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1 // SPDX-License-Identifier: GPL-2.0
2 /*
3  * drivers/base/power/wakeup.c - System wakeup events framework
4  *
5  * Copyright (c) 2010 Rafael J. Wysocki <rjw@sisk.pl>, Novell Inc.
6  */
7 #define pr_fmt(fmt) "PM: " fmt
8 
9 #include <linux/device.h>
10 #include <linux/slab.h>
11 #include <linux/sched/signal.h>
12 #include <linux/capability.h>
13 #include <linux/export.h>
14 #include <linux/suspend.h>
15 #include <linux/seq_file.h>
16 #include <linux/debugfs.h>
17 #include <linux/pm_wakeirq.h>
18 #include <linux/irq.h>
19 #include <linux/irqdesc.h>
20 #include <linux/wakeup_reason.h>
21 #include <trace/events/power.h>
22 
23 #include "power.h"
24 
25 #define list_for_each_entry_rcu_locked(pos, head, member) \
26 	list_for_each_entry_rcu(pos, head, member, \
27 		srcu_read_lock_held(&wakeup_srcu))
28 /*
29  * If set, the suspend/hibernate code will abort transitions to a sleep state
30  * if wakeup events are registered during or immediately before the transition.
31  */
32 bool events_check_enabled __read_mostly;
33 
34 /* First wakeup IRQ seen by the kernel in the last cycle. */
35 static unsigned int wakeup_irq[2] __read_mostly;
36 static DEFINE_RAW_SPINLOCK(wakeup_irq_lock);
37 
38 /* If greater than 0 and the system is suspending, terminate the suspend. */
39 static atomic_t pm_abort_suspend __read_mostly;
40 
41 /*
42  * Combined counters of registered wakeup events and wakeup events in progress.
43  * They need to be modified together atomically, so it's better to use one
44  * atomic variable to hold them both.
45  */
46 static atomic_t combined_event_count = ATOMIC_INIT(0);
47 
48 #define IN_PROGRESS_BITS	(sizeof(int) * 4)
49 #define MAX_IN_PROGRESS		((1 << IN_PROGRESS_BITS) - 1)
50 
split_counters(unsigned int * cnt,unsigned int * inpr)51 static void split_counters(unsigned int *cnt, unsigned int *inpr)
52 {
53 	unsigned int comb = atomic_read(&combined_event_count);
54 
55 	*cnt = (comb >> IN_PROGRESS_BITS);
56 	*inpr = comb & MAX_IN_PROGRESS;
57 }
58 
59 /* A preserved old value of the events counter. */
60 static unsigned int saved_count;
61 
62 static DEFINE_RAW_SPINLOCK(events_lock);
63 
64 static void pm_wakeup_timer_fn(struct timer_list *t);
65 
66 static LIST_HEAD(wakeup_sources);
67 
68 static DECLARE_WAIT_QUEUE_HEAD(wakeup_count_wait_queue);
69 
70 DEFINE_STATIC_SRCU(wakeup_srcu);
71 
72 static struct wakeup_source deleted_ws = {
73 	.name = "deleted",
74 	.lock =  __SPIN_LOCK_UNLOCKED(deleted_ws.lock),
75 };
76 
77 static DEFINE_IDA(wakeup_ida);
78 
79 /**
80  * wakeup_source_create - Create a struct wakeup_source object.
81  * @name: Name of the new wakeup source.
82  */
wakeup_source_create(const char * name)83 struct wakeup_source *wakeup_source_create(const char *name)
84 {
85 	struct wakeup_source *ws;
86 	const char *ws_name;
87 	int id;
88 
89 	ws = kzalloc(sizeof(*ws), GFP_KERNEL);
90 	if (!ws)
91 		goto err_ws;
92 
93 	ws_name = kstrdup_const(name, GFP_KERNEL);
94 	if (!ws_name)
95 		goto err_name;
96 	ws->name = ws_name;
97 
98 	id = ida_alloc(&wakeup_ida, GFP_KERNEL);
99 	if (id < 0)
100 		goto err_id;
101 	ws->id = id;
102 
103 	return ws;
104 
105 err_id:
106 	kfree_const(ws->name);
107 err_name:
108 	kfree(ws);
109 err_ws:
110 	return NULL;
111 }
112 EXPORT_SYMBOL_GPL(wakeup_source_create);
113 
114 /*
115  * Record wakeup_source statistics being deleted into a dummy wakeup_source.
116  */
wakeup_source_record(struct wakeup_source * ws)117 static void wakeup_source_record(struct wakeup_source *ws)
118 {
119 	unsigned long flags;
120 
121 	spin_lock_irqsave(&deleted_ws.lock, flags);
122 
123 	if (ws->event_count) {
124 		deleted_ws.total_time =
125 			ktime_add(deleted_ws.total_time, ws->total_time);
126 		deleted_ws.prevent_sleep_time =
127 			ktime_add(deleted_ws.prevent_sleep_time,
128 				  ws->prevent_sleep_time);
129 		deleted_ws.max_time =
130 			ktime_compare(deleted_ws.max_time, ws->max_time) > 0 ?
131 				deleted_ws.max_time : ws->max_time;
132 		deleted_ws.event_count += ws->event_count;
133 		deleted_ws.active_count += ws->active_count;
134 		deleted_ws.relax_count += ws->relax_count;
135 		deleted_ws.expire_count += ws->expire_count;
136 		deleted_ws.wakeup_count += ws->wakeup_count;
137 	}
138 
139 	spin_unlock_irqrestore(&deleted_ws.lock, flags);
140 }
141 
wakeup_source_free(struct wakeup_source * ws)142 static void wakeup_source_free(struct wakeup_source *ws)
143 {
144 	ida_free(&wakeup_ida, ws->id);
145 	kfree_const(ws->name);
146 	kfree(ws);
147 }
148 
149 /**
150  * wakeup_source_destroy - Destroy a struct wakeup_source object.
151  * @ws: Wakeup source to destroy.
152  *
153  * Use only for wakeup source objects created with wakeup_source_create().
154  */
wakeup_source_destroy(struct wakeup_source * ws)155 void wakeup_source_destroy(struct wakeup_source *ws)
156 {
157 	if (!ws)
158 		return;
159 
160 	__pm_relax(ws);
161 	wakeup_source_record(ws);
162 	wakeup_source_free(ws);
163 }
164 EXPORT_SYMBOL_GPL(wakeup_source_destroy);
165 
166 /**
167  * wakeup_source_add - Add given object to the list of wakeup sources.
168  * @ws: Wakeup source object to add to the list.
169  */
wakeup_source_add(struct wakeup_source * ws)170 void wakeup_source_add(struct wakeup_source *ws)
171 {
172 	unsigned long flags;
173 
174 	if (WARN_ON(!ws))
175 		return;
176 
177 	spin_lock_init(&ws->lock);
178 	timer_setup(&ws->timer, pm_wakeup_timer_fn, 0);
179 	ws->active = false;
180 
181 	raw_spin_lock_irqsave(&events_lock, flags);
182 	list_add_rcu(&ws->entry, &wakeup_sources);
183 	raw_spin_unlock_irqrestore(&events_lock, flags);
184 }
185 EXPORT_SYMBOL_GPL(wakeup_source_add);
186 
187 /**
188  * wakeup_source_remove - Remove given object from the wakeup sources list.
189  * @ws: Wakeup source object to remove from the list.
190  */
wakeup_source_remove(struct wakeup_source * ws)191 void wakeup_source_remove(struct wakeup_source *ws)
192 {
193 	unsigned long flags;
194 
195 	if (WARN_ON(!ws))
196 		return;
197 
198 	raw_spin_lock_irqsave(&events_lock, flags);
199 	list_del_rcu(&ws->entry);
200 	raw_spin_unlock_irqrestore(&events_lock, flags);
201 	synchronize_srcu(&wakeup_srcu);
202 
203 	del_timer_sync(&ws->timer);
204 	/*
205 	 * Clear timer.function to make wakeup_source_not_registered() treat
206 	 * this wakeup source as not registered.
207 	 */
208 	ws->timer.function = NULL;
209 }
210 EXPORT_SYMBOL_GPL(wakeup_source_remove);
211 
212 /**
213  * wakeup_source_register - Create wakeup source and add it to the list.
214  * @dev: Device this wakeup source is associated with (or NULL if virtual).
215  * @name: Name of the wakeup source to register.
216  */
wakeup_source_register(struct device * dev,const char * name)217 struct wakeup_source *wakeup_source_register(struct device *dev,
218 					     const char *name)
219 {
220 	struct wakeup_source *ws;
221 	int ret;
222 
223 	ws = wakeup_source_create(name);
224 	if (ws) {
225 		if (!dev || device_is_registered(dev)) {
226 			ret = wakeup_source_sysfs_add(dev, ws);
227 			if (ret) {
228 				wakeup_source_free(ws);
229 				return NULL;
230 			}
231 		}
232 		wakeup_source_add(ws);
233 	}
234 	return ws;
235 }
236 EXPORT_SYMBOL_GPL(wakeup_source_register);
237 
238 /**
239  * wakeup_source_unregister - Remove wakeup source from the list and remove it.
240  * @ws: Wakeup source object to unregister.
241  */
wakeup_source_unregister(struct wakeup_source * ws)242 void wakeup_source_unregister(struct wakeup_source *ws)
243 {
244 	if (ws) {
245 		wakeup_source_remove(ws);
246 		if (ws->dev)
247 			wakeup_source_sysfs_remove(ws);
248 
249 		wakeup_source_destroy(ws);
250 	}
251 }
252 EXPORT_SYMBOL_GPL(wakeup_source_unregister);
253 
254 /**
255  * wakeup_sources_read_lock - Lock wakeup source list for read.
256  *
257  * Returns an index of srcu lock for struct wakeup_srcu.
258  * This index must be passed to the matching wakeup_sources_read_unlock().
259  */
wakeup_sources_read_lock(void)260 int wakeup_sources_read_lock(void)
261 {
262 	return srcu_read_lock(&wakeup_srcu);
263 }
264 EXPORT_SYMBOL_GPL(wakeup_sources_read_lock);
265 
266 /**
267  * wakeup_sources_read_unlock - Unlock wakeup source list.
268  * @idx: return value from corresponding wakeup_sources_read_lock()
269  */
wakeup_sources_read_unlock(int idx)270 void wakeup_sources_read_unlock(int idx)
271 {
272 	srcu_read_unlock(&wakeup_srcu, idx);
273 }
274 EXPORT_SYMBOL_GPL(wakeup_sources_read_unlock);
275 
276 /**
277  * wakeup_sources_walk_start - Begin a walk on wakeup source list
278  *
279  * Returns first object of the list of wakeup sources.
280  *
281  * Note that to be safe, wakeup sources list needs to be locked by calling
282  * wakeup_source_read_lock() for this.
283  */
wakeup_sources_walk_start(void)284 struct wakeup_source *wakeup_sources_walk_start(void)
285 {
286 	struct list_head *ws_head = &wakeup_sources;
287 
288 	return list_entry_rcu(ws_head->next, struct wakeup_source, entry);
289 }
290 EXPORT_SYMBOL_GPL(wakeup_sources_walk_start);
291 
292 /**
293  * wakeup_sources_walk_next - Get next wakeup source from the list
294  * @ws: Previous wakeup source object
295  *
296  * Note that to be safe, wakeup sources list needs to be locked by calling
297  * wakeup_source_read_lock() for this.
298  */
wakeup_sources_walk_next(struct wakeup_source * ws)299 struct wakeup_source *wakeup_sources_walk_next(struct wakeup_source *ws)
300 {
301 	struct list_head *ws_head = &wakeup_sources;
302 
303 	return list_next_or_null_rcu(ws_head, &ws->entry,
304 				struct wakeup_source, entry);
305 }
306 EXPORT_SYMBOL_GPL(wakeup_sources_walk_next);
307 
308 /**
309  * device_wakeup_attach - Attach a wakeup source object to a device object.
310  * @dev: Device to handle.
311  * @ws: Wakeup source object to attach to @dev.
312  *
313  * This causes @dev to be treated as a wakeup device.
314  */
device_wakeup_attach(struct device * dev,struct wakeup_source * ws)315 static int device_wakeup_attach(struct device *dev, struct wakeup_source *ws)
316 {
317 	spin_lock_irq(&dev->power.lock);
318 	if (dev->power.wakeup) {
319 		spin_unlock_irq(&dev->power.lock);
320 		return -EEXIST;
321 	}
322 	dev->power.wakeup = ws;
323 	if (dev->power.wakeirq)
324 		device_wakeup_attach_irq(dev, dev->power.wakeirq);
325 	spin_unlock_irq(&dev->power.lock);
326 	return 0;
327 }
328 
329 /**
330  * device_wakeup_enable - Enable given device to be a wakeup source.
331  * @dev: Device to handle.
332  *
333  * Create a wakeup source object, register it and attach it to @dev.
334  */
device_wakeup_enable(struct device * dev)335 int device_wakeup_enable(struct device *dev)
336 {
337 	struct wakeup_source *ws;
338 	int ret;
339 
340 	if (!dev || !dev->power.can_wakeup)
341 		return -EINVAL;
342 
343 	if (pm_suspend_target_state != PM_SUSPEND_ON)
344 		dev_dbg(dev, "Suspicious %s() during system transition!\n", __func__);
345 
346 	ws = wakeup_source_register(dev, dev_name(dev));
347 	if (!ws)
348 		return -ENOMEM;
349 
350 	ret = device_wakeup_attach(dev, ws);
351 	if (ret)
352 		wakeup_source_unregister(ws);
353 
354 	return ret;
355 }
356 EXPORT_SYMBOL_GPL(device_wakeup_enable);
357 
358 /**
359  * device_wakeup_attach_irq - Attach a wakeirq to a wakeup source
360  * @dev: Device to handle
361  * @wakeirq: Device specific wakeirq entry
362  *
363  * Attach a device wakeirq to the wakeup source so the device
364  * wake IRQ can be configured automatically for suspend and
365  * resume.
366  *
367  * Call under the device's power.lock lock.
368  */
device_wakeup_attach_irq(struct device * dev,struct wake_irq * wakeirq)369 void device_wakeup_attach_irq(struct device *dev,
370 			     struct wake_irq *wakeirq)
371 {
372 	struct wakeup_source *ws;
373 
374 	ws = dev->power.wakeup;
375 	if (!ws)
376 		return;
377 
378 	if (ws->wakeirq)
379 		dev_err(dev, "Leftover wakeup IRQ found, overriding\n");
380 
381 	ws->wakeirq = wakeirq;
382 }
383 
384 /**
385  * device_wakeup_detach_irq - Detach a wakeirq from a wakeup source
386  * @dev: Device to handle
387  *
388  * Removes a device wakeirq from the wakeup source.
389  *
390  * Call under the device's power.lock lock.
391  */
device_wakeup_detach_irq(struct device * dev)392 void device_wakeup_detach_irq(struct device *dev)
393 {
394 	struct wakeup_source *ws;
395 
396 	ws = dev->power.wakeup;
397 	if (ws)
398 		ws->wakeirq = NULL;
399 }
400 
401 /**
402  * device_wakeup_arm_wake_irqs -
403  *
404  * Iterates over the list of device wakeirqs to arm them.
405  */
device_wakeup_arm_wake_irqs(void)406 void device_wakeup_arm_wake_irqs(void)
407 {
408 	struct wakeup_source *ws;
409 	int srcuidx;
410 
411 	srcuidx = srcu_read_lock(&wakeup_srcu);
412 	list_for_each_entry_rcu_locked(ws, &wakeup_sources, entry)
413 		dev_pm_arm_wake_irq(ws->wakeirq);
414 	srcu_read_unlock(&wakeup_srcu, srcuidx);
415 }
416 
417 /**
418  * device_wakeup_disarm_wake_irqs -
419  *
420  * Iterates over the list of device wakeirqs to disarm them.
421  */
device_wakeup_disarm_wake_irqs(void)422 void device_wakeup_disarm_wake_irqs(void)
423 {
424 	struct wakeup_source *ws;
425 	int srcuidx;
426 
427 	srcuidx = srcu_read_lock(&wakeup_srcu);
428 	list_for_each_entry_rcu_locked(ws, &wakeup_sources, entry)
429 		dev_pm_disarm_wake_irq(ws->wakeirq);
430 	srcu_read_unlock(&wakeup_srcu, srcuidx);
431 }
432 
433 /**
434  * device_wakeup_detach - Detach a device's wakeup source object from it.
435  * @dev: Device to detach the wakeup source object from.
436  *
437  * After it returns, @dev will not be treated as a wakeup device any more.
438  */
device_wakeup_detach(struct device * dev)439 static struct wakeup_source *device_wakeup_detach(struct device *dev)
440 {
441 	struct wakeup_source *ws;
442 
443 	spin_lock_irq(&dev->power.lock);
444 	ws = dev->power.wakeup;
445 	dev->power.wakeup = NULL;
446 	spin_unlock_irq(&dev->power.lock);
447 	return ws;
448 }
449 
450 /**
451  * device_wakeup_disable - Do not regard a device as a wakeup source any more.
452  * @dev: Device to handle.
453  *
454  * Detach the @dev's wakeup source object from it, unregister this wakeup source
455  * object and destroy it.
456  */
device_wakeup_disable(struct device * dev)457 void device_wakeup_disable(struct device *dev)
458 {
459 	struct wakeup_source *ws;
460 
461 	if (!dev || !dev->power.can_wakeup)
462 		return;
463 
464 	ws = device_wakeup_detach(dev);
465 	wakeup_source_unregister(ws);
466 }
467 EXPORT_SYMBOL_GPL(device_wakeup_disable);
468 
469 /**
470  * device_set_wakeup_capable - Set/reset device wakeup capability flag.
471  * @dev: Device to handle.
472  * @capable: Whether or not @dev is capable of waking up the system from sleep.
473  *
474  * If @capable is set, set the @dev's power.can_wakeup flag and add its
475  * wakeup-related attributes to sysfs.  Otherwise, unset the @dev's
476  * power.can_wakeup flag and remove its wakeup-related attributes from sysfs.
477  *
478  * This function may sleep and it can't be called from any context where
479  * sleeping is not allowed.
480  */
device_set_wakeup_capable(struct device * dev,bool capable)481 void device_set_wakeup_capable(struct device *dev, bool capable)
482 {
483 	if (!!dev->power.can_wakeup == !!capable)
484 		return;
485 
486 	dev->power.can_wakeup = capable;
487 	if (device_is_registered(dev) && !list_empty(&dev->power.entry)) {
488 		if (capable) {
489 			int ret = wakeup_sysfs_add(dev);
490 
491 			if (ret)
492 				dev_info(dev, "Wakeup sysfs attributes not added\n");
493 		} else {
494 			wakeup_sysfs_remove(dev);
495 		}
496 	}
497 }
498 EXPORT_SYMBOL_GPL(device_set_wakeup_capable);
499 
500 /**
501  * device_set_wakeup_enable - Enable or disable a device to wake up the system.
502  * @dev: Device to handle.
503  * @enable: enable/disable flag
504  */
device_set_wakeup_enable(struct device * dev,bool enable)505 int device_set_wakeup_enable(struct device *dev, bool enable)
506 {
507 	if (enable)
508 		return device_wakeup_enable(dev);
509 
510 	device_wakeup_disable(dev);
511 	return 0;
512 }
513 EXPORT_SYMBOL_GPL(device_set_wakeup_enable);
514 
515 /**
516  * wakeup_source_not_registered - validate the given wakeup source.
517  * @ws: Wakeup source to be validated.
518  */
wakeup_source_not_registered(struct wakeup_source * ws)519 static bool wakeup_source_not_registered(struct wakeup_source *ws)
520 {
521 	/*
522 	 * Use timer struct to check if the given source is initialized
523 	 * by wakeup_source_add.
524 	 */
525 	return ws->timer.function != pm_wakeup_timer_fn;
526 }
527 
528 /*
529  * The functions below use the observation that each wakeup event starts a
530  * period in which the system should not be suspended.  The moment this period
531  * will end depends on how the wakeup event is going to be processed after being
532  * detected and all of the possible cases can be divided into two distinct
533  * groups.
534  *
535  * First, a wakeup event may be detected by the same functional unit that will
536  * carry out the entire processing of it and possibly will pass it to user space
537  * for further processing.  In that case the functional unit that has detected
538  * the event may later "close" the "no suspend" period associated with it
539  * directly as soon as it has been dealt with.  The pair of pm_stay_awake() and
540  * pm_relax(), balanced with each other, is supposed to be used in such
541  * situations.
542  *
543  * Second, a wakeup event may be detected by one functional unit and processed
544  * by another one.  In that case the unit that has detected it cannot really
545  * "close" the "no suspend" period associated with it, unless it knows in
546  * advance what's going to happen to the event during processing.  This
547  * knowledge, however, may not be available to it, so it can simply specify time
548  * to wait before the system can be suspended and pass it as the second
549  * argument of pm_wakeup_event().
550  *
551  * It is valid to call pm_relax() after pm_wakeup_event(), in which case the
552  * "no suspend" period will be ended either by the pm_relax(), or by the timer
553  * function executed when the timer expires, whichever comes first.
554  */
555 
556 /**
557  * wakeup_source_activate - Mark given wakeup source as active.
558  * @ws: Wakeup source to handle.
559  *
560  * Update the @ws' statistics and, if @ws has just been activated, notify the PM
561  * core of the event by incrementing the counter of the wakeup events being
562  * processed.
563  */
wakeup_source_activate(struct wakeup_source * ws)564 static void wakeup_source_activate(struct wakeup_source *ws)
565 {
566 	unsigned int cec;
567 
568 	if (WARN_ONCE(wakeup_source_not_registered(ws),
569 			"unregistered wakeup source\n"))
570 		return;
571 
572 	ws->active = true;
573 	ws->active_count++;
574 	ws->last_time = ktime_get();
575 	if (ws->autosleep_enabled)
576 		ws->start_prevent_time = ws->last_time;
577 
578 	/* Increment the counter of events in progress. */
579 	cec = atomic_inc_return(&combined_event_count);
580 
581 	trace_wakeup_source_activate(ws->name, cec);
582 }
583 
584 /**
585  * wakeup_source_report_event - Report wakeup event using the given source.
586  * @ws: Wakeup source to report the event for.
587  * @hard: If set, abort suspends in progress and wake up from suspend-to-idle.
588  */
wakeup_source_report_event(struct wakeup_source * ws,bool hard)589 static void wakeup_source_report_event(struct wakeup_source *ws, bool hard)
590 {
591 	ws->event_count++;
592 	/* This is racy, but the counter is approximate anyway. */
593 	if (events_check_enabled)
594 		ws->wakeup_count++;
595 
596 	if (!ws->active)
597 		wakeup_source_activate(ws);
598 
599 	if (hard)
600 		pm_system_wakeup();
601 }
602 
603 /**
604  * __pm_stay_awake - Notify the PM core of a wakeup event.
605  * @ws: Wakeup source object associated with the source of the event.
606  *
607  * It is safe to call this function from interrupt context.
608  */
__pm_stay_awake(struct wakeup_source * ws)609 void __pm_stay_awake(struct wakeup_source *ws)
610 {
611 	unsigned long flags;
612 
613 	if (!ws)
614 		return;
615 
616 	spin_lock_irqsave(&ws->lock, flags);
617 
618 	wakeup_source_report_event(ws, false);
619 	del_timer(&ws->timer);
620 	ws->timer_expires = 0;
621 
622 	spin_unlock_irqrestore(&ws->lock, flags);
623 }
624 EXPORT_SYMBOL_GPL(__pm_stay_awake);
625 
626 /**
627  * pm_stay_awake - Notify the PM core that a wakeup event is being processed.
628  * @dev: Device the wakeup event is related to.
629  *
630  * Notify the PM core of a wakeup event (signaled by @dev) by calling
631  * __pm_stay_awake for the @dev's wakeup source object.
632  *
633  * Call this function after detecting of a wakeup event if pm_relax() is going
634  * to be called directly after processing the event (and possibly passing it to
635  * user space for further processing).
636  */
pm_stay_awake(struct device * dev)637 void pm_stay_awake(struct device *dev)
638 {
639 	unsigned long flags;
640 
641 	if (!dev)
642 		return;
643 
644 	spin_lock_irqsave(&dev->power.lock, flags);
645 	__pm_stay_awake(dev->power.wakeup);
646 	spin_unlock_irqrestore(&dev->power.lock, flags);
647 }
648 EXPORT_SYMBOL_GPL(pm_stay_awake);
649 
650 #ifdef CONFIG_PM_AUTOSLEEP
update_prevent_sleep_time(struct wakeup_source * ws,ktime_t now)651 static void update_prevent_sleep_time(struct wakeup_source *ws, ktime_t now)
652 {
653 	ktime_t delta = ktime_sub(now, ws->start_prevent_time);
654 	ws->prevent_sleep_time = ktime_add(ws->prevent_sleep_time, delta);
655 }
656 #else
update_prevent_sleep_time(struct wakeup_source * ws,ktime_t now)657 static inline void update_prevent_sleep_time(struct wakeup_source *ws,
658 					     ktime_t now) {}
659 #endif
660 
661 /**
662  * wakeup_source_deactivate - Mark given wakeup source as inactive.
663  * @ws: Wakeup source to handle.
664  *
665  * Update the @ws' statistics and notify the PM core that the wakeup source has
666  * become inactive by decrementing the counter of wakeup events being processed
667  * and incrementing the counter of registered wakeup events.
668  */
wakeup_source_deactivate(struct wakeup_source * ws)669 static void wakeup_source_deactivate(struct wakeup_source *ws)
670 {
671 	unsigned int cnt, inpr, cec;
672 	ktime_t duration;
673 	ktime_t now;
674 
675 	ws->relax_count++;
676 	/*
677 	 * __pm_relax() may be called directly or from a timer function.
678 	 * If it is called directly right after the timer function has been
679 	 * started, but before the timer function calls __pm_relax(), it is
680 	 * possible that __pm_stay_awake() will be called in the meantime and
681 	 * will set ws->active.  Then, ws->active may be cleared immediately
682 	 * by the __pm_relax() called from the timer function, but in such a
683 	 * case ws->relax_count will be different from ws->active_count.
684 	 */
685 	if (ws->relax_count != ws->active_count) {
686 		ws->relax_count--;
687 		return;
688 	}
689 
690 	ws->active = false;
691 
692 	now = ktime_get();
693 	duration = ktime_sub(now, ws->last_time);
694 	ws->total_time = ktime_add(ws->total_time, duration);
695 	if (ktime_to_ns(duration) > ktime_to_ns(ws->max_time))
696 		ws->max_time = duration;
697 
698 	ws->last_time = now;
699 	del_timer(&ws->timer);
700 	ws->timer_expires = 0;
701 
702 	if (ws->autosleep_enabled)
703 		update_prevent_sleep_time(ws, now);
704 
705 	/*
706 	 * Increment the counter of registered wakeup events and decrement the
707 	 * counter of wakeup events in progress simultaneously.
708 	 */
709 	cec = atomic_add_return(MAX_IN_PROGRESS, &combined_event_count);
710 	trace_wakeup_source_deactivate(ws->name, cec);
711 
712 	split_counters(&cnt, &inpr);
713 	if (!inpr && waitqueue_active(&wakeup_count_wait_queue))
714 		wake_up(&wakeup_count_wait_queue);
715 }
716 
717 /**
718  * __pm_relax - Notify the PM core that processing of a wakeup event has ended.
719  * @ws: Wakeup source object associated with the source of the event.
720  *
721  * Call this function for wakeup events whose processing started with calling
722  * __pm_stay_awake().
723  *
724  * It is safe to call it from interrupt context.
725  */
__pm_relax(struct wakeup_source * ws)726 void __pm_relax(struct wakeup_source *ws)
727 {
728 	unsigned long flags;
729 
730 	if (!ws)
731 		return;
732 
733 	spin_lock_irqsave(&ws->lock, flags);
734 	if (ws->active)
735 		wakeup_source_deactivate(ws);
736 	spin_unlock_irqrestore(&ws->lock, flags);
737 }
738 EXPORT_SYMBOL_GPL(__pm_relax);
739 
740 /**
741  * pm_relax - Notify the PM core that processing of a wakeup event has ended.
742  * @dev: Device that signaled the event.
743  *
744  * Execute __pm_relax() for the @dev's wakeup source object.
745  */
pm_relax(struct device * dev)746 void pm_relax(struct device *dev)
747 {
748 	unsigned long flags;
749 
750 	if (!dev)
751 		return;
752 
753 	spin_lock_irqsave(&dev->power.lock, flags);
754 	__pm_relax(dev->power.wakeup);
755 	spin_unlock_irqrestore(&dev->power.lock, flags);
756 }
757 EXPORT_SYMBOL_GPL(pm_relax);
758 
759 /**
760  * pm_wakeup_timer_fn - Delayed finalization of a wakeup event.
761  * @t: timer list
762  *
763  * Call wakeup_source_deactivate() for the wakeup source whose address is stored
764  * in @data if it is currently active and its timer has not been canceled and
765  * the expiration time of the timer is not in future.
766  */
pm_wakeup_timer_fn(struct timer_list * t)767 static void pm_wakeup_timer_fn(struct timer_list *t)
768 {
769 	struct wakeup_source *ws = from_timer(ws, t, timer);
770 	unsigned long flags;
771 
772 	spin_lock_irqsave(&ws->lock, flags);
773 
774 	if (ws->active && ws->timer_expires
775 	    && time_after_eq(jiffies, ws->timer_expires)) {
776 		wakeup_source_deactivate(ws);
777 		ws->expire_count++;
778 	}
779 
780 	spin_unlock_irqrestore(&ws->lock, flags);
781 }
782 
783 /**
784  * pm_wakeup_ws_event - Notify the PM core of a wakeup event.
785  * @ws: Wakeup source object associated with the event source.
786  * @msec: Anticipated event processing time (in milliseconds).
787  * @hard: If set, abort suspends in progress and wake up from suspend-to-idle.
788  *
789  * Notify the PM core of a wakeup event whose source is @ws that will take
790  * approximately @msec milliseconds to be processed by the kernel.  If @ws is
791  * not active, activate it.  If @msec is nonzero, set up the @ws' timer to
792  * execute pm_wakeup_timer_fn() in future.
793  *
794  * It is safe to call this function from interrupt context.
795  */
pm_wakeup_ws_event(struct wakeup_source * ws,unsigned int msec,bool hard)796 void pm_wakeup_ws_event(struct wakeup_source *ws, unsigned int msec, bool hard)
797 {
798 	unsigned long flags;
799 	unsigned long expires;
800 
801 	if (!ws)
802 		return;
803 
804 	spin_lock_irqsave(&ws->lock, flags);
805 
806 	wakeup_source_report_event(ws, hard);
807 
808 	if (!msec) {
809 		wakeup_source_deactivate(ws);
810 		goto unlock;
811 	}
812 
813 	expires = jiffies + msecs_to_jiffies(msec);
814 	if (!expires)
815 		expires = 1;
816 
817 	if (!ws->timer_expires || time_after(expires, ws->timer_expires)) {
818 		mod_timer(&ws->timer, expires);
819 		ws->timer_expires = expires;
820 	}
821 
822  unlock:
823 	spin_unlock_irqrestore(&ws->lock, flags);
824 }
825 EXPORT_SYMBOL_GPL(pm_wakeup_ws_event);
826 
827 /**
828  * pm_wakeup_dev_event - Notify the PM core of a wakeup event.
829  * @dev: Device the wakeup event is related to.
830  * @msec: Anticipated event processing time (in milliseconds).
831  * @hard: If set, abort suspends in progress and wake up from suspend-to-idle.
832  *
833  * Call pm_wakeup_ws_event() for the @dev's wakeup source object.
834  */
pm_wakeup_dev_event(struct device * dev,unsigned int msec,bool hard)835 void pm_wakeup_dev_event(struct device *dev, unsigned int msec, bool hard)
836 {
837 	unsigned long flags;
838 
839 	if (!dev)
840 		return;
841 
842 	spin_lock_irqsave(&dev->power.lock, flags);
843 	pm_wakeup_ws_event(dev->power.wakeup, msec, hard);
844 	spin_unlock_irqrestore(&dev->power.lock, flags);
845 }
846 EXPORT_SYMBOL_GPL(pm_wakeup_dev_event);
847 
pm_get_active_wakeup_sources(char * pending_wakeup_source,size_t max)848 void pm_get_active_wakeup_sources(char *pending_wakeup_source, size_t max)
849 {
850 	struct wakeup_source *ws, *last_active_ws = NULL;
851 	int len = 0;
852 	bool active = false;
853 
854 	rcu_read_lock();
855 	list_for_each_entry_rcu(ws, &wakeup_sources, entry) {
856 		if (ws->active && len < max) {
857 			if (!active)
858 				len += scnprintf(pending_wakeup_source, max,
859 						"Pending Wakeup Sources: ");
860 			len += scnprintf(pending_wakeup_source + len, max - len,
861 				"%s ", ws->name);
862 			active = true;
863 		} else if (!active &&
864 			   (!last_active_ws ||
865 			    ktime_to_ns(ws->last_time) >
866 			    ktime_to_ns(last_active_ws->last_time))) {
867 			last_active_ws = ws;
868 		}
869 	}
870 	if (!active && last_active_ws) {
871 		scnprintf(pending_wakeup_source, max,
872 				"Last active Wakeup Source: %s",
873 				last_active_ws->name);
874 	}
875 	rcu_read_unlock();
876 }
877 EXPORT_SYMBOL_GPL(pm_get_active_wakeup_sources);
878 
pm_print_active_wakeup_sources(void)879 void pm_print_active_wakeup_sources(void)
880 {
881 	struct wakeup_source *ws;
882 	int srcuidx, active = 0;
883 	struct wakeup_source *last_activity_ws = NULL;
884 
885 	srcuidx = srcu_read_lock(&wakeup_srcu);
886 	list_for_each_entry_rcu_locked(ws, &wakeup_sources, entry) {
887 		if (ws->active) {
888 			pm_pr_dbg("active wakeup source: %s\n", ws->name);
889 			active = 1;
890 		} else if (!active &&
891 			   (!last_activity_ws ||
892 			    ktime_to_ns(ws->last_time) >
893 			    ktime_to_ns(last_activity_ws->last_time))) {
894 			last_activity_ws = ws;
895 		}
896 	}
897 
898 	if (!active && last_activity_ws)
899 		pm_pr_dbg("last active wakeup source: %s\n",
900 			last_activity_ws->name);
901 	srcu_read_unlock(&wakeup_srcu, srcuidx);
902 }
903 EXPORT_SYMBOL_GPL(pm_print_active_wakeup_sources);
904 
905 /**
906  * pm_wakeup_pending - Check if power transition in progress should be aborted.
907  *
908  * Compare the current number of registered wakeup events with its preserved
909  * value from the past and return true if new wakeup events have been registered
910  * since the old value was stored.  Also return true if the current number of
911  * wakeup events being processed is different from zero.
912  */
pm_wakeup_pending(void)913 bool pm_wakeup_pending(void)
914 {
915 	unsigned long flags;
916 	bool ret = false;
917 	char suspend_abort[MAX_SUSPEND_ABORT_LEN];
918 
919 	raw_spin_lock_irqsave(&events_lock, flags);
920 	if (events_check_enabled) {
921 		unsigned int cnt, inpr;
922 
923 		split_counters(&cnt, &inpr);
924 		ret = (cnt != saved_count || inpr > 0);
925 		events_check_enabled = !ret;
926 	}
927 	raw_spin_unlock_irqrestore(&events_lock, flags);
928 
929 	if (ret) {
930 		pm_pr_dbg("Wakeup pending, aborting suspend\n");
931 		pm_print_active_wakeup_sources();
932 		pm_get_active_wakeup_sources(suspend_abort,
933 					     MAX_SUSPEND_ABORT_LEN);
934 		log_suspend_abort_reason(suspend_abort);
935 		pr_info("PM: %s\n", suspend_abort);
936 	}
937 
938 	return ret || atomic_read(&pm_abort_suspend) > 0;
939 }
940 EXPORT_SYMBOL_GPL(pm_wakeup_pending);
941 
pm_system_wakeup(void)942 void pm_system_wakeup(void)
943 {
944 	atomic_inc(&pm_abort_suspend);
945 	s2idle_wake();
946 }
947 EXPORT_SYMBOL_GPL(pm_system_wakeup);
948 
pm_system_cancel_wakeup(void)949 void pm_system_cancel_wakeup(void)
950 {
951 	atomic_dec_if_positive(&pm_abort_suspend);
952 }
953 
pm_wakeup_clear(unsigned int irq_number)954 void pm_wakeup_clear(unsigned int irq_number)
955 {
956 	raw_spin_lock_irq(&wakeup_irq_lock);
957 
958 	if (irq_number && wakeup_irq[0] == irq_number)
959 		wakeup_irq[0] = wakeup_irq[1];
960 	else
961 		wakeup_irq[0] = 0;
962 
963 	wakeup_irq[1] = 0;
964 
965 	raw_spin_unlock_irq(&wakeup_irq_lock);
966 
967 	if (!irq_number)
968 		atomic_set(&pm_abort_suspend, 0);
969 }
970 
pm_system_irq_wakeup(unsigned int irq_number)971 void pm_system_irq_wakeup(unsigned int irq_number)
972 {
973 	unsigned long flags;
974 
975 	raw_spin_lock_irqsave(&wakeup_irq_lock, flags);
976 
977 	if (wakeup_irq[0] == 0)
978 		wakeup_irq[0] = irq_number;
979 	else if (wakeup_irq[1] == 0)
980 		wakeup_irq[1] = irq_number;
981 	else
982 		irq_number = 0;
983 
984 	pm_pr_dbg("Triggering wakeup from IRQ %d\n", irq_number);
985 
986 	raw_spin_unlock_irqrestore(&wakeup_irq_lock, flags);
987 
988 	if (irq_number) {
989 		struct irq_desc *desc;
990 		const char *name = "null";
991 
992 		desc = irq_to_desc(irq_number);
993 		if (desc == NULL)
994 			name = "stray irq";
995 		else if (desc->action && desc->action->name)
996 			name = desc->action->name;
997 
998 		log_irq_wakeup_reason(irq_number);
999 		pr_warn("%s: %d triggered %s\n", __func__, irq_number, name);
1000 
1001 		pm_system_wakeup();
1002 	}
1003 }
1004 
pm_wakeup_irq(void)1005 unsigned int pm_wakeup_irq(void)
1006 {
1007 	return wakeup_irq[0];
1008 }
1009 EXPORT_SYMBOL_GPL(pm_wakeup_irq);
1010 
1011 /**
1012  * pm_get_wakeup_count - Read the number of registered wakeup events.
1013  * @count: Address to store the value at.
1014  * @block: Whether or not to block.
1015  *
1016  * Store the number of registered wakeup events at the address in @count.  If
1017  * @block is set, block until the current number of wakeup events being
1018  * processed is zero.
1019  *
1020  * Return 'false' if the current number of wakeup events being processed is
1021  * nonzero.  Otherwise return 'true'.
1022  */
pm_get_wakeup_count(unsigned int * count,bool block)1023 bool pm_get_wakeup_count(unsigned int *count, bool block)
1024 {
1025 	unsigned int cnt, inpr;
1026 
1027 	if (block) {
1028 		DEFINE_WAIT(wait);
1029 
1030 		for (;;) {
1031 			prepare_to_wait(&wakeup_count_wait_queue, &wait,
1032 					TASK_INTERRUPTIBLE);
1033 			split_counters(&cnt, &inpr);
1034 			if (inpr == 0 || signal_pending(current))
1035 				break;
1036 			pm_print_active_wakeup_sources();
1037 			schedule();
1038 		}
1039 		finish_wait(&wakeup_count_wait_queue, &wait);
1040 	}
1041 
1042 	split_counters(&cnt, &inpr);
1043 	*count = cnt;
1044 	return !inpr;
1045 }
1046 
1047 /**
1048  * pm_save_wakeup_count - Save the current number of registered wakeup events.
1049  * @count: Value to compare with the current number of registered wakeup events.
1050  *
1051  * If @count is equal to the current number of registered wakeup events and the
1052  * current number of wakeup events being processed is zero, store @count as the
1053  * old number of registered wakeup events for pm_check_wakeup_events(), enable
1054  * wakeup events detection and return 'true'.  Otherwise disable wakeup events
1055  * detection and return 'false'.
1056  */
pm_save_wakeup_count(unsigned int count)1057 bool pm_save_wakeup_count(unsigned int count)
1058 {
1059 	unsigned int cnt, inpr;
1060 	unsigned long flags;
1061 
1062 	events_check_enabled = false;
1063 	raw_spin_lock_irqsave(&events_lock, flags);
1064 	split_counters(&cnt, &inpr);
1065 	if (cnt == count && inpr == 0) {
1066 		saved_count = count;
1067 		events_check_enabled = true;
1068 	}
1069 	raw_spin_unlock_irqrestore(&events_lock, flags);
1070 	return events_check_enabled;
1071 }
1072 
1073 #ifdef CONFIG_PM_AUTOSLEEP
1074 /**
1075  * pm_wakep_autosleep_enabled - Modify autosleep_enabled for all wakeup sources.
1076  * @set: Whether to set or to clear the autosleep_enabled flags.
1077  */
pm_wakep_autosleep_enabled(bool set)1078 void pm_wakep_autosleep_enabled(bool set)
1079 {
1080 	struct wakeup_source *ws;
1081 	ktime_t now = ktime_get();
1082 	int srcuidx;
1083 
1084 	srcuidx = srcu_read_lock(&wakeup_srcu);
1085 	list_for_each_entry_rcu_locked(ws, &wakeup_sources, entry) {
1086 		spin_lock_irq(&ws->lock);
1087 		if (ws->autosleep_enabled != set) {
1088 			ws->autosleep_enabled = set;
1089 			if (ws->active) {
1090 				if (set)
1091 					ws->start_prevent_time = now;
1092 				else
1093 					update_prevent_sleep_time(ws, now);
1094 			}
1095 		}
1096 		spin_unlock_irq(&ws->lock);
1097 	}
1098 	srcu_read_unlock(&wakeup_srcu, srcuidx);
1099 }
1100 #endif /* CONFIG_PM_AUTOSLEEP */
1101 
1102 /**
1103  * print_wakeup_source_stats - Print wakeup source statistics information.
1104  * @m: seq_file to print the statistics into.
1105  * @ws: Wakeup source object to print the statistics for.
1106  */
print_wakeup_source_stats(struct seq_file * m,struct wakeup_source * ws)1107 static int print_wakeup_source_stats(struct seq_file *m,
1108 				     struct wakeup_source *ws)
1109 {
1110 	unsigned long flags;
1111 	ktime_t total_time;
1112 	ktime_t max_time;
1113 	unsigned long active_count;
1114 	ktime_t active_time;
1115 	ktime_t prevent_sleep_time;
1116 
1117 	spin_lock_irqsave(&ws->lock, flags);
1118 
1119 	total_time = ws->total_time;
1120 	max_time = ws->max_time;
1121 	prevent_sleep_time = ws->prevent_sleep_time;
1122 	active_count = ws->active_count;
1123 	if (ws->active) {
1124 		ktime_t now = ktime_get();
1125 
1126 		active_time = ktime_sub(now, ws->last_time);
1127 		total_time = ktime_add(total_time, active_time);
1128 		if (active_time > max_time)
1129 			max_time = active_time;
1130 
1131 		if (ws->autosleep_enabled)
1132 			prevent_sleep_time = ktime_add(prevent_sleep_time,
1133 				ktime_sub(now, ws->start_prevent_time));
1134 	} else {
1135 		active_time = 0;
1136 	}
1137 
1138 	seq_printf(m, "%-12s\t%lu\t\t%lu\t\t%lu\t\t%lu\t\t%lld\t\t%lld\t\t%lld\t\t%lld\t\t%lld\n",
1139 		   ws->name, active_count, ws->event_count,
1140 		   ws->wakeup_count, ws->expire_count,
1141 		   ktime_to_ms(active_time), ktime_to_ms(total_time),
1142 		   ktime_to_ms(max_time), ktime_to_ms(ws->last_time),
1143 		   ktime_to_ms(prevent_sleep_time));
1144 
1145 	spin_unlock_irqrestore(&ws->lock, flags);
1146 
1147 	return 0;
1148 }
1149 
wakeup_sources_stats_seq_start(struct seq_file * m,loff_t * pos)1150 static void *wakeup_sources_stats_seq_start(struct seq_file *m,
1151 					loff_t *pos)
1152 {
1153 	struct wakeup_source *ws;
1154 	loff_t n = *pos;
1155 	int *srcuidx = m->private;
1156 
1157 	if (n == 0) {
1158 		seq_puts(m, "name\t\tactive_count\tevent_count\twakeup_count\t"
1159 			"expire_count\tactive_since\ttotal_time\tmax_time\t"
1160 			"last_change\tprevent_suspend_time\n");
1161 	}
1162 
1163 	*srcuidx = srcu_read_lock(&wakeup_srcu);
1164 	list_for_each_entry_rcu_locked(ws, &wakeup_sources, entry) {
1165 		if (n-- <= 0)
1166 			return ws;
1167 	}
1168 
1169 	return NULL;
1170 }
1171 
wakeup_sources_stats_seq_next(struct seq_file * m,void * v,loff_t * pos)1172 static void *wakeup_sources_stats_seq_next(struct seq_file *m,
1173 					void *v, loff_t *pos)
1174 {
1175 	struct wakeup_source *ws = v;
1176 	struct wakeup_source *next_ws = NULL;
1177 
1178 	++(*pos);
1179 
1180 	list_for_each_entry_continue_rcu(ws, &wakeup_sources, entry) {
1181 		next_ws = ws;
1182 		break;
1183 	}
1184 
1185 	if (!next_ws)
1186 		print_wakeup_source_stats(m, &deleted_ws);
1187 
1188 	return next_ws;
1189 }
1190 
wakeup_sources_stats_seq_stop(struct seq_file * m,void * v)1191 static void wakeup_sources_stats_seq_stop(struct seq_file *m, void *v)
1192 {
1193 	int *srcuidx = m->private;
1194 
1195 	srcu_read_unlock(&wakeup_srcu, *srcuidx);
1196 }
1197 
1198 /**
1199  * wakeup_sources_stats_seq_show - Print wakeup sources statistics information.
1200  * @m: seq_file to print the statistics into.
1201  * @v: wakeup_source of each iteration
1202  */
wakeup_sources_stats_seq_show(struct seq_file * m,void * v)1203 static int wakeup_sources_stats_seq_show(struct seq_file *m, void *v)
1204 {
1205 	struct wakeup_source *ws = v;
1206 
1207 	print_wakeup_source_stats(m, ws);
1208 
1209 	return 0;
1210 }
1211 
1212 static const struct seq_operations wakeup_sources_stats_seq_ops = {
1213 	.start = wakeup_sources_stats_seq_start,
1214 	.next  = wakeup_sources_stats_seq_next,
1215 	.stop  = wakeup_sources_stats_seq_stop,
1216 	.show  = wakeup_sources_stats_seq_show,
1217 };
1218 
wakeup_sources_stats_open(struct inode * inode,struct file * file)1219 int wakeup_sources_stats_open(struct inode *inode, struct file *file)
1220 {
1221 	return seq_open_private(file, &wakeup_sources_stats_seq_ops, sizeof(int));
1222 }
1223 EXPORT_SYMBOL_GPL(wakeup_sources_stats_open);
1224 
1225 static const struct file_operations wakeup_sources_stats_fops = {
1226 	.owner = THIS_MODULE,
1227 	.open = wakeup_sources_stats_open,
1228 	.read = seq_read,
1229 	.llseek = seq_lseek,
1230 	.release = seq_release_private,
1231 };
1232 
wakeup_sources_debugfs_init(void)1233 static int __init wakeup_sources_debugfs_init(void)
1234 {
1235 	debugfs_create_file("wakeup_sources", 0444, NULL, NULL,
1236 			    &wakeup_sources_stats_fops);
1237 	return 0;
1238 }
1239 
1240 postcore_initcall(wakeup_sources_debugfs_init);
1241