sme.c 43 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * SME code for cfg80211
  4. * both driver SME event handling and the SME implementation
  5. * (for nl80211's connect() and wext)
  6. *
  7. * Copyright 2009 Johannes Berg <johannes@sipsolutions.net>
  8. * Copyright (C) 2009, 2020, 2022-2025 Intel Corporation. All rights reserved.
  9. * Copyright 2017 Intel Deutschland GmbH
  10. */
  11. #include <linux/etherdevice.h>
  12. #include <linux/if_arp.h>
  13. #include <linux/slab.h>
  14. #include <linux/workqueue.h>
  15. #include <linux/wireless.h>
  16. #include <linux/export.h>
  17. #include <net/iw_handler.h>
  18. #include <net/cfg80211.h>
  19. #include <net/rtnetlink.h>
  20. #include "nl80211.h"
  21. #include "reg.h"
  22. #include "rdev-ops.h"
  23. /*
  24. * Software SME in cfg80211, using auth/assoc/deauth calls to the
  25. * driver. This is for implementing nl80211's connect/disconnect
  26. * and wireless extensions (if configured.)
  27. */
  28. struct cfg80211_conn {
  29. struct cfg80211_connect_params params;
  30. /* these are sub-states of the _CONNECTING sme_state */
  31. enum {
  32. CFG80211_CONN_SCANNING,
  33. CFG80211_CONN_SCAN_AGAIN,
  34. CFG80211_CONN_AUTHENTICATE_NEXT,
  35. CFG80211_CONN_AUTHENTICATING,
  36. CFG80211_CONN_AUTH_FAILED_TIMEOUT,
  37. CFG80211_CONN_ASSOCIATE_NEXT,
  38. CFG80211_CONN_ASSOCIATING,
  39. CFG80211_CONN_ASSOC_FAILED,
  40. CFG80211_CONN_ASSOC_FAILED_TIMEOUT,
  41. CFG80211_CONN_DEAUTH,
  42. CFG80211_CONN_ABANDON,
  43. CFG80211_CONN_CONNECTED,
  44. } state;
  45. u8 bssid[ETH_ALEN], prev_bssid[ETH_ALEN];
  46. const u8 *ie;
  47. size_t ie_len;
  48. bool auto_auth, prev_bssid_valid;
  49. };
  50. static void cfg80211_sme_free(struct wireless_dev *wdev)
  51. {
  52. if (!wdev->conn)
  53. return;
  54. kfree(wdev->conn->ie);
  55. kfree(wdev->conn);
  56. wdev->conn = NULL;
  57. }
  58. static int cfg80211_conn_scan(struct wireless_dev *wdev)
  59. {
  60. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  61. struct cfg80211_scan_request_int *request;
  62. int n_channels, err;
  63. lockdep_assert_wiphy(wdev->wiphy);
  64. if (rdev->scan_req || rdev->scan_msg)
  65. return -EBUSY;
  66. if (wdev->conn->params.channel)
  67. n_channels = 1;
  68. else
  69. n_channels = ieee80211_get_num_supported_channels(wdev->wiphy);
  70. request = kzalloc(sizeof(*request) + sizeof(request->req.ssids[0]) +
  71. sizeof(request->req.channels[0]) * n_channels,
  72. GFP_KERNEL);
  73. if (!request)
  74. return -ENOMEM;
  75. if (wdev->conn->params.channel) {
  76. enum nl80211_band band = wdev->conn->params.channel->band;
  77. struct ieee80211_supported_band *sband =
  78. wdev->wiphy->bands[band];
  79. if (!sband) {
  80. kfree(request);
  81. return -EINVAL;
  82. }
  83. request->req.channels[0] = wdev->conn->params.channel;
  84. request->req.rates[band] = (1 << sband->n_bitrates) - 1;
  85. } else {
  86. int i = 0, j;
  87. enum nl80211_band band;
  88. struct ieee80211_supported_band *bands;
  89. struct ieee80211_channel *channel;
  90. for (band = 0; band < NUM_NL80211_BANDS; band++) {
  91. bands = wdev->wiphy->bands[band];
  92. if (!bands)
  93. continue;
  94. for (j = 0; j < bands->n_channels; j++) {
  95. channel = &bands->channels[j];
  96. if (channel->flags & IEEE80211_CHAN_DISABLED)
  97. continue;
  98. request->req.channels[i++] = channel;
  99. }
  100. request->req.rates[band] = (1 << bands->n_bitrates) - 1;
  101. }
  102. n_channels = i;
  103. }
  104. request->req.n_channels = n_channels;
  105. request->req.ssids = (void *)request +
  106. struct_size(request, req.channels, n_channels);
  107. request->req.n_ssids = 1;
  108. memcpy(request->req.ssids[0].ssid, wdev->conn->params.ssid,
  109. wdev->conn->params.ssid_len);
  110. request->req.ssids[0].ssid_len = wdev->conn->params.ssid_len;
  111. eth_broadcast_addr(request->req.bssid);
  112. request->req.wdev = wdev;
  113. request->req.wiphy = &rdev->wiphy;
  114. request->req.scan_start = jiffies;
  115. rdev->scan_req = request;
  116. err = cfg80211_scan(rdev);
  117. if (!err) {
  118. wdev->conn->state = CFG80211_CONN_SCANNING;
  119. nl80211_send_scan_start(rdev, wdev);
  120. dev_hold(wdev->netdev);
  121. } else {
  122. rdev->scan_req = NULL;
  123. kfree(request);
  124. }
  125. return err;
  126. }
  127. static int cfg80211_conn_do_work(struct wireless_dev *wdev,
  128. enum nl80211_timeout_reason *treason)
  129. {
  130. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  131. struct cfg80211_connect_params *params;
  132. struct cfg80211_auth_request auth_req = {};
  133. struct cfg80211_assoc_request req = {};
  134. int err;
  135. lockdep_assert_wiphy(wdev->wiphy);
  136. if (!wdev->conn)
  137. return 0;
  138. params = &wdev->conn->params;
  139. switch (wdev->conn->state) {
  140. case CFG80211_CONN_SCANNING:
  141. /* didn't find it during scan ... */
  142. return -ENOENT;
  143. case CFG80211_CONN_SCAN_AGAIN:
  144. return cfg80211_conn_scan(wdev);
  145. case CFG80211_CONN_AUTHENTICATE_NEXT:
  146. if (WARN_ON(!rdev->ops->auth))
  147. return -EOPNOTSUPP;
  148. wdev->conn->state = CFG80211_CONN_AUTHENTICATING;
  149. auth_req.key = params->key;
  150. auth_req.key_len = params->key_len;
  151. auth_req.key_idx = params->key_idx;
  152. auth_req.auth_type = params->auth_type;
  153. auth_req.bss = cfg80211_get_bss(&rdev->wiphy, params->channel,
  154. params->bssid,
  155. params->ssid, params->ssid_len,
  156. IEEE80211_BSS_TYPE_ESS,
  157. IEEE80211_PRIVACY_ANY);
  158. auth_req.link_id = -1;
  159. err = cfg80211_mlme_auth(rdev, wdev->netdev, &auth_req);
  160. cfg80211_put_bss(&rdev->wiphy, auth_req.bss);
  161. return err;
  162. case CFG80211_CONN_AUTH_FAILED_TIMEOUT:
  163. *treason = NL80211_TIMEOUT_AUTH;
  164. return -ENOTCONN;
  165. case CFG80211_CONN_ASSOCIATE_NEXT:
  166. if (WARN_ON(!rdev->ops->assoc))
  167. return -EOPNOTSUPP;
  168. wdev->conn->state = CFG80211_CONN_ASSOCIATING;
  169. if (wdev->conn->prev_bssid_valid)
  170. req.prev_bssid = wdev->conn->prev_bssid;
  171. req.ie = params->ie;
  172. req.ie_len = params->ie_len;
  173. req.use_mfp = params->mfp != NL80211_MFP_NO;
  174. req.crypto = params->crypto;
  175. req.flags = params->flags;
  176. req.ht_capa = params->ht_capa;
  177. req.ht_capa_mask = params->ht_capa_mask;
  178. req.vht_capa = params->vht_capa;
  179. req.vht_capa_mask = params->vht_capa_mask;
  180. req.link_id = -1;
  181. req.bss = cfg80211_get_bss(&rdev->wiphy, params->channel,
  182. params->bssid,
  183. params->ssid, params->ssid_len,
  184. IEEE80211_BSS_TYPE_ESS,
  185. IEEE80211_PRIVACY_ANY);
  186. if (!req.bss) {
  187. err = -ENOENT;
  188. } else {
  189. err = cfg80211_mlme_assoc(rdev, wdev->netdev,
  190. &req, NULL);
  191. cfg80211_put_bss(&rdev->wiphy, req.bss);
  192. }
  193. if (err)
  194. cfg80211_mlme_deauth(rdev, wdev->netdev, params->bssid,
  195. NULL, 0,
  196. WLAN_REASON_DEAUTH_LEAVING,
  197. false);
  198. return err;
  199. case CFG80211_CONN_ASSOC_FAILED_TIMEOUT:
  200. *treason = NL80211_TIMEOUT_ASSOC;
  201. fallthrough;
  202. case CFG80211_CONN_ASSOC_FAILED:
  203. cfg80211_mlme_deauth(rdev, wdev->netdev, params->bssid,
  204. NULL, 0,
  205. WLAN_REASON_DEAUTH_LEAVING, false);
  206. return -ENOTCONN;
  207. case CFG80211_CONN_DEAUTH:
  208. cfg80211_mlme_deauth(rdev, wdev->netdev, params->bssid,
  209. NULL, 0,
  210. WLAN_REASON_DEAUTH_LEAVING, false);
  211. fallthrough;
  212. case CFG80211_CONN_ABANDON:
  213. /* free directly, disconnected event already sent */
  214. cfg80211_sme_free(wdev);
  215. return 0;
  216. default:
  217. return 0;
  218. }
  219. }
  220. void cfg80211_conn_work(struct work_struct *work)
  221. {
  222. struct cfg80211_registered_device *rdev =
  223. container_of(work, struct cfg80211_registered_device, conn_work);
  224. struct wireless_dev *wdev;
  225. u8 bssid_buf[ETH_ALEN], *bssid = NULL;
  226. enum nl80211_timeout_reason treason;
  227. guard(wiphy)(&rdev->wiphy);
  228. list_for_each_entry(wdev, &rdev->wiphy.wdev_list, list) {
  229. if (!wdev->netdev)
  230. continue;
  231. if (!netif_running(wdev->netdev))
  232. continue;
  233. if (!wdev->conn ||
  234. wdev->conn->state == CFG80211_CONN_CONNECTED)
  235. continue;
  236. if (wdev->conn->params.bssid) {
  237. memcpy(bssid_buf, wdev->conn->params.bssid, ETH_ALEN);
  238. bssid = bssid_buf;
  239. }
  240. treason = NL80211_TIMEOUT_UNSPECIFIED;
  241. if (cfg80211_conn_do_work(wdev, &treason)) {
  242. struct cfg80211_connect_resp_params cr;
  243. memset(&cr, 0, sizeof(cr));
  244. cr.status = -1;
  245. cr.links[0].bssid = bssid;
  246. cr.timeout_reason = treason;
  247. __cfg80211_connect_result(wdev->netdev, &cr, false);
  248. }
  249. }
  250. }
  251. static void cfg80211_step_auth_next(struct cfg80211_conn *conn,
  252. struct cfg80211_bss *bss)
  253. {
  254. memcpy(conn->bssid, bss->bssid, ETH_ALEN);
  255. conn->params.bssid = conn->bssid;
  256. conn->params.channel = bss->channel;
  257. conn->state = CFG80211_CONN_AUTHENTICATE_NEXT;
  258. }
  259. /* Returned bss is reference counted and must be cleaned up appropriately. */
  260. static struct cfg80211_bss *cfg80211_get_conn_bss(struct wireless_dev *wdev)
  261. {
  262. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  263. struct cfg80211_bss *bss;
  264. lockdep_assert_wiphy(wdev->wiphy);
  265. bss = cfg80211_get_bss(wdev->wiphy, wdev->conn->params.channel,
  266. wdev->conn->params.bssid,
  267. wdev->conn->params.ssid,
  268. wdev->conn->params.ssid_len,
  269. wdev->conn_bss_type,
  270. IEEE80211_PRIVACY(wdev->conn->params.privacy));
  271. if (!bss)
  272. return NULL;
  273. cfg80211_step_auth_next(wdev->conn, bss);
  274. schedule_work(&rdev->conn_work);
  275. return bss;
  276. }
  277. void cfg80211_sme_scan_done(struct net_device *dev)
  278. {
  279. struct wireless_dev *wdev = dev->ieee80211_ptr;
  280. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  281. struct cfg80211_bss *bss;
  282. lockdep_assert_wiphy(wdev->wiphy);
  283. if (!wdev->conn)
  284. return;
  285. if (wdev->conn->state != CFG80211_CONN_SCANNING &&
  286. wdev->conn->state != CFG80211_CONN_SCAN_AGAIN)
  287. return;
  288. bss = cfg80211_get_conn_bss(wdev);
  289. if (bss)
  290. cfg80211_put_bss(&rdev->wiphy, bss);
  291. else
  292. schedule_work(&rdev->conn_work);
  293. }
  294. void cfg80211_sme_rx_auth(struct wireless_dev *wdev, const u8 *buf, size_t len)
  295. {
  296. struct wiphy *wiphy = wdev->wiphy;
  297. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wiphy);
  298. struct ieee80211_mgmt *mgmt = (struct ieee80211_mgmt *)buf;
  299. u16 status_code = le16_to_cpu(mgmt->u.auth.status_code);
  300. lockdep_assert_wiphy(wdev->wiphy);
  301. if (!wdev->conn || wdev->conn->state == CFG80211_CONN_CONNECTED)
  302. return;
  303. if (status_code == WLAN_STATUS_NOT_SUPPORTED_AUTH_ALG &&
  304. wdev->conn->auto_auth &&
  305. wdev->conn->params.auth_type != NL80211_AUTHTYPE_NETWORK_EAP) {
  306. /* select automatically between only open, shared, leap */
  307. switch (wdev->conn->params.auth_type) {
  308. case NL80211_AUTHTYPE_OPEN_SYSTEM:
  309. if (wdev->connect_keys)
  310. wdev->conn->params.auth_type =
  311. NL80211_AUTHTYPE_SHARED_KEY;
  312. else
  313. wdev->conn->params.auth_type =
  314. NL80211_AUTHTYPE_NETWORK_EAP;
  315. break;
  316. case NL80211_AUTHTYPE_SHARED_KEY:
  317. wdev->conn->params.auth_type =
  318. NL80211_AUTHTYPE_NETWORK_EAP;
  319. break;
  320. default:
  321. /* huh? */
  322. wdev->conn->params.auth_type =
  323. NL80211_AUTHTYPE_OPEN_SYSTEM;
  324. break;
  325. }
  326. wdev->conn->state = CFG80211_CONN_AUTHENTICATE_NEXT;
  327. schedule_work(&rdev->conn_work);
  328. } else if (status_code != WLAN_STATUS_SUCCESS) {
  329. struct cfg80211_connect_resp_params cr;
  330. memset(&cr, 0, sizeof(cr));
  331. cr.status = status_code;
  332. cr.links[0].bssid = mgmt->bssid;
  333. cr.timeout_reason = NL80211_TIMEOUT_UNSPECIFIED;
  334. __cfg80211_connect_result(wdev->netdev, &cr, false);
  335. } else if (wdev->conn->state == CFG80211_CONN_AUTHENTICATING) {
  336. wdev->conn->state = CFG80211_CONN_ASSOCIATE_NEXT;
  337. schedule_work(&rdev->conn_work);
  338. }
  339. }
  340. bool cfg80211_sme_rx_assoc_resp(struct wireless_dev *wdev, u16 status)
  341. {
  342. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  343. if (!wdev->conn)
  344. return false;
  345. if (status == WLAN_STATUS_SUCCESS) {
  346. wdev->conn->state = CFG80211_CONN_CONNECTED;
  347. return false;
  348. }
  349. if (wdev->conn->prev_bssid_valid) {
  350. /*
  351. * Some stupid APs don't accept reassoc, so we
  352. * need to fall back to trying regular assoc;
  353. * return true so no event is sent to userspace.
  354. */
  355. wdev->conn->prev_bssid_valid = false;
  356. wdev->conn->state = CFG80211_CONN_ASSOCIATE_NEXT;
  357. schedule_work(&rdev->conn_work);
  358. return true;
  359. }
  360. wdev->conn->state = CFG80211_CONN_ASSOC_FAILED;
  361. schedule_work(&rdev->conn_work);
  362. return false;
  363. }
  364. void cfg80211_sme_deauth(struct wireless_dev *wdev)
  365. {
  366. cfg80211_sme_free(wdev);
  367. }
  368. void cfg80211_sme_auth_timeout(struct wireless_dev *wdev)
  369. {
  370. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  371. if (!wdev->conn)
  372. return;
  373. wdev->conn->state = CFG80211_CONN_AUTH_FAILED_TIMEOUT;
  374. schedule_work(&rdev->conn_work);
  375. }
  376. void cfg80211_sme_disassoc(struct wireless_dev *wdev)
  377. {
  378. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  379. if (!wdev->conn)
  380. return;
  381. wdev->conn->state = CFG80211_CONN_DEAUTH;
  382. schedule_work(&rdev->conn_work);
  383. }
  384. void cfg80211_sme_assoc_timeout(struct wireless_dev *wdev)
  385. {
  386. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  387. if (!wdev->conn)
  388. return;
  389. wdev->conn->state = CFG80211_CONN_ASSOC_FAILED_TIMEOUT;
  390. schedule_work(&rdev->conn_work);
  391. }
  392. void cfg80211_sme_abandon_assoc(struct wireless_dev *wdev)
  393. {
  394. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  395. if (!wdev->conn)
  396. return;
  397. wdev->conn->state = CFG80211_CONN_ABANDON;
  398. schedule_work(&rdev->conn_work);
  399. }
  400. static void cfg80211_wdev_release_bsses(struct wireless_dev *wdev)
  401. {
  402. unsigned int link;
  403. for_each_valid_link(wdev, link) {
  404. if (!wdev->links[link].client.current_bss)
  405. continue;
  406. cfg80211_unhold_bss(wdev->links[link].client.current_bss);
  407. cfg80211_put_bss(wdev->wiphy,
  408. &wdev->links[link].client.current_bss->pub);
  409. wdev->links[link].client.current_bss = NULL;
  410. }
  411. }
  412. void cfg80211_wdev_release_link_bsses(struct wireless_dev *wdev, u16 link_mask)
  413. {
  414. unsigned int link;
  415. for_each_valid_link(wdev, link) {
  416. if (!wdev->links[link].client.current_bss ||
  417. !(link_mask & BIT(link)))
  418. continue;
  419. cfg80211_unhold_bss(wdev->links[link].client.current_bss);
  420. cfg80211_put_bss(wdev->wiphy,
  421. &wdev->links[link].client.current_bss->pub);
  422. wdev->links[link].client.current_bss = NULL;
  423. }
  424. }
  425. static int cfg80211_sme_get_conn_ies(struct wireless_dev *wdev,
  426. const u8 *ies, size_t ies_len,
  427. const u8 **out_ies, size_t *out_ies_len)
  428. {
  429. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  430. u8 *buf;
  431. size_t offs;
  432. if (!rdev->wiphy.extended_capabilities_len ||
  433. (ies && cfg80211_find_ie(WLAN_EID_EXT_CAPABILITY, ies, ies_len))) {
  434. *out_ies = kmemdup(ies, ies_len, GFP_KERNEL);
  435. if (!*out_ies)
  436. return -ENOMEM;
  437. *out_ies_len = ies_len;
  438. return 0;
  439. }
  440. buf = kmalloc(ies_len + rdev->wiphy.extended_capabilities_len + 2,
  441. GFP_KERNEL);
  442. if (!buf)
  443. return -ENOMEM;
  444. if (ies_len) {
  445. static const u8 before_extcapa[] = {
  446. /* not listing IEs expected to be created by driver */
  447. WLAN_EID_RSN,
  448. WLAN_EID_QOS_CAPA,
  449. WLAN_EID_RRM_ENABLED_CAPABILITIES,
  450. WLAN_EID_MOBILITY_DOMAIN,
  451. WLAN_EID_SUPPORTED_REGULATORY_CLASSES,
  452. WLAN_EID_BSS_COEX_2040,
  453. };
  454. offs = ieee80211_ie_split(ies, ies_len, before_extcapa,
  455. ARRAY_SIZE(before_extcapa), 0);
  456. memcpy(buf, ies, offs);
  457. /* leave a whole for extended capabilities IE */
  458. memcpy(buf + offs + rdev->wiphy.extended_capabilities_len + 2,
  459. ies + offs, ies_len - offs);
  460. } else {
  461. offs = 0;
  462. }
  463. /* place extended capabilities IE (with only driver capabilities) */
  464. buf[offs] = WLAN_EID_EXT_CAPABILITY;
  465. buf[offs + 1] = rdev->wiphy.extended_capabilities_len;
  466. memcpy(buf + offs + 2,
  467. rdev->wiphy.extended_capabilities,
  468. rdev->wiphy.extended_capabilities_len);
  469. *out_ies = buf;
  470. *out_ies_len = ies_len + rdev->wiphy.extended_capabilities_len + 2;
  471. return 0;
  472. }
  473. static int cfg80211_sme_connect(struct wireless_dev *wdev,
  474. struct cfg80211_connect_params *connect,
  475. const u8 *prev_bssid)
  476. {
  477. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  478. struct cfg80211_bss *bss;
  479. int err;
  480. if (!rdev->ops->auth || !rdev->ops->assoc)
  481. return -EOPNOTSUPP;
  482. cfg80211_wdev_release_bsses(wdev);
  483. if (wdev->connected) {
  484. cfg80211_sme_free(wdev);
  485. wdev->connected = false;
  486. }
  487. if (wdev->conn)
  488. return -EINPROGRESS;
  489. wdev->conn = kzalloc_obj(*wdev->conn);
  490. if (!wdev->conn)
  491. return -ENOMEM;
  492. /*
  493. * Copy all parameters, and treat explicitly IEs, BSSID, SSID.
  494. */
  495. memcpy(&wdev->conn->params, connect, sizeof(*connect));
  496. if (connect->bssid) {
  497. wdev->conn->params.bssid = wdev->conn->bssid;
  498. memcpy(wdev->conn->bssid, connect->bssid, ETH_ALEN);
  499. }
  500. if (cfg80211_sme_get_conn_ies(wdev, connect->ie, connect->ie_len,
  501. &wdev->conn->ie,
  502. &wdev->conn->params.ie_len)) {
  503. kfree(wdev->conn);
  504. wdev->conn = NULL;
  505. return -ENOMEM;
  506. }
  507. wdev->conn->params.ie = wdev->conn->ie;
  508. if (connect->auth_type == NL80211_AUTHTYPE_AUTOMATIC) {
  509. wdev->conn->auto_auth = true;
  510. /* start with open system ... should mostly work */
  511. wdev->conn->params.auth_type =
  512. NL80211_AUTHTYPE_OPEN_SYSTEM;
  513. } else {
  514. wdev->conn->auto_auth = false;
  515. }
  516. wdev->conn->params.ssid = wdev->u.client.ssid;
  517. wdev->conn->params.ssid_len = wdev->u.client.ssid_len;
  518. /* see if we have the bss already */
  519. bss = cfg80211_get_bss(wdev->wiphy, wdev->conn->params.channel,
  520. wdev->conn->params.bssid,
  521. wdev->conn->params.ssid,
  522. wdev->conn->params.ssid_len,
  523. wdev->conn_bss_type,
  524. IEEE80211_PRIVACY(wdev->conn->params.privacy));
  525. if (prev_bssid) {
  526. memcpy(wdev->conn->prev_bssid, prev_bssid, ETH_ALEN);
  527. wdev->conn->prev_bssid_valid = true;
  528. }
  529. /* we're good if we have a matching bss struct */
  530. if (bss) {
  531. enum nl80211_timeout_reason treason;
  532. cfg80211_step_auth_next(wdev->conn, bss);
  533. err = cfg80211_conn_do_work(wdev, &treason);
  534. cfg80211_put_bss(wdev->wiphy, bss);
  535. } else {
  536. /* otherwise we'll need to scan for the AP first */
  537. err = cfg80211_conn_scan(wdev);
  538. /*
  539. * If we can't scan right now, then we need to scan again
  540. * after the current scan finished, since the parameters
  541. * changed (unless we find a good AP anyway).
  542. */
  543. if (err == -EBUSY) {
  544. err = 0;
  545. wdev->conn->state = CFG80211_CONN_SCAN_AGAIN;
  546. }
  547. }
  548. if (err)
  549. cfg80211_sme_free(wdev);
  550. return err;
  551. }
  552. static int cfg80211_sme_disconnect(struct wireless_dev *wdev, u16 reason)
  553. {
  554. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  555. int err;
  556. if (!wdev->conn)
  557. return 0;
  558. if (!rdev->ops->deauth)
  559. return -EOPNOTSUPP;
  560. if (wdev->conn->state == CFG80211_CONN_SCANNING ||
  561. wdev->conn->state == CFG80211_CONN_SCAN_AGAIN) {
  562. err = 0;
  563. goto out;
  564. }
  565. /* wdev->conn->params.bssid must be set if > SCANNING */
  566. err = cfg80211_mlme_deauth(rdev, wdev->netdev,
  567. wdev->conn->params.bssid,
  568. NULL, 0, reason, false);
  569. out:
  570. cfg80211_sme_free(wdev);
  571. return err;
  572. }
  573. /*
  574. * code shared for in-device and software SME
  575. */
  576. static bool cfg80211_is_all_idle(void)
  577. {
  578. struct cfg80211_registered_device *rdev;
  579. struct wireless_dev *wdev;
  580. bool is_all_idle = true;
  581. /*
  582. * All devices must be idle as otherwise if you are actively
  583. * scanning some new beacon hints could be learned and would
  584. * count as new regulatory hints.
  585. * Also if there is any other active beaconing interface we
  586. * need not issue a disconnect hint and reset any info such
  587. * as chan dfs state, etc.
  588. */
  589. for_each_rdev(rdev) {
  590. guard(wiphy)(&rdev->wiphy);
  591. list_for_each_entry(wdev, &rdev->wiphy.wdev_list, list) {
  592. if (wdev->conn || wdev->connected ||
  593. cfg80211_beaconing_iface_active(wdev))
  594. is_all_idle = false;
  595. }
  596. }
  597. return is_all_idle;
  598. }
  599. static void disconnect_work(struct work_struct *work)
  600. {
  601. rtnl_lock();
  602. if (cfg80211_is_all_idle())
  603. regulatory_hint_disconnect();
  604. rtnl_unlock();
  605. }
  606. DECLARE_WORK(cfg80211_disconnect_work, disconnect_work);
  607. static void
  608. cfg80211_connect_result_release_bsses(struct wireless_dev *wdev,
  609. struct cfg80211_connect_resp_params *cr)
  610. {
  611. unsigned int link;
  612. for_each_valid_link(cr, link) {
  613. if (!cr->links[link].bss)
  614. continue;
  615. cfg80211_unhold_bss(bss_from_pub(cr->links[link].bss));
  616. cfg80211_put_bss(wdev->wiphy, cr->links[link].bss);
  617. }
  618. }
  619. /*
  620. * API calls for drivers implementing connect/disconnect and
  621. * SME event handling
  622. */
  623. /* This method must consume bss one way or another */
  624. void __cfg80211_connect_result(struct net_device *dev,
  625. struct cfg80211_connect_resp_params *cr,
  626. bool wextev)
  627. {
  628. struct wireless_dev *wdev = dev->ieee80211_ptr;
  629. const struct element *country_elem = NULL;
  630. const struct element *ssid;
  631. const u8 *country_data;
  632. u8 country_datalen;
  633. #ifdef CONFIG_CFG80211_WEXT
  634. union iwreq_data wrqu;
  635. #endif
  636. unsigned int link;
  637. const u8 *connected_addr;
  638. bool bss_not_found = false;
  639. lockdep_assert_wiphy(wdev->wiphy);
  640. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_STATION &&
  641. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT))
  642. goto out;
  643. if (cr->valid_links) {
  644. if (WARN_ON(!cr->ap_mld_addr))
  645. goto out;
  646. for_each_valid_link(cr, link) {
  647. if (WARN_ON(!cr->links[link].addr))
  648. goto out;
  649. }
  650. if (WARN_ON(wdev->connect_keys))
  651. goto out;
  652. }
  653. wdev->unprot_beacon_reported = 0;
  654. nl80211_send_connect_result(wiphy_to_rdev(wdev->wiphy), dev, cr,
  655. GFP_KERNEL);
  656. connected_addr = cr->valid_links ? cr->ap_mld_addr : cr->links[0].bssid;
  657. #ifdef CONFIG_CFG80211_WEXT
  658. if (wextev && !cr->valid_links) {
  659. if (cr->req_ie && cr->status == WLAN_STATUS_SUCCESS) {
  660. memset(&wrqu, 0, sizeof(wrqu));
  661. wrqu.data.length = cr->req_ie_len;
  662. wireless_send_event(dev, IWEVASSOCREQIE, &wrqu,
  663. cr->req_ie);
  664. }
  665. if (cr->resp_ie && cr->status == WLAN_STATUS_SUCCESS) {
  666. memset(&wrqu, 0, sizeof(wrqu));
  667. wrqu.data.length = cr->resp_ie_len;
  668. wireless_send_event(dev, IWEVASSOCRESPIE, &wrqu,
  669. cr->resp_ie);
  670. }
  671. memset(&wrqu, 0, sizeof(wrqu));
  672. wrqu.ap_addr.sa_family = ARPHRD_ETHER;
  673. if (connected_addr && cr->status == WLAN_STATUS_SUCCESS) {
  674. memcpy(wrqu.ap_addr.sa_data, connected_addr, ETH_ALEN);
  675. memcpy(wdev->wext.prev_bssid, connected_addr, ETH_ALEN);
  676. wdev->wext.prev_bssid_valid = true;
  677. }
  678. wireless_send_event(dev, SIOCGIWAP, &wrqu, NULL);
  679. }
  680. #endif
  681. if (cr->status == WLAN_STATUS_SUCCESS) {
  682. if (!wiphy_to_rdev(wdev->wiphy)->ops->connect) {
  683. for_each_valid_link(cr, link) {
  684. if (WARN_ON_ONCE(!cr->links[link].bss))
  685. break;
  686. }
  687. }
  688. for_each_valid_link(cr, link) {
  689. /* don't do extra lookups for failures */
  690. if (cr->links[link].status != WLAN_STATUS_SUCCESS)
  691. continue;
  692. if (cr->links[link].bss)
  693. continue;
  694. cr->links[link].bss =
  695. cfg80211_get_bss(wdev->wiphy, NULL,
  696. cr->links[link].bssid,
  697. wdev->u.client.ssid,
  698. wdev->u.client.ssid_len,
  699. wdev->conn_bss_type,
  700. IEEE80211_PRIVACY_ANY);
  701. if (!cr->links[link].bss) {
  702. bss_not_found = true;
  703. break;
  704. }
  705. cfg80211_hold_bss(bss_from_pub(cr->links[link].bss));
  706. }
  707. }
  708. cfg80211_wdev_release_bsses(wdev);
  709. if (cr->status != WLAN_STATUS_SUCCESS) {
  710. kfree_sensitive(wdev->connect_keys);
  711. wdev->connect_keys = NULL;
  712. wdev->u.client.ssid_len = 0;
  713. wdev->conn_owner_nlportid = 0;
  714. cfg80211_connect_result_release_bsses(wdev, cr);
  715. cfg80211_sme_free(wdev);
  716. return;
  717. }
  718. if (WARN_ON(bss_not_found)) {
  719. cfg80211_connect_result_release_bsses(wdev, cr);
  720. return;
  721. }
  722. memset(wdev->links, 0, sizeof(wdev->links));
  723. for_each_valid_link(cr, link) {
  724. if (cr->links[link].status == WLAN_STATUS_SUCCESS)
  725. continue;
  726. cr->valid_links &= ~BIT(link);
  727. /* don't require bss pointer for failed links */
  728. if (!cr->links[link].bss)
  729. continue;
  730. cfg80211_unhold_bss(bss_from_pub(cr->links[link].bss));
  731. cfg80211_put_bss(wdev->wiphy, cr->links[link].bss);
  732. }
  733. wdev->valid_links = cr->valid_links;
  734. for_each_valid_link(cr, link)
  735. wdev->links[link].client.current_bss =
  736. bss_from_pub(cr->links[link].bss);
  737. wdev->connected = true;
  738. ether_addr_copy(wdev->u.client.connected_addr, connected_addr);
  739. if (cr->valid_links) {
  740. for_each_valid_link(cr, link)
  741. memcpy(wdev->links[link].addr, cr->links[link].addr,
  742. ETH_ALEN);
  743. }
  744. cfg80211_upload_connect_keys(wdev);
  745. rcu_read_lock();
  746. for_each_valid_link(cr, link) {
  747. country_elem =
  748. ieee80211_bss_get_elem(cr->links[link].bss,
  749. WLAN_EID_COUNTRY);
  750. if (country_elem)
  751. break;
  752. }
  753. if (!country_elem) {
  754. rcu_read_unlock();
  755. return;
  756. }
  757. country_datalen = country_elem->datalen;
  758. country_data = kmemdup(country_elem->data, country_datalen, GFP_ATOMIC);
  759. rcu_read_unlock();
  760. if (!country_data)
  761. return;
  762. regulatory_hint_country_ie(wdev->wiphy,
  763. cr->links[link].bss->channel->band,
  764. country_data, country_datalen);
  765. kfree(country_data);
  766. if (!wdev->u.client.ssid_len) {
  767. rcu_read_lock();
  768. for_each_valid_link(cr, link) {
  769. u32 ssid_len;
  770. ssid = ieee80211_bss_get_elem(cr->links[link].bss,
  771. WLAN_EID_SSID);
  772. if (!ssid || !ssid->datalen)
  773. continue;
  774. ssid_len = min(ssid->datalen, IEEE80211_MAX_SSID_LEN);
  775. memcpy(wdev->u.client.ssid, ssid->data, ssid_len);
  776. wdev->u.client.ssid_len = ssid_len;
  777. break;
  778. }
  779. rcu_read_unlock();
  780. }
  781. return;
  782. out:
  783. for_each_valid_link(cr, link)
  784. cfg80211_put_bss(wdev->wiphy, cr->links[link].bss);
  785. }
  786. static void cfg80211_update_link_bss(struct wireless_dev *wdev,
  787. struct cfg80211_bss **bss)
  788. {
  789. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  790. struct cfg80211_internal_bss *ibss;
  791. if (!*bss)
  792. return;
  793. ibss = bss_from_pub(*bss);
  794. if (list_empty(&ibss->list)) {
  795. struct cfg80211_bss *found = NULL, *tmp = *bss;
  796. found = cfg80211_get_bss(wdev->wiphy, NULL,
  797. (*bss)->bssid,
  798. wdev->u.client.ssid,
  799. wdev->u.client.ssid_len,
  800. wdev->conn_bss_type,
  801. IEEE80211_PRIVACY_ANY);
  802. if (found) {
  803. /* The same BSS is already updated so use it
  804. * instead, as it has latest info.
  805. */
  806. *bss = found;
  807. } else {
  808. /* Update with BSS provided by driver, it will
  809. * be freshly added and ref cnted, we can free
  810. * the old one.
  811. *
  812. * signal_valid can be false, as we are not
  813. * expecting the BSS to be found.
  814. *
  815. * keep the old timestamp to avoid confusion
  816. */
  817. cfg80211_bss_update(rdev, ibss, false,
  818. ibss->ts);
  819. }
  820. cfg80211_put_bss(wdev->wiphy, tmp);
  821. }
  822. }
  823. /* Consumes bss object(s) one way or another */
  824. void cfg80211_connect_done(struct net_device *dev,
  825. struct cfg80211_connect_resp_params *params,
  826. gfp_t gfp)
  827. {
  828. struct wireless_dev *wdev = dev->ieee80211_ptr;
  829. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  830. struct cfg80211_event *ev;
  831. unsigned long flags;
  832. u8 *next;
  833. size_t link_info_size = 0;
  834. unsigned int link;
  835. for_each_valid_link(params, link) {
  836. cfg80211_update_link_bss(wdev, &params->links[link].bss);
  837. link_info_size += params->links[link].bssid ? ETH_ALEN : 0;
  838. link_info_size += params->links[link].addr ? ETH_ALEN : 0;
  839. }
  840. ev = kzalloc(sizeof(*ev) + (params->ap_mld_addr ? ETH_ALEN : 0) +
  841. params->req_ie_len + params->resp_ie_len +
  842. params->fils.kek_len + params->fils.pmk_len +
  843. (params->fils.pmkid ? WLAN_PMKID_LEN : 0) + link_info_size,
  844. gfp);
  845. if (!ev) {
  846. for_each_valid_link(params, link)
  847. cfg80211_put_bss(wdev->wiphy,
  848. params->links[link].bss);
  849. return;
  850. }
  851. ev->type = EVENT_CONNECT_RESULT;
  852. next = ((u8 *)ev) + sizeof(*ev);
  853. if (params->ap_mld_addr) {
  854. ev->cr.ap_mld_addr = next;
  855. memcpy((void *)ev->cr.ap_mld_addr, params->ap_mld_addr,
  856. ETH_ALEN);
  857. next += ETH_ALEN;
  858. }
  859. if (params->req_ie_len) {
  860. ev->cr.req_ie = next;
  861. ev->cr.req_ie_len = params->req_ie_len;
  862. memcpy((void *)ev->cr.req_ie, params->req_ie,
  863. params->req_ie_len);
  864. next += params->req_ie_len;
  865. }
  866. if (params->resp_ie_len) {
  867. ev->cr.resp_ie = next;
  868. ev->cr.resp_ie_len = params->resp_ie_len;
  869. memcpy((void *)ev->cr.resp_ie, params->resp_ie,
  870. params->resp_ie_len);
  871. next += params->resp_ie_len;
  872. }
  873. if (params->fils.kek_len) {
  874. ev->cr.fils.kek = next;
  875. ev->cr.fils.kek_len = params->fils.kek_len;
  876. memcpy((void *)ev->cr.fils.kek, params->fils.kek,
  877. params->fils.kek_len);
  878. next += params->fils.kek_len;
  879. }
  880. if (params->fils.pmk_len) {
  881. ev->cr.fils.pmk = next;
  882. ev->cr.fils.pmk_len = params->fils.pmk_len;
  883. memcpy((void *)ev->cr.fils.pmk, params->fils.pmk,
  884. params->fils.pmk_len);
  885. next += params->fils.pmk_len;
  886. }
  887. if (params->fils.pmkid) {
  888. ev->cr.fils.pmkid = next;
  889. memcpy((void *)ev->cr.fils.pmkid, params->fils.pmkid,
  890. WLAN_PMKID_LEN);
  891. next += WLAN_PMKID_LEN;
  892. }
  893. ev->cr.fils.update_erp_next_seq_num = params->fils.update_erp_next_seq_num;
  894. if (params->fils.update_erp_next_seq_num)
  895. ev->cr.fils.erp_next_seq_num = params->fils.erp_next_seq_num;
  896. ev->cr.valid_links = params->valid_links;
  897. for_each_valid_link(params, link) {
  898. if (params->links[link].bss)
  899. cfg80211_hold_bss(
  900. bss_from_pub(params->links[link].bss));
  901. ev->cr.links[link].bss = params->links[link].bss;
  902. ev->cr.links[link].status = params->links[link].status;
  903. if (params->links[link].addr) {
  904. ev->cr.links[link].addr = next;
  905. memcpy((void *)ev->cr.links[link].addr,
  906. params->links[link].addr,
  907. ETH_ALEN);
  908. next += ETH_ALEN;
  909. }
  910. if (params->links[link].bssid) {
  911. ev->cr.links[link].bssid = next;
  912. memcpy((void *)ev->cr.links[link].bssid,
  913. params->links[link].bssid,
  914. ETH_ALEN);
  915. next += ETH_ALEN;
  916. }
  917. }
  918. ev->cr.status = params->status;
  919. ev->cr.timeout_reason = params->timeout_reason;
  920. spin_lock_irqsave(&wdev->event_lock, flags);
  921. list_add_tail(&ev->list, &wdev->event_list);
  922. spin_unlock_irqrestore(&wdev->event_lock, flags);
  923. queue_work(cfg80211_wq, &rdev->event_work);
  924. }
  925. EXPORT_SYMBOL(cfg80211_connect_done);
  926. /* Consumes bss object one way or another */
  927. void __cfg80211_roamed(struct wireless_dev *wdev,
  928. struct cfg80211_roam_info *info)
  929. {
  930. #ifdef CONFIG_CFG80211_WEXT
  931. union iwreq_data wrqu;
  932. #endif
  933. unsigned int link;
  934. const u8 *connected_addr;
  935. lockdep_assert_wiphy(wdev->wiphy);
  936. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_STATION &&
  937. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT))
  938. goto out;
  939. if (WARN_ON(!wdev->connected))
  940. goto out;
  941. if (info->valid_links) {
  942. if (WARN_ON(!info->ap_mld_addr))
  943. goto out;
  944. for_each_valid_link(info, link) {
  945. if (WARN_ON(!info->links[link].addr))
  946. goto out;
  947. }
  948. }
  949. cfg80211_wdev_release_bsses(wdev);
  950. for_each_valid_link(info, link) {
  951. if (WARN_ON(!info->links[link].bss))
  952. goto out;
  953. }
  954. memset(wdev->links, 0, sizeof(wdev->links));
  955. wdev->valid_links = info->valid_links;
  956. for_each_valid_link(info, link) {
  957. cfg80211_hold_bss(bss_from_pub(info->links[link].bss));
  958. wdev->links[link].client.current_bss =
  959. bss_from_pub(info->links[link].bss);
  960. }
  961. connected_addr = info->valid_links ?
  962. info->ap_mld_addr :
  963. info->links[0].bss->bssid;
  964. ether_addr_copy(wdev->u.client.connected_addr, connected_addr);
  965. if (info->valid_links) {
  966. for_each_valid_link(info, link)
  967. memcpy(wdev->links[link].addr, info->links[link].addr,
  968. ETH_ALEN);
  969. }
  970. wdev->unprot_beacon_reported = 0;
  971. nl80211_send_roamed(wiphy_to_rdev(wdev->wiphy),
  972. wdev->netdev, info, GFP_KERNEL);
  973. #ifdef CONFIG_CFG80211_WEXT
  974. if (!info->valid_links) {
  975. if (info->req_ie) {
  976. memset(&wrqu, 0, sizeof(wrqu));
  977. wrqu.data.length = info->req_ie_len;
  978. wireless_send_event(wdev->netdev, IWEVASSOCREQIE,
  979. &wrqu, info->req_ie);
  980. }
  981. if (info->resp_ie) {
  982. memset(&wrqu, 0, sizeof(wrqu));
  983. wrqu.data.length = info->resp_ie_len;
  984. wireless_send_event(wdev->netdev, IWEVASSOCRESPIE,
  985. &wrqu, info->resp_ie);
  986. }
  987. memset(&wrqu, 0, sizeof(wrqu));
  988. wrqu.ap_addr.sa_family = ARPHRD_ETHER;
  989. memcpy(wrqu.ap_addr.sa_data, connected_addr, ETH_ALEN);
  990. memcpy(wdev->wext.prev_bssid, connected_addr, ETH_ALEN);
  991. wdev->wext.prev_bssid_valid = true;
  992. wireless_send_event(wdev->netdev, SIOCGIWAP, &wrqu, NULL);
  993. }
  994. #endif
  995. return;
  996. out:
  997. for_each_valid_link(info, link)
  998. cfg80211_put_bss(wdev->wiphy, info->links[link].bss);
  999. }
  1000. /* Consumes info->links.bss object(s) one way or another */
  1001. void cfg80211_roamed(struct net_device *dev, struct cfg80211_roam_info *info,
  1002. gfp_t gfp)
  1003. {
  1004. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1005. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  1006. struct cfg80211_event *ev;
  1007. unsigned long flags;
  1008. u8 *next;
  1009. unsigned int link;
  1010. size_t link_info_size = 0;
  1011. bool bss_not_found = false;
  1012. for_each_valid_link(info, link) {
  1013. link_info_size += info->links[link].addr ? ETH_ALEN : 0;
  1014. link_info_size += info->links[link].bssid ? ETH_ALEN : 0;
  1015. if (info->links[link].bss)
  1016. continue;
  1017. info->links[link].bss =
  1018. cfg80211_get_bss(wdev->wiphy,
  1019. info->links[link].channel,
  1020. info->links[link].bssid,
  1021. wdev->u.client.ssid,
  1022. wdev->u.client.ssid_len,
  1023. wdev->conn_bss_type,
  1024. IEEE80211_PRIVACY_ANY);
  1025. if (!info->links[link].bss) {
  1026. bss_not_found = true;
  1027. break;
  1028. }
  1029. }
  1030. if (WARN_ON(bss_not_found))
  1031. goto out;
  1032. ev = kzalloc(sizeof(*ev) + info->req_ie_len + info->resp_ie_len +
  1033. info->fils.kek_len + info->fils.pmk_len +
  1034. (info->fils.pmkid ? WLAN_PMKID_LEN : 0) +
  1035. (info->ap_mld_addr ? ETH_ALEN : 0) + link_info_size, gfp);
  1036. if (!ev)
  1037. goto out;
  1038. ev->type = EVENT_ROAMED;
  1039. next = ((u8 *)ev) + sizeof(*ev);
  1040. if (info->req_ie_len) {
  1041. ev->rm.req_ie = next;
  1042. ev->rm.req_ie_len = info->req_ie_len;
  1043. memcpy((void *)ev->rm.req_ie, info->req_ie, info->req_ie_len);
  1044. next += info->req_ie_len;
  1045. }
  1046. if (info->resp_ie_len) {
  1047. ev->rm.resp_ie = next;
  1048. ev->rm.resp_ie_len = info->resp_ie_len;
  1049. memcpy((void *)ev->rm.resp_ie, info->resp_ie,
  1050. info->resp_ie_len);
  1051. next += info->resp_ie_len;
  1052. }
  1053. if (info->fils.kek_len) {
  1054. ev->rm.fils.kek = next;
  1055. ev->rm.fils.kek_len = info->fils.kek_len;
  1056. memcpy((void *)ev->rm.fils.kek, info->fils.kek,
  1057. info->fils.kek_len);
  1058. next += info->fils.kek_len;
  1059. }
  1060. if (info->fils.pmk_len) {
  1061. ev->rm.fils.pmk = next;
  1062. ev->rm.fils.pmk_len = info->fils.pmk_len;
  1063. memcpy((void *)ev->rm.fils.pmk, info->fils.pmk,
  1064. info->fils.pmk_len);
  1065. next += info->fils.pmk_len;
  1066. }
  1067. if (info->fils.pmkid) {
  1068. ev->rm.fils.pmkid = next;
  1069. memcpy((void *)ev->rm.fils.pmkid, info->fils.pmkid,
  1070. WLAN_PMKID_LEN);
  1071. next += WLAN_PMKID_LEN;
  1072. }
  1073. ev->rm.fils.update_erp_next_seq_num = info->fils.update_erp_next_seq_num;
  1074. if (info->fils.update_erp_next_seq_num)
  1075. ev->rm.fils.erp_next_seq_num = info->fils.erp_next_seq_num;
  1076. if (info->ap_mld_addr) {
  1077. ev->rm.ap_mld_addr = next;
  1078. memcpy((void *)ev->rm.ap_mld_addr, info->ap_mld_addr,
  1079. ETH_ALEN);
  1080. next += ETH_ALEN;
  1081. }
  1082. ev->rm.valid_links = info->valid_links;
  1083. for_each_valid_link(info, link) {
  1084. ev->rm.links[link].bss = info->links[link].bss;
  1085. if (info->links[link].addr) {
  1086. ev->rm.links[link].addr = next;
  1087. memcpy((void *)ev->rm.links[link].addr,
  1088. info->links[link].addr,
  1089. ETH_ALEN);
  1090. next += ETH_ALEN;
  1091. }
  1092. if (info->links[link].bssid) {
  1093. ev->rm.links[link].bssid = next;
  1094. memcpy((void *)ev->rm.links[link].bssid,
  1095. info->links[link].bssid,
  1096. ETH_ALEN);
  1097. next += ETH_ALEN;
  1098. }
  1099. }
  1100. spin_lock_irqsave(&wdev->event_lock, flags);
  1101. list_add_tail(&ev->list, &wdev->event_list);
  1102. spin_unlock_irqrestore(&wdev->event_lock, flags);
  1103. queue_work(cfg80211_wq, &rdev->event_work);
  1104. return;
  1105. out:
  1106. for_each_valid_link(info, link)
  1107. cfg80211_put_bss(wdev->wiphy, info->links[link].bss);
  1108. }
  1109. EXPORT_SYMBOL(cfg80211_roamed);
  1110. void __cfg80211_port_authorized(struct wireless_dev *wdev, const u8 *peer_addr,
  1111. const u8 *td_bitmap, u8 td_bitmap_len)
  1112. {
  1113. lockdep_assert_wiphy(wdev->wiphy);
  1114. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_STATION &&
  1115. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT &&
  1116. wdev->iftype != NL80211_IFTYPE_AP &&
  1117. wdev->iftype != NL80211_IFTYPE_P2P_GO))
  1118. return;
  1119. if (wdev->iftype == NL80211_IFTYPE_STATION ||
  1120. wdev->iftype == NL80211_IFTYPE_P2P_CLIENT) {
  1121. if (WARN_ON(!wdev->connected) ||
  1122. WARN_ON(!ether_addr_equal(wdev->u.client.connected_addr, peer_addr)))
  1123. return;
  1124. }
  1125. nl80211_send_port_authorized(wiphy_to_rdev(wdev->wiphy), wdev->netdev,
  1126. peer_addr, td_bitmap, td_bitmap_len);
  1127. }
  1128. void cfg80211_port_authorized(struct net_device *dev, const u8 *peer_addr,
  1129. const u8 *td_bitmap, u8 td_bitmap_len, gfp_t gfp)
  1130. {
  1131. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1132. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  1133. struct cfg80211_event *ev;
  1134. unsigned long flags;
  1135. if (WARN_ON(!peer_addr))
  1136. return;
  1137. ev = kzalloc(sizeof(*ev) + td_bitmap_len, gfp);
  1138. if (!ev)
  1139. return;
  1140. ev->type = EVENT_PORT_AUTHORIZED;
  1141. memcpy(ev->pa.peer_addr, peer_addr, ETH_ALEN);
  1142. ev->pa.td_bitmap = ((u8 *)ev) + sizeof(*ev);
  1143. ev->pa.td_bitmap_len = td_bitmap_len;
  1144. memcpy((void *)ev->pa.td_bitmap, td_bitmap, td_bitmap_len);
  1145. /*
  1146. * Use the wdev event list so that if there are pending
  1147. * connected/roamed events, they will be reported first.
  1148. */
  1149. spin_lock_irqsave(&wdev->event_lock, flags);
  1150. list_add_tail(&ev->list, &wdev->event_list);
  1151. spin_unlock_irqrestore(&wdev->event_lock, flags);
  1152. queue_work(cfg80211_wq, &rdev->event_work);
  1153. }
  1154. EXPORT_SYMBOL(cfg80211_port_authorized);
  1155. void __cfg80211_disconnected(struct net_device *dev, const u8 *ie,
  1156. size_t ie_len, u16 reason, bool from_ap)
  1157. {
  1158. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1159. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  1160. int i;
  1161. #ifdef CONFIG_CFG80211_WEXT
  1162. union iwreq_data wrqu;
  1163. #endif
  1164. lockdep_assert_wiphy(wdev->wiphy);
  1165. if (WARN_ON(wdev->iftype != NL80211_IFTYPE_STATION &&
  1166. wdev->iftype != NL80211_IFTYPE_P2P_CLIENT))
  1167. return;
  1168. cfg80211_wdev_release_bsses(wdev);
  1169. wdev->valid_links = 0;
  1170. wdev->connected = false;
  1171. wdev->u.client.ssid_len = 0;
  1172. wdev->conn_owner_nlportid = 0;
  1173. kfree_sensitive(wdev->connect_keys);
  1174. wdev->connect_keys = NULL;
  1175. nl80211_send_disconnected(rdev, dev, reason, ie, ie_len, from_ap);
  1176. /* stop critical protocol if supported */
  1177. if (rdev->ops->crit_proto_stop && rdev->crit_proto_nlportid) {
  1178. rdev->crit_proto_nlportid = 0;
  1179. rdev_crit_proto_stop(rdev, wdev);
  1180. }
  1181. /*
  1182. * Delete all the keys ... pairwise keys can't really
  1183. * exist any more anyway, but default keys might.
  1184. */
  1185. if (rdev->ops->del_key) {
  1186. int max_key_idx = 5;
  1187. if (wiphy_ext_feature_isset(
  1188. wdev->wiphy,
  1189. NL80211_EXT_FEATURE_BEACON_PROTECTION) ||
  1190. wiphy_ext_feature_isset(
  1191. wdev->wiphy,
  1192. NL80211_EXT_FEATURE_BEACON_PROTECTION_CLIENT))
  1193. max_key_idx = 7;
  1194. for (i = 0; i <= max_key_idx; i++)
  1195. rdev_del_key(rdev, dev, -1, i, false, NULL);
  1196. }
  1197. rdev_set_qos_map(rdev, dev, NULL);
  1198. #ifdef CONFIG_CFG80211_WEXT
  1199. memset(&wrqu, 0, sizeof(wrqu));
  1200. wrqu.ap_addr.sa_family = ARPHRD_ETHER;
  1201. wireless_send_event(dev, SIOCGIWAP, &wrqu, NULL);
  1202. wdev->wext.connect.ssid_len = 0;
  1203. #endif
  1204. schedule_work(&cfg80211_disconnect_work);
  1205. cfg80211_schedule_channels_check(wdev);
  1206. }
  1207. void cfg80211_disconnected(struct net_device *dev, u16 reason,
  1208. const u8 *ie, size_t ie_len,
  1209. bool locally_generated, gfp_t gfp)
  1210. {
  1211. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1212. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  1213. struct cfg80211_event *ev;
  1214. unsigned long flags;
  1215. ev = kzalloc(sizeof(*ev) + ie_len, gfp);
  1216. if (!ev)
  1217. return;
  1218. ev->type = EVENT_DISCONNECTED;
  1219. ev->dc.ie = ((u8 *)ev) + sizeof(*ev);
  1220. ev->dc.ie_len = ie_len;
  1221. memcpy((void *)ev->dc.ie, ie, ie_len);
  1222. ev->dc.reason = reason;
  1223. ev->dc.locally_generated = locally_generated;
  1224. spin_lock_irqsave(&wdev->event_lock, flags);
  1225. list_add_tail(&ev->list, &wdev->event_list);
  1226. spin_unlock_irqrestore(&wdev->event_lock, flags);
  1227. queue_work(cfg80211_wq, &rdev->event_work);
  1228. }
  1229. EXPORT_SYMBOL(cfg80211_disconnected);
  1230. /*
  1231. * API calls for nl80211/wext compatibility code
  1232. */
  1233. int cfg80211_connect(struct cfg80211_registered_device *rdev,
  1234. struct net_device *dev,
  1235. struct cfg80211_connect_params *connect,
  1236. struct cfg80211_cached_keys *connkeys,
  1237. const u8 *prev_bssid)
  1238. {
  1239. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1240. int err;
  1241. lockdep_assert_wiphy(wdev->wiphy);
  1242. /*
  1243. * If we have an ssid_len, we're trying to connect or are
  1244. * already connected, so reject a new SSID unless it's the
  1245. * same (which is the case for re-association.)
  1246. */
  1247. if (wdev->u.client.ssid_len &&
  1248. (wdev->u.client.ssid_len != connect->ssid_len ||
  1249. memcmp(wdev->u.client.ssid, connect->ssid, wdev->u.client.ssid_len)))
  1250. return -EALREADY;
  1251. /*
  1252. * If connected, reject (re-)association unless prev_bssid
  1253. * matches the current BSSID.
  1254. */
  1255. if (wdev->connected) {
  1256. if (!prev_bssid)
  1257. return -EALREADY;
  1258. if (!ether_addr_equal(prev_bssid,
  1259. wdev->u.client.connected_addr))
  1260. return -ENOTCONN;
  1261. }
  1262. /*
  1263. * Reject if we're in the process of connecting with WEP,
  1264. * this case isn't very interesting and trying to handle
  1265. * it would make the code much more complex.
  1266. */
  1267. if (wdev->connect_keys)
  1268. return -EINPROGRESS;
  1269. cfg80211_oper_and_ht_capa(&connect->ht_capa_mask,
  1270. rdev->wiphy.ht_capa_mod_mask);
  1271. cfg80211_oper_and_vht_capa(&connect->vht_capa_mask,
  1272. rdev->wiphy.vht_capa_mod_mask);
  1273. if (connkeys && connkeys->def >= 0) {
  1274. int idx;
  1275. u32 cipher;
  1276. idx = connkeys->def;
  1277. cipher = connkeys->params[idx].cipher;
  1278. /* If given a WEP key we may need it for shared key auth */
  1279. if (cipher == WLAN_CIPHER_SUITE_WEP40 ||
  1280. cipher == WLAN_CIPHER_SUITE_WEP104) {
  1281. connect->key_idx = idx;
  1282. connect->key = connkeys->params[idx].key;
  1283. connect->key_len = connkeys->params[idx].key_len;
  1284. /*
  1285. * If ciphers are not set (e.g. when going through
  1286. * iwconfig), we have to set them appropriately here.
  1287. */
  1288. if (connect->crypto.cipher_group == 0)
  1289. connect->crypto.cipher_group = cipher;
  1290. if (connect->crypto.n_ciphers_pairwise == 0) {
  1291. connect->crypto.n_ciphers_pairwise = 1;
  1292. connect->crypto.ciphers_pairwise[0] = cipher;
  1293. }
  1294. }
  1295. } else {
  1296. if (WARN_ON(connkeys))
  1297. return -EINVAL;
  1298. /* connect can point to wdev->wext.connect which
  1299. * can hold key data from a previous connection
  1300. */
  1301. connect->key = NULL;
  1302. connect->key_len = 0;
  1303. connect->key_idx = 0;
  1304. }
  1305. wdev->connect_keys = connkeys;
  1306. memcpy(wdev->u.client.ssid, connect->ssid, connect->ssid_len);
  1307. wdev->u.client.ssid_len = connect->ssid_len;
  1308. wdev->conn_bss_type = connect->pbss ? IEEE80211_BSS_TYPE_PBSS :
  1309. IEEE80211_BSS_TYPE_ESS;
  1310. if (!rdev->ops->connect)
  1311. err = cfg80211_sme_connect(wdev, connect, prev_bssid);
  1312. else
  1313. err = rdev_connect(rdev, dev, connect);
  1314. if (err) {
  1315. wdev->connect_keys = NULL;
  1316. /*
  1317. * This could be reassoc getting refused, don't clear
  1318. * ssid_len in that case.
  1319. */
  1320. if (!wdev->connected)
  1321. wdev->u.client.ssid_len = 0;
  1322. return err;
  1323. }
  1324. return 0;
  1325. }
  1326. int cfg80211_disconnect(struct cfg80211_registered_device *rdev,
  1327. struct net_device *dev, u16 reason, bool wextev)
  1328. {
  1329. struct wireless_dev *wdev = dev->ieee80211_ptr;
  1330. int err = 0;
  1331. lockdep_assert_wiphy(wdev->wiphy);
  1332. kfree_sensitive(wdev->connect_keys);
  1333. wdev->connect_keys = NULL;
  1334. wdev->conn_owner_nlportid = 0;
  1335. if (wdev->conn)
  1336. err = cfg80211_sme_disconnect(wdev, reason);
  1337. else if (!rdev->ops->disconnect)
  1338. cfg80211_mlme_down(rdev, dev);
  1339. else if (wdev->u.client.ssid_len)
  1340. err = rdev_disconnect(rdev, dev, reason);
  1341. /*
  1342. * Clear ssid_len unless we actually were fully connected,
  1343. * in which case cfg80211_disconnected() will take care of
  1344. * this later.
  1345. */
  1346. if (!wdev->connected)
  1347. wdev->u.client.ssid_len = 0;
  1348. return err;
  1349. }
  1350. /*
  1351. * Used to clean up after the connection / connection attempt owner socket
  1352. * disconnects
  1353. */
  1354. void cfg80211_autodisconnect_wk(struct work_struct *work)
  1355. {
  1356. struct wireless_dev *wdev =
  1357. container_of(work, struct wireless_dev, disconnect_wk);
  1358. struct cfg80211_registered_device *rdev = wiphy_to_rdev(wdev->wiphy);
  1359. guard(wiphy)(wdev->wiphy);
  1360. if (wdev->conn_owner_nlportid) {
  1361. switch (wdev->iftype) {
  1362. case NL80211_IFTYPE_ADHOC:
  1363. cfg80211_leave_ibss(rdev, wdev->netdev, false);
  1364. break;
  1365. case NL80211_IFTYPE_AP:
  1366. case NL80211_IFTYPE_P2P_GO:
  1367. cfg80211_stop_ap(rdev, wdev->netdev, -1, false);
  1368. break;
  1369. case NL80211_IFTYPE_MESH_POINT:
  1370. cfg80211_leave_mesh(rdev, wdev->netdev);
  1371. break;
  1372. case NL80211_IFTYPE_STATION:
  1373. case NL80211_IFTYPE_P2P_CLIENT:
  1374. /*
  1375. * Use disconnect_bssid if still connecting and
  1376. * ops->disconnect not implemented. Otherwise we can
  1377. * use cfg80211_disconnect.
  1378. */
  1379. if (rdev->ops->disconnect || wdev->connected)
  1380. cfg80211_disconnect(rdev, wdev->netdev,
  1381. WLAN_REASON_DEAUTH_LEAVING,
  1382. true);
  1383. else
  1384. cfg80211_mlme_deauth(rdev, wdev->netdev,
  1385. wdev->disconnect_bssid,
  1386. NULL, 0,
  1387. WLAN_REASON_DEAUTH_LEAVING,
  1388. false);
  1389. break;
  1390. default:
  1391. break;
  1392. }
  1393. }
  1394. }