blob: 26b9168321e765f85d3d90190644c04e7f2b6ce7 [file] [log] [blame]
Thomas Gleixner55716d22019-06-01 10:08:42 +02001// SPDX-License-Identifier: GPL-2.0-only
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08002/*
Pavel Machek96bc7ae2005-10-30 14:59:58 -08003 * linux/kernel/power/snapshot.c
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08004 *
Rafael J. Wysocki83573762006-12-06 20:34:18 -08005 * This file provides system snapshot/restore functionality for swsusp.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08006 *
Pavel Macheka2531292010-07-18 14:27:13 +02007 * Copyright (C) 1998-2005 Pavel Machek <pavel@ucw.cz>
Rafael J. Wysocki83573762006-12-06 20:34:18 -08008 * Copyright (C) 2006 Rafael J. Wysocki <rjw@sisk.pl>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08009 */
10
Joe Perches64ec72a2017-09-27 22:01:34 -070011#define pr_fmt(fmt) "PM: " fmt
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>
Mike Rapoport57c8a662018-10-30 15:09:49 -070024#include <linux/memblock.h>
Ingo Molnar38b8d202017-02-08 18:51:31 +010025#include <linux/nmi.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080026#include <linux/syscalls.h>
27#include <linux/console.h>
28#include <linux/highmem.h>
Rafael J. Wysocki846705d2008-11-26 18:00:24 -050029#include <linux/list.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090030#include <linux/slab.h>
Gideon Israel Dsouza52f5684c2014-04-07 15:39:20 -070031#include <linux/compiler.h>
Tina Ruchandanidb597602014-10-30 11:04:53 -070032#include <linux/ktime.h>
Michael Ellerman61f6d09a2017-07-06 15:35:55 -070033#include <linux/set_memory.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080034
Linus Torvalds7c0f6ba2016-12-24 11:46:01 -080035#include <linux/uaccess.h>
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080036#include <asm/mmu_context.h>
37#include <asm/pgtable.h>
38#include <asm/tlbflush.h>
39#include <asm/io.h>
40
Rafael J. Wysocki25761b62005-10-30 14:59:56 -080041#include "power.h"
42
Balbir Singh49368a42017-06-03 20:52:32 +100043#if defined(CONFIG_STRICT_KERNEL_RWX) && defined(CONFIG_ARCH_HAS_SET_MEMORY)
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +020044static bool hibernate_restore_protection;
45static bool hibernate_restore_protection_active;
46
47void enable_restore_image_protection(void)
48{
49 hibernate_restore_protection = true;
50}
51
52static inline void hibernate_restore_protection_begin(void)
53{
54 hibernate_restore_protection_active = hibernate_restore_protection;
55}
56
57static inline void hibernate_restore_protection_end(void)
58{
59 hibernate_restore_protection_active = false;
60}
61
62static inline void hibernate_restore_protect_page(void *page_address)
63{
64 if (hibernate_restore_protection_active)
65 set_memory_ro((unsigned long)page_address, 1);
66}
67
68static inline void hibernate_restore_unprotect_page(void *page_address)
69{
70 if (hibernate_restore_protection_active)
71 set_memory_rw((unsigned long)page_address, 1);
72}
73#else
74static inline void hibernate_restore_protection_begin(void) {}
75static inline void hibernate_restore_protection_end(void) {}
76static inline void hibernate_restore_protect_page(void *page_address) {}
77static inline void hibernate_restore_unprotect_page(void *page_address) {}
Balbir Singh49368a42017-06-03 20:52:32 +100078#endif /* CONFIG_STRICT_KERNEL_RWX && CONFIG_ARCH_HAS_SET_MEMORY */
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +020079
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -070080static int swsusp_page_is_free(struct page *);
81static void swsusp_set_page_forbidden(struct page *);
82static void swsusp_unset_page_forbidden(struct page *);
83
Rafael J. Wysockife419532009-06-11 23:11:17 +020084/*
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +020085 * Number of bytes to reserve for memory allocations made by device drivers
86 * from their ->freeze() and ->freeze_noirq() callbacks so that they don't
87 * cause image creation to fail (tunable via /sys/power/reserved_size).
88 */
89unsigned long reserved_size;
90
91void __init hibernate_reserved_size_init(void)
92{
93 reserved_size = SPARE_PAGES * PAGE_SIZE;
94}
95
96/*
Rafael J. Wysockife419532009-06-11 23:11:17 +020097 * Preferred image size in bytes (tunable via /sys/power/image_size).
Rafael J. Wysocki1c1be3a2011-05-15 11:39:48 +020098 * When it is set to N, swsusp will do its best to ensure the image
99 * size will not exceed N bytes, but if that is impossible, it will
100 * try to create the smallest image possible.
Rafael J. Wysockife419532009-06-11 23:11:17 +0200101 */
Rafael J. Wysockiac5c24ec2010-09-20 19:44:56 +0200102unsigned long image_size;
103
104void __init hibernate_image_size_init(void)
105{
Arun KSca79b0c2018-12-28 00:34:29 -0800106 image_size = ((totalram_pages() * 2) / 5) * PAGE_SIZE;
Rafael J. Wysockiac5c24ec2010-09-20 19:44:56 +0200107}
Rafael J. Wysockife419532009-06-11 23:11:17 +0200108
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200109/*
110 * List of PBEs needed for restoring the pages that were allocated before
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800111 * the suspend and included in the suspend image, but have also been
112 * allocated by the "resume" kernel, so their contents cannot be written
113 * directly to their "original" page frames.
114 */
Rafael J. Wysocki75534b52006-09-25 23:32:52 -0700115struct pbe *restore_pblist;
116
Rafael J. Wysocki9c744482016-06-29 03:00:51 +0200117/* struct linked_page is used to build chains of pages */
118
119#define LINKED_PAGE_DATA_SIZE (PAGE_SIZE - sizeof(void *))
120
121struct linked_page {
122 struct linked_page *next;
123 char data[LINKED_PAGE_DATA_SIZE];
124} __packed;
125
126/*
127 * List of "safe" pages (ie. pages that were not used by the image kernel
128 * before hibernation) that may be used as temporary storage for image kernel
129 * memory contents.
130 */
131static struct linked_page *safe_pages_list;
132
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800133/* Pointer to an auxiliary buffer (1 page) */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -0700134static void *buffer;
Rafael J. Wysocki7088a5c2006-01-06 00:13:05 -0800135
Rafael J. Wysocki0bcd8882006-09-25 23:32:52 -0700136#define PG_ANY 0
137#define PG_SAFE 1
138#define PG_UNSAFE_CLEAR 1
139#define PG_UNSAFE_KEEP 0
140
Rafael J. Wysocki940864d2006-09-25 23:32:55 -0700141static unsigned int allocated_unsafe_pages;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700142
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200143/**
144 * get_image_page - Allocate a page for a hibernation image.
145 * @gfp_mask: GFP mask for the allocation.
146 * @safe_needed: Get pages that were not used before hibernation (restore only)
147 *
148 * During image restoration, for storing the PBE list and the image data, we can
149 * only use memory pages that do not conflict with the pages used before
150 * hibernation. The "unsafe" pages have PageNosaveFree set and we count them
151 * using allocated_unsafe_pages.
152 *
153 * Each allocated image page is marked as PageNosave and PageNosaveFree so that
154 * swsusp_free() can release it.
155 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800156static void *get_image_page(gfp_t gfp_mask, int safe_needed)
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700157{
158 void *res;
159
160 res = (void *)get_zeroed_page(gfp_mask);
161 if (safe_needed)
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700162 while (res && swsusp_page_is_free(virt_to_page(res))) {
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700163 /* The page is unsafe, mark it for swsusp_free() */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700164 swsusp_set_page_forbidden(virt_to_page(res));
Rafael J. Wysocki940864d2006-09-25 23:32:55 -0700165 allocated_unsafe_pages++;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700166 res = (void *)get_zeroed_page(gfp_mask);
167 }
168 if (res) {
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700169 swsusp_set_page_forbidden(virt_to_page(res));
170 swsusp_set_page_free(virt_to_page(res));
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700171 }
172 return res;
173}
174
Rafael J. Wysocki9c744482016-06-29 03:00:51 +0200175static void *__get_safe_page(gfp_t gfp_mask)
176{
177 if (safe_pages_list) {
178 void *ret = safe_pages_list;
179
180 safe_pages_list = safe_pages_list->next;
181 memset(ret, 0, PAGE_SIZE);
182 return ret;
183 }
184 return get_image_page(gfp_mask, PG_SAFE);
185}
186
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700187unsigned long get_safe_page(gfp_t gfp_mask)
188{
Rafael J. Wysocki9c744482016-06-29 03:00:51 +0200189 return (unsigned long)__get_safe_page(gfp_mask);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800190}
191
Rafael J. Wysocki5b6d15d2006-12-06 20:34:43 -0800192static struct page *alloc_image_page(gfp_t gfp_mask)
193{
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800194 struct page *page;
195
196 page = alloc_page(gfp_mask);
197 if (page) {
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700198 swsusp_set_page_forbidden(page);
199 swsusp_set_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800200 }
201 return page;
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700202}
203
Rafael J. Wysocki307c5972016-06-29 03:05:10 +0200204static void recycle_safe_page(void *page_address)
205{
206 struct linked_page *lp = page_address;
207
208 lp->next = safe_pages_list;
209 safe_pages_list = lp;
210}
211
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700212/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200213 * free_image_page - Free a page allocated for hibernation image.
214 * @addr: Address of the page to free.
215 * @clear_nosave_free: If set, clear the PageNosaveFree bit for the page.
216 *
217 * The page to free should have been allocated by get_image_page() (page flags
218 * set by it are affected).
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700219 */
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700220static inline void free_image_page(void *addr, int clear_nosave_free)
221{
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800222 struct page *page;
223
224 BUG_ON(!virt_addr_valid(addr));
225
226 page = virt_to_page(addr);
227
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700228 swsusp_unset_page_forbidden(page);
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700229 if (clear_nosave_free)
Rafael J. Wysocki7be98232007-05-06 14:50:42 -0700230 swsusp_unset_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -0800231
232 __free_page(page);
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -0700233}
234
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +0200235static inline void free_list_of_pages(struct linked_page *list,
236 int clear_page_nosave)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700237{
238 while (list) {
239 struct linked_page *lp = list->next;
240
241 free_image_page(list, clear_page_nosave);
242 list = lp;
243 }
244}
245
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200246/*
247 * struct chain_allocator is used for allocating small objects out of
248 * a linked list of pages called 'the chain'.
249 *
250 * The chain grows each time when there is no room for a new object in
251 * the current page. The allocated objects cannot be freed individually.
252 * It is only possible to free them all at once, by freeing the entire
253 * chain.
254 *
255 * NOTE: The chain allocator may be inefficient if the allocated objects
256 * are not much smaller than PAGE_SIZE.
257 */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700258struct chain_allocator {
259 struct linked_page *chain; /* the chain */
260 unsigned int used_space; /* total size of objects allocated out
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200261 of the current page */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700262 gfp_t gfp_mask; /* mask for allocating pages */
263 int safe_needed; /* if set, only "safe" pages are allocated */
264};
265
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +0200266static void chain_init(struct chain_allocator *ca, gfp_t gfp_mask,
267 int safe_needed)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700268{
269 ca->chain = NULL;
270 ca->used_space = LINKED_PAGE_DATA_SIZE;
271 ca->gfp_mask = gfp_mask;
272 ca->safe_needed = safe_needed;
273}
274
275static void *chain_alloc(struct chain_allocator *ca, unsigned int size)
276{
277 void *ret;
278
279 if (LINKED_PAGE_DATA_SIZE - ca->used_space < size) {
280 struct linked_page *lp;
281
Rafael J. Wysocki9c744482016-06-29 03:00:51 +0200282 lp = ca->safe_needed ? __get_safe_page(ca->gfp_mask) :
283 get_image_page(ca->gfp_mask, PG_ANY);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700284 if (!lp)
285 return NULL;
286
287 lp->next = ca->chain;
288 ca->chain = lp;
289 ca->used_space = 0;
290 }
291 ret = ca->chain->data + ca->used_space;
292 ca->used_space += size;
293 return ret;
294}
295
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700296/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200297 * Data types related to memory bitmaps.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700298 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200299 * Memory bitmap is a structure consiting of many linked lists of
300 * objects. The main list's elements are of type struct zone_bitmap
301 * and each of them corresonds to one zone. For each zone bitmap
302 * object there is a list of objects of type struct bm_block that
303 * represent each blocks of bitmap in which information is stored.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700304 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200305 * struct memory_bitmap contains a pointer to the main list of zone
306 * bitmap objects, a struct bm_position used for browsing the bitmap,
307 * and a pointer to the list of pages used for allocating all of the
308 * zone bitmap objects and bitmap block objects.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700309 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200310 * NOTE: It has to be possible to lay out the bitmap in memory
311 * using only allocations of order 0. Additionally, the bitmap is
312 * designed to work with arbitrary number of zones (this is over the
313 * top for now, but let's avoid making unnecessary assumptions ;-).
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700314 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200315 * struct zone_bitmap contains a pointer to a list of bitmap block
316 * objects and a pointer to the bitmap block object that has been
317 * most recently used for setting bits. Additionally, it contains the
318 * PFNs that correspond to the start and end of the represented zone.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700319 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200320 * struct bm_block contains a pointer to the memory page in which
321 * information is stored (in the form of a block of bitmap)
322 * It also contains the pfns that correspond to the start and end of
323 * the represented memory area.
Joerg Roedelf469f022014-07-21 12:26:57 +0200324 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200325 * The memory bitmap is organized as a radix tree to guarantee fast random
326 * access to the bits. There is one radix tree for each zone (as returned
327 * from create_mem_extents).
Joerg Roedelf469f022014-07-21 12:26:57 +0200328 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200329 * One radix tree is represented by one struct mem_zone_bm_rtree. There are
330 * two linked lists for the nodes of the tree, one for the inner nodes and
331 * one for the leave nodes. The linked leave nodes are used for fast linear
332 * access of the memory bitmap.
Joerg Roedelf469f022014-07-21 12:26:57 +0200333 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200334 * The struct rtree_node represents one node of the radix tree.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700335 */
336
337#define BM_END_OF_MAP (~0UL)
338
Wu Fengguang8de03072009-07-22 19:56:10 +0200339#define BM_BITS_PER_BLOCK (PAGE_SIZE * BITS_PER_BYTE)
Joerg Roedelf469f022014-07-21 12:26:57 +0200340#define BM_BLOCK_SHIFT (PAGE_SHIFT + 3)
341#define BM_BLOCK_MASK ((1UL << BM_BLOCK_SHIFT) - 1)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700342
Joerg Roedelf469f022014-07-21 12:26:57 +0200343/*
344 * struct rtree_node is a wrapper struct to link the nodes
345 * of the rtree together for easy linear iteration over
346 * bits and easy freeing
347 */
348struct rtree_node {
349 struct list_head list;
350 unsigned long *data;
351};
352
353/*
354 * struct mem_zone_bm_rtree represents a bitmap used for one
355 * populated memory zone.
356 */
357struct mem_zone_bm_rtree {
358 struct list_head list; /* Link Zones together */
359 struct list_head nodes; /* Radix Tree inner nodes */
360 struct list_head leaves; /* Radix Tree leaves */
361 unsigned long start_pfn; /* Zone start page frame */
362 unsigned long end_pfn; /* Zone end page frame + 1 */
363 struct rtree_node *rtree; /* Radix Tree Root */
364 int levels; /* Number of Radix Tree Levels */
365 unsigned int blocks; /* Number of Bitmap Blocks */
366};
367
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700368/* strcut bm_position is used for browsing memory bitmaps */
369
370struct bm_position {
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200371 struct mem_zone_bm_rtree *zone;
372 struct rtree_node *node;
373 unsigned long node_pfn;
374 int node_bit;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700375};
376
377struct memory_bitmap {
Joerg Roedelf469f022014-07-21 12:26:57 +0200378 struct list_head zones;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700379 struct linked_page *p_list; /* list of pages used to store zone
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200380 bitmap objects and bitmap block
381 objects */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700382 struct bm_position cur; /* most recently used bit position */
383};
384
385/* Functions that operate on memory bitmaps */
386
Joerg Roedelf469f022014-07-21 12:26:57 +0200387#define BM_ENTRIES_PER_LEVEL (PAGE_SIZE / sizeof(unsigned long))
388#if BITS_PER_LONG == 32
389#define BM_RTREE_LEVEL_SHIFT (PAGE_SHIFT - 2)
390#else
391#define BM_RTREE_LEVEL_SHIFT (PAGE_SHIFT - 3)
392#endif
393#define BM_RTREE_LEVEL_MASK ((1UL << BM_RTREE_LEVEL_SHIFT) - 1)
394
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200395/**
396 * alloc_rtree_node - Allocate a new node and add it to the radix tree.
Joerg Roedelf469f022014-07-21 12:26:57 +0200397 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200398 * This function is used to allocate inner nodes as well as the
399 * leave nodes of the radix tree. It also adds the node to the
400 * corresponding linked list passed in by the *list parameter.
Joerg Roedelf469f022014-07-21 12:26:57 +0200401 */
402static struct rtree_node *alloc_rtree_node(gfp_t gfp_mask, int safe_needed,
403 struct chain_allocator *ca,
404 struct list_head *list)
405{
406 struct rtree_node *node;
407
408 node = chain_alloc(ca, sizeof(struct rtree_node));
409 if (!node)
410 return NULL;
411
412 node->data = get_image_page(gfp_mask, safe_needed);
413 if (!node->data)
414 return NULL;
415
416 list_add_tail(&node->list, list);
417
418 return node;
419}
420
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200421/**
422 * add_rtree_block - Add a new leave node to the radix tree.
Joerg Roedelf469f022014-07-21 12:26:57 +0200423 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200424 * The leave nodes need to be allocated in order to keep the leaves
425 * linked list in order. This is guaranteed by the zone->blocks
426 * counter.
Joerg Roedelf469f022014-07-21 12:26:57 +0200427 */
428static int add_rtree_block(struct mem_zone_bm_rtree *zone, gfp_t gfp_mask,
429 int safe_needed, struct chain_allocator *ca)
430{
431 struct rtree_node *node, *block, **dst;
432 unsigned int levels_needed, block_nr;
433 int i;
434
435 block_nr = zone->blocks;
436 levels_needed = 0;
437
438 /* How many levels do we need for this block nr? */
439 while (block_nr) {
440 levels_needed += 1;
441 block_nr >>= BM_RTREE_LEVEL_SHIFT;
442 }
443
444 /* Make sure the rtree has enough levels */
445 for (i = zone->levels; i < levels_needed; i++) {
446 node = alloc_rtree_node(gfp_mask, safe_needed, ca,
447 &zone->nodes);
448 if (!node)
449 return -ENOMEM;
450
451 node->data[0] = (unsigned long)zone->rtree;
452 zone->rtree = node;
453 zone->levels += 1;
454 }
455
456 /* Allocate new block */
457 block = alloc_rtree_node(gfp_mask, safe_needed, ca, &zone->leaves);
458 if (!block)
459 return -ENOMEM;
460
461 /* Now walk the rtree to insert the block */
462 node = zone->rtree;
463 dst = &zone->rtree;
464 block_nr = zone->blocks;
465 for (i = zone->levels; i > 0; i--) {
466 int index;
467
468 if (!node) {
469 node = alloc_rtree_node(gfp_mask, safe_needed, ca,
470 &zone->nodes);
471 if (!node)
472 return -ENOMEM;
473 *dst = node;
474 }
475
476 index = block_nr >> ((i - 1) * BM_RTREE_LEVEL_SHIFT);
477 index &= BM_RTREE_LEVEL_MASK;
478 dst = (struct rtree_node **)&((*dst)->data[index]);
479 node = *dst;
480 }
481
482 zone->blocks += 1;
483 *dst = block;
484
485 return 0;
486}
487
488static void free_zone_bm_rtree(struct mem_zone_bm_rtree *zone,
489 int clear_nosave_free);
490
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200491/**
492 * create_zone_bm_rtree - Create a radix tree for one zone.
Joerg Roedelf469f022014-07-21 12:26:57 +0200493 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200494 * Allocated the mem_zone_bm_rtree structure and initializes it.
495 * This function also allocated and builds the radix tree for the
496 * zone.
Joerg Roedelf469f022014-07-21 12:26:57 +0200497 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +0200498static struct mem_zone_bm_rtree *create_zone_bm_rtree(gfp_t gfp_mask,
499 int safe_needed,
500 struct chain_allocator *ca,
501 unsigned long start,
502 unsigned long end)
Joerg Roedelf469f022014-07-21 12:26:57 +0200503{
504 struct mem_zone_bm_rtree *zone;
505 unsigned int i, nr_blocks;
506 unsigned long pages;
507
508 pages = end - start;
509 zone = chain_alloc(ca, sizeof(struct mem_zone_bm_rtree));
510 if (!zone)
511 return NULL;
512
513 INIT_LIST_HEAD(&zone->nodes);
514 INIT_LIST_HEAD(&zone->leaves);
515 zone->start_pfn = start;
516 zone->end_pfn = end;
517 nr_blocks = DIV_ROUND_UP(pages, BM_BITS_PER_BLOCK);
518
519 for (i = 0; i < nr_blocks; i++) {
520 if (add_rtree_block(zone, gfp_mask, safe_needed, ca)) {
521 free_zone_bm_rtree(zone, PG_UNSAFE_CLEAR);
522 return NULL;
523 }
524 }
525
526 return zone;
527}
528
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200529/**
530 * free_zone_bm_rtree - Free the memory of the radix tree.
Joerg Roedelf469f022014-07-21 12:26:57 +0200531 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200532 * Free all node pages of the radix tree. The mem_zone_bm_rtree
533 * structure itself is not freed here nor are the rtree_node
534 * structs.
Joerg Roedelf469f022014-07-21 12:26:57 +0200535 */
536static void free_zone_bm_rtree(struct mem_zone_bm_rtree *zone,
537 int clear_nosave_free)
538{
539 struct rtree_node *node;
540
541 list_for_each_entry(node, &zone->nodes, list)
542 free_image_page(node->data, clear_nosave_free);
543
544 list_for_each_entry(node, &zone->leaves, list)
545 free_image_page(node->data, clear_nosave_free);
546}
547
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700548static void memory_bm_position_reset(struct memory_bitmap *bm)
549{
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200550 bm->cur.zone = list_entry(bm->zones.next, struct mem_zone_bm_rtree,
551 list);
552 bm->cur.node = list_entry(bm->cur.zone->leaves.next,
553 struct rtree_node, list);
554 bm->cur.node_pfn = 0;
555 bm->cur.node_bit = 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700556}
557
558static void memory_bm_free(struct memory_bitmap *bm, int clear_nosave_free);
559
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500560struct mem_extent {
561 struct list_head hook;
562 unsigned long start;
563 unsigned long end;
564};
565
566/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200567 * free_mem_extents - Free a list of memory extents.
568 * @list: List of extents to free.
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500569 */
570static void free_mem_extents(struct list_head *list)
571{
572 struct mem_extent *ext, *aux;
573
574 list_for_each_entry_safe(ext, aux, list, hook) {
575 list_del(&ext->hook);
576 kfree(ext);
577 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700578}
579
580/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200581 * create_mem_extents - Create a list of memory extents.
582 * @list: List to put the extents into.
583 * @gfp_mask: Mask to use for memory allocations.
584 *
585 * The extents represent contiguous ranges of PFNs.
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700586 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500587static int create_mem_extents(struct list_head *list, gfp_t gfp_mask)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700588{
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500589 struct zone *zone;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700590
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500591 INIT_LIST_HEAD(list);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700592
KOSAKI Motohiroee99c712009-03-31 15:19:31 -0700593 for_each_populated_zone(zone) {
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500594 unsigned long zone_start, zone_end;
595 struct mem_extent *ext, *cur, *aux;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700596
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500597 zone_start = zone->zone_start_pfn;
Xishi Qiuc33bc312013-09-11 14:21:44 -0700598 zone_end = zone_end_pfn(zone);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500599
600 list_for_each_entry(ext, list, hook)
601 if (zone_start <= ext->end)
602 break;
603
604 if (&ext->hook == list || zone_end < ext->start) {
605 /* New extent is necessary */
606 struct mem_extent *new_ext;
607
608 new_ext = kzalloc(sizeof(struct mem_extent), gfp_mask);
609 if (!new_ext) {
610 free_mem_extents(list);
611 return -ENOMEM;
612 }
613 new_ext->start = zone_start;
614 new_ext->end = zone_end;
615 list_add_tail(&new_ext->hook, &ext->hook);
616 continue;
617 }
618
619 /* Merge this zone's range of PFNs with the existing one */
620 if (zone_start < ext->start)
621 ext->start = zone_start;
622 if (zone_end > ext->end)
623 ext->end = zone_end;
624
625 /* More merging may be possible */
626 cur = ext;
627 list_for_each_entry_safe_continue(cur, aux, list, hook) {
628 if (zone_end < cur->start)
629 break;
630 if (zone_end < cur->end)
631 ext->end = cur->end;
632 list_del(&cur->hook);
633 kfree(cur);
634 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700635 }
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500636
637 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700638}
639
640/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200641 * memory_bm_create - Allocate memory for a memory bitmap.
642 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +0200643static int memory_bm_create(struct memory_bitmap *bm, gfp_t gfp_mask,
644 int safe_needed)
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700645{
646 struct chain_allocator ca;
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500647 struct list_head mem_extents;
648 struct mem_extent *ext;
649 int error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700650
651 chain_init(&ca, gfp_mask, safe_needed);
Joerg Roedelf469f022014-07-21 12:26:57 +0200652 INIT_LIST_HEAD(&bm->zones);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700653
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500654 error = create_mem_extents(&mem_extents, gfp_mask);
655 if (error)
656 return error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700657
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500658 list_for_each_entry(ext, &mem_extents, hook) {
Joerg Roedelf469f022014-07-21 12:26:57 +0200659 struct mem_zone_bm_rtree *zone;
Joerg Roedelf469f022014-07-21 12:26:57 +0200660
661 zone = create_zone_bm_rtree(gfp_mask, safe_needed, &ca,
662 ext->start, ext->end);
Joerg Roedel9047eb62014-07-21 12:27:01 +0200663 if (!zone) {
664 error = -ENOMEM;
Joerg Roedelf469f022014-07-21 12:26:57 +0200665 goto Error;
Joerg Roedel9047eb62014-07-21 12:27:01 +0200666 }
Joerg Roedelf469f022014-07-21 12:26:57 +0200667 list_add_tail(&zone->list, &bm->zones);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700668 }
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500669
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700670 bm->p_list = ca.chain;
671 memory_bm_position_reset(bm);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500672 Exit:
673 free_mem_extents(&mem_extents);
674 return error;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700675
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500676 Error:
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700677 bm->p_list = ca.chain;
678 memory_bm_free(bm, PG_UNSAFE_CLEAR);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500679 goto Exit;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700680}
681
682/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200683 * memory_bm_free - Free memory occupied by the memory bitmap.
684 * @bm: Memory bitmap.
685 */
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700686static void memory_bm_free(struct memory_bitmap *bm, int clear_nosave_free)
687{
Joerg Roedelf469f022014-07-21 12:26:57 +0200688 struct mem_zone_bm_rtree *zone;
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700689
Joerg Roedelf469f022014-07-21 12:26:57 +0200690 list_for_each_entry(zone, &bm->zones, list)
691 free_zone_bm_rtree(zone, clear_nosave_free);
692
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700693 free_list_of_pages(bm->p_list, clear_nosave_free);
Rafael J. Wysocki846705d2008-11-26 18:00:24 -0500694
Joerg Roedelf469f022014-07-21 12:26:57 +0200695 INIT_LIST_HEAD(&bm->zones);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700696}
697
698/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200699 * memory_bm_find_bit - Find the bit for a given PFN in a memory bitmap.
Joerg Roedel07a33822014-07-21 12:26:58 +0200700 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200701 * Find the bit in memory bitmap @bm that corresponds to the given PFN.
702 * The cur.zone, cur.block and cur.node_pfn members of @bm are updated.
703 *
704 * Walk the radix tree to find the page containing the bit that represents @pfn
705 * and return the position of the bit in @addr and @bit_nr.
Joerg Roedel07a33822014-07-21 12:26:58 +0200706 */
Joerg Roedel9047eb62014-07-21 12:27:01 +0200707static int memory_bm_find_bit(struct memory_bitmap *bm, unsigned long pfn,
708 void **addr, unsigned int *bit_nr)
Joerg Roedel07a33822014-07-21 12:26:58 +0200709{
710 struct mem_zone_bm_rtree *curr, *zone;
711 struct rtree_node *node;
712 int i, block_nr;
713
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200714 zone = bm->cur.zone;
715
716 if (pfn >= zone->start_pfn && pfn < zone->end_pfn)
717 goto zone_found;
718
Joerg Roedel07a33822014-07-21 12:26:58 +0200719 zone = NULL;
720
721 /* Find the right zone */
722 list_for_each_entry(curr, &bm->zones, list) {
723 if (pfn >= curr->start_pfn && pfn < curr->end_pfn) {
724 zone = curr;
725 break;
726 }
727 }
728
729 if (!zone)
730 return -EFAULT;
731
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200732zone_found:
Joerg Roedel07a33822014-07-21 12:26:58 +0200733 /*
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200734 * We have found the zone. Now walk the radix tree to find the leaf node
735 * for our PFN.
Joerg Roedel07a33822014-07-21 12:26:58 +0200736 */
Andy Whitcroftda6043f2019-09-25 15:39:12 +0100737
738 /*
739 * If the zone we wish to scan is the the current zone and the
740 * pfn falls into the current node then we do not need to walk
741 * the tree.
742 */
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200743 node = bm->cur.node;
Andy Whitcroftda6043f2019-09-25 15:39:12 +0100744 if (zone == bm->cur.zone &&
745 ((pfn - zone->start_pfn) & ~BM_BLOCK_MASK) == bm->cur.node_pfn)
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200746 goto node_found;
747
Joerg Roedel07a33822014-07-21 12:26:58 +0200748 node = zone->rtree;
749 block_nr = (pfn - zone->start_pfn) >> BM_BLOCK_SHIFT;
750
751 for (i = zone->levels; i > 0; i--) {
752 int index;
753
754 index = block_nr >> ((i - 1) * BM_RTREE_LEVEL_SHIFT);
755 index &= BM_RTREE_LEVEL_MASK;
756 BUG_ON(node->data[index] == 0);
757 node = (struct rtree_node *)node->data[index];
758 }
759
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200760node_found:
761 /* Update last position */
762 bm->cur.zone = zone;
763 bm->cur.node = node;
764 bm->cur.node_pfn = (pfn - zone->start_pfn) & ~BM_BLOCK_MASK;
765
Joerg Roedel07a33822014-07-21 12:26:58 +0200766 /* Set return values */
767 *addr = node->data;
768 *bit_nr = (pfn - zone->start_pfn) & BM_BLOCK_MASK;
769
770 return 0;
771}
772
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700773static void memory_bm_set_bit(struct memory_bitmap *bm, unsigned long pfn)
774{
775 void *addr;
776 unsigned int bit;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100777 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700778
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100779 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
780 BUG_ON(error);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700781 set_bit(bit, addr);
782}
783
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100784static int mem_bm_set_bit_check(struct memory_bitmap *bm, unsigned long pfn)
785{
786 void *addr;
787 unsigned int bit;
788 int error;
789
790 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
791 if (!error)
792 set_bit(bit, addr);
Joerg Roedel07a33822014-07-21 12:26:58 +0200793
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100794 return error;
795}
796
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700797static void memory_bm_clear_bit(struct memory_bitmap *bm, unsigned long pfn)
798{
799 void *addr;
800 unsigned int bit;
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100801 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700802
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100803 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
804 BUG_ON(error);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700805 clear_bit(bit, addr);
806}
807
Joerg Roedelfdd64ed2014-09-30 13:31:29 +0200808static void memory_bm_clear_current(struct memory_bitmap *bm)
809{
810 int bit;
811
812 bit = max(bm->cur.node_bit - 1, 0);
813 clear_bit(bit, bm->cur.node->data);
814}
815
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700816static int memory_bm_test_bit(struct memory_bitmap *bm, unsigned long pfn)
817{
818 void *addr;
819 unsigned int bit;
Joerg Roedel9047eb62014-07-21 12:27:01 +0200820 int error;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700821
Rafael J. Wysockia82f7112008-03-12 00:34:57 +0100822 error = memory_bm_find_bit(bm, pfn, &addr, &bit);
823 BUG_ON(error);
Joerg Roedel9047eb62014-07-21 12:27:01 +0200824 return test_bit(bit, addr);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700825}
826
Rafael J. Wysocki69643272008-11-11 21:32:44 +0100827static bool memory_bm_pfn_present(struct memory_bitmap *bm, unsigned long pfn)
828{
829 void *addr;
830 unsigned int bit;
831
Joerg Roedel9047eb62014-07-21 12:27:01 +0200832 return !memory_bm_find_bit(bm, pfn, &addr, &bit);
Rafael J. Wysockib788db72006-09-25 23:32:54 -0700833}
834
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200835/*
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200836 * rtree_next_node - Jump to the next leaf node.
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200837 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200838 * Set the position to the beginning of the next node in the
839 * memory bitmap. This is either the next node in the current
840 * zone's radix tree or the first node in the radix tree of the
841 * next zone.
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200842 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200843 * Return true if there is a next node, false otherwise.
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200844 */
845static bool rtree_next_node(struct memory_bitmap *bm)
846{
James Morse924d8692016-08-16 10:46:38 +0100847 if (!list_is_last(&bm->cur.node->list, &bm->cur.zone->leaves)) {
848 bm->cur.node = list_entry(bm->cur.node->list.next,
849 struct rtree_node, list);
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200850 bm->cur.node_pfn += BM_BITS_PER_BLOCK;
851 bm->cur.node_bit = 0;
Joerg Roedel0f7d83e2014-07-21 12:27:02 +0200852 touch_softlockup_watchdog();
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200853 return true;
854 }
855
856 /* No more nodes, goto next zone */
James Morse924d8692016-08-16 10:46:38 +0100857 if (!list_is_last(&bm->cur.zone->list, &bm->zones)) {
858 bm->cur.zone = list_entry(bm->cur.zone->list.next,
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200859 struct mem_zone_bm_rtree, list);
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200860 bm->cur.node = list_entry(bm->cur.zone->leaves.next,
861 struct rtree_node, list);
862 bm->cur.node_pfn = 0;
863 bm->cur.node_bit = 0;
864 return true;
865 }
866
867 /* No more zones */
868 return false;
869}
870
Joerg Roedel9047eb62014-07-21 12:27:01 +0200871/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200872 * memory_bm_rtree_next_pfn - Find the next set bit in a memory bitmap.
873 * @bm: Memory bitmap.
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200874 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200875 * Starting from the last returned position this function searches for the next
876 * set bit in @bm and returns the PFN represented by it. If no more bits are
877 * set, BM_END_OF_MAP is returned.
Joerg Roedel9047eb62014-07-21 12:27:01 +0200878 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200879 * It is required to run memory_bm_position_reset() before the first call to
880 * this function for the given memory bitmap.
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200881 */
Joerg Roedel9047eb62014-07-21 12:27:01 +0200882static unsigned long memory_bm_next_pfn(struct memory_bitmap *bm)
Joerg Roedel3a20cb12014-07-21 12:26:59 +0200883{
884 unsigned long bits, pfn, pages;
885 int bit;
886
887 do {
888 pages = bm->cur.zone->end_pfn - bm->cur.zone->start_pfn;
889 bits = min(pages - bm->cur.node_pfn, BM_BITS_PER_BLOCK);
890 bit = find_next_bit(bm->cur.node->data, bits,
891 bm->cur.node_bit);
892 if (bit < bits) {
893 pfn = bm->cur.zone->start_pfn + bm->cur.node_pfn + bit;
894 bm->cur.node_bit = bit + 1;
895 return pfn;
896 }
897 } while (rtree_next_node(bm));
898
899 return BM_END_OF_MAP;
900}
901
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200902/*
903 * This structure represents a range of page frames the contents of which
904 * should not be saved during hibernation.
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700905 */
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700906struct nosave_region {
907 struct list_head list;
908 unsigned long start_pfn;
909 unsigned long end_pfn;
910};
911
912static LIST_HEAD(nosave_regions);
913
Rafael J. Wysocki307c5972016-06-29 03:05:10 +0200914static void recycle_zone_bm_rtree(struct mem_zone_bm_rtree *zone)
915{
916 struct rtree_node *node;
917
918 list_for_each_entry(node, &zone->nodes, list)
919 recycle_safe_page(node->data);
920
921 list_for_each_entry(node, &zone->leaves, list)
922 recycle_safe_page(node->data);
923}
924
925static void memory_bm_recycle(struct memory_bitmap *bm)
926{
927 struct mem_zone_bm_rtree *zone;
928 struct linked_page *p_list;
929
930 list_for_each_entry(zone, &bm->zones, list)
931 recycle_zone_bm_rtree(zone);
932
933 p_list = bm->p_list;
934 while (p_list) {
935 struct linked_page *lp = p_list;
936
937 p_list = lp->next;
938 recycle_safe_page(lp);
939 }
940}
941
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700942/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200943 * register_nosave_region - Register a region of unsaveable memory.
944 *
945 * Register a range of page frames the contents of which should not be saved
946 * during hibernation (to be used in the early initialization code).
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700947 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +0200948void __init __register_nosave_region(unsigned long start_pfn,
949 unsigned long end_pfn, int use_kmalloc)
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700950{
951 struct nosave_region *region;
952
953 if (start_pfn >= end_pfn)
954 return;
955
956 if (!list_empty(&nosave_regions)) {
957 /* Try to extend the previous region (they should be sorted) */
958 region = list_entry(nosave_regions.prev,
959 struct nosave_region, list);
960 if (region->end_pfn == start_pfn) {
961 region->end_pfn = end_pfn;
962 goto Report;
963 }
964 }
Johannes Berg940d67f2007-05-08 19:23:49 +1000965 if (use_kmalloc) {
Rafael J. Wysockief96f632016-07-06 23:43:46 +0200966 /* During init, this shouldn't fail */
Johannes Berg940d67f2007-05-08 19:23:49 +1000967 region = kmalloc(sizeof(struct nosave_region), GFP_KERNEL);
968 BUG_ON(!region);
Rafael J. Wysockid5f32af2016-07-06 23:44:31 +0200969 } else {
Johannes Berg940d67f2007-05-08 19:23:49 +1000970 /* This allocation cannot fail */
Mike Rapoport7e1c4e22018-10-30 15:09:57 -0700971 region = memblock_alloc(sizeof(struct nosave_region),
972 SMP_CACHE_BYTES);
Mike Rapoport8a7f97b2019-03-11 23:30:31 -0700973 if (!region)
974 panic("%s: Failed to allocate %zu bytes\n", __func__,
975 sizeof(struct nosave_region));
Rafael J. Wysockid5f32af2016-07-06 23:44:31 +0200976 }
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700977 region->start_pfn = start_pfn;
978 region->end_pfn = end_pfn;
979 list_add_tail(&region->list, &nosave_regions);
980 Report:
Joe Perches64ec72a2017-09-27 22:01:34 -0700981 pr_info("Registered nosave memory: [mem %#010llx-%#010llx]\n",
Bjorn Helgaascd38ca82013-06-03 18:20:29 +0000982 (unsigned long long) start_pfn << PAGE_SHIFT,
983 ((unsigned long long) end_pfn << PAGE_SHIFT) - 1);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -0700984}
985
986/*
987 * Set bits in this map correspond to the page frames the contents of which
988 * should not be saved during the suspend.
989 */
990static struct memory_bitmap *forbidden_pages_map;
991
992/* Set bits in this map correspond to free page frames. */
993static struct memory_bitmap *free_pages_map;
994
995/*
996 * Each page frame allocated for creating the image is marked by setting the
997 * corresponding bits in forbidden_pages_map and free_pages_map simultaneously
998 */
999
1000void swsusp_set_page_free(struct page *page)
1001{
1002 if (free_pages_map)
1003 memory_bm_set_bit(free_pages_map, page_to_pfn(page));
1004}
1005
1006static int swsusp_page_is_free(struct page *page)
1007{
1008 return free_pages_map ?
1009 memory_bm_test_bit(free_pages_map, page_to_pfn(page)) : 0;
1010}
1011
1012void swsusp_unset_page_free(struct page *page)
1013{
1014 if (free_pages_map)
1015 memory_bm_clear_bit(free_pages_map, page_to_pfn(page));
1016}
1017
1018static void swsusp_set_page_forbidden(struct page *page)
1019{
1020 if (forbidden_pages_map)
1021 memory_bm_set_bit(forbidden_pages_map, page_to_pfn(page));
1022}
1023
1024int swsusp_page_is_forbidden(struct page *page)
1025{
1026 return forbidden_pages_map ?
1027 memory_bm_test_bit(forbidden_pages_map, page_to_pfn(page)) : 0;
1028}
1029
1030static void swsusp_unset_page_forbidden(struct page *page)
1031{
1032 if (forbidden_pages_map)
1033 memory_bm_clear_bit(forbidden_pages_map, page_to_pfn(page));
1034}
1035
1036/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001037 * mark_nosave_pages - Mark pages that should not be saved.
1038 * @bm: Memory bitmap.
1039 *
1040 * Set the bits in @bm that correspond to the page frames the contents of which
1041 * should not be saved.
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001042 */
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001043static void mark_nosave_pages(struct memory_bitmap *bm)
1044{
1045 struct nosave_region *region;
1046
1047 if (list_empty(&nosave_regions))
1048 return;
1049
1050 list_for_each_entry(region, &nosave_regions, list) {
1051 unsigned long pfn;
1052
Joe Perches64ec72a2017-09-27 22:01:34 -07001053 pr_debug("Marking nosave pages: [mem %#010llx-%#010llx]\n",
Bjorn Helgaas69f1d472012-02-14 22:20:52 +01001054 (unsigned long long) region->start_pfn << PAGE_SHIFT,
1055 ((unsigned long long) region->end_pfn << PAGE_SHIFT)
1056 - 1);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001057
1058 for (pfn = region->start_pfn; pfn < region->end_pfn; pfn++)
Rafael J. Wysockia82f7112008-03-12 00:34:57 +01001059 if (pfn_valid(pfn)) {
1060 /*
1061 * It is safe to ignore the result of
1062 * mem_bm_set_bit_check() here, since we won't
1063 * touch the PFNs for which the error is
1064 * returned anyway.
1065 */
1066 mem_bm_set_bit_check(bm, pfn);
1067 }
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001068 }
1069}
1070
1071/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001072 * create_basic_memory_bitmaps - Create bitmaps to hold basic page information.
1073 *
1074 * Create bitmaps needed for marking page frames that should not be saved and
1075 * free page frames. The forbidden_pages_map and free_pages_map pointers are
1076 * only modified if everything goes well, because we don't want the bits to be
1077 * touched before both bitmaps are set up.
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001078 */
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001079int create_basic_memory_bitmaps(void)
1080{
1081 struct memory_bitmap *bm1, *bm2;
1082 int error = 0;
1083
Rafael J. Wysockiaab17282013-09-30 19:40:56 +02001084 if (forbidden_pages_map && free_pages_map)
1085 return 0;
1086 else
1087 BUG_ON(forbidden_pages_map || free_pages_map);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001088
Rafael J. Wysocki0709db62007-05-06 14:50:45 -07001089 bm1 = kzalloc(sizeof(struct memory_bitmap), GFP_KERNEL);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001090 if (!bm1)
1091 return -ENOMEM;
1092
Rafael J. Wysocki0709db62007-05-06 14:50:45 -07001093 error = memory_bm_create(bm1, GFP_KERNEL, PG_ANY);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001094 if (error)
1095 goto Free_first_object;
1096
Rafael J. Wysocki0709db62007-05-06 14:50:45 -07001097 bm2 = kzalloc(sizeof(struct memory_bitmap), GFP_KERNEL);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001098 if (!bm2)
1099 goto Free_first_bitmap;
1100
Rafael J. Wysocki0709db62007-05-06 14:50:45 -07001101 error = memory_bm_create(bm2, GFP_KERNEL, PG_ANY);
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001102 if (error)
1103 goto Free_second_object;
1104
1105 forbidden_pages_map = bm1;
1106 free_pages_map = bm2;
1107 mark_nosave_pages(forbidden_pages_map);
1108
Joe Perches64ec72a2017-09-27 22:01:34 -07001109 pr_debug("Basic memory bitmaps created\n");
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001110
1111 return 0;
1112
1113 Free_second_object:
1114 kfree(bm2);
1115 Free_first_bitmap:
1116 memory_bm_free(bm1, PG_UNSAFE_CLEAR);
1117 Free_first_object:
1118 kfree(bm1);
1119 return -ENOMEM;
1120}
1121
1122/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001123 * free_basic_memory_bitmaps - Free memory bitmaps holding basic information.
1124 *
1125 * Free memory bitmaps allocated by create_basic_memory_bitmaps(). The
1126 * auxiliary pointers are necessary so that the bitmaps themselves are not
1127 * referred to while they are being freed.
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001128 */
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001129void free_basic_memory_bitmaps(void)
1130{
1131 struct memory_bitmap *bm1, *bm2;
1132
Rafael J. Wysocki6a0c7cd2013-11-14 23:26:58 +01001133 if (WARN_ON(!(forbidden_pages_map && free_pages_map)))
1134 return;
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001135
1136 bm1 = forbidden_pages_map;
1137 bm2 = free_pages_map;
1138 forbidden_pages_map = NULL;
1139 free_pages_map = NULL;
1140 memory_bm_free(bm1, PG_UNSAFE_CLEAR);
1141 kfree(bm1);
1142 memory_bm_free(bm2, PG_UNSAFE_CLEAR);
1143 kfree(bm2);
1144
Joe Perches64ec72a2017-09-27 22:01:34 -07001145 pr_debug("Basic memory bitmaps freed\n");
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001146}
1147
Anisse Astier1ad14102016-09-09 10:43:32 +02001148void clear_free_pages(void)
1149{
1150#ifdef CONFIG_PAGE_POISONING_ZERO
1151 struct memory_bitmap *bm = free_pages_map;
1152 unsigned long pfn;
1153
1154 if (WARN_ON(!(free_pages_map)))
1155 return;
1156
1157 memory_bm_position_reset(bm);
1158 pfn = memory_bm_next_pfn(bm);
1159 while (pfn != BM_END_OF_MAP) {
1160 if (pfn_valid(pfn))
1161 clear_highpage(pfn_to_page(pfn));
1162
1163 pfn = memory_bm_next_pfn(bm);
1164 }
1165 memory_bm_position_reset(bm);
Joe Perches64ec72a2017-09-27 22:01:34 -07001166 pr_info("free pages cleared after restore\n");
Anisse Astier1ad14102016-09-09 10:43:32 +02001167#endif /* PAGE_POISONING_ZERO */
1168}
1169
Rafael J. Wysocki74dfd662007-05-06 14:50:43 -07001170/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001171 * snapshot_additional_pages - Estimate the number of extra pages needed.
1172 * @zone: Memory zone to carry out the computation for.
1173 *
1174 * Estimate the number of additional pages needed for setting up a hibernation
1175 * image data structures for @zone (usually, the returned value is greater than
1176 * the exact number).
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001177 */
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001178unsigned int snapshot_additional_pages(struct zone *zone)
1179{
Joerg Roedelf469f022014-07-21 12:26:57 +02001180 unsigned int rtree, nodes;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001181
Joerg Roedelf469f022014-07-21 12:26:57 +02001182 rtree = nodes = DIV_ROUND_UP(zone->spanned_pages, BM_BITS_PER_BLOCK);
1183 rtree += DIV_ROUND_UP(rtree * sizeof(struct rtree_node),
1184 LINKED_PAGE_DATA_SIZE);
1185 while (nodes > 1) {
1186 nodes = DIV_ROUND_UP(nodes, BM_ENTRIES_PER_LEVEL);
1187 rtree += nodes;
1188 }
1189
Joerg Roedel9047eb62014-07-21 12:27:01 +02001190 return 2 * rtree;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001191}
1192
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001193#ifdef CONFIG_HIGHMEM
1194/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001195 * count_free_highmem_pages - Compute the total number of free highmem pages.
1196 *
1197 * The returned number is system-wide.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001198 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001199static unsigned int count_free_highmem_pages(void)
1200{
1201 struct zone *zone;
1202 unsigned int cnt = 0;
1203
KOSAKI Motohiroee99c712009-03-31 15:19:31 -07001204 for_each_populated_zone(zone)
1205 if (is_highmem(zone))
Christoph Lameterd23ad422007-02-10 01:43:02 -08001206 cnt += zone_page_state(zone, NR_FREE_PAGES);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001207
1208 return cnt;
1209}
1210
1211/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001212 * saveable_highmem_page - Check if a highmem page is saveable.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001213 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001214 * Determine whether a highmem page should be included in a hibernation image.
1215 *
1216 * We should save the page if it isn't Nosave or NosaveFree, or Reserved,
1217 * and it isn't part of a free chunk of pages.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001218 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001219static struct page *saveable_highmem_page(struct zone *zone, unsigned long pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001220{
1221 struct page *page;
1222
1223 if (!pfn_valid(pfn))
1224 return NULL;
1225
David Hildenbrand5b56db32019-03-05 15:42:45 -08001226 page = pfn_to_online_page(pfn);
1227 if (!page || page_zone(page) != zone)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001228 return NULL;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001229
1230 BUG_ON(!PageHighMem(page));
1231
David Hildenbrandabd02ac2019-03-05 15:42:50 -08001232 if (swsusp_page_is_forbidden(page) || swsusp_page_is_free(page))
1233 return NULL;
1234
1235 if (PageReserved(page) || PageOffline(page))
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001236 return NULL;
1237
Stanislaw Gruszkac6968e72012-01-10 15:07:31 -08001238 if (page_is_guard(page))
1239 return NULL;
1240
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001241 return page;
1242}
1243
1244/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001245 * count_highmem_pages - Compute the total number of saveable highmem pages.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001246 */
Rafael J. Wysockife419532009-06-11 23:11:17 +02001247static unsigned int count_highmem_pages(void)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001248{
1249 struct zone *zone;
1250 unsigned int n = 0;
1251
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001252 for_each_populated_zone(zone) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001253 unsigned long pfn, max_zone_pfn;
1254
1255 if (!is_highmem(zone))
1256 continue;
1257
1258 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -07001259 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001260 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001261 if (saveable_highmem_page(zone, pfn))
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001262 n++;
1263 }
1264 return n;
1265}
1266#else
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001267static inline void *saveable_highmem_page(struct zone *z, unsigned long p)
1268{
1269 return NULL;
1270}
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001271#endif /* CONFIG_HIGHMEM */
1272
Rafael J. Wysockif6143aa2006-09-25 23:32:50 -07001273/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001274 * saveable_page - Check if the given page is saveable.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001275 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001276 * Determine whether a non-highmem page should be included in a hibernation
1277 * image.
1278 *
1279 * We should save the page if it isn't Nosave, and is not in the range
1280 * of pages statically defined as 'unsaveable', and it isn't part of
1281 * a free chunk of pages.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001282 */
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001283static struct page *saveable_page(struct zone *zone, unsigned long pfn)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001284{
Pavel Machekde491862005-10-30 14:59:59 -08001285 struct page *page;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001286
1287 if (!pfn_valid(pfn))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001288 return NULL;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001289
David Hildenbrand5b56db32019-03-05 15:42:45 -08001290 page = pfn_to_online_page(pfn);
1291 if (!page || page_zone(page) != zone)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001292 return NULL;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001293
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001294 BUG_ON(PageHighMem(page));
1295
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07001296 if (swsusp_page_is_forbidden(page) || swsusp_page_is_free(page))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001297 return NULL;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001298
David Hildenbrandabd02ac2019-03-05 15:42:50 -08001299 if (PageOffline(page))
1300 return NULL;
1301
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001302 if (PageReserved(page)
1303 && (!kernel_page_present(page) || pfn_is_nosave(pfn)))
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001304 return NULL;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001305
Stanislaw Gruszkac6968e72012-01-10 15:07:31 -08001306 if (page_is_guard(page))
1307 return NULL;
1308
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001309 return page;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001310}
1311
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001312/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001313 * count_data_pages - Compute the total number of saveable non-highmem pages.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001314 */
Rafael J. Wysockife419532009-06-11 23:11:17 +02001315static unsigned int count_data_pages(void)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001316{
1317 struct zone *zone;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001318 unsigned long pfn, max_zone_pfn;
Pavel Machekdc19d502005-11-07 00:58:40 -08001319 unsigned int n = 0;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001320
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001321 for_each_populated_zone(zone) {
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001322 if (is_highmem(zone))
1323 continue;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001324
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001325 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -07001326 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001327 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001328 if (saveable_page(zone, pfn))
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001329 n++;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001330 }
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001331 return n;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001332}
1333
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001334/*
1335 * This is needed, because copy_page and memcpy are not usable for copying
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001336 * task structs.
1337 */
1338static inline void do_copy_page(long *dst, long *src)
Rafael J. Wysockif623f0d2006-09-25 23:32:49 -07001339{
1340 int n;
1341
Rafael J. Wysockif623f0d2006-09-25 23:32:49 -07001342 for (n = PAGE_SIZE / sizeof(long); n; n--)
1343 *dst++ = *src++;
1344}
1345
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001346/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001347 * safe_copy_page - Copy a page in a safe way.
1348 *
1349 * Check if the page we are going to copy is marked as present in the kernel
Rick Edgecombed6332692019-04-25 17:11:35 -07001350 * page tables. This always is the case if CONFIG_DEBUG_PAGEALLOC or
1351 * CONFIG_ARCH_HAS_SET_DIRECT_MAP is not set. In that case kernel_page_present()
1352 * always returns 'true'.
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001353 */
1354static void safe_copy_page(void *dst, struct page *s_page)
1355{
1356 if (kernel_page_present(s_page)) {
1357 do_copy_page(dst, page_address(s_page));
1358 } else {
1359 kernel_map_pages(s_page, 1, 1);
1360 do_copy_page(dst, page_address(s_page));
1361 kernel_map_pages(s_page, 1, 0);
1362 }
1363}
1364
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001365#ifdef CONFIG_HIGHMEM
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001366static inline struct page *page_is_saveable(struct zone *zone, unsigned long pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001367{
1368 return is_highmem(zone) ?
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001369 saveable_highmem_page(zone, pfn) : saveable_page(zone, pfn);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001370}
1371
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001372static void copy_data_page(unsigned long dst_pfn, unsigned long src_pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001373{
1374 struct page *s_page, *d_page;
1375 void *src, *dst;
1376
1377 s_page = pfn_to_page(src_pfn);
1378 d_page = pfn_to_page(dst_pfn);
1379 if (PageHighMem(s_page)) {
Cong Wang0de9a1e2011-11-25 23:14:38 +08001380 src = kmap_atomic(s_page);
1381 dst = kmap_atomic(d_page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001382 do_copy_page(dst, src);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001383 kunmap_atomic(dst);
1384 kunmap_atomic(src);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001385 } else {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001386 if (PageHighMem(d_page)) {
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001387 /*
1388 * The page pointed to by src may contain some kernel
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001389 * data modified by kmap_atomic()
1390 */
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001391 safe_copy_page(buffer, s_page);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001392 dst = kmap_atomic(d_page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07001393 copy_page(dst, buffer);
Cong Wang0de9a1e2011-11-25 23:14:38 +08001394 kunmap_atomic(dst);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001395 } else {
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001396 safe_copy_page(page_address(d_page), s_page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001397 }
1398 }
1399}
1400#else
Rafael J. Wysocki846705d2008-11-26 18:00:24 -05001401#define page_is_saveable(zone, pfn) saveable_page(zone, pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001402
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001403static inline void copy_data_page(unsigned long dst_pfn, unsigned long src_pfn)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001404{
Rafael J. Wysocki8a235ef2008-02-20 01:47:44 +01001405 safe_copy_page(page_address(pfn_to_page(dst_pfn)),
1406 pfn_to_page(src_pfn));
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001407}
1408#endif /* CONFIG_HIGHMEM */
1409
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001410static void copy_data_pages(struct memory_bitmap *copy_bm,
1411 struct memory_bitmap *orig_bm)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001412{
1413 struct zone *zone;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001414 unsigned long pfn;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001415
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001416 for_each_populated_zone(zone) {
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001417 unsigned long max_zone_pfn;
1418
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001419 mark_free_pages(zone);
Xishi Qiuc33bc312013-09-11 14:21:44 -07001420 max_zone_pfn = zone_end_pfn(zone);
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001421 for (pfn = zone->zone_start_pfn; pfn < max_zone_pfn; pfn++)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001422 if (page_is_saveable(zone, pfn))
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001423 memory_bm_set_bit(orig_bm, pfn);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001424 }
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001425 memory_bm_position_reset(orig_bm);
1426 memory_bm_position_reset(copy_bm);
Fengguang Wudf7c4872007-10-20 02:26:04 +02001427 for(;;) {
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001428 pfn = memory_bm_next_pfn(orig_bm);
Fengguang Wudf7c4872007-10-20 02:26:04 +02001429 if (unlikely(pfn == BM_END_OF_MAP))
1430 break;
1431 copy_data_page(memory_bm_next_pfn(copy_bm), pfn);
1432 }
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001433}
1434
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001435/* Total number of image pages */
1436static unsigned int nr_copy_pages;
1437/* Number of pages needed for saving the original pfns of the image pages */
1438static unsigned int nr_meta_pages;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001439/*
1440 * Numbers of normal and highmem page frames allocated for hibernation image
1441 * before suspending devices.
1442 */
Pushkar Jambhlekar0bae5fd2017-05-11 10:31:24 +05301443static unsigned int alloc_normal, alloc_highmem;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001444/*
1445 * Memory bitmap used for marking saveable pages (during hibernation) or
1446 * hibernation image pages (during restore)
1447 */
1448static struct memory_bitmap orig_bm;
1449/*
1450 * Memory bitmap used during hibernation for marking allocated page frames that
1451 * will contain copies of saveable pages. During restore it is initially used
1452 * for marking hibernation image pages, but then the set bits from it are
1453 * duplicated in @orig_bm and it is released. On highmem systems it is next
1454 * used for marking "safe" highmem pages, but it has to be reinitialized for
1455 * this purpose.
1456 */
1457static struct memory_bitmap copy_bm;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001458
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001459/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001460 * swsusp_free - Free pages allocated for hibernation image.
Rafael J. Wysockicd560bb2006-09-25 23:32:50 -07001461 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001462 * Image pages are alocated before snapshot creation, so they need to be
1463 * released after resume.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001464 */
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001465void swsusp_free(void)
1466{
Joerg Roedelfdd64ed2014-09-30 13:31:29 +02001467 unsigned long fb_pfn, fr_pfn;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001468
Joerg Roedelfdd64ed2014-09-30 13:31:29 +02001469 if (!forbidden_pages_map || !free_pages_map)
1470 goto out;
Rafael J. Wysockiae83c5ee2006-09-25 23:32:45 -07001471
Joerg Roedelfdd64ed2014-09-30 13:31:29 +02001472 memory_bm_position_reset(forbidden_pages_map);
1473 memory_bm_position_reset(free_pages_map);
1474
1475loop:
1476 fr_pfn = memory_bm_next_pfn(free_pages_map);
1477 fb_pfn = memory_bm_next_pfn(forbidden_pages_map);
1478
1479 /*
1480 * Find the next bit set in both bitmaps. This is guaranteed to
1481 * terminate when fb_pfn == fr_pfn == BM_END_OF_MAP.
1482 */
1483 do {
1484 if (fb_pfn < fr_pfn)
1485 fb_pfn = memory_bm_next_pfn(forbidden_pages_map);
1486 if (fr_pfn < fb_pfn)
1487 fr_pfn = memory_bm_next_pfn(free_pages_map);
1488 } while (fb_pfn != fr_pfn);
1489
1490 if (fr_pfn != BM_END_OF_MAP && pfn_valid(fr_pfn)) {
1491 struct page *page = pfn_to_page(fr_pfn);
1492
1493 memory_bm_clear_current(forbidden_pages_map);
1494 memory_bm_clear_current(free_pages_map);
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +02001495 hibernate_restore_unprotect_page(page_address(page));
Joerg Roedelfdd64ed2014-09-30 13:31:29 +02001496 __free_page(page);
1497 goto loop;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001498 }
Joerg Roedelfdd64ed2014-09-30 13:31:29 +02001499
1500out:
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08001501 nr_copy_pages = 0;
1502 nr_meta_pages = 0;
Rafael J. Wysocki75534b52006-09-25 23:32:52 -07001503 restore_pblist = NULL;
Rafael J. Wysocki6e1819d2006-03-23 03:00:03 -08001504 buffer = NULL;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001505 alloc_normal = 0;
1506 alloc_highmem = 0;
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +02001507 hibernate_restore_protection_end();
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001508}
1509
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001510/* Helper functions used for the shrinking of memory. */
Rafael J. Wysockife419532009-06-11 23:11:17 +02001511
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001512#define GFP_IMAGE (GFP_KERNEL | __GFP_NOWARN)
1513
1514/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001515 * preallocate_image_pages - Allocate a number of pages for hibernation image.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001516 * @nr_pages: Number of page frames to allocate.
1517 * @mask: GFP flags to use for the allocation.
1518 *
1519 * Return value: Number of page frames actually allocated
1520 */
1521static unsigned long preallocate_image_pages(unsigned long nr_pages, gfp_t mask)
Rafael J. Wysockife419532009-06-11 23:11:17 +02001522{
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001523 unsigned long nr_alloc = 0;
1524
1525 while (nr_pages > 0) {
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001526 struct page *page;
1527
1528 page = alloc_image_page(mask);
1529 if (!page)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001530 break;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001531 memory_bm_set_bit(&copy_bm, page_to_pfn(page));
1532 if (PageHighMem(page))
1533 alloc_highmem++;
1534 else
1535 alloc_normal++;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001536 nr_pages--;
1537 nr_alloc++;
1538 }
1539
1540 return nr_alloc;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001541}
1542
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001543static unsigned long preallocate_image_memory(unsigned long nr_pages,
1544 unsigned long avail_normal)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001545{
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001546 unsigned long alloc;
1547
1548 if (avail_normal <= alloc_normal)
1549 return 0;
1550
1551 alloc = avail_normal - alloc_normal;
1552 if (nr_pages < alloc)
1553 alloc = nr_pages;
1554
1555 return preallocate_image_pages(alloc, GFP_IMAGE);
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001556}
1557
1558#ifdef CONFIG_HIGHMEM
1559static unsigned long preallocate_image_highmem(unsigned long nr_pages)
1560{
1561 return preallocate_image_pages(nr_pages, GFP_IMAGE | __GFP_HIGHMEM);
1562}
1563
1564/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001565 * __fraction - Compute (an approximation of) x * (multiplier / base).
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001566 */
1567static unsigned long __fraction(u64 x, u64 multiplier, u64 base)
1568{
1569 x *= multiplier;
1570 do_div(x, base);
1571 return (unsigned long)x;
1572}
1573
1574static unsigned long preallocate_highmem_fraction(unsigned long nr_pages,
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001575 unsigned long highmem,
1576 unsigned long total)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001577{
1578 unsigned long alloc = __fraction(nr_pages, highmem, total);
1579
1580 return preallocate_image_pages(alloc, GFP_IMAGE | __GFP_HIGHMEM);
1581}
1582#else /* CONFIG_HIGHMEM */
1583static inline unsigned long preallocate_image_highmem(unsigned long nr_pages)
1584{
1585 return 0;
1586}
1587
1588static inline unsigned long preallocate_highmem_fraction(unsigned long nr_pages,
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001589 unsigned long highmem,
1590 unsigned long total)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001591{
1592 return 0;
1593}
1594#endif /* CONFIG_HIGHMEM */
1595
1596/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001597 * free_unnecessary_pages - Release preallocated pages not needed for the image.
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001598 */
Wonhong Kwona64fc822015-02-03 17:22:00 +09001599static unsigned long free_unnecessary_pages(void)
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001600{
Wonhong Kwona64fc822015-02-03 17:22:00 +09001601 unsigned long save, to_free_normal, to_free_highmem, free;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001602
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001603 save = count_data_pages();
1604 if (alloc_normal >= save) {
1605 to_free_normal = alloc_normal - save;
1606 save = 0;
1607 } else {
1608 to_free_normal = 0;
1609 save -= alloc_normal;
1610 }
1611 save += count_highmem_pages();
1612 if (alloc_highmem >= save) {
1613 to_free_highmem = alloc_highmem - save;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001614 } else {
1615 to_free_highmem = 0;
Rafael J. Wysocki4d4cf232011-07-06 20:15:23 +02001616 save -= alloc_highmem;
1617 if (to_free_normal > save)
1618 to_free_normal -= save;
1619 else
1620 to_free_normal = 0;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001621 }
Wonhong Kwona64fc822015-02-03 17:22:00 +09001622 free = to_free_normal + to_free_highmem;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001623
1624 memory_bm_position_reset(&copy_bm);
1625
Rafael J. Wysockia9c9b442010-02-25 22:32:37 +01001626 while (to_free_normal > 0 || to_free_highmem > 0) {
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001627 unsigned long pfn = memory_bm_next_pfn(&copy_bm);
1628 struct page *page = pfn_to_page(pfn);
1629
1630 if (PageHighMem(page)) {
1631 if (!to_free_highmem)
1632 continue;
1633 to_free_highmem--;
1634 alloc_highmem--;
1635 } else {
1636 if (!to_free_normal)
1637 continue;
1638 to_free_normal--;
1639 alloc_normal--;
1640 }
1641 memory_bm_clear_bit(&copy_bm, pfn);
1642 swsusp_unset_page_forbidden(page);
1643 swsusp_unset_page_free(page);
1644 __free_page(page);
1645 }
Wonhong Kwona64fc822015-02-03 17:22:00 +09001646
1647 return free;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001648}
1649
1650/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001651 * minimum_image_size - Estimate the minimum acceptable size of an image.
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001652 * @saveable: Number of saveable pages in the system.
1653 *
1654 * We want to avoid attempting to free too much memory too hard, so estimate the
1655 * minimum acceptable size of a hibernation image to use as the lower limit for
1656 * preallocating memory.
1657 *
1658 * We assume that the minimum image size should be proportional to
1659 *
1660 * [number of saveable pages] - [number of pages that can be freed in theory]
1661 *
1662 * where the second term is the sum of (1) reclaimable slab pages, (2) active
Rainer Fiebigbdbc98a2017-12-22 11:13:59 +01001663 * and (3) inactive anonymous pages, (4) active and (5) inactive file pages.
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001664 */
1665static unsigned long minimum_image_size(unsigned long saveable)
1666{
1667 unsigned long size;
1668
Johannes Weinerd507e2eb2017-08-10 15:23:31 -07001669 size = global_node_page_state(NR_SLAB_RECLAIMABLE)
Mel Gorman599d0c92016-07-28 15:45:31 -07001670 + global_node_page_state(NR_ACTIVE_ANON)
1671 + global_node_page_state(NR_INACTIVE_ANON)
1672 + global_node_page_state(NR_ACTIVE_FILE)
Rainer Fiebigbdbc98a2017-12-22 11:13:59 +01001673 + global_node_page_state(NR_INACTIVE_FILE);
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001674
1675 return saveable <= size ? 0 : saveable - size;
1676}
1677
1678/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001679 * hibernate_preallocate_memory - Preallocate memory for hibernation image.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001680 *
1681 * To create a hibernation image it is necessary to make a copy of every page
1682 * frame in use. We also need a number of page frames to be free during
1683 * hibernation for allocations made while saving the image and for device
1684 * drivers, in case they need to allocate memory from their hibernation
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001685 * callbacks (these two numbers are given by PAGES_FOR_IO (which is a rough
1686 * estimate) and reserverd_size divided by PAGE_SIZE (which is tunable through
1687 * /sys/power/reserved_size, respectively). To make this happen, we compute the
1688 * total number of available page frames and allocate at least
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001689 *
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001690 * ([page frames total] + PAGES_FOR_IO + [metadata pages]) / 2
1691 * + 2 * DIV_ROUND_UP(reserved_size, PAGE_SIZE)
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001692 *
1693 * of them, which corresponds to the maximum size of a hibernation image.
1694 *
1695 * If image_size is set below the number following from the above formula,
1696 * the preallocation of memory is continued until the total number of saveable
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001697 * pages in the system is below the requested image size or the minimum
1698 * acceptable image size returned by minimum_image_size(), whichever is greater.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001699 */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001700int hibernate_preallocate_memory(void)
Rafael J. Wysockife419532009-06-11 23:11:17 +02001701{
Rafael J. Wysockife419532009-06-11 23:11:17 +02001702 struct zone *zone;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001703 unsigned long saveable, size, max_size, count, highmem, pages = 0;
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001704 unsigned long alloc, save_highmem, pages_highmem, avail_normal;
Tina Ruchandanidb597602014-10-30 11:04:53 -07001705 ktime_t start, stop;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001706 int error;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001707
Joe Perches64ec72a2017-09-27 22:01:34 -07001708 pr_info("Preallocating image memory... ");
Tina Ruchandanidb597602014-10-30 11:04:53 -07001709 start = ktime_get();
Rafael J. Wysockife419532009-06-11 23:11:17 +02001710
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001711 error = memory_bm_create(&orig_bm, GFP_IMAGE, PG_ANY);
1712 if (error)
1713 goto err_out;
1714
1715 error = memory_bm_create(&copy_bm, GFP_IMAGE, PG_ANY);
1716 if (error)
1717 goto err_out;
1718
1719 alloc_normal = 0;
1720 alloc_highmem = 0;
1721
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001722 /* Count the number of saveable data pages. */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001723 save_highmem = count_highmem_pages();
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001724 saveable = count_data_pages();
Rafael J. Wysockife419532009-06-11 23:11:17 +02001725
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001726 /*
1727 * Compute the total number of page frames we can use (count) and the
1728 * number of pages needed for image metadata (size).
1729 */
1730 count = saveable;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001731 saveable += save_highmem;
1732 highmem = save_highmem;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001733 size = 0;
1734 for_each_populated_zone(zone) {
1735 size += snapshot_additional_pages(zone);
1736 if (is_highmem(zone))
1737 highmem += zone_page_state(zone, NR_FREE_PAGES);
1738 else
1739 count += zone_page_state(zone, NR_FREE_PAGES);
1740 }
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001741 avail_normal = count;
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001742 count += highmem;
1743 count -= totalreserve_pages;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001744
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02001745 /* Add number of pages required for page keys (s390 only). */
1746 size += page_key_additional_pages(saveable);
1747
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001748 /* Compute the maximum number of saveable pages to leave in memory. */
Rafael J. Wysockiddeb6482011-05-15 11:38:48 +02001749 max_size = (count - (size + PAGES_FOR_IO)) / 2
1750 - 2 * DIV_ROUND_UP(reserved_size, PAGE_SIZE);
Rafael J. Wysocki266f1a22010-09-20 19:44:38 +02001751 /* Compute the desired number of image pages specified by image_size. */
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001752 size = DIV_ROUND_UP(image_size, PAGE_SIZE);
1753 if (size > max_size)
1754 size = max_size;
1755 /*
Rafael J. Wysocki266f1a22010-09-20 19:44:38 +02001756 * If the desired number of image pages is at least as large as the
1757 * current number of saveable pages in memory, allocate page frames for
1758 * the image and we're done.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001759 */
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001760 if (size >= saveable) {
1761 pages = preallocate_image_highmem(save_highmem);
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001762 pages += preallocate_image_memory(saveable - pages, avail_normal);
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001763 goto out;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001764 }
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001765
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001766 /* Estimate the minimum size of the image. */
1767 pages = minimum_image_size(saveable);
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001768 /*
1769 * To avoid excessive pressure on the normal zone, leave room in it to
1770 * accommodate an image of the minimum size (unless it's already too
1771 * small, in which case don't preallocate pages from it at all).
1772 */
1773 if (avail_normal > pages)
1774 avail_normal -= pages;
1775 else
1776 avail_normal = 0;
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001777 if (size < pages)
1778 size = min_t(unsigned long, pages, max_size);
1779
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001780 /*
1781 * Let the memory management subsystem know that we're going to need a
1782 * large number of page frames to allocate and make it free some memory.
1783 * NOTE: If this is not done, performance will be hurt badly in some
1784 * test cases.
1785 */
1786 shrink_all_memory(saveable - size);
1787
1788 /*
1789 * The number of saveable pages in memory was too high, so apply some
1790 * pressure to decrease it. First, make room for the largest possible
1791 * image and fail if that doesn't work. Next, try to decrease the size
Rafael J. Wysockief4aede2009-07-08 13:24:12 +02001792 * of the image as much as indicated by 'size' using allocations from
1793 * highmem and non-highmem zones separately.
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001794 */
1795 pages_highmem = preallocate_image_highmem(highmem / 2);
Aaron Lufd432b92013-11-06 08:41:31 +08001796 alloc = count - max_size;
1797 if (alloc > pages_highmem)
1798 alloc -= pages_highmem;
1799 else
1800 alloc = 0;
Rafael J. Wysocki67150452010-09-11 20:58:27 +02001801 pages = preallocate_image_memory(alloc, avail_normal);
1802 if (pages < alloc) {
1803 /* We have exhausted non-highmem pages, try highmem. */
1804 alloc -= pages;
1805 pages += pages_highmem;
1806 pages_highmem = preallocate_image_highmem(alloc);
1807 if (pages_highmem < alloc)
1808 goto err_out;
1809 pages += pages_highmem;
1810 /*
1811 * size is the desired number of saveable pages to leave in
1812 * memory, so try to preallocate (all memory - size) pages.
1813 */
1814 alloc = (count - pages) - size;
1815 pages += preallocate_image_highmem(alloc);
1816 } else {
1817 /*
1818 * There are approximately max_size saveable pages at this point
1819 * and we want to reduce this number down to size.
1820 */
1821 alloc = max_size - size;
1822 size = preallocate_highmem_fraction(alloc, highmem, count);
1823 pages_highmem += size;
1824 alloc -= size;
1825 size = preallocate_image_memory(alloc, avail_normal);
1826 pages_highmem += preallocate_image_highmem(alloc - size);
1827 pages += pages_highmem + size;
1828 }
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001829
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001830 /*
1831 * We only need as many page frames for the image as there are saveable
1832 * pages in memory, but we have allocated more. Release the excessive
1833 * ones now.
1834 */
Wonhong Kwona64fc822015-02-03 17:22:00 +09001835 pages -= free_unnecessary_pages();
Rafael J. Wysocki4bb33432009-07-08 13:23:51 +02001836
1837 out:
Tina Ruchandanidb597602014-10-30 11:04:53 -07001838 stop = ktime_get();
Joe Perches64ec72a2017-09-27 22:01:34 -07001839 pr_cont("done (allocated %lu pages)\n", pages);
Tina Ruchandanidb597602014-10-30 11:04:53 -07001840 swsusp_show_speed(start, stop, pages, "Allocated");
Rafael J. Wysockife419532009-06-11 23:11:17 +02001841
1842 return 0;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001843
1844 err_out:
Joe Perches64ec72a2017-09-27 22:01:34 -07001845 pr_cont("\n");
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001846 swsusp_free();
1847 return -ENOMEM;
Rafael J. Wysockife419532009-06-11 23:11:17 +02001848}
1849
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001850#ifdef CONFIG_HIGHMEM
1851/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001852 * count_pages_for_highmem - Count non-highmem pages needed for copying highmem.
1853 *
1854 * Compute the number of non-highmem pages that will be necessary for creating
1855 * copies of highmem pages.
1856 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001857static unsigned int count_pages_for_highmem(unsigned int nr_highmem)
1858{
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001859 unsigned int free_highmem = count_free_highmem_pages() + alloc_highmem;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001860
1861 if (free_highmem >= nr_highmem)
1862 nr_highmem = 0;
1863 else
1864 nr_highmem -= free_highmem;
1865
1866 return nr_highmem;
1867}
1868#else
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001869static unsigned int count_pages_for_highmem(unsigned int nr_highmem) { return 0; }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001870#endif /* CONFIG_HIGHMEM */
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001871
1872/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001873 * enough_free_mem - Check if there is enough free memory for the image.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001874 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001875static int enough_free_mem(unsigned int nr_pages, unsigned int nr_highmem)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001876{
Rafael J. Wysockie5e2fa72006-01-06 00:14:20 -08001877 struct zone *zone;
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001878 unsigned int free = alloc_normal;
Rafael J. Wysockie5e2fa72006-01-06 00:14:20 -08001879
Gerald Schaefer98e73dc2009-07-22 00:36:56 +02001880 for_each_populated_zone(zone)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001881 if (!is_highmem(zone))
Christoph Lameterd23ad422007-02-10 01:43:02 -08001882 free += zone_page_state(zone, NR_FREE_PAGES);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001883
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001884 nr_pages += count_pages_for_highmem(nr_highmem);
Joe Perches64ec72a2017-09-27 22:01:34 -07001885 pr_debug("Normal pages needed: %u + %u, available pages: %u\n",
1886 nr_pages, PAGES_FOR_IO, free);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07001887
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001888 return free > nr_pages + PAGES_FOR_IO;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001889}
1890
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001891#ifdef CONFIG_HIGHMEM
1892/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001893 * get_highmem_buffer - Allocate a buffer for highmem pages.
1894 *
1895 * If there are some highmem pages in the hibernation image, we may need a
1896 * buffer to copy them and/or load their data.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001897 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001898static inline int get_highmem_buffer(int safe_needed)
1899{
Mel Gorman453f85d2017-11-15 17:38:03 -08001900 buffer = get_image_page(GFP_ATOMIC, safe_needed);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001901 return buffer ? 0 : -ENOMEM;
1902}
1903
1904/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001905 * alloc_highmem_image_pages - Allocate some highmem pages for the image.
1906 *
1907 * Try to allocate as many pages as needed, but if the number of free highmem
1908 * pages is less than that, allocate them all.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001909 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001910static inline unsigned int alloc_highmem_pages(struct memory_bitmap *bm,
1911 unsigned int nr_highmem)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001912{
1913 unsigned int to_alloc = count_free_highmem_pages();
1914
1915 if (to_alloc > nr_highmem)
1916 to_alloc = nr_highmem;
1917
1918 nr_highmem -= to_alloc;
1919 while (to_alloc-- > 0) {
1920 struct page *page;
1921
Mel Gormand0164ad2015-11-06 16:28:21 -08001922 page = alloc_image_page(__GFP_HIGHMEM|__GFP_KSWAPD_RECLAIM);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001923 memory_bm_set_bit(bm, page_to_pfn(page));
1924 }
1925 return nr_highmem;
1926}
1927#else
1928static inline int get_highmem_buffer(int safe_needed) { return 0; }
1929
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001930static inline unsigned int alloc_highmem_pages(struct memory_bitmap *bm,
1931 unsigned int n) { return 0; }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001932#endif /* CONFIG_HIGHMEM */
1933
1934/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001935 * swsusp_alloc - Allocate memory for hibernation image.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001936 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001937 * We first try to allocate as many highmem pages as there are
1938 * saveable highmem pages in the system. If that fails, we allocate
1939 * non-highmem pages for the copies of the remaining highmem ones.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001940 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001941 * In this approach it is likely that the copies of highmem pages will
1942 * also be located in the high memory, because of the way in which
1943 * copy_data_pages() works.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001944 */
BaoJun Luoeba74c22017-06-27 02:10:44 +02001945static int swsusp_alloc(struct memory_bitmap *copy_bm,
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02001946 unsigned int nr_pages, unsigned int nr_highmem)
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001947{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001948 if (nr_highmem > 0) {
Stanislaw Gruszka2e725a02011-02-12 21:06:51 +01001949 if (get_highmem_buffer(PG_ANY))
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001950 goto err_out;
1951 if (nr_highmem > alloc_highmem) {
1952 nr_highmem -= alloc_highmem;
1953 nr_pages += alloc_highmem_pages(copy_bm, nr_highmem);
1954 }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001955 }
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001956 if (nr_pages > alloc_normal) {
1957 nr_pages -= alloc_normal;
1958 while (nr_pages-- > 0) {
1959 struct page *page;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001960
Mel Gorman453f85d2017-11-15 17:38:03 -08001961 page = alloc_image_page(GFP_ATOMIC);
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001962 if (!page)
1963 goto err_out;
1964 memory_bm_set_bit(copy_bm, page_to_pfn(page));
1965 }
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001966 }
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001967
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001968 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001969
Rafael J. Wysocki64a473c2009-07-08 13:24:05 +02001970 err_out:
Rafael J. Wysockib788db72006-09-25 23:32:54 -07001971 swsusp_free();
Stanislaw Gruszka2e725a02011-02-12 21:06:51 +01001972 return -ENOMEM;
Rafael J. Wysocki054bd4c2005-11-08 21:34:39 -08001973}
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001974
Andi Kleen722a9f92014-05-02 00:44:38 +02001975asmlinkage __visible int swsusp_save(void)
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001976{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001977 unsigned int nr_pages, nr_highmem;
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001978
Joe Perches64ec72a2017-09-27 22:01:34 -07001979 pr_info("Creating hibernation image:\n");
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001980
Christoph Lameter9f8f2172008-02-04 22:29:11 -08001981 drain_local_pages(NULL);
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001982 nr_pages = count_data_pages();
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001983 nr_highmem = count_highmem_pages();
Joe Perches64ec72a2017-09-27 22:01:34 -07001984 pr_info("Need to copy %u pages\n", nr_pages + nr_highmem);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001985
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001986 if (!enough_free_mem(nr_pages, nr_highmem)) {
Joe Perches64ec72a2017-09-27 22:01:34 -07001987 pr_err("Not enough free memory\n");
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001988 return -ENOMEM;
1989 }
1990
BaoJun Luoeba74c22017-06-27 02:10:44 +02001991 if (swsusp_alloc(&copy_bm, nr_pages, nr_highmem)) {
Joe Perches64ec72a2017-09-27 22:01:34 -07001992 pr_err("Memory allocation failed\n");
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08001993 return -ENOMEM;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08001994 }
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001995
Rafael J. Wysockief96f632016-07-06 23:43:46 +02001996 /*
1997 * During allocating of suspend pagedir, new cold pages may appear.
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08001998 * Kill them.
1999 */
Christoph Lameter9f8f2172008-02-04 22:29:11 -08002000 drain_local_pages(NULL);
Rafael J. Wysockib788db72006-09-25 23:32:54 -07002001 copy_data_pages(&copy_bm, &orig_bm);
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08002002
2003 /*
2004 * End of critical section. From now on, we can write to memory,
2005 * but we should not touch disk. This specially means we must _not_
2006 * touch swap space! Except we must write out our image of course.
2007 */
2008
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002009 nr_pages += nr_highmem;
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08002010 nr_copy_pages = nr_pages;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002011 nr_meta_pages = DIV_ROUND_UP(nr_pages * sizeof(long), PAGE_SIZE);
Rafael J. Wysockia0f49652005-10-30 14:59:57 -08002012
Joe Perches64ec72a2017-09-27 22:01:34 -07002013 pr_info("Hibernation image created (%d pages copied)\n", nr_pages);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002014
Rafael J. Wysocki25761b62005-10-30 14:59:56 -08002015 return 0;
2016}
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002017
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002018#ifndef CONFIG_ARCH_HIBERNATION_HEADER
2019static int init_header_complete(struct swsusp_info *info)
2020{
2021 memcpy(&info->uts, init_utsname(), sizeof(struct new_utsname));
2022 info->version_code = LINUX_VERSION_CODE;
2023 return 0;
2024}
2025
2026static char *check_image_kernel(struct swsusp_info *info)
2027{
2028 if (info->version_code != LINUX_VERSION_CODE)
2029 return "kernel version";
2030 if (strcmp(info->uts.sysname,init_utsname()->sysname))
2031 return "system type";
2032 if (strcmp(info->uts.release,init_utsname()->release))
2033 return "kernel release";
2034 if (strcmp(info->uts.version,init_utsname()->version))
2035 return "version";
2036 if (strcmp(info->uts.machine,init_utsname()->machine))
2037 return "machine";
2038 return NULL;
2039}
2040#endif /* CONFIG_ARCH_HIBERNATION_HEADER */
2041
Rafael J. Wysockiaf508b32007-10-26 00:59:31 +02002042unsigned long snapshot_get_image_size(void)
2043{
2044 return nr_copy_pages + nr_meta_pages + 1;
2045}
2046
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002047static int init_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002048{
2049 memset(info, 0, sizeof(struct swsusp_info));
Jiang Liu0ed5fd12013-07-03 15:03:43 -07002050 info->num_physpages = get_num_physpages();
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002051 info->image_pages = nr_copy_pages;
Rafael J. Wysockiaf508b32007-10-26 00:59:31 +02002052 info->pages = snapshot_get_image_size();
Rafael J. Wysocki6e1819d2006-03-23 03:00:03 -08002053 info->size = info->pages;
2054 info->size <<= PAGE_SHIFT;
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002055 return init_header_complete(info);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002056}
2057
2058/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002059 * pack_pfns - Prepare PFNs for saving.
2060 * @bm: Memory bitmap.
2061 * @buf: Memory buffer to store the PFNs in.
2062 *
2063 * PFNs corresponding to set bits in @bm are stored in the area of memory
2064 * pointed to by @buf (1 page at a time).
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002065 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002066static inline void pack_pfns(unsigned long *buf, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002067{
2068 int j;
2069
Rafael J. Wysockib788db72006-09-25 23:32:54 -07002070 for (j = 0; j < PAGE_SIZE / sizeof(long); j++) {
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002071 buf[j] = memory_bm_next_pfn(bm);
2072 if (unlikely(buf[j] == BM_END_OF_MAP))
Rafael J. Wysockib788db72006-09-25 23:32:54 -07002073 break;
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002074 /* Save page key for data page (s390 only). */
2075 page_key_read(buf + j);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002076 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002077}
2078
2079/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002080 * snapshot_read_next - Get the address to read the next image page from.
2081 * @handle: Snapshot handle to be used for the reading.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002082 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002083 * On the first call, @handle should point to a zeroed snapshot_handle
2084 * structure. The structure gets populated then and a pointer to it should be
2085 * passed to this function every next time.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002086 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002087 * On success, the function returns a positive number. Then, the caller
2088 * is allowed to read up to the returned number of bytes from the memory
2089 * location computed by the data_of() macro.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002090 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002091 * The function returns 0 to indicate the end of the data stream condition,
2092 * and negative numbers are returned on errors. If that happens, the structure
2093 * pointed to by @handle is not updated and should not be used any more.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002094 */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002095int snapshot_read_next(struct snapshot_handle *handle)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002096{
Rafael J. Wysockifb13a282006-09-25 23:32:46 -07002097 if (handle->cur > nr_meta_pages + nr_copy_pages)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002098 return 0;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07002099
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002100 if (!buffer) {
2101 /* This makes the buffer be freed by swsusp_free() */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002102 buffer = get_image_page(GFP_ATOMIC, PG_ANY);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002103 if (!buffer)
2104 return -ENOMEM;
2105 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002106 if (!handle->cur) {
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002107 int error;
2108
2109 error = init_header((struct swsusp_info *)buffer);
2110 if (error)
2111 return error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002112 handle->buffer = buffer;
Rafael J. Wysockib788db72006-09-25 23:32:54 -07002113 memory_bm_position_reset(&orig_bm);
2114 memory_bm_position_reset(&copy_bm);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002115 } else if (handle->cur <= nr_meta_pages) {
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002116 clear_page(buffer);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002117 pack_pfns(buffer, &orig_bm);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002118 } else {
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002119 struct page *page;
2120
2121 page = pfn_to_page(memory_bm_next_pfn(&copy_bm));
2122 if (PageHighMem(page)) {
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002123 /*
2124 * Highmem pages are copied to the buffer,
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002125 * because we can't return with a kmapped
2126 * highmem page (we may not be called again).
2127 */
2128 void *kaddr;
2129
Cong Wang0de9a1e2011-11-25 23:14:38 +08002130 kaddr = kmap_atomic(page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002131 copy_page(buffer, kaddr);
Cong Wang0de9a1e2011-11-25 23:14:38 +08002132 kunmap_atomic(kaddr);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002133 handle->buffer = buffer;
2134 } else {
2135 handle->buffer = page_address(page);
2136 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002137 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002138 handle->cur++;
2139 return PAGE_SIZE;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002140}
2141
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002142static void duplicate_memory_bitmap(struct memory_bitmap *dst,
2143 struct memory_bitmap *src)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002144{
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002145 unsigned long pfn;
2146
2147 memory_bm_position_reset(src);
2148 pfn = memory_bm_next_pfn(src);
2149 while (pfn != BM_END_OF_MAP) {
2150 memory_bm_set_bit(dst, pfn);
2151 pfn = memory_bm_next_pfn(src);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002152 }
2153}
2154
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002155/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002156 * mark_unsafe_pages - Mark pages that were used before hibernation.
2157 *
2158 * Mark the pages that cannot be used for storing the image during restoration,
2159 * because they conflict with the pages that had been used before hibernation.
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002160 */
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002161static void mark_unsafe_pages(struct memory_bitmap *bm)
2162{
2163 unsigned long pfn;
2164
2165 /* Clear the "free"/"unsafe" bit for all PFNs */
2166 memory_bm_position_reset(free_pages_map);
2167 pfn = memory_bm_next_pfn(free_pages_map);
2168 while (pfn != BM_END_OF_MAP) {
2169 memory_bm_clear_current(free_pages_map);
2170 pfn = memory_bm_next_pfn(free_pages_map);
2171 }
2172
2173 /* Mark pages that correspond to the "original" PFNs as "unsafe" */
2174 duplicate_memory_bitmap(free_pages_map, bm);
2175
2176 allocated_unsafe_pages = 0;
2177}
2178
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002179static int check_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002180{
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002181 char *reason;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002182
Rafael J. Wysockid307c4a2007-10-18 03:04:52 -07002183 reason = check_image_kernel(info);
Jiang Liu0ed5fd12013-07-03 15:03:43 -07002184 if (!reason && info->num_physpages != get_num_physpages())
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002185 reason = "memory size";
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002186 if (reason) {
Joe Perches64ec72a2017-09-27 22:01:34 -07002187 pr_err("Image mismatch: %s\n", reason);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002188 return -EPERM;
2189 }
2190 return 0;
2191}
2192
2193/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002194 * load header - Check the image header and copy the data from it.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002195 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002196static int load_header(struct swsusp_info *info)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002197{
2198 int error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002199
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002200 restore_pblist = NULL;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002201 error = check_header(info);
2202 if (!error) {
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002203 nr_copy_pages = info->image_pages;
2204 nr_meta_pages = info->pages - info->image_pages - 1;
2205 }
2206 return error;
2207}
2208
2209/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002210 * unpack_orig_pfns - Set bits corresponding to given PFNs in a memory bitmap.
2211 * @bm: Memory bitmap.
2212 * @buf: Area of memory containing the PFNs.
2213 *
2214 * For each element of the array pointed to by @buf (1 page at a time), set the
2215 * corresponding bit in @bm.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002216 */
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002217static int unpack_orig_pfns(unsigned long *buf, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002218{
2219 int j;
2220
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002221 for (j = 0; j < PAGE_SIZE / sizeof(long); j++) {
2222 if (unlikely(buf[j] == BM_END_OF_MAP))
2223 break;
2224
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002225 /* Extract and buffer page key for data page (s390 only). */
2226 page_key_memorize(buf + j);
2227
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002228 if (pfn_valid(buf[j]) && memory_bm_pfn_present(bm, buf[j]))
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002229 memory_bm_set_bit(bm, buf[j]);
2230 else
2231 return -EFAULT;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002232 }
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002233
2234 return 0;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002235}
2236
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002237#ifdef CONFIG_HIGHMEM
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002238/*
2239 * struct highmem_pbe is used for creating the list of highmem pages that
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002240 * should be restored atomically during the resume from disk, because the page
2241 * frames they have occupied before the suspend are in use.
2242 */
2243struct highmem_pbe {
2244 struct page *copy_page; /* data is here now */
2245 struct page *orig_page; /* data was here before the suspend */
2246 struct highmem_pbe *next;
2247};
2248
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002249/*
2250 * List of highmem PBEs needed for restoring the highmem pages that were
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002251 * allocated before the suspend and included in the suspend image, but have
2252 * also been allocated by the "resume" kernel, so their contents cannot be
2253 * written directly to their "original" page frames.
2254 */
2255static struct highmem_pbe *highmem_pblist;
2256
2257/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002258 * count_highmem_image_pages - Compute the number of highmem pages in the image.
2259 * @bm: Memory bitmap.
2260 *
2261 * The bits in @bm that correspond to image pages are assumed to be set.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002262 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002263static unsigned int count_highmem_image_pages(struct memory_bitmap *bm)
2264{
2265 unsigned long pfn;
2266 unsigned int cnt = 0;
2267
2268 memory_bm_position_reset(bm);
2269 pfn = memory_bm_next_pfn(bm);
2270 while (pfn != BM_END_OF_MAP) {
2271 if (PageHighMem(pfn_to_page(pfn)))
2272 cnt++;
2273
2274 pfn = memory_bm_next_pfn(bm);
2275 }
2276 return cnt;
2277}
2278
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002279static unsigned int safe_highmem_pages;
2280
2281static struct memory_bitmap *safe_highmem_bm;
2282
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002283/**
2284 * prepare_highmem_image - Allocate memory for loading highmem data from image.
2285 * @bm: Pointer to an uninitialized memory bitmap structure.
2286 * @nr_highmem_p: Pointer to the number of highmem image pages.
2287 *
2288 * Try to allocate as many highmem pages as there are highmem image pages
2289 * (@nr_highmem_p points to the variable containing the number of highmem image
2290 * pages). The pages that are "safe" (ie. will not be overwritten when the
2291 * hibernation image is restored entirely) have the corresponding bits set in
2292 * @bm (it must be unitialized).
2293 *
2294 * NOTE: This function should not be called if there are no highmem image pages.
2295 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002296static int prepare_highmem_image(struct memory_bitmap *bm,
2297 unsigned int *nr_highmem_p)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002298{
2299 unsigned int to_alloc;
2300
2301 if (memory_bm_create(bm, GFP_ATOMIC, PG_SAFE))
2302 return -ENOMEM;
2303
2304 if (get_highmem_buffer(PG_SAFE))
2305 return -ENOMEM;
2306
2307 to_alloc = count_free_highmem_pages();
2308 if (to_alloc > *nr_highmem_p)
2309 to_alloc = *nr_highmem_p;
2310 else
2311 *nr_highmem_p = to_alloc;
2312
2313 safe_highmem_pages = 0;
2314 while (to_alloc-- > 0) {
2315 struct page *page;
2316
2317 page = alloc_page(__GFP_HIGHMEM);
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002318 if (!swsusp_page_is_free(page)) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002319 /* The page is "safe", set its bit the bitmap */
2320 memory_bm_set_bit(bm, page_to_pfn(page));
2321 safe_highmem_pages++;
2322 }
2323 /* Mark the page as allocated */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002324 swsusp_set_page_forbidden(page);
2325 swsusp_set_page_free(page);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002326 }
2327 memory_bm_position_reset(bm);
2328 safe_highmem_bm = bm;
2329 return 0;
2330}
2331
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002332static struct page *last_highmem_page;
2333
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002334/**
2335 * get_highmem_page_buffer - Prepare a buffer to store a highmem image page.
2336 *
2337 * For a given highmem image page get a buffer that suspend_write_next() should
2338 * return to its caller to write to.
2339 *
2340 * If the page is to be saved to its "original" page frame or a copy of
2341 * the page is to be made in the highmem, @buffer is returned. Otherwise,
2342 * the copy of the page is to be made in normal memory, so the address of
2343 * the copy is returned.
2344 *
2345 * If @buffer is returned, the caller of suspend_write_next() will write
2346 * the page's contents to @buffer, so they will have to be copied to the
2347 * right location on the next call to suspend_write_next() and it is done
2348 * with the help of copy_last_highmem_page(). For this purpose, if
2349 * @buffer is returned, @last_highmem_page is set to the page to which
2350 * the data will have to be copied from @buffer.
2351 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002352static void *get_highmem_page_buffer(struct page *page,
2353 struct chain_allocator *ca)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002354{
2355 struct highmem_pbe *pbe;
2356 void *kaddr;
2357
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002358 if (swsusp_page_is_forbidden(page) && swsusp_page_is_free(page)) {
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002359 /*
2360 * We have allocated the "original" page frame and we can
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002361 * use it directly to store the loaded page.
2362 */
2363 last_highmem_page = page;
2364 return buffer;
2365 }
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002366 /*
2367 * The "original" page frame has not been allocated and we have to
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002368 * use a "safe" page frame to store the loaded page.
2369 */
2370 pbe = chain_alloc(ca, sizeof(struct highmem_pbe));
2371 if (!pbe) {
2372 swsusp_free();
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002373 return ERR_PTR(-ENOMEM);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002374 }
2375 pbe->orig_page = page;
2376 if (safe_highmem_pages > 0) {
2377 struct page *tmp;
2378
2379 /* Copy of the page will be stored in high memory */
2380 kaddr = buffer;
2381 tmp = pfn_to_page(memory_bm_next_pfn(safe_highmem_bm));
2382 safe_highmem_pages--;
2383 last_highmem_page = tmp;
2384 pbe->copy_page = tmp;
2385 } else {
2386 /* Copy of the page will be stored in normal memory */
2387 kaddr = safe_pages_list;
2388 safe_pages_list = safe_pages_list->next;
2389 pbe->copy_page = virt_to_page(kaddr);
2390 }
2391 pbe->next = highmem_pblist;
2392 highmem_pblist = pbe;
2393 return kaddr;
2394}
2395
2396/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002397 * copy_last_highmem_page - Copy most the most recent highmem image page.
2398 *
2399 * Copy the contents of a highmem image from @buffer, where the caller of
2400 * snapshot_write_next() has stored them, to the right location represented by
2401 * @last_highmem_page .
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002402 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002403static void copy_last_highmem_page(void)
2404{
2405 if (last_highmem_page) {
2406 void *dst;
2407
Cong Wang0de9a1e2011-11-25 23:14:38 +08002408 dst = kmap_atomic(last_highmem_page);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002409 copy_page(dst, buffer);
Cong Wang0de9a1e2011-11-25 23:14:38 +08002410 kunmap_atomic(dst);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002411 last_highmem_page = NULL;
2412 }
2413}
2414
2415static inline int last_highmem_page_copied(void)
2416{
2417 return !last_highmem_page;
2418}
2419
2420static inline void free_highmem_data(void)
2421{
2422 if (safe_highmem_bm)
2423 memory_bm_free(safe_highmem_bm, PG_UNSAFE_CLEAR);
2424
2425 if (buffer)
2426 free_image_page(buffer, PG_UNSAFE_CLEAR);
2427}
2428#else
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002429static unsigned int count_highmem_image_pages(struct memory_bitmap *bm) { return 0; }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002430
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002431static inline int prepare_highmem_image(struct memory_bitmap *bm,
2432 unsigned int *nr_highmem_p) { return 0; }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002433
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002434static inline void *get_highmem_page_buffer(struct page *page,
2435 struct chain_allocator *ca)
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002436{
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002437 return ERR_PTR(-EINVAL);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002438}
2439
2440static inline void copy_last_highmem_page(void) {}
2441static inline int last_highmem_page_copied(void) { return 1; }
2442static inline void free_highmem_data(void) {}
2443#endif /* CONFIG_HIGHMEM */
2444
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002445#define PBES_PER_LINKED_PAGE (LINKED_PAGE_DATA_SIZE / sizeof(struct pbe))
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002446
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002447/**
2448 * prepare_image - Make room for loading hibernation image.
2449 * @new_bm: Unitialized memory bitmap structure.
2450 * @bm: Memory bitmap with unsafe pages marked.
2451 *
2452 * Use @bm to mark the pages that will be overwritten in the process of
2453 * restoring the system memory state from the suspend image ("unsafe" pages)
2454 * and allocate memory for the image.
2455 *
2456 * The idea is to allocate a new memory bitmap first and then allocate
2457 * as many pages as needed for image data, but without specifying what those
2458 * pages will be used for just yet. Instead, we mark them all as allocated and
2459 * create a lists of "safe" pages to be used later. On systems with high
2460 * memory a list of "safe" highmem pages is created too.
2461 */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002462static int prepare_image(struct memory_bitmap *new_bm, struct memory_bitmap *bm)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002463{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002464 unsigned int nr_pages, nr_highmem;
Rafael J. Wysocki9c744482016-06-29 03:00:51 +02002465 struct linked_page *lp;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002466 int error;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002467
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002468 /* If there is no highmem, the buffer will not be necessary */
2469 free_image_page(buffer, PG_UNSAFE_CLEAR);
2470 buffer = NULL;
2471
2472 nr_highmem = count_highmem_image_pages(bm);
Rafael J. Wysocki6dbecfd2016-06-29 03:02:16 +02002473 mark_unsafe_pages(bm);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002474
2475 error = memory_bm_create(new_bm, GFP_ATOMIC, PG_SAFE);
2476 if (error)
2477 goto Free;
2478
2479 duplicate_memory_bitmap(new_bm, bm);
2480 memory_bm_free(bm, PG_UNSAFE_KEEP);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002481 if (nr_highmem > 0) {
2482 error = prepare_highmem_image(bm, &nr_highmem);
2483 if (error)
2484 goto Free;
2485 }
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002486 /*
2487 * Reserve some safe pages for potential later use.
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002488 *
2489 * NOTE: This way we make sure there will be enough safe pages for the
2490 * chain_alloc() in get_buffer(). It is a bit wasteful, but
2491 * nr_copy_pages cannot be greater than 50% of the memory anyway.
Rafael J. Wysocki9c744482016-06-29 03:00:51 +02002492 *
2493 * nr_copy_pages cannot be less than allocated_unsafe_pages too.
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002494 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002495 nr_pages = nr_copy_pages - nr_highmem - allocated_unsafe_pages;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002496 nr_pages = DIV_ROUND_UP(nr_pages, PBES_PER_LINKED_PAGE);
2497 while (nr_pages > 0) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002498 lp = get_image_page(GFP_ATOMIC, PG_SAFE);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002499 if (!lp) {
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002500 error = -ENOMEM;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002501 goto Free;
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002502 }
Rafael J. Wysocki9c744482016-06-29 03:00:51 +02002503 lp->next = safe_pages_list;
2504 safe_pages_list = lp;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002505 nr_pages--;
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002506 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002507 /* Preallocate memory for the image */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002508 nr_pages = nr_copy_pages - nr_highmem - allocated_unsafe_pages;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002509 while (nr_pages > 0) {
2510 lp = (struct linked_page *)get_zeroed_page(GFP_ATOMIC);
2511 if (!lp) {
2512 error = -ENOMEM;
2513 goto Free;
2514 }
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002515 if (!swsusp_page_is_free(virt_to_page(lp))) {
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002516 /* The page is "safe", add it to the list */
2517 lp->next = safe_pages_list;
2518 safe_pages_list = lp;
2519 }
2520 /* Mark the page as allocated */
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002521 swsusp_set_page_forbidden(virt_to_page(lp));
2522 swsusp_set_page_free(virt_to_page(lp));
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002523 nr_pages--;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002524 }
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002525 return 0;
2526
Rafael J. Wysocki59a493352006-12-06 20:34:44 -08002527 Free:
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002528 swsusp_free();
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002529 return error;
2530}
2531
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002532/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002533 * get_buffer - Get the address to store the next image data page.
2534 *
2535 * Get the address that snapshot_write_next() should return to its caller to
2536 * write to.
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002537 */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002538static void *get_buffer(struct memory_bitmap *bm, struct chain_allocator *ca)
2539{
2540 struct pbe *pbe;
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002541 struct page *page;
2542 unsigned long pfn = memory_bm_next_pfn(bm);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002543
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002544 if (pfn == BM_END_OF_MAP)
2545 return ERR_PTR(-EFAULT);
2546
2547 page = pfn_to_page(pfn);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002548 if (PageHighMem(page))
2549 return get_highmem_page_buffer(page, ca);
2550
Rafael J. Wysocki7be98232007-05-06 14:50:42 -07002551 if (swsusp_page_is_forbidden(page) && swsusp_page_is_free(page))
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002552 /*
2553 * We have allocated the "original" page frame and we can
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002554 * use it directly to store the loaded page.
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002555 */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002556 return page_address(page);
2557
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002558 /*
2559 * The "original" page frame has not been allocated and we have to
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002560 * use a "safe" page frame to store the loaded page.
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002561 */
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002562 pbe = chain_alloc(ca, sizeof(struct pbe));
2563 if (!pbe) {
2564 swsusp_free();
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002565 return ERR_PTR(-ENOMEM);
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002566 }
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002567 pbe->orig_address = page_address(page);
2568 pbe->address = safe_pages_list;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002569 safe_pages_list = safe_pages_list->next;
2570 pbe->next = restore_pblist;
2571 restore_pblist = pbe;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002572 return pbe->address;
Rafael J. Wysocki968808b82006-06-23 02:04:48 -07002573}
2574
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002575/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002576 * snapshot_write_next - Get the address to store the next image page.
2577 * @handle: Snapshot handle structure to guide the writing.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002578 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002579 * On the first call, @handle should point to a zeroed snapshot_handle
2580 * structure. The structure gets populated then and a pointer to it should be
2581 * passed to this function every next time.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002582 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002583 * On success, the function returns a positive number. Then, the caller
2584 * is allowed to write up to the returned number of bytes to the memory
2585 * location computed by the data_of() macro.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002586 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002587 * The function returns 0 to indicate the "end of file" condition. Negative
2588 * numbers are returned on errors, in which cases the structure pointed to by
2589 * @handle is not updated and should not be used any more.
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002590 */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002591int snapshot_write_next(struct snapshot_handle *handle)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002592{
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002593 static struct chain_allocator ca;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002594 int error = 0;
2595
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002596 /* Check if we have already loaded the entire image */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002597 if (handle->cur > 1 && handle->cur > nr_meta_pages + nr_copy_pages)
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002598 return 0;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002599
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002600 handle->sync_read = 1;
2601
2602 if (!handle->cur) {
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002603 if (!buffer)
2604 /* This makes the buffer be freed by swsusp_free() */
2605 buffer = get_image_page(GFP_ATOMIC, PG_ANY);
2606
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002607 if (!buffer)
2608 return -ENOMEM;
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002609
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002610 handle->buffer = buffer;
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002611 } else if (handle->cur == 1) {
2612 error = load_header(buffer);
2613 if (error)
2614 return error;
2615
Rafael J. Wysocki9c744482016-06-29 03:00:51 +02002616 safe_pages_list = NULL;
2617
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002618 error = memory_bm_create(&copy_bm, GFP_ATOMIC, PG_ANY);
2619 if (error)
2620 return error;
2621
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002622 /* Allocate buffer for page keys. */
2623 error = page_key_alloc(nr_copy_pages);
2624 if (error)
2625 return error;
2626
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +02002627 hibernate_restore_protection_begin();
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002628 } else if (handle->cur <= nr_meta_pages + 1) {
2629 error = unpack_orig_pfns(buffer, &copy_bm);
2630 if (error)
2631 return error;
2632
2633 if (handle->cur == nr_meta_pages + 1) {
2634 error = prepare_image(&orig_bm, &copy_bm);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002635 if (error)
2636 return error;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002637
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002638 chain_init(&ca, GFP_ATOMIC, PG_SAFE);
2639 memory_bm_position_reset(&orig_bm);
2640 restore_pblist = NULL;
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002641 handle->buffer = get_buffer(&orig_bm, &ca);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002642 handle->sync_read = 0;
Rafael J. Wysocki69643272008-11-11 21:32:44 +01002643 if (IS_ERR(handle->buffer))
2644 return PTR_ERR(handle->buffer);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002645 }
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002646 } else {
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002647 copy_last_highmem_page();
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002648 /* Restore page key for data page (s390 only). */
2649 page_key_write(handle->buffer);
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +02002650 hibernate_restore_protect_page(handle->buffer);
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002651 handle->buffer = get_buffer(&orig_bm, &ca);
2652 if (IS_ERR(handle->buffer))
2653 return PTR_ERR(handle->buffer);
2654 if (handle->buffer != buffer)
2655 handle->sync_read = 0;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002656 }
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002657 handle->cur++;
2658 return PAGE_SIZE;
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002659}
2660
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002661/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002662 * snapshot_write_finalize - Complete the loading of a hibernation image.
2663 *
2664 * Must be called after the last call to snapshot_write_next() in case the last
2665 * page in the image happens to be a highmem page and its contents should be
2666 * stored in highmem. Additionally, it recycles bitmap memory that's not
2667 * necessary any more.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002668 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002669void snapshot_write_finalize(struct snapshot_handle *handle)
2670{
2671 copy_last_highmem_page();
Martin Schwidefsky85055dd2011-08-17 20:42:24 +02002672 /* Restore page key for data page (s390 only). */
2673 page_key_write(handle->buffer);
2674 page_key_free();
Rafael J. Wysocki4c0b6c12016-07-10 02:12:10 +02002675 hibernate_restore_protect_page(handle->buffer);
Rafael J. Wysocki307c5972016-06-29 03:05:10 +02002676 /* Do that only if we have loaded the image entirely */
Jiri Slabyd3c1b242010-05-01 23:52:02 +02002677 if (handle->cur > 1 && handle->cur > nr_meta_pages + nr_copy_pages) {
Rafael J. Wysocki307c5972016-06-29 03:05:10 +02002678 memory_bm_recycle(&orig_bm);
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002679 free_highmem_data();
2680 }
2681}
2682
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002683int snapshot_image_loaded(struct snapshot_handle *handle)
2684{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002685 return !(!nr_copy_pages || !last_highmem_page_copied() ||
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002686 handle->cur <= nr_meta_pages + nr_copy_pages);
2687}
2688
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002689#ifdef CONFIG_HIGHMEM
2690/* Assumes that @buf is ready and points to a "safe" page */
Rafael J. Wysockiefd5a852016-07-06 23:42:46 +02002691static inline void swap_two_pages_data(struct page *p1, struct page *p2,
2692 void *buf)
Rafael J. Wysocki940864d2006-09-25 23:32:55 -07002693{
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002694 void *kaddr1, *kaddr2;
2695
Cong Wang0de9a1e2011-11-25 23:14:38 +08002696 kaddr1 = kmap_atomic(p1);
2697 kaddr2 = kmap_atomic(p2);
Jan Beulich3ecb01d2010-10-26 14:22:27 -07002698 copy_page(buf, kaddr1);
2699 copy_page(kaddr1, kaddr2);
2700 copy_page(kaddr2, buf);
Cong Wang0de9a1e2011-11-25 23:14:38 +08002701 kunmap_atomic(kaddr2);
2702 kunmap_atomic(kaddr1);
Rafael J. Wysockif577eb32006-03-23 02:59:59 -08002703}
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002704
2705/**
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002706 * restore_highmem - Put highmem image pages into their original locations.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002707 *
Rafael J. Wysockief96f632016-07-06 23:43:46 +02002708 * For each highmem page that was in use before hibernation and is included in
2709 * the image, and also has been allocated by the "restore" kernel, swap its
2710 * current contents with the previous (ie. "before hibernation") ones.
2711 *
2712 * If the restore eventually fails, we can call this function once again and
2713 * restore the highmem state as seen by the restore kernel.
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002714 */
Rafael J. Wysocki83573762006-12-06 20:34:18 -08002715int restore_highmem(void)
2716{
2717 struct highmem_pbe *pbe = highmem_pblist;
2718 void *buf;
2719
2720 if (!pbe)
2721 return 0;
2722
2723 buf = get_image_page(GFP_ATOMIC, PG_SAFE);
2724 if (!buf)
2725 return -ENOMEM;
2726
2727 while (pbe) {
2728 swap_two_pages_data(pbe->copy_page, pbe->orig_page, buf);
2729 pbe = pbe->next;
2730 }
2731 free_image_page(buf, PG_UNSAFE_CLEAR);
2732 return 0;
2733}
2734#endif /* CONFIG_HIGHMEM */