1 // SPDX-License-Identifier: GPL-2.0-only
3 * kernel/power/hibernate.c - Hibernation (a.k.a suspend-to-disk) support.
5 * Copyright (c) 2003 Patrick Mochel
6 * Copyright (c) 2003 Open Source Development Lab
7 * Copyright (c) 2004 Pavel Machek <pavel@ucw.cz>
8 * Copyright (c) 2009 Rafael J. Wysocki, Novell Inc.
9 * Copyright (C) 2012 Bojan Smojver <bojan@rexursive.com>
12 #define pr_fmt(fmt) "PM: hibernation: " fmt
14 #include <linux/export.h>
15 #include <linux/suspend.h>
16 #include <linux/reboot.h>
17 #include <linux/string.h>
18 #include <linux/device.h>
19 #include <linux/async.h>
20 #include <linux/delay.h>
22 #include <linux/mount.h>
24 #include <linux/nmi.h>
25 #include <linux/console.h>
26 #include <linux/cpu.h>
27 #include <linux/freezer.h>
28 #include <linux/gfp.h>
29 #include <linux/syscore_ops.h>
30 #include <linux/ctype.h>
31 #include <linux/ktime.h>
32 #include <linux/security.h>
33 #include <linux/secretmem.h>
34 #include <trace/events/power.h>
39 static int nocompress;
41 static int nohibernate;
42 static int resume_wait;
43 static unsigned int resume_delay;
44 static char resume_file[256] = CONFIG_PM_STD_PARTITION;
45 dev_t swsusp_resume_device;
46 sector_t swsusp_resume_block;
47 __visible int in_suspend __nosavedata;
57 HIBERNATION_TEST_RESUME,
59 __HIBERNATION_AFTER_LAST
61 #define HIBERNATION_MAX (__HIBERNATION_AFTER_LAST-1)
62 #define HIBERNATION_FIRST (HIBERNATION_INVALID + 1)
64 static int hibernation_mode = HIBERNATION_SHUTDOWN;
66 bool freezer_test_done;
68 static const struct platform_hibernation_ops *hibernation_ops;
70 static atomic_t hibernate_atomic = ATOMIC_INIT(1);
72 bool hibernate_acquire(void)
74 return atomic_add_unless(&hibernate_atomic, -1, 0);
77 void hibernate_release(void)
79 atomic_inc(&hibernate_atomic);
82 bool hibernation_available(void)
84 return nohibernate == 0 &&
85 !security_locked_down(LOCKDOWN_HIBERNATION) &&
86 !secretmem_active() && !cxl_mem_active();
90 * hibernation_set_ops - Set the global hibernate operations.
91 * @ops: Hibernation operations to use in subsequent hibernation transitions.
93 void hibernation_set_ops(const struct platform_hibernation_ops *ops)
95 unsigned int sleep_flags;
97 if (ops && !(ops->begin && ops->end && ops->pre_snapshot
98 && ops->prepare && ops->finish && ops->enter && ops->pre_restore
99 && ops->restore_cleanup && ops->leave)) {
104 sleep_flags = lock_system_sleep();
106 hibernation_ops = ops;
108 hibernation_mode = HIBERNATION_PLATFORM;
109 else if (hibernation_mode == HIBERNATION_PLATFORM)
110 hibernation_mode = HIBERNATION_SHUTDOWN;
112 unlock_system_sleep(sleep_flags);
114 EXPORT_SYMBOL_GPL(hibernation_set_ops);
116 static bool entering_platform_hibernation;
118 bool system_entering_hibernation(void)
120 return entering_platform_hibernation;
122 EXPORT_SYMBOL(system_entering_hibernation);
124 #ifdef CONFIG_PM_DEBUG
125 static void hibernation_debug_sleep(void)
127 pr_info("debug: Waiting for 5 seconds.\n");
131 static int hibernation_test(int level)
133 if (pm_test_level == level) {
134 hibernation_debug_sleep();
139 #else /* !CONFIG_PM_DEBUG */
140 static int hibernation_test(int level) { return 0; }
141 #endif /* !CONFIG_PM_DEBUG */
144 * platform_begin - Call platform to start hibernation.
145 * @platform_mode: Whether or not to use the platform driver.
147 static int platform_begin(int platform_mode)
149 return (platform_mode && hibernation_ops) ?
150 hibernation_ops->begin(PMSG_FREEZE) : 0;
154 * platform_end - Call platform to finish transition to the working state.
155 * @platform_mode: Whether or not to use the platform driver.
157 static void platform_end(int platform_mode)
159 if (platform_mode && hibernation_ops)
160 hibernation_ops->end();
164 * platform_pre_snapshot - Call platform to prepare the machine for hibernation.
165 * @platform_mode: Whether or not to use the platform driver.
167 * Use the platform driver to prepare the system for creating a hibernate image,
168 * if so configured, and return an error code if that fails.
171 static int platform_pre_snapshot(int platform_mode)
173 return (platform_mode && hibernation_ops) ?
174 hibernation_ops->pre_snapshot() : 0;
178 * platform_leave - Call platform to prepare a transition to the working state.
179 * @platform_mode: Whether or not to use the platform driver.
181 * Use the platform driver prepare to prepare the machine for switching to the
182 * normal mode of operation.
184 * This routine is called on one CPU with interrupts disabled.
186 static void platform_leave(int platform_mode)
188 if (platform_mode && hibernation_ops)
189 hibernation_ops->leave();
193 * platform_finish - Call platform to switch the system to the working state.
194 * @platform_mode: Whether or not to use the platform driver.
196 * Use the platform driver to switch the machine to the normal mode of
199 * This routine must be called after platform_prepare().
201 static void platform_finish(int platform_mode)
203 if (platform_mode && hibernation_ops)
204 hibernation_ops->finish();
208 * platform_pre_restore - Prepare for hibernate image restoration.
209 * @platform_mode: Whether or not to use the platform driver.
211 * Use the platform driver to prepare the system for resume from a hibernation
214 * If the restore fails after this function has been called,
215 * platform_restore_cleanup() must be called.
217 static int platform_pre_restore(int platform_mode)
219 return (platform_mode && hibernation_ops) ?
220 hibernation_ops->pre_restore() : 0;
224 * platform_restore_cleanup - Switch to the working state after failing restore.
225 * @platform_mode: Whether or not to use the platform driver.
227 * Use the platform driver to switch the system to the normal mode of operation
228 * after a failing restore.
230 * If platform_pre_restore() has been called before the failing restore, this
231 * function must be called too, regardless of the result of
232 * platform_pre_restore().
234 static void platform_restore_cleanup(int platform_mode)
236 if (platform_mode && hibernation_ops)
237 hibernation_ops->restore_cleanup();
241 * platform_recover - Recover from a failure to suspend devices.
242 * @platform_mode: Whether or not to use the platform driver.
244 static void platform_recover(int platform_mode)
246 if (platform_mode && hibernation_ops && hibernation_ops->recover)
247 hibernation_ops->recover();
251 * swsusp_show_speed - Print time elapsed between two events during hibernation.
252 * @start: Starting event.
253 * @stop: Final event.
254 * @nr_pages: Number of memory pages processed between @start and @stop.
255 * @msg: Additional diagnostic message to print.
257 void swsusp_show_speed(ktime_t start, ktime_t stop,
258 unsigned nr_pages, char *msg)
261 u64 elapsed_centisecs64;
262 unsigned int centisecs;
266 diff = ktime_sub(stop, start);
267 elapsed_centisecs64 = ktime_divns(diff, 10*NSEC_PER_MSEC);
268 centisecs = elapsed_centisecs64;
270 centisecs = 1; /* avoid div-by-zero */
271 k = nr_pages * (PAGE_SIZE / 1024);
272 kps = (k * 100) / centisecs;
273 pr_info("%s %u kbytes in %u.%02u seconds (%u.%02u MB/s)\n",
274 msg, k, centisecs / 100, centisecs % 100, kps / 1000,
278 __weak int arch_resume_nosmt(void)
284 * create_image - Create a hibernation image.
285 * @platform_mode: Whether or not to use the platform driver.
287 * Execute device drivers' "late" and "noirq" freeze callbacks, create a
288 * hibernation image and run the drivers' "noirq" and "early" thaw callbacks.
290 * Control reappears in this routine after the subsequent restore.
292 static int create_image(int platform_mode)
296 error = dpm_suspend_end(PMSG_FREEZE);
298 pr_err("Some devices failed to power down, aborting\n");
302 error = platform_pre_snapshot(platform_mode);
303 if (error || hibernation_test(TEST_PLATFORM))
304 goto Platform_finish;
306 error = pm_sleep_disable_secondary_cpus();
307 if (error || hibernation_test(TEST_CPUS))
312 system_state = SYSTEM_SUSPEND;
314 error = syscore_suspend();
316 pr_err("Some system devices failed to power down, aborting\n");
320 if (hibernation_test(TEST_CORE) || pm_wakeup_pending())
324 save_processor_state();
325 trace_suspend_resume(TPS("machine_suspend"), PM_EVENT_HIBERNATE, true);
326 error = swsusp_arch_suspend();
327 /* Restore control flow magically appears here */
328 restore_processor_state();
329 trace_suspend_resume(TPS("machine_suspend"), PM_EVENT_HIBERNATE, false);
331 pr_err("Error %d creating image\n", error);
334 events_check_enabled = false;
335 clear_or_poison_free_pages();
338 platform_leave(platform_mode);
344 system_state = SYSTEM_RUNNING;
348 pm_sleep_enable_secondary_cpus();
350 /* Allow architectures to do nosmt-specific post-resume dances */
352 error = arch_resume_nosmt();
355 platform_finish(platform_mode);
357 dpm_resume_start(in_suspend ?
358 (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE);
364 * hibernation_snapshot - Quiesce devices and create a hibernation image.
365 * @platform_mode: If set, use platform driver to prepare for the transition.
367 * This routine must be called with system_transition_mutex held.
369 int hibernation_snapshot(int platform_mode)
374 pm_suspend_clear_flags();
375 error = platform_begin(platform_mode);
379 /* Preallocate image memory before shutting down devices. */
380 error = hibernate_preallocate_memory();
384 error = freeze_kernel_threads();
388 if (hibernation_test(TEST_FREEZER)) {
391 * Indicate to the caller that we are returning due to a
392 * successful freezer test.
394 freezer_test_done = true;
398 error = dpm_prepare(PMSG_FREEZE);
400 dpm_complete(PMSG_RECOVER);
405 pm_restrict_gfp_mask();
407 error = dpm_suspend(PMSG_FREEZE);
409 if (error || hibernation_test(TEST_DEVICES))
410 platform_recover(platform_mode);
412 error = create_image(platform_mode);
415 * In the case that we call create_image() above, the control
416 * returns here (1) after the image has been created or the
417 * image creation has failed and (2) after a successful restore.
420 /* We may need to release the preallocated image pages here. */
421 if (error || !in_suspend)
424 msg = in_suspend ? (error ? PMSG_RECOVER : PMSG_THAW) : PMSG_RESTORE;
427 if (error || !in_suspend)
428 pm_restore_gfp_mask();
434 platform_end(platform_mode);
438 thaw_kernel_threads();
444 int __weak hibernate_resume_nonboot_cpu_disable(void)
446 return suspend_disable_secondary_cpus();
450 * resume_target_kernel - Restore system state from a hibernation image.
451 * @platform_mode: Whether or not to use the platform driver.
453 * Execute device drivers' "noirq" and "late" freeze callbacks, restore the
454 * contents of highmem that have not been restored yet from the image and run
455 * the low-level code that will restore the remaining contents of memory and
456 * switch to the just restored target kernel.
458 static int resume_target_kernel(bool platform_mode)
462 error = dpm_suspend_end(PMSG_QUIESCE);
464 pr_err("Some devices failed to power down, aborting resume\n");
468 error = platform_pre_restore(platform_mode);
474 error = hibernate_resume_nonboot_cpu_disable();
479 system_state = SYSTEM_SUSPEND;
481 error = syscore_suspend();
485 save_processor_state();
486 error = restore_highmem();
488 error = swsusp_arch_resume();
490 * The code below is only ever reached in case of a failure.
491 * Otherwise, execution continues at the place where
492 * swsusp_arch_suspend() was called.
496 * This call to restore_highmem() reverts the changes made by
502 * The only reason why swsusp_arch_resume() can fail is memory being
503 * very tight, so we have to free it as soon as we can to avoid
504 * subsequent failures.
507 restore_processor_state();
508 touch_softlockup_watchdog();
513 system_state = SYSTEM_RUNNING;
517 pm_sleep_enable_secondary_cpus();
520 platform_restore_cleanup(platform_mode);
522 dpm_resume_start(PMSG_RECOVER);
528 * hibernation_restore - Quiesce devices and restore from a hibernation image.
529 * @platform_mode: If set, use platform driver to prepare for the transition.
531 * This routine must be called with system_transition_mutex held. If it is
532 * successful, control reappears in the restored target kernel in
533 * hibernation_snapshot().
535 int hibernation_restore(int platform_mode)
539 pm_prepare_console();
541 pm_restrict_gfp_mask();
542 error = dpm_suspend_start(PMSG_QUIESCE);
544 error = resume_target_kernel(platform_mode);
546 * The above should either succeed and jump to the new kernel,
547 * or return with an error. Otherwise things are just
548 * undefined, so let's be paranoid.
552 dpm_resume_end(PMSG_RECOVER);
553 pm_restore_gfp_mask();
555 pm_restore_console();
560 * hibernation_platform_enter - Power off the system using the platform driver.
562 int hibernation_platform_enter(void)
566 if (!hibernation_ops)
570 * We have cancelled the power transition by running
571 * hibernation_ops->finish() before saving the image, so we should let
572 * the firmware know that we're going to enter the sleep state after all
574 error = hibernation_ops->begin(PMSG_HIBERNATE);
578 entering_platform_hibernation = true;
580 error = dpm_suspend_start(PMSG_HIBERNATE);
582 if (hibernation_ops->recover)
583 hibernation_ops->recover();
587 error = dpm_suspend_end(PMSG_HIBERNATE);
591 error = hibernation_ops->prepare();
593 goto Platform_finish;
595 error = pm_sleep_disable_secondary_cpus();
600 system_state = SYSTEM_SUSPEND;
602 if (pm_wakeup_pending()) {
607 hibernation_ops->enter();
608 /* We should never get here */
613 system_state = SYSTEM_RUNNING;
617 pm_sleep_enable_secondary_cpus();
620 hibernation_ops->finish();
622 dpm_resume_start(PMSG_RESTORE);
625 entering_platform_hibernation = false;
626 dpm_resume_end(PMSG_RESTORE);
630 hibernation_ops->end();
636 * power_down - Shut the machine down for hibernation.
638 * Use the platform driver, if configured, to put the system into the sleep
639 * state corresponding to hibernation, or try to power it off or reboot,
640 * depending on the value of hibernation_mode.
642 static void power_down(void)
644 #ifdef CONFIG_SUSPEND
647 if (hibernation_mode == HIBERNATION_SUSPEND) {
648 error = suspend_devices_and_enter(mem_sleep_current);
650 hibernation_mode = hibernation_ops ?
651 HIBERNATION_PLATFORM :
652 HIBERNATION_SHUTDOWN;
654 /* Restore swap signature. */
655 error = swsusp_unmark();
657 pr_err("Swap will be unusable! Try swapon -a.\n");
664 switch (hibernation_mode) {
665 case HIBERNATION_REBOOT:
666 kernel_restart(NULL);
668 case HIBERNATION_PLATFORM:
669 hibernation_platform_enter();
671 case HIBERNATION_SHUTDOWN:
672 if (kernel_can_power_off())
678 * Valid image is on the disk, if we continue we risk serious data
679 * corruption after resume.
681 pr_crit("Power down manually\n");
686 static int load_image_and_restore(void)
691 pm_pr_dbg("Loading hibernation image.\n");
693 lock_device_hotplug();
694 error = create_basic_memory_bitmaps();
696 swsusp_close(FMODE_READ | FMODE_EXCL);
700 error = swsusp_read(&flags);
701 swsusp_close(FMODE_READ | FMODE_EXCL);
703 error = hibernation_restore(flags & SF_PLATFORM_MODE);
705 pr_err("Failed to load image, recovering.\n");
707 free_basic_memory_bitmaps();
709 unlock_device_hotplug();
715 * hibernate - Carry out system hibernation, including saving the image.
719 bool snapshot_test = false;
720 unsigned int sleep_flags;
723 if (!hibernation_available()) {
724 pm_pr_dbg("Hibernation not available.\n");
728 sleep_flags = lock_system_sleep();
729 /* The snapshot device should not be opened while we're running */
730 if (!hibernate_acquire()) {
735 pr_info("hibernation entry\n");
736 pm_prepare_console();
737 error = pm_notifier_call_chain_robust(PM_HIBERNATION_PREPARE, PM_POST_HIBERNATION);
743 error = freeze_processes();
747 lock_device_hotplug();
748 /* Allocate memory management structures */
749 error = create_basic_memory_bitmaps();
753 error = hibernation_snapshot(hibernation_mode == HIBERNATION_PLATFORM);
754 if (error || freezer_test_done)
758 unsigned int flags = 0;
760 if (hibernation_mode == HIBERNATION_PLATFORM)
761 flags |= SF_PLATFORM_MODE;
763 flags |= SF_NOCOMPRESS_MODE;
765 flags |= SF_CRC32_MODE;
767 pm_pr_dbg("Writing hibernation image.\n");
768 error = swsusp_write(flags);
771 if (hibernation_mode == HIBERNATION_TEST_RESUME)
772 snapshot_test = true;
777 pm_restore_gfp_mask();
779 pm_pr_dbg("Hibernation image restored successfully.\n");
783 free_basic_memory_bitmaps();
785 unlock_device_hotplug();
787 pm_pr_dbg("Checking hibernation image\n");
788 error = swsusp_check();
790 error = load_image_and_restore();
794 /* Don't bother checking whether freezer_test_done is true */
795 freezer_test_done = false;
797 pm_notifier_call_chain(PM_POST_HIBERNATION);
799 pm_restore_console();
802 unlock_system_sleep(sleep_flags);
803 pr_info("hibernation exit\n");
809 * hibernate_quiet_exec - Execute a function with all devices frozen.
810 * @func: Function to execute.
811 * @data: Data pointer to pass to @func.
813 * Return the @func return value or an error code if it cannot be executed.
815 int hibernate_quiet_exec(int (*func)(void *data), void *data)
817 unsigned int sleep_flags;
820 sleep_flags = lock_system_sleep();
822 if (!hibernate_acquire()) {
827 pm_prepare_console();
829 error = pm_notifier_call_chain_robust(PM_HIBERNATION_PREPARE, PM_POST_HIBERNATION);
833 error = freeze_processes();
837 lock_device_hotplug();
839 pm_suspend_clear_flags();
841 error = platform_begin(true);
845 error = freeze_kernel_threads();
849 error = dpm_prepare(PMSG_FREEZE);
855 error = dpm_suspend(PMSG_FREEZE);
859 error = dpm_suspend_end(PMSG_FREEZE);
863 error = platform_pre_snapshot(true);
870 platform_finish(true);
872 dpm_resume_start(PMSG_THAW);
875 dpm_resume(PMSG_THAW);
880 dpm_complete(PMSG_THAW);
882 thaw_kernel_threads();
887 unlock_device_hotplug();
892 pm_notifier_call_chain(PM_POST_HIBERNATION);
895 pm_restore_console();
900 unlock_system_sleep(sleep_flags);
904 EXPORT_SYMBOL_GPL(hibernate_quiet_exec);
907 * software_resume - Resume from a saved hibernation image.
909 * This routine is called as a late initcall, when all devices have been
910 * discovered and initialized already.
912 * The image reading code is called to see if there is a hibernation image
913 * available for reading. If that is the case, devices are quiesced and the
914 * contents of memory is restored from the saved image.
916 * If this is successful, control reappears in the restored target kernel in
917 * hibernation_snapshot() which returns to hibernate(). Otherwise, the routine
918 * attempts to recover gracefully and make the kernel return to the normal mode
921 static int software_resume(void)
926 * If the user said "noresume".. bail out early.
928 if (noresume || !hibernation_available())
932 * name_to_dev_t() below takes a sysfs buffer mutex when sysfs
933 * is configured into the kernel. Since the regular hibernate
934 * trigger path is via sysfs which takes a buffer mutex before
935 * calling hibernate functions (which take system_transition_mutex)
936 * this can cause lockdep to complain about a possible ABBA deadlock
937 * which cannot happen since we're in the boot code here and
938 * sysfs can't be invoked yet. Therefore, we use a subclass
939 * here to avoid lockdep complaining.
941 mutex_lock_nested(&system_transition_mutex, SINGLE_DEPTH_NESTING);
943 if (swsusp_resume_device)
946 if (!strlen(resume_file)) {
951 pm_pr_dbg("Checking hibernation image partition %s\n", resume_file);
954 pr_info("Waiting %dsec before reading resume device ...\n",
956 ssleep(resume_delay);
959 /* Check if the device is there */
960 swsusp_resume_device = name_to_dev_t(resume_file);
961 if (!swsusp_resume_device) {
963 * Some device discovery might still be in progress; we need
964 * to wait for this to finish.
966 wait_for_device_probe();
969 while ((swsusp_resume_device = name_to_dev_t(resume_file)) == 0)
971 async_synchronize_full();
974 swsusp_resume_device = name_to_dev_t(resume_file);
975 if (!swsusp_resume_device) {
982 pm_pr_dbg("Hibernation image partition %d:%d present\n",
983 MAJOR(swsusp_resume_device), MINOR(swsusp_resume_device));
985 pm_pr_dbg("Looking for hibernation image.\n");
986 error = swsusp_check();
990 /* The snapshot device should not be opened while we're running */
991 if (!hibernate_acquire()) {
993 swsusp_close(FMODE_READ | FMODE_EXCL);
997 pr_info("resume from hibernation\n");
998 pm_prepare_console();
999 error = pm_notifier_call_chain_robust(PM_RESTORE_PREPARE, PM_POST_RESTORE);
1003 pm_pr_dbg("Preparing processes for hibernation restore.\n");
1004 error = freeze_processes();
1008 error = freeze_kernel_threads();
1014 error = load_image_and_restore();
1017 pm_notifier_call_chain(PM_POST_RESTORE);
1019 pm_restore_console();
1020 pr_info("resume failed (%d)\n", error);
1021 hibernate_release();
1022 /* For success case, the suspend path will release the lock */
1024 mutex_unlock(&system_transition_mutex);
1025 pm_pr_dbg("Hibernation image not present or could not be loaded.\n");
1028 swsusp_close(FMODE_READ | FMODE_EXCL);
1032 late_initcall_sync(software_resume);
1035 static const char * const hibernation_modes[] = {
1036 [HIBERNATION_PLATFORM] = "platform",
1037 [HIBERNATION_SHUTDOWN] = "shutdown",
1038 [HIBERNATION_REBOOT] = "reboot",
1039 #ifdef CONFIG_SUSPEND
1040 [HIBERNATION_SUSPEND] = "suspend",
1042 [HIBERNATION_TEST_RESUME] = "test_resume",
1046 * /sys/power/disk - Control hibernation mode.
1048 * Hibernation can be handled in several ways. There are a few different ways
1049 * to put the system into the sleep state: using the platform driver (e.g. ACPI
1050 * or other hibernation_ops), powering it off or rebooting it (for testing
1053 * The sysfs file /sys/power/disk provides an interface for selecting the
1054 * hibernation mode to use. Reading from this file causes the available modes
1055 * to be printed. There are 3 modes that can be supported:
1061 * If a platform hibernation driver is in use, 'platform' will be supported
1062 * and will be used by default. Otherwise, 'shutdown' will be used by default.
1063 * The selected option (i.e. the one corresponding to the current value of
1064 * hibernation_mode) is enclosed by a square bracket.
1066 * To select a given hibernation mode it is necessary to write the mode's
1067 * string representation (as returned by reading from /sys/power/disk) back
1068 * into /sys/power/disk.
1071 static ssize_t disk_show(struct kobject *kobj, struct kobj_attribute *attr,
1077 if (!hibernation_available())
1078 return sprintf(buf, "[disabled]\n");
1080 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
1081 if (!hibernation_modes[i])
1084 case HIBERNATION_SHUTDOWN:
1085 case HIBERNATION_REBOOT:
1086 #ifdef CONFIG_SUSPEND
1087 case HIBERNATION_SUSPEND:
1089 case HIBERNATION_TEST_RESUME:
1091 case HIBERNATION_PLATFORM:
1092 if (hibernation_ops)
1094 /* not a valid mode, continue with loop */
1097 if (i == hibernation_mode)
1098 buf += sprintf(buf, "[%s] ", hibernation_modes[i]);
1100 buf += sprintf(buf, "%s ", hibernation_modes[i]);
1102 buf += sprintf(buf, "\n");
1106 static ssize_t disk_store(struct kobject *kobj, struct kobj_attribute *attr,
1107 const char *buf, size_t n)
1109 int mode = HIBERNATION_INVALID;
1110 unsigned int sleep_flags;
1116 if (!hibernation_available())
1119 p = memchr(buf, '\n', n);
1120 len = p ? p - buf : n;
1122 sleep_flags = lock_system_sleep();
1123 for (i = HIBERNATION_FIRST; i <= HIBERNATION_MAX; i++) {
1124 if (len == strlen(hibernation_modes[i])
1125 && !strncmp(buf, hibernation_modes[i], len)) {
1130 if (mode != HIBERNATION_INVALID) {
1132 case HIBERNATION_SHUTDOWN:
1133 case HIBERNATION_REBOOT:
1134 #ifdef CONFIG_SUSPEND
1135 case HIBERNATION_SUSPEND:
1137 case HIBERNATION_TEST_RESUME:
1138 hibernation_mode = mode;
1140 case HIBERNATION_PLATFORM:
1141 if (hibernation_ops)
1142 hibernation_mode = mode;
1150 pm_pr_dbg("Hibernation mode set to '%s'\n",
1151 hibernation_modes[mode]);
1152 unlock_system_sleep(sleep_flags);
1153 return error ? error : n;
1158 static ssize_t resume_show(struct kobject *kobj, struct kobj_attribute *attr,
1161 return sprintf(buf, "%d:%d\n", MAJOR(swsusp_resume_device),
1162 MINOR(swsusp_resume_device));
1165 static ssize_t resume_store(struct kobject *kobj, struct kobj_attribute *attr,
1166 const char *buf, size_t n)
1168 unsigned int sleep_flags;
1173 if (len && buf[len-1] == '\n')
1175 name = kstrndup(buf, len, GFP_KERNEL);
1179 res = name_to_dev_t(name);
1184 sleep_flags = lock_system_sleep();
1185 swsusp_resume_device = res;
1186 unlock_system_sleep(sleep_flags);
1188 pm_pr_dbg("Configured hibernation resume from disk to %u\n",
1189 swsusp_resume_device);
1197 static ssize_t resume_offset_show(struct kobject *kobj,
1198 struct kobj_attribute *attr, char *buf)
1200 return sprintf(buf, "%llu\n", (unsigned long long)swsusp_resume_block);
1203 static ssize_t resume_offset_store(struct kobject *kobj,
1204 struct kobj_attribute *attr, const char *buf,
1207 unsigned long long offset;
1210 rc = kstrtoull(buf, 0, &offset);
1213 swsusp_resume_block = offset;
1218 power_attr(resume_offset);
1220 static ssize_t image_size_show(struct kobject *kobj, struct kobj_attribute *attr,
1223 return sprintf(buf, "%lu\n", image_size);
1226 static ssize_t image_size_store(struct kobject *kobj, struct kobj_attribute *attr,
1227 const char *buf, size_t n)
1231 if (sscanf(buf, "%lu", &size) == 1) {
1239 power_attr(image_size);
1241 static ssize_t reserved_size_show(struct kobject *kobj,
1242 struct kobj_attribute *attr, char *buf)
1244 return sprintf(buf, "%lu\n", reserved_size);
1247 static ssize_t reserved_size_store(struct kobject *kobj,
1248 struct kobj_attribute *attr,
1249 const char *buf, size_t n)
1253 if (sscanf(buf, "%lu", &size) == 1) {
1254 reserved_size = size;
1261 power_attr(reserved_size);
1263 static struct attribute *g[] = {
1265 &resume_offset_attr.attr,
1267 &image_size_attr.attr,
1268 &reserved_size_attr.attr,
1273 static const struct attribute_group attr_group = {
1278 static int __init pm_disk_init(void)
1280 return sysfs_create_group(power_kobj, &attr_group);
1283 core_initcall(pm_disk_init);
1286 static int __init resume_setup(char *str)
1291 strncpy(resume_file, str, 255);
1295 static int __init resume_offset_setup(char *str)
1297 unsigned long long offset;
1302 if (sscanf(str, "%llu", &offset) == 1)
1303 swsusp_resume_block = offset;
1308 static int __init hibernate_setup(char *str)
1310 if (!strncmp(str, "noresume", 8)) {
1312 } else if (!strncmp(str, "nocompress", 10)) {
1314 } else if (!strncmp(str, "no", 2)) {
1317 } else if (IS_ENABLED(CONFIG_STRICT_KERNEL_RWX)
1318 && !strncmp(str, "protect_image", 13)) {
1319 enable_restore_image_protection();
1324 static int __init noresume_setup(char *str)
1330 static int __init resumewait_setup(char *str)
1336 static int __init resumedelay_setup(char *str)
1338 int rc = kstrtouint(str, 0, &resume_delay);
1341 pr_warn("resumedelay: bad option string '%s'\n", str);
1345 static int __init nohibernate_setup(char *str)
1352 __setup("noresume", noresume_setup);
1353 __setup("resume_offset=", resume_offset_setup);
1354 __setup("resume=", resume_setup);
1355 __setup("hibernate=", hibernate_setup);
1356 __setup("resumewait", resumewait_setup);
1357 __setup("resumedelay=", resumedelay_setup);
1358 __setup("nohibernate", nohibernate_setup);