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1da177e4 1#include <linux/suspend.h>
3010f8ca 2#include <linux/suspend_ioctls.h>
1da177e4 3#include <linux/utsname.h>
b28f5081 4#include <linux/freezer.h>
52f5684c 5#include <linux/compiler.h>
1da177e4 6
1da177e4
LT
7struct swsusp_info {
8 struct new_utsname uts;
9 u32 version_code;
10 unsigned long num_physpages;
11 int cpus;
12 unsigned long image_pages;
7088a5c0 13 unsigned long pages;
6e1819d6 14 unsigned long size;
52f5684c 15} __aligned(PAGE_SIZE);
1da177e4 16
d307c4a8 17#ifdef CONFIG_HIBERNATION
ac5c24ec 18/* kernel/power/snapshot.c */
ddeb6487 19extern void __init hibernate_reserved_size_init(void);
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20extern void __init hibernate_image_size_init(void);
21
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22#ifdef CONFIG_ARCH_HIBERNATION_HEADER
23/* Maximum size of architecture specific data in a hibernation header */
24#define MAX_ARCH_HEADER_SIZE (sizeof(struct new_utsname) + 4)
1da177e4 25
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RW
26extern int arch_hibernation_header_save(void *addr, unsigned int max_size);
27extern int arch_hibernation_header_restore(void *addr);
28
29static inline int init_header_complete(struct swsusp_info *info)
30{
31 return arch_hibernation_header_save(info, MAX_ARCH_HEADER_SIZE);
32}
33
34static inline char *check_image_kernel(struct swsusp_info *info)
35{
36 return arch_hibernation_header_restore(info) ?
37 "architecture specific data" : NULL;
38}
39#endif /* CONFIG_ARCH_HIBERNATION_HEADER */
1da177e4 40
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41extern int hibernate_resume_nonboot_cpu_disable(void);
42
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43/*
44 * Keep some memory free so that I/O operations can succeed without paging
45 * [Might this be more than 4 MB?]
46 */
47#define PAGES_FOR_IO ((4096 * 1024) >> PAGE_SHIFT)
d307c4a8 48
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49/*
50 * Keep 1 MB of memory free so that device drivers can allocate some pages in
51 * their .suspend() routines without breaking the suspend to disk.
52 */
53#define SPARE_PAGES ((1024 * 1024) >> PAGE_SHIFT)
1da177e4 54
04b73469
RK
55asmlinkage int swsusp_save(void);
56
8b759b84 57/* kernel/power/hibernate.c */
97819a26
SB
58extern bool freezer_test_done;
59
7777fab9 60extern int hibernation_snapshot(int platform_mode);
a634cc10 61extern int hibernation_restore(int platform_mode);
7777fab9 62extern int hibernation_platform_enter(void);
ac5c24ec 63
0f5bf6d0 64#ifdef CONFIG_STRICT_KERNEL_RWX
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65/* kernel/power/snapshot.c */
66extern void enable_restore_image_protection(void);
67#else
68static inline void enable_restore_image_protection(void) {}
0f5bf6d0 69#endif /* CONFIG_STRICT_KERNEL_RWX */
4c0b6c10 70
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71#else /* !CONFIG_HIBERNATION */
72
ddeb6487 73static inline void hibernate_reserved_size_init(void) {}
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74static inline void hibernate_image_size_init(void) {}
75#endif /* !CONFIG_HIBERNATION */
a6d70980 76
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VG
77extern int pfn_is_nosave(unsigned long);
78
1da177e4 79#define power_attr(_name) \
386f275f 80static struct kobj_attribute _name##_attr = { \
1da177e4
LT
81 .attr = { \
82 .name = __stringify(_name), \
83 .mode = 0644, \
84 }, \
85 .show = _name##_show, \
86 .store = _name##_store, \
87}
88
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89#define power_attr_ro(_name) \
90static struct kobj_attribute _name##_attr = { \
91 .attr = { \
92 .name = __stringify(_name), \
93 .mode = S_IRUGO, \
94 }, \
95 .show = _name##_show, \
96}
97
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98/* Preferred image size in bytes (default 500 MB) */
99extern unsigned long image_size;
ddeb6487
RW
100/* Size of memory reserved for drivers (default SPARE_PAGES x PAGE_SIZE) */
101extern unsigned long reserved_size;
f577eb30 102extern int in_suspend;
61159a31 103extern dev_t swsusp_resume_device;
9a154d9d 104extern sector_t swsusp_resume_block;
f577eb30 105
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106extern asmlinkage int swsusp_arch_suspend(void);
107extern asmlinkage int swsusp_arch_resume(void);
108
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109extern int create_basic_memory_bitmaps(void);
110extern void free_basic_memory_bitmaps(void);
64a473cb 111extern int hibernate_preallocate_memory(void);
f577eb30 112
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AA
113extern void clear_free_pages(void);
114
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115/**
116 * Auxiliary structure used for reading the snapshot image data and
117 * metadata from and writing them to the list of page backup entries
118 * (PBEs) which is the main data structure of swsusp.
119 *
120 * Using struct snapshot_handle we can transfer the image, including its
121 * metadata, as a continuous sequence of bytes with the help of
122 * snapshot_read_next() and snapshot_write_next().
123 *
124 * The code that writes the image to a storage or transfers it to
125 * the user land is required to use snapshot_read_next() for this
126 * purpose and it should not make any assumptions regarding the internal
127 * structure of the image. Similarly, the code that reads the image from
128 * a storage or transfers it from the user land is required to use
129 * snapshot_write_next().
130 *
131 * This may allow us to change the internal structure of the image
132 * in the future with considerably less effort.
133 */
134
f577eb30 135struct snapshot_handle {
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136 unsigned int cur; /* number of the block of PAGE_SIZE bytes the
137 * next operation will refer to (ie. current)
138 */
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139 void *buffer; /* address of the block to read from
140 * or write to
141 */
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142 int sync_read; /* Set to one to notify the caller of
143 * snapshot_write_next() that it may
144 * need to call wait_on_bio_chain()
145 */
f577eb30
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146};
147
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148/* This macro returns the address from/to which the caller of
149 * snapshot_read_next()/snapshot_write_next() is allowed to
150 * read/write data after the function returns
151 */
d3c1b24c 152#define data_of(handle) ((handle).buffer)
f577eb30 153
b788db79 154extern unsigned int snapshot_additional_pages(struct zone *zone);
af508b34 155extern unsigned long snapshot_get_image_size(void);
d3c1b24c
JS
156extern int snapshot_read_next(struct snapshot_handle *handle);
157extern int snapshot_write_next(struct snapshot_handle *handle);
8357376d 158extern void snapshot_write_finalize(struct snapshot_handle *handle);
b788db79 159extern int snapshot_image_loaded(struct snapshot_handle *handle);
61159a31 160
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161/* If unset, the snapshot device cannot be open. */
162extern atomic_t snapshot_device_available;
163
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164extern sector_t alloc_swapdev_block(int swap);
165extern void free_all_swap_pages(int swap);
166extern int swsusp_swap_in_use(void);
61159a31 167
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168/*
169 * Flags that can be passed from the hibernatig hernel to the "boot" kernel in
170 * the image header.
171 */
172#define SF_PLATFORM_MODE 1
f996fc96 173#define SF_NOCOMPRESS_MODE 2
081a9d04 174#define SF_CRC32_MODE 4
a634cc10 175
8b759b84 176/* kernel/power/hibernate.c */
74c7e2ef 177extern int swsusp_check(void);
74c7e2ef 178extern void swsusp_free(void);
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179extern int swsusp_read(unsigned int *flags_p);
180extern int swsusp_write(unsigned int flags);
c2dd0dae 181extern void swsusp_close(fmode_t);
62c552cc
BS
182#ifdef CONFIG_SUSPEND
183extern int swsusp_unmark(void);
184#endif
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RW
185
186struct timeval;
b10d9117 187/* kernel/power/swsusp.c */
db597605 188extern void swsusp_show_speed(ktime_t, ktime_t, unsigned int, char *);
b10d9117 189
296699de 190#ifdef CONFIG_SUSPEND
a9d70523 191/* kernel/power/suspend.c */
406e7938 192extern const char * const pm_labels[];
d431cbc5 193extern const char *pm_states[];
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RW
194extern const char *mem_sleep_states[];
195extern suspend_state_t mem_sleep_current;
a9d70523 196
6c961dfb 197extern int suspend_devices_and_enter(suspend_state_t state);
296699de 198#else /* !CONFIG_SUSPEND */
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199#define mem_sleep_current PM_SUSPEND_ON
200
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201static inline int suspend_devices_and_enter(suspend_state_t state)
202{
203 return -ENOSYS;
204}
205#endif /* !CONFIG_SUSPEND */
206
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207#ifdef CONFIG_PM_TEST_SUSPEND
208/* kernel/power/suspend_test.c */
209extern void suspend_test_start(void);
210extern void suspend_test_finish(const char *label);
211#else /* !CONFIG_PM_TEST_SUSPEND */
212static inline void suspend_test_start(void) {}
213static inline void suspend_test_finish(const char *label) {}
214#endif /* !CONFIG_PM_TEST_SUSPEND */
215
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AS
216#ifdef CONFIG_PM_SLEEP
217/* kernel/power/main.c */
ea00f4f4
LW
218extern int __pm_notifier_call_chain(unsigned long val, int nr_to_call,
219 int *nr_calls);
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AS
220extern int pm_notifier_call_chain(unsigned long val);
221#endif
2f8ed1c6
AB
222
223#ifdef CONFIG_HIGHMEM
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AB
224int restore_highmem(void);
225#else
226static inline unsigned int count_highmem_pages(void) { return 0; }
227static inline int restore_highmem(void) { return 0; }
228#endif
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229
230/*
231 * Suspend test levels
232 */
233enum {
234 /* keep first */
235 TEST_NONE,
236 TEST_CORE,
237 TEST_CPUS,
238 TEST_PLATFORM,
239 TEST_DEVICES,
240 TEST_FREEZER,
241 /* keep last */
242 __TEST_AFTER_LAST
243};
244
245#define TEST_FIRST TEST_NONE
246#define TEST_MAX (__TEST_AFTER_LAST - 1)
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247
248extern int pm_test_level;
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JB
249
250#ifdef CONFIG_SUSPEND_FREEZER
251static inline int suspend_freeze_processes(void)
252{
379e0be8
SB
253 int error;
254
255 error = freeze_processes();
379e0be8
SB
256 /*
257 * freeze_processes() automatically thaws every task if freezing
258 * fails. So we need not do anything extra upon error.
259 */
260 if (error)
6f585f75 261 return error;
379e0be8
SB
262
263 error = freeze_kernel_threads();
379e0be8
SB
264 /*
265 * freeze_kernel_threads() thaws only kernel threads upon freezing
266 * failure. So we have to thaw the userspace tasks ourselves.
267 */
268 if (error)
269 thaw_processes();
270
379e0be8 271 return error;
b28f5081
JB
272}
273
274static inline void suspend_thaw_processes(void)
275{
276 thaw_processes();
277}
278#else
279static inline int suspend_freeze_processes(void)
280{
281 return 0;
282}
283
284static inline void suspend_thaw_processes(void)
285{
286}
287#endif
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288
289#ifdef CONFIG_PM_AUTOSLEEP
290
291/* kernel/power/autosleep.c */
292extern int pm_autosleep_init(void);
293extern int pm_autosleep_lock(void);
294extern void pm_autosleep_unlock(void);
295extern suspend_state_t pm_autosleep_state(void);
296extern int pm_autosleep_set_state(suspend_state_t state);
297
298#else /* !CONFIG_PM_AUTOSLEEP */
299
300static inline int pm_autosleep_init(void) { return 0; }
301static inline int pm_autosleep_lock(void) { return 0; }
302static inline void pm_autosleep_unlock(void) {}
303static inline suspend_state_t pm_autosleep_state(void) { return PM_SUSPEND_ON; }
304
305#endif /* !CONFIG_PM_AUTOSLEEP */
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306
307#ifdef CONFIG_PM_WAKELOCKS
308
309/* kernel/power/wakelock.c */
310extern ssize_t pm_show_wakelocks(char *buf, bool show_active);
311extern int pm_wake_lock(const char *buf);
312extern int pm_wake_unlock(const char *buf);
313
314#endif /* !CONFIG_PM_WAKELOCKS */