wnm_sta.c 26 KB

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  1. /*
  2. * wpa_supplicant - WNM
  3. * Copyright (c) 2011-2013, Qualcomm Atheros, Inc.
  4. *
  5. * This software may be distributed under the terms of the BSD license.
  6. * See README for more details.
  7. */
  8. #include "utils/includes.h"
  9. #include "utils/common.h"
  10. #include "common/ieee802_11_defs.h"
  11. #include "common/wpa_ctrl.h"
  12. #include "rsn_supp/wpa.h"
  13. #include "wpa_supplicant_i.h"
  14. #include "driver_i.h"
  15. #include "scan.h"
  16. #include "ctrl_iface.h"
  17. #include "bss.h"
  18. #include "wnm_sta.h"
  19. #include "hs20_supplicant.h"
  20. #define MAX_TFS_IE_LEN 1024
  21. #define WNM_MAX_NEIGHBOR_REPORT 10
  22. /* get the TFS IE from driver */
  23. static int ieee80211_11_get_tfs_ie(struct wpa_supplicant *wpa_s, u8 *buf,
  24. u16 *buf_len, enum wnm_oper oper)
  25. {
  26. wpa_printf(MSG_DEBUG, "%s: TFS get operation %d", __func__, oper);
  27. return wpa_drv_wnm_oper(wpa_s, oper, wpa_s->bssid, buf, buf_len);
  28. }
  29. /* set the TFS IE to driver */
  30. static int ieee80211_11_set_tfs_ie(struct wpa_supplicant *wpa_s,
  31. const u8 *addr, u8 *buf, u16 *buf_len,
  32. enum wnm_oper oper)
  33. {
  34. wpa_printf(MSG_DEBUG, "%s: TFS set operation %d", __func__, oper);
  35. return wpa_drv_wnm_oper(wpa_s, oper, addr, buf, buf_len);
  36. }
  37. /* MLME-SLEEPMODE.request */
  38. int ieee802_11_send_wnmsleep_req(struct wpa_supplicant *wpa_s,
  39. u8 action, u16 intval, struct wpabuf *tfs_req)
  40. {
  41. struct ieee80211_mgmt *mgmt;
  42. int res;
  43. size_t len;
  44. struct wnm_sleep_element *wnmsleep_ie;
  45. u8 *wnmtfs_ie;
  46. u8 wnmsleep_ie_len;
  47. u16 wnmtfs_ie_len; /* possibly multiple IE(s) */
  48. enum wnm_oper tfs_oper = action == 0 ? WNM_SLEEP_TFS_REQ_IE_ADD :
  49. WNM_SLEEP_TFS_REQ_IE_NONE;
  50. wpa_printf(MSG_DEBUG, "WNM: Request to send WNM-Sleep Mode Request "
  51. "action=%s to " MACSTR,
  52. action == 0 ? "enter" : "exit",
  53. MAC2STR(wpa_s->bssid));
  54. /* WNM-Sleep Mode IE */
  55. wnmsleep_ie_len = sizeof(struct wnm_sleep_element);
  56. wnmsleep_ie = os_zalloc(sizeof(struct wnm_sleep_element));
  57. if (wnmsleep_ie == NULL)
  58. return -1;
  59. wnmsleep_ie->eid = WLAN_EID_WNMSLEEP;
  60. wnmsleep_ie->len = wnmsleep_ie_len - 2;
  61. wnmsleep_ie->action_type = action;
  62. wnmsleep_ie->status = WNM_STATUS_SLEEP_ACCEPT;
  63. wnmsleep_ie->intval = host_to_le16(intval);
  64. wpa_hexdump(MSG_DEBUG, "WNM: WNM-Sleep Mode element",
  65. (u8 *) wnmsleep_ie, wnmsleep_ie_len);
  66. /* TFS IE(s) */
  67. if (tfs_req) {
  68. wnmtfs_ie_len = wpabuf_len(tfs_req);
  69. wnmtfs_ie = os_malloc(wnmtfs_ie_len);
  70. if (wnmtfs_ie == NULL) {
  71. os_free(wnmsleep_ie);
  72. return -1;
  73. }
  74. os_memcpy(wnmtfs_ie, wpabuf_head(tfs_req), wnmtfs_ie_len);
  75. } else {
  76. wnmtfs_ie = os_zalloc(MAX_TFS_IE_LEN);
  77. if (wnmtfs_ie == NULL) {
  78. os_free(wnmsleep_ie);
  79. return -1;
  80. }
  81. if (ieee80211_11_get_tfs_ie(wpa_s, wnmtfs_ie, &wnmtfs_ie_len,
  82. tfs_oper)) {
  83. wnmtfs_ie_len = 0;
  84. os_free(wnmtfs_ie);
  85. wnmtfs_ie = NULL;
  86. }
  87. }
  88. wpa_hexdump(MSG_DEBUG, "WNM: TFS Request element",
  89. (u8 *) wnmtfs_ie, wnmtfs_ie_len);
  90. mgmt = os_zalloc(sizeof(*mgmt) + wnmsleep_ie_len + wnmtfs_ie_len);
  91. if (mgmt == NULL) {
  92. wpa_printf(MSG_DEBUG, "MLME: Failed to allocate buffer for "
  93. "WNM-Sleep Request action frame");
  94. os_free(wnmsleep_ie);
  95. os_free(wnmtfs_ie);
  96. return -1;
  97. }
  98. os_memcpy(mgmt->da, wpa_s->bssid, ETH_ALEN);
  99. os_memcpy(mgmt->sa, wpa_s->own_addr, ETH_ALEN);
  100. os_memcpy(mgmt->bssid, wpa_s->bssid, ETH_ALEN);
  101. mgmt->frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  102. WLAN_FC_STYPE_ACTION);
  103. mgmt->u.action.category = WLAN_ACTION_WNM;
  104. mgmt->u.action.u.wnm_sleep_req.action = WNM_SLEEP_MODE_REQ;
  105. mgmt->u.action.u.wnm_sleep_req.dialogtoken = 1;
  106. os_memcpy(mgmt->u.action.u.wnm_sleep_req.variable, wnmsleep_ie,
  107. wnmsleep_ie_len);
  108. /* copy TFS IE here */
  109. if (wnmtfs_ie_len > 0) {
  110. os_memcpy(mgmt->u.action.u.wnm_sleep_req.variable +
  111. wnmsleep_ie_len, wnmtfs_ie, wnmtfs_ie_len);
  112. }
  113. len = 1 + sizeof(mgmt->u.action.u.wnm_sleep_req) + wnmsleep_ie_len +
  114. wnmtfs_ie_len;
  115. res = wpa_drv_send_action(wpa_s, wpa_s->assoc_freq, 0, wpa_s->bssid,
  116. wpa_s->own_addr, wpa_s->bssid,
  117. &mgmt->u.action.category, len, 0);
  118. if (res < 0)
  119. wpa_printf(MSG_DEBUG, "Failed to send WNM-Sleep Request "
  120. "(action=%d, intval=%d)", action, intval);
  121. os_free(wnmsleep_ie);
  122. os_free(wnmtfs_ie);
  123. os_free(mgmt);
  124. return res;
  125. }
  126. static void wnm_sleep_mode_enter_success(struct wpa_supplicant *wpa_s,
  127. u8 *tfsresp_ie_start,
  128. u8 *tfsresp_ie_end)
  129. {
  130. wpa_drv_wnm_oper(wpa_s, WNM_SLEEP_ENTER_CONFIRM,
  131. wpa_s->bssid, NULL, NULL);
  132. /* remove GTK/IGTK ?? */
  133. /* set the TFS Resp IE(s) */
  134. if (tfsresp_ie_start && tfsresp_ie_end &&
  135. tfsresp_ie_end - tfsresp_ie_start >= 0) {
  136. u16 tfsresp_ie_len;
  137. tfsresp_ie_len = (tfsresp_ie_end + tfsresp_ie_end[1] + 2) -
  138. tfsresp_ie_start;
  139. wpa_printf(MSG_DEBUG, "TFS Resp IE(s) found");
  140. /* pass the TFS Resp IE(s) to driver for processing */
  141. if (ieee80211_11_set_tfs_ie(wpa_s, wpa_s->bssid,
  142. tfsresp_ie_start,
  143. &tfsresp_ie_len,
  144. WNM_SLEEP_TFS_RESP_IE_SET))
  145. wpa_printf(MSG_DEBUG, "WNM: Fail to set TFS Resp IE");
  146. }
  147. }
  148. static void wnm_sleep_mode_exit_success(struct wpa_supplicant *wpa_s,
  149. const u8 *frm, u16 key_len_total)
  150. {
  151. u8 *ptr, *end;
  152. u8 gtk_len;
  153. wpa_drv_wnm_oper(wpa_s, WNM_SLEEP_EXIT_CONFIRM, wpa_s->bssid,
  154. NULL, NULL);
  155. /* Install GTK/IGTK */
  156. /* point to key data field */
  157. ptr = (u8 *) frm + 1 + 2;
  158. end = ptr + key_len_total;
  159. wpa_hexdump_key(MSG_DEBUG, "WNM: Key Data", ptr, key_len_total);
  160. while (ptr + 1 < end) {
  161. if (ptr + 2 + ptr[1] > end) {
  162. wpa_printf(MSG_DEBUG, "WNM: Invalid Key Data element "
  163. "length");
  164. if (end > ptr) {
  165. wpa_hexdump(MSG_DEBUG, "WNM: Remaining data",
  166. ptr, end - ptr);
  167. }
  168. break;
  169. }
  170. if (*ptr == WNM_SLEEP_SUBELEM_GTK) {
  171. if (ptr[1] < 11 + 5) {
  172. wpa_printf(MSG_DEBUG, "WNM: Too short GTK "
  173. "subelem");
  174. break;
  175. }
  176. gtk_len = *(ptr + 4);
  177. if (ptr[1] < 11 + gtk_len ||
  178. gtk_len < 5 || gtk_len > 32) {
  179. wpa_printf(MSG_DEBUG, "WNM: Invalid GTK "
  180. "subelem");
  181. break;
  182. }
  183. wpa_wnmsleep_install_key(
  184. wpa_s->wpa,
  185. WNM_SLEEP_SUBELEM_GTK,
  186. ptr);
  187. ptr += 13 + gtk_len;
  188. #ifdef CONFIG_IEEE80211W
  189. } else if (*ptr == WNM_SLEEP_SUBELEM_IGTK) {
  190. if (ptr[1] < 2 + 6 + WPA_IGTK_LEN) {
  191. wpa_printf(MSG_DEBUG, "WNM: Too short IGTK "
  192. "subelem");
  193. break;
  194. }
  195. wpa_wnmsleep_install_key(wpa_s->wpa,
  196. WNM_SLEEP_SUBELEM_IGTK, ptr);
  197. ptr += 10 + WPA_IGTK_LEN;
  198. #endif /* CONFIG_IEEE80211W */
  199. } else
  200. break; /* skip the loop */
  201. }
  202. }
  203. static void ieee802_11_rx_wnmsleep_resp(struct wpa_supplicant *wpa_s,
  204. const u8 *frm, int len)
  205. {
  206. /*
  207. * Action [1] | Dialog Token [1] | Key Data Len [2] | Key Data |
  208. * WNM-Sleep Mode IE | TFS Response IE
  209. */
  210. u8 *pos = (u8 *) frm; /* point to payload after the action field */
  211. u16 key_len_total;
  212. struct wnm_sleep_element *wnmsleep_ie = NULL;
  213. /* multiple TFS Resp IE (assuming consecutive) */
  214. u8 *tfsresp_ie_start = NULL;
  215. u8 *tfsresp_ie_end = NULL;
  216. if (len < 3)
  217. return;
  218. key_len_total = WPA_GET_LE16(frm + 1);
  219. wpa_printf(MSG_DEBUG, "WNM-Sleep Mode Response token=%u key_len_total=%d",
  220. frm[0], key_len_total);
  221. pos += 3 + key_len_total;
  222. if (pos > frm + len) {
  223. wpa_printf(MSG_INFO, "WNM: Too short frame for Key Data field");
  224. return;
  225. }
  226. while (pos - frm < len) {
  227. u8 ie_len = *(pos + 1);
  228. if (pos + 2 + ie_len > frm + len) {
  229. wpa_printf(MSG_INFO, "WNM: Invalid IE len %u", ie_len);
  230. break;
  231. }
  232. wpa_hexdump(MSG_DEBUG, "WNM: Element", pos, 2 + ie_len);
  233. if (*pos == WLAN_EID_WNMSLEEP)
  234. wnmsleep_ie = (struct wnm_sleep_element *) pos;
  235. else if (*pos == WLAN_EID_TFS_RESP) {
  236. if (!tfsresp_ie_start)
  237. tfsresp_ie_start = pos;
  238. tfsresp_ie_end = pos;
  239. } else
  240. wpa_printf(MSG_DEBUG, "EID %d not recognized", *pos);
  241. pos += ie_len + 2;
  242. }
  243. if (!wnmsleep_ie) {
  244. wpa_printf(MSG_DEBUG, "No WNM-Sleep IE found");
  245. return;
  246. }
  247. if (wnmsleep_ie->status == WNM_STATUS_SLEEP_ACCEPT ||
  248. wnmsleep_ie->status == WNM_STATUS_SLEEP_EXIT_ACCEPT_GTK_UPDATE) {
  249. wpa_printf(MSG_DEBUG, "Successfully recv WNM-Sleep Response "
  250. "frame (action=%d, intval=%d)",
  251. wnmsleep_ie->action_type, wnmsleep_ie->intval);
  252. if (wnmsleep_ie->action_type == WNM_SLEEP_MODE_ENTER) {
  253. wnm_sleep_mode_enter_success(wpa_s, tfsresp_ie_start,
  254. tfsresp_ie_end);
  255. } else if (wnmsleep_ie->action_type == WNM_SLEEP_MODE_EXIT) {
  256. wnm_sleep_mode_exit_success(wpa_s, frm, key_len_total);
  257. }
  258. } else {
  259. wpa_printf(MSG_DEBUG, "Reject recv WNM-Sleep Response frame "
  260. "(action=%d, intval=%d)",
  261. wnmsleep_ie->action_type, wnmsleep_ie->intval);
  262. if (wnmsleep_ie->action_type == WNM_SLEEP_MODE_ENTER)
  263. wpa_drv_wnm_oper(wpa_s, WNM_SLEEP_ENTER_FAIL,
  264. wpa_s->bssid, NULL, NULL);
  265. else if (wnmsleep_ie->action_type == WNM_SLEEP_MODE_EXIT)
  266. wpa_drv_wnm_oper(wpa_s, WNM_SLEEP_EXIT_FAIL,
  267. wpa_s->bssid, NULL, NULL);
  268. }
  269. }
  270. void wnm_deallocate_memory(struct wpa_supplicant *wpa_s)
  271. {
  272. int i;
  273. for (i = 0; i < wpa_s->wnm_num_neighbor_report; i++) {
  274. os_free(wpa_s->wnm_neighbor_report_elements[i].tsf_info);
  275. os_free(wpa_s->wnm_neighbor_report_elements[i].con_coun_str);
  276. os_free(wpa_s->wnm_neighbor_report_elements[i].bss_tran_can);
  277. os_free(wpa_s->wnm_neighbor_report_elements[i].bss_term_dur);
  278. os_free(wpa_s->wnm_neighbor_report_elements[i].bearing);
  279. os_free(wpa_s->wnm_neighbor_report_elements[i].meas_pilot);
  280. os_free(wpa_s->wnm_neighbor_report_elements[i].rrm_cap);
  281. os_free(wpa_s->wnm_neighbor_report_elements[i].mul_bssid);
  282. }
  283. wpa_s->wnm_num_neighbor_report = 0;
  284. os_free(wpa_s->wnm_neighbor_report_elements);
  285. wpa_s->wnm_neighbor_report_elements = NULL;
  286. }
  287. static void wnm_parse_neighbor_report_elem(struct neighbor_report *rep,
  288. u8 id, u8 elen, const u8 *pos)
  289. {
  290. switch (id) {
  291. case WNM_NEIGHBOR_TSF:
  292. if (elen < 2 + 2) {
  293. wpa_printf(MSG_DEBUG, "WNM: Too short TSF");
  294. break;
  295. }
  296. os_free(rep->tsf_info);
  297. rep->tsf_info = os_zalloc(sizeof(struct tsf_info));
  298. if (rep->tsf_info == NULL)
  299. break;
  300. os_memcpy(rep->tsf_info->tsf_offset, pos, 2);
  301. os_memcpy(rep->tsf_info->beacon_interval, pos + 2, 2);
  302. break;
  303. case WNM_NEIGHBOR_CONDENSED_COUNTRY_STRING:
  304. if (elen < 2) {
  305. wpa_printf(MSG_DEBUG, "WNM: Too short condensed "
  306. "country string");
  307. break;
  308. }
  309. os_free(rep->con_coun_str);
  310. rep->con_coun_str =
  311. os_zalloc(sizeof(struct condensed_country_string));
  312. if (rep->con_coun_str == NULL)
  313. break;
  314. os_memcpy(rep->con_coun_str->country_string, pos, 2);
  315. break;
  316. case WNM_NEIGHBOR_BSS_TRANSITION_CANDIDATE:
  317. if (elen < 1) {
  318. wpa_printf(MSG_DEBUG, "WNM: Too short BSS transition "
  319. "candidate");
  320. break;
  321. }
  322. os_free(rep->bss_tran_can);
  323. rep->bss_tran_can =
  324. os_zalloc(sizeof(struct bss_transition_candidate));
  325. if (rep->bss_tran_can == NULL)
  326. break;
  327. rep->bss_tran_can->preference = pos[0];
  328. break;
  329. case WNM_NEIGHBOR_BSS_TERMINATION_DURATION:
  330. if (elen < 10) {
  331. wpa_printf(MSG_DEBUG, "WNM: Too short BSS termination "
  332. "duration");
  333. break;
  334. }
  335. os_free(rep->bss_term_dur);
  336. rep->bss_term_dur =
  337. os_zalloc(sizeof(struct bss_termination_duration));
  338. if (rep->bss_term_dur == NULL)
  339. break;
  340. os_memcpy(rep->bss_term_dur->duration, pos, 10);
  341. break;
  342. case WNM_NEIGHBOR_BEARING:
  343. if (elen < 8) {
  344. wpa_printf(MSG_DEBUG, "WNM: Too short neighbor "
  345. "bearing");
  346. break;
  347. }
  348. os_free(rep->bearing);
  349. rep->bearing = os_zalloc(sizeof(struct bearing));
  350. if (rep->bearing == NULL)
  351. break;
  352. os_memcpy(rep->bearing->bearing, pos, 8);
  353. break;
  354. case WNM_NEIGHBOR_MEASUREMENT_PILOT:
  355. if (elen < 1) {
  356. wpa_printf(MSG_DEBUG, "WNM: Too short measurement "
  357. "pilot");
  358. break;
  359. }
  360. os_free(rep->meas_pilot);
  361. rep->meas_pilot = os_zalloc(sizeof(struct measurement_pilot));
  362. if (rep->meas_pilot == NULL)
  363. break;
  364. rep->meas_pilot->measurement_pilot = pos[0];
  365. rep->meas_pilot->subelem_len = elen - 1;
  366. os_memcpy(rep->meas_pilot->subelems, pos + 1, elen - 1);
  367. break;
  368. case WNM_NEIGHBOR_RRM_ENABLED_CAPABILITIES:
  369. if (elen < 5) {
  370. wpa_printf(MSG_DEBUG, "WNM: Too short RRM enabled "
  371. "capabilities");
  372. break;
  373. }
  374. os_free(rep->rrm_cap);
  375. rep->rrm_cap =
  376. os_zalloc(sizeof(struct rrm_enabled_capabilities));
  377. if (rep->rrm_cap == NULL)
  378. break;
  379. os_memcpy(rep->rrm_cap->capabilities, pos, 5);
  380. break;
  381. case WNM_NEIGHBOR_MULTIPLE_BSSID:
  382. if (elen < 1) {
  383. wpa_printf(MSG_DEBUG, "WNM: Too short multiple BSSID");
  384. break;
  385. }
  386. os_free(rep->mul_bssid);
  387. rep->mul_bssid = os_zalloc(sizeof(struct multiple_bssid));
  388. if (rep->mul_bssid == NULL)
  389. break;
  390. rep->mul_bssid->max_bssid_indicator = pos[0];
  391. rep->mul_bssid->subelem_len = elen - 1;
  392. os_memcpy(rep->mul_bssid->subelems, pos + 1, elen - 1);
  393. break;
  394. }
  395. }
  396. static void wnm_parse_neighbor_report(struct wpa_supplicant *wpa_s,
  397. const u8 *pos, u8 len,
  398. struct neighbor_report *rep)
  399. {
  400. u8 left = len;
  401. if (left < 13) {
  402. wpa_printf(MSG_DEBUG, "WNM: Too short neighbor report");
  403. return;
  404. }
  405. os_memcpy(rep->bssid, pos, ETH_ALEN);
  406. os_memcpy(rep->bssid_information, pos + ETH_ALEN, 4);
  407. rep->regulatory_class = *(pos + 10);
  408. rep->channel_number = *(pos + 11);
  409. rep->phy_type = *(pos + 12);
  410. pos += 13;
  411. left -= 13;
  412. while (left >= 2) {
  413. u8 id, elen;
  414. id = *pos++;
  415. elen = *pos++;
  416. wpa_printf(MSG_DEBUG, "WNM: Subelement id=%u len=%u", id, elen);
  417. left -= 2;
  418. if (elen > left) {
  419. wpa_printf(MSG_DEBUG,
  420. "WNM: Truncated neighbor report subelement");
  421. break;
  422. }
  423. wnm_parse_neighbor_report_elem(rep, id, elen, pos);
  424. left -= elen;
  425. pos += elen;
  426. }
  427. }
  428. static int compare_scan_neighbor_results(struct wpa_supplicant *wpa_s,
  429. struct wpa_scan_results *scan_res,
  430. struct neighbor_report *neigh_rep,
  431. u8 num_neigh_rep, u8 *bssid_to_connect)
  432. {
  433. u8 i, j;
  434. if (scan_res == NULL || num_neigh_rep == 0 || !wpa_s->current_bss)
  435. return 0;
  436. wpa_printf(MSG_DEBUG, "WNM: Current BSS " MACSTR " RSSI %d",
  437. MAC2STR(wpa_s->bssid), wpa_s->current_bss->level);
  438. for (i = 0; i < num_neigh_rep; i++) {
  439. for (j = 0; j < scan_res->num; j++) {
  440. /* Check for a better RSSI AP */
  441. if (os_memcmp(scan_res->res[j]->bssid,
  442. neigh_rep[i].bssid, ETH_ALEN) == 0 &&
  443. scan_res->res[j]->level >
  444. wpa_s->current_bss->level) {
  445. /* Got a BSSID with better RSSI value */
  446. os_memcpy(bssid_to_connect, neigh_rep[i].bssid,
  447. ETH_ALEN);
  448. wpa_printf(MSG_DEBUG, "Found a BSS " MACSTR
  449. " with better scan RSSI %d",
  450. MAC2STR(scan_res->res[j]->bssid),
  451. scan_res->res[j]->level);
  452. return 1;
  453. }
  454. wpa_printf(MSG_DEBUG, "scan_res[%d] " MACSTR
  455. " RSSI %d", j,
  456. MAC2STR(scan_res->res[j]->bssid),
  457. scan_res->res[j]->level);
  458. }
  459. }
  460. return 0;
  461. }
  462. static void wnm_send_bss_transition_mgmt_resp(
  463. struct wpa_supplicant *wpa_s, u8 dialog_token,
  464. enum bss_trans_mgmt_status_code status, u8 delay,
  465. const u8 *target_bssid)
  466. {
  467. u8 buf[1000], *pos;
  468. struct ieee80211_mgmt *mgmt;
  469. size_t len;
  470. wpa_printf(MSG_DEBUG, "WNM: Send BSS Transition Management Response "
  471. "to " MACSTR " dialog_token=%u status=%u delay=%d",
  472. MAC2STR(wpa_s->bssid), dialog_token, status, delay);
  473. mgmt = (struct ieee80211_mgmt *) buf;
  474. os_memset(&buf, 0, sizeof(buf));
  475. os_memcpy(mgmt->da, wpa_s->bssid, ETH_ALEN);
  476. os_memcpy(mgmt->sa, wpa_s->own_addr, ETH_ALEN);
  477. os_memcpy(mgmt->bssid, wpa_s->bssid, ETH_ALEN);
  478. mgmt->frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  479. WLAN_FC_STYPE_ACTION);
  480. mgmt->u.action.category = WLAN_ACTION_WNM;
  481. mgmt->u.action.u.bss_tm_resp.action = WNM_BSS_TRANS_MGMT_RESP;
  482. mgmt->u.action.u.bss_tm_resp.dialog_token = dialog_token;
  483. mgmt->u.action.u.bss_tm_resp.status_code = status;
  484. mgmt->u.action.u.bss_tm_resp.bss_termination_delay = delay;
  485. pos = mgmt->u.action.u.bss_tm_resp.variable;
  486. if (target_bssid) {
  487. os_memcpy(pos, target_bssid, ETH_ALEN);
  488. pos += ETH_ALEN;
  489. } else if (status == WNM_BSS_TM_ACCEPT) {
  490. /*
  491. * P802.11-REVmc clarifies that the Target BSSID field is always
  492. * present when status code is zero, so use a fake value here if
  493. * no BSSID is yet known.
  494. */
  495. os_memset(pos, 0, ETH_ALEN);
  496. pos += ETH_ALEN;
  497. }
  498. len = pos - (u8 *) &mgmt->u.action.category;
  499. wpa_drv_send_action(wpa_s, wpa_s->assoc_freq, 0, wpa_s->bssid,
  500. wpa_s->own_addr, wpa_s->bssid,
  501. &mgmt->u.action.category, len, 0);
  502. }
  503. void wnm_scan_response(struct wpa_supplicant *wpa_s,
  504. struct wpa_scan_results *scan_res)
  505. {
  506. u8 bssid[ETH_ALEN];
  507. if (scan_res == NULL) {
  508. wpa_printf(MSG_ERROR, "Scan result is NULL");
  509. goto send_bss_resp_fail;
  510. }
  511. /* Compare the Neighbor Report and scan results */
  512. if (compare_scan_neighbor_results(wpa_s, scan_res,
  513. wpa_s->wnm_neighbor_report_elements,
  514. wpa_s->wnm_num_neighbor_report,
  515. bssid) == 1) {
  516. /* Associate to the network */
  517. struct wpa_bss *bss;
  518. struct wpa_ssid *ssid = wpa_s->current_ssid;
  519. bss = wpa_bss_get_bssid(wpa_s, bssid);
  520. if (!bss) {
  521. wpa_printf(MSG_DEBUG, "WNM: Target AP not found from "
  522. "BSS table");
  523. goto send_bss_resp_fail;
  524. }
  525. /* Send the BSS Management Response - Accept */
  526. if (wpa_s->wnm_reply) {
  527. wnm_send_bss_transition_mgmt_resp(wpa_s,
  528. wpa_s->wnm_dialog_token,
  529. WNM_BSS_TM_ACCEPT,
  530. 0, bssid);
  531. }
  532. wpa_s->reassociate = 1;
  533. wpa_supplicant_connect(wpa_s, bss, ssid);
  534. wnm_deallocate_memory(wpa_s);
  535. return;
  536. }
  537. /* Send reject response for all the failures */
  538. send_bss_resp_fail:
  539. wnm_deallocate_memory(wpa_s);
  540. if (wpa_s->wnm_reply) {
  541. wnm_send_bss_transition_mgmt_resp(wpa_s,
  542. wpa_s->wnm_dialog_token,
  543. WNM_BSS_TM_REJECT_UNSPECIFIED,
  544. 0, NULL);
  545. }
  546. return;
  547. }
  548. static void ieee802_11_rx_bss_trans_mgmt_req(struct wpa_supplicant *wpa_s,
  549. const u8 *pos, const u8 *end,
  550. int reply)
  551. {
  552. if (pos + 5 > end)
  553. return;
  554. wpa_s->wnm_dialog_token = pos[0];
  555. wpa_s->wnm_mode = pos[1];
  556. wpa_s->wnm_dissoc_timer = WPA_GET_LE16(pos + 2);
  557. wpa_s->wnm_validity_interval = pos[4];
  558. wpa_s->wnm_reply = reply;
  559. wpa_printf(MSG_DEBUG, "WNM: BSS Transition Management Request: "
  560. "dialog_token=%u request_mode=0x%x "
  561. "disassoc_timer=%u validity_interval=%u",
  562. wpa_s->wnm_dialog_token, wpa_s->wnm_mode,
  563. wpa_s->wnm_dissoc_timer, wpa_s->wnm_validity_interval);
  564. pos += 5;
  565. if (wpa_s->wnm_mode & WNM_BSS_TM_REQ_BSS_TERMINATION_INCLUDED) {
  566. if (pos + 12 > end) {
  567. wpa_printf(MSG_DEBUG, "WNM: Too short BSS TM Request");
  568. return;
  569. }
  570. os_memcpy(wpa_s->wnm_bss_termination_duration, pos, 12);
  571. pos += 12; /* BSS Termination Duration */
  572. }
  573. if (wpa_s->wnm_mode & WNM_BSS_TM_REQ_ESS_DISASSOC_IMMINENT) {
  574. char url[256];
  575. unsigned int beacon_int;
  576. if (pos + 1 > end || pos + 1 + pos[0] > end) {
  577. wpa_printf(MSG_DEBUG, "WNM: Invalid BSS Transition "
  578. "Management Request (URL)");
  579. return;
  580. }
  581. os_memcpy(url, pos + 1, pos[0]);
  582. url[pos[0]] = '\0';
  583. pos += 1 + pos[0];
  584. if (wpa_s->current_bss)
  585. beacon_int = wpa_s->current_bss->beacon_int;
  586. else
  587. beacon_int = 100; /* best guess */
  588. wpa_msg(wpa_s, MSG_INFO, ESS_DISASSOC_IMMINENT "%d %u %s",
  589. wpa_sm_pmf_enabled(wpa_s->wpa),
  590. wpa_s->wnm_dissoc_timer * beacon_int * 128 / 125, url);
  591. }
  592. if (wpa_s->wnm_mode & WNM_BSS_TM_REQ_DISASSOC_IMMINENT) {
  593. wpa_msg(wpa_s, MSG_INFO, "WNM: Disassociation Imminent - "
  594. "Disassociation Timer %u", wpa_s->wnm_dissoc_timer);
  595. if (wpa_s->wnm_dissoc_timer && !wpa_s->scanning) {
  596. /* TODO: mark current BSS less preferred for
  597. * selection */
  598. wpa_printf(MSG_DEBUG, "Trying to find another BSS");
  599. wpa_supplicant_req_scan(wpa_s, 0, 0);
  600. }
  601. }
  602. if (wpa_s->wnm_mode & WNM_BSS_TM_REQ_PREF_CAND_LIST_INCLUDED) {
  603. wpa_msg(wpa_s, MSG_INFO, "WNM: Preferred List Available");
  604. wpa_s->wnm_num_neighbor_report = 0;
  605. os_free(wpa_s->wnm_neighbor_report_elements);
  606. wpa_s->wnm_neighbor_report_elements = os_zalloc(
  607. WNM_MAX_NEIGHBOR_REPORT *
  608. sizeof(struct neighbor_report));
  609. if (wpa_s->wnm_neighbor_report_elements == NULL)
  610. return;
  611. while (pos + 2 <= end &&
  612. wpa_s->wnm_num_neighbor_report < WNM_MAX_NEIGHBOR_REPORT)
  613. {
  614. u8 tag = *pos++;
  615. u8 len = *pos++;
  616. wpa_printf(MSG_DEBUG, "WNM: Neighbor report tag %u",
  617. tag);
  618. if (pos + len > end) {
  619. wpa_printf(MSG_DEBUG, "WNM: Truncated request");
  620. return;
  621. }
  622. if (tag == WLAN_EID_NEIGHBOR_REPORT) {
  623. struct neighbor_report *rep;
  624. rep = &wpa_s->wnm_neighbor_report_elements[
  625. wpa_s->wnm_num_neighbor_report];
  626. wnm_parse_neighbor_report(wpa_s, pos, len, rep);
  627. }
  628. pos += len;
  629. wpa_s->wnm_num_neighbor_report++;
  630. }
  631. wpa_s->scan_res_handler = wnm_scan_response;
  632. wpa_supplicant_req_scan(wpa_s, 0, 0);
  633. } else if (reply) {
  634. enum bss_trans_mgmt_status_code status;
  635. if (wpa_s->wnm_mode & WNM_BSS_TM_REQ_ESS_DISASSOC_IMMINENT)
  636. status = WNM_BSS_TM_ACCEPT;
  637. else {
  638. wpa_msg(wpa_s, MSG_INFO, "WNM: BSS Transition Management Request did not include candidates");
  639. status = WNM_BSS_TM_REJECT_UNSPECIFIED;
  640. }
  641. wnm_send_bss_transition_mgmt_resp(wpa_s,
  642. wpa_s->wnm_dialog_token,
  643. status, 0, NULL);
  644. }
  645. }
  646. int wnm_send_bss_transition_mgmt_query(struct wpa_supplicant *wpa_s,
  647. u8 query_reason)
  648. {
  649. u8 buf[1000], *pos;
  650. struct ieee80211_mgmt *mgmt;
  651. size_t len;
  652. int ret;
  653. wpa_printf(MSG_DEBUG, "WNM: Send BSS Transition Management Query to "
  654. MACSTR " query_reason=%u",
  655. MAC2STR(wpa_s->bssid), query_reason);
  656. mgmt = (struct ieee80211_mgmt *) buf;
  657. os_memset(&buf, 0, sizeof(buf));
  658. os_memcpy(mgmt->da, wpa_s->bssid, ETH_ALEN);
  659. os_memcpy(mgmt->sa, wpa_s->own_addr, ETH_ALEN);
  660. os_memcpy(mgmt->bssid, wpa_s->bssid, ETH_ALEN);
  661. mgmt->frame_control = IEEE80211_FC(WLAN_FC_TYPE_MGMT,
  662. WLAN_FC_STYPE_ACTION);
  663. mgmt->u.action.category = WLAN_ACTION_WNM;
  664. mgmt->u.action.u.bss_tm_query.action = WNM_BSS_TRANS_MGMT_QUERY;
  665. mgmt->u.action.u.bss_tm_query.dialog_token = 1;
  666. mgmt->u.action.u.bss_tm_query.query_reason = query_reason;
  667. pos = mgmt->u.action.u.bss_tm_query.variable;
  668. len = pos - (u8 *) &mgmt->u.action.category;
  669. ret = wpa_drv_send_action(wpa_s, wpa_s->assoc_freq, 0, wpa_s->bssid,
  670. wpa_s->own_addr, wpa_s->bssid,
  671. &mgmt->u.action.category, len, 0);
  672. return ret;
  673. }
  674. static void ieee802_11_rx_wnm_notif_req_wfa(struct wpa_supplicant *wpa_s,
  675. const u8 *sa, const u8 *data,
  676. int len)
  677. {
  678. const u8 *pos, *end, *next;
  679. u8 ie, ie_len;
  680. pos = data;
  681. end = data + len;
  682. while (pos + 1 < end) {
  683. ie = *pos++;
  684. ie_len = *pos++;
  685. wpa_printf(MSG_DEBUG, "WNM: WFA subelement %u len %u",
  686. ie, ie_len);
  687. if (ie_len > end - pos) {
  688. wpa_printf(MSG_DEBUG, "WNM: Not enough room for "
  689. "subelement");
  690. break;
  691. }
  692. next = pos + ie_len;
  693. if (ie_len < 4) {
  694. pos = next;
  695. continue;
  696. }
  697. wpa_printf(MSG_DEBUG, "WNM: Subelement OUI %06x type %u",
  698. WPA_GET_BE24(pos), pos[3]);
  699. #ifdef CONFIG_HS20
  700. if (ie == WLAN_EID_VENDOR_SPECIFIC && ie_len >= 5 &&
  701. WPA_GET_BE24(pos) == OUI_WFA &&
  702. pos[3] == HS20_WNM_SUB_REM_NEEDED) {
  703. /* Subscription Remediation subelement */
  704. const u8 *ie_end;
  705. u8 url_len;
  706. char *url;
  707. u8 osu_method;
  708. wpa_printf(MSG_DEBUG, "WNM: Subscription Remediation "
  709. "subelement");
  710. ie_end = pos + ie_len;
  711. pos += 4;
  712. url_len = *pos++;
  713. if (url_len == 0) {
  714. wpa_printf(MSG_DEBUG, "WNM: No Server URL included");
  715. url = NULL;
  716. osu_method = 1;
  717. } else {
  718. if (pos + url_len + 1 > ie_end) {
  719. wpa_printf(MSG_DEBUG, "WNM: Not enough room for Server URL (len=%u) and Server Method (left %d)",
  720. url_len,
  721. (int) (ie_end - pos));
  722. break;
  723. }
  724. url = os_malloc(url_len + 1);
  725. if (url == NULL)
  726. break;
  727. os_memcpy(url, pos, url_len);
  728. url[url_len] = '\0';
  729. osu_method = pos[url_len];
  730. }
  731. hs20_rx_subscription_remediation(wpa_s, url,
  732. osu_method);
  733. os_free(url);
  734. pos = next;
  735. continue;
  736. }
  737. if (ie == WLAN_EID_VENDOR_SPECIFIC && ie_len >= 8 &&
  738. WPA_GET_BE24(pos) == OUI_WFA &&
  739. pos[3] == HS20_WNM_DEAUTH_IMMINENT_NOTICE) {
  740. const u8 *ie_end;
  741. u8 url_len;
  742. char *url;
  743. u8 code;
  744. u16 reauth_delay;
  745. ie_end = pos + ie_len;
  746. pos += 4;
  747. code = *pos++;
  748. reauth_delay = WPA_GET_LE16(pos);
  749. pos += 2;
  750. url_len = *pos++;
  751. wpa_printf(MSG_DEBUG, "WNM: HS 2.0 Deauthentication "
  752. "Imminent - Reason Code %u "
  753. "Re-Auth Delay %u URL Length %u",
  754. code, reauth_delay, url_len);
  755. if (pos + url_len > ie_end)
  756. break;
  757. url = os_malloc(url_len + 1);
  758. if (url == NULL)
  759. break;
  760. os_memcpy(url, pos, url_len);
  761. url[url_len] = '\0';
  762. hs20_rx_deauth_imminent_notice(wpa_s, code,
  763. reauth_delay, url);
  764. os_free(url);
  765. pos = next;
  766. continue;
  767. }
  768. #endif /* CONFIG_HS20 */
  769. pos = next;
  770. }
  771. }
  772. static void ieee802_11_rx_wnm_notif_req(struct wpa_supplicant *wpa_s,
  773. const u8 *sa, const u8 *frm, int len)
  774. {
  775. const u8 *pos, *end;
  776. u8 dialog_token, type;
  777. /* Dialog Token [1] | Type [1] | Subelements */
  778. if (len < 2 || sa == NULL)
  779. return;
  780. end = frm + len;
  781. pos = frm;
  782. dialog_token = *pos++;
  783. type = *pos++;
  784. wpa_dbg(wpa_s, MSG_DEBUG, "WNM: Received WNM-Notification Request "
  785. "(dialog_token %u type %u sa " MACSTR ")",
  786. dialog_token, type, MAC2STR(sa));
  787. wpa_hexdump(MSG_DEBUG, "WNM-Notification Request subelements",
  788. pos, end - pos);
  789. if (wpa_s->wpa_state != WPA_COMPLETED ||
  790. os_memcmp(sa, wpa_s->bssid, ETH_ALEN) != 0) {
  791. wpa_dbg(wpa_s, MSG_DEBUG, "WNM: WNM-Notification frame not "
  792. "from our AP - ignore it");
  793. return;
  794. }
  795. switch (type) {
  796. case 1:
  797. ieee802_11_rx_wnm_notif_req_wfa(wpa_s, sa, pos, end - pos);
  798. break;
  799. default:
  800. wpa_dbg(wpa_s, MSG_DEBUG, "WNM: Ignore unknown "
  801. "WNM-Notification type %u", type);
  802. break;
  803. }
  804. }
  805. void ieee802_11_rx_wnm_action(struct wpa_supplicant *wpa_s,
  806. const struct ieee80211_mgmt *mgmt, size_t len)
  807. {
  808. const u8 *pos, *end;
  809. u8 act;
  810. if (len < IEEE80211_HDRLEN + 2)
  811. return;
  812. pos = ((const u8 *) mgmt) + IEEE80211_HDRLEN + 1;
  813. act = *pos++;
  814. end = ((const u8 *) mgmt) + len;
  815. wpa_printf(MSG_DEBUG, "WNM: RX action %u from " MACSTR,
  816. act, MAC2STR(mgmt->sa));
  817. if (wpa_s->wpa_state < WPA_ASSOCIATED ||
  818. os_memcmp(mgmt->sa, wpa_s->bssid, ETH_ALEN) != 0) {
  819. wpa_printf(MSG_DEBUG, "WNM: Ignore unexpected WNM Action "
  820. "frame");
  821. return;
  822. }
  823. switch (act) {
  824. case WNM_BSS_TRANS_MGMT_REQ:
  825. ieee802_11_rx_bss_trans_mgmt_req(wpa_s, pos, end,
  826. !(mgmt->da[0] & 0x01));
  827. break;
  828. case WNM_SLEEP_MODE_RESP:
  829. ieee802_11_rx_wnmsleep_resp(wpa_s, pos, end - pos);
  830. break;
  831. case WNM_NOTIFICATION_REQ:
  832. ieee802_11_rx_wnm_notif_req(wpa_s, mgmt->sa, pos, end - pos);
  833. break;
  834. default:
  835. wpa_printf(MSG_ERROR, "WNM: Unknown request");
  836. break;
  837. }
  838. }