Merge branch 'syscore' into for-linus
[linux/fpc-iii.git] / kernel / power / hibernate.c
blob95a2ac40f48ca558ce0851c8c2391ba56b592feb
1 /*
2 * kernel/power/hibernate.c - Hibernation (a.k.a suspend-to-disk) support.
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.
9 * This file is released under the GPLv2.
12 #include <linux/suspend.h>
13 #include <linux/syscalls.h>
14 #include <linux/reboot.h>
15 #include <linux/string.h>
16 #include <linux/device.h>
17 #include <linux/kmod.h>
18 #include <linux/delay.h>
19 #include <linux/fs.h>
20 #include <linux/mount.h>
21 #include <linux/pm.h>
22 #include <linux/console.h>
23 #include <linux/cpu.h>
24 #include <linux/freezer.h>
25 #include <linux/gfp.h>
26 #include <linux/syscore_ops.h>
27 #include <scsi/scsi_scan.h>
28 #include <asm/suspend.h>
30 #include "power.h"
33 static int nocompress = 0;
34 static int noresume = 0;
35 static char resume_file[256] = CONFIG_PM_STD_PARTITION;
36 dev_t swsusp_resume_device;
37 sector_t swsusp_resume_block;
38 int in_suspend __nosavedata = 0;
40 enum {
41 HIBERNATION_INVALID,
42 HIBERNATION_PLATFORM,
43 HIBERNATION_TEST,
44 HIBERNATION_TESTPROC,
45 HIBERNATION_SHUTDOWN,
46 HIBERNATION_REBOOT,
47 /* keep last */
48 __HIBERNATION_AFTER_LAST
50 #define HIBERNATION_MAX (__HIBERNATION_AFTER_LAST-1)
51 #define HIBERNATION_FIRST (HIBERNATION_INVALID + 1)
53 static int hibernation_mode = HIBERNATION_SHUTDOWN;
55 static const struct platform_hibernation_ops *hibernation_ops;
57 /**
58 * hibernation_set_ops - set the global hibernate operations
59 * @ops: the hibernation operations to use in subsequent hibernation transitions
62 void hibernation_set_ops(const struct platform_hibernation_ops *ops)
64 if (ops && !(ops->begin && ops->end && ops->pre_snapshot
65 && ops->prepare && ops->finish && ops->enter && ops->pre_restore
66 && ops->restore_cleanup && ops->leave)) {
67 WARN_ON(1);
68 return;
70 mutex_lock(&pm_mutex);
71 hibernation_ops = ops;
72 if (ops)
73 hibernation_mode = HIBERNATION_PLATFORM;
74 else if (hibernation_mode == HIBERNATION_PLATFORM)
75 hibernation_mode = HIBERNATION_SHUTDOWN;
77 mutex_unlock(&pm_mutex);
80 static bool entering_platform_hibernation;
82 bool system_entering_hibernation(void)
84 return entering_platform_hibernation;
86 EXPORT_SYMBOL(system_entering_hibernation);
88 #ifdef CONFIG_PM_DEBUG
89 static void hibernation_debug_sleep(void)
91 printk(KERN_INFO "hibernation debug: Waiting for 5 seconds.\n");
92 mdelay(5000);
95 static int hibernation_testmode(int mode)
97 if (hibernation_mode == mode) {
98 hibernation_debug_sleep();
99 return 1;
101 return 0;
104 static int hibernation_test(int level)
106 if (pm_test_level == level) {
107 hibernation_debug_sleep();
108 return 1;
110 return 0;
112 #else /* !CONFIG_PM_DEBUG */
113 static int hibernation_testmode(int mode) { return 0; }
114 static int hibernation_test(int level) { return 0; }
115 #endif /* !CONFIG_PM_DEBUG */
118 * platform_begin - tell the platform driver that we're starting
119 * hibernation
122 static int platform_begin(int platform_mode)
124 return (platform_mode && hibernation_ops) ?
125 hibernation_ops->begin() : 0;
129 * platform_end - tell the platform driver that we've entered the
130 * working state
133 static void platform_end(int platform_mode)
135 if (platform_mode && hibernation_ops)
136 hibernation_ops->end();
140 * platform_pre_snapshot - prepare the machine for hibernation using the
141 * platform driver if so configured and return an error code if it fails
144 static int platform_pre_snapshot(int platform_mode)
146 return (platform_mode && hibernation_ops) ?
147 hibernation_ops->pre_snapshot() : 0;
151 * platform_leave - prepare the machine for switching to the normal mode
152 * of operation using the platform driver (called with interrupts disabled)
155 static void platform_leave(int platform_mode)
157 if (platform_mode && hibernation_ops)
158 hibernation_ops->leave();
162 * platform_finish - switch the machine to the normal mode of operation
163 * using the platform driver (must be called after platform_prepare())
166 static void platform_finish(int platform_mode)
168 if (platform_mode && hibernation_ops)
169 hibernation_ops->finish();
173 * platform_pre_restore - prepare the platform for the restoration from a
174 * hibernation image. If the restore fails after this function has been
175 * called, platform_restore_cleanup() must be called.
178 static int platform_pre_restore(int platform_mode)
180 return (platform_mode && hibernation_ops) ?
181 hibernation_ops->pre_restore() : 0;
185 * platform_restore_cleanup - switch the platform to the normal mode of
186 * operation after a failing restore. If platform_pre_restore() has been
187 * called before the failing restore, this function must be called too,
188 * regardless of the result of platform_pre_restore().
191 static void platform_restore_cleanup(int platform_mode)
193 if (platform_mode && hibernation_ops)
194 hibernation_ops->restore_cleanup();
198 * platform_recover - recover the platform from a failure to suspend
199 * devices.
202 static void platform_recover(int platform_mode)
204 if (platform_mode && hibernation_ops && hibernation_ops->recover)
205 hibernation_ops->recover();
209 * swsusp_show_speed - print the time elapsed between two events.
210 * @start: Starting event.
211 * @stop: Final event.
212 * @nr_pages - number of pages processed between @start and @stop
213 * @msg - introductory message to print
216 void swsusp_show_speed(struct timeval *start, struct timeval *stop,
217 unsigned nr_pages, char *msg)
219 s64 elapsed_centisecs64;
220 int centisecs;
221 int k;
222 int kps;
224 elapsed_centisecs64 = timeval_to_ns(stop) - timeval_to_ns(start);
225 do_div(elapsed_centisecs64, NSEC_PER_SEC / 100);
226 centisecs = elapsed_centisecs64;
227 if (centisecs == 0)
228 centisecs = 1; /* avoid div-by-zero */
229 k = nr_pages * (PAGE_SIZE / 1024);
230 kps = (k * 100) / centisecs;
231 printk(KERN_INFO "PM: %s %d kbytes in %d.%02d seconds (%d.%02d MB/s)\n",
232 msg, k,
233 centisecs / 100, centisecs % 100,
234 kps / 1000, (kps % 1000) / 10);
238 * create_image - freeze devices that need to be frozen with interrupts
239 * off, create the hibernation image and thaw those devices. Control
240 * reappears in this routine after a restore.
243 static int create_image(int platform_mode)
245 int error;
247 error = arch_prepare_suspend();
248 if (error)
249 return error;
251 /* At this point, dpm_suspend_start() has been called, but *not*
252 * dpm_suspend_noirq(). We *must* call dpm_suspend_noirq() now.
253 * Otherwise, drivers for some devices (e.g. interrupt controllers)
254 * become desynchronized with the actual state of the hardware
255 * at resume time, and evil weirdness ensues.
257 error = dpm_suspend_noirq(PMSG_FREEZE);
258 if (error) {
259 printk(KERN_ERR "PM: Some devices failed to power down, "
260 "aborting hibernation\n");
261 return error;
264 error = platform_pre_snapshot(platform_mode);
265 if (error || hibernation_test(TEST_PLATFORM))
266 goto Platform_finish;
268 error = disable_nonboot_cpus();
269 if (error || hibernation_test(TEST_CPUS)
270 || hibernation_testmode(HIBERNATION_TEST))
271 goto Enable_cpus;
273 local_irq_disable();
275 error = syscore_suspend();
276 if (error) {
277 printk(KERN_ERR "PM: Some system devices failed to power down, "
278 "aborting hibernation\n");
279 goto Enable_irqs;
282 if (hibernation_test(TEST_CORE) || pm_wakeup_pending())
283 goto Power_up;
285 in_suspend = 1;
286 save_processor_state();
287 error = swsusp_arch_suspend();
288 if (error)
289 printk(KERN_ERR "PM: Error %d creating hibernation image\n",
290 error);
291 /* Restore control flow magically appears here */
292 restore_processor_state();
293 if (!in_suspend) {
294 events_check_enabled = false;
295 platform_leave(platform_mode);
298 Power_up:
299 syscore_resume();
300 /* NOTE: dpm_resume_noirq() is just a resume() for devices
301 * that suspended with irqs off ... no overall powerup.
304 Enable_irqs:
305 local_irq_enable();
307 Enable_cpus:
308 enable_nonboot_cpus();
310 Platform_finish:
311 platform_finish(platform_mode);
313 dpm_resume_noirq(in_suspend ?
314 (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE);
316 return error;
320 * hibernation_snapshot - quiesce devices and create the hibernation
321 * snapshot image.
322 * @platform_mode - if set, use the platform driver, if available, to
323 * prepare the platform firmware for the power transition.
325 * Must be called with pm_mutex held
328 int hibernation_snapshot(int platform_mode)
330 int error;
332 error = platform_begin(platform_mode);
333 if (error)
334 goto Close;
336 /* Preallocate image memory before shutting down devices. */
337 error = hibernate_preallocate_memory();
338 if (error)
339 goto Close;
341 suspend_console();
342 pm_restrict_gfp_mask();
343 error = dpm_suspend_start(PMSG_FREEZE);
344 if (error)
345 goto Recover_platform;
347 if (hibernation_test(TEST_DEVICES))
348 goto Recover_platform;
350 error = create_image(platform_mode);
352 * Control returns here (1) after the image has been created or the
353 * image creation has failed and (2) after a successful restore.
356 Resume_devices:
357 /* We may need to release the preallocated image pages here. */
358 if (error || !in_suspend)
359 swsusp_free();
361 dpm_resume_end(in_suspend ?
362 (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE);
364 if (error || !in_suspend)
365 pm_restore_gfp_mask();
367 resume_console();
368 Close:
369 platform_end(platform_mode);
370 return error;
372 Recover_platform:
373 platform_recover(platform_mode);
374 goto Resume_devices;
378 * resume_target_kernel - prepare devices that need to be suspended with
379 * interrupts off, restore the contents of highmem that have not been
380 * restored yet from the image and run the low level code that will restore
381 * the remaining contents of memory and switch to the just restored target
382 * kernel.
385 static int resume_target_kernel(bool platform_mode)
387 int error;
389 error = dpm_suspend_noirq(PMSG_QUIESCE);
390 if (error) {
391 printk(KERN_ERR "PM: Some devices failed to power down, "
392 "aborting resume\n");
393 return error;
396 error = platform_pre_restore(platform_mode);
397 if (error)
398 goto Cleanup;
400 error = disable_nonboot_cpus();
401 if (error)
402 goto Enable_cpus;
404 local_irq_disable();
406 error = syscore_suspend();
407 if (error)
408 goto Enable_irqs;
410 /* We'll ignore saved state, but this gets preempt count (etc) right */
411 save_processor_state();
412 error = restore_highmem();
413 if (!error) {
414 error = swsusp_arch_resume();
416 * The code below is only ever reached in case of a failure.
417 * Otherwise execution continues at place where
418 * swsusp_arch_suspend() was called
420 BUG_ON(!error);
421 /* This call to restore_highmem() undos the previous one */
422 restore_highmem();
425 * The only reason why swsusp_arch_resume() can fail is memory being
426 * very tight, so we have to free it as soon as we can to avoid
427 * subsequent failures
429 swsusp_free();
430 restore_processor_state();
431 touch_softlockup_watchdog();
433 syscore_resume();
435 Enable_irqs:
436 local_irq_enable();
438 Enable_cpus:
439 enable_nonboot_cpus();
441 Cleanup:
442 platform_restore_cleanup(platform_mode);
444 dpm_resume_noirq(PMSG_RECOVER);
446 return error;
450 * hibernation_restore - quiesce devices and restore the hibernation
451 * snapshot image. If successful, control returns in hibernation_snaphot()
452 * @platform_mode - if set, use the platform driver, if available, to
453 * prepare the platform firmware for the transition.
455 * Must be called with pm_mutex held
458 int hibernation_restore(int platform_mode)
460 int error;
462 pm_prepare_console();
463 suspend_console();
464 pm_restrict_gfp_mask();
465 error = dpm_suspend_start(PMSG_QUIESCE);
466 if (!error) {
467 error = resume_target_kernel(platform_mode);
468 dpm_resume_end(PMSG_RECOVER);
470 pm_restore_gfp_mask();
471 resume_console();
472 pm_restore_console();
473 return error;
477 * hibernation_platform_enter - enter the hibernation state using the
478 * platform driver (if available)
481 int hibernation_platform_enter(void)
483 int error;
485 if (!hibernation_ops)
486 return -ENOSYS;
489 * We have cancelled the power transition by running
490 * hibernation_ops->finish() before saving the image, so we should let
491 * the firmware know that we're going to enter the sleep state after all
493 error = hibernation_ops->begin();
494 if (error)
495 goto Close;
497 entering_platform_hibernation = true;
498 suspend_console();
499 error = dpm_suspend_start(PMSG_HIBERNATE);
500 if (error) {
501 if (hibernation_ops->recover)
502 hibernation_ops->recover();
503 goto Resume_devices;
506 error = dpm_suspend_noirq(PMSG_HIBERNATE);
507 if (error)
508 goto Resume_devices;
510 error = hibernation_ops->prepare();
511 if (error)
512 goto Platform_finish;
514 error = disable_nonboot_cpus();
515 if (error)
516 goto Platform_finish;
518 local_irq_disable();
519 syscore_suspend();
520 if (pm_wakeup_pending()) {
521 error = -EAGAIN;
522 goto Power_up;
525 hibernation_ops->enter();
526 /* We should never get here */
527 while (1);
529 Power_up:
530 syscore_resume();
531 local_irq_enable();
532 enable_nonboot_cpus();
534 Platform_finish:
535 hibernation_ops->finish();
537 dpm_resume_noirq(PMSG_RESTORE);
539 Resume_devices:
540 entering_platform_hibernation = false;
541 dpm_resume_end(PMSG_RESTORE);
542 resume_console();
544 Close:
545 hibernation_ops->end();
547 return error;
551 * power_down - Shut the machine down for hibernation.
553 * Use the platform driver, if configured so; otherwise try
554 * to power off or reboot.
557 static void power_down(void)
559 switch (hibernation_mode) {
560 case HIBERNATION_TEST:
561 case HIBERNATION_TESTPROC:
562 break;
563 case HIBERNATION_REBOOT:
564 kernel_restart(NULL);
565 break;
566 case HIBERNATION_PLATFORM:
567 hibernation_platform_enter();
568 case HIBERNATION_SHUTDOWN:
569 kernel_power_off();
570 break;
572 kernel_halt();
574 * Valid image is on the disk, if we continue we risk serious data
575 * corruption after resume.
577 printk(KERN_CRIT "PM: Please power down manually\n");
578 while(1);
581 static int prepare_processes(void)
583 int error = 0;
585 if (freeze_processes()) {
586 error = -EBUSY;
587 thaw_processes();
589 return error;
593 * hibernate - The granpappy of the built-in hibernation management
596 int hibernate(void)
598 int error;
600 mutex_lock(&pm_mutex);
601 /* The snapshot device should not be opened while we're running */
602 if (!atomic_add_unless(&snapshot_device_available, -1, 0)) {
603 error = -EBUSY;
604 goto Unlock;
607 pm_prepare_console();
608 error = pm_notifier_call_chain(PM_HIBERNATION_PREPARE);
609 if (error)
610 goto Exit;
612 error = usermodehelper_disable();
613 if (error)
614 goto Exit;
616 /* Allocate memory management structures */
617 error = create_basic_memory_bitmaps();
618 if (error)
619 goto Exit;
621 printk(KERN_INFO "PM: Syncing filesystems ... ");
622 sys_sync();
623 printk("done.\n");
625 error = prepare_processes();
626 if (error)
627 goto Finish;
629 if (hibernation_test(TEST_FREEZER))
630 goto Thaw;
632 if (hibernation_testmode(HIBERNATION_TESTPROC))
633 goto Thaw;
635 error = hibernation_snapshot(hibernation_mode == HIBERNATION_PLATFORM);
636 if (error)
637 goto Thaw;
639 if (in_suspend) {
640 unsigned int flags = 0;
642 if (hibernation_mode == HIBERNATION_PLATFORM)
643 flags |= SF_PLATFORM_MODE;
644 if (nocompress)
645 flags |= SF_NOCOMPRESS_MODE;
646 pr_debug("PM: writing image.\n");
647 error = swsusp_write(flags);
648 swsusp_free();
649 if (!error)
650 power_down();
651 in_suspend = 0;
652 pm_restore_gfp_mask();
653 } else {
654 pr_debug("PM: Image restored successfully.\n");
657 Thaw:
658 thaw_processes();
659 Finish:
660 free_basic_memory_bitmaps();
661 usermodehelper_enable();
662 Exit:
663 pm_notifier_call_chain(PM_POST_HIBERNATION);
664 pm_restore_console();
665 atomic_inc(&snapshot_device_available);
666 Unlock:
667 mutex_unlock(&pm_mutex);
668 return error;
673 * software_resume - Resume from a saved image.
675 * Called as a late_initcall (so all devices are discovered and
676 * initialized), we call swsusp to see if we have a saved image or not.
677 * If so, we quiesce devices, the restore the saved image. We will
678 * return above (in hibernate() ) if everything goes well.
679 * Otherwise, we fail gracefully and return to the normally
680 * scheduled program.
684 static int software_resume(void)
686 int error;
687 unsigned int flags;
690 * If the user said "noresume".. bail out early.
692 if (noresume)
693 return 0;
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.
705 mutex_lock_nested(&pm_mutex, SINGLE_DEPTH_NESTING);
707 if (swsusp_resume_device)
708 goto Check_image;
710 if (!strlen(resume_file)) {
711 error = -ENOENT;
712 goto Unlock;
715 pr_debug("PM: Checking hibernation image partition %s\n", resume_file);
717 /* Check if the device is there */
718 swsusp_resume_device = name_to_dev_t(resume_file);
719 if (!swsusp_resume_device) {
721 * Some device discovery might still be in progress; we need
722 * to wait for this to finish.
724 wait_for_device_probe();
726 * We can't depend on SCSI devices being available after loading
727 * one of their modules until scsi_complete_async_scans() is
728 * called and the resume device usually is a SCSI one.
730 scsi_complete_async_scans();
732 swsusp_resume_device = name_to_dev_t(resume_file);
733 if (!swsusp_resume_device) {
734 error = -ENODEV;
735 goto Unlock;
739 Check_image:
740 pr_debug("PM: Hibernation image partition %d:%d present\n",
741 MAJOR(swsusp_resume_device), MINOR(swsusp_resume_device));
743 pr_debug("PM: Looking for hibernation image.\n");
744 error = swsusp_check();
745 if (error)
746 goto Unlock;
748 /* The snapshot device should not be opened while we're running */
749 if (!atomic_add_unless(&snapshot_device_available, -1, 0)) {
750 error = -EBUSY;
751 swsusp_close(FMODE_READ);
752 goto Unlock;
755 pm_prepare_console();
756 error = pm_notifier_call_chain(PM_RESTORE_PREPARE);
757 if (error)
758 goto close_finish;
760 error = usermodehelper_disable();
761 if (error)
762 goto close_finish;
764 error = create_basic_memory_bitmaps();
765 if (error)
766 goto close_finish;
768 pr_debug("PM: Preparing processes for restore.\n");
769 error = prepare_processes();
770 if (error) {
771 swsusp_close(FMODE_READ);
772 goto Done;
775 pr_debug("PM: Loading hibernation image.\n");
777 error = swsusp_read(&flags);
778 swsusp_close(FMODE_READ);
779 if (!error)
780 hibernation_restore(flags & SF_PLATFORM_MODE);
782 printk(KERN_ERR "PM: Failed to load hibernation image, recovering.\n");
783 swsusp_free();
784 thaw_processes();
785 Done:
786 free_basic_memory_bitmaps();
787 usermodehelper_enable();
788 Finish:
789 pm_notifier_call_chain(PM_POST_RESTORE);
790 pm_restore_console();
791 atomic_inc(&snapshot_device_available);
792 /* For success case, the suspend path will release the lock */
793 Unlock:
794 mutex_unlock(&pm_mutex);
795 pr_debug("PM: Hibernation image not present or could not be loaded.\n");
796 return error;
797 close_finish:
798 swsusp_close(FMODE_READ);
799 goto Finish;
802 late_initcall(software_resume);
805 static const char * const hibernation_modes[] = {
806 [HIBERNATION_PLATFORM] = "platform",
807 [HIBERNATION_SHUTDOWN] = "shutdown",
808 [HIBERNATION_REBOOT] = "reboot",
809 [HIBERNATION_TEST] = "test",
810 [HIBERNATION_TESTPROC] = "testproc",
814 * disk - Control hibernation mode
816 * Suspend-to-disk can be handled in several ways. We have a few options
817 * for putting the system to sleep - using the platform driver (e.g. ACPI
818 * or other hibernation_ops), powering off the system or rebooting the
819 * system (for testing) as well as the two test modes.
821 * The system can support 'platform', and that is known a priori (and
822 * encoded by the presence of hibernation_ops). However, the user may
823 * choose 'shutdown' or 'reboot' as alternatives, as well as one fo the
824 * test modes, 'test' or 'testproc'.
826 * show() will display what the mode is currently set to.
827 * store() will accept one of
829 * 'platform'
830 * 'shutdown'
831 * 'reboot'
832 * 'test'
833 * 'testproc'
835 * It will only change to 'platform' if the system
836 * supports it (as determined by having hibernation_ops).
839 static ssize_t disk_show(struct kobject *kobj, struct kobj_attribute *attr,
840 char *buf)
842 int i;
843 char *start = buf;
845 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
846 if (!hibernation_modes[i])
847 continue;
848 switch (i) {
849 case HIBERNATION_SHUTDOWN:
850 case HIBERNATION_REBOOT:
851 case HIBERNATION_TEST:
852 case HIBERNATION_TESTPROC:
853 break;
854 case HIBERNATION_PLATFORM:
855 if (hibernation_ops)
856 break;
857 /* not a valid mode, continue with loop */
858 continue;
860 if (i == hibernation_mode)
861 buf += sprintf(buf, "[%s] ", hibernation_modes[i]);
862 else
863 buf += sprintf(buf, "%s ", hibernation_modes[i]);
865 buf += sprintf(buf, "\n");
866 return buf-start;
870 static ssize_t disk_store(struct kobject *kobj, struct kobj_attribute *attr,
871 const char *buf, size_t n)
873 int error = 0;
874 int i;
875 int len;
876 char *p;
877 int mode = HIBERNATION_INVALID;
879 p = memchr(buf, '\n', n);
880 len = p ? p - buf : n;
882 mutex_lock(&pm_mutex);
883 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
884 if (len == strlen(hibernation_modes[i])
885 && !strncmp(buf, hibernation_modes[i], len)) {
886 mode = i;
887 break;
890 if (mode != HIBERNATION_INVALID) {
891 switch (mode) {
892 case HIBERNATION_SHUTDOWN:
893 case HIBERNATION_REBOOT:
894 case HIBERNATION_TEST:
895 case HIBERNATION_TESTPROC:
896 hibernation_mode = mode;
897 break;
898 case HIBERNATION_PLATFORM:
899 if (hibernation_ops)
900 hibernation_mode = mode;
901 else
902 error = -EINVAL;
904 } else
905 error = -EINVAL;
907 if (!error)
908 pr_debug("PM: Hibernation mode set to '%s'\n",
909 hibernation_modes[mode]);
910 mutex_unlock(&pm_mutex);
911 return error ? error : n;
914 power_attr(disk);
916 static ssize_t resume_show(struct kobject *kobj, struct kobj_attribute *attr,
917 char *buf)
919 return sprintf(buf,"%d:%d\n", MAJOR(swsusp_resume_device),
920 MINOR(swsusp_resume_device));
923 static ssize_t resume_store(struct kobject *kobj, struct kobj_attribute *attr,
924 const char *buf, size_t n)
926 unsigned int maj, min;
927 dev_t res;
928 int ret = -EINVAL;
930 if (sscanf(buf, "%u:%u", &maj, &min) != 2)
931 goto out;
933 res = MKDEV(maj,min);
934 if (maj != MAJOR(res) || min != MINOR(res))
935 goto out;
937 mutex_lock(&pm_mutex);
938 swsusp_resume_device = res;
939 mutex_unlock(&pm_mutex);
940 printk(KERN_INFO "PM: Starting manual resume from disk\n");
941 noresume = 0;
942 software_resume();
943 ret = n;
944 out:
945 return ret;
948 power_attr(resume);
950 static ssize_t image_size_show(struct kobject *kobj, struct kobj_attribute *attr,
951 char *buf)
953 return sprintf(buf, "%lu\n", image_size);
956 static ssize_t image_size_store(struct kobject *kobj, struct kobj_attribute *attr,
957 const char *buf, size_t n)
959 unsigned long size;
961 if (sscanf(buf, "%lu", &size) == 1) {
962 image_size = size;
963 return n;
966 return -EINVAL;
969 power_attr(image_size);
971 static ssize_t reserved_size_show(struct kobject *kobj,
972 struct kobj_attribute *attr, char *buf)
974 return sprintf(buf, "%lu\n", reserved_size);
977 static ssize_t reserved_size_store(struct kobject *kobj,
978 struct kobj_attribute *attr,
979 const char *buf, size_t n)
981 unsigned long size;
983 if (sscanf(buf, "%lu", &size) == 1) {
984 reserved_size = size;
985 return n;
988 return -EINVAL;
991 power_attr(reserved_size);
993 static struct attribute * g[] = {
994 &disk_attr.attr,
995 &resume_attr.attr,
996 &image_size_attr.attr,
997 &reserved_size_attr.attr,
998 NULL,
1002 static struct attribute_group attr_group = {
1003 .attrs = g,
1007 static int __init pm_disk_init(void)
1009 return sysfs_create_group(power_kobj, &attr_group);
1012 core_initcall(pm_disk_init);
1015 static int __init resume_setup(char *str)
1017 if (noresume)
1018 return 1;
1020 strncpy( resume_file, str, 255 );
1021 return 1;
1024 static int __init resume_offset_setup(char *str)
1026 unsigned long long offset;
1028 if (noresume)
1029 return 1;
1031 if (sscanf(str, "%llu", &offset) == 1)
1032 swsusp_resume_block = offset;
1034 return 1;
1037 static int __init hibernate_setup(char *str)
1039 if (!strncmp(str, "noresume", 8))
1040 noresume = 1;
1041 else if (!strncmp(str, "nocompress", 10))
1042 nocompress = 1;
1043 return 1;
1046 static int __init noresume_setup(char *str)
1048 noresume = 1;
1049 return 1;
1052 __setup("noresume", noresume_setup);
1053 __setup("resume_offset=", resume_offset_setup);
1054 __setup("resume=", resume_setup);
1055 __setup("hibernate=", hibernate_setup);