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Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001/*
Pavel Machek96bc7ae2005-10-30 14:59:58 -08002 * linux/kernel/power/snapshot.c
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08003 *
Rafael J. Wysocki83573762006-12-06 20:34:18 -08004 * This file provides system snapshot/restore functionality for swsusp.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08005 *
Pavel Macheka2531292010-07-18 14:27:13 +02006 * Copyright (C) 1998-2005 Pavel Machek <pavel@ucw.cz>
Rafael J. Wysocki83573762006-12-06 20:34:18 -08007 * Copyright (C) 2006 Rafael J. Wysocki <rjw@sisk.pl>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08008 *
Rafael J. Wysocki83573762006-12-06 20:34:18 -08009 * This file is released under the GPLv2.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080010 *
11 */
12
Rafael J. Wysockif577eb32006-03-23 02:59:59 -080013#include <linux/version.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080014#include <linux/module.h>
15#include <linux/mm.h>
16#include <linux/suspend.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080017#include <linux/delay.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080018#include <linux/bitops.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080019#include <linux/spinlock.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080020#include <linux/kernel.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080021#include <linux/pm.h>
22#include <linux/device.h>
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -070023#include <linux/init.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080024#include <linux/bootmem.h>
25#include <linux/syscalls.h>
26#include <linux/console.h>
27#include <linux/highmem.h>
Rafael J. Wysocki846705d2008-11-26 18:00:24 -050028#include <linux/list.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090029#include <linux/slab.h>
Gideon Israel Dsouza52f56842014-04-07 15:39:20 -070030#include <linux/compiler.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080031
32#include <asm/uaccess.h>
33#include <asm/mmu_context.h>
34#include <asm/pgtable.h>
35#include <asm/tlbflush.h>
36#include <asm/io.h>
37
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080038#include "power.h"
39
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -070040static int swsusp_page_is_free(struct page *);
41static void swsusp_set_page_forbidden(struct page *);
42static void swsusp_unset_page_forbidden(struct page *);
43
Rafael J. Wysockife419532009-06-11 23:11:17 +020044/*
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +020045 * Number of bytes to reserve for memory allocations made by device drivers
46 * from their ->freeze() and ->freeze_noirq() callbacks so that they don't
47 * cause image creation to fail (tunable via /sys/power/reserved_size).
48 */
49unsigned long reserved_size;
50
51void __init hibernate_reserved_size_init(void)
52{
53 reserved_size = SPARE_PAGES * PAGE_SIZE;
54}
55
56/*
Rafael J. Wysockife419532009-06-11 23:11:17 +020057 * Preferred image size in bytes (tunable via /sys/power/image_size).
Rafael J. Wysocki1c1be3a2011-05-15 11:39:48 +020058 * When it is set to N, swsusp will do its best to ensure the image
59 * size will not exceed N bytes, but if that is impossible, it will
60 * try to create the smallest image possible.
Rafael J. Wysockife419532009-06-11 23:11:17 +020061 */
Rafael J. Wysockiac5c24ec2010-09-20 19:44:56 +020062unsigned long image_size;
63
64void __init hibernate_image_size_init(void)
65{
Rafael J. Wysocki1c1be3a2011-05-15 11:39:48 +020066 image_size = ((totalram_pages * 2) / 5) * PAGE_SIZE;
Rafael J. Wysockiac5c24ec2010-09-20 19:44:56 +020067}
Rafael J. Wysockife419532009-06-11 23:11:17 +020068
Rafael J. Wysocki83573762006-12-06 20:34:18 -080069/* List of PBEs needed for restoring the pages that were allocated before
70 * the suspend and included in the suspend image, but have also been
71 * allocated by the "resume" kernel, so their contents cannot be written
72 * directly to their "original" page frames.
73 */
Rafael J. Wysocki75534b52006-09-25 23:32:52 -070074struct pbe *restore_pblist;
75
Rafael J. Wysocki83573762006-12-06 20:34:18 -080076/* Pointer to an auxiliary buffer (1 page) */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -070077static void *buffer;
Rafael J. Wysocki7088a5c2006-01-06 00:13:05 -080078
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -070079/**
80 * @safe_needed - on resume, for storing the PBE list and the image,
81 * we can only use memory pages that do not conflict with the pages
Rafael J. Wysocki83573762006-12-06 20:34:18 -080082 * used before suspend. The unsafe pages have PageNosaveFree set
83 * and we count them using unsafe_pages.
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -070084 *
Rafael J. Wysocki83573762006-12-06 20:34:18 -080085 * Each allocated image page is marked as PageNosave and PageNosaveFree
86 * so that swsusp_free() can release it.
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -070087 */
88
Rafael J. Wysocki0bcd8882006-09-25 23:32:52 -070089#define PG_ANY 0
90#define PG_SAFE 1
91#define PG_UNSAFE_CLEAR 1
92#define PG_UNSAFE_KEEP 0
93
Rafael J. Wysocki940864d2006-09-25 23:32:55 -070094static unsigned int allocated_unsafe_pages;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -070095
Rafael J. Wysocki83573762006-12-06 20:34:18 -080096static void *get_image_page(gfp_t gfp_mask, int safe_needed)
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -070097{
98 void *res;
99
100 res = (void *)get_zeroed_page(gfp_mask);
101 if (safe_needed)
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700102 while (res && swsusp_page_is_free(virt_to_page(res))) {
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700103 /* The page is unsafe, mark it for swsusp_free() */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700104 swsusp_set_page_forbidden(virt_to_page(res));
Rafael J. Wysocki940864d2006-09-25 23:32:55 -0700105 allocated_unsafe_pages++;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700106 res = (void *)get_zeroed_page(gfp_mask);
107 }
108 if (res) {
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700109 swsusp_set_page_forbidden(virt_to_page(res));
110 swsusp_set_page_free(virt_to_page(res));
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700111 }
112 return res;
113}
114
115unsigned long get_safe_page(gfp_t gfp_mask)
116{
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800117 return (unsigned long)get_image_page(gfp_mask, PG_SAFE);
118}
119
Rafael J. Wysocki5b6d15d2006-12-06 20:34:43 -0800120static struct page *alloc_image_page(gfp_t gfp_mask)
121{
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800122 struct page *page;
123
124 page = alloc_page(gfp_mask);
125 if (page) {
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700126 swsusp_set_page_forbidden(page);
127 swsusp_set_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800128 }
129 return page;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700130}
131
132/**
133 * free_image_page - free page represented by @addr, allocated with
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800134 * get_image_page (page flags set by it must be cleared)
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700135 */
136
137static inline void free_image_page(void *addr, int clear_nosave_free)
138{
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800139 struct page *page;
140
141 BUG_ON(!virt_addr_valid(addr));
142
143 page = virt_to_page(addr);
144
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700145 swsusp_unset_page_forbidden(page);
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700146 if (clear_nosave_free)
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700147 swsusp_unset_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800148
149 __free_page(page);
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700150}
151
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700152/* struct linked_page is used to build chains of pages */
153
154#define LINKED_PAGE_DATA_SIZE (PAGE_SIZE - sizeof(void *))
155
156struct linked_page {
157 struct linked_page *next;
158 char data[LINKED_PAGE_DATA_SIZE];
Gideon Israel Dsouza52f56842014-04-07 15:39:20 -0700159} __packed;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700160
161static inline void
162free_list_of_pages(struct linked_page *list, int clear_page_nosave)
163{
164 while (list) {
165 struct linked_page *lp = list->next;
166
167 free_image_page(list, clear_page_nosave);
168 list = lp;
169 }
170}
171
172/**
173 * struct chain_allocator is used for allocating small objects out of
174 * a linked list of pages called 'the chain'.
175 *
176 * The chain grows each time when there is no room for a new object in
177 * the current page. The allocated objects cannot be freed individually.
178 * It is only possible to free them all at once, by freeing the entire
179 * chain.
180 *
181 * NOTE: The chain allocator may be inefficient if the allocated objects
182 * are not much smaller than PAGE_SIZE.
183 */
184
185struct chain_allocator {
186 struct linked_page *chain; /* the chain */
187 unsigned int used_space; /* total size of objects allocated out
188 * of the current page
189 */
190 gfp_t gfp_mask; /* mask for allocating pages */
191 int safe_needed; /* if set, only "safe" pages are allocated */
192};
193
194static void
195chain_init(struct chain_allocator *ca, gfp_t gfp_mask, int safe_needed)
196{
197 ca->chain = NULL;
198 ca->used_space = LINKED_PAGE_DATA_SIZE;
199 ca->gfp_mask = gfp_mask;
200 ca->safe_needed = safe_needed;
201}
202
203static void *chain_alloc(struct chain_allocator *ca, unsigned int size)
204{
205 void *ret;
206
207 if (LINKED_PAGE_DATA_SIZE - ca->used_space < size) {
208 struct linked_page *lp;
209
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800210 lp = get_image_page(ca->gfp_mask, ca->safe_needed);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700211 if (!lp)
212 return NULL;
213
214 lp->next = ca->chain;
215 ca->chain = lp;
216 ca->used_space = 0;
217 }
218 ret = ca->chain->data + ca->used_space;
219 ca->used_space += size;
220 return ret;
221}
222
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700223/**
224 * Data types related to memory bitmaps.
225 *
226 * Memory bitmap is a structure consiting of many linked lists of
227 * objects. The main list's elements are of type struct zone_bitmap
228 * and each of them corresonds to one zone. For each zone bitmap
229 * object there is a list of objects of type struct bm_block that
Akinobu Mita0d833042008-07-23 21:28:38 -0700230 * represent each blocks of bitmap in which information is stored.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700231 *
232 * struct memory_bitmap contains a pointer to the main list of zone
233 * bitmap objects, a struct bm_position used for browsing the bitmap,
234 * and a pointer to the list of pages used for allocating all of the
235 * zone bitmap objects and bitmap block objects.
236 *
237 * NOTE: It has to be possible to lay out the bitmap in memory
238 * using only allocations of order 0. Additionally, the bitmap is
239 * designed to work with arbitrary number of zones (this is over the
240 * top for now, but let's avoid making unnecessary assumptions ;-).
241 *
242 * struct zone_bitmap contains a pointer to a list of bitmap block
243 * objects and a pointer to the bitmap block object that has been
244 * most recently used for setting bits. Additionally, it contains the
245 * pfns that correspond to the start and end of the represented zone.
246 *
247 * struct bm_block contains a pointer to the memory page in which
Akinobu Mita0d833042008-07-23 21:28:38 -0700248 * information is stored (in the form of a block of bitmap)
249 * It also contains the pfns that correspond to the start and end of
250 * the represented memory area.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700251 */
252
253#define BM_END_OF_MAP (~0UL)
254
Wu Fengguang8de03072009-07-22 19:56:10 +0200255#define BM_BITS_PER_BLOCK (PAGE_SIZE * BITS_PER_BYTE)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700256
257struct bm_block {
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500258 struct list_head hook; /* hook into a list of bitmap blocks */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700259 unsigned long start_pfn; /* pfn represented by the first bit */
260 unsigned long end_pfn; /* pfn represented by the last bit plus 1 */
Akinobu Mita0d833042008-07-23 21:28:38 -0700261 unsigned long *data; /* bitmap representing pages */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700262};
263
Akinobu Mita0d833042008-07-23 21:28:38 -0700264static inline unsigned long bm_block_bits(struct bm_block *bb)
265{
266 return bb->end_pfn - bb->start_pfn;
267}
268
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700269/* strcut bm_position is used for browsing memory bitmaps */
270
271struct bm_position {
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700272 struct bm_block *block;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700273 int bit;
274};
275
276struct memory_bitmap {
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500277 struct list_head blocks; /* list of bitmap blocks */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700278 struct linked_page *p_list; /* list of pages used to store zone
279 * bitmap objects and bitmap block
280 * objects
281 */
282 struct bm_position cur; /* most recently used bit position */
283};
284
285/* Functions that operate on memory bitmaps */
286
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700287static void memory_bm_position_reset(struct memory_bitmap *bm)
288{
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500289 bm->cur.block = list_entry(bm->blocks.next, struct bm_block, hook);
Akinobu Mita0d833042008-07-23 21:28:38 -0700290 bm->cur.bit = 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700291}
292
293static void memory_bm_free(struct memory_bitmap *bm, int clear_nosave_free);
294
295/**
296 * create_bm_block_list - create a list of block bitmap objects
Wu Fengguang8de03072009-07-22 19:56:10 +0200297 * @pages - number of pages to track
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500298 * @list - list to put the allocated blocks into
299 * @ca - chain allocator to be used for allocating memory
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700300 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500301static int create_bm_block_list(unsigned long pages,
302 struct list_head *list,
303 struct chain_allocator *ca)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700304{
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500305 unsigned int nr_blocks = DIV_ROUND_UP(pages, BM_BITS_PER_BLOCK);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700306
307 while (nr_blocks-- > 0) {
308 struct bm_block *bb;
309
310 bb = chain_alloc(ca, sizeof(struct bm_block));
311 if (!bb)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500312 return -ENOMEM;
313 list_add(&bb->hook, list);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700314 }
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500315
316 return 0;
317}
318
319struct mem_extent {
320 struct list_head hook;
321 unsigned long start;
322 unsigned long end;
323};
324
325/**
326 * free_mem_extents - free a list of memory extents
327 * @list - list of extents to empty
328 */
329static void free_mem_extents(struct list_head *list)
330{
331 struct mem_extent *ext, *aux;
332
333 list_for_each_entry_safe(ext, aux, list, hook) {
334 list_del(&ext->hook);
335 kfree(ext);
336 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700337}
338
339/**
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500340 * create_mem_extents - create a list of memory extents representing
341 * contiguous ranges of PFNs
342 * @list - list to put the extents into
343 * @gfp_mask - mask to use for memory allocations
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700344 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500345static int create_mem_extents(struct list_head *list, gfp_t gfp_mask)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700346{
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500347 struct zone *zone;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700348
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500349 INIT_LIST_HEAD(list);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700350
KOSAKI Motohiroee99c712009-03-31 15:19:31 -0700351 for_each_populated_zone(zone) {
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500352 unsigned long zone_start, zone_end;
353 struct mem_extent *ext, *cur, *aux;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700354
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500355 zone_start = zone->zone_start_pfn;
Xishi Qiuc33bc312013-09-11 14:21:44 -0700356 zone_end = zone_end_pfn(zone);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500357
358 list_for_each_entry(ext, list, hook)
359 if (zone_start <= ext->end)
360 break;
361
362 if (&ext->hook == list || zone_end < ext->start) {
363 /* New extent is necessary */
364 struct mem_extent *new_ext;
365
366 new_ext = kzalloc(sizeof(struct mem_extent), gfp_mask);
367 if (!new_ext) {
368 free_mem_extents(list);
369 return -ENOMEM;
370 }
371 new_ext->start = zone_start;
372 new_ext->end = zone_end;
373 list_add_tail(&new_ext->hook, &ext->hook);
374 continue;
375 }
376
377 /* Merge this zone's range of PFNs with the existing one */
378 if (zone_start < ext->start)
379 ext->start = zone_start;
380 if (zone_end > ext->end)
381 ext->end = zone_end;
382
383 /* More merging may be possible */
384 cur = ext;
385 list_for_each_entry_safe_continue(cur, aux, list, hook) {
386 if (zone_end < cur->start)
387 break;
388 if (zone_end < cur->end)
389 ext->end = cur->end;
390 list_del(&cur->hook);
391 kfree(cur);
392 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700393 }
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500394
395 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700396}
397
398/**
399 * memory_bm_create - allocate memory for a memory bitmap
400 */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700401static int
402memory_bm_create(struct memory_bitmap *bm, gfp_t gfp_mask, int safe_needed)
403{
404 struct chain_allocator ca;
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500405 struct list_head mem_extents;
406 struct mem_extent *ext;
407 int error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700408
409 chain_init(&ca, gfp_mask, safe_needed);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500410 INIT_LIST_HEAD(&bm->blocks);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700411
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500412 error = create_mem_extents(&mem_extents, gfp_mask);
413 if (error)
414 return error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700415
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500416 list_for_each_entry(ext, &mem_extents, hook) {
417 struct bm_block *bb;
418 unsigned long pfn = ext->start;
419 unsigned long pages = ext->end - ext->start;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700420
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500421 bb = list_entry(bm->blocks.prev, struct bm_block, hook);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700422
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500423 error = create_bm_block_list(pages, bm->blocks.prev, &ca);
424 if (error)
425 goto Error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700426
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500427 list_for_each_entry_continue(bb, &bm->blocks, hook) {
428 bb->data = get_image_page(gfp_mask, safe_needed);
429 if (!bb->data) {
430 error = -ENOMEM;
431 goto Error;
432 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700433
434 bb->start_pfn = pfn;
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500435 if (pages >= BM_BITS_PER_BLOCK) {
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700436 pfn += BM_BITS_PER_BLOCK;
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500437 pages -= BM_BITS_PER_BLOCK;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700438 } else {
439 /* This is executed only once in the loop */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500440 pfn += pages;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700441 }
442 bb->end_pfn = pfn;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700443 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700444 }
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500445
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700446 bm->p_list = ca.chain;
447 memory_bm_position_reset(bm);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500448 Exit:
449 free_mem_extents(&mem_extents);
450 return error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700451
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500452 Error:
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700453 bm->p_list = ca.chain;
454 memory_bm_free(bm, PG_UNSAFE_CLEAR);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500455 goto Exit;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700456}
457
458/**
459 * memory_bm_free - free memory occupied by the memory bitmap @bm
460 */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700461static void memory_bm_free(struct memory_bitmap *bm, int clear_nosave_free)
462{
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500463 struct bm_block *bb;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700464
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500465 list_for_each_entry(bb, &bm->blocks, hook)
466 if (bb->data)
467 free_image_page(bb->data, clear_nosave_free);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700468
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700469 free_list_of_pages(bm->p_list, clear_nosave_free);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500470
471 INIT_LIST_HEAD(&bm->blocks);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700472}
473
474/**
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700475 * memory_bm_find_bit - find the bit in the bitmap @bm that corresponds
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700476 * to given pfn. The cur_zone_bm member of @bm and the cur_block member
477 * of @bm->cur_zone_bm are updated.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700478 */
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100479static int memory_bm_find_bit(struct memory_bitmap *bm, unsigned long pfn,
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700480 void **addr, unsigned int *bit_nr)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700481{
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700482 struct bm_block *bb;
483
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500484 /*
485 * Check if the pfn corresponds to the current bitmap block and find
486 * the block where it fits if this is not the case.
487 */
488 bb = bm->cur.block;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700489 if (pfn < bb->start_pfn)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500490 list_for_each_entry_continue_reverse(bb, &bm->blocks, hook)
491 if (pfn >= bb->start_pfn)
492 break;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700493
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500494 if (pfn >= bb->end_pfn)
495 list_for_each_entry_continue(bb, &bm->blocks, hook)
496 if (pfn >= bb->start_pfn && pfn < bb->end_pfn)
497 break;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700498
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500499 if (&bb->hook == &bm->blocks)
500 return -EFAULT;
501
502 /* The block has been found */
503 bm->cur.block = bb;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700504 pfn -= bb->start_pfn;
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500505 bm->cur.bit = pfn + 1;
Akinobu Mita0d833042008-07-23 21:28:38 -0700506 *bit_nr = pfn;
507 *addr = bb->data;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100508 return 0;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700509}
510
511static void memory_bm_set_bit(struct memory_bitmap *bm, unsigned long pfn)
512{
513 void *addr;
514 unsigned int bit;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100515 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700516
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100517 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
518 BUG_ON(error);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700519 set_bit(bit, addr);
520}
521
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100522static int mem_bm_set_bit_check(struct memory_bitmap *bm, unsigned long pfn)
523{
524 void *addr;
525 unsigned int bit;
526 int error;
527
528 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
529 if (!error)
530 set_bit(bit, addr);
531 return error;
532}
533
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700534static void memory_bm_clear_bit(struct memory_bitmap *bm, unsigned long pfn)
535{
536 void *addr;
537 unsigned int bit;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100538 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700539
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100540 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
541 BUG_ON(error);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700542 clear_bit(bit, addr);
543}
544
545static int memory_bm_test_bit(struct memory_bitmap *bm, unsigned long pfn)
546{
547 void *addr;
548 unsigned int bit;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100549 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700550
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100551 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
552 BUG_ON(error);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700553 return test_bit(bit, addr);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700554}
555
Rafael J. Wysocki69643272008-11-11 21:32:44 +0100556static bool memory_bm_pfn_present(struct memory_bitmap *bm, unsigned long pfn)
557{
558 void *addr;
559 unsigned int bit;
560
561 return !memory_bm_find_bit(bm, pfn, &addr, &bit);
562}
563
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700564/**
565 * memory_bm_next_pfn - find the pfn that corresponds to the next set bit
566 * in the bitmap @bm. If the pfn cannot be found, BM_END_OF_MAP is
567 * returned.
568 *
569 * It is required to run memory_bm_position_reset() before the first call to
570 * this function.
571 */
572
573static unsigned long memory_bm_next_pfn(struct memory_bitmap *bm)
574{
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700575 struct bm_block *bb;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700576 int bit;
577
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500578 bb = bm->cur.block;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700579 do {
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500580 bit = bm->cur.bit;
581 bit = find_next_bit(bb->data, bm_block_bits(bb), bit);
582 if (bit < bm_block_bits(bb))
583 goto Return_pfn;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700584
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500585 bb = list_entry(bb->hook.next, struct bm_block, hook);
586 bm->cur.block = bb;
587 bm->cur.bit = 0;
588 } while (&bb->hook != &bm->blocks);
589
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700590 memory_bm_position_reset(bm);
591 return BM_END_OF_MAP;
592
Rafael J. Wysocki59a49332006-12-06 20:34:44 -0800593 Return_pfn:
Akinobu Mita0d833042008-07-23 21:28:38 -0700594 bm->cur.bit = bit + 1;
595 return bb->start_pfn + bit;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700596}
597
598/**
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700599 * This structure represents a range of page frames the contents of which
600 * should not be saved during the suspend.
601 */
602
603struct nosave_region {
604 struct list_head list;
605 unsigned long start_pfn;
606 unsigned long end_pfn;
607};
608
609static LIST_HEAD(nosave_regions);
610
611/**
612 * register_nosave_region - register a range of page frames the contents
613 * of which should not be saved during the suspend (to be used in the early
614 * initialization code)
615 */
616
617void __init
Johannes Berg940d67f2007-05-08 19:23:49 +1000618__register_nosave_region(unsigned long start_pfn, unsigned long end_pfn,
619 int use_kmalloc)
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700620{
621 struct nosave_region *region;
622
623 if (start_pfn >= end_pfn)
624 return;
625
626 if (!list_empty(&nosave_regions)) {
627 /* Try to extend the previous region (they should be sorted) */
628 region = list_entry(nosave_regions.prev,
629 struct nosave_region, list);
630 if (region->end_pfn == start_pfn) {
631 region->end_pfn = end_pfn;
632 goto Report;
633 }
634 }
Johannes Berg940d67f2007-05-08 19:23:49 +1000635 if (use_kmalloc) {
636 /* during init, this shouldn't fail */
637 region = kmalloc(sizeof(struct nosave_region), GFP_KERNEL);
638 BUG_ON(!region);
639 } else
640 /* This allocation cannot fail */
Santosh Shilimkarc2f69cd2014-01-21 15:50:27 -0800641 region = memblock_virt_alloc(sizeof(struct nosave_region), 0);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700642 region->start_pfn = start_pfn;
643 region->end_pfn = end_pfn;
644 list_add_tail(&region->list, &nosave_regions);
645 Report:
Bjorn Helgaascd38ca82013-06-03 18:20:29 +0000646 printk(KERN_INFO "PM: Registered nosave memory: [mem %#010llx-%#010llx]\n",
647 (unsigned long long) start_pfn << PAGE_SHIFT,
648 ((unsigned long long) end_pfn << PAGE_SHIFT) - 1);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700649}
650
651/*
652 * Set bits in this map correspond to the page frames the contents of which
653 * should not be saved during the suspend.
654 */
655static struct memory_bitmap *forbidden_pages_map;
656
657/* Set bits in this map correspond to free page frames. */
658static struct memory_bitmap *free_pages_map;
659
660/*
661 * Each page frame allocated for creating the image is marked by setting the
662 * corresponding bits in forbidden_pages_map and free_pages_map simultaneously
663 */
664
665void swsusp_set_page_free(struct page *page)
666{
667 if (free_pages_map)
668 memory_bm_set_bit(free_pages_map, page_to_pfn(page));
669}
670
671static int swsusp_page_is_free(struct page *page)
672{
673 return free_pages_map ?
674 memory_bm_test_bit(free_pages_map, page_to_pfn(page)) : 0;
675}
676
677void swsusp_unset_page_free(struct page *page)
678{
679 if (free_pages_map)
680 memory_bm_clear_bit(free_pages_map, page_to_pfn(page));
681}
682
683static void swsusp_set_page_forbidden(struct page *page)
684{
685 if (forbidden_pages_map)
686 memory_bm_set_bit(forbidden_pages_map, page_to_pfn(page));
687}
688
689int swsusp_page_is_forbidden(struct page *page)
690{
691 return forbidden_pages_map ?
692 memory_bm_test_bit(forbidden_pages_map, page_to_pfn(page)) : 0;
693}
694
695static void swsusp_unset_page_forbidden(struct page *page)
696{
697 if (forbidden_pages_map)
698 memory_bm_clear_bit(forbidden_pages_map, page_to_pfn(page));
699}
700
701/**
702 * mark_nosave_pages - set bits corresponding to the page frames the
703 * contents of which should not be saved in a given bitmap.
704 */
705
706static void mark_nosave_pages(struct memory_bitmap *bm)
707{
708 struct nosave_region *region;
709
710 if (list_empty(&nosave_regions))
711 return;
712
713 list_for_each_entry(region, &nosave_regions, list) {
714 unsigned long pfn;
715
Bjorn Helgaas69f1d472012-02-14 22:20:52 +0100716 pr_debug("PM: Marking nosave pages: [mem %#010llx-%#010llx]\n",
717 (unsigned long long) region->start_pfn << PAGE_SHIFT,
718 ((unsigned long long) region->end_pfn << PAGE_SHIFT)
719 - 1);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700720
721 for (pfn = region->start_pfn; pfn < region->end_pfn; pfn++)
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100722 if (pfn_valid(pfn)) {
723 /*
724 * It is safe to ignore the result of
725 * mem_bm_set_bit_check() here, since we won't
726 * touch the PFNs for which the error is
727 * returned anyway.
728 */
729 mem_bm_set_bit_check(bm, pfn);
730 }
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700731 }
732}
733
734/**
735 * create_basic_memory_bitmaps - create bitmaps needed for marking page
736 * frames that should not be saved and free page frames. The pointers
737 * forbidden_pages_map and free_pages_map are only modified if everything
738 * goes well, because we don't want the bits to be used before both bitmaps
739 * are set up.
740 */
741
742int create_basic_memory_bitmaps(void)
743{
744 struct memory_bitmap *bm1, *bm2;
745 int error = 0;
746
Rafael J. Wysockiaab17282013-09-30 19:40:56 +0200747 if (forbidden_pages_map && free_pages_map)
748 return 0;
749 else
750 BUG_ON(forbidden_pages_map || free_pages_map);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700751
Rafael J. Wysocki0709db62007-05-06 14:50:45 -0700752 bm1 = kzalloc(sizeof(struct memory_bitmap), GFP_KERNEL);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700753 if (!bm1)
754 return -ENOMEM;
755
Rafael J. Wysocki0709db62007-05-06 14:50:45 -0700756 error = memory_bm_create(bm1, GFP_KERNEL, PG_ANY);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700757 if (error)
758 goto Free_first_object;
759
Rafael J. Wysocki0709db62007-05-06 14:50:45 -0700760 bm2 = kzalloc(sizeof(struct memory_bitmap), GFP_KERNEL);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700761 if (!bm2)
762 goto Free_first_bitmap;
763
Rafael J. Wysocki0709db62007-05-06 14:50:45 -0700764 error = memory_bm_create(bm2, GFP_KERNEL, PG_ANY);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700765 if (error)
766 goto Free_second_object;
767
768 forbidden_pages_map = bm1;
769 free_pages_map = bm2;
770 mark_nosave_pages(forbidden_pages_map);
771
Rafael J. Wysocki23976722007-12-08 02:09:43 +0100772 pr_debug("PM: Basic memory bitmaps created\n");
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700773
774 return 0;
775
776 Free_second_object:
777 kfree(bm2);
778 Free_first_bitmap:
779 memory_bm_free(bm1, PG_UNSAFE_CLEAR);
780 Free_first_object:
781 kfree(bm1);
782 return -ENOMEM;
783}
784
785/**
786 * free_basic_memory_bitmaps - free memory bitmaps allocated by
787 * create_basic_memory_bitmaps(). The auxiliary pointers are necessary
788 * so that the bitmaps themselves are not referred to while they are being
789 * freed.
790 */
791
792void free_basic_memory_bitmaps(void)
793{
794 struct memory_bitmap *bm1, *bm2;
795
Rafael J. Wysocki6a0c7cd2013-11-14 23:26:58 +0100796 if (WARN_ON(!(forbidden_pages_map && free_pages_map)))
797 return;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700798
799 bm1 = forbidden_pages_map;
800 bm2 = free_pages_map;
801 forbidden_pages_map = NULL;
802 free_pages_map = NULL;
803 memory_bm_free(bm1, PG_UNSAFE_CLEAR);
804 kfree(bm1);
805 memory_bm_free(bm2, PG_UNSAFE_CLEAR);
806 kfree(bm2);
807
Rafael J. Wysocki23976722007-12-08 02:09:43 +0100808 pr_debug("PM: Basic memory bitmaps freed\n");
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700809}
810
811/**
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700812 * snapshot_additional_pages - estimate the number of additional pages
813 * be needed for setting up the suspend image data structures for given
814 * zone (usually the returned value is greater than the exact number)
815 */
816
817unsigned int snapshot_additional_pages(struct zone *zone)
818{
819 unsigned int res;
820
821 res = DIV_ROUND_UP(zone->spanned_pages, BM_BITS_PER_BLOCK);
Namhyung Kim160cb5a2012-01-19 23:23:10 +0100822 res += DIV_ROUND_UP(res * sizeof(struct bm_block),
823 LINKED_PAGE_DATA_SIZE);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800824 return 2 * res;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700825}
826
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800827#ifdef CONFIG_HIGHMEM
828/**
829 * count_free_highmem_pages - compute the total number of free highmem
830 * pages, system-wide.
831 */
832
833static unsigned int count_free_highmem_pages(void)
834{
835 struct zone *zone;
836 unsigned int cnt = 0;
837
KOSAKI Motohiroee99c712009-03-31 15:19:31 -0700838 for_each_populated_zone(zone)
839 if (is_highmem(zone))
Christoph Lameterd23ad422007-02-10 01:43:02 -0800840 cnt += zone_page_state(zone, NR_FREE_PAGES);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800841
842 return cnt;
843}
844
845/**
846 * saveable_highmem_page - Determine whether a highmem page should be
847 * included in the suspend image.
848 *
849 * We should save the page if it isn't Nosave or NosaveFree, or Reserved,
850 * and it isn't a part of a free chunk of pages.
851 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500852static struct page *saveable_highmem_page(struct zone *zone, unsigned long pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800853{
854 struct page *page;
855
856 if (!pfn_valid(pfn))
857 return NULL;
858
859 page = pfn_to_page(pfn);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500860 if (page_zone(page) != zone)
861 return NULL;
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800862
863 BUG_ON(!PageHighMem(page));
864
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700865 if (swsusp_page_is_forbidden(page) || swsusp_page_is_free(page) ||
866 PageReserved(page))
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800867 return NULL;
868
Stanislaw Gruszkac6968e72012-01-10 15:07:31 -0800869 if (page_is_guard(page))
870 return NULL;
871
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800872 return page;
873}
874
875/**
876 * count_highmem_pages - compute the total number of saveable highmem
877 * pages.
878 */
879
Rafael J. Wysockife419532009-06-11 23:11:17 +0200880static unsigned int count_highmem_pages(void)
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800881{
882 struct zone *zone;
883 unsigned int n = 0;
884
Gerald Schaefer98e73dc2009-07-22 00:36:56 +0200885 for_each_populated_zone(zone) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800886 unsigned long pfn, max_zone_pfn;
887
888 if (!is_highmem(zone))
889 continue;
890
891 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -0700892 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800893 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500894 if (saveable_highmem_page(zone, pfn))
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800895 n++;
896 }
897 return n;
898}
899#else
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500900static inline void *saveable_highmem_page(struct zone *z, unsigned long p)
901{
902 return NULL;
903}
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800904#endif /* CONFIG_HIGHMEM */
905
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700906/**
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +0100907 * saveable_page - Determine whether a non-highmem page should be included
908 * in the suspend image.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800909 *
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800910 * We should save the page if it isn't Nosave, and is not in the range
911 * of pages statically defined as 'unsaveable', and it isn't a part of
912 * a free chunk of pages.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800913 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500914static struct page *saveable_page(struct zone *zone, unsigned long pfn)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800915{
Pavel Machekde491862005-10-30 14:59:59 -0800916 struct page *page;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800917
918 if (!pfn_valid(pfn))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700919 return NULL;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800920
921 page = pfn_to_page(pfn);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500922 if (page_zone(page) != zone)
923 return NULL;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800924
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800925 BUG_ON(PageHighMem(page));
926
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700927 if (swsusp_page_is_forbidden(page) || swsusp_page_is_free(page))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700928 return NULL;
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800929
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +0100930 if (PageReserved(page)
931 && (!kernel_page_present(page) || pfn_is_nosave(pfn)))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700932 return NULL;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700933
Stanislaw Gruszkac6968e72012-01-10 15:07:31 -0800934 if (page_is_guard(page))
935 return NULL;
936
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700937 return page;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800938}
939
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800940/**
941 * count_data_pages - compute the total number of saveable non-highmem
942 * pages.
943 */
944
Rafael J. Wysockife419532009-06-11 23:11:17 +0200945static unsigned int count_data_pages(void)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800946{
947 struct zone *zone;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700948 unsigned long pfn, max_zone_pfn;
Pavel Machekdc19d502005-11-07 00:58:40 -0800949 unsigned int n = 0;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800950
Gerald Schaefer98e73dc2009-07-22 00:36:56 +0200951 for_each_populated_zone(zone) {
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800952 if (is_highmem(zone))
953 continue;
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800954
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800955 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -0700956 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -0700957 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500958 if (saveable_page(zone, pfn))
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800959 n++;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800960 }
Rafael J. Wysockia0f49652005-10-30 14:59:57 -0800961 return n;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -0800962}
963
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800964/* This is needed, because copy_page and memcpy are not usable for copying
965 * task structs.
966 */
967static inline void do_copy_page(long *dst, long *src)
Rafael J. Wysockif623f0d2006-09-25 23:32:49 -0700968{
969 int n;
970
Rafael J. Wysockif623f0d2006-09-25 23:32:49 -0700971 for (n = PAGE_SIZE / sizeof(long); n; n--)
972 *dst++ = *src++;
973}
974
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +0100975
976/**
977 * safe_copy_page - check if the page we are going to copy is marked as
978 * present in the kernel page tables (this always is the case if
979 * CONFIG_DEBUG_PAGEALLOC is not set and in that case
980 * kernel_page_present() always returns 'true').
981 */
982static void safe_copy_page(void *dst, struct page *s_page)
983{
984 if (kernel_page_present(s_page)) {
985 do_copy_page(dst, page_address(s_page));
986 } else {
987 kernel_map_pages(s_page, 1, 1);
988 do_copy_page(dst, page_address(s_page));
989 kernel_map_pages(s_page, 1, 0);
990 }
991}
992
993
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800994#ifdef CONFIG_HIGHMEM
995static inline struct page *
996page_is_saveable(struct zone *zone, unsigned long pfn)
997{
998 return is_highmem(zone) ?
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500999 saveable_highmem_page(zone, pfn) : saveable_page(zone, pfn);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001000}
1001
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001002static void copy_data_page(unsigned long dst_pfn, unsigned long src_pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001003{
1004 struct page *s_page, *d_page;
1005 void *src, *dst;
1006
1007 s_page = pfn_to_page(src_pfn);
1008 d_page = pfn_to_page(dst_pfn);
1009 if (PageHighMem(s_page)) {
Cong Wang0de9a1e2011-11-25 23:14:38 +08001010 src = kmap_atomic(s_page);
1011 dst = kmap_atomic(d_page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001012 do_copy_page(dst, src);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001013 kunmap_atomic(dst);
1014 kunmap_atomic(src);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001015 } else {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001016 if (PageHighMem(d_page)) {
1017 /* Page pointed to by src may contain some kernel
1018 * data modified by kmap_atomic()
1019 */
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001020 safe_copy_page(buffer, s_page);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001021 dst = kmap_atomic(d_page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07001022 copy_page(dst, buffer);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001023 kunmap_atomic(dst);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001024 } else {
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001025 safe_copy_page(page_address(d_page), s_page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001026 }
1027 }
1028}
1029#else
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001030#define page_is_saveable(zone, pfn) saveable_page(zone, pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001031
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001032static inline void copy_data_page(unsigned long dst_pfn, unsigned long src_pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001033{
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001034 safe_copy_page(page_address(pfn_to_page(dst_pfn)),
1035 pfn_to_page(src_pfn));
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001036}
1037#endif /* CONFIG_HIGHMEM */
1038
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001039static void
1040copy_data_pages(struct memory_bitmap *copy_bm, struct memory_bitmap *orig_bm)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001041{
1042 struct zone *zone;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001043 unsigned long pfn;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001044
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001045 for_each_populated_zone(zone) {
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001046 unsigned long max_zone_pfn;
1047
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001048 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -07001049 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001050 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001051 if (page_is_saveable(zone, pfn))
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001052 memory_bm_set_bit(orig_bm, pfn);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001053 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001054 memory_bm_position_reset(orig_bm);
1055 memory_bm_position_reset(copy_bm);
Fengguang Wudf7c4872007-10-20 02:26:04 +02001056 for(;;) {
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001057 pfn = memory_bm_next_pfn(orig_bm);
Fengguang Wudf7c4872007-10-20 02:26:04 +02001058 if (unlikely(pfn == BM_END_OF_MAP))
1059 break;
1060 copy_data_page(memory_bm_next_pfn(copy_bm), pfn);
1061 }
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001062}
1063
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001064/* Total number of image pages */
1065static unsigned int nr_copy_pages;
1066/* Number of pages needed for saving the original pfns of the image pages */
1067static unsigned int nr_meta_pages;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001068/*
1069 * Numbers of normal and highmem page frames allocated for hibernation image
1070 * before suspending devices.
1071 */
1072unsigned int alloc_normal, alloc_highmem;
1073/*
1074 * Memory bitmap used for marking saveable pages (during hibernation) or
1075 * hibernation image pages (during restore)
1076 */
1077static struct memory_bitmap orig_bm;
1078/*
1079 * Memory bitmap used during hibernation for marking allocated page frames that
1080 * will contain copies of saveable pages. During restore it is initially used
1081 * for marking hibernation image pages, but then the set bits from it are
1082 * duplicated in @orig_bm and it is released. On highmem systems it is next
1083 * used for marking "safe" highmem pages, but it has to be reinitialized for
1084 * this purpose.
1085 */
1086static struct memory_bitmap copy_bm;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001087
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001088/**
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001089 * swsusp_free - free pages allocated for the suspend.
Rafael J. Wysockicd560bb2006-09-25 23:32:50 -07001090 *
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001091 * Suspend pages are alocated before the atomic copy is made, so we
1092 * need to release them after the resume.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001093 */
1094
1095void swsusp_free(void)
1096{
1097 struct zone *zone;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001098 unsigned long pfn, max_zone_pfn;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001099
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001100 for_each_populated_zone(zone) {
Xishi Qiuc33bc312013-09-11 14:21:44 -07001101 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001102 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
1103 if (pfn_valid(pfn)) {
1104 struct page *page = pfn_to_page(pfn);
1105
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001106 if (swsusp_page_is_forbidden(page) &&
1107 swsusp_page_is_free(page)) {
1108 swsusp_unset_page_forbidden(page);
1109 swsusp_unset_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001110 __free_page(page);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001111 }
1112 }
1113 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001114 nr_copy_pages = 0;
1115 nr_meta_pages = 0;
Rafael J. Wysocki75534b52006-09-25 23:32:52 -07001116 restore_pblist = NULL;
Rafael J. Wysocki6e1819d2006-03-23 03:00:03 -08001117 buffer = NULL;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001118 alloc_normal = 0;
1119 alloc_highmem = 0;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001120}
1121
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001122/* Helper functions used for the shrinking of memory. */
Rafael J. Wysockife419532009-06-11 23:11:17 +02001123
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001124#define GFP_IMAGE (GFP_KERNEL | __GFP_NOWARN)
1125
1126/**
1127 * preallocate_image_pages - Allocate a number of pages for hibernation image
1128 * @nr_pages: Number of page frames to allocate.
1129 * @mask: GFP flags to use for the allocation.
1130 *
1131 * Return value: Number of page frames actually allocated
1132 */
1133static unsigned long preallocate_image_pages(unsigned long nr_pages, gfp_t mask)
Rafael J. Wysockife419532009-06-11 23:11:17 +02001134{
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001135 unsigned long nr_alloc = 0;
1136
1137 while (nr_pages > 0) {
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001138 struct page *page;
1139
1140 page = alloc_image_page(mask);
1141 if (!page)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001142 break;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001143 memory_bm_set_bit(&copy_bm, page_to_pfn(page));
1144 if (PageHighMem(page))
1145 alloc_highmem++;
1146 else
1147 alloc_normal++;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001148 nr_pages--;
1149 nr_alloc++;
1150 }
1151
1152 return nr_alloc;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001153}
1154
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001155static unsigned long preallocate_image_memory(unsigned long nr_pages,
1156 unsigned long avail_normal)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001157{
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001158 unsigned long alloc;
1159
1160 if (avail_normal <= alloc_normal)
1161 return 0;
1162
1163 alloc = avail_normal - alloc_normal;
1164 if (nr_pages < alloc)
1165 alloc = nr_pages;
1166
1167 return preallocate_image_pages(alloc, GFP_IMAGE);
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001168}
1169
1170#ifdef CONFIG_HIGHMEM
1171static unsigned long preallocate_image_highmem(unsigned long nr_pages)
1172{
1173 return preallocate_image_pages(nr_pages, GFP_IMAGE | __GFP_HIGHMEM);
1174}
1175
1176/**
1177 * __fraction - Compute (an approximation of) x * (multiplier / base)
1178 */
1179static unsigned long __fraction(u64 x, u64 multiplier, u64 base)
1180{
1181 x *= multiplier;
1182 do_div(x, base);
1183 return (unsigned long)x;
1184}
1185
1186static unsigned long preallocate_highmem_fraction(unsigned long nr_pages,
1187 unsigned long highmem,
1188 unsigned long total)
1189{
1190 unsigned long alloc = __fraction(nr_pages, highmem, total);
1191
1192 return preallocate_image_pages(alloc, GFP_IMAGE | __GFP_HIGHMEM);
1193}
1194#else /* CONFIG_HIGHMEM */
1195static inline unsigned long preallocate_image_highmem(unsigned long nr_pages)
1196{
1197 return 0;
1198}
1199
1200static inline unsigned long preallocate_highmem_fraction(unsigned long nr_pages,
1201 unsigned long highmem,
1202 unsigned long total)
1203{
1204 return 0;
1205}
1206#endif /* CONFIG_HIGHMEM */
1207
1208/**
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001209 * free_unnecessary_pages - Release preallocated pages not needed for the image
1210 */
1211static void free_unnecessary_pages(void)
1212{
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001213 unsigned long save, to_free_normal, to_free_highmem;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001214
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001215 save = count_data_pages();
1216 if (alloc_normal >= save) {
1217 to_free_normal = alloc_normal - save;
1218 save = 0;
1219 } else {
1220 to_free_normal = 0;
1221 save -= alloc_normal;
1222 }
1223 save += count_highmem_pages();
1224 if (alloc_highmem >= save) {
1225 to_free_highmem = alloc_highmem - save;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001226 } else {
1227 to_free_highmem = 0;
Rafael J. Wysocki4d4cf232011-07-06 20:15:23 +02001228 save -= alloc_highmem;
1229 if (to_free_normal > save)
1230 to_free_normal -= save;
1231 else
1232 to_free_normal = 0;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001233 }
1234
1235 memory_bm_position_reset(&copy_bm);
1236
Rafael J. Wysockia9c9b442010-02-25 22:32:37 +01001237 while (to_free_normal > 0 || to_free_highmem > 0) {
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001238 unsigned long pfn = memory_bm_next_pfn(&copy_bm);
1239 struct page *page = pfn_to_page(pfn);
1240
1241 if (PageHighMem(page)) {
1242 if (!to_free_highmem)
1243 continue;
1244 to_free_highmem--;
1245 alloc_highmem--;
1246 } else {
1247 if (!to_free_normal)
1248 continue;
1249 to_free_normal--;
1250 alloc_normal--;
1251 }
1252 memory_bm_clear_bit(&copy_bm, pfn);
1253 swsusp_unset_page_forbidden(page);
1254 swsusp_unset_page_free(page);
1255 __free_page(page);
1256 }
1257}
1258
1259/**
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001260 * minimum_image_size - Estimate the minimum acceptable size of an image
1261 * @saveable: Number of saveable pages in the system.
1262 *
1263 * We want to avoid attempting to free too much memory too hard, so estimate the
1264 * minimum acceptable size of a hibernation image to use as the lower limit for
1265 * preallocating memory.
1266 *
1267 * We assume that the minimum image size should be proportional to
1268 *
1269 * [number of saveable pages] - [number of pages that can be freed in theory]
1270 *
1271 * where the second term is the sum of (1) reclaimable slab pages, (2) active
Geert Uytterhoeven4d434822014-03-11 11:23:41 +01001272 * and (3) inactive anonymous pages, (4) active and (5) inactive file pages,
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001273 * minus mapped file pages.
1274 */
1275static unsigned long minimum_image_size(unsigned long saveable)
1276{
1277 unsigned long size;
1278
1279 size = global_page_state(NR_SLAB_RECLAIMABLE)
1280 + global_page_state(NR_ACTIVE_ANON)
1281 + global_page_state(NR_INACTIVE_ANON)
1282 + global_page_state(NR_ACTIVE_FILE)
1283 + global_page_state(NR_INACTIVE_FILE)
1284 - global_page_state(NR_FILE_MAPPED);
1285
1286 return saveable <= size ? 0 : saveable - size;
1287}
1288
1289/**
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001290 * hibernate_preallocate_memory - Preallocate memory for hibernation image
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001291 *
1292 * To create a hibernation image it is necessary to make a copy of every page
1293 * frame in use. We also need a number of page frames to be free during
1294 * hibernation for allocations made while saving the image and for device
1295 * drivers, in case they need to allocate memory from their hibernation
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001296 * callbacks (these two numbers are given by PAGES_FOR_IO (which is a rough
1297 * estimate) and reserverd_size divided by PAGE_SIZE (which is tunable through
1298 * /sys/power/reserved_size, respectively). To make this happen, we compute the
1299 * total number of available page frames and allocate at least
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001300 *
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001301 * ([page frames total] + PAGES_FOR_IO + [metadata pages]) / 2
1302 * + 2 * DIV_ROUND_UP(reserved_size, PAGE_SIZE)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001303 *
1304 * of them, which corresponds to the maximum size of a hibernation image.
1305 *
1306 * If image_size is set below the number following from the above formula,
1307 * the preallocation of memory is continued until the total number of saveable
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001308 * pages in the system is below the requested image size or the minimum
1309 * acceptable image size returned by minimum_image_size(), whichever is greater.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001310 */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001311int hibernate_preallocate_memory(void)
Rafael J. Wysockife419532009-06-11 23:11:17 +02001312{
Rafael J. Wysockife419532009-06-11 23:11:17 +02001313 struct zone *zone;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001314 unsigned long saveable, size, max_size, count, highmem, pages = 0;
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001315 unsigned long alloc, save_highmem, pages_highmem, avail_normal;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001316 struct timeval start, stop;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001317 int error;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001318
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001319 printk(KERN_INFO "PM: Preallocating image memory... ");
Rafael J. Wysockife419532009-06-11 23:11:17 +02001320 do_gettimeofday(&start);
Rafael J. Wysockife419532009-06-11 23:11:17 +02001321
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001322 error = memory_bm_create(&orig_bm, GFP_IMAGE, PG_ANY);
1323 if (error)
1324 goto err_out;
1325
1326 error = memory_bm_create(&copy_bm, GFP_IMAGE, PG_ANY);
1327 if (error)
1328 goto err_out;
1329
1330 alloc_normal = 0;
1331 alloc_highmem = 0;
1332
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001333 /* Count the number of saveable data pages. */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001334 save_highmem = count_highmem_pages();
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001335 saveable = count_data_pages();
Rafael J. Wysockife419532009-06-11 23:11:17 +02001336
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001337 /*
1338 * Compute the total number of page frames we can use (count) and the
1339 * number of pages needed for image metadata (size).
1340 */
1341 count = saveable;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001342 saveable += save_highmem;
1343 highmem = save_highmem;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001344 size = 0;
1345 for_each_populated_zone(zone) {
1346 size += snapshot_additional_pages(zone);
1347 if (is_highmem(zone))
1348 highmem += zone_page_state(zone, NR_FREE_PAGES);
1349 else
1350 count += zone_page_state(zone, NR_FREE_PAGES);
1351 }
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001352 avail_normal = count;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001353 count += highmem;
1354 count -= totalreserve_pages;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001355
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02001356 /* Add number of pages required for page keys (s390 only). */
1357 size += page_key_additional_pages(saveable);
1358
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001359 /* Compute the maximum number of saveable pages to leave in memory. */
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001360 max_size = (count - (size + PAGES_FOR_IO)) / 2
1361 - 2 * DIV_ROUND_UP(reserved_size, PAGE_SIZE);
Rafael J. Wysocki266f1a22010-09-20 19:44:38 +02001362 /* Compute the desired number of image pages specified by image_size. */
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001363 size = DIV_ROUND_UP(image_size, PAGE_SIZE);
1364 if (size > max_size)
1365 size = max_size;
1366 /*
Rafael J. Wysocki266f1a22010-09-20 19:44:38 +02001367 * If the desired number of image pages is at least as large as the
1368 * current number of saveable pages in memory, allocate page frames for
1369 * the image and we're done.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001370 */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001371 if (size >= saveable) {
1372 pages = preallocate_image_highmem(save_highmem);
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001373 pages += preallocate_image_memory(saveable - pages, avail_normal);
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001374 goto out;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001375 }
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001376
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001377 /* Estimate the minimum size of the image. */
1378 pages = minimum_image_size(saveable);
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001379 /*
1380 * To avoid excessive pressure on the normal zone, leave room in it to
1381 * accommodate an image of the minimum size (unless it's already too
1382 * small, in which case don't preallocate pages from it at all).
1383 */
1384 if (avail_normal > pages)
1385 avail_normal -= pages;
1386 else
1387 avail_normal = 0;
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001388 if (size < pages)
1389 size = min_t(unsigned long, pages, max_size);
1390
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001391 /*
1392 * Let the memory management subsystem know that we're going to need a
1393 * large number of page frames to allocate and make it free some memory.
1394 * NOTE: If this is not done, performance will be hurt badly in some
1395 * test cases.
1396 */
1397 shrink_all_memory(saveable - size);
1398
1399 /*
1400 * The number of saveable pages in memory was too high, so apply some
1401 * pressure to decrease it. First, make room for the largest possible
1402 * image and fail if that doesn't work. Next, try to decrease the size
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001403 * of the image as much as indicated by 'size' using allocations from
1404 * highmem and non-highmem zones separately.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001405 */
1406 pages_highmem = preallocate_image_highmem(highmem / 2);
Aaron Lufd432b92013-11-06 08:41:31 +08001407 alloc = count - max_size;
1408 if (alloc > pages_highmem)
1409 alloc -= pages_highmem;
1410 else
1411 alloc = 0;
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001412 pages = preallocate_image_memory(alloc, avail_normal);
1413 if (pages < alloc) {
1414 /* We have exhausted non-highmem pages, try highmem. */
1415 alloc -= pages;
1416 pages += pages_highmem;
1417 pages_highmem = preallocate_image_highmem(alloc);
1418 if (pages_highmem < alloc)
1419 goto err_out;
1420 pages += pages_highmem;
1421 /*
1422 * size is the desired number of saveable pages to leave in
1423 * memory, so try to preallocate (all memory - size) pages.
1424 */
1425 alloc = (count - pages) - size;
1426 pages += preallocate_image_highmem(alloc);
1427 } else {
1428 /*
1429 * There are approximately max_size saveable pages at this point
1430 * and we want to reduce this number down to size.
1431 */
1432 alloc = max_size - size;
1433 size = preallocate_highmem_fraction(alloc, highmem, count);
1434 pages_highmem += size;
1435 alloc -= size;
1436 size = preallocate_image_memory(alloc, avail_normal);
1437 pages_highmem += preallocate_image_highmem(alloc - size);
1438 pages += pages_highmem + size;
1439 }
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001440
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001441 /*
1442 * We only need as many page frames for the image as there are saveable
1443 * pages in memory, but we have allocated more. Release the excessive
1444 * ones now.
1445 */
1446 free_unnecessary_pages();
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001447
1448 out:
Rafael J. Wysockife419532009-06-11 23:11:17 +02001449 do_gettimeofday(&stop);
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001450 printk(KERN_CONT "done (allocated %lu pages)\n", pages);
1451 swsusp_show_speed(&start, &stop, pages, "Allocated");
Rafael J. Wysockife419532009-06-11 23:11:17 +02001452
1453 return 0;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001454
1455 err_out:
1456 printk(KERN_CONT "\n");
1457 swsusp_free();
1458 return -ENOMEM;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001459}
1460
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001461#ifdef CONFIG_HIGHMEM
1462/**
1463 * count_pages_for_highmem - compute the number of non-highmem pages
1464 * that will be necessary for creating copies of highmem pages.
1465 */
1466
1467static unsigned int count_pages_for_highmem(unsigned int nr_highmem)
1468{
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001469 unsigned int free_highmem = count_free_highmem_pages() + alloc_highmem;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001470
1471 if (free_highmem >= nr_highmem)
1472 nr_highmem = 0;
1473 else
1474 nr_highmem -= free_highmem;
1475
1476 return nr_highmem;
1477}
1478#else
1479static unsigned int
1480count_pages_for_highmem(unsigned int nr_highmem) { return 0; }
1481#endif /* CONFIG_HIGHMEM */
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001482
1483/**
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001484 * enough_free_mem - Make sure we have enough free memory for the
1485 * snapshot image.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001486 */
1487
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001488static int enough_free_mem(unsigned int nr_pages, unsigned int nr_highmem)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001489{
Rafael J. Wysockie5e2fa72006-01-06 00:14:20 -08001490 struct zone *zone;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001491 unsigned int free = alloc_normal;
Rafael J. Wysockie5e2fa72006-01-06 00:14:20 -08001492
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001493 for_each_populated_zone(zone)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001494 if (!is_highmem(zone))
Christoph Lameterd23ad422007-02-10 01:43:02 -08001495 free += zone_page_state(zone, NR_FREE_PAGES);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001496
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001497 nr_pages += count_pages_for_highmem(nr_highmem);
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001498 pr_debug("PM: Normal pages needed: %u + %u, available pages: %u\n",
1499 nr_pages, PAGES_FOR_IO, free);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001500
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001501 return free > nr_pages + PAGES_FOR_IO;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001502}
1503
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001504#ifdef CONFIG_HIGHMEM
1505/**
1506 * get_highmem_buffer - if there are some highmem pages in the suspend
1507 * image, we may need the buffer to copy them and/or load their data.
1508 */
1509
1510static inline int get_highmem_buffer(int safe_needed)
1511{
1512 buffer = get_image_page(GFP_ATOMIC | __GFP_COLD, safe_needed);
1513 return buffer ? 0 : -ENOMEM;
1514}
1515
1516/**
1517 * alloc_highmem_image_pages - allocate some highmem pages for the image.
1518 * Try to allocate as many pages as needed, but if the number of free
1519 * highmem pages is lesser than that, allocate them all.
1520 */
1521
1522static inline unsigned int
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001523alloc_highmem_pages(struct memory_bitmap *bm, unsigned int nr_highmem)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001524{
1525 unsigned int to_alloc = count_free_highmem_pages();
1526
1527 if (to_alloc > nr_highmem)
1528 to_alloc = nr_highmem;
1529
1530 nr_highmem -= to_alloc;
1531 while (to_alloc-- > 0) {
1532 struct page *page;
1533
1534 page = alloc_image_page(__GFP_HIGHMEM);
1535 memory_bm_set_bit(bm, page_to_pfn(page));
1536 }
1537 return nr_highmem;
1538}
1539#else
1540static inline int get_highmem_buffer(int safe_needed) { return 0; }
1541
1542static inline unsigned int
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001543alloc_highmem_pages(struct memory_bitmap *bm, unsigned int n) { return 0; }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001544#endif /* CONFIG_HIGHMEM */
1545
1546/**
1547 * swsusp_alloc - allocate memory for the suspend image
1548 *
1549 * We first try to allocate as many highmem pages as there are
1550 * saveable highmem pages in the system. If that fails, we allocate
1551 * non-highmem pages for the copies of the remaining highmem ones.
1552 *
1553 * In this approach it is likely that the copies of highmem pages will
1554 * also be located in the high memory, because of the way in which
1555 * copy_data_pages() works.
1556 */
1557
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001558static int
1559swsusp_alloc(struct memory_bitmap *orig_bm, struct memory_bitmap *copy_bm,
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001560 unsigned int nr_pages, unsigned int nr_highmem)
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001561{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001562 if (nr_highmem > 0) {
Stanislaw Gruszka2e725a02011-02-12 21:06:51 +01001563 if (get_highmem_buffer(PG_ANY))
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001564 goto err_out;
1565 if (nr_highmem > alloc_highmem) {
1566 nr_highmem -= alloc_highmem;
1567 nr_pages += alloc_highmem_pages(copy_bm, nr_highmem);
1568 }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001569 }
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001570 if (nr_pages > alloc_normal) {
1571 nr_pages -= alloc_normal;
1572 while (nr_pages-- > 0) {
1573 struct page *page;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001574
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001575 page = alloc_image_page(GFP_ATOMIC | __GFP_COLD);
1576 if (!page)
1577 goto err_out;
1578 memory_bm_set_bit(copy_bm, page_to_pfn(page));
1579 }
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001580 }
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001581
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001582 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001583
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001584 err_out:
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001585 swsusp_free();
Stanislaw Gruszka2e725a02011-02-12 21:06:51 +01001586 return -ENOMEM;
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001587}
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001588
Andi Kleen722a9f92014-05-02 00:44:38 +02001589asmlinkage __visible int swsusp_save(void)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001590{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001591 unsigned int nr_pages, nr_highmem;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001592
Frans Pop07c3bb52010-02-11 23:09:08 +01001593 printk(KERN_INFO "PM: Creating hibernation image:\n");
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001594
Christoph Lameter9f8f2172008-02-04 22:29:11 -08001595 drain_local_pages(NULL);
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001596 nr_pages = count_data_pages();
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001597 nr_highmem = count_highmem_pages();
Rafael J. Wysocki23976722007-12-08 02:09:43 +01001598 printk(KERN_INFO "PM: Need to copy %u pages\n", nr_pages + nr_highmem);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001599
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001600 if (!enough_free_mem(nr_pages, nr_highmem)) {
Rafael J. Wysocki23976722007-12-08 02:09:43 +01001601 printk(KERN_ERR "PM: Not enough free memory\n");
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001602 return -ENOMEM;
1603 }
1604
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001605 if (swsusp_alloc(&orig_bm, &copy_bm, nr_pages, nr_highmem)) {
Rafael J. Wysocki23976722007-12-08 02:09:43 +01001606 printk(KERN_ERR "PM: Memory allocation failed\n");
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001607 return -ENOMEM;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001608 }
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001609
1610 /* During allocating of suspend pagedir, new cold pages may appear.
1611 * Kill them.
1612 */
Christoph Lameter9f8f2172008-02-04 22:29:11 -08001613 drain_local_pages(NULL);
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001614 copy_data_pages(&copy_bm, &orig_bm);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001615
1616 /*
1617 * End of critical section. From now on, we can write to memory,
1618 * but we should not touch disk. This specially means we must _not_
1619 * touch swap space! Except we must write out our image of course.
1620 */
1621
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001622 nr_pages += nr_highmem;
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001623 nr_copy_pages = nr_pages;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001624 nr_meta_pages = DIV_ROUND_UP(nr_pages * sizeof(long), PAGE_SIZE);
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001625
Rafael J. Wysocki23976722007-12-08 02:09:43 +01001626 printk(KERN_INFO "PM: Hibernation image created (%d pages copied)\n",
1627 nr_pages);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001628
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001629 return 0;
1630}
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001631
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001632#ifndef CONFIG_ARCH_HIBERNATION_HEADER
1633static int init_header_complete(struct swsusp_info *info)
1634{
1635 memcpy(&info->uts, init_utsname(), sizeof(struct new_utsname));
1636 info->version_code = LINUX_VERSION_CODE;
1637 return 0;
1638}
1639
1640static char *check_image_kernel(struct swsusp_info *info)
1641{
1642 if (info->version_code != LINUX_VERSION_CODE)
1643 return "kernel version";
1644 if (strcmp(info->uts.sysname,init_utsname()->sysname))
1645 return "system type";
1646 if (strcmp(info->uts.release,init_utsname()->release))
1647 return "kernel release";
1648 if (strcmp(info->uts.version,init_utsname()->version))
1649 return "version";
1650 if (strcmp(info->uts.machine,init_utsname()->machine))
1651 return "machine";
1652 return NULL;
1653}
1654#endif /* CONFIG_ARCH_HIBERNATION_HEADER */
1655
Rafael J. Wysockiaf508b32007-10-26 00:59:31 +02001656unsigned long snapshot_get_image_size(void)
1657{
1658 return nr_copy_pages + nr_meta_pages + 1;
1659}
1660
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001661static int init_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001662{
1663 memset(info, 0, sizeof(struct swsusp_info));
Jiang Liu0ed5fd12013-07-03 15:03:43 -07001664 info->num_physpages = get_num_physpages();
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001665 info->image_pages = nr_copy_pages;
Rafael J. Wysockiaf508b32007-10-26 00:59:31 +02001666 info->pages = snapshot_get_image_size();
Rafael J. Wysocki6e1819d2006-03-23 03:00:03 -08001667 info->size = info->pages;
1668 info->size <<= PAGE_SHIFT;
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001669 return init_header_complete(info);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001670}
1671
1672/**
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001673 * pack_pfns - pfns corresponding to the set bits found in the bitmap @bm
1674 * are stored in the array @buf[] (1 page at a time)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001675 */
1676
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001677static inline void
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001678pack_pfns(unsigned long *buf, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001679{
1680 int j;
1681
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001682 for (j = 0; j < PAGE_SIZE / sizeof(long); j++) {
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001683 buf[j] = memory_bm_next_pfn(bm);
1684 if (unlikely(buf[j] == BM_END_OF_MAP))
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001685 break;
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02001686 /* Save page key for data page (s390 only). */
1687 page_key_read(buf + j);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001688 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001689}
1690
1691/**
1692 * snapshot_read_next - used for reading the system memory snapshot.
1693 *
1694 * On the first call to it @handle should point to a zeroed
1695 * snapshot_handle structure. The structure gets updated and a pointer
1696 * to it should be passed to this function every next time.
1697 *
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001698 * On success the function returns a positive number. Then, the caller
1699 * is allowed to read up to the returned number of bytes from the memory
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001700 * location computed by the data_of() macro.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001701 *
1702 * The function returns 0 to indicate the end of data stream condition,
1703 * and a negative number is returned on error. In such cases the
1704 * structure pointed to by @handle is not updated and should not be used
1705 * any more.
1706 */
1707
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001708int snapshot_read_next(struct snapshot_handle *handle)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001709{
Rafael J. Wysockifb13a282006-09-25 23:32:46 -07001710 if (handle->cur > nr_meta_pages + nr_copy_pages)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001711 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001712
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001713 if (!buffer) {
1714 /* This makes the buffer be freed by swsusp_free() */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001715 buffer = get_image_page(GFP_ATOMIC, PG_ANY);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001716 if (!buffer)
1717 return -ENOMEM;
1718 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001719 if (!handle->cur) {
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001720 int error;
1721
1722 error = init_header((struct swsusp_info *)buffer);
1723 if (error)
1724 return error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001725 handle->buffer = buffer;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001726 memory_bm_position_reset(&orig_bm);
1727 memory_bm_position_reset(&copy_bm);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001728 } else if (handle->cur <= nr_meta_pages) {
Jan Beulich3ecb01d2010-10-26 14:22:27 -07001729 clear_page(buffer);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001730 pack_pfns(buffer, &orig_bm);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001731 } else {
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001732 struct page *page;
1733
1734 page = pfn_to_page(memory_bm_next_pfn(&copy_bm));
1735 if (PageHighMem(page)) {
1736 /* Highmem pages are copied to the buffer,
1737 * because we can't return with a kmapped
1738 * highmem page (we may not be called again).
1739 */
1740 void *kaddr;
1741
Cong Wang0de9a1e2011-11-25 23:14:38 +08001742 kaddr = kmap_atomic(page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07001743 copy_page(buffer, kaddr);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001744 kunmap_atomic(kaddr);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001745 handle->buffer = buffer;
1746 } else {
1747 handle->buffer = page_address(page);
1748 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001749 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02001750 handle->cur++;
1751 return PAGE_SIZE;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001752}
1753
1754/**
1755 * mark_unsafe_pages - mark the pages that cannot be used for storing
1756 * the image during resume, because they conflict with the pages that
1757 * had been used before suspend
1758 */
1759
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001760static int mark_unsafe_pages(struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001761{
1762 struct zone *zone;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001763 unsigned long pfn, max_zone_pfn;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001764
1765 /* Clear page flags */
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001766 for_each_populated_zone(zone) {
Xishi Qiuc33bc312013-09-11 14:21:44 -07001767 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001768 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
1769 if (pfn_valid(pfn))
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001770 swsusp_unset_page_free(pfn_to_page(pfn));
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001771 }
1772
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001773 /* Mark pages that correspond to the "original" pfns as "unsafe" */
1774 memory_bm_position_reset(bm);
1775 do {
1776 pfn = memory_bm_next_pfn(bm);
1777 if (likely(pfn != BM_END_OF_MAP)) {
1778 if (likely(pfn_valid(pfn)))
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001779 swsusp_set_page_free(pfn_to_page(pfn));
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001780 else
1781 return -EFAULT;
1782 }
1783 } while (pfn != BM_END_OF_MAP);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001784
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001785 allocated_unsafe_pages = 0;
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07001786
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001787 return 0;
1788}
1789
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001790static void
1791duplicate_memory_bitmap(struct memory_bitmap *dst, struct memory_bitmap *src)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001792{
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001793 unsigned long pfn;
1794
1795 memory_bm_position_reset(src);
1796 pfn = memory_bm_next_pfn(src);
1797 while (pfn != BM_END_OF_MAP) {
1798 memory_bm_set_bit(dst, pfn);
1799 pfn = memory_bm_next_pfn(src);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001800 }
1801}
1802
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001803static int check_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001804{
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001805 char *reason;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001806
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07001807 reason = check_image_kernel(info);
Jiang Liu0ed5fd12013-07-03 15:03:43 -07001808 if (!reason && info->num_physpages != get_num_physpages())
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001809 reason = "memory size";
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001810 if (reason) {
Rafael J. Wysocki23976722007-12-08 02:09:43 +01001811 printk(KERN_ERR "PM: Image mismatch: %s\n", reason);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001812 return -EPERM;
1813 }
1814 return 0;
1815}
1816
1817/**
1818 * load header - check the image header and copy data from it
1819 */
1820
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001821static int
1822load_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001823{
1824 int error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001825
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001826 restore_pblist = NULL;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001827 error = check_header(info);
1828 if (!error) {
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001829 nr_copy_pages = info->image_pages;
1830 nr_meta_pages = info->pages - info->image_pages - 1;
1831 }
1832 return error;
1833}
1834
1835/**
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001836 * unpack_orig_pfns - for each element of @buf[] (1 page at a time) set
1837 * the corresponding bit in the memory bitmap @bm
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001838 */
Rafael J. Wysocki69643272008-11-11 21:32:44 +01001839static int unpack_orig_pfns(unsigned long *buf, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001840{
1841 int j;
1842
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001843 for (j = 0; j < PAGE_SIZE / sizeof(long); j++) {
1844 if (unlikely(buf[j] == BM_END_OF_MAP))
1845 break;
1846
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02001847 /* Extract and buffer page key for data page (s390 only). */
1848 page_key_memorize(buf + j);
1849
Rafael J. Wysocki69643272008-11-11 21:32:44 +01001850 if (memory_bm_pfn_present(bm, buf[j]))
1851 memory_bm_set_bit(bm, buf[j]);
1852 else
1853 return -EFAULT;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001854 }
Rafael J. Wysocki69643272008-11-11 21:32:44 +01001855
1856 return 0;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001857}
1858
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001859/* List of "safe" pages that may be used to store data loaded from the suspend
1860 * image
1861 */
1862static struct linked_page *safe_pages_list;
1863
1864#ifdef CONFIG_HIGHMEM
1865/* struct highmem_pbe is used for creating the list of highmem pages that
1866 * should be restored atomically during the resume from disk, because the page
1867 * frames they have occupied before the suspend are in use.
1868 */
1869struct highmem_pbe {
1870 struct page *copy_page; /* data is here now */
1871 struct page *orig_page; /* data was here before the suspend */
1872 struct highmem_pbe *next;
1873};
1874
1875/* List of highmem PBEs needed for restoring the highmem pages that were
1876 * allocated before the suspend and included in the suspend image, but have
1877 * also been allocated by the "resume" kernel, so their contents cannot be
1878 * written directly to their "original" page frames.
1879 */
1880static struct highmem_pbe *highmem_pblist;
1881
1882/**
1883 * count_highmem_image_pages - compute the number of highmem pages in the
1884 * suspend image. The bits in the memory bitmap @bm that correspond to the
1885 * image pages are assumed to be set.
1886 */
1887
1888static unsigned int count_highmem_image_pages(struct memory_bitmap *bm)
1889{
1890 unsigned long pfn;
1891 unsigned int cnt = 0;
1892
1893 memory_bm_position_reset(bm);
1894 pfn = memory_bm_next_pfn(bm);
1895 while (pfn != BM_END_OF_MAP) {
1896 if (PageHighMem(pfn_to_page(pfn)))
1897 cnt++;
1898
1899 pfn = memory_bm_next_pfn(bm);
1900 }
1901 return cnt;
1902}
1903
1904/**
1905 * prepare_highmem_image - try to allocate as many highmem pages as
1906 * there are highmem image pages (@nr_highmem_p points to the variable
1907 * containing the number of highmem image pages). The pages that are
1908 * "safe" (ie. will not be overwritten when the suspend image is
1909 * restored) have the corresponding bits set in @bm (it must be
1910 * unitialized).
1911 *
1912 * NOTE: This function should not be called if there are no highmem
1913 * image pages.
1914 */
1915
1916static unsigned int safe_highmem_pages;
1917
1918static struct memory_bitmap *safe_highmem_bm;
1919
1920static int
1921prepare_highmem_image(struct memory_bitmap *bm, unsigned int *nr_highmem_p)
1922{
1923 unsigned int to_alloc;
1924
1925 if (memory_bm_create(bm, GFP_ATOMIC, PG_SAFE))
1926 return -ENOMEM;
1927
1928 if (get_highmem_buffer(PG_SAFE))
1929 return -ENOMEM;
1930
1931 to_alloc = count_free_highmem_pages();
1932 if (to_alloc > *nr_highmem_p)
1933 to_alloc = *nr_highmem_p;
1934 else
1935 *nr_highmem_p = to_alloc;
1936
1937 safe_highmem_pages = 0;
1938 while (to_alloc-- > 0) {
1939 struct page *page;
1940
1941 page = alloc_page(__GFP_HIGHMEM);
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001942 if (!swsusp_page_is_free(page)) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001943 /* The page is "safe", set its bit the bitmap */
1944 memory_bm_set_bit(bm, page_to_pfn(page));
1945 safe_highmem_pages++;
1946 }
1947 /* Mark the page as allocated */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001948 swsusp_set_page_forbidden(page);
1949 swsusp_set_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001950 }
1951 memory_bm_position_reset(bm);
1952 safe_highmem_bm = bm;
1953 return 0;
1954}
1955
1956/**
1957 * get_highmem_page_buffer - for given highmem image page find the buffer
1958 * that suspend_write_next() should set for its caller to write to.
1959 *
1960 * If the page is to be saved to its "original" page frame or a copy of
1961 * the page is to be made in the highmem, @buffer is returned. Otherwise,
1962 * the copy of the page is to be made in normal memory, so the address of
1963 * the copy is returned.
1964 *
1965 * If @buffer is returned, the caller of suspend_write_next() will write
1966 * the page's contents to @buffer, so they will have to be copied to the
1967 * right location on the next call to suspend_write_next() and it is done
1968 * with the help of copy_last_highmem_page(). For this purpose, if
1969 * @buffer is returned, @last_highmem page is set to the page to which
1970 * the data will have to be copied from @buffer.
1971 */
1972
1973static struct page *last_highmem_page;
1974
1975static void *
1976get_highmem_page_buffer(struct page *page, struct chain_allocator *ca)
1977{
1978 struct highmem_pbe *pbe;
1979 void *kaddr;
1980
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001981 if (swsusp_page_is_forbidden(page) && swsusp_page_is_free(page)) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001982 /* We have allocated the "original" page frame and we can
1983 * use it directly to store the loaded page.
1984 */
1985 last_highmem_page = page;
1986 return buffer;
1987 }
1988 /* The "original" page frame has not been allocated and we have to
1989 * use a "safe" page frame to store the loaded page.
1990 */
1991 pbe = chain_alloc(ca, sizeof(struct highmem_pbe));
1992 if (!pbe) {
1993 swsusp_free();
Rafael J. Wysocki69643272008-11-11 21:32:44 +01001994 return ERR_PTR(-ENOMEM);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001995 }
1996 pbe->orig_page = page;
1997 if (safe_highmem_pages > 0) {
1998 struct page *tmp;
1999
2000 /* Copy of the page will be stored in high memory */
2001 kaddr = buffer;
2002 tmp = pfn_to_page(memory_bm_next_pfn(safe_highmem_bm));
2003 safe_highmem_pages--;
2004 last_highmem_page = tmp;
2005 pbe->copy_page = tmp;
2006 } else {
2007 /* Copy of the page will be stored in normal memory */
2008 kaddr = safe_pages_list;
2009 safe_pages_list = safe_pages_list->next;
2010 pbe->copy_page = virt_to_page(kaddr);
2011 }
2012 pbe->next = highmem_pblist;
2013 highmem_pblist = pbe;
2014 return kaddr;
2015}
2016
2017/**
2018 * copy_last_highmem_page - copy the contents of a highmem image from
2019 * @buffer, where the caller of snapshot_write_next() has place them,
2020 * to the right location represented by @last_highmem_page .
2021 */
2022
2023static void copy_last_highmem_page(void)
2024{
2025 if (last_highmem_page) {
2026 void *dst;
2027
Cong Wang0de9a1e2011-11-25 23:14:38 +08002028 dst = kmap_atomic(last_highmem_page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002029 copy_page(dst, buffer);
Cong Wang0de9a1e2011-11-25 23:14:38 +08002030 kunmap_atomic(dst);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002031 last_highmem_page = NULL;
2032 }
2033}
2034
2035static inline int last_highmem_page_copied(void)
2036{
2037 return !last_highmem_page;
2038}
2039
2040static inline void free_highmem_data(void)
2041{
2042 if (safe_highmem_bm)
2043 memory_bm_free(safe_highmem_bm, PG_UNSAFE_CLEAR);
2044
2045 if (buffer)
2046 free_image_page(buffer, PG_UNSAFE_CLEAR);
2047}
2048#else
2049static inline int get_safe_write_buffer(void) { return 0; }
2050
2051static unsigned int
2052count_highmem_image_pages(struct memory_bitmap *bm) { return 0; }
2053
2054static inline int
2055prepare_highmem_image(struct memory_bitmap *bm, unsigned int *nr_highmem_p)
2056{
2057 return 0;
2058}
2059
2060static inline void *
2061get_highmem_page_buffer(struct page *page, struct chain_allocator *ca)
2062{
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002063 return ERR_PTR(-EINVAL);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002064}
2065
2066static inline void copy_last_highmem_page(void) {}
2067static inline int last_highmem_page_copied(void) { return 1; }
2068static inline void free_highmem_data(void) {}
2069#endif /* CONFIG_HIGHMEM */
2070
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002071/**
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002072 * prepare_image - use the memory bitmap @bm to mark the pages that will
2073 * be overwritten in the process of restoring the system memory state
2074 * from the suspend image ("unsafe" pages) and allocate memory for the
2075 * image.
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002076 *
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002077 * The idea is to allocate a new memory bitmap first and then allocate
2078 * as many pages as needed for the image data, but not to assign these
2079 * pages to specific tasks initially. Instead, we just mark them as
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002080 * allocated and create a lists of "safe" pages that will be used
2081 * later. On systems with high memory a list of "safe" highmem pages is
2082 * also created.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002083 */
2084
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002085#define PBES_PER_LINKED_PAGE (LINKED_PAGE_DATA_SIZE / sizeof(struct pbe))
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002086
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002087static int
2088prepare_image(struct memory_bitmap *new_bm, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002089{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002090 unsigned int nr_pages, nr_highmem;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002091 struct linked_page *sp_list, *lp;
2092 int error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002093
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002094 /* If there is no highmem, the buffer will not be necessary */
2095 free_image_page(buffer, PG_UNSAFE_CLEAR);
2096 buffer = NULL;
2097
2098 nr_highmem = count_highmem_image_pages(bm);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002099 error = mark_unsafe_pages(bm);
2100 if (error)
2101 goto Free;
2102
2103 error = memory_bm_create(new_bm, GFP_ATOMIC, PG_SAFE);
2104 if (error)
2105 goto Free;
2106
2107 duplicate_memory_bitmap(new_bm, bm);
2108 memory_bm_free(bm, PG_UNSAFE_KEEP);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002109 if (nr_highmem > 0) {
2110 error = prepare_highmem_image(bm, &nr_highmem);
2111 if (error)
2112 goto Free;
2113 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002114 /* Reserve some safe pages for potential later use.
2115 *
2116 * NOTE: This way we make sure there will be enough safe pages for the
2117 * chain_alloc() in get_buffer(). It is a bit wasteful, but
2118 * nr_copy_pages cannot be greater than 50% of the memory anyway.
2119 */
2120 sp_list = NULL;
2121 /* nr_copy_pages cannot be lesser than allocated_unsafe_pages */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002122 nr_pages = nr_copy_pages - nr_highmem - allocated_unsafe_pages;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002123 nr_pages = DIV_ROUND_UP(nr_pages, PBES_PER_LINKED_PAGE);
2124 while (nr_pages > 0) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002125 lp = get_image_page(GFP_ATOMIC, PG_SAFE);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002126 if (!lp) {
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002127 error = -ENOMEM;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002128 goto Free;
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002129 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002130 lp->next = sp_list;
2131 sp_list = lp;
2132 nr_pages--;
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002133 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002134 /* Preallocate memory for the image */
2135 safe_pages_list = NULL;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002136 nr_pages = nr_copy_pages - nr_highmem - allocated_unsafe_pages;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002137 while (nr_pages > 0) {
2138 lp = (struct linked_page *)get_zeroed_page(GFP_ATOMIC);
2139 if (!lp) {
2140 error = -ENOMEM;
2141 goto Free;
2142 }
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002143 if (!swsusp_page_is_free(virt_to_page(lp))) {
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002144 /* The page is "safe", add it to the list */
2145 lp->next = safe_pages_list;
2146 safe_pages_list = lp;
2147 }
2148 /* Mark the page as allocated */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002149 swsusp_set_page_forbidden(virt_to_page(lp));
2150 swsusp_set_page_free(virt_to_page(lp));
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002151 nr_pages--;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002152 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002153 /* Free the reserved safe pages so that chain_alloc() can use them */
2154 while (sp_list) {
2155 lp = sp_list->next;
2156 free_image_page(sp_list, PG_UNSAFE_CLEAR);
2157 sp_list = lp;
2158 }
2159 return 0;
2160
Rafael J. Wysocki59a49332006-12-06 20:34:44 -08002161 Free:
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002162 swsusp_free();
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002163 return error;
2164}
2165
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002166/**
2167 * get_buffer - compute the address that snapshot_write_next() should
2168 * set for its caller to write to.
2169 */
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002170
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002171static void *get_buffer(struct memory_bitmap *bm, struct chain_allocator *ca)
2172{
2173 struct pbe *pbe;
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002174 struct page *page;
2175 unsigned long pfn = memory_bm_next_pfn(bm);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002176
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002177 if (pfn == BM_END_OF_MAP)
2178 return ERR_PTR(-EFAULT);
2179
2180 page = pfn_to_page(pfn);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002181 if (PageHighMem(page))
2182 return get_highmem_page_buffer(page, ca);
2183
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002184 if (swsusp_page_is_forbidden(page) && swsusp_page_is_free(page))
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002185 /* We have allocated the "original" page frame and we can
2186 * use it directly to store the loaded page.
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002187 */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002188 return page_address(page);
2189
2190 /* The "original" page frame has not been allocated and we have to
2191 * use a "safe" page frame to store the loaded page.
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002192 */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002193 pbe = chain_alloc(ca, sizeof(struct pbe));
2194 if (!pbe) {
2195 swsusp_free();
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002196 return ERR_PTR(-ENOMEM);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002197 }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002198 pbe->orig_address = page_address(page);
2199 pbe->address = safe_pages_list;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002200 safe_pages_list = safe_pages_list->next;
2201 pbe->next = restore_pblist;
2202 restore_pblist = pbe;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002203 return pbe->address;
Rafael J. Wysocki968808b2006-06-23 02:04:48 -07002204}
2205
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002206/**
2207 * snapshot_write_next - used for writing the system memory snapshot.
2208 *
2209 * On the first call to it @handle should point to a zeroed
2210 * snapshot_handle structure. The structure gets updated and a pointer
2211 * to it should be passed to this function every next time.
2212 *
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002213 * On success the function returns a positive number. Then, the caller
2214 * is allowed to write up to the returned number of bytes to the memory
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002215 * location computed by the data_of() macro.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002216 *
2217 * The function returns 0 to indicate the "end of file" condition,
2218 * and a negative number is returned on error. In such cases the
2219 * structure pointed to by @handle is not updated and should not be used
2220 * any more.
2221 */
2222
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002223int snapshot_write_next(struct snapshot_handle *handle)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002224{
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002225 static struct chain_allocator ca;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002226 int error = 0;
2227
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002228 /* Check if we have already loaded the entire image */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002229 if (handle->cur > 1 && handle->cur > nr_meta_pages + nr_copy_pages)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002230 return 0;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002231
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002232 handle->sync_read = 1;
2233
2234 if (!handle->cur) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002235 if (!buffer)
2236 /* This makes the buffer be freed by swsusp_free() */
2237 buffer = get_image_page(GFP_ATOMIC, PG_ANY);
2238
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002239 if (!buffer)
2240 return -ENOMEM;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002241
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002242 handle->buffer = buffer;
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002243 } else if (handle->cur == 1) {
2244 error = load_header(buffer);
2245 if (error)
2246 return error;
2247
2248 error = memory_bm_create(&copy_bm, GFP_ATOMIC, PG_ANY);
2249 if (error)
2250 return error;
2251
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002252 /* Allocate buffer for page keys. */
2253 error = page_key_alloc(nr_copy_pages);
2254 if (error)
2255 return error;
2256
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002257 } else if (handle->cur <= nr_meta_pages + 1) {
2258 error = unpack_orig_pfns(buffer, &copy_bm);
2259 if (error)
2260 return error;
2261
2262 if (handle->cur == nr_meta_pages + 1) {
2263 error = prepare_image(&orig_bm, &copy_bm);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002264 if (error)
2265 return error;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002266
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002267 chain_init(&ca, GFP_ATOMIC, PG_SAFE);
2268 memory_bm_position_reset(&orig_bm);
2269 restore_pblist = NULL;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002270 handle->buffer = get_buffer(&orig_bm, &ca);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002271 handle->sync_read = 0;
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002272 if (IS_ERR(handle->buffer))
2273 return PTR_ERR(handle->buffer);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002274 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002275 } else {
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002276 copy_last_highmem_page();
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002277 /* Restore page key for data page (s390 only). */
2278 page_key_write(handle->buffer);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002279 handle->buffer = get_buffer(&orig_bm, &ca);
2280 if (IS_ERR(handle->buffer))
2281 return PTR_ERR(handle->buffer);
2282 if (handle->buffer != buffer)
2283 handle->sync_read = 0;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002284 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002285 handle->cur++;
2286 return PAGE_SIZE;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002287}
2288
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002289/**
2290 * snapshot_write_finalize - must be called after the last call to
2291 * snapshot_write_next() in case the last page in the image happens
2292 * to be a highmem page and its contents should be stored in the
2293 * highmem. Additionally, it releases the memory that will not be
2294 * used any more.
2295 */
2296
2297void snapshot_write_finalize(struct snapshot_handle *handle)
2298{
2299 copy_last_highmem_page();
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002300 /* Restore page key for data page (s390 only). */
2301 page_key_write(handle->buffer);
2302 page_key_free();
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002303 /* Free only if we have loaded the image entirely */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002304 if (handle->cur > 1 && handle->cur > nr_meta_pages + nr_copy_pages) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002305 memory_bm_free(&orig_bm, PG_UNSAFE_CLEAR);
2306 free_highmem_data();
2307 }
2308}
2309
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002310int snapshot_image_loaded(struct snapshot_handle *handle)
2311{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002312 return !(!nr_copy_pages || !last_highmem_page_copied() ||
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002313 handle->cur <= nr_meta_pages + nr_copy_pages);
2314}
2315
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002316#ifdef CONFIG_HIGHMEM
2317/* Assumes that @buf is ready and points to a "safe" page */
2318static inline void
2319swap_two_pages_data(struct page *p1, struct page *p2, void *buf)
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002320{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002321 void *kaddr1, *kaddr2;
2322
Cong Wang0de9a1e2011-11-25 23:14:38 +08002323 kaddr1 = kmap_atomic(p1);
2324 kaddr2 = kmap_atomic(p2);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002325 copy_page(buf, kaddr1);
2326 copy_page(kaddr1, kaddr2);
2327 copy_page(kaddr2, buf);
Cong Wang0de9a1e2011-11-25 23:14:38 +08002328 kunmap_atomic(kaddr2);
2329 kunmap_atomic(kaddr1);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002330}
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002331
2332/**
2333 * restore_highmem - for each highmem page that was allocated before
2334 * the suspend and included in the suspend image, and also has been
2335 * allocated by the "resume" kernel swap its current (ie. "before
2336 * resume") contents with the previous (ie. "before suspend") one.
2337 *
2338 * If the resume eventually fails, we can call this function once
2339 * again and restore the "before resume" highmem state.
2340 */
2341
2342int restore_highmem(void)
2343{
2344 struct highmem_pbe *pbe = highmem_pblist;
2345 void *buf;
2346
2347 if (!pbe)
2348 return 0;
2349
2350 buf = get_image_page(GFP_ATOMIC, PG_SAFE);
2351 if (!buf)
2352 return -ENOMEM;
2353
2354 while (pbe) {
2355 swap_two_pages_data(pbe->copy_page, pbe->orig_page, buf);
2356 pbe = pbe->next;
2357 }
2358 free_image_page(buf, PG_UNSAFE_CLEAR);
2359 return 0;
2360}
2361#endif /* CONFIG_HIGHMEM */