Merge branch 'x86-urgent-for-linus' of git://git.kernel.org/pub/scm/linux/kernel...
[GitHub/mt8127/android_kernel_alcatel_ttab.git] / kernel / power / hibernate.c
1 /*
2 * kernel/power/hibernate.c - Hibernation (a.k.a suspend-to-disk) support.
3 *
4 * Copyright (c) 2003 Patrick Mochel
5 * Copyright (c) 2003 Open Source Development Lab
6 * Copyright (c) 2004 Pavel Machek <pavel@ucw.cz>
7 * Copyright (c) 2009 Rafael J. Wysocki, Novell Inc.
8 *
9 * This file is released under the GPLv2.
10 */
11
12 #include <linux/export.h>
13 #include <linux/suspend.h>
14 #include <linux/syscalls.h>
15 #include <linux/reboot.h>
16 #include <linux/string.h>
17 #include <linux/device.h>
18 #include <linux/async.h>
19 #include <linux/delay.h>
20 #include <linux/fs.h>
21 #include <linux/mount.h>
22 #include <linux/pm.h>
23 #include <linux/console.h>
24 #include <linux/cpu.h>
25 #include <linux/freezer.h>
26 #include <linux/gfp.h>
27 #include <linux/syscore_ops.h>
28 #include <scsi/scsi_scan.h>
29
30 #include "power.h"
31
32
33 static int nocompress;
34 static int noresume;
35 static int resume_wait;
36 static int resume_delay;
37 static char resume_file[256] = CONFIG_PM_STD_PARTITION;
38 dev_t swsusp_resume_device;
39 sector_t swsusp_resume_block;
40 int in_suspend __nosavedata;
41
42 enum {
43 HIBERNATION_INVALID,
44 HIBERNATION_PLATFORM,
45 HIBERNATION_SHUTDOWN,
46 HIBERNATION_REBOOT,
47 /* keep last */
48 __HIBERNATION_AFTER_LAST
49 };
50 #define HIBERNATION_MAX (__HIBERNATION_AFTER_LAST-1)
51 #define HIBERNATION_FIRST (HIBERNATION_INVALID + 1)
52
53 static int hibernation_mode = HIBERNATION_SHUTDOWN;
54
55 bool freezer_test_done;
56
57 static const struct platform_hibernation_ops *hibernation_ops;
58
59 /**
60 * hibernation_set_ops - Set the global hibernate operations.
61 * @ops: Hibernation operations to use in subsequent hibernation transitions.
62 */
63 void hibernation_set_ops(const struct platform_hibernation_ops *ops)
64 {
65 if (ops && !(ops->begin && ops->end && ops->pre_snapshot
66 && ops->prepare && ops->finish && ops->enter && ops->pre_restore
67 && ops->restore_cleanup && ops->leave)) {
68 WARN_ON(1);
69 return;
70 }
71 lock_system_sleep();
72 hibernation_ops = ops;
73 if (ops)
74 hibernation_mode = HIBERNATION_PLATFORM;
75 else if (hibernation_mode == HIBERNATION_PLATFORM)
76 hibernation_mode = HIBERNATION_SHUTDOWN;
77
78 unlock_system_sleep();
79 }
80
81 static bool entering_platform_hibernation;
82
83 bool system_entering_hibernation(void)
84 {
85 return entering_platform_hibernation;
86 }
87 EXPORT_SYMBOL(system_entering_hibernation);
88
89 #ifdef CONFIG_PM_DEBUG
90 static void hibernation_debug_sleep(void)
91 {
92 printk(KERN_INFO "hibernation debug: Waiting for 5 seconds.\n");
93 mdelay(5000);
94 }
95
96 static int hibernation_test(int level)
97 {
98 if (pm_test_level == level) {
99 hibernation_debug_sleep();
100 return 1;
101 }
102 return 0;
103 }
104 #else /* !CONFIG_PM_DEBUG */
105 static int hibernation_test(int level) { return 0; }
106 #endif /* !CONFIG_PM_DEBUG */
107
108 /**
109 * platform_begin - Call platform to start hibernation.
110 * @platform_mode: Whether or not to use the platform driver.
111 */
112 static int platform_begin(int platform_mode)
113 {
114 return (platform_mode && hibernation_ops) ?
115 hibernation_ops->begin() : 0;
116 }
117
118 /**
119 * platform_end - Call platform to finish transition to the working state.
120 * @platform_mode: Whether or not to use the platform driver.
121 */
122 static void platform_end(int platform_mode)
123 {
124 if (platform_mode && hibernation_ops)
125 hibernation_ops->end();
126 }
127
128 /**
129 * platform_pre_snapshot - Call platform to prepare the machine for hibernation.
130 * @platform_mode: Whether or not to use the platform driver.
131 *
132 * Use the platform driver to prepare the system for creating a hibernate image,
133 * if so configured, and return an error code if that fails.
134 */
135
136 static int platform_pre_snapshot(int platform_mode)
137 {
138 return (platform_mode && hibernation_ops) ?
139 hibernation_ops->pre_snapshot() : 0;
140 }
141
142 /**
143 * platform_leave - Call platform to prepare a transition to the working state.
144 * @platform_mode: Whether or not to use the platform driver.
145 *
146 * Use the platform driver prepare to prepare the machine for switching to the
147 * normal mode of operation.
148 *
149 * This routine is called on one CPU with interrupts disabled.
150 */
151 static void platform_leave(int platform_mode)
152 {
153 if (platform_mode && hibernation_ops)
154 hibernation_ops->leave();
155 }
156
157 /**
158 * platform_finish - Call platform to switch the system to the working state.
159 * @platform_mode: Whether or not to use the platform driver.
160 *
161 * Use the platform driver to switch the machine to the normal mode of
162 * operation.
163 *
164 * This routine must be called after platform_prepare().
165 */
166 static void platform_finish(int platform_mode)
167 {
168 if (platform_mode && hibernation_ops)
169 hibernation_ops->finish();
170 }
171
172 /**
173 * platform_pre_restore - Prepare for hibernate image restoration.
174 * @platform_mode: Whether or not to use the platform driver.
175 *
176 * Use the platform driver to prepare the system for resume from a hibernation
177 * image.
178 *
179 * If the restore fails after this function has been called,
180 * platform_restore_cleanup() must be called.
181 */
182 static int platform_pre_restore(int platform_mode)
183 {
184 return (platform_mode && hibernation_ops) ?
185 hibernation_ops->pre_restore() : 0;
186 }
187
188 /**
189 * platform_restore_cleanup - Switch to the working state after failing restore.
190 * @platform_mode: Whether or not to use the platform driver.
191 *
192 * Use the platform driver to switch the system to the normal mode of operation
193 * after a failing restore.
194 *
195 * If platform_pre_restore() has been called before the failing restore, this
196 * function must be called too, regardless of the result of
197 * platform_pre_restore().
198 */
199 static void platform_restore_cleanup(int platform_mode)
200 {
201 if (platform_mode && hibernation_ops)
202 hibernation_ops->restore_cleanup();
203 }
204
205 /**
206 * platform_recover - Recover from a failure to suspend devices.
207 * @platform_mode: Whether or not to use the platform driver.
208 */
209 static void platform_recover(int platform_mode)
210 {
211 if (platform_mode && hibernation_ops && hibernation_ops->recover)
212 hibernation_ops->recover();
213 }
214
215 /**
216 * swsusp_show_speed - Print time elapsed between two events during hibernation.
217 * @start: Starting event.
218 * @stop: Final event.
219 * @nr_pages: Number of memory pages processed between @start and @stop.
220 * @msg: Additional diagnostic message to print.
221 */
222 void swsusp_show_speed(struct timeval *start, struct timeval *stop,
223 unsigned nr_pages, char *msg)
224 {
225 s64 elapsed_centisecs64;
226 int centisecs;
227 int k;
228 int kps;
229
230 elapsed_centisecs64 = timeval_to_ns(stop) - timeval_to_ns(start);
231 do_div(elapsed_centisecs64, NSEC_PER_SEC / 100);
232 centisecs = elapsed_centisecs64;
233 if (centisecs == 0)
234 centisecs = 1; /* avoid div-by-zero */
235 k = nr_pages * (PAGE_SIZE / 1024);
236 kps = (k * 100) / centisecs;
237 printk(KERN_INFO "PM: %s %d kbytes in %d.%02d seconds (%d.%02d MB/s)\n",
238 msg, k,
239 centisecs / 100, centisecs % 100,
240 kps / 1000, (kps % 1000) / 10);
241 }
242
243 /**
244 * create_image - Create a hibernation image.
245 * @platform_mode: Whether or not to use the platform driver.
246 *
247 * Execute device drivers' "late" and "noirq" freeze callbacks, create a
248 * hibernation image and run the drivers' "noirq" and "early" thaw callbacks.
249 *
250 * Control reappears in this routine after the subsequent restore.
251 */
252 static int create_image(int platform_mode)
253 {
254 int error;
255
256 error = dpm_suspend_end(PMSG_FREEZE);
257 if (error) {
258 printk(KERN_ERR "PM: Some devices failed to power down, "
259 "aborting hibernation\n");
260 return error;
261 }
262
263 error = platform_pre_snapshot(platform_mode);
264 if (error || hibernation_test(TEST_PLATFORM))
265 goto Platform_finish;
266
267 error = disable_nonboot_cpus();
268 if (error || hibernation_test(TEST_CPUS))
269 goto Enable_cpus;
270
271 local_irq_disable();
272
273 error = syscore_suspend();
274 if (error) {
275 printk(KERN_ERR "PM: Some system devices failed to power down, "
276 "aborting hibernation\n");
277 goto Enable_irqs;
278 }
279
280 if (hibernation_test(TEST_CORE) || pm_wakeup_pending())
281 goto Power_up;
282
283 in_suspend = 1;
284 save_processor_state();
285 error = swsusp_arch_suspend();
286 if (error)
287 printk(KERN_ERR "PM: Error %d creating hibernation image\n",
288 error);
289 /* Restore control flow magically appears here */
290 restore_processor_state();
291 if (!in_suspend) {
292 events_check_enabled = false;
293 platform_leave(platform_mode);
294 }
295
296 Power_up:
297 syscore_resume();
298
299 Enable_irqs:
300 local_irq_enable();
301
302 Enable_cpus:
303 enable_nonboot_cpus();
304
305 Platform_finish:
306 platform_finish(platform_mode);
307
308 dpm_resume_start(in_suspend ?
309 (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE);
310
311 return error;
312 }
313
314 /**
315 * hibernation_snapshot - Quiesce devices and create a hibernation image.
316 * @platform_mode: If set, use platform driver to prepare for the transition.
317 *
318 * This routine must be called with pm_mutex held.
319 */
320 int hibernation_snapshot(int platform_mode)
321 {
322 pm_message_t msg;
323 int error;
324
325 error = platform_begin(platform_mode);
326 if (error)
327 goto Close;
328
329 /* Preallocate image memory before shutting down devices. */
330 error = hibernate_preallocate_memory();
331 if (error)
332 goto Close;
333
334 error = freeze_kernel_threads();
335 if (error)
336 goto Cleanup;
337
338 if (hibernation_test(TEST_FREEZER)) {
339
340 /*
341 * Indicate to the caller that we are returning due to a
342 * successful freezer test.
343 */
344 freezer_test_done = true;
345 goto Thaw;
346 }
347
348 error = dpm_prepare(PMSG_FREEZE);
349 if (error) {
350 dpm_complete(PMSG_RECOVER);
351 goto Thaw;
352 }
353
354 suspend_console();
355 pm_restrict_gfp_mask();
356
357 error = dpm_suspend(PMSG_FREEZE);
358
359 if (error || hibernation_test(TEST_DEVICES))
360 platform_recover(platform_mode);
361 else
362 error = create_image(platform_mode);
363
364 /*
365 * In the case that we call create_image() above, the control
366 * returns here (1) after the image has been created or the
367 * image creation has failed and (2) after a successful restore.
368 */
369
370 /* We may need to release the preallocated image pages here. */
371 if (error || !in_suspend)
372 swsusp_free();
373
374 msg = in_suspend ? (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE;
375 dpm_resume(msg);
376
377 if (error || !in_suspend)
378 pm_restore_gfp_mask();
379
380 resume_console();
381 dpm_complete(msg);
382
383 Close:
384 platform_end(platform_mode);
385 return error;
386
387 Thaw:
388 thaw_kernel_threads();
389 Cleanup:
390 swsusp_free();
391 goto Close;
392 }
393
394 /**
395 * resume_target_kernel - Restore system state from a hibernation image.
396 * @platform_mode: Whether or not to use the platform driver.
397 *
398 * Execute device drivers' "noirq" and "late" freeze callbacks, restore the
399 * contents of highmem that have not been restored yet from the image and run
400 * the low-level code that will restore the remaining contents of memory and
401 * switch to the just restored target kernel.
402 */
403 static int resume_target_kernel(bool platform_mode)
404 {
405 int error;
406
407 error = dpm_suspend_end(PMSG_QUIESCE);
408 if (error) {
409 printk(KERN_ERR "PM: Some devices failed to power down, "
410 "aborting resume\n");
411 return error;
412 }
413
414 error = platform_pre_restore(platform_mode);
415 if (error)
416 goto Cleanup;
417
418 error = disable_nonboot_cpus();
419 if (error)
420 goto Enable_cpus;
421
422 local_irq_disable();
423
424 error = syscore_suspend();
425 if (error)
426 goto Enable_irqs;
427
428 save_processor_state();
429 error = restore_highmem();
430 if (!error) {
431 error = swsusp_arch_resume();
432 /*
433 * The code below is only ever reached in case of a failure.
434 * Otherwise, execution continues at the place where
435 * swsusp_arch_suspend() was called.
436 */
437 BUG_ON(!error);
438 /*
439 * This call to restore_highmem() reverts the changes made by
440 * the previous one.
441 */
442 restore_highmem();
443 }
444 /*
445 * The only reason why swsusp_arch_resume() can fail is memory being
446 * very tight, so we have to free it as soon as we can to avoid
447 * subsequent failures.
448 */
449 swsusp_free();
450 restore_processor_state();
451 touch_softlockup_watchdog();
452
453 syscore_resume();
454
455 Enable_irqs:
456 local_irq_enable();
457
458 Enable_cpus:
459 enable_nonboot_cpus();
460
461 Cleanup:
462 platform_restore_cleanup(platform_mode);
463
464 dpm_resume_start(PMSG_RECOVER);
465
466 return error;
467 }
468
469 /**
470 * hibernation_restore - Quiesce devices and restore from a hibernation image.
471 * @platform_mode: If set, use platform driver to prepare for the transition.
472 *
473 * This routine must be called with pm_mutex held. If it is successful, control
474 * reappears in the restored target kernel in hibernation_snapshot().
475 */
476 int hibernation_restore(int platform_mode)
477 {
478 int error;
479
480 pm_prepare_console();
481 suspend_console();
482 pm_restrict_gfp_mask();
483 error = dpm_suspend_start(PMSG_QUIESCE);
484 if (!error) {
485 error = resume_target_kernel(platform_mode);
486 dpm_resume_end(PMSG_RECOVER);
487 }
488 pm_restore_gfp_mask();
489 resume_console();
490 pm_restore_console();
491 return error;
492 }
493
494 /**
495 * hibernation_platform_enter - Power off the system using the platform driver.
496 */
497 int hibernation_platform_enter(void)
498 {
499 int error;
500
501 if (!hibernation_ops)
502 return -ENOSYS;
503
504 /*
505 * We have cancelled the power transition by running
506 * hibernation_ops->finish() before saving the image, so we should let
507 * the firmware know that we're going to enter the sleep state after all
508 */
509 error = hibernation_ops->begin();
510 if (error)
511 goto Close;
512
513 entering_platform_hibernation = true;
514 suspend_console();
515 error = dpm_suspend_start(PMSG_HIBERNATE);
516 if (error) {
517 if (hibernation_ops->recover)
518 hibernation_ops->recover();
519 goto Resume_devices;
520 }
521
522 error = dpm_suspend_end(PMSG_HIBERNATE);
523 if (error)
524 goto Resume_devices;
525
526 error = hibernation_ops->prepare();
527 if (error)
528 goto Platform_finish;
529
530 error = disable_nonboot_cpus();
531 if (error)
532 goto Platform_finish;
533
534 local_irq_disable();
535 syscore_suspend();
536 if (pm_wakeup_pending()) {
537 error = -EAGAIN;
538 goto Power_up;
539 }
540
541 hibernation_ops->enter();
542 /* We should never get here */
543 while (1);
544
545 Power_up:
546 syscore_resume();
547 local_irq_enable();
548 enable_nonboot_cpus();
549
550 Platform_finish:
551 hibernation_ops->finish();
552
553 dpm_resume_start(PMSG_RESTORE);
554
555 Resume_devices:
556 entering_platform_hibernation = false;
557 dpm_resume_end(PMSG_RESTORE);
558 resume_console();
559
560 Close:
561 hibernation_ops->end();
562
563 return error;
564 }
565
566 /**
567 * power_down - Shut the machine down for hibernation.
568 *
569 * Use the platform driver, if configured, to put the system into the sleep
570 * state corresponding to hibernation, or try to power it off or reboot,
571 * depending on the value of hibernation_mode.
572 */
573 static void power_down(void)
574 {
575 switch (hibernation_mode) {
576 case HIBERNATION_REBOOT:
577 kernel_restart(NULL);
578 break;
579 case HIBERNATION_PLATFORM:
580 hibernation_platform_enter();
581 case HIBERNATION_SHUTDOWN:
582 kernel_power_off();
583 break;
584 }
585 kernel_halt();
586 /*
587 * Valid image is on the disk, if we continue we risk serious data
588 * corruption after resume.
589 */
590 printk(KERN_CRIT "PM: Please power down manually\n");
591 while(1);
592 }
593
594 /**
595 * hibernate - Carry out system hibernation, including saving the image.
596 */
597 int hibernate(void)
598 {
599 int error;
600
601 lock_system_sleep();
602 /* The snapshot device should not be opened while we're running */
603 if (!atomic_add_unless(&snapshot_device_available, -1, 0)) {
604 error = -EBUSY;
605 goto Unlock;
606 }
607
608 pm_prepare_console();
609 error = pm_notifier_call_chain(PM_HIBERNATION_PREPARE);
610 if (error)
611 goto Exit;
612
613 /* Allocate memory management structures */
614 error = create_basic_memory_bitmaps();
615 if (error)
616 goto Exit;
617
618 printk(KERN_INFO "PM: Syncing filesystems ... ");
619 sys_sync();
620 printk("done.\n");
621
622 error = freeze_processes();
623 if (error)
624 goto Free_bitmaps;
625
626 error = hibernation_snapshot(hibernation_mode == HIBERNATION_PLATFORM);
627 if (error || freezer_test_done)
628 goto Thaw;
629
630 if (in_suspend) {
631 unsigned int flags = 0;
632
633 if (hibernation_mode == HIBERNATION_PLATFORM)
634 flags |= SF_PLATFORM_MODE;
635 if (nocompress)
636 flags |= SF_NOCOMPRESS_MODE;
637 else
638 flags |= SF_CRC32_MODE;
639
640 pr_debug("PM: writing image.\n");
641 error = swsusp_write(flags);
642 swsusp_free();
643 if (!error)
644 power_down();
645 in_suspend = 0;
646 pm_restore_gfp_mask();
647 } else {
648 pr_debug("PM: Image restored successfully.\n");
649 }
650
651 Thaw:
652 thaw_processes();
653
654 /* Don't bother checking whether freezer_test_done is true */
655 freezer_test_done = false;
656
657 Free_bitmaps:
658 free_basic_memory_bitmaps();
659 Exit:
660 pm_notifier_call_chain(PM_POST_HIBERNATION);
661 pm_restore_console();
662 atomic_inc(&snapshot_device_available);
663 Unlock:
664 unlock_system_sleep();
665 return error;
666 }
667
668
669 /**
670 * software_resume - Resume from a saved hibernation image.
671 *
672 * This routine is called as a late initcall, when all devices have been
673 * discovered and initialized already.
674 *
675 * The image reading code is called to see if there is a hibernation image
676 * available for reading. If that is the case, devices are quiesced and the
677 * contents of memory is restored from the saved image.
678 *
679 * If this is successful, control reappears in the restored target kernel in
680 * hibernation_snaphot() which returns to hibernate(). Otherwise, the routine
681 * attempts to recover gracefully and make the kernel return to the normal mode
682 * of operation.
683 */
684 static int software_resume(void)
685 {
686 int error;
687 unsigned int flags;
688
689 /*
690 * If the user said "noresume".. bail out early.
691 */
692 if (noresume)
693 return 0;
694
695 /*
696 * name_to_dev_t() below takes a sysfs buffer mutex when sysfs
697 * is configured into the kernel. Since the regular hibernate
698 * trigger path is via sysfs which takes a buffer mutex before
699 * calling hibernate functions (which take pm_mutex) this can
700 * cause lockdep to complain about a possible ABBA deadlock
701 * which cannot happen since we're in the boot code here and
702 * sysfs can't be invoked yet. Therefore, we use a subclass
703 * here to avoid lockdep complaining.
704 */
705 mutex_lock_nested(&pm_mutex, SINGLE_DEPTH_NESTING);
706
707 if (swsusp_resume_device)
708 goto Check_image;
709
710 if (!strlen(resume_file)) {
711 error = -ENOENT;
712 goto Unlock;
713 }
714
715 pr_debug("PM: Checking hibernation image partition %s\n", resume_file);
716
717 if (resume_delay) {
718 printk(KERN_INFO "Waiting %dsec before reading resume device...\n",
719 resume_delay);
720 ssleep(resume_delay);
721 }
722
723 /* Check if the device is there */
724 swsusp_resume_device = name_to_dev_t(resume_file);
725 if (!swsusp_resume_device) {
726 /*
727 * Some device discovery might still be in progress; we need
728 * to wait for this to finish.
729 */
730 wait_for_device_probe();
731
732 if (resume_wait) {
733 while ((swsusp_resume_device = name_to_dev_t(resume_file)) == 0)
734 msleep(10);
735 async_synchronize_full();
736 }
737
738 /*
739 * We can't depend on SCSI devices being available after loading
740 * one of their modules until scsi_complete_async_scans() is
741 * called and the resume device usually is a SCSI one.
742 */
743 scsi_complete_async_scans();
744
745 swsusp_resume_device = name_to_dev_t(resume_file);
746 if (!swsusp_resume_device) {
747 error = -ENODEV;
748 goto Unlock;
749 }
750 }
751
752 Check_image:
753 pr_debug("PM: Hibernation image partition %d:%d present\n",
754 MAJOR(swsusp_resume_device), MINOR(swsusp_resume_device));
755
756 pr_debug("PM: Looking for hibernation image.\n");
757 error = swsusp_check();
758 if (error)
759 goto Unlock;
760
761 /* The snapshot device should not be opened while we're running */
762 if (!atomic_add_unless(&snapshot_device_available, -1, 0)) {
763 error = -EBUSY;
764 swsusp_close(FMODE_READ);
765 goto Unlock;
766 }
767
768 pm_prepare_console();
769 error = pm_notifier_call_chain(PM_RESTORE_PREPARE);
770 if (error)
771 goto close_finish;
772
773 error = create_basic_memory_bitmaps();
774 if (error)
775 goto close_finish;
776
777 pr_debug("PM: Preparing processes for restore.\n");
778 error = freeze_processes();
779 if (error) {
780 swsusp_close(FMODE_READ);
781 goto Done;
782 }
783
784 pr_debug("PM: Loading hibernation image.\n");
785
786 error = swsusp_read(&flags);
787 swsusp_close(FMODE_READ);
788 if (!error)
789 hibernation_restore(flags & SF_PLATFORM_MODE);
790
791 printk(KERN_ERR "PM: Failed to load hibernation image, recovering.\n");
792 swsusp_free();
793 thaw_processes();
794 Done:
795 free_basic_memory_bitmaps();
796 Finish:
797 pm_notifier_call_chain(PM_POST_RESTORE);
798 pm_restore_console();
799 atomic_inc(&snapshot_device_available);
800 /* For success case, the suspend path will release the lock */
801 Unlock:
802 mutex_unlock(&pm_mutex);
803 pr_debug("PM: Hibernation image not present or could not be loaded.\n");
804 return error;
805 close_finish:
806 swsusp_close(FMODE_READ);
807 goto Finish;
808 }
809
810 late_initcall(software_resume);
811
812
813 static const char * const hibernation_modes[] = {
814 [HIBERNATION_PLATFORM] = "platform",
815 [HIBERNATION_SHUTDOWN] = "shutdown",
816 [HIBERNATION_REBOOT] = "reboot",
817 };
818
819 /*
820 * /sys/power/disk - Control hibernation mode.
821 *
822 * Hibernation can be handled in several ways. There are a few different ways
823 * to put the system into the sleep state: using the platform driver (e.g. ACPI
824 * or other hibernation_ops), powering it off or rebooting it (for testing
825 * mostly).
826 *
827 * The sysfs file /sys/power/disk provides an interface for selecting the
828 * hibernation mode to use. Reading from this file causes the available modes
829 * to be printed. There are 3 modes that can be supported:
830 *
831 * 'platform'
832 * 'shutdown'
833 * 'reboot'
834 *
835 * If a platform hibernation driver is in use, 'platform' will be supported
836 * and will be used by default. Otherwise, 'shutdown' will be used by default.
837 * The selected option (i.e. the one corresponding to the current value of
838 * hibernation_mode) is enclosed by a square bracket.
839 *
840 * To select a given hibernation mode it is necessary to write the mode's
841 * string representation (as returned by reading from /sys/power/disk) back
842 * into /sys/power/disk.
843 */
844
845 static ssize_t disk_show(struct kobject *kobj, struct kobj_attribute *attr,
846 char *buf)
847 {
848 int i;
849 char *start = buf;
850
851 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
852 if (!hibernation_modes[i])
853 continue;
854 switch (i) {
855 case HIBERNATION_SHUTDOWN:
856 case HIBERNATION_REBOOT:
857 break;
858 case HIBERNATION_PLATFORM:
859 if (hibernation_ops)
860 break;
861 /* not a valid mode, continue with loop */
862 continue;
863 }
864 if (i == hibernation_mode)
865 buf += sprintf(buf, "[%s] ", hibernation_modes[i]);
866 else
867 buf += sprintf(buf, "%s ", hibernation_modes[i]);
868 }
869 buf += sprintf(buf, "\n");
870 return buf-start;
871 }
872
873 static ssize_t disk_store(struct kobject *kobj, struct kobj_attribute *attr,
874 const char *buf, size_t n)
875 {
876 int error = 0;
877 int i;
878 int len;
879 char *p;
880 int mode = HIBERNATION_INVALID;
881
882 p = memchr(buf, '\n', n);
883 len = p ? p - buf : n;
884
885 lock_system_sleep();
886 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
887 if (len == strlen(hibernation_modes[i])
888 && !strncmp(buf, hibernation_modes[i], len)) {
889 mode = i;
890 break;
891 }
892 }
893 if (mode != HIBERNATION_INVALID) {
894 switch (mode) {
895 case HIBERNATION_SHUTDOWN:
896 case HIBERNATION_REBOOT:
897 hibernation_mode = mode;
898 break;
899 case HIBERNATION_PLATFORM:
900 if (hibernation_ops)
901 hibernation_mode = mode;
902 else
903 error = -EINVAL;
904 }
905 } else
906 error = -EINVAL;
907
908 if (!error)
909 pr_debug("PM: Hibernation mode set to '%s'\n",
910 hibernation_modes[mode]);
911 unlock_system_sleep();
912 return error ? error : n;
913 }
914
915 power_attr(disk);
916
917 static ssize_t resume_show(struct kobject *kobj, struct kobj_attribute *attr,
918 char *buf)
919 {
920 return sprintf(buf,"%d:%d\n", MAJOR(swsusp_resume_device),
921 MINOR(swsusp_resume_device));
922 }
923
924 static ssize_t resume_store(struct kobject *kobj, struct kobj_attribute *attr,
925 const char *buf, size_t n)
926 {
927 unsigned int maj, min;
928 dev_t res;
929 int ret = -EINVAL;
930
931 if (sscanf(buf, "%u:%u", &maj, &min) != 2)
932 goto out;
933
934 res = MKDEV(maj,min);
935 if (maj != MAJOR(res) || min != MINOR(res))
936 goto out;
937
938 lock_system_sleep();
939 swsusp_resume_device = res;
940 unlock_system_sleep();
941 printk(KERN_INFO "PM: Starting manual resume from disk\n");
942 noresume = 0;
943 software_resume();
944 ret = n;
945 out:
946 return ret;
947 }
948
949 power_attr(resume);
950
951 static ssize_t image_size_show(struct kobject *kobj, struct kobj_attribute *attr,
952 char *buf)
953 {
954 return sprintf(buf, "%lu\n", image_size);
955 }
956
957 static ssize_t image_size_store(struct kobject *kobj, struct kobj_attribute *attr,
958 const char *buf, size_t n)
959 {
960 unsigned long size;
961
962 if (sscanf(buf, "%lu", &size) == 1) {
963 image_size = size;
964 return n;
965 }
966
967 return -EINVAL;
968 }
969
970 power_attr(image_size);
971
972 static ssize_t reserved_size_show(struct kobject *kobj,
973 struct kobj_attribute *attr, char *buf)
974 {
975 return sprintf(buf, "%lu\n", reserved_size);
976 }
977
978 static ssize_t reserved_size_store(struct kobject *kobj,
979 struct kobj_attribute *attr,
980 const char *buf, size_t n)
981 {
982 unsigned long size;
983
984 if (sscanf(buf, "%lu", &size) == 1) {
985 reserved_size = size;
986 return n;
987 }
988
989 return -EINVAL;
990 }
991
992 power_attr(reserved_size);
993
994 static struct attribute * g[] = {
995 &disk_attr.attr,
996 &resume_attr.attr,
997 &image_size_attr.attr,
998 &reserved_size_attr.attr,
999 NULL,
1000 };
1001
1002
1003 static struct attribute_group attr_group = {
1004 .attrs = g,
1005 };
1006
1007
1008 static int __init pm_disk_init(void)
1009 {
1010 return sysfs_create_group(power_kobj, &attr_group);
1011 }
1012
1013 core_initcall(pm_disk_init);
1014
1015
1016 static int __init resume_setup(char *str)
1017 {
1018 if (noresume)
1019 return 1;
1020
1021 strncpy( resume_file, str, 255 );
1022 return 1;
1023 }
1024
1025 static int __init resume_offset_setup(char *str)
1026 {
1027 unsigned long long offset;
1028
1029 if (noresume)
1030 return 1;
1031
1032 if (sscanf(str, "%llu", &offset) == 1)
1033 swsusp_resume_block = offset;
1034
1035 return 1;
1036 }
1037
1038 static int __init hibernate_setup(char *str)
1039 {
1040 if (!strncmp(str, "noresume", 8))
1041 noresume = 1;
1042 else if (!strncmp(str, "nocompress", 10))
1043 nocompress = 1;
1044 return 1;
1045 }
1046
1047 static int __init noresume_setup(char *str)
1048 {
1049 noresume = 1;
1050 return 1;
1051 }
1052
1053 static int __init resumewait_setup(char *str)
1054 {
1055 resume_wait = 1;
1056 return 1;
1057 }
1058
1059 static int __init resumedelay_setup(char *str)
1060 {
1061 resume_delay = simple_strtoul(str, NULL, 0);
1062 return 1;
1063 }
1064
1065 __setup("noresume", noresume_setup);
1066 __setup("resume_offset=", resume_offset_setup);
1067 __setup("resume=", resume_setup);
1068 __setup("hibernate=", hibernate_setup);
1069 __setup("resumewait", resumewait_setup);
1070 __setup("resumedelay=", resumedelay_setup);