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1 /*
2  * drivers/base/power/domain.c - Common code related to device power domains.
3  *
4  * Copyright (C) 2011 Rafael J. Wysocki <rjw@sisk.pl>, Renesas Electronics Corp.
5  *
6  * This file is released under the GPLv2.
7  */
8 
9 #include <linux/kernel.h>
10 #include <linux/io.h>
11 #include <linux/platform_device.h>
12 #include <linux/pm_runtime.h>
13 #include <linux/pm_domain.h>
14 #include <linux/pm_qos.h>
15 #include <linux/slab.h>
16 #include <linux/err.h>
17 #include <linux/sched.h>
18 #include <linux/suspend.h>
19 #include <linux/export.h>
20 
21 #define GENPD_DEV_CALLBACK(genpd, type, callback, dev)		\
22 ({								\
23 	type (*__routine)(struct device *__d); 			\
24 	type __ret = (type)0;					\
25 								\
26 	__routine = genpd->dev_ops.callback; 			\
27 	if (__routine) {					\
28 		__ret = __routine(dev); 			\
29 	}							\
30 	__ret;							\
31 })
32 
33 #define GENPD_DEV_TIMED_CALLBACK(genpd, type, callback, dev, field, name)	\
34 ({										\
35 	ktime_t __start = ktime_get();						\
36 	type __retval = GENPD_DEV_CALLBACK(genpd, type, callback, dev);		\
37 	s64 __elapsed = ktime_to_ns(ktime_sub(ktime_get(), __start));		\
38 	struct gpd_timing_data *__td = &dev_gpd_data(dev)->td;			\
39 	if (!__retval && __elapsed > __td->field) {				\
40 		__td->field = __elapsed;					\
41 		dev_dbg(dev, name " latency exceeded, new value %lld ns\n",	\
42 			__elapsed);						\
43 		genpd->max_off_time_changed = true;				\
44 		__td->constraint_changed = true;				\
45 	}									\
46 	__retval;								\
47 })
48 
49 static LIST_HEAD(gpd_list);
50 static DEFINE_MUTEX(gpd_list_lock);
51 
pm_genpd_lookup_name(const char * domain_name)52 static struct generic_pm_domain *pm_genpd_lookup_name(const char *domain_name)
53 {
54 	struct generic_pm_domain *genpd = NULL, *gpd;
55 
56 	if (IS_ERR_OR_NULL(domain_name))
57 		return NULL;
58 
59 	mutex_lock(&gpd_list_lock);
60 	list_for_each_entry(gpd, &gpd_list, gpd_list_node) {
61 		if (!strcmp(gpd->name, domain_name)) {
62 			genpd = gpd;
63 			break;
64 		}
65 	}
66 	mutex_unlock(&gpd_list_lock);
67 	return genpd;
68 }
69 
dev_to_genpd(struct device * dev)70 struct generic_pm_domain *dev_to_genpd(struct device *dev)
71 {
72 	if (IS_ERR_OR_NULL(dev->pm_domain))
73 		return ERR_PTR(-EINVAL);
74 
75 	return pd_to_genpd(dev->pm_domain);
76 }
77 
genpd_stop_dev(struct generic_pm_domain * genpd,struct device * dev)78 static int genpd_stop_dev(struct generic_pm_domain *genpd, struct device *dev)
79 {
80 	return GENPD_DEV_TIMED_CALLBACK(genpd, int, stop, dev,
81 					stop_latency_ns, "stop");
82 }
83 
genpd_start_dev(struct generic_pm_domain * genpd,struct device * dev)84 static int genpd_start_dev(struct generic_pm_domain *genpd, struct device *dev)
85 {
86 	return GENPD_DEV_TIMED_CALLBACK(genpd, int, start, dev,
87 					start_latency_ns, "start");
88 }
89 
genpd_sd_counter_dec(struct generic_pm_domain * genpd)90 static bool genpd_sd_counter_dec(struct generic_pm_domain *genpd)
91 {
92 	bool ret = false;
93 
94 	if (!WARN_ON(atomic_read(&genpd->sd_count) == 0))
95 		ret = !!atomic_dec_and_test(&genpd->sd_count);
96 
97 	return ret;
98 }
99 
genpd_sd_counter_inc(struct generic_pm_domain * genpd)100 static void genpd_sd_counter_inc(struct generic_pm_domain *genpd)
101 {
102 	atomic_inc(&genpd->sd_count);
103 	smp_mb__after_atomic();
104 }
105 
genpd_acquire_lock(struct generic_pm_domain * genpd)106 static void genpd_acquire_lock(struct generic_pm_domain *genpd)
107 {
108 	DEFINE_WAIT(wait);
109 
110 	mutex_lock(&genpd->lock);
111 	/*
112 	 * Wait for the domain to transition into either the active,
113 	 * or the power off state.
114 	 */
115 	for (;;) {
116 		prepare_to_wait(&genpd->status_wait_queue, &wait,
117 				TASK_UNINTERRUPTIBLE);
118 		if (genpd->status == GPD_STATE_ACTIVE
119 		    || genpd->status == GPD_STATE_POWER_OFF)
120 			break;
121 		mutex_unlock(&genpd->lock);
122 
123 		schedule();
124 
125 		mutex_lock(&genpd->lock);
126 	}
127 	finish_wait(&genpd->status_wait_queue, &wait);
128 }
129 
genpd_release_lock(struct generic_pm_domain * genpd)130 static void genpd_release_lock(struct generic_pm_domain *genpd)
131 {
132 	mutex_unlock(&genpd->lock);
133 }
134 
genpd_set_active(struct generic_pm_domain * genpd)135 static void genpd_set_active(struct generic_pm_domain *genpd)
136 {
137 	if (genpd->resume_count == 0)
138 		genpd->status = GPD_STATE_ACTIVE;
139 }
140 
genpd_recalc_cpu_exit_latency(struct generic_pm_domain * genpd)141 static void genpd_recalc_cpu_exit_latency(struct generic_pm_domain *genpd)
142 {
143 	s64 usecs64;
144 
145 	if (!genpd->cpuidle_data)
146 		return;
147 
148 	usecs64 = genpd->power_on_latency_ns;
149 	do_div(usecs64, NSEC_PER_USEC);
150 	usecs64 += genpd->cpuidle_data->saved_exit_latency;
151 	genpd->cpuidle_data->idle_state->exit_latency = usecs64;
152 }
153 
154 /**
155  * __pm_genpd_poweron - Restore power to a given PM domain and its masters.
156  * @genpd: PM domain to power up.
157  *
158  * Restore power to @genpd and all of its masters so that it is possible to
159  * resume a device belonging to it.
160  */
__pm_genpd_poweron(struct generic_pm_domain * genpd)161 static int __pm_genpd_poweron(struct generic_pm_domain *genpd)
162 	__releases(&genpd->lock) __acquires(&genpd->lock)
163 {
164 	struct gpd_link *link;
165 	DEFINE_WAIT(wait);
166 	int ret = 0;
167 
168 	/* If the domain's master is being waited for, we have to wait too. */
169 	for (;;) {
170 		prepare_to_wait(&genpd->status_wait_queue, &wait,
171 				TASK_UNINTERRUPTIBLE);
172 		if (genpd->status != GPD_STATE_WAIT_MASTER)
173 			break;
174 		mutex_unlock(&genpd->lock);
175 
176 		schedule();
177 
178 		mutex_lock(&genpd->lock);
179 	}
180 	finish_wait(&genpd->status_wait_queue, &wait);
181 
182 	if (genpd->status == GPD_STATE_ACTIVE
183 	    || (genpd->prepared_count > 0 && genpd->suspend_power_off))
184 		return 0;
185 
186 	if (genpd->status != GPD_STATE_POWER_OFF) {
187 		genpd_set_active(genpd);
188 		return 0;
189 	}
190 
191 	if (genpd->cpuidle_data) {
192 		cpuidle_pause_and_lock();
193 		genpd->cpuidle_data->idle_state->disabled = true;
194 		cpuidle_resume_and_unlock();
195 		goto out;
196 	}
197 
198 	/*
199 	 * The list is guaranteed not to change while the loop below is being
200 	 * executed, unless one of the masters' .power_on() callbacks fiddles
201 	 * with it.
202 	 */
203 	list_for_each_entry(link, &genpd->slave_links, slave_node) {
204 		genpd_sd_counter_inc(link->master);
205 		genpd->status = GPD_STATE_WAIT_MASTER;
206 
207 		mutex_unlock(&genpd->lock);
208 
209 		ret = pm_genpd_poweron(link->master);
210 
211 		mutex_lock(&genpd->lock);
212 
213 		/*
214 		 * The "wait for parent" status is guaranteed not to change
215 		 * while the master is powering on.
216 		 */
217 		genpd->status = GPD_STATE_POWER_OFF;
218 		wake_up_all(&genpd->status_wait_queue);
219 		if (ret) {
220 			genpd_sd_counter_dec(link->master);
221 			goto err;
222 		}
223 	}
224 
225 	if (genpd->power_on) {
226 		ktime_t time_start = ktime_get();
227 		s64 elapsed_ns;
228 
229 		ret = genpd->power_on(genpd);
230 		if (ret)
231 			goto err;
232 
233 		elapsed_ns = ktime_to_ns(ktime_sub(ktime_get(), time_start));
234 		if (elapsed_ns > genpd->power_on_latency_ns) {
235 			genpd->power_on_latency_ns = elapsed_ns;
236 			genpd->max_off_time_changed = true;
237 			genpd_recalc_cpu_exit_latency(genpd);
238 			if (genpd->name)
239 				pr_warning("%s: Power-on latency exceeded, "
240 					"new value %lld ns\n", genpd->name,
241 					elapsed_ns);
242 		}
243 	}
244 
245  out:
246 	genpd_set_active(genpd);
247 
248 	return 0;
249 
250  err:
251 	list_for_each_entry_continue_reverse(link, &genpd->slave_links, slave_node)
252 		genpd_sd_counter_dec(link->master);
253 
254 	return ret;
255 }
256 
257 /**
258  * pm_genpd_poweron - Restore power to a given PM domain and its masters.
259  * @genpd: PM domain to power up.
260  */
pm_genpd_poweron(struct generic_pm_domain * genpd)261 int pm_genpd_poweron(struct generic_pm_domain *genpd)
262 {
263 	int ret;
264 
265 	mutex_lock(&genpd->lock);
266 	ret = __pm_genpd_poweron(genpd);
267 	mutex_unlock(&genpd->lock);
268 	return ret;
269 }
270 
271 /**
272  * pm_genpd_name_poweron - Restore power to a given PM domain and its masters.
273  * @domain_name: Name of the PM domain to power up.
274  */
pm_genpd_name_poweron(const char * domain_name)275 int pm_genpd_name_poweron(const char *domain_name)
276 {
277 	struct generic_pm_domain *genpd;
278 
279 	genpd = pm_genpd_lookup_name(domain_name);
280 	return genpd ? pm_genpd_poweron(genpd) : -EINVAL;
281 }
282 
283 #ifdef CONFIG_PM_RUNTIME
284 
genpd_start_dev_no_timing(struct generic_pm_domain * genpd,struct device * dev)285 static int genpd_start_dev_no_timing(struct generic_pm_domain *genpd,
286 				     struct device *dev)
287 {
288 	return GENPD_DEV_CALLBACK(genpd, int, start, dev);
289 }
290 
genpd_save_dev(struct generic_pm_domain * genpd,struct device * dev)291 static int genpd_save_dev(struct generic_pm_domain *genpd, struct device *dev)
292 {
293 	return GENPD_DEV_TIMED_CALLBACK(genpd, int, save_state, dev,
294 					save_state_latency_ns, "state save");
295 }
296 
genpd_restore_dev(struct generic_pm_domain * genpd,struct device * dev)297 static int genpd_restore_dev(struct generic_pm_domain *genpd, struct device *dev)
298 {
299 	return GENPD_DEV_TIMED_CALLBACK(genpd, int, restore_state, dev,
300 					restore_state_latency_ns,
301 					"state restore");
302 }
303 
genpd_dev_pm_qos_notifier(struct notifier_block * nb,unsigned long val,void * ptr)304 static int genpd_dev_pm_qos_notifier(struct notifier_block *nb,
305 				     unsigned long val, void *ptr)
306 {
307 	struct generic_pm_domain_data *gpd_data;
308 	struct device *dev;
309 
310 	gpd_data = container_of(nb, struct generic_pm_domain_data, nb);
311 
312 	mutex_lock(&gpd_data->lock);
313 	dev = gpd_data->base.dev;
314 	if (!dev) {
315 		mutex_unlock(&gpd_data->lock);
316 		return NOTIFY_DONE;
317 	}
318 	mutex_unlock(&gpd_data->lock);
319 
320 	for (;;) {
321 		struct generic_pm_domain *genpd;
322 		struct pm_domain_data *pdd;
323 
324 		spin_lock_irq(&dev->power.lock);
325 
326 		pdd = dev->power.subsys_data ?
327 				dev->power.subsys_data->domain_data : NULL;
328 		if (pdd && pdd->dev) {
329 			to_gpd_data(pdd)->td.constraint_changed = true;
330 			genpd = dev_to_genpd(dev);
331 		} else {
332 			genpd = ERR_PTR(-ENODATA);
333 		}
334 
335 		spin_unlock_irq(&dev->power.lock);
336 
337 		if (!IS_ERR(genpd)) {
338 			mutex_lock(&genpd->lock);
339 			genpd->max_off_time_changed = true;
340 			mutex_unlock(&genpd->lock);
341 		}
342 
343 		dev = dev->parent;
344 		if (!dev || dev->power.ignore_children)
345 			break;
346 	}
347 
348 	return NOTIFY_DONE;
349 }
350 
351 /**
352  * __pm_genpd_save_device - Save the pre-suspend state of a device.
353  * @pdd: Domain data of the device to save the state of.
354  * @genpd: PM domain the device belongs to.
355  */
__pm_genpd_save_device(struct pm_domain_data * pdd,struct generic_pm_domain * genpd)356 static int __pm_genpd_save_device(struct pm_domain_data *pdd,
357 				  struct generic_pm_domain *genpd)
358 	__releases(&genpd->lock) __acquires(&genpd->lock)
359 {
360 	struct generic_pm_domain_data *gpd_data = to_gpd_data(pdd);
361 	struct device *dev = pdd->dev;
362 	int ret = 0;
363 
364 	if (gpd_data->need_restore > 0)
365 		return 0;
366 
367 	/*
368 	 * If the value of the need_restore flag is still unknown at this point,
369 	 * we trust that pm_genpd_poweroff() has verified that the device is
370 	 * already runtime PM suspended.
371 	 */
372 	if (gpd_data->need_restore < 0) {
373 		gpd_data->need_restore = 1;
374 		return 0;
375 	}
376 
377 	mutex_unlock(&genpd->lock);
378 
379 	genpd_start_dev(genpd, dev);
380 	ret = genpd_save_dev(genpd, dev);
381 	genpd_stop_dev(genpd, dev);
382 
383 	mutex_lock(&genpd->lock);
384 
385 	if (!ret)
386 		gpd_data->need_restore = 1;
387 
388 	return ret;
389 }
390 
391 /**
392  * __pm_genpd_restore_device - Restore the pre-suspend state of a device.
393  * @pdd: Domain data of the device to restore the state of.
394  * @genpd: PM domain the device belongs to.
395  */
__pm_genpd_restore_device(struct pm_domain_data * pdd,struct generic_pm_domain * genpd)396 static void __pm_genpd_restore_device(struct pm_domain_data *pdd,
397 				      struct generic_pm_domain *genpd)
398 	__releases(&genpd->lock) __acquires(&genpd->lock)
399 {
400 	struct generic_pm_domain_data *gpd_data = to_gpd_data(pdd);
401 	struct device *dev = pdd->dev;
402 	int need_restore = gpd_data->need_restore;
403 
404 	gpd_data->need_restore = 0;
405 	mutex_unlock(&genpd->lock);
406 
407 	genpd_start_dev(genpd, dev);
408 
409 	/*
410 	 * Call genpd_restore_dev() for recently added devices too (need_restore
411 	 * is negative then).
412 	 */
413 	if (need_restore)
414 		genpd_restore_dev(genpd, dev);
415 
416 	mutex_lock(&genpd->lock);
417 }
418 
419 /**
420  * genpd_abort_poweroff - Check if a PM domain power off should be aborted.
421  * @genpd: PM domain to check.
422  *
423  * Return true if a PM domain's status changed to GPD_STATE_ACTIVE during
424  * a "power off" operation, which means that a "power on" has occured in the
425  * meantime, or if its resume_count field is different from zero, which means
426  * that one of its devices has been resumed in the meantime.
427  */
genpd_abort_poweroff(struct generic_pm_domain * genpd)428 static bool genpd_abort_poweroff(struct generic_pm_domain *genpd)
429 {
430 	return genpd->status == GPD_STATE_WAIT_MASTER
431 		|| genpd->status == GPD_STATE_ACTIVE || genpd->resume_count > 0;
432 }
433 
434 /**
435  * genpd_queue_power_off_work - Queue up the execution of pm_genpd_poweroff().
436  * @genpd: PM domait to power off.
437  *
438  * Queue up the execution of pm_genpd_poweroff() unless it's already been done
439  * before.
440  */
genpd_queue_power_off_work(struct generic_pm_domain * genpd)441 static void genpd_queue_power_off_work(struct generic_pm_domain *genpd)
442 {
443 	queue_work(pm_wq, &genpd->power_off_work);
444 }
445 
446 /**
447  * pm_genpd_poweroff - Remove power from a given PM domain.
448  * @genpd: PM domain to power down.
449  *
450  * If all of the @genpd's devices have been suspended and all of its subdomains
451  * have been powered down, run the runtime suspend callbacks provided by all of
452  * the @genpd's devices' drivers and remove power from @genpd.
453  */
pm_genpd_poweroff(struct generic_pm_domain * genpd)454 static int pm_genpd_poweroff(struct generic_pm_domain *genpd)
455 	__releases(&genpd->lock) __acquires(&genpd->lock)
456 {
457 	struct pm_domain_data *pdd;
458 	struct gpd_link *link;
459 	unsigned int not_suspended;
460 	int ret = 0;
461 
462  start:
463 	/*
464 	 * Do not try to power off the domain in the following situations:
465 	 * (1) The domain is already in the "power off" state.
466 	 * (2) The domain is waiting for its master to power up.
467 	 * (3) One of the domain's devices is being resumed right now.
468 	 * (4) System suspend is in progress.
469 	 */
470 	if (genpd->status == GPD_STATE_POWER_OFF
471 	    || genpd->status == GPD_STATE_WAIT_MASTER
472 	    || genpd->resume_count > 0 || genpd->prepared_count > 0)
473 		return 0;
474 
475 	if (atomic_read(&genpd->sd_count) > 0)
476 		return -EBUSY;
477 
478 	not_suspended = 0;
479 	list_for_each_entry(pdd, &genpd->dev_list, list_node) {
480 		enum pm_qos_flags_status stat;
481 
482 		stat = dev_pm_qos_flags(pdd->dev,
483 					PM_QOS_FLAG_NO_POWER_OFF
484 						| PM_QOS_FLAG_REMOTE_WAKEUP);
485 		if (stat > PM_QOS_FLAGS_NONE)
486 			return -EBUSY;
487 
488 		if (pdd->dev->driver && (!pm_runtime_suspended(pdd->dev)
489 		    || pdd->dev->power.irq_safe))
490 			not_suspended++;
491 	}
492 
493 	if (not_suspended > genpd->in_progress)
494 		return -EBUSY;
495 
496 	if (genpd->poweroff_task) {
497 		/*
498 		 * Another instance of pm_genpd_poweroff() is executing
499 		 * callbacks, so tell it to start over and return.
500 		 */
501 		genpd->status = GPD_STATE_REPEAT;
502 		return 0;
503 	}
504 
505 	if (genpd->gov && genpd->gov->power_down_ok) {
506 		if (!genpd->gov->power_down_ok(&genpd->domain))
507 			return -EAGAIN;
508 	}
509 
510 	genpd->status = GPD_STATE_BUSY;
511 	genpd->poweroff_task = current;
512 
513 	list_for_each_entry_reverse(pdd, &genpd->dev_list, list_node) {
514 		ret = atomic_read(&genpd->sd_count) == 0 ?
515 			__pm_genpd_save_device(pdd, genpd) : -EBUSY;
516 
517 		if (genpd_abort_poweroff(genpd))
518 			goto out;
519 
520 		if (ret) {
521 			genpd_set_active(genpd);
522 			goto out;
523 		}
524 
525 		if (genpd->status == GPD_STATE_REPEAT) {
526 			genpd->poweroff_task = NULL;
527 			goto start;
528 		}
529 	}
530 
531 	if (genpd->cpuidle_data) {
532 		/*
533 		 * If cpuidle_data is set, cpuidle should turn the domain off
534 		 * when the CPU in it is idle.  In that case we don't decrement
535 		 * the subdomain counts of the master domains, so that power is
536 		 * not removed from the current domain prematurely as a result
537 		 * of cutting off the masters' power.
538 		 */
539 		genpd->status = GPD_STATE_POWER_OFF;
540 		cpuidle_pause_and_lock();
541 		genpd->cpuidle_data->idle_state->disabled = false;
542 		cpuidle_resume_and_unlock();
543 		goto out;
544 	}
545 
546 	if (genpd->power_off) {
547 		ktime_t time_start;
548 		s64 elapsed_ns;
549 
550 		if (atomic_read(&genpd->sd_count) > 0) {
551 			ret = -EBUSY;
552 			goto out;
553 		}
554 
555 		time_start = ktime_get();
556 
557 		/*
558 		 * If sd_count > 0 at this point, one of the subdomains hasn't
559 		 * managed to call pm_genpd_poweron() for the master yet after
560 		 * incrementing it.  In that case pm_genpd_poweron() will wait
561 		 * for us to drop the lock, so we can call .power_off() and let
562 		 * the pm_genpd_poweron() restore power for us (this shouldn't
563 		 * happen very often).
564 		 */
565 		ret = genpd->power_off(genpd);
566 		if (ret == -EBUSY) {
567 			genpd_set_active(genpd);
568 			goto out;
569 		}
570 
571 		elapsed_ns = ktime_to_ns(ktime_sub(ktime_get(), time_start));
572 		if (elapsed_ns > genpd->power_off_latency_ns) {
573 			genpd->power_off_latency_ns = elapsed_ns;
574 			genpd->max_off_time_changed = true;
575 			if (genpd->name)
576 				pr_warning("%s: Power-off latency exceeded, "
577 					"new value %lld ns\n", genpd->name,
578 					elapsed_ns);
579 		}
580 	}
581 
582 	genpd->status = GPD_STATE_POWER_OFF;
583 
584 	list_for_each_entry(link, &genpd->slave_links, slave_node) {
585 		genpd_sd_counter_dec(link->master);
586 		genpd_queue_power_off_work(link->master);
587 	}
588 
589  out:
590 	genpd->poweroff_task = NULL;
591 	wake_up_all(&genpd->status_wait_queue);
592 	return ret;
593 }
594 
595 /**
596  * genpd_power_off_work_fn - Power off PM domain whose subdomain count is 0.
597  * @work: Work structure used for scheduling the execution of this function.
598  */
genpd_power_off_work_fn(struct work_struct * work)599 static void genpd_power_off_work_fn(struct work_struct *work)
600 {
601 	struct generic_pm_domain *genpd;
602 
603 	genpd = container_of(work, struct generic_pm_domain, power_off_work);
604 
605 	genpd_acquire_lock(genpd);
606 	pm_genpd_poweroff(genpd);
607 	genpd_release_lock(genpd);
608 }
609 
610 /**
611  * pm_genpd_runtime_suspend - Suspend a device belonging to I/O PM domain.
612  * @dev: Device to suspend.
613  *
614  * Carry out a runtime suspend of a device under the assumption that its
615  * pm_domain field points to the domain member of an object of type
616  * struct generic_pm_domain representing a PM domain consisting of I/O devices.
617  */
pm_genpd_runtime_suspend(struct device * dev)618 static int pm_genpd_runtime_suspend(struct device *dev)
619 {
620 	struct generic_pm_domain *genpd;
621 	struct generic_pm_domain_data *gpd_data;
622 	bool (*stop_ok)(struct device *__dev);
623 	int ret;
624 
625 	dev_dbg(dev, "%s()\n", __func__);
626 
627 	genpd = dev_to_genpd(dev);
628 	if (IS_ERR(genpd))
629 		return -EINVAL;
630 
631 	stop_ok = genpd->gov ? genpd->gov->stop_ok : NULL;
632 	if (stop_ok && !stop_ok(dev))
633 		return -EBUSY;
634 
635 	ret = genpd_stop_dev(genpd, dev);
636 	if (ret)
637 		return ret;
638 
639 	/*
640 	 * If power.irq_safe is set, this routine will be run with interrupts
641 	 * off, so it can't use mutexes.
642 	 */
643 	if (dev->power.irq_safe)
644 		return 0;
645 
646 	mutex_lock(&genpd->lock);
647 
648 	/*
649 	 * If we have an unknown state of the need_restore flag, it means none
650 	 * of the runtime PM callbacks has been invoked yet. Let's update the
651 	 * flag to reflect that the current state is active.
652 	 */
653 	gpd_data = to_gpd_data(dev->power.subsys_data->domain_data);
654 	if (gpd_data->need_restore < 0)
655 		gpd_data->need_restore = 0;
656 
657 	genpd->in_progress++;
658 	pm_genpd_poweroff(genpd);
659 	genpd->in_progress--;
660 	mutex_unlock(&genpd->lock);
661 
662 	return 0;
663 }
664 
665 /**
666  * pm_genpd_runtime_resume - Resume a device belonging to I/O PM domain.
667  * @dev: Device to resume.
668  *
669  * Carry out a runtime resume of a device under the assumption that its
670  * pm_domain field points to the domain member of an object of type
671  * struct generic_pm_domain representing a PM domain consisting of I/O devices.
672  */
pm_genpd_runtime_resume(struct device * dev)673 static int pm_genpd_runtime_resume(struct device *dev)
674 {
675 	struct generic_pm_domain *genpd;
676 	DEFINE_WAIT(wait);
677 	int ret;
678 
679 	dev_dbg(dev, "%s()\n", __func__);
680 
681 	genpd = dev_to_genpd(dev);
682 	if (IS_ERR(genpd))
683 		return -EINVAL;
684 
685 	/* If power.irq_safe, the PM domain is never powered off. */
686 	if (dev->power.irq_safe)
687 		return genpd_start_dev_no_timing(genpd, dev);
688 
689 	mutex_lock(&genpd->lock);
690 	ret = __pm_genpd_poweron(genpd);
691 	if (ret) {
692 		mutex_unlock(&genpd->lock);
693 		return ret;
694 	}
695 	genpd->status = GPD_STATE_BUSY;
696 	genpd->resume_count++;
697 	for (;;) {
698 		prepare_to_wait(&genpd->status_wait_queue, &wait,
699 				TASK_UNINTERRUPTIBLE);
700 		/*
701 		 * If current is the powering off task, we have been called
702 		 * reentrantly from one of the device callbacks, so we should
703 		 * not wait.
704 		 */
705 		if (!genpd->poweroff_task || genpd->poweroff_task == current)
706 			break;
707 		mutex_unlock(&genpd->lock);
708 
709 		schedule();
710 
711 		mutex_lock(&genpd->lock);
712 	}
713 	finish_wait(&genpd->status_wait_queue, &wait);
714 	__pm_genpd_restore_device(dev->power.subsys_data->domain_data, genpd);
715 	genpd->resume_count--;
716 	genpd_set_active(genpd);
717 	wake_up_all(&genpd->status_wait_queue);
718 	mutex_unlock(&genpd->lock);
719 
720 	return 0;
721 }
722 
723 static bool pd_ignore_unused;
pd_ignore_unused_setup(char * __unused)724 static int __init pd_ignore_unused_setup(char *__unused)
725 {
726 	pd_ignore_unused = true;
727 	return 1;
728 }
729 __setup("pd_ignore_unused", pd_ignore_unused_setup);
730 
731 /**
732  * pm_genpd_poweroff_unused - Power off all PM domains with no devices in use.
733  */
pm_genpd_poweroff_unused(void)734 void pm_genpd_poweroff_unused(void)
735 {
736 	struct generic_pm_domain *genpd;
737 
738 	if (pd_ignore_unused) {
739 		pr_warn("genpd: Not disabling unused power domains\n");
740 		return;
741 	}
742 
743 	mutex_lock(&gpd_list_lock);
744 
745 	list_for_each_entry(genpd, &gpd_list, gpd_list_node)
746 		genpd_queue_power_off_work(genpd);
747 
748 	mutex_unlock(&gpd_list_lock);
749 }
750 
genpd_poweroff_unused(void)751 static int __init genpd_poweroff_unused(void)
752 {
753 	pm_genpd_poweroff_unused();
754 	return 0;
755 }
756 late_initcall(genpd_poweroff_unused);
757 
758 #else
759 
genpd_dev_pm_qos_notifier(struct notifier_block * nb,unsigned long val,void * ptr)760 static inline int genpd_dev_pm_qos_notifier(struct notifier_block *nb,
761 					    unsigned long val, void *ptr)
762 {
763 	return NOTIFY_DONE;
764 }
765 
766 static inline void
genpd_queue_power_off_work(struct generic_pm_domain * genpd)767 genpd_queue_power_off_work(struct generic_pm_domain *genpd) {}
768 
genpd_power_off_work_fn(struct work_struct * work)769 static inline void genpd_power_off_work_fn(struct work_struct *work) {}
770 
771 #define pm_genpd_runtime_suspend	NULL
772 #define pm_genpd_runtime_resume		NULL
773 
774 #endif /* CONFIG_PM_RUNTIME */
775 
776 #ifdef CONFIG_PM_SLEEP
777 
778 /**
779  * pm_genpd_present - Check if the given PM domain has been initialized.
780  * @genpd: PM domain to check.
781  */
pm_genpd_present(struct generic_pm_domain * genpd)782 static bool pm_genpd_present(struct generic_pm_domain *genpd)
783 {
784 	struct generic_pm_domain *gpd;
785 
786 	if (IS_ERR_OR_NULL(genpd))
787 		return false;
788 
789 	list_for_each_entry(gpd, &gpd_list, gpd_list_node)
790 		if (gpd == genpd)
791 			return true;
792 
793 	return false;
794 }
795 
genpd_dev_active_wakeup(struct generic_pm_domain * genpd,struct device * dev)796 static bool genpd_dev_active_wakeup(struct generic_pm_domain *genpd,
797 				    struct device *dev)
798 {
799 	return GENPD_DEV_CALLBACK(genpd, bool, active_wakeup, dev);
800 }
801 
802 /**
803  * pm_genpd_sync_poweroff - Synchronously power off a PM domain and its masters.
804  * @genpd: PM domain to power off, if possible.
805  *
806  * Check if the given PM domain can be powered off (during system suspend or
807  * hibernation) and do that if so.  Also, in that case propagate to its masters.
808  *
809  * This function is only called in "noirq" and "syscore" stages of system power
810  * transitions, so it need not acquire locks (all of the "noirq" callbacks are
811  * executed sequentially, so it is guaranteed that it will never run twice in
812  * parallel).
813  */
pm_genpd_sync_poweroff(struct generic_pm_domain * genpd)814 static void pm_genpd_sync_poweroff(struct generic_pm_domain *genpd)
815 {
816 	struct gpd_link *link;
817 
818 	if (genpd->status == GPD_STATE_POWER_OFF)
819 		return;
820 
821 	if (genpd->suspended_count != genpd->device_count
822 	    || atomic_read(&genpd->sd_count) > 0)
823 		return;
824 
825 	if (genpd->power_off)
826 		genpd->power_off(genpd);
827 
828 	genpd->status = GPD_STATE_POWER_OFF;
829 
830 	list_for_each_entry(link, &genpd->slave_links, slave_node) {
831 		genpd_sd_counter_dec(link->master);
832 		pm_genpd_sync_poweroff(link->master);
833 	}
834 }
835 
836 /**
837  * pm_genpd_sync_poweron - Synchronously power on a PM domain and its masters.
838  * @genpd: PM domain to power on.
839  *
840  * This function is only called in "noirq" and "syscore" stages of system power
841  * transitions, so it need not acquire locks (all of the "noirq" callbacks are
842  * executed sequentially, so it is guaranteed that it will never run twice in
843  * parallel).
844  */
pm_genpd_sync_poweron(struct generic_pm_domain * genpd)845 static void pm_genpd_sync_poweron(struct generic_pm_domain *genpd)
846 {
847 	struct gpd_link *link;
848 
849 	if (genpd->status != GPD_STATE_POWER_OFF)
850 		return;
851 
852 	list_for_each_entry(link, &genpd->slave_links, slave_node) {
853 		pm_genpd_sync_poweron(link->master);
854 		genpd_sd_counter_inc(link->master);
855 	}
856 
857 	if (genpd->power_on)
858 		genpd->power_on(genpd);
859 
860 	genpd->status = GPD_STATE_ACTIVE;
861 }
862 
863 /**
864  * resume_needed - Check whether to resume a device before system suspend.
865  * @dev: Device to check.
866  * @genpd: PM domain the device belongs to.
867  *
868  * There are two cases in which a device that can wake up the system from sleep
869  * states should be resumed by pm_genpd_prepare(): (1) if the device is enabled
870  * to wake up the system and it has to remain active for this purpose while the
871  * system is in the sleep state and (2) if the device is not enabled to wake up
872  * the system from sleep states and it generally doesn't generate wakeup signals
873  * by itself (those signals are generated on its behalf by other parts of the
874  * system).  In the latter case it may be necessary to reconfigure the device's
875  * wakeup settings during system suspend, because it may have been set up to
876  * signal remote wakeup from the system's working state as needed by runtime PM.
877  * Return 'true' in either of the above cases.
878  */
resume_needed(struct device * dev,struct generic_pm_domain * genpd)879 static bool resume_needed(struct device *dev, struct generic_pm_domain *genpd)
880 {
881 	bool active_wakeup;
882 
883 	if (!device_can_wakeup(dev))
884 		return false;
885 
886 	active_wakeup = genpd_dev_active_wakeup(genpd, dev);
887 	return device_may_wakeup(dev) ? active_wakeup : !active_wakeup;
888 }
889 
890 /**
891  * pm_genpd_prepare - Start power transition of a device in a PM domain.
892  * @dev: Device to start the transition of.
893  *
894  * Start a power transition of a device (during a system-wide power transition)
895  * under the assumption that its pm_domain field points to the domain member of
896  * an object of type struct generic_pm_domain representing a PM domain
897  * consisting of I/O devices.
898  */
pm_genpd_prepare(struct device * dev)899 static int pm_genpd_prepare(struct device *dev)
900 {
901 	struct generic_pm_domain *genpd;
902 	int ret;
903 
904 	dev_dbg(dev, "%s()\n", __func__);
905 
906 	genpd = dev_to_genpd(dev);
907 	if (IS_ERR(genpd))
908 		return -EINVAL;
909 
910 	/*
911 	 * If a wakeup request is pending for the device, it should be woken up
912 	 * at this point and a system wakeup event should be reported if it's
913 	 * set up to wake up the system from sleep states.
914 	 */
915 	pm_runtime_get_noresume(dev);
916 	if (pm_runtime_barrier(dev) && device_may_wakeup(dev))
917 		pm_wakeup_event(dev, 0);
918 
919 	if (pm_wakeup_pending()) {
920 		pm_runtime_put(dev);
921 		return -EBUSY;
922 	}
923 
924 	if (resume_needed(dev, genpd))
925 		pm_runtime_resume(dev);
926 
927 	genpd_acquire_lock(genpd);
928 
929 	if (genpd->prepared_count++ == 0) {
930 		genpd->suspended_count = 0;
931 		genpd->suspend_power_off = genpd->status == GPD_STATE_POWER_OFF;
932 	}
933 
934 	genpd_release_lock(genpd);
935 
936 	if (genpd->suspend_power_off) {
937 		pm_runtime_put_noidle(dev);
938 		return 0;
939 	}
940 
941 	/*
942 	 * The PM domain must be in the GPD_STATE_ACTIVE state at this point,
943 	 * so pm_genpd_poweron() will return immediately, but if the device
944 	 * is suspended (e.g. it's been stopped by genpd_stop_dev()), we need
945 	 * to make it operational.
946 	 */
947 	pm_runtime_resume(dev);
948 	__pm_runtime_disable(dev, false);
949 
950 	ret = pm_generic_prepare(dev);
951 	if (ret) {
952 		mutex_lock(&genpd->lock);
953 
954 		if (--genpd->prepared_count == 0)
955 			genpd->suspend_power_off = false;
956 
957 		mutex_unlock(&genpd->lock);
958 		pm_runtime_enable(dev);
959 	}
960 
961 	pm_runtime_put(dev);
962 	return ret;
963 }
964 
965 /**
966  * pm_genpd_suspend - Suspend a device belonging to an I/O PM domain.
967  * @dev: Device to suspend.
968  *
969  * Suspend a device under the assumption that its pm_domain field points to the
970  * domain member of an object of type struct generic_pm_domain representing
971  * a PM domain consisting of I/O devices.
972  */
pm_genpd_suspend(struct device * dev)973 static int pm_genpd_suspend(struct device *dev)
974 {
975 	struct generic_pm_domain *genpd;
976 
977 	dev_dbg(dev, "%s()\n", __func__);
978 
979 	genpd = dev_to_genpd(dev);
980 	if (IS_ERR(genpd))
981 		return -EINVAL;
982 
983 	return genpd->suspend_power_off ? 0 : pm_generic_suspend(dev);
984 }
985 
986 /**
987  * pm_genpd_suspend_late - Late suspend of a device from an I/O PM domain.
988  * @dev: Device to suspend.
989  *
990  * Carry out a late suspend of a device under the assumption that its
991  * pm_domain field points to the domain member of an object of type
992  * struct generic_pm_domain representing a PM domain consisting of I/O devices.
993  */
pm_genpd_suspend_late(struct device * dev)994 static int pm_genpd_suspend_late(struct device *dev)
995 {
996 	struct generic_pm_domain *genpd;
997 
998 	dev_dbg(dev, "%s()\n", __func__);
999 
1000 	genpd = dev_to_genpd(dev);
1001 	if (IS_ERR(genpd))
1002 		return -EINVAL;
1003 
1004 	return genpd->suspend_power_off ? 0 : pm_generic_suspend_late(dev);
1005 }
1006 
1007 /**
1008  * pm_genpd_suspend_noirq - Completion of suspend of device in an I/O PM domain.
1009  * @dev: Device to suspend.
1010  *
1011  * Stop the device and remove power from the domain if all devices in it have
1012  * been stopped.
1013  */
pm_genpd_suspend_noirq(struct device * dev)1014 static int pm_genpd_suspend_noirq(struct device *dev)
1015 {
1016 	struct generic_pm_domain *genpd;
1017 
1018 	dev_dbg(dev, "%s()\n", __func__);
1019 
1020 	genpd = dev_to_genpd(dev);
1021 	if (IS_ERR(genpd))
1022 		return -EINVAL;
1023 
1024 	if (genpd->suspend_power_off
1025 	    || (dev->power.wakeup_path && genpd_dev_active_wakeup(genpd, dev)))
1026 		return 0;
1027 
1028 	genpd_stop_dev(genpd, dev);
1029 
1030 	/*
1031 	 * Since all of the "noirq" callbacks are executed sequentially, it is
1032 	 * guaranteed that this function will never run twice in parallel for
1033 	 * the same PM domain, so it is not necessary to use locking here.
1034 	 */
1035 	genpd->suspended_count++;
1036 	pm_genpd_sync_poweroff(genpd);
1037 
1038 	return 0;
1039 }
1040 
1041 /**
1042  * pm_genpd_resume_noirq - Start of resume of device in an I/O PM domain.
1043  * @dev: Device to resume.
1044  *
1045  * Restore power to the device's PM domain, if necessary, and start the device.
1046  */
pm_genpd_resume_noirq(struct device * dev)1047 static int pm_genpd_resume_noirq(struct device *dev)
1048 {
1049 	struct generic_pm_domain *genpd;
1050 
1051 	dev_dbg(dev, "%s()\n", __func__);
1052 
1053 	genpd = dev_to_genpd(dev);
1054 	if (IS_ERR(genpd))
1055 		return -EINVAL;
1056 
1057 	if (genpd->suspend_power_off
1058 	    || (dev->power.wakeup_path && genpd_dev_active_wakeup(genpd, dev)))
1059 		return 0;
1060 
1061 	/*
1062 	 * Since all of the "noirq" callbacks are executed sequentially, it is
1063 	 * guaranteed that this function will never run twice in parallel for
1064 	 * the same PM domain, so it is not necessary to use locking here.
1065 	 */
1066 	pm_genpd_sync_poweron(genpd);
1067 	genpd->suspended_count--;
1068 
1069 	return genpd_start_dev(genpd, dev);
1070 }
1071 
1072 /**
1073  * pm_genpd_resume_early - Early resume of a device in an I/O PM domain.
1074  * @dev: Device to resume.
1075  *
1076  * Carry out an early resume of a device under the assumption that its
1077  * pm_domain field points to the domain member of an object of type
1078  * struct generic_pm_domain representing a power domain consisting of I/O
1079  * devices.
1080  */
pm_genpd_resume_early(struct device * dev)1081 static int pm_genpd_resume_early(struct device *dev)
1082 {
1083 	struct generic_pm_domain *genpd;
1084 
1085 	dev_dbg(dev, "%s()\n", __func__);
1086 
1087 	genpd = dev_to_genpd(dev);
1088 	if (IS_ERR(genpd))
1089 		return -EINVAL;
1090 
1091 	return genpd->suspend_power_off ? 0 : pm_generic_resume_early(dev);
1092 }
1093 
1094 /**
1095  * pm_genpd_resume - Resume of device in an I/O PM domain.
1096  * @dev: Device to resume.
1097  *
1098  * Resume a device under the assumption that its pm_domain field points to the
1099  * domain member of an object of type struct generic_pm_domain representing
1100  * a power domain consisting of I/O devices.
1101  */
pm_genpd_resume(struct device * dev)1102 static int pm_genpd_resume(struct device *dev)
1103 {
1104 	struct generic_pm_domain *genpd;
1105 
1106 	dev_dbg(dev, "%s()\n", __func__);
1107 
1108 	genpd = dev_to_genpd(dev);
1109 	if (IS_ERR(genpd))
1110 		return -EINVAL;
1111 
1112 	return genpd->suspend_power_off ? 0 : pm_generic_resume(dev);
1113 }
1114 
1115 /**
1116  * pm_genpd_freeze - Freezing a device in an I/O PM domain.
1117  * @dev: Device to freeze.
1118  *
1119  * Freeze a device under the assumption that its pm_domain field points to the
1120  * domain member of an object of type struct generic_pm_domain representing
1121  * a power domain consisting of I/O devices.
1122  */
pm_genpd_freeze(struct device * dev)1123 static int pm_genpd_freeze(struct device *dev)
1124 {
1125 	struct generic_pm_domain *genpd;
1126 
1127 	dev_dbg(dev, "%s()\n", __func__);
1128 
1129 	genpd = dev_to_genpd(dev);
1130 	if (IS_ERR(genpd))
1131 		return -EINVAL;
1132 
1133 	return genpd->suspend_power_off ? 0 : pm_generic_freeze(dev);
1134 }
1135 
1136 /**
1137  * pm_genpd_freeze_late - Late freeze of a device in an I/O PM domain.
1138  * @dev: Device to freeze.
1139  *
1140  * Carry out a late freeze of a device under the assumption that its
1141  * pm_domain field points to the domain member of an object of type
1142  * struct generic_pm_domain representing a power domain consisting of I/O
1143  * devices.
1144  */
pm_genpd_freeze_late(struct device * dev)1145 static int pm_genpd_freeze_late(struct device *dev)
1146 {
1147 	struct generic_pm_domain *genpd;
1148 
1149 	dev_dbg(dev, "%s()\n", __func__);
1150 
1151 	genpd = dev_to_genpd(dev);
1152 	if (IS_ERR(genpd))
1153 		return -EINVAL;
1154 
1155 	return genpd->suspend_power_off ? 0 : pm_generic_freeze_late(dev);
1156 }
1157 
1158 /**
1159  * pm_genpd_freeze_noirq - Completion of freezing a device in an I/O PM domain.
1160  * @dev: Device to freeze.
1161  *
1162  * Carry out a late freeze of a device under the assumption that its
1163  * pm_domain field points to the domain member of an object of type
1164  * struct generic_pm_domain representing a power domain consisting of I/O
1165  * devices.
1166  */
pm_genpd_freeze_noirq(struct device * dev)1167 static int pm_genpd_freeze_noirq(struct device *dev)
1168 {
1169 	struct generic_pm_domain *genpd;
1170 
1171 	dev_dbg(dev, "%s()\n", __func__);
1172 
1173 	genpd = dev_to_genpd(dev);
1174 	if (IS_ERR(genpd))
1175 		return -EINVAL;
1176 
1177 	return genpd->suspend_power_off ? 0 : genpd_stop_dev(genpd, dev);
1178 }
1179 
1180 /**
1181  * pm_genpd_thaw_noirq - Early thaw of device in an I/O PM domain.
1182  * @dev: Device to thaw.
1183  *
1184  * Start the device, unless power has been removed from the domain already
1185  * before the system transition.
1186  */
pm_genpd_thaw_noirq(struct device * dev)1187 static int pm_genpd_thaw_noirq(struct device *dev)
1188 {
1189 	struct generic_pm_domain *genpd;
1190 
1191 	dev_dbg(dev, "%s()\n", __func__);
1192 
1193 	genpd = dev_to_genpd(dev);
1194 	if (IS_ERR(genpd))
1195 		return -EINVAL;
1196 
1197 	return genpd->suspend_power_off ? 0 : genpd_start_dev(genpd, dev);
1198 }
1199 
1200 /**
1201  * pm_genpd_thaw_early - Early thaw of device in an I/O PM domain.
1202  * @dev: Device to thaw.
1203  *
1204  * Carry out an early thaw of a device under the assumption that its
1205  * pm_domain field points to the domain member of an object of type
1206  * struct generic_pm_domain representing a power domain consisting of I/O
1207  * devices.
1208  */
pm_genpd_thaw_early(struct device * dev)1209 static int pm_genpd_thaw_early(struct device *dev)
1210 {
1211 	struct generic_pm_domain *genpd;
1212 
1213 	dev_dbg(dev, "%s()\n", __func__);
1214 
1215 	genpd = dev_to_genpd(dev);
1216 	if (IS_ERR(genpd))
1217 		return -EINVAL;
1218 
1219 	return genpd->suspend_power_off ? 0 : pm_generic_thaw_early(dev);
1220 }
1221 
1222 /**
1223  * pm_genpd_thaw - Thaw a device belonging to an I/O power domain.
1224  * @dev: Device to thaw.
1225  *
1226  * Thaw a device under the assumption that its pm_domain field points to the
1227  * domain member of an object of type struct generic_pm_domain representing
1228  * a power domain consisting of I/O devices.
1229  */
pm_genpd_thaw(struct device * dev)1230 static int pm_genpd_thaw(struct device *dev)
1231 {
1232 	struct generic_pm_domain *genpd;
1233 
1234 	dev_dbg(dev, "%s()\n", __func__);
1235 
1236 	genpd = dev_to_genpd(dev);
1237 	if (IS_ERR(genpd))
1238 		return -EINVAL;
1239 
1240 	return genpd->suspend_power_off ? 0 : pm_generic_thaw(dev);
1241 }
1242 
1243 /**
1244  * pm_genpd_restore_noirq - Start of restore of device in an I/O PM domain.
1245  * @dev: Device to resume.
1246  *
1247  * Make sure the domain will be in the same power state as before the
1248  * hibernation the system is resuming from and start the device if necessary.
1249  */
pm_genpd_restore_noirq(struct device * dev)1250 static int pm_genpd_restore_noirq(struct device *dev)
1251 {
1252 	struct generic_pm_domain *genpd;
1253 
1254 	dev_dbg(dev, "%s()\n", __func__);
1255 
1256 	genpd = dev_to_genpd(dev);
1257 	if (IS_ERR(genpd))
1258 		return -EINVAL;
1259 
1260 	/*
1261 	 * Since all of the "noirq" callbacks are executed sequentially, it is
1262 	 * guaranteed that this function will never run twice in parallel for
1263 	 * the same PM domain, so it is not necessary to use locking here.
1264 	 *
1265 	 * At this point suspended_count == 0 means we are being run for the
1266 	 * first time for the given domain in the present cycle.
1267 	 */
1268 	if (genpd->suspended_count++ == 0) {
1269 		/*
1270 		 * The boot kernel might put the domain into arbitrary state,
1271 		 * so make it appear as powered off to pm_genpd_sync_poweron(),
1272 		 * so that it tries to power it on in case it was really off.
1273 		 */
1274 		genpd->status = GPD_STATE_POWER_OFF;
1275 		if (genpd->suspend_power_off) {
1276 			/*
1277 			 * If the domain was off before the hibernation, make
1278 			 * sure it will be off going forward.
1279 			 */
1280 			if (genpd->power_off)
1281 				genpd->power_off(genpd);
1282 
1283 			return 0;
1284 		}
1285 	}
1286 
1287 	if (genpd->suspend_power_off)
1288 		return 0;
1289 
1290 	pm_genpd_sync_poweron(genpd);
1291 
1292 	return genpd_start_dev(genpd, dev);
1293 }
1294 
1295 /**
1296  * pm_genpd_complete - Complete power transition of a device in a power domain.
1297  * @dev: Device to complete the transition of.
1298  *
1299  * Complete a power transition of a device (during a system-wide power
1300  * transition) under the assumption that its pm_domain field points to the
1301  * domain member of an object of type struct generic_pm_domain representing
1302  * a power domain consisting of I/O devices.
1303  */
pm_genpd_complete(struct device * dev)1304 static void pm_genpd_complete(struct device *dev)
1305 {
1306 	struct generic_pm_domain *genpd;
1307 	bool run_complete;
1308 
1309 	dev_dbg(dev, "%s()\n", __func__);
1310 
1311 	genpd = dev_to_genpd(dev);
1312 	if (IS_ERR(genpd))
1313 		return;
1314 
1315 	mutex_lock(&genpd->lock);
1316 
1317 	run_complete = !genpd->suspend_power_off;
1318 	if (--genpd->prepared_count == 0)
1319 		genpd->suspend_power_off = false;
1320 
1321 	mutex_unlock(&genpd->lock);
1322 
1323 	if (run_complete) {
1324 		pm_generic_complete(dev);
1325 		pm_runtime_set_active(dev);
1326 		pm_runtime_enable(dev);
1327 		pm_request_idle(dev);
1328 	}
1329 }
1330 
1331 /**
1332  * genpd_syscore_switch - Switch power during system core suspend or resume.
1333  * @dev: Device that normally is marked as "always on" to switch power for.
1334  *
1335  * This routine may only be called during the system core (syscore) suspend or
1336  * resume phase for devices whose "always on" flags are set.
1337  */
genpd_syscore_switch(struct device * dev,bool suspend)1338 static void genpd_syscore_switch(struct device *dev, bool suspend)
1339 {
1340 	struct generic_pm_domain *genpd;
1341 
1342 	genpd = dev_to_genpd(dev);
1343 	if (!pm_genpd_present(genpd))
1344 		return;
1345 
1346 	if (suspend) {
1347 		genpd->suspended_count++;
1348 		pm_genpd_sync_poweroff(genpd);
1349 	} else {
1350 		pm_genpd_sync_poweron(genpd);
1351 		genpd->suspended_count--;
1352 	}
1353 }
1354 
pm_genpd_syscore_poweroff(struct device * dev)1355 void pm_genpd_syscore_poweroff(struct device *dev)
1356 {
1357 	genpd_syscore_switch(dev, true);
1358 }
1359 EXPORT_SYMBOL_GPL(pm_genpd_syscore_poweroff);
1360 
pm_genpd_syscore_poweron(struct device * dev)1361 void pm_genpd_syscore_poweron(struct device *dev)
1362 {
1363 	genpd_syscore_switch(dev, false);
1364 }
1365 EXPORT_SYMBOL_GPL(pm_genpd_syscore_poweron);
1366 
1367 #else
1368 
1369 #define pm_genpd_prepare		NULL
1370 #define pm_genpd_suspend		NULL
1371 #define pm_genpd_suspend_late		NULL
1372 #define pm_genpd_suspend_noirq		NULL
1373 #define pm_genpd_resume_early		NULL
1374 #define pm_genpd_resume_noirq		NULL
1375 #define pm_genpd_resume			NULL
1376 #define pm_genpd_freeze			NULL
1377 #define pm_genpd_freeze_late		NULL
1378 #define pm_genpd_freeze_noirq		NULL
1379 #define pm_genpd_thaw_early		NULL
1380 #define pm_genpd_thaw_noirq		NULL
1381 #define pm_genpd_thaw			NULL
1382 #define pm_genpd_restore_noirq		NULL
1383 #define pm_genpd_complete		NULL
1384 
1385 #endif /* CONFIG_PM_SLEEP */
1386 
__pm_genpd_alloc_dev_data(struct device * dev)1387 static struct generic_pm_domain_data *__pm_genpd_alloc_dev_data(struct device *dev)
1388 {
1389 	struct generic_pm_domain_data *gpd_data;
1390 
1391 	gpd_data = kzalloc(sizeof(*gpd_data), GFP_KERNEL);
1392 	if (!gpd_data)
1393 		return NULL;
1394 
1395 	mutex_init(&gpd_data->lock);
1396 	gpd_data->nb.notifier_call = genpd_dev_pm_qos_notifier;
1397 	dev_pm_qos_add_notifier(dev, &gpd_data->nb);
1398 	return gpd_data;
1399 }
1400 
__pm_genpd_free_dev_data(struct device * dev,struct generic_pm_domain_data * gpd_data)1401 static void __pm_genpd_free_dev_data(struct device *dev,
1402 				     struct generic_pm_domain_data *gpd_data)
1403 {
1404 	dev_pm_qos_remove_notifier(dev, &gpd_data->nb);
1405 	kfree(gpd_data);
1406 }
1407 
1408 /**
1409  * __pm_genpd_add_device - Add a device to an I/O PM domain.
1410  * @genpd: PM domain to add the device to.
1411  * @dev: Device to be added.
1412  * @td: Set of PM QoS timing parameters to attach to the device.
1413  */
__pm_genpd_add_device(struct generic_pm_domain * genpd,struct device * dev,struct gpd_timing_data * td)1414 int __pm_genpd_add_device(struct generic_pm_domain *genpd, struct device *dev,
1415 			  struct gpd_timing_data *td)
1416 {
1417 	struct generic_pm_domain_data *gpd_data_new, *gpd_data = NULL;
1418 	struct pm_domain_data *pdd;
1419 	int ret = 0;
1420 
1421 	dev_dbg(dev, "%s()\n", __func__);
1422 
1423 	if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(dev))
1424 		return -EINVAL;
1425 
1426 	gpd_data_new = __pm_genpd_alloc_dev_data(dev);
1427 	if (!gpd_data_new)
1428 		return -ENOMEM;
1429 
1430 	genpd_acquire_lock(genpd);
1431 
1432 	if (genpd->prepared_count > 0) {
1433 		ret = -EAGAIN;
1434 		goto out;
1435 	}
1436 
1437 	list_for_each_entry(pdd, &genpd->dev_list, list_node)
1438 		if (pdd->dev == dev) {
1439 			ret = -EINVAL;
1440 			goto out;
1441 		}
1442 
1443 	ret = dev_pm_get_subsys_data(dev);
1444 	if (ret)
1445 		goto out;
1446 
1447 	genpd->device_count++;
1448 	genpd->max_off_time_changed = true;
1449 
1450 	spin_lock_irq(&dev->power.lock);
1451 
1452 	dev->pm_domain = &genpd->domain;
1453 	if (dev->power.subsys_data->domain_data) {
1454 		gpd_data = to_gpd_data(dev->power.subsys_data->domain_data);
1455 	} else {
1456 		gpd_data = gpd_data_new;
1457 		dev->power.subsys_data->domain_data = &gpd_data->base;
1458 	}
1459 	gpd_data->refcount++;
1460 	if (td)
1461 		gpd_data->td = *td;
1462 
1463 	spin_unlock_irq(&dev->power.lock);
1464 
1465 	if (genpd->attach_dev)
1466 		genpd->attach_dev(genpd, dev);
1467 
1468 	mutex_lock(&gpd_data->lock);
1469 	gpd_data->base.dev = dev;
1470 	list_add_tail(&gpd_data->base.list_node, &genpd->dev_list);
1471 	gpd_data->need_restore = -1;
1472 	gpd_data->td.constraint_changed = true;
1473 	gpd_data->td.effective_constraint_ns = -1;
1474 	mutex_unlock(&gpd_data->lock);
1475 
1476  out:
1477 	genpd_release_lock(genpd);
1478 
1479 	if (gpd_data != gpd_data_new)
1480 		__pm_genpd_free_dev_data(dev, gpd_data_new);
1481 
1482 	return ret;
1483 }
1484 
1485 /**
1486  * __pm_genpd_name_add_device - Find I/O PM domain and add a device to it.
1487  * @domain_name: Name of the PM domain to add the device to.
1488  * @dev: Device to be added.
1489  * @td: Set of PM QoS timing parameters to attach to the device.
1490  */
__pm_genpd_name_add_device(const char * domain_name,struct device * dev,struct gpd_timing_data * td)1491 int __pm_genpd_name_add_device(const char *domain_name, struct device *dev,
1492 			       struct gpd_timing_data *td)
1493 {
1494 	return __pm_genpd_add_device(pm_genpd_lookup_name(domain_name), dev, td);
1495 }
1496 
1497 /**
1498  * pm_genpd_remove_device - Remove a device from an I/O PM domain.
1499  * @genpd: PM domain to remove the device from.
1500  * @dev: Device to be removed.
1501  */
pm_genpd_remove_device(struct generic_pm_domain * genpd,struct device * dev)1502 int pm_genpd_remove_device(struct generic_pm_domain *genpd,
1503 			   struct device *dev)
1504 {
1505 	struct generic_pm_domain_data *gpd_data;
1506 	struct pm_domain_data *pdd;
1507 	bool remove = false;
1508 	int ret = 0;
1509 
1510 	dev_dbg(dev, "%s()\n", __func__);
1511 
1512 	if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(dev)
1513 	    ||  IS_ERR_OR_NULL(dev->pm_domain)
1514 	    ||  pd_to_genpd(dev->pm_domain) != genpd)
1515 		return -EINVAL;
1516 
1517 	genpd_acquire_lock(genpd);
1518 
1519 	if (genpd->prepared_count > 0) {
1520 		ret = -EAGAIN;
1521 		goto out;
1522 	}
1523 
1524 	genpd->device_count--;
1525 	genpd->max_off_time_changed = true;
1526 
1527 	if (genpd->detach_dev)
1528 		genpd->detach_dev(genpd, dev);
1529 
1530 	spin_lock_irq(&dev->power.lock);
1531 
1532 	dev->pm_domain = NULL;
1533 	pdd = dev->power.subsys_data->domain_data;
1534 	list_del_init(&pdd->list_node);
1535 	gpd_data = to_gpd_data(pdd);
1536 	if (--gpd_data->refcount == 0) {
1537 		dev->power.subsys_data->domain_data = NULL;
1538 		remove = true;
1539 	}
1540 
1541 	spin_unlock_irq(&dev->power.lock);
1542 
1543 	mutex_lock(&gpd_data->lock);
1544 	pdd->dev = NULL;
1545 	mutex_unlock(&gpd_data->lock);
1546 
1547 	genpd_release_lock(genpd);
1548 
1549 	dev_pm_put_subsys_data(dev);
1550 	if (remove)
1551 		__pm_genpd_free_dev_data(dev, gpd_data);
1552 
1553 	return 0;
1554 
1555  out:
1556 	genpd_release_lock(genpd);
1557 
1558 	return ret;
1559 }
1560 
1561 /**
1562  * pm_genpd_dev_need_restore - Set/unset the device's "need restore" flag.
1563  * @dev: Device to set/unset the flag for.
1564  * @val: The new value of the device's "need restore" flag.
1565  */
pm_genpd_dev_need_restore(struct device * dev,bool val)1566 void pm_genpd_dev_need_restore(struct device *dev, bool val)
1567 {
1568 	struct pm_subsys_data *psd;
1569 	unsigned long flags;
1570 
1571 	spin_lock_irqsave(&dev->power.lock, flags);
1572 
1573 	psd = dev_to_psd(dev);
1574 	if (psd && psd->domain_data)
1575 		to_gpd_data(psd->domain_data)->need_restore = val ? 1 : 0;
1576 
1577 	spin_unlock_irqrestore(&dev->power.lock, flags);
1578 }
1579 EXPORT_SYMBOL_GPL(pm_genpd_dev_need_restore);
1580 
1581 /**
1582  * pm_genpd_add_subdomain - Add a subdomain to an I/O PM domain.
1583  * @genpd: Master PM domain to add the subdomain to.
1584  * @subdomain: Subdomain to be added.
1585  */
pm_genpd_add_subdomain(struct generic_pm_domain * genpd,struct generic_pm_domain * subdomain)1586 int pm_genpd_add_subdomain(struct generic_pm_domain *genpd,
1587 			   struct generic_pm_domain *subdomain)
1588 {
1589 	struct gpd_link *link;
1590 	int ret = 0;
1591 
1592 	if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(subdomain)
1593 	    || genpd == subdomain)
1594 		return -EINVAL;
1595 
1596  start:
1597 	genpd_acquire_lock(genpd);
1598 	mutex_lock_nested(&subdomain->lock, SINGLE_DEPTH_NESTING);
1599 
1600 	if (subdomain->status != GPD_STATE_POWER_OFF
1601 	    && subdomain->status != GPD_STATE_ACTIVE) {
1602 		mutex_unlock(&subdomain->lock);
1603 		genpd_release_lock(genpd);
1604 		goto start;
1605 	}
1606 
1607 	if (genpd->status == GPD_STATE_POWER_OFF
1608 	    &&  subdomain->status != GPD_STATE_POWER_OFF) {
1609 		ret = -EINVAL;
1610 		goto out;
1611 	}
1612 
1613 	list_for_each_entry(link, &genpd->master_links, master_node) {
1614 		if (link->slave == subdomain && link->master == genpd) {
1615 			ret = -EINVAL;
1616 			goto out;
1617 		}
1618 	}
1619 
1620 	link = kzalloc(sizeof(*link), GFP_KERNEL);
1621 	if (!link) {
1622 		ret = -ENOMEM;
1623 		goto out;
1624 	}
1625 	link->master = genpd;
1626 	list_add_tail(&link->master_node, &genpd->master_links);
1627 	link->slave = subdomain;
1628 	list_add_tail(&link->slave_node, &subdomain->slave_links);
1629 	if (subdomain->status != GPD_STATE_POWER_OFF)
1630 		genpd_sd_counter_inc(genpd);
1631 
1632  out:
1633 	mutex_unlock(&subdomain->lock);
1634 	genpd_release_lock(genpd);
1635 
1636 	return ret;
1637 }
1638 
1639 /**
1640  * pm_genpd_add_subdomain_names - Add a subdomain to an I/O PM domain.
1641  * @master_name: Name of the master PM domain to add the subdomain to.
1642  * @subdomain_name: Name of the subdomain to be added.
1643  */
pm_genpd_add_subdomain_names(const char * master_name,const char * subdomain_name)1644 int pm_genpd_add_subdomain_names(const char *master_name,
1645 				 const char *subdomain_name)
1646 {
1647 	struct generic_pm_domain *master = NULL, *subdomain = NULL, *gpd;
1648 
1649 	if (IS_ERR_OR_NULL(master_name) || IS_ERR_OR_NULL(subdomain_name))
1650 		return -EINVAL;
1651 
1652 	mutex_lock(&gpd_list_lock);
1653 	list_for_each_entry(gpd, &gpd_list, gpd_list_node) {
1654 		if (!master && !strcmp(gpd->name, master_name))
1655 			master = gpd;
1656 
1657 		if (!subdomain && !strcmp(gpd->name, subdomain_name))
1658 			subdomain = gpd;
1659 
1660 		if (master && subdomain)
1661 			break;
1662 	}
1663 	mutex_unlock(&gpd_list_lock);
1664 
1665 	return pm_genpd_add_subdomain(master, subdomain);
1666 }
1667 
1668 /**
1669  * pm_genpd_remove_subdomain - Remove a subdomain from an I/O PM domain.
1670  * @genpd: Master PM domain to remove the subdomain from.
1671  * @subdomain: Subdomain to be removed.
1672  */
pm_genpd_remove_subdomain(struct generic_pm_domain * genpd,struct generic_pm_domain * subdomain)1673 int pm_genpd_remove_subdomain(struct generic_pm_domain *genpd,
1674 			      struct generic_pm_domain *subdomain)
1675 {
1676 	struct gpd_link *l, *link;
1677 	int ret = -EINVAL;
1678 
1679 	if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(subdomain))
1680 		return -EINVAL;
1681 
1682  start:
1683 	genpd_acquire_lock(genpd);
1684 
1685 	list_for_each_entry_safe(link, l, &genpd->master_links, master_node) {
1686 		if (link->slave != subdomain)
1687 			continue;
1688 
1689 		mutex_lock_nested(&subdomain->lock, SINGLE_DEPTH_NESTING);
1690 
1691 		if (subdomain->status != GPD_STATE_POWER_OFF
1692 		    && subdomain->status != GPD_STATE_ACTIVE) {
1693 			mutex_unlock(&subdomain->lock);
1694 			genpd_release_lock(genpd);
1695 			goto start;
1696 		}
1697 
1698 		list_del(&link->master_node);
1699 		list_del(&link->slave_node);
1700 		kfree(link);
1701 		if (subdomain->status != GPD_STATE_POWER_OFF)
1702 			genpd_sd_counter_dec(genpd);
1703 
1704 		mutex_unlock(&subdomain->lock);
1705 
1706 		ret = 0;
1707 		break;
1708 	}
1709 
1710 	genpd_release_lock(genpd);
1711 
1712 	return ret;
1713 }
1714 
1715 /**
1716  * pm_genpd_attach_cpuidle - Connect the given PM domain with cpuidle.
1717  * @genpd: PM domain to be connected with cpuidle.
1718  * @state: cpuidle state this domain can disable/enable.
1719  *
1720  * Make a PM domain behave as though it contained a CPU core, that is, instead
1721  * of calling its power down routine it will enable the given cpuidle state so
1722  * that the cpuidle subsystem can power it down (if possible and desirable).
1723  */
pm_genpd_attach_cpuidle(struct generic_pm_domain * genpd,int state)1724 int pm_genpd_attach_cpuidle(struct generic_pm_domain *genpd, int state)
1725 {
1726 	struct cpuidle_driver *cpuidle_drv;
1727 	struct gpd_cpuidle_data *cpuidle_data;
1728 	struct cpuidle_state *idle_state;
1729 	int ret = 0;
1730 
1731 	if (IS_ERR_OR_NULL(genpd) || state < 0)
1732 		return -EINVAL;
1733 
1734 	genpd_acquire_lock(genpd);
1735 
1736 	if (genpd->cpuidle_data) {
1737 		ret = -EEXIST;
1738 		goto out;
1739 	}
1740 	cpuidle_data = kzalloc(sizeof(*cpuidle_data), GFP_KERNEL);
1741 	if (!cpuidle_data) {
1742 		ret = -ENOMEM;
1743 		goto out;
1744 	}
1745 	cpuidle_drv = cpuidle_driver_ref();
1746 	if (!cpuidle_drv) {
1747 		ret = -ENODEV;
1748 		goto err_drv;
1749 	}
1750 	if (cpuidle_drv->state_count <= state) {
1751 		ret = -EINVAL;
1752 		goto err;
1753 	}
1754 	idle_state = &cpuidle_drv->states[state];
1755 	if (!idle_state->disabled) {
1756 		ret = -EAGAIN;
1757 		goto err;
1758 	}
1759 	cpuidle_data->idle_state = idle_state;
1760 	cpuidle_data->saved_exit_latency = idle_state->exit_latency;
1761 	genpd->cpuidle_data = cpuidle_data;
1762 	genpd_recalc_cpu_exit_latency(genpd);
1763 
1764  out:
1765 	genpd_release_lock(genpd);
1766 	return ret;
1767 
1768  err:
1769 	cpuidle_driver_unref();
1770 
1771  err_drv:
1772 	kfree(cpuidle_data);
1773 	goto out;
1774 }
1775 
1776 /**
1777  * pm_genpd_name_attach_cpuidle - Find PM domain and connect cpuidle to it.
1778  * @name: Name of the domain to connect to cpuidle.
1779  * @state: cpuidle state this domain can manipulate.
1780  */
pm_genpd_name_attach_cpuidle(const char * name,int state)1781 int pm_genpd_name_attach_cpuidle(const char *name, int state)
1782 {
1783 	return pm_genpd_attach_cpuidle(pm_genpd_lookup_name(name), state);
1784 }
1785 
1786 /**
1787  * pm_genpd_detach_cpuidle - Remove the cpuidle connection from a PM domain.
1788  * @genpd: PM domain to remove the cpuidle connection from.
1789  *
1790  * Remove the cpuidle connection set up by pm_genpd_attach_cpuidle() from the
1791  * given PM domain.
1792  */
pm_genpd_detach_cpuidle(struct generic_pm_domain * genpd)1793 int pm_genpd_detach_cpuidle(struct generic_pm_domain *genpd)
1794 {
1795 	struct gpd_cpuidle_data *cpuidle_data;
1796 	struct cpuidle_state *idle_state;
1797 	int ret = 0;
1798 
1799 	if (IS_ERR_OR_NULL(genpd))
1800 		return -EINVAL;
1801 
1802 	genpd_acquire_lock(genpd);
1803 
1804 	cpuidle_data = genpd->cpuidle_data;
1805 	if (!cpuidle_data) {
1806 		ret = -ENODEV;
1807 		goto out;
1808 	}
1809 	idle_state = cpuidle_data->idle_state;
1810 	if (!idle_state->disabled) {
1811 		ret = -EAGAIN;
1812 		goto out;
1813 	}
1814 	idle_state->exit_latency = cpuidle_data->saved_exit_latency;
1815 	cpuidle_driver_unref();
1816 	genpd->cpuidle_data = NULL;
1817 	kfree(cpuidle_data);
1818 
1819  out:
1820 	genpd_release_lock(genpd);
1821 	return ret;
1822 }
1823 
1824 /**
1825  * pm_genpd_name_detach_cpuidle - Find PM domain and disconnect cpuidle from it.
1826  * @name: Name of the domain to disconnect cpuidle from.
1827  */
pm_genpd_name_detach_cpuidle(const char * name)1828 int pm_genpd_name_detach_cpuidle(const char *name)
1829 {
1830 	return pm_genpd_detach_cpuidle(pm_genpd_lookup_name(name));
1831 }
1832 
1833 /* Default device callbacks for generic PM domains. */
1834 
1835 /**
1836  * pm_genpd_default_save_state - Default "save device state" for PM domains.
1837  * @dev: Device to handle.
1838  */
pm_genpd_default_save_state(struct device * dev)1839 static int pm_genpd_default_save_state(struct device *dev)
1840 {
1841 	int (*cb)(struct device *__dev);
1842 
1843 	if (dev->type && dev->type->pm)
1844 		cb = dev->type->pm->runtime_suspend;
1845 	else if (dev->class && dev->class->pm)
1846 		cb = dev->class->pm->runtime_suspend;
1847 	else if (dev->bus && dev->bus->pm)
1848 		cb = dev->bus->pm->runtime_suspend;
1849 	else
1850 		cb = NULL;
1851 
1852 	if (!cb && dev->driver && dev->driver->pm)
1853 		cb = dev->driver->pm->runtime_suspend;
1854 
1855 	return cb ? cb(dev) : 0;
1856 }
1857 
1858 /**
1859  * pm_genpd_default_restore_state - Default PM domains "restore device state".
1860  * @dev: Device to handle.
1861  */
pm_genpd_default_restore_state(struct device * dev)1862 static int pm_genpd_default_restore_state(struct device *dev)
1863 {
1864 	int (*cb)(struct device *__dev);
1865 
1866 	if (dev->type && dev->type->pm)
1867 		cb = dev->type->pm->runtime_resume;
1868 	else if (dev->class && dev->class->pm)
1869 		cb = dev->class->pm->runtime_resume;
1870 	else if (dev->bus && dev->bus->pm)
1871 		cb = dev->bus->pm->runtime_resume;
1872 	else
1873 		cb = NULL;
1874 
1875 	if (!cb && dev->driver && dev->driver->pm)
1876 		cb = dev->driver->pm->runtime_resume;
1877 
1878 	return cb ? cb(dev) : 0;
1879 }
1880 
1881 /**
1882  * pm_genpd_init - Initialize a generic I/O PM domain object.
1883  * @genpd: PM domain object to initialize.
1884  * @gov: PM domain governor to associate with the domain (may be NULL).
1885  * @is_off: Initial value of the domain's power_is_off field.
1886  */
pm_genpd_init(struct generic_pm_domain * genpd,struct dev_power_governor * gov,bool is_off)1887 void pm_genpd_init(struct generic_pm_domain *genpd,
1888 		   struct dev_power_governor *gov, bool is_off)
1889 {
1890 	if (IS_ERR_OR_NULL(genpd))
1891 		return;
1892 
1893 	INIT_LIST_HEAD(&genpd->master_links);
1894 	INIT_LIST_HEAD(&genpd->slave_links);
1895 	INIT_LIST_HEAD(&genpd->dev_list);
1896 	mutex_init(&genpd->lock);
1897 	genpd->gov = gov;
1898 	INIT_WORK(&genpd->power_off_work, genpd_power_off_work_fn);
1899 	genpd->in_progress = 0;
1900 	atomic_set(&genpd->sd_count, 0);
1901 	genpd->status = is_off ? GPD_STATE_POWER_OFF : GPD_STATE_ACTIVE;
1902 	init_waitqueue_head(&genpd->status_wait_queue);
1903 	genpd->poweroff_task = NULL;
1904 	genpd->resume_count = 0;
1905 	genpd->device_count = 0;
1906 	genpd->max_off_time_ns = -1;
1907 	genpd->max_off_time_changed = true;
1908 	genpd->domain.ops.runtime_suspend = pm_genpd_runtime_suspend;
1909 	genpd->domain.ops.runtime_resume = pm_genpd_runtime_resume;
1910 	genpd->domain.ops.prepare = pm_genpd_prepare;
1911 	genpd->domain.ops.suspend = pm_genpd_suspend;
1912 	genpd->domain.ops.suspend_late = pm_genpd_suspend_late;
1913 	genpd->domain.ops.suspend_noirq = pm_genpd_suspend_noirq;
1914 	genpd->domain.ops.resume_noirq = pm_genpd_resume_noirq;
1915 	genpd->domain.ops.resume_early = pm_genpd_resume_early;
1916 	genpd->domain.ops.resume = pm_genpd_resume;
1917 	genpd->domain.ops.freeze = pm_genpd_freeze;
1918 	genpd->domain.ops.freeze_late = pm_genpd_freeze_late;
1919 	genpd->domain.ops.freeze_noirq = pm_genpd_freeze_noirq;
1920 	genpd->domain.ops.thaw_noirq = pm_genpd_thaw_noirq;
1921 	genpd->domain.ops.thaw_early = pm_genpd_thaw_early;
1922 	genpd->domain.ops.thaw = pm_genpd_thaw;
1923 	genpd->domain.ops.poweroff = pm_genpd_suspend;
1924 	genpd->domain.ops.poweroff_late = pm_genpd_suspend_late;
1925 	genpd->domain.ops.poweroff_noirq = pm_genpd_suspend_noirq;
1926 	genpd->domain.ops.restore_noirq = pm_genpd_restore_noirq;
1927 	genpd->domain.ops.restore_early = pm_genpd_resume_early;
1928 	genpd->domain.ops.restore = pm_genpd_resume;
1929 	genpd->domain.ops.complete = pm_genpd_complete;
1930 	genpd->dev_ops.save_state = pm_genpd_default_save_state;
1931 	genpd->dev_ops.restore_state = pm_genpd_default_restore_state;
1932 	mutex_lock(&gpd_list_lock);
1933 	list_add(&genpd->gpd_list_node, &gpd_list);
1934 	mutex_unlock(&gpd_list_lock);
1935 }
1936 
1937 #ifdef CONFIG_PM_GENERIC_DOMAINS_OF
1938 /*
1939  * Device Tree based PM domain providers.
1940  *
1941  * The code below implements generic device tree based PM domain providers that
1942  * bind device tree nodes with generic PM domains registered in the system.
1943  *
1944  * Any driver that registers generic PM domains and needs to support binding of
1945  * devices to these domains is supposed to register a PM domain provider, which
1946  * maps a PM domain specifier retrieved from the device tree to a PM domain.
1947  *
1948  * Two simple mapping functions have been provided for convenience:
1949  *  - __of_genpd_xlate_simple() for 1:1 device tree node to PM domain mapping.
1950  *  - __of_genpd_xlate_onecell() for mapping of multiple PM domains per node by
1951  *    index.
1952  */
1953 
1954 /**
1955  * struct of_genpd_provider - PM domain provider registration structure
1956  * @link: Entry in global list of PM domain providers
1957  * @node: Pointer to device tree node of PM domain provider
1958  * @xlate: Provider-specific xlate callback mapping a set of specifier cells
1959  *         into a PM domain.
1960  * @data: context pointer to be passed into @xlate callback
1961  */
1962 struct of_genpd_provider {
1963 	struct list_head link;
1964 	struct device_node *node;
1965 	genpd_xlate_t xlate;
1966 	void *data;
1967 };
1968 
1969 /* List of registered PM domain providers. */
1970 static LIST_HEAD(of_genpd_providers);
1971 /* Mutex to protect the list above. */
1972 static DEFINE_MUTEX(of_genpd_mutex);
1973 
1974 /**
1975  * __of_genpd_xlate_simple() - Xlate function for direct node-domain mapping
1976  * @genpdspec: OF phandle args to map into a PM domain
1977  * @data: xlate function private data - pointer to struct generic_pm_domain
1978  *
1979  * This is a generic xlate function that can be used to model PM domains that
1980  * have their own device tree nodes. The private data of xlate function needs
1981  * to be a valid pointer to struct generic_pm_domain.
1982  */
__of_genpd_xlate_simple(struct of_phandle_args * genpdspec,void * data)1983 struct generic_pm_domain *__of_genpd_xlate_simple(
1984 					struct of_phandle_args *genpdspec,
1985 					void *data)
1986 {
1987 	if (genpdspec->args_count != 0)
1988 		return ERR_PTR(-EINVAL);
1989 	return data;
1990 }
1991 EXPORT_SYMBOL_GPL(__of_genpd_xlate_simple);
1992 
1993 /**
1994  * __of_genpd_xlate_onecell() - Xlate function using a single index.
1995  * @genpdspec: OF phandle args to map into a PM domain
1996  * @data: xlate function private data - pointer to struct genpd_onecell_data
1997  *
1998  * This is a generic xlate function that can be used to model simple PM domain
1999  * controllers that have one device tree node and provide multiple PM domains.
2000  * A single cell is used as an index into an array of PM domains specified in
2001  * the genpd_onecell_data struct when registering the provider.
2002  */
__of_genpd_xlate_onecell(struct of_phandle_args * genpdspec,void * data)2003 struct generic_pm_domain *__of_genpd_xlate_onecell(
2004 					struct of_phandle_args *genpdspec,
2005 					void *data)
2006 {
2007 	struct genpd_onecell_data *genpd_data = data;
2008 	unsigned int idx = genpdspec->args[0];
2009 
2010 	if (genpdspec->args_count != 1)
2011 		return ERR_PTR(-EINVAL);
2012 
2013 	if (idx >= genpd_data->num_domains) {
2014 		pr_err("%s: invalid domain index %u\n", __func__, idx);
2015 		return ERR_PTR(-EINVAL);
2016 	}
2017 
2018 	if (!genpd_data->domains[idx])
2019 		return ERR_PTR(-ENOENT);
2020 
2021 	return genpd_data->domains[idx];
2022 }
2023 EXPORT_SYMBOL_GPL(__of_genpd_xlate_onecell);
2024 
2025 /**
2026  * __of_genpd_add_provider() - Register a PM domain provider for a node
2027  * @np: Device node pointer associated with the PM domain provider.
2028  * @xlate: Callback for decoding PM domain from phandle arguments.
2029  * @data: Context pointer for @xlate callback.
2030  */
__of_genpd_add_provider(struct device_node * np,genpd_xlate_t xlate,void * data)2031 int __of_genpd_add_provider(struct device_node *np, genpd_xlate_t xlate,
2032 			void *data)
2033 {
2034 	struct of_genpd_provider *cp;
2035 
2036 	cp = kzalloc(sizeof(*cp), GFP_KERNEL);
2037 	if (!cp)
2038 		return -ENOMEM;
2039 
2040 	cp->node = of_node_get(np);
2041 	cp->data = data;
2042 	cp->xlate = xlate;
2043 
2044 	mutex_lock(&of_genpd_mutex);
2045 	list_add(&cp->link, &of_genpd_providers);
2046 	mutex_unlock(&of_genpd_mutex);
2047 	pr_debug("Added domain provider from %s\n", np->full_name);
2048 
2049 	return 0;
2050 }
2051 EXPORT_SYMBOL_GPL(__of_genpd_add_provider);
2052 
2053 /**
2054  * of_genpd_del_provider() - Remove a previously registered PM domain provider
2055  * @np: Device node pointer associated with the PM domain provider
2056  */
of_genpd_del_provider(struct device_node * np)2057 void of_genpd_del_provider(struct device_node *np)
2058 {
2059 	struct of_genpd_provider *cp, *tmp;
2060 
2061 	mutex_lock(&of_genpd_mutex);
2062 	list_for_each_entry_safe(cp, tmp, &of_genpd_providers, link) {
2063 		if (cp->node == np) {
2064 			list_del(&cp->link);
2065 			of_node_put(cp->node);
2066 			kfree(cp);
2067 			break;
2068 		}
2069 	}
2070 	mutex_unlock(&of_genpd_mutex);
2071 }
2072 EXPORT_SYMBOL_GPL(of_genpd_del_provider);
2073 
2074 /**
2075  * of_genpd_get_from_provider() - Look-up PM domain
2076  * @genpdspec: OF phandle args to use for look-up
2077  *
2078  * Looks for a PM domain provider under the node specified by @genpdspec and if
2079  * found, uses xlate function of the provider to map phandle args to a PM
2080  * domain.
2081  *
2082  * Returns a valid pointer to struct generic_pm_domain on success or ERR_PTR()
2083  * on failure.
2084  */
of_genpd_get_from_provider(struct of_phandle_args * genpdspec)2085 static struct generic_pm_domain *of_genpd_get_from_provider(
2086 					struct of_phandle_args *genpdspec)
2087 {
2088 	struct generic_pm_domain *genpd = ERR_PTR(-ENOENT);
2089 	struct of_genpd_provider *provider;
2090 
2091 	mutex_lock(&of_genpd_mutex);
2092 
2093 	/* Check if we have such a provider in our array */
2094 	list_for_each_entry(provider, &of_genpd_providers, link) {
2095 		if (provider->node == genpdspec->np)
2096 			genpd = provider->xlate(genpdspec, provider->data);
2097 		if (!IS_ERR(genpd))
2098 			break;
2099 	}
2100 
2101 	mutex_unlock(&of_genpd_mutex);
2102 
2103 	return genpd;
2104 }
2105 
2106 /**
2107  * genpd_dev_pm_detach - Detach a device from its PM domain.
2108  * @dev: Device to attach.
2109  * @power_off: Currently not used
2110  *
2111  * Try to locate a corresponding generic PM domain, which the device was
2112  * attached to previously. If such is found, the device is detached from it.
2113  */
genpd_dev_pm_detach(struct device * dev,bool power_off)2114 static void genpd_dev_pm_detach(struct device *dev, bool power_off)
2115 {
2116 	struct generic_pm_domain *pd = NULL, *gpd;
2117 	int ret = 0;
2118 
2119 	if (!dev->pm_domain)
2120 		return;
2121 
2122 	mutex_lock(&gpd_list_lock);
2123 	list_for_each_entry(gpd, &gpd_list, gpd_list_node) {
2124 		if (&gpd->domain == dev->pm_domain) {
2125 			pd = gpd;
2126 			break;
2127 		}
2128 	}
2129 	mutex_unlock(&gpd_list_lock);
2130 
2131 	if (!pd)
2132 		return;
2133 
2134 	dev_dbg(dev, "removing from PM domain %s\n", pd->name);
2135 
2136 	while (1) {
2137 		ret = pm_genpd_remove_device(pd, dev);
2138 		if (ret != -EAGAIN)
2139 			break;
2140 		cond_resched();
2141 	}
2142 
2143 	if (ret < 0) {
2144 		dev_err(dev, "failed to remove from PM domain %s: %d",
2145 			pd->name, ret);
2146 		return;
2147 	}
2148 
2149 	/* Check if PM domain can be powered off after removing this device. */
2150 	genpd_queue_power_off_work(pd);
2151 }
2152 
2153 /**
2154  * genpd_dev_pm_attach - Attach a device to its PM domain using DT.
2155  * @dev: Device to attach.
2156  *
2157  * Parse device's OF node to find a PM domain specifier. If such is found,
2158  * attaches the device to retrieved pm_domain ops.
2159  *
2160  * Both generic and legacy Samsung-specific DT bindings are supported to keep
2161  * backwards compatibility with existing DTBs.
2162  *
2163  * Returns 0 on successfully attached PM domain or negative error code.
2164  */
genpd_dev_pm_attach(struct device * dev)2165 int genpd_dev_pm_attach(struct device *dev)
2166 {
2167 	struct of_phandle_args pd_args;
2168 	struct generic_pm_domain *pd;
2169 	int ret;
2170 
2171 	if (!dev->of_node)
2172 		return -ENODEV;
2173 
2174 	if (dev->pm_domain)
2175 		return -EEXIST;
2176 
2177 	ret = of_parse_phandle_with_args(dev->of_node, "power-domains",
2178 					"#power-domain-cells", 0, &pd_args);
2179 	if (ret < 0) {
2180 		if (ret != -ENOENT)
2181 			return ret;
2182 
2183 		/*
2184 		 * Try legacy Samsung-specific bindings
2185 		 * (for backwards compatibility of DT ABI)
2186 		 */
2187 		pd_args.args_count = 0;
2188 		pd_args.np = of_parse_phandle(dev->of_node,
2189 						"samsung,power-domain", 0);
2190 		if (!pd_args.np)
2191 			return -ENOENT;
2192 	}
2193 
2194 	pd = of_genpd_get_from_provider(&pd_args);
2195 	if (IS_ERR(pd)) {
2196 		dev_dbg(dev, "%s() failed to find PM domain: %ld\n",
2197 			__func__, PTR_ERR(pd));
2198 		of_node_put(dev->of_node);
2199 		return PTR_ERR(pd);
2200 	}
2201 
2202 	dev_dbg(dev, "adding to PM domain %s\n", pd->name);
2203 
2204 	while (1) {
2205 		ret = pm_genpd_add_device(pd, dev);
2206 		if (ret != -EAGAIN)
2207 			break;
2208 		cond_resched();
2209 	}
2210 
2211 	if (ret < 0) {
2212 		dev_err(dev, "failed to add to PM domain %s: %d",
2213 			pd->name, ret);
2214 		of_node_put(dev->of_node);
2215 		return ret;
2216 	}
2217 
2218 	dev->pm_domain->detach = genpd_dev_pm_detach;
2219 
2220 	return 0;
2221 }
2222 EXPORT_SYMBOL_GPL(genpd_dev_pm_attach);
2223 #endif
2224 
2225 
2226 /***        debugfs support        ***/
2227 
2228 #ifdef CONFIG_PM_ADVANCED_DEBUG
2229 #include <linux/pm.h>
2230 #include <linux/device.h>
2231 #include <linux/debugfs.h>
2232 #include <linux/seq_file.h>
2233 #include <linux/init.h>
2234 #include <linux/kobject.h>
2235 static struct dentry *pm_genpd_debugfs_dir;
2236 
2237 /*
2238  * TODO: This function is a slightly modified version of rtpm_status_show
2239  * from sysfs.c, but dependencies between PM_GENERIC_DOMAINS and PM_RUNTIME
2240  * are too loose to generalize it.
2241  */
2242 #ifdef CONFIG_PM_RUNTIME
rtpm_status_str(struct seq_file * s,struct device * dev)2243 static void rtpm_status_str(struct seq_file *s, struct device *dev)
2244 {
2245 	static const char * const status_lookup[] = {
2246 		[RPM_ACTIVE] = "active",
2247 		[RPM_RESUMING] = "resuming",
2248 		[RPM_SUSPENDED] = "suspended",
2249 		[RPM_SUSPENDING] = "suspending"
2250 	};
2251 	const char *p = "";
2252 
2253 	if (dev->power.runtime_error)
2254 		p = "error";
2255 	else if (dev->power.disable_depth)
2256 		p = "unsupported";
2257 	else if (dev->power.runtime_status < ARRAY_SIZE(status_lookup))
2258 		p = status_lookup[dev->power.runtime_status];
2259 	else
2260 		WARN_ON(1);
2261 
2262 	seq_puts(s, p);
2263 }
2264 #else
rtpm_status_str(struct seq_file * s,struct device * dev)2265 static void rtpm_status_str(struct seq_file *s, struct device *dev)
2266 {
2267 	seq_puts(s, "active");
2268 }
2269 #endif
2270 
pm_genpd_summary_one(struct seq_file * s,struct generic_pm_domain * gpd)2271 static int pm_genpd_summary_one(struct seq_file *s,
2272 		struct generic_pm_domain *gpd)
2273 {
2274 	static const char * const status_lookup[] = {
2275 		[GPD_STATE_ACTIVE] = "on",
2276 		[GPD_STATE_WAIT_MASTER] = "wait-master",
2277 		[GPD_STATE_BUSY] = "busy",
2278 		[GPD_STATE_REPEAT] = "off-in-progress",
2279 		[GPD_STATE_POWER_OFF] = "off"
2280 	};
2281 	struct pm_domain_data *pm_data;
2282 	const char *kobj_path;
2283 	struct gpd_link *link;
2284 	int ret;
2285 
2286 	ret = mutex_lock_interruptible(&gpd->lock);
2287 	if (ret)
2288 		return -ERESTARTSYS;
2289 
2290 	if (WARN_ON(gpd->status >= ARRAY_SIZE(status_lookup)))
2291 		goto exit;
2292 	seq_printf(s, "%-30s  %-15s  ", gpd->name, status_lookup[gpd->status]);
2293 
2294 	/*
2295 	 * Modifications on the list require holding locks on both
2296 	 * master and slave, so we are safe.
2297 	 * Also gpd->name is immutable.
2298 	 */
2299 	list_for_each_entry(link, &gpd->master_links, master_node) {
2300 		seq_printf(s, "%s", link->slave->name);
2301 		if (!list_is_last(&link->master_node, &gpd->master_links))
2302 			seq_puts(s, ", ");
2303 	}
2304 
2305 	list_for_each_entry(pm_data, &gpd->dev_list, list_node) {
2306 		kobj_path = kobject_get_path(&pm_data->dev->kobj, GFP_KERNEL);
2307 		if (kobj_path == NULL)
2308 			continue;
2309 
2310 		seq_printf(s, "\n    %-50s  ", kobj_path);
2311 		rtpm_status_str(s, pm_data->dev);
2312 		kfree(kobj_path);
2313 	}
2314 
2315 	seq_puts(s, "\n");
2316 exit:
2317 	mutex_unlock(&gpd->lock);
2318 
2319 	return 0;
2320 }
2321 
pm_genpd_summary_show(struct seq_file * s,void * data)2322 static int pm_genpd_summary_show(struct seq_file *s, void *data)
2323 {
2324 	struct generic_pm_domain *gpd;
2325 	int ret = 0;
2326 
2327 	seq_puts(s, "    domain                      status         slaves\n");
2328 	seq_puts(s, "           /device                                      runtime status\n");
2329 	seq_puts(s, "----------------------------------------------------------------------\n");
2330 
2331 	ret = mutex_lock_interruptible(&gpd_list_lock);
2332 	if (ret)
2333 		return -ERESTARTSYS;
2334 
2335 	list_for_each_entry(gpd, &gpd_list, gpd_list_node) {
2336 		ret = pm_genpd_summary_one(s, gpd);
2337 		if (ret)
2338 			break;
2339 	}
2340 	mutex_unlock(&gpd_list_lock);
2341 
2342 	return ret;
2343 }
2344 
pm_genpd_summary_open(struct inode * inode,struct file * file)2345 static int pm_genpd_summary_open(struct inode *inode, struct file *file)
2346 {
2347 	return single_open(file, pm_genpd_summary_show, NULL);
2348 }
2349 
2350 static const struct file_operations pm_genpd_summary_fops = {
2351 	.open = pm_genpd_summary_open,
2352 	.read = seq_read,
2353 	.llseek = seq_lseek,
2354 	.release = single_release,
2355 };
2356 
pm_genpd_debug_init(void)2357 static int __init pm_genpd_debug_init(void)
2358 {
2359 	struct dentry *d;
2360 
2361 	pm_genpd_debugfs_dir = debugfs_create_dir("pm_genpd", NULL);
2362 
2363 	if (!pm_genpd_debugfs_dir)
2364 		return -ENOMEM;
2365 
2366 	d = debugfs_create_file("pm_genpd_summary", S_IRUGO,
2367 			pm_genpd_debugfs_dir, NULL, &pm_genpd_summary_fops);
2368 	if (!d)
2369 		return -ENOMEM;
2370 
2371 	return 0;
2372 }
2373 late_initcall(pm_genpd_debug_init);
2374 
pm_genpd_debug_exit(void)2375 static void __exit pm_genpd_debug_exit(void)
2376 {
2377 	debugfs_remove_recursive(pm_genpd_debugfs_dir);
2378 }
2379 __exitcall(pm_genpd_debug_exit);
2380 #endif /* CONFIG_PM_ADVANCED_DEBUG */
2381