Pull bugzilla-7897 into release branch
[deliverable/linux.git] / kernel / power / disk.c
1 /*
2 * kernel/power/disk.c - 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@suse.cz>
7 *
8 * This file is released under the GPLv2.
9 *
10 */
11
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/delay.h>
18 #include <linux/fs.h>
19 #include <linux/mount.h>
20 #include <linux/pm.h>
21 #include <linux/console.h>
22 #include <linux/cpu.h>
23 #include <linux/freezer.h>
24
25 #include "power.h"
26
27
28 static int noresume = 0;
29 char resume_file[256] = CONFIG_PM_STD_PARTITION;
30 dev_t swsusp_resume_device;
31 sector_t swsusp_resume_block;
32
33 /**
34 * platform_prepare - prepare the machine for hibernation using the
35 * platform driver if so configured and return an error code if it fails
36 */
37
38 static inline int platform_prepare(void)
39 {
40 int error = 0;
41
42 if (pm_disk_mode == PM_DISK_PLATFORM) {
43 if (pm_ops && pm_ops->prepare)
44 error = pm_ops->prepare(PM_SUSPEND_DISK);
45 }
46 return error;
47 }
48
49 /**
50 * power_down - Shut machine down for hibernate.
51 * @mode: Suspend-to-disk mode
52 *
53 * Use the platform driver, if configured so, and return gracefully if it
54 * fails.
55 * Otherwise, try to power off and reboot. If they fail, halt the machine,
56 * there ain't no turning back.
57 */
58
59 static void power_down(suspend_disk_method_t mode)
60 {
61 switch(mode) {
62 case PM_DISK_PLATFORM:
63 if (pm_ops && pm_ops->enter) {
64 kernel_shutdown_prepare(SYSTEM_SUSPEND_DISK);
65 pm_ops->enter(PM_SUSPEND_DISK);
66 break;
67 }
68 case PM_DISK_SHUTDOWN:
69 kernel_power_off();
70 break;
71 case PM_DISK_REBOOT:
72 kernel_restart(NULL);
73 break;
74 }
75 kernel_halt();
76 /* Valid image is on the disk, if we continue we risk serious data corruption
77 after resume. */
78 printk(KERN_CRIT "Please power me down manually\n");
79 while(1);
80 }
81
82 static inline void platform_finish(void)
83 {
84 if (pm_disk_mode == PM_DISK_PLATFORM) {
85 if (pm_ops && pm_ops->finish)
86 pm_ops->finish(PM_SUSPEND_DISK);
87 }
88 }
89
90 static void unprepare_processes(void)
91 {
92 thaw_processes();
93 pm_restore_console();
94 }
95
96 static int prepare_processes(void)
97 {
98 int error = 0;
99
100 pm_prepare_console();
101 if (freeze_processes()) {
102 error = -EBUSY;
103 unprepare_processes();
104 }
105 return error;
106 }
107
108 /**
109 * pm_suspend_disk - The granpappy of hibernation power management.
110 *
111 * If we're going through the firmware, then get it over with quickly.
112 *
113 * If not, then call swsusp to do its thing, then figure out how
114 * to power down the system.
115 */
116
117 int pm_suspend_disk(void)
118 {
119 int error;
120
121 error = prepare_processes();
122 if (error)
123 return error;
124
125 if (pm_disk_mode == PM_DISK_TESTPROC) {
126 printk("swsusp debug: Waiting for 5 seconds.\n");
127 mdelay(5000);
128 goto Thaw;
129 }
130 /* Free memory before shutting down devices. */
131 error = swsusp_shrink_memory();
132 if (error)
133 goto Thaw;
134
135 error = platform_prepare();
136 if (error)
137 goto Thaw;
138
139 suspend_console();
140 error = device_suspend(PMSG_FREEZE);
141 if (error) {
142 printk(KERN_ERR "PM: Some devices failed to suspend\n");
143 goto Resume_devices;
144 }
145 error = disable_nonboot_cpus();
146 if (error)
147 goto Enable_cpus;
148
149 if (pm_disk_mode == PM_DISK_TEST) {
150 printk("swsusp debug: Waiting for 5 seconds.\n");
151 mdelay(5000);
152 goto Enable_cpus;
153 }
154
155 pr_debug("PM: snapshotting memory.\n");
156 in_suspend = 1;
157 error = swsusp_suspend();
158 if (error)
159 goto Enable_cpus;
160
161 if (in_suspend) {
162 enable_nonboot_cpus();
163 platform_finish();
164 device_resume();
165 resume_console();
166 pr_debug("PM: writing image.\n");
167 error = swsusp_write();
168 if (!error)
169 power_down(pm_disk_mode);
170 else {
171 swsusp_free();
172 goto Thaw;
173 }
174 } else {
175 pr_debug("PM: Image restored successfully.\n");
176 }
177
178 swsusp_free();
179 Enable_cpus:
180 enable_nonboot_cpus();
181 Resume_devices:
182 platform_finish();
183 device_resume();
184 resume_console();
185 Thaw:
186 unprepare_processes();
187 return error;
188 }
189
190
191 /**
192 * software_resume - Resume from a saved image.
193 *
194 * Called as a late_initcall (so all devices are discovered and
195 * initialized), we call swsusp to see if we have a saved image or not.
196 * If so, we quiesce devices, the restore the saved image. We will
197 * return above (in pm_suspend_disk() ) if everything goes well.
198 * Otherwise, we fail gracefully and return to the normally
199 * scheduled program.
200 *
201 */
202
203 static int software_resume(void)
204 {
205 int error;
206
207 mutex_lock(&pm_mutex);
208 if (!swsusp_resume_device) {
209 if (!strlen(resume_file)) {
210 mutex_unlock(&pm_mutex);
211 return -ENOENT;
212 }
213 swsusp_resume_device = name_to_dev_t(resume_file);
214 pr_debug("swsusp: Resume From Partition %s\n", resume_file);
215 } else {
216 pr_debug("swsusp: Resume From Partition %d:%d\n",
217 MAJOR(swsusp_resume_device), MINOR(swsusp_resume_device));
218 }
219
220 if (noresume) {
221 /**
222 * FIXME: If noresume is specified, we need to find the partition
223 * and reset it back to normal swap space.
224 */
225 mutex_unlock(&pm_mutex);
226 return 0;
227 }
228
229 pr_debug("PM: Checking swsusp image.\n");
230
231 error = swsusp_check();
232 if (error)
233 goto Done;
234
235 pr_debug("PM: Preparing processes for restore.\n");
236
237 error = prepare_processes();
238 if (error) {
239 swsusp_close();
240 goto Done;
241 }
242
243 error = platform_prepare();
244 if (error) {
245 swsusp_free();
246 goto Thaw;
247 }
248
249 pr_debug("PM: Reading swsusp image.\n");
250
251 error = swsusp_read();
252 if (error) {
253 swsusp_free();
254 goto Thaw;
255 }
256
257 pr_debug("PM: Preparing devices for restore.\n");
258
259 suspend_console();
260 error = device_suspend(PMSG_PRETHAW);
261 if (error)
262 goto Free;
263
264 error = disable_nonboot_cpus();
265 if (!error)
266 swsusp_resume();
267
268 enable_nonboot_cpus();
269 Free:
270 swsusp_free();
271 platform_finish();
272 device_resume();
273 resume_console();
274 Thaw:
275 printk(KERN_ERR "PM: Restore failed, recovering.\n");
276 unprepare_processes();
277 Done:
278 /* For success case, the suspend path will release the lock */
279 mutex_unlock(&pm_mutex);
280 pr_debug("PM: Resume from disk failed.\n");
281 return 0;
282 }
283
284 late_initcall(software_resume);
285
286
287 static const char * const pm_disk_modes[] = {
288 [PM_DISK_FIRMWARE] = "firmware",
289 [PM_DISK_PLATFORM] = "platform",
290 [PM_DISK_SHUTDOWN] = "shutdown",
291 [PM_DISK_REBOOT] = "reboot",
292 [PM_DISK_TEST] = "test",
293 [PM_DISK_TESTPROC] = "testproc",
294 };
295
296 /**
297 * disk - Control suspend-to-disk mode
298 *
299 * Suspend-to-disk can be handled in several ways. The greatest
300 * distinction is who writes memory to disk - the firmware or the OS.
301 * If the firmware does it, we assume that it also handles suspending
302 * the system.
303 * If the OS does it, then we have three options for putting the system
304 * to sleep - using the platform driver (e.g. ACPI or other PM registers),
305 * powering off the system or rebooting the system (for testing).
306 *
307 * The system will support either 'firmware' or 'platform', and that is
308 * known a priori (and encoded in pm_ops). But, the user may choose
309 * 'shutdown' or 'reboot' as alternatives.
310 *
311 * show() will display what the mode is currently set to.
312 * store() will accept one of
313 *
314 * 'firmware'
315 * 'platform'
316 * 'shutdown'
317 * 'reboot'
318 *
319 * It will only change to 'firmware' or 'platform' if the system
320 * supports it (as determined from pm_ops->pm_disk_mode).
321 */
322
323 static ssize_t disk_show(struct subsystem * subsys, char * buf)
324 {
325 return sprintf(buf, "%s\n", pm_disk_modes[pm_disk_mode]);
326 }
327
328
329 static ssize_t disk_store(struct subsystem * s, const char * buf, size_t n)
330 {
331 int error = 0;
332 int i;
333 int len;
334 char *p;
335 suspend_disk_method_t mode = 0;
336
337 p = memchr(buf, '\n', n);
338 len = p ? p - buf : n;
339
340 mutex_lock(&pm_mutex);
341 for (i = PM_DISK_FIRMWARE; i < PM_DISK_MAX; i++) {
342 if (!strncmp(buf, pm_disk_modes[i], len)) {
343 mode = i;
344 break;
345 }
346 }
347 if (mode) {
348 if (mode == PM_DISK_SHUTDOWN || mode == PM_DISK_REBOOT ||
349 mode == PM_DISK_TEST || mode == PM_DISK_TESTPROC) {
350 pm_disk_mode = mode;
351 } else {
352 if (pm_ops && pm_ops->enter &&
353 (mode == pm_ops->pm_disk_mode))
354 pm_disk_mode = mode;
355 else
356 error = -EINVAL;
357 }
358 } else {
359 error = -EINVAL;
360 }
361
362 pr_debug("PM: suspend-to-disk mode set to '%s'\n",
363 pm_disk_modes[mode]);
364 mutex_unlock(&pm_mutex);
365 return error ? error : n;
366 }
367
368 power_attr(disk);
369
370 static ssize_t resume_show(struct subsystem * subsys, char *buf)
371 {
372 return sprintf(buf,"%d:%d\n", MAJOR(swsusp_resume_device),
373 MINOR(swsusp_resume_device));
374 }
375
376 static ssize_t resume_store(struct subsystem *subsys, const char *buf, size_t n)
377 {
378 unsigned int maj, min;
379 dev_t res;
380 int ret = -EINVAL;
381
382 if (sscanf(buf, "%u:%u", &maj, &min) != 2)
383 goto out;
384
385 res = MKDEV(maj,min);
386 if (maj != MAJOR(res) || min != MINOR(res))
387 goto out;
388
389 mutex_lock(&pm_mutex);
390 swsusp_resume_device = res;
391 mutex_unlock(&pm_mutex);
392 printk("Attempting manual resume\n");
393 noresume = 0;
394 software_resume();
395 ret = n;
396 out:
397 return ret;
398 }
399
400 power_attr(resume);
401
402 static ssize_t image_size_show(struct subsystem * subsys, char *buf)
403 {
404 return sprintf(buf, "%lu\n", image_size);
405 }
406
407 static ssize_t image_size_store(struct subsystem * subsys, const char * buf, size_t n)
408 {
409 unsigned long size;
410
411 if (sscanf(buf, "%lu", &size) == 1) {
412 image_size = size;
413 return n;
414 }
415
416 return -EINVAL;
417 }
418
419 power_attr(image_size);
420
421 static struct attribute * g[] = {
422 &disk_attr.attr,
423 &resume_attr.attr,
424 &image_size_attr.attr,
425 NULL,
426 };
427
428
429 static struct attribute_group attr_group = {
430 .attrs = g,
431 };
432
433
434 static int __init pm_disk_init(void)
435 {
436 return sysfs_create_group(&power_subsys.kset.kobj,&attr_group);
437 }
438
439 core_initcall(pm_disk_init);
440
441
442 static int __init resume_setup(char *str)
443 {
444 if (noresume)
445 return 1;
446
447 strncpy( resume_file, str, 255 );
448 return 1;
449 }
450
451 static int __init resume_offset_setup(char *str)
452 {
453 unsigned long long offset;
454
455 if (noresume)
456 return 1;
457
458 if (sscanf(str, "%llu", &offset) == 1)
459 swsusp_resume_block = offset;
460
461 return 1;
462 }
463
464 static int __init noresume_setup(char *str)
465 {
466 noresume = 1;
467 return 1;
468 }
469
470 __setup("noresume", noresume_setup);
471 __setup("resume_offset=", resume_offset_setup);
472 __setup("resume=", resume_setup);
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