rtw_pwrctrl.c 18 KB

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  1. /******************************************************************************
  2. *
  3. * Copyright(c) 2007 - 2012 Realtek Corporation. All rights reserved.
  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. * You should have received a copy of the GNU General Public License along with
  15. * this program; if not, write to the Free Software Foundation, Inc.,
  16. * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
  17. *
  18. *
  19. ******************************************************************************/
  20. #define _RTW_PWRCTRL_C_
  21. #include <osdep_service.h>
  22. #include <drv_types.h>
  23. #include <osdep_intf.h>
  24. #include <usb_ops_linux.h>
  25. #include <linux/usb.h>
  26. static int rtw_hw_suspend(struct adapter *padapter)
  27. {
  28. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  29. struct net_device *pnetdev = padapter->pnetdev;
  30. if ((!padapter->bup) || (padapter->bDriverStopped) ||
  31. (padapter->bSurpriseRemoved)) {
  32. DBG_88E("padapter->bup=%d bDriverStopped=%d bSurpriseRemoved = %d\n",
  33. padapter->bup, padapter->bDriverStopped,
  34. padapter->bSurpriseRemoved);
  35. goto error_exit;
  36. }
  37. /* system suspend */
  38. LeaveAllPowerSaveMode(padapter);
  39. DBG_88E("==> rtw_hw_suspend\n");
  40. _enter_pwrlock(&pwrpriv->lock);
  41. pwrpriv->bips_processing = true;
  42. /* s1. */
  43. if (pnetdev) {
  44. netif_carrier_off(pnetdev);
  45. netif_tx_stop_all_queues(pnetdev);
  46. }
  47. /* s2. */
  48. rtw_disassoc_cmd(padapter, 500, false);
  49. /* s2-2. indicate disconnect to os */
  50. {
  51. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  52. if (check_fwstate(pmlmepriv, _FW_LINKED)) {
  53. _clr_fwstate_(pmlmepriv, _FW_LINKED);
  54. rtw_led_control(padapter, LED_CTL_NO_LINK);
  55. rtw_os_indicate_disconnect(padapter);
  56. /* donnot enqueue cmd */
  57. rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_DISCONNECT, 0);
  58. }
  59. }
  60. /* s2-3. */
  61. rtw_free_assoc_resources(padapter);
  62. /* s2-4. */
  63. rtw_free_network_queue(padapter, true);
  64. rtw_ips_dev_unload(padapter);
  65. pwrpriv->rf_pwrstate = rf_off;
  66. pwrpriv->bips_processing = false;
  67. _exit_pwrlock(&pwrpriv->lock);
  68. return 0;
  69. error_exit:
  70. DBG_88E("%s, failed\n", __func__);
  71. return -1;
  72. }
  73. static int rtw_hw_resume(struct adapter *padapter)
  74. {
  75. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  76. struct net_device *pnetdev = padapter->pnetdev;
  77. /* system resume */
  78. DBG_88E("==> rtw_hw_resume\n");
  79. _enter_pwrlock(&pwrpriv->lock);
  80. pwrpriv->bips_processing = true;
  81. rtw_reset_drv_sw(padapter);
  82. if (pm_netdev_open(pnetdev, false) != 0) {
  83. _exit_pwrlock(&pwrpriv->lock);
  84. goto error_exit;
  85. }
  86. netif_device_attach(pnetdev);
  87. netif_carrier_on(pnetdev);
  88. if (!netif_queue_stopped(pnetdev))
  89. netif_start_queue(pnetdev);
  90. else
  91. netif_wake_queue(pnetdev);
  92. pwrpriv->bkeepfwalive = false;
  93. pwrpriv->brfoffbyhw = false;
  94. pwrpriv->rf_pwrstate = rf_on;
  95. pwrpriv->bips_processing = false;
  96. _exit_pwrlock(&pwrpriv->lock);
  97. return 0;
  98. error_exit:
  99. DBG_88E("%s, Open net dev failed\n", __func__);
  100. return -1;
  101. }
  102. void ips_enter(struct adapter *padapter)
  103. {
  104. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  105. struct xmit_priv *pxmit_priv = &padapter->xmitpriv;
  106. if (padapter->registrypriv.mp_mode == 1)
  107. return;
  108. if (pxmit_priv->free_xmitbuf_cnt != NR_XMITBUFF ||
  109. pxmit_priv->free_xmit_extbuf_cnt != NR_XMIT_EXTBUFF) {
  110. DBG_88E_LEVEL(_drv_info_, "There are some pkts to transmit\n");
  111. DBG_88E_LEVEL(_drv_info_, "free_xmitbuf_cnt: %d, free_xmit_extbuf_cnt: %d\n",
  112. pxmit_priv->free_xmitbuf_cnt, pxmit_priv->free_xmit_extbuf_cnt);
  113. return;
  114. }
  115. _enter_pwrlock(&pwrpriv->lock);
  116. pwrpriv->bips_processing = true;
  117. /* syn ips_mode with request */
  118. pwrpriv->ips_mode = pwrpriv->ips_mode_req;
  119. pwrpriv->ips_enter_cnts++;
  120. DBG_88E("==>ips_enter cnts:%d\n", pwrpriv->ips_enter_cnts);
  121. if (rf_off == pwrpriv->change_rfpwrstate) {
  122. pwrpriv->bpower_saving = true;
  123. DBG_88E_LEVEL(_drv_info_, "nolinked power save enter\n");
  124. if (pwrpriv->ips_mode == IPS_LEVEL_2)
  125. pwrpriv->bkeepfwalive = true;
  126. rtw_ips_pwr_down(padapter);
  127. pwrpriv->rf_pwrstate = rf_off;
  128. }
  129. pwrpriv->bips_processing = false;
  130. _exit_pwrlock(&pwrpriv->lock);
  131. }
  132. int ips_leave(struct adapter *padapter)
  133. {
  134. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  135. struct security_priv *psecuritypriv = &(padapter->securitypriv);
  136. struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
  137. int result = _SUCCESS;
  138. int keyid;
  139. _enter_pwrlock(&pwrpriv->lock);
  140. if ((pwrpriv->rf_pwrstate == rf_off) && (!pwrpriv->bips_processing)) {
  141. pwrpriv->bips_processing = true;
  142. pwrpriv->change_rfpwrstate = rf_on;
  143. pwrpriv->ips_leave_cnts++;
  144. DBG_88E("==>ips_leave cnts:%d\n", pwrpriv->ips_leave_cnts);
  145. result = rtw_ips_pwr_up(padapter);
  146. if (result == _SUCCESS) {
  147. pwrpriv->rf_pwrstate = rf_on;
  148. }
  149. DBG_88E_LEVEL(_drv_info_, "nolinked power save leave\n");
  150. if ((_WEP40_ == psecuritypriv->dot11PrivacyAlgrthm) || (_WEP104_ == psecuritypriv->dot11PrivacyAlgrthm)) {
  151. DBG_88E("==>%s, channel(%d), processing(%x)\n", __func__, padapter->mlmeextpriv.cur_channel, pwrpriv->bips_processing);
  152. set_channel_bwmode(padapter, padapter->mlmeextpriv.cur_channel, HAL_PRIME_CHNL_OFFSET_DONT_CARE, HT_CHANNEL_WIDTH_20);
  153. for (keyid = 0; keyid < 4; keyid++) {
  154. if (pmlmepriv->key_mask & BIT(keyid)) {
  155. if (keyid == psecuritypriv->dot11PrivacyKeyIndex)
  156. result = rtw_set_key(padapter, psecuritypriv, keyid, 1);
  157. else
  158. result = rtw_set_key(padapter, psecuritypriv, keyid, 0);
  159. }
  160. }
  161. }
  162. DBG_88E("==> ips_leave.....LED(0x%08x)...\n", usb_read32(padapter, 0x4c));
  163. pwrpriv->bips_processing = false;
  164. pwrpriv->bkeepfwalive = false;
  165. pwrpriv->bpower_saving = false;
  166. }
  167. _exit_pwrlock(&pwrpriv->lock);
  168. return result;
  169. }
  170. static bool rtw_pwr_unassociated_idle(struct adapter *adapter)
  171. {
  172. struct mlme_priv *pmlmepriv = &(adapter->mlmepriv);
  173. bool ret = false;
  174. if (time_after_eq(adapter->pwrctrlpriv.ips_deny_time, jiffies))
  175. goto exit;
  176. if (check_fwstate(pmlmepriv, WIFI_ASOC_STATE|WIFI_SITE_MONITOR) ||
  177. check_fwstate(pmlmepriv, WIFI_UNDER_LINKING|WIFI_UNDER_WPS) ||
  178. check_fwstate(pmlmepriv, WIFI_AP_STATE) ||
  179. check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE|WIFI_ADHOC_STATE))
  180. goto exit;
  181. ret = true;
  182. exit:
  183. return ret;
  184. }
  185. void rtw_ps_processor(struct adapter *padapter)
  186. {
  187. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  188. struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
  189. enum rt_rf_power_state rfpwrstate;
  190. pwrpriv->ps_processing = true;
  191. if (pwrpriv->bips_processing)
  192. goto exit;
  193. if (padapter->pwrctrlpriv.bHWPwrPindetect) {
  194. rfpwrstate = RfOnOffDetect(padapter);
  195. DBG_88E("@@@@- #2 %s==> rfstate:%s\n", __func__, (rfpwrstate == rf_on) ? "rf_on" : "rf_off");
  196. if (rfpwrstate != pwrpriv->rf_pwrstate) {
  197. if (rfpwrstate == rf_off) {
  198. pwrpriv->change_rfpwrstate = rf_off;
  199. pwrpriv->brfoffbyhw = true;
  200. rtw_hw_suspend(padapter);
  201. } else {
  202. pwrpriv->change_rfpwrstate = rf_on;
  203. rtw_hw_resume(padapter);
  204. }
  205. DBG_88E("current rf_pwrstate(%s)\n", (pwrpriv->rf_pwrstate == rf_off) ? "rf_off" : "rf_on");
  206. }
  207. pwrpriv->pwr_state_check_cnts++;
  208. }
  209. if (pwrpriv->ips_mode_req == IPS_NONE)
  210. goto exit;
  211. if (!rtw_pwr_unassociated_idle(padapter))
  212. goto exit;
  213. if ((pwrpriv->rf_pwrstate == rf_on) && ((pwrpriv->pwr_state_check_cnts%4) == 0)) {
  214. DBG_88E("==>%s .fw_state(%x)\n", __func__, get_fwstate(pmlmepriv));
  215. pwrpriv->change_rfpwrstate = rf_off;
  216. ips_enter(padapter);
  217. }
  218. exit:
  219. rtw_set_pwr_state_check_timer(&padapter->pwrctrlpriv);
  220. pwrpriv->ps_processing = false;
  221. }
  222. static void pwr_state_check_handler(unsigned long data)
  223. {
  224. struct adapter *padapter = (struct adapter *)data;
  225. rtw_ps_cmd(padapter);
  226. }
  227. /*
  228. *
  229. * Parameters
  230. * padapter
  231. * pslv power state level, only could be PS_STATE_S0 ~ PS_STATE_S4
  232. *
  233. */
  234. void rtw_set_rpwm(struct adapter *padapter, u8 pslv)
  235. {
  236. u8 rpwm;
  237. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  238. pslv = PS_STATE(pslv);
  239. if (pwrpriv->btcoex_rfon) {
  240. if (pslv < PS_STATE_S4)
  241. pslv = PS_STATE_S3;
  242. }
  243. if ((pwrpriv->rpwm == pslv)) {
  244. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_err_,
  245. ("%s: Already set rpwm[0x%02X], new=0x%02X!\n", __func__, pwrpriv->rpwm, pslv));
  246. return;
  247. }
  248. if ((padapter->bSurpriseRemoved) ||
  249. (!padapter->hw_init_completed)) {
  250. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_err_,
  251. ("%s: SurpriseRemoved(%d) hw_init_completed(%d)\n",
  252. __func__, padapter->bSurpriseRemoved, padapter->hw_init_completed));
  253. pwrpriv->cpwm = PS_STATE_S4;
  254. return;
  255. }
  256. if (padapter->bDriverStopped) {
  257. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_err_,
  258. ("%s: change power state(0x%02X) when DriverStopped\n", __func__, pslv));
  259. if (pslv < PS_STATE_S2) {
  260. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_err_,
  261. ("%s: Reject to enter PS_STATE(0x%02X) lower than S2 when DriverStopped!!\n", __func__, pslv));
  262. return;
  263. }
  264. }
  265. rpwm = pslv | pwrpriv->tog;
  266. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_notice_,
  267. ("rtw_set_rpwm: rpwm=0x%02x cpwm=0x%02x\n", rpwm, pwrpriv->cpwm));
  268. pwrpriv->rpwm = pslv;
  269. rtw_hal_set_hwreg(padapter, HW_VAR_SET_RPWM, (u8 *)(&rpwm));
  270. pwrpriv->tog += 0x80;
  271. pwrpriv->cpwm = pslv;
  272. }
  273. static u8 PS_RDY_CHECK(struct adapter *padapter)
  274. {
  275. u32 curr_time, delta_time;
  276. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  277. struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
  278. curr_time = jiffies;
  279. delta_time = curr_time - pwrpriv->DelayLPSLastTimeStamp;
  280. if (delta_time < LPS_DELAY_TIME)
  281. return false;
  282. if ((check_fwstate(pmlmepriv, _FW_LINKED) == false) ||
  283. (check_fwstate(pmlmepriv, _FW_UNDER_SURVEY)) ||
  284. (check_fwstate(pmlmepriv, WIFI_AP_STATE)) ||
  285. (check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE)) ||
  286. (check_fwstate(pmlmepriv, WIFI_ADHOC_STATE)))
  287. return false;
  288. if (pwrpriv->bInSuspend)
  289. return false;
  290. if ((padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X) && (padapter->securitypriv.binstallGrpkey == false)) {
  291. DBG_88E("Group handshake still in progress !!!\n");
  292. return false;
  293. }
  294. return true;
  295. }
  296. void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode, u8 smart_ps, u8 bcn_ant_mode)
  297. {
  298. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  299. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_notice_,
  300. ("%s: PowerMode=%d Smart_PS=%d\n",
  301. __func__, ps_mode, smart_ps));
  302. if (ps_mode > PM_Card_Disable) {
  303. RT_TRACE(_module_rtl871x_pwrctrl_c_, _drv_err_, ("ps_mode:%d error\n", ps_mode));
  304. return;
  305. }
  306. if (pwrpriv->pwr_mode == ps_mode) {
  307. if (PS_MODE_ACTIVE == ps_mode)
  308. return;
  309. if ((pwrpriv->smart_ps == smart_ps) &&
  310. (pwrpriv->bcn_ant_mode == bcn_ant_mode))
  311. return;
  312. }
  313. /* if (pwrpriv->pwr_mode == PS_MODE_ACTIVE) */
  314. if (ps_mode == PS_MODE_ACTIVE) {
  315. if (PS_RDY_CHECK(padapter)) {
  316. DBG_88E("%s: Enter 802.11 power save\n", __func__);
  317. pwrpriv->bFwCurrentInPSMode = true;
  318. pwrpriv->pwr_mode = ps_mode;
  319. pwrpriv->smart_ps = smart_ps;
  320. pwrpriv->bcn_ant_mode = bcn_ant_mode;
  321. rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
  322. rtw_set_rpwm(padapter, PS_STATE_S2);
  323. }
  324. }
  325. }
  326. /*
  327. * Return:
  328. * 0: Leave OK
  329. * -1: Timeout
  330. * -2: Other error
  331. */
  332. s32 LPS_RF_ON_check(struct adapter *padapter, u32 delay_ms)
  333. {
  334. u32 start_time;
  335. u8 bAwake = false;
  336. s32 err = 0;
  337. start_time = jiffies;
  338. while (1) {
  339. rtw_hal_get_hwreg(padapter, HW_VAR_FWLPS_RF_ON, &bAwake);
  340. if (bAwake)
  341. break;
  342. if (padapter->bSurpriseRemoved) {
  343. err = -2;
  344. DBG_88E("%s: device surprise removed!!\n", __func__);
  345. break;
  346. }
  347. if (rtw_get_passing_time_ms(start_time) > delay_ms) {
  348. err = -1;
  349. DBG_88E("%s: Wait for FW LPS leave more than %u ms!!!\n", __func__, delay_ms);
  350. break;
  351. }
  352. msleep(1);
  353. }
  354. return err;
  355. }
  356. /* */
  357. /* Description: */
  358. /* Enter the leisure power save mode. */
  359. /* */
  360. void LPS_Enter(struct adapter *padapter)
  361. {
  362. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  363. if (PS_RDY_CHECK(padapter) == false)
  364. return;
  365. if (pwrpriv->bLeisurePs) {
  366. /* Idle for a while if we connect to AP a while ago. */
  367. if (pwrpriv->LpsIdleCount >= 2) { /* 4 Sec */
  368. if (pwrpriv->pwr_mode == PS_MODE_ACTIVE) {
  369. pwrpriv->bpower_saving = true;
  370. DBG_88E("%s smart_ps:%d\n", __func__, pwrpriv->smart_ps);
  371. /* For Tenda W311R IOT issue */
  372. rtw_set_ps_mode(padapter, pwrpriv->power_mgnt, pwrpriv->smart_ps, 0);
  373. }
  374. } else {
  375. pwrpriv->LpsIdleCount++;
  376. }
  377. }
  378. }
  379. #define LPS_LEAVE_TIMEOUT_MS 100
  380. /* Description: */
  381. /* Leave the leisure power save mode. */
  382. void LPS_Leave(struct adapter *padapter)
  383. {
  384. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  385. if (pwrpriv->bLeisurePs) {
  386. if (pwrpriv->pwr_mode != PS_MODE_ACTIVE) {
  387. rtw_set_ps_mode(padapter, PS_MODE_ACTIVE, 0, 0);
  388. if (pwrpriv->pwr_mode == PS_MODE_ACTIVE)
  389. LPS_RF_ON_check(padapter, LPS_LEAVE_TIMEOUT_MS);
  390. }
  391. }
  392. pwrpriv->bpower_saving = false;
  393. }
  394. /* */
  395. /* Description: Leave all power save mode: LPS, FwLPS, IPS if needed. */
  396. /* Move code to function by tynli. 2010.03.26. */
  397. /* */
  398. void LeaveAllPowerSaveMode(struct adapter *Adapter)
  399. {
  400. struct mlme_priv *pmlmepriv = &(Adapter->mlmepriv);
  401. u8 enqueue = 0;
  402. if (check_fwstate(pmlmepriv, _FW_LINKED))
  403. rtw_lps_ctrl_wk_cmd(Adapter, LPS_CTRL_LEAVE, enqueue);
  404. }
  405. void rtw_init_pwrctrl_priv(struct adapter *padapter)
  406. {
  407. struct pwrctrl_priv *pwrctrlpriv = &padapter->pwrctrlpriv;
  408. _init_pwrlock(&pwrctrlpriv->lock);
  409. pwrctrlpriv->rf_pwrstate = rf_on;
  410. pwrctrlpriv->ips_enter_cnts = 0;
  411. pwrctrlpriv->ips_leave_cnts = 0;
  412. pwrctrlpriv->bips_processing = false;
  413. pwrctrlpriv->ips_mode = padapter->registrypriv.ips_mode;
  414. pwrctrlpriv->ips_mode_req = padapter->registrypriv.ips_mode;
  415. pwrctrlpriv->pwr_state_check_interval = RTW_PWR_STATE_CHK_INTERVAL;
  416. pwrctrlpriv->pwr_state_check_cnts = 0;
  417. pwrctrlpriv->bInternalAutoSuspend = false;
  418. pwrctrlpriv->bInSuspend = false;
  419. pwrctrlpriv->bkeepfwalive = false;
  420. pwrctrlpriv->LpsIdleCount = 0;
  421. if (padapter->registrypriv.mp_mode == 1)
  422. pwrctrlpriv->power_mgnt = PS_MODE_ACTIVE;
  423. else
  424. pwrctrlpriv->power_mgnt = padapter->registrypriv.power_mgnt;/* PS_MODE_MIN; */
  425. pwrctrlpriv->bLeisurePs = (PS_MODE_ACTIVE != pwrctrlpriv->power_mgnt) ? true : false;
  426. pwrctrlpriv->bFwCurrentInPSMode = false;
  427. pwrctrlpriv->rpwm = 0;
  428. pwrctrlpriv->cpwm = PS_STATE_S4;
  429. pwrctrlpriv->pwr_mode = PS_MODE_ACTIVE;
  430. pwrctrlpriv->smart_ps = padapter->registrypriv.smart_ps;
  431. pwrctrlpriv->bcn_ant_mode = 0;
  432. pwrctrlpriv->tog = 0x80;
  433. pwrctrlpriv->btcoex_rfon = false;
  434. setup_timer(&pwrctrlpriv->pwr_state_check_timer,
  435. pwr_state_check_handler,
  436. (unsigned long)padapter);
  437. }
  438. /*
  439. * rtw_pwr_wakeup - Wake the NIC up from: 1)IPS. 2)USB autosuspend
  440. * @adapter: pointer to struct adapter structure
  441. * @ips_deffer_ms: the ms will prevent from falling into IPS after wakeup
  442. * Return _SUCCESS or _FAIL
  443. */
  444. int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *caller)
  445. {
  446. struct pwrctrl_priv *pwrpriv = &padapter->pwrctrlpriv;
  447. struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
  448. unsigned long expires;
  449. int ret = _SUCCESS;
  450. expires = jiffies + msecs_to_jiffies(ips_deffer_ms);
  451. if (time_before(pwrpriv->ips_deny_time, expires))
  452. pwrpriv->ips_deny_time = jiffies + msecs_to_jiffies(ips_deffer_ms);
  453. {
  454. u32 start = jiffies;
  455. if (pwrpriv->ps_processing) {
  456. DBG_88E("%s wait ps_processing...\n", __func__);
  457. while (pwrpriv->ps_processing && rtw_get_passing_time_ms(start) <= 3000)
  458. usleep_range(1000, 3000);
  459. if (pwrpriv->ps_processing)
  460. DBG_88E("%s wait ps_processing timeout\n", __func__);
  461. else
  462. DBG_88E("%s wait ps_processing done\n", __func__);
  463. }
  464. }
  465. /* System suspend is not allowed to wakeup */
  466. if ((!pwrpriv->bInternalAutoSuspend) && (pwrpriv->bInSuspend)) {
  467. ret = _FAIL;
  468. goto exit;
  469. }
  470. /* block??? */
  471. if ((pwrpriv->bInternalAutoSuspend) && (padapter->net_closed)) {
  472. ret = _FAIL;
  473. goto exit;
  474. }
  475. /* I think this should be check in IPS, LPS, autosuspend functions... */
  476. if (check_fwstate(pmlmepriv, _FW_LINKED)) {
  477. ret = _SUCCESS;
  478. goto exit;
  479. }
  480. if (rf_off == pwrpriv->rf_pwrstate) {
  481. DBG_88E("%s call ips_leave....\n", __func__);
  482. if (_FAIL == ips_leave(padapter)) {
  483. DBG_88E("======> ips_leave fail.............\n");
  484. ret = _FAIL;
  485. goto exit;
  486. }
  487. }
  488. /* TODO: the following checking need to be merged... */
  489. if (padapter->bDriverStopped || !padapter->bup ||
  490. !padapter->hw_init_completed) {
  491. DBG_88E("%s: bDriverStopped=%d, bup=%d, hw_init_completed =%u\n"
  492. , caller
  493. , padapter->bDriverStopped
  494. , padapter->bup
  495. , padapter->hw_init_completed);
  496. ret = false;
  497. goto exit;
  498. }
  499. exit:
  500. expires = jiffies + msecs_to_jiffies(ips_deffer_ms);
  501. if (time_before(pwrpriv->ips_deny_time, expires))
  502. pwrpriv->ips_deny_time = jiffies + msecs_to_jiffies(ips_deffer_ms);
  503. return ret;
  504. }
  505. int rtw_pm_set_lps(struct adapter *padapter, u8 mode)
  506. {
  507. int ret = 0;
  508. struct pwrctrl_priv *pwrctrlpriv = &padapter->pwrctrlpriv;
  509. if (mode < PS_MODE_NUM) {
  510. if (pwrctrlpriv->power_mgnt != mode) {
  511. if (PS_MODE_ACTIVE == mode)
  512. LeaveAllPowerSaveMode(padapter);
  513. else
  514. pwrctrlpriv->LpsIdleCount = 2;
  515. pwrctrlpriv->power_mgnt = mode;
  516. pwrctrlpriv->bLeisurePs = (PS_MODE_ACTIVE != pwrctrlpriv->power_mgnt) ? true : false;
  517. }
  518. } else {
  519. ret = -EINVAL;
  520. }
  521. return ret;
  522. }
  523. int rtw_pm_set_ips(struct adapter *padapter, u8 mode)
  524. {
  525. struct pwrctrl_priv *pwrctrlpriv = &padapter->pwrctrlpriv;
  526. if (mode == IPS_NORMAL || mode == IPS_LEVEL_2) {
  527. rtw_ips_mode_req(pwrctrlpriv, mode);
  528. DBG_88E("%s %s\n", __func__, mode == IPS_NORMAL ? "IPS_NORMAL" : "IPS_LEVEL_2");
  529. return 0;
  530. } else if (mode == IPS_NONE) {
  531. rtw_ips_mode_req(pwrctrlpriv, mode);
  532. DBG_88E("%s %s\n", __func__, "IPS_NONE");
  533. if ((padapter->bSurpriseRemoved == 0) && (_FAIL == rtw_pwr_wakeup(padapter)))
  534. return -EFAULT;
  535. } else {
  536. return -EINVAL;
  537. }
  538. return 0;
  539. }