ps.c 26 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2009-2012 Realtek Corporation.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms of version 2 of the GNU General Public License as
  7. * published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope that it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * The full GNU General Public License is included in this distribution in the
  15. * file called LICENSE.
  16. *
  17. * Contact Information:
  18. * wlanfae <wlanfae@realtek.com>
  19. * Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
  20. * Hsinchu 300, Taiwan.
  21. *
  22. * Larry Finger <Larry.Finger@lwfinger.net>
  23. *
  24. *****************************************************************************/
  25. #include "wifi.h"
  26. #include "base.h"
  27. #include "ps.h"
  28. #include <linux/export.h>
  29. #include "btcoexist/rtl_btc.h"
  30. bool rtl_ps_enable_nic(struct ieee80211_hw *hw)
  31. {
  32. struct rtl_priv *rtlpriv = rtl_priv(hw);
  33. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  34. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  35. struct rtl_mac *rtlmac = rtl_mac(rtl_priv(hw));
  36. /*<1> reset trx ring */
  37. if (rtlhal->interface == INTF_PCI)
  38. rtlpriv->intf_ops->reset_trx_ring(hw);
  39. if (is_hal_stop(rtlhal))
  40. RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
  41. "Driver is already down!\n");
  42. /*<2> Enable Adapter */
  43. if (rtlpriv->cfg->ops->hw_init(hw))
  44. return false;
  45. rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_RETRY_LIMIT,
  46. &rtlmac->retry_long);
  47. RT_CLEAR_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC);
  48. /*<3> Enable Interrupt */
  49. rtlpriv->cfg->ops->enable_interrupt(hw);
  50. /*<enable timer> */
  51. rtl_watch_dog_timer_callback((unsigned long)hw);
  52. return true;
  53. }
  54. EXPORT_SYMBOL(rtl_ps_enable_nic);
  55. bool rtl_ps_disable_nic(struct ieee80211_hw *hw)
  56. {
  57. struct rtl_priv *rtlpriv = rtl_priv(hw);
  58. /*<1> Stop all timer */
  59. rtl_deinit_deferred_work(hw);
  60. /*<2> Disable Interrupt */
  61. rtlpriv->cfg->ops->disable_interrupt(hw);
  62. tasklet_kill(&rtlpriv->works.irq_tasklet);
  63. /*<3> Disable Adapter */
  64. rtlpriv->cfg->ops->hw_disable(hw);
  65. return true;
  66. }
  67. EXPORT_SYMBOL(rtl_ps_disable_nic);
  68. static bool rtl_ps_set_rf_state(struct ieee80211_hw *hw,
  69. enum rf_pwrstate state_toset,
  70. u32 changesource)
  71. {
  72. struct rtl_priv *rtlpriv = rtl_priv(hw);
  73. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  74. enum rf_pwrstate rtstate;
  75. bool actionallowed = false;
  76. u16 rfwait_cnt = 0;
  77. /*Only one thread can change
  78. *the RF state at one time, and others
  79. *should wait to be executed.
  80. */
  81. while (true) {
  82. spin_lock(&rtlpriv->locks.rf_ps_lock);
  83. if (ppsc->rfchange_inprogress) {
  84. spin_unlock(&rtlpriv->locks.rf_ps_lock);
  85. RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
  86. "RF Change in progress! Wait to set..state_toset(%d).\n",
  87. state_toset);
  88. /* Set RF after the previous action is done. */
  89. while (ppsc->rfchange_inprogress) {
  90. rfwait_cnt++;
  91. mdelay(1);
  92. /*Wait too long, return false to avoid
  93. *to be stuck here.
  94. */
  95. if (rfwait_cnt > 100)
  96. return false;
  97. }
  98. } else {
  99. ppsc->rfchange_inprogress = true;
  100. spin_unlock(&rtlpriv->locks.rf_ps_lock);
  101. break;
  102. }
  103. }
  104. rtstate = ppsc->rfpwr_state;
  105. switch (state_toset) {
  106. case ERFON:
  107. ppsc->rfoff_reason &= (~changesource);
  108. if ((changesource == RF_CHANGE_BY_HW) &&
  109. (ppsc->hwradiooff)) {
  110. ppsc->hwradiooff = false;
  111. }
  112. if (!ppsc->rfoff_reason) {
  113. ppsc->rfoff_reason = 0;
  114. actionallowed = true;
  115. }
  116. break;
  117. case ERFOFF:
  118. if ((changesource == RF_CHANGE_BY_HW) && !ppsc->hwradiooff) {
  119. ppsc->hwradiooff = true;
  120. }
  121. ppsc->rfoff_reason |= changesource;
  122. actionallowed = true;
  123. break;
  124. case ERFSLEEP:
  125. ppsc->rfoff_reason |= changesource;
  126. actionallowed = true;
  127. break;
  128. default:
  129. pr_err("switch case %#x not processed\n", state_toset);
  130. break;
  131. }
  132. if (actionallowed)
  133. rtlpriv->cfg->ops->set_rf_power_state(hw, state_toset);
  134. spin_lock(&rtlpriv->locks.rf_ps_lock);
  135. ppsc->rfchange_inprogress = false;
  136. spin_unlock(&rtlpriv->locks.rf_ps_lock);
  137. return actionallowed;
  138. }
  139. static void _rtl_ps_inactive_ps(struct ieee80211_hw *hw)
  140. {
  141. struct rtl_priv *rtlpriv = rtl_priv(hw);
  142. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  143. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  144. ppsc->swrf_processing = true;
  145. if (ppsc->inactive_pwrstate == ERFON &&
  146. rtlhal->interface == INTF_PCI) {
  147. if ((ppsc->reg_rfps_level & RT_RF_OFF_LEVL_ASPM) &&
  148. RT_IN_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM) &&
  149. rtlhal->interface == INTF_PCI) {
  150. rtlpriv->intf_ops->disable_aspm(hw);
  151. RT_CLEAR_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM);
  152. }
  153. }
  154. rtl_ps_set_rf_state(hw, ppsc->inactive_pwrstate,
  155. RF_CHANGE_BY_IPS);
  156. if (ppsc->inactive_pwrstate == ERFOFF &&
  157. rtlhal->interface == INTF_PCI) {
  158. if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_ASPM &&
  159. !RT_IN_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM)) {
  160. rtlpriv->intf_ops->enable_aspm(hw);
  161. RT_SET_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM);
  162. }
  163. }
  164. ppsc->swrf_processing = false;
  165. }
  166. void rtl_ips_nic_off_wq_callback(void *data)
  167. {
  168. struct rtl_works *rtlworks =
  169. container_of_dwork_rtl(data, struct rtl_works, ips_nic_off_wq);
  170. struct ieee80211_hw *hw = rtlworks->hw;
  171. struct rtl_priv *rtlpriv = rtl_priv(hw);
  172. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  173. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  174. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  175. enum rf_pwrstate rtstate;
  176. if (mac->opmode != NL80211_IFTYPE_STATION) {
  177. RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
  178. "not station return\n");
  179. return;
  180. }
  181. if (mac->p2p_in_use)
  182. return;
  183. if (mac->link_state > MAC80211_NOLINK)
  184. return;
  185. if (is_hal_stop(rtlhal))
  186. return;
  187. if (rtlpriv->sec.being_setkey)
  188. return;
  189. if (rtlpriv->cfg->ops->bt_coex_off_before_lps)
  190. rtlpriv->cfg->ops->bt_coex_off_before_lps(hw);
  191. if (ppsc->inactiveps) {
  192. rtstate = ppsc->rfpwr_state;
  193. /*
  194. *Do not enter IPS in the following conditions:
  195. *(1) RF is already OFF or Sleep
  196. *(2) swrf_processing (indicates the IPS is still under going)
  197. *(3) Connectted (only disconnected can trigger IPS)
  198. *(4) IBSS (send Beacon)
  199. *(5) AP mode (send Beacon)
  200. *(6) monitor mode (rcv packet)
  201. */
  202. if (rtstate == ERFON &&
  203. !ppsc->swrf_processing &&
  204. (mac->link_state == MAC80211_NOLINK) &&
  205. !mac->act_scanning) {
  206. RT_TRACE(rtlpriv, COMP_RF, DBG_TRACE,
  207. "IPSEnter(): Turn off RF\n");
  208. ppsc->inactive_pwrstate = ERFOFF;
  209. ppsc->in_powersavemode = true;
  210. /* call before RF off */
  211. if (rtlpriv->cfg->ops->get_btc_status())
  212. rtlpriv->btcoexist.btc_ops->btc_ips_notify(rtlpriv,
  213. ppsc->inactive_pwrstate);
  214. /*rtl_pci_reset_trx_ring(hw); */
  215. _rtl_ps_inactive_ps(hw);
  216. }
  217. }
  218. }
  219. void rtl_ips_nic_off(struct ieee80211_hw *hw)
  220. {
  221. struct rtl_priv *rtlpriv = rtl_priv(hw);
  222. /* because when link with ap, mac80211 will ask us
  223. * to disable nic quickly after scan before linking,
  224. * this will cause link failed, so we delay 100ms here
  225. */
  226. queue_delayed_work(rtlpriv->works.rtl_wq,
  227. &rtlpriv->works.ips_nic_off_wq, MSECS(100));
  228. }
  229. /* NOTICE: any opmode should exc nic_on, or disable without
  230. * nic_on may something wrong, like adhoc TP
  231. */
  232. void rtl_ips_nic_on(struct ieee80211_hw *hw)
  233. {
  234. struct rtl_priv *rtlpriv = rtl_priv(hw);
  235. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  236. enum rf_pwrstate rtstate;
  237. cancel_delayed_work(&rtlpriv->works.ips_nic_off_wq);
  238. spin_lock(&rtlpriv->locks.ips_lock);
  239. if (ppsc->inactiveps) {
  240. rtstate = ppsc->rfpwr_state;
  241. if (rtstate != ERFON &&
  242. !ppsc->swrf_processing &&
  243. ppsc->rfoff_reason <= RF_CHANGE_BY_IPS) {
  244. ppsc->inactive_pwrstate = ERFON;
  245. ppsc->in_powersavemode = false;
  246. _rtl_ps_inactive_ps(hw);
  247. /* call after RF on */
  248. if (rtlpriv->cfg->ops->get_btc_status())
  249. rtlpriv->btcoexist.btc_ops->btc_ips_notify(rtlpriv,
  250. ppsc->inactive_pwrstate);
  251. }
  252. }
  253. spin_unlock(&rtlpriv->locks.ips_lock);
  254. }
  255. EXPORT_SYMBOL_GPL(rtl_ips_nic_on);
  256. /*for FW LPS*/
  257. /*
  258. *Determine if we can set Fw into PS mode
  259. *in current condition.Return TRUE if it
  260. *can enter PS mode.
  261. */
  262. static bool rtl_get_fwlps_doze(struct ieee80211_hw *hw)
  263. {
  264. struct rtl_priv *rtlpriv = rtl_priv(hw);
  265. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  266. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  267. u32 ps_timediff;
  268. ps_timediff = jiffies_to_msecs(jiffies -
  269. ppsc->last_delaylps_stamp_jiffies);
  270. if (ps_timediff < 2000) {
  271. RT_TRACE(rtlpriv, COMP_POWER, DBG_LOUD,
  272. "Delay enter Fw LPS for DHCP, ARP, or EAPOL exchanging state\n");
  273. return false;
  274. }
  275. if (mac->link_state != MAC80211_LINKED)
  276. return false;
  277. if (mac->opmode == NL80211_IFTYPE_ADHOC)
  278. return false;
  279. return true;
  280. }
  281. /* Change current and default preamble mode.*/
  282. void rtl_lps_set_psmode(struct ieee80211_hw *hw, u8 rt_psmode)
  283. {
  284. struct rtl_priv *rtlpriv = rtl_priv(hw);
  285. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  286. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  287. bool enter_fwlps;
  288. if (mac->opmode == NL80211_IFTYPE_ADHOC)
  289. return;
  290. if (mac->link_state != MAC80211_LINKED)
  291. return;
  292. if (ppsc->dot11_psmode == rt_psmode)
  293. return;
  294. /* Update power save mode configured. */
  295. ppsc->dot11_psmode = rt_psmode;
  296. /*
  297. *<FW control LPS>
  298. *1. Enter PS mode
  299. * Set RPWM to Fw to turn RF off and send H2C fw_pwrmode
  300. * cmd to set Fw into PS mode.
  301. *2. Leave PS mode
  302. * Send H2C fw_pwrmode cmd to Fw to set Fw into Active
  303. * mode and set RPWM to turn RF on.
  304. */
  305. if ((ppsc->fwctrl_lps) && ppsc->report_linked) {
  306. if (ppsc->dot11_psmode == EACTIVE) {
  307. RT_TRACE(rtlpriv, COMP_RF, DBG_DMESG,
  308. "FW LPS leave ps_mode:%x\n",
  309. FW_PS_ACTIVE_MODE);
  310. enter_fwlps = false;
  311. ppsc->pwr_mode = FW_PS_ACTIVE_MODE;
  312. ppsc->smart_ps = 0;
  313. rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_FW_LPS_ACTION,
  314. (u8 *)(&enter_fwlps));
  315. if (ppsc->p2p_ps_info.opp_ps)
  316. rtl_p2p_ps_cmd(hw , P2P_PS_ENABLE);
  317. if (rtlpriv->cfg->ops->get_btc_status())
  318. rtlpriv->btcoexist.btc_ops->btc_lps_notify(rtlpriv, rt_psmode);
  319. } else {
  320. if (rtl_get_fwlps_doze(hw)) {
  321. RT_TRACE(rtlpriv, COMP_RF, DBG_DMESG,
  322. "FW LPS enter ps_mode:%x\n",
  323. ppsc->fwctrl_psmode);
  324. if (rtlpriv->cfg->ops->get_btc_status())
  325. rtlpriv->btcoexist.btc_ops->btc_lps_notify(rtlpriv, rt_psmode);
  326. enter_fwlps = true;
  327. ppsc->pwr_mode = ppsc->fwctrl_psmode;
  328. ppsc->smart_ps = 2;
  329. rtlpriv->cfg->ops->set_hw_reg(hw,
  330. HW_VAR_FW_LPS_ACTION,
  331. (u8 *)(&enter_fwlps));
  332. } else {
  333. /* Reset the power save related parameters. */
  334. ppsc->dot11_psmode = EACTIVE;
  335. }
  336. }
  337. }
  338. }
  339. /* Interrupt safe routine to enter the leisure power save mode.*/
  340. static void rtl_lps_enter_core(struct ieee80211_hw *hw)
  341. {
  342. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  343. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  344. struct rtl_priv *rtlpriv = rtl_priv(hw);
  345. unsigned long flag;
  346. if (!ppsc->fwctrl_lps)
  347. return;
  348. if (rtlpriv->sec.being_setkey)
  349. return;
  350. if (rtlpriv->link_info.busytraffic)
  351. return;
  352. /*sleep after linked 10s, to let DHCP and 4-way handshake ok enough!! */
  353. if (mac->cnt_after_linked < 5)
  354. return;
  355. if (mac->opmode == NL80211_IFTYPE_ADHOC)
  356. return;
  357. if (mac->link_state != MAC80211_LINKED)
  358. return;
  359. spin_lock_irqsave(&rtlpriv->locks.lps_lock, flag);
  360. if (ppsc->dot11_psmode == EACTIVE) {
  361. RT_TRACE(rtlpriv, COMP_POWER, DBG_LOUD,
  362. "Enter 802.11 power save mode...\n");
  363. rtl_lps_set_psmode(hw, EAUTOPS);
  364. }
  365. spin_unlock_irqrestore(&rtlpriv->locks.lps_lock, flag);
  366. }
  367. /* Interrupt safe routine to leave the leisure power save mode.*/
  368. static void rtl_lps_leave_core(struct ieee80211_hw *hw)
  369. {
  370. struct rtl_priv *rtlpriv = rtl_priv(hw);
  371. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  372. struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
  373. unsigned long flag;
  374. spin_lock_irqsave(&rtlpriv->locks.lps_lock, flag);
  375. if (ppsc->fwctrl_lps) {
  376. if (ppsc->dot11_psmode != EACTIVE) {
  377. /*FIX ME */
  378. /*rtlpriv->cfg->ops->enable_interrupt(hw); */
  379. if (ppsc->reg_rfps_level & RT_RF_LPS_LEVEL_ASPM &&
  380. RT_IN_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM) &&
  381. rtlhal->interface == INTF_PCI) {
  382. rtlpriv->intf_ops->disable_aspm(hw);
  383. RT_CLEAR_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM);
  384. }
  385. RT_TRACE(rtlpriv, COMP_POWER, DBG_LOUD,
  386. "Busy Traffic,Leave 802.11 power save..\n");
  387. rtl_lps_set_psmode(hw, EACTIVE);
  388. }
  389. }
  390. spin_unlock_irqrestore(&rtlpriv->locks.lps_lock, flag);
  391. }
  392. /* For sw LPS*/
  393. void rtl_swlps_beacon(struct ieee80211_hw *hw, void *data, unsigned int len)
  394. {
  395. struct rtl_priv *rtlpriv = rtl_priv(hw);
  396. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  397. struct ieee80211_hdr *hdr = data;
  398. struct ieee80211_tim_ie *tim_ie;
  399. u8 *tim;
  400. u8 tim_len;
  401. bool u_buffed;
  402. bool m_buffed;
  403. if (mac->opmode != NL80211_IFTYPE_STATION)
  404. return;
  405. if (!rtlpriv->psc.swctrl_lps)
  406. return;
  407. if (rtlpriv->mac80211.link_state != MAC80211_LINKED)
  408. return;
  409. if (!rtlpriv->psc.sw_ps_enabled)
  410. return;
  411. if (rtlpriv->psc.fwctrl_lps)
  412. return;
  413. if (likely(!(hw->conf.flags & IEEE80211_CONF_PS)))
  414. return;
  415. /* check if this really is a beacon */
  416. if (!ieee80211_is_beacon(hdr->frame_control))
  417. return;
  418. /* min. beacon length + FCS_LEN */
  419. if (len <= 40 + FCS_LEN)
  420. return;
  421. /* and only beacons from the associated BSSID, please */
  422. if (!ether_addr_equal_64bits(hdr->addr3, rtlpriv->mac80211.bssid))
  423. return;
  424. rtlpriv->psc.last_beacon = jiffies;
  425. tim = rtl_find_ie(data, len - FCS_LEN, WLAN_EID_TIM);
  426. if (!tim)
  427. return;
  428. if (tim[1] < sizeof(*tim_ie))
  429. return;
  430. tim_len = tim[1];
  431. tim_ie = (struct ieee80211_tim_ie *) &tim[2];
  432. if (!WARN_ON_ONCE(!hw->conf.ps_dtim_period))
  433. rtlpriv->psc.dtim_counter = tim_ie->dtim_count;
  434. /* Check whenever the PHY can be turned off again. */
  435. /* 1. What about buffered unicast traffic for our AID? */
  436. u_buffed = ieee80211_check_tim(tim_ie, tim_len,
  437. rtlpriv->mac80211.assoc_id);
  438. /* 2. Maybe the AP wants to send multicast/broadcast data? */
  439. m_buffed = tim_ie->bitmap_ctrl & 0x01;
  440. rtlpriv->psc.multi_buffered = m_buffed;
  441. /* unicast will process by mac80211 through
  442. * set ~IEEE80211_CONF_PS, So we just check
  443. * multicast frames here */
  444. if (!m_buffed) {
  445. /* back to low-power land. and delay is
  446. * prevent null power save frame tx fail */
  447. queue_delayed_work(rtlpriv->works.rtl_wq,
  448. &rtlpriv->works.ps_work, MSECS(5));
  449. } else {
  450. RT_TRACE(rtlpriv, COMP_POWER, DBG_DMESG,
  451. "u_bufferd: %x, m_buffered: %x\n", u_buffed, m_buffed);
  452. }
  453. }
  454. EXPORT_SYMBOL_GPL(rtl_swlps_beacon);
  455. void rtl_swlps_rf_awake(struct ieee80211_hw *hw)
  456. {
  457. struct rtl_priv *rtlpriv = rtl_priv(hw);
  458. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  459. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  460. unsigned long flag;
  461. if (!rtlpriv->psc.swctrl_lps)
  462. return;
  463. if (mac->link_state != MAC80211_LINKED)
  464. return;
  465. if (ppsc->reg_rfps_level & RT_RF_LPS_LEVEL_ASPM &&
  466. RT_IN_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM)) {
  467. rtlpriv->intf_ops->disable_aspm(hw);
  468. RT_CLEAR_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM);
  469. }
  470. spin_lock_irqsave(&rtlpriv->locks.lps_lock, flag);
  471. rtl_ps_set_rf_state(hw, ERFON, RF_CHANGE_BY_PS);
  472. spin_unlock_irqrestore(&rtlpriv->locks.lps_lock, flag);
  473. }
  474. void rtl_swlps_rfon_wq_callback(void *data)
  475. {
  476. struct rtl_works *rtlworks =
  477. container_of_dwork_rtl(data, struct rtl_works, ps_rfon_wq);
  478. struct ieee80211_hw *hw = rtlworks->hw;
  479. rtl_swlps_rf_awake(hw);
  480. }
  481. void rtl_swlps_rf_sleep(struct ieee80211_hw *hw)
  482. {
  483. struct rtl_priv *rtlpriv = rtl_priv(hw);
  484. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  485. struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
  486. unsigned long flag;
  487. u8 sleep_intv;
  488. if (!rtlpriv->psc.sw_ps_enabled)
  489. return;
  490. if ((rtlpriv->sec.being_setkey) ||
  491. (mac->opmode == NL80211_IFTYPE_ADHOC))
  492. return;
  493. /*sleep after linked 10s, to let DHCP and 4-way handshake ok enough!! */
  494. if ((mac->link_state != MAC80211_LINKED) || (mac->cnt_after_linked < 5))
  495. return;
  496. if (rtlpriv->link_info.busytraffic)
  497. return;
  498. spin_lock(&rtlpriv->locks.rf_ps_lock);
  499. if (rtlpriv->psc.rfchange_inprogress) {
  500. spin_unlock(&rtlpriv->locks.rf_ps_lock);
  501. return;
  502. }
  503. spin_unlock(&rtlpriv->locks.rf_ps_lock);
  504. spin_lock_irqsave(&rtlpriv->locks.lps_lock, flag);
  505. rtl_ps_set_rf_state(hw, ERFSLEEP, RF_CHANGE_BY_PS);
  506. spin_unlock_irqrestore(&rtlpriv->locks.lps_lock, flag);
  507. if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_ASPM &&
  508. !RT_IN_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM)) {
  509. rtlpriv->intf_ops->enable_aspm(hw);
  510. RT_SET_PS_LEVEL(ppsc, RT_PS_LEVEL_ASPM);
  511. }
  512. /* here is power save alg, when this beacon is DTIM
  513. * we will set sleep time to dtim_period * n;
  514. * when this beacon is not DTIM, we will set sleep
  515. * time to sleep_intv = rtlpriv->psc.dtim_counter or
  516. * MAX_SW_LPS_SLEEP_INTV(default set to 5) */
  517. if (rtlpriv->psc.dtim_counter == 0) {
  518. if (hw->conf.ps_dtim_period == 1)
  519. sleep_intv = hw->conf.ps_dtim_period * 2;
  520. else
  521. sleep_intv = hw->conf.ps_dtim_period;
  522. } else {
  523. sleep_intv = rtlpriv->psc.dtim_counter;
  524. }
  525. if (sleep_intv > MAX_SW_LPS_SLEEP_INTV)
  526. sleep_intv = MAX_SW_LPS_SLEEP_INTV;
  527. /* this print should always be dtim_conter = 0 &
  528. * sleep = dtim_period, that meaons, we should
  529. * awake before every dtim */
  530. RT_TRACE(rtlpriv, COMP_POWER, DBG_DMESG,
  531. "dtim_counter:%x will sleep :%d beacon_intv\n",
  532. rtlpriv->psc.dtim_counter, sleep_intv);
  533. /* we tested that 40ms is enough for sw & hw sw delay */
  534. queue_delayed_work(rtlpriv->works.rtl_wq, &rtlpriv->works.ps_rfon_wq,
  535. MSECS(sleep_intv * mac->vif->bss_conf.beacon_int - 40));
  536. }
  537. void rtl_lps_change_work_callback(struct work_struct *work)
  538. {
  539. struct rtl_works *rtlworks =
  540. container_of(work, struct rtl_works, lps_change_work);
  541. struct ieee80211_hw *hw = rtlworks->hw;
  542. struct rtl_priv *rtlpriv = rtl_priv(hw);
  543. if (rtlpriv->enter_ps)
  544. rtl_lps_enter_core(hw);
  545. else
  546. rtl_lps_leave_core(hw);
  547. }
  548. EXPORT_SYMBOL_GPL(rtl_lps_change_work_callback);
  549. void rtl_lps_enter(struct ieee80211_hw *hw)
  550. {
  551. struct rtl_priv *rtlpriv = rtl_priv(hw);
  552. if (!in_interrupt())
  553. return rtl_lps_enter_core(hw);
  554. rtlpriv->enter_ps = true;
  555. schedule_work(&rtlpriv->works.lps_change_work);
  556. }
  557. EXPORT_SYMBOL_GPL(rtl_lps_enter);
  558. void rtl_lps_leave(struct ieee80211_hw *hw)
  559. {
  560. struct rtl_priv *rtlpriv = rtl_priv(hw);
  561. if (!in_interrupt())
  562. return rtl_lps_leave_core(hw);
  563. rtlpriv->enter_ps = false;
  564. schedule_work(&rtlpriv->works.lps_change_work);
  565. }
  566. EXPORT_SYMBOL_GPL(rtl_lps_leave);
  567. void rtl_swlps_wq_callback(void *data)
  568. {
  569. struct rtl_works *rtlworks = container_of_dwork_rtl(data,
  570. struct rtl_works,
  571. ps_work);
  572. struct ieee80211_hw *hw = rtlworks->hw;
  573. struct rtl_priv *rtlpriv = rtl_priv(hw);
  574. bool ps = false;
  575. ps = (hw->conf.flags & IEEE80211_CONF_PS);
  576. /* we can sleep after ps null send ok */
  577. if (rtlpriv->psc.state_inap) {
  578. rtl_swlps_rf_sleep(hw);
  579. if (rtlpriv->psc.state && !ps) {
  580. rtlpriv->psc.sleep_ms = jiffies_to_msecs(jiffies -
  581. rtlpriv->psc.last_action);
  582. }
  583. if (ps)
  584. rtlpriv->psc.last_slept = jiffies;
  585. rtlpriv->psc.last_action = jiffies;
  586. rtlpriv->psc.state = ps;
  587. }
  588. }
  589. static void rtl_p2p_noa_ie(struct ieee80211_hw *hw, void *data,
  590. unsigned int len)
  591. {
  592. struct rtl_priv *rtlpriv = rtl_priv(hw);
  593. struct ieee80211_mgmt *mgmt = data;
  594. struct rtl_p2p_ps_info *p2pinfo = &(rtlpriv->psc.p2p_ps_info);
  595. u8 *pos, *end, *ie;
  596. u16 noa_len;
  597. static u8 p2p_oui_ie_type[4] = {0x50, 0x6f, 0x9a, 0x09};
  598. u8 noa_num, index , i, noa_index = 0;
  599. bool find_p2p_ie = false , find_p2p_ps_ie = false;
  600. pos = (u8 *)mgmt->u.beacon.variable;
  601. end = data + len;
  602. ie = NULL;
  603. while (pos + 1 < end) {
  604. if (pos + 2 + pos[1] > end)
  605. return;
  606. if (pos[0] == 221 && pos[1] > 4) {
  607. if (memcmp(&pos[2], p2p_oui_ie_type, 4) == 0) {
  608. ie = pos + 2+4;
  609. break;
  610. }
  611. }
  612. pos += 2 + pos[1];
  613. }
  614. if (ie == NULL)
  615. return;
  616. find_p2p_ie = true;
  617. /*to find noa ie*/
  618. while (ie + 1 < end) {
  619. noa_len = READEF2BYTE((__le16 *)&ie[1]);
  620. if (ie + 3 + ie[1] > end)
  621. return;
  622. if (ie[0] == 12) {
  623. find_p2p_ps_ie = true;
  624. if ((noa_len - 2) % 13 != 0) {
  625. RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
  626. "P2P notice of absence: invalid length.%d\n",
  627. noa_len);
  628. return;
  629. } else {
  630. noa_num = (noa_len - 2) / 13;
  631. }
  632. noa_index = ie[3];
  633. if (rtlpriv->psc.p2p_ps_info.p2p_ps_mode ==
  634. P2P_PS_NONE || noa_index != p2pinfo->noa_index) {
  635. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD,
  636. "update NOA ie.\n");
  637. p2pinfo->noa_index = noa_index;
  638. p2pinfo->opp_ps = (ie[4] >> 7);
  639. p2pinfo->ctwindow = ie[4] & 0x7F;
  640. p2pinfo->noa_num = noa_num;
  641. index = 5;
  642. for (i = 0; i < noa_num; i++) {
  643. p2pinfo->noa_count_type[i] =
  644. READEF1BYTE(ie+index);
  645. index += 1;
  646. p2pinfo->noa_duration[i] =
  647. READEF4BYTE((__le32 *)ie+index);
  648. index += 4;
  649. p2pinfo->noa_interval[i] =
  650. READEF4BYTE((__le32 *)ie+index);
  651. index += 4;
  652. p2pinfo->noa_start_time[i] =
  653. READEF4BYTE((__le32 *)ie+index);
  654. index += 4;
  655. }
  656. if (p2pinfo->opp_ps == 1) {
  657. p2pinfo->p2p_ps_mode = P2P_PS_CTWINDOW;
  658. /* Driver should wait LPS entering
  659. * CTWindow
  660. */
  661. if (rtlpriv->psc.fw_current_inpsmode)
  662. rtl_p2p_ps_cmd(hw,
  663. P2P_PS_ENABLE);
  664. } else if (p2pinfo->noa_num > 0) {
  665. p2pinfo->p2p_ps_mode = P2P_PS_NOA;
  666. rtl_p2p_ps_cmd(hw, P2P_PS_ENABLE);
  667. } else if (p2pinfo->p2p_ps_mode > P2P_PS_NONE) {
  668. rtl_p2p_ps_cmd(hw, P2P_PS_DISABLE);
  669. }
  670. }
  671. break;
  672. }
  673. ie += 3 + noa_len;
  674. }
  675. if (find_p2p_ie == true) {
  676. if ((p2pinfo->p2p_ps_mode > P2P_PS_NONE) &&
  677. (find_p2p_ps_ie == false))
  678. rtl_p2p_ps_cmd(hw, P2P_PS_DISABLE);
  679. }
  680. }
  681. static void rtl_p2p_action_ie(struct ieee80211_hw *hw, void *data,
  682. unsigned int len)
  683. {
  684. struct rtl_priv *rtlpriv = rtl_priv(hw);
  685. struct ieee80211_mgmt *mgmt = data;
  686. struct rtl_p2p_ps_info *p2pinfo = &(rtlpriv->psc.p2p_ps_info);
  687. u8 noa_num, index , i , noa_index = 0;
  688. u8 *pos, *end, *ie;
  689. u16 noa_len;
  690. static u8 p2p_oui_ie_type[4] = {0x50, 0x6f, 0x9a, 0x09};
  691. pos = (u8 *)&mgmt->u.action.category;
  692. end = data + len;
  693. ie = NULL;
  694. if (pos[0] == 0x7f) {
  695. if (memcmp(&pos[1], p2p_oui_ie_type, 4) == 0)
  696. ie = pos + 3+4;
  697. }
  698. if (ie == NULL)
  699. return;
  700. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD, "action frame find P2P IE.\n");
  701. /*to find noa ie*/
  702. while (ie + 1 < end) {
  703. noa_len = READEF2BYTE((__le16 *)&ie[1]);
  704. if (ie + 3 + ie[1] > end)
  705. return;
  706. if (ie[0] == 12) {
  707. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD, "find NOA IE.\n");
  708. RT_PRINT_DATA(rtlpriv, COMP_FW, DBG_LOUD, "noa ie ",
  709. ie, noa_len);
  710. if ((noa_len - 2) % 13 != 0) {
  711. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD,
  712. "P2P notice of absence: invalid length.%d\n",
  713. noa_len);
  714. return;
  715. } else {
  716. noa_num = (noa_len - 2) / 13;
  717. }
  718. noa_index = ie[3];
  719. if (rtlpriv->psc.p2p_ps_info.p2p_ps_mode ==
  720. P2P_PS_NONE || noa_index != p2pinfo->noa_index) {
  721. p2pinfo->noa_index = noa_index;
  722. p2pinfo->opp_ps = (ie[4] >> 7);
  723. p2pinfo->ctwindow = ie[4] & 0x7F;
  724. p2pinfo->noa_num = noa_num;
  725. index = 5;
  726. for (i = 0; i < noa_num; i++) {
  727. p2pinfo->noa_count_type[i] =
  728. READEF1BYTE(ie+index);
  729. index += 1;
  730. p2pinfo->noa_duration[i] =
  731. READEF4BYTE((__le32 *)ie+index);
  732. index += 4;
  733. p2pinfo->noa_interval[i] =
  734. READEF4BYTE((__le32 *)ie+index);
  735. index += 4;
  736. p2pinfo->noa_start_time[i] =
  737. READEF4BYTE((__le32 *)ie+index);
  738. index += 4;
  739. }
  740. if (p2pinfo->opp_ps == 1) {
  741. p2pinfo->p2p_ps_mode = P2P_PS_CTWINDOW;
  742. /* Driver should wait LPS entering
  743. * CTWindow
  744. */
  745. if (rtlpriv->psc.fw_current_inpsmode)
  746. rtl_p2p_ps_cmd(hw,
  747. P2P_PS_ENABLE);
  748. } else if (p2pinfo->noa_num > 0) {
  749. p2pinfo->p2p_ps_mode = P2P_PS_NOA;
  750. rtl_p2p_ps_cmd(hw, P2P_PS_ENABLE);
  751. } else if (p2pinfo->p2p_ps_mode > P2P_PS_NONE) {
  752. rtl_p2p_ps_cmd(hw, P2P_PS_DISABLE);
  753. }
  754. }
  755. break;
  756. }
  757. ie += 3 + noa_len;
  758. }
  759. }
  760. void rtl_p2p_ps_cmd(struct ieee80211_hw *hw , u8 p2p_ps_state)
  761. {
  762. struct rtl_priv *rtlpriv = rtl_priv(hw);
  763. struct rtl_ps_ctl *rtlps = rtl_psc(rtl_priv(hw));
  764. struct rtl_p2p_ps_info *p2pinfo = &(rtlpriv->psc.p2p_ps_info);
  765. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD, " p2p state %x\n" , p2p_ps_state);
  766. switch (p2p_ps_state) {
  767. case P2P_PS_DISABLE:
  768. p2pinfo->p2p_ps_state = p2p_ps_state;
  769. rtlpriv->cfg->ops->set_hw_reg(hw, HW_VAR_H2C_FW_P2P_PS_OFFLOAD,
  770. &p2p_ps_state);
  771. p2pinfo->noa_index = 0;
  772. p2pinfo->ctwindow = 0;
  773. p2pinfo->opp_ps = 0;
  774. p2pinfo->noa_num = 0;
  775. p2pinfo->p2p_ps_mode = P2P_PS_NONE;
  776. if (rtlps->fw_current_inpsmode) {
  777. if (rtlps->smart_ps == 0) {
  778. rtlps->smart_ps = 2;
  779. rtlpriv->cfg->ops->set_hw_reg(hw,
  780. HW_VAR_H2C_FW_PWRMODE,
  781. &rtlps->pwr_mode);
  782. }
  783. }
  784. break;
  785. case P2P_PS_ENABLE:
  786. if (p2pinfo->p2p_ps_mode > P2P_PS_NONE) {
  787. p2pinfo->p2p_ps_state = p2p_ps_state;
  788. if (p2pinfo->ctwindow > 0) {
  789. if (rtlps->smart_ps != 0) {
  790. rtlps->smart_ps = 0;
  791. rtlpriv->cfg->ops->set_hw_reg(hw,
  792. HW_VAR_H2C_FW_PWRMODE,
  793. &rtlps->pwr_mode);
  794. }
  795. }
  796. rtlpriv->cfg->ops->set_hw_reg(hw,
  797. HW_VAR_H2C_FW_P2P_PS_OFFLOAD,
  798. &p2p_ps_state);
  799. }
  800. break;
  801. case P2P_PS_SCAN:
  802. case P2P_PS_SCAN_DONE:
  803. case P2P_PS_ALLSTASLEEP:
  804. if (p2pinfo->p2p_ps_mode > P2P_PS_NONE) {
  805. p2pinfo->p2p_ps_state = p2p_ps_state;
  806. rtlpriv->cfg->ops->set_hw_reg(hw,
  807. HW_VAR_H2C_FW_P2P_PS_OFFLOAD,
  808. &p2p_ps_state);
  809. }
  810. break;
  811. default:
  812. break;
  813. }
  814. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD,
  815. "ctwindow %x oppps %x\n",
  816. p2pinfo->ctwindow , p2pinfo->opp_ps);
  817. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD,
  818. "count %x duration %x index %x interval %x start time %x noa num %x\n",
  819. p2pinfo->noa_count_type[0],
  820. p2pinfo->noa_duration[0],
  821. p2pinfo->noa_index,
  822. p2pinfo->noa_interval[0],
  823. p2pinfo->noa_start_time[0],
  824. p2pinfo->noa_num);
  825. RT_TRACE(rtlpriv, COMP_FW, DBG_LOUD, "end\n");
  826. }
  827. void rtl_p2p_info(struct ieee80211_hw *hw, void *data, unsigned int len)
  828. {
  829. struct rtl_priv *rtlpriv = rtl_priv(hw);
  830. struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
  831. struct ieee80211_hdr *hdr = data;
  832. if (!mac->p2p)
  833. return;
  834. if (mac->link_state != MAC80211_LINKED)
  835. return;
  836. /* min. beacon length + FCS_LEN */
  837. if (len <= 40 + FCS_LEN)
  838. return;
  839. /* and only beacons from the associated BSSID, please */
  840. if (!ether_addr_equal_64bits(hdr->addr3, rtlpriv->mac80211.bssid))
  841. return;
  842. /* check if this really is a beacon */
  843. if (!(ieee80211_is_beacon(hdr->frame_control) ||
  844. ieee80211_is_probe_resp(hdr->frame_control) ||
  845. ieee80211_is_action(hdr->frame_control)))
  846. return;
  847. if (ieee80211_is_action(hdr->frame_control))
  848. rtl_p2p_action_ie(hw , data , len - FCS_LEN);
  849. else
  850. rtl_p2p_noa_ie(hw , data , len - FCS_LEN);
  851. }
  852. EXPORT_SYMBOL_GPL(rtl_p2p_info);