mesh.c 23 KB

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  1. /*
  2. * Copyright (c) 2008, 2009 open80211s Ltd.
  3. * Authors: Luis Carlos Cobo <luisca@cozybit.com>
  4. * Javier Cardona <javier@cozybit.com>
  5. *
  6. * This program is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License version 2 as
  8. * published by the Free Software Foundation.
  9. */
  10. #include <linux/slab.h>
  11. #include <asm/unaligned.h>
  12. #include "ieee80211_i.h"
  13. #include "mesh.h"
  14. #define TMR_RUNNING_HK 0
  15. #define TMR_RUNNING_MP 1
  16. #define TMR_RUNNING_MPR 2
  17. int mesh_allocated;
  18. static struct kmem_cache *rm_cache;
  19. #ifdef CONFIG_MAC80211_MESH
  20. bool mesh_action_is_path_sel(struct ieee80211_mgmt *mgmt)
  21. {
  22. return (mgmt->u.action.u.mesh_action.action_code ==
  23. WLAN_MESH_ACTION_HWMP_PATH_SELECTION);
  24. }
  25. #else
  26. bool mesh_action_is_path_sel(struct ieee80211_mgmt *mgmt)
  27. { return false; }
  28. #endif
  29. void ieee80211s_init(void)
  30. {
  31. mesh_pathtbl_init();
  32. mesh_allocated = 1;
  33. rm_cache = kmem_cache_create("mesh_rmc", sizeof(struct rmc_entry),
  34. 0, 0, NULL);
  35. }
  36. void ieee80211s_stop(void)
  37. {
  38. mesh_pathtbl_unregister();
  39. kmem_cache_destroy(rm_cache);
  40. }
  41. static void ieee80211_mesh_housekeeping_timer(unsigned long data)
  42. {
  43. struct ieee80211_sub_if_data *sdata = (void *) data;
  44. struct ieee80211_local *local = sdata->local;
  45. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  46. set_bit(MESH_WORK_HOUSEKEEPING, &ifmsh->wrkq_flags);
  47. if (local->quiescing) {
  48. set_bit(TMR_RUNNING_HK, &ifmsh->timers_running);
  49. return;
  50. }
  51. ieee80211_queue_work(&local->hw, &sdata->work);
  52. }
  53. /**
  54. * mesh_matches_local - check if the config of a mesh point matches ours
  55. *
  56. * @sdata: local mesh subif
  57. * @ie: information elements of a management frame from the mesh peer
  58. *
  59. * This function checks if the mesh configuration of a mesh point matches the
  60. * local mesh configuration, i.e. if both nodes belong to the same mesh network.
  61. */
  62. bool mesh_matches_local(struct ieee80211_sub_if_data *sdata,
  63. struct ieee802_11_elems *ie)
  64. {
  65. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  66. struct ieee80211_local *local = sdata->local;
  67. u32 basic_rates = 0;
  68. enum nl80211_channel_type sta_channel_type = NL80211_CHAN_NO_HT;
  69. /*
  70. * As support for each feature is added, check for matching
  71. * - On mesh config capabilities
  72. * - Power Save Support En
  73. * - Sync support enabled
  74. * - Sync support active
  75. * - Sync support required from peer
  76. * - MDA enabled
  77. * - Power management control on fc
  78. */
  79. if (!(ifmsh->mesh_id_len == ie->mesh_id_len &&
  80. memcmp(ifmsh->mesh_id, ie->mesh_id, ie->mesh_id_len) == 0 &&
  81. (ifmsh->mesh_pp_id == ie->mesh_config->meshconf_psel) &&
  82. (ifmsh->mesh_pm_id == ie->mesh_config->meshconf_pmetric) &&
  83. (ifmsh->mesh_cc_id == ie->mesh_config->meshconf_congest) &&
  84. (ifmsh->mesh_sp_id == ie->mesh_config->meshconf_synch) &&
  85. (ifmsh->mesh_auth_id == ie->mesh_config->meshconf_auth)))
  86. goto mismatch;
  87. ieee80211_sta_get_rates(local, ie, local->oper_channel->band,
  88. &basic_rates);
  89. if (sdata->vif.bss_conf.basic_rates != basic_rates)
  90. goto mismatch;
  91. if (ie->ht_operation)
  92. sta_channel_type =
  93. ieee80211_ht_oper_to_channel_type(ie->ht_operation);
  94. /* Disallow HT40+/- mismatch */
  95. if (ie->ht_operation &&
  96. (local->_oper_channel_type == NL80211_CHAN_HT40MINUS ||
  97. local->_oper_channel_type == NL80211_CHAN_HT40PLUS) &&
  98. (sta_channel_type == NL80211_CHAN_HT40MINUS ||
  99. sta_channel_type == NL80211_CHAN_HT40PLUS) &&
  100. local->_oper_channel_type != sta_channel_type)
  101. goto mismatch;
  102. return true;
  103. mismatch:
  104. return false;
  105. }
  106. /**
  107. * mesh_peer_accepts_plinks - check if an mp is willing to establish peer links
  108. *
  109. * @ie: information elements of a management frame from the mesh peer
  110. */
  111. bool mesh_peer_accepts_plinks(struct ieee802_11_elems *ie)
  112. {
  113. return (ie->mesh_config->meshconf_cap &
  114. MESHCONF_CAPAB_ACCEPT_PLINKS) != 0;
  115. }
  116. /**
  117. * mesh_accept_plinks_update - update accepting_plink in local mesh beacons
  118. *
  119. * @sdata: mesh interface in which mesh beacons are going to be updated
  120. *
  121. * Returns: beacon changed flag if the beacon content changed.
  122. */
  123. u32 mesh_accept_plinks_update(struct ieee80211_sub_if_data *sdata)
  124. {
  125. bool free_plinks;
  126. u32 changed = 0;
  127. /* In case mesh_plink_free_count > 0 and mesh_plinktbl_capacity == 0,
  128. * the mesh interface might be able to establish plinks with peers that
  129. * are already on the table but are not on PLINK_ESTAB state. However,
  130. * in general the mesh interface is not accepting peer link requests
  131. * from new peers, and that must be reflected in the beacon
  132. */
  133. free_plinks = mesh_plink_availables(sdata);
  134. if (free_plinks != sdata->u.mesh.accepting_plinks) {
  135. sdata->u.mesh.accepting_plinks = free_plinks;
  136. changed = BSS_CHANGED_BEACON;
  137. }
  138. return changed;
  139. }
  140. int mesh_rmc_init(struct ieee80211_sub_if_data *sdata)
  141. {
  142. int i;
  143. sdata->u.mesh.rmc = kmalloc(sizeof(struct mesh_rmc), GFP_KERNEL);
  144. if (!sdata->u.mesh.rmc)
  145. return -ENOMEM;
  146. sdata->u.mesh.rmc->idx_mask = RMC_BUCKETS - 1;
  147. for (i = 0; i < RMC_BUCKETS; i++)
  148. INIT_LIST_HEAD(&sdata->u.mesh.rmc->bucket[i].list);
  149. return 0;
  150. }
  151. void mesh_rmc_free(struct ieee80211_sub_if_data *sdata)
  152. {
  153. struct mesh_rmc *rmc = sdata->u.mesh.rmc;
  154. struct rmc_entry *p, *n;
  155. int i;
  156. if (!sdata->u.mesh.rmc)
  157. return;
  158. for (i = 0; i < RMC_BUCKETS; i++)
  159. list_for_each_entry_safe(p, n, &rmc->bucket[i].list, list) {
  160. list_del(&p->list);
  161. kmem_cache_free(rm_cache, p);
  162. }
  163. kfree(rmc);
  164. sdata->u.mesh.rmc = NULL;
  165. }
  166. /**
  167. * mesh_rmc_check - Check frame in recent multicast cache and add if absent.
  168. *
  169. * @sa: source address
  170. * @mesh_hdr: mesh_header
  171. *
  172. * Returns: 0 if the frame is not in the cache, nonzero otherwise.
  173. *
  174. * Checks using the source address and the mesh sequence number if we have
  175. * received this frame lately. If the frame is not in the cache, it is added to
  176. * it.
  177. */
  178. int mesh_rmc_check(u8 *sa, struct ieee80211s_hdr *mesh_hdr,
  179. struct ieee80211_sub_if_data *sdata)
  180. {
  181. struct mesh_rmc *rmc = sdata->u.mesh.rmc;
  182. u32 seqnum = 0;
  183. int entries = 0;
  184. u8 idx;
  185. struct rmc_entry *p, *n;
  186. /* Don't care about endianness since only match matters */
  187. memcpy(&seqnum, &mesh_hdr->seqnum, sizeof(mesh_hdr->seqnum));
  188. idx = le32_to_cpu(mesh_hdr->seqnum) & rmc->idx_mask;
  189. list_for_each_entry_safe(p, n, &rmc->bucket[idx].list, list) {
  190. ++entries;
  191. if (time_after(jiffies, p->exp_time) ||
  192. (entries == RMC_QUEUE_MAX_LEN)) {
  193. list_del(&p->list);
  194. kmem_cache_free(rm_cache, p);
  195. --entries;
  196. } else if ((seqnum == p->seqnum) &&
  197. (ether_addr_equal(sa, p->sa)))
  198. return -1;
  199. }
  200. p = kmem_cache_alloc(rm_cache, GFP_ATOMIC);
  201. if (!p)
  202. return 0;
  203. p->seqnum = seqnum;
  204. p->exp_time = jiffies + RMC_TIMEOUT;
  205. memcpy(p->sa, sa, ETH_ALEN);
  206. list_add(&p->list, &rmc->bucket[idx].list);
  207. return 0;
  208. }
  209. int
  210. mesh_add_meshconf_ie(struct sk_buff *skb, struct ieee80211_sub_if_data *sdata)
  211. {
  212. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  213. u8 *pos, neighbors;
  214. u8 meshconf_len = sizeof(struct ieee80211_meshconf_ie);
  215. if (skb_tailroom(skb) < 2 + meshconf_len)
  216. return -ENOMEM;
  217. pos = skb_put(skb, 2 + meshconf_len);
  218. *pos++ = WLAN_EID_MESH_CONFIG;
  219. *pos++ = meshconf_len;
  220. /* Active path selection protocol ID */
  221. *pos++ = ifmsh->mesh_pp_id;
  222. /* Active path selection metric ID */
  223. *pos++ = ifmsh->mesh_pm_id;
  224. /* Congestion control mode identifier */
  225. *pos++ = ifmsh->mesh_cc_id;
  226. /* Synchronization protocol identifier */
  227. *pos++ = ifmsh->mesh_sp_id;
  228. /* Authentication Protocol identifier */
  229. *pos++ = ifmsh->mesh_auth_id;
  230. /* Mesh Formation Info - number of neighbors */
  231. neighbors = atomic_read(&ifmsh->mshstats.estab_plinks);
  232. /* Number of neighbor mesh STAs or 15 whichever is smaller */
  233. neighbors = (neighbors > 15) ? 15 : neighbors;
  234. *pos++ = neighbors << 1;
  235. /* Mesh capability */
  236. *pos = MESHCONF_CAPAB_FORWARDING;
  237. *pos |= ifmsh->accepting_plinks ?
  238. MESHCONF_CAPAB_ACCEPT_PLINKS : 0x00;
  239. *pos++ |= ifmsh->adjusting_tbtt ?
  240. MESHCONF_CAPAB_TBTT_ADJUSTING : 0x00;
  241. *pos++ = 0x00;
  242. return 0;
  243. }
  244. int
  245. mesh_add_meshid_ie(struct sk_buff *skb, struct ieee80211_sub_if_data *sdata)
  246. {
  247. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  248. u8 *pos;
  249. if (skb_tailroom(skb) < 2 + ifmsh->mesh_id_len)
  250. return -ENOMEM;
  251. pos = skb_put(skb, 2 + ifmsh->mesh_id_len);
  252. *pos++ = WLAN_EID_MESH_ID;
  253. *pos++ = ifmsh->mesh_id_len;
  254. if (ifmsh->mesh_id_len)
  255. memcpy(pos, ifmsh->mesh_id, ifmsh->mesh_id_len);
  256. return 0;
  257. }
  258. int
  259. mesh_add_vendor_ies(struct sk_buff *skb, struct ieee80211_sub_if_data *sdata)
  260. {
  261. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  262. u8 offset, len;
  263. const u8 *data;
  264. if (!ifmsh->ie || !ifmsh->ie_len)
  265. return 0;
  266. /* fast-forward to vendor IEs */
  267. offset = ieee80211_ie_split_vendor(ifmsh->ie, ifmsh->ie_len, 0);
  268. if (offset) {
  269. len = ifmsh->ie_len - offset;
  270. data = ifmsh->ie + offset;
  271. if (skb_tailroom(skb) < len)
  272. return -ENOMEM;
  273. memcpy(skb_put(skb, len), data, len);
  274. }
  275. return 0;
  276. }
  277. int
  278. mesh_add_rsn_ie(struct sk_buff *skb, struct ieee80211_sub_if_data *sdata)
  279. {
  280. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  281. u8 len = 0;
  282. const u8 *data;
  283. if (!ifmsh->ie || !ifmsh->ie_len)
  284. return 0;
  285. /* find RSN IE */
  286. data = ifmsh->ie;
  287. while (data < ifmsh->ie + ifmsh->ie_len) {
  288. if (*data == WLAN_EID_RSN) {
  289. len = data[1] + 2;
  290. break;
  291. }
  292. data++;
  293. }
  294. if (len) {
  295. if (skb_tailroom(skb) < len)
  296. return -ENOMEM;
  297. memcpy(skb_put(skb, len), data, len);
  298. }
  299. return 0;
  300. }
  301. int mesh_add_ds_params_ie(struct sk_buff *skb,
  302. struct ieee80211_sub_if_data *sdata)
  303. {
  304. struct ieee80211_local *local = sdata->local;
  305. struct ieee80211_supported_band *sband;
  306. u8 *pos;
  307. if (skb_tailroom(skb) < 3)
  308. return -ENOMEM;
  309. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  310. if (sband->band == IEEE80211_BAND_2GHZ) {
  311. pos = skb_put(skb, 2 + 1);
  312. *pos++ = WLAN_EID_DS_PARAMS;
  313. *pos++ = 1;
  314. *pos++ = ieee80211_frequency_to_channel(local->hw.conf.channel->center_freq);
  315. }
  316. return 0;
  317. }
  318. int mesh_add_ht_cap_ie(struct sk_buff *skb,
  319. struct ieee80211_sub_if_data *sdata)
  320. {
  321. struct ieee80211_local *local = sdata->local;
  322. struct ieee80211_supported_band *sband;
  323. u8 *pos;
  324. sband = local->hw.wiphy->bands[local->oper_channel->band];
  325. if (!sband->ht_cap.ht_supported ||
  326. local->_oper_channel_type == NL80211_CHAN_NO_HT)
  327. return 0;
  328. if (skb_tailroom(skb) < 2 + sizeof(struct ieee80211_ht_cap))
  329. return -ENOMEM;
  330. pos = skb_put(skb, 2 + sizeof(struct ieee80211_ht_cap));
  331. ieee80211_ie_build_ht_cap(pos, &sband->ht_cap, sband->ht_cap.cap);
  332. return 0;
  333. }
  334. int mesh_add_ht_oper_ie(struct sk_buff *skb,
  335. struct ieee80211_sub_if_data *sdata)
  336. {
  337. struct ieee80211_local *local = sdata->local;
  338. struct ieee80211_channel *channel = local->oper_channel;
  339. enum nl80211_channel_type channel_type = local->_oper_channel_type;
  340. struct ieee80211_supported_band *sband =
  341. local->hw.wiphy->bands[channel->band];
  342. struct ieee80211_sta_ht_cap *ht_cap = &sband->ht_cap;
  343. u8 *pos;
  344. if (!ht_cap->ht_supported || channel_type == NL80211_CHAN_NO_HT)
  345. return 0;
  346. if (skb_tailroom(skb) < 2 + sizeof(struct ieee80211_ht_operation))
  347. return -ENOMEM;
  348. pos = skb_put(skb, 2 + sizeof(struct ieee80211_ht_operation));
  349. ieee80211_ie_build_ht_oper(pos, ht_cap, channel, channel_type,
  350. sdata->vif.bss_conf.ht_operation_mode);
  351. return 0;
  352. }
  353. static void ieee80211_mesh_path_timer(unsigned long data)
  354. {
  355. struct ieee80211_sub_if_data *sdata =
  356. (struct ieee80211_sub_if_data *) data;
  357. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  358. struct ieee80211_local *local = sdata->local;
  359. if (local->quiescing) {
  360. set_bit(TMR_RUNNING_MP, &ifmsh->timers_running);
  361. return;
  362. }
  363. ieee80211_queue_work(&local->hw, &sdata->work);
  364. }
  365. static void ieee80211_mesh_path_root_timer(unsigned long data)
  366. {
  367. struct ieee80211_sub_if_data *sdata =
  368. (struct ieee80211_sub_if_data *) data;
  369. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  370. struct ieee80211_local *local = sdata->local;
  371. set_bit(MESH_WORK_ROOT, &ifmsh->wrkq_flags);
  372. if (local->quiescing) {
  373. set_bit(TMR_RUNNING_MPR, &ifmsh->timers_running);
  374. return;
  375. }
  376. ieee80211_queue_work(&local->hw, &sdata->work);
  377. }
  378. void ieee80211_mesh_root_setup(struct ieee80211_if_mesh *ifmsh)
  379. {
  380. if (ifmsh->mshcfg.dot11MeshHWMPRootMode > IEEE80211_ROOTMODE_ROOT)
  381. set_bit(MESH_WORK_ROOT, &ifmsh->wrkq_flags);
  382. else {
  383. clear_bit(MESH_WORK_ROOT, &ifmsh->wrkq_flags);
  384. /* stop running timer */
  385. del_timer_sync(&ifmsh->mesh_path_root_timer);
  386. }
  387. }
  388. /**
  389. * ieee80211_fill_mesh_addresses - fill addresses of a locally originated mesh frame
  390. * @hdr: 802.11 frame header
  391. * @fc: frame control field
  392. * @meshda: destination address in the mesh
  393. * @meshsa: source address address in the mesh. Same as TA, as frame is
  394. * locally originated.
  395. *
  396. * Return the length of the 802.11 (does not include a mesh control header)
  397. */
  398. int ieee80211_fill_mesh_addresses(struct ieee80211_hdr *hdr, __le16 *fc,
  399. const u8 *meshda, const u8 *meshsa)
  400. {
  401. if (is_multicast_ether_addr(meshda)) {
  402. *fc |= cpu_to_le16(IEEE80211_FCTL_FROMDS);
  403. /* DA TA SA */
  404. memcpy(hdr->addr1, meshda, ETH_ALEN);
  405. memcpy(hdr->addr2, meshsa, ETH_ALEN);
  406. memcpy(hdr->addr3, meshsa, ETH_ALEN);
  407. return 24;
  408. } else {
  409. *fc |= cpu_to_le16(IEEE80211_FCTL_FROMDS | IEEE80211_FCTL_TODS);
  410. /* RA TA DA SA */
  411. memset(hdr->addr1, 0, ETH_ALEN); /* RA is resolved later */
  412. memcpy(hdr->addr2, meshsa, ETH_ALEN);
  413. memcpy(hdr->addr3, meshda, ETH_ALEN);
  414. memcpy(hdr->addr4, meshsa, ETH_ALEN);
  415. return 30;
  416. }
  417. }
  418. /**
  419. * ieee80211_new_mesh_header - create a new mesh header
  420. * @meshhdr: uninitialized mesh header
  421. * @sdata: mesh interface to be used
  422. * @addr4or5: 1st address in the ae header, which may correspond to address 4
  423. * (if addr6 is NULL) or address 5 (if addr6 is present). It may
  424. * be NULL.
  425. * @addr6: 2nd address in the ae header, which corresponds to addr6 of the
  426. * mesh frame
  427. *
  428. * Return the header length.
  429. */
  430. int ieee80211_new_mesh_header(struct ieee80211s_hdr *meshhdr,
  431. struct ieee80211_sub_if_data *sdata, char *addr4or5,
  432. char *addr6)
  433. {
  434. int aelen = 0;
  435. BUG_ON(!addr4or5 && addr6);
  436. memset(meshhdr, 0, sizeof(*meshhdr));
  437. meshhdr->ttl = sdata->u.mesh.mshcfg.dot11MeshTTL;
  438. put_unaligned(cpu_to_le32(sdata->u.mesh.mesh_seqnum), &meshhdr->seqnum);
  439. sdata->u.mesh.mesh_seqnum++;
  440. if (addr4or5 && !addr6) {
  441. meshhdr->flags |= MESH_FLAGS_AE_A4;
  442. aelen += ETH_ALEN;
  443. memcpy(meshhdr->eaddr1, addr4or5, ETH_ALEN);
  444. } else if (addr4or5 && addr6) {
  445. meshhdr->flags |= MESH_FLAGS_AE_A5_A6;
  446. aelen += 2 * ETH_ALEN;
  447. memcpy(meshhdr->eaddr1, addr4or5, ETH_ALEN);
  448. memcpy(meshhdr->eaddr2, addr6, ETH_ALEN);
  449. }
  450. return 6 + aelen;
  451. }
  452. static void ieee80211_mesh_housekeeping(struct ieee80211_sub_if_data *sdata,
  453. struct ieee80211_if_mesh *ifmsh)
  454. {
  455. u32 changed;
  456. ieee80211_sta_expire(sdata, IEEE80211_MESH_PEER_INACTIVITY_LIMIT);
  457. mesh_path_expire(sdata);
  458. changed = mesh_accept_plinks_update(sdata);
  459. ieee80211_bss_info_change_notify(sdata, changed);
  460. mod_timer(&ifmsh->housekeeping_timer,
  461. round_jiffies(jiffies + IEEE80211_MESH_HOUSEKEEPING_INTERVAL));
  462. }
  463. static void ieee80211_mesh_rootpath(struct ieee80211_sub_if_data *sdata)
  464. {
  465. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  466. u32 interval;
  467. mesh_path_tx_root_frame(sdata);
  468. if (ifmsh->mshcfg.dot11MeshHWMPRootMode == IEEE80211_PROACTIVE_RANN)
  469. interval = ifmsh->mshcfg.dot11MeshHWMPRannInterval;
  470. else
  471. interval = ifmsh->mshcfg.dot11MeshHWMProotInterval;
  472. mod_timer(&ifmsh->mesh_path_root_timer,
  473. round_jiffies(TU_TO_EXP_TIME(interval)));
  474. }
  475. #ifdef CONFIG_PM
  476. void ieee80211_mesh_quiesce(struct ieee80211_sub_if_data *sdata)
  477. {
  478. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  479. /* use atomic bitops in case all timers fire at the same time */
  480. if (del_timer_sync(&ifmsh->housekeeping_timer))
  481. set_bit(TMR_RUNNING_HK, &ifmsh->timers_running);
  482. if (del_timer_sync(&ifmsh->mesh_path_timer))
  483. set_bit(TMR_RUNNING_MP, &ifmsh->timers_running);
  484. if (del_timer_sync(&ifmsh->mesh_path_root_timer))
  485. set_bit(TMR_RUNNING_MPR, &ifmsh->timers_running);
  486. }
  487. void ieee80211_mesh_restart(struct ieee80211_sub_if_data *sdata)
  488. {
  489. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  490. if (test_and_clear_bit(TMR_RUNNING_HK, &ifmsh->timers_running))
  491. add_timer(&ifmsh->housekeeping_timer);
  492. if (test_and_clear_bit(TMR_RUNNING_MP, &ifmsh->timers_running))
  493. add_timer(&ifmsh->mesh_path_timer);
  494. if (test_and_clear_bit(TMR_RUNNING_MPR, &ifmsh->timers_running))
  495. add_timer(&ifmsh->mesh_path_root_timer);
  496. ieee80211_mesh_root_setup(ifmsh);
  497. }
  498. #endif
  499. void ieee80211_start_mesh(struct ieee80211_sub_if_data *sdata)
  500. {
  501. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  502. struct ieee80211_local *local = sdata->local;
  503. local->fif_other_bss++;
  504. /* mesh ifaces must set allmulti to forward mcast traffic */
  505. atomic_inc(&local->iff_allmultis);
  506. ieee80211_configure_filter(local);
  507. ifmsh->mesh_cc_id = 0; /* Disabled */
  508. ifmsh->mesh_auth_id = 0; /* Disabled */
  509. /* register sync ops from extensible synchronization framework */
  510. ifmsh->sync_ops = ieee80211_mesh_sync_ops_get(ifmsh->mesh_sp_id);
  511. ifmsh->adjusting_tbtt = false;
  512. ifmsh->sync_offset_clockdrift_max = 0;
  513. set_bit(MESH_WORK_HOUSEKEEPING, &ifmsh->wrkq_flags);
  514. ieee80211_mesh_root_setup(ifmsh);
  515. ieee80211_queue_work(&local->hw, &sdata->work);
  516. sdata->vif.bss_conf.ht_operation_mode =
  517. ifmsh->mshcfg.ht_opmode;
  518. sdata->vif.bss_conf.beacon_int = MESH_DEFAULT_BEACON_INTERVAL;
  519. sdata->vif.bss_conf.basic_rates =
  520. ieee80211_mandatory_rates(sdata->local,
  521. sdata->local->hw.conf.channel->band);
  522. ieee80211_bss_info_change_notify(sdata, BSS_CHANGED_BEACON |
  523. BSS_CHANGED_BEACON_ENABLED |
  524. BSS_CHANGED_HT |
  525. BSS_CHANGED_BASIC_RATES |
  526. BSS_CHANGED_BEACON_INT);
  527. }
  528. void ieee80211_stop_mesh(struct ieee80211_sub_if_data *sdata)
  529. {
  530. struct ieee80211_local *local = sdata->local;
  531. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  532. ifmsh->mesh_id_len = 0;
  533. ieee80211_bss_info_change_notify(sdata, BSS_CHANGED_BEACON_ENABLED);
  534. sta_info_flush(local, NULL);
  535. del_timer_sync(&sdata->u.mesh.housekeeping_timer);
  536. del_timer_sync(&sdata->u.mesh.mesh_path_root_timer);
  537. del_timer_sync(&sdata->u.mesh.mesh_path_timer);
  538. /*
  539. * If the timer fired while we waited for it, it will have
  540. * requeued the work. Now the work will be running again
  541. * but will not rearm the timer again because it checks
  542. * whether the interface is running, which, at this point,
  543. * it no longer is.
  544. */
  545. cancel_work_sync(&sdata->work);
  546. local->fif_other_bss--;
  547. atomic_dec(&local->iff_allmultis);
  548. ieee80211_configure_filter(local);
  549. sdata->u.mesh.timers_running = 0;
  550. }
  551. static void ieee80211_mesh_rx_bcn_presp(struct ieee80211_sub_if_data *sdata,
  552. u16 stype,
  553. struct ieee80211_mgmt *mgmt,
  554. size_t len,
  555. struct ieee80211_rx_status *rx_status)
  556. {
  557. struct ieee80211_local *local = sdata->local;
  558. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  559. struct ieee802_11_elems elems;
  560. struct ieee80211_channel *channel;
  561. size_t baselen;
  562. int freq;
  563. enum ieee80211_band band = rx_status->band;
  564. /* ignore ProbeResp to foreign address */
  565. if (stype == IEEE80211_STYPE_PROBE_RESP &&
  566. !ether_addr_equal(mgmt->da, sdata->vif.addr))
  567. return;
  568. baselen = (u8 *) mgmt->u.probe_resp.variable - (u8 *) mgmt;
  569. if (baselen > len)
  570. return;
  571. ieee802_11_parse_elems(mgmt->u.probe_resp.variable, len - baselen,
  572. &elems);
  573. /* ignore beacons from secure mesh peers if our security is off */
  574. if (elems.rsn_len && sdata->u.mesh.security == IEEE80211_MESH_SEC_NONE)
  575. return;
  576. if (elems.ds_params && elems.ds_params_len == 1)
  577. freq = ieee80211_channel_to_frequency(elems.ds_params[0], band);
  578. else
  579. freq = rx_status->freq;
  580. channel = ieee80211_get_channel(local->hw.wiphy, freq);
  581. if (!channel || channel->flags & IEEE80211_CHAN_DISABLED)
  582. return;
  583. if (elems.mesh_id && elems.mesh_config &&
  584. mesh_matches_local(sdata, &elems))
  585. mesh_neighbour_update(sdata, mgmt->sa, &elems);
  586. if (ifmsh->sync_ops)
  587. ifmsh->sync_ops->rx_bcn_presp(sdata,
  588. stype, mgmt, &elems, rx_status);
  589. }
  590. static void ieee80211_mesh_rx_mgmt_action(struct ieee80211_sub_if_data *sdata,
  591. struct ieee80211_mgmt *mgmt,
  592. size_t len,
  593. struct ieee80211_rx_status *rx_status)
  594. {
  595. switch (mgmt->u.action.category) {
  596. case WLAN_CATEGORY_SELF_PROTECTED:
  597. switch (mgmt->u.action.u.self_prot.action_code) {
  598. case WLAN_SP_MESH_PEERING_OPEN:
  599. case WLAN_SP_MESH_PEERING_CLOSE:
  600. case WLAN_SP_MESH_PEERING_CONFIRM:
  601. mesh_rx_plink_frame(sdata, mgmt, len, rx_status);
  602. break;
  603. }
  604. break;
  605. case WLAN_CATEGORY_MESH_ACTION:
  606. if (mesh_action_is_path_sel(mgmt))
  607. mesh_rx_path_sel_frame(sdata, mgmt, len);
  608. break;
  609. }
  610. }
  611. void ieee80211_mesh_rx_queued_mgmt(struct ieee80211_sub_if_data *sdata,
  612. struct sk_buff *skb)
  613. {
  614. struct ieee80211_rx_status *rx_status;
  615. struct ieee80211_mgmt *mgmt;
  616. u16 stype;
  617. rx_status = IEEE80211_SKB_RXCB(skb);
  618. mgmt = (struct ieee80211_mgmt *) skb->data;
  619. stype = le16_to_cpu(mgmt->frame_control) & IEEE80211_FCTL_STYPE;
  620. switch (stype) {
  621. case IEEE80211_STYPE_PROBE_RESP:
  622. case IEEE80211_STYPE_BEACON:
  623. ieee80211_mesh_rx_bcn_presp(sdata, stype, mgmt, skb->len,
  624. rx_status);
  625. break;
  626. case IEEE80211_STYPE_ACTION:
  627. ieee80211_mesh_rx_mgmt_action(sdata, mgmt, skb->len, rx_status);
  628. break;
  629. }
  630. }
  631. void ieee80211_mesh_work(struct ieee80211_sub_if_data *sdata)
  632. {
  633. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  634. if (ifmsh->preq_queue_len &&
  635. time_after(jiffies,
  636. ifmsh->last_preq + msecs_to_jiffies(ifmsh->mshcfg.dot11MeshHWMPpreqMinInterval)))
  637. mesh_path_start_discovery(sdata);
  638. if (test_and_clear_bit(MESH_WORK_GROW_MPATH_TABLE, &ifmsh->wrkq_flags))
  639. mesh_mpath_table_grow();
  640. if (test_and_clear_bit(MESH_WORK_GROW_MPP_TABLE, &ifmsh->wrkq_flags))
  641. mesh_mpp_table_grow();
  642. if (test_and_clear_bit(MESH_WORK_HOUSEKEEPING, &ifmsh->wrkq_flags))
  643. ieee80211_mesh_housekeeping(sdata, ifmsh);
  644. if (test_and_clear_bit(MESH_WORK_ROOT, &ifmsh->wrkq_flags))
  645. ieee80211_mesh_rootpath(sdata);
  646. if (test_and_clear_bit(MESH_WORK_DRIFT_ADJUST, &ifmsh->wrkq_flags))
  647. mesh_sync_adjust_tbtt(sdata);
  648. }
  649. void ieee80211_mesh_notify_scan_completed(struct ieee80211_local *local)
  650. {
  651. struct ieee80211_sub_if_data *sdata;
  652. rcu_read_lock();
  653. list_for_each_entry_rcu(sdata, &local->interfaces, list)
  654. if (ieee80211_vif_is_mesh(&sdata->vif))
  655. ieee80211_queue_work(&local->hw, &sdata->work);
  656. rcu_read_unlock();
  657. }
  658. void ieee80211_mesh_init_sdata(struct ieee80211_sub_if_data *sdata)
  659. {
  660. struct ieee80211_if_mesh *ifmsh = &sdata->u.mesh;
  661. setup_timer(&ifmsh->housekeeping_timer,
  662. ieee80211_mesh_housekeeping_timer,
  663. (unsigned long) sdata);
  664. ifmsh->accepting_plinks = true;
  665. ifmsh->preq_id = 0;
  666. ifmsh->sn = 0;
  667. ifmsh->num_gates = 0;
  668. atomic_set(&ifmsh->mpaths, 0);
  669. mesh_rmc_init(sdata);
  670. ifmsh->last_preq = jiffies;
  671. ifmsh->next_perr = jiffies;
  672. /* Allocate all mesh structures when creating the first mesh interface. */
  673. if (!mesh_allocated)
  674. ieee80211s_init();
  675. setup_timer(&ifmsh->mesh_path_timer,
  676. ieee80211_mesh_path_timer,
  677. (unsigned long) sdata);
  678. setup_timer(&ifmsh->mesh_path_root_timer,
  679. ieee80211_mesh_path_root_timer,
  680. (unsigned long) sdata);
  681. INIT_LIST_HEAD(&ifmsh->preq_queue.list);
  682. spin_lock_init(&ifmsh->mesh_preq_queue_lock);
  683. spin_lock_init(&ifmsh->sync_offset_lock);
  684. }