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1 /*
2  * kernel/power/main.c - PM subsystem core functionality.
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 
11 #include <linux/export.h>
12 #include <linux/kobject.h>
13 #include <linux/string.h>
14 #include <linux/resume-trace.h>
15 #include <linux/workqueue.h>
16 #include <linux/debugfs.h>
17 #include <linux/seq_file.h>
18 
19 #include "power.h"
20 
21 DEFINE_MUTEX(pm_mutex);
22 
23 #ifdef CONFIG_PM_SLEEP
24 
25 /* Routines for PM-transition notifications */
26 
27 static BLOCKING_NOTIFIER_HEAD(pm_chain_head);
28 
register_pm_notifier(struct notifier_block * nb)29 int register_pm_notifier(struct notifier_block *nb)
30 {
31 	return blocking_notifier_chain_register(&pm_chain_head, nb);
32 }
33 EXPORT_SYMBOL_GPL(register_pm_notifier);
34 
unregister_pm_notifier(struct notifier_block * nb)35 int unregister_pm_notifier(struct notifier_block *nb)
36 {
37 	return blocking_notifier_chain_unregister(&pm_chain_head, nb);
38 }
39 EXPORT_SYMBOL_GPL(unregister_pm_notifier);
40 
__pm_notifier_call_chain(unsigned long val,int nr_to_call,int * nr_calls)41 int __pm_notifier_call_chain(unsigned long val, int nr_to_call, int *nr_calls)
42 {
43 	int ret;
44 
45 	ret = __blocking_notifier_call_chain(&pm_chain_head, val, NULL,
46 						nr_to_call, nr_calls);
47 
48 	return notifier_to_errno(ret);
49 }
pm_notifier_call_chain(unsigned long val)50 int pm_notifier_call_chain(unsigned long val)
51 {
52 	return __pm_notifier_call_chain(val, -1, NULL);
53 }
54 
55 /* If set, devices may be suspended and resumed asynchronously. */
56 int pm_async_enabled = 1;
57 
pm_async_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)58 static ssize_t pm_async_show(struct kobject *kobj, struct kobj_attribute *attr,
59 			     char *buf)
60 {
61 	return sprintf(buf, "%d\n", pm_async_enabled);
62 }
63 
pm_async_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)64 static ssize_t pm_async_store(struct kobject *kobj, struct kobj_attribute *attr,
65 			      const char *buf, size_t n)
66 {
67 	unsigned long val;
68 
69 	if (kstrtoul(buf, 10, &val))
70 		return -EINVAL;
71 
72 	if (val > 1)
73 		return -EINVAL;
74 
75 	pm_async_enabled = val;
76 	return n;
77 }
78 
79 power_attr(pm_async);
80 
81 #ifdef CONFIG_PM_DEBUG
82 int pm_test_level = TEST_NONE;
83 
84 static const char * const pm_tests[__TEST_AFTER_LAST] = {
85 	[TEST_NONE] = "none",
86 	[TEST_CORE] = "core",
87 	[TEST_CPUS] = "processors",
88 	[TEST_PLATFORM] = "platform",
89 	[TEST_DEVICES] = "devices",
90 	[TEST_FREEZER] = "freezer",
91 };
92 
pm_test_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)93 static ssize_t pm_test_show(struct kobject *kobj, struct kobj_attribute *attr,
94 				char *buf)
95 {
96 	char *s = buf;
97 	int level;
98 
99 	for (level = TEST_FIRST; level <= TEST_MAX; level++)
100 		if (pm_tests[level]) {
101 			if (level == pm_test_level)
102 				s += sprintf(s, "[%s] ", pm_tests[level]);
103 			else
104 				s += sprintf(s, "%s ", pm_tests[level]);
105 		}
106 
107 	if (s != buf)
108 		/* convert the last space to a newline */
109 		*(s-1) = '\n';
110 
111 	return (s - buf);
112 }
113 
pm_test_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)114 static ssize_t pm_test_store(struct kobject *kobj, struct kobj_attribute *attr,
115 				const char *buf, size_t n)
116 {
117 	const char * const *s;
118 	int level;
119 	char *p;
120 	int len;
121 	int error = -EINVAL;
122 
123 	p = memchr(buf, '\n', n);
124 	len = p ? p - buf : n;
125 
126 	lock_system_sleep();
127 
128 	level = TEST_FIRST;
129 	for (s = &pm_tests[level]; level <= TEST_MAX; s++, level++)
130 		if (*s && len == strlen(*s) && !strncmp(buf, *s, len)) {
131 			pm_test_level = level;
132 			error = 0;
133 			break;
134 		}
135 
136 	unlock_system_sleep();
137 
138 	return error ? error : n;
139 }
140 
141 power_attr(pm_test);
142 #endif /* CONFIG_PM_DEBUG */
143 
144 #ifdef CONFIG_DEBUG_FS
suspend_step_name(enum suspend_stat_step step)145 static char *suspend_step_name(enum suspend_stat_step step)
146 {
147 	switch (step) {
148 	case SUSPEND_FREEZE:
149 		return "freeze";
150 	case SUSPEND_PREPARE:
151 		return "prepare";
152 	case SUSPEND_SUSPEND:
153 		return "suspend";
154 	case SUSPEND_SUSPEND_NOIRQ:
155 		return "suspend_noirq";
156 	case SUSPEND_RESUME_NOIRQ:
157 		return "resume_noirq";
158 	case SUSPEND_RESUME:
159 		return "resume";
160 	default:
161 		return "";
162 	}
163 }
164 
suspend_stats_show(struct seq_file * s,void * unused)165 static int suspend_stats_show(struct seq_file *s, void *unused)
166 {
167 	int i, index, last_dev, last_errno, last_step;
168 
169 	last_dev = suspend_stats.last_failed_dev + REC_FAILED_NUM - 1;
170 	last_dev %= REC_FAILED_NUM;
171 	last_errno = suspend_stats.last_failed_errno + REC_FAILED_NUM - 1;
172 	last_errno %= REC_FAILED_NUM;
173 	last_step = suspend_stats.last_failed_step + REC_FAILED_NUM - 1;
174 	last_step %= REC_FAILED_NUM;
175 	seq_printf(s, "%s: %d\n%s: %d\n%s: %d\n%s: %d\n%s: %d\n"
176 			"%s: %d\n%s: %d\n%s: %d\n%s: %d\n%s: %d\n",
177 			"success", suspend_stats.success,
178 			"fail", suspend_stats.fail,
179 			"failed_freeze", suspend_stats.failed_freeze,
180 			"failed_prepare", suspend_stats.failed_prepare,
181 			"failed_suspend", suspend_stats.failed_suspend,
182 			"failed_suspend_late",
183 				suspend_stats.failed_suspend_late,
184 			"failed_suspend_noirq",
185 				suspend_stats.failed_suspend_noirq,
186 			"failed_resume", suspend_stats.failed_resume,
187 			"failed_resume_early",
188 				suspend_stats.failed_resume_early,
189 			"failed_resume_noirq",
190 				suspend_stats.failed_resume_noirq);
191 	seq_printf(s,	"failures:\n  last_failed_dev:\t%-s\n",
192 			suspend_stats.failed_devs[last_dev]);
193 	for (i = 1; i < REC_FAILED_NUM; i++) {
194 		index = last_dev + REC_FAILED_NUM - i;
195 		index %= REC_FAILED_NUM;
196 		seq_printf(s, "\t\t\t%-s\n",
197 			suspend_stats.failed_devs[index]);
198 	}
199 	seq_printf(s,	"  last_failed_errno:\t%-d\n",
200 			suspend_stats.errno[last_errno]);
201 	for (i = 1; i < REC_FAILED_NUM; i++) {
202 		index = last_errno + REC_FAILED_NUM - i;
203 		index %= REC_FAILED_NUM;
204 		seq_printf(s, "\t\t\t%-d\n",
205 			suspend_stats.errno[index]);
206 	}
207 	seq_printf(s,	"  last_failed_step:\t%-s\n",
208 			suspend_step_name(
209 				suspend_stats.failed_steps[last_step]));
210 	for (i = 1; i < REC_FAILED_NUM; i++) {
211 		index = last_step + REC_FAILED_NUM - i;
212 		index %= REC_FAILED_NUM;
213 		seq_printf(s, "\t\t\t%-s\n",
214 			suspend_step_name(
215 				suspend_stats.failed_steps[index]));
216 	}
217 
218 	return 0;
219 }
220 
suspend_stats_open(struct inode * inode,struct file * file)221 static int suspend_stats_open(struct inode *inode, struct file *file)
222 {
223 	return single_open(file, suspend_stats_show, NULL);
224 }
225 
226 static const struct file_operations suspend_stats_operations = {
227 	.open           = suspend_stats_open,
228 	.read           = seq_read,
229 	.llseek         = seq_lseek,
230 	.release        = single_release,
231 };
232 
pm_debugfs_init(void)233 static int __init pm_debugfs_init(void)
234 {
235 	debugfs_create_file("suspend_stats", S_IFREG | S_IRUGO,
236 			NULL, NULL, &suspend_stats_operations);
237 	return 0;
238 }
239 
240 late_initcall(pm_debugfs_init);
241 #endif /* CONFIG_DEBUG_FS */
242 
243 #endif /* CONFIG_PM_SLEEP */
244 
245 #ifdef CONFIG_PM_SLEEP_DEBUG
246 /*
247  * pm_print_times: print time taken by devices to suspend and resume.
248  *
249  * show() returns whether printing of suspend and resume times is enabled.
250  * store() accepts 0 or 1.  0 disables printing and 1 enables it.
251  */
252 bool pm_print_times_enabled;
253 
pm_print_times_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)254 static ssize_t pm_print_times_show(struct kobject *kobj,
255 				   struct kobj_attribute *attr, char *buf)
256 {
257 	return sprintf(buf, "%d\n", pm_print_times_enabled);
258 }
259 
pm_print_times_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)260 static ssize_t pm_print_times_store(struct kobject *kobj,
261 				    struct kobj_attribute *attr,
262 				    const char *buf, size_t n)
263 {
264 	unsigned long val;
265 
266 	if (kstrtoul(buf, 10, &val))
267 		return -EINVAL;
268 
269 	if (val > 1)
270 		return -EINVAL;
271 
272 	pm_print_times_enabled = !!val;
273 	return n;
274 }
275 
276 power_attr(pm_print_times);
277 
pm_print_times_init(void)278 static inline void pm_print_times_init(void)
279 {
280 	pm_print_times_enabled = !!initcall_debug;
281 }
282 #else /* !CONFIG_PP_SLEEP_DEBUG */
pm_print_times_init(void)283 static inline void pm_print_times_init(void) {}
284 #endif /* CONFIG_PM_SLEEP_DEBUG */
285 
286 struct kobject *power_kobj;
287 
288 /**
289  * state - control system sleep states.
290  *
291  * show() returns available sleep state labels, which may be "mem", "standby",
292  * "freeze" and "disk" (hibernation).  See Documentation/power/states.txt for a
293  * description of what they mean.
294  *
295  * store() accepts one of those strings, translates it into the proper
296  * enumerated value, and initiates a suspend transition.
297  */
state_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)298 static ssize_t state_show(struct kobject *kobj, struct kobj_attribute *attr,
299 			  char *buf)
300 {
301 	char *s = buf;
302 #ifdef CONFIG_SUSPEND
303 	suspend_state_t i;
304 
305 	for (i = PM_SUSPEND_MIN; i < PM_SUSPEND_MAX; i++)
306 		if (pm_states[i])
307 			s += sprintf(s,"%s ", pm_states[i]);
308 
309 #endif
310 	if (hibernation_available())
311 		s += sprintf(s, "disk ");
312 	if (s != buf)
313 		/* convert the last space to a newline */
314 		*(s-1) = '\n';
315 	return (s - buf);
316 }
317 
decode_state(const char * buf,size_t n)318 static suspend_state_t decode_state(const char *buf, size_t n)
319 {
320 #ifdef CONFIG_SUSPEND
321 	suspend_state_t state;
322 #endif
323 	char *p;
324 	int len;
325 
326 	p = memchr(buf, '\n', n);
327 	len = p ? p - buf : n;
328 
329 	/* Check hibernation first. */
330 	if (len == 4 && !strncmp(buf, "disk", len))
331 		return PM_SUSPEND_MAX;
332 
333 #ifdef CONFIG_SUSPEND
334 	for (state = PM_SUSPEND_MIN; state < PM_SUSPEND_MAX; state++) {
335 		const char *label = pm_states[state];
336 
337 		if (label && len == strlen(label) && !strncmp(buf, label, len))
338 			return state;
339 	}
340 #endif
341 
342 	return PM_SUSPEND_ON;
343 }
344 
state_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)345 static ssize_t state_store(struct kobject *kobj, struct kobj_attribute *attr,
346 			   const char *buf, size_t n)
347 {
348 	suspend_state_t state;
349 	int error;
350 
351 	error = pm_autosleep_lock();
352 	if (error)
353 		return error;
354 
355 	if (pm_autosleep_state() > PM_SUSPEND_ON) {
356 		error = -EBUSY;
357 		goto out;
358 	}
359 
360 	state = decode_state(buf, n);
361 	if (state < PM_SUSPEND_MAX)
362 		error = pm_suspend(state);
363 	else if (state == PM_SUSPEND_MAX)
364 		error = hibernate();
365 	else
366 		error = -EINVAL;
367 
368  out:
369 	pm_autosleep_unlock();
370 	return error ? error : n;
371 }
372 
373 power_attr(state);
374 
375 #ifdef CONFIG_PM_SLEEP
376 /*
377  * The 'wakeup_count' attribute, along with the functions defined in
378  * drivers/base/power/wakeup.c, provides a means by which wakeup events can be
379  * handled in a non-racy way.
380  *
381  * If a wakeup event occurs when the system is in a sleep state, it simply is
382  * woken up.  In turn, if an event that would wake the system up from a sleep
383  * state occurs when it is undergoing a transition to that sleep state, the
384  * transition should be aborted.  Moreover, if such an event occurs when the
385  * system is in the working state, an attempt to start a transition to the
386  * given sleep state should fail during certain period after the detection of
387  * the event.  Using the 'state' attribute alone is not sufficient to satisfy
388  * these requirements, because a wakeup event may occur exactly when 'state'
389  * is being written to and may be delivered to user space right before it is
390  * frozen, so the event will remain only partially processed until the system is
391  * woken up by another event.  In particular, it won't cause the transition to
392  * a sleep state to be aborted.
393  *
394  * This difficulty may be overcome if user space uses 'wakeup_count' before
395  * writing to 'state'.  It first should read from 'wakeup_count' and store
396  * the read value.  Then, after carrying out its own preparations for the system
397  * transition to a sleep state, it should write the stored value to
398  * 'wakeup_count'.  If that fails, at least one wakeup event has occurred since
399  * 'wakeup_count' was read and 'state' should not be written to.  Otherwise, it
400  * is allowed to write to 'state', but the transition will be aborted if there
401  * are any wakeup events detected after 'wakeup_count' was written to.
402  */
403 
wakeup_count_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)404 static ssize_t wakeup_count_show(struct kobject *kobj,
405 				struct kobj_attribute *attr,
406 				char *buf)
407 {
408 	unsigned int val;
409 
410 	return pm_get_wakeup_count(&val, true) ?
411 		sprintf(buf, "%u\n", val) : -EINTR;
412 }
413 
wakeup_count_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)414 static ssize_t wakeup_count_store(struct kobject *kobj,
415 				struct kobj_attribute *attr,
416 				const char *buf, size_t n)
417 {
418 	unsigned int val;
419 	int error;
420 
421 	error = pm_autosleep_lock();
422 	if (error)
423 		return error;
424 
425 	if (pm_autosleep_state() > PM_SUSPEND_ON) {
426 		error = -EBUSY;
427 		goto out;
428 	}
429 
430 	error = -EINVAL;
431 	if (sscanf(buf, "%u", &val) == 1) {
432 		if (pm_save_wakeup_count(val))
433 			error = n;
434 		else
435 			pm_print_active_wakeup_sources();
436 	}
437 
438  out:
439 	pm_autosleep_unlock();
440 	return error;
441 }
442 
443 power_attr(wakeup_count);
444 
445 #ifdef CONFIG_PM_AUTOSLEEP
autosleep_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)446 static ssize_t autosleep_show(struct kobject *kobj,
447 			      struct kobj_attribute *attr,
448 			      char *buf)
449 {
450 	suspend_state_t state = pm_autosleep_state();
451 
452 	if (state == PM_SUSPEND_ON)
453 		return sprintf(buf, "off\n");
454 
455 #ifdef CONFIG_SUSPEND
456 	if (state < PM_SUSPEND_MAX)
457 		return sprintf(buf, "%s\n", pm_states[state] ?
458 					pm_states[state] : "error");
459 #endif
460 #ifdef CONFIG_HIBERNATION
461 	return sprintf(buf, "disk\n");
462 #else
463 	return sprintf(buf, "error");
464 #endif
465 }
466 
autosleep_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)467 static ssize_t autosleep_store(struct kobject *kobj,
468 			       struct kobj_attribute *attr,
469 			       const char *buf, size_t n)
470 {
471 	suspend_state_t state = decode_state(buf, n);
472 	int error;
473 
474 	if (state == PM_SUSPEND_ON
475 	    && strcmp(buf, "off") && strcmp(buf, "off\n"))
476 		return -EINVAL;
477 
478 	error = pm_autosleep_set_state(state);
479 	return error ? error : n;
480 }
481 
482 power_attr(autosleep);
483 #endif /* CONFIG_PM_AUTOSLEEP */
484 
485 #ifdef CONFIG_PM_WAKELOCKS
wake_lock_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)486 static ssize_t wake_lock_show(struct kobject *kobj,
487 			      struct kobj_attribute *attr,
488 			      char *buf)
489 {
490 	return pm_show_wakelocks(buf, true);
491 }
492 
wake_lock_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)493 static ssize_t wake_lock_store(struct kobject *kobj,
494 			       struct kobj_attribute *attr,
495 			       const char *buf, size_t n)
496 {
497 	int error = pm_wake_lock(buf);
498 	return error ? error : n;
499 }
500 
501 power_attr(wake_lock);
502 
wake_unlock_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)503 static ssize_t wake_unlock_show(struct kobject *kobj,
504 				struct kobj_attribute *attr,
505 				char *buf)
506 {
507 	return pm_show_wakelocks(buf, false);
508 }
509 
wake_unlock_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)510 static ssize_t wake_unlock_store(struct kobject *kobj,
511 				 struct kobj_attribute *attr,
512 				 const char *buf, size_t n)
513 {
514 	int error = pm_wake_unlock(buf);
515 	return error ? error : n;
516 }
517 
518 power_attr(wake_unlock);
519 
520 #endif /* CONFIG_PM_WAKELOCKS */
521 #endif /* CONFIG_PM_SLEEP */
522 
523 #ifdef CONFIG_PM_TRACE
524 int pm_trace_enabled;
525 
pm_trace_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)526 static ssize_t pm_trace_show(struct kobject *kobj, struct kobj_attribute *attr,
527 			     char *buf)
528 {
529 	return sprintf(buf, "%d\n", pm_trace_enabled);
530 }
531 
532 static ssize_t
pm_trace_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)533 pm_trace_store(struct kobject *kobj, struct kobj_attribute *attr,
534 	       const char *buf, size_t n)
535 {
536 	int val;
537 
538 	if (sscanf(buf, "%d", &val) == 1) {
539 		pm_trace_enabled = !!val;
540 		if (pm_trace_enabled) {
541 			pr_warn("PM: Enabling pm_trace changes system date and time during resume.\n"
542 				"PM: Correct system time has to be restored manually after resume.\n");
543 		}
544 		return n;
545 	}
546 	return -EINVAL;
547 }
548 
549 power_attr(pm_trace);
550 
pm_trace_dev_match_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)551 static ssize_t pm_trace_dev_match_show(struct kobject *kobj,
552 				       struct kobj_attribute *attr,
553 				       char *buf)
554 {
555 	return show_trace_dev_match(buf, PAGE_SIZE);
556 }
557 
558 static ssize_t
pm_trace_dev_match_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)559 pm_trace_dev_match_store(struct kobject *kobj, struct kobj_attribute *attr,
560 			 const char *buf, size_t n)
561 {
562 	return -EINVAL;
563 }
564 
565 power_attr(pm_trace_dev_match);
566 
567 #endif /* CONFIG_PM_TRACE */
568 
569 #ifdef CONFIG_FREEZER
pm_freeze_timeout_show(struct kobject * kobj,struct kobj_attribute * attr,char * buf)570 static ssize_t pm_freeze_timeout_show(struct kobject *kobj,
571 				      struct kobj_attribute *attr, char *buf)
572 {
573 	return sprintf(buf, "%u\n", freeze_timeout_msecs);
574 }
575 
pm_freeze_timeout_store(struct kobject * kobj,struct kobj_attribute * attr,const char * buf,size_t n)576 static ssize_t pm_freeze_timeout_store(struct kobject *kobj,
577 				       struct kobj_attribute *attr,
578 				       const char *buf, size_t n)
579 {
580 	unsigned long val;
581 
582 	if (kstrtoul(buf, 10, &val))
583 		return -EINVAL;
584 
585 	freeze_timeout_msecs = val;
586 	return n;
587 }
588 
589 power_attr(pm_freeze_timeout);
590 
591 #endif	/* CONFIG_FREEZER*/
592 
593 static struct attribute * g[] = {
594 	&state_attr.attr,
595 #ifdef CONFIG_PM_TRACE
596 	&pm_trace_attr.attr,
597 	&pm_trace_dev_match_attr.attr,
598 #endif
599 #ifdef CONFIG_PM_SLEEP
600 	&pm_async_attr.attr,
601 	&wakeup_count_attr.attr,
602 #ifdef CONFIG_PM_AUTOSLEEP
603 	&autosleep_attr.attr,
604 #endif
605 #ifdef CONFIG_PM_WAKELOCKS
606 	&wake_lock_attr.attr,
607 	&wake_unlock_attr.attr,
608 #endif
609 #ifdef CONFIG_PM_DEBUG
610 	&pm_test_attr.attr,
611 #endif
612 #ifdef CONFIG_PM_SLEEP_DEBUG
613 	&pm_print_times_attr.attr,
614 #endif
615 #endif
616 #ifdef CONFIG_FREEZER
617 	&pm_freeze_timeout_attr.attr,
618 #endif
619 	NULL,
620 };
621 
622 static struct attribute_group attr_group = {
623 	.attrs = g,
624 };
625 
626 struct workqueue_struct *pm_wq;
627 EXPORT_SYMBOL_GPL(pm_wq);
628 
pm_start_workqueue(void)629 static int __init pm_start_workqueue(void)
630 {
631 	pm_wq = alloc_workqueue("pm", WQ_FREEZABLE, 0);
632 
633 	return pm_wq ? 0 : -ENOMEM;
634 }
635 
pm_init(void)636 static int __init pm_init(void)
637 {
638 	int error = pm_start_workqueue();
639 	if (error)
640 		return error;
641 	hibernate_image_size_init();
642 	hibernate_reserved_size_init();
643 	power_kobj = kobject_create_and_add("power", NULL);
644 	if (!power_kobj)
645 		return -ENOMEM;
646 	error = sysfs_create_group(power_kobj, &attr_group);
647 	if (error)
648 		return error;
649 	pm_print_times_init();
650 	return pm_autosleep_init();
651 }
652 
653 core_initcall(pm_init);
654