mesh_hwmp.c 24 KB

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  1. /*
  2. * Copyright (c) 2008 open80211s Ltd.
  3. * Author: Luis Carlos Cobo <luisca@cozybit.com>
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License version 2 as
  7. * published by the Free Software Foundation.
  8. */
  9. #include <asm/unaligned.h>
  10. #include "mesh.h"
  11. #define TEST_FRAME_LEN 8192
  12. #define MAX_METRIC 0xffffffff
  13. #define ARITH_SHIFT 8
  14. /* Number of frames buffered per destination for unresolved destinations */
  15. #define MESH_FRAME_QUEUE_LEN 10
  16. #define MAX_PREQ_QUEUE_LEN 64
  17. /* Destination only */
  18. #define MP_F_DO 0x1
  19. /* Reply and forward */
  20. #define MP_F_RF 0x2
  21. static inline u32 u32_field_get(u8 *preq_elem, int offset, bool ae)
  22. {
  23. if (ae)
  24. offset += 6;
  25. return le32_to_cpu(get_unaligned((__le32 *) (preq_elem + offset)));
  26. }
  27. /* HWMP IE processing macros */
  28. #define AE_F (1<<6)
  29. #define AE_F_SET(x) (*x & AE_F)
  30. #define PREQ_IE_FLAGS(x) (*(x))
  31. #define PREQ_IE_HOPCOUNT(x) (*(x + 1))
  32. #define PREQ_IE_TTL(x) (*(x + 2))
  33. #define PREQ_IE_PREQ_ID(x) u32_field_get(x, 3, 0)
  34. #define PREQ_IE_ORIG_ADDR(x) (x + 7)
  35. #define PREQ_IE_ORIG_DSN(x) u32_field_get(x, 13, 0);
  36. #define PREQ_IE_LIFETIME(x) u32_field_get(x, 17, AE_F_SET(x));
  37. #define PREQ_IE_METRIC(x) u32_field_get(x, 21, AE_F_SET(x));
  38. #define PREQ_IE_DST_F(x) (*(AE_F_SET(x) ? x + 32 : x + 26))
  39. #define PREQ_IE_DST_ADDR(x) (AE_F_SET(x) ? x + 33 : x + 27)
  40. #define PREQ_IE_DST_DSN(x) u32_field_get(x, 33, AE_F_SET(x));
  41. #define PREP_IE_FLAGS(x) PREQ_IE_FLAGS(x)
  42. #define PREP_IE_HOPCOUNT(x) PREQ_IE_HOPCOUNT(x)
  43. #define PREP_IE_TTL(x) PREQ_IE_TTL(x)
  44. #define PREP_IE_ORIG_ADDR(x) (x + 3)
  45. #define PREP_IE_ORIG_DSN(x) u32_field_get(x, 9, 0);
  46. #define PREP_IE_LIFETIME(x) u32_field_get(x, 13, AE_F_SET(x));
  47. #define PREP_IE_METRIC(x) u32_field_get(x, 17, AE_F_SET(x));
  48. #define PREP_IE_DST_ADDR(x) (AE_F_SET(x) ? x + 27 : x + 21)
  49. #define PREP_IE_DST_DSN(x) u32_field_get(x, 27, AE_F_SET(x));
  50. #define PERR_IE_DST_ADDR(x) (x + 2)
  51. #define PERR_IE_DST_DSN(x) u32_field_get(x, 8, 0);
  52. #define TU_TO_EXP_TIME(x) (jiffies + msecs_to_jiffies(x * 1024 / 1000))
  53. #define MSEC_TO_TU(x) (x*1000/1024)
  54. #define DSN_GT(x, y) ((long) (y) - (long) (x) < 0)
  55. #define DSN_LT(x, y) ((long) (x) - (long) (y) < 0)
  56. #define net_traversal_jiffies(s) \
  57. msecs_to_jiffies(s->u.sta.mshcfg.dot11MeshHWMPnetDiameterTraversalTime)
  58. #define default_lifetime(s) \
  59. MSEC_TO_TU(s->u.sta.mshcfg.dot11MeshHWMPactivePathTimeout)
  60. #define min_preq_int_jiff(s) \
  61. (msecs_to_jiffies(s->u.sta.mshcfg.dot11MeshHWMPpreqMinInterval))
  62. #define max_preq_retries(s) (s->u.sta.mshcfg.dot11MeshHWMPmaxPREQretries)
  63. #define disc_timeout_jiff(s) \
  64. msecs_to_jiffies(sdata->u.sta.mshcfg.min_discovery_timeout)
  65. enum mpath_frame_type {
  66. MPATH_PREQ = 0,
  67. MPATH_PREP,
  68. MPATH_PERR
  69. };
  70. static int mesh_path_sel_frame_tx(enum mpath_frame_type action, u8 flags,
  71. u8 *orig_addr, __le32 orig_dsn, u8 dst_flags, u8 *dst,
  72. __le32 dst_dsn, u8 *da, u8 hop_count, u8 ttl, __le32 lifetime,
  73. __le32 metric, __le32 preq_id, struct net_device *dev)
  74. {
  75. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  76. struct sk_buff *skb = dev_alloc_skb(local->hw.extra_tx_headroom + 400);
  77. struct ieee80211_mgmt *mgmt;
  78. u8 *pos;
  79. int ie_len;
  80. if (!skb)
  81. return -1;
  82. skb_reserve(skb, local->hw.extra_tx_headroom);
  83. /* 25 is the size of the common mgmt part (24) plus the size of the
  84. * common action part (1)
  85. */
  86. mgmt = (struct ieee80211_mgmt *)
  87. skb_put(skb, 25 + sizeof(mgmt->u.action.u.mesh_action));
  88. memset(mgmt, 0, 25 + sizeof(mgmt->u.action.u.mesh_action));
  89. mgmt->frame_control = IEEE80211_FC(IEEE80211_FTYPE_MGMT,
  90. IEEE80211_STYPE_ACTION);
  91. memcpy(mgmt->da, da, ETH_ALEN);
  92. memcpy(mgmt->sa, dev->dev_addr, ETH_ALEN);
  93. /* BSSID is left zeroed, wildcard value */
  94. mgmt->u.action.category = MESH_PATH_SEL_CATEGORY;
  95. mgmt->u.action.u.mesh_action.action_code = action;
  96. switch (action) {
  97. case MPATH_PREQ:
  98. ie_len = 37;
  99. pos = skb_put(skb, 2 + ie_len);
  100. *pos++ = WLAN_EID_PREQ;
  101. break;
  102. case MPATH_PREP:
  103. ie_len = 31;
  104. pos = skb_put(skb, 2 + ie_len);
  105. *pos++ = WLAN_EID_PREP;
  106. break;
  107. default:
  108. kfree(skb);
  109. return -ENOTSUPP;
  110. break;
  111. }
  112. *pos++ = ie_len;
  113. *pos++ = flags;
  114. *pos++ = hop_count;
  115. *pos++ = ttl;
  116. if (action == MPATH_PREQ) {
  117. memcpy(pos, &preq_id, 4);
  118. pos += 4;
  119. }
  120. memcpy(pos, orig_addr, ETH_ALEN);
  121. pos += ETH_ALEN;
  122. memcpy(pos, &orig_dsn, 4);
  123. pos += 4;
  124. memcpy(pos, &lifetime, 4);
  125. pos += 4;
  126. memcpy(pos, &metric, 4);
  127. pos += 4;
  128. if (action == MPATH_PREQ) {
  129. /* destination count */
  130. *pos++ = 1;
  131. *pos++ = dst_flags;
  132. }
  133. memcpy(pos, dst, ETH_ALEN);
  134. pos += ETH_ALEN;
  135. memcpy(pos, &dst_dsn, 4);
  136. ieee80211_sta_tx(dev, skb, 0);
  137. return 0;
  138. }
  139. /**
  140. * mesh_send_path error - Sends a PERR mesh management frame
  141. *
  142. * @dst: broken destination
  143. * @dst_dsn: dsn of the broken destination
  144. * @ra: node this frame is addressed to
  145. */
  146. int mesh_path_error_tx(u8 *dst, __le32 dst_dsn, u8 *ra,
  147. struct net_device *dev)
  148. {
  149. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  150. struct sk_buff *skb = dev_alloc_skb(local->hw.extra_tx_headroom + 400);
  151. struct ieee80211_mgmt *mgmt;
  152. u8 *pos;
  153. int ie_len;
  154. if (!skb)
  155. return -1;
  156. skb_reserve(skb, local->hw.extra_tx_headroom);
  157. /* 25 is the size of the common mgmt part (24) plus the size of the
  158. * common action part (1)
  159. */
  160. mgmt = (struct ieee80211_mgmt *)
  161. skb_put(skb, 25 + sizeof(mgmt->u.action.u.mesh_action));
  162. memset(mgmt, 0, 25 + sizeof(mgmt->u.action.u.mesh_action));
  163. mgmt->frame_control = IEEE80211_FC(IEEE80211_FTYPE_MGMT,
  164. IEEE80211_STYPE_ACTION);
  165. memcpy(mgmt->da, ra, ETH_ALEN);
  166. memcpy(mgmt->sa, dev->dev_addr, ETH_ALEN);
  167. /* BSSID is left zeroed, wildcard value */
  168. mgmt->u.action.category = MESH_PATH_SEL_CATEGORY;
  169. mgmt->u.action.u.mesh_action.action_code = MPATH_PERR;
  170. ie_len = 12;
  171. pos = skb_put(skb, 2 + ie_len);
  172. *pos++ = WLAN_EID_PERR;
  173. *pos++ = ie_len;
  174. /* mode flags, reserved */
  175. *pos++ = 0;
  176. /* number of destinations */
  177. *pos++ = 1;
  178. memcpy(pos, dst, ETH_ALEN);
  179. pos += ETH_ALEN;
  180. memcpy(pos, &dst_dsn, 4);
  181. ieee80211_sta_tx(dev, skb, 0);
  182. return 0;
  183. }
  184. static u32 airtime_link_metric_get(struct ieee80211_local *local,
  185. struct sta_info *sta)
  186. {
  187. struct ieee80211_supported_band *sband;
  188. /* This should be adjusted for each device */
  189. int device_constant = 1 << ARITH_SHIFT;
  190. int test_frame_len = TEST_FRAME_LEN << ARITH_SHIFT;
  191. int s_unit = 1 << ARITH_SHIFT;
  192. int rate, err;
  193. u32 tx_time, estimated_retx;
  194. u64 result;
  195. sband = local->hw.wiphy->bands[local->hw.conf.channel->band];
  196. if (sta->fail_avg >= 100)
  197. return MAX_METRIC;
  198. err = (sta->fail_avg << ARITH_SHIFT) / 100;
  199. /* bitrate is in units of 100 Kbps, while we need rate in units of
  200. * 1Mbps. This will be corrected on tx_time computation.
  201. */
  202. rate = sband->bitrates[sta->txrate_idx].bitrate;
  203. tx_time = (device_constant + 10 * test_frame_len / rate);
  204. estimated_retx = ((1 << (2 * ARITH_SHIFT)) / (s_unit - err));
  205. result = (tx_time * estimated_retx) >> (2 * ARITH_SHIFT) ;
  206. return (u32)result;
  207. }
  208. /**
  209. * hwmp_route_info_get - Update routing info to originator and transmitter
  210. *
  211. * @dev: local mesh interface
  212. * @mgmt: mesh management frame
  213. * @hwmp_ie: hwmp information element (PREP or PREQ)
  214. *
  215. * This function updates the path routing information to the originator and the
  216. * transmitter of a HWMP PREQ or PREP fram.
  217. *
  218. * Returns: metric to frame originator or 0 if the frame should not be further
  219. * processed
  220. *
  221. * Notes: this function is the only place (besides user-provided info) where
  222. * path routing information is updated.
  223. */
  224. static u32 hwmp_route_info_get(struct net_device *dev,
  225. struct ieee80211_mgmt *mgmt,
  226. u8 *hwmp_ie)
  227. {
  228. struct ieee80211_local *local = wdev_priv(dev->ieee80211_ptr);
  229. struct mesh_path *mpath;
  230. struct sta_info *sta;
  231. bool fresh_info;
  232. u8 *orig_addr, *ta;
  233. u32 orig_dsn, orig_metric;
  234. unsigned long orig_lifetime, exp_time;
  235. u32 last_hop_metric, new_metric;
  236. bool process = true;
  237. u8 action = mgmt->u.action.u.mesh_action.action_code;
  238. rcu_read_lock();
  239. sta = sta_info_get(local, mgmt->sa);
  240. if (!sta) {
  241. rcu_read_unlock();
  242. return 0;
  243. }
  244. last_hop_metric = airtime_link_metric_get(local, sta);
  245. /* Update and check originator routing info */
  246. fresh_info = true;
  247. switch (action) {
  248. case MPATH_PREQ:
  249. orig_addr = PREQ_IE_ORIG_ADDR(hwmp_ie);
  250. orig_dsn = PREQ_IE_ORIG_DSN(hwmp_ie);
  251. orig_lifetime = PREQ_IE_LIFETIME(hwmp_ie);
  252. orig_metric = PREQ_IE_METRIC(hwmp_ie);
  253. break;
  254. case MPATH_PREP:
  255. /* Originator here refers to the MP that was the destination in
  256. * the Path Request. The draft refers to that MP as the
  257. * destination address, even though usually it is the origin of
  258. * the PREP frame. We divert from the nomenclature in the draft
  259. * so that we can easily use a single function to gather path
  260. * information from both PREQ and PREP frames.
  261. */
  262. orig_addr = PREP_IE_ORIG_ADDR(hwmp_ie);
  263. orig_dsn = PREP_IE_ORIG_DSN(hwmp_ie);
  264. orig_lifetime = PREP_IE_LIFETIME(hwmp_ie);
  265. orig_metric = PREP_IE_METRIC(hwmp_ie);
  266. break;
  267. default:
  268. rcu_read_unlock();
  269. return 0;
  270. }
  271. new_metric = orig_metric + last_hop_metric;
  272. if (new_metric < orig_metric)
  273. new_metric = MAX_METRIC;
  274. exp_time = TU_TO_EXP_TIME(orig_lifetime);
  275. if (memcmp(orig_addr, dev->dev_addr, ETH_ALEN) == 0) {
  276. /* This MP is the originator, we are not interested in this
  277. * frame, except for updating transmitter's path info.
  278. */
  279. process = false;
  280. fresh_info = false;
  281. } else {
  282. mpath = mesh_path_lookup(orig_addr, dev);
  283. if (mpath) {
  284. spin_lock_bh(&mpath->state_lock);
  285. if (mpath->flags & MESH_PATH_FIXED)
  286. fresh_info = false;
  287. else if ((mpath->flags & MESH_PATH_ACTIVE) &&
  288. (mpath->flags & MESH_PATH_DSN_VALID)) {
  289. if (DSN_GT(mpath->dsn, orig_dsn) ||
  290. (mpath->dsn == orig_dsn &&
  291. action == MPATH_PREQ &&
  292. new_metric > mpath->metric)) {
  293. process = false;
  294. fresh_info = false;
  295. }
  296. }
  297. } else {
  298. mesh_path_add(orig_addr, dev);
  299. mpath = mesh_path_lookup(orig_addr, dev);
  300. if (!mpath) {
  301. rcu_read_unlock();
  302. return 0;
  303. }
  304. spin_lock_bh(&mpath->state_lock);
  305. }
  306. if (fresh_info) {
  307. mesh_path_assign_nexthop(mpath, sta);
  308. mpath->flags |= MESH_PATH_DSN_VALID;
  309. mpath->metric = new_metric;
  310. mpath->dsn = orig_dsn;
  311. mpath->exp_time = time_after(mpath->exp_time, exp_time)
  312. ? mpath->exp_time : exp_time;
  313. mesh_path_activate(mpath);
  314. spin_unlock_bh(&mpath->state_lock);
  315. mesh_path_tx_pending(mpath);
  316. /* draft says preq_id should be saved to, but there does
  317. * not seem to be any use for it, skipping by now
  318. */
  319. } else
  320. spin_unlock_bh(&mpath->state_lock);
  321. }
  322. /* Update and check transmitter routing info */
  323. ta = mgmt->sa;
  324. if (memcmp(orig_addr, ta, ETH_ALEN) == 0)
  325. fresh_info = false;
  326. else {
  327. fresh_info = true;
  328. mpath = mesh_path_lookup(ta, dev);
  329. if (mpath) {
  330. spin_lock_bh(&mpath->state_lock);
  331. if ((mpath->flags & MESH_PATH_FIXED) ||
  332. ((mpath->flags & MESH_PATH_ACTIVE) &&
  333. (last_hop_metric > mpath->metric)))
  334. fresh_info = false;
  335. } else {
  336. mesh_path_add(ta, dev);
  337. mpath = mesh_path_lookup(ta, dev);
  338. if (!mpath) {
  339. rcu_read_unlock();
  340. return 0;
  341. }
  342. spin_lock_bh(&mpath->state_lock);
  343. }
  344. if (fresh_info) {
  345. mesh_path_assign_nexthop(mpath, sta);
  346. mpath->flags &= ~MESH_PATH_DSN_VALID;
  347. mpath->metric = last_hop_metric;
  348. mpath->exp_time = time_after(mpath->exp_time, exp_time)
  349. ? mpath->exp_time : exp_time;
  350. mesh_path_activate(mpath);
  351. spin_unlock_bh(&mpath->state_lock);
  352. mesh_path_tx_pending(mpath);
  353. } else
  354. spin_unlock_bh(&mpath->state_lock);
  355. }
  356. rcu_read_unlock();
  357. return process ? new_metric : 0;
  358. }
  359. static void hwmp_preq_frame_process(struct net_device *dev,
  360. struct ieee80211_mgmt *mgmt,
  361. u8 *preq_elem, u32 metric) {
  362. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  363. struct ieee80211_if_sta *ifsta = &sdata->u.sta;
  364. struct mesh_path *mpath;
  365. u8 *dst_addr, *orig_addr;
  366. u8 dst_flags, ttl;
  367. u32 orig_dsn, dst_dsn, lifetime;
  368. bool reply = false;
  369. bool forward = true;
  370. /* Update destination DSN, if present */
  371. dst_addr = PREQ_IE_DST_ADDR(preq_elem);
  372. orig_addr = PREQ_IE_ORIG_ADDR(preq_elem);
  373. dst_dsn = PREQ_IE_DST_DSN(preq_elem);
  374. orig_dsn = PREQ_IE_ORIG_DSN(preq_elem);
  375. dst_flags = PREQ_IE_DST_F(preq_elem);
  376. if (memcmp(dst_addr, dev->dev_addr, ETH_ALEN) == 0) {
  377. forward = false;
  378. reply = true;
  379. metric = 0;
  380. if (time_after(jiffies, ifsta->last_dsn_update +
  381. net_traversal_jiffies(sdata)) ||
  382. time_before(jiffies, ifsta->last_dsn_update)) {
  383. dst_dsn = ++ifsta->dsn;
  384. ifsta->last_dsn_update = jiffies;
  385. }
  386. } else {
  387. rcu_read_lock();
  388. mpath = mesh_path_lookup(dst_addr, dev);
  389. if (mpath) {
  390. if ((!(mpath->flags & MESH_PATH_DSN_VALID)) ||
  391. DSN_LT(mpath->dsn, dst_dsn)) {
  392. mpath->dsn = dst_dsn;
  393. mpath->flags &= MESH_PATH_DSN_VALID;
  394. } else if ((!(dst_flags & MP_F_DO)) &&
  395. (mpath->flags & MESH_PATH_ACTIVE)) {
  396. reply = true;
  397. metric = mpath->metric;
  398. dst_dsn = mpath->dsn;
  399. if (dst_flags & MP_F_RF)
  400. dst_flags |= MP_F_DO;
  401. else
  402. forward = false;
  403. }
  404. }
  405. rcu_read_unlock();
  406. }
  407. if (reply) {
  408. lifetime = PREQ_IE_LIFETIME(preq_elem);
  409. ttl = ifsta->mshcfg.dot11MeshTTL;
  410. if (ttl != 0)
  411. mesh_path_sel_frame_tx(MPATH_PREP, 0, dst_addr,
  412. cpu_to_le32(dst_dsn), 0, orig_addr,
  413. cpu_to_le32(orig_dsn), mgmt->sa, 0, ttl,
  414. cpu_to_le32(lifetime), cpu_to_le32(metric),
  415. 0, dev);
  416. else
  417. ifsta->mshstats.dropped_frames_ttl++;
  418. }
  419. if (forward) {
  420. u32 preq_id;
  421. u8 hopcount, flags;
  422. ttl = PREQ_IE_TTL(preq_elem);
  423. lifetime = PREQ_IE_LIFETIME(preq_elem);
  424. if (ttl <= 1) {
  425. ifsta->mshstats.dropped_frames_ttl++;
  426. return;
  427. }
  428. --ttl;
  429. flags = PREQ_IE_FLAGS(preq_elem);
  430. preq_id = PREQ_IE_PREQ_ID(preq_elem);
  431. hopcount = PREQ_IE_HOPCOUNT(preq_elem) + 1;
  432. mesh_path_sel_frame_tx(MPATH_PREQ, flags, orig_addr,
  433. cpu_to_le32(orig_dsn), dst_flags, dst_addr,
  434. cpu_to_le32(dst_dsn), dev->broadcast,
  435. hopcount, ttl, cpu_to_le32(lifetime),
  436. cpu_to_le32(metric), cpu_to_le32(preq_id),
  437. dev);
  438. ifsta->mshstats.fwded_frames++;
  439. }
  440. }
  441. static void hwmp_prep_frame_process(struct net_device *dev,
  442. struct ieee80211_mgmt *mgmt,
  443. u8 *prep_elem, u32 metric)
  444. {
  445. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  446. struct mesh_path *mpath;
  447. u8 *dst_addr, *orig_addr;
  448. u8 ttl, hopcount, flags;
  449. u8 next_hop[ETH_ALEN];
  450. u32 dst_dsn, orig_dsn, lifetime;
  451. /* Note that we divert from the draft nomenclature and denominate
  452. * destination to what the draft refers to as origininator. So in this
  453. * function destnation refers to the final destination of the PREP,
  454. * which corresponds with the originator of the PREQ which this PREP
  455. * replies
  456. */
  457. dst_addr = PREP_IE_DST_ADDR(prep_elem);
  458. if (memcmp(dst_addr, dev->dev_addr, ETH_ALEN) == 0)
  459. /* destination, no forwarding required */
  460. return;
  461. ttl = PREP_IE_TTL(prep_elem);
  462. if (ttl <= 1) {
  463. sdata->u.sta.mshstats.dropped_frames_ttl++;
  464. return;
  465. }
  466. rcu_read_lock();
  467. mpath = mesh_path_lookup(dst_addr, dev);
  468. if (mpath)
  469. spin_lock_bh(&mpath->state_lock);
  470. else
  471. goto fail;
  472. if (!(mpath->flags & MESH_PATH_ACTIVE)) {
  473. spin_unlock_bh(&mpath->state_lock);
  474. goto fail;
  475. }
  476. memcpy(next_hop, mpath->next_hop->addr, ETH_ALEN);
  477. spin_unlock_bh(&mpath->state_lock);
  478. --ttl;
  479. flags = PREP_IE_FLAGS(prep_elem);
  480. lifetime = PREP_IE_LIFETIME(prep_elem);
  481. hopcount = PREP_IE_HOPCOUNT(prep_elem) + 1;
  482. orig_addr = PREP_IE_ORIG_ADDR(prep_elem);
  483. dst_dsn = PREP_IE_DST_DSN(prep_elem);
  484. orig_dsn = PREP_IE_ORIG_DSN(prep_elem);
  485. mesh_path_sel_frame_tx(MPATH_PREP, flags, orig_addr,
  486. cpu_to_le32(orig_dsn), 0, dst_addr,
  487. cpu_to_le32(dst_dsn), mpath->next_hop->addr, hopcount, ttl,
  488. cpu_to_le32(lifetime), cpu_to_le32(metric),
  489. 0, dev);
  490. rcu_read_unlock();
  491. sdata->u.sta.mshstats.fwded_frames++;
  492. return;
  493. fail:
  494. rcu_read_unlock();
  495. sdata->u.sta.mshstats.dropped_frames_no_route++;
  496. return;
  497. }
  498. static void hwmp_perr_frame_process(struct net_device *dev,
  499. struct ieee80211_mgmt *mgmt, u8 *perr_elem)
  500. {
  501. struct mesh_path *mpath;
  502. u8 *ta, *dst_addr;
  503. u32 dst_dsn;
  504. ta = mgmt->sa;
  505. dst_addr = PERR_IE_DST_ADDR(perr_elem);
  506. dst_dsn = PERR_IE_DST_DSN(perr_elem);
  507. rcu_read_lock();
  508. mpath = mesh_path_lookup(dst_addr, dev);
  509. if (mpath) {
  510. spin_lock_bh(&mpath->state_lock);
  511. if (mpath->flags & MESH_PATH_ACTIVE &&
  512. memcmp(ta, mpath->next_hop->addr, ETH_ALEN) == 0 &&
  513. (!(mpath->flags & MESH_PATH_DSN_VALID) ||
  514. DSN_GT(dst_dsn, mpath->dsn))) {
  515. mpath->flags &= ~MESH_PATH_ACTIVE;
  516. mpath->dsn = dst_dsn;
  517. spin_unlock_bh(&mpath->state_lock);
  518. mesh_path_error_tx(dst_addr, cpu_to_le32(dst_dsn),
  519. dev->broadcast, dev);
  520. } else
  521. spin_unlock_bh(&mpath->state_lock);
  522. }
  523. rcu_read_unlock();
  524. }
  525. void mesh_rx_path_sel_frame(struct net_device *dev,
  526. struct ieee80211_mgmt *mgmt,
  527. size_t len)
  528. {
  529. struct ieee802_11_elems elems;
  530. size_t baselen;
  531. u32 last_hop_metric;
  532. baselen = (u8 *) mgmt->u.action.u.mesh_action.variable - (u8 *) mgmt;
  533. ieee802_11_parse_elems(mgmt->u.action.u.mesh_action.variable,
  534. len - baselen, &elems);
  535. switch (mgmt->u.action.u.mesh_action.action_code) {
  536. case MPATH_PREQ:
  537. if (!elems.preq || elems.preq_len != 37)
  538. /* Right now we support just 1 destination and no AE */
  539. return;
  540. last_hop_metric = hwmp_route_info_get(dev, mgmt, elems.preq);
  541. if (!last_hop_metric)
  542. return;
  543. hwmp_preq_frame_process(dev, mgmt, elems.preq, last_hop_metric);
  544. break;
  545. case MPATH_PREP:
  546. if (!elems.prep || elems.prep_len != 31)
  547. /* Right now we support no AE */
  548. return;
  549. last_hop_metric = hwmp_route_info_get(dev, mgmt, elems.prep);
  550. if (!last_hop_metric)
  551. return;
  552. hwmp_prep_frame_process(dev, mgmt, elems.prep, last_hop_metric);
  553. break;
  554. case MPATH_PERR:
  555. if (!elems.perr || elems.perr_len != 12)
  556. /* Right now we support only one destination per PERR */
  557. return;
  558. hwmp_perr_frame_process(dev, mgmt, elems.perr);
  559. default:
  560. return;
  561. }
  562. }
  563. /**
  564. * mesh_queue_preq - queue a PREQ to a given destination
  565. *
  566. * @mpath: mesh path to discover
  567. * @flags: special attributes of the PREQ to be sent
  568. *
  569. * Locking: the function must be called from within a rcu read lock block.
  570. *
  571. */
  572. static void mesh_queue_preq(struct mesh_path *mpath, u8 flags)
  573. {
  574. struct ieee80211_sub_if_data *sdata =
  575. IEEE80211_DEV_TO_SUB_IF(mpath->dev);
  576. struct ieee80211_if_sta *ifsta = &sdata->u.sta;
  577. struct mesh_preq_queue *preq_node;
  578. preq_node = kmalloc(sizeof(struct mesh_preq_queue), GFP_KERNEL);
  579. if (!preq_node) {
  580. printk(KERN_DEBUG "Mesh HWMP: could not allocate PREQ node\n");
  581. return;
  582. }
  583. spin_lock(&ifsta->mesh_preq_queue_lock);
  584. if (ifsta->preq_queue_len == MAX_PREQ_QUEUE_LEN) {
  585. spin_unlock(&ifsta->mesh_preq_queue_lock);
  586. kfree(preq_node);
  587. if (printk_ratelimit())
  588. printk(KERN_DEBUG "Mesh HWMP: PREQ node queue full\n");
  589. return;
  590. }
  591. memcpy(preq_node->dst, mpath->dst, ETH_ALEN);
  592. preq_node->flags = flags;
  593. list_add_tail(&preq_node->list, &ifsta->preq_queue.list);
  594. ++ifsta->preq_queue_len;
  595. spin_unlock(&ifsta->mesh_preq_queue_lock);
  596. if (time_after(jiffies, ifsta->last_preq + min_preq_int_jiff(sdata)))
  597. queue_work(sdata->local->hw.workqueue, &ifsta->work);
  598. else if (time_before(jiffies, ifsta->last_preq)) {
  599. /* avoid long wait if did not send preqs for a long time
  600. * and jiffies wrapped around
  601. */
  602. ifsta->last_preq = jiffies - min_preq_int_jiff(sdata) - 1;
  603. queue_work(sdata->local->hw.workqueue, &ifsta->work);
  604. } else
  605. mod_timer(&ifsta->mesh_path_timer, ifsta->last_preq +
  606. min_preq_int_jiff(sdata));
  607. }
  608. /**
  609. * mesh_path_start_discovery - launch a path discovery from the PREQ queue
  610. *
  611. * @dev: local mesh interface
  612. */
  613. void mesh_path_start_discovery(struct net_device *dev)
  614. {
  615. struct ieee80211_sub_if_data *sdata =
  616. IEEE80211_DEV_TO_SUB_IF(dev);
  617. struct ieee80211_if_sta *ifsta = &sdata->u.sta;
  618. struct mesh_preq_queue *preq_node;
  619. struct mesh_path *mpath;
  620. u8 ttl, dst_flags;
  621. u32 lifetime;
  622. spin_lock(&ifsta->mesh_preq_queue_lock);
  623. if (!ifsta->preq_queue_len ||
  624. time_before(jiffies, ifsta->last_preq +
  625. min_preq_int_jiff(sdata))) {
  626. spin_unlock(&ifsta->mesh_preq_queue_lock);
  627. return;
  628. }
  629. preq_node = list_first_entry(&ifsta->preq_queue.list,
  630. struct mesh_preq_queue, list);
  631. list_del(&preq_node->list);
  632. --ifsta->preq_queue_len;
  633. spin_unlock(&ifsta->mesh_preq_queue_lock);
  634. rcu_read_lock();
  635. mpath = mesh_path_lookup(preq_node->dst, dev);
  636. if (!mpath)
  637. goto enddiscovery;
  638. spin_lock_bh(&mpath->state_lock);
  639. if (preq_node->flags & PREQ_Q_F_START) {
  640. if (mpath->flags & MESH_PATH_RESOLVING) {
  641. spin_unlock_bh(&mpath->state_lock);
  642. goto enddiscovery;
  643. } else {
  644. mpath->flags &= ~MESH_PATH_RESOLVED;
  645. mpath->flags |= MESH_PATH_RESOLVING;
  646. mpath->discovery_retries = 0;
  647. mpath->discovery_timeout = disc_timeout_jiff(sdata);
  648. }
  649. } else if (!(mpath->flags & MESH_PATH_RESOLVING) ||
  650. mpath->flags & MESH_PATH_RESOLVED) {
  651. mpath->flags &= ~MESH_PATH_RESOLVING;
  652. spin_unlock_bh(&mpath->state_lock);
  653. goto enddiscovery;
  654. }
  655. ifsta->last_preq = jiffies;
  656. if (time_after(jiffies, ifsta->last_dsn_update +
  657. net_traversal_jiffies(sdata)) ||
  658. time_before(jiffies, ifsta->last_dsn_update)) {
  659. ++ifsta->dsn;
  660. sdata->u.sta.last_dsn_update = jiffies;
  661. }
  662. lifetime = default_lifetime(sdata);
  663. ttl = sdata->u.sta.mshcfg.dot11MeshTTL;
  664. if (ttl == 0) {
  665. sdata->u.sta.mshstats.dropped_frames_ttl++;
  666. spin_unlock_bh(&mpath->state_lock);
  667. goto enddiscovery;
  668. }
  669. if (preq_node->flags & PREQ_Q_F_REFRESH)
  670. dst_flags = MP_F_DO;
  671. else
  672. dst_flags = MP_F_RF;
  673. spin_unlock_bh(&mpath->state_lock);
  674. mesh_path_sel_frame_tx(MPATH_PREQ, 0, dev->dev_addr,
  675. cpu_to_le32(ifsta->dsn), dst_flags, mpath->dst,
  676. cpu_to_le32(mpath->dsn), dev->broadcast, 0,
  677. ttl, cpu_to_le32(lifetime), 0,
  678. cpu_to_le32(ifsta->preq_id++), dev);
  679. mod_timer(&mpath->timer, jiffies + mpath->discovery_timeout);
  680. enddiscovery:
  681. rcu_read_unlock();
  682. kfree(preq_node);
  683. }
  684. /**
  685. * ieee80211s_lookup_nexthop - put the appropriate next hop on a mesh frame
  686. *
  687. * @next_hop: output argument for next hop address
  688. * @skb: frame to be sent
  689. * @dev: network device the frame will be sent through
  690. *
  691. * Returns: 0 if the next hop was found. Nonzero otherwise. If no next hop is
  692. * found, the function will start a path discovery and queue the frame so it is
  693. * sent when the path is resolved. This means the caller must not free the skb
  694. * in this case.
  695. */
  696. int mesh_nexthop_lookup(u8 *next_hop, struct sk_buff *skb,
  697. struct net_device *dev)
  698. {
  699. struct ieee80211_sub_if_data *sdata = IEEE80211_DEV_TO_SUB_IF(dev);
  700. struct sk_buff *skb_to_free = NULL;
  701. struct mesh_path *mpath;
  702. int err = 0;
  703. rcu_read_lock();
  704. mpath = mesh_path_lookup(skb->data, dev);
  705. if (!mpath) {
  706. mesh_path_add(skb->data, dev);
  707. mpath = mesh_path_lookup(skb->data, dev);
  708. if (!mpath) {
  709. dev_kfree_skb(skb);
  710. sdata->u.sta.mshstats.dropped_frames_no_route++;
  711. err = -ENOSPC;
  712. goto endlookup;
  713. }
  714. }
  715. if (mpath->flags & MESH_PATH_ACTIVE) {
  716. if (time_after(jiffies, mpath->exp_time -
  717. msecs_to_jiffies(sdata->u.sta.mshcfg.path_refresh_time))
  718. && skb->pkt_type != PACKET_OTHERHOST
  719. && !(mpath->flags & MESH_PATH_RESOLVING)
  720. && !(mpath->flags & MESH_PATH_FIXED)) {
  721. mesh_queue_preq(mpath,
  722. PREQ_Q_F_START | PREQ_Q_F_REFRESH);
  723. }
  724. memcpy(next_hop, mpath->next_hop->addr,
  725. ETH_ALEN);
  726. } else {
  727. if (!(mpath->flags & MESH_PATH_RESOLVING)) {
  728. /* Start discovery only if it is not running yet */
  729. mesh_queue_preq(mpath, PREQ_Q_F_START);
  730. }
  731. if (skb_queue_len(&mpath->frame_queue) >=
  732. MESH_FRAME_QUEUE_LEN) {
  733. skb_to_free = mpath->frame_queue.next;
  734. skb_unlink(skb_to_free, &mpath->frame_queue);
  735. }
  736. skb_queue_tail(&mpath->frame_queue, skb);
  737. if (skb_to_free)
  738. mesh_path_discard_frame(skb_to_free, dev);
  739. err = -ENOENT;
  740. }
  741. endlookup:
  742. rcu_read_unlock();
  743. return err;
  744. }
  745. void mesh_path_timer(unsigned long data)
  746. {
  747. struct ieee80211_sub_if_data *sdata;
  748. struct mesh_path *mpath;
  749. rcu_read_lock();
  750. mpath = (struct mesh_path *) data;
  751. mpath = rcu_dereference(mpath);
  752. if (!mpath)
  753. goto endmpathtimer;
  754. spin_lock_bh(&mpath->state_lock);
  755. sdata = IEEE80211_DEV_TO_SUB_IF(mpath->dev);
  756. if (mpath->flags & MESH_PATH_RESOLVED ||
  757. (!(mpath->flags & MESH_PATH_RESOLVING)))
  758. mpath->flags &= ~(MESH_PATH_RESOLVING | MESH_PATH_RESOLVED);
  759. else if (mpath->discovery_retries < max_preq_retries(sdata)) {
  760. ++mpath->discovery_retries;
  761. mpath->discovery_timeout *= 2;
  762. mesh_queue_preq(mpath, 0);
  763. } else {
  764. mpath->flags = 0;
  765. mpath->exp_time = jiffies;
  766. mesh_path_flush_pending(mpath);
  767. }
  768. spin_unlock_bh(&mpath->state_lock);
  769. endmpathtimer:
  770. rcu_read_unlock();
  771. }