "EAP-EKE: No password configured!");
  311. return eap_eke_build_fail(data, ret, id,
  312. EAP_EKE_FAIL_PASSWD_NOT_FOUND);
  313. }
  314. pos = payload;
  315. end = payload + payload_len;
  316. if (pos + data->sess.dhcomp_len > end) {
  317. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short EAP-EKE-Commit");
  318. return eap_eke_build_fail(data, ret, id,
  319. EAP_EKE_FAIL_PROTO_ERROR);
  320. }
  321. wpa_hexdump(MSG_DEBUG, "EAP-EKE: DHComponent_S",
  322. pos, data->sess.dhcomp_len);
  323. dhcomp = pos;
  324. pos += data->sess.dhcomp_len;
  325. wpa_hexdump(MSG_DEBUG, "EAP-EKE: CBValue", pos, end - pos);
  326. /*
  327. * temp = prf(0+, password)
  328. * key = prf+(temp, ID_S | ID_P)
  329. */
  330. if (eap_eke_derive_key(&data->sess, password, password_len,
  331. data->serverid, data->serverid_len,
  332. data->peerid, data->peerid_len, key) < 0) {
  333. wpa_printf(MSG_INFO, "EAP-EKE: Failed to derive key");
  334. return eap_eke_build_fail(data, ret, id,
  335. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  336. }
  337. /*
  338. * y_p = g ^ x_p (mod p)
  339. * x_p = random number 2 .. p-1
  340. */
  341. if (eap_eke_dh_init(data->sess.dhgroup, data->dh_priv, pub) < 0) {
  342. wpa_printf(MSG_INFO, "EAP-EKE: Failed to initialize DH");
  343. os_memset(key, 0, sizeof(key));
  344. return eap_eke_build_fail(data, ret, id,
  345. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  346. }
  347. if (eap_eke_shared_secret(&data->sess, key, data->dh_priv, dhcomp) < 0)
  348. {
  349. wpa_printf(MSG_INFO, "EAP-EKE: Failed to derive shared secret");
  350. os_memset(key, 0, sizeof(key));
  351. return eap_eke_build_fail(data, ret, id,
  352. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  353. }
  354. if (eap_eke_derive_ke_ki(&data->sess,
  355. data->serverid, data->serverid_len,
  356. data->peerid, data->peerid_len) < 0) {
  357. wpa_printf(MSG_INFO, "EAP-EKE: Failed to derive Ke/Ki");
  358. os_memset(key, 0, sizeof(key));
  359. return eap_eke_build_fail(data, ret, id,
  360. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  361. }
  362. wpa_printf(MSG_DEBUG, "EAP-EKE: Sending EAP-EKE-Commit/Response");
  363. resp = eap_eke_build_msg(data, id,
  364. data->sess.dhcomp_len + data->sess.pnonce_len,
  365. EAP_EKE_COMMIT);
  366. if (resp == NULL) {
  367. os_memset(key, 0, sizeof(key));
  368. return eap_eke_build_fail(data, ret, id,
  369. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  370. }
  371. /* DHComponent_P = Encr(key, y_p) */
  372. rpos = wpabuf_put(resp, data->sess.dhcomp_len);
  373. if (eap_eke_dhcomp(&data->sess, key, pub, rpos) < 0) {
  374. wpa_printf(MSG_INFO, "EAP-EKE: Failed to build DHComponent_P");
  375. os_memset(key, 0, sizeof(key));
  376. return eap_eke_build_fail(data, ret, id,
  377. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  378. }
  379. os_memset(key, 0, sizeof(key));
  380. wpa_hexdump(MSG_DEBUG, "EAP-EKE: DHComponent_P",
  381. rpos, data->sess.dhcomp_len);
  382. if (random_get_bytes(data->nonce_p, data->sess.nonce_len)) {
  383. wpabuf_free(resp);
  384. return eap_eke_build_fail(data, ret, id,
  385. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  386. }
  387. wpa_hexdump_key(MSG_DEBUG, "EAP-EKE: Nonce_P",
  388. data->nonce_p, data->sess.nonce_len);
  389. prot_len = wpabuf_tailroom(resp);
  390. if (eap_eke_prot(&data->sess, data->nonce_p, data->sess.nonce_len,
  391. wpabuf_put(resp, 0), &prot_len) < 0) {
  392. wpabuf_free(resp);
  393. return eap_eke_build_fail(data, ret, id,
  394. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  395. }
  396. wpa_hexdump(MSG_DEBUG, "EAP-EKE: PNonce_P",
  397. wpabuf_put(resp, 0), prot_len);
  398. wpabuf_put(resp, prot_len);
  399. /* TODO: CBValue */
  400. if (wpabuf_resize(&data->msgs, wpabuf_len(reqData) + wpabuf_len(resp))
  401. < 0) {
  402. wpabuf_free(resp);
  403. return eap_eke_build_fail(data, ret, id,
  404. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  405. }
  406. wpabuf_put_buf(data->msgs, reqData);
  407. wpabuf_put_buf(data->msgs, resp);
  408. eap_eke_state(data, CONFIRM);
  409. return resp;
  410. }
  411. static struct wpabuf * eap_eke_process_confirm(struct eap_eke_data *data,
  412. struct eap_method_ret *ret,
  413. const struct wpabuf *reqData,
  414. const u8 *payload,
  415. size_t payload_len)
  416. {
  417. struct wpabuf *resp;
  418. const u8 *pos, *end;
  419. size_t prot_len;
  420. u8 nonces[2 * EAP_EKE_MAX_NONCE_LEN];
  421. u8 auth_s[EAP_EKE_MAX_HASH_LEN];
  422. size_t decrypt_len;
  423. u8 *auth;
  424. u8 id = eap_get_id(reqData);
  425. if (data->state != CONFIRM) {
  426. wpa_printf(MSG_DEBUG, "EAP-EKE: EAP-EKE-Confirm/Request received in unexpected state (%d)",
  427. data->state);
  428. return eap_eke_build_fail(data, ret, id,
  429. EAP_EKE_FAIL_PROTO_ERROR);
  430. }
  431. wpa_printf(MSG_DEBUG, "EAP-EKE: Received EAP-EKE-Confirm/Request");
  432. pos = payload;
  433. end = payload + payload_len;
  434. if (pos + data->sess.pnonce_ps_len + data->sess.prf_len > end) {
  435. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short EAP-EKE-Confirm");
  436. return eap_eke_build_fail(data, ret, id,
  437. EAP_EKE_FAIL_PROTO_ERROR);
  438. }
  439. decrypt_len = sizeof(nonces);
  440. if (eap_eke_decrypt_prot(&data->sess, pos, data->sess.pnonce_ps_len,
  441. nonces, &decrypt_len) < 0) {
  442. wpa_printf(MSG_INFO, "EAP-EKE: Failed to decrypt PNonce_PS");
  443. return eap_eke_build_fail(data, ret, id,
  444. EAP_EKE_FAIL_AUTHENTICATION_FAIL);
  445. }
  446. if (decrypt_len != (size_t) 2 * data->sess.nonce_len) {
  447. wpa_printf(MSG_INFO, "EAP-EKE: PNonce_PS protected data length does not match length of Nonce_P and Nonce_S");
  448. return eap_eke_build_fail(data, ret, id,
  449. EAP_EKE_FAIL_AUTHENTICATION_FAIL);
  450. }
  451. wpa_hexdump_key(MSG_DEBUG, "EAP-EKE: Received Nonce_P | Nonce_S",
  452. nonces, 2 * data->sess.nonce_len);
  453. if (os_memcmp(data->nonce_p, nonces, data->sess.nonce_len) != 0) {
  454. wpa_printf(MSG_INFO, "EAP-EKE: Received Nonce_P does not match transmitted Nonce_P");
  455. return eap_eke_build_fail(data, ret, id,
  456. EAP_EKE_FAIL_AUTHENTICATION_FAIL);
  457. }
  458. os_memcpy(data->nonce_s, nonces + data->sess.nonce_len,
  459. data->sess.nonce_len);
  460. wpa_hexdump_key(MSG_DEBUG, "EAP-EKE: Nonce_S",
  461. data->nonce_s, data->sess.nonce_len);
  462. if (eap_eke_derive_ka(&data->sess, data->serverid, data->serverid_len,
  463. data->peerid, data->peerid_len,
  464. data->nonce_p, data->nonce_s) < 0) {
  465. return eap_eke_build_fail(data, ret, id,
  466. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  467. }
  468. if (eap_eke_auth(&data->sess, "EAP-EKE server", data->msgs, auth_s) < 0)
  469. {
  470. return eap_eke_build_fail(data, ret, id,
  471. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  472. }
  473. wpa_hexdump(MSG_DEBUG, "EAP-EKE: Auth_S", auth_s, data->sess.prf_len);
  474. if (os_memcmp_const(auth_s, pos + data->sess.pnonce_ps_len,
  475. data->sess.prf_len) != 0) {
  476. wpa_printf(MSG_INFO, "EAP-EKE: Auth_S does not match");
  477. return eap_eke_build_fail(data, ret, id,
  478. EAP_EKE_FAIL_AUTHENTICATION_FAIL);
  479. }
  480. wpa_printf(MSG_DEBUG, "EAP-EKE: Sending EAP-EKE-Confirm/Response");
  481. resp = eap_eke_build_msg(data, id,
  482. data->sess.pnonce_len + data->sess.prf_len,
  483. EAP_EKE_CONFIRM);
  484. if (resp == NULL) {
  485. return eap_eke_build_fail(data, ret, id,
  486. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  487. }
  488. prot_len = wpabuf_tailroom(resp);
  489. if (eap_eke_prot(&data->sess, data->nonce_s, data->sess.nonce_len,
  490. wpabuf_put(resp, 0), &prot_len) < 0) {
  491. wpabuf_free(resp);
  492. return eap_eke_build_fail(data, ret, id,
  493. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  494. }
  495. wpabuf_put(resp, prot_len);
  496. auth = wpabuf_put(resp, data->sess.prf_len);
  497. if (eap_eke_auth(&data->sess, "EAP-EKE peer", data->msgs, auth) < 0) {
  498. wpabuf_free(resp);
  499. return eap_eke_build_fail(data, ret, id,
  500. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  501. }
  502. wpa_hexdump(MSG_DEBUG, "EAP-EKE: Auth_P", auth, data->sess.prf_len);
  503. if (eap_eke_derive_msk(&data->sess, data->serverid, data->serverid_len,
  504. data->peerid, data->peerid_len,
  505. data->nonce_s, data->nonce_p,
  506. data->msk, data->emsk) < 0) {
  507. wpa_printf(MSG_INFO, "EAP-EKE: Failed to derive MSK/EMSK");
  508. wpabuf_free(resp);
  509. return eap_eke_build_fail(data, ret, id,
  510. EAP_EKE_FAIL_PRIVATE_INTERNAL_ERROR);
  511. }
  512. os_memset(data->dh_priv, 0, sizeof(data->dh_priv));
  513. eap_eke_session_clean(&data->sess);
  514. eap_eke_state(data, SUCCESS);
  515. ret->methodState = METHOD_MAY_CONT;
  516. ret->decision = DECISION_COND_SUCC;
  517. ret->allowNotifications = FALSE;
  518. return resp;
  519. }
  520. static struct wpabuf * eap_eke_process_failure(struct eap_eke_data *data,
  521. struct eap_method_ret *ret,
  522. const struct wpabuf *reqData,
  523. const u8 *payload,
  524. size_t payload_len)
  525. {
  526. wpa_printf(MSG_DEBUG, "EAP-EKE: Received EAP-EKE-Failure/Request");
  527. if (payload_len < 4) {
  528. wpa_printf(MSG_DEBUG, "EAP-EKE: Too short EAP-EKE-Failure");
  529. } else {
  530. u32 code;
  531. code = WPA_GET_BE32(payload);
  532. wpa_printf(MSG_INFO, "EAP-EKE: Failure-Code 0x%x", code);
  533. }
  534. return eap_eke_build_fail(data, ret, eap_get_id(reqData),
  535. EAP_EKE_FAIL_NO_ERROR);
  536. }
  537. static struct wpabuf * eap_eke_process(struct eap_sm *sm, void *priv,
  538. struct eap_method_ret *ret,
  539. const struct wpabuf *reqData)
  540. {
  541. struct eap_eke_data *data = priv;
  542. struct wpabuf *resp;
  543. const u8 *pos, *end;
  544. size_t len;
  545. u8 eke_exch;
  546. pos = eap_hdr_validate(EAP_VENDOR_IETF, EAP_TYPE_EKE, reqData, &len);
  547. if (pos == NULL || len < 1) {
  548. ret->ignore = TRUE;
  549. return NULL;
  550. }
  551. end = pos + len;
  552. eke_exch = *pos++;
  553. wpa_printf(MSG_DEBUG, "EAP-EKE: Received frame: exch %d", eke_exch);
  554. wpa_hexdump(MSG_DEBUG, "EAP-EKE: Received Data", pos, end - pos);
  555. ret->ignore = FALSE;
  556. ret->methodState = METHOD_MAY_CONT;
  557. ret->decision = DECISION_FAIL;
  558. ret->allowNotifications = TRUE;
  559. switch (eke_exch) {
  560. case EAP_EKE_ID:
  561. resp = eap_eke_process_id(data, ret, reqData, pos, end - pos);
  562. break;
  563. case EAP_EKE_COMMIT:
  564. resp = eap_eke_process_commit(sm, data, ret, reqData,
  565. pos, end - pos);
  566. break;
  567. case EAP_EKE_CONFIRM:
  568. resp = eap_eke_process_confirm(data, ret, reqData,
  569. pos, end - pos);
  570. break;
  571. case EAP_EKE_FAILURE:
  572. resp = eap_eke_process_failure(data, ret, reqData,
  573. pos, end - pos);
  574. break;
  575. default:
  576. wpa_printf(MSG_DEBUG, "EAP-EKE: Ignoring message with unknown EKE-Exch %d", eke_exch);
  577. ret->ignore = TRUE;
  578. return NULL;
  579. }
  580. if (ret->methodState == METHOD_DONE)
  581. ret->allowNotifications = FALSE;
  582. return resp;
  583. }
  584. static Boolean eap_eke_isKeyAvailable(struct eap_sm *sm, void *priv)
  585. {
  586. struct eap_eke_data *data = priv;
  587. return data->state == SUCCESS;
  588. }
  589. static u8 * eap_eke_getKey(struct eap_sm *sm, void *priv, size_t *len)
  590. {
  591. struct eap_eke_data *data = priv;
  592. u8 *key;
  593. if (data->state != SUCCESS)
  594. return NULL;
  595. key = os_malloc(EAP_MSK_LEN);
  596. if (key == NULL)
  597. return NULL;
  598. os_memcpy(key, data->msk, EAP_MSK_LEN);
  599. *len = EAP_MSK_LEN;
  600. return key;
  601. }
  602. static u8 * eap_eke_get_emsk(struct eap_sm *sm, void *priv, size_t *len)
  603. {
  604. struct eap_eke_data *data = priv;
  605. u8 *key;
  606. if (data->state != SUCCESS)
  607. return NULL;
  608. key = os_malloc(EAP_EMSK_LEN);
  609. if (key == NULL)
  610. return NULL;
  611. os_memcpy(key, data->emsk, EAP_EMSK_LEN);
  612. *len = EAP_EMSK_LEN;
  613. return key;
  614. }
  615. static u8 * eap_eke_get_session_id(struct eap_sm *sm, void *priv, size_t *len)
  616. {
  617. struct eap_eke_data *data = priv;
  618. u8 *sid;
  619. size_t sid_len;
  620. if (data->state != SUCCESS)
  621. return NULL;
  622. sid_len = 1 + 2 * data->sess.nonce_len;
  623. sid = os_malloc(sid_len);
  624. if (sid == NULL)
  625. return NULL;
  626. sid[0] = EAP_TYPE_EKE;
  627. os_memcpy(sid + 1, data->nonce_p, data->sess.nonce_len);
  628. os_memcpy(sid + 1 + data->sess.nonce_len, data->nonce_s,
  629. data->sess.nonce_len);
  630. *len = sid_len;
  631. return sid;
  632. }
  633. int eap_peer_eke_register(void)
  634. {
  635. struct eap_method *eap;
  636. int ret;
  637. eap = eap_peer_method_alloc(EAP_PEER_METHOD_INTERFACE_VERSION,
  638. EAP_VENDOR_IETF, EAP_TYPE_EKE, "EKE");
  639. if (eap == NULL)
  640. return -1;
  641. eap->init = eap_eke_init;
  642. eap->deinit = eap_eke_deinit;
  643. eap->process = eap_eke_process;
  644. eap->isKeyAvailable = eap_eke_isKeyAvailable;
  645. eap->getKey = eap_eke_getKey;
  646. eap->get_emsk = eap_eke_get_emsk;
  647. eap->getSessionId = eap_eke_get_session_id;
  648. ret = eap_peer_method_register(eap);
  649. if (ret)
  650. eap_peer_method_free(eap);
  651. return ret;
  652. }