beacon.c 22 KB

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  1. /*
  2. * Copyright (c) 2008-2011 Atheros Communications Inc.
  3. *
  4. * Permission to use, copy, modify, and/or distribute this software for any
  5. * purpose with or without fee is hereby granted, provided that the above
  6. * copyright notice and this permission notice appear in all copies.
  7. *
  8. * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES
  9. * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF
  10. * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR
  11. * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES
  12. * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN
  13. * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF
  14. * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE.
  15. */
  16. #include <linux/dma-mapping.h>
  17. #include "ath9k.h"
  18. #define FUDGE 2
  19. static void ath9k_reset_beacon_status(struct ath_softc *sc)
  20. {
  21. sc->beacon.tx_processed = false;
  22. sc->beacon.tx_last = false;
  23. }
  24. /*
  25. * This function will modify certain transmit queue properties depending on
  26. * the operating mode of the station (AP or AdHoc). Parameters are AIFS
  27. * settings and channel width min/max
  28. */
  29. static void ath9k_beaconq_config(struct ath_softc *sc)
  30. {
  31. struct ath_hw *ah = sc->sc_ah;
  32. struct ath_common *common = ath9k_hw_common(ah);
  33. struct ath9k_tx_queue_info qi, qi_be;
  34. struct ath_txq *txq;
  35. ath9k_hw_get_txq_props(ah, sc->beacon.beaconq, &qi);
  36. if (sc->sc_ah->opmode == NL80211_IFTYPE_AP ||
  37. sc->sc_ah->opmode == NL80211_IFTYPE_MESH_POINT) {
  38. /* Always burst out beacon and CAB traffic. */
  39. qi.tqi_aifs = 1;
  40. qi.tqi_cwmin = 0;
  41. qi.tqi_cwmax = 0;
  42. } else {
  43. /* Adhoc mode; important thing is to use 2x cwmin. */
  44. txq = sc->tx.txq_map[IEEE80211_AC_BE];
  45. ath9k_hw_get_txq_props(ah, txq->axq_qnum, &qi_be);
  46. qi.tqi_aifs = qi_be.tqi_aifs;
  47. if (ah->slottime == ATH9K_SLOT_TIME_20)
  48. qi.tqi_cwmin = 2*qi_be.tqi_cwmin;
  49. else
  50. qi.tqi_cwmin = 4*qi_be.tqi_cwmin;
  51. qi.tqi_cwmax = qi_be.tqi_cwmax;
  52. }
  53. if (!ath9k_hw_set_txq_props(ah, sc->beacon.beaconq, &qi)) {
  54. ath_err(common, "Unable to update h/w beacon queue parameters\n");
  55. } else {
  56. ath9k_hw_resettxqueue(ah, sc->beacon.beaconq);
  57. }
  58. }
  59. /*
  60. * Associates the beacon frame buffer with a transmit descriptor. Will set
  61. * up rate codes, and channel flags. Beacons are always sent out at the
  62. * lowest rate, and are not retried.
  63. */
  64. static void ath9k_beacon_setup(struct ath_softc *sc, struct ieee80211_vif *vif,
  65. struct ath_buf *bf, int rateidx)
  66. {
  67. struct sk_buff *skb = bf->bf_mpdu;
  68. struct ath_hw *ah = sc->sc_ah;
  69. struct ath_common *common = ath9k_hw_common(ah);
  70. struct ath_tx_info info;
  71. struct ieee80211_supported_band *sband;
  72. u8 chainmask = ah->txchainmask;
  73. u8 rate = 0;
  74. sband = &sc->sbands[common->hw->conf.chandef.chan->band];
  75. rate = sband->bitrates[rateidx].hw_value;
  76. if (vif->bss_conf.use_short_preamble)
  77. rate |= sband->bitrates[rateidx].hw_value_short;
  78. memset(&info, 0, sizeof(info));
  79. info.pkt_len = skb->len + FCS_LEN;
  80. info.type = ATH9K_PKT_TYPE_BEACON;
  81. info.txpower = MAX_RATE_POWER;
  82. info.keyix = ATH9K_TXKEYIX_INVALID;
  83. info.keytype = ATH9K_KEY_TYPE_CLEAR;
  84. info.flags = ATH9K_TXDESC_NOACK | ATH9K_TXDESC_CLRDMASK;
  85. info.buf_addr[0] = bf->bf_buf_addr;
  86. info.buf_len[0] = roundup(skb->len, 4);
  87. info.is_first = true;
  88. info.is_last = true;
  89. info.qcu = sc->beacon.beaconq;
  90. info.rates[0].Tries = 1;
  91. info.rates[0].Rate = rate;
  92. info.rates[0].ChSel = ath_txchainmask_reduction(sc, chainmask, rate);
  93. ath9k_hw_set_txdesc(ah, bf->bf_desc, &info);
  94. }
  95. static struct ath_buf *ath9k_beacon_generate(struct ieee80211_hw *hw,
  96. struct ieee80211_vif *vif)
  97. {
  98. struct ath_softc *sc = hw->priv;
  99. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  100. struct ath_buf *bf;
  101. struct ath_vif *avp = (void *)vif->drv_priv;
  102. struct sk_buff *skb;
  103. struct ath_txq *cabq = sc->beacon.cabq;
  104. struct ieee80211_tx_info *info;
  105. struct ieee80211_mgmt *mgmt_hdr;
  106. int cabq_depth;
  107. if (avp->av_bcbuf == NULL)
  108. return NULL;
  109. bf = avp->av_bcbuf;
  110. skb = bf->bf_mpdu;
  111. if (skb) {
  112. dma_unmap_single(sc->dev, bf->bf_buf_addr,
  113. skb->len, DMA_TO_DEVICE);
  114. dev_kfree_skb_any(skb);
  115. bf->bf_buf_addr = 0;
  116. bf->bf_mpdu = NULL;
  117. }
  118. skb = ieee80211_beacon_get(hw, vif);
  119. if (skb == NULL)
  120. return NULL;
  121. bf->bf_mpdu = skb;
  122. mgmt_hdr = (struct ieee80211_mgmt *)skb->data;
  123. mgmt_hdr->u.beacon.timestamp = avp->tsf_adjust;
  124. info = IEEE80211_SKB_CB(skb);
  125. if (info->flags & IEEE80211_TX_CTL_ASSIGN_SEQ) {
  126. /*
  127. * TODO: make sure the seq# gets assigned properly (vs. other
  128. * TX frames)
  129. */
  130. struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)skb->data;
  131. sc->tx.seq_no += 0x10;
  132. hdr->seq_ctrl &= cpu_to_le16(IEEE80211_SCTL_FRAG);
  133. hdr->seq_ctrl |= cpu_to_le16(sc->tx.seq_no);
  134. }
  135. bf->bf_buf_addr = dma_map_single(sc->dev, skb->data,
  136. skb->len, DMA_TO_DEVICE);
  137. if (unlikely(dma_mapping_error(sc->dev, bf->bf_buf_addr))) {
  138. dev_kfree_skb_any(skb);
  139. bf->bf_mpdu = NULL;
  140. bf->bf_buf_addr = 0;
  141. ath_err(common, "dma_mapping_error on beaconing\n");
  142. return NULL;
  143. }
  144. skb = ieee80211_get_buffered_bc(hw, vif);
  145. /*
  146. * if the CABQ traffic from previous DTIM is pending and the current
  147. * beacon is also a DTIM.
  148. * 1) if there is only one vif let the cab traffic continue.
  149. * 2) if there are more than one vif and we are using staggered
  150. * beacons, then drain the cabq by dropping all the frames in
  151. * the cabq so that the current vifs cab traffic can be scheduled.
  152. */
  153. spin_lock_bh(&cabq->axq_lock);
  154. cabq_depth = cabq->axq_depth;
  155. spin_unlock_bh(&cabq->axq_lock);
  156. if (skb && cabq_depth) {
  157. if (sc->nvifs > 1) {
  158. ath_dbg(common, BEACON,
  159. "Flushing previous cabq traffic\n");
  160. ath_draintxq(sc, cabq);
  161. }
  162. }
  163. ath9k_beacon_setup(sc, vif, bf, info->control.rates[0].idx);
  164. if (skb)
  165. ath_tx_cabq(hw, vif, skb);
  166. return bf;
  167. }
  168. void ath9k_beacon_assign_slot(struct ath_softc *sc, struct ieee80211_vif *vif)
  169. {
  170. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  171. struct ath_vif *avp = (void *)vif->drv_priv;
  172. int slot;
  173. avp->av_bcbuf = list_first_entry(&sc->beacon.bbuf, struct ath_buf, list);
  174. list_del(&avp->av_bcbuf->list);
  175. for (slot = 0; slot < ATH_BCBUF; slot++) {
  176. if (sc->beacon.bslot[slot] == NULL) {
  177. avp->av_bslot = slot;
  178. break;
  179. }
  180. }
  181. sc->beacon.bslot[avp->av_bslot] = vif;
  182. sc->nbcnvifs++;
  183. ath_dbg(common, CONFIG, "Added interface at beacon slot: %d\n",
  184. avp->av_bslot);
  185. }
  186. void ath9k_beacon_remove_slot(struct ath_softc *sc, struct ieee80211_vif *vif)
  187. {
  188. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  189. struct ath_vif *avp = (void *)vif->drv_priv;
  190. struct ath_buf *bf = avp->av_bcbuf;
  191. ath_dbg(common, CONFIG, "Removing interface at beacon slot: %d\n",
  192. avp->av_bslot);
  193. tasklet_disable(&sc->bcon_tasklet);
  194. if (bf && bf->bf_mpdu) {
  195. struct sk_buff *skb = bf->bf_mpdu;
  196. dma_unmap_single(sc->dev, bf->bf_buf_addr,
  197. skb->len, DMA_TO_DEVICE);
  198. dev_kfree_skb_any(skb);
  199. bf->bf_mpdu = NULL;
  200. bf->bf_buf_addr = 0;
  201. }
  202. avp->av_bcbuf = NULL;
  203. sc->beacon.bslot[avp->av_bslot] = NULL;
  204. sc->nbcnvifs--;
  205. list_add_tail(&bf->list, &sc->beacon.bbuf);
  206. tasklet_enable(&sc->bcon_tasklet);
  207. }
  208. static int ath9k_beacon_choose_slot(struct ath_softc *sc)
  209. {
  210. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  211. struct ath_beacon_config *cur_conf = &sc->cur_beacon_conf;
  212. u16 intval;
  213. u32 tsftu;
  214. u64 tsf;
  215. int slot;
  216. if (sc->sc_ah->opmode != NL80211_IFTYPE_AP &&
  217. sc->sc_ah->opmode != NL80211_IFTYPE_MESH_POINT) {
  218. ath_dbg(common, BEACON, "slot 0, tsf: %llu\n",
  219. ath9k_hw_gettsf64(sc->sc_ah));
  220. return 0;
  221. }
  222. intval = cur_conf->beacon_interval ? : ATH_DEFAULT_BINTVAL;
  223. tsf = ath9k_hw_gettsf64(sc->sc_ah);
  224. tsf += TU_TO_USEC(sc->sc_ah->config.sw_beacon_response_time);
  225. tsftu = TSF_TO_TU((tsf * ATH_BCBUF) >>32, tsf * ATH_BCBUF);
  226. slot = (tsftu % (intval * ATH_BCBUF)) / intval;
  227. ath_dbg(common, BEACON, "slot: %d tsf: %llu tsftu: %u\n",
  228. slot, tsf, tsftu / ATH_BCBUF);
  229. return slot;
  230. }
  231. void ath9k_set_tsfadjust(struct ath_softc *sc, struct ieee80211_vif *vif)
  232. {
  233. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  234. struct ath_beacon_config *cur_conf = &sc->cur_beacon_conf;
  235. struct ath_vif *avp = (void *)vif->drv_priv;
  236. u64 tsfadjust;
  237. if (avp->av_bslot == 0)
  238. return;
  239. tsfadjust = cur_conf->beacon_interval * avp->av_bslot / ATH_BCBUF;
  240. avp->tsf_adjust = cpu_to_le64(TU_TO_USEC(tsfadjust));
  241. ath_dbg(common, CONFIG, "tsfadjust is: %llu for bslot: %d\n",
  242. (unsigned long long)tsfadjust, avp->av_bslot);
  243. }
  244. bool ath9k_csa_is_finished(struct ath_softc *sc)
  245. {
  246. struct ieee80211_vif *vif;
  247. vif = sc->csa_vif;
  248. if (!vif || !vif->csa_active)
  249. return false;
  250. if (!ieee80211_csa_is_complete(vif))
  251. return false;
  252. ieee80211_csa_finish(vif);
  253. sc->csa_vif = NULL;
  254. return true;
  255. }
  256. void ath9k_beacon_tasklet(unsigned long data)
  257. {
  258. struct ath_softc *sc = (struct ath_softc *)data;
  259. struct ath_hw *ah = sc->sc_ah;
  260. struct ath_common *common = ath9k_hw_common(ah);
  261. struct ath_buf *bf = NULL;
  262. struct ieee80211_vif *vif;
  263. bool edma = !!(ah->caps.hw_caps & ATH9K_HW_CAP_EDMA);
  264. int slot;
  265. if (test_bit(SC_OP_HW_RESET, &sc->sc_flags)) {
  266. ath_dbg(common, RESET,
  267. "reset work is pending, skip beaconing now\n");
  268. return;
  269. }
  270. /*
  271. * Check if the previous beacon has gone out. If
  272. * not don't try to post another, skip this period
  273. * and wait for the next. Missed beacons indicate
  274. * a problem and should not occur. If we miss too
  275. * many consecutive beacons reset the device.
  276. */
  277. if (ath9k_hw_numtxpending(ah, sc->beacon.beaconq) != 0) {
  278. sc->beacon.bmisscnt++;
  279. ath9k_hw_check_nav(ah);
  280. if (!ath9k_hw_check_alive(ah))
  281. ieee80211_queue_work(sc->hw, &sc->hw_check_work);
  282. if (sc->beacon.bmisscnt < BSTUCK_THRESH * sc->nbcnvifs) {
  283. ath_dbg(common, BSTUCK,
  284. "missed %u consecutive beacons\n",
  285. sc->beacon.bmisscnt);
  286. ath9k_hw_stop_dma_queue(ah, sc->beacon.beaconq);
  287. if (sc->beacon.bmisscnt > 3)
  288. ath9k_hw_bstuck_nfcal(ah);
  289. } else if (sc->beacon.bmisscnt >= BSTUCK_THRESH) {
  290. ath_dbg(common, BSTUCK, "beacon is officially stuck\n");
  291. sc->beacon.bmisscnt = 0;
  292. ath9k_queue_reset(sc, RESET_TYPE_BEACON_STUCK);
  293. }
  294. return;
  295. }
  296. /* EDMA devices check that in the tx completion function. */
  297. if (!edma && ath9k_csa_is_finished(sc))
  298. return;
  299. slot = ath9k_beacon_choose_slot(sc);
  300. vif = sc->beacon.bslot[slot];
  301. if (!vif || !vif->bss_conf.enable_beacon)
  302. return;
  303. bf = ath9k_beacon_generate(sc->hw, vif);
  304. if (sc->beacon.bmisscnt != 0) {
  305. ath_dbg(common, BSTUCK, "resume beacon xmit after %u misses\n",
  306. sc->beacon.bmisscnt);
  307. sc->beacon.bmisscnt = 0;
  308. }
  309. /*
  310. * Handle slot time change when a non-ERP station joins/leaves
  311. * an 11g network. The 802.11 layer notifies us via callback,
  312. * we mark updateslot, then wait one beacon before effecting
  313. * the change. This gives associated stations at least one
  314. * beacon interval to note the state change.
  315. *
  316. * NB: The slot time change state machine is clocked according
  317. * to whether we are bursting or staggering beacons. We
  318. * recognize the request to update and record the current
  319. * slot then don't transition until that slot is reached
  320. * again. If we miss a beacon for that slot then we'll be
  321. * slow to transition but we'll be sure at least one beacon
  322. * interval has passed. When bursting slot is always left
  323. * set to ATH_BCBUF so this check is a noop.
  324. */
  325. if (sc->beacon.updateslot == UPDATE) {
  326. sc->beacon.updateslot = COMMIT;
  327. sc->beacon.slotupdate = slot;
  328. } else if (sc->beacon.updateslot == COMMIT &&
  329. sc->beacon.slotupdate == slot) {
  330. ah->slottime = sc->beacon.slottime;
  331. ath9k_hw_init_global_settings(ah);
  332. sc->beacon.updateslot = OK;
  333. }
  334. if (bf) {
  335. ath9k_reset_beacon_status(sc);
  336. ath_dbg(common, BEACON,
  337. "Transmitting beacon for slot: %d\n", slot);
  338. /* NB: cabq traffic should already be queued and primed */
  339. ath9k_hw_puttxbuf(ah, sc->beacon.beaconq, bf->bf_daddr);
  340. if (!edma)
  341. ath9k_hw_txstart(ah, sc->beacon.beaconq);
  342. }
  343. }
  344. /*
  345. * Both nexttbtt and intval have to be in usecs.
  346. */
  347. static void ath9k_beacon_init(struct ath_softc *sc, u32 nexttbtt,
  348. u32 intval, bool reset_tsf)
  349. {
  350. struct ath_hw *ah = sc->sc_ah;
  351. ath9k_hw_disable_interrupts(ah);
  352. if (reset_tsf)
  353. ath9k_hw_reset_tsf(ah);
  354. ath9k_beaconq_config(sc);
  355. ath9k_hw_beaconinit(ah, nexttbtt, intval);
  356. sc->beacon.bmisscnt = 0;
  357. ath9k_hw_set_interrupts(ah);
  358. ath9k_hw_enable_interrupts(ah);
  359. }
  360. /*
  361. * For multi-bss ap support beacons are either staggered evenly over N slots or
  362. * burst together. For the former arrange for the SWBA to be delivered for each
  363. * slot. Slots that are not occupied will generate nothing.
  364. */
  365. static void ath9k_beacon_config_ap(struct ath_softc *sc,
  366. struct ath_beacon_config *conf)
  367. {
  368. struct ath_hw *ah = sc->sc_ah;
  369. struct ath_common *common = ath9k_hw_common(ah);
  370. u32 nexttbtt, intval;
  371. /* NB: the beacon interval is kept internally in TU's */
  372. intval = TU_TO_USEC(conf->beacon_interval);
  373. intval /= ATH_BCBUF;
  374. nexttbtt = intval;
  375. if (conf->enable_beacon)
  376. ah->imask |= ATH9K_INT_SWBA;
  377. else
  378. ah->imask &= ~ATH9K_INT_SWBA;
  379. ath_dbg(common, BEACON,
  380. "AP (%s) nexttbtt: %u intval: %u conf_intval: %u\n",
  381. (conf->enable_beacon) ? "Enable" : "Disable",
  382. nexttbtt, intval, conf->beacon_interval);
  383. ath9k_beacon_init(sc, nexttbtt, intval, true);
  384. }
  385. /*
  386. * This sets up the beacon timers according to the timestamp of the last
  387. * received beacon and the current TSF, configures PCF and DTIM
  388. * handling, programs the sleep registers so the hardware will wakeup in
  389. * time to receive beacons, and configures the beacon miss handling so
  390. * we'll receive a BMISS interrupt when we stop seeing beacons from the AP
  391. * we've associated with.
  392. */
  393. static void ath9k_beacon_config_sta(struct ath_softc *sc,
  394. struct ath_beacon_config *conf)
  395. {
  396. struct ath_hw *ah = sc->sc_ah;
  397. struct ath_common *common = ath9k_hw_common(ah);
  398. struct ath9k_beacon_state bs;
  399. int dtimperiod, dtimcount, sleepduration;
  400. int cfpperiod, cfpcount;
  401. u32 nexttbtt = 0, intval, tsftu;
  402. u64 tsf;
  403. int num_beacons, offset, dtim_dec_count, cfp_dec_count;
  404. /* No need to configure beacon if we are not associated */
  405. if (!test_bit(SC_OP_PRIM_STA_VIF, &sc->sc_flags)) {
  406. ath_dbg(common, BEACON,
  407. "STA is not yet associated..skipping beacon config\n");
  408. return;
  409. }
  410. memset(&bs, 0, sizeof(bs));
  411. intval = conf->beacon_interval;
  412. /*
  413. * Setup dtim and cfp parameters according to
  414. * last beacon we received (which may be none).
  415. */
  416. dtimperiod = conf->dtim_period;
  417. dtimcount = conf->dtim_count;
  418. if (dtimcount >= dtimperiod) /* NB: sanity check */
  419. dtimcount = 0;
  420. cfpperiod = 1; /* NB: no PCF support yet */
  421. cfpcount = 0;
  422. sleepduration = conf->listen_interval * intval;
  423. /*
  424. * Pull nexttbtt forward to reflect the current
  425. * TSF and calculate dtim+cfp state for the result.
  426. */
  427. tsf = ath9k_hw_gettsf64(ah);
  428. tsftu = TSF_TO_TU(tsf>>32, tsf) + FUDGE;
  429. num_beacons = tsftu / intval + 1;
  430. offset = tsftu % intval;
  431. nexttbtt = tsftu - offset;
  432. if (offset)
  433. nexttbtt += intval;
  434. /* DTIM Beacon every dtimperiod Beacon */
  435. dtim_dec_count = num_beacons % dtimperiod;
  436. /* CFP every cfpperiod DTIM Beacon */
  437. cfp_dec_count = (num_beacons / dtimperiod) % cfpperiod;
  438. if (dtim_dec_count)
  439. cfp_dec_count++;
  440. dtimcount -= dtim_dec_count;
  441. if (dtimcount < 0)
  442. dtimcount += dtimperiod;
  443. cfpcount -= cfp_dec_count;
  444. if (cfpcount < 0)
  445. cfpcount += cfpperiod;
  446. bs.bs_intval = intval;
  447. bs.bs_nexttbtt = nexttbtt;
  448. bs.bs_dtimperiod = dtimperiod*intval;
  449. bs.bs_nextdtim = bs.bs_nexttbtt + dtimcount*intval;
  450. bs.bs_cfpperiod = cfpperiod*bs.bs_dtimperiod;
  451. bs.bs_cfpnext = bs.bs_nextdtim + cfpcount*bs.bs_dtimperiod;
  452. bs.bs_cfpmaxduration = 0;
  453. /*
  454. * Calculate the number of consecutive beacons to miss* before taking
  455. * a BMISS interrupt. The configuration is specified in TU so we only
  456. * need calculate based on the beacon interval. Note that we clamp the
  457. * result to at most 15 beacons.
  458. */
  459. if (sleepduration > intval) {
  460. bs.bs_bmissthreshold = conf->listen_interval *
  461. ATH_DEFAULT_BMISS_LIMIT / 2;
  462. } else {
  463. bs.bs_bmissthreshold = DIV_ROUND_UP(conf->bmiss_timeout, intval);
  464. if (bs.bs_bmissthreshold > 15)
  465. bs.bs_bmissthreshold = 15;
  466. else if (bs.bs_bmissthreshold <= 0)
  467. bs.bs_bmissthreshold = 1;
  468. }
  469. /*
  470. * Calculate sleep duration. The configuration is given in ms.
  471. * We ensure a multiple of the beacon period is used. Also, if the sleep
  472. * duration is greater than the DTIM period then it makes senses
  473. * to make it a multiple of that.
  474. *
  475. * XXX fixed at 100ms
  476. */
  477. bs.bs_sleepduration = roundup(IEEE80211_MS_TO_TU(100), sleepduration);
  478. if (bs.bs_sleepduration > bs.bs_dtimperiod)
  479. bs.bs_sleepduration = bs.bs_dtimperiod;
  480. /* TSF out of range threshold fixed at 1 second */
  481. bs.bs_tsfoor_threshold = ATH9K_TSFOOR_THRESHOLD;
  482. ath_dbg(common, BEACON, "tsf: %llu tsftu: %u\n", tsf, tsftu);
  483. ath_dbg(common, BEACON,
  484. "bmiss: %u sleep: %u cfp-period: %u maxdur: %u next: %u\n",
  485. bs.bs_bmissthreshold, bs.bs_sleepduration,
  486. bs.bs_cfpperiod, bs.bs_cfpmaxduration, bs.bs_cfpnext);
  487. /* Set the computed STA beacon timers */
  488. ath9k_hw_disable_interrupts(ah);
  489. ath9k_hw_set_sta_beacon_timers(ah, &bs);
  490. ah->imask |= ATH9K_INT_BMISS;
  491. ath9k_hw_set_interrupts(ah);
  492. ath9k_hw_enable_interrupts(ah);
  493. }
  494. static void ath9k_beacon_config_adhoc(struct ath_softc *sc,
  495. struct ath_beacon_config *conf)
  496. {
  497. struct ath_hw *ah = sc->sc_ah;
  498. struct ath_common *common = ath9k_hw_common(ah);
  499. u32 intval, nexttbtt;
  500. ath9k_reset_beacon_status(sc);
  501. intval = TU_TO_USEC(conf->beacon_interval);
  502. if (conf->ibss_creator) {
  503. nexttbtt = intval;
  504. } else {
  505. u32 tbtt, offset, tsftu;
  506. u64 tsf;
  507. /*
  508. * Pull nexttbtt forward to reflect the current
  509. * sync'd TSF.
  510. */
  511. tsf = ath9k_hw_gettsf64(ah);
  512. tsftu = TSF_TO_TU(tsf >> 32, tsf) + FUDGE;
  513. offset = tsftu % conf->beacon_interval;
  514. tbtt = tsftu - offset;
  515. if (offset)
  516. tbtt += conf->beacon_interval;
  517. nexttbtt = TU_TO_USEC(tbtt);
  518. }
  519. if (conf->enable_beacon)
  520. ah->imask |= ATH9K_INT_SWBA;
  521. else
  522. ah->imask &= ~ATH9K_INT_SWBA;
  523. ath_dbg(common, BEACON,
  524. "IBSS (%s) nexttbtt: %u intval: %u conf_intval: %u\n",
  525. (conf->enable_beacon) ? "Enable" : "Disable",
  526. nexttbtt, intval, conf->beacon_interval);
  527. ath9k_beacon_init(sc, nexttbtt, intval, conf->ibss_creator);
  528. /*
  529. * Set the global 'beacon has been configured' flag for the
  530. * joiner case in IBSS mode.
  531. */
  532. if (!conf->ibss_creator && conf->enable_beacon)
  533. set_bit(SC_OP_BEACONS, &sc->sc_flags);
  534. }
  535. bool ath9k_allow_beacon_config(struct ath_softc *sc, struct ieee80211_vif *vif)
  536. {
  537. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  538. struct ath_vif *avp = (void *)vif->drv_priv;
  539. if (sc->sc_ah->opmode == NL80211_IFTYPE_AP) {
  540. if ((vif->type != NL80211_IFTYPE_AP) ||
  541. (sc->nbcnvifs > 1)) {
  542. ath_dbg(common, CONFIG,
  543. "An AP interface is already present !\n");
  544. return false;
  545. }
  546. }
  547. if (sc->sc_ah->opmode == NL80211_IFTYPE_STATION) {
  548. if ((vif->type == NL80211_IFTYPE_STATION) &&
  549. test_bit(SC_OP_BEACONS, &sc->sc_flags) &&
  550. !avp->primary_sta_vif) {
  551. ath_dbg(common, CONFIG,
  552. "Beacon already configured for a station interface\n");
  553. return false;
  554. }
  555. }
  556. return true;
  557. }
  558. static void ath9k_cache_beacon_config(struct ath_softc *sc,
  559. struct ieee80211_bss_conf *bss_conf)
  560. {
  561. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  562. struct ath_beacon_config *cur_conf = &sc->cur_beacon_conf;
  563. ath_dbg(common, BEACON,
  564. "Caching beacon data for BSS: %pM\n", bss_conf->bssid);
  565. cur_conf->beacon_interval = bss_conf->beacon_int;
  566. cur_conf->dtim_period = bss_conf->dtim_period;
  567. cur_conf->listen_interval = 1;
  568. cur_conf->dtim_count = 1;
  569. cur_conf->ibss_creator = bss_conf->ibss_creator;
  570. cur_conf->bmiss_timeout =
  571. ATH_DEFAULT_BMISS_LIMIT * cur_conf->beacon_interval;
  572. /*
  573. * It looks like mac80211 may end up using beacon interval of zero in
  574. * some cases (at least for mesh point). Avoid getting into an
  575. * infinite loop by using a bit safer value instead. To be safe,
  576. * do sanity check on beacon interval for all operating modes.
  577. */
  578. if (cur_conf->beacon_interval == 0)
  579. cur_conf->beacon_interval = 100;
  580. /*
  581. * We don't parse dtim period from mac80211 during the driver
  582. * initialization as it breaks association with hidden-ssid
  583. * AP and it causes latency in roaming
  584. */
  585. if (cur_conf->dtim_period == 0)
  586. cur_conf->dtim_period = 1;
  587. }
  588. void ath9k_beacon_config(struct ath_softc *sc, struct ieee80211_vif *vif,
  589. u32 changed)
  590. {
  591. struct ieee80211_bss_conf *bss_conf = &vif->bss_conf;
  592. struct ath_beacon_config *cur_conf = &sc->cur_beacon_conf;
  593. unsigned long flags;
  594. bool skip_beacon = false;
  595. if (sc->sc_ah->opmode == NL80211_IFTYPE_STATION) {
  596. ath9k_cache_beacon_config(sc, bss_conf);
  597. ath9k_set_beacon(sc);
  598. set_bit(SC_OP_BEACONS, &sc->sc_flags);
  599. return;
  600. }
  601. /*
  602. * Take care of multiple interfaces when
  603. * enabling/disabling SWBA.
  604. */
  605. if (changed & BSS_CHANGED_BEACON_ENABLED) {
  606. if (!bss_conf->enable_beacon &&
  607. (sc->nbcnvifs <= 1)) {
  608. cur_conf->enable_beacon = false;
  609. } else if (bss_conf->enable_beacon) {
  610. cur_conf->enable_beacon = true;
  611. ath9k_cache_beacon_config(sc, bss_conf);
  612. }
  613. }
  614. /*
  615. * Configure the HW beacon registers only when we have a valid
  616. * beacon interval.
  617. */
  618. if (cur_conf->beacon_interval) {
  619. /*
  620. * If we are joining an existing IBSS network, start beaconing
  621. * only after a TSF-sync has taken place. Ensure that this
  622. * happens by setting the appropriate flags.
  623. */
  624. if ((changed & BSS_CHANGED_IBSS) && !bss_conf->ibss_creator &&
  625. bss_conf->enable_beacon) {
  626. spin_lock_irqsave(&sc->sc_pm_lock, flags);
  627. sc->ps_flags |= PS_BEACON_SYNC | PS_WAIT_FOR_BEACON;
  628. spin_unlock_irqrestore(&sc->sc_pm_lock, flags);
  629. skip_beacon = true;
  630. } else {
  631. ath9k_set_beacon(sc);
  632. }
  633. /*
  634. * Do not set the SC_OP_BEACONS flag for IBSS joiner mode
  635. * here, it is done in ath9k_beacon_config_adhoc().
  636. */
  637. if (cur_conf->enable_beacon && !skip_beacon)
  638. set_bit(SC_OP_BEACONS, &sc->sc_flags);
  639. else
  640. clear_bit(SC_OP_BEACONS, &sc->sc_flags);
  641. }
  642. }
  643. void ath9k_set_beacon(struct ath_softc *sc)
  644. {
  645. struct ath_common *common = ath9k_hw_common(sc->sc_ah);
  646. struct ath_beacon_config *cur_conf = &sc->cur_beacon_conf;
  647. switch (sc->sc_ah->opmode) {
  648. case NL80211_IFTYPE_AP:
  649. case NL80211_IFTYPE_MESH_POINT:
  650. ath9k_beacon_config_ap(sc, cur_conf);
  651. break;
  652. case NL80211_IFTYPE_ADHOC:
  653. ath9k_beacon_config_adhoc(sc, cur_conf);
  654. break;
  655. case NL80211_IFTYPE_STATION:
  656. ath9k_beacon_config_sta(sc, cur_conf);
  657. break;
  658. default:
  659. ath_dbg(common, CONFIG, "Unsupported beaconing mode\n");
  660. return;
  661. }
  662. }