blob: f841257a3014cc27a36bbeeab923008ca645a1e7 [file] [log] [blame]
Greg Kroah-Hartmanb2441312017-11-01 15:07:57 +01001// SPDX-License-Identifier: GPL-2.0
Linus Torvalds1da177e2005-04-16 15:20:36 -07002/*
3 * linux/mm/swap_state.c
4 *
5 * Copyright (C) 1991, 1992, 1993, 1994 Linus Torvalds
6 * Swap reorganised 29.12.95, Stephen Tweedie
7 *
8 * Rewritten to use page cache, (C) 1998 Stephen Tweedie
9 */
Linus Torvalds1da177e2005-04-16 15:20:36 -070010#include <linux/mm.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090011#include <linux/gfp.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070012#include <linux/kernel_stat.h>
13#include <linux/swap.h>
Hugh Dickins46017e92008-02-04 22:28:41 -080014#include <linux/swapops.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070015#include <linux/init.h>
16#include <linux/pagemap.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070017#include <linux/backing-dev.h>
Christian Ehrhardt3fb5c292012-07-31 16:41:44 -070018#include <linux/blkdev.h>
Hugh Dickinsc484d412006-01-06 00:10:55 -080019#include <linux/pagevec.h>
Christoph Lameterb20a3502006-03-22 00:09:12 -080020#include <linux/migrate.h>
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080021#include <linux/vmalloc.h>
Tim Chen67afa382017-02-22 15:45:39 -080022#include <linux/swap_slots.h>
Huang Ying38d8b4e2017-07-06 15:37:18 -070023#include <linux/huge_mm.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070024
25#include <asm/pgtable.h>
26
27/*
28 * swapper_space is a fiction, retained to simplify the path through
Jens Axboe7eaceac2011-03-10 08:52:07 +010029 * vmscan's shrink_page_list.
Linus Torvalds1da177e2005-04-16 15:20:36 -070030 */
Christoph Hellwigf5e54d62006-06-28 04:26:44 -070031static const struct address_space_operations swap_aops = {
Linus Torvalds1da177e2005-04-16 15:20:36 -070032 .writepage = swap_writepage,
Mel Gorman62c230b2012-07-31 16:44:55 -070033 .set_page_dirty = swap_set_page_dirty,
Andrew Morton1c939232014-10-09 15:27:59 -070034#ifdef CONFIG_MIGRATION
Christoph Lametere965f962006-02-01 03:05:41 -080035 .migratepage = migrate_page,
Andrew Morton1c939232014-10-09 15:27:59 -070036#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -070037};
38
Changbin Du783cb682017-11-15 17:36:06 -080039struct address_space *swapper_spaces[MAX_SWAPFILES] __read_mostly;
40static unsigned int nr_swapper_spaces[MAX_SWAPFILES] __read_mostly;
Colin Ian Kingf5c754d2018-04-05 16:25:05 -070041static bool enable_vma_readahead __read_mostly = true;
Huang Yingec560172017-09-06 16:24:36 -070042
Huang Yingec560172017-09-06 16:24:36 -070043#define SWAP_RA_WIN_SHIFT (PAGE_SHIFT / 2)
44#define SWAP_RA_HITS_MASK ((1UL << SWAP_RA_WIN_SHIFT) - 1)
45#define SWAP_RA_HITS_MAX SWAP_RA_HITS_MASK
46#define SWAP_RA_WIN_MASK (~PAGE_MASK & ~SWAP_RA_HITS_MASK)
47
48#define SWAP_RA_HITS(v) ((v) & SWAP_RA_HITS_MASK)
49#define SWAP_RA_WIN(v) (((v) & SWAP_RA_WIN_MASK) >> SWAP_RA_WIN_SHIFT)
50#define SWAP_RA_ADDR(v) ((v) & PAGE_MASK)
51
52#define SWAP_RA_VAL(addr, win, hits) \
53 (((addr) & PAGE_MASK) | \
54 (((win) << SWAP_RA_WIN_SHIFT) & SWAP_RA_WIN_MASK) | \
55 ((hits) & SWAP_RA_HITS_MASK))
56
57/* Initial readahead hits is 4 to start up with a small window */
58#define GET_SWAP_RA_VAL(vma) \
59 (atomic_long_read(&(vma)->swap_readahead_info) ? : 4)
Linus Torvalds1da177e2005-04-16 15:20:36 -070060
61#define INC_CACHE_INFO(x) do { swap_cache_info.x++; } while (0)
Huang Ying38d8b4e2017-07-06 15:37:18 -070062#define ADD_CACHE_INFO(x, nr) do { swap_cache_info.x += (nr); } while (0)
Linus Torvalds1da177e2005-04-16 15:20:36 -070063
64static struct {
65 unsigned long add_total;
66 unsigned long del_total;
67 unsigned long find_success;
68 unsigned long find_total;
Linus Torvalds1da177e2005-04-16 15:20:36 -070069} swap_cache_info;
70
Shaohua Li33806f02013-02-22 16:34:37 -080071unsigned long total_swapcache_pages(void)
72{
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080073 unsigned int i, j, nr;
Shaohua Li33806f02013-02-22 16:34:37 -080074 unsigned long ret = 0;
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080075 struct address_space *spaces;
Huang Ying054f1d12019-07-11 20:55:37 -070076 struct swap_info_struct *si;
Shaohua Li33806f02013-02-22 16:34:37 -080077
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080078 for (i = 0; i < MAX_SWAPFILES; i++) {
Huang Ying054f1d12019-07-11 20:55:37 -070079 swp_entry_t entry = swp_entry(i, 1);
80
81 /* Avoid get_swap_device() to warn for bad swap entry */
82 if (!swp_swap_info(entry))
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080083 continue;
Huang Ying054f1d12019-07-11 20:55:37 -070084 /* Prevent swapoff to free swapper_spaces */
85 si = get_swap_device(entry);
86 if (!si)
87 continue;
88 nr = nr_swapper_spaces[i];
89 spaces = swapper_spaces[i];
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080090 for (j = 0; j < nr; j++)
91 ret += spaces[j].nrpages;
Huang Ying054f1d12019-07-11 20:55:37 -070092 put_swap_device(si);
Huang, Ying4b3ef9d2017-02-22 15:45:26 -080093 }
Shaohua Li33806f02013-02-22 16:34:37 -080094 return ret;
95}
96
Shaohua Li579f8292014-02-06 12:04:21 -080097static atomic_t swapin_readahead_hits = ATOMIC_INIT(4);
98
Linus Torvalds1da177e2005-04-16 15:20:36 -070099void show_swap_cache_info(void)
100{
Shaohua Li33806f02013-02-22 16:34:37 -0800101 printk("%lu pages in swap cache\n", total_swapcache_pages());
Johannes Weiner2c97b7f2008-07-25 19:46:01 -0700102 printk("Swap cache stats: add %lu, delete %lu, find %lu/%lu\n",
Linus Torvalds1da177e2005-04-16 15:20:36 -0700103 swap_cache_info.add_total, swap_cache_info.del_total,
Hugh Dickinsbb63be02008-02-04 22:28:49 -0800104 swap_cache_info.find_success, swap_cache_info.find_total);
Shaohua Liec8acf22013-02-22 16:34:38 -0800105 printk("Free swap = %ldkB\n",
106 get_nr_swap_pages() << (PAGE_SHIFT - 10));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700107 printk("Total swap = %lukB\n", total_swap_pages << (PAGE_SHIFT - 10));
108}
109
110/*
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500111 * add_to_swap_cache resembles add_to_page_cache_locked on swapper_space,
Linus Torvalds1da177e2005-04-16 15:20:36 -0700112 * but sets SwapCache flag and private instead of mapping and index.
113 */
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500114int add_to_swap_cache(struct page *page, swp_entry_t entry, gfp_t gfp)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700115{
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500116 struct address_space *address_space = swap_address_space(entry);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700117 pgoff_t idx = swp_offset(entry);
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500118 XA_STATE_ORDER(xas, &address_space->i_pages, idx, compound_order(page));
Wei Yangcb774452020-04-01 21:06:26 -0700119 unsigned long i, nr = hpage_nr_pages(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700120
Sasha Levin309381fea2014-01-23 15:52:54 -0800121 VM_BUG_ON_PAGE(!PageLocked(page), page);
122 VM_BUG_ON_PAGE(PageSwapCache(page), page);
123 VM_BUG_ON_PAGE(!PageSwapBacked(page), page);
Hugh Dickins51726b12009-01-06 14:39:25 -0800124
Huang Ying38d8b4e2017-07-06 15:37:18 -0700125 page_ref_add(page, nr);
Daisuke Nishimura31a56392009-09-21 17:02:50 -0700126 SetPageSwapCache(page);
Daisuke Nishimura31a56392009-09-21 17:02:50 -0700127
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500128 do {
129 xas_lock_irq(&xas);
130 xas_create_range(&xas);
131 if (xas_error(&xas))
132 goto unlock;
133 for (i = 0; i < nr; i++) {
134 VM_BUG_ON_PAGE(xas.xa_index != idx + i, page);
135 set_page_private(page + i, entry.val + i);
Matthew Wilcox (Oracle)41011962019-09-23 15:34:52 -0700136 xas_store(&xas, page);
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500137 xas_next(&xas);
138 }
Huang Ying38d8b4e2017-07-06 15:37:18 -0700139 address_space->nrpages += nr;
140 __mod_node_page_state(page_pgdat(page), NR_FILE_PAGES, nr);
141 ADD_CACHE_INFO(add_total, nr);
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500142unlock:
143 xas_unlock_irq(&xas);
144 } while (xas_nomem(&xas, gfp));
Daisuke Nishimura31a56392009-09-21 17:02:50 -0700145
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500146 if (!xas_error(&xas))
147 return 0;
Daisuke Nishimura31a56392009-09-21 17:02:50 -0700148
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500149 ClearPageSwapCache(page);
150 page_ref_sub(page, nr);
151 return xas_error(&xas);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700152}
153
Linus Torvalds1da177e2005-04-16 15:20:36 -0700154/*
155 * This must be called only on pages that have
156 * been verified to be in the swap cache.
157 */
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500158void __delete_from_swap_cache(struct page *page, swp_entry_t entry)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700159{
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500160 struct address_space *address_space = swap_address_space(entry);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700161 int i, nr = hpage_nr_pages(page);
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500162 pgoff_t idx = swp_offset(entry);
163 XA_STATE(xas, &address_space->i_pages, idx);
Shaohua Li33806f02013-02-22 16:34:37 -0800164
Sasha Levin309381fea2014-01-23 15:52:54 -0800165 VM_BUG_ON_PAGE(!PageLocked(page), page);
166 VM_BUG_ON_PAGE(!PageSwapCache(page), page);
167 VM_BUG_ON_PAGE(PageWriteback(page), page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700168
Huang Ying38d8b4e2017-07-06 15:37:18 -0700169 for (i = 0; i < nr; i++) {
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500170 void *entry = xas_store(&xas, NULL);
Matthew Wilcox (Oracle)41011962019-09-23 15:34:52 -0700171 VM_BUG_ON_PAGE(entry != page, entry);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700172 set_page_private(page + i, 0);
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500173 xas_next(&xas);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700174 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700175 ClearPageSwapCache(page);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700176 address_space->nrpages -= nr;
177 __mod_node_page_state(page_pgdat(page), NR_FILE_PAGES, -nr);
178 ADD_CACHE_INFO(del_total, nr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700179}
180
181/**
182 * add_to_swap - allocate swap space for a page
183 * @page: page we want to move to swap
184 *
185 * Allocate swap space for the page and add the page to the
186 * swap cache. Caller needs to hold the page lock.
187 */
Minchan Kim0f074652017-07-06 15:37:24 -0700188int add_to_swap(struct page *page)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700189{
190 swp_entry_t entry;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700191 int err;
192
Sasha Levin309381fea2014-01-23 15:52:54 -0800193 VM_BUG_ON_PAGE(!PageLocked(page), page);
194 VM_BUG_ON_PAGE(!PageUptodate(page), page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700195
Huang Ying38d8b4e2017-07-06 15:37:18 -0700196 entry = get_swap_page(page);
Daisuke Nishimura2ca45322009-09-21 17:02:52 -0700197 if (!entry.val)
Minchan Kim0f074652017-07-06 15:37:24 -0700198 return 0;
199
Daisuke Nishimura2ca45322009-09-21 17:02:52 -0700200 /*
Matthew Wilcox8d93b412017-11-27 15:46:54 -0500201 * XArray node allocations from PF_MEMALLOC contexts could
Daisuke Nishimura2ca45322009-09-21 17:02:52 -0700202 * completely exhaust the page allocator. __GFP_NOMEMALLOC
203 * stops emergency reserves from being allocated.
204 *
205 * TODO: this could cause a theoretical memory reclaim
206 * deadlock in the swap out path.
207 */
208 /*
Minchan Kim854e9ed2016-01-15 16:54:53 -0800209 * Add it to the swap cache.
Daisuke Nishimura2ca45322009-09-21 17:02:52 -0700210 */
211 err = add_to_swap_cache(page, entry,
212 __GFP_HIGH|__GFP_NOMEMALLOC|__GFP_NOWARN);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700213 if (err)
Daisuke Nishimura2ca45322009-09-21 17:02:52 -0700214 /*
215 * add_to_swap_cache() doesn't return -EEXIST, so we can safely
216 * clear SWAP_HAS_CACHE flag.
217 */
Minchan Kim0f074652017-07-06 15:37:24 -0700218 goto fail;
Shaohua Li96254562017-10-03 16:15:32 -0700219 /*
220 * Normally the page will be dirtied in unmap because its pte should be
221 * dirty. A special case is MADV_FREE page. The page'e pte could have
222 * dirty bit cleared but the page's SwapBacked bit is still set because
223 * clearing the dirty bit and SwapBacked bit has no lock protected. For
224 * such page, unmap will not set dirty bit for it, so page reclaim will
225 * not write the page out. This can cause data corruption when the page
226 * is swap in later. Always setting the dirty bit for the page solves
227 * the problem.
228 */
229 set_page_dirty(page);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700230
231 return 1;
232
Huang Ying38d8b4e2017-07-06 15:37:18 -0700233fail:
Minchan Kim0f074652017-07-06 15:37:24 -0700234 put_swap_page(page, entry);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700235 return 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700236}
237
238/*
239 * This must be called only on pages that have
240 * been verified to be in the swap cache and locked.
241 * It will never put the page into the free list,
242 * the caller has a reference on the page.
243 */
244void delete_from_swap_cache(struct page *page)
245{
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500246 swp_entry_t entry = { .val = page_private(page) };
247 struct address_space *address_space = swap_address_space(entry);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700248
Matthew Wilcoxb93b0162018-04-10 16:36:56 -0700249 xa_lock_irq(&address_space->i_pages);
Matthew Wilcox4e17ec22017-11-29 08:32:39 -0500250 __delete_from_swap_cache(page, entry);
Matthew Wilcoxb93b0162018-04-10 16:36:56 -0700251 xa_unlock_irq(&address_space->i_pages);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700252
Minchan Kim75f6d6d2017-07-06 15:37:21 -0700253 put_swap_page(page, entry);
Huang Ying38d8b4e2017-07-06 15:37:18 -0700254 page_ref_sub(page, hpage_nr_pages(page));
Linus Torvalds1da177e2005-04-16 15:20:36 -0700255}
256
Linus Torvalds1da177e2005-04-16 15:20:36 -0700257/*
258 * If we are the only user, then try to free up the swap cache.
259 *
260 * Its ok to check for PageSwapCache without the page lock
Hugh Dickinsa2c43ee2009-01-06 14:39:36 -0800261 * here because we are going to recheck again inside
262 * try_to_free_swap() _with_ the lock.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700263 * - Marcelo
264 */
265static inline void free_swap_cache(struct page *page)
266{
Hugh Dickinsa2c43ee2009-01-06 14:39:36 -0800267 if (PageSwapCache(page) && !page_mapped(page) && trylock_page(page)) {
268 try_to_free_swap(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700269 unlock_page(page);
270 }
271}
272
273/*
274 * Perform a free_page(), also freeing any swap cache associated with
Hugh Dickinsb8072f02005-10-29 18:16:41 -0700275 * this page if it is the last user of the page.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700276 */
277void free_page_and_swap_cache(struct page *page)
278{
279 free_swap_cache(page);
Aaron Lu6fcb52a2016-10-07 17:00:08 -0700280 if (!is_huge_zero_page(page))
Gerald Schaefer770a5372016-06-08 15:33:50 -0700281 put_page(page);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700282}
283
284/*
285 * Passed an array of pages, drop them all from swapcache and then release
286 * them. They are removed from the LRU and freed if this is their last use.
287 */
288void free_pages_and_swap_cache(struct page **pages, int nr)
289{
Linus Torvalds1da177e2005-04-16 15:20:36 -0700290 struct page **pagep = pages;
Michal Hockoaabfb572014-10-09 15:28:52 -0700291 int i;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700292
293 lru_add_drain();
Michal Hockoaabfb572014-10-09 15:28:52 -0700294 for (i = 0; i < nr; i++)
295 free_swap_cache(pagep[i]);
Mel Gormanc6f92f92017-11-15 17:37:55 -0800296 release_pages(pagep, nr);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700297}
298
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700299static inline bool swap_use_vma_readahead(void)
300{
301 return READ_ONCE(enable_vma_readahead) && !atomic_read(&nr_rotate_swap);
302}
303
Linus Torvalds1da177e2005-04-16 15:20:36 -0700304/*
305 * Lookup a swap entry in the swap cache. A found page will be returned
306 * unlocked and with its refcount incremented - we rely on the kernel
307 * lock getting page table operations atomic even if we drop the page
308 * lock before returning.
309 */
Huang Yingec560172017-09-06 16:24:36 -0700310struct page *lookup_swap_cache(swp_entry_t entry, struct vm_area_struct *vma,
311 unsigned long addr)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700312{
313 struct page *page;
Huang Yingeb085572019-07-11 20:55:33 -0700314 struct swap_info_struct *si;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700315
Huang Yingeb085572019-07-11 20:55:33 -0700316 si = get_swap_device(entry);
317 if (!si)
318 return NULL;
Huang Yingf6ab1f72016-10-07 17:00:21 -0700319 page = find_get_page(swap_address_space(entry), swp_offset(entry));
Huang Yingeb085572019-07-11 20:55:33 -0700320 put_swap_device(si);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700321
Huang Yingec560172017-09-06 16:24:36 -0700322 INC_CACHE_INFO(find_total);
323 if (page) {
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700324 bool vma_ra = swap_use_vma_readahead();
325 bool readahead;
326
Linus Torvalds1da177e2005-04-16 15:20:36 -0700327 INC_CACHE_INFO(find_success);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700328 /*
329 * At the moment, we don't support PG_readahead for anon THP
330 * so let's bail out rather than confusing the readahead stat.
331 */
Huang Yingec560172017-09-06 16:24:36 -0700332 if (unlikely(PageTransCompound(page)))
333 return page;
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700334
Huang Yingec560172017-09-06 16:24:36 -0700335 readahead = TestClearPageReadahead(page);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700336 if (vma && vma_ra) {
337 unsigned long ra_val;
338 int win, hits;
339
340 ra_val = GET_SWAP_RA_VAL(vma);
341 win = SWAP_RA_WIN(ra_val);
342 hits = SWAP_RA_HITS(ra_val);
Huang Yingec560172017-09-06 16:24:36 -0700343 if (readahead)
344 hits = min_t(int, hits + 1, SWAP_RA_HITS_MAX);
345 atomic_long_set(&vma->swap_readahead_info,
346 SWAP_RA_VAL(addr, win, hits));
347 }
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700348
Huang Yingec560172017-09-06 16:24:36 -0700349 if (readahead) {
Huang Yingcbc65df2017-09-06 16:24:29 -0700350 count_vm_event(SWAP_RA_HIT);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700351 if (!vma || !vma_ra)
Huang Yingec560172017-09-06 16:24:36 -0700352 atomic_inc(&swapin_readahead_hits);
Huang Yingcbc65df2017-09-06 16:24:29 -0700353 }
Shaohua Li579f8292014-02-06 12:04:21 -0800354 }
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700355
Linus Torvalds1da177e2005-04-16 15:20:36 -0700356 return page;
357}
358
Dmitry Safonov5b999aa2015-09-08 15:05:00 -0700359struct page *__read_swap_cache_async(swp_entry_t entry, gfp_t gfp_mask,
360 struct vm_area_struct *vma, unsigned long addr,
361 bool *new_page_allocated)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700362{
Huang Yingeb085572019-07-11 20:55:33 -0700363 struct swap_info_struct *si;
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700364 struct page *page;
365
Dmitry Safonov5b999aa2015-09-08 15:05:00 -0700366 *new_page_allocated = false;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700367
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700368 for (;;) {
369 int err;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700370 /*
371 * First check the swap cache. Since this is normally
372 * called after lookup_swap_cache() failed, re-calling
373 * that would confuse statistics.
374 */
Huang Yingeb085572019-07-11 20:55:33 -0700375 si = get_swap_device(entry);
376 if (!si)
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700377 return NULL;
378 page = find_get_page(swap_address_space(entry),
379 swp_offset(entry));
Huang Yingeb085572019-07-11 20:55:33 -0700380 put_swap_device(si);
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700381 if (page)
382 return page;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700383
Huang Yingba81f832017-02-22 15:45:46 -0800384 /*
385 * Just skip read ahead for unused swap slot.
386 * During swap_off when swap_slot_cache is disabled,
387 * we have to handle the race between putting
388 * swap entry in swap cache and marking swap slot
389 * as SWAP_HAS_CACHE. That's done in later part of code or
390 * else swap_off will be aborted if we return NULL.
391 */
392 if (!__swp_swapcount(entry) && swap_slot_cache_enabled)
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700393 return NULL;
Tim Chene8c26ab2017-02-22 15:45:29 -0800394
Linus Torvalds1da177e2005-04-16 15:20:36 -0700395 /*
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700396 * Get a new page to read into from swap. Allocate it now,
397 * before marking swap_map SWAP_HAS_CACHE, when -EEXIST will
398 * cause any racers to loop around until we add it to cache.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700399 */
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700400 page = alloc_page_vma(gfp_mask, vma, addr);
401 if (!page)
402 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700403
404 /*
Hugh Dickinsf0009442008-02-04 22:28:49 -0800405 * Swap entry may have been freed since our caller observed it.
406 */
KAMEZAWA Hiroyuki355cfa72009-06-16 15:32:53 -0700407 err = swapcache_prepare(entry);
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700408 if (!err)
Hugh Dickinsf0009442008-02-04 22:28:49 -0800409 break;
410
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700411 put_page(page);
412 if (err != -EEXIST)
413 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700414
Johannes Weiner4c6355b2020-06-03 16:02:17 -0700415 /*
416 * We might race against __delete_from_swap_cache(), and
417 * stumble across a swap_map entry whose SWAP_HAS_CACHE
418 * has not yet been cleared. Or race against another
419 * __read_swap_cache_async(), which has set SWAP_HAS_CACHE
420 * in swap_map, but not yet added its page to swap cache.
421 */
422 cond_resched();
423 }
424
425 /*
426 * The swap entry is ours to swap in. Prepare the new page.
427 */
428
429 __SetPageLocked(page);
430 __SetPageSwapBacked(page);
431
432 /* May fail (-ENOMEM) if XArray node allocation failed. */
433 if (add_to_swap_cache(page, entry, gfp_mask & GFP_KERNEL)) {
434 put_swap_page(page, entry);
435 goto fail_unlock;
436 }
437
438 if (mem_cgroup_charge(page, NULL, gfp_mask, false)) {
439 delete_from_swap_cache(page);
440 goto fail_unlock;
441 }
442
443 /* Caller will initiate read into locked page */
444 SetPageWorkingset(page);
445 lru_cache_add_anon(page);
446 *new_page_allocated = true;
447 return page;
448
449fail_unlock:
450 unlock_page(page);
451 put_page(page);
452 return NULL;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700453}
Hugh Dickins46017e92008-02-04 22:28:41 -0800454
Dmitry Safonov5b999aa2015-09-08 15:05:00 -0700455/*
456 * Locate a page of swap in physical memory, reserving swap cache space
457 * and reading the disk if it is not already cached.
458 * A failure return means that either the page allocation failed or that
459 * the swap entry is no longer in use.
460 */
461struct page *read_swap_cache_async(swp_entry_t entry, gfp_t gfp_mask,
Shaohua Li23955622017-07-10 15:47:11 -0700462 struct vm_area_struct *vma, unsigned long addr, bool do_poll)
Dmitry Safonov5b999aa2015-09-08 15:05:00 -0700463{
464 bool page_was_allocated;
465 struct page *retpage = __read_swap_cache_async(entry, gfp_mask,
466 vma, addr, &page_was_allocated);
467
468 if (page_was_allocated)
Shaohua Li23955622017-07-10 15:47:11 -0700469 swap_readpage(retpage, do_poll);
Dmitry Safonov5b999aa2015-09-08 15:05:00 -0700470
471 return retpage;
472}
473
Huang Yingec560172017-09-06 16:24:36 -0700474static unsigned int __swapin_nr_pages(unsigned long prev_offset,
475 unsigned long offset,
476 int hits,
477 int max_pages,
478 int prev_win)
Shaohua Li579f8292014-02-06 12:04:21 -0800479{
Huang Yingec560172017-09-06 16:24:36 -0700480 unsigned int pages, last_ra;
Shaohua Li579f8292014-02-06 12:04:21 -0800481
482 /*
483 * This heuristic has been found to work well on both sequential and
484 * random loads, swapping to hard disk or to SSD: please don't ask
485 * what the "+ 2" means, it just happens to work well, that's all.
486 */
Huang Yingec560172017-09-06 16:24:36 -0700487 pages = hits + 2;
Shaohua Li579f8292014-02-06 12:04:21 -0800488 if (pages == 2) {
489 /*
490 * We can have no readahead hits to judge by: but must not get
491 * stuck here forever, so check for an adjacent offset instead
492 * (and don't even bother to check whether swap type is same).
493 */
494 if (offset != prev_offset + 1 && offset != prev_offset - 1)
495 pages = 1;
Shaohua Li579f8292014-02-06 12:04:21 -0800496 } else {
497 unsigned int roundup = 4;
498 while (roundup < pages)
499 roundup <<= 1;
500 pages = roundup;
501 }
502
503 if (pages > max_pages)
504 pages = max_pages;
505
506 /* Don't shrink readahead too fast */
Huang Yingec560172017-09-06 16:24:36 -0700507 last_ra = prev_win / 2;
Shaohua Li579f8292014-02-06 12:04:21 -0800508 if (pages < last_ra)
509 pages = last_ra;
Huang Yingec560172017-09-06 16:24:36 -0700510
511 return pages;
512}
513
514static unsigned long swapin_nr_pages(unsigned long offset)
515{
516 static unsigned long prev_offset;
517 unsigned int hits, pages, max_pages;
518 static atomic_t last_readahead_pages;
519
520 max_pages = 1 << READ_ONCE(page_cluster);
521 if (max_pages <= 1)
522 return 1;
523
524 hits = atomic_xchg(&swapin_readahead_hits, 0);
Qian Caid6c1f092020-06-01 21:48:40 -0700525 pages = __swapin_nr_pages(READ_ONCE(prev_offset), offset, hits,
526 max_pages,
Huang Yingec560172017-09-06 16:24:36 -0700527 atomic_read(&last_readahead_pages));
528 if (!hits)
Qian Caid6c1f092020-06-01 21:48:40 -0700529 WRITE_ONCE(prev_offset, offset);
Shaohua Li579f8292014-02-06 12:04:21 -0800530 atomic_set(&last_readahead_pages, pages);
531
532 return pages;
533}
534
Hugh Dickins46017e92008-02-04 22:28:41 -0800535/**
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700536 * swap_cluster_readahead - swap in pages in hope we need them soon
Hugh Dickins46017e92008-02-04 22:28:41 -0800537 * @entry: swap entry of this memory
Randy Dunlap76824862008-03-19 17:00:40 -0700538 * @gfp_mask: memory allocation flags
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700539 * @vmf: fault information
Hugh Dickins46017e92008-02-04 22:28:41 -0800540 *
541 * Returns the struct page for entry and addr, after queueing swapin.
542 *
543 * Primitive swap readahead code. We simply read an aligned block of
544 * (1 << page_cluster) entries in the swap area. This method is chosen
545 * because it doesn't cost us any seek time. We also make sure to queue
546 * the 'original' request together with the readahead ones...
547 *
548 * This has been extended to use the NUMA policies from the mm triggering
549 * the readahead.
550 *
Yang Shie9f59872019-03-05 15:44:15 -0800551 * Caller must hold read mmap_sem if vmf->vma is not NULL.
Hugh Dickins46017e92008-02-04 22:28:41 -0800552 */
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700553struct page *swap_cluster_readahead(swp_entry_t entry, gfp_t gfp_mask,
554 struct vm_fault *vmf)
Hugh Dickins46017e92008-02-04 22:28:41 -0800555{
Hugh Dickins46017e92008-02-04 22:28:41 -0800556 struct page *page;
Shaohua Li579f8292014-02-06 12:04:21 -0800557 unsigned long entry_offset = swp_offset(entry);
558 unsigned long offset = entry_offset;
Rik van Riel67f96aa2012-03-21 16:33:50 -0700559 unsigned long start_offset, end_offset;
Shaohua Li579f8292014-02-06 12:04:21 -0800560 unsigned long mask;
Huang Yinge9a6eff2017-11-15 17:33:15 -0800561 struct swap_info_struct *si = swp_swap_info(entry);
Christian Ehrhardt3fb5c292012-07-31 16:41:44 -0700562 struct blk_plug plug;
Huang Yingc4fa6302017-09-06 16:24:33 -0700563 bool do_poll = true, page_allocated;
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700564 struct vm_area_struct *vma = vmf->vma;
565 unsigned long addr = vmf->address;
Hugh Dickins46017e92008-02-04 22:28:41 -0800566
Shaohua Li579f8292014-02-06 12:04:21 -0800567 mask = swapin_nr_pages(offset) - 1;
568 if (!mask)
569 goto skip;
570
Yang Shi8fd2e0b2019-03-05 15:44:11 -0800571 /* Test swap type to make sure the dereference is safe */
572 if (likely(si->flags & (SWP_BLKDEV | SWP_FS))) {
573 struct inode *inode = si->swap_file->f_mapping->host;
574 if (inode_read_congested(inode))
575 goto skip;
576 }
577
Shaohua Li23955622017-07-10 15:47:11 -0700578 do_poll = false;
Rik van Riel67f96aa2012-03-21 16:33:50 -0700579 /* Read a page_cluster sized and aligned cluster around offset. */
580 start_offset = offset & ~mask;
581 end_offset = offset | mask;
582 if (!start_offset) /* First page is swap header. */
583 start_offset++;
Huang Yinge9a6eff2017-11-15 17:33:15 -0800584 if (end_offset >= si->max)
585 end_offset = si->max - 1;
Rik van Riel67f96aa2012-03-21 16:33:50 -0700586
Christian Ehrhardt3fb5c292012-07-31 16:41:44 -0700587 blk_start_plug(&plug);
Rik van Riel67f96aa2012-03-21 16:33:50 -0700588 for (offset = start_offset; offset <= end_offset ; offset++) {
Hugh Dickins46017e92008-02-04 22:28:41 -0800589 /* Ok, do the async read-ahead now */
Huang Yingc4fa6302017-09-06 16:24:33 -0700590 page = __read_swap_cache_async(
591 swp_entry(swp_type(entry), offset),
592 gfp_mask, vma, addr, &page_allocated);
Hugh Dickins46017e92008-02-04 22:28:41 -0800593 if (!page)
Rik van Riel67f96aa2012-03-21 16:33:50 -0700594 continue;
Huang Yingc4fa6302017-09-06 16:24:33 -0700595 if (page_allocated) {
596 swap_readpage(page, false);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700597 if (offset != entry_offset) {
Huang Yingc4fa6302017-09-06 16:24:33 -0700598 SetPageReadahead(page);
599 count_vm_event(SWAP_RA);
600 }
Huang Yingcbc65df2017-09-06 16:24:29 -0700601 }
Kirill A. Shutemov09cbfea2016-04-01 15:29:47 +0300602 put_page(page);
Hugh Dickins46017e92008-02-04 22:28:41 -0800603 }
Christian Ehrhardt3fb5c292012-07-31 16:41:44 -0700604 blk_finish_plug(&plug);
605
Hugh Dickins46017e92008-02-04 22:28:41 -0800606 lru_add_drain(); /* Push any new pages onto the LRU now */
Shaohua Li579f8292014-02-06 12:04:21 -0800607skip:
Shaohua Li23955622017-07-10 15:47:11 -0700608 return read_swap_cache_async(entry, gfp_mask, vma, addr, do_poll);
Hugh Dickins46017e92008-02-04 22:28:41 -0800609}
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800610
611int init_swap_address_space(unsigned int type, unsigned long nr_pages)
612{
613 struct address_space *spaces, *space;
614 unsigned int i, nr;
615
616 nr = DIV_ROUND_UP(nr_pages, SWAP_ADDRESS_SPACE_PAGES);
Kees Cook778e1cd2018-06-12 14:04:48 -0700617 spaces = kvcalloc(nr, sizeof(struct address_space), GFP_KERNEL);
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800618 if (!spaces)
619 return -ENOMEM;
620 for (i = 0; i < nr; i++) {
621 space = spaces + i;
Matthew Wilcoxa2833482017-12-05 19:04:20 -0500622 xa_init_flags(&space->i_pages, XA_FLAGS_LOCK_IRQ);
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800623 atomic_set(&space->i_mmap_writable, 0);
624 space->a_ops = &swap_aops;
625 /* swap cache doesn't use writeback related tags */
626 mapping_set_no_writeback_tags(space);
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800627 }
628 nr_swapper_spaces[type] = nr;
Huang Ying054f1d12019-07-11 20:55:37 -0700629 swapper_spaces[type] = spaces;
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800630
631 return 0;
632}
633
634void exit_swap_address_space(unsigned int type)
635{
Huang Ying054f1d12019-07-11 20:55:37 -0700636 kvfree(swapper_spaces[type]);
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800637 nr_swapper_spaces[type] = 0;
Huang Ying054f1d12019-07-11 20:55:37 -0700638 swapper_spaces[type] = NULL;
Huang, Ying4b3ef9d2017-02-22 15:45:26 -0800639}
Huang Yingec560172017-09-06 16:24:36 -0700640
641static inline void swap_ra_clamp_pfn(struct vm_area_struct *vma,
642 unsigned long faddr,
643 unsigned long lpfn,
644 unsigned long rpfn,
645 unsigned long *start,
646 unsigned long *end)
647{
648 *start = max3(lpfn, PFN_DOWN(vma->vm_start),
649 PFN_DOWN(faddr & PMD_MASK));
650 *end = min3(rpfn, PFN_DOWN(vma->vm_end),
651 PFN_DOWN((faddr & PMD_MASK) + PMD_SIZE));
652}
653
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700654static void swap_ra_info(struct vm_fault *vmf,
655 struct vma_swap_readahead *ra_info)
Huang Yingec560172017-09-06 16:24:36 -0700656{
657 struct vm_area_struct *vma = vmf->vma;
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700658 unsigned long ra_val;
Huang Yingec560172017-09-06 16:24:36 -0700659 swp_entry_t entry;
660 unsigned long faddr, pfn, fpfn;
661 unsigned long start, end;
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700662 pte_t *pte, *orig_pte;
Huang Yingec560172017-09-06 16:24:36 -0700663 unsigned int max_win, hits, prev_win, win, left;
664#ifndef CONFIG_64BIT
665 pte_t *tpte;
666#endif
667
Huang Ying61b63972017-10-13 15:58:29 -0700668 max_win = 1 << min_t(unsigned int, READ_ONCE(page_cluster),
669 SWAP_RA_ORDER_CEILING);
670 if (max_win == 1) {
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700671 ra_info->win = 1;
672 return;
Huang Ying61b63972017-10-13 15:58:29 -0700673 }
674
Huang Yingec560172017-09-06 16:24:36 -0700675 faddr = vmf->address;
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700676 orig_pte = pte = pte_offset_map(vmf->pmd, faddr);
677 entry = pte_to_swp_entry(*pte);
678 if ((unlikely(non_swap_entry(entry)))) {
679 pte_unmap(orig_pte);
680 return;
681 }
Huang Yingec560172017-09-06 16:24:36 -0700682
Huang Yingec560172017-09-06 16:24:36 -0700683 fpfn = PFN_DOWN(faddr);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700684 ra_val = GET_SWAP_RA_VAL(vma);
685 pfn = PFN_DOWN(SWAP_RA_ADDR(ra_val));
686 prev_win = SWAP_RA_WIN(ra_val);
687 hits = SWAP_RA_HITS(ra_val);
688 ra_info->win = win = __swapin_nr_pages(pfn, fpfn, hits,
Huang Yingec560172017-09-06 16:24:36 -0700689 max_win, prev_win);
690 atomic_long_set(&vma->swap_readahead_info,
691 SWAP_RA_VAL(faddr, win, 0));
692
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700693 if (win == 1) {
694 pte_unmap(orig_pte);
695 return;
696 }
Huang Yingec560172017-09-06 16:24:36 -0700697
698 /* Copy the PTEs because the page table may be unmapped */
699 if (fpfn == pfn + 1)
700 swap_ra_clamp_pfn(vma, faddr, fpfn, fpfn + win, &start, &end);
701 else if (pfn == fpfn + 1)
702 swap_ra_clamp_pfn(vma, faddr, fpfn - win + 1, fpfn + 1,
703 &start, &end);
704 else {
705 left = (win - 1) / 2;
706 swap_ra_clamp_pfn(vma, faddr, fpfn - left, fpfn + win - left,
707 &start, &end);
708 }
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700709 ra_info->nr_pte = end - start;
710 ra_info->offset = fpfn - start;
711 pte -= ra_info->offset;
Huang Yingec560172017-09-06 16:24:36 -0700712#ifdef CONFIG_64BIT
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700713 ra_info->ptes = pte;
Huang Yingec560172017-09-06 16:24:36 -0700714#else
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700715 tpte = ra_info->ptes;
Huang Yingec560172017-09-06 16:24:36 -0700716 for (pfn = start; pfn != end; pfn++)
717 *tpte++ = *pte++;
718#endif
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700719 pte_unmap(orig_pte);
Huang Yingec560172017-09-06 16:24:36 -0700720}
721
Yang Shie9f59872019-03-05 15:44:15 -0800722/**
723 * swap_vma_readahead - swap in pages in hope we need them soon
724 * @entry: swap entry of this memory
725 * @gfp_mask: memory allocation flags
726 * @vmf: fault information
727 *
728 * Returns the struct page for entry and addr, after queueing swapin.
729 *
730 * Primitive swap readahead code. We simply read in a few pages whoes
731 * virtual addresses are around the fault address in the same vma.
732 *
733 * Caller must hold read mmap_sem if vmf->vma is not NULL.
734 *
735 */
Colin Ian Kingf5c754d2018-04-05 16:25:05 -0700736static struct page *swap_vma_readahead(swp_entry_t fentry, gfp_t gfp_mask,
737 struct vm_fault *vmf)
Huang Yingec560172017-09-06 16:24:36 -0700738{
739 struct blk_plug plug;
740 struct vm_area_struct *vma = vmf->vma;
741 struct page *page;
742 pte_t *pte, pentry;
743 swp_entry_t entry;
744 unsigned int i;
745 bool page_allocated;
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700746 struct vma_swap_readahead ra_info = {0,};
Huang Yingec560172017-09-06 16:24:36 -0700747
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700748 swap_ra_info(vmf, &ra_info);
749 if (ra_info.win == 1)
Huang Yingec560172017-09-06 16:24:36 -0700750 goto skip;
751
752 blk_start_plug(&plug);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700753 for (i = 0, pte = ra_info.ptes; i < ra_info.nr_pte;
Huang Yingec560172017-09-06 16:24:36 -0700754 i++, pte++) {
755 pentry = *pte;
756 if (pte_none(pentry))
757 continue;
758 if (pte_present(pentry))
759 continue;
760 entry = pte_to_swp_entry(pentry);
761 if (unlikely(non_swap_entry(entry)))
762 continue;
763 page = __read_swap_cache_async(entry, gfp_mask, vma,
764 vmf->address, &page_allocated);
765 if (!page)
766 continue;
767 if (page_allocated) {
768 swap_readpage(page, false);
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700769 if (i != ra_info.offset) {
Huang Yingec560172017-09-06 16:24:36 -0700770 SetPageReadahead(page);
771 count_vm_event(SWAP_RA);
772 }
773 }
774 put_page(page);
775 }
776 blk_finish_plug(&plug);
777 lru_add_drain();
778skip:
779 return read_swap_cache_async(fentry, gfp_mask, vma, vmf->address,
Minchan Kimeaf649eb2018-04-05 16:23:39 -0700780 ra_info.win == 1);
Huang Yingec560172017-09-06 16:24:36 -0700781}
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700782
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700783/**
784 * swapin_readahead - swap in pages in hope we need them soon
785 * @entry: swap entry of this memory
786 * @gfp_mask: memory allocation flags
787 * @vmf: fault information
788 *
789 * Returns the struct page for entry and addr, after queueing swapin.
790 *
791 * It's a main entry function for swap readahead. By the configuration,
792 * it will read ahead blocks by cluster-based(ie, physical disk based)
793 * or vma-based(ie, virtual address based on faulty address) readahead.
794 */
795struct page *swapin_readahead(swp_entry_t entry, gfp_t gfp_mask,
796 struct vm_fault *vmf)
797{
798 return swap_use_vma_readahead() ?
799 swap_vma_readahead(entry, gfp_mask, vmf) :
800 swap_cluster_readahead(entry, gfp_mask, vmf);
801}
802
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700803#ifdef CONFIG_SYSFS
804static ssize_t vma_ra_enabled_show(struct kobject *kobj,
805 struct kobj_attribute *attr, char *buf)
806{
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700807 return sprintf(buf, "%s\n", enable_vma_readahead ? "true" : "false");
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700808}
809static ssize_t vma_ra_enabled_store(struct kobject *kobj,
810 struct kobj_attribute *attr,
811 const char *buf, size_t count)
812{
813 if (!strncmp(buf, "true", 4) || !strncmp(buf, "1", 1))
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700814 enable_vma_readahead = true;
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700815 else if (!strncmp(buf, "false", 5) || !strncmp(buf, "0", 1))
Minchan Kime9e9b7e2018-04-05 16:23:42 -0700816 enable_vma_readahead = false;
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700817 else
818 return -EINVAL;
819
820 return count;
821}
822static struct kobj_attribute vma_ra_enabled_attr =
823 __ATTR(vma_ra_enabled, 0644, vma_ra_enabled_show,
824 vma_ra_enabled_store);
825
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700826static struct attribute *swap_attrs[] = {
827 &vma_ra_enabled_attr.attr,
Huang Yingd9bfcfd2017-09-06 16:24:40 -0700828 NULL,
829};
830
831static struct attribute_group swap_attr_group = {
832 .attrs = swap_attrs,
833};
834
835static int __init swap_init_sysfs(void)
836{
837 int err;
838 struct kobject *swap_kobj;
839
840 swap_kobj = kobject_create_and_add("swap", mm_kobj);
841 if (!swap_kobj) {
842 pr_err("failed to create swap kobject\n");
843 return -ENOMEM;
844 }
845 err = sysfs_create_group(swap_kobj, &swap_attr_group);
846 if (err) {
847 pr_err("failed to register swap group\n");
848 goto delete_obj;
849 }
850 return 0;
851
852delete_obj:
853 kobject_put(swap_kobj);
854 return err;
855}
856subsys_initcall(swap_init_sysfs);
857#endif