interworking.c 26 KB

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  1. /*
  2. * Interworking (IEEE 802.11u)
  3. * Copyright (c) 2011, Qualcomm Atheros
  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 "common/ieee802_11_defs.h"
  11. #include "common/gas.h"
  12. #include "common/wpa_ctrl.h"
  13. #include "drivers/driver.h"
  14. #include "eap_common/eap_defs.h"
  15. #include "eap_peer/eap_methods.h"
  16. #include "wpa_supplicant_i.h"
  17. #include "config.h"
  18. #include "bss.h"
  19. #include "scan.h"
  20. #include "notify.h"
  21. #include "gas_query.h"
  22. #include "interworking.h"
  23. #if defined(EAP_SIM) | defined(EAP_SIM_DYNAMIC)
  24. #define INTERWORKING_3GPP
  25. #else
  26. #if defined(EAP_AKA) | defined(EAP_AKA_DYNAMIC)
  27. #define INTERWORKING_3GPP
  28. #else
  29. #if defined(EAP_AKA_PRIME) | defined(EAP_AKA_PRIME_DYNAMIC)
  30. #define INTERWORKING_3GPP
  31. #endif
  32. #endif
  33. #endif
  34. static void interworking_next_anqp_fetch(struct wpa_supplicant *wpa_s);
  35. static struct wpabuf * anqp_build_req(u16 info_ids[], size_t num_ids,
  36. struct wpabuf *extra)
  37. {
  38. struct wpabuf *buf;
  39. size_t i;
  40. u8 *len_pos;
  41. buf = gas_anqp_build_initial_req(0, 4 + num_ids * 2 +
  42. (extra ? wpabuf_len(extra) : 0));
  43. if (buf == NULL)
  44. return NULL;
  45. len_pos = gas_anqp_add_element(buf, ANQP_QUERY_LIST);
  46. for (i = 0; i < num_ids; i++)
  47. wpabuf_put_le16(buf, info_ids[i]);
  48. gas_anqp_set_element_len(buf, len_pos);
  49. if (extra)
  50. wpabuf_put_buf(buf, extra);
  51. gas_anqp_set_len(buf);
  52. return buf;
  53. }
  54. static void interworking_anqp_resp_cb(void *ctx, const u8 *dst,
  55. u8 dialog_token,
  56. enum gas_query_result result,
  57. const struct wpabuf *adv_proto,
  58. const struct wpabuf *resp,
  59. u16 status_code)
  60. {
  61. struct wpa_supplicant *wpa_s = ctx;
  62. anqp_resp_cb(wpa_s, dst, dialog_token, result, adv_proto, resp,
  63. status_code);
  64. interworking_next_anqp_fetch(wpa_s);
  65. }
  66. static int interworking_anqp_send_req(struct wpa_supplicant *wpa_s,
  67. struct wpa_bss *bss)
  68. {
  69. struct wpabuf *buf;
  70. int ret = 0;
  71. int res;
  72. u16 info_ids[] = {
  73. ANQP_CAPABILITY_LIST,
  74. ANQP_VENUE_NAME,
  75. ANQP_NETWORK_AUTH_TYPE,
  76. ANQP_ROAMING_CONSORTIUM,
  77. ANQP_IP_ADDR_TYPE_AVAILABILITY,
  78. ANQP_NAI_REALM,
  79. ANQP_3GPP_CELLULAR_NETWORK,
  80. ANQP_DOMAIN_NAME
  81. };
  82. struct wpabuf *extra = NULL;
  83. wpa_printf(MSG_DEBUG, "Interworking: ANQP Query Request to " MACSTR,
  84. MAC2STR(bss->bssid));
  85. buf = anqp_build_req(info_ids, sizeof(info_ids) / sizeof(info_ids[0]),
  86. extra);
  87. wpabuf_free(extra);
  88. if (buf == NULL)
  89. return -1;
  90. res = gas_query_req(wpa_s->gas, bss->bssid, bss->freq, buf,
  91. interworking_anqp_resp_cb, wpa_s);
  92. if (res < 0) {
  93. wpa_printf(MSG_DEBUG, "ANQP: Failed to send Query Request");
  94. ret = -1;
  95. } else
  96. wpa_printf(MSG_DEBUG, "ANQP: Query started with dialog token "
  97. "%u", res);
  98. wpabuf_free(buf);
  99. return ret;
  100. }
  101. struct nai_realm_eap {
  102. u8 method;
  103. u8 inner_method;
  104. enum nai_realm_eap_auth_inner_non_eap inner_non_eap;
  105. u8 cred_type;
  106. u8 tunneled_cred_type;
  107. };
  108. struct nai_realm {
  109. u8 encoding;
  110. char *realm;
  111. u8 eap_count;
  112. struct nai_realm_eap *eap;
  113. };
  114. static void nai_realm_free(struct nai_realm *realms, u16 count)
  115. {
  116. u16 i;
  117. if (realms == NULL)
  118. return;
  119. for (i = 0; i < count; i++) {
  120. os_free(realms[i].eap);
  121. os_free(realms[i].realm);
  122. }
  123. os_free(realms);
  124. }
  125. static const u8 * nai_realm_parse_eap(struct nai_realm_eap *e, const u8 *pos,
  126. const u8 *end)
  127. {
  128. u8 elen, auth_count, a;
  129. const u8 *e_end;
  130. if (pos + 3 > end) {
  131. wpa_printf(MSG_DEBUG, "No room for EAP Method fixed fields");
  132. return NULL;
  133. }
  134. elen = *pos++;
  135. if (pos + elen > end || elen < 2) {
  136. wpa_printf(MSG_DEBUG, "No room for EAP Method subfield");
  137. return NULL;
  138. }
  139. e_end = pos + elen;
  140. e->method = *pos++;
  141. auth_count = *pos++;
  142. wpa_printf(MSG_DEBUG, "EAP Method: len=%u method=%u auth_count=%u",
  143. elen, e->method, auth_count);
  144. for (a = 0; a < auth_count; a++) {
  145. u8 id, len;
  146. if (pos + 2 > end || pos + 2 + pos[1] > end) {
  147. wpa_printf(MSG_DEBUG, "No room for Authentication "
  148. "Parameter subfield");
  149. return NULL;
  150. }
  151. id = *pos++;
  152. len = *pos++;
  153. switch (id) {
  154. case NAI_REALM_EAP_AUTH_NON_EAP_INNER_AUTH:
  155. if (len < 1)
  156. break;
  157. e->inner_non_eap = *pos;
  158. if (e->method != EAP_TYPE_TTLS)
  159. break;
  160. switch (*pos) {
  161. case NAI_REALM_INNER_NON_EAP_PAP:
  162. wpa_printf(MSG_DEBUG, "EAP-TTLS/PAP");
  163. break;
  164. case NAI_REALM_INNER_NON_EAP_CHAP:
  165. wpa_printf(MSG_DEBUG, "EAP-TTLS/CHAP");
  166. break;
  167. case NAI_REALM_INNER_NON_EAP_MSCHAP:
  168. wpa_printf(MSG_DEBUG, "EAP-TTLS/MSCHAP");
  169. break;
  170. case NAI_REALM_INNER_NON_EAP_MSCHAPV2:
  171. wpa_printf(MSG_DEBUG, "EAP-TTLS/MSCHAPV2");
  172. break;
  173. }
  174. break;
  175. case NAI_REALM_EAP_AUTH_INNER_AUTH_EAP_METHOD:
  176. if (len < 1)
  177. break;
  178. e->inner_method = *pos;
  179. wpa_printf(MSG_DEBUG, "Inner EAP method: %u",
  180. e->inner_method);
  181. break;
  182. case NAI_REALM_EAP_AUTH_CRED_TYPE:
  183. if (len < 1)
  184. break;
  185. e->cred_type = *pos;
  186. wpa_printf(MSG_DEBUG, "Credential Type: %u",
  187. e->cred_type);
  188. break;
  189. case NAI_REALM_EAP_AUTH_TUNNELED_CRED_TYPE:
  190. if (len < 1)
  191. break;
  192. e->tunneled_cred_type = *pos;
  193. wpa_printf(MSG_DEBUG, "Tunneled EAP Method Credential "
  194. "Type: %u", e->tunneled_cred_type);
  195. break;
  196. default:
  197. wpa_printf(MSG_DEBUG, "Unsupported Authentication "
  198. "Parameter: id=%u len=%u", id, len);
  199. wpa_hexdump(MSG_DEBUG, "Authentication Parameter "
  200. "Value", pos, len);
  201. break;
  202. }
  203. pos += len;
  204. }
  205. return e_end;
  206. }
  207. static const u8 * nai_realm_parse_realm(struct nai_realm *r, const u8 *pos,
  208. const u8 *end)
  209. {
  210. u16 len;
  211. const u8 *f_end;
  212. u8 realm_len, e;
  213. if (end - pos < 4) {
  214. wpa_printf(MSG_DEBUG, "No room for NAI Realm Data "
  215. "fixed fields");
  216. return NULL;
  217. }
  218. len = WPA_GET_LE16(pos); /* NAI Realm Data field Length */
  219. pos += 2;
  220. if (pos + len > end || len < 3) {
  221. wpa_printf(MSG_DEBUG, "No room for NAI Realm Data "
  222. "(len=%u; left=%u)",
  223. len, (unsigned int) (end - pos));
  224. return NULL;
  225. }
  226. f_end = pos + len;
  227. r->encoding = *pos++;
  228. realm_len = *pos++;
  229. if (pos + realm_len > f_end) {
  230. wpa_printf(MSG_DEBUG, "No room for NAI Realm "
  231. "(len=%u; left=%u)",
  232. realm_len, (unsigned int) (f_end - pos));
  233. return NULL;
  234. }
  235. wpa_hexdump_ascii(MSG_DEBUG, "NAI Realm", pos, realm_len);
  236. r->realm = os_malloc(realm_len + 1);
  237. if (r->realm == NULL)
  238. return NULL;
  239. os_memcpy(r->realm, pos, realm_len);
  240. r->realm[realm_len] = '\0';
  241. pos += realm_len;
  242. if (pos + 1 > f_end) {
  243. wpa_printf(MSG_DEBUG, "No room for EAP Method Count");
  244. return NULL;
  245. }
  246. r->eap_count = *pos++;
  247. wpa_printf(MSG_DEBUG, "EAP Count: %u", r->eap_count);
  248. if (pos + r->eap_count * 3 > f_end) {
  249. wpa_printf(MSG_DEBUG, "No room for EAP Methods");
  250. return NULL;
  251. }
  252. r->eap = os_zalloc(r->eap_count * sizeof(struct nai_realm_eap));
  253. if (r->eap == NULL)
  254. return NULL;
  255. for (e = 0; e < r->eap_count; e++) {
  256. pos = nai_realm_parse_eap(&r->eap[e], pos, f_end);
  257. if (pos == NULL)
  258. return NULL;
  259. }
  260. return f_end;
  261. }
  262. static struct nai_realm * nai_realm_parse(struct wpabuf *anqp, u16 *count)
  263. {
  264. struct nai_realm *realm;
  265. const u8 *pos, *end;
  266. u16 i, num;
  267. if (anqp == NULL || wpabuf_len(anqp) < 2)
  268. return NULL;
  269. pos = wpabuf_head_u8(anqp);
  270. end = pos + wpabuf_len(anqp);
  271. num = WPA_GET_LE16(pos);
  272. wpa_printf(MSG_DEBUG, "NAI Realm Count: %u", num);
  273. pos += 2;
  274. if (num * 5 > end - pos) {
  275. wpa_printf(MSG_DEBUG, "Invalid NAI Realm Count %u - not "
  276. "enough data (%u octets) for that many realms",
  277. num, (unsigned int) (end - pos));
  278. return NULL;
  279. }
  280. realm = os_zalloc(num * sizeof(struct nai_realm));
  281. if (realm == NULL)
  282. return NULL;
  283. for (i = 0; i < num; i++) {
  284. pos = nai_realm_parse_realm(&realm[i], pos, end);
  285. if (pos == NULL) {
  286. nai_realm_free(realm, num);
  287. return NULL;
  288. }
  289. }
  290. *count = num;
  291. return realm;
  292. }
  293. static int nai_realm_match(struct nai_realm *realm, const char *home_realm)
  294. {
  295. char *tmp, *pos, *end;
  296. int match = 0;
  297. if (realm->realm == NULL || home_realm == NULL)
  298. return 0;
  299. if (os_strchr(realm->realm, ';') == NULL)
  300. return os_strcasecmp(realm->realm, home_realm) == 0;
  301. tmp = os_strdup(realm->realm);
  302. if (tmp == NULL)
  303. return 0;
  304. pos = tmp;
  305. while (*pos) {
  306. end = os_strchr(pos, ';');
  307. if (end)
  308. *end = '\0';
  309. if (os_strcasecmp(pos, home_realm) == 0) {
  310. match = 1;
  311. break;
  312. }
  313. if (end == NULL)
  314. break;
  315. pos = end + 1;
  316. }
  317. os_free(tmp);
  318. return match;
  319. }
  320. static int nai_realm_cred_username(struct nai_realm_eap *eap)
  321. {
  322. if (eap_get_name(EAP_VENDOR_IETF, eap->method) == NULL)
  323. return 0; /* method not supported */
  324. if (eap->method != EAP_TYPE_TTLS && eap->method != EAP_TYPE_PEAP) {
  325. /* Only tunneled methods with username/password supported */
  326. return 0;
  327. }
  328. if (eap->method == EAP_TYPE_PEAP &&
  329. eap_get_name(EAP_VENDOR_IETF, eap->inner_method) == NULL)
  330. return 0;
  331. if (eap->method == EAP_TYPE_TTLS) {
  332. if (eap->inner_method == 0 && eap->inner_non_eap == 0)
  333. return 0;
  334. if (eap->inner_method &&
  335. eap_get_name(EAP_VENDOR_IETF, eap->inner_method) == NULL)
  336. return 0;
  337. if (eap->inner_non_eap &&
  338. eap->inner_non_eap != NAI_REALM_INNER_NON_EAP_PAP &&
  339. eap->inner_non_eap != NAI_REALM_INNER_NON_EAP_CHAP &&
  340. eap->inner_non_eap != NAI_REALM_INNER_NON_EAP_MSCHAP &&
  341. eap->inner_non_eap != NAI_REALM_INNER_NON_EAP_MSCHAPV2)
  342. return 0;
  343. }
  344. if (eap->inner_method &&
  345. eap->inner_method != EAP_TYPE_GTC &&
  346. eap->inner_method != EAP_TYPE_MSCHAPV2)
  347. return 0;
  348. return 1;
  349. }
  350. static struct nai_realm_eap * nai_realm_find_eap(struct wpa_supplicant *wpa_s,
  351. struct nai_realm *realm)
  352. {
  353. u8 e;
  354. if (wpa_s->conf->home_username == NULL ||
  355. wpa_s->conf->home_username[0] == '\0' ||
  356. wpa_s->conf->home_password == NULL ||
  357. wpa_s->conf->home_password[0] == '\0')
  358. return NULL;
  359. for (e = 0; e < realm->eap_count; e++) {
  360. struct nai_realm_eap *eap = &realm->eap[e];
  361. if (nai_realm_cred_username(eap))
  362. return eap;
  363. }
  364. return NULL;
  365. }
  366. #ifdef INTERWORKING_3GPP
  367. static int plmn_id_match(struct wpabuf *anqp, const char *imsi)
  368. {
  369. const char *sep;
  370. u8 plmn[3];
  371. const u8 *pos, *end;
  372. u8 udhl;
  373. sep = os_strchr(imsi, '-');
  374. if (sep == NULL || (sep - imsi != 5 && sep - imsi != 6))
  375. return 0;
  376. /* See Annex A of 3GPP TS 24.234 v8.1.0 for description */
  377. plmn[0] = (imsi[0] - '0') | ((imsi[1] - '0') << 4);
  378. plmn[1] = imsi[2] - '0';
  379. if (sep - imsi == 6)
  380. plmn[1] |= (imsi[5] - '0') << 4;
  381. else
  382. plmn[1] |= 0xf0;
  383. plmn[2] = (imsi[3] - '0') | ((imsi[4] - '0') << 4);
  384. if (anqp == NULL)
  385. return 0;
  386. pos = wpabuf_head_u8(anqp);
  387. end = pos + wpabuf_len(anqp);
  388. if (pos + 2 > end)
  389. return 0;
  390. if (*pos != 0) {
  391. wpa_printf(MSG_DEBUG, "Unsupported GUD version 0x%x", *pos);
  392. return 0;
  393. }
  394. pos++;
  395. udhl = *pos++;
  396. if (pos + udhl > end) {
  397. wpa_printf(MSG_DEBUG, "Invalid UDHL");
  398. return 0;
  399. }
  400. end = pos + udhl;
  401. while (pos + 2 <= end) {
  402. u8 iei, len;
  403. const u8 *l_end;
  404. iei = *pos++;
  405. len = *pos++ & 0x7f;
  406. if (pos + len > end)
  407. break;
  408. l_end = pos + len;
  409. if (iei == 0 && len > 0) {
  410. /* PLMN List */
  411. u8 num, i;
  412. num = *pos++;
  413. for (i = 0; i < num; i++) {
  414. if (pos + 3 > end)
  415. break;
  416. if (os_memcmp(pos, plmn, 3) == 0)
  417. return 1; /* Found matching PLMN */
  418. }
  419. }
  420. pos = l_end;
  421. }
  422. return 0;
  423. }
  424. static int set_root_nai(struct wpa_ssid *ssid, const char *imsi, char prefix)
  425. {
  426. const char *sep, *msin;
  427. char nai[100], *end, *pos;
  428. size_t msin_len, plmn_len;
  429. /*
  430. * TS 23.003, Clause 14 (3GPP to WLAN Interworking)
  431. * Root NAI:
  432. * <aka:0|sim:1><IMSI>@wlan.mnc<MNC>.mcc<MCC>.3gppnetwork.org
  433. * <MNC> is zero-padded to three digits in case two-digit MNC is used
  434. */
  435. if (imsi == NULL || os_strlen(imsi) > 16) {
  436. wpa_printf(MSG_DEBUG, "No valid IMSI available");
  437. return -1;
  438. }
  439. sep = os_strchr(imsi, '-');
  440. if (sep == NULL)
  441. return -1;
  442. plmn_len = sep - imsi;
  443. if (plmn_len != 5 && plmn_len != 6)
  444. return -1;
  445. msin = sep + 1;
  446. msin_len = os_strlen(msin);
  447. pos = nai;
  448. end = pos + sizeof(nai);
  449. *pos++ = prefix;
  450. os_memcpy(pos, imsi, plmn_len);
  451. pos += plmn_len;
  452. os_memcpy(pos, msin, msin_len);
  453. pos += msin_len;
  454. pos += os_snprintf(pos, end - pos, "@wlan.mnc");
  455. if (plmn_len == 5) {
  456. *pos++ = '0';
  457. *pos++ = imsi[3];
  458. *pos++ = imsi[4];
  459. } else {
  460. *pos++ = imsi[3];
  461. *pos++ = imsi[4];
  462. *pos++ = imsi[5];
  463. }
  464. pos += os_snprintf(pos, end - pos, ".mcc%c%c%c.3gppnetwork.org",
  465. imsi[0], imsi[1], imsi[2]);
  466. return wpa_config_set_quoted(ssid, "identity", nai);
  467. }
  468. #endif /* INTERWORKING_3GPP */
  469. static int interworking_connect_3gpp(struct wpa_supplicant *wpa_s,
  470. struct wpa_bss *bss)
  471. {
  472. #ifdef INTERWORKING_3GPP
  473. struct wpa_ssid *ssid;
  474. const u8 *ie;
  475. ie = wpa_bss_get_ie(bss, WLAN_EID_SSID);
  476. if (ie == NULL)
  477. return -1;
  478. wpa_printf(MSG_DEBUG, "Interworking: Connect with " MACSTR " (3GPP)",
  479. MAC2STR(bss->bssid));
  480. ssid = wpa_config_add_network(wpa_s->conf);
  481. if (ssid == NULL)
  482. return -1;
  483. wpas_notify_network_added(wpa_s, ssid);
  484. wpa_config_set_network_defaults(ssid);
  485. ssid->temporary = 1;
  486. ssid->ssid = os_zalloc(ie[1] + 1);
  487. if (ssid->ssid == NULL)
  488. goto fail;
  489. os_memcpy(ssid->ssid, ie + 2, ie[1]);
  490. ssid->ssid_len = ie[1];
  491. /* TODO: figure out whether to use EAP-SIM, EAP-AKA, or EAP-AKA' */
  492. if (wpa_config_set(ssid, "eap", "SIM", 0) < 0) {
  493. wpa_printf(MSG_DEBUG, "EAP-SIM not supported");
  494. goto fail;
  495. }
  496. if (set_root_nai(ssid, wpa_s->conf->home_imsi, '1') < 0) {
  497. wpa_printf(MSG_DEBUG, "Failed to set Root NAI");
  498. goto fail;
  499. }
  500. if (wpa_s->conf->home_milenage && wpa_s->conf->home_milenage[0]) {
  501. if (wpa_config_set_quoted(ssid, "password",
  502. wpa_s->conf->home_milenage) < 0)
  503. goto fail;
  504. } else {
  505. /* TODO: PIN */
  506. if (wpa_config_set_quoted(ssid, "pcsc", "") < 0)
  507. goto fail;
  508. }
  509. if (wpa_s->conf->home_password && wpa_s->conf->home_password[0] &&
  510. wpa_config_set_quoted(ssid, "password", wpa_s->conf->home_password)
  511. < 0)
  512. goto fail;
  513. wpa_supplicant_select_network(wpa_s, ssid);
  514. return 0;
  515. fail:
  516. wpas_notify_network_removed(wpa_s, ssid);
  517. wpa_config_remove_network(wpa_s->conf, ssid->id);
  518. #endif /* INTERWORKING_3GPP */
  519. return -1;
  520. }
  521. int interworking_connect(struct wpa_supplicant *wpa_s, struct wpa_bss *bss)
  522. {
  523. struct wpa_ssid *ssid;
  524. struct nai_realm *realm;
  525. struct nai_realm_eap *eap = NULL;
  526. u16 count, i;
  527. char buf[100];
  528. const u8 *ie;
  529. if (bss == NULL)
  530. return -1;
  531. ie = wpa_bss_get_ie(bss, WLAN_EID_SSID);
  532. if (ie == NULL || ie[1] == 0) {
  533. wpa_printf(MSG_DEBUG, "Interworking: No SSID known for "
  534. MACSTR, MAC2STR(bss->bssid));
  535. return -1;
  536. }
  537. realm = nai_realm_parse(bss->anqp_nai_realm, &count);
  538. if (realm == NULL) {
  539. wpa_printf(MSG_DEBUG, "Interworking: Could not parse NAI "
  540. "Realm list from " MACSTR, MAC2STR(bss->bssid));
  541. count = 0;
  542. }
  543. for (i = 0; i < count; i++) {
  544. if (!nai_realm_match(&realm[i], wpa_s->conf->home_realm))
  545. continue;
  546. eap = nai_realm_find_eap(wpa_s, &realm[i]);
  547. if (eap)
  548. break;
  549. }
  550. if (!eap) {
  551. if (interworking_connect_3gpp(wpa_s, bss) == 0) {
  552. if (realm)
  553. nai_realm_free(realm, count);
  554. return 0;
  555. }
  556. wpa_printf(MSG_DEBUG, "Interworking: No matching credentials "
  557. "and EAP method found for " MACSTR,
  558. MAC2STR(bss->bssid));
  559. nai_realm_free(realm, count);
  560. return -1;
  561. }
  562. wpa_printf(MSG_DEBUG, "Interworking: Connect with " MACSTR,
  563. MAC2STR(bss->bssid));
  564. ssid = wpa_config_add_network(wpa_s->conf);
  565. if (ssid == NULL) {
  566. nai_realm_free(realm, count);
  567. return -1;
  568. }
  569. wpas_notify_network_added(wpa_s, ssid);
  570. wpa_config_set_network_defaults(ssid);
  571. ssid->temporary = 1;
  572. ssid->ssid = os_zalloc(ie[1] + 1);
  573. if (ssid->ssid == NULL)
  574. goto fail;
  575. os_memcpy(ssid->ssid, ie + 2, ie[1]);
  576. ssid->ssid_len = ie[1];
  577. if (wpa_config_set(ssid, "eap", eap_get_name(EAP_VENDOR_IETF,
  578. eap->method), 0) < 0)
  579. goto fail;
  580. if (wpa_s->conf->home_username && wpa_s->conf->home_username[0] &&
  581. wpa_config_set_quoted(ssid, "identity",
  582. wpa_s->conf->home_username) < 0)
  583. goto fail;
  584. if (wpa_s->conf->home_password && wpa_s->conf->home_password[0] &&
  585. wpa_config_set_quoted(ssid, "password", wpa_s->conf->home_password)
  586. < 0)
  587. goto fail;
  588. switch (eap->method) {
  589. case EAP_TYPE_TTLS:
  590. if (eap->inner_method) {
  591. os_snprintf(buf, sizeof(buf), "\"autheap=%s\"",
  592. eap_get_name(EAP_VENDOR_IETF,
  593. eap->inner_method));
  594. if (wpa_config_set(ssid, "phase2", buf, 0) < 0)
  595. goto fail;
  596. break;
  597. }
  598. switch (eap->inner_non_eap) {
  599. case NAI_REALM_INNER_NON_EAP_PAP:
  600. if (wpa_config_set(ssid, "phase2", "\"auth=PAP\"", 0) <
  601. 0)
  602. goto fail;
  603. break;
  604. case NAI_REALM_INNER_NON_EAP_CHAP:
  605. if (wpa_config_set(ssid, "phase2", "\"auth=CHAP\"", 0)
  606. < 0)
  607. goto fail;
  608. break;
  609. case NAI_REALM_INNER_NON_EAP_MSCHAP:
  610. if (wpa_config_set(ssid, "phase2", "\"auth=MSCHAP\"",
  611. 0) < 0)
  612. goto fail;
  613. break;
  614. case NAI_REALM_INNER_NON_EAP_MSCHAPV2:
  615. if (wpa_config_set(ssid, "phase2", "\"auth=MSCHAPV2\"",
  616. 0) < 0)
  617. goto fail;
  618. break;
  619. }
  620. break;
  621. case EAP_TYPE_PEAP:
  622. os_snprintf(buf, sizeof(buf), "\"auth=%s\"",
  623. eap_get_name(EAP_VENDOR_IETF, eap->inner_method));
  624. if (wpa_config_set(ssid, "phase2", buf, 0) < 0)
  625. goto fail;
  626. break;
  627. }
  628. if (wpa_s->conf->home_ca_cert && wpa_s->conf->home_ca_cert[0] &&
  629. wpa_config_set_quoted(ssid, "ca_cert", wpa_s->conf->home_ca_cert) <
  630. 0)
  631. goto fail;
  632. nai_realm_free(realm, count);
  633. wpa_supplicant_select_network(wpa_s, ssid);
  634. return 0;
  635. fail:
  636. wpas_notify_network_removed(wpa_s, ssid);
  637. wpa_config_remove_network(wpa_s->conf, ssid->id);
  638. nai_realm_free(realm, count);
  639. return -1;
  640. }
  641. static int interworking_credentials_available_3gpp(
  642. struct wpa_supplicant *wpa_s, struct wpa_bss *bss)
  643. {
  644. int ret = 0;
  645. #ifdef INTERWORKING_3GPP
  646. if (bss->anqp_3gpp == NULL)
  647. return ret;
  648. if (wpa_s->conf->home_imsi == NULL || !wpa_s->conf->home_imsi[0] ||
  649. wpa_s->conf->home_milenage == NULL ||
  650. !wpa_s->conf->home_milenage[0])
  651. return ret;
  652. wpa_printf(MSG_DEBUG, "Interworking: Parsing 3GPP info from " MACSTR,
  653. MAC2STR(bss->bssid));
  654. ret = plmn_id_match(bss->anqp_3gpp, wpa_s->conf->home_imsi);
  655. wpa_printf(MSG_DEBUG, "PLMN match %sfound", ret ? "" : "not ");
  656. #endif /* INTERWORKING_3GPP */
  657. return ret;
  658. }
  659. static int interworking_credentials_available_realm(
  660. struct wpa_supplicant *wpa_s, struct wpa_bss *bss)
  661. {
  662. struct nai_realm *realm;
  663. u16 count, i;
  664. int found = 0;
  665. if (bss->anqp_nai_realm == NULL)
  666. return 0;
  667. if (wpa_s->conf->home_realm == NULL)
  668. return 0;
  669. wpa_printf(MSG_DEBUG, "Interworking: Parsing NAI Realm list from "
  670. MACSTR, MAC2STR(bss->bssid));
  671. realm = nai_realm_parse(bss->anqp_nai_realm, &count);
  672. if (realm == NULL) {
  673. wpa_printf(MSG_DEBUG, "Interworking: Could not parse NAI "
  674. "Realm list from " MACSTR, MAC2STR(bss->bssid));
  675. return 0;
  676. }
  677. for (i = 0; i < count; i++) {
  678. if (!nai_realm_match(&realm[i], wpa_s->conf->home_realm))
  679. continue;
  680. if (nai_realm_find_eap(wpa_s, &realm[i])) {
  681. found++;
  682. break;
  683. }
  684. }
  685. nai_realm_free(realm, count);
  686. return found;
  687. }
  688. static int interworking_credentials_available(struct wpa_supplicant *wpa_s,
  689. struct wpa_bss *bss)
  690. {
  691. return interworking_credentials_available_realm(wpa_s, bss) ||
  692. interworking_credentials_available_3gpp(wpa_s, bss);
  693. }
  694. static void interworking_select_network(struct wpa_supplicant *wpa_s)
  695. {
  696. struct wpa_bss *bss, *selected = NULL;
  697. unsigned int count = 0;
  698. wpa_s->network_select = 0;
  699. dl_list_for_each(bss, &wpa_s->bss, struct wpa_bss, list) {
  700. if (!interworking_credentials_available(wpa_s, bss))
  701. continue;
  702. count++;
  703. wpa_msg(wpa_s, MSG_INFO, INTERWORKING_AP MACSTR,
  704. MAC2STR(bss->bssid));
  705. if (selected == NULL && wpa_s->auto_select)
  706. selected = bss;
  707. }
  708. if (count == 0) {
  709. wpa_msg(wpa_s, MSG_INFO, INTERWORKING_NO_MATCH "No network "
  710. "with matching credentials found");
  711. }
  712. if (selected)
  713. interworking_connect(wpa_s, selected);
  714. }
  715. static void interworking_next_anqp_fetch(struct wpa_supplicant *wpa_s)
  716. {
  717. struct wpa_bss *bss;
  718. int found = 0;
  719. const u8 *ie;
  720. if (!wpa_s->fetch_anqp_in_progress)
  721. return;
  722. dl_list_for_each(bss, &wpa_s->bss, struct wpa_bss, list) {
  723. if (!(bss->caps & IEEE80211_CAP_ESS))
  724. continue;
  725. ie = wpa_bss_get_ie(bss, WLAN_EID_EXT_CAPAB);
  726. if (ie == NULL || ie[1] < 4 || !(ie[5] & 0x80))
  727. continue; /* AP does not support Interworking */
  728. if (!(bss->flags & WPA_BSS_ANQP_FETCH_TRIED)) {
  729. found++;
  730. bss->flags |= WPA_BSS_ANQP_FETCH_TRIED;
  731. wpa_msg(wpa_s, MSG_INFO, "Starting ANQP fetch for "
  732. MACSTR, MAC2STR(bss->bssid));
  733. interworking_anqp_send_req(wpa_s, bss);
  734. break;
  735. }
  736. }
  737. if (found == 0) {
  738. wpa_msg(wpa_s, MSG_INFO, "ANQP fetch completed");
  739. wpa_s->fetch_anqp_in_progress = 0;
  740. if (wpa_s->network_select)
  741. interworking_select_network(wpa_s);
  742. }
  743. }
  744. static void interworking_start_fetch_anqp(struct wpa_supplicant *wpa_s)
  745. {
  746. struct wpa_bss *bss;
  747. dl_list_for_each(bss, &wpa_s->bss, struct wpa_bss, list)
  748. bss->flags &= ~WPA_BSS_ANQP_FETCH_TRIED;
  749. wpa_s->fetch_anqp_in_progress = 1;
  750. interworking_next_anqp_fetch(wpa_s);
  751. }
  752. int interworking_fetch_anqp(struct wpa_supplicant *wpa_s)
  753. {
  754. if (wpa_s->fetch_anqp_in_progress || wpa_s->network_select)
  755. return 0;
  756. wpa_s->network_select = 0;
  757. interworking_start_fetch_anqp(wpa_s);
  758. return 0;
  759. }
  760. void interworking_stop_fetch_anqp(struct wpa_supplicant *wpa_s)
  761. {
  762. if (!wpa_s->fetch_anqp_in_progress)
  763. return;
  764. wpa_s->fetch_anqp_in_progress = 0;
  765. }
  766. int anqp_send_req(struct wpa_supplicant *wpa_s, const u8 *dst,
  767. u16 info_ids[], size_t num_ids)
  768. {
  769. struct wpabuf *buf;
  770. int ret = 0;
  771. int freq;
  772. struct wpa_bss *bss;
  773. int res;
  774. freq = wpa_s->assoc_freq;
  775. bss = wpa_bss_get_bssid(wpa_s, dst);
  776. if (bss)
  777. freq = bss->freq;
  778. if (freq <= 0)
  779. return -1;
  780. wpa_printf(MSG_DEBUG, "ANQP: Query Request to " MACSTR " for %u id(s)",
  781. MAC2STR(dst), (unsigned int) num_ids);
  782. buf = anqp_build_req(info_ids, num_ids, NULL);
  783. if (buf == NULL)
  784. return -1;
  785. res = gas_query_req(wpa_s->gas, dst, freq, buf, anqp_resp_cb, wpa_s);
  786. if (res < 0) {
  787. wpa_printf(MSG_DEBUG, "ANQP: Failed to send Query Request");
  788. ret = -1;
  789. } else
  790. wpa_printf(MSG_DEBUG, "ANQP: Query started with dialog token "
  791. "%u", res);
  792. wpabuf_free(buf);
  793. return ret;
  794. }
  795. static void interworking_parse_rx_anqp_resp(struct wpa_supplicant *wpa_s,
  796. const u8 *sa, u16 info_id,
  797. const u8 *data, size_t slen)
  798. {
  799. const u8 *pos = data;
  800. struct wpa_bss *bss = wpa_bss_get_bssid(wpa_s, sa);
  801. switch (info_id) {
  802. case ANQP_CAPABILITY_LIST:
  803. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  804. " ANQP Capability list", MAC2STR(sa));
  805. break;
  806. case ANQP_VENUE_NAME:
  807. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  808. " Venue Name", MAC2STR(sa));
  809. wpa_hexdump_ascii(MSG_DEBUG, "ANQP: Venue Name", pos, slen);
  810. if (bss) {
  811. wpabuf_free(bss->anqp_venue_name);
  812. bss->anqp_venue_name = wpabuf_alloc_copy(pos, slen);
  813. }
  814. break;
  815. case ANQP_NETWORK_AUTH_TYPE:
  816. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  817. " Network Authentication Type information",
  818. MAC2STR(sa));
  819. wpa_hexdump_ascii(MSG_DEBUG, "ANQP: Network Authentication "
  820. "Type", pos, slen);
  821. if (bss) {
  822. wpabuf_free(bss->anqp_network_auth_type);
  823. bss->anqp_network_auth_type =
  824. wpabuf_alloc_copy(pos, slen);
  825. }
  826. break;
  827. case ANQP_ROAMING_CONSORTIUM:
  828. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  829. " Roaming Consortium list", MAC2STR(sa));
  830. wpa_hexdump_ascii(MSG_DEBUG, "ANQP: Roaming Consortium",
  831. pos, slen);
  832. if (bss) {
  833. wpabuf_free(bss->anqp_roaming_consortium);
  834. bss->anqp_roaming_consortium =
  835. wpabuf_alloc_copy(pos, slen);
  836. }
  837. break;
  838. case ANQP_IP_ADDR_TYPE_AVAILABILITY:
  839. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  840. " IP Address Type Availability information",
  841. MAC2STR(sa));
  842. wpa_hexdump(MSG_MSGDUMP, "ANQP: IP Address Availability",
  843. pos, slen);
  844. if (bss) {
  845. wpabuf_free(bss->anqp_ip_addr_type_availability);
  846. bss->anqp_ip_addr_type_availability =
  847. wpabuf_alloc_copy(pos, slen);
  848. }
  849. break;
  850. case ANQP_NAI_REALM:
  851. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  852. " NAI Realm list", MAC2STR(sa));
  853. wpa_hexdump_ascii(MSG_DEBUG, "ANQP: NAI Realm", pos, slen);
  854. if (bss) {
  855. wpabuf_free(bss->anqp_nai_realm);
  856. bss->anqp_nai_realm = wpabuf_alloc_copy(pos, slen);
  857. }
  858. break;
  859. case ANQP_3GPP_CELLULAR_NETWORK:
  860. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  861. " 3GPP Cellular Network information", MAC2STR(sa));
  862. wpa_hexdump_ascii(MSG_DEBUG, "ANQP: 3GPP Cellular Network",
  863. pos, slen);
  864. if (bss) {
  865. wpabuf_free(bss->anqp_3gpp);
  866. bss->anqp_3gpp = wpabuf_alloc_copy(pos, slen);
  867. }
  868. break;
  869. case ANQP_DOMAIN_NAME:
  870. wpa_msg(wpa_s, MSG_INFO, "RX-ANQP " MACSTR
  871. " Domain Name list", MAC2STR(sa));
  872. wpa_hexdump_ascii(MSG_MSGDUMP, "ANQP: Domain Name", pos, slen);
  873. if (bss) {
  874. wpabuf_free(bss->anqp_domain_name);
  875. bss->anqp_domain_name = wpabuf_alloc_copy(pos, slen);
  876. }
  877. break;
  878. case ANQP_VENDOR_SPECIFIC:
  879. if (slen < 3)
  880. return;
  881. switch (WPA_GET_BE24(pos)) {
  882. default:
  883. wpa_printf(MSG_DEBUG, "Interworking: Unsupported "
  884. "vendor-specific ANQP OUI %06x",
  885. WPA_GET_BE24(pos));
  886. return;
  887. }
  888. break;
  889. default:
  890. wpa_printf(MSG_DEBUG, "Interworking: Unsupported ANQP Info ID "
  891. "%u", info_id);
  892. break;
  893. }
  894. }
  895. void anqp_resp_cb(void *ctx, const u8 *dst, u8 dialog_token,
  896. enum gas_query_result result,
  897. const struct wpabuf *adv_proto,
  898. const struct wpabuf *resp, u16 status_code)
  899. {
  900. struct wpa_supplicant *wpa_s = ctx;
  901. const u8 *pos;
  902. const u8 *end;
  903. u16 info_id;
  904. u16 slen;
  905. if (result != GAS_QUERY_SUCCESS)
  906. return;
  907. pos = wpabuf_head(adv_proto);
  908. if (wpabuf_len(adv_proto) < 4 || pos[0] != WLAN_EID_ADV_PROTO ||
  909. pos[1] < 2 || pos[3] != ACCESS_NETWORK_QUERY_PROTOCOL) {
  910. wpa_printf(MSG_DEBUG, "ANQP: Unexpected Advertisement "
  911. "Protocol in response");
  912. return;
  913. }
  914. pos = wpabuf_head(resp);
  915. end = pos + wpabuf_len(resp);
  916. while (pos < end) {
  917. if (pos + 4 > end) {
  918. wpa_printf(MSG_DEBUG, "ANQP: Invalid element");
  919. break;
  920. }
  921. info_id = WPA_GET_LE16(pos);
  922. pos += 2;
  923. slen = WPA_GET_LE16(pos);
  924. pos += 2;
  925. if (pos + slen > end) {
  926. wpa_printf(MSG_DEBUG, "ANQP: Invalid element length "
  927. "for Info ID %u", info_id);
  928. break;
  929. }
  930. interworking_parse_rx_anqp_resp(wpa_s, dst, info_id, pos,
  931. slen);
  932. pos += slen;
  933. }
  934. }
  935. static void interworking_scan_res_handler(struct wpa_supplicant *wpa_s,
  936. struct wpa_scan_results *scan_res)
  937. {
  938. wpa_printf(MSG_DEBUG, "Interworking: Scan results available - start "
  939. "ANQP fetch");
  940. interworking_start_fetch_anqp(wpa_s);
  941. }
  942. int interworking_select(struct wpa_supplicant *wpa_s, int auto_select)
  943. {
  944. interworking_stop_fetch_anqp(wpa_s);
  945. wpa_s->network_select = 1;
  946. wpa_s->auto_select = !!auto_select;
  947. wpa_printf(MSG_DEBUG, "Interworking: Start scan for network "
  948. "selection");
  949. wpa_s->scan_res_handler = interworking_scan_res_handler;
  950. wpa_s->scan_req = 2;
  951. wpa_supplicant_req_scan(wpa_s, 0, 0);
  952. return 0;
  953. }