]> git.proxmox.com Git - mirror_ubuntu-artful-kernel.git/blame - drivers/base/power/main.c
ktime: Get rid of the union
[mirror_ubuntu-artful-kernel.git] / drivers / base / power / main.c
CommitLineData
1da177e4
LT
1/*
2 * drivers/base/power/main.c - Where the driver meets power management.
3 *
4 * Copyright (c) 2003 Patrick Mochel
5 * Copyright (c) 2003 Open Source Development Lab
6 *
7 * This file is released under the GPLv2
8 *
9 *
10 * The driver model core calls device_pm_add() when a device is registered.
b595076a 11 * This will initialize the embedded device_pm_info object in the device
1da177e4
LT
12 * and add it to the list of power-controlled devices. sysfs entries for
13 * controlling device power management will also be added.
14 *
1eede070
RW
15 * A separate list is used for keeping track of power info, because the power
16 * domain dependencies may differ from the ancestral dependencies that the
17 * subsystem list maintains.
1da177e4
LT
18 */
19
1da177e4 20#include <linux/device.h>
cd59abfc 21#include <linux/kallsyms.h>
1b6bc32f 22#include <linux/export.h>
11048dcf 23#include <linux/mutex.h>
cd59abfc 24#include <linux/pm.h>
5e928f77 25#include <linux/pm_runtime.h>
431d452a 26#include <linux/pm-trace.h>
4990d4fe 27#include <linux/pm_wakeirq.h>
2ed8d2b3 28#include <linux/interrupt.h>
f2511774 29#include <linux/sched.h>
5af84b82 30#include <linux/async.h>
1e75227e 31#include <linux/suspend.h>
53644677 32#include <trace/events/power.h>
2f0aea93 33#include <linux/cpufreq.h>
8651f97b 34#include <linux/cpuidle.h>
70fea60d
BG
35#include <linux/timer.h>
36
cd59abfc 37#include "../base.h"
1da177e4
LT
38#include "power.h"
39
9cf519d1
RW
40typedef int (*pm_callback_t)(struct device *);
41
775b64d2 42/*
1eede070 43 * The entries in the dpm_list list are in a depth first order, simply
775b64d2
RW
44 * because children are guaranteed to be discovered after parents, and
45 * are inserted at the back of the list on discovery.
46 *
8e9394ce
GKH
47 * Since device_pm_add() may be called with a device lock held,
48 * we must never try to acquire a device lock while holding
775b64d2
RW
49 * dpm_list_mutex.
50 */
51
1eede070 52LIST_HEAD(dpm_list);
7664e969
SK
53static LIST_HEAD(dpm_prepared_list);
54static LIST_HEAD(dpm_suspended_list);
55static LIST_HEAD(dpm_late_early_list);
56static LIST_HEAD(dpm_noirq_list);
1da177e4 57
2a77c46d 58struct suspend_stats suspend_stats;
cd59abfc 59static DEFINE_MUTEX(dpm_list_mtx);
5af84b82 60static pm_message_t pm_transition;
1da177e4 61
098dff73
RW
62static int async_error;
63
53644677
SK
64static char *pm_verb(int event)
65{
66 switch (event) {
67 case PM_EVENT_SUSPEND:
68 return "suspend";
69 case PM_EVENT_RESUME:
70 return "resume";
71 case PM_EVENT_FREEZE:
72 return "freeze";
73 case PM_EVENT_QUIESCE:
74 return "quiesce";
75 case PM_EVENT_HIBERNATE:
76 return "hibernate";
77 case PM_EVENT_THAW:
78 return "thaw";
79 case PM_EVENT_RESTORE:
80 return "restore";
81 case PM_EVENT_RECOVER:
82 return "recover";
83 default:
84 return "(unknown PM event)";
85 }
86}
87
5e928f77 88/**
e91c11b1 89 * device_pm_sleep_init - Initialize system suspend-related device fields.
5e928f77
RW
90 * @dev: Device object being initialized.
91 */
e91c11b1 92void device_pm_sleep_init(struct device *dev)
5e928f77 93{
f76b168b 94 dev->power.is_prepared = false;
6d0e0e84 95 dev->power.is_suspended = false;
3d2699bc
LC
96 dev->power.is_noirq_suspended = false;
97 dev->power.is_late_suspended = false;
5af84b82 98 init_completion(&dev->power.completion);
152e1d59 99 complete_all(&dev->power.completion);
074037ec 100 dev->power.wakeup = NULL;
22110faf 101 INIT_LIST_HEAD(&dev->power.entry);
5e928f77
RW
102}
103
1eede070 104/**
20d652d7 105 * device_pm_lock - Lock the list of active devices used by the PM core.
1eede070
RW
106 */
107void device_pm_lock(void)
108{
109 mutex_lock(&dpm_list_mtx);
110}
111
112/**
20d652d7 113 * device_pm_unlock - Unlock the list of active devices used by the PM core.
1eede070
RW
114 */
115void device_pm_unlock(void)
116{
117 mutex_unlock(&dpm_list_mtx);
118}
075c1771 119
775b64d2 120/**
20d652d7
RW
121 * device_pm_add - Add a device to the PM core's list of active devices.
122 * @dev: Device to add to the list.
775b64d2 123 */
3b98aeaf 124void device_pm_add(struct device *dev)
1da177e4 125{
1da177e4 126 pr_debug("PM: Adding info for %s:%s\n",
5c1a07ab 127 dev->bus ? dev->bus->name : "No Bus", dev_name(dev));
aa8e54b5 128 device_pm_check_callbacks(dev);
11048dcf 129 mutex_lock(&dpm_list_mtx);
f76b168b 130 if (dev->parent && dev->parent->power.is_prepared)
b64959e6
RW
131 dev_warn(dev, "parent %s should not be sleeping\n",
132 dev_name(dev->parent));
3b98aeaf 133 list_add_tail(&dev->power.entry, &dpm_list);
9ed98953 134 dev->power.in_dpm_list = true;
1a9a9152 135 mutex_unlock(&dpm_list_mtx);
1da177e4
LT
136}
137
775b64d2 138/**
20d652d7
RW
139 * device_pm_remove - Remove a device from the PM core's list of active devices.
140 * @dev: Device to be removed from the list.
775b64d2 141 */
9cddad77 142void device_pm_remove(struct device *dev)
1da177e4
LT
143{
144 pr_debug("PM: Removing info for %s:%s\n",
5c1a07ab 145 dev->bus ? dev->bus->name : "No Bus", dev_name(dev));
5af84b82 146 complete_all(&dev->power.completion);
11048dcf 147 mutex_lock(&dpm_list_mtx);
1da177e4 148 list_del_init(&dev->power.entry);
9ed98953 149 dev->power.in_dpm_list = false;
11048dcf 150 mutex_unlock(&dpm_list_mtx);
074037ec 151 device_wakeup_disable(dev);
5e928f77 152 pm_runtime_remove(dev);
aa8e54b5 153 device_pm_check_callbacks(dev);
775b64d2
RW
154}
155
ffa6a705 156/**
20d652d7
RW
157 * device_pm_move_before - Move device in the PM core's list of active devices.
158 * @deva: Device to move in dpm_list.
159 * @devb: Device @deva should come before.
ffa6a705
CH
160 */
161void device_pm_move_before(struct device *deva, struct device *devb)
162{
163 pr_debug("PM: Moving %s:%s before %s:%s\n",
5c1a07ab
RW
164 deva->bus ? deva->bus->name : "No Bus", dev_name(deva),
165 devb->bus ? devb->bus->name : "No Bus", dev_name(devb));
ffa6a705
CH
166 /* Delete deva from dpm_list and reinsert before devb. */
167 list_move_tail(&deva->power.entry, &devb->power.entry);
168}
169
170/**
20d652d7
RW
171 * device_pm_move_after - Move device in the PM core's list of active devices.
172 * @deva: Device to move in dpm_list.
173 * @devb: Device @deva should come after.
ffa6a705
CH
174 */
175void device_pm_move_after(struct device *deva, struct device *devb)
176{
177 pr_debug("PM: Moving %s:%s after %s:%s\n",
5c1a07ab
RW
178 deva->bus ? deva->bus->name : "No Bus", dev_name(deva),
179 devb->bus ? devb->bus->name : "No Bus", dev_name(devb));
ffa6a705
CH
180 /* Delete deva from dpm_list and reinsert after devb. */
181 list_move(&deva->power.entry, &devb->power.entry);
182}
183
184/**
20d652d7
RW
185 * device_pm_move_last - Move device to end of the PM core's list of devices.
186 * @dev: Device to move in dpm_list.
ffa6a705
CH
187 */
188void device_pm_move_last(struct device *dev)
189{
190 pr_debug("PM: Moving %s:%s to end of list\n",
5c1a07ab 191 dev->bus ? dev->bus->name : "No Bus", dev_name(dev));
ffa6a705
CH
192 list_move_tail(&dev->power.entry, &dpm_list);
193}
194
875ab0b7
RW
195static ktime_t initcall_debug_start(struct device *dev)
196{
197 ktime_t calltime = ktime_set(0, 0);
198
b2df1d4f 199 if (pm_print_times_enabled) {
0c6aebe3
RW
200 pr_info("calling %s+ @ %i, parent: %s\n",
201 dev_name(dev), task_pid_nr(current),
202 dev->parent ? dev_name(dev->parent) : "none");
875ab0b7
RW
203 calltime = ktime_get();
204 }
205
206 return calltime;
207}
208
209static void initcall_debug_report(struct device *dev, ktime_t calltime,
53644677 210 int error, pm_message_t state, char *info)
875ab0b7 211{
53644677
SK
212 ktime_t rettime;
213 s64 nsecs;
214
215 rettime = ktime_get();
216 nsecs = (s64) ktime_to_ns(ktime_sub(rettime, calltime));
875ab0b7 217
b2df1d4f 218 if (pm_print_times_enabled) {
875ab0b7 219 pr_info("call %s+ returned %d after %Ld usecs\n", dev_name(dev),
53644677 220 error, (unsigned long long)nsecs >> 10);
875ab0b7
RW
221 }
222}
223
5af84b82
RW
224/**
225 * dpm_wait - Wait for a PM operation to complete.
226 * @dev: Device to wait for.
227 * @async: If unset, wait only if the device's power.async_suspend flag is set.
228 */
229static void dpm_wait(struct device *dev, bool async)
230{
231 if (!dev)
232 return;
233
0e06b4a8 234 if (async || (pm_async_enabled && dev->power.async_suspend))
5af84b82
RW
235 wait_for_completion(&dev->power.completion);
236}
237
238static int dpm_wait_fn(struct device *dev, void *async_ptr)
239{
240 dpm_wait(dev, *((bool *)async_ptr));
241 return 0;
242}
243
244static void dpm_wait_for_children(struct device *dev, bool async)
245{
246 device_for_each_child(dev, &async, dpm_wait_fn);
247}
248
8c73b428
RW
249static void dpm_wait_for_suppliers(struct device *dev, bool async)
250{
251 struct device_link *link;
252 int idx;
253
254 idx = device_links_read_lock();
255
256 /*
257 * If the supplier goes away right after we've checked the link to it,
258 * we'll wait for its completion to change the state, but that's fine,
259 * because the only things that will block as a result are the SRCU
260 * callbacks freeing the link objects for the links in the list we're
261 * walking.
262 */
263 list_for_each_entry_rcu(link, &dev->links.suppliers, c_node)
264 if (READ_ONCE(link->status) != DL_STATE_DORMANT)
265 dpm_wait(link->supplier, async);
266
267 device_links_read_unlock(idx);
268}
269
270static void dpm_wait_for_superior(struct device *dev, bool async)
271{
272 dpm_wait(dev->parent, async);
273 dpm_wait_for_suppliers(dev, async);
274}
275
276static void dpm_wait_for_consumers(struct device *dev, bool async)
277{
278 struct device_link *link;
279 int idx;
280
281 idx = device_links_read_lock();
282
283 /*
284 * The status of a device link can only be changed from "dormant" by a
285 * probe, but that cannot happen during system suspend/resume. In
286 * theory it can change to "dormant" at that time, but then it is
287 * reasonable to wait for the target device anyway (eg. if it goes
288 * away, it's better to wait for it to go away completely and then
289 * continue instead of trying to continue in parallel with its
290 * unregistration).
291 */
292 list_for_each_entry_rcu(link, &dev->links.consumers, s_node)
293 if (READ_ONCE(link->status) != DL_STATE_DORMANT)
294 dpm_wait(link->consumer, async);
295
296 device_links_read_unlock(idx);
297}
298
299static void dpm_wait_for_subordinate(struct device *dev, bool async)
300{
301 dpm_wait_for_children(dev, async);
302 dpm_wait_for_consumers(dev, async);
303}
304
1eede070 305/**
9cf519d1 306 * pm_op - Return the PM operation appropriate for given PM event.
20d652d7
RW
307 * @ops: PM operations to choose from.
308 * @state: PM transition of the system being carried out.
1eede070 309 */
9cf519d1 310static pm_callback_t pm_op(const struct dev_pm_ops *ops, pm_message_t state)
1eede070 311{
1eede070
RW
312 switch (state.event) {
313#ifdef CONFIG_SUSPEND
314 case PM_EVENT_SUSPEND:
9cf519d1 315 return ops->suspend;
1eede070 316 case PM_EVENT_RESUME:
9cf519d1 317 return ops->resume;
1eede070 318#endif /* CONFIG_SUSPEND */
1f112cee 319#ifdef CONFIG_HIBERNATE_CALLBACKS
1eede070
RW
320 case PM_EVENT_FREEZE:
321 case PM_EVENT_QUIESCE:
9cf519d1 322 return ops->freeze;
1eede070 323 case PM_EVENT_HIBERNATE:
9cf519d1 324 return ops->poweroff;
1eede070
RW
325 case PM_EVENT_THAW:
326 case PM_EVENT_RECOVER:
9cf519d1 327 return ops->thaw;
1eede070
RW
328 break;
329 case PM_EVENT_RESTORE:
9cf519d1 330 return ops->restore;
1f112cee 331#endif /* CONFIG_HIBERNATE_CALLBACKS */
1eede070 332 }
f2511774 333
9cf519d1 334 return NULL;
1eede070
RW
335}
336
cf579dfb
RW
337/**
338 * pm_late_early_op - Return the PM operation appropriate for given PM event.
339 * @ops: PM operations to choose from.
340 * @state: PM transition of the system being carried out.
341 *
342 * Runtime PM is disabled for @dev while this function is being executed.
343 */
344static pm_callback_t pm_late_early_op(const struct dev_pm_ops *ops,
345 pm_message_t state)
346{
347 switch (state.event) {
348#ifdef CONFIG_SUSPEND
349 case PM_EVENT_SUSPEND:
350 return ops->suspend_late;
351 case PM_EVENT_RESUME:
352 return ops->resume_early;
353#endif /* CONFIG_SUSPEND */
354#ifdef CONFIG_HIBERNATE_CALLBACKS
355 case PM_EVENT_FREEZE:
356 case PM_EVENT_QUIESCE:
357 return ops->freeze_late;
358 case PM_EVENT_HIBERNATE:
359 return ops->poweroff_late;
360 case PM_EVENT_THAW:
361 case PM_EVENT_RECOVER:
362 return ops->thaw_early;
363 case PM_EVENT_RESTORE:
364 return ops->restore_early;
365#endif /* CONFIG_HIBERNATE_CALLBACKS */
366 }
367
368 return NULL;
369}
370
1eede070 371/**
9cf519d1 372 * pm_noirq_op - Return the PM operation appropriate for given PM event.
20d652d7
RW
373 * @ops: PM operations to choose from.
374 * @state: PM transition of the system being carried out.
1eede070 375 *
20d652d7
RW
376 * The driver of @dev will not receive interrupts while this function is being
377 * executed.
1eede070 378 */
9cf519d1 379static pm_callback_t pm_noirq_op(const struct dev_pm_ops *ops, pm_message_t state)
1eede070 380{
1eede070
RW
381 switch (state.event) {
382#ifdef CONFIG_SUSPEND
383 case PM_EVENT_SUSPEND:
9cf519d1 384 return ops->suspend_noirq;
1eede070 385 case PM_EVENT_RESUME:
9cf519d1 386 return ops->resume_noirq;
1eede070 387#endif /* CONFIG_SUSPEND */
1f112cee 388#ifdef CONFIG_HIBERNATE_CALLBACKS
1eede070
RW
389 case PM_EVENT_FREEZE:
390 case PM_EVENT_QUIESCE:
9cf519d1 391 return ops->freeze_noirq;
1eede070 392 case PM_EVENT_HIBERNATE:
9cf519d1 393 return ops->poweroff_noirq;
1eede070
RW
394 case PM_EVENT_THAW:
395 case PM_EVENT_RECOVER:
9cf519d1 396 return ops->thaw_noirq;
1eede070 397 case PM_EVENT_RESTORE:
9cf519d1 398 return ops->restore_noirq;
1f112cee 399#endif /* CONFIG_HIBERNATE_CALLBACKS */
1eede070 400 }
f2511774 401
9cf519d1 402 return NULL;
1eede070
RW
403}
404
1eede070
RW
405static void pm_dev_dbg(struct device *dev, pm_message_t state, char *info)
406{
407 dev_dbg(dev, "%s%s%s\n", info, pm_verb(state.event),
408 ((state.event & PM_EVENT_SLEEP) && device_may_wakeup(dev)) ?
409 ", may wakeup" : "");
410}
411
412static void pm_dev_err(struct device *dev, pm_message_t state, char *info,
413 int error)
414{
415 printk(KERN_ERR "PM: Device %s failed to %s%s: error %d\n",
5c1a07ab 416 dev_name(dev), pm_verb(state.event), info, error);
1eede070
RW
417}
418
ecf762b2
RW
419static void dpm_show_time(ktime_t starttime, pm_message_t state, char *info)
420{
421 ktime_t calltime;
0702d9ee 422 u64 usecs64;
ecf762b2
RW
423 int usecs;
424
425 calltime = ktime_get();
426 usecs64 = ktime_to_ns(ktime_sub(calltime, starttime));
427 do_div(usecs64, NSEC_PER_USEC);
428 usecs = usecs64;
429 if (usecs == 0)
430 usecs = 1;
431 pr_info("PM: %s%s%s of devices complete after %ld.%03ld msecs\n",
432 info ?: "", info ? " " : "", pm_verb(state.event),
433 usecs / USEC_PER_MSEC, usecs % USEC_PER_MSEC);
434}
435
9cf519d1
RW
436static int dpm_run_callback(pm_callback_t cb, struct device *dev,
437 pm_message_t state, char *info)
438{
439 ktime_t calltime;
440 int error;
441
442 if (!cb)
443 return 0;
444
445 calltime = initcall_debug_start(dev);
446
447 pm_dev_dbg(dev, state, info);
e8bca479 448 trace_device_pm_callback_start(dev, info, state.event);
9cf519d1 449 error = cb(dev);
e8bca479 450 trace_device_pm_callback_end(dev, error);
9cf519d1
RW
451 suspend_report_result(cb, error);
452
53644677 453 initcall_debug_report(dev, calltime, error, state, info);
9cf519d1
RW
454
455 return error;
456}
457
70fea60d
BG
458#ifdef CONFIG_DPM_WATCHDOG
459struct dpm_watchdog {
460 struct device *dev;
461 struct task_struct *tsk;
462 struct timer_list timer;
463};
464
465#define DECLARE_DPM_WATCHDOG_ON_STACK(wd) \
466 struct dpm_watchdog wd
467
468/**
469 * dpm_watchdog_handler - Driver suspend / resume watchdog handler.
470 * @data: Watchdog object address.
471 *
472 * Called when a driver has timed out suspending or resuming.
473 * There's not much we can do here to recover so panic() to
474 * capture a crash-dump in pstore.
475 */
476static void dpm_watchdog_handler(unsigned long data)
477{
478 struct dpm_watchdog *wd = (void *)data;
479
480 dev_emerg(wd->dev, "**** DPM device timeout ****\n");
481 show_stack(wd->tsk, NULL);
482 panic("%s %s: unrecoverable failure\n",
483 dev_driver_string(wd->dev), dev_name(wd->dev));
484}
485
486/**
487 * dpm_watchdog_set - Enable pm watchdog for given device.
488 * @wd: Watchdog. Must be allocated on the stack.
489 * @dev: Device to handle.
490 */
491static void dpm_watchdog_set(struct dpm_watchdog *wd, struct device *dev)
492{
493 struct timer_list *timer = &wd->timer;
494
495 wd->dev = dev;
496 wd->tsk = current;
497
498 init_timer_on_stack(timer);
499 /* use same timeout value for both suspend and resume */
500 timer->expires = jiffies + HZ * CONFIG_DPM_WATCHDOG_TIMEOUT;
501 timer->function = dpm_watchdog_handler;
502 timer->data = (unsigned long)wd;
503 add_timer(timer);
504}
505
506/**
507 * dpm_watchdog_clear - Disable suspend/resume watchdog.
508 * @wd: Watchdog to disable.
509 */
510static void dpm_watchdog_clear(struct dpm_watchdog *wd)
511{
512 struct timer_list *timer = &wd->timer;
513
514 del_timer_sync(timer);
515 destroy_timer_on_stack(timer);
516}
517#else
518#define DECLARE_DPM_WATCHDOG_ON_STACK(wd)
519#define dpm_watchdog_set(x, y)
520#define dpm_watchdog_clear(x)
521#endif
522
cd59abfc
AS
523/*------------------------- Resume routines -------------------------*/
524
525/**
20d652d7
RW
526 * device_resume_noirq - Execute an "early resume" callback for given device.
527 * @dev: Device to handle.
528 * @state: PM transition of the system being carried out.
58c256a3 529 * @async: If true, the device is being resumed asynchronously.
cd59abfc 530 *
20d652d7
RW
531 * The driver of @dev will not receive interrupts while this function is being
532 * executed.
cd59abfc 533 */
76569faa 534static int device_resume_noirq(struct device *dev, pm_message_t state, bool async)
cd59abfc 535{
9cf519d1
RW
536 pm_callback_t callback = NULL;
537 char *info = NULL;
cd59abfc
AS
538 int error = 0;
539
540 TRACE_DEVICE(dev);
541 TRACE_RESUME(0);
542
aae4518b 543 if (dev->power.syscore || dev->power.direct_complete)
dbf37414
RW
544 goto Out;
545
3d2699bc
LC
546 if (!dev->power.is_noirq_suspended)
547 goto Out;
548
8c73b428 549 dpm_wait_for_superior(dev, async);
76569faa 550
564b905a 551 if (dev->pm_domain) {
cf579dfb 552 info = "noirq power domain ";
9cf519d1 553 callback = pm_noirq_op(&dev->pm_domain->ops, state);
4d27e9dc 554 } else if (dev->type && dev->type->pm) {
cf579dfb 555 info = "noirq type ";
9cf519d1 556 callback = pm_noirq_op(dev->type->pm, state);
9659cc06 557 } else if (dev->class && dev->class->pm) {
cf579dfb 558 info = "noirq class ";
9cf519d1 559 callback = pm_noirq_op(dev->class->pm, state);
9659cc06 560 } else if (dev->bus && dev->bus->pm) {
cf579dfb 561 info = "noirq bus ";
9cf519d1 562 callback = pm_noirq_op(dev->bus->pm, state);
e7176a37
DB
563 }
564
35cd133c 565 if (!callback && dev->driver && dev->driver->pm) {
cf579dfb 566 info = "noirq driver ";
35cd133c
RW
567 callback = pm_noirq_op(dev->driver->pm, state);
568 }
569
9cf519d1 570 error = dpm_run_callback(callback, dev, state, info);
3d2699bc 571 dev->power.is_noirq_suspended = false;
9cf519d1 572
dbf37414 573 Out:
76569faa 574 complete_all(&dev->power.completion);
775b64d2
RW
575 TRACE_RESUME(error);
576 return error;
577}
578
76569faa
LC
579static bool is_async(struct device *dev)
580{
581 return dev->power.async_suspend && pm_async_enabled
582 && !pm_trace_is_enabled();
583}
584
585static void async_resume_noirq(void *data, async_cookie_t cookie)
586{
587 struct device *dev = (struct device *)data;
588 int error;
589
590 error = device_resume_noirq(dev, pm_transition, true);
591 if (error)
592 pm_dev_err(dev, pm_transition, " async", error);
593
594 put_device(dev);
595}
596
775b64d2 597/**
cf579dfb 598 * dpm_resume_noirq - Execute "noirq resume" callbacks for all devices.
20d652d7 599 * @state: PM transition of the system being carried out.
775b64d2 600 *
cf579dfb 601 * Call the "noirq" resume handlers for all devices in dpm_noirq_list and
20d652d7 602 * enable device drivers to receive interrupts.
775b64d2 603 */
2a8a8ce6 604void dpm_resume_noirq(pm_message_t state)
775b64d2 605{
76569faa 606 struct device *dev;
ecf762b2 607 ktime_t starttime = ktime_get();
775b64d2 608
bb3632c6 609 trace_suspend_resume(TPS("dpm_resume_noirq"), state.event, true);
32bdfac5 610 mutex_lock(&dpm_list_mtx);
76569faa 611 pm_transition = state;
d08a5ace 612
76569faa
LC
613 /*
614 * Advanced the async threads upfront,
615 * in case the starting of async threads is
616 * delayed by non-async resuming devices.
617 */
618 list_for_each_entry(dev, &dpm_noirq_list, power.entry) {
619 reinit_completion(&dev->power.completion);
620 if (is_async(dev)) {
621 get_device(dev);
622 async_schedule(async_resume_noirq, dev);
623 }
624 }
625
626 while (!list_empty(&dpm_noirq_list)) {
627 dev = to_device(dpm_noirq_list.next);
d08a5ace 628 get_device(dev);
cf579dfb 629 list_move_tail(&dev->power.entry, &dpm_late_early_list);
5b219a51 630 mutex_unlock(&dpm_list_mtx);
d08a5ace 631
76569faa
LC
632 if (!is_async(dev)) {
633 int error;
634
635 error = device_resume_noirq(dev, state, false);
636 if (error) {
637 suspend_stats.failed_resume_noirq++;
638 dpm_save_failed_step(SUSPEND_RESUME_NOIRQ);
639 dpm_save_failed_dev(dev_name(dev));
640 pm_dev_err(dev, state, " noirq", error);
641 }
cf579dfb
RW
642 }
643
644 mutex_lock(&dpm_list_mtx);
645 put_device(dev);
646 }
647 mutex_unlock(&dpm_list_mtx);
76569faa 648 async_synchronize_full();
cf579dfb
RW
649 dpm_show_time(starttime, state, "noirq");
650 resume_device_irqs();
4990d4fe 651 device_wakeup_disarm_wake_irqs();
8651f97b 652 cpuidle_resume();
bb3632c6 653 trace_suspend_resume(TPS("dpm_resume_noirq"), state.event, false);
cf579dfb
RW
654}
655
656/**
657 * device_resume_early - Execute an "early resume" callback for given device.
658 * @dev: Device to handle.
659 * @state: PM transition of the system being carried out.
58c256a3 660 * @async: If true, the device is being resumed asynchronously.
cf579dfb
RW
661 *
662 * Runtime PM is disabled for @dev while this function is being executed.
663 */
9e5e7910 664static int device_resume_early(struct device *dev, pm_message_t state, bool async)
cf579dfb
RW
665{
666 pm_callback_t callback = NULL;
667 char *info = NULL;
668 int error = 0;
669
670 TRACE_DEVICE(dev);
671 TRACE_RESUME(0);
672
aae4518b 673 if (dev->power.syscore || dev->power.direct_complete)
dbf37414
RW
674 goto Out;
675
3d2699bc
LC
676 if (!dev->power.is_late_suspended)
677 goto Out;
678
8c73b428 679 dpm_wait_for_superior(dev, async);
9e5e7910 680
cf579dfb
RW
681 if (dev->pm_domain) {
682 info = "early power domain ";
683 callback = pm_late_early_op(&dev->pm_domain->ops, state);
684 } else if (dev->type && dev->type->pm) {
685 info = "early type ";
686 callback = pm_late_early_op(dev->type->pm, state);
687 } else if (dev->class && dev->class->pm) {
688 info = "early class ";
689 callback = pm_late_early_op(dev->class->pm, state);
690 } else if (dev->bus && dev->bus->pm) {
691 info = "early bus ";
692 callback = pm_late_early_op(dev->bus->pm, state);
693 }
694
695 if (!callback && dev->driver && dev->driver->pm) {
696 info = "early driver ";
697 callback = pm_late_early_op(dev->driver->pm, state);
698 }
699
700 error = dpm_run_callback(callback, dev, state, info);
3d2699bc 701 dev->power.is_late_suspended = false;
cf579dfb 702
dbf37414 703 Out:
cf579dfb 704 TRACE_RESUME(error);
9f6d8f6a
RW
705
706 pm_runtime_enable(dev);
9e5e7910 707 complete_all(&dev->power.completion);
cf579dfb
RW
708 return error;
709}
710
9e5e7910
LC
711static void async_resume_early(void *data, async_cookie_t cookie)
712{
713 struct device *dev = (struct device *)data;
714 int error;
715
716 error = device_resume_early(dev, pm_transition, true);
717 if (error)
718 pm_dev_err(dev, pm_transition, " async", error);
719
720 put_device(dev);
721}
722
cf579dfb
RW
723/**
724 * dpm_resume_early - Execute "early resume" callbacks for all devices.
725 * @state: PM transition of the system being carried out.
726 */
2a8a8ce6 727void dpm_resume_early(pm_message_t state)
cf579dfb 728{
9e5e7910 729 struct device *dev;
cf579dfb
RW
730 ktime_t starttime = ktime_get();
731
bb3632c6 732 trace_suspend_resume(TPS("dpm_resume_early"), state.event, true);
cf579dfb 733 mutex_lock(&dpm_list_mtx);
9e5e7910
LC
734 pm_transition = state;
735
736 /*
737 * Advanced the async threads upfront,
738 * in case the starting of async threads is
739 * delayed by non-async resuming devices.
740 */
741 list_for_each_entry(dev, &dpm_late_early_list, power.entry) {
742 reinit_completion(&dev->power.completion);
743 if (is_async(dev)) {
744 get_device(dev);
745 async_schedule(async_resume_early, dev);
746 }
747 }
cf579dfb 748
9e5e7910
LC
749 while (!list_empty(&dpm_late_early_list)) {
750 dev = to_device(dpm_late_early_list.next);
cf579dfb
RW
751 get_device(dev);
752 list_move_tail(&dev->power.entry, &dpm_suspended_list);
753 mutex_unlock(&dpm_list_mtx);
754
9e5e7910
LC
755 if (!is_async(dev)) {
756 int error;
d08a5ace 757
9e5e7910
LC
758 error = device_resume_early(dev, state, false);
759 if (error) {
760 suspend_stats.failed_resume_early++;
761 dpm_save_failed_step(SUSPEND_RESUME_EARLY);
762 dpm_save_failed_dev(dev_name(dev));
763 pm_dev_err(dev, state, " early", error);
764 }
765 }
5b219a51 766 mutex_lock(&dpm_list_mtx);
d08a5ace
RW
767 put_device(dev);
768 }
32bdfac5 769 mutex_unlock(&dpm_list_mtx);
9e5e7910 770 async_synchronize_full();
ecf762b2 771 dpm_show_time(starttime, state, "early");
bb3632c6 772 trace_suspend_resume(TPS("dpm_resume_early"), state.event, false);
775b64d2 773}
cf579dfb
RW
774
775/**
776 * dpm_resume_start - Execute "noirq" and "early" device callbacks.
777 * @state: PM transition of the system being carried out.
778 */
779void dpm_resume_start(pm_message_t state)
780{
781 dpm_resume_noirq(state);
782 dpm_resume_early(state);
783}
784EXPORT_SYMBOL_GPL(dpm_resume_start);
775b64d2
RW
785
786/**
97df8c12 787 * device_resume - Execute "resume" callbacks for given device.
20d652d7
RW
788 * @dev: Device to handle.
789 * @state: PM transition of the system being carried out.
5af84b82 790 * @async: If true, the device is being resumed asynchronously.
775b64d2 791 */
97df8c12 792static int device_resume(struct device *dev, pm_message_t state, bool async)
775b64d2 793{
9cf519d1
RW
794 pm_callback_t callback = NULL;
795 char *info = NULL;
775b64d2 796 int error = 0;
70fea60d 797 DECLARE_DPM_WATCHDOG_ON_STACK(wd);
775b64d2
RW
798
799 TRACE_DEVICE(dev);
800 TRACE_RESUME(0);
cd59abfc 801
dbf37414
RW
802 if (dev->power.syscore)
803 goto Complete;
804
aae4518b
RW
805 if (dev->power.direct_complete) {
806 /* Match the pm_runtime_disable() in __device_suspend(). */
807 pm_runtime_enable(dev);
808 goto Complete;
809 }
810
8c73b428 811 dpm_wait_for_superior(dev, async);
70fea60d 812 dpm_watchdog_set(&wd, dev);
8e9394ce 813 device_lock(dev);
7a8d37a3 814
f76b168b
AS
815 /*
816 * This is a fib. But we'll allow new children to be added below
817 * a resumed device, even if the device hasn't been completed yet.
818 */
819 dev->power.is_prepared = false;
97df8c12 820
6d0e0e84
AS
821 if (!dev->power.is_suspended)
822 goto Unlock;
823
564b905a 824 if (dev->pm_domain) {
9cf519d1
RW
825 info = "power domain ";
826 callback = pm_op(&dev->pm_domain->ops, state);
35cd133c 827 goto Driver;
7538e3db
RW
828 }
829
9659cc06 830 if (dev->type && dev->type->pm) {
9cf519d1
RW
831 info = "type ";
832 callback = pm_op(dev->type->pm, state);
35cd133c 833 goto Driver;
cd59abfc
AS
834 }
835
1eede070
RW
836 if (dev->class) {
837 if (dev->class->pm) {
9cf519d1
RW
838 info = "class ";
839 callback = pm_op(dev->class->pm, state);
35cd133c 840 goto Driver;
1eede070 841 } else if (dev->class->resume) {
9cf519d1
RW
842 info = "legacy class ";
843 callback = dev->class->resume;
9659cc06 844 goto End;
1eede070 845 }
cd59abfc 846 }
9659cc06
RW
847
848 if (dev->bus) {
849 if (dev->bus->pm) {
35cd133c 850 info = "bus ";
9cf519d1 851 callback = pm_op(dev->bus->pm, state);
9659cc06 852 } else if (dev->bus->resume) {
35cd133c 853 info = "legacy bus ";
9cf519d1 854 callback = dev->bus->resume;
35cd133c 855 goto End;
9659cc06
RW
856 }
857 }
858
35cd133c
RW
859 Driver:
860 if (!callback && dev->driver && dev->driver->pm) {
861 info = "driver ";
862 callback = pm_op(dev->driver->pm, state);
863 }
864
1eede070 865 End:
9cf519d1 866 error = dpm_run_callback(callback, dev, state, info);
6d0e0e84
AS
867 dev->power.is_suspended = false;
868
869 Unlock:
8e9394ce 870 device_unlock(dev);
70fea60d 871 dpm_watchdog_clear(&wd);
dbf37414
RW
872
873 Complete:
5af84b82 874 complete_all(&dev->power.completion);
7a8d37a3 875
cd59abfc 876 TRACE_RESUME(error);
1e2ef05b 877
cd59abfc
AS
878 return error;
879}
880
5af84b82
RW
881static void async_resume(void *data, async_cookie_t cookie)
882{
883 struct device *dev = (struct device *)data;
884 int error;
885
97df8c12 886 error = device_resume(dev, pm_transition, true);
5af84b82
RW
887 if (error)
888 pm_dev_err(dev, pm_transition, " async", error);
889 put_device(dev);
890}
891
775b64d2 892/**
20d652d7
RW
893 * dpm_resume - Execute "resume" callbacks for non-sysdev devices.
894 * @state: PM transition of the system being carried out.
775b64d2 895 *
20d652d7
RW
896 * Execute the appropriate "resume" callback for all devices whose status
897 * indicates that they are suspended.
1eede070 898 */
91e7c75b 899void dpm_resume(pm_message_t state)
1eede070 900{
97df8c12 901 struct device *dev;
ecf762b2 902 ktime_t starttime = ktime_get();
1eede070 903
bb3632c6 904 trace_suspend_resume(TPS("dpm_resume"), state.event, true);
91e7c75b
RW
905 might_sleep();
906
1eede070 907 mutex_lock(&dpm_list_mtx);
5af84b82 908 pm_transition = state;
098dff73 909 async_error = 0;
1eede070 910
8a43a9ab 911 list_for_each_entry(dev, &dpm_suspended_list, power.entry) {
16735d02 912 reinit_completion(&dev->power.completion);
97df8c12
RW
913 if (is_async(dev)) {
914 get_device(dev);
915 async_schedule(async_resume, dev);
916 }
917 }
918
8a43a9ab
RW
919 while (!list_empty(&dpm_suspended_list)) {
920 dev = to_device(dpm_suspended_list.next);
1eede070 921 get_device(dev);
5b219a51 922 if (!is_async(dev)) {
1eede070
RW
923 int error;
924
1eede070
RW
925 mutex_unlock(&dpm_list_mtx);
926
97df8c12 927 error = device_resume(dev, state, false);
2a77c46d
SL
928 if (error) {
929 suspend_stats.failed_resume++;
930 dpm_save_failed_step(SUSPEND_RESUME);
931 dpm_save_failed_dev(dev_name(dev));
1eede070 932 pm_dev_err(dev, state, "", error);
2a77c46d 933 }
5b219a51
RW
934
935 mutex_lock(&dpm_list_mtx);
1eede070
RW
936 }
937 if (!list_empty(&dev->power.entry))
8a43a9ab 938 list_move_tail(&dev->power.entry, &dpm_prepared_list);
1eede070
RW
939 put_device(dev);
940 }
1eede070 941 mutex_unlock(&dpm_list_mtx);
5af84b82 942 async_synchronize_full();
ecf762b2 943 dpm_show_time(starttime, state, NULL);
2f0aea93
VK
944
945 cpufreq_resume();
bb3632c6 946 trace_suspend_resume(TPS("dpm_resume"), state.event, false);
1eede070
RW
947}
948
949/**
20d652d7
RW
950 * device_complete - Complete a PM transition for given device.
951 * @dev: Device to handle.
952 * @state: PM transition of the system being carried out.
1eede070 953 */
d1616302 954static void device_complete(struct device *dev, pm_message_t state)
1eede070 955{
35cd133c
RW
956 void (*callback)(struct device *) = NULL;
957 char *info = NULL;
958
dbf37414
RW
959 if (dev->power.syscore)
960 return;
961
8e9394ce 962 device_lock(dev);
1eede070 963
564b905a 964 if (dev->pm_domain) {
35cd133c
RW
965 info = "completing power domain ";
966 callback = dev->pm_domain->ops.complete;
4d27e9dc 967 } else if (dev->type && dev->type->pm) {
35cd133c
RW
968 info = "completing type ";
969 callback = dev->type->pm->complete;
9659cc06 970 } else if (dev->class && dev->class->pm) {
35cd133c
RW
971 info = "completing class ";
972 callback = dev->class->pm->complete;
9659cc06 973 } else if (dev->bus && dev->bus->pm) {
35cd133c
RW
974 info = "completing bus ";
975 callback = dev->bus->pm->complete;
976 }
977
978 if (!callback && dev->driver && dev->driver->pm) {
979 info = "completing driver ";
980 callback = dev->driver->pm->complete;
981 }
982
983 if (callback) {
984 pm_dev_dbg(dev, state, info);
985 callback(dev);
1eede070
RW
986 }
987
8e9394ce 988 device_unlock(dev);
88d26136 989
af939339 990 pm_runtime_put(dev);
1eede070
RW
991}
992
993/**
20d652d7
RW
994 * dpm_complete - Complete a PM transition for all non-sysdev devices.
995 * @state: PM transition of the system being carried out.
775b64d2 996 *
20d652d7
RW
997 * Execute the ->complete() callbacks for all devices whose PM status is not
998 * DPM_ON (this allows new devices to be registered).
cd59abfc 999 */
91e7c75b 1000void dpm_complete(pm_message_t state)
cd59abfc 1001{
1eede070
RW
1002 struct list_head list;
1003
bb3632c6 1004 trace_suspend_resume(TPS("dpm_complete"), state.event, true);
91e7c75b
RW
1005 might_sleep();
1006
1eede070 1007 INIT_LIST_HEAD(&list);
cd59abfc 1008 mutex_lock(&dpm_list_mtx);
8a43a9ab
RW
1009 while (!list_empty(&dpm_prepared_list)) {
1010 struct device *dev = to_device(dpm_prepared_list.prev);
cd59abfc 1011
1eede070 1012 get_device(dev);
f76b168b 1013 dev->power.is_prepared = false;
5b219a51
RW
1014 list_move(&dev->power.entry, &list);
1015 mutex_unlock(&dpm_list_mtx);
1eede070 1016
32e8d689 1017 trace_device_pm_callback_start(dev, "", state.event);
5b219a51 1018 device_complete(dev, state);
32e8d689 1019 trace_device_pm_callback_end(dev, 0);
1eede070 1020
5b219a51 1021 mutex_lock(&dpm_list_mtx);
1eede070 1022 put_device(dev);
cd59abfc 1023 }
1eede070 1024 list_splice(&list, &dpm_list);
cd59abfc 1025 mutex_unlock(&dpm_list_mtx);
013c074f
SG
1026
1027 /* Allow device probing and trigger re-probing of deferred devices */
1028 device_unblock_probing();
bb3632c6 1029 trace_suspend_resume(TPS("dpm_complete"), state.event, false);
cd59abfc
AS
1030}
1031
cd59abfc 1032/**
20d652d7
RW
1033 * dpm_resume_end - Execute "resume" callbacks and complete system transition.
1034 * @state: PM transition of the system being carried out.
cd59abfc 1035 *
20d652d7
RW
1036 * Execute "resume" callbacks for all devices and complete the PM transition of
1037 * the system.
cd59abfc 1038 */
d1616302 1039void dpm_resume_end(pm_message_t state)
cd59abfc 1040{
1eede070
RW
1041 dpm_resume(state);
1042 dpm_complete(state);
cd59abfc 1043}
d1616302 1044EXPORT_SYMBOL_GPL(dpm_resume_end);
cd59abfc
AS
1045
1046
1047/*------------------------- Suspend routines -------------------------*/
1048
1eede070 1049/**
20d652d7
RW
1050 * resume_event - Return a "resume" message for given "suspend" sleep state.
1051 * @sleep_state: PM message representing a sleep state.
1052 *
1053 * Return a PM message representing the resume event corresponding to given
1054 * sleep state.
1eede070
RW
1055 */
1056static pm_message_t resume_event(pm_message_t sleep_state)
cd59abfc 1057{
1eede070
RW
1058 switch (sleep_state.event) {
1059 case PM_EVENT_SUSPEND:
1060 return PMSG_RESUME;
1061 case PM_EVENT_FREEZE:
1062 case PM_EVENT_QUIESCE:
1063 return PMSG_RECOVER;
1064 case PM_EVENT_HIBERNATE:
1065 return PMSG_RESTORE;
cd59abfc 1066 }
1eede070 1067 return PMSG_ON;
cd59abfc
AS
1068}
1069
1070/**
20d652d7
RW
1071 * device_suspend_noirq - Execute a "late suspend" callback for given device.
1072 * @dev: Device to handle.
1073 * @state: PM transition of the system being carried out.
58c256a3 1074 * @async: If true, the device is being suspended asynchronously.
775b64d2 1075 *
20d652d7
RW
1076 * The driver of @dev will not receive interrupts while this function is being
1077 * executed.
cd59abfc 1078 */
28b6fd6e 1079static int __device_suspend_noirq(struct device *dev, pm_message_t state, bool async)
775b64d2 1080{
9cf519d1
RW
1081 pm_callback_t callback = NULL;
1082 char *info = NULL;
28b6fd6e
LC
1083 int error = 0;
1084
431d452a
ZF
1085 TRACE_DEVICE(dev);
1086 TRACE_SUSPEND(0);
1087
098c3055 1088 dpm_wait_for_subordinate(dev, async);
6f75c3fd 1089
28b6fd6e
LC
1090 if (async_error)
1091 goto Complete;
1092
1093 if (pm_wakeup_pending()) {
1094 async_error = -EBUSY;
1095 goto Complete;
1096 }
e7176a37 1097
aae4518b 1098 if (dev->power.syscore || dev->power.direct_complete)
28b6fd6e
LC
1099 goto Complete;
1100
564b905a 1101 if (dev->pm_domain) {
cf579dfb 1102 info = "noirq power domain ";
9cf519d1 1103 callback = pm_noirq_op(&dev->pm_domain->ops, state);
4d27e9dc 1104 } else if (dev->type && dev->type->pm) {
cf579dfb 1105 info = "noirq type ";
9cf519d1 1106 callback = pm_noirq_op(dev->type->pm, state);
9659cc06 1107 } else if (dev->class && dev->class->pm) {
cf579dfb 1108 info = "noirq class ";
9cf519d1 1109 callback = pm_noirq_op(dev->class->pm, state);
9659cc06 1110 } else if (dev->bus && dev->bus->pm) {
cf579dfb 1111 info = "noirq bus ";
9cf519d1 1112 callback = pm_noirq_op(dev->bus->pm, state);
7538e3db
RW
1113 }
1114
35cd133c 1115 if (!callback && dev->driver && dev->driver->pm) {
cf579dfb 1116 info = "noirq driver ";
35cd133c
RW
1117 callback = pm_noirq_op(dev->driver->pm, state);
1118 }
1119
3d2699bc
LC
1120 error = dpm_run_callback(callback, dev, state, info);
1121 if (!error)
1122 dev->power.is_noirq_suspended = true;
28b6fd6e
LC
1123 else
1124 async_error = error;
3d2699bc 1125
28b6fd6e
LC
1126Complete:
1127 complete_all(&dev->power.completion);
431d452a 1128 TRACE_SUSPEND(error);
3d2699bc 1129 return error;
775b64d2
RW
1130}
1131
28b6fd6e
LC
1132static void async_suspend_noirq(void *data, async_cookie_t cookie)
1133{
1134 struct device *dev = (struct device *)data;
1135 int error;
1136
1137 error = __device_suspend_noirq(dev, pm_transition, true);
1138 if (error) {
1139 dpm_save_failed_dev(dev_name(dev));
1140 pm_dev_err(dev, pm_transition, " async", error);
1141 }
1142
1143 put_device(dev);
1144}
1145
1146static int device_suspend_noirq(struct device *dev)
1147{
1148 reinit_completion(&dev->power.completion);
1149
431d452a 1150 if (is_async(dev)) {
28b6fd6e
LC
1151 get_device(dev);
1152 async_schedule(async_suspend_noirq, dev);
1153 return 0;
1154 }
1155 return __device_suspend_noirq(dev, pm_transition, false);
1156}
1157
775b64d2 1158/**
cf579dfb 1159 * dpm_suspend_noirq - Execute "noirq suspend" callbacks for all devices.
20d652d7 1160 * @state: PM transition of the system being carried out.
775b64d2 1161 *
20d652d7
RW
1162 * Prevent device drivers from receiving interrupts and call the "noirq" suspend
1163 * handlers for all non-sysdev devices.
775b64d2 1164 */
2a8a8ce6 1165int dpm_suspend_noirq(pm_message_t state)
775b64d2 1166{
ecf762b2 1167 ktime_t starttime = ktime_get();
775b64d2
RW
1168 int error = 0;
1169
bb3632c6 1170 trace_suspend_resume(TPS("dpm_suspend_noirq"), state.event, true);
8651f97b 1171 cpuidle_pause();
4990d4fe 1172 device_wakeup_arm_wake_irqs();
2ed8d2b3 1173 suspend_device_irqs();
32bdfac5 1174 mutex_lock(&dpm_list_mtx);
28b6fd6e
LC
1175 pm_transition = state;
1176 async_error = 0;
1177
cf579dfb
RW
1178 while (!list_empty(&dpm_late_early_list)) {
1179 struct device *dev = to_device(dpm_late_early_list.prev);
d08a5ace
RW
1180
1181 get_device(dev);
1182 mutex_unlock(&dpm_list_mtx);
1183
28b6fd6e 1184 error = device_suspend_noirq(dev);
d08a5ace
RW
1185
1186 mutex_lock(&dpm_list_mtx);
775b64d2 1187 if (error) {
cf579dfb 1188 pm_dev_err(dev, state, " noirq", error);
2a77c46d 1189 dpm_save_failed_dev(dev_name(dev));
d08a5ace 1190 put_device(dev);
775b64d2
RW
1191 break;
1192 }
d08a5ace 1193 if (!list_empty(&dev->power.entry))
8a43a9ab 1194 list_move(&dev->power.entry, &dpm_noirq_list);
d08a5ace 1195 put_device(dev);
52d136cc 1196
28b6fd6e 1197 if (async_error)
52d136cc 1198 break;
775b64d2 1199 }
32bdfac5 1200 mutex_unlock(&dpm_list_mtx);
28b6fd6e
LC
1201 async_synchronize_full();
1202 if (!error)
1203 error = async_error;
1204
1205 if (error) {
1206 suspend_stats.failed_suspend_noirq++;
1207 dpm_save_failed_step(SUSPEND_SUSPEND_NOIRQ);
d1616302 1208 dpm_resume_noirq(resume_event(state));
28b6fd6e 1209 } else {
cf579dfb 1210 dpm_show_time(starttime, state, "noirq");
28b6fd6e 1211 }
bb3632c6 1212 trace_suspend_resume(TPS("dpm_suspend_noirq"), state.event, false);
cf579dfb
RW
1213 return error;
1214}
1215
1216/**
1217 * device_suspend_late - Execute a "late suspend" callback for given device.
1218 * @dev: Device to handle.
1219 * @state: PM transition of the system being carried out.
58c256a3 1220 * @async: If true, the device is being suspended asynchronously.
cf579dfb
RW
1221 *
1222 * Runtime PM is disabled for @dev while this function is being executed.
1223 */
de377b39 1224static int __device_suspend_late(struct device *dev, pm_message_t state, bool async)
cf579dfb
RW
1225{
1226 pm_callback_t callback = NULL;
1227 char *info = NULL;
de377b39 1228 int error = 0;
cf579dfb 1229
431d452a
ZF
1230 TRACE_DEVICE(dev);
1231 TRACE_SUSPEND(0);
1232
9f6d8f6a
RW
1233 __pm_runtime_disable(dev, false);
1234
098c3055 1235 dpm_wait_for_subordinate(dev, async);
6f75c3fd 1236
de377b39
LC
1237 if (async_error)
1238 goto Complete;
1239
1240 if (pm_wakeup_pending()) {
1241 async_error = -EBUSY;
1242 goto Complete;
1243 }
1244
aae4518b 1245 if (dev->power.syscore || dev->power.direct_complete)
de377b39
LC
1246 goto Complete;
1247
cf579dfb
RW
1248 if (dev->pm_domain) {
1249 info = "late power domain ";
1250 callback = pm_late_early_op(&dev->pm_domain->ops, state);
1251 } else if (dev->type && dev->type->pm) {
1252 info = "late type ";
1253 callback = pm_late_early_op(dev->type->pm, state);
1254 } else if (dev->class && dev->class->pm) {
1255 info = "late class ";
1256 callback = pm_late_early_op(dev->class->pm, state);
1257 } else if (dev->bus && dev->bus->pm) {
1258 info = "late bus ";
1259 callback = pm_late_early_op(dev->bus->pm, state);
1260 }
1261
1262 if (!callback && dev->driver && dev->driver->pm) {
1263 info = "late driver ";
1264 callback = pm_late_early_op(dev->driver->pm, state);
1265 }
1266
3d2699bc
LC
1267 error = dpm_run_callback(callback, dev, state, info);
1268 if (!error)
1269 dev->power.is_late_suspended = true;
de377b39
LC
1270 else
1271 async_error = error;
3d2699bc 1272
de377b39 1273Complete:
431d452a 1274 TRACE_SUSPEND(error);
de377b39 1275 complete_all(&dev->power.completion);
3d2699bc 1276 return error;
cf579dfb
RW
1277}
1278
de377b39
LC
1279static void async_suspend_late(void *data, async_cookie_t cookie)
1280{
1281 struct device *dev = (struct device *)data;
1282 int error;
1283
1284 error = __device_suspend_late(dev, pm_transition, true);
1285 if (error) {
1286 dpm_save_failed_dev(dev_name(dev));
1287 pm_dev_err(dev, pm_transition, " async", error);
1288 }
1289 put_device(dev);
1290}
1291
1292static int device_suspend_late(struct device *dev)
1293{
1294 reinit_completion(&dev->power.completion);
1295
431d452a 1296 if (is_async(dev)) {
de377b39
LC
1297 get_device(dev);
1298 async_schedule(async_suspend_late, dev);
1299 return 0;
1300 }
1301
1302 return __device_suspend_late(dev, pm_transition, false);
1303}
1304
cf579dfb
RW
1305/**
1306 * dpm_suspend_late - Execute "late suspend" callbacks for all devices.
1307 * @state: PM transition of the system being carried out.
1308 */
2a8a8ce6 1309int dpm_suspend_late(pm_message_t state)
cf579dfb
RW
1310{
1311 ktime_t starttime = ktime_get();
1312 int error = 0;
1313
bb3632c6 1314 trace_suspend_resume(TPS("dpm_suspend_late"), state.event, true);
cf579dfb 1315 mutex_lock(&dpm_list_mtx);
de377b39
LC
1316 pm_transition = state;
1317 async_error = 0;
1318
cf579dfb
RW
1319 while (!list_empty(&dpm_suspended_list)) {
1320 struct device *dev = to_device(dpm_suspended_list.prev);
1321
1322 get_device(dev);
1323 mutex_unlock(&dpm_list_mtx);
1324
de377b39 1325 error = device_suspend_late(dev);
cf579dfb
RW
1326
1327 mutex_lock(&dpm_list_mtx);
3a17fb32
RW
1328 if (!list_empty(&dev->power.entry))
1329 list_move(&dev->power.entry, &dpm_late_early_list);
1330
cf579dfb
RW
1331 if (error) {
1332 pm_dev_err(dev, state, " late", error);
cf579dfb
RW
1333 dpm_save_failed_dev(dev_name(dev));
1334 put_device(dev);
1335 break;
1336 }
cf579dfb 1337 put_device(dev);
52d136cc 1338
de377b39 1339 if (async_error)
52d136cc 1340 break;
cf579dfb
RW
1341 }
1342 mutex_unlock(&dpm_list_mtx);
de377b39 1343 async_synchronize_full();
246ef766
ID
1344 if (!error)
1345 error = async_error;
de377b39
LC
1346 if (error) {
1347 suspend_stats.failed_suspend_late++;
1348 dpm_save_failed_step(SUSPEND_SUSPEND_LATE);
cf579dfb 1349 dpm_resume_early(resume_event(state));
de377b39 1350 } else {
ecf762b2 1351 dpm_show_time(starttime, state, "late");
de377b39 1352 }
bb3632c6 1353 trace_suspend_resume(TPS("dpm_suspend_late"), state.event, false);
775b64d2
RW
1354 return error;
1355}
cf579dfb
RW
1356
1357/**
1358 * dpm_suspend_end - Execute "late" and "noirq" device suspend callbacks.
1359 * @state: PM transition of the system being carried out.
1360 */
1361int dpm_suspend_end(pm_message_t state)
1362{
1363 int error = dpm_suspend_late(state);
064b021f
CC
1364 if (error)
1365 return error;
1366
1367 error = dpm_suspend_noirq(state);
1368 if (error) {
997a0311 1369 dpm_resume_early(resume_event(state));
064b021f
CC
1370 return error;
1371 }
cf579dfb 1372
064b021f 1373 return 0;
cf579dfb
RW
1374}
1375EXPORT_SYMBOL_GPL(dpm_suspend_end);
775b64d2 1376
875ab0b7
RW
1377/**
1378 * legacy_suspend - Execute a legacy (bus or class) suspend callback for device.
0a884223
RD
1379 * @dev: Device to suspend.
1380 * @state: PM transition of the system being carried out.
1381 * @cb: Suspend callback to execute.
58c256a3 1382 * @info: string description of caller.
875ab0b7
RW
1383 */
1384static int legacy_suspend(struct device *dev, pm_message_t state,
53644677
SK
1385 int (*cb)(struct device *dev, pm_message_t state),
1386 char *info)
875ab0b7
RW
1387{
1388 int error;
1389 ktime_t calltime;
1390
1391 calltime = initcall_debug_start(dev);
1392
e8bca479 1393 trace_device_pm_callback_start(dev, info, state.event);
875ab0b7 1394 error = cb(dev, state);
e8bca479 1395 trace_device_pm_callback_end(dev, error);
875ab0b7
RW
1396 suspend_report_result(cb, error);
1397
53644677 1398 initcall_debug_report(dev, calltime, error, state, info);
875ab0b7
RW
1399
1400 return error;
1401}
1402
8c73b428
RW
1403static void dpm_clear_suppliers_direct_complete(struct device *dev)
1404{
1405 struct device_link *link;
1406 int idx;
1407
1408 idx = device_links_read_lock();
1409
1410 list_for_each_entry_rcu(link, &dev->links.suppliers, c_node) {
1411 spin_lock_irq(&link->supplier->power.lock);
1412 link->supplier->power.direct_complete = false;
1413 spin_unlock_irq(&link->supplier->power.lock);
1414 }
1415
1416 device_links_read_unlock(idx);
1417}
1418
775b64d2 1419/**
20d652d7
RW
1420 * device_suspend - Execute "suspend" callbacks for given device.
1421 * @dev: Device to handle.
1422 * @state: PM transition of the system being carried out.
5af84b82 1423 * @async: If true, the device is being suspended asynchronously.
775b64d2 1424 */
5af84b82 1425static int __device_suspend(struct device *dev, pm_message_t state, bool async)
cd59abfc 1426{
9cf519d1
RW
1427 pm_callback_t callback = NULL;
1428 char *info = NULL;
cd59abfc 1429 int error = 0;
70fea60d 1430 DECLARE_DPM_WATCHDOG_ON_STACK(wd);
cd59abfc 1431
431d452a
ZF
1432 TRACE_DEVICE(dev);
1433 TRACE_SUSPEND(0);
1434
8c73b428 1435 dpm_wait_for_subordinate(dev, async);
7a8d37a3 1436
5af84b82 1437 if (async_error)
1f758b23 1438 goto Complete;
1e2ef05b 1439
88d26136
AS
1440 /*
1441 * If a device configured to wake up the system from sleep states
1442 * has been suspended at run time and there's a resume request pending
1443 * for it, this is equivalent to the device signaling wakeup, so the
1444 * system suspend operation should be aborted.
1445 */
1e2ef05b
RW
1446 if (pm_runtime_barrier(dev) && device_may_wakeup(dev))
1447 pm_wakeup_event(dev, 0);
5af84b82 1448
d83f905e
RW
1449 if (pm_wakeup_pending()) {
1450 async_error = -EBUSY;
1f758b23 1451 goto Complete;
d83f905e
RW
1452 }
1453
dbf37414
RW
1454 if (dev->power.syscore)
1455 goto Complete;
1456
aae4518b
RW
1457 if (dev->power.direct_complete) {
1458 if (pm_runtime_status_suspended(dev)) {
1459 pm_runtime_disable(dev);
019d8817 1460 if (pm_runtime_status_suspended(dev))
aae4518b
RW
1461 goto Complete;
1462
1463 pm_runtime_enable(dev);
1464 }
1465 dev->power.direct_complete = false;
1466 }
1467
70fea60d 1468 dpm_watchdog_set(&wd, dev);
1e2ef05b
RW
1469 device_lock(dev);
1470
564b905a 1471 if (dev->pm_domain) {
9cf519d1
RW
1472 info = "power domain ";
1473 callback = pm_op(&dev->pm_domain->ops, state);
1474 goto Run;
4d27e9dc
RW
1475 }
1476
9659cc06 1477 if (dev->type && dev->type->pm) {
9cf519d1
RW
1478 info = "type ";
1479 callback = pm_op(dev->type->pm, state);
1480 goto Run;
9659cc06
RW
1481 }
1482
1eede070
RW
1483 if (dev->class) {
1484 if (dev->class->pm) {
9cf519d1
RW
1485 info = "class ";
1486 callback = pm_op(dev->class->pm, state);
1487 goto Run;
1eede070
RW
1488 } else if (dev->class->suspend) {
1489 pm_dev_dbg(dev, state, "legacy class ");
53644677
SK
1490 error = legacy_suspend(dev, state, dev->class->suspend,
1491 "legacy class ");
4d27e9dc 1492 goto End;
1eede070 1493 }
cd59abfc
AS
1494 }
1495
1eede070
RW
1496 if (dev->bus) {
1497 if (dev->bus->pm) {
35cd133c 1498 info = "bus ";
9cf519d1 1499 callback = pm_op(dev->bus->pm, state);
1eede070 1500 } else if (dev->bus->suspend) {
35cd133c 1501 pm_dev_dbg(dev, state, "legacy bus ");
53644677
SK
1502 error = legacy_suspend(dev, state, dev->bus->suspend,
1503 "legacy bus ");
9cf519d1 1504 goto End;
1eede070 1505 }
7538e3db
RW
1506 }
1507
9cf519d1 1508 Run:
35cd133c
RW
1509 if (!callback && dev->driver && dev->driver->pm) {
1510 info = "driver ";
1511 callback = pm_op(dev->driver->pm, state);
1512 }
1513
9cf519d1
RW
1514 error = dpm_run_callback(callback, dev, state, info);
1515
1eede070 1516 End:
4ca46ff3 1517 if (!error) {
aae4518b
RW
1518 struct device *parent = dev->parent;
1519
4ca46ff3 1520 dev->power.is_suspended = true;
aae4518b
RW
1521 if (parent) {
1522 spin_lock_irq(&parent->power.lock);
1523
1524 dev->parent->power.direct_complete = false;
1525 if (dev->power.wakeup_path
1526 && !dev->parent->power.ignore_children)
1527 dev->parent->power.wakeup_path = true;
1528
1529 spin_unlock_irq(&parent->power.lock);
1530 }
8c73b428 1531 dpm_clear_suppliers_direct_complete(dev);
4ca46ff3 1532 }
6d0e0e84 1533
8e9394ce 1534 device_unlock(dev);
70fea60d 1535 dpm_watchdog_clear(&wd);
1f758b23
MSB
1536
1537 Complete:
88d26136 1538 if (error)
098dff73
RW
1539 async_error = error;
1540
05a92622 1541 complete_all(&dev->power.completion);
431d452a 1542 TRACE_SUSPEND(error);
cd59abfc
AS
1543 return error;
1544}
1545
5af84b82
RW
1546static void async_suspend(void *data, async_cookie_t cookie)
1547{
1548 struct device *dev = (struct device *)data;
1549 int error;
1550
1551 error = __device_suspend(dev, pm_transition, true);
2a77c46d
SL
1552 if (error) {
1553 dpm_save_failed_dev(dev_name(dev));
5af84b82 1554 pm_dev_err(dev, pm_transition, " async", error);
2a77c46d 1555 }
5af84b82
RW
1556
1557 put_device(dev);
1558}
1559
1560static int device_suspend(struct device *dev)
1561{
16735d02 1562 reinit_completion(&dev->power.completion);
5af84b82 1563
431d452a 1564 if (is_async(dev)) {
5af84b82
RW
1565 get_device(dev);
1566 async_schedule(async_suspend, dev);
1567 return 0;
1568 }
1569
1570 return __device_suspend(dev, pm_transition, false);
1571}
1572
cd59abfc 1573/**
20d652d7
RW
1574 * dpm_suspend - Execute "suspend" callbacks for all non-sysdev devices.
1575 * @state: PM transition of the system being carried out.
cd59abfc 1576 */
91e7c75b 1577int dpm_suspend(pm_message_t state)
cd59abfc 1578{
ecf762b2 1579 ktime_t starttime = ktime_get();
cd59abfc
AS
1580 int error = 0;
1581
bb3632c6 1582 trace_suspend_resume(TPS("dpm_suspend"), state.event, true);
91e7c75b
RW
1583 might_sleep();
1584
2f0aea93
VK
1585 cpufreq_suspend();
1586
cd59abfc 1587 mutex_lock(&dpm_list_mtx);
5af84b82
RW
1588 pm_transition = state;
1589 async_error = 0;
8a43a9ab
RW
1590 while (!list_empty(&dpm_prepared_list)) {
1591 struct device *dev = to_device(dpm_prepared_list.prev);
58aca232 1592
1eede070 1593 get_device(dev);
cd59abfc 1594 mutex_unlock(&dpm_list_mtx);
1eede070 1595
5af84b82 1596 error = device_suspend(dev);
1eede070 1597
1b3cbec1 1598 mutex_lock(&dpm_list_mtx);
775b64d2 1599 if (error) {
1eede070 1600 pm_dev_err(dev, state, "", error);
2a77c46d 1601 dpm_save_failed_dev(dev_name(dev));
1eede070 1602 put_device(dev);
775b64d2
RW
1603 break;
1604 }
7a8d37a3 1605 if (!list_empty(&dev->power.entry))
8a43a9ab 1606 list_move(&dev->power.entry, &dpm_suspended_list);
1eede070 1607 put_device(dev);
5af84b82
RW
1608 if (async_error)
1609 break;
cd59abfc
AS
1610 }
1611 mutex_unlock(&dpm_list_mtx);
5af84b82
RW
1612 async_synchronize_full();
1613 if (!error)
1614 error = async_error;
2a77c46d
SL
1615 if (error) {
1616 suspend_stats.failed_suspend++;
1617 dpm_save_failed_step(SUSPEND_SUSPEND);
1618 } else
ecf762b2 1619 dpm_show_time(starttime, state, NULL);
bb3632c6 1620 trace_suspend_resume(TPS("dpm_suspend"), state.event, false);
1eede070
RW
1621 return error;
1622}
1623
1624/**
20d652d7
RW
1625 * device_prepare - Prepare a device for system power transition.
1626 * @dev: Device to handle.
1627 * @state: PM transition of the system being carried out.
1628 *
1629 * Execute the ->prepare() callback(s) for given device. No new children of the
1630 * device may be registered after this function has returned.
1eede070 1631 */
d1616302 1632static int device_prepare(struct device *dev, pm_message_t state)
1eede070 1633{
35cd133c 1634 int (*callback)(struct device *) = NULL;
aae4518b 1635 int ret = 0;
1eede070 1636
dbf37414
RW
1637 if (dev->power.syscore)
1638 return 0;
1639
88d26136
AS
1640 /*
1641 * If a device's parent goes into runtime suspend at the wrong time,
1642 * it won't be possible to resume the device. To prevent this we
1643 * block runtime suspend here, during the prepare phase, and allow
1644 * it again during the complete phase.
1645 */
1646 pm_runtime_get_noresume(dev);
1647
8e9394ce 1648 device_lock(dev);
1eede070 1649
4ca46ff3
RW
1650 dev->power.wakeup_path = device_may_wakeup(dev);
1651
aa8e54b5
TV
1652 if (dev->power.no_pm_callbacks) {
1653 ret = 1; /* Let device go direct_complete */
1654 goto unlock;
1655 }
1656
fba1fbf5 1657 if (dev->pm_domain)
35cd133c 1658 callback = dev->pm_domain->ops.prepare;
fba1fbf5 1659 else if (dev->type && dev->type->pm)
35cd133c 1660 callback = dev->type->pm->prepare;
fba1fbf5 1661 else if (dev->class && dev->class->pm)
35cd133c 1662 callback = dev->class->pm->prepare;
fba1fbf5 1663 else if (dev->bus && dev->bus->pm)
35cd133c 1664 callback = dev->bus->pm->prepare;
35cd133c 1665
fba1fbf5 1666 if (!callback && dev->driver && dev->driver->pm)
35cd133c 1667 callback = dev->driver->pm->prepare;
35cd133c 1668
32e8d689 1669 if (callback)
aae4518b 1670 ret = callback(dev);
7538e3db 1671
aa8e54b5 1672unlock:
8e9394ce 1673 device_unlock(dev);
1eede070 1674
aae4518b
RW
1675 if (ret < 0) {
1676 suspend_report_result(callback, ret);
aa1b9f13 1677 pm_runtime_put(dev);
aae4518b
RW
1678 return ret;
1679 }
1680 /*
1681 * A positive return value from ->prepare() means "this device appears
1682 * to be runtime-suspended and its state is fine, so if it really is
1683 * runtime-suspended, you can leave it in that state provided that you
1684 * will do the same thing with all of its descendants". This only
1685 * applies to suspend transitions, however.
1686 */
1687 spin_lock_irq(&dev->power.lock);
1688 dev->power.direct_complete = ret > 0 && state.event == PM_EVENT_SUSPEND;
1689 spin_unlock_irq(&dev->power.lock);
1690 return 0;
1eede070 1691}
cd59abfc 1692
1eede070 1693/**
20d652d7
RW
1694 * dpm_prepare - Prepare all non-sysdev devices for a system PM transition.
1695 * @state: PM transition of the system being carried out.
1eede070 1696 *
20d652d7 1697 * Execute the ->prepare() callback(s) for all devices.
1eede070 1698 */
91e7c75b 1699int dpm_prepare(pm_message_t state)
1eede070 1700{
1eede070
RW
1701 int error = 0;
1702
bb3632c6 1703 trace_suspend_resume(TPS("dpm_prepare"), state.event, true);
91e7c75b
RW
1704 might_sleep();
1705
013c074f
SG
1706 /*
1707 * Give a chance for the known devices to complete their probes, before
1708 * disable probing of devices. This sync point is important at least
1709 * at boot time + hibernation restore.
1710 */
1711 wait_for_device_probe();
1712 /*
1713 * It is unsafe if probing of devices will happen during suspend or
1714 * hibernation and system behavior will be unpredictable in this case.
1715 * So, let's prohibit device's probing here and defer their probes
1716 * instead. The normal behavior will be restored in dpm_complete().
1717 */
1718 device_block_probing();
1719
1eede070 1720 mutex_lock(&dpm_list_mtx);
1eede070
RW
1721 while (!list_empty(&dpm_list)) {
1722 struct device *dev = to_device(dpm_list.next);
1723
1724 get_device(dev);
1eede070
RW
1725 mutex_unlock(&dpm_list_mtx);
1726
32e8d689 1727 trace_device_pm_callback_start(dev, "", state.event);
1e2ef05b 1728 error = device_prepare(dev, state);
32e8d689 1729 trace_device_pm_callback_end(dev, error);
1eede070
RW
1730
1731 mutex_lock(&dpm_list_mtx);
1732 if (error) {
1eede070
RW
1733 if (error == -EAGAIN) {
1734 put_device(dev);
886a7a33 1735 error = 0;
1eede070
RW
1736 continue;
1737 }
1e75227e
RW
1738 printk(KERN_INFO "PM: Device %s not prepared "
1739 "for power transition: code %d\n",
5c1a07ab 1740 dev_name(dev), error);
1eede070
RW
1741 put_device(dev);
1742 break;
1743 }
f76b168b 1744 dev->power.is_prepared = true;
1eede070 1745 if (!list_empty(&dev->power.entry))
8a43a9ab 1746 list_move_tail(&dev->power.entry, &dpm_prepared_list);
1eede070
RW
1747 put_device(dev);
1748 }
1eede070 1749 mutex_unlock(&dpm_list_mtx);
bb3632c6 1750 trace_suspend_resume(TPS("dpm_prepare"), state.event, false);
cd59abfc
AS
1751 return error;
1752}
1753
775b64d2 1754/**
20d652d7
RW
1755 * dpm_suspend_start - Prepare devices for PM transition and suspend them.
1756 * @state: PM transition of the system being carried out.
775b64d2 1757 *
20d652d7
RW
1758 * Prepare all non-sysdev devices for system PM transition and execute "suspend"
1759 * callbacks for them.
775b64d2 1760 */
d1616302 1761int dpm_suspend_start(pm_message_t state)
775b64d2
RW
1762{
1763 int error;
cd59abfc 1764
1eede070 1765 error = dpm_prepare(state);
2a77c46d
SL
1766 if (error) {
1767 suspend_stats.failed_prepare++;
1768 dpm_save_failed_step(SUSPEND_PREPARE);
1769 } else
1eede070 1770 error = dpm_suspend(state);
cd59abfc 1771 return error;
cd59abfc 1772}
d1616302 1773EXPORT_SYMBOL_GPL(dpm_suspend_start);
cd59abfc
AS
1774
1775void __suspend_report_result(const char *function, void *fn, int ret)
1776{
c80cfb04
BH
1777 if (ret)
1778 printk(KERN_ERR "%s(): %pF returns %d\n", function, fn, ret);
cd59abfc
AS
1779}
1780EXPORT_SYMBOL_GPL(__suspend_report_result);
f8824cee
RW
1781
1782/**
1783 * device_pm_wait_for_dev - Wait for suspend/resume of a device to complete.
1784 * @dev: Device to wait for.
1785 * @subordinate: Device that needs to wait for @dev.
1786 */
098dff73 1787int device_pm_wait_for_dev(struct device *subordinate, struct device *dev)
f8824cee
RW
1788{
1789 dpm_wait(dev, subordinate->power.async_suspend);
098dff73 1790 return async_error;
f8824cee
RW
1791}
1792EXPORT_SYMBOL_GPL(device_pm_wait_for_dev);
dfe3212e
ML
1793
1794/**
1795 * dpm_for_each_dev - device iterator.
1796 * @data: data for the callback.
1797 * @fn: function to be called for each device.
1798 *
1799 * Iterate over devices in dpm_list, and call @fn for each device,
1800 * passing it @data.
1801 */
1802void dpm_for_each_dev(void *data, void (*fn)(struct device *, void *))
1803{
1804 struct device *dev;
1805
1806 if (!fn)
1807 return;
1808
1809 device_pm_lock();
1810 list_for_each_entry(dev, &dpm_list, power.entry)
1811 fn(dev, data);
1812 device_pm_unlock();
1813}
1814EXPORT_SYMBOL_GPL(dpm_for_each_dev);
aa8e54b5
TV
1815
1816static bool pm_ops_is_empty(const struct dev_pm_ops *ops)
1817{
1818 if (!ops)
1819 return true;
1820
1821 return !ops->prepare &&
1822 !ops->suspend &&
1823 !ops->suspend_late &&
1824 !ops->suspend_noirq &&
1825 !ops->resume_noirq &&
1826 !ops->resume_early &&
1827 !ops->resume &&
1828 !ops->complete;
1829}
1830
1831void device_pm_check_callbacks(struct device *dev)
1832{
1833 spin_lock_irq(&dev->power.lock);
1834 dev->power.no_pm_callbacks =
1835 (!dev->bus || pm_ops_is_empty(dev->bus->pm)) &&
1836 (!dev->class || pm_ops_is_empty(dev->class->pm)) &&
1837 (!dev->type || pm_ops_is_empty(dev->type->pm)) &&
1838 (!dev->pm_domain || pm_ops_is_empty(&dev->pm_domain->ops)) &&
1839 (!dev->driver || pm_ops_is_empty(dev->driver->pm));
1840 spin_unlock_irq(&dev->power.lock);
1841}