sme.c 46 KB

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  1. /*
  2. * wpa_supplicant - SME
  3. * Copyright (c) 2009-2014, 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 "utils/eloop.h"
  11. #include "common/ieee802_11_defs.h"
  12. #include "common/ieee802_11_common.h"
  13. #include "eapol_supp/eapol_supp_sm.h"
  14. #include "common/wpa_common.h"
  15. #include "common/sae.h"
  16. #include "rsn_supp/wpa.h"
  17. #include "rsn_supp/pmksa_cache.h"
  18. #include "config.h"
  19. #include "wpa_supplicant_i.h"
  20. #include "driver_i.h"
  21. #include "wpas_glue.h"
  22. #include "wps_supplicant.h"
  23. #include "p2p_supplicant.h"
  24. #include "notify.h"
  25. #include "bss.h"
  26. #include "scan.h"
  27. #include "sme.h"
  28. #include "hs20_supplicant.h"
  29. #define SME_AUTH_TIMEOUT 5
  30. #define SME_ASSOC_TIMEOUT 5
  31. static void sme_auth_timer(void *eloop_ctx, void *timeout_ctx);
  32. static void sme_assoc_timer(void *eloop_ctx, void *timeout_ctx);
  33. static void sme_obss_scan_timeout(void *eloop_ctx, void *timeout_ctx);
  34. #ifdef CONFIG_IEEE80211W
  35. static void sme_stop_sa_query(struct wpa_supplicant *wpa_s);
  36. #endif /* CONFIG_IEEE80211W */
  37. #ifdef CONFIG_SAE
  38. static int index_within_array(const int *array, int idx)
  39. {
  40. int i;
  41. for (i = 0; i < idx; i++) {
  42. if (array[i] <= 0)
  43. return 0;
  44. }
  45. return 1;
  46. }
  47. static int sme_set_sae_group(struct wpa_supplicant *wpa_s)
  48. {
  49. int *groups = wpa_s->conf->sae_groups;
  50. int default_groups[] = { 19, 20, 21, 25, 26, 0 };
  51. if (!groups || groups[0] <= 0)
  52. groups = default_groups;
  53. /* Configuration may have changed, so validate current index */
  54. if (!index_within_array(groups, wpa_s->sme.sae_group_index))
  55. return -1;
  56. for (;;) {
  57. int group = groups[wpa_s->sme.sae_group_index];
  58. if (group < 0)
  59. break;
  60. if (sae_set_group(&wpa_s->sme.sae, group) == 0) {
  61. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Selected SAE group %d",
  62. wpa_s->sme.sae.group);
  63. return 0;
  64. }
  65. wpa_s->sme.sae_group_index++;
  66. }
  67. return -1;
  68. }
  69. static struct wpabuf * sme_auth_build_sae_commit(struct wpa_supplicant *wpa_s,
  70. struct wpa_ssid *ssid,
  71. const u8 *bssid)
  72. {
  73. struct wpabuf *buf;
  74. size_t len;
  75. if (ssid->passphrase == NULL) {
  76. wpa_printf(MSG_DEBUG, "SAE: No password available");
  77. return NULL;
  78. }
  79. if (sme_set_sae_group(wpa_s) < 0) {
  80. wpa_printf(MSG_DEBUG, "SAE: Failed to select group");
  81. return NULL;
  82. }
  83. if (sae_prepare_commit(wpa_s->own_addr, bssid,
  84. (u8 *) ssid->passphrase,
  85. os_strlen(ssid->passphrase),
  86. &wpa_s->sme.sae) < 0) {
  87. wpa_printf(MSG_DEBUG, "SAE: Could not pick PWE");
  88. return NULL;
  89. }
  90. len = wpa_s->sme.sae_token ? wpabuf_len(wpa_s->sme.sae_token) : 0;
  91. buf = wpabuf_alloc(4 + SAE_COMMIT_MAX_LEN + len);
  92. if (buf == NULL)
  93. return NULL;
  94. wpabuf_put_le16(buf, 1); /* Transaction seq# */
  95. wpabuf_put_le16(buf, WLAN_STATUS_SUCCESS);
  96. sae_write_commit(&wpa_s->sme.sae, buf, wpa_s->sme.sae_token);
  97. return buf;
  98. }
  99. static struct wpabuf * sme_auth_build_sae_confirm(struct wpa_supplicant *wpa_s)
  100. {
  101. struct wpabuf *buf;
  102. buf = wpabuf_alloc(4 + SAE_CONFIRM_MAX_LEN);
  103. if (buf == NULL)
  104. return NULL;
  105. wpabuf_put_le16(buf, 2); /* Transaction seq# */
  106. wpabuf_put_le16(buf, WLAN_STATUS_SUCCESS);
  107. sae_write_confirm(&wpa_s->sme.sae, buf);
  108. return buf;
  109. }
  110. #endif /* CONFIG_SAE */
  111. /**
  112. * sme_auth_handle_rrm - Handle RRM aspects of current authentication attempt
  113. * @wpa_s: Pointer to wpa_supplicant data
  114. * @bss: Pointer to the bss which is the target of authentication attempt
  115. */
  116. static void sme_auth_handle_rrm(struct wpa_supplicant *wpa_s,
  117. struct wpa_bss *bss)
  118. {
  119. const u8 rrm_ie_len = 5;
  120. u8 *pos;
  121. const u8 *rrm_ie;
  122. wpa_s->rrm.rrm_used = 0;
  123. wpa_printf(MSG_DEBUG,
  124. "RRM: Determining whether RRM can be used - device support: 0x%x",
  125. wpa_s->drv_rrm_flags);
  126. rrm_ie = wpa_bss_get_ie(bss, WLAN_EID_RRM_ENABLED_CAPABILITIES);
  127. if (!rrm_ie || !(bss->caps & IEEE80211_CAP_RRM)) {
  128. wpa_printf(MSG_DEBUG, "RRM: No RRM in network");
  129. return;
  130. }
  131. if (!(wpa_s->drv_rrm_flags &
  132. WPA_DRIVER_FLAGS_DS_PARAM_SET_IE_IN_PROBES) ||
  133. !(wpa_s->drv_rrm_flags & WPA_DRIVER_FLAGS_QUIET)) {
  134. wpa_printf(MSG_DEBUG,
  135. "RRM: Insufficient RRM support in driver - do not use RRM");
  136. return;
  137. }
  138. if (sizeof(wpa_s->sme.assoc_req_ie) <
  139. wpa_s->sme.assoc_req_ie_len + rrm_ie_len + 2) {
  140. wpa_printf(MSG_INFO,
  141. "RRM: Unable to use RRM, no room for RRM IE");
  142. return;
  143. }
  144. wpa_printf(MSG_DEBUG, "RRM: Adding RRM IE to Association Request");
  145. pos = wpa_s->sme.assoc_req_ie + wpa_s->sme.assoc_req_ie_len;
  146. os_memset(pos, 0, 2 + rrm_ie_len);
  147. *pos++ = WLAN_EID_RRM_ENABLED_CAPABILITIES;
  148. *pos++ = rrm_ie_len;
  149. /* Set supported capabilites flags */
  150. if (wpa_s->drv_rrm_flags & WPA_DRIVER_FLAGS_TX_POWER_INSERTION)
  151. *pos |= WLAN_RRM_CAPS_LINK_MEASUREMENT;
  152. wpa_s->sme.assoc_req_ie_len += rrm_ie_len + 2;
  153. wpa_s->rrm.rrm_used = 1;
  154. }
  155. static void sme_send_authentication(struct wpa_supplicant *wpa_s,
  156. struct wpa_bss *bss, struct wpa_ssid *ssid,
  157. int start)
  158. {
  159. struct wpa_driver_auth_params params;
  160. struct wpa_ssid *old_ssid;
  161. #ifdef CONFIG_IEEE80211R
  162. const u8 *ie;
  163. #endif /* CONFIG_IEEE80211R */
  164. #ifdef CONFIG_IEEE80211R
  165. const u8 *md = NULL;
  166. #endif /* CONFIG_IEEE80211R */
  167. int i, bssid_changed;
  168. struct wpabuf *resp = NULL;
  169. u8 ext_capab[18];
  170. int ext_capab_len;
  171. int skip_auth;
  172. if (bss == NULL) {
  173. wpa_msg(wpa_s, MSG_ERROR, "SME: No scan result available for "
  174. "the network");
  175. wpas_connect_work_done(wpa_s);
  176. return;
  177. }
  178. skip_auth = wpa_s->conf->reassoc_same_bss_optim &&
  179. wpa_s->reassoc_same_bss;
  180. wpa_s->current_bss = bss;
  181. os_memset(&params, 0, sizeof(params));
  182. wpa_s->reassociate = 0;
  183. params.freq = bss->freq;
  184. params.bssid = bss->bssid;
  185. params.ssid = bss->ssid;
  186. params.ssid_len = bss->ssid_len;
  187. params.p2p = ssid->p2p_group;
  188. if (wpa_s->sme.ssid_len != params.ssid_len ||
  189. os_memcmp(wpa_s->sme.ssid, params.ssid, params.ssid_len) != 0)
  190. wpa_s->sme.prev_bssid_set = 0;
  191. wpa_s->sme.freq = params.freq;
  192. os_memcpy(wpa_s->sme.ssid, params.ssid, params.ssid_len);
  193. wpa_s->sme.ssid_len = params.ssid_len;
  194. params.auth_alg = WPA_AUTH_ALG_OPEN;
  195. #ifdef IEEE8021X_EAPOL
  196. if (ssid->key_mgmt & WPA_KEY_MGMT_IEEE8021X_NO_WPA) {
  197. if (ssid->leap) {
  198. if (ssid->non_leap == 0)
  199. params.auth_alg = WPA_AUTH_ALG_LEAP;
  200. else
  201. params.auth_alg |= WPA_AUTH_ALG_LEAP;
  202. }
  203. }
  204. #endif /* IEEE8021X_EAPOL */
  205. wpa_dbg(wpa_s, MSG_DEBUG, "Automatic auth_alg selection: 0x%x",
  206. params.auth_alg);
  207. if (ssid->auth_alg) {
  208. params.auth_alg = ssid->auth_alg;
  209. wpa_dbg(wpa_s, MSG_DEBUG, "Overriding auth_alg selection: "
  210. "0x%x", params.auth_alg);
  211. }
  212. #ifdef CONFIG_SAE
  213. wpa_s->sme.sae_pmksa_caching = 0;
  214. if (wpa_key_mgmt_sae(ssid->key_mgmt)) {
  215. const u8 *rsn;
  216. struct wpa_ie_data ied;
  217. rsn = wpa_bss_get_ie(bss, WLAN_EID_RSN);
  218. if (!rsn) {
  219. wpa_dbg(wpa_s, MSG_DEBUG,
  220. "SAE enabled, but target BSS does not advertise RSN");
  221. } else if (wpa_parse_wpa_ie(rsn, 2 + rsn[1], &ied) == 0 &&
  222. wpa_key_mgmt_sae(ied.key_mgmt)) {
  223. wpa_dbg(wpa_s, MSG_DEBUG, "Using SAE auth_alg");
  224. params.auth_alg = WPA_AUTH_ALG_SAE;
  225. } else {
  226. wpa_dbg(wpa_s, MSG_DEBUG,
  227. "SAE enabled, but target BSS does not advertise SAE AKM for RSN");
  228. }
  229. }
  230. #endif /* CONFIG_SAE */
  231. for (i = 0; i < NUM_WEP_KEYS; i++) {
  232. if (ssid->wep_key_len[i])
  233. params.wep_key[i] = ssid->wep_key[i];
  234. params.wep_key_len[i] = ssid->wep_key_len[i];
  235. }
  236. params.wep_tx_keyidx = ssid->wep_tx_keyidx;
  237. bssid_changed = !is_zero_ether_addr(wpa_s->bssid);
  238. os_memset(wpa_s->bssid, 0, ETH_ALEN);
  239. os_memcpy(wpa_s->pending_bssid, bss->bssid, ETH_ALEN);
  240. if (bssid_changed)
  241. wpas_notify_bssid_changed(wpa_s);
  242. if ((wpa_bss_get_vendor_ie(bss, WPA_IE_VENDOR_TYPE) ||
  243. wpa_bss_get_ie(bss, WLAN_EID_RSN)) &&
  244. wpa_key_mgmt_wpa(ssid->key_mgmt)) {
  245. int try_opportunistic;
  246. try_opportunistic = (ssid->proactive_key_caching < 0 ?
  247. wpa_s->conf->okc :
  248. ssid->proactive_key_caching) &&
  249. (ssid->proto & WPA_PROTO_RSN);
  250. if (pmksa_cache_set_current(wpa_s->wpa, NULL, bss->bssid,
  251. wpa_s->current_ssid,
  252. try_opportunistic) == 0)
  253. eapol_sm_notify_pmkid_attempt(wpa_s->eapol);
  254. wpa_s->sme.assoc_req_ie_len = sizeof(wpa_s->sme.assoc_req_ie);
  255. if (wpa_supplicant_set_suites(wpa_s, bss, ssid,
  256. wpa_s->sme.assoc_req_ie,
  257. &wpa_s->sme.assoc_req_ie_len)) {
  258. wpa_msg(wpa_s, MSG_WARNING, "SME: Failed to set WPA "
  259. "key management and encryption suites");
  260. wpas_connect_work_done(wpa_s);
  261. return;
  262. }
  263. } else if ((ssid->key_mgmt & WPA_KEY_MGMT_IEEE8021X_NO_WPA) &&
  264. wpa_key_mgmt_wpa_ieee8021x(ssid->key_mgmt)) {
  265. /*
  266. * Both WPA and non-WPA IEEE 802.1X enabled in configuration -
  267. * use non-WPA since the scan results did not indicate that the
  268. * AP is using WPA or WPA2.
  269. */
  270. wpa_supplicant_set_non_wpa_policy(wpa_s, ssid);
  271. wpa_s->sme.assoc_req_ie_len = 0;
  272. } else if (wpa_key_mgmt_wpa_any(ssid->key_mgmt)) {
  273. wpa_s->sme.assoc_req_ie_len = sizeof(wpa_s->sme.assoc_req_ie);
  274. if (wpa_supplicant_set_suites(wpa_s, NULL, ssid,
  275. wpa_s->sme.assoc_req_ie,
  276. &wpa_s->sme.assoc_req_ie_len)) {
  277. wpa_msg(wpa_s, MSG_WARNING, "SME: Failed to set WPA "
  278. "key management and encryption suites (no "
  279. "scan results)");
  280. wpas_connect_work_done(wpa_s);
  281. return;
  282. }
  283. #ifdef CONFIG_WPS
  284. } else if (ssid->key_mgmt & WPA_KEY_MGMT_WPS) {
  285. struct wpabuf *wps_ie;
  286. wps_ie = wps_build_assoc_req_ie(wpas_wps_get_req_type(ssid));
  287. if (wps_ie && wpabuf_len(wps_ie) <=
  288. sizeof(wpa_s->sme.assoc_req_ie)) {
  289. wpa_s->sme.assoc_req_ie_len = wpabuf_len(wps_ie);
  290. os_memcpy(wpa_s->sme.assoc_req_ie, wpabuf_head(wps_ie),
  291. wpa_s->sme.assoc_req_ie_len);
  292. } else
  293. wpa_s->sme.assoc_req_ie_len = 0;
  294. wpabuf_free(wps_ie);
  295. wpa_supplicant_set_non_wpa_policy(wpa_s, ssid);
  296. #endif /* CONFIG_WPS */
  297. } else {
  298. wpa_supplicant_set_non_wpa_policy(wpa_s, ssid);
  299. wpa_s->sme.assoc_req_ie_len = 0;
  300. }
  301. #ifdef CONFIG_IEEE80211R
  302. ie = wpa_bss_get_ie(bss, WLAN_EID_MOBILITY_DOMAIN);
  303. if (ie && ie[1] >= MOBILITY_DOMAIN_ID_LEN)
  304. md = ie + 2;
  305. wpa_sm_set_ft_params(wpa_s->wpa, ie, ie ? 2 + ie[1] : 0);
  306. if (md) {
  307. /* Prepare for the next transition */
  308. wpa_ft_prepare_auth_request(wpa_s->wpa, ie);
  309. }
  310. if (md && wpa_key_mgmt_ft(ssid->key_mgmt)) {
  311. if (wpa_s->sme.assoc_req_ie_len + 5 <
  312. sizeof(wpa_s->sme.assoc_req_ie)) {
  313. struct rsn_mdie *mdie;
  314. u8 *pos = wpa_s->sme.assoc_req_ie +
  315. wpa_s->sme.assoc_req_ie_len;
  316. *pos++ = WLAN_EID_MOBILITY_DOMAIN;
  317. *pos++ = sizeof(*mdie);
  318. mdie = (struct rsn_mdie *) pos;
  319. os_memcpy(mdie->mobility_domain, md,
  320. MOBILITY_DOMAIN_ID_LEN);
  321. mdie->ft_capab = md[MOBILITY_DOMAIN_ID_LEN];
  322. wpa_s->sme.assoc_req_ie_len += 5;
  323. }
  324. if (wpa_s->sme.ft_used &&
  325. os_memcmp(md, wpa_s->sme.mobility_domain, 2) == 0 &&
  326. wpa_sm_has_ptk(wpa_s->wpa)) {
  327. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Trying to use FT "
  328. "over-the-air");
  329. params.auth_alg = WPA_AUTH_ALG_FT;
  330. params.ie = wpa_s->sme.ft_ies;
  331. params.ie_len = wpa_s->sme.ft_ies_len;
  332. }
  333. }
  334. #endif /* CONFIG_IEEE80211R */
  335. #ifdef CONFIG_IEEE80211W
  336. wpa_s->sme.mfp = wpas_get_ssid_pmf(wpa_s, ssid);
  337. if (wpa_s->sme.mfp != NO_MGMT_FRAME_PROTECTION) {
  338. const u8 *rsn = wpa_bss_get_ie(bss, WLAN_EID_RSN);
  339. struct wpa_ie_data _ie;
  340. if (rsn && wpa_parse_wpa_ie(rsn, 2 + rsn[1], &_ie) == 0 &&
  341. _ie.capabilities &
  342. (WPA_CAPABILITY_MFPC | WPA_CAPABILITY_MFPR)) {
  343. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Selected AP supports "
  344. "MFP: require MFP");
  345. wpa_s->sme.mfp = MGMT_FRAME_PROTECTION_REQUIRED;
  346. }
  347. }
  348. #endif /* CONFIG_IEEE80211W */
  349. #ifdef CONFIG_P2P
  350. if (wpa_s->global->p2p) {
  351. u8 *pos;
  352. size_t len;
  353. int res;
  354. pos = wpa_s->sme.assoc_req_ie + wpa_s->sme.assoc_req_ie_len;
  355. len = sizeof(wpa_s->sme.assoc_req_ie) -
  356. wpa_s->sme.assoc_req_ie_len;
  357. res = wpas_p2p_assoc_req_ie(wpa_s, bss, pos, len,
  358. ssid->p2p_group);
  359. if (res >= 0)
  360. wpa_s->sme.assoc_req_ie_len += res;
  361. }
  362. #endif /* CONFIG_P2P */
  363. #ifdef CONFIG_HS20
  364. if (is_hs20_network(wpa_s, ssid, bss)) {
  365. struct wpabuf *hs20;
  366. hs20 = wpabuf_alloc(20);
  367. if (hs20) {
  368. int pps_mo_id = hs20_get_pps_mo_id(wpa_s, ssid);
  369. size_t len;
  370. wpas_hs20_add_indication(hs20, pps_mo_id);
  371. len = sizeof(wpa_s->sme.assoc_req_ie) -
  372. wpa_s->sme.assoc_req_ie_len;
  373. if (wpabuf_len(hs20) <= len) {
  374. os_memcpy(wpa_s->sme.assoc_req_ie +
  375. wpa_s->sme.assoc_req_ie_len,
  376. wpabuf_head(hs20), wpabuf_len(hs20));
  377. wpa_s->sme.assoc_req_ie_len += wpabuf_len(hs20);
  378. }
  379. wpabuf_free(hs20);
  380. }
  381. }
  382. #endif /* CONFIG_HS20 */
  383. ext_capab_len = wpas_build_ext_capab(wpa_s, ext_capab,
  384. sizeof(ext_capab));
  385. if (ext_capab_len > 0) {
  386. u8 *pos = wpa_s->sme.assoc_req_ie;
  387. if (wpa_s->sme.assoc_req_ie_len > 0 && pos[0] == WLAN_EID_RSN)
  388. pos += 2 + pos[1];
  389. os_memmove(pos + ext_capab_len, pos,
  390. wpa_s->sme.assoc_req_ie_len -
  391. (pos - wpa_s->sme.assoc_req_ie));
  392. wpa_s->sme.assoc_req_ie_len += ext_capab_len;
  393. os_memcpy(pos, ext_capab, ext_capab_len);
  394. }
  395. if (wpa_s->vendor_elem[VENDOR_ELEM_ASSOC_REQ]) {
  396. struct wpabuf *buf = wpa_s->vendor_elem[VENDOR_ELEM_ASSOC_REQ];
  397. size_t len;
  398. len = sizeof(wpa_s->sme.assoc_req_ie) -
  399. wpa_s->sme.assoc_req_ie_len;
  400. if (wpabuf_len(buf) <= len) {
  401. os_memcpy(wpa_s->sme.assoc_req_ie +
  402. wpa_s->sme.assoc_req_ie_len,
  403. wpabuf_head(buf), wpabuf_len(buf));
  404. wpa_s->sme.assoc_req_ie_len += wpabuf_len(buf);
  405. }
  406. }
  407. sme_auth_handle_rrm(wpa_s, bss);
  408. #ifdef CONFIG_SAE
  409. if (!skip_auth && params.auth_alg == WPA_AUTH_ALG_SAE &&
  410. pmksa_cache_set_current(wpa_s->wpa, NULL, bss->bssid, ssid, 0) == 0)
  411. {
  412. wpa_dbg(wpa_s, MSG_DEBUG,
  413. "PMKSA cache entry found - try to use PMKSA caching instead of new SAE authentication");
  414. params.auth_alg = WPA_AUTH_ALG_OPEN;
  415. wpa_s->sme.sae_pmksa_caching = 1;
  416. }
  417. if (!skip_auth && params.auth_alg == WPA_AUTH_ALG_SAE) {
  418. if (start)
  419. resp = sme_auth_build_sae_commit(wpa_s, ssid,
  420. bss->bssid);
  421. else
  422. resp = sme_auth_build_sae_confirm(wpa_s);
  423. if (resp == NULL) {
  424. wpas_connection_failed(wpa_s, bss->bssid);
  425. return;
  426. }
  427. params.sae_data = wpabuf_head(resp);
  428. params.sae_data_len = wpabuf_len(resp);
  429. wpa_s->sme.sae.state = start ? SAE_COMMITTED : SAE_CONFIRMED;
  430. }
  431. #endif /* CONFIG_SAE */
  432. wpa_supplicant_cancel_sched_scan(wpa_s);
  433. wpa_supplicant_cancel_scan(wpa_s);
  434. wpa_msg(wpa_s, MSG_INFO, "SME: Trying to authenticate with " MACSTR
  435. " (SSID='%s' freq=%d MHz)", MAC2STR(params.bssid),
  436. wpa_ssid_txt(params.ssid, params.ssid_len), params.freq);
  437. wpa_clear_keys(wpa_s, bss->bssid);
  438. wpa_supplicant_set_state(wpa_s, WPA_AUTHENTICATING);
  439. old_ssid = wpa_s->current_ssid;
  440. wpa_s->current_ssid = ssid;
  441. wpa_supplicant_rsn_supp_set_config(wpa_s, wpa_s->current_ssid);
  442. wpa_supplicant_initiate_eapol(wpa_s);
  443. if (old_ssid != wpa_s->current_ssid)
  444. wpas_notify_network_changed(wpa_s);
  445. #ifdef CONFIG_P2P
  446. /*
  447. * If multi-channel concurrency is not supported, check for any
  448. * frequency conflict. In case of any frequency conflict, remove the
  449. * least prioritized connection.
  450. */
  451. if (wpa_s->num_multichan_concurrent < 2) {
  452. int freq, num;
  453. num = get_shared_radio_freqs(wpa_s, &freq, 1);
  454. if (num > 0 && freq > 0 && freq != params.freq) {
  455. wpa_printf(MSG_DEBUG,
  456. "Conflicting frequency found (%d != %d)",
  457. freq, params.freq);
  458. if (wpas_p2p_handle_frequency_conflicts(wpa_s,
  459. params.freq,
  460. ssid) < 0) {
  461. wpas_connection_failed(wpa_s, bss->bssid);
  462. wpa_supplicant_mark_disassoc(wpa_s);
  463. wpabuf_free(resp);
  464. wpas_connect_work_done(wpa_s);
  465. return;
  466. }
  467. }
  468. }
  469. #endif /* CONFIG_P2P */
  470. if (skip_auth) {
  471. wpa_msg(wpa_s, MSG_DEBUG,
  472. "SME: Skip authentication step on reassoc-to-same-BSS");
  473. wpabuf_free(resp);
  474. sme_associate(wpa_s, ssid->mode, bss->bssid, WLAN_AUTH_OPEN);
  475. return;
  476. }
  477. wpa_s->sme.auth_alg = params.auth_alg;
  478. if (wpa_drv_authenticate(wpa_s, &params) < 0) {
  479. wpa_msg(wpa_s, MSG_INFO, "SME: Authentication request to the "
  480. "driver failed");
  481. wpas_connection_failed(wpa_s, bss->bssid);
  482. wpa_supplicant_mark_disassoc(wpa_s);
  483. wpabuf_free(resp);
  484. wpas_connect_work_done(wpa_s);
  485. return;
  486. }
  487. eloop_register_timeout(SME_AUTH_TIMEOUT, 0, sme_auth_timer, wpa_s,
  488. NULL);
  489. /*
  490. * Association will be started based on the authentication event from
  491. * the driver.
  492. */
  493. wpabuf_free(resp);
  494. }
  495. static void sme_auth_start_cb(struct wpa_radio_work *work, int deinit)
  496. {
  497. struct wpa_connect_work *cwork = work->ctx;
  498. struct wpa_supplicant *wpa_s = work->wpa_s;
  499. if (deinit) {
  500. if (work->started)
  501. wpa_s->connect_work = NULL;
  502. wpas_connect_work_free(cwork);
  503. return;
  504. }
  505. wpa_s->connect_work = work;
  506. if (cwork->bss_removed ||
  507. !wpas_valid_bss_ssid(wpa_s, cwork->bss, cwork->ssid)) {
  508. wpa_dbg(wpa_s, MSG_DEBUG, "SME: BSS/SSID entry for authentication not valid anymore - drop connection attempt");
  509. wpas_connect_work_done(wpa_s);
  510. return;
  511. }
  512. sme_send_authentication(wpa_s, cwork->bss, cwork->ssid, 1);
  513. }
  514. void sme_authenticate(struct wpa_supplicant *wpa_s,
  515. struct wpa_bss *bss, struct wpa_ssid *ssid)
  516. {
  517. struct wpa_connect_work *cwork;
  518. if (bss == NULL || ssid == NULL)
  519. return;
  520. if (wpa_s->connect_work) {
  521. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Reject sme_authenticate() call since connect_work exist");
  522. return;
  523. }
  524. if (radio_work_pending(wpa_s, "sme-connect")) {
  525. /*
  526. * The previous sme-connect work might no longer be valid due to
  527. * the fact that the BSS list was updated. In addition, it makes
  528. * sense to adhere to the 'newer' decision.
  529. */
  530. wpa_dbg(wpa_s, MSG_DEBUG,
  531. "SME: Remove previous pending sme-connect");
  532. radio_remove_works(wpa_s, "sme-connect", 0);
  533. }
  534. cwork = os_zalloc(sizeof(*cwork));
  535. if (cwork == NULL)
  536. return;
  537. cwork->bss = bss;
  538. cwork->ssid = ssid;
  539. cwork->sme = 1;
  540. #ifdef CONFIG_SAE
  541. wpa_s->sme.sae.state = SAE_NOTHING;
  542. wpa_s->sme.sae.send_confirm = 0;
  543. wpa_s->sme.sae_group_index = 0;
  544. #endif /* CONFIG_SAE */
  545. if (radio_add_work(wpa_s, bss->freq, "sme-connect", 1,
  546. sme_auth_start_cb, cwork) < 0)
  547. wpas_connect_work_free(cwork);
  548. }
  549. #ifdef CONFIG_SAE
  550. static int sme_sae_auth(struct wpa_supplicant *wpa_s, u16 auth_transaction,
  551. u16 status_code, const u8 *data, size_t len)
  552. {
  553. int *groups;
  554. wpa_dbg(wpa_s, MSG_DEBUG, "SME: SAE authentication transaction %u "
  555. "status code %u", auth_transaction, status_code);
  556. if (auth_transaction == 1 &&
  557. status_code == WLAN_STATUS_ANTI_CLOGGING_TOKEN_REQ &&
  558. wpa_s->sme.sae.state == SAE_COMMITTED &&
  559. wpa_s->current_bss && wpa_s->current_ssid) {
  560. int default_groups[] = { 19, 20, 21, 25, 26, 0 };
  561. u16 group;
  562. groups = wpa_s->conf->sae_groups;
  563. if (!groups || groups[0] <= 0)
  564. groups = default_groups;
  565. if (len < sizeof(le16)) {
  566. wpa_dbg(wpa_s, MSG_DEBUG,
  567. "SME: Too short SAE anti-clogging token request");
  568. return -1;
  569. }
  570. group = WPA_GET_LE16(data);
  571. wpa_dbg(wpa_s, MSG_DEBUG,
  572. "SME: SAE anti-clogging token requested (group %u)",
  573. group);
  574. if (sae_group_allowed(&wpa_s->sme.sae, groups, group) !=
  575. WLAN_STATUS_SUCCESS) {
  576. wpa_dbg(wpa_s, MSG_ERROR,
  577. "SME: SAE group %u of anti-clogging request is invalid",
  578. group);
  579. return -1;
  580. }
  581. wpabuf_free(wpa_s->sme.sae_token);
  582. wpa_s->sme.sae_token = wpabuf_alloc_copy(data + sizeof(le16),
  583. len - sizeof(le16));
  584. sme_send_authentication(wpa_s, wpa_s->current_bss,
  585. wpa_s->current_ssid, 1);
  586. return 0;
  587. }
  588. if (auth_transaction == 1 &&
  589. status_code == WLAN_STATUS_FINITE_CYCLIC_GROUP_NOT_SUPPORTED &&
  590. wpa_s->sme.sae.state == SAE_COMMITTED &&
  591. wpa_s->current_bss && wpa_s->current_ssid) {
  592. wpa_dbg(wpa_s, MSG_DEBUG, "SME: SAE group not supported");
  593. wpa_s->sme.sae_group_index++;
  594. if (sme_set_sae_group(wpa_s) < 0)
  595. return -1; /* no other groups enabled */
  596. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Try next enabled SAE group");
  597. sme_send_authentication(wpa_s, wpa_s->current_bss,
  598. wpa_s->current_ssid, 1);
  599. return 0;
  600. }
  601. if (status_code != WLAN_STATUS_SUCCESS)
  602. return -1;
  603. if (auth_transaction == 1) {
  604. groups = wpa_s->conf->sae_groups;
  605. wpa_dbg(wpa_s, MSG_DEBUG, "SME SAE commit");
  606. if (wpa_s->current_bss == NULL ||
  607. wpa_s->current_ssid == NULL)
  608. return -1;
  609. if (wpa_s->sme.sae.state != SAE_COMMITTED)
  610. return -1;
  611. if (groups && groups[0] <= 0)
  612. groups = NULL;
  613. if (sae_parse_commit(&wpa_s->sme.sae, data, len, NULL, NULL,
  614. groups) != WLAN_STATUS_SUCCESS)
  615. return -1;
  616. if (sae_process_commit(&wpa_s->sme.sae) < 0) {
  617. wpa_printf(MSG_DEBUG, "SAE: Failed to process peer "
  618. "commit");
  619. return -1;
  620. }
  621. wpabuf_free(wpa_s->sme.sae_token);
  622. wpa_s->sme.sae_token = NULL;
  623. sme_send_authentication(wpa_s, wpa_s->current_bss,
  624. wpa_s->current_ssid, 0);
  625. return 0;
  626. } else if (auth_transaction == 2) {
  627. wpa_dbg(wpa_s, MSG_DEBUG, "SME SAE confirm");
  628. if (wpa_s->sme.sae.state != SAE_CONFIRMED)
  629. return -1;
  630. if (sae_check_confirm(&wpa_s->sme.sae, data, len) < 0)
  631. return -1;
  632. wpa_s->sme.sae.state = SAE_ACCEPTED;
  633. sae_clear_temp_data(&wpa_s->sme.sae);
  634. return 1;
  635. }
  636. return -1;
  637. }
  638. #endif /* CONFIG_SAE */
  639. void sme_event_auth(struct wpa_supplicant *wpa_s, union wpa_event_data *data)
  640. {
  641. struct wpa_ssid *ssid = wpa_s->current_ssid;
  642. if (ssid == NULL) {
  643. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Ignore authentication event "
  644. "when network is not selected");
  645. return;
  646. }
  647. if (wpa_s->wpa_state != WPA_AUTHENTICATING) {
  648. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Ignore authentication event "
  649. "when not in authenticating state");
  650. return;
  651. }
  652. if (os_memcmp(wpa_s->pending_bssid, data->auth.peer, ETH_ALEN) != 0) {
  653. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Ignore authentication with "
  654. "unexpected peer " MACSTR,
  655. MAC2STR(data->auth.peer));
  656. return;
  657. }
  658. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Authentication response: peer=" MACSTR
  659. " auth_type=%d auth_transaction=%d status_code=%d",
  660. MAC2STR(data->auth.peer), data->auth.auth_type,
  661. data->auth.auth_transaction, data->auth.status_code);
  662. wpa_hexdump(MSG_MSGDUMP, "SME: Authentication response IEs",
  663. data->auth.ies, data->auth.ies_len);
  664. eloop_cancel_timeout(sme_auth_timer, wpa_s, NULL);
  665. #ifdef CONFIG_SAE
  666. if (data->auth.auth_type == WLAN_AUTH_SAE) {
  667. int res;
  668. res = sme_sae_auth(wpa_s, data->auth.auth_transaction,
  669. data->auth.status_code, data->auth.ies,
  670. data->auth.ies_len);
  671. if (res < 0) {
  672. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  673. wpa_supplicant_set_state(wpa_s, WPA_DISCONNECTED);
  674. }
  675. if (res != 1)
  676. return;
  677. wpa_printf(MSG_DEBUG, "SME: SAE completed - setting PMK for "
  678. "4-way handshake");
  679. wpa_sm_set_pmk(wpa_s->wpa, wpa_s->sme.sae.pmk, PMK_LEN,
  680. wpa_s->pending_bssid);
  681. }
  682. #endif /* CONFIG_SAE */
  683. if (data->auth.status_code != WLAN_STATUS_SUCCESS) {
  684. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Authentication failed (status "
  685. "code %d)", data->auth.status_code);
  686. if (data->auth.status_code !=
  687. WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG ||
  688. wpa_s->sme.auth_alg == data->auth.auth_type ||
  689. wpa_s->current_ssid->auth_alg == WPA_AUTH_ALG_LEAP) {
  690. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  691. wpa_supplicant_set_state(wpa_s, WPA_DISCONNECTED);
  692. return;
  693. }
  694. wpas_connect_work_done(wpa_s);
  695. switch (data->auth.auth_type) {
  696. case WLAN_AUTH_OPEN:
  697. wpa_s->current_ssid->auth_alg = WPA_AUTH_ALG_SHARED;
  698. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Trying SHARED auth");
  699. wpa_supplicant_associate(wpa_s, wpa_s->current_bss,
  700. wpa_s->current_ssid);
  701. return;
  702. case WLAN_AUTH_SHARED_KEY:
  703. wpa_s->current_ssid->auth_alg = WPA_AUTH_ALG_LEAP;
  704. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Trying LEAP auth");
  705. wpa_supplicant_associate(wpa_s, wpa_s->current_bss,
  706. wpa_s->current_ssid);
  707. return;
  708. default:
  709. return;
  710. }
  711. }
  712. #ifdef CONFIG_IEEE80211R
  713. if (data->auth.auth_type == WLAN_AUTH_FT) {
  714. union wpa_event_data edata;
  715. os_memset(&edata, 0, sizeof(edata));
  716. edata.ft_ies.ies = data->auth.ies;
  717. edata.ft_ies.ies_len = data->auth.ies_len;
  718. os_memcpy(edata.ft_ies.target_ap, data->auth.peer, ETH_ALEN);
  719. wpa_supplicant_event(wpa_s, EVENT_FT_RESPONSE, &edata);
  720. }
  721. #endif /* CONFIG_IEEE80211R */
  722. sme_associate(wpa_s, ssid->mode, data->auth.peer,
  723. data->auth.auth_type);
  724. }
  725. void sme_associate(struct wpa_supplicant *wpa_s, enum wpas_mode mode,
  726. const u8 *bssid, u16 auth_type)
  727. {
  728. struct wpa_driver_associate_params params;
  729. struct ieee802_11_elems elems;
  730. #ifdef CONFIG_HT_OVERRIDES
  731. struct ieee80211_ht_capabilities htcaps;
  732. struct ieee80211_ht_capabilities htcaps_mask;
  733. #endif /* CONFIG_HT_OVERRIDES */
  734. #ifdef CONFIG_VHT_OVERRIDES
  735. struct ieee80211_vht_capabilities vhtcaps;
  736. struct ieee80211_vht_capabilities vhtcaps_mask;
  737. #endif /* CONFIG_VHT_OVERRIDES */
  738. os_memset(&params, 0, sizeof(params));
  739. params.bssid = bssid;
  740. params.ssid = wpa_s->sme.ssid;
  741. params.ssid_len = wpa_s->sme.ssid_len;
  742. params.freq.freq = wpa_s->sme.freq;
  743. params.bg_scan_period = wpa_s->current_ssid ?
  744. wpa_s->current_ssid->bg_scan_period : -1;
  745. params.wpa_ie = wpa_s->sme.assoc_req_ie_len ?
  746. wpa_s->sme.assoc_req_ie : NULL;
  747. params.wpa_ie_len = wpa_s->sme.assoc_req_ie_len;
  748. params.pairwise_suite = wpa_s->pairwise_cipher;
  749. params.group_suite = wpa_s->group_cipher;
  750. params.key_mgmt_suite = wpa_s->key_mgmt;
  751. params.wpa_proto = wpa_s->wpa_proto;
  752. #ifdef CONFIG_HT_OVERRIDES
  753. os_memset(&htcaps, 0, sizeof(htcaps));
  754. os_memset(&htcaps_mask, 0, sizeof(htcaps_mask));
  755. params.htcaps = (u8 *) &htcaps;
  756. params.htcaps_mask = (u8 *) &htcaps_mask;
  757. wpa_supplicant_apply_ht_overrides(wpa_s, wpa_s->current_ssid, &params);
  758. #endif /* CONFIG_HT_OVERRIDES */
  759. #ifdef CONFIG_VHT_OVERRIDES
  760. os_memset(&vhtcaps, 0, sizeof(vhtcaps));
  761. os_memset(&vhtcaps_mask, 0, sizeof(vhtcaps_mask));
  762. params.vhtcaps = &vhtcaps;
  763. params.vhtcaps_mask = &vhtcaps_mask;
  764. wpa_supplicant_apply_vht_overrides(wpa_s, wpa_s->current_ssid, &params);
  765. #endif /* CONFIG_VHT_OVERRIDES */
  766. #ifdef CONFIG_IEEE80211R
  767. if (auth_type == WLAN_AUTH_FT && wpa_s->sme.ft_ies) {
  768. params.wpa_ie = wpa_s->sme.ft_ies;
  769. params.wpa_ie_len = wpa_s->sme.ft_ies_len;
  770. }
  771. #endif /* CONFIG_IEEE80211R */
  772. params.mode = mode;
  773. params.mgmt_frame_protection = wpa_s->sme.mfp;
  774. params.rrm_used = wpa_s->rrm.rrm_used;
  775. if (wpa_s->sme.prev_bssid_set)
  776. params.prev_bssid = wpa_s->sme.prev_bssid;
  777. wpa_msg(wpa_s, MSG_INFO, "Trying to associate with " MACSTR
  778. " (SSID='%s' freq=%d MHz)", MAC2STR(params.bssid),
  779. params.ssid ? wpa_ssid_txt(params.ssid, params.ssid_len) : "",
  780. params.freq.freq);
  781. wpa_supplicant_set_state(wpa_s, WPA_ASSOCIATING);
  782. if (params.wpa_ie == NULL ||
  783. ieee802_11_parse_elems(params.wpa_ie, params.wpa_ie_len, &elems, 0)
  784. < 0) {
  785. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Could not parse own IEs?!");
  786. os_memset(&elems, 0, sizeof(elems));
  787. }
  788. if (elems.rsn_ie) {
  789. params.wpa_proto = WPA_PROTO_RSN;
  790. wpa_sm_set_assoc_wpa_ie(wpa_s->wpa, elems.rsn_ie - 2,
  791. elems.rsn_ie_len + 2);
  792. } else if (elems.wpa_ie) {
  793. params.wpa_proto = WPA_PROTO_WPA;
  794. wpa_sm_set_assoc_wpa_ie(wpa_s->wpa, elems.wpa_ie - 2,
  795. elems.wpa_ie_len + 2);
  796. } else if (elems.osen) {
  797. params.wpa_proto = WPA_PROTO_OSEN;
  798. wpa_sm_set_assoc_wpa_ie(wpa_s->wpa, elems.osen - 2,
  799. elems.osen_len + 2);
  800. } else
  801. wpa_sm_set_assoc_wpa_ie(wpa_s->wpa, NULL, 0);
  802. if (wpa_s->current_ssid && wpa_s->current_ssid->p2p_group)
  803. params.p2p = 1;
  804. if (wpa_s->parent->set_sta_uapsd)
  805. params.uapsd = wpa_s->parent->sta_uapsd;
  806. else
  807. params.uapsd = -1;
  808. if (wpa_drv_associate(wpa_s, &params) < 0) {
  809. wpa_msg(wpa_s, MSG_INFO, "SME: Association request to the "
  810. "driver failed");
  811. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  812. wpa_supplicant_set_state(wpa_s, WPA_DISCONNECTED);
  813. os_memset(wpa_s->pending_bssid, 0, ETH_ALEN);
  814. return;
  815. }
  816. eloop_register_timeout(SME_ASSOC_TIMEOUT, 0, sme_assoc_timer, wpa_s,
  817. NULL);
  818. }
  819. int sme_update_ft_ies(struct wpa_supplicant *wpa_s, const u8 *md,
  820. const u8 *ies, size_t ies_len)
  821. {
  822. if (md == NULL || ies == NULL) {
  823. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Remove mobility domain");
  824. os_free(wpa_s->sme.ft_ies);
  825. wpa_s->sme.ft_ies = NULL;
  826. wpa_s->sme.ft_ies_len = 0;
  827. wpa_s->sme.ft_used = 0;
  828. return 0;
  829. }
  830. os_memcpy(wpa_s->sme.mobility_domain, md, MOBILITY_DOMAIN_ID_LEN);
  831. wpa_hexdump(MSG_DEBUG, "SME: FT IEs", ies, ies_len);
  832. os_free(wpa_s->sme.ft_ies);
  833. wpa_s->sme.ft_ies = os_malloc(ies_len);
  834. if (wpa_s->sme.ft_ies == NULL)
  835. return -1;
  836. os_memcpy(wpa_s->sme.ft_ies, ies, ies_len);
  837. wpa_s->sme.ft_ies_len = ies_len;
  838. return 0;
  839. }
  840. static void sme_deauth(struct wpa_supplicant *wpa_s)
  841. {
  842. int bssid_changed;
  843. bssid_changed = !is_zero_ether_addr(wpa_s->bssid);
  844. if (wpa_drv_deauthenticate(wpa_s, wpa_s->pending_bssid,
  845. WLAN_REASON_DEAUTH_LEAVING) < 0) {
  846. wpa_msg(wpa_s, MSG_INFO, "SME: Deauth request to the driver "
  847. "failed");
  848. }
  849. wpa_s->sme.prev_bssid_set = 0;
  850. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  851. wpa_supplicant_set_state(wpa_s, WPA_DISCONNECTED);
  852. os_memset(wpa_s->bssid, 0, ETH_ALEN);
  853. os_memset(wpa_s->pending_bssid, 0, ETH_ALEN);
  854. if (bssid_changed)
  855. wpas_notify_bssid_changed(wpa_s);
  856. }
  857. void sme_event_assoc_reject(struct wpa_supplicant *wpa_s,
  858. union wpa_event_data *data)
  859. {
  860. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Association with " MACSTR " failed: "
  861. "status code %d", MAC2STR(wpa_s->pending_bssid),
  862. data->assoc_reject.status_code);
  863. eloop_cancel_timeout(sme_assoc_timer, wpa_s, NULL);
  864. #ifdef CONFIG_SAE
  865. if (wpa_s->sme.sae_pmksa_caching && wpa_s->current_ssid &&
  866. wpa_key_mgmt_sae(wpa_s->current_ssid->key_mgmt)) {
  867. wpa_dbg(wpa_s, MSG_DEBUG,
  868. "PMKSA caching attempt rejected - drop PMKSA cache entry and fall back to SAE authentication");
  869. wpa_sm_aborted_cached(wpa_s->wpa);
  870. wpa_sm_pmksa_cache_flush(wpa_s->wpa, wpa_s->current_ssid);
  871. if (wpa_s->current_bss) {
  872. struct wpa_bss *bss = wpa_s->current_bss;
  873. struct wpa_ssid *ssid = wpa_s->current_ssid;
  874. wpa_drv_deauthenticate(wpa_s, wpa_s->pending_bssid,
  875. WLAN_REASON_DEAUTH_LEAVING);
  876. wpas_connect_work_done(wpa_s);
  877. wpa_supplicant_mark_disassoc(wpa_s);
  878. wpa_supplicant_connect(wpa_s, bss, ssid);
  879. return;
  880. }
  881. }
  882. #endif /* CONFIG_SAE */
  883. /*
  884. * For now, unconditionally terminate the previous authentication. In
  885. * theory, this should not be needed, but mac80211 gets quite confused
  886. * if the authentication is left pending.. Some roaming cases might
  887. * benefit from using the previous authentication, so this could be
  888. * optimized in the future.
  889. */
  890. sme_deauth(wpa_s);
  891. }
  892. void sme_event_auth_timed_out(struct wpa_supplicant *wpa_s,
  893. union wpa_event_data *data)
  894. {
  895. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Authentication timed out");
  896. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  897. wpa_supplicant_mark_disassoc(wpa_s);
  898. }
  899. void sme_event_assoc_timed_out(struct wpa_supplicant *wpa_s,
  900. union wpa_event_data *data)
  901. {
  902. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Association timed out");
  903. wpas_connection_failed(wpa_s, wpa_s->pending_bssid);
  904. wpa_supplicant_mark_disassoc(wpa_s);
  905. }
  906. void sme_event_disassoc(struct wpa_supplicant *wpa_s,
  907. struct disassoc_info *info)
  908. {
  909. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Disassociation event received");
  910. if (wpa_s->sme.prev_bssid_set) {
  911. /*
  912. * cfg80211/mac80211 can get into somewhat confused state if
  913. * the AP only disassociates us and leaves us in authenticated
  914. * state. For now, force the state to be cleared to avoid
  915. * confusing errors if we try to associate with the AP again.
  916. */
  917. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Deauthenticate to clear "
  918. "driver state");
  919. wpa_drv_deauthenticate(wpa_s, wpa_s->sme.prev_bssid,
  920. WLAN_REASON_DEAUTH_LEAVING);
  921. }
  922. }
  923. static void sme_auth_timer(void *eloop_ctx, void *timeout_ctx)
  924. {
  925. struct wpa_supplicant *wpa_s = eloop_ctx;
  926. if (wpa_s->wpa_state == WPA_AUTHENTICATING) {
  927. wpa_msg(wpa_s, MSG_DEBUG, "SME: Authentication timeout");
  928. sme_deauth(wpa_s);
  929. }
  930. }
  931. static void sme_assoc_timer(void *eloop_ctx, void *timeout_ctx)
  932. {
  933. struct wpa_supplicant *wpa_s = eloop_ctx;
  934. if (wpa_s->wpa_state == WPA_ASSOCIATING) {
  935. wpa_msg(wpa_s, MSG_DEBUG, "SME: Association timeout");
  936. sme_deauth(wpa_s);
  937. }
  938. }
  939. void sme_state_changed(struct wpa_supplicant *wpa_s)
  940. {
  941. /* Make sure timers are cleaned up appropriately. */
  942. if (wpa_s->wpa_state != WPA_ASSOCIATING)
  943. eloop_cancel_timeout(sme_assoc_timer, wpa_s, NULL);
  944. if (wpa_s->wpa_state != WPA_AUTHENTICATING)
  945. eloop_cancel_timeout(sme_auth_timer, wpa_s, NULL);
  946. }
  947. void sme_disassoc_while_authenticating(struct wpa_supplicant *wpa_s,
  948. const u8 *prev_pending_bssid)
  949. {
  950. /*
  951. * mac80211-workaround to force deauth on failed auth cmd,
  952. * requires us to remain in authenticating state to allow the
  953. * second authentication attempt to be continued properly.
  954. */
  955. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Allow pending authentication "
  956. "to proceed after disconnection event");
  957. wpa_supplicant_set_state(wpa_s, WPA_AUTHENTICATING);
  958. os_memcpy(wpa_s->pending_bssid, prev_pending_bssid, ETH_ALEN);
  959. /*
  960. * Re-arm authentication timer in case auth fails for whatever reason.
  961. */
  962. eloop_cancel_timeout(sme_auth_timer, wpa_s, NULL);
  963. eloop_register_timeout(SME_AUTH_TIMEOUT, 0, sme_auth_timer, wpa_s,
  964. NULL);
  965. }
  966. void sme_clear_on_disassoc(struct wpa_supplicant *wpa_s)
  967. {
  968. wpa_s->sme.prev_bssid_set = 0;
  969. #ifdef CONFIG_SAE
  970. wpabuf_free(wpa_s->sme.sae_token);
  971. wpa_s->sme.sae_token = NULL;
  972. sae_clear_data(&wpa_s->sme.sae);
  973. #endif /* CONFIG_SAE */
  974. #ifdef CONFIG_IEEE80211R
  975. if (wpa_s->sme.ft_ies)
  976. sme_update_ft_ies(wpa_s, NULL, NULL, 0);
  977. #endif /* CONFIG_IEEE80211R */
  978. }
  979. void sme_deinit(struct wpa_supplicant *wpa_s)
  980. {
  981. os_free(wpa_s->sme.ft_ies);
  982. wpa_s->sme.ft_ies = NULL;
  983. wpa_s->sme.ft_ies_len = 0;
  984. #ifdef CONFIG_IEEE80211W
  985. sme_stop_sa_query(wpa_s);
  986. #endif /* CONFIG_IEEE80211W */
  987. sme_clear_on_disassoc(wpa_s);
  988. eloop_cancel_timeout(sme_assoc_timer, wpa_s, NULL);
  989. eloop_cancel_timeout(sme_auth_timer, wpa_s, NULL);
  990. eloop_cancel_timeout(sme_obss_scan_timeout, wpa_s, NULL);
  991. }
  992. static void sme_send_2040_bss_coex(struct wpa_supplicant *wpa_s,
  993. const u8 *chan_list, u8 num_channels,
  994. u8 num_intol)
  995. {
  996. struct ieee80211_2040_bss_coex_ie *bc_ie;
  997. struct ieee80211_2040_intol_chan_report *ic_report;
  998. struct wpabuf *buf;
  999. wpa_printf(MSG_DEBUG, "SME: Send 20/40 BSS Coexistence to " MACSTR
  1000. " (num_channels=%u num_intol=%u)",
  1001. MAC2STR(wpa_s->bssid), num_channels, num_intol);
  1002. wpa_hexdump(MSG_DEBUG, "SME: 20/40 BSS Intolerant Channels",
  1003. chan_list, num_channels);
  1004. buf = wpabuf_alloc(2 + /* action.category + action_code */
  1005. sizeof(struct ieee80211_2040_bss_coex_ie) +
  1006. sizeof(struct ieee80211_2040_intol_chan_report) +
  1007. num_channels);
  1008. if (buf == NULL)
  1009. return;
  1010. wpabuf_put_u8(buf, WLAN_ACTION_PUBLIC);
  1011. wpabuf_put_u8(buf, WLAN_PA_20_40_BSS_COEX);
  1012. bc_ie = wpabuf_put(buf, sizeof(*bc_ie));
  1013. bc_ie->element_id = WLAN_EID_20_40_BSS_COEXISTENCE;
  1014. bc_ie->length = 1;
  1015. if (num_intol)
  1016. bc_ie->coex_param |= WLAN_20_40_BSS_COEX_20MHZ_WIDTH_REQ;
  1017. if (num_channels > 0) {
  1018. ic_report = wpabuf_put(buf, sizeof(*ic_report));
  1019. ic_report->element_id = WLAN_EID_20_40_BSS_INTOLERANT;
  1020. ic_report->length = num_channels + 1;
  1021. ic_report->op_class = 0;
  1022. os_memcpy(wpabuf_put(buf, num_channels), chan_list,
  1023. num_channels);
  1024. }
  1025. if (wpa_drv_send_action(wpa_s, wpa_s->assoc_freq, 0, wpa_s->bssid,
  1026. wpa_s->own_addr, wpa_s->bssid,
  1027. wpabuf_head(buf), wpabuf_len(buf), 0) < 0) {
  1028. wpa_msg(wpa_s, MSG_INFO,
  1029. "SME: Failed to send 20/40 BSS Coexistence frame");
  1030. }
  1031. wpabuf_free(buf);
  1032. }
  1033. int sme_proc_obss_scan(struct wpa_supplicant *wpa_s)
  1034. {
  1035. struct wpa_bss *bss;
  1036. const u8 *ie;
  1037. u16 ht_cap;
  1038. u8 chan_list[P2P_MAX_CHANNELS], channel;
  1039. u8 num_channels = 0, num_intol = 0, i;
  1040. if (!wpa_s->sme.sched_obss_scan)
  1041. return 0;
  1042. wpa_s->sme.sched_obss_scan = 0;
  1043. if (!wpa_s->current_bss || wpa_s->wpa_state != WPA_COMPLETED)
  1044. return 1;
  1045. /*
  1046. * Check whether AP uses regulatory triplet or channel triplet in
  1047. * country info. Right now the operating class of the BSS channel
  1048. * width trigger event is "unknown" (IEEE Std 802.11-2012 10.15.12),
  1049. * based on the assumption that operating class triplet is not used in
  1050. * beacon frame. If the First Channel Number/Operating Extension
  1051. * Identifier octet has a positive integer value of 201 or greater,
  1052. * then its operating class triplet.
  1053. *
  1054. * TODO: If Supported Operating Classes element is present in beacon
  1055. * frame, have to lookup operating class in Annex E and fill them in
  1056. * 2040 coex frame.
  1057. */
  1058. ie = wpa_bss_get_ie(wpa_s->current_bss, WLAN_EID_COUNTRY);
  1059. if (ie && (ie[1] >= 6) && (ie[5] >= 201))
  1060. return 1;
  1061. os_memset(chan_list, 0, sizeof(chan_list));
  1062. dl_list_for_each(bss, &wpa_s->bss, struct wpa_bss, list) {
  1063. /* Skip other band bss */
  1064. enum hostapd_hw_mode mode;
  1065. mode = ieee80211_freq_to_chan(bss->freq, &channel);
  1066. if (mode != HOSTAPD_MODE_IEEE80211G &&
  1067. mode != HOSTAPD_MODE_IEEE80211B)
  1068. continue;
  1069. ie = wpa_bss_get_ie(bss, WLAN_EID_HT_CAP);
  1070. ht_cap = (ie && (ie[1] == 26)) ? WPA_GET_LE16(ie + 2) : 0;
  1071. wpa_printf(MSG_DEBUG, "SME OBSS scan BSS " MACSTR
  1072. " freq=%u chan=%u ht_cap=0x%x",
  1073. MAC2STR(bss->bssid), bss->freq, channel, ht_cap);
  1074. if (!ht_cap || (ht_cap & HT_CAP_INFO_40MHZ_INTOLERANT)) {
  1075. if (ht_cap & HT_CAP_INFO_40MHZ_INTOLERANT)
  1076. num_intol++;
  1077. /* Check whether the channel is already considered */
  1078. for (i = 0; i < num_channels; i++) {
  1079. if (channel == chan_list[i])
  1080. break;
  1081. }
  1082. if (i != num_channels)
  1083. continue;
  1084. chan_list[num_channels++] = channel;
  1085. }
  1086. }
  1087. sme_send_2040_bss_coex(wpa_s, chan_list, num_channels, num_intol);
  1088. return 1;
  1089. }
  1090. static struct hostapd_hw_modes * get_mode(struct hostapd_hw_modes *modes,
  1091. u16 num_modes,
  1092. enum hostapd_hw_mode mode)
  1093. {
  1094. u16 i;
  1095. for (i = 0; i < num_modes; i++) {
  1096. if (modes[i].mode == mode)
  1097. return &modes[i];
  1098. }
  1099. return NULL;
  1100. }
  1101. static void wpa_obss_scan_freqs_list(struct wpa_supplicant *wpa_s,
  1102. struct wpa_driver_scan_params *params)
  1103. {
  1104. /* Include only affected channels */
  1105. struct hostapd_hw_modes *mode;
  1106. int count, i;
  1107. int start, end;
  1108. mode = get_mode(wpa_s->hw.modes, wpa_s->hw.num_modes,
  1109. HOSTAPD_MODE_IEEE80211G);
  1110. if (mode == NULL) {
  1111. /* No channels supported in this band - use empty list */
  1112. params->freqs = os_zalloc(sizeof(int));
  1113. return;
  1114. }
  1115. if (wpa_s->sme.ht_sec_chan == HT_SEC_CHAN_UNKNOWN &&
  1116. wpa_s->current_bss) {
  1117. const u8 *ie;
  1118. ie = wpa_bss_get_ie(wpa_s->current_bss, WLAN_EID_HT_OPERATION);
  1119. if (ie && ie[1] >= 2) {
  1120. u8 o;
  1121. o = ie[3] & HT_INFO_HT_PARAM_SECONDARY_CHNL_OFF_MASK;
  1122. if (o == HT_INFO_HT_PARAM_SECONDARY_CHNL_ABOVE)
  1123. wpa_s->sme.ht_sec_chan = HT_SEC_CHAN_ABOVE;
  1124. else if (o == HT_INFO_HT_PARAM_SECONDARY_CHNL_BELOW)
  1125. wpa_s->sme.ht_sec_chan = HT_SEC_CHAN_BELOW;
  1126. }
  1127. }
  1128. start = wpa_s->assoc_freq - 10;
  1129. end = wpa_s->assoc_freq + 10;
  1130. switch (wpa_s->sme.ht_sec_chan) {
  1131. case HT_SEC_CHAN_UNKNOWN:
  1132. /* HT40+ possible on channels 1..9 */
  1133. if (wpa_s->assoc_freq <= 2452)
  1134. start -= 20;
  1135. /* HT40- possible on channels 5-13 */
  1136. if (wpa_s->assoc_freq >= 2432)
  1137. end += 20;
  1138. break;
  1139. case HT_SEC_CHAN_ABOVE:
  1140. end += 20;
  1141. break;
  1142. case HT_SEC_CHAN_BELOW:
  1143. start -= 20;
  1144. break;
  1145. }
  1146. wpa_printf(MSG_DEBUG,
  1147. "OBSS: assoc_freq %d possible affected range %d-%d",
  1148. wpa_s->assoc_freq, start, end);
  1149. params->freqs = os_calloc(mode->num_channels + 1, sizeof(int));
  1150. if (params->freqs == NULL)
  1151. return;
  1152. for (count = 0, i = 0; i < mode->num_channels; i++) {
  1153. int freq;
  1154. if (mode->channels[i].flag & HOSTAPD_CHAN_DISABLED)
  1155. continue;
  1156. freq = mode->channels[i].freq;
  1157. if (freq - 10 >= end || freq + 10 <= start)
  1158. continue; /* not affected */
  1159. params->freqs[count++] = freq;
  1160. }
  1161. }
  1162. static void sme_obss_scan_timeout(void *eloop_ctx, void *timeout_ctx)
  1163. {
  1164. struct wpa_supplicant *wpa_s = eloop_ctx;
  1165. struct wpa_driver_scan_params params;
  1166. if (!wpa_s->current_bss) {
  1167. wpa_printf(MSG_DEBUG, "SME OBSS: Ignore scan request");
  1168. return;
  1169. }
  1170. os_memset(&params, 0, sizeof(params));
  1171. wpa_obss_scan_freqs_list(wpa_s, &params);
  1172. params.low_priority = 1;
  1173. wpa_printf(MSG_DEBUG, "SME OBSS: Request an OBSS scan");
  1174. if (wpa_supplicant_trigger_scan(wpa_s, &params))
  1175. wpa_printf(MSG_DEBUG, "SME OBSS: Failed to trigger scan");
  1176. else
  1177. wpa_s->sme.sched_obss_scan = 1;
  1178. os_free(params.freqs);
  1179. eloop_register_timeout(wpa_s->sme.obss_scan_int, 0,
  1180. sme_obss_scan_timeout, wpa_s, NULL);
  1181. }
  1182. void sme_sched_obss_scan(struct wpa_supplicant *wpa_s, int enable)
  1183. {
  1184. const u8 *ie;
  1185. struct wpa_bss *bss = wpa_s->current_bss;
  1186. struct wpa_ssid *ssid = wpa_s->current_ssid;
  1187. struct hostapd_hw_modes *hw_mode = NULL;
  1188. int i;
  1189. eloop_cancel_timeout(sme_obss_scan_timeout, wpa_s, NULL);
  1190. wpa_s->sme.sched_obss_scan = 0;
  1191. wpa_s->sme.ht_sec_chan = HT_SEC_CHAN_UNKNOWN;
  1192. if (!enable)
  1193. return;
  1194. /*
  1195. * Schedule OBSS scan if driver is using station SME in wpa_supplicant
  1196. * or it expects OBSS scan to be performed by wpa_supplicant.
  1197. */
  1198. if (!((wpa_s->drv_flags & WPA_DRIVER_FLAGS_SME) ||
  1199. (wpa_s->drv_flags & WPA_DRIVER_FLAGS_OBSS_SCAN)) ||
  1200. ssid == NULL || ssid->mode != IEEE80211_MODE_INFRA)
  1201. return;
  1202. if (!wpa_s->hw.modes)
  1203. return;
  1204. /* only HT caps in 11g mode are relevant */
  1205. for (i = 0; i < wpa_s->hw.num_modes; i++) {
  1206. hw_mode = &wpa_s->hw.modes[i];
  1207. if (hw_mode->mode == HOSTAPD_MODE_IEEE80211G)
  1208. break;
  1209. }
  1210. /* Driver does not support HT40 for 11g or doesn't have 11g. */
  1211. if (i == wpa_s->hw.num_modes || !hw_mode ||
  1212. !(hw_mode->ht_capab & HT_CAP_INFO_SUPP_CHANNEL_WIDTH_SET))
  1213. return;
  1214. if (bss == NULL || bss->freq < 2400 || bss->freq > 2500)
  1215. return; /* Not associated on 2.4 GHz band */
  1216. /* Check whether AP supports HT40 */
  1217. ie = wpa_bss_get_ie(wpa_s->current_bss, WLAN_EID_HT_CAP);
  1218. if (!ie || ie[1] < 2 ||
  1219. !(WPA_GET_LE16(ie + 2) & HT_CAP_INFO_SUPP_CHANNEL_WIDTH_SET))
  1220. return; /* AP does not support HT40 */
  1221. ie = wpa_bss_get_ie(wpa_s->current_bss,
  1222. WLAN_EID_OVERLAPPING_BSS_SCAN_PARAMS);
  1223. if (!ie || ie[1] < 14)
  1224. return; /* AP does not request OBSS scans */
  1225. wpa_s->sme.obss_scan_int = WPA_GET_LE16(ie + 6);
  1226. if (wpa_s->sme.obss_scan_int < 10) {
  1227. wpa_printf(MSG_DEBUG, "SME: Invalid OBSS Scan Interval %u "
  1228. "replaced with the minimum 10 sec",
  1229. wpa_s->sme.obss_scan_int);
  1230. wpa_s->sme.obss_scan_int = 10;
  1231. }
  1232. wpa_printf(MSG_DEBUG, "SME: OBSS Scan Interval %u sec",
  1233. wpa_s->sme.obss_scan_int);
  1234. eloop_register_timeout(wpa_s->sme.obss_scan_int, 0,
  1235. sme_obss_scan_timeout, wpa_s, NULL);
  1236. }
  1237. #ifdef CONFIG_IEEE80211W
  1238. static const unsigned int sa_query_max_timeout = 1000;
  1239. static const unsigned int sa_query_retry_timeout = 201;
  1240. static int sme_check_sa_query_timeout(struct wpa_supplicant *wpa_s)
  1241. {
  1242. u32 tu;
  1243. struct os_reltime now, passed;
  1244. os_get_reltime(&now);
  1245. os_reltime_sub(&now, &wpa_s->sme.sa_query_start, &passed);
  1246. tu = (passed.sec * 1000000 + passed.usec) / 1024;
  1247. if (sa_query_max_timeout < tu) {
  1248. wpa_dbg(wpa_s, MSG_DEBUG, "SME: SA Query timed out");
  1249. sme_stop_sa_query(wpa_s);
  1250. wpa_supplicant_deauthenticate(
  1251. wpa_s, WLAN_REASON_PREV_AUTH_NOT_VALID);
  1252. return 1;
  1253. }
  1254. return 0;
  1255. }
  1256. static void sme_send_sa_query_req(struct wpa_supplicant *wpa_s,
  1257. const u8 *trans_id)
  1258. {
  1259. u8 req[2 + WLAN_SA_QUERY_TR_ID_LEN];
  1260. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Sending SA Query Request to "
  1261. MACSTR, MAC2STR(wpa_s->bssid));
  1262. wpa_hexdump(MSG_DEBUG, "SME: SA Query Transaction ID",
  1263. trans_id, WLAN_SA_QUERY_TR_ID_LEN);
  1264. req[0] = WLAN_ACTION_SA_QUERY;
  1265. req[1] = WLAN_SA_QUERY_REQUEST;
  1266. os_memcpy(req + 2, trans_id, WLAN_SA_QUERY_TR_ID_LEN);
  1267. if (wpa_drv_send_action(wpa_s, wpa_s->assoc_freq, 0, wpa_s->bssid,
  1268. wpa_s->own_addr, wpa_s->bssid,
  1269. req, sizeof(req), 0) < 0)
  1270. wpa_msg(wpa_s, MSG_INFO, "SME: Failed to send SA Query "
  1271. "Request");
  1272. }
  1273. static void sme_sa_query_timer(void *eloop_ctx, void *timeout_ctx)
  1274. {
  1275. struct wpa_supplicant *wpa_s = eloop_ctx;
  1276. unsigned int timeout, sec, usec;
  1277. u8 *trans_id, *nbuf;
  1278. if (wpa_s->sme.sa_query_count > 0 &&
  1279. sme_check_sa_query_timeout(wpa_s))
  1280. return;
  1281. nbuf = os_realloc_array(wpa_s->sme.sa_query_trans_id,
  1282. wpa_s->sme.sa_query_count + 1,
  1283. WLAN_SA_QUERY_TR_ID_LEN);
  1284. if (nbuf == NULL)
  1285. return;
  1286. if (wpa_s->sme.sa_query_count == 0) {
  1287. /* Starting a new SA Query procedure */
  1288. os_get_reltime(&wpa_s->sme.sa_query_start);
  1289. }
  1290. trans_id = nbuf + wpa_s->sme.sa_query_count * WLAN_SA_QUERY_TR_ID_LEN;
  1291. wpa_s->sme.sa_query_trans_id = nbuf;
  1292. wpa_s->sme.sa_query_count++;
  1293. if (os_get_random(trans_id, WLAN_SA_QUERY_TR_ID_LEN) < 0) {
  1294. wpa_printf(MSG_DEBUG, "Could not generate SA Query ID");
  1295. return;
  1296. }
  1297. timeout = sa_query_retry_timeout;
  1298. sec = ((timeout / 1000) * 1024) / 1000;
  1299. usec = (timeout % 1000) * 1024;
  1300. eloop_register_timeout(sec, usec, sme_sa_query_timer, wpa_s, NULL);
  1301. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Association SA Query attempt %d",
  1302. wpa_s->sme.sa_query_count);
  1303. sme_send_sa_query_req(wpa_s, trans_id);
  1304. }
  1305. static void sme_start_sa_query(struct wpa_supplicant *wpa_s)
  1306. {
  1307. sme_sa_query_timer(wpa_s, NULL);
  1308. }
  1309. static void sme_stop_sa_query(struct wpa_supplicant *wpa_s)
  1310. {
  1311. eloop_cancel_timeout(sme_sa_query_timer, wpa_s, NULL);
  1312. os_free(wpa_s->sme.sa_query_trans_id);
  1313. wpa_s->sme.sa_query_trans_id = NULL;
  1314. wpa_s->sme.sa_query_count = 0;
  1315. }
  1316. void sme_event_unprot_disconnect(struct wpa_supplicant *wpa_s, const u8 *sa,
  1317. const u8 *da, u16 reason_code)
  1318. {
  1319. struct wpa_ssid *ssid;
  1320. struct os_reltime now;
  1321. if (wpa_s->wpa_state != WPA_COMPLETED)
  1322. return;
  1323. ssid = wpa_s->current_ssid;
  1324. if (wpas_get_ssid_pmf(wpa_s, ssid) == NO_MGMT_FRAME_PROTECTION)
  1325. return;
  1326. if (os_memcmp(sa, wpa_s->bssid, ETH_ALEN) != 0)
  1327. return;
  1328. if (reason_code != WLAN_REASON_CLASS2_FRAME_FROM_NONAUTH_STA &&
  1329. reason_code != WLAN_REASON_CLASS3_FRAME_FROM_NONASSOC_STA)
  1330. return;
  1331. if (wpa_s->sme.sa_query_count > 0)
  1332. return;
  1333. os_get_reltime(&now);
  1334. if (wpa_s->sme.last_unprot_disconnect.sec &&
  1335. !os_reltime_expired(&now, &wpa_s->sme.last_unprot_disconnect, 10))
  1336. return; /* limit SA Query procedure frequency */
  1337. wpa_s->sme.last_unprot_disconnect = now;
  1338. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Unprotected disconnect dropped - "
  1339. "possible AP/STA state mismatch - trigger SA Query");
  1340. sme_start_sa_query(wpa_s);
  1341. }
  1342. void sme_sa_query_rx(struct wpa_supplicant *wpa_s, const u8 *sa,
  1343. const u8 *data, size_t len)
  1344. {
  1345. int i;
  1346. if (wpa_s->sme.sa_query_trans_id == NULL ||
  1347. len < 1 + WLAN_SA_QUERY_TR_ID_LEN ||
  1348. data[0] != WLAN_SA_QUERY_RESPONSE)
  1349. return;
  1350. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Received SA Query response from "
  1351. MACSTR " (trans_id %02x%02x)", MAC2STR(sa), data[1], data[2]);
  1352. if (os_memcmp(sa, wpa_s->bssid, ETH_ALEN) != 0)
  1353. return;
  1354. for (i = 0; i < wpa_s->sme.sa_query_count; i++) {
  1355. if (os_memcmp(wpa_s->sme.sa_query_trans_id +
  1356. i * WLAN_SA_QUERY_TR_ID_LEN,
  1357. data + 1, WLAN_SA_QUERY_TR_ID_LEN) == 0)
  1358. break;
  1359. }
  1360. if (i >= wpa_s->sme.sa_query_count) {
  1361. wpa_dbg(wpa_s, MSG_DEBUG, "SME: No matching SA Query "
  1362. "transaction identifier found");
  1363. return;
  1364. }
  1365. wpa_dbg(wpa_s, MSG_DEBUG, "SME: Reply to pending SA Query received "
  1366. "from " MACSTR, MAC2STR(sa));
  1367. sme_stop_sa_query(wpa_s);
  1368. }
  1369. #endif /* CONFIG_IEEE80211W */