1 // SPDX-License-Identifier: GPL-2.0
2 /******************************************************************************
3 *
4 * Copyright(c) 2007 - 2012 Realtek Corporation. All rights reserved.
5 *
6 ******************************************************************************/
7 #include <drv_types.h>
8 #include <hal_data.h>
9 #include <linux/jiffies.h>
10
11
_ips_enter(struct adapter * padapter)12 void _ips_enter(struct adapter *padapter)
13 {
14 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
15
16 pwrpriv->bips_processing = true;
17
18 /* syn ips_mode with request */
19 pwrpriv->ips_mode = pwrpriv->ips_mode_req;
20
21 pwrpriv->ips_enter_cnts++;
22
23 if (rf_off == pwrpriv->change_rfpwrstate) {
24 pwrpriv->bpower_saving = true;
25
26 if (pwrpriv->ips_mode == IPS_LEVEL_2)
27 pwrpriv->bkeepfwalive = true;
28
29 rtw_ips_pwr_down(padapter);
30 pwrpriv->rf_pwrstate = rf_off;
31 }
32 pwrpriv->bips_processing = false;
33
34 }
35
ips_enter(struct adapter * padapter)36 void ips_enter(struct adapter *padapter)
37 {
38 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
39
40
41 hal_btcoex_IpsNotify(padapter, pwrpriv->ips_mode_req);
42
43 mutex_lock(&pwrpriv->lock);
44 _ips_enter(padapter);
45 mutex_unlock(&pwrpriv->lock);
46 }
47
_ips_leave(struct adapter * padapter)48 int _ips_leave(struct adapter *padapter)
49 {
50 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
51 int result = _SUCCESS;
52
53 if ((pwrpriv->rf_pwrstate == rf_off) && (!pwrpriv->bips_processing)) {
54 pwrpriv->bips_processing = true;
55 pwrpriv->change_rfpwrstate = rf_on;
56 pwrpriv->ips_leave_cnts++;
57
58 result = rtw_ips_pwr_up(padapter);
59 if (result == _SUCCESS) {
60 pwrpriv->rf_pwrstate = rf_on;
61 }
62 pwrpriv->bips_processing = false;
63
64 pwrpriv->bkeepfwalive = false;
65 pwrpriv->bpower_saving = false;
66 }
67
68 return result;
69 }
70
ips_leave(struct adapter * padapter)71 int ips_leave(struct adapter *padapter)
72 {
73 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
74 int ret;
75
76 if (!is_primary_adapter(padapter))
77 return _SUCCESS;
78
79 mutex_lock(&pwrpriv->lock);
80 ret = _ips_leave(padapter);
81 mutex_unlock(&pwrpriv->lock);
82
83 if (ret == _SUCCESS)
84 hal_btcoex_IpsNotify(padapter, IPS_NONE);
85
86 return ret;
87 }
88
rtw_pwr_unassociated_idle(struct adapter * adapter)89 static bool rtw_pwr_unassociated_idle(struct adapter *adapter)
90 {
91 struct adapter *buddy = adapter->pbuddy_adapter;
92 struct mlme_priv *pmlmepriv = &(adapter->mlmepriv);
93 struct xmit_priv *pxmit_priv = &adapter->xmitpriv;
94
95 bool ret = false;
96
97 if (adapter_to_pwrctl(adapter)->bpower_saving)
98 goto exit;
99
100 if (time_before(jiffies, adapter_to_pwrctl(adapter)->ips_deny_time))
101 goto exit;
102
103 if (check_fwstate(pmlmepriv, WIFI_ASOC_STATE|WIFI_SITE_MONITOR)
104 || check_fwstate(pmlmepriv, WIFI_UNDER_LINKING|WIFI_UNDER_WPS)
105 || check_fwstate(pmlmepriv, WIFI_AP_STATE)
106 || check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE|WIFI_ADHOC_STATE)
107 )
108 goto exit;
109
110 /* consider buddy, if exist */
111 if (buddy) {
112 struct mlme_priv *b_pmlmepriv = &(buddy->mlmepriv);
113
114 if (check_fwstate(b_pmlmepriv, WIFI_ASOC_STATE|WIFI_SITE_MONITOR)
115 || check_fwstate(b_pmlmepriv, WIFI_UNDER_LINKING|WIFI_UNDER_WPS)
116 || check_fwstate(b_pmlmepriv, WIFI_AP_STATE)
117 || check_fwstate(b_pmlmepriv, WIFI_ADHOC_MASTER_STATE|WIFI_ADHOC_STATE)
118 )
119 goto exit;
120 }
121
122 if (pxmit_priv->free_xmitbuf_cnt != NR_XMITBUFF ||
123 pxmit_priv->free_xmit_extbuf_cnt != NR_XMIT_EXTBUFF) {
124 netdev_dbg(adapter->pnetdev,
125 "There are some pkts to transmit\n");
126 netdev_dbg(adapter->pnetdev,
127 "free_xmitbuf_cnt: %d, free_xmit_extbuf_cnt: %d\n",
128 pxmit_priv->free_xmitbuf_cnt,
129 pxmit_priv->free_xmit_extbuf_cnt);
130 goto exit;
131 }
132
133 ret = true;
134
135 exit:
136 return ret;
137 }
138
139
140 /*
141 * ATTENTION:
142 *rtw_ps_processor() doesn't handle LPS.
143 */
rtw_ps_processor(struct adapter * padapter)144 void rtw_ps_processor(struct adapter *padapter)
145 {
146 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
147 struct dvobj_priv *psdpriv = padapter->dvobj;
148 struct debug_priv *pdbgpriv = &psdpriv->drv_dbg;
149 u32 ps_deny = 0;
150
151 mutex_lock(&adapter_to_pwrctl(padapter)->lock);
152 ps_deny = rtw_ps_deny_get(padapter);
153 mutex_unlock(&adapter_to_pwrctl(padapter)->lock);
154 if (ps_deny != 0)
155 goto exit;
156
157 if (pwrpriv->bInSuspend) {/* system suspend or autosuspend */
158 pdbgpriv->dbg_ps_insuspend_cnt++;
159 return;
160 }
161
162 pwrpriv->ps_processing = true;
163
164 if (pwrpriv->ips_mode_req == IPS_NONE)
165 goto exit;
166
167 if (!rtw_pwr_unassociated_idle(padapter))
168 goto exit;
169
170 if ((pwrpriv->rf_pwrstate == rf_on) && ((pwrpriv->pwr_state_check_cnts%4) == 0)) {
171 pwrpriv->change_rfpwrstate = rf_off;
172 {
173 ips_enter(padapter);
174 }
175 }
176 exit:
177 pwrpriv->ps_processing = false;
178 }
179
pwr_state_check_handler(struct timer_list * t)180 static void pwr_state_check_handler(struct timer_list *t)
181 {
182 struct pwrctrl_priv *pwrctrlpriv =
183 from_timer(pwrctrlpriv, t, pwr_state_check_timer);
184 struct adapter *padapter = pwrctrlpriv->adapter;
185
186 rtw_ps_cmd(padapter);
187 }
188
traffic_check_for_leave_lps(struct adapter * padapter,u8 tx,u32 tx_packets)189 void traffic_check_for_leave_lps(struct adapter *padapter, u8 tx, u32 tx_packets)
190 {
191 static unsigned long start_time;
192 static u32 xmit_cnt;
193 u8 bLeaveLPS = false;
194 struct mlme_priv *pmlmepriv = &padapter->mlmepriv;
195
196
197
198 if (tx) { /* from tx */
199 xmit_cnt += tx_packets;
200
201 if (start_time == 0)
202 start_time = jiffies;
203
204 if (jiffies_to_msecs(jiffies - start_time) > 2000) { /* 2 sec == watch dog timer */
205 if (xmit_cnt > 8) {
206 if (adapter_to_pwrctl(padapter)->bLeisurePs
207 && (adapter_to_pwrctl(padapter)->pwr_mode != PS_MODE_ACTIVE)
208 && !(hal_btcoex_IsBtControlLps(padapter))) {
209 bLeaveLPS = true;
210 }
211 }
212
213 start_time = jiffies;
214 xmit_cnt = 0;
215 }
216
217 } else { /* from rx path */
218 if (pmlmepriv->LinkDetectInfo.NumRxUnicastOkInPeriod > 4/*2*/) {
219 if (adapter_to_pwrctl(padapter)->bLeisurePs
220 && (adapter_to_pwrctl(padapter)->pwr_mode != PS_MODE_ACTIVE)
221 && !(hal_btcoex_IsBtControlLps(padapter)))
222 bLeaveLPS = true;
223 }
224 }
225
226 if (bLeaveLPS)
227 /* rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_LEAVE, 1); */
228 rtw_lps_ctrl_wk_cmd(padapter, LPS_CTRL_LEAVE, tx?0:1);
229 }
230
231 /*
232 * Description:
233 *This function MUST be called under power lock protect
234 *
235 * Parameters
236 *padapter
237 *pslv power state level, only could be PS_STATE_S0 ~ PS_STATE_S4
238 *
239 */
rtw_set_rpwm(struct adapter * padapter,u8 pslv)240 void rtw_set_rpwm(struct adapter *padapter, u8 pslv)
241 {
242 u8 rpwm;
243 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
244 u8 cpwm_orig;
245
246 pslv = PS_STATE(pslv);
247
248 if (!pwrpriv->brpwmtimeout) {
249 if (pwrpriv->rpwm == pslv ||
250 (pwrpriv->rpwm >= PS_STATE_S2 && pslv >= PS_STATE_S2))
251 return;
252
253 }
254
255 if ((padapter->bSurpriseRemoved) || !(padapter->hw_init_completed)) {
256 pwrpriv->cpwm = PS_STATE_S4;
257
258 return;
259 }
260
261 if (padapter->bDriverStopped) {
262 if (pslv < PS_STATE_S2)
263 return;
264 }
265
266 rpwm = pslv | pwrpriv->tog;
267 /* only when from PS_STATE S0/S1 to S2 and higher needs ACK */
268 if ((pwrpriv->cpwm < PS_STATE_S2) && (pslv >= PS_STATE_S2))
269 rpwm |= PS_ACK;
270
271 pwrpriv->rpwm = pslv;
272
273 cpwm_orig = 0;
274 if (rpwm & PS_ACK)
275 rtw_hal_get_hwreg(padapter, HW_VAR_CPWM, &cpwm_orig);
276
277 if (rpwm & PS_ACK)
278 _set_timer(&pwrpriv->pwr_rpwm_timer, LPS_RPWM_WAIT_MS);
279 rtw_hal_set_hwreg(padapter, HW_VAR_SET_RPWM, (u8 *)(&rpwm));
280
281 pwrpriv->tog += 0x80;
282
283 /* No LPS 32K, No Ack */
284 if (rpwm & PS_ACK) {
285 unsigned long start_time;
286 u8 cpwm_now;
287
288 start_time = jiffies;
289
290 /* polling cpwm */
291 do {
292 mdelay(1);
293 rtw_hal_get_hwreg(padapter, HW_VAR_CPWM, &cpwm_now);
294 if ((cpwm_orig ^ cpwm_now) & 0x80) {
295 pwrpriv->cpwm = PS_STATE_S4;
296 pwrpriv->cpwm_tog = cpwm_now & PS_TOGGLE;
297 break;
298 }
299
300 if (jiffies_to_msecs(jiffies - start_time) > LPS_RPWM_WAIT_MS) {
301 _set_timer(&pwrpriv->pwr_rpwm_timer, 1);
302 break;
303 }
304 } while (1);
305 } else
306 pwrpriv->cpwm = pslv;
307 }
308
PS_RDY_CHECK(struct adapter * padapter)309 static u8 PS_RDY_CHECK(struct adapter *padapter)
310 {
311 unsigned long curr_time, delta_time;
312 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
313 struct mlme_priv *pmlmepriv = &(padapter->mlmepriv);
314
315 if (pwrpriv->bInSuspend)
316 return false;
317
318 curr_time = jiffies;
319
320 delta_time = curr_time - pwrpriv->DelayLPSLastTimeStamp;
321
322 if (delta_time < LPS_DELAY_TIME)
323 return false;
324
325 if (check_fwstate(pmlmepriv, WIFI_SITE_MONITOR)
326 || check_fwstate(pmlmepriv, WIFI_UNDER_LINKING|WIFI_UNDER_WPS)
327 || check_fwstate(pmlmepriv, WIFI_AP_STATE)
328 || check_fwstate(pmlmepriv, WIFI_ADHOC_MASTER_STATE|WIFI_ADHOC_STATE)
329 || rtw_is_scan_deny(padapter)
330 )
331 return false;
332
333 if (padapter->securitypriv.dot11AuthAlgrthm == dot11AuthAlgrthm_8021X &&
334 !padapter->securitypriv.binstallGrpkey)
335 return false;
336
337 if (!rtw_cfg80211_pwr_mgmt(padapter))
338 return false;
339
340 return true;
341 }
342
rtw_set_ps_mode(struct adapter * padapter,u8 ps_mode,u8 smart_ps,u8 bcn_ant_mode,const char * msg)343 void rtw_set_ps_mode(struct adapter *padapter, u8 ps_mode, u8 smart_ps, u8 bcn_ant_mode, const char *msg)
344 {
345 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
346
347 if (ps_mode > PM_Card_Disable)
348 return;
349
350 if (pwrpriv->pwr_mode == ps_mode)
351 if (ps_mode == PS_MODE_ACTIVE)
352 return;
353
354
355 mutex_lock(&pwrpriv->lock);
356
357 /* if (pwrpriv->pwr_mode == PS_MODE_ACTIVE) */
358 if (ps_mode == PS_MODE_ACTIVE) {
359 if (!(hal_btcoex_IsBtControlLps(padapter))
360 || (hal_btcoex_IsBtControlLps(padapter)
361 && !(hal_btcoex_IsLpsOn(padapter)))) {
362 pwrpriv->pwr_mode = ps_mode;
363 rtw_set_rpwm(padapter, PS_STATE_S4);
364
365 rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
366 pwrpriv->fw_current_in_ps_mode = false;
367
368 hal_btcoex_LpsNotify(padapter, ps_mode);
369 }
370 } else {
371 if ((PS_RDY_CHECK(padapter) && check_fwstate(&padapter->mlmepriv, WIFI_ASOC_STATE)) ||
372 ((hal_btcoex_IsBtControlLps(padapter)) && (hal_btcoex_IsLpsOn(padapter)))
373 ) {
374 u8 pslv;
375
376 hal_btcoex_LpsNotify(padapter, ps_mode);
377
378 pwrpriv->fw_current_in_ps_mode = true;
379 pwrpriv->pwr_mode = ps_mode;
380 pwrpriv->smart_ps = smart_ps;
381 pwrpriv->bcn_ant_mode = bcn_ant_mode;
382 rtw_hal_set_hwreg(padapter, HW_VAR_H2C_FW_PWRMODE, (u8 *)(&ps_mode));
383
384 pslv = PS_STATE_S2;
385 if (pwrpriv->alives == 0)
386 pslv = PS_STATE_S0;
387
388 if (!(hal_btcoex_IsBtDisabled(padapter)) &&
389 (hal_btcoex_IsBtControlLps(padapter))) {
390 u8 val8;
391
392 val8 = hal_btcoex_LpsVal(padapter);
393 if (val8 & BIT(4))
394 pslv = PS_STATE_S2;
395 }
396
397 rtw_set_rpwm(padapter, pslv);
398 }
399 }
400
401 mutex_unlock(&pwrpriv->lock);
402 }
403
404 /*
405 * Return:
406 *0: Leave OK
407 *-1: Timeout
408 *-2: Other error
409 */
LPS_RF_ON_check(struct adapter * padapter,u32 delay_ms)410 s32 LPS_RF_ON_check(struct adapter *padapter, u32 delay_ms)
411 {
412 unsigned long start_time;
413 u8 bAwake = false;
414 s32 err = 0;
415
416
417 start_time = jiffies;
418 while (1) {
419 rtw_hal_get_hwreg(padapter, HW_VAR_FWLPS_RF_ON, &bAwake);
420 if (bAwake)
421 break;
422
423 if (padapter->bSurpriseRemoved) {
424 err = -2;
425 break;
426 }
427
428 if (jiffies_to_msecs(jiffies - start_time) > delay_ms) {
429 err = -1;
430 break;
431 }
432 msleep(1);
433 }
434
435 return err;
436 }
437
438 /* */
439 /* Description: */
440 /* Enter the leisure power save mode. */
441 /* */
LPS_Enter(struct adapter * padapter,const char * msg)442 void LPS_Enter(struct adapter *padapter, const char *msg)
443 {
444 struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
445 struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
446 int n_assoc_iface = 0;
447 char buf[32] = {0};
448
449 if (hal_btcoex_IsBtControlLps(padapter))
450 return;
451
452 /* Skip lps enter request if number of associated adapters is not 1 */
453 if (check_fwstate(&(dvobj->padapters->mlmepriv), WIFI_ASOC_STATE))
454 n_assoc_iface++;
455 if (n_assoc_iface != 1)
456 return;
457
458 /* Skip lps enter request for adapter not port0 */
459 if (get_iface_type(padapter) != IFACE_PORT0)
460 return;
461
462 if (!PS_RDY_CHECK(dvobj->padapters))
463 return;
464
465 if (pwrpriv->bLeisurePs) {
466 /* Idle for a while if we connect to AP a while ago. */
467 if (pwrpriv->LpsIdleCount >= 2) { /* 4 Sec */
468 if (pwrpriv->pwr_mode == PS_MODE_ACTIVE) {
469 scnprintf(buf, sizeof(buf), "WIFI-%s", msg);
470 pwrpriv->bpower_saving = true;
471 rtw_set_ps_mode(padapter, pwrpriv->power_mgnt, padapter->registrypriv.smart_ps, 0, buf);
472 }
473 } else
474 pwrpriv->LpsIdleCount++;
475 }
476 }
477
478 /* */
479 /* Description: */
480 /* Leave the leisure power save mode. */
481 /* */
LPS_Leave(struct adapter * padapter,const char * msg)482 void LPS_Leave(struct adapter *padapter, const char *msg)
483 {
484 #define LPS_LEAVE_TIMEOUT_MS 100
485
486 struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
487 struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
488 char buf[32] = {0};
489
490 if (hal_btcoex_IsBtControlLps(padapter))
491 return;
492
493 if (pwrpriv->bLeisurePs) {
494 if (pwrpriv->pwr_mode != PS_MODE_ACTIVE) {
495 scnprintf(buf, sizeof(buf), "WIFI-%s", msg);
496 rtw_set_ps_mode(padapter, PS_MODE_ACTIVE, 0, 0, buf);
497
498 if (pwrpriv->pwr_mode == PS_MODE_ACTIVE)
499 LPS_RF_ON_check(padapter, LPS_LEAVE_TIMEOUT_MS);
500 }
501 }
502
503 pwrpriv->bpower_saving = false;
504 }
505
LeaveAllPowerSaveModeDirect(struct adapter * Adapter)506 void LeaveAllPowerSaveModeDirect(struct adapter *Adapter)
507 {
508 struct adapter *pri_padapter = GET_PRIMARY_ADAPTER(Adapter);
509 struct mlme_priv *pmlmepriv = &(Adapter->mlmepriv);
510 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(Adapter);
511
512 if (Adapter->bSurpriseRemoved)
513 return;
514
515 if (check_fwstate(pmlmepriv, _FW_LINKED)) { /* connect */
516
517 if (pwrpriv->pwr_mode == PS_MODE_ACTIVE)
518 return;
519
520 mutex_lock(&pwrpriv->lock);
521
522 rtw_set_rpwm(Adapter, PS_STATE_S4);
523
524 mutex_unlock(&pwrpriv->lock);
525
526 rtw_lps_ctrl_wk_cmd(pri_padapter, LPS_CTRL_LEAVE, 0);
527 } else {
528 if (pwrpriv->rf_pwrstate == rf_off)
529 ips_leave(pri_padapter);
530 }
531 }
532
533 /* */
534 /* Description: Leave all power save mode: LPS, FwLPS, IPS if needed. */
535 /* Move code to function by tynli. 2010.03.26. */
536 /* */
LeaveAllPowerSaveMode(struct adapter * Adapter)537 void LeaveAllPowerSaveMode(struct adapter *Adapter)
538 {
539 struct dvobj_priv *dvobj = adapter_to_dvobj(Adapter);
540 u8 enqueue = 0;
541 int n_assoc_iface = 0;
542
543 if (!Adapter->bup)
544 return;
545
546 if (Adapter->bSurpriseRemoved)
547 return;
548
549 if (check_fwstate(&(dvobj->padapters->mlmepriv), WIFI_ASOC_STATE))
550 n_assoc_iface++;
551
552 if (n_assoc_iface) { /* connect */
553 enqueue = 1;
554
555 rtw_lps_ctrl_wk_cmd(Adapter, LPS_CTRL_LEAVE, enqueue);
556
557 LPS_Leave_check(Adapter);
558 } else {
559 if (adapter_to_pwrctl(Adapter)->rf_pwrstate == rf_off) {
560 ips_leave(Adapter);
561 }
562 }
563 }
564
LPS_Leave_check(struct adapter * padapter)565 void LPS_Leave_check(struct adapter *padapter)
566 {
567 struct pwrctrl_priv *pwrpriv;
568 unsigned long start_time;
569 u8 bReady;
570
571 pwrpriv = adapter_to_pwrctl(padapter);
572
573 bReady = false;
574 start_time = jiffies;
575
576 cond_resched();
577
578 while (1) {
579 mutex_lock(&pwrpriv->lock);
580
581 if (padapter->bSurpriseRemoved ||
582 !(padapter->hw_init_completed) ||
583 (pwrpriv->pwr_mode == PS_MODE_ACTIVE))
584 bReady = true;
585
586 mutex_unlock(&pwrpriv->lock);
587
588 if (bReady)
589 break;
590
591 if (jiffies_to_msecs(jiffies - start_time) > 100)
592 break;
593
594 msleep(1);
595 }
596 }
597
598 /*
599 * Caller:ISR handler...
600 *
601 * This will be called when CPWM interrupt is up.
602 *
603 * using to update cpwn of drv; and drv willl make a decision to up or down pwr level
604 */
cpwm_int_hdl(struct adapter * padapter,struct reportpwrstate_parm * preportpwrstate)605 void cpwm_int_hdl(struct adapter *padapter, struct reportpwrstate_parm *preportpwrstate)
606 {
607 struct pwrctrl_priv *pwrpriv;
608
609 pwrpriv = adapter_to_pwrctl(padapter);
610
611 mutex_lock(&pwrpriv->lock);
612
613 if (pwrpriv->rpwm < PS_STATE_S2)
614 goto exit;
615
616 pwrpriv->cpwm = PS_STATE(preportpwrstate->state);
617 pwrpriv->cpwm_tog = preportpwrstate->state & PS_TOGGLE;
618
619 if (pwrpriv->cpwm >= PS_STATE_S2) {
620 if (pwrpriv->alives & CMD_ALIVE)
621 complete(&padapter->cmdpriv.cmd_queue_comp);
622
623 if (pwrpriv->alives & XMIT_ALIVE)
624 complete(&padapter->xmitpriv.xmit_comp);
625 }
626
627 exit:
628 mutex_unlock(&pwrpriv->lock);
629
630 }
631
cpwm_event_callback(struct work_struct * work)632 static void cpwm_event_callback(struct work_struct *work)
633 {
634 struct pwrctrl_priv *pwrpriv = container_of(work, struct pwrctrl_priv, cpwm_event);
635 struct dvobj_priv *dvobj = pwrctl_to_dvobj(pwrpriv);
636 struct adapter *adapter = dvobj->if1;
637 struct reportpwrstate_parm report;
638
639 report.state = PS_STATE_S2;
640 cpwm_int_hdl(adapter, &report);
641 }
642
rpwmtimeout_workitem_callback(struct work_struct * work)643 static void rpwmtimeout_workitem_callback(struct work_struct *work)
644 {
645 struct adapter *padapter;
646 struct dvobj_priv *dvobj;
647 struct pwrctrl_priv *pwrpriv;
648
649
650 pwrpriv = container_of(work, struct pwrctrl_priv, rpwmtimeoutwi);
651 dvobj = pwrctl_to_dvobj(pwrpriv);
652 padapter = dvobj->if1;
653
654 mutex_lock(&pwrpriv->lock);
655 if ((pwrpriv->rpwm == pwrpriv->cpwm) || (pwrpriv->cpwm >= PS_STATE_S2))
656 goto exit;
657
658 mutex_unlock(&pwrpriv->lock);
659
660 if (rtw_read8(padapter, 0x100) != 0xEA) {
661 struct reportpwrstate_parm report;
662
663 report.state = PS_STATE_S2;
664 cpwm_int_hdl(padapter, &report);
665
666 return;
667 }
668
669 mutex_lock(&pwrpriv->lock);
670
671 if ((pwrpriv->rpwm == pwrpriv->cpwm) || (pwrpriv->cpwm >= PS_STATE_S2))
672 goto exit;
673
674 pwrpriv->brpwmtimeout = true;
675 rtw_set_rpwm(padapter, pwrpriv->rpwm);
676 pwrpriv->brpwmtimeout = false;
677
678 exit:
679 mutex_unlock(&pwrpriv->lock);
680 }
681
682 /*
683 * This function is a timer handler, can't do any IO in it.
684 */
pwr_rpwm_timeout_handler(struct timer_list * t)685 static void pwr_rpwm_timeout_handler(struct timer_list *t)
686 {
687 struct pwrctrl_priv *pwrpriv = from_timer(pwrpriv, t, pwr_rpwm_timer);
688
689 if ((pwrpriv->rpwm == pwrpriv->cpwm) || (pwrpriv->cpwm >= PS_STATE_S2))
690 return;
691
692 _set_workitem(&pwrpriv->rpwmtimeoutwi);
693 }
694
register_task_alive(struct pwrctrl_priv * pwrctrl,u32 tag)695 static inline void register_task_alive(struct pwrctrl_priv *pwrctrl, u32 tag)
696 {
697 pwrctrl->alives |= tag;
698 }
699
unregister_task_alive(struct pwrctrl_priv * pwrctrl,u32 tag)700 static inline void unregister_task_alive(struct pwrctrl_priv *pwrctrl, u32 tag)
701 {
702 pwrctrl->alives &= ~tag;
703 }
704
705
706 /*
707 * Description:
708 *Check if the fw_pwrstate is okay for I/O.
709 *If not (cpwm is less than S2), then the sub-routine
710 *will raise the cpwm to be greater than or equal to S2.
711 *
712 *Calling Context: Passive
713 *
714 *Constraint:
715 * 1. this function will request pwrctrl->lock
716 *
717 * Return Value:
718 *_SUCCESS hardware is ready for I/O
719 *_FAIL can't I/O right now
720 */
rtw_register_task_alive(struct adapter * padapter,u32 task)721 s32 rtw_register_task_alive(struct adapter *padapter, u32 task)
722 {
723 s32 res;
724 struct pwrctrl_priv *pwrctrl;
725 u8 pslv;
726
727 res = _SUCCESS;
728 pwrctrl = adapter_to_pwrctl(padapter);
729 pslv = PS_STATE_S2;
730
731 mutex_lock(&pwrctrl->lock);
732
733 register_task_alive(pwrctrl, task);
734
735 if (pwrctrl->fw_current_in_ps_mode) {
736 if (pwrctrl->cpwm < pslv) {
737 if (pwrctrl->cpwm < PS_STATE_S2)
738 res = _FAIL;
739 if (pwrctrl->rpwm < pslv)
740 rtw_set_rpwm(padapter, pslv);
741 }
742 }
743
744 mutex_unlock(&pwrctrl->lock);
745
746 if (res == _FAIL)
747 if (pwrctrl->cpwm >= PS_STATE_S2)
748 res = _SUCCESS;
749
750 return res;
751 }
752
753 /*
754 * Description:
755 *If task is done, call this func. to power down firmware again.
756 *
757 *Constraint:
758 * 1. this function will request pwrctrl->lock
759 *
760 * Return Value:
761 *none
762 */
rtw_unregister_task_alive(struct adapter * padapter,u32 task)763 void rtw_unregister_task_alive(struct adapter *padapter, u32 task)
764 {
765 struct pwrctrl_priv *pwrctrl;
766 u8 pslv;
767
768 pwrctrl = adapter_to_pwrctl(padapter);
769 pslv = PS_STATE_S0;
770
771 if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
772 u8 val8;
773
774 val8 = hal_btcoex_LpsVal(padapter);
775 if (val8 & BIT(4))
776 pslv = PS_STATE_S2;
777 }
778
779 mutex_lock(&pwrctrl->lock);
780
781 unregister_task_alive(pwrctrl, task);
782
783 if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
784 if (pwrctrl->cpwm > pslv)
785 if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
786 rtw_set_rpwm(padapter, pslv);
787
788 }
789
790 mutex_unlock(&pwrctrl->lock);
791 }
792
793 /*
794 * Caller: rtw_xmit_thread
795 *
796 * Check if the fw_pwrstate is okay for xmit.
797 * If not (cpwm is less than S3), then the sub-routine
798 * will raise the cpwm to be greater than or equal to S3.
799 *
800 * Calling Context: Passive
801 *
802 * Return Value:
803 * _SUCCESS rtw_xmit_thread can write fifo/txcmd afterwards.
804 * _FAIL rtw_xmit_thread can not do anything.
805 */
rtw_register_tx_alive(struct adapter * padapter)806 s32 rtw_register_tx_alive(struct adapter *padapter)
807 {
808 s32 res;
809 struct pwrctrl_priv *pwrctrl;
810 u8 pslv;
811
812 res = _SUCCESS;
813 pwrctrl = adapter_to_pwrctl(padapter);
814 pslv = PS_STATE_S2;
815
816 mutex_lock(&pwrctrl->lock);
817
818 register_task_alive(pwrctrl, XMIT_ALIVE);
819
820 if (pwrctrl->fw_current_in_ps_mode) {
821 if (pwrctrl->cpwm < pslv) {
822 if (pwrctrl->cpwm < PS_STATE_S2)
823 res = _FAIL;
824 if (pwrctrl->rpwm < pslv)
825 rtw_set_rpwm(padapter, pslv);
826 }
827 }
828
829 mutex_unlock(&pwrctrl->lock);
830
831 if (res == _FAIL)
832 if (pwrctrl->cpwm >= PS_STATE_S2)
833 res = _SUCCESS;
834
835 return res;
836 }
837
838 /*
839 * Caller: rtw_cmd_thread
840 *
841 * Check if the fw_pwrstate is okay for issuing cmd.
842 * If not (cpwm should be is less than S2), then the sub-routine
843 * will raise the cpwm to be greater than or equal to S2.
844 *
845 * Calling Context: Passive
846 *
847 * Return Value:
848 *_SUCCESS rtw_cmd_thread can issue cmds to firmware afterwards.
849 *_FAIL rtw_cmd_thread can not do anything.
850 */
rtw_register_cmd_alive(struct adapter * padapter)851 s32 rtw_register_cmd_alive(struct adapter *padapter)
852 {
853 s32 res;
854 struct pwrctrl_priv *pwrctrl;
855 u8 pslv;
856
857 res = _SUCCESS;
858 pwrctrl = adapter_to_pwrctl(padapter);
859 pslv = PS_STATE_S2;
860
861 mutex_lock(&pwrctrl->lock);
862
863 register_task_alive(pwrctrl, CMD_ALIVE);
864
865 if (pwrctrl->fw_current_in_ps_mode) {
866 if (pwrctrl->cpwm < pslv) {
867 if (pwrctrl->cpwm < PS_STATE_S2)
868 res = _FAIL;
869 if (pwrctrl->rpwm < pslv)
870 rtw_set_rpwm(padapter, pslv);
871 }
872 }
873
874 mutex_unlock(&pwrctrl->lock);
875
876 if (res == _FAIL)
877 if (pwrctrl->cpwm >= PS_STATE_S2)
878 res = _SUCCESS;
879
880 return res;
881 }
882
883 /*
884 * Caller: ISR
885 *
886 * If ISR's txdone,
887 * No more pkts for TX,
888 * Then driver shall call this fun. to power down firmware again.
889 */
rtw_unregister_tx_alive(struct adapter * padapter)890 void rtw_unregister_tx_alive(struct adapter *padapter)
891 {
892 struct pwrctrl_priv *pwrctrl;
893 u8 pslv;
894
895 pwrctrl = adapter_to_pwrctl(padapter);
896 pslv = PS_STATE_S0;
897
898 if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
899 u8 val8;
900
901 val8 = hal_btcoex_LpsVal(padapter);
902 if (val8 & BIT(4))
903 pslv = PS_STATE_S2;
904 }
905
906 mutex_lock(&pwrctrl->lock);
907
908 unregister_task_alive(pwrctrl, XMIT_ALIVE);
909
910 if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
911 if (pwrctrl->cpwm > pslv)
912 if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
913 rtw_set_rpwm(padapter, pslv);
914 }
915
916 mutex_unlock(&pwrctrl->lock);
917 }
918
919 /*
920 * Caller: ISR
921 *
922 * If all commands have been done,
923 * and no more command to do,
924 * then driver shall call this fun. to power down firmware again.
925 */
rtw_unregister_cmd_alive(struct adapter * padapter)926 void rtw_unregister_cmd_alive(struct adapter *padapter)
927 {
928 struct pwrctrl_priv *pwrctrl;
929 u8 pslv;
930
931 pwrctrl = adapter_to_pwrctl(padapter);
932 pslv = PS_STATE_S0;
933
934 if (!(hal_btcoex_IsBtDisabled(padapter)) && hal_btcoex_IsBtControlLps(padapter)) {
935 u8 val8;
936
937 val8 = hal_btcoex_LpsVal(padapter);
938 if (val8 & BIT(4))
939 pslv = PS_STATE_S2;
940 }
941
942 mutex_lock(&pwrctrl->lock);
943
944 unregister_task_alive(pwrctrl, CMD_ALIVE);
945
946 if ((pwrctrl->pwr_mode != PS_MODE_ACTIVE) && pwrctrl->fw_current_in_ps_mode) {
947 if (pwrctrl->cpwm > pslv) {
948 if ((pslv >= PS_STATE_S2) || (pwrctrl->alives == 0))
949 rtw_set_rpwm(padapter, pslv);
950 }
951 }
952
953 mutex_unlock(&pwrctrl->lock);
954 }
955
rtw_init_pwrctrl_priv(struct adapter * padapter)956 void rtw_init_pwrctrl_priv(struct adapter *padapter)
957 {
958 struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(padapter);
959
960 mutex_init(&pwrctrlpriv->lock);
961 pwrctrlpriv->rf_pwrstate = rf_on;
962 pwrctrlpriv->ips_enter_cnts = 0;
963 pwrctrlpriv->ips_leave_cnts = 0;
964 pwrctrlpriv->bips_processing = false;
965
966 pwrctrlpriv->ips_mode = padapter->registrypriv.ips_mode;
967 pwrctrlpriv->ips_mode_req = padapter->registrypriv.ips_mode;
968
969 pwrctrlpriv->pwr_state_check_interval = RTW_PWR_STATE_CHK_INTERVAL;
970 pwrctrlpriv->pwr_state_check_cnts = 0;
971 pwrctrlpriv->bInternalAutoSuspend = false;
972 pwrctrlpriv->bInSuspend = false;
973 pwrctrlpriv->bkeepfwalive = false;
974
975 pwrctrlpriv->LpsIdleCount = 0;
976 pwrctrlpriv->power_mgnt = padapter->registrypriv.power_mgnt;/* PS_MODE_MIN; */
977 pwrctrlpriv->bLeisurePs = pwrctrlpriv->power_mgnt != PS_MODE_ACTIVE;
978
979 pwrctrlpriv->fw_current_in_ps_mode = false;
980
981 pwrctrlpriv->rpwm = 0;
982 pwrctrlpriv->cpwm = PS_STATE_S4;
983
984 pwrctrlpriv->pwr_mode = PS_MODE_ACTIVE;
985 pwrctrlpriv->smart_ps = padapter->registrypriv.smart_ps;
986 pwrctrlpriv->bcn_ant_mode = 0;
987 pwrctrlpriv->dtim = 0;
988
989 pwrctrlpriv->tog = 0x80;
990
991 rtw_hal_set_hwreg(padapter, HW_VAR_SET_RPWM, (u8 *)(&pwrctrlpriv->rpwm));
992
993 _init_workitem(&pwrctrlpriv->cpwm_event, cpwm_event_callback, NULL);
994
995 pwrctrlpriv->brpwmtimeout = false;
996 pwrctrlpriv->adapter = padapter;
997 _init_workitem(&pwrctrlpriv->rpwmtimeoutwi, rpwmtimeout_workitem_callback, NULL);
998 timer_setup(&pwrctrlpriv->pwr_rpwm_timer, pwr_rpwm_timeout_handler, 0);
999 timer_setup(&pwrctrlpriv->pwr_state_check_timer,
1000 pwr_state_check_handler, 0);
1001
1002 pwrctrlpriv->wowlan_mode = false;
1003 pwrctrlpriv->wowlan_ap_mode = false;
1004 }
1005
1006
rtw_free_pwrctrl_priv(struct adapter * adapter)1007 void rtw_free_pwrctrl_priv(struct adapter *adapter)
1008 {
1009 }
1010
rtw_set_ips_deny(struct adapter * padapter,u32 ms)1011 inline void rtw_set_ips_deny(struct adapter *padapter, u32 ms)
1012 {
1013 struct pwrctrl_priv *pwrpriv = adapter_to_pwrctl(padapter);
1014 pwrpriv->ips_deny_time = jiffies + msecs_to_jiffies(ms);
1015 }
1016
1017 /*
1018 * rtw_pwr_wakeup - Wake the NIC up from: 1)IPS. 2)USB autosuspend
1019 * @adapter: pointer to struct adapter structure
1020 * @ips_deffer_ms: the ms will prevent from falling into IPS after wakeup
1021 * Return _SUCCESS or _FAIL
1022 */
1023
_rtw_pwr_wakeup(struct adapter * padapter,u32 ips_deffer_ms,const char * caller)1024 int _rtw_pwr_wakeup(struct adapter *padapter, u32 ips_deffer_ms, const char *caller)
1025 {
1026 struct dvobj_priv *dvobj = adapter_to_dvobj(padapter);
1027 struct pwrctrl_priv *pwrpriv = dvobj_to_pwrctl(dvobj);
1028 struct mlme_priv *pmlmepriv;
1029 int ret = _SUCCESS;
1030 unsigned long start = jiffies;
1031 unsigned long deny_time = jiffies + msecs_to_jiffies(ips_deffer_ms);
1032
1033 /* for LPS */
1034 LeaveAllPowerSaveMode(padapter);
1035
1036 /* IPS still bound with primary adapter */
1037 padapter = GET_PRIMARY_ADAPTER(padapter);
1038 pmlmepriv = &padapter->mlmepriv;
1039
1040 if (time_before(pwrpriv->ips_deny_time, deny_time))
1041 pwrpriv->ips_deny_time = deny_time;
1042
1043
1044 if (pwrpriv->ps_processing)
1045 while (pwrpriv->ps_processing && jiffies_to_msecs(jiffies - start) <= 3000)
1046 mdelay(10);
1047
1048 if (!(pwrpriv->bInternalAutoSuspend) && pwrpriv->bInSuspend)
1049 while (pwrpriv->bInSuspend && jiffies_to_msecs(jiffies - start) <= 3000
1050 )
1051 mdelay(10);
1052
1053 /* System suspend is not allowed to wakeup */
1054 if (!(pwrpriv->bInternalAutoSuspend) && pwrpriv->bInSuspend) {
1055 ret = _FAIL;
1056 goto exit;
1057 }
1058
1059 /* block??? */
1060 if (pwrpriv->bInternalAutoSuspend && padapter->net_closed) {
1061 ret = _FAIL;
1062 goto exit;
1063 }
1064
1065 /* I think this should be check in IPS, LPS, autosuspend functions... */
1066 if (check_fwstate(pmlmepriv, _FW_LINKED)) {
1067 ret = _SUCCESS;
1068 goto exit;
1069 }
1070
1071 if (rf_off == pwrpriv->rf_pwrstate) {
1072 {
1073 if (ips_leave(padapter) == _FAIL) {
1074 ret = _FAIL;
1075 goto exit;
1076 }
1077 }
1078 }
1079
1080 /* TODO: the following checking need to be merged... */
1081 if (padapter->bDriverStopped || !padapter->bup || !padapter->hw_init_completed) {
1082 ret = false;
1083 goto exit;
1084 }
1085
1086 exit:
1087 deny_time = jiffies + msecs_to_jiffies(ips_deffer_ms);
1088 if (time_before(pwrpriv->ips_deny_time, deny_time))
1089 pwrpriv->ips_deny_time = deny_time;
1090 return ret;
1091
1092 }
1093
rtw_pm_set_lps(struct adapter * padapter,u8 mode)1094 int rtw_pm_set_lps(struct adapter *padapter, u8 mode)
1095 {
1096 int ret = 0;
1097 struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(padapter);
1098
1099 if (mode < PS_MODE_NUM) {
1100 if (pwrctrlpriv->power_mgnt != mode) {
1101 if (mode == PS_MODE_ACTIVE)
1102 LeaveAllPowerSaveMode(padapter);
1103 else
1104 pwrctrlpriv->LpsIdleCount = 2;
1105
1106 pwrctrlpriv->power_mgnt = mode;
1107 pwrctrlpriv->bLeisurePs =
1108 pwrctrlpriv->power_mgnt != PS_MODE_ACTIVE;
1109 }
1110 } else
1111 ret = -EINVAL;
1112
1113 return ret;
1114 }
1115
rtw_pm_set_ips(struct adapter * padapter,u8 mode)1116 int rtw_pm_set_ips(struct adapter *padapter, u8 mode)
1117 {
1118 struct pwrctrl_priv *pwrctrlpriv = adapter_to_pwrctl(padapter);
1119
1120 if (mode == IPS_NORMAL || mode == IPS_LEVEL_2) {
1121 rtw_ips_mode_req(pwrctrlpriv, mode);
1122 return 0;
1123 } else if (mode == IPS_NONE) {
1124 rtw_ips_mode_req(pwrctrlpriv, mode);
1125 if ((padapter->bSurpriseRemoved == 0) && (rtw_pwr_wakeup(padapter) == _FAIL))
1126 return -EFAULT;
1127 } else
1128 return -EINVAL;
1129
1130 return 0;
1131 }
1132
1133 /*
1134 * ATTENTION:
1135 *This function will request pwrctrl LOCK!
1136 */
rtw_ps_deny(struct adapter * padapter,enum ps_deny_reason reason)1137 void rtw_ps_deny(struct adapter *padapter, enum ps_deny_reason reason)
1138 {
1139 struct pwrctrl_priv *pwrpriv;
1140
1141 pwrpriv = adapter_to_pwrctl(padapter);
1142
1143 mutex_lock(&pwrpriv->lock);
1144 pwrpriv->ps_deny |= BIT(reason);
1145 mutex_unlock(&pwrpriv->lock);
1146 }
1147
1148 /*
1149 * ATTENTION:
1150 *This function will request pwrctrl LOCK!
1151 */
rtw_ps_deny_cancel(struct adapter * padapter,enum ps_deny_reason reason)1152 void rtw_ps_deny_cancel(struct adapter *padapter, enum ps_deny_reason reason)
1153 {
1154 struct pwrctrl_priv *pwrpriv;
1155
1156 pwrpriv = adapter_to_pwrctl(padapter);
1157
1158 mutex_lock(&pwrpriv->lock);
1159 pwrpriv->ps_deny &= ~BIT(reason);
1160 mutex_unlock(&pwrpriv->lock);
1161 }
1162
1163 /*
1164 * ATTENTION:
1165 *Before calling this function pwrctrl lock should be occupied already,
1166 *otherwise it may return incorrect value.
1167 */
rtw_ps_deny_get(struct adapter * padapter)1168 u32 rtw_ps_deny_get(struct adapter *padapter)
1169 {
1170 return adapter_to_pwrctl(padapter)->ps_deny;
1171 }
1172