11da177e4SLinus Torvalds /* 21da177e4SLinus Torvalds * linux/mm/vmscan.c 31da177e4SLinus Torvalds * 41da177e4SLinus Torvalds * Copyright (C) 1991, 1992, 1993, 1994 Linus Torvalds 51da177e4SLinus Torvalds * 61da177e4SLinus Torvalds * Swap reorganised 29.12.95, Stephen Tweedie. 71da177e4SLinus Torvalds * kswapd added: 7.1.96 sct 81da177e4SLinus Torvalds * Removed kswapd_ctl limits, and swap out as many pages as needed 91da177e4SLinus Torvalds * to bring the system back to freepages.high: 2.4.97, Rik van Riel. 101da177e4SLinus Torvalds * Zone aware kswapd started 02/00, Kanoj Sarcar (kanoj@sgi.com). 111da177e4SLinus Torvalds * Multiqueue VM started 5.8.00, Rik van Riel. 121da177e4SLinus Torvalds */ 131da177e4SLinus Torvalds 141da177e4SLinus Torvalds #include <linux/mm.h> 151da177e4SLinus Torvalds #include <linux/module.h> 165a0e3ad6STejun Heo #include <linux/gfp.h> 171da177e4SLinus Torvalds #include <linux/kernel_stat.h> 181da177e4SLinus Torvalds #include <linux/swap.h> 191da177e4SLinus Torvalds #include <linux/pagemap.h> 201da177e4SLinus Torvalds #include <linux/init.h> 211da177e4SLinus Torvalds #include <linux/highmem.h> 22e129b5c2SAndrew Morton #include <linux/vmstat.h> 231da177e4SLinus Torvalds #include <linux/file.h> 241da177e4SLinus Torvalds #include <linux/writeback.h> 251da177e4SLinus Torvalds #include <linux/blkdev.h> 261da177e4SLinus Torvalds #include <linux/buffer_head.h> /* for try_to_release_page(), 271da177e4SLinus Torvalds buffer_heads_over_limit */ 281da177e4SLinus Torvalds #include <linux/mm_inline.h> 291da177e4SLinus Torvalds #include <linux/pagevec.h> 301da177e4SLinus Torvalds #include <linux/backing-dev.h> 311da177e4SLinus Torvalds #include <linux/rmap.h> 321da177e4SLinus Torvalds #include <linux/topology.h> 331da177e4SLinus Torvalds #include <linux/cpu.h> 341da177e4SLinus Torvalds #include <linux/cpuset.h> 353e7d3449SMel Gorman #include <linux/compaction.h> 361da177e4SLinus Torvalds #include <linux/notifier.h> 371da177e4SLinus Torvalds #include <linux/rwsem.h> 38248a0301SRafael J. Wysocki #include <linux/delay.h> 393218ae14SYasunori Goto #include <linux/kthread.h> 407dfb7103SNigel Cunningham #include <linux/freezer.h> 4166e1707bSBalbir Singh #include <linux/memcontrol.h> 42873b4771SKeika Kobayashi #include <linux/delayacct.h> 43af936a16SLee Schermerhorn #include <linux/sysctl.h> 44929bea7cSKOSAKI Motohiro #include <linux/oom.h> 45268bb0ceSLinus Torvalds #include <linux/prefetch.h> 461da177e4SLinus Torvalds 471da177e4SLinus Torvalds #include <asm/tlbflush.h> 481da177e4SLinus Torvalds #include <asm/div64.h> 491da177e4SLinus Torvalds 501da177e4SLinus Torvalds #include <linux/swapops.h> 511da177e4SLinus Torvalds 520f8053a5SNick Piggin #include "internal.h" 530f8053a5SNick Piggin 5433906bc5SMel Gorman #define CREATE_TRACE_POINTS 5533906bc5SMel Gorman #include <trace/events/vmscan.h> 5633906bc5SMel Gorman 57ee64fc93SMel Gorman /* 58f3a310bcSMel Gorman * reclaim_mode determines how the inactive list is shrunk 59f3a310bcSMel Gorman * RECLAIM_MODE_SINGLE: Reclaim only order-0 pages 60f3a310bcSMel Gorman * RECLAIM_MODE_ASYNC: Do not block 61f3a310bcSMel Gorman * RECLAIM_MODE_SYNC: Allow blocking e.g. call wait_on_page_writeback 62f3a310bcSMel Gorman * RECLAIM_MODE_LUMPYRECLAIM: For high-order allocations, take a reference 63ee64fc93SMel Gorman * page from the LRU and reclaim all pages within a 64ee64fc93SMel Gorman * naturally aligned range 65f3a310bcSMel Gorman * RECLAIM_MODE_COMPACTION: For high-order allocations, reclaim a number of 663e7d3449SMel Gorman * order-0 pages and then compact the zone 67ee64fc93SMel Gorman */ 68f3a310bcSMel Gorman typedef unsigned __bitwise__ reclaim_mode_t; 69f3a310bcSMel Gorman #define RECLAIM_MODE_SINGLE ((__force reclaim_mode_t)0x01u) 70f3a310bcSMel Gorman #define RECLAIM_MODE_ASYNC ((__force reclaim_mode_t)0x02u) 71f3a310bcSMel Gorman #define RECLAIM_MODE_SYNC ((__force reclaim_mode_t)0x04u) 72f3a310bcSMel Gorman #define RECLAIM_MODE_LUMPYRECLAIM ((__force reclaim_mode_t)0x08u) 73f3a310bcSMel Gorman #define RECLAIM_MODE_COMPACTION ((__force reclaim_mode_t)0x10u) 747d3579e8SKOSAKI Motohiro 751da177e4SLinus Torvalds struct scan_control { 761da177e4SLinus Torvalds /* Incremented by the number of inactive pages that were scanned */ 771da177e4SLinus Torvalds unsigned long nr_scanned; 781da177e4SLinus Torvalds 79a79311c1SRik van Riel /* Number of pages freed so far during a call to shrink_zones() */ 80a79311c1SRik van Riel unsigned long nr_reclaimed; 81a79311c1SRik van Riel 8222fba335SKOSAKI Motohiro /* How many pages shrink_list() should reclaim */ 8322fba335SKOSAKI Motohiro unsigned long nr_to_reclaim; 8422fba335SKOSAKI Motohiro 857b51755cSKOSAKI Motohiro unsigned long hibernation_mode; 867b51755cSKOSAKI Motohiro 871da177e4SLinus Torvalds /* This context's GFP mask */ 886daa0e28SAl Viro gfp_t gfp_mask; 891da177e4SLinus Torvalds 901da177e4SLinus Torvalds int may_writepage; 911da177e4SLinus Torvalds 92a6dc60f8SJohannes Weiner /* Can mapped pages be reclaimed? */ 93a6dc60f8SJohannes Weiner int may_unmap; 94f1fd1067SChristoph Lameter 952e2e4259SKOSAKI Motohiro /* Can pages be swapped as part of reclaim? */ 962e2e4259SKOSAKI Motohiro int may_swap; 972e2e4259SKOSAKI Motohiro 985ad333ebSAndy Whitcroft int order; 9966e1707bSBalbir Singh 1005f53e762SKOSAKI Motohiro /* 101415b54e3SNikanth Karthikesan * Intend to reclaim enough continuous memory rather than reclaim 102415b54e3SNikanth Karthikesan * enough amount of memory. i.e, mode for high order allocation. 1035f53e762SKOSAKI Motohiro */ 104f3a310bcSMel Gorman reclaim_mode_t reclaim_mode; 1055f53e762SKOSAKI Motohiro 10666e1707bSBalbir Singh /* Which cgroup do we reclaim from */ 10766e1707bSBalbir Singh struct mem_cgroup *mem_cgroup; 10866e1707bSBalbir Singh 109327c0e96SKAMEZAWA Hiroyuki /* 110327c0e96SKAMEZAWA Hiroyuki * Nodemask of nodes allowed by the caller. If NULL, all nodes 111327c0e96SKAMEZAWA Hiroyuki * are scanned. 112327c0e96SKAMEZAWA Hiroyuki */ 113327c0e96SKAMEZAWA Hiroyuki nodemask_t *nodemask; 1141da177e4SLinus Torvalds }; 1151da177e4SLinus Torvalds 1161da177e4SLinus Torvalds #define lru_to_page(_head) (list_entry((_head)->prev, struct page, lru)) 1171da177e4SLinus Torvalds 1181da177e4SLinus Torvalds #ifdef ARCH_HAS_PREFETCH 1191da177e4SLinus Torvalds #define prefetch_prev_lru_page(_page, _base, _field) \ 1201da177e4SLinus Torvalds do { \ 1211da177e4SLinus Torvalds if ((_page)->lru.prev != _base) { \ 1221da177e4SLinus Torvalds struct page *prev; \ 1231da177e4SLinus Torvalds \ 1241da177e4SLinus Torvalds prev = lru_to_page(&(_page->lru)); \ 1251da177e4SLinus Torvalds prefetch(&prev->_field); \ 1261da177e4SLinus Torvalds } \ 1271da177e4SLinus Torvalds } while (0) 1281da177e4SLinus Torvalds #else 1291da177e4SLinus Torvalds #define prefetch_prev_lru_page(_page, _base, _field) do { } while (0) 1301da177e4SLinus Torvalds #endif 1311da177e4SLinus Torvalds 1321da177e4SLinus Torvalds #ifdef ARCH_HAS_PREFETCHW 1331da177e4SLinus Torvalds #define prefetchw_prev_lru_page(_page, _base, _field) \ 1341da177e4SLinus Torvalds do { \ 1351da177e4SLinus Torvalds if ((_page)->lru.prev != _base) { \ 1361da177e4SLinus Torvalds struct page *prev; \ 1371da177e4SLinus Torvalds \ 1381da177e4SLinus Torvalds prev = lru_to_page(&(_page->lru)); \ 1391da177e4SLinus Torvalds prefetchw(&prev->_field); \ 1401da177e4SLinus Torvalds } \ 1411da177e4SLinus Torvalds } while (0) 1421da177e4SLinus Torvalds #else 1431da177e4SLinus Torvalds #define prefetchw_prev_lru_page(_page, _base, _field) do { } while (0) 1441da177e4SLinus Torvalds #endif 1451da177e4SLinus Torvalds 1461da177e4SLinus Torvalds /* 1471da177e4SLinus Torvalds * From 0 .. 100. Higher means more swappy. 1481da177e4SLinus Torvalds */ 1491da177e4SLinus Torvalds int vm_swappiness = 60; 150bd1e22b8SAndrew Morton long vm_total_pages; /* The total number of pages which the VM controls */ 1511da177e4SLinus Torvalds 1521da177e4SLinus Torvalds static LIST_HEAD(shrinker_list); 1531da177e4SLinus Torvalds static DECLARE_RWSEM(shrinker_rwsem); 1541da177e4SLinus Torvalds 15500f0b825SBalbir Singh #ifdef CONFIG_CGROUP_MEM_RES_CTLR 156e72e2bd6SKAMEZAWA Hiroyuki #define scanning_global_lru(sc) (!(sc)->mem_cgroup) 15791a45470SKAMEZAWA Hiroyuki #else 158e72e2bd6SKAMEZAWA Hiroyuki #define scanning_global_lru(sc) (1) 15991a45470SKAMEZAWA Hiroyuki #endif 16091a45470SKAMEZAWA Hiroyuki 1616e901571SKOSAKI Motohiro static struct zone_reclaim_stat *get_reclaim_stat(struct zone *zone, 1626e901571SKOSAKI Motohiro struct scan_control *sc) 1636e901571SKOSAKI Motohiro { 164e72e2bd6SKAMEZAWA Hiroyuki if (!scanning_global_lru(sc)) 1653e2f41f1SKOSAKI Motohiro return mem_cgroup_get_reclaim_stat(sc->mem_cgroup, zone); 1663e2f41f1SKOSAKI Motohiro 1676e901571SKOSAKI Motohiro return &zone->reclaim_stat; 1686e901571SKOSAKI Motohiro } 1696e901571SKOSAKI Motohiro 1700b217676SVincent Li static unsigned long zone_nr_lru_pages(struct zone *zone, 1710b217676SVincent Li struct scan_control *sc, enum lru_list lru) 172c9f299d9SKOSAKI Motohiro { 173e72e2bd6SKAMEZAWA Hiroyuki if (!scanning_global_lru(sc)) 174bb2a0de9SKAMEZAWA Hiroyuki return mem_cgroup_zone_nr_lru_pages(sc->mem_cgroup, 175bb2a0de9SKAMEZAWA Hiroyuki zone_to_nid(zone), zone_idx(zone), BIT(lru)); 176a3d8e054SKOSAKI Motohiro 177c9f299d9SKOSAKI Motohiro return zone_page_state(zone, NR_LRU_BASE + lru); 178c9f299d9SKOSAKI Motohiro } 179c9f299d9SKOSAKI Motohiro 180c9f299d9SKOSAKI Motohiro 1811da177e4SLinus Torvalds /* 1821da177e4SLinus Torvalds * Add a shrinker callback to be called from the vm 1831da177e4SLinus Torvalds */ 1848e1f936bSRusty Russell void register_shrinker(struct shrinker *shrinker) 1851da177e4SLinus Torvalds { 1861da177e4SLinus Torvalds shrinker->nr = 0; 1871da177e4SLinus Torvalds down_write(&shrinker_rwsem); 1881da177e4SLinus Torvalds list_add_tail(&shrinker->list, &shrinker_list); 1891da177e4SLinus Torvalds up_write(&shrinker_rwsem); 1901da177e4SLinus Torvalds } 1918e1f936bSRusty Russell EXPORT_SYMBOL(register_shrinker); 1921da177e4SLinus Torvalds 1931da177e4SLinus Torvalds /* 1941da177e4SLinus Torvalds * Remove one 1951da177e4SLinus Torvalds */ 1968e1f936bSRusty Russell void unregister_shrinker(struct shrinker *shrinker) 1971da177e4SLinus Torvalds { 1981da177e4SLinus Torvalds down_write(&shrinker_rwsem); 1991da177e4SLinus Torvalds list_del(&shrinker->list); 2001da177e4SLinus Torvalds up_write(&shrinker_rwsem); 2011da177e4SLinus Torvalds } 2028e1f936bSRusty Russell EXPORT_SYMBOL(unregister_shrinker); 2031da177e4SLinus Torvalds 2041495f230SYing Han static inline int do_shrinker_shrink(struct shrinker *shrinker, 2051495f230SYing Han struct shrink_control *sc, 2061495f230SYing Han unsigned long nr_to_scan) 2071495f230SYing Han { 2081495f230SYing Han sc->nr_to_scan = nr_to_scan; 2091495f230SYing Han return (*shrinker->shrink)(shrinker, sc); 2101495f230SYing Han } 2111495f230SYing Han 2121da177e4SLinus Torvalds #define SHRINK_BATCH 128 2131da177e4SLinus Torvalds /* 2141da177e4SLinus Torvalds * Call the shrink functions to age shrinkable caches 2151da177e4SLinus Torvalds * 2161da177e4SLinus Torvalds * Here we assume it costs one seek to replace a lru page and that it also 2171da177e4SLinus Torvalds * takes a seek to recreate a cache object. With this in mind we age equal 2181da177e4SLinus Torvalds * percentages of the lru and ageable caches. This should balance the seeks 2191da177e4SLinus Torvalds * generated by these structures. 2201da177e4SLinus Torvalds * 221183ff22bSSimon Arlott * If the vm encountered mapped pages on the LRU it increase the pressure on 2221da177e4SLinus Torvalds * slab to avoid swapping. 2231da177e4SLinus Torvalds * 2241da177e4SLinus Torvalds * We do weird things to avoid (scanned*seeks*entries) overflowing 32 bits. 2251da177e4SLinus Torvalds * 2261da177e4SLinus Torvalds * `lru_pages' represents the number of on-LRU pages in all the zones which 2271da177e4SLinus Torvalds * are eligible for the caller's allocation attempt. It is used for balancing 2281da177e4SLinus Torvalds * slab reclaim versus page reclaim. 229b15e0905Sakpm@osdl.org * 230b15e0905Sakpm@osdl.org * Returns the number of slab objects which we shrunk. 2311da177e4SLinus Torvalds */ 232a09ed5e0SYing Han unsigned long shrink_slab(struct shrink_control *shrink, 2331495f230SYing Han unsigned long nr_pages_scanned, 23469e05944SAndrew Morton unsigned long lru_pages) 2351da177e4SLinus Torvalds { 2361da177e4SLinus Torvalds struct shrinker *shrinker; 23769e05944SAndrew Morton unsigned long ret = 0; 2381da177e4SLinus Torvalds 2391495f230SYing Han if (nr_pages_scanned == 0) 2401495f230SYing Han nr_pages_scanned = SWAP_CLUSTER_MAX; 2411da177e4SLinus Torvalds 242f06590bdSMinchan Kim if (!down_read_trylock(&shrinker_rwsem)) { 243f06590bdSMinchan Kim /* Assume we'll be able to shrink next time */ 244f06590bdSMinchan Kim ret = 1; 245f06590bdSMinchan Kim goto out; 246f06590bdSMinchan Kim } 2471da177e4SLinus Torvalds 2481da177e4SLinus Torvalds list_for_each_entry(shrinker, &shrinker_list, list) { 2491da177e4SLinus Torvalds unsigned long long delta; 2501da177e4SLinus Torvalds unsigned long total_scan; 2517f8275d0SDave Chinner unsigned long max_pass; 25209576073SDave Chinner int shrink_ret = 0; 253acf92b48SDave Chinner long nr; 254acf92b48SDave Chinner long new_nr; 255e9299f50SDave Chinner long batch_size = shrinker->batch ? shrinker->batch 256e9299f50SDave Chinner : SHRINK_BATCH; 2571da177e4SLinus Torvalds 258acf92b48SDave Chinner /* 259acf92b48SDave Chinner * copy the current shrinker scan count into a local variable 260acf92b48SDave Chinner * and zero it so that other concurrent shrinker invocations 261acf92b48SDave Chinner * don't also do this scanning work. 262acf92b48SDave Chinner */ 263acf92b48SDave Chinner do { 264acf92b48SDave Chinner nr = shrinker->nr; 265acf92b48SDave Chinner } while (cmpxchg(&shrinker->nr, nr, 0) != nr); 266acf92b48SDave Chinner 267acf92b48SDave Chinner total_scan = nr; 2681495f230SYing Han max_pass = do_shrinker_shrink(shrinker, shrink, 0); 2691495f230SYing Han delta = (4 * nr_pages_scanned) / shrinker->seeks; 270ea164d73SAndrea Arcangeli delta *= max_pass; 2711da177e4SLinus Torvalds do_div(delta, lru_pages + 1); 272acf92b48SDave Chinner total_scan += delta; 273acf92b48SDave Chinner if (total_scan < 0) { 27488c3bd70SDavid Rientjes printk(KERN_ERR "shrink_slab: %pF negative objects to " 27588c3bd70SDavid Rientjes "delete nr=%ld\n", 276acf92b48SDave Chinner shrinker->shrink, total_scan); 277acf92b48SDave Chinner total_scan = max_pass; 278ea164d73SAndrea Arcangeli } 279ea164d73SAndrea Arcangeli 280ea164d73SAndrea Arcangeli /* 2813567b59aSDave Chinner * We need to avoid excessive windup on filesystem shrinkers 2823567b59aSDave Chinner * due to large numbers of GFP_NOFS allocations causing the 2833567b59aSDave Chinner * shrinkers to return -1 all the time. This results in a large 2843567b59aSDave Chinner * nr being built up so when a shrink that can do some work 2853567b59aSDave Chinner * comes along it empties the entire cache due to nr >>> 2863567b59aSDave Chinner * max_pass. This is bad for sustaining a working set in 2873567b59aSDave Chinner * memory. 2883567b59aSDave Chinner * 2893567b59aSDave Chinner * Hence only allow the shrinker to scan the entire cache when 2903567b59aSDave Chinner * a large delta change is calculated directly. 2913567b59aSDave Chinner */ 2923567b59aSDave Chinner if (delta < max_pass / 4) 2933567b59aSDave Chinner total_scan = min(total_scan, max_pass / 2); 2943567b59aSDave Chinner 2953567b59aSDave Chinner /* 296ea164d73SAndrea Arcangeli * Avoid risking looping forever due to too large nr value: 297ea164d73SAndrea Arcangeli * never try to free more than twice the estimate number of 298ea164d73SAndrea Arcangeli * freeable entries. 299ea164d73SAndrea Arcangeli */ 300acf92b48SDave Chinner if (total_scan > max_pass * 2) 301acf92b48SDave Chinner total_scan = max_pass * 2; 3021da177e4SLinus Torvalds 303acf92b48SDave Chinner trace_mm_shrink_slab_start(shrinker, shrink, nr, 30409576073SDave Chinner nr_pages_scanned, lru_pages, 30509576073SDave Chinner max_pass, delta, total_scan); 30609576073SDave Chinner 307e9299f50SDave Chinner while (total_scan >= batch_size) { 308b15e0905Sakpm@osdl.org int nr_before; 3091da177e4SLinus Torvalds 3101495f230SYing Han nr_before = do_shrinker_shrink(shrinker, shrink, 0); 3111495f230SYing Han shrink_ret = do_shrinker_shrink(shrinker, shrink, 312e9299f50SDave Chinner batch_size); 3131da177e4SLinus Torvalds if (shrink_ret == -1) 3141da177e4SLinus Torvalds break; 315b15e0905Sakpm@osdl.org if (shrink_ret < nr_before) 316b15e0905Sakpm@osdl.org ret += nr_before - shrink_ret; 317e9299f50SDave Chinner count_vm_events(SLABS_SCANNED, batch_size); 318e9299f50SDave Chinner total_scan -= batch_size; 3191da177e4SLinus Torvalds 3201da177e4SLinus Torvalds cond_resched(); 3211da177e4SLinus Torvalds } 3221da177e4SLinus Torvalds 323acf92b48SDave Chinner /* 324acf92b48SDave Chinner * move the unused scan count back into the shrinker in a 325acf92b48SDave Chinner * manner that handles concurrent updates. If we exhausted the 326acf92b48SDave Chinner * scan, there is no need to do an update. 327acf92b48SDave Chinner */ 328acf92b48SDave Chinner do { 329acf92b48SDave Chinner nr = shrinker->nr; 330acf92b48SDave Chinner new_nr = total_scan + nr; 331acf92b48SDave Chinner if (total_scan <= 0) 332acf92b48SDave Chinner break; 333acf92b48SDave Chinner } while (cmpxchg(&shrinker->nr, nr, new_nr) != nr); 334acf92b48SDave Chinner 335acf92b48SDave Chinner trace_mm_shrink_slab_end(shrinker, shrink_ret, nr, new_nr); 3361da177e4SLinus Torvalds } 3371da177e4SLinus Torvalds up_read(&shrinker_rwsem); 338f06590bdSMinchan Kim out: 339f06590bdSMinchan Kim cond_resched(); 340b15e0905Sakpm@osdl.org return ret; 3411da177e4SLinus Torvalds } 3421da177e4SLinus Torvalds 343f3a310bcSMel Gorman static void set_reclaim_mode(int priority, struct scan_control *sc, 3447d3579e8SKOSAKI Motohiro bool sync) 3457d3579e8SKOSAKI Motohiro { 346f3a310bcSMel Gorman reclaim_mode_t syncmode = sync ? RECLAIM_MODE_SYNC : RECLAIM_MODE_ASYNC; 3477d3579e8SKOSAKI Motohiro 3487d3579e8SKOSAKI Motohiro /* 3493e7d3449SMel Gorman * Initially assume we are entering either lumpy reclaim or 3503e7d3449SMel Gorman * reclaim/compaction.Depending on the order, we will either set the 3513e7d3449SMel Gorman * sync mode or just reclaim order-0 pages later. 3527d3579e8SKOSAKI Motohiro */ 3533e7d3449SMel Gorman if (COMPACTION_BUILD) 354f3a310bcSMel Gorman sc->reclaim_mode = RECLAIM_MODE_COMPACTION; 3553e7d3449SMel Gorman else 356f3a310bcSMel Gorman sc->reclaim_mode = RECLAIM_MODE_LUMPYRECLAIM; 3577d3579e8SKOSAKI Motohiro 3587d3579e8SKOSAKI Motohiro /* 3593e7d3449SMel Gorman * Avoid using lumpy reclaim or reclaim/compaction if possible by 3603e7d3449SMel Gorman * restricting when its set to either costly allocations or when 3613e7d3449SMel Gorman * under memory pressure 3627d3579e8SKOSAKI Motohiro */ 3637d3579e8SKOSAKI Motohiro if (sc->order > PAGE_ALLOC_COSTLY_ORDER) 364f3a310bcSMel Gorman sc->reclaim_mode |= syncmode; 3657d3579e8SKOSAKI Motohiro else if (sc->order && priority < DEF_PRIORITY - 2) 366f3a310bcSMel Gorman sc->reclaim_mode |= syncmode; 3677d3579e8SKOSAKI Motohiro else 368f3a310bcSMel Gorman sc->reclaim_mode = RECLAIM_MODE_SINGLE | RECLAIM_MODE_ASYNC; 3697d3579e8SKOSAKI Motohiro } 3707d3579e8SKOSAKI Motohiro 371f3a310bcSMel Gorman static void reset_reclaim_mode(struct scan_control *sc) 3727d3579e8SKOSAKI Motohiro { 373f3a310bcSMel Gorman sc->reclaim_mode = RECLAIM_MODE_SINGLE | RECLAIM_MODE_ASYNC; 3747d3579e8SKOSAKI Motohiro } 3757d3579e8SKOSAKI Motohiro 3761da177e4SLinus Torvalds static inline int is_page_cache_freeable(struct page *page) 3771da177e4SLinus Torvalds { 378ceddc3a5SJohannes Weiner /* 379ceddc3a5SJohannes Weiner * A freeable page cache page is referenced only by the caller 380ceddc3a5SJohannes Weiner * that isolated the page, the page cache radix tree and 381ceddc3a5SJohannes Weiner * optional buffer heads at page->private. 382ceddc3a5SJohannes Weiner */ 383edcf4748SJohannes Weiner return page_count(page) - page_has_private(page) == 2; 3841da177e4SLinus Torvalds } 3851da177e4SLinus Torvalds 3867d3579e8SKOSAKI Motohiro static int may_write_to_queue(struct backing_dev_info *bdi, 3877d3579e8SKOSAKI Motohiro struct scan_control *sc) 3881da177e4SLinus Torvalds { 389930d9152SChristoph Lameter if (current->flags & PF_SWAPWRITE) 3901da177e4SLinus Torvalds return 1; 3911da177e4SLinus Torvalds if (!bdi_write_congested(bdi)) 3921da177e4SLinus Torvalds return 1; 3931da177e4SLinus Torvalds if (bdi == current->backing_dev_info) 3941da177e4SLinus Torvalds return 1; 3957d3579e8SKOSAKI Motohiro 3967d3579e8SKOSAKI Motohiro /* lumpy reclaim for hugepage often need a lot of write */ 3977d3579e8SKOSAKI Motohiro if (sc->order > PAGE_ALLOC_COSTLY_ORDER) 3987d3579e8SKOSAKI Motohiro return 1; 3991da177e4SLinus Torvalds return 0; 4001da177e4SLinus Torvalds } 4011da177e4SLinus Torvalds 4021da177e4SLinus Torvalds /* 4031da177e4SLinus Torvalds * We detected a synchronous write error writing a page out. Probably 4041da177e4SLinus Torvalds * -ENOSPC. We need to propagate that into the address_space for a subsequent 4051da177e4SLinus Torvalds * fsync(), msync() or close(). 4061da177e4SLinus Torvalds * 4071da177e4SLinus Torvalds * The tricky part is that after writepage we cannot touch the mapping: nothing 4081da177e4SLinus Torvalds * prevents it from being freed up. But we have a ref on the page and once 4091da177e4SLinus Torvalds * that page is locked, the mapping is pinned. 4101da177e4SLinus Torvalds * 4111da177e4SLinus Torvalds * We're allowed to run sleeping lock_page() here because we know the caller has 4121da177e4SLinus Torvalds * __GFP_FS. 4131da177e4SLinus Torvalds */ 4141da177e4SLinus Torvalds static void handle_write_error(struct address_space *mapping, 4151da177e4SLinus Torvalds struct page *page, int error) 4161da177e4SLinus Torvalds { 4177eaceaccSJens Axboe lock_page(page); 4183e9f45bdSGuillaume Chazarain if (page_mapping(page) == mapping) 4193e9f45bdSGuillaume Chazarain mapping_set_error(mapping, error); 4201da177e4SLinus Torvalds unlock_page(page); 4211da177e4SLinus Torvalds } 4221da177e4SLinus Torvalds 42304e62a29SChristoph Lameter /* possible outcome of pageout() */ 42404e62a29SChristoph Lameter typedef enum { 42504e62a29SChristoph Lameter /* failed to write page out, page is locked */ 42604e62a29SChristoph Lameter PAGE_KEEP, 42704e62a29SChristoph Lameter /* move page to the active list, page is locked */ 42804e62a29SChristoph Lameter PAGE_ACTIVATE, 42904e62a29SChristoph Lameter /* page has been sent to the disk successfully, page is unlocked */ 43004e62a29SChristoph Lameter PAGE_SUCCESS, 43104e62a29SChristoph Lameter /* page is clean and locked */ 43204e62a29SChristoph Lameter PAGE_CLEAN, 43304e62a29SChristoph Lameter } pageout_t; 43404e62a29SChristoph Lameter 4351da177e4SLinus Torvalds /* 4361742f19fSAndrew Morton * pageout is called by shrink_page_list() for each dirty page. 4371742f19fSAndrew Morton * Calls ->writepage(). 4381da177e4SLinus Torvalds */ 439c661b078SAndy Whitcroft static pageout_t pageout(struct page *page, struct address_space *mapping, 4407d3579e8SKOSAKI Motohiro struct scan_control *sc) 4411da177e4SLinus Torvalds { 4421da177e4SLinus Torvalds /* 4431da177e4SLinus Torvalds * If the page is dirty, only perform writeback if that write 4441da177e4SLinus Torvalds * will be non-blocking. To prevent this allocation from being 4451da177e4SLinus Torvalds * stalled by pagecache activity. But note that there may be 4461da177e4SLinus Torvalds * stalls if we need to run get_block(). We could test 4471da177e4SLinus Torvalds * PagePrivate for that. 4481da177e4SLinus Torvalds * 4496aceb53bSVincent Li * If this process is currently in __generic_file_aio_write() against 4501da177e4SLinus Torvalds * this page's queue, we can perform writeback even if that 4511da177e4SLinus Torvalds * will block. 4521da177e4SLinus Torvalds * 4531da177e4SLinus Torvalds * If the page is swapcache, write it back even if that would 4541da177e4SLinus Torvalds * block, for some throttling. This happens by accident, because 4551da177e4SLinus Torvalds * swap_backing_dev_info is bust: it doesn't reflect the 4561da177e4SLinus Torvalds * congestion state of the swapdevs. Easy to fix, if needed. 4571da177e4SLinus Torvalds */ 4581da177e4SLinus Torvalds if (!is_page_cache_freeable(page)) 4591da177e4SLinus Torvalds return PAGE_KEEP; 4601da177e4SLinus Torvalds if (!mapping) { 4611da177e4SLinus Torvalds /* 4621da177e4SLinus Torvalds * Some data journaling orphaned pages can have 4631da177e4SLinus Torvalds * page->mapping == NULL while being dirty with clean buffers. 4641da177e4SLinus Torvalds */ 465266cf658SDavid Howells if (page_has_private(page)) { 4661da177e4SLinus Torvalds if (try_to_free_buffers(page)) { 4671da177e4SLinus Torvalds ClearPageDirty(page); 468d40cee24SHarvey Harrison printk("%s: orphaned page\n", __func__); 4691da177e4SLinus Torvalds return PAGE_CLEAN; 4701da177e4SLinus Torvalds } 4711da177e4SLinus Torvalds } 4721da177e4SLinus Torvalds return PAGE_KEEP; 4731da177e4SLinus Torvalds } 4741da177e4SLinus Torvalds if (mapping->a_ops->writepage == NULL) 4751da177e4SLinus Torvalds return PAGE_ACTIVATE; 4760e093d99SMel Gorman if (!may_write_to_queue(mapping->backing_dev_info, sc)) 4771da177e4SLinus Torvalds return PAGE_KEEP; 4781da177e4SLinus Torvalds 4791da177e4SLinus Torvalds if (clear_page_dirty_for_io(page)) { 4801da177e4SLinus Torvalds int res; 4811da177e4SLinus Torvalds struct writeback_control wbc = { 4821da177e4SLinus Torvalds .sync_mode = WB_SYNC_NONE, 4831da177e4SLinus Torvalds .nr_to_write = SWAP_CLUSTER_MAX, 484111ebb6eSOGAWA Hirofumi .range_start = 0, 485111ebb6eSOGAWA Hirofumi .range_end = LLONG_MAX, 4861da177e4SLinus Torvalds .for_reclaim = 1, 4871da177e4SLinus Torvalds }; 4881da177e4SLinus Torvalds 4891da177e4SLinus Torvalds SetPageReclaim(page); 4901da177e4SLinus Torvalds res = mapping->a_ops->writepage(page, &wbc); 4911da177e4SLinus Torvalds if (res < 0) 4921da177e4SLinus Torvalds handle_write_error(mapping, page, res); 493994fc28cSZach Brown if (res == AOP_WRITEPAGE_ACTIVATE) { 4941da177e4SLinus Torvalds ClearPageReclaim(page); 4951da177e4SLinus Torvalds return PAGE_ACTIVATE; 4961da177e4SLinus Torvalds } 497c661b078SAndy Whitcroft 4981da177e4SLinus Torvalds if (!PageWriteback(page)) { 4991da177e4SLinus Torvalds /* synchronous write or broken a_ops? */ 5001da177e4SLinus Torvalds ClearPageReclaim(page); 5011da177e4SLinus Torvalds } 502755f0225SMel Gorman trace_mm_vmscan_writepage(page, 503f3a310bcSMel Gorman trace_reclaim_flags(page, sc->reclaim_mode)); 504e129b5c2SAndrew Morton inc_zone_page_state(page, NR_VMSCAN_WRITE); 5051da177e4SLinus Torvalds return PAGE_SUCCESS; 5061da177e4SLinus Torvalds } 5071da177e4SLinus Torvalds 5081da177e4SLinus Torvalds return PAGE_CLEAN; 5091da177e4SLinus Torvalds } 5101da177e4SLinus Torvalds 511a649fd92SAndrew Morton /* 512e286781dSNick Piggin * Same as remove_mapping, but if the page is removed from the mapping, it 513e286781dSNick Piggin * gets returned with a refcount of 0. 514a649fd92SAndrew Morton */ 515e286781dSNick Piggin static int __remove_mapping(struct address_space *mapping, struct page *page) 51649d2e9ccSChristoph Lameter { 51728e4d965SNick Piggin BUG_ON(!PageLocked(page)); 51828e4d965SNick Piggin BUG_ON(mapping != page_mapping(page)); 51949d2e9ccSChristoph Lameter 52019fd6231SNick Piggin spin_lock_irq(&mapping->tree_lock); 52149d2e9ccSChristoph Lameter /* 5220fd0e6b0SNick Piggin * The non racy check for a busy page. 5230fd0e6b0SNick Piggin * 5240fd0e6b0SNick Piggin * Must be careful with the order of the tests. When someone has 5250fd0e6b0SNick Piggin * a ref to the page, it may be possible that they dirty it then 5260fd0e6b0SNick Piggin * drop the reference. So if PageDirty is tested before page_count 5270fd0e6b0SNick Piggin * here, then the following race may occur: 5280fd0e6b0SNick Piggin * 5290fd0e6b0SNick Piggin * get_user_pages(&page); 5300fd0e6b0SNick Piggin * [user mapping goes away] 5310fd0e6b0SNick Piggin * write_to(page); 5320fd0e6b0SNick Piggin * !PageDirty(page) [good] 5330fd0e6b0SNick Piggin * SetPageDirty(page); 5340fd0e6b0SNick Piggin * put_page(page); 5350fd0e6b0SNick Piggin * !page_count(page) [good, discard it] 5360fd0e6b0SNick Piggin * 5370fd0e6b0SNick Piggin * [oops, our write_to data is lost] 5380fd0e6b0SNick Piggin * 5390fd0e6b0SNick Piggin * Reversing the order of the tests ensures such a situation cannot 5400fd0e6b0SNick Piggin * escape unnoticed. The smp_rmb is needed to ensure the page->flags 5410fd0e6b0SNick Piggin * load is not satisfied before that of page->_count. 5420fd0e6b0SNick Piggin * 5430fd0e6b0SNick Piggin * Note that if SetPageDirty is always performed via set_page_dirty, 5440fd0e6b0SNick Piggin * and thus under tree_lock, then this ordering is not required. 54549d2e9ccSChristoph Lameter */ 546e286781dSNick Piggin if (!page_freeze_refs(page, 2)) 54749d2e9ccSChristoph Lameter goto cannot_free; 548e286781dSNick Piggin /* note: atomic_cmpxchg in page_freeze_refs provides the smp_rmb */ 549e286781dSNick Piggin if (unlikely(PageDirty(page))) { 550e286781dSNick Piggin page_unfreeze_refs(page, 2); 55149d2e9ccSChristoph Lameter goto cannot_free; 552e286781dSNick Piggin } 55349d2e9ccSChristoph Lameter 55449d2e9ccSChristoph Lameter if (PageSwapCache(page)) { 55549d2e9ccSChristoph Lameter swp_entry_t swap = { .val = page_private(page) }; 55649d2e9ccSChristoph Lameter __delete_from_swap_cache(page); 55719fd6231SNick Piggin spin_unlock_irq(&mapping->tree_lock); 558cb4b86baSKAMEZAWA Hiroyuki swapcache_free(swap, page); 559e286781dSNick Piggin } else { 5606072d13cSLinus Torvalds void (*freepage)(struct page *); 5616072d13cSLinus Torvalds 5626072d13cSLinus Torvalds freepage = mapping->a_ops->freepage; 5636072d13cSLinus Torvalds 564e64a782fSMinchan Kim __delete_from_page_cache(page); 56519fd6231SNick Piggin spin_unlock_irq(&mapping->tree_lock); 566e767e056SDaisuke Nishimura mem_cgroup_uncharge_cache_page(page); 5676072d13cSLinus Torvalds 5686072d13cSLinus Torvalds if (freepage != NULL) 5696072d13cSLinus Torvalds freepage(page); 570e286781dSNick Piggin } 571e286781dSNick Piggin 57249d2e9ccSChristoph Lameter return 1; 57349d2e9ccSChristoph Lameter 57449d2e9ccSChristoph Lameter cannot_free: 57519fd6231SNick Piggin spin_unlock_irq(&mapping->tree_lock); 57649d2e9ccSChristoph Lameter return 0; 57749d2e9ccSChristoph Lameter } 57849d2e9ccSChristoph Lameter 5791da177e4SLinus Torvalds /* 580e286781dSNick Piggin * Attempt to detach a locked page from its ->mapping. If it is dirty or if 581e286781dSNick Piggin * someone else has a ref on the page, abort and return 0. If it was 582e286781dSNick Piggin * successfully detached, return 1. Assumes the caller has a single ref on 583e286781dSNick Piggin * this page. 584e286781dSNick Piggin */ 585e286781dSNick Piggin int remove_mapping(struct address_space *mapping, struct page *page) 586e286781dSNick Piggin { 587e286781dSNick Piggin if (__remove_mapping(mapping, page)) { 588e286781dSNick Piggin /* 589e286781dSNick Piggin * Unfreezing the refcount with 1 rather than 2 effectively 590e286781dSNick Piggin * drops the pagecache ref for us without requiring another 591e286781dSNick Piggin * atomic operation. 592e286781dSNick Piggin */ 593e286781dSNick Piggin page_unfreeze_refs(page, 1); 594e286781dSNick Piggin return 1; 595e286781dSNick Piggin } 596e286781dSNick Piggin return 0; 597e286781dSNick Piggin } 598e286781dSNick Piggin 599894bc310SLee Schermerhorn /** 600894bc310SLee Schermerhorn * putback_lru_page - put previously isolated page onto appropriate LRU list 601894bc310SLee Schermerhorn * @page: page to be put back to appropriate lru list 602894bc310SLee Schermerhorn * 603894bc310SLee Schermerhorn * Add previously isolated @page to appropriate LRU list. 604894bc310SLee Schermerhorn * Page may still be unevictable for other reasons. 605894bc310SLee Schermerhorn * 606894bc310SLee Schermerhorn * lru_lock must not be held, interrupts must be enabled. 607894bc310SLee Schermerhorn */ 608894bc310SLee Schermerhorn void putback_lru_page(struct page *page) 609894bc310SLee Schermerhorn { 610894bc310SLee Schermerhorn int lru; 611894bc310SLee Schermerhorn int active = !!TestClearPageActive(page); 612bbfd28eeSLee Schermerhorn int was_unevictable = PageUnevictable(page); 613894bc310SLee Schermerhorn 614894bc310SLee Schermerhorn VM_BUG_ON(PageLRU(page)); 615894bc310SLee Schermerhorn 616894bc310SLee Schermerhorn redo: 617894bc310SLee Schermerhorn ClearPageUnevictable(page); 618894bc310SLee Schermerhorn 619894bc310SLee Schermerhorn if (page_evictable(page, NULL)) { 620894bc310SLee Schermerhorn /* 621894bc310SLee Schermerhorn * For evictable pages, we can use the cache. 622894bc310SLee Schermerhorn * In event of a race, worst case is we end up with an 623894bc310SLee Schermerhorn * unevictable page on [in]active list. 624894bc310SLee Schermerhorn * We know how to handle that. 625894bc310SLee Schermerhorn */ 626401a8e1cSJohannes Weiner lru = active + page_lru_base_type(page); 627894bc310SLee Schermerhorn lru_cache_add_lru(page, lru); 628894bc310SLee Schermerhorn } else { 629894bc310SLee Schermerhorn /* 630894bc310SLee Schermerhorn * Put unevictable pages directly on zone's unevictable 631894bc310SLee Schermerhorn * list. 632894bc310SLee Schermerhorn */ 633894bc310SLee Schermerhorn lru = LRU_UNEVICTABLE; 634894bc310SLee Schermerhorn add_page_to_unevictable_list(page); 6356a7b9548SJohannes Weiner /* 6366a7b9548SJohannes Weiner * When racing with an mlock clearing (page is 6376a7b9548SJohannes Weiner * unlocked), make sure that if the other thread does 6386a7b9548SJohannes Weiner * not observe our setting of PG_lru and fails 6396a7b9548SJohannes Weiner * isolation, we see PG_mlocked cleared below and move 6406a7b9548SJohannes Weiner * the page back to the evictable list. 6416a7b9548SJohannes Weiner * 6426a7b9548SJohannes Weiner * The other side is TestClearPageMlocked(). 6436a7b9548SJohannes Weiner */ 6446a7b9548SJohannes Weiner smp_mb(); 645894bc310SLee Schermerhorn } 646894bc310SLee Schermerhorn 647894bc310SLee Schermerhorn /* 648894bc310SLee Schermerhorn * page's status can change while we move it among lru. If an evictable 649894bc310SLee Schermerhorn * page is on unevictable list, it never be freed. To avoid that, 650894bc310SLee Schermerhorn * check after we added it to the list, again. 651894bc310SLee Schermerhorn */ 652894bc310SLee Schermerhorn if (lru == LRU_UNEVICTABLE && page_evictable(page, NULL)) { 653894bc310SLee Schermerhorn if (!isolate_lru_page(page)) { 654894bc310SLee Schermerhorn put_page(page); 655894bc310SLee Schermerhorn goto redo; 656894bc310SLee Schermerhorn } 657894bc310SLee Schermerhorn /* This means someone else dropped this page from LRU 658894bc310SLee Schermerhorn * So, it will be freed or putback to LRU again. There is 659894bc310SLee Schermerhorn * nothing to do here. 660894bc310SLee Schermerhorn */ 661894bc310SLee Schermerhorn } 662894bc310SLee Schermerhorn 663bbfd28eeSLee Schermerhorn if (was_unevictable && lru != LRU_UNEVICTABLE) 664bbfd28eeSLee Schermerhorn count_vm_event(UNEVICTABLE_PGRESCUED); 665bbfd28eeSLee Schermerhorn else if (!was_unevictable && lru == LRU_UNEVICTABLE) 666bbfd28eeSLee Schermerhorn count_vm_event(UNEVICTABLE_PGCULLED); 667bbfd28eeSLee Schermerhorn 668894bc310SLee Schermerhorn put_page(page); /* drop ref from isolate */ 669894bc310SLee Schermerhorn } 670894bc310SLee Schermerhorn 671dfc8d636SJohannes Weiner enum page_references { 672dfc8d636SJohannes Weiner PAGEREF_RECLAIM, 673dfc8d636SJohannes Weiner PAGEREF_RECLAIM_CLEAN, 67464574746SJohannes Weiner PAGEREF_KEEP, 675dfc8d636SJohannes Weiner PAGEREF_ACTIVATE, 676dfc8d636SJohannes Weiner }; 677dfc8d636SJohannes Weiner 678dfc8d636SJohannes Weiner static enum page_references page_check_references(struct page *page, 679dfc8d636SJohannes Weiner struct scan_control *sc) 680dfc8d636SJohannes Weiner { 68164574746SJohannes Weiner int referenced_ptes, referenced_page; 682dfc8d636SJohannes Weiner unsigned long vm_flags; 683dfc8d636SJohannes Weiner 68464574746SJohannes Weiner referenced_ptes = page_referenced(page, 1, sc->mem_cgroup, &vm_flags); 68564574746SJohannes Weiner referenced_page = TestClearPageReferenced(page); 686dfc8d636SJohannes Weiner 687dfc8d636SJohannes Weiner /* Lumpy reclaim - ignore references */ 688f3a310bcSMel Gorman if (sc->reclaim_mode & RECLAIM_MODE_LUMPYRECLAIM) 689dfc8d636SJohannes Weiner return PAGEREF_RECLAIM; 690dfc8d636SJohannes Weiner 691dfc8d636SJohannes Weiner /* 692dfc8d636SJohannes Weiner * Mlock lost the isolation race with us. Let try_to_unmap() 693dfc8d636SJohannes Weiner * move the page to the unevictable list. 694dfc8d636SJohannes Weiner */ 695dfc8d636SJohannes Weiner if (vm_flags & VM_LOCKED) 696dfc8d636SJohannes Weiner return PAGEREF_RECLAIM; 697dfc8d636SJohannes Weiner 69864574746SJohannes Weiner if (referenced_ptes) { 69964574746SJohannes Weiner if (PageAnon(page)) 70064574746SJohannes Weiner return PAGEREF_ACTIVATE; 70164574746SJohannes Weiner /* 70264574746SJohannes Weiner * All mapped pages start out with page table 70364574746SJohannes Weiner * references from the instantiating fault, so we need 70464574746SJohannes Weiner * to look twice if a mapped file page is used more 70564574746SJohannes Weiner * than once. 70664574746SJohannes Weiner * 70764574746SJohannes Weiner * Mark it and spare it for another trip around the 70864574746SJohannes Weiner * inactive list. Another page table reference will 70964574746SJohannes Weiner * lead to its activation. 71064574746SJohannes Weiner * 71164574746SJohannes Weiner * Note: the mark is set for activated pages as well 71264574746SJohannes Weiner * so that recently deactivated but used pages are 71364574746SJohannes Weiner * quickly recovered. 71464574746SJohannes Weiner */ 71564574746SJohannes Weiner SetPageReferenced(page); 71664574746SJohannes Weiner 71764574746SJohannes Weiner if (referenced_page) 718dfc8d636SJohannes Weiner return PAGEREF_ACTIVATE; 719dfc8d636SJohannes Weiner 72064574746SJohannes Weiner return PAGEREF_KEEP; 72164574746SJohannes Weiner } 72264574746SJohannes Weiner 723dfc8d636SJohannes Weiner /* Reclaim if clean, defer dirty pages to writeback */ 7242e30244aSKOSAKI Motohiro if (referenced_page && !PageSwapBacked(page)) 725dfc8d636SJohannes Weiner return PAGEREF_RECLAIM_CLEAN; 72664574746SJohannes Weiner 72764574746SJohannes Weiner return PAGEREF_RECLAIM; 728dfc8d636SJohannes Weiner } 729dfc8d636SJohannes Weiner 730abe4c3b5SMel Gorman static noinline_for_stack void free_page_list(struct list_head *free_pages) 731abe4c3b5SMel Gorman { 732abe4c3b5SMel Gorman struct pagevec freed_pvec; 733abe4c3b5SMel Gorman struct page *page, *tmp; 734abe4c3b5SMel Gorman 735abe4c3b5SMel Gorman pagevec_init(&freed_pvec, 1); 736abe4c3b5SMel Gorman 737abe4c3b5SMel Gorman list_for_each_entry_safe(page, tmp, free_pages, lru) { 738abe4c3b5SMel Gorman list_del(&page->lru); 739abe4c3b5SMel Gorman if (!pagevec_add(&freed_pvec, page)) { 740abe4c3b5SMel Gorman __pagevec_free(&freed_pvec); 741abe4c3b5SMel Gorman pagevec_reinit(&freed_pvec); 742abe4c3b5SMel Gorman } 743abe4c3b5SMel Gorman } 744abe4c3b5SMel Gorman 745abe4c3b5SMel Gorman pagevec_free(&freed_pvec); 746abe4c3b5SMel Gorman } 747abe4c3b5SMel Gorman 748e286781dSNick Piggin /* 7491742f19fSAndrew Morton * shrink_page_list() returns the number of reclaimed pages 7501da177e4SLinus Torvalds */ 7511742f19fSAndrew Morton static unsigned long shrink_page_list(struct list_head *page_list, 7520e093d99SMel Gorman struct zone *zone, 753f84f6e2bSMel Gorman struct scan_control *sc, 75492df3a72SMel Gorman int priority, 75592df3a72SMel Gorman unsigned long *ret_nr_dirty, 75692df3a72SMel Gorman unsigned long *ret_nr_writeback) 7571da177e4SLinus Torvalds { 7581da177e4SLinus Torvalds LIST_HEAD(ret_pages); 759abe4c3b5SMel Gorman LIST_HEAD(free_pages); 7601da177e4SLinus Torvalds int pgactivate = 0; 7610e093d99SMel Gorman unsigned long nr_dirty = 0; 7620e093d99SMel Gorman unsigned long nr_congested = 0; 76305ff5137SAndrew Morton unsigned long nr_reclaimed = 0; 76492df3a72SMel Gorman unsigned long nr_writeback = 0; 7651da177e4SLinus Torvalds 7661da177e4SLinus Torvalds cond_resched(); 7671da177e4SLinus Torvalds 7681da177e4SLinus Torvalds while (!list_empty(page_list)) { 769dfc8d636SJohannes Weiner enum page_references references; 7701da177e4SLinus Torvalds struct address_space *mapping; 7711da177e4SLinus Torvalds struct page *page; 7721da177e4SLinus Torvalds int may_enter_fs; 7731da177e4SLinus Torvalds 7741da177e4SLinus Torvalds cond_resched(); 7751da177e4SLinus Torvalds 7761da177e4SLinus Torvalds page = lru_to_page(page_list); 7771da177e4SLinus Torvalds list_del(&page->lru); 7781da177e4SLinus Torvalds 779529ae9aaSNick Piggin if (!trylock_page(page)) 7801da177e4SLinus Torvalds goto keep; 7811da177e4SLinus Torvalds 782725d704eSNick Piggin VM_BUG_ON(PageActive(page)); 7830e093d99SMel Gorman VM_BUG_ON(page_zone(page) != zone); 7841da177e4SLinus Torvalds 7851da177e4SLinus Torvalds sc->nr_scanned++; 78680e43426SChristoph Lameter 787b291f000SNick Piggin if (unlikely(!page_evictable(page, NULL))) 788b291f000SNick Piggin goto cull_mlocked; 789894bc310SLee Schermerhorn 790a6dc60f8SJohannes Weiner if (!sc->may_unmap && page_mapped(page)) 79180e43426SChristoph Lameter goto keep_locked; 79280e43426SChristoph Lameter 7931da177e4SLinus Torvalds /* Double the slab pressure for mapped and swapcache pages */ 7941da177e4SLinus Torvalds if (page_mapped(page) || PageSwapCache(page)) 7951da177e4SLinus Torvalds sc->nr_scanned++; 7961da177e4SLinus Torvalds 797c661b078SAndy Whitcroft may_enter_fs = (sc->gfp_mask & __GFP_FS) || 798c661b078SAndy Whitcroft (PageSwapCache(page) && (sc->gfp_mask & __GFP_IO)); 799c661b078SAndy Whitcroft 800c661b078SAndy Whitcroft if (PageWriteback(page)) { 80192df3a72SMel Gorman nr_writeback++; 802c661b078SAndy Whitcroft /* 803a18bba06SMel Gorman * Synchronous reclaim cannot queue pages for 804a18bba06SMel Gorman * writeback due to the possibility of stack overflow 805a18bba06SMel Gorman * but if it encounters a page under writeback, wait 806a18bba06SMel Gorman * for the IO to complete. 807c661b078SAndy Whitcroft */ 808f3a310bcSMel Gorman if ((sc->reclaim_mode & RECLAIM_MODE_SYNC) && 8097d3579e8SKOSAKI Motohiro may_enter_fs) 810c661b078SAndy Whitcroft wait_on_page_writeback(page); 8117d3579e8SKOSAKI Motohiro else { 8127d3579e8SKOSAKI Motohiro unlock_page(page); 8137d3579e8SKOSAKI Motohiro goto keep_lumpy; 8147d3579e8SKOSAKI Motohiro } 815c661b078SAndy Whitcroft } 8161da177e4SLinus Torvalds 817dfc8d636SJohannes Weiner references = page_check_references(page, sc); 818dfc8d636SJohannes Weiner switch (references) { 819dfc8d636SJohannes Weiner case PAGEREF_ACTIVATE: 8201da177e4SLinus Torvalds goto activate_locked; 82164574746SJohannes Weiner case PAGEREF_KEEP: 82264574746SJohannes Weiner goto keep_locked; 823dfc8d636SJohannes Weiner case PAGEREF_RECLAIM: 824dfc8d636SJohannes Weiner case PAGEREF_RECLAIM_CLEAN: 825dfc8d636SJohannes Weiner ; /* try to reclaim the page below */ 826dfc8d636SJohannes Weiner } 8271da177e4SLinus Torvalds 8281da177e4SLinus Torvalds /* 8291da177e4SLinus Torvalds * Anonymous process memory has backing store? 8301da177e4SLinus Torvalds * Try to allocate it some swap space here. 8311da177e4SLinus Torvalds */ 832b291f000SNick Piggin if (PageAnon(page) && !PageSwapCache(page)) { 83363eb6b93SHugh Dickins if (!(sc->gfp_mask & __GFP_IO)) 83463eb6b93SHugh Dickins goto keep_locked; 835ac47b003SHugh Dickins if (!add_to_swap(page)) 8361da177e4SLinus Torvalds goto activate_locked; 83763eb6b93SHugh Dickins may_enter_fs = 1; 838b291f000SNick Piggin } 8391da177e4SLinus Torvalds 8401da177e4SLinus Torvalds mapping = page_mapping(page); 8411da177e4SLinus Torvalds 8421da177e4SLinus Torvalds /* 8431da177e4SLinus Torvalds * The page is mapped into the page tables of one or more 8441da177e4SLinus Torvalds * processes. Try to unmap it here. 8451da177e4SLinus Torvalds */ 8461da177e4SLinus Torvalds if (page_mapped(page) && mapping) { 84714fa31b8SAndi Kleen switch (try_to_unmap(page, TTU_UNMAP)) { 8481da177e4SLinus Torvalds case SWAP_FAIL: 8491da177e4SLinus Torvalds goto activate_locked; 8501da177e4SLinus Torvalds case SWAP_AGAIN: 8511da177e4SLinus Torvalds goto keep_locked; 852b291f000SNick Piggin case SWAP_MLOCK: 853b291f000SNick Piggin goto cull_mlocked; 8541da177e4SLinus Torvalds case SWAP_SUCCESS: 8551da177e4SLinus Torvalds ; /* try to free the page below */ 8561da177e4SLinus Torvalds } 8571da177e4SLinus Torvalds } 8581da177e4SLinus Torvalds 8591da177e4SLinus Torvalds if (PageDirty(page)) { 8600e093d99SMel Gorman nr_dirty++; 8610e093d99SMel Gorman 862ee72886dSMel Gorman /* 863ee72886dSMel Gorman * Only kswapd can writeback filesystem pages to 864f84f6e2bSMel Gorman * avoid risk of stack overflow but do not writeback 865f84f6e2bSMel Gorman * unless under significant pressure. 866ee72886dSMel Gorman */ 867f84f6e2bSMel Gorman if (page_is_file_cache(page) && 868f84f6e2bSMel Gorman (!current_is_kswapd() || priority >= DEF_PRIORITY - 2)) { 86949ea7eb6SMel Gorman /* 87049ea7eb6SMel Gorman * Immediately reclaim when written back. 87149ea7eb6SMel Gorman * Similar in principal to deactivate_page() 87249ea7eb6SMel Gorman * except we already have the page isolated 87349ea7eb6SMel Gorman * and know it's dirty 87449ea7eb6SMel Gorman */ 87549ea7eb6SMel Gorman inc_zone_page_state(page, NR_VMSCAN_IMMEDIATE); 87649ea7eb6SMel Gorman SetPageReclaim(page); 87749ea7eb6SMel Gorman 878ee72886dSMel Gorman goto keep_locked; 879ee72886dSMel Gorman } 880ee72886dSMel Gorman 881dfc8d636SJohannes Weiner if (references == PAGEREF_RECLAIM_CLEAN) 8821da177e4SLinus Torvalds goto keep_locked; 8834dd4b920SAndrew Morton if (!may_enter_fs) 8841da177e4SLinus Torvalds goto keep_locked; 88552a8363eSChristoph Lameter if (!sc->may_writepage) 8861da177e4SLinus Torvalds goto keep_locked; 8871da177e4SLinus Torvalds 8881da177e4SLinus Torvalds /* Page is dirty, try to write it out here */ 8897d3579e8SKOSAKI Motohiro switch (pageout(page, mapping, sc)) { 8901da177e4SLinus Torvalds case PAGE_KEEP: 8910e093d99SMel Gorman nr_congested++; 8921da177e4SLinus Torvalds goto keep_locked; 8931da177e4SLinus Torvalds case PAGE_ACTIVATE: 8941da177e4SLinus Torvalds goto activate_locked; 8951da177e4SLinus Torvalds case PAGE_SUCCESS: 8967d3579e8SKOSAKI Motohiro if (PageWriteback(page)) 8977d3579e8SKOSAKI Motohiro goto keep_lumpy; 8987d3579e8SKOSAKI Motohiro if (PageDirty(page)) 8991da177e4SLinus Torvalds goto keep; 9007d3579e8SKOSAKI Motohiro 9011da177e4SLinus Torvalds /* 9021da177e4SLinus Torvalds * A synchronous write - probably a ramdisk. Go 9031da177e4SLinus Torvalds * ahead and try to reclaim the page. 9041da177e4SLinus Torvalds */ 905529ae9aaSNick Piggin if (!trylock_page(page)) 9061da177e4SLinus Torvalds goto keep; 9071da177e4SLinus Torvalds if (PageDirty(page) || PageWriteback(page)) 9081da177e4SLinus Torvalds goto keep_locked; 9091da177e4SLinus Torvalds mapping = page_mapping(page); 9101da177e4SLinus Torvalds case PAGE_CLEAN: 9111da177e4SLinus Torvalds ; /* try to free the page below */ 9121da177e4SLinus Torvalds } 9131da177e4SLinus Torvalds } 9141da177e4SLinus Torvalds 9151da177e4SLinus Torvalds /* 9161da177e4SLinus Torvalds * If the page has buffers, try to free the buffer mappings 9171da177e4SLinus Torvalds * associated with this page. If we succeed we try to free 9181da177e4SLinus Torvalds * the page as well. 9191da177e4SLinus Torvalds * 9201da177e4SLinus Torvalds * We do this even if the page is PageDirty(). 9211da177e4SLinus Torvalds * try_to_release_page() does not perform I/O, but it is 9221da177e4SLinus Torvalds * possible for a page to have PageDirty set, but it is actually 9231da177e4SLinus Torvalds * clean (all its buffers are clean). This happens if the 9241da177e4SLinus Torvalds * buffers were written out directly, with submit_bh(). ext3 9251da177e4SLinus Torvalds * will do this, as well as the blockdev mapping. 9261da177e4SLinus Torvalds * try_to_release_page() will discover that cleanness and will 9271da177e4SLinus Torvalds * drop the buffers and mark the page clean - it can be freed. 9281da177e4SLinus Torvalds * 9291da177e4SLinus Torvalds * Rarely, pages can have buffers and no ->mapping. These are 9301da177e4SLinus Torvalds * the pages which were not successfully invalidated in 9311da177e4SLinus Torvalds * truncate_complete_page(). We try to drop those buffers here 9321da177e4SLinus Torvalds * and if that worked, and the page is no longer mapped into 9331da177e4SLinus Torvalds * process address space (page_count == 1) it can be freed. 9341da177e4SLinus Torvalds * Otherwise, leave the page on the LRU so it is swappable. 9351da177e4SLinus Torvalds */ 936266cf658SDavid Howells if (page_has_private(page)) { 9371da177e4SLinus Torvalds if (!try_to_release_page(page, sc->gfp_mask)) 9381da177e4SLinus Torvalds goto activate_locked; 939e286781dSNick Piggin if (!mapping && page_count(page) == 1) { 940e286781dSNick Piggin unlock_page(page); 941e286781dSNick Piggin if (put_page_testzero(page)) 9421da177e4SLinus Torvalds goto free_it; 943e286781dSNick Piggin else { 944e286781dSNick Piggin /* 945e286781dSNick Piggin * rare race with speculative reference. 946e286781dSNick Piggin * the speculative reference will free 947e286781dSNick Piggin * this page shortly, so we may 948e286781dSNick Piggin * increment nr_reclaimed here (and 949e286781dSNick Piggin * leave it off the LRU). 950e286781dSNick Piggin */ 951e286781dSNick Piggin nr_reclaimed++; 952e286781dSNick Piggin continue; 953e286781dSNick Piggin } 954e286781dSNick Piggin } 9551da177e4SLinus Torvalds } 9561da177e4SLinus Torvalds 957e286781dSNick Piggin if (!mapping || !__remove_mapping(mapping, page)) 95849d2e9ccSChristoph Lameter goto keep_locked; 9591da177e4SLinus Torvalds 960a978d6f5SNick Piggin /* 961a978d6f5SNick Piggin * At this point, we have no other references and there is 962a978d6f5SNick Piggin * no way to pick any more up (removed from LRU, removed 963a978d6f5SNick Piggin * from pagecache). Can use non-atomic bitops now (and 964a978d6f5SNick Piggin * we obviously don't have to worry about waking up a process 965a978d6f5SNick Piggin * waiting on the page lock, because there are no references. 966a978d6f5SNick Piggin */ 967a978d6f5SNick Piggin __clear_page_locked(page); 968e286781dSNick Piggin free_it: 96905ff5137SAndrew Morton nr_reclaimed++; 970abe4c3b5SMel Gorman 971abe4c3b5SMel Gorman /* 972abe4c3b5SMel Gorman * Is there need to periodically free_page_list? It would 973abe4c3b5SMel Gorman * appear not as the counts should be low 974abe4c3b5SMel Gorman */ 975abe4c3b5SMel Gorman list_add(&page->lru, &free_pages); 9761da177e4SLinus Torvalds continue; 9771da177e4SLinus Torvalds 978b291f000SNick Piggin cull_mlocked: 97963d6c5adSHugh Dickins if (PageSwapCache(page)) 98063d6c5adSHugh Dickins try_to_free_swap(page); 981b291f000SNick Piggin unlock_page(page); 982b291f000SNick Piggin putback_lru_page(page); 983f3a310bcSMel Gorman reset_reclaim_mode(sc); 984b291f000SNick Piggin continue; 985b291f000SNick Piggin 9861da177e4SLinus Torvalds activate_locked: 98768a22394SRik van Riel /* Not a candidate for swapping, so reclaim swap space. */ 98868a22394SRik van Riel if (PageSwapCache(page) && vm_swap_full()) 989a2c43eedSHugh Dickins try_to_free_swap(page); 990894bc310SLee Schermerhorn VM_BUG_ON(PageActive(page)); 9911da177e4SLinus Torvalds SetPageActive(page); 9921da177e4SLinus Torvalds pgactivate++; 9931da177e4SLinus Torvalds keep_locked: 9941da177e4SLinus Torvalds unlock_page(page); 9951da177e4SLinus Torvalds keep: 996f3a310bcSMel Gorman reset_reclaim_mode(sc); 9977d3579e8SKOSAKI Motohiro keep_lumpy: 9981da177e4SLinus Torvalds list_add(&page->lru, &ret_pages); 999b291f000SNick Piggin VM_BUG_ON(PageLRU(page) || PageUnevictable(page)); 10001da177e4SLinus Torvalds } 1001abe4c3b5SMel Gorman 10020e093d99SMel Gorman /* 10030e093d99SMel Gorman * Tag a zone as congested if all the dirty pages encountered were 10040e093d99SMel Gorman * backed by a congested BDI. In this case, reclaimers should just 10050e093d99SMel Gorman * back off and wait for congestion to clear because further reclaim 10060e093d99SMel Gorman * will encounter the same problem 10070e093d99SMel Gorman */ 1008d6c438b6SKAMEZAWA Hiroyuki if (nr_dirty && nr_dirty == nr_congested && scanning_global_lru(sc)) 10090e093d99SMel Gorman zone_set_flag(zone, ZONE_CONGESTED); 10100e093d99SMel Gorman 1011abe4c3b5SMel Gorman free_page_list(&free_pages); 1012abe4c3b5SMel Gorman 10131da177e4SLinus Torvalds list_splice(&ret_pages, page_list); 1014f8891e5eSChristoph Lameter count_vm_events(PGACTIVATE, pgactivate); 101592df3a72SMel Gorman *ret_nr_dirty += nr_dirty; 101692df3a72SMel Gorman *ret_nr_writeback += nr_writeback; 101705ff5137SAndrew Morton return nr_reclaimed; 10181da177e4SLinus Torvalds } 10191da177e4SLinus Torvalds 10205ad333ebSAndy Whitcroft /* 10215ad333ebSAndy Whitcroft * Attempt to remove the specified page from its LRU. Only take this page 10225ad333ebSAndy Whitcroft * if it is of the appropriate PageActive status. Pages which are being 10235ad333ebSAndy Whitcroft * freed elsewhere are also ignored. 10245ad333ebSAndy Whitcroft * 10255ad333ebSAndy Whitcroft * page: page to consider 10265ad333ebSAndy Whitcroft * mode: one of the LRU isolation modes defined above 10275ad333ebSAndy Whitcroft * 10285ad333ebSAndy Whitcroft * returns 0 on success, -ve errno on failure. 10295ad333ebSAndy Whitcroft */ 10304356f21dSMinchan Kim int __isolate_lru_page(struct page *page, isolate_mode_t mode, int file) 10315ad333ebSAndy Whitcroft { 10324356f21dSMinchan Kim bool all_lru_mode; 10335ad333ebSAndy Whitcroft int ret = -EINVAL; 10345ad333ebSAndy Whitcroft 10355ad333ebSAndy Whitcroft /* Only take pages on the LRU. */ 10365ad333ebSAndy Whitcroft if (!PageLRU(page)) 10375ad333ebSAndy Whitcroft return ret; 10385ad333ebSAndy Whitcroft 10394356f21dSMinchan Kim all_lru_mode = (mode & (ISOLATE_ACTIVE|ISOLATE_INACTIVE)) == 10404356f21dSMinchan Kim (ISOLATE_ACTIVE|ISOLATE_INACTIVE); 10414356f21dSMinchan Kim 10425ad333ebSAndy Whitcroft /* 10435ad333ebSAndy Whitcroft * When checking the active state, we need to be sure we are 10445ad333ebSAndy Whitcroft * dealing with comparible boolean values. Take the logical not 10455ad333ebSAndy Whitcroft * of each. 10465ad333ebSAndy Whitcroft */ 10474356f21dSMinchan Kim if (!all_lru_mode && !PageActive(page) != !(mode & ISOLATE_ACTIVE)) 10485ad333ebSAndy Whitcroft return ret; 10495ad333ebSAndy Whitcroft 10504356f21dSMinchan Kim if (!all_lru_mode && !!page_is_file_cache(page) != file) 10514f98a2feSRik van Riel return ret; 10524f98a2feSRik van Riel 1053894bc310SLee Schermerhorn /* 1054894bc310SLee Schermerhorn * When this function is being called for lumpy reclaim, we 1055894bc310SLee Schermerhorn * initially look into all LRU pages, active, inactive and 1056894bc310SLee Schermerhorn * unevictable; only give shrink_page_list evictable pages. 1057894bc310SLee Schermerhorn */ 1058894bc310SLee Schermerhorn if (PageUnevictable(page)) 1059894bc310SLee Schermerhorn return ret; 1060894bc310SLee Schermerhorn 10615ad333ebSAndy Whitcroft ret = -EBUSY; 106208e552c6SKAMEZAWA Hiroyuki 106339deaf85SMinchan Kim if ((mode & ISOLATE_CLEAN) && (PageDirty(page) || PageWriteback(page))) 106439deaf85SMinchan Kim return ret; 106539deaf85SMinchan Kim 1066f80c0673SMinchan Kim if ((mode & ISOLATE_UNMAPPED) && page_mapped(page)) 1067f80c0673SMinchan Kim return ret; 1068f80c0673SMinchan Kim 10695ad333ebSAndy Whitcroft if (likely(get_page_unless_zero(page))) { 10705ad333ebSAndy Whitcroft /* 10715ad333ebSAndy Whitcroft * Be careful not to clear PageLRU until after we're 10725ad333ebSAndy Whitcroft * sure the page is not being freed elsewhere -- the 10735ad333ebSAndy Whitcroft * page release code relies on it. 10745ad333ebSAndy Whitcroft */ 10755ad333ebSAndy Whitcroft ClearPageLRU(page); 10765ad333ebSAndy Whitcroft ret = 0; 10775ad333ebSAndy Whitcroft } 10785ad333ebSAndy Whitcroft 10795ad333ebSAndy Whitcroft return ret; 10805ad333ebSAndy Whitcroft } 10815ad333ebSAndy Whitcroft 108249d2e9ccSChristoph Lameter /* 10831da177e4SLinus Torvalds * zone->lru_lock is heavily contended. Some of the functions that 10841da177e4SLinus Torvalds * shrink the lists perform better by taking out a batch of pages 10851da177e4SLinus Torvalds * and working on them outside the LRU lock. 10861da177e4SLinus Torvalds * 10871da177e4SLinus Torvalds * For pagecache intensive workloads, this function is the hottest 10881da177e4SLinus Torvalds * spot in the kernel (apart from copy_*_user functions). 10891da177e4SLinus Torvalds * 10901da177e4SLinus Torvalds * Appropriate locks must be held before calling this function. 10911da177e4SLinus Torvalds * 10921da177e4SLinus Torvalds * @nr_to_scan: The number of pages to look through on the list. 10931da177e4SLinus Torvalds * @src: The LRU list to pull pages off. 10941da177e4SLinus Torvalds * @dst: The temp list to put pages on to. 10951da177e4SLinus Torvalds * @scanned: The number of pages that were scanned. 10965ad333ebSAndy Whitcroft * @order: The caller's attempted allocation order 10975ad333ebSAndy Whitcroft * @mode: One of the LRU isolation modes 10984f98a2feSRik van Riel * @file: True [1] if isolating file [!anon] pages 10991da177e4SLinus Torvalds * 11001da177e4SLinus Torvalds * returns how many pages were moved onto *@dst. 11011da177e4SLinus Torvalds */ 110269e05944SAndrew Morton static unsigned long isolate_lru_pages(unsigned long nr_to_scan, 110369e05944SAndrew Morton struct list_head *src, struct list_head *dst, 11044356f21dSMinchan Kim unsigned long *scanned, int order, isolate_mode_t mode, 11054356f21dSMinchan Kim int file) 11061da177e4SLinus Torvalds { 110769e05944SAndrew Morton unsigned long nr_taken = 0; 1108a8a94d15SMel Gorman unsigned long nr_lumpy_taken = 0; 1109a8a94d15SMel Gorman unsigned long nr_lumpy_dirty = 0; 1110a8a94d15SMel Gorman unsigned long nr_lumpy_failed = 0; 1111c9b02d97SWu Fengguang unsigned long scan; 11121da177e4SLinus Torvalds 1113c9b02d97SWu Fengguang for (scan = 0; scan < nr_to_scan && !list_empty(src); scan++) { 11145ad333ebSAndy Whitcroft struct page *page; 11155ad333ebSAndy Whitcroft unsigned long pfn; 11165ad333ebSAndy Whitcroft unsigned long end_pfn; 11175ad333ebSAndy Whitcroft unsigned long page_pfn; 11185ad333ebSAndy Whitcroft int zone_id; 11195ad333ebSAndy Whitcroft 11201da177e4SLinus Torvalds page = lru_to_page(src); 11211da177e4SLinus Torvalds prefetchw_prev_lru_page(page, src, flags); 11221da177e4SLinus Torvalds 1123725d704eSNick Piggin VM_BUG_ON(!PageLRU(page)); 11248d438f96SNick Piggin 11254f98a2feSRik van Riel switch (__isolate_lru_page(page, mode, file)) { 11265ad333ebSAndy Whitcroft case 0: 11275ad333ebSAndy Whitcroft list_move(&page->lru, dst); 11282ffebca6SKAMEZAWA Hiroyuki mem_cgroup_del_lru(page); 11292c888cfbSRik van Riel nr_taken += hpage_nr_pages(page); 11305ad333ebSAndy Whitcroft break; 11317c8ee9a8SNick Piggin 11325ad333ebSAndy Whitcroft case -EBUSY: 11335ad333ebSAndy Whitcroft /* else it is being freed elsewhere */ 11345ad333ebSAndy Whitcroft list_move(&page->lru, src); 11352ffebca6SKAMEZAWA Hiroyuki mem_cgroup_rotate_lru_list(page, page_lru(page)); 11365ad333ebSAndy Whitcroft continue; 11375ad333ebSAndy Whitcroft 11385ad333ebSAndy Whitcroft default: 11395ad333ebSAndy Whitcroft BUG(); 11405ad333ebSAndy Whitcroft } 11415ad333ebSAndy Whitcroft 11425ad333ebSAndy Whitcroft if (!order) 11435ad333ebSAndy Whitcroft continue; 11445ad333ebSAndy Whitcroft 11455ad333ebSAndy Whitcroft /* 11465ad333ebSAndy Whitcroft * Attempt to take all pages in the order aligned region 11475ad333ebSAndy Whitcroft * surrounding the tag page. Only take those pages of 11485ad333ebSAndy Whitcroft * the same active state as that tag page. We may safely 11495ad333ebSAndy Whitcroft * round the target page pfn down to the requested order 115025985edcSLucas De Marchi * as the mem_map is guaranteed valid out to MAX_ORDER, 11515ad333ebSAndy Whitcroft * where that page is in a different zone we will detect 11525ad333ebSAndy Whitcroft * it from its zone id and abort this block scan. 11535ad333ebSAndy Whitcroft */ 11545ad333ebSAndy Whitcroft zone_id = page_zone_id(page); 11555ad333ebSAndy Whitcroft page_pfn = page_to_pfn(page); 11565ad333ebSAndy Whitcroft pfn = page_pfn & ~((1 << order) - 1); 11575ad333ebSAndy Whitcroft end_pfn = pfn + (1 << order); 11585ad333ebSAndy Whitcroft for (; pfn < end_pfn; pfn++) { 11595ad333ebSAndy Whitcroft struct page *cursor_page; 11605ad333ebSAndy Whitcroft 11615ad333ebSAndy Whitcroft /* The target page is in the block, ignore it. */ 11625ad333ebSAndy Whitcroft if (unlikely(pfn == page_pfn)) 11635ad333ebSAndy Whitcroft continue; 11645ad333ebSAndy Whitcroft 11655ad333ebSAndy Whitcroft /* Avoid holes within the zone. */ 11665ad333ebSAndy Whitcroft if (unlikely(!pfn_valid_within(pfn))) 11675ad333ebSAndy Whitcroft break; 11685ad333ebSAndy Whitcroft 11695ad333ebSAndy Whitcroft cursor_page = pfn_to_page(pfn); 11704f98a2feSRik van Riel 11715ad333ebSAndy Whitcroft /* Check that we have not crossed a zone boundary. */ 11725ad333ebSAndy Whitcroft if (unlikely(page_zone_id(cursor_page) != zone_id)) 117308fc468fSKOSAKI Motohiro break; 1174de2e7567SMinchan Kim 1175de2e7567SMinchan Kim /* 1176de2e7567SMinchan Kim * If we don't have enough swap space, reclaiming of 1177de2e7567SMinchan Kim * anon page which don't already have a swap slot is 1178de2e7567SMinchan Kim * pointless. 1179de2e7567SMinchan Kim */ 1180de2e7567SMinchan Kim if (nr_swap_pages <= 0 && PageAnon(cursor_page) && 1181de2e7567SMinchan Kim !PageSwapCache(cursor_page)) 118208fc468fSKOSAKI Motohiro break; 1183de2e7567SMinchan Kim 1184ee993b13SKAMEZAWA Hiroyuki if (__isolate_lru_page(cursor_page, mode, file) == 0) { 11855ad333ebSAndy Whitcroft list_move(&cursor_page->lru, dst); 1186cb4cbcf6SKAMEZAWA Hiroyuki mem_cgroup_del_lru(cursor_page); 11872c888cfbSRik van Riel nr_taken += hpage_nr_pages(page); 1188a8a94d15SMel Gorman nr_lumpy_taken++; 1189a8a94d15SMel Gorman if (PageDirty(cursor_page)) 1190a8a94d15SMel Gorman nr_lumpy_dirty++; 11915ad333ebSAndy Whitcroft scan++; 1192a8a94d15SMel Gorman } else { 1193d179e84bSAndrea Arcangeli /* 1194d179e84bSAndrea Arcangeli * Check if the page is freed already. 1195d179e84bSAndrea Arcangeli * 1196d179e84bSAndrea Arcangeli * We can't use page_count() as that 1197d179e84bSAndrea Arcangeli * requires compound_head and we don't 1198d179e84bSAndrea Arcangeli * have a pin on the page here. If a 1199d179e84bSAndrea Arcangeli * page is tail, we may or may not 1200d179e84bSAndrea Arcangeli * have isolated the head, so assume 1201d179e84bSAndrea Arcangeli * it's not free, it'd be tricky to 1202d179e84bSAndrea Arcangeli * track the head status without a 1203d179e84bSAndrea Arcangeli * page pin. 1204d179e84bSAndrea Arcangeli */ 1205d179e84bSAndrea Arcangeli if (!PageTail(cursor_page) && 1206d179e84bSAndrea Arcangeli !atomic_read(&cursor_page->_count)) 120708fc468fSKOSAKI Motohiro continue; 120808fc468fSKOSAKI Motohiro break; 120908fc468fSKOSAKI Motohiro } 121008fc468fSKOSAKI Motohiro } 121108fc468fSKOSAKI Motohiro 121208fc468fSKOSAKI Motohiro /* If we break out of the loop above, lumpy reclaim failed */ 121308fc468fSKOSAKI Motohiro if (pfn < end_pfn) 1214a8a94d15SMel Gorman nr_lumpy_failed++; 12155ad333ebSAndy Whitcroft } 12161da177e4SLinus Torvalds 12171da177e4SLinus Torvalds *scanned = scan; 1218a8a94d15SMel Gorman 1219a8a94d15SMel Gorman trace_mm_vmscan_lru_isolate(order, 1220a8a94d15SMel Gorman nr_to_scan, scan, 1221a8a94d15SMel Gorman nr_taken, 1222a8a94d15SMel Gorman nr_lumpy_taken, nr_lumpy_dirty, nr_lumpy_failed, 1223a8a94d15SMel Gorman mode); 12241da177e4SLinus Torvalds return nr_taken; 12251da177e4SLinus Torvalds } 12261da177e4SLinus Torvalds 122766e1707bSBalbir Singh static unsigned long isolate_pages_global(unsigned long nr, 122866e1707bSBalbir Singh struct list_head *dst, 122966e1707bSBalbir Singh unsigned long *scanned, int order, 12304356f21dSMinchan Kim isolate_mode_t mode, 12314356f21dSMinchan Kim struct zone *z, int active, int file) 123266e1707bSBalbir Singh { 12334f98a2feSRik van Riel int lru = LRU_BASE; 123466e1707bSBalbir Singh if (active) 12354f98a2feSRik van Riel lru += LRU_ACTIVE; 12364f98a2feSRik van Riel if (file) 12374f98a2feSRik van Riel lru += LRU_FILE; 12384f98a2feSRik van Riel return isolate_lru_pages(nr, &z->lru[lru].list, dst, scanned, order, 1239b7c46d15SJohannes Weiner mode, file); 124066e1707bSBalbir Singh } 124166e1707bSBalbir Singh 12421da177e4SLinus Torvalds /* 12435ad333ebSAndy Whitcroft * clear_active_flags() is a helper for shrink_active_list(), clearing 12445ad333ebSAndy Whitcroft * any active bits from the pages in the list. 12455ad333ebSAndy Whitcroft */ 12464f98a2feSRik van Riel static unsigned long clear_active_flags(struct list_head *page_list, 12474f98a2feSRik van Riel unsigned int *count) 12485ad333ebSAndy Whitcroft { 12495ad333ebSAndy Whitcroft int nr_active = 0; 12504f98a2feSRik van Riel int lru; 12515ad333ebSAndy Whitcroft struct page *page; 12525ad333ebSAndy Whitcroft 12534f98a2feSRik van Riel list_for_each_entry(page, page_list, lru) { 12542c888cfbSRik van Riel int numpages = hpage_nr_pages(page); 1255401a8e1cSJohannes Weiner lru = page_lru_base_type(page); 12565ad333ebSAndy Whitcroft if (PageActive(page)) { 12574f98a2feSRik van Riel lru += LRU_ACTIVE; 12585ad333ebSAndy Whitcroft ClearPageActive(page); 12592c888cfbSRik van Riel nr_active += numpages; 12605ad333ebSAndy Whitcroft } 12611489fa14SMel Gorman if (count) 12622c888cfbSRik van Riel count[lru] += numpages; 12634f98a2feSRik van Riel } 12645ad333ebSAndy Whitcroft 12655ad333ebSAndy Whitcroft return nr_active; 12665ad333ebSAndy Whitcroft } 12675ad333ebSAndy Whitcroft 126862695a84SNick Piggin /** 126962695a84SNick Piggin * isolate_lru_page - tries to isolate a page from its LRU list 127062695a84SNick Piggin * @page: page to isolate from its LRU list 127162695a84SNick Piggin * 127262695a84SNick Piggin * Isolates a @page from an LRU list, clears PageLRU and adjusts the 127362695a84SNick Piggin * vmstat statistic corresponding to whatever LRU list the page was on. 127462695a84SNick Piggin * 127562695a84SNick Piggin * Returns 0 if the page was removed from an LRU list. 127662695a84SNick Piggin * Returns -EBUSY if the page was not on an LRU list. 127762695a84SNick Piggin * 127862695a84SNick Piggin * The returned page will have PageLRU() cleared. If it was found on 1279894bc310SLee Schermerhorn * the active list, it will have PageActive set. If it was found on 1280894bc310SLee Schermerhorn * the unevictable list, it will have the PageUnevictable bit set. That flag 1281894bc310SLee Schermerhorn * may need to be cleared by the caller before letting the page go. 128262695a84SNick Piggin * 128362695a84SNick Piggin * The vmstat statistic corresponding to the list on which the page was 128462695a84SNick Piggin * found will be decremented. 128562695a84SNick Piggin * 128662695a84SNick Piggin * Restrictions: 128762695a84SNick Piggin * (1) Must be called with an elevated refcount on the page. This is a 128862695a84SNick Piggin * fundamentnal difference from isolate_lru_pages (which is called 128962695a84SNick Piggin * without a stable reference). 129062695a84SNick Piggin * (2) the lru_lock must not be held. 129162695a84SNick Piggin * (3) interrupts must be enabled. 129262695a84SNick Piggin */ 129362695a84SNick Piggin int isolate_lru_page(struct page *page) 129462695a84SNick Piggin { 129562695a84SNick Piggin int ret = -EBUSY; 129662695a84SNick Piggin 12970c917313SKonstantin Khlebnikov VM_BUG_ON(!page_count(page)); 12980c917313SKonstantin Khlebnikov 129962695a84SNick Piggin if (PageLRU(page)) { 130062695a84SNick Piggin struct zone *zone = page_zone(page); 130162695a84SNick Piggin 130262695a84SNick Piggin spin_lock_irq(&zone->lru_lock); 13030c917313SKonstantin Khlebnikov if (PageLRU(page)) { 1304894bc310SLee Schermerhorn int lru = page_lru(page); 130562695a84SNick Piggin ret = 0; 13060c917313SKonstantin Khlebnikov get_page(page); 130762695a84SNick Piggin ClearPageLRU(page); 13084f98a2feSRik van Riel 13094f98a2feSRik van Riel del_page_from_lru_list(zone, page, lru); 131062695a84SNick Piggin } 131162695a84SNick Piggin spin_unlock_irq(&zone->lru_lock); 131262695a84SNick Piggin } 131362695a84SNick Piggin return ret; 131462695a84SNick Piggin } 131562695a84SNick Piggin 13165ad333ebSAndy Whitcroft /* 131735cd7815SRik van Riel * Are there way too many processes in the direct reclaim path already? 131835cd7815SRik van Riel */ 131935cd7815SRik van Riel static int too_many_isolated(struct zone *zone, int file, 132035cd7815SRik van Riel struct scan_control *sc) 132135cd7815SRik van Riel { 132235cd7815SRik van Riel unsigned long inactive, isolated; 132335cd7815SRik van Riel 132435cd7815SRik van Riel if (current_is_kswapd()) 132535cd7815SRik van Riel return 0; 132635cd7815SRik van Riel 132735cd7815SRik van Riel if (!scanning_global_lru(sc)) 132835cd7815SRik van Riel return 0; 132935cd7815SRik van Riel 133035cd7815SRik van Riel if (file) { 133135cd7815SRik van Riel inactive = zone_page_state(zone, NR_INACTIVE_FILE); 133235cd7815SRik van Riel isolated = zone_page_state(zone, NR_ISOLATED_FILE); 133335cd7815SRik van Riel } else { 133435cd7815SRik van Riel inactive = zone_page_state(zone, NR_INACTIVE_ANON); 133535cd7815SRik van Riel isolated = zone_page_state(zone, NR_ISOLATED_ANON); 133635cd7815SRik van Riel } 133735cd7815SRik van Riel 133835cd7815SRik van Riel return isolated > inactive; 133935cd7815SRik van Riel } 134035cd7815SRik van Riel 134135cd7815SRik van Riel /* 134266635629SMel Gorman * TODO: Try merging with migrations version of putback_lru_pages 134366635629SMel Gorman */ 134466635629SMel Gorman static noinline_for_stack void 13451489fa14SMel Gorman putback_lru_pages(struct zone *zone, struct scan_control *sc, 134666635629SMel Gorman unsigned long nr_anon, unsigned long nr_file, 134766635629SMel Gorman struct list_head *page_list) 134866635629SMel Gorman { 134966635629SMel Gorman struct page *page; 135066635629SMel Gorman struct pagevec pvec; 13511489fa14SMel Gorman struct zone_reclaim_stat *reclaim_stat = get_reclaim_stat(zone, sc); 135266635629SMel Gorman 135366635629SMel Gorman pagevec_init(&pvec, 1); 135466635629SMel Gorman 135566635629SMel Gorman /* 135666635629SMel Gorman * Put back any unfreeable pages. 135766635629SMel Gorman */ 135866635629SMel Gorman spin_lock(&zone->lru_lock); 135966635629SMel Gorman while (!list_empty(page_list)) { 136066635629SMel Gorman int lru; 136166635629SMel Gorman page = lru_to_page(page_list); 136266635629SMel Gorman VM_BUG_ON(PageLRU(page)); 136366635629SMel Gorman list_del(&page->lru); 136466635629SMel Gorman if (unlikely(!page_evictable(page, NULL))) { 136566635629SMel Gorman spin_unlock_irq(&zone->lru_lock); 136666635629SMel Gorman putback_lru_page(page); 136766635629SMel Gorman spin_lock_irq(&zone->lru_lock); 136866635629SMel Gorman continue; 136966635629SMel Gorman } 13707a608572SLinus Torvalds SetPageLRU(page); 137166635629SMel Gorman lru = page_lru(page); 13727a608572SLinus Torvalds add_page_to_lru_list(zone, page, lru); 137366635629SMel Gorman if (is_active_lru(lru)) { 137466635629SMel Gorman int file = is_file_lru(lru); 13759992af10SRik van Riel int numpages = hpage_nr_pages(page); 13769992af10SRik van Riel reclaim_stat->recent_rotated[file] += numpages; 137766635629SMel Gorman } 137866635629SMel Gorman if (!pagevec_add(&pvec, page)) { 137966635629SMel Gorman spin_unlock_irq(&zone->lru_lock); 138066635629SMel Gorman __pagevec_release(&pvec); 138166635629SMel Gorman spin_lock_irq(&zone->lru_lock); 138266635629SMel Gorman } 138366635629SMel Gorman } 138466635629SMel Gorman __mod_zone_page_state(zone, NR_ISOLATED_ANON, -nr_anon); 138566635629SMel Gorman __mod_zone_page_state(zone, NR_ISOLATED_FILE, -nr_file); 138666635629SMel Gorman 138766635629SMel Gorman spin_unlock_irq(&zone->lru_lock); 138866635629SMel Gorman pagevec_release(&pvec); 138966635629SMel Gorman } 139066635629SMel Gorman 13911489fa14SMel Gorman static noinline_for_stack void update_isolated_counts(struct zone *zone, 13921489fa14SMel Gorman struct scan_control *sc, 13931489fa14SMel Gorman unsigned long *nr_anon, 13941489fa14SMel Gorman unsigned long *nr_file, 13951489fa14SMel Gorman struct list_head *isolated_list) 13961489fa14SMel Gorman { 13971489fa14SMel Gorman unsigned long nr_active; 13981489fa14SMel Gorman unsigned int count[NR_LRU_LISTS] = { 0, }; 13991489fa14SMel Gorman struct zone_reclaim_stat *reclaim_stat = get_reclaim_stat(zone, sc); 14001489fa14SMel Gorman 14011489fa14SMel Gorman nr_active = clear_active_flags(isolated_list, count); 14021489fa14SMel Gorman __count_vm_events(PGDEACTIVATE, nr_active); 14031489fa14SMel Gorman 14041489fa14SMel Gorman __mod_zone_page_state(zone, NR_ACTIVE_FILE, 14051489fa14SMel Gorman -count[LRU_ACTIVE_FILE]); 14061489fa14SMel Gorman __mod_zone_page_state(zone, NR_INACTIVE_FILE, 14071489fa14SMel Gorman -count[LRU_INACTIVE_FILE]); 14081489fa14SMel Gorman __mod_zone_page_state(zone, NR_ACTIVE_ANON, 14091489fa14SMel Gorman -count[LRU_ACTIVE_ANON]); 14101489fa14SMel Gorman __mod_zone_page_state(zone, NR_INACTIVE_ANON, 14111489fa14SMel Gorman -count[LRU_INACTIVE_ANON]); 14121489fa14SMel Gorman 14131489fa14SMel Gorman *nr_anon = count[LRU_ACTIVE_ANON] + count[LRU_INACTIVE_ANON]; 14141489fa14SMel Gorman *nr_file = count[LRU_ACTIVE_FILE] + count[LRU_INACTIVE_FILE]; 14151489fa14SMel Gorman __mod_zone_page_state(zone, NR_ISOLATED_ANON, *nr_anon); 14161489fa14SMel Gorman __mod_zone_page_state(zone, NR_ISOLATED_FILE, *nr_file); 14171489fa14SMel Gorman 14181489fa14SMel Gorman reclaim_stat->recent_scanned[0] += *nr_anon; 14191489fa14SMel Gorman reclaim_stat->recent_scanned[1] += *nr_file; 14201489fa14SMel Gorman } 14211489fa14SMel Gorman 142266635629SMel Gorman /* 1423a18bba06SMel Gorman * Returns true if a direct reclaim should wait on pages under writeback. 1424e31f3698SWu Fengguang * 1425e31f3698SWu Fengguang * If we are direct reclaiming for contiguous pages and we do not reclaim 1426e31f3698SWu Fengguang * everything in the list, try again and wait for writeback IO to complete. 1427e31f3698SWu Fengguang * This will stall high-order allocations noticeably. Only do that when really 1428e31f3698SWu Fengguang * need to free the pages under high memory pressure. 1429e31f3698SWu Fengguang */ 1430e31f3698SWu Fengguang static inline bool should_reclaim_stall(unsigned long nr_taken, 1431e31f3698SWu Fengguang unsigned long nr_freed, 1432e31f3698SWu Fengguang int priority, 1433e31f3698SWu Fengguang struct scan_control *sc) 1434e31f3698SWu Fengguang { 1435e31f3698SWu Fengguang int lumpy_stall_priority; 1436e31f3698SWu Fengguang 1437e31f3698SWu Fengguang /* kswapd should not stall on sync IO */ 1438e31f3698SWu Fengguang if (current_is_kswapd()) 1439e31f3698SWu Fengguang return false; 1440e31f3698SWu Fengguang 1441e31f3698SWu Fengguang /* Only stall on lumpy reclaim */ 1442f3a310bcSMel Gorman if (sc->reclaim_mode & RECLAIM_MODE_SINGLE) 1443e31f3698SWu Fengguang return false; 1444e31f3698SWu Fengguang 144581d66c70SJustin P. Mattock /* If we have reclaimed everything on the isolated list, no stall */ 1446e31f3698SWu Fengguang if (nr_freed == nr_taken) 1447e31f3698SWu Fengguang return false; 1448e31f3698SWu Fengguang 1449e31f3698SWu Fengguang /* 1450e31f3698SWu Fengguang * For high-order allocations, there are two stall thresholds. 1451e31f3698SWu Fengguang * High-cost allocations stall immediately where as lower 1452e31f3698SWu Fengguang * order allocations such as stacks require the scanning 1453e31f3698SWu Fengguang * priority to be much higher before stalling. 1454e31f3698SWu Fengguang */ 1455e31f3698SWu Fengguang if (sc->order > PAGE_ALLOC_COSTLY_ORDER) 1456e31f3698SWu Fengguang lumpy_stall_priority = DEF_PRIORITY; 1457e31f3698SWu Fengguang else 1458e31f3698SWu Fengguang lumpy_stall_priority = DEF_PRIORITY / 3; 1459e31f3698SWu Fengguang 1460e31f3698SWu Fengguang return priority <= lumpy_stall_priority; 1461e31f3698SWu Fengguang } 1462e31f3698SWu Fengguang 1463e31f3698SWu Fengguang /* 14641742f19fSAndrew Morton * shrink_inactive_list() is a helper for shrink_zone(). It returns the number 14651742f19fSAndrew Morton * of reclaimed pages 14661da177e4SLinus Torvalds */ 146766635629SMel Gorman static noinline_for_stack unsigned long 146866635629SMel Gorman shrink_inactive_list(unsigned long nr_to_scan, struct zone *zone, 146966635629SMel Gorman struct scan_control *sc, int priority, int file) 14701da177e4SLinus Torvalds { 14711da177e4SLinus Torvalds LIST_HEAD(page_list); 1472e247dbceSKOSAKI Motohiro unsigned long nr_scanned; 147305ff5137SAndrew Morton unsigned long nr_reclaimed = 0; 1474e247dbceSKOSAKI Motohiro unsigned long nr_taken; 1475e247dbceSKOSAKI Motohiro unsigned long nr_anon; 1476e247dbceSKOSAKI Motohiro unsigned long nr_file; 147792df3a72SMel Gorman unsigned long nr_dirty = 0; 147892df3a72SMel Gorman unsigned long nr_writeback = 0; 14794356f21dSMinchan Kim isolate_mode_t reclaim_mode = ISOLATE_INACTIVE; 148078dc583dSKOSAKI Motohiro 148135cd7815SRik van Riel while (unlikely(too_many_isolated(zone, file, sc))) { 148258355c78SKOSAKI Motohiro congestion_wait(BLK_RW_ASYNC, HZ/10); 148335cd7815SRik van Riel 148435cd7815SRik van Riel /* We are about to die and free our memory. Return now. */ 148535cd7815SRik van Riel if (fatal_signal_pending(current)) 148635cd7815SRik van Riel return SWAP_CLUSTER_MAX; 148735cd7815SRik van Riel } 148835cd7815SRik van Riel 1489f3a310bcSMel Gorman set_reclaim_mode(priority, sc, false); 14904356f21dSMinchan Kim if (sc->reclaim_mode & RECLAIM_MODE_LUMPYRECLAIM) 14914356f21dSMinchan Kim reclaim_mode |= ISOLATE_ACTIVE; 14924356f21dSMinchan Kim 14931da177e4SLinus Torvalds lru_add_drain(); 1494f80c0673SMinchan Kim 1495f80c0673SMinchan Kim if (!sc->may_unmap) 1496f80c0673SMinchan Kim reclaim_mode |= ISOLATE_UNMAPPED; 1497f80c0673SMinchan Kim if (!sc->may_writepage) 1498f80c0673SMinchan Kim reclaim_mode |= ISOLATE_CLEAN; 1499f80c0673SMinchan Kim 15001da177e4SLinus Torvalds spin_lock_irq(&zone->lru_lock); 15011da177e4SLinus Torvalds 1502b35ea17bSKOSAKI Motohiro if (scanning_global_lru(sc)) { 15034356f21dSMinchan Kim nr_taken = isolate_pages_global(nr_to_scan, &page_list, 15044356f21dSMinchan Kim &nr_scanned, sc->order, reclaim_mode, zone, 0, file); 1505e247dbceSKOSAKI Motohiro zone->pages_scanned += nr_scanned; 1506b35ea17bSKOSAKI Motohiro if (current_is_kswapd()) 1507b35ea17bSKOSAKI Motohiro __count_zone_vm_events(PGSCAN_KSWAPD, zone, 1508e247dbceSKOSAKI Motohiro nr_scanned); 1509b35ea17bSKOSAKI Motohiro else 1510b35ea17bSKOSAKI Motohiro __count_zone_vm_events(PGSCAN_DIRECT, zone, 1511e247dbceSKOSAKI Motohiro nr_scanned); 15128b25c6d2SJohannes Weiner } else { 15134356f21dSMinchan Kim nr_taken = mem_cgroup_isolate_pages(nr_to_scan, &page_list, 15144356f21dSMinchan Kim &nr_scanned, sc->order, reclaim_mode, zone, 15154356f21dSMinchan Kim sc->mem_cgroup, 0, file); 15168b25c6d2SJohannes Weiner /* 15178b25c6d2SJohannes Weiner * mem_cgroup_isolate_pages() keeps track of 15188b25c6d2SJohannes Weiner * scanned pages on its own. 15198b25c6d2SJohannes Weiner */ 1520b35ea17bSKOSAKI Motohiro } 1521b35ea17bSKOSAKI Motohiro 152266635629SMel Gorman if (nr_taken == 0) { 152366635629SMel Gorman spin_unlock_irq(&zone->lru_lock); 152466635629SMel Gorman return 0; 152566635629SMel Gorman } 1526b35ea17bSKOSAKI Motohiro 15271489fa14SMel Gorman update_isolated_counts(zone, sc, &nr_anon, &nr_file, &page_list); 15283e2f41f1SKOSAKI Motohiro 15291da177e4SLinus Torvalds spin_unlock_irq(&zone->lru_lock); 15301da177e4SLinus Torvalds 153192df3a72SMel Gorman nr_reclaimed = shrink_page_list(&page_list, zone, sc, priority, 153292df3a72SMel Gorman &nr_dirty, &nr_writeback); 1533c661b078SAndy Whitcroft 1534e31f3698SWu Fengguang /* Check if we should syncronously wait for writeback */ 1535e31f3698SWu Fengguang if (should_reclaim_stall(nr_taken, nr_reclaimed, priority, sc)) { 1536f3a310bcSMel Gorman set_reclaim_mode(priority, sc, true); 153792df3a72SMel Gorman nr_reclaimed += shrink_page_list(&page_list, zone, sc, 153892df3a72SMel Gorman priority, &nr_dirty, &nr_writeback); 1539c661b078SAndy Whitcroft } 1540c661b078SAndy Whitcroft 1541a74609faSNick Piggin local_irq_disable(); 1542b35ea17bSKOSAKI Motohiro if (current_is_kswapd()) 1543e247dbceSKOSAKI Motohiro __count_vm_events(KSWAPD_STEAL, nr_reclaimed); 1544e247dbceSKOSAKI Motohiro __count_zone_vm_events(PGSTEAL, zone, nr_reclaimed); 1545a74609faSNick Piggin 15461489fa14SMel Gorman putback_lru_pages(zone, sc, nr_anon, nr_file, &page_list); 1547e11da5b4SMel Gorman 154892df3a72SMel Gorman /* 154992df3a72SMel Gorman * If reclaim is isolating dirty pages under writeback, it implies 155092df3a72SMel Gorman * that the long-lived page allocation rate is exceeding the page 155192df3a72SMel Gorman * laundering rate. Either the global limits are not being effective 155292df3a72SMel Gorman * at throttling processes due to the page distribution throughout 155392df3a72SMel Gorman * zones or there is heavy usage of a slow backing device. The 155492df3a72SMel Gorman * only option is to throttle from reclaim context which is not ideal 155592df3a72SMel Gorman * as there is no guarantee the dirtying process is throttled in the 155692df3a72SMel Gorman * same way balance_dirty_pages() manages. 155792df3a72SMel Gorman * 155892df3a72SMel Gorman * This scales the number of dirty pages that must be under writeback 155992df3a72SMel Gorman * before throttling depending on priority. It is a simple backoff 156092df3a72SMel Gorman * function that has the most effect in the range DEF_PRIORITY to 156192df3a72SMel Gorman * DEF_PRIORITY-2 which is the priority reclaim is considered to be 156292df3a72SMel Gorman * in trouble and reclaim is considered to be in trouble. 156392df3a72SMel Gorman * 156492df3a72SMel Gorman * DEF_PRIORITY 100% isolated pages must be PageWriteback to throttle 156592df3a72SMel Gorman * DEF_PRIORITY-1 50% must be PageWriteback 156692df3a72SMel Gorman * DEF_PRIORITY-2 25% must be PageWriteback, kswapd in trouble 156792df3a72SMel Gorman * ... 156892df3a72SMel Gorman * DEF_PRIORITY-6 For SWAP_CLUSTER_MAX isolated pages, throttle if any 156992df3a72SMel Gorman * isolated page is PageWriteback 157092df3a72SMel Gorman */ 157192df3a72SMel Gorman if (nr_writeback && nr_writeback >= (nr_taken >> (DEF_PRIORITY-priority))) 157292df3a72SMel Gorman wait_iff_congested(zone, BLK_RW_ASYNC, HZ/10); 157392df3a72SMel Gorman 1574e11da5b4SMel Gorman trace_mm_vmscan_lru_shrink_inactive(zone->zone_pgdat->node_id, 1575e11da5b4SMel Gorman zone_idx(zone), 1576e11da5b4SMel Gorman nr_scanned, nr_reclaimed, 1577e11da5b4SMel Gorman priority, 1578f3a310bcSMel Gorman trace_shrink_flags(file, sc->reclaim_mode)); 157905ff5137SAndrew Morton return nr_reclaimed; 15801da177e4SLinus Torvalds } 15811da177e4SLinus Torvalds 15823bb1a852SMartin Bligh /* 15831cfb419bSKAMEZAWA Hiroyuki * This moves pages from the active list to the inactive list. 15841cfb419bSKAMEZAWA Hiroyuki * 15851cfb419bSKAMEZAWA Hiroyuki * We move them the other way if the page is referenced by one or more 15861cfb419bSKAMEZAWA Hiroyuki * processes, from rmap. 15871cfb419bSKAMEZAWA Hiroyuki * 15881cfb419bSKAMEZAWA Hiroyuki * If the pages are mostly unmapped, the processing is fast and it is 15891cfb419bSKAMEZAWA Hiroyuki * appropriate to hold zone->lru_lock across the whole operation. But if 15901cfb419bSKAMEZAWA Hiroyuki * the pages are mapped, the processing is slow (page_referenced()) so we 15911cfb419bSKAMEZAWA Hiroyuki * should drop zone->lru_lock around each page. It's impossible to balance 15921cfb419bSKAMEZAWA Hiroyuki * this, so instead we remove the pages from the LRU while processing them. 15931cfb419bSKAMEZAWA Hiroyuki * It is safe to rely on PG_active against the non-LRU pages in here because 15941cfb419bSKAMEZAWA Hiroyuki * nobody will play with that bit on a non-LRU page. 15951cfb419bSKAMEZAWA Hiroyuki * 15961cfb419bSKAMEZAWA Hiroyuki * The downside is that we have to touch page->_count against each page. 15971cfb419bSKAMEZAWA Hiroyuki * But we had to alter page->flags anyway. 15981cfb419bSKAMEZAWA Hiroyuki */ 15991cfb419bSKAMEZAWA Hiroyuki 16003eb4140fSWu Fengguang static void move_active_pages_to_lru(struct zone *zone, 16013eb4140fSWu Fengguang struct list_head *list, 16023eb4140fSWu Fengguang enum lru_list lru) 16033eb4140fSWu Fengguang { 16043eb4140fSWu Fengguang unsigned long pgmoved = 0; 16053eb4140fSWu Fengguang struct pagevec pvec; 16063eb4140fSWu Fengguang struct page *page; 16073eb4140fSWu Fengguang 16083eb4140fSWu Fengguang pagevec_init(&pvec, 1); 16093eb4140fSWu Fengguang 16103eb4140fSWu Fengguang while (!list_empty(list)) { 16113eb4140fSWu Fengguang page = lru_to_page(list); 16123eb4140fSWu Fengguang 16133eb4140fSWu Fengguang VM_BUG_ON(PageLRU(page)); 16143eb4140fSWu Fengguang SetPageLRU(page); 16153eb4140fSWu Fengguang 16163eb4140fSWu Fengguang list_move(&page->lru, &zone->lru[lru].list); 16173eb4140fSWu Fengguang mem_cgroup_add_lru_list(page, lru); 16182c888cfbSRik van Riel pgmoved += hpage_nr_pages(page); 16193eb4140fSWu Fengguang 16203eb4140fSWu Fengguang if (!pagevec_add(&pvec, page) || list_empty(list)) { 16213eb4140fSWu Fengguang spin_unlock_irq(&zone->lru_lock); 16223eb4140fSWu Fengguang if (buffer_heads_over_limit) 16233eb4140fSWu Fengguang pagevec_strip(&pvec); 16243eb4140fSWu Fengguang __pagevec_release(&pvec); 16253eb4140fSWu Fengguang spin_lock_irq(&zone->lru_lock); 16263eb4140fSWu Fengguang } 16273eb4140fSWu Fengguang } 16283eb4140fSWu Fengguang __mod_zone_page_state(zone, NR_LRU_BASE + lru, pgmoved); 16293eb4140fSWu Fengguang if (!is_active_lru(lru)) 16303eb4140fSWu Fengguang __count_vm_events(PGDEACTIVATE, pgmoved); 16313eb4140fSWu Fengguang } 16321cfb419bSKAMEZAWA Hiroyuki 16331cfb419bSKAMEZAWA Hiroyuki static void shrink_active_list(unsigned long nr_pages, struct zone *zone, 16344f98a2feSRik van Riel struct scan_control *sc, int priority, int file) 16351cfb419bSKAMEZAWA Hiroyuki { 163644c241f1SKOSAKI Motohiro unsigned long nr_taken; 16371cfb419bSKAMEZAWA Hiroyuki unsigned long pgscanned; 16386fe6b7e3SWu Fengguang unsigned long vm_flags; 16391cfb419bSKAMEZAWA Hiroyuki LIST_HEAD(l_hold); /* The pages which were snipped off */ 16408cab4754SWu Fengguang LIST_HEAD(l_active); 1641b69408e8SChristoph Lameter LIST_HEAD(l_inactive); 16421cfb419bSKAMEZAWA Hiroyuki struct page *page; 16436e901571SKOSAKI Motohiro struct zone_reclaim_stat *reclaim_stat = get_reclaim_stat(zone, sc); 164444c241f1SKOSAKI Motohiro unsigned long nr_rotated = 0; 1645f80c0673SMinchan Kim isolate_mode_t reclaim_mode = ISOLATE_ACTIVE; 16461cfb419bSKAMEZAWA Hiroyuki 16471da177e4SLinus Torvalds lru_add_drain(); 1648f80c0673SMinchan Kim 1649f80c0673SMinchan Kim if (!sc->may_unmap) 1650f80c0673SMinchan Kim reclaim_mode |= ISOLATE_UNMAPPED; 1651f80c0673SMinchan Kim if (!sc->may_writepage) 1652f80c0673SMinchan Kim reclaim_mode |= ISOLATE_CLEAN; 1653f80c0673SMinchan Kim 16541da177e4SLinus Torvalds spin_lock_irq(&zone->lru_lock); 16558b25c6d2SJohannes Weiner if (scanning_global_lru(sc)) { 16568b25c6d2SJohannes Weiner nr_taken = isolate_pages_global(nr_pages, &l_hold, 16578b25c6d2SJohannes Weiner &pgscanned, sc->order, 1658f80c0673SMinchan Kim reclaim_mode, zone, 16598b25c6d2SJohannes Weiner 1, file); 16608b25c6d2SJohannes Weiner zone->pages_scanned += pgscanned; 16618b25c6d2SJohannes Weiner } else { 16628b25c6d2SJohannes Weiner nr_taken = mem_cgroup_isolate_pages(nr_pages, &l_hold, 16638b25c6d2SJohannes Weiner &pgscanned, sc->order, 1664f80c0673SMinchan Kim reclaim_mode, zone, 16654f98a2feSRik van Riel sc->mem_cgroup, 1, file); 16661cfb419bSKAMEZAWA Hiroyuki /* 16678b25c6d2SJohannes Weiner * mem_cgroup_isolate_pages() keeps track of 16688b25c6d2SJohannes Weiner * scanned pages on its own. 16691cfb419bSKAMEZAWA Hiroyuki */ 16704f98a2feSRik van Riel } 16718b25c6d2SJohannes Weiner 1672b7c46d15SJohannes Weiner reclaim_stat->recent_scanned[file] += nr_taken; 16731cfb419bSKAMEZAWA Hiroyuki 16743eb4140fSWu Fengguang __count_zone_vm_events(PGREFILL, zone, pgscanned); 16754f98a2feSRik van Riel if (file) 167644c241f1SKOSAKI Motohiro __mod_zone_page_state(zone, NR_ACTIVE_FILE, -nr_taken); 16774f98a2feSRik van Riel else 167844c241f1SKOSAKI Motohiro __mod_zone_page_state(zone, NR_ACTIVE_ANON, -nr_taken); 1679a731286dSKOSAKI Motohiro __mod_zone_page_state(zone, NR_ISOLATED_ANON + file, nr_taken); 16801da177e4SLinus Torvalds spin_unlock_irq(&zone->lru_lock); 16811da177e4SLinus Torvalds 16821da177e4SLinus Torvalds while (!list_empty(&l_hold)) { 16831da177e4SLinus Torvalds cond_resched(); 16841da177e4SLinus Torvalds page = lru_to_page(&l_hold); 16851da177e4SLinus Torvalds list_del(&page->lru); 16867e9cd484SRik van Riel 1687894bc310SLee Schermerhorn if (unlikely(!page_evictable(page, NULL))) { 1688894bc310SLee Schermerhorn putback_lru_page(page); 1689894bc310SLee Schermerhorn continue; 1690894bc310SLee Schermerhorn } 1691894bc310SLee Schermerhorn 169264574746SJohannes Weiner if (page_referenced(page, 0, sc->mem_cgroup, &vm_flags)) { 16939992af10SRik van Riel nr_rotated += hpage_nr_pages(page); 16948cab4754SWu Fengguang /* 16958cab4754SWu Fengguang * Identify referenced, file-backed active pages and 16968cab4754SWu Fengguang * give them one more trip around the active list. So 16978cab4754SWu Fengguang * that executable code get better chances to stay in 16988cab4754SWu Fengguang * memory under moderate memory pressure. Anon pages 16998cab4754SWu Fengguang * are not likely to be evicted by use-once streaming 17008cab4754SWu Fengguang * IO, plus JVM can create lots of anon VM_EXEC pages, 17018cab4754SWu Fengguang * so we ignore them here. 17028cab4754SWu Fengguang */ 170341e20983SWu Fengguang if ((vm_flags & VM_EXEC) && page_is_file_cache(page)) { 17048cab4754SWu Fengguang list_add(&page->lru, &l_active); 17058cab4754SWu Fengguang continue; 17068cab4754SWu Fengguang } 17078cab4754SWu Fengguang } 17087e9cd484SRik van Riel 17095205e56eSKOSAKI Motohiro ClearPageActive(page); /* we are de-activating */ 17101da177e4SLinus Torvalds list_add(&page->lru, &l_inactive); 17111da177e4SLinus Torvalds } 17121da177e4SLinus Torvalds 1713b555749aSAndrew Morton /* 17148cab4754SWu Fengguang * Move pages back to the lru list. 1715b555749aSAndrew Morton */ 17162a1dc509SJohannes Weiner spin_lock_irq(&zone->lru_lock); 17174f98a2feSRik van Riel /* 17188cab4754SWu Fengguang * Count referenced pages from currently used mappings as rotated, 17198cab4754SWu Fengguang * even though only some of them are actually re-activated. This 17208cab4754SWu Fengguang * helps balance scan pressure between file and anonymous pages in 17218cab4754SWu Fengguang * get_scan_ratio. 1722556adecbSRik van Riel */ 1723b7c46d15SJohannes Weiner reclaim_stat->recent_rotated[file] += nr_rotated; 1724556adecbSRik van Riel 17253eb4140fSWu Fengguang move_active_pages_to_lru(zone, &l_active, 17263eb4140fSWu Fengguang LRU_ACTIVE + file * LRU_FILE); 17273eb4140fSWu Fengguang move_active_pages_to_lru(zone, &l_inactive, 17283eb4140fSWu Fengguang LRU_BASE + file * LRU_FILE); 1729a731286dSKOSAKI Motohiro __mod_zone_page_state(zone, NR_ISOLATED_ANON + file, -nr_taken); 1730f8891e5eSChristoph Lameter spin_unlock_irq(&zone->lru_lock); 17311da177e4SLinus Torvalds } 17321da177e4SLinus Torvalds 173374e3f3c3SMinchan Kim #ifdef CONFIG_SWAP 173414797e23SKOSAKI Motohiro static int inactive_anon_is_low_global(struct zone *zone) 1735f89eb90eSKOSAKI Motohiro { 1736f89eb90eSKOSAKI Motohiro unsigned long active, inactive; 1737f89eb90eSKOSAKI Motohiro 1738f89eb90eSKOSAKI Motohiro active = zone_page_state(zone, NR_ACTIVE_ANON); 1739f89eb90eSKOSAKI Motohiro inactive = zone_page_state(zone, NR_INACTIVE_ANON); 1740f89eb90eSKOSAKI Motohiro 1741f89eb90eSKOSAKI Motohiro if (inactive * zone->inactive_ratio < active) 1742f89eb90eSKOSAKI Motohiro return 1; 1743f89eb90eSKOSAKI Motohiro 1744f89eb90eSKOSAKI Motohiro return 0; 1745f89eb90eSKOSAKI Motohiro } 1746f89eb90eSKOSAKI Motohiro 174714797e23SKOSAKI Motohiro /** 174814797e23SKOSAKI Motohiro * inactive_anon_is_low - check if anonymous pages need to be deactivated 174914797e23SKOSAKI Motohiro * @zone: zone to check 175014797e23SKOSAKI Motohiro * @sc: scan control of this context 175114797e23SKOSAKI Motohiro * 175214797e23SKOSAKI Motohiro * Returns true if the zone does not have enough inactive anon pages, 175314797e23SKOSAKI Motohiro * meaning some active anon pages need to be deactivated. 175414797e23SKOSAKI Motohiro */ 175514797e23SKOSAKI Motohiro static int inactive_anon_is_low(struct zone *zone, struct scan_control *sc) 175614797e23SKOSAKI Motohiro { 175714797e23SKOSAKI Motohiro int low; 175814797e23SKOSAKI Motohiro 175974e3f3c3SMinchan Kim /* 176074e3f3c3SMinchan Kim * If we don't have swap space, anonymous page deactivation 176174e3f3c3SMinchan Kim * is pointless. 176274e3f3c3SMinchan Kim */ 176374e3f3c3SMinchan Kim if (!total_swap_pages) 176474e3f3c3SMinchan Kim return 0; 176574e3f3c3SMinchan Kim 1766e72e2bd6SKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) 176714797e23SKOSAKI Motohiro low = inactive_anon_is_low_global(zone); 176814797e23SKOSAKI Motohiro else 1769c772be93SKOSAKI Motohiro low = mem_cgroup_inactive_anon_is_low(sc->mem_cgroup); 177014797e23SKOSAKI Motohiro return low; 177114797e23SKOSAKI Motohiro } 177274e3f3c3SMinchan Kim #else 177374e3f3c3SMinchan Kim static inline int inactive_anon_is_low(struct zone *zone, 177474e3f3c3SMinchan Kim struct scan_control *sc) 177574e3f3c3SMinchan Kim { 177674e3f3c3SMinchan Kim return 0; 177774e3f3c3SMinchan Kim } 177874e3f3c3SMinchan Kim #endif 177914797e23SKOSAKI Motohiro 178056e49d21SRik van Riel static int inactive_file_is_low_global(struct zone *zone) 178156e49d21SRik van Riel { 178256e49d21SRik van Riel unsigned long active, inactive; 178356e49d21SRik van Riel 178456e49d21SRik van Riel active = zone_page_state(zone, NR_ACTIVE_FILE); 178556e49d21SRik van Riel inactive = zone_page_state(zone, NR_INACTIVE_FILE); 178656e49d21SRik van Riel 178756e49d21SRik van Riel return (active > inactive); 178856e49d21SRik van Riel } 178956e49d21SRik van Riel 179056e49d21SRik van Riel /** 179156e49d21SRik van Riel * inactive_file_is_low - check if file pages need to be deactivated 179256e49d21SRik van Riel * @zone: zone to check 179356e49d21SRik van Riel * @sc: scan control of this context 179456e49d21SRik van Riel * 179556e49d21SRik van Riel * When the system is doing streaming IO, memory pressure here 179656e49d21SRik van Riel * ensures that active file pages get deactivated, until more 179756e49d21SRik van Riel * than half of the file pages are on the inactive list. 179856e49d21SRik van Riel * 179956e49d21SRik van Riel * Once we get to that situation, protect the system's working 180056e49d21SRik van Riel * set from being evicted by disabling active file page aging. 180156e49d21SRik van Riel * 180256e49d21SRik van Riel * This uses a different ratio than the anonymous pages, because 180356e49d21SRik van Riel * the page cache uses a use-once replacement algorithm. 180456e49d21SRik van Riel */ 180556e49d21SRik van Riel static int inactive_file_is_low(struct zone *zone, struct scan_control *sc) 180656e49d21SRik van Riel { 180756e49d21SRik van Riel int low; 180856e49d21SRik van Riel 180956e49d21SRik van Riel if (scanning_global_lru(sc)) 181056e49d21SRik van Riel low = inactive_file_is_low_global(zone); 181156e49d21SRik van Riel else 181256e49d21SRik van Riel low = mem_cgroup_inactive_file_is_low(sc->mem_cgroup); 181356e49d21SRik van Riel return low; 181456e49d21SRik van Riel } 181556e49d21SRik van Riel 1816b39415b2SRik van Riel static int inactive_list_is_low(struct zone *zone, struct scan_control *sc, 1817b39415b2SRik van Riel int file) 1818b39415b2SRik van Riel { 1819b39415b2SRik van Riel if (file) 1820b39415b2SRik van Riel return inactive_file_is_low(zone, sc); 1821b39415b2SRik van Riel else 1822b39415b2SRik van Riel return inactive_anon_is_low(zone, sc); 1823b39415b2SRik van Riel } 1824b39415b2SRik van Riel 18254f98a2feSRik van Riel static unsigned long shrink_list(enum lru_list lru, unsigned long nr_to_scan, 1826b69408e8SChristoph Lameter struct zone *zone, struct scan_control *sc, int priority) 1827b69408e8SChristoph Lameter { 18284f98a2feSRik van Riel int file = is_file_lru(lru); 18294f98a2feSRik van Riel 1830b39415b2SRik van Riel if (is_active_lru(lru)) { 1831b39415b2SRik van Riel if (inactive_list_is_low(zone, sc, file)) 1832556adecbSRik van Riel shrink_active_list(nr_to_scan, zone, sc, priority, file); 1833556adecbSRik van Riel return 0; 1834556adecbSRik van Riel } 1835556adecbSRik van Riel 183633c120edSRik van Riel return shrink_inactive_list(nr_to_scan, zone, sc, priority, file); 1837b69408e8SChristoph Lameter } 1838b69408e8SChristoph Lameter 18391f4c025bSKAMEZAWA Hiroyuki static int vmscan_swappiness(struct scan_control *sc) 18401f4c025bSKAMEZAWA Hiroyuki { 18411f4c025bSKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) 18421f4c025bSKAMEZAWA Hiroyuki return vm_swappiness; 18431f4c025bSKAMEZAWA Hiroyuki return mem_cgroup_swappiness(sc->mem_cgroup); 18441f4c025bSKAMEZAWA Hiroyuki } 18451f4c025bSKAMEZAWA Hiroyuki 18461da177e4SLinus Torvalds /* 18474f98a2feSRik van Riel * Determine how aggressively the anon and file LRU lists should be 18484f98a2feSRik van Riel * scanned. The relative value of each set of LRU lists is determined 18494f98a2feSRik van Riel * by looking at the fraction of the pages scanned we did rotate back 18504f98a2feSRik van Riel * onto the active list instead of evict. 18514f98a2feSRik van Riel * 185276a33fc3SShaohua Li * nr[0] = anon pages to scan; nr[1] = file pages to scan 18534f98a2feSRik van Riel */ 185476a33fc3SShaohua Li static void get_scan_count(struct zone *zone, struct scan_control *sc, 185576a33fc3SShaohua Li unsigned long *nr, int priority) 18564f98a2feSRik van Riel { 18574f98a2feSRik van Riel unsigned long anon, file, free; 18584f98a2feSRik van Riel unsigned long anon_prio, file_prio; 18594f98a2feSRik van Riel unsigned long ap, fp; 18606e901571SKOSAKI Motohiro struct zone_reclaim_stat *reclaim_stat = get_reclaim_stat(zone, sc); 186176a33fc3SShaohua Li u64 fraction[2], denominator; 186276a33fc3SShaohua Li enum lru_list l; 186376a33fc3SShaohua Li int noswap = 0; 1864a4d3e9e7SJohannes Weiner bool force_scan = false; 1865246e87a9SKAMEZAWA Hiroyuki 1866f11c0ca5SJohannes Weiner /* 1867f11c0ca5SJohannes Weiner * If the zone or memcg is small, nr[l] can be 0. This 1868f11c0ca5SJohannes Weiner * results in no scanning on this priority and a potential 1869f11c0ca5SJohannes Weiner * priority drop. Global direct reclaim can go to the next 1870f11c0ca5SJohannes Weiner * zone and tends to have no problems. Global kswapd is for 1871f11c0ca5SJohannes Weiner * zone balancing and it needs to scan a minimum amount. When 1872f11c0ca5SJohannes Weiner * reclaiming for a memcg, a priority drop can cause high 1873f11c0ca5SJohannes Weiner * latencies, so it's better to scan a minimum amount there as 1874f11c0ca5SJohannes Weiner * well. 1875f11c0ca5SJohannes Weiner */ 1876246e87a9SKAMEZAWA Hiroyuki if (scanning_global_lru(sc) && current_is_kswapd()) 1877a4d3e9e7SJohannes Weiner force_scan = true; 1878246e87a9SKAMEZAWA Hiroyuki if (!scanning_global_lru(sc)) 1879a4d3e9e7SJohannes Weiner force_scan = true; 188076a33fc3SShaohua Li 188176a33fc3SShaohua Li /* If we have no swap space, do not bother scanning anon pages. */ 188276a33fc3SShaohua Li if (!sc->may_swap || (nr_swap_pages <= 0)) { 188376a33fc3SShaohua Li noswap = 1; 188476a33fc3SShaohua Li fraction[0] = 0; 188576a33fc3SShaohua Li fraction[1] = 1; 188676a33fc3SShaohua Li denominator = 1; 188776a33fc3SShaohua Li goto out; 188876a33fc3SShaohua Li } 18894f98a2feSRik van Riel 1890a4d3e9e7SJohannes Weiner anon = zone_nr_lru_pages(zone, sc, LRU_ACTIVE_ANON) + 1891a4d3e9e7SJohannes Weiner zone_nr_lru_pages(zone, sc, LRU_INACTIVE_ANON); 1892a4d3e9e7SJohannes Weiner file = zone_nr_lru_pages(zone, sc, LRU_ACTIVE_FILE) + 1893a4d3e9e7SJohannes Weiner zone_nr_lru_pages(zone, sc, LRU_INACTIVE_FILE); 1894a4d3e9e7SJohannes Weiner 1895e72e2bd6SKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) { 1896eeee9a8cSKOSAKI Motohiro free = zone_page_state(zone, NR_FREE_PAGES); 1897eeee9a8cSKOSAKI Motohiro /* If we have very few page cache pages, 1898eeee9a8cSKOSAKI Motohiro force-scan anon pages. */ 189941858966SMel Gorman if (unlikely(file + free <= high_wmark_pages(zone))) { 190076a33fc3SShaohua Li fraction[0] = 1; 190176a33fc3SShaohua Li fraction[1] = 0; 190276a33fc3SShaohua Li denominator = 1; 190376a33fc3SShaohua Li goto out; 19044f98a2feSRik van Riel } 1905eeee9a8cSKOSAKI Motohiro } 19064f98a2feSRik van Riel 19074f98a2feSRik van Riel /* 190858c37f6eSKOSAKI Motohiro * With swappiness at 100, anonymous and file have the same priority. 190958c37f6eSKOSAKI Motohiro * This scanning priority is essentially the inverse of IO cost. 191058c37f6eSKOSAKI Motohiro */ 19111f4c025bSKAMEZAWA Hiroyuki anon_prio = vmscan_swappiness(sc); 19121f4c025bSKAMEZAWA Hiroyuki file_prio = 200 - vmscan_swappiness(sc); 191358c37f6eSKOSAKI Motohiro 191458c37f6eSKOSAKI Motohiro /* 19154f98a2feSRik van Riel * OK, so we have swap space and a fair amount of page cache 19164f98a2feSRik van Riel * pages. We use the recently rotated / recently scanned 19174f98a2feSRik van Riel * ratios to determine how valuable each cache is. 19184f98a2feSRik van Riel * 19194f98a2feSRik van Riel * Because workloads change over time (and to avoid overflow) 19204f98a2feSRik van Riel * we keep these statistics as a floating average, which ends 19214f98a2feSRik van Riel * up weighing recent references more than old ones. 19224f98a2feSRik van Riel * 19234f98a2feSRik van Riel * anon in [0], file in [1] 19244f98a2feSRik van Riel */ 19254f98a2feSRik van Riel spin_lock_irq(&zone->lru_lock); 192658c37f6eSKOSAKI Motohiro if (unlikely(reclaim_stat->recent_scanned[0] > anon / 4)) { 19276e901571SKOSAKI Motohiro reclaim_stat->recent_scanned[0] /= 2; 19286e901571SKOSAKI Motohiro reclaim_stat->recent_rotated[0] /= 2; 19294f98a2feSRik van Riel } 19304f98a2feSRik van Riel 19316e901571SKOSAKI Motohiro if (unlikely(reclaim_stat->recent_scanned[1] > file / 4)) { 19326e901571SKOSAKI Motohiro reclaim_stat->recent_scanned[1] /= 2; 19336e901571SKOSAKI Motohiro reclaim_stat->recent_rotated[1] /= 2; 19344f98a2feSRik van Riel } 19354f98a2feSRik van Riel 19364f98a2feSRik van Riel /* 193700d8089cSRik van Riel * The amount of pressure on anon vs file pages is inversely 193800d8089cSRik van Riel * proportional to the fraction of recently scanned pages on 193900d8089cSRik van Riel * each list that were recently referenced and in active use. 19404f98a2feSRik van Riel */ 19416e901571SKOSAKI Motohiro ap = (anon_prio + 1) * (reclaim_stat->recent_scanned[0] + 1); 19426e901571SKOSAKI Motohiro ap /= reclaim_stat->recent_rotated[0] + 1; 19434f98a2feSRik van Riel 19446e901571SKOSAKI Motohiro fp = (file_prio + 1) * (reclaim_stat->recent_scanned[1] + 1); 19456e901571SKOSAKI Motohiro fp /= reclaim_stat->recent_rotated[1] + 1; 194658c37f6eSKOSAKI Motohiro spin_unlock_irq(&zone->lru_lock); 19474f98a2feSRik van Riel 194876a33fc3SShaohua Li fraction[0] = ap; 194976a33fc3SShaohua Li fraction[1] = fp; 195076a33fc3SShaohua Li denominator = ap + fp + 1; 195176a33fc3SShaohua Li out: 195276a33fc3SShaohua Li for_each_evictable_lru(l) { 195376a33fc3SShaohua Li int file = is_file_lru(l); 195476a33fc3SShaohua Li unsigned long scan; 195576a33fc3SShaohua Li 195676a33fc3SShaohua Li scan = zone_nr_lru_pages(zone, sc, l); 195776a33fc3SShaohua Li if (priority || noswap) { 195876a33fc3SShaohua Li scan >>= priority; 1959f11c0ca5SJohannes Weiner if (!scan && force_scan) 1960f11c0ca5SJohannes Weiner scan = SWAP_CLUSTER_MAX; 196176a33fc3SShaohua Li scan = div64_u64(scan * fraction[file], denominator); 19624f98a2feSRik van Riel } 1963246e87a9SKAMEZAWA Hiroyuki nr[l] = scan; 196476a33fc3SShaohua Li } 19656e08a369SWu Fengguang } 19664f98a2feSRik van Riel 19674f98a2feSRik van Riel /* 19683e7d3449SMel Gorman * Reclaim/compaction depends on a number of pages being freed. To avoid 19693e7d3449SMel Gorman * disruption to the system, a small number of order-0 pages continue to be 19703e7d3449SMel Gorman * rotated and reclaimed in the normal fashion. However, by the time we get 19713e7d3449SMel Gorman * back to the allocator and call try_to_compact_zone(), we ensure that 19723e7d3449SMel Gorman * there are enough free pages for it to be likely successful 19733e7d3449SMel Gorman */ 19743e7d3449SMel Gorman static inline bool should_continue_reclaim(struct zone *zone, 19753e7d3449SMel Gorman unsigned long nr_reclaimed, 19763e7d3449SMel Gorman unsigned long nr_scanned, 19773e7d3449SMel Gorman struct scan_control *sc) 19783e7d3449SMel Gorman { 19793e7d3449SMel Gorman unsigned long pages_for_compaction; 19803e7d3449SMel Gorman unsigned long inactive_lru_pages; 19813e7d3449SMel Gorman 19823e7d3449SMel Gorman /* If not in reclaim/compaction mode, stop */ 1983f3a310bcSMel Gorman if (!(sc->reclaim_mode & RECLAIM_MODE_COMPACTION)) 19843e7d3449SMel Gorman return false; 19853e7d3449SMel Gorman 19862876592fSMel Gorman /* Consider stopping depending on scan and reclaim activity */ 19872876592fSMel Gorman if (sc->gfp_mask & __GFP_REPEAT) { 19883e7d3449SMel Gorman /* 19892876592fSMel Gorman * For __GFP_REPEAT allocations, stop reclaiming if the 19902876592fSMel Gorman * full LRU list has been scanned and we are still failing 19912876592fSMel Gorman * to reclaim pages. This full LRU scan is potentially 19922876592fSMel Gorman * expensive but a __GFP_REPEAT caller really wants to succeed 19933e7d3449SMel Gorman */ 19943e7d3449SMel Gorman if (!nr_reclaimed && !nr_scanned) 19953e7d3449SMel Gorman return false; 19962876592fSMel Gorman } else { 19972876592fSMel Gorman /* 19982876592fSMel Gorman * For non-__GFP_REPEAT allocations which can presumably 19992876592fSMel Gorman * fail without consequence, stop if we failed to reclaim 20002876592fSMel Gorman * any pages from the last SWAP_CLUSTER_MAX number of 20012876592fSMel Gorman * pages that were scanned. This will return to the 20022876592fSMel Gorman * caller faster at the risk reclaim/compaction and 20032876592fSMel Gorman * the resulting allocation attempt fails 20042876592fSMel Gorman */ 20052876592fSMel Gorman if (!nr_reclaimed) 20062876592fSMel Gorman return false; 20072876592fSMel Gorman } 20083e7d3449SMel Gorman 20093e7d3449SMel Gorman /* 20103e7d3449SMel Gorman * If we have not reclaimed enough pages for compaction and the 20113e7d3449SMel Gorman * inactive lists are large enough, continue reclaiming 20123e7d3449SMel Gorman */ 20133e7d3449SMel Gorman pages_for_compaction = (2UL << sc->order); 20143e7d3449SMel Gorman inactive_lru_pages = zone_nr_lru_pages(zone, sc, LRU_INACTIVE_ANON) + 20153e7d3449SMel Gorman zone_nr_lru_pages(zone, sc, LRU_INACTIVE_FILE); 20163e7d3449SMel Gorman if (sc->nr_reclaimed < pages_for_compaction && 20173e7d3449SMel Gorman inactive_lru_pages > pages_for_compaction) 20183e7d3449SMel Gorman return true; 20193e7d3449SMel Gorman 20203e7d3449SMel Gorman /* If compaction would go ahead or the allocation would succeed, stop */ 20213e7d3449SMel Gorman switch (compaction_suitable(zone, sc->order)) { 20223e7d3449SMel Gorman case COMPACT_PARTIAL: 20233e7d3449SMel Gorman case COMPACT_CONTINUE: 20243e7d3449SMel Gorman return false; 20253e7d3449SMel Gorman default: 20263e7d3449SMel Gorman return true; 20273e7d3449SMel Gorman } 20283e7d3449SMel Gorman } 20293e7d3449SMel Gorman 20303e7d3449SMel Gorman /* 20311da177e4SLinus Torvalds * This is a basic per-zone page freer. Used by both kswapd and direct reclaim. 20321da177e4SLinus Torvalds */ 2033a79311c1SRik van Riel static void shrink_zone(int priority, struct zone *zone, 203469e05944SAndrew Morton struct scan_control *sc) 20351da177e4SLinus Torvalds { 2036b69408e8SChristoph Lameter unsigned long nr[NR_LRU_LISTS]; 20378695949aSChristoph Lameter unsigned long nr_to_scan; 2038b69408e8SChristoph Lameter enum lru_list l; 2039f0fdc5e8SJohannes Weiner unsigned long nr_reclaimed, nr_scanned; 204022fba335SKOSAKI Motohiro unsigned long nr_to_reclaim = sc->nr_to_reclaim; 20413da367c3SShaohua Li struct blk_plug plug; 20421da177e4SLinus Torvalds 20433e7d3449SMel Gorman restart: 20443e7d3449SMel Gorman nr_reclaimed = 0; 2045f0fdc5e8SJohannes Weiner nr_scanned = sc->nr_scanned; 204676a33fc3SShaohua Li get_scan_count(zone, sc, nr, priority); 20471cfb419bSKAMEZAWA Hiroyuki 20483da367c3SShaohua Li blk_start_plug(&plug); 2049556adecbSRik van Riel while (nr[LRU_INACTIVE_ANON] || nr[LRU_ACTIVE_FILE] || 2050556adecbSRik van Riel nr[LRU_INACTIVE_FILE]) { 2051894bc310SLee Schermerhorn for_each_evictable_lru(l) { 2052b69408e8SChristoph Lameter if (nr[l]) { 2053ece74b2eSKOSAKI Motohiro nr_to_scan = min_t(unsigned long, 2054ece74b2eSKOSAKI Motohiro nr[l], SWAP_CLUSTER_MAX); 2055b69408e8SChristoph Lameter nr[l] -= nr_to_scan; 2056b69408e8SChristoph Lameter 205701dbe5c9SKOSAKI Motohiro nr_reclaimed += shrink_list(l, nr_to_scan, 2058b69408e8SChristoph Lameter zone, sc, priority); 20591da177e4SLinus Torvalds } 20601da177e4SLinus Torvalds } 2061a79311c1SRik van Riel /* 2062a79311c1SRik van Riel * On large memory systems, scan >> priority can become 2063a79311c1SRik van Riel * really large. This is fine for the starting priority; 2064a79311c1SRik van Riel * we want to put equal scanning pressure on each zone. 2065a79311c1SRik van Riel * However, if the VM has a harder time of freeing pages, 2066a79311c1SRik van Riel * with multiple processes reclaiming pages, the total 2067a79311c1SRik van Riel * freeing target can get unreasonably large. 2068a79311c1SRik van Riel */ 2069338fde90SKOSAKI Motohiro if (nr_reclaimed >= nr_to_reclaim && priority < DEF_PRIORITY) 2070a79311c1SRik van Riel break; 20711da177e4SLinus Torvalds } 20723da367c3SShaohua Li blk_finish_plug(&plug); 20733e7d3449SMel Gorman sc->nr_reclaimed += nr_reclaimed; 207401dbe5c9SKOSAKI Motohiro 2075556adecbSRik van Riel /* 2076556adecbSRik van Riel * Even if we did not try to evict anon pages at all, we want to 2077556adecbSRik van Riel * rebalance the anon lru active/inactive ratio. 2078556adecbSRik van Riel */ 207974e3f3c3SMinchan Kim if (inactive_anon_is_low(zone, sc)) 2080556adecbSRik van Riel shrink_active_list(SWAP_CLUSTER_MAX, zone, sc, priority, 0); 2081556adecbSRik van Riel 20823e7d3449SMel Gorman /* reclaim/compaction might need reclaim to continue */ 20833e7d3449SMel Gorman if (should_continue_reclaim(zone, nr_reclaimed, 20843e7d3449SMel Gorman sc->nr_scanned - nr_scanned, sc)) 20853e7d3449SMel Gorman goto restart; 20863e7d3449SMel Gorman 2087232ea4d6SAndrew Morton throttle_vm_writeout(sc->gfp_mask); 20881da177e4SLinus Torvalds } 20891da177e4SLinus Torvalds 20901da177e4SLinus Torvalds /* 20911da177e4SLinus Torvalds * This is the direct reclaim path, for page-allocating processes. We only 20921da177e4SLinus Torvalds * try to reclaim pages from zones which will satisfy the caller's allocation 20931da177e4SLinus Torvalds * request. 20941da177e4SLinus Torvalds * 209541858966SMel Gorman * We reclaim from a zone even if that zone is over high_wmark_pages(zone). 209641858966SMel Gorman * Because: 20971da177e4SLinus Torvalds * a) The caller may be trying to free *extra* pages to satisfy a higher-order 20981da177e4SLinus Torvalds * allocation or 209941858966SMel Gorman * b) The target zone may be at high_wmark_pages(zone) but the lower zones 210041858966SMel Gorman * must go *over* high_wmark_pages(zone) to satisfy the `incremental min' 210141858966SMel Gorman * zone defense algorithm. 21021da177e4SLinus Torvalds * 21031da177e4SLinus Torvalds * If a zone is deemed to be full of pinned pages then just give it a light 21041da177e4SLinus Torvalds * scan then give up on it. 21051da177e4SLinus Torvalds */ 2106ac34a1a3SKAMEZAWA Hiroyuki static void shrink_zones(int priority, struct zonelist *zonelist, 210769e05944SAndrew Morton struct scan_control *sc) 21081da177e4SLinus Torvalds { 2109dd1a239fSMel Gorman struct zoneref *z; 211054a6eb5cSMel Gorman struct zone *zone; 2111d149e3b2SYing Han unsigned long nr_soft_reclaimed; 2112d149e3b2SYing Han unsigned long nr_soft_scanned; 21131cfb419bSKAMEZAWA Hiroyuki 2114d4debc66SMel Gorman for_each_zone_zonelist_nodemask(zone, z, zonelist, 2115d4debc66SMel Gorman gfp_zone(sc->gfp_mask), sc->nodemask) { 2116f3fe6512SCon Kolivas if (!populated_zone(zone)) 21171da177e4SLinus Torvalds continue; 21181cfb419bSKAMEZAWA Hiroyuki /* 21191cfb419bSKAMEZAWA Hiroyuki * Take care memory controller reclaiming has small influence 21201cfb419bSKAMEZAWA Hiroyuki * to global LRU. 21211cfb419bSKAMEZAWA Hiroyuki */ 2122e72e2bd6SKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) { 212302a0e53dSPaul Jackson if (!cpuset_zone_allowed_hardwall(zone, GFP_KERNEL)) 21241da177e4SLinus Torvalds continue; 212593e4a89aSKOSAKI Motohiro if (zone->all_unreclaimable && priority != DEF_PRIORITY) 21261da177e4SLinus Torvalds continue; /* Let kswapd poll it */ 2127ac34a1a3SKAMEZAWA Hiroyuki /* 2128ac34a1a3SKAMEZAWA Hiroyuki * This steals pages from memory cgroups over softlimit 2129ac34a1a3SKAMEZAWA Hiroyuki * and returns the number of reclaimed pages and 2130ac34a1a3SKAMEZAWA Hiroyuki * scanned pages. This works for global memory pressure 2131ac34a1a3SKAMEZAWA Hiroyuki * and balancing, not for a memcg's limit. 2132ac34a1a3SKAMEZAWA Hiroyuki */ 2133d149e3b2SYing Han nr_soft_scanned = 0; 2134d149e3b2SYing Han nr_soft_reclaimed = mem_cgroup_soft_limit_reclaim(zone, 2135d149e3b2SYing Han sc->order, sc->gfp_mask, 2136d149e3b2SYing Han &nr_soft_scanned); 2137d149e3b2SYing Han sc->nr_reclaimed += nr_soft_reclaimed; 2138ac34a1a3SKAMEZAWA Hiroyuki sc->nr_scanned += nr_soft_scanned; 2139ac34a1a3SKAMEZAWA Hiroyuki /* need some check for avoid more shrink_zone() */ 2140ac34a1a3SKAMEZAWA Hiroyuki } 2141d149e3b2SYing Han 2142a79311c1SRik van Riel shrink_zone(priority, zone, sc); 21431da177e4SLinus Torvalds } 2144d1908362SMinchan Kim } 2145d1908362SMinchan Kim 2146d1908362SMinchan Kim static bool zone_reclaimable(struct zone *zone) 2147d1908362SMinchan Kim { 2148d1908362SMinchan Kim return zone->pages_scanned < zone_reclaimable_pages(zone) * 6; 2149d1908362SMinchan Kim } 2150d1908362SMinchan Kim 2151929bea7cSKOSAKI Motohiro /* All zones in zonelist are unreclaimable? */ 2152d1908362SMinchan Kim static bool all_unreclaimable(struct zonelist *zonelist, 2153d1908362SMinchan Kim struct scan_control *sc) 2154d1908362SMinchan Kim { 2155d1908362SMinchan Kim struct zoneref *z; 2156d1908362SMinchan Kim struct zone *zone; 2157d1908362SMinchan Kim 2158d1908362SMinchan Kim for_each_zone_zonelist_nodemask(zone, z, zonelist, 2159d1908362SMinchan Kim gfp_zone(sc->gfp_mask), sc->nodemask) { 2160d1908362SMinchan Kim if (!populated_zone(zone)) 2161d1908362SMinchan Kim continue; 2162d1908362SMinchan Kim if (!cpuset_zone_allowed_hardwall(zone, GFP_KERNEL)) 2163d1908362SMinchan Kim continue; 2164929bea7cSKOSAKI Motohiro if (!zone->all_unreclaimable) 2165929bea7cSKOSAKI Motohiro return false; 2166d1908362SMinchan Kim } 2167d1908362SMinchan Kim 2168929bea7cSKOSAKI Motohiro return true; 21691da177e4SLinus Torvalds } 21701da177e4SLinus Torvalds 21711da177e4SLinus Torvalds /* 21721da177e4SLinus Torvalds * This is the main entry point to direct page reclaim. 21731da177e4SLinus Torvalds * 21741da177e4SLinus Torvalds * If a full scan of the inactive list fails to free enough memory then we 21751da177e4SLinus Torvalds * are "out of memory" and something needs to be killed. 21761da177e4SLinus Torvalds * 21771da177e4SLinus Torvalds * If the caller is !__GFP_FS then the probability of a failure is reasonably 21781da177e4SLinus Torvalds * high - the zone may be full of dirty or under-writeback pages, which this 21795b0830cbSJens Axboe * caller can't do much about. We kick the writeback threads and take explicit 21805b0830cbSJens Axboe * naps in the hope that some of these pages can be written. But if the 21815b0830cbSJens Axboe * allocating task holds filesystem locks which prevent writeout this might not 21825b0830cbSJens Axboe * work, and the allocation attempt will fail. 2183a41f24eaSNishanth Aravamudan * 2184a41f24eaSNishanth Aravamudan * returns: 0, if no pages reclaimed 2185a41f24eaSNishanth Aravamudan * else, the number of pages reclaimed 21861da177e4SLinus Torvalds */ 2187dac1d27bSMel Gorman static unsigned long do_try_to_free_pages(struct zonelist *zonelist, 2188a09ed5e0SYing Han struct scan_control *sc, 2189a09ed5e0SYing Han struct shrink_control *shrink) 21901da177e4SLinus Torvalds { 21911da177e4SLinus Torvalds int priority; 219269e05944SAndrew Morton unsigned long total_scanned = 0; 21931da177e4SLinus Torvalds struct reclaim_state *reclaim_state = current->reclaim_state; 2194dd1a239fSMel Gorman struct zoneref *z; 219554a6eb5cSMel Gorman struct zone *zone; 219622fba335SKOSAKI Motohiro unsigned long writeback_threshold; 21971da177e4SLinus Torvalds 2198c0ff7453SMiao Xie get_mems_allowed(); 2199873b4771SKeika Kobayashi delayacct_freepages_start(); 2200873b4771SKeika Kobayashi 2201e72e2bd6SKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) 2202f8891e5eSChristoph Lameter count_vm_event(ALLOCSTALL); 22031da177e4SLinus Torvalds 22041da177e4SLinus Torvalds for (priority = DEF_PRIORITY; priority >= 0; priority--) { 220566e1707bSBalbir Singh sc->nr_scanned = 0; 2206f7b7fd8fSRik van Riel if (!priority) 2207a433658cSKOSAKI Motohiro disable_swap_token(sc->mem_cgroup); 2208ac34a1a3SKAMEZAWA Hiroyuki shrink_zones(priority, zonelist, sc); 220966e1707bSBalbir Singh /* 221066e1707bSBalbir Singh * Don't shrink slabs when reclaiming memory from 221166e1707bSBalbir Singh * over limit cgroups 221266e1707bSBalbir Singh */ 2213e72e2bd6SKAMEZAWA Hiroyuki if (scanning_global_lru(sc)) { 2214c6a8a8c5SKOSAKI Motohiro unsigned long lru_pages = 0; 2215d4debc66SMel Gorman for_each_zone_zonelist(zone, z, zonelist, 2216d4debc66SMel Gorman gfp_zone(sc->gfp_mask)) { 2217c6a8a8c5SKOSAKI Motohiro if (!cpuset_zone_allowed_hardwall(zone, GFP_KERNEL)) 2218c6a8a8c5SKOSAKI Motohiro continue; 2219c6a8a8c5SKOSAKI Motohiro 2220c6a8a8c5SKOSAKI Motohiro lru_pages += zone_reclaimable_pages(zone); 2221c6a8a8c5SKOSAKI Motohiro } 2222c6a8a8c5SKOSAKI Motohiro 22231495f230SYing Han shrink_slab(shrink, sc->nr_scanned, lru_pages); 22241da177e4SLinus Torvalds if (reclaim_state) { 2225a79311c1SRik van Riel sc->nr_reclaimed += reclaim_state->reclaimed_slab; 22261da177e4SLinus Torvalds reclaim_state->reclaimed_slab = 0; 22271da177e4SLinus Torvalds } 222891a45470SKAMEZAWA Hiroyuki } 222966e1707bSBalbir Singh total_scanned += sc->nr_scanned; 2230bb21c7ceSKOSAKI Motohiro if (sc->nr_reclaimed >= sc->nr_to_reclaim) 22311da177e4SLinus Torvalds goto out; 22321da177e4SLinus Torvalds 22331da177e4SLinus Torvalds /* 22341da177e4SLinus Torvalds * Try to write back as many pages as we just scanned. This 22351da177e4SLinus Torvalds * tends to cause slow streaming writers to write data to the 22361da177e4SLinus Torvalds * disk smoothly, at the dirtying rate, which is nice. But 22371da177e4SLinus Torvalds * that's undesirable in laptop mode, where we *want* lumpy 22381da177e4SLinus Torvalds * writeout. So in laptop mode, write out the whole world. 22391da177e4SLinus Torvalds */ 224022fba335SKOSAKI Motohiro writeback_threshold = sc->nr_to_reclaim + sc->nr_to_reclaim / 2; 224122fba335SKOSAKI Motohiro if (total_scanned > writeback_threshold) { 224203ba3782SJens Axboe wakeup_flusher_threads(laptop_mode ? 0 : total_scanned); 224366e1707bSBalbir Singh sc->may_writepage = 1; 22441da177e4SLinus Torvalds } 22451da177e4SLinus Torvalds 22461da177e4SLinus Torvalds /* Take a nap, wait for some writeback to complete */ 22477b51755cSKOSAKI Motohiro if (!sc->hibernation_mode && sc->nr_scanned && 22480e093d99SMel Gorman priority < DEF_PRIORITY - 2) { 22490e093d99SMel Gorman struct zone *preferred_zone; 22500e093d99SMel Gorman 22510e093d99SMel Gorman first_zones_zonelist(zonelist, gfp_zone(sc->gfp_mask), 2252f33261d7SDavid Rientjes &cpuset_current_mems_allowed, 2253f33261d7SDavid Rientjes &preferred_zone); 22540e093d99SMel Gorman wait_iff_congested(preferred_zone, BLK_RW_ASYNC, HZ/10); 22550e093d99SMel Gorman } 22561da177e4SLinus Torvalds } 2257bb21c7ceSKOSAKI Motohiro 22581da177e4SLinus Torvalds out: 2259873b4771SKeika Kobayashi delayacct_freepages_end(); 2260c0ff7453SMiao Xie put_mems_allowed(); 2261873b4771SKeika Kobayashi 2262bb21c7ceSKOSAKI Motohiro if (sc->nr_reclaimed) 2263bb21c7ceSKOSAKI Motohiro return sc->nr_reclaimed; 2264bb21c7ceSKOSAKI Motohiro 2265929bea7cSKOSAKI Motohiro /* 2266929bea7cSKOSAKI Motohiro * As hibernation is going on, kswapd is freezed so that it can't mark 2267929bea7cSKOSAKI Motohiro * the zone into all_unreclaimable. Thus bypassing all_unreclaimable 2268929bea7cSKOSAKI Motohiro * check. 2269929bea7cSKOSAKI Motohiro */ 2270929bea7cSKOSAKI Motohiro if (oom_killer_disabled) 2271929bea7cSKOSAKI Motohiro return 0; 2272929bea7cSKOSAKI Motohiro 2273bb21c7ceSKOSAKI Motohiro /* top priority shrink_zones still had more to do? don't OOM, then */ 2274d1908362SMinchan Kim if (scanning_global_lru(sc) && !all_unreclaimable(zonelist, sc)) 2275bb21c7ceSKOSAKI Motohiro return 1; 2276bb21c7ceSKOSAKI Motohiro 2277bb21c7ceSKOSAKI Motohiro return 0; 22781da177e4SLinus Torvalds } 22791da177e4SLinus Torvalds 2280dac1d27bSMel Gorman unsigned long try_to_free_pages(struct zonelist *zonelist, int order, 2281327c0e96SKAMEZAWA Hiroyuki gfp_t gfp_mask, nodemask_t *nodemask) 228266e1707bSBalbir Singh { 228333906bc5SMel Gorman unsigned long nr_reclaimed; 228466e1707bSBalbir Singh struct scan_control sc = { 228566e1707bSBalbir Singh .gfp_mask = gfp_mask, 228666e1707bSBalbir Singh .may_writepage = !laptop_mode, 228722fba335SKOSAKI Motohiro .nr_to_reclaim = SWAP_CLUSTER_MAX, 2288a6dc60f8SJohannes Weiner .may_unmap = 1, 22892e2e4259SKOSAKI Motohiro .may_swap = 1, 229066e1707bSBalbir Singh .order = order, 229166e1707bSBalbir Singh .mem_cgroup = NULL, 2292327c0e96SKAMEZAWA Hiroyuki .nodemask = nodemask, 229366e1707bSBalbir Singh }; 2294a09ed5e0SYing Han struct shrink_control shrink = { 2295a09ed5e0SYing Han .gfp_mask = sc.gfp_mask, 2296a09ed5e0SYing Han }; 229766e1707bSBalbir Singh 229833906bc5SMel Gorman trace_mm_vmscan_direct_reclaim_begin(order, 229933906bc5SMel Gorman sc.may_writepage, 230033906bc5SMel Gorman gfp_mask); 230133906bc5SMel Gorman 2302a09ed5e0SYing Han nr_reclaimed = do_try_to_free_pages(zonelist, &sc, &shrink); 230333906bc5SMel Gorman 230433906bc5SMel Gorman trace_mm_vmscan_direct_reclaim_end(nr_reclaimed); 230533906bc5SMel Gorman 230633906bc5SMel Gorman return nr_reclaimed; 230766e1707bSBalbir Singh } 230866e1707bSBalbir Singh 230900f0b825SBalbir Singh #ifdef CONFIG_CGROUP_MEM_RES_CTLR 231066e1707bSBalbir Singh 23114e416953SBalbir Singh unsigned long mem_cgroup_shrink_node_zone(struct mem_cgroup *mem, 23124e416953SBalbir Singh gfp_t gfp_mask, bool noswap, 23130ae5e89cSYing Han struct zone *zone, 23140ae5e89cSYing Han unsigned long *nr_scanned) 23154e416953SBalbir Singh { 23164e416953SBalbir Singh struct scan_control sc = { 23170ae5e89cSYing Han .nr_scanned = 0, 2318b8f5c566SKOSAKI Motohiro .nr_to_reclaim = SWAP_CLUSTER_MAX, 23194e416953SBalbir Singh .may_writepage = !laptop_mode, 23204e416953SBalbir Singh .may_unmap = 1, 23214e416953SBalbir Singh .may_swap = !noswap, 23224e416953SBalbir Singh .order = 0, 23234e416953SBalbir Singh .mem_cgroup = mem, 23244e416953SBalbir Singh }; 23250ae5e89cSYing Han 23264e416953SBalbir Singh sc.gfp_mask = (gfp_mask & GFP_RECLAIM_MASK) | 23274e416953SBalbir Singh (GFP_HIGHUSER_MOVABLE & ~GFP_RECLAIM_MASK); 2328bdce6d9eSKOSAKI Motohiro 2329bdce6d9eSKOSAKI Motohiro trace_mm_vmscan_memcg_softlimit_reclaim_begin(0, 2330bdce6d9eSKOSAKI Motohiro sc.may_writepage, 2331bdce6d9eSKOSAKI Motohiro sc.gfp_mask); 2332bdce6d9eSKOSAKI Motohiro 23334e416953SBalbir Singh /* 23344e416953SBalbir Singh * NOTE: Although we can get the priority field, using it 23354e416953SBalbir Singh * here is not a good idea, since it limits the pages we can scan. 23364e416953SBalbir Singh * if we don't reclaim here, the shrink_zone from balance_pgdat 23374e416953SBalbir Singh * will pick up pages from other mem cgroup's as well. We hack 23384e416953SBalbir Singh * the priority and make it zero. 23394e416953SBalbir Singh */ 23404e416953SBalbir Singh shrink_zone(0, zone, &sc); 2341bdce6d9eSKOSAKI Motohiro 2342bdce6d9eSKOSAKI Motohiro trace_mm_vmscan_memcg_softlimit_reclaim_end(sc.nr_reclaimed); 2343bdce6d9eSKOSAKI Motohiro 23440ae5e89cSYing Han *nr_scanned = sc.nr_scanned; 23454e416953SBalbir Singh return sc.nr_reclaimed; 23464e416953SBalbir Singh } 23474e416953SBalbir Singh 2348e1a1cd59SBalbir Singh unsigned long try_to_free_mem_cgroup_pages(struct mem_cgroup *mem_cont, 23498c7c6e34SKAMEZAWA Hiroyuki gfp_t gfp_mask, 2350185efc0fSJohannes Weiner bool noswap) 235166e1707bSBalbir Singh { 23524e416953SBalbir Singh struct zonelist *zonelist; 2353bdce6d9eSKOSAKI Motohiro unsigned long nr_reclaimed; 2354889976dbSYing Han int nid; 235566e1707bSBalbir Singh struct scan_control sc = { 235666e1707bSBalbir Singh .may_writepage = !laptop_mode, 2357a6dc60f8SJohannes Weiner .may_unmap = 1, 23582e2e4259SKOSAKI Motohiro .may_swap = !noswap, 235922fba335SKOSAKI Motohiro .nr_to_reclaim = SWAP_CLUSTER_MAX, 236066e1707bSBalbir Singh .order = 0, 236166e1707bSBalbir Singh .mem_cgroup = mem_cont, 2362327c0e96SKAMEZAWA Hiroyuki .nodemask = NULL, /* we don't care the placement */ 2363a09ed5e0SYing Han .gfp_mask = (gfp_mask & GFP_RECLAIM_MASK) | 2364a09ed5e0SYing Han (GFP_HIGHUSER_MOVABLE & ~GFP_RECLAIM_MASK), 2365a09ed5e0SYing Han }; 2366a09ed5e0SYing Han struct shrink_control shrink = { 2367a09ed5e0SYing Han .gfp_mask = sc.gfp_mask, 236866e1707bSBalbir Singh }; 236966e1707bSBalbir Singh 2370889976dbSYing Han /* 2371889976dbSYing Han * Unlike direct reclaim via alloc_pages(), memcg's reclaim doesn't 2372889976dbSYing Han * take care of from where we get pages. So the node where we start the 2373889976dbSYing Han * scan does not need to be the current node. 2374889976dbSYing Han */ 2375889976dbSYing Han nid = mem_cgroup_select_victim_node(mem_cont); 2376889976dbSYing Han 2377889976dbSYing Han zonelist = NODE_DATA(nid)->node_zonelists; 2378bdce6d9eSKOSAKI Motohiro 2379bdce6d9eSKOSAKI Motohiro trace_mm_vmscan_memcg_reclaim_begin(0, 2380bdce6d9eSKOSAKI Motohiro sc.may_writepage, 2381bdce6d9eSKOSAKI Motohiro sc.gfp_mask); 2382bdce6d9eSKOSAKI Motohiro 2383a09ed5e0SYing Han nr_reclaimed = do_try_to_free_pages(zonelist, &sc, &shrink); 2384bdce6d9eSKOSAKI Motohiro 2385bdce6d9eSKOSAKI Motohiro trace_mm_vmscan_memcg_reclaim_end(nr_reclaimed); 2386bdce6d9eSKOSAKI Motohiro 2387bdce6d9eSKOSAKI Motohiro return nr_reclaimed; 238866e1707bSBalbir Singh } 238966e1707bSBalbir Singh #endif 239066e1707bSBalbir Singh 23911741c877SMel Gorman /* 23921741c877SMel Gorman * pgdat_balanced is used when checking if a node is balanced for high-order 23931741c877SMel Gorman * allocations. Only zones that meet watermarks and are in a zone allowed 23941741c877SMel Gorman * by the callers classzone_idx are added to balanced_pages. The total of 23951741c877SMel Gorman * balanced pages must be at least 25% of the zones allowed by classzone_idx 23961741c877SMel Gorman * for the node to be considered balanced. Forcing all zones to be balanced 23971741c877SMel Gorman * for high orders can cause excessive reclaim when there are imbalanced zones. 23981741c877SMel Gorman * The choice of 25% is due to 23991741c877SMel Gorman * o a 16M DMA zone that is balanced will not balance a zone on any 24001741c877SMel Gorman * reasonable sized machine 24011741c877SMel Gorman * o On all other machines, the top zone must be at least a reasonable 240225985edcSLucas De Marchi * percentage of the middle zones. For example, on 32-bit x86, highmem 24031741c877SMel Gorman * would need to be at least 256M for it to be balance a whole node. 24041741c877SMel Gorman * Similarly, on x86-64 the Normal zone would need to be at least 1G 24051741c877SMel Gorman * to balance a node on its own. These seemed like reasonable ratios. 24061741c877SMel Gorman */ 24071741c877SMel Gorman static bool pgdat_balanced(pg_data_t *pgdat, unsigned long balanced_pages, 24081741c877SMel Gorman int classzone_idx) 24091741c877SMel Gorman { 24101741c877SMel Gorman unsigned long present_pages = 0; 24111741c877SMel Gorman int i; 24121741c877SMel Gorman 24131741c877SMel Gorman for (i = 0; i <= classzone_idx; i++) 24141741c877SMel Gorman present_pages += pgdat->node_zones[i].present_pages; 24151741c877SMel Gorman 24164746efdeSShaohua Li /* A special case here: if zone has no page, we think it's balanced */ 24174746efdeSShaohua Li return balanced_pages >= (present_pages >> 2); 24181741c877SMel Gorman } 24191741c877SMel Gorman 2420f50de2d3SMel Gorman /* is kswapd sleeping prematurely? */ 2421dc83edd9SMel Gorman static bool sleeping_prematurely(pg_data_t *pgdat, int order, long remaining, 2422dc83edd9SMel Gorman int classzone_idx) 2423f50de2d3SMel Gorman { 2424bb3ab596SKOSAKI Motohiro int i; 24251741c877SMel Gorman unsigned long balanced = 0; 24261741c877SMel Gorman bool all_zones_ok = true; 2427f50de2d3SMel Gorman 2428f50de2d3SMel Gorman /* If a direct reclaimer woke kswapd within HZ/10, it's premature */ 2429f50de2d3SMel Gorman if (remaining) 2430dc83edd9SMel Gorman return true; 2431f50de2d3SMel Gorman 24320abdee2bSMel Gorman /* Check the watermark levels */ 243308951e54SMel Gorman for (i = 0; i <= classzone_idx; i++) { 2434bb3ab596SKOSAKI Motohiro struct zone *zone = pgdat->node_zones + i; 2435bb3ab596SKOSAKI Motohiro 2436bb3ab596SKOSAKI Motohiro if (!populated_zone(zone)) 2437bb3ab596SKOSAKI Motohiro continue; 2438bb3ab596SKOSAKI Motohiro 2439355b09c4SMel Gorman /* 2440355b09c4SMel Gorman * balance_pgdat() skips over all_unreclaimable after 2441355b09c4SMel Gorman * DEF_PRIORITY. Effectively, it considers them balanced so 2442355b09c4SMel Gorman * they must be considered balanced here as well if kswapd 2443355b09c4SMel Gorman * is to sleep 2444355b09c4SMel Gorman */ 2445355b09c4SMel Gorman if (zone->all_unreclaimable) { 2446355b09c4SMel Gorman balanced += zone->present_pages; 2447de3fab39SKOSAKI Motohiro continue; 2448355b09c4SMel Gorman } 2449de3fab39SKOSAKI Motohiro 245088f5acf8SMel Gorman if (!zone_watermark_ok_safe(zone, order, high_wmark_pages(zone), 2451da175d06SMel Gorman i, 0)) 24521741c877SMel Gorman all_zones_ok = false; 24531741c877SMel Gorman else 24541741c877SMel Gorman balanced += zone->present_pages; 2455bb3ab596SKOSAKI Motohiro } 2456f50de2d3SMel Gorman 24571741c877SMel Gorman /* 24581741c877SMel Gorman * For high-order requests, the balanced zones must contain at least 24591741c877SMel Gorman * 25% of the nodes pages for kswapd to sleep. For order-0, all zones 24601741c877SMel Gorman * must be balanced 24611741c877SMel Gorman */ 24621741c877SMel Gorman if (order) 2463afc7e326SJohannes Weiner return !pgdat_balanced(pgdat, balanced, classzone_idx); 24641741c877SMel Gorman else 24651741c877SMel Gorman return !all_zones_ok; 2466f50de2d3SMel Gorman } 2467f50de2d3SMel Gorman 24681da177e4SLinus Torvalds /* 24691da177e4SLinus Torvalds * For kswapd, balance_pgdat() will work across all this node's zones until 247041858966SMel Gorman * they are all at high_wmark_pages(zone). 24711da177e4SLinus Torvalds * 24720abdee2bSMel Gorman * Returns the final order kswapd was reclaiming at 24731da177e4SLinus Torvalds * 24741da177e4SLinus Torvalds * There is special handling here for zones which are full of pinned pages. 24751da177e4SLinus Torvalds * This can happen if the pages are all mlocked, or if they are all used by 24761da177e4SLinus Torvalds * device drivers (say, ZONE_DMA). Or if they are all in use by hugetlb. 24771da177e4SLinus Torvalds * What we do is to detect the case where all pages in the zone have been 24781da177e4SLinus Torvalds * scanned twice and there has been zero successful reclaim. Mark the zone as 24791da177e4SLinus Torvalds * dead and from now on, only perform a short scan. Basically we're polling 24801da177e4SLinus Torvalds * the zone for when the problem goes away. 24811da177e4SLinus Torvalds * 24821da177e4SLinus Torvalds * kswapd scans the zones in the highmem->normal->dma direction. It skips 248341858966SMel Gorman * zones which have free_pages > high_wmark_pages(zone), but once a zone is 248441858966SMel Gorman * found to have free_pages <= high_wmark_pages(zone), we scan that zone and the 248541858966SMel Gorman * lower zones regardless of the number of free pages in the lower zones. This 248641858966SMel Gorman * interoperates with the page allocator fallback scheme to ensure that aging 248741858966SMel Gorman * of pages is balanced across the zones. 24881da177e4SLinus Torvalds */ 248999504748SMel Gorman static unsigned long balance_pgdat(pg_data_t *pgdat, int order, 2490dc83edd9SMel Gorman int *classzone_idx) 24911da177e4SLinus Torvalds { 24921da177e4SLinus Torvalds int all_zones_ok; 24931741c877SMel Gorman unsigned long balanced; 24941da177e4SLinus Torvalds int priority; 24951da177e4SLinus Torvalds int i; 249699504748SMel Gorman int end_zone = 0; /* Inclusive. 0 = ZONE_DMA */ 249769e05944SAndrew Morton unsigned long total_scanned; 24981da177e4SLinus Torvalds struct reclaim_state *reclaim_state = current->reclaim_state; 24990ae5e89cSYing Han unsigned long nr_soft_reclaimed; 25000ae5e89cSYing Han unsigned long nr_soft_scanned; 2501179e9639SAndrew Morton struct scan_control sc = { 2502179e9639SAndrew Morton .gfp_mask = GFP_KERNEL, 2503a6dc60f8SJohannes Weiner .may_unmap = 1, 25042e2e4259SKOSAKI Motohiro .may_swap = 1, 250522fba335SKOSAKI Motohiro /* 250622fba335SKOSAKI Motohiro * kswapd doesn't want to be bailed out while reclaim. because 250722fba335SKOSAKI Motohiro * we want to put equal scanning pressure on each zone. 250822fba335SKOSAKI Motohiro */ 250922fba335SKOSAKI Motohiro .nr_to_reclaim = ULONG_MAX, 25105ad333ebSAndy Whitcroft .order = order, 251166e1707bSBalbir Singh .mem_cgroup = NULL, 2512179e9639SAndrew Morton }; 2513a09ed5e0SYing Han struct shrink_control shrink = { 2514a09ed5e0SYing Han .gfp_mask = sc.gfp_mask, 2515a09ed5e0SYing Han }; 25161da177e4SLinus Torvalds loop_again: 25171da177e4SLinus Torvalds total_scanned = 0; 2518a79311c1SRik van Riel sc.nr_reclaimed = 0; 2519c0bbbc73SChristoph Lameter sc.may_writepage = !laptop_mode; 2520f8891e5eSChristoph Lameter count_vm_event(PAGEOUTRUN); 25211da177e4SLinus Torvalds 25221da177e4SLinus Torvalds for (priority = DEF_PRIORITY; priority >= 0; priority--) { 25231da177e4SLinus Torvalds unsigned long lru_pages = 0; 2524bb3ab596SKOSAKI Motohiro int has_under_min_watermark_zone = 0; 25251da177e4SLinus Torvalds 2526f7b7fd8fSRik van Riel /* The swap token gets in the way of swapout... */ 2527f7b7fd8fSRik van Riel if (!priority) 2528a433658cSKOSAKI Motohiro disable_swap_token(NULL); 2529f7b7fd8fSRik van Riel 25301da177e4SLinus Torvalds all_zones_ok = 1; 25311741c877SMel Gorman balanced = 0; 25321da177e4SLinus Torvalds 25331da177e4SLinus Torvalds /* 25341da177e4SLinus Torvalds * Scan in the highmem->dma direction for the highest 25351da177e4SLinus Torvalds * zone which needs scanning 25361da177e4SLinus Torvalds */ 25371da177e4SLinus Torvalds for (i = pgdat->nr_zones - 1; i >= 0; i--) { 25381da177e4SLinus Torvalds struct zone *zone = pgdat->node_zones + i; 25391da177e4SLinus Torvalds 2540f3fe6512SCon Kolivas if (!populated_zone(zone)) 25411da177e4SLinus Torvalds continue; 25421da177e4SLinus Torvalds 254393e4a89aSKOSAKI Motohiro if (zone->all_unreclaimable && priority != DEF_PRIORITY) 25441da177e4SLinus Torvalds continue; 25451da177e4SLinus Torvalds 2546556adecbSRik van Riel /* 2547556adecbSRik van Riel * Do some background aging of the anon list, to give 2548556adecbSRik van Riel * pages a chance to be referenced before reclaiming. 2549556adecbSRik van Riel */ 255014797e23SKOSAKI Motohiro if (inactive_anon_is_low(zone, &sc)) 2551556adecbSRik van Riel shrink_active_list(SWAP_CLUSTER_MAX, zone, 2552556adecbSRik van Riel &sc, priority, 0); 2553556adecbSRik van Riel 255488f5acf8SMel Gorman if (!zone_watermark_ok_safe(zone, order, 255541858966SMel Gorman high_wmark_pages(zone), 0, 0)) { 25561da177e4SLinus Torvalds end_zone = i; 2557e1dbeda6SAndrew Morton break; 2558439423f6SShaohua Li } else { 2559439423f6SShaohua Li /* If balanced, clear the congested flag */ 2560439423f6SShaohua Li zone_clear_flag(zone, ZONE_CONGESTED); 25611da177e4SLinus Torvalds } 25621da177e4SLinus Torvalds } 2563e1dbeda6SAndrew Morton if (i < 0) 25641da177e4SLinus Torvalds goto out; 2565e1dbeda6SAndrew Morton 25661da177e4SLinus Torvalds for (i = 0; i <= end_zone; i++) { 25671da177e4SLinus Torvalds struct zone *zone = pgdat->node_zones + i; 25681da177e4SLinus Torvalds 2569adea02a1SWu Fengguang lru_pages += zone_reclaimable_pages(zone); 25701da177e4SLinus Torvalds } 25711da177e4SLinus Torvalds 25721da177e4SLinus Torvalds /* 25731da177e4SLinus Torvalds * Now scan the zone in the dma->highmem direction, stopping 25741da177e4SLinus Torvalds * at the last zone which needs scanning. 25751da177e4SLinus Torvalds * 25761da177e4SLinus Torvalds * We do this because the page allocator works in the opposite 25771da177e4SLinus Torvalds * direction. This prevents the page allocator from allocating 25781da177e4SLinus Torvalds * pages behind kswapd's direction of progress, which would 25791da177e4SLinus Torvalds * cause too much scanning of the lower zones. 25801da177e4SLinus Torvalds */ 25811da177e4SLinus Torvalds for (i = 0; i <= end_zone; i++) { 25821da177e4SLinus Torvalds struct zone *zone = pgdat->node_zones + i; 2583b15e0905Sakpm@osdl.org int nr_slab; 25848afdceceSMel Gorman unsigned long balance_gap; 25851da177e4SLinus Torvalds 2586f3fe6512SCon Kolivas if (!populated_zone(zone)) 25871da177e4SLinus Torvalds continue; 25881da177e4SLinus Torvalds 258993e4a89aSKOSAKI Motohiro if (zone->all_unreclaimable && priority != DEF_PRIORITY) 25901da177e4SLinus Torvalds continue; 25911da177e4SLinus Torvalds 25921da177e4SLinus Torvalds sc.nr_scanned = 0; 25934e416953SBalbir Singh 25940ae5e89cSYing Han nr_soft_scanned = 0; 25954e416953SBalbir Singh /* 25964e416953SBalbir Singh * Call soft limit reclaim before calling shrink_zone. 25974e416953SBalbir Singh */ 25980ae5e89cSYing Han nr_soft_reclaimed = mem_cgroup_soft_limit_reclaim(zone, 25990ae5e89cSYing Han order, sc.gfp_mask, 26000ae5e89cSYing Han &nr_soft_scanned); 26010ae5e89cSYing Han sc.nr_reclaimed += nr_soft_reclaimed; 26020ae5e89cSYing Han total_scanned += nr_soft_scanned; 260300918b6aSKOSAKI Motohiro 260432a4330dSRik van Riel /* 26058afdceceSMel Gorman * We put equal pressure on every zone, unless 26068afdceceSMel Gorman * one zone has way too many pages free 26078afdceceSMel Gorman * already. The "too many pages" is defined 26088afdceceSMel Gorman * as the high wmark plus a "gap" where the 26098afdceceSMel Gorman * gap is either the low watermark or 1% 26108afdceceSMel Gorman * of the zone, whichever is smaller. 261132a4330dSRik van Riel */ 26128afdceceSMel Gorman balance_gap = min(low_wmark_pages(zone), 26138afdceceSMel Gorman (zone->present_pages + 26148afdceceSMel Gorman KSWAPD_ZONE_BALANCE_GAP_RATIO-1) / 26158afdceceSMel Gorman KSWAPD_ZONE_BALANCE_GAP_RATIO); 261688f5acf8SMel Gorman if (!zone_watermark_ok_safe(zone, order, 26178afdceceSMel Gorman high_wmark_pages(zone) + balance_gap, 2618d7868daeSMel Gorman end_zone, 0)) { 2619a79311c1SRik van Riel shrink_zone(priority, zone, &sc); 2620d7868daeSMel Gorman 26211da177e4SLinus Torvalds reclaim_state->reclaimed_slab = 0; 26221495f230SYing Han nr_slab = shrink_slab(&shrink, sc.nr_scanned, lru_pages); 2623a79311c1SRik van Riel sc.nr_reclaimed += reclaim_state->reclaimed_slab; 26241da177e4SLinus Torvalds total_scanned += sc.nr_scanned; 26255a03b051SAndrea Arcangeli 2626d7868daeSMel Gorman if (nr_slab == 0 && !zone_reclaimable(zone)) 262793e4a89aSKOSAKI Motohiro zone->all_unreclaimable = 1; 2628d7868daeSMel Gorman } 2629d7868daeSMel Gorman 26301da177e4SLinus Torvalds /* 26311da177e4SLinus Torvalds * If we've done a decent amount of scanning and 26321da177e4SLinus Torvalds * the reclaim ratio is low, start doing writepage 26331da177e4SLinus Torvalds * even in laptop mode 26341da177e4SLinus Torvalds */ 26351da177e4SLinus Torvalds if (total_scanned > SWAP_CLUSTER_MAX * 2 && 2636a79311c1SRik van Riel total_scanned > sc.nr_reclaimed + sc.nr_reclaimed / 2) 26371da177e4SLinus Torvalds sc.may_writepage = 1; 2638bb3ab596SKOSAKI Motohiro 2639215ddd66SMel Gorman if (zone->all_unreclaimable) { 2640215ddd66SMel Gorman if (end_zone && end_zone == i) 2641215ddd66SMel Gorman end_zone--; 2642d7868daeSMel Gorman continue; 2643215ddd66SMel Gorman } 2644d7868daeSMel Gorman 264588f5acf8SMel Gorman if (!zone_watermark_ok_safe(zone, order, 264645973d74SMinchan Kim high_wmark_pages(zone), end_zone, 0)) { 264745973d74SMinchan Kim all_zones_ok = 0; 2648bb3ab596SKOSAKI Motohiro /* 264945973d74SMinchan Kim * We are still under min water mark. This 265045973d74SMinchan Kim * means that we have a GFP_ATOMIC allocation 265145973d74SMinchan Kim * failure risk. Hurry up! 2652bb3ab596SKOSAKI Motohiro */ 265388f5acf8SMel Gorman if (!zone_watermark_ok_safe(zone, order, 265445973d74SMinchan Kim min_wmark_pages(zone), end_zone, 0)) 2655bb3ab596SKOSAKI Motohiro has_under_min_watermark_zone = 1; 26560e093d99SMel Gorman } else { 26570e093d99SMel Gorman /* 26580e093d99SMel Gorman * If a zone reaches its high watermark, 26590e093d99SMel Gorman * consider it to be no longer congested. It's 26600e093d99SMel Gorman * possible there are dirty pages backed by 26610e093d99SMel Gorman * congested BDIs but as pressure is relieved, 26620e093d99SMel Gorman * spectulatively avoid congestion waits 26630e093d99SMel Gorman */ 26640e093d99SMel Gorman zone_clear_flag(zone, ZONE_CONGESTED); 2665dc83edd9SMel Gorman if (i <= *classzone_idx) 26661741c877SMel Gorman balanced += zone->present_pages; 266745973d74SMinchan Kim } 2668bb3ab596SKOSAKI Motohiro 26691da177e4SLinus Torvalds } 2670dc83edd9SMel Gorman if (all_zones_ok || (order && pgdat_balanced(pgdat, balanced, *classzone_idx))) 26711da177e4SLinus Torvalds break; /* kswapd: all done */ 26721da177e4SLinus Torvalds /* 26731da177e4SLinus Torvalds * OK, kswapd is getting into trouble. Take a nap, then take 26741da177e4SLinus Torvalds * another pass across the zones. 26751da177e4SLinus Torvalds */ 2676bb3ab596SKOSAKI Motohiro if (total_scanned && (priority < DEF_PRIORITY - 2)) { 2677bb3ab596SKOSAKI Motohiro if (has_under_min_watermark_zone) 2678bb3ab596SKOSAKI Motohiro count_vm_event(KSWAPD_SKIP_CONGESTION_WAIT); 2679bb3ab596SKOSAKI Motohiro else 26808aa7e847SJens Axboe congestion_wait(BLK_RW_ASYNC, HZ/10); 2681bb3ab596SKOSAKI Motohiro } 26821da177e4SLinus Torvalds 26831da177e4SLinus Torvalds /* 26841da177e4SLinus Torvalds * We do this so kswapd doesn't build up large priorities for 26851da177e4SLinus Torvalds * example when it is freeing in parallel with allocators. It 26861da177e4SLinus Torvalds * matches the direct reclaim path behaviour in terms of impact 26871da177e4SLinus Torvalds * on zone->*_priority. 26881da177e4SLinus Torvalds */ 2689a79311c1SRik van Riel if (sc.nr_reclaimed >= SWAP_CLUSTER_MAX) 26901da177e4SLinus Torvalds break; 26911da177e4SLinus Torvalds } 26921da177e4SLinus Torvalds out: 269399504748SMel Gorman 269499504748SMel Gorman /* 269599504748SMel Gorman * order-0: All zones must meet high watermark for a balanced node 26961741c877SMel Gorman * high-order: Balanced zones must make up at least 25% of the node 26971741c877SMel Gorman * for the node to be balanced 269899504748SMel Gorman */ 2699dc83edd9SMel Gorman if (!(all_zones_ok || (order && pgdat_balanced(pgdat, balanced, *classzone_idx)))) { 27001da177e4SLinus Torvalds cond_resched(); 27018357376dSRafael J. Wysocki 27028357376dSRafael J. Wysocki try_to_freeze(); 27038357376dSRafael J. Wysocki 270473ce02e9SKOSAKI Motohiro /* 270573ce02e9SKOSAKI Motohiro * Fragmentation may mean that the system cannot be 270673ce02e9SKOSAKI Motohiro * rebalanced for high-order allocations in all zones. 270773ce02e9SKOSAKI Motohiro * At this point, if nr_reclaimed < SWAP_CLUSTER_MAX, 270873ce02e9SKOSAKI Motohiro * it means the zones have been fully scanned and are still 270973ce02e9SKOSAKI Motohiro * not balanced. For high-order allocations, there is 271073ce02e9SKOSAKI Motohiro * little point trying all over again as kswapd may 271173ce02e9SKOSAKI Motohiro * infinite loop. 271273ce02e9SKOSAKI Motohiro * 271373ce02e9SKOSAKI Motohiro * Instead, recheck all watermarks at order-0 as they 271473ce02e9SKOSAKI Motohiro * are the most important. If watermarks are ok, kswapd will go 271573ce02e9SKOSAKI Motohiro * back to sleep. High-order users can still perform direct 271673ce02e9SKOSAKI Motohiro * reclaim if they wish. 271773ce02e9SKOSAKI Motohiro */ 271873ce02e9SKOSAKI Motohiro if (sc.nr_reclaimed < SWAP_CLUSTER_MAX) 271973ce02e9SKOSAKI Motohiro order = sc.order = 0; 272073ce02e9SKOSAKI Motohiro 27211da177e4SLinus Torvalds goto loop_again; 27221da177e4SLinus Torvalds } 27231da177e4SLinus Torvalds 272499504748SMel Gorman /* 272599504748SMel Gorman * If kswapd was reclaiming at a higher order, it has the option of 272699504748SMel Gorman * sleeping without all zones being balanced. Before it does, it must 272799504748SMel Gorman * ensure that the watermarks for order-0 on *all* zones are met and 272899504748SMel Gorman * that the congestion flags are cleared. The congestion flag must 272999504748SMel Gorman * be cleared as kswapd is the only mechanism that clears the flag 273099504748SMel Gorman * and it is potentially going to sleep here. 273199504748SMel Gorman */ 273299504748SMel Gorman if (order) { 273399504748SMel Gorman for (i = 0; i <= end_zone; i++) { 273499504748SMel Gorman struct zone *zone = pgdat->node_zones + i; 273599504748SMel Gorman 273699504748SMel Gorman if (!populated_zone(zone)) 273799504748SMel Gorman continue; 273899504748SMel Gorman 273999504748SMel Gorman if (zone->all_unreclaimable && priority != DEF_PRIORITY) 274099504748SMel Gorman continue; 274199504748SMel Gorman 274299504748SMel Gorman /* Confirm the zone is balanced for order-0 */ 274399504748SMel Gorman if (!zone_watermark_ok(zone, 0, 274499504748SMel Gorman high_wmark_pages(zone), 0, 0)) { 274599504748SMel Gorman order = sc.order = 0; 274699504748SMel Gorman goto loop_again; 274799504748SMel Gorman } 274899504748SMel Gorman 274999504748SMel Gorman /* If balanced, clear the congested flag */ 275099504748SMel Gorman zone_clear_flag(zone, ZONE_CONGESTED); 2751*16fb9512SShaohua Li if (i <= *classzone_idx) 2752*16fb9512SShaohua Li balanced += zone->present_pages; 275399504748SMel Gorman } 275499504748SMel Gorman } 275599504748SMel Gorman 27560abdee2bSMel Gorman /* 27570abdee2bSMel Gorman * Return the order we were reclaiming at so sleeping_prematurely() 27580abdee2bSMel Gorman * makes a decision on the order we were last reclaiming at. However, 27590abdee2bSMel Gorman * if another caller entered the allocator slow path while kswapd 27600abdee2bSMel Gorman * was awake, order will remain at the higher level 27610abdee2bSMel Gorman */ 2762dc83edd9SMel Gorman *classzone_idx = end_zone; 27630abdee2bSMel Gorman return order; 27641da177e4SLinus Torvalds } 27651da177e4SLinus Torvalds 2766dc83edd9SMel Gorman static void kswapd_try_to_sleep(pg_data_t *pgdat, int order, int classzone_idx) 2767f0bc0a60SKOSAKI Motohiro { 2768f0bc0a60SKOSAKI Motohiro long remaining = 0; 2769f0bc0a60SKOSAKI Motohiro DEFINE_WAIT(wait); 2770f0bc0a60SKOSAKI Motohiro 2771f0bc0a60SKOSAKI Motohiro if (freezing(current) || kthread_should_stop()) 2772f0bc0a60SKOSAKI Motohiro return; 2773f0bc0a60SKOSAKI Motohiro 2774f0bc0a60SKOSAKI Motohiro prepare_to_wait(&pgdat->kswapd_wait, &wait, TASK_INTERRUPTIBLE); 2775f0bc0a60SKOSAKI Motohiro 2776f0bc0a60SKOSAKI Motohiro /* Try to sleep for a short interval */ 2777dc83edd9SMel Gorman if (!sleeping_prematurely(pgdat, order, remaining, classzone_idx)) { 2778f0bc0a60SKOSAKI Motohiro remaining = schedule_timeout(HZ/10); 2779f0bc0a60SKOSAKI Motohiro finish_wait(&pgdat->kswapd_wait, &wait); 2780f0bc0a60SKOSAKI Motohiro prepare_to_wait(&pgdat->kswapd_wait, &wait, TASK_INTERRUPTIBLE); 2781f0bc0a60SKOSAKI Motohiro } 2782f0bc0a60SKOSAKI Motohiro 2783f0bc0a60SKOSAKI Motohiro /* 2784f0bc0a60SKOSAKI Motohiro * After a short sleep, check if it was a premature sleep. If not, then 2785f0bc0a60SKOSAKI Motohiro * go fully to sleep until explicitly woken up. 2786f0bc0a60SKOSAKI Motohiro */ 2787dc83edd9SMel Gorman if (!sleeping_prematurely(pgdat, order, remaining, classzone_idx)) { 2788f0bc0a60SKOSAKI Motohiro trace_mm_vmscan_kswapd_sleep(pgdat->node_id); 2789f0bc0a60SKOSAKI Motohiro 2790f0bc0a60SKOSAKI Motohiro /* 2791f0bc0a60SKOSAKI Motohiro * vmstat counters are not perfectly accurate and the estimated 2792f0bc0a60SKOSAKI Motohiro * value for counters such as NR_FREE_PAGES can deviate from the 2793f0bc0a60SKOSAKI Motohiro * true value by nr_online_cpus * threshold. To avoid the zone 2794f0bc0a60SKOSAKI Motohiro * watermarks being breached while under pressure, we reduce the 2795f0bc0a60SKOSAKI Motohiro * per-cpu vmstat threshold while kswapd is awake and restore 2796f0bc0a60SKOSAKI Motohiro * them before going back to sleep. 2797f0bc0a60SKOSAKI Motohiro */ 2798f0bc0a60SKOSAKI Motohiro set_pgdat_percpu_threshold(pgdat, calculate_normal_threshold); 2799f0bc0a60SKOSAKI Motohiro schedule(); 2800f0bc0a60SKOSAKI Motohiro set_pgdat_percpu_threshold(pgdat, calculate_pressure_threshold); 2801f0bc0a60SKOSAKI Motohiro } else { 2802f0bc0a60SKOSAKI Motohiro if (remaining) 2803f0bc0a60SKOSAKI Motohiro count_vm_event(KSWAPD_LOW_WMARK_HIT_QUICKLY); 2804f0bc0a60SKOSAKI Motohiro else 2805f0bc0a60SKOSAKI Motohiro count_vm_event(KSWAPD_HIGH_WMARK_HIT_QUICKLY); 2806f0bc0a60SKOSAKI Motohiro } 2807f0bc0a60SKOSAKI Motohiro finish_wait(&pgdat->kswapd_wait, &wait); 2808f0bc0a60SKOSAKI Motohiro } 2809f0bc0a60SKOSAKI Motohiro 28101da177e4SLinus Torvalds /* 28111da177e4SLinus Torvalds * The background pageout daemon, started as a kernel thread 28121da177e4SLinus Torvalds * from the init process. 28131da177e4SLinus Torvalds * 28141da177e4SLinus Torvalds * This basically trickles out pages so that we have _some_ 28151da177e4SLinus Torvalds * free memory available even if there is no other activity 28161da177e4SLinus Torvalds * that frees anything up. This is needed for things like routing 28171da177e4SLinus Torvalds * etc, where we otherwise might have all activity going on in 28181da177e4SLinus Torvalds * asynchronous contexts that cannot page things out. 28191da177e4SLinus Torvalds * 28201da177e4SLinus Torvalds * If there are applications that are active memory-allocators 28211da177e4SLinus Torvalds * (most normal use), this basically shouldn't matter. 28221da177e4SLinus Torvalds */ 28231da177e4SLinus Torvalds static int kswapd(void *p) 28241da177e4SLinus Torvalds { 2825215ddd66SMel Gorman unsigned long order, new_order; 2826215ddd66SMel Gorman int classzone_idx, new_classzone_idx; 28271da177e4SLinus Torvalds pg_data_t *pgdat = (pg_data_t*)p; 28281da177e4SLinus Torvalds struct task_struct *tsk = current; 2829f0bc0a60SKOSAKI Motohiro 28301da177e4SLinus Torvalds struct reclaim_state reclaim_state = { 28311da177e4SLinus Torvalds .reclaimed_slab = 0, 28321da177e4SLinus Torvalds }; 2833a70f7302SRusty Russell const struct cpumask *cpumask = cpumask_of_node(pgdat->node_id); 28341da177e4SLinus Torvalds 2835cf40bd16SNick Piggin lockdep_set_current_reclaim_state(GFP_KERNEL); 2836cf40bd16SNick Piggin 2837174596a0SRusty Russell if (!cpumask_empty(cpumask)) 2838c5f59f08SMike Travis set_cpus_allowed_ptr(tsk, cpumask); 28391da177e4SLinus Torvalds current->reclaim_state = &reclaim_state; 28401da177e4SLinus Torvalds 28411da177e4SLinus Torvalds /* 28421da177e4SLinus Torvalds * Tell the memory management that we're a "memory allocator", 28431da177e4SLinus Torvalds * and that if we need more memory we should get access to it 28441da177e4SLinus Torvalds * regardless (see "__alloc_pages()"). "kswapd" should 28451da177e4SLinus Torvalds * never get caught in the normal page freeing logic. 28461da177e4SLinus Torvalds * 28471da177e4SLinus Torvalds * (Kswapd normally doesn't need memory anyway, but sometimes 28481da177e4SLinus Torvalds * you need a small amount of memory in order to be able to 28491da177e4SLinus Torvalds * page out something else, and this flag essentially protects 28501da177e4SLinus Torvalds * us from recursively trying to free more memory as we're 28511da177e4SLinus Torvalds * trying to free the first piece of memory in the first place). 28521da177e4SLinus Torvalds */ 2853930d9152SChristoph Lameter tsk->flags |= PF_MEMALLOC | PF_SWAPWRITE | PF_KSWAPD; 285483144186SRafael J. Wysocki set_freezable(); 28551da177e4SLinus Torvalds 2856215ddd66SMel Gorman order = new_order = 0; 2857215ddd66SMel Gorman classzone_idx = new_classzone_idx = pgdat->nr_zones - 1; 28581da177e4SLinus Torvalds for ( ; ; ) { 28598fe23e05SDavid Rientjes int ret; 28603e1d1d28SChristoph Lameter 2861215ddd66SMel Gorman /* 2862215ddd66SMel Gorman * If the last balance_pgdat was unsuccessful it's unlikely a 2863215ddd66SMel Gorman * new request of a similar or harder type will succeed soon 2864215ddd66SMel Gorman * so consider going to sleep on the basis we reclaimed at 2865215ddd66SMel Gorman */ 2866215ddd66SMel Gorman if (classzone_idx >= new_classzone_idx && order == new_order) { 28671da177e4SLinus Torvalds new_order = pgdat->kswapd_max_order; 286899504748SMel Gorman new_classzone_idx = pgdat->classzone_idx; 28691da177e4SLinus Torvalds pgdat->kswapd_max_order = 0; 2870215ddd66SMel Gorman pgdat->classzone_idx = pgdat->nr_zones - 1; 2871215ddd66SMel Gorman } 2872215ddd66SMel Gorman 287399504748SMel Gorman if (order < new_order || classzone_idx > new_classzone_idx) { 28741da177e4SLinus Torvalds /* 28751da177e4SLinus Torvalds * Don't sleep if someone wants a larger 'order' 287699504748SMel Gorman * allocation or has tigher zone constraints 28771da177e4SLinus Torvalds */ 28781da177e4SLinus Torvalds order = new_order; 287999504748SMel Gorman classzone_idx = new_classzone_idx; 28801da177e4SLinus Torvalds } else { 2881dc83edd9SMel Gorman kswapd_try_to_sleep(pgdat, order, classzone_idx); 28821da177e4SLinus Torvalds order = pgdat->kswapd_max_order; 288399504748SMel Gorman classzone_idx = pgdat->classzone_idx; 28844d40502eSMel Gorman pgdat->kswapd_max_order = 0; 2885215ddd66SMel Gorman pgdat->classzone_idx = pgdat->nr_zones - 1; 28861da177e4SLinus Torvalds } 28871da177e4SLinus Torvalds 28888fe23e05SDavid Rientjes ret = try_to_freeze(); 28898fe23e05SDavid Rientjes if (kthread_should_stop()) 28908fe23e05SDavid Rientjes break; 28918fe23e05SDavid Rientjes 28928fe23e05SDavid Rientjes /* 28938fe23e05SDavid Rientjes * We can speed up thawing tasks if we don't call balance_pgdat 28948fe23e05SDavid Rientjes * after returning from the refrigerator 2895b1296cc4SRafael J. Wysocki */ 289633906bc5SMel Gorman if (!ret) { 289733906bc5SMel Gorman trace_mm_vmscan_kswapd_wake(pgdat->node_id, order); 2898dc83edd9SMel Gorman order = balance_pgdat(pgdat, order, &classzone_idx); 28991da177e4SLinus Torvalds } 290033906bc5SMel Gorman } 29011da177e4SLinus Torvalds return 0; 29021da177e4SLinus Torvalds } 29031da177e4SLinus Torvalds 29041da177e4SLinus Torvalds /* 29051da177e4SLinus Torvalds * A zone is low on free memory, so wake its kswapd task to service it. 29061da177e4SLinus Torvalds */ 290799504748SMel Gorman void wakeup_kswapd(struct zone *zone, int order, enum zone_type classzone_idx) 29081da177e4SLinus Torvalds { 29091da177e4SLinus Torvalds pg_data_t *pgdat; 29101da177e4SLinus Torvalds 2911f3fe6512SCon Kolivas if (!populated_zone(zone)) 29121da177e4SLinus Torvalds return; 29131da177e4SLinus Torvalds 291402a0e53dSPaul Jackson if (!cpuset_zone_allowed_hardwall(zone, GFP_KERNEL)) 29151da177e4SLinus Torvalds return; 291688f5acf8SMel Gorman pgdat = zone->zone_pgdat; 291799504748SMel Gorman if (pgdat->kswapd_max_order < order) { 291888f5acf8SMel Gorman pgdat->kswapd_max_order = order; 291999504748SMel Gorman pgdat->classzone_idx = min(pgdat->classzone_idx, classzone_idx); 292099504748SMel Gorman } 29218d0986e2SCon Kolivas if (!waitqueue_active(&pgdat->kswapd_wait)) 29221da177e4SLinus Torvalds return; 292388f5acf8SMel Gorman if (zone_watermark_ok_safe(zone, order, low_wmark_pages(zone), 0, 0)) 292488f5acf8SMel Gorman return; 292588f5acf8SMel Gorman 292688f5acf8SMel Gorman trace_mm_vmscan_wakeup_kswapd(pgdat->node_id, zone_idx(zone), order); 29278d0986e2SCon Kolivas wake_up_interruptible(&pgdat->kswapd_wait); 29281da177e4SLinus Torvalds } 29291da177e4SLinus Torvalds 2930adea02a1SWu Fengguang /* 2931adea02a1SWu Fengguang * The reclaimable count would be mostly accurate. 2932adea02a1SWu Fengguang * The less reclaimable pages may be 2933adea02a1SWu Fengguang * - mlocked pages, which will be moved to unevictable list when encountered 2934adea02a1SWu Fengguang * - mapped pages, which may require several travels to be reclaimed 2935adea02a1SWu Fengguang * - dirty pages, which is not "instantly" reclaimable 2936adea02a1SWu Fengguang */ 2937adea02a1SWu Fengguang unsigned long global_reclaimable_pages(void) 29384f98a2feSRik van Riel { 2939adea02a1SWu Fengguang int nr; 2940adea02a1SWu Fengguang 2941adea02a1SWu Fengguang nr = global_page_state(NR_ACTIVE_FILE) + 2942adea02a1SWu Fengguang global_page_state(NR_INACTIVE_FILE); 2943adea02a1SWu Fengguang 2944adea02a1SWu Fengguang if (nr_swap_pages > 0) 2945adea02a1SWu Fengguang nr += global_page_state(NR_ACTIVE_ANON) + 2946adea02a1SWu Fengguang global_page_state(NR_INACTIVE_ANON); 2947adea02a1SWu Fengguang 2948adea02a1SWu Fengguang return nr; 2949adea02a1SWu Fengguang } 2950adea02a1SWu Fengguang 2951adea02a1SWu Fengguang unsigned long zone_reclaimable_pages(struct zone *zone) 2952adea02a1SWu Fengguang { 2953adea02a1SWu Fengguang int nr; 2954adea02a1SWu Fengguang 2955adea02a1SWu Fengguang nr = zone_page_state(zone, NR_ACTIVE_FILE) + 2956adea02a1SWu Fengguang zone_page_state(zone, NR_INACTIVE_FILE); 2957adea02a1SWu Fengguang 2958adea02a1SWu Fengguang if (nr_swap_pages > 0) 2959adea02a1SWu Fengguang nr += zone_page_state(zone, NR_ACTIVE_ANON) + 2960adea02a1SWu Fengguang zone_page_state(zone, NR_INACTIVE_ANON); 2961adea02a1SWu Fengguang 2962adea02a1SWu Fengguang return nr; 29634f98a2feSRik van Riel } 29644f98a2feSRik van Riel 2965c6f37f12SRafael J. Wysocki #ifdef CONFIG_HIBERNATION 29661da177e4SLinus Torvalds /* 29677b51755cSKOSAKI Motohiro * Try to free `nr_to_reclaim' of memory, system-wide, and return the number of 2968d6277db4SRafael J. Wysocki * freed pages. 2969d6277db4SRafael J. Wysocki * 2970d6277db4SRafael J. Wysocki * Rather than trying to age LRUs the aim is to preserve the overall 2971d6277db4SRafael J. Wysocki * LRU order by reclaiming preferentially 2972d6277db4SRafael J. Wysocki * inactive > active > active referenced > active mapped 29731da177e4SLinus Torvalds */ 29747b51755cSKOSAKI Motohiro unsigned long shrink_all_memory(unsigned long nr_to_reclaim) 29751da177e4SLinus Torvalds { 2976d6277db4SRafael J. Wysocki struct reclaim_state reclaim_state; 2977d6277db4SRafael J. Wysocki struct scan_control sc = { 29787b51755cSKOSAKI Motohiro .gfp_mask = GFP_HIGHUSER_MOVABLE, 29797b51755cSKOSAKI Motohiro .may_swap = 1, 29807b51755cSKOSAKI Motohiro .may_unmap = 1, 2981d6277db4SRafael J. Wysocki .may_writepage = 1, 29827b51755cSKOSAKI Motohiro .nr_to_reclaim = nr_to_reclaim, 29837b51755cSKOSAKI Motohiro .hibernation_mode = 1, 29847b51755cSKOSAKI Motohiro .order = 0, 29851da177e4SLinus Torvalds }; 2986a09ed5e0SYing Han struct shrink_control shrink = { 2987a09ed5e0SYing Han .gfp_mask = sc.gfp_mask, 2988a09ed5e0SYing Han }; 29897b51755cSKOSAKI Motohiro struct zonelist *zonelist = node_zonelist(numa_node_id(), sc.gfp_mask); 29907b51755cSKOSAKI Motohiro struct task_struct *p = current; 29917b51755cSKOSAKI Motohiro unsigned long nr_reclaimed; 29921da177e4SLinus Torvalds 29937b51755cSKOSAKI Motohiro p->flags |= PF_MEMALLOC; 29947b51755cSKOSAKI Motohiro lockdep_set_current_reclaim_state(sc.gfp_mask); 2995d6277db4SRafael J. Wysocki reclaim_state.reclaimed_slab = 0; 29967b51755cSKOSAKI Motohiro p->reclaim_state = &reclaim_state; 2997d6277db4SRafael J. Wysocki 2998a09ed5e0SYing Han nr_reclaimed = do_try_to_free_pages(zonelist, &sc, &shrink); 2999d6277db4SRafael J. Wysocki 30007b51755cSKOSAKI Motohiro p->reclaim_state = NULL; 30017b51755cSKOSAKI Motohiro lockdep_clear_current_reclaim_state(); 30027b51755cSKOSAKI Motohiro p->flags &= ~PF_MEMALLOC; 3003d6277db4SRafael J. Wysocki 30047b51755cSKOSAKI Motohiro return nr_reclaimed; 30051da177e4SLinus Torvalds } 3006c6f37f12SRafael J. Wysocki #endif /* CONFIG_HIBERNATION */ 30071da177e4SLinus Torvalds 30081da177e4SLinus Torvalds /* It's optimal to keep kswapds on the same CPUs as their memory, but 30091da177e4SLinus Torvalds not required for correctness. So if the last cpu in a node goes 30101da177e4SLinus Torvalds away, we get changed to run anywhere: as the first one comes back, 30111da177e4SLinus Torvalds restore their cpu bindings. */ 30129c7b216dSChandra Seetharaman static int __devinit cpu_callback(struct notifier_block *nfb, 301369e05944SAndrew Morton unsigned long action, void *hcpu) 30141da177e4SLinus Torvalds { 301558c0a4a7SYasunori Goto int nid; 30161da177e4SLinus Torvalds 30178bb78442SRafael J. Wysocki if (action == CPU_ONLINE || action == CPU_ONLINE_FROZEN) { 301858c0a4a7SYasunori Goto for_each_node_state(nid, N_HIGH_MEMORY) { 3019c5f59f08SMike Travis pg_data_t *pgdat = NODE_DATA(nid); 3020a70f7302SRusty Russell const struct cpumask *mask; 3021a70f7302SRusty Russell 3022a70f7302SRusty Russell mask = cpumask_of_node(pgdat->node_id); 3023c5f59f08SMike Travis 30243e597945SRusty Russell if (cpumask_any_and(cpu_online_mask, mask) < nr_cpu_ids) 30251da177e4SLinus Torvalds /* One of our CPUs online: restore mask */ 3026c5f59f08SMike Travis set_cpus_allowed_ptr(pgdat->kswapd, mask); 30271da177e4SLinus Torvalds } 30281da177e4SLinus Torvalds } 30291da177e4SLinus Torvalds return NOTIFY_OK; 30301da177e4SLinus Torvalds } 30311da177e4SLinus Torvalds 30323218ae14SYasunori Goto /* 30333218ae14SYasunori Goto * This kswapd start function will be called by init and node-hot-add. 30343218ae14SYasunori Goto * On node-hot-add, kswapd will moved to proper cpus if cpus are hot-added. 30353218ae14SYasunori Goto */ 30363218ae14SYasunori Goto int kswapd_run(int nid) 30373218ae14SYasunori Goto { 30383218ae14SYasunori Goto pg_data_t *pgdat = NODE_DATA(nid); 30393218ae14SYasunori Goto int ret = 0; 30403218ae14SYasunori Goto 30413218ae14SYasunori Goto if (pgdat->kswapd) 30423218ae14SYasunori Goto return 0; 30433218ae14SYasunori Goto 30443218ae14SYasunori Goto pgdat->kswapd = kthread_run(kswapd, pgdat, "kswapd%d", nid); 30453218ae14SYasunori Goto if (IS_ERR(pgdat->kswapd)) { 30463218ae14SYasunori Goto /* failure at boot is fatal */ 30473218ae14SYasunori Goto BUG_ON(system_state == SYSTEM_BOOTING); 30483218ae14SYasunori Goto printk("Failed to start kswapd on node %d\n",nid); 30493218ae14SYasunori Goto ret = -1; 30503218ae14SYasunori Goto } 30513218ae14SYasunori Goto return ret; 30523218ae14SYasunori Goto } 30533218ae14SYasunori Goto 30548fe23e05SDavid Rientjes /* 30558fe23e05SDavid Rientjes * Called by memory hotplug when all memory in a node is offlined. 30568fe23e05SDavid Rientjes */ 30578fe23e05SDavid Rientjes void kswapd_stop(int nid) 30588fe23e05SDavid Rientjes { 30598fe23e05SDavid Rientjes struct task_struct *kswapd = NODE_DATA(nid)->kswapd; 30608fe23e05SDavid Rientjes 30618fe23e05SDavid Rientjes if (kswapd) 30628fe23e05SDavid Rientjes kthread_stop(kswapd); 30638fe23e05SDavid Rientjes } 30648fe23e05SDavid Rientjes 30651da177e4SLinus Torvalds static int __init kswapd_init(void) 30661da177e4SLinus Torvalds { 30673218ae14SYasunori Goto int nid; 306869e05944SAndrew Morton 30691da177e4SLinus Torvalds swap_setup(); 30709422ffbaSChristoph Lameter for_each_node_state(nid, N_HIGH_MEMORY) 30713218ae14SYasunori Goto kswapd_run(nid); 30721da177e4SLinus Torvalds hotcpu_notifier(cpu_callback, 0); 30731da177e4SLinus Torvalds return 0; 30741da177e4SLinus Torvalds } 30751da177e4SLinus Torvalds 30761da177e4SLinus Torvalds module_init(kswapd_init) 30779eeff239SChristoph Lameter 30789eeff239SChristoph Lameter #ifdef CONFIG_NUMA 30799eeff239SChristoph Lameter /* 30809eeff239SChristoph Lameter * Zone reclaim mode 30819eeff239SChristoph Lameter * 30829eeff239SChristoph Lameter * If non-zero call zone_reclaim when the number of free pages falls below 30839eeff239SChristoph Lameter * the watermarks. 30849eeff239SChristoph Lameter */ 30859eeff239SChristoph Lameter int zone_reclaim_mode __read_mostly; 30869eeff239SChristoph Lameter 30871b2ffb78SChristoph Lameter #define RECLAIM_OFF 0 30887d03431cSFernando Luis Vazquez Cao #define RECLAIM_ZONE (1<<0) /* Run shrink_inactive_list on the zone */ 30891b2ffb78SChristoph Lameter #define RECLAIM_WRITE (1<<1) /* Writeout pages during reclaim */ 30901b2ffb78SChristoph Lameter #define RECLAIM_SWAP (1<<2) /* Swap pages out during reclaim */ 30911b2ffb78SChristoph Lameter 30929eeff239SChristoph Lameter /* 3093a92f7126SChristoph Lameter * Priority for ZONE_RECLAIM. This determines the fraction of pages 3094a92f7126SChristoph Lameter * of a node considered for each zone_reclaim. 4 scans 1/16th of 3095a92f7126SChristoph Lameter * a zone. 3096a92f7126SChristoph Lameter */ 3097a92f7126SChristoph Lameter #define ZONE_RECLAIM_PRIORITY 4 3098a92f7126SChristoph Lameter 30999eeff239SChristoph Lameter /* 31009614634fSChristoph Lameter * Percentage of pages in a zone that must be unmapped for zone_reclaim to 31019614634fSChristoph Lameter * occur. 31029614634fSChristoph Lameter */ 31039614634fSChristoph Lameter int sysctl_min_unmapped_ratio = 1; 31049614634fSChristoph Lameter 31059614634fSChristoph Lameter /* 31060ff38490SChristoph Lameter * If the number of slab pages in a zone grows beyond this percentage then 31070ff38490SChristoph Lameter * slab reclaim needs to occur. 31080ff38490SChristoph Lameter */ 31090ff38490SChristoph Lameter int sysctl_min_slab_ratio = 5; 31100ff38490SChristoph Lameter 311190afa5deSMel Gorman static inline unsigned long zone_unmapped_file_pages(struct zone *zone) 311290afa5deSMel Gorman { 311390afa5deSMel Gorman unsigned long file_mapped = zone_page_state(zone, NR_FILE_MAPPED); 311490afa5deSMel Gorman unsigned long file_lru = zone_page_state(zone, NR_INACTIVE_FILE) + 311590afa5deSMel Gorman zone_page_state(zone, NR_ACTIVE_FILE); 311690afa5deSMel Gorman 311790afa5deSMel Gorman /* 311890afa5deSMel Gorman * It's possible for there to be more file mapped pages than 311990afa5deSMel Gorman * accounted for by the pages on the file LRU lists because 312090afa5deSMel Gorman * tmpfs pages accounted for as ANON can also be FILE_MAPPED 312190afa5deSMel Gorman */ 312290afa5deSMel Gorman return (file_lru > file_mapped) ? (file_lru - file_mapped) : 0; 312390afa5deSMel Gorman } 312490afa5deSMel Gorman 312590afa5deSMel Gorman /* Work out how many page cache pages we can reclaim in this reclaim_mode */ 312690afa5deSMel Gorman static long zone_pagecache_reclaimable(struct zone *zone) 312790afa5deSMel Gorman { 312890afa5deSMel Gorman long nr_pagecache_reclaimable; 312990afa5deSMel Gorman long delta = 0; 313090afa5deSMel Gorman 313190afa5deSMel Gorman /* 313290afa5deSMel Gorman * If RECLAIM_SWAP is set, then all file pages are considered 313390afa5deSMel Gorman * potentially reclaimable. Otherwise, we have to worry about 313490afa5deSMel Gorman * pages like swapcache and zone_unmapped_file_pages() provides 313590afa5deSMel Gorman * a better estimate 313690afa5deSMel Gorman */ 313790afa5deSMel Gorman if (zone_reclaim_mode & RECLAIM_SWAP) 313890afa5deSMel Gorman nr_pagecache_reclaimable = zone_page_state(zone, NR_FILE_PAGES); 313990afa5deSMel Gorman else 314090afa5deSMel Gorman nr_pagecache_reclaimable = zone_unmapped_file_pages(zone); 314190afa5deSMel Gorman 314290afa5deSMel Gorman /* If we can't clean pages, remove dirty pages from consideration */ 314390afa5deSMel Gorman if (!(zone_reclaim_mode & RECLAIM_WRITE)) 314490afa5deSMel Gorman delta += zone_page_state(zone, NR_FILE_DIRTY); 314590afa5deSMel Gorman 314690afa5deSMel Gorman /* Watch for any possible underflows due to delta */ 314790afa5deSMel Gorman if (unlikely(delta > nr_pagecache_reclaimable)) 314890afa5deSMel Gorman delta = nr_pagecache_reclaimable; 314990afa5deSMel Gorman 315090afa5deSMel Gorman return nr_pagecache_reclaimable - delta; 315190afa5deSMel Gorman } 315290afa5deSMel Gorman 31530ff38490SChristoph Lameter /* 31549eeff239SChristoph Lameter * Try to free up some pages from this zone through reclaim. 31559eeff239SChristoph Lameter */ 3156179e9639SAndrew Morton static int __zone_reclaim(struct zone *zone, gfp_t gfp_mask, unsigned int order) 31579eeff239SChristoph Lameter { 31587fb2d46dSChristoph Lameter /* Minimum pages needed in order to stay on node */ 315969e05944SAndrew Morton const unsigned long nr_pages = 1 << order; 31609eeff239SChristoph Lameter struct task_struct *p = current; 31619eeff239SChristoph Lameter struct reclaim_state reclaim_state; 31628695949aSChristoph Lameter int priority; 3163179e9639SAndrew Morton struct scan_control sc = { 3164179e9639SAndrew Morton .may_writepage = !!(zone_reclaim_mode & RECLAIM_WRITE), 3165a6dc60f8SJohannes Weiner .may_unmap = !!(zone_reclaim_mode & RECLAIM_SWAP), 31662e2e4259SKOSAKI Motohiro .may_swap = 1, 316722fba335SKOSAKI Motohiro .nr_to_reclaim = max_t(unsigned long, nr_pages, 316822fba335SKOSAKI Motohiro SWAP_CLUSTER_MAX), 3169179e9639SAndrew Morton .gfp_mask = gfp_mask, 3170bd2f6199SJohannes Weiner .order = order, 3171179e9639SAndrew Morton }; 3172a09ed5e0SYing Han struct shrink_control shrink = { 3173a09ed5e0SYing Han .gfp_mask = sc.gfp_mask, 3174a09ed5e0SYing Han }; 317515748048SKOSAKI Motohiro unsigned long nr_slab_pages0, nr_slab_pages1; 31769eeff239SChristoph Lameter 31779eeff239SChristoph Lameter cond_resched(); 3178d4f7796eSChristoph Lameter /* 3179d4f7796eSChristoph Lameter * We need to be able to allocate from the reserves for RECLAIM_SWAP 3180d4f7796eSChristoph Lameter * and we also need to be able to write out pages for RECLAIM_WRITE 3181d4f7796eSChristoph Lameter * and RECLAIM_SWAP. 3182d4f7796eSChristoph Lameter */ 3183d4f7796eSChristoph Lameter p->flags |= PF_MEMALLOC | PF_SWAPWRITE; 318476ca542dSKOSAKI Motohiro lockdep_set_current_reclaim_state(gfp_mask); 31859eeff239SChristoph Lameter reclaim_state.reclaimed_slab = 0; 31869eeff239SChristoph Lameter p->reclaim_state = &reclaim_state; 3187c84db23cSChristoph Lameter 318890afa5deSMel Gorman if (zone_pagecache_reclaimable(zone) > zone->min_unmapped_pages) { 3189a92f7126SChristoph Lameter /* 31900ff38490SChristoph Lameter * Free memory by calling shrink zone with increasing 31910ff38490SChristoph Lameter * priorities until we have enough memory freed. 3192a92f7126SChristoph Lameter */ 31938695949aSChristoph Lameter priority = ZONE_RECLAIM_PRIORITY; 3194a92f7126SChristoph Lameter do { 3195a79311c1SRik van Riel shrink_zone(priority, zone, &sc); 31968695949aSChristoph Lameter priority--; 3197a79311c1SRik van Riel } while (priority >= 0 && sc.nr_reclaimed < nr_pages); 31980ff38490SChristoph Lameter } 3199a92f7126SChristoph Lameter 320015748048SKOSAKI Motohiro nr_slab_pages0 = zone_page_state(zone, NR_SLAB_RECLAIMABLE); 320115748048SKOSAKI Motohiro if (nr_slab_pages0 > zone->min_slab_pages) { 32022a16e3f4SChristoph Lameter /* 32037fb2d46dSChristoph Lameter * shrink_slab() does not currently allow us to determine how 32040ff38490SChristoph Lameter * many pages were freed in this zone. So we take the current 32050ff38490SChristoph Lameter * number of slab pages and shake the slab until it is reduced 32060ff38490SChristoph Lameter * by the same nr_pages that we used for reclaiming unmapped 32070ff38490SChristoph Lameter * pages. 32082a16e3f4SChristoph Lameter * 32090ff38490SChristoph Lameter * Note that shrink_slab will free memory on all zones and may 32100ff38490SChristoph Lameter * take a long time. 32112a16e3f4SChristoph Lameter */ 32124dc4b3d9SKOSAKI Motohiro for (;;) { 32134dc4b3d9SKOSAKI Motohiro unsigned long lru_pages = zone_reclaimable_pages(zone); 32144dc4b3d9SKOSAKI Motohiro 32154dc4b3d9SKOSAKI Motohiro /* No reclaimable slab or very low memory pressure */ 32161495f230SYing Han if (!shrink_slab(&shrink, sc.nr_scanned, lru_pages)) 32174dc4b3d9SKOSAKI Motohiro break; 32184dc4b3d9SKOSAKI Motohiro 32194dc4b3d9SKOSAKI Motohiro /* Freed enough memory */ 32204dc4b3d9SKOSAKI Motohiro nr_slab_pages1 = zone_page_state(zone, 32214dc4b3d9SKOSAKI Motohiro NR_SLAB_RECLAIMABLE); 32224dc4b3d9SKOSAKI Motohiro if (nr_slab_pages1 + nr_pages <= nr_slab_pages0) 32234dc4b3d9SKOSAKI Motohiro break; 32244dc4b3d9SKOSAKI Motohiro } 322583e33a47SChristoph Lameter 322683e33a47SChristoph Lameter /* 322783e33a47SChristoph Lameter * Update nr_reclaimed by the number of slab pages we 322883e33a47SChristoph Lameter * reclaimed from this zone. 322983e33a47SChristoph Lameter */ 323015748048SKOSAKI Motohiro nr_slab_pages1 = zone_page_state(zone, NR_SLAB_RECLAIMABLE); 323115748048SKOSAKI Motohiro if (nr_slab_pages1 < nr_slab_pages0) 323215748048SKOSAKI Motohiro sc.nr_reclaimed += nr_slab_pages0 - nr_slab_pages1; 32332a16e3f4SChristoph Lameter } 32342a16e3f4SChristoph Lameter 32359eeff239SChristoph Lameter p->reclaim_state = NULL; 3236d4f7796eSChristoph Lameter current->flags &= ~(PF_MEMALLOC | PF_SWAPWRITE); 323776ca542dSKOSAKI Motohiro lockdep_clear_current_reclaim_state(); 3238a79311c1SRik van Riel return sc.nr_reclaimed >= nr_pages; 32399eeff239SChristoph Lameter } 3240179e9639SAndrew Morton 3241179e9639SAndrew Morton int zone_reclaim(struct zone *zone, gfp_t gfp_mask, unsigned int order) 3242179e9639SAndrew Morton { 3243179e9639SAndrew Morton int node_id; 3244d773ed6bSDavid Rientjes int ret; 3245179e9639SAndrew Morton 3246179e9639SAndrew Morton /* 32470ff38490SChristoph Lameter * Zone reclaim reclaims unmapped file backed pages and 32480ff38490SChristoph Lameter * slab pages if we are over the defined limits. 324934aa1330SChristoph Lameter * 32509614634fSChristoph Lameter * A small portion of unmapped file backed pages is needed for 32519614634fSChristoph Lameter * file I/O otherwise pages read by file I/O will be immediately 32529614634fSChristoph Lameter * thrown out if the zone is overallocated. So we do not reclaim 32539614634fSChristoph Lameter * if less than a specified percentage of the zone is used by 32549614634fSChristoph Lameter * unmapped file backed pages. 3255179e9639SAndrew Morton */ 325690afa5deSMel Gorman if (zone_pagecache_reclaimable(zone) <= zone->min_unmapped_pages && 325790afa5deSMel Gorman zone_page_state(zone, NR_SLAB_RECLAIMABLE) <= zone->min_slab_pages) 3258fa5e084eSMel Gorman return ZONE_RECLAIM_FULL; 3259179e9639SAndrew Morton 326093e4a89aSKOSAKI Motohiro if (zone->all_unreclaimable) 3261fa5e084eSMel Gorman return ZONE_RECLAIM_FULL; 3262d773ed6bSDavid Rientjes 3263179e9639SAndrew Morton /* 3264d773ed6bSDavid Rientjes * Do not scan if the allocation should not be delayed. 3265179e9639SAndrew Morton */ 3266d773ed6bSDavid Rientjes if (!(gfp_mask & __GFP_WAIT) || (current->flags & PF_MEMALLOC)) 3267fa5e084eSMel Gorman return ZONE_RECLAIM_NOSCAN; 3268179e9639SAndrew Morton 3269179e9639SAndrew Morton /* 3270179e9639SAndrew Morton * Only run zone reclaim on the local zone or on zones that do not 3271179e9639SAndrew Morton * have associated processors. This will favor the local processor 3272179e9639SAndrew Morton * over remote processors and spread off node memory allocations 3273179e9639SAndrew Morton * as wide as possible. 3274179e9639SAndrew Morton */ 327589fa3024SChristoph Lameter node_id = zone_to_nid(zone); 327637c0708dSChristoph Lameter if (node_state(node_id, N_CPU) && node_id != numa_node_id()) 3277fa5e084eSMel Gorman return ZONE_RECLAIM_NOSCAN; 3278d773ed6bSDavid Rientjes 3279d773ed6bSDavid Rientjes if (zone_test_and_set_flag(zone, ZONE_RECLAIM_LOCKED)) 3280fa5e084eSMel Gorman return ZONE_RECLAIM_NOSCAN; 3281fa5e084eSMel Gorman 3282d773ed6bSDavid Rientjes ret = __zone_reclaim(zone, gfp_mask, order); 3283d773ed6bSDavid Rientjes zone_clear_flag(zone, ZONE_RECLAIM_LOCKED); 3284d773ed6bSDavid Rientjes 328524cf7251SMel Gorman if (!ret) 328624cf7251SMel Gorman count_vm_event(PGSCAN_ZONE_RECLAIM_FAILED); 328724cf7251SMel Gorman 3288d773ed6bSDavid Rientjes return ret; 3289179e9639SAndrew Morton } 32909eeff239SChristoph Lameter #endif 3291894bc310SLee Schermerhorn 3292894bc310SLee Schermerhorn /* 3293894bc310SLee Schermerhorn * page_evictable - test whether a page is evictable 3294894bc310SLee Schermerhorn * @page: the page to test 3295894bc310SLee Schermerhorn * @vma: the VMA in which the page is or will be mapped, may be NULL 3296894bc310SLee Schermerhorn * 3297894bc310SLee Schermerhorn * Test whether page is evictable--i.e., should be placed on active/inactive 3298b291f000SNick Piggin * lists vs unevictable list. The vma argument is !NULL when called from the 3299b291f000SNick Piggin * fault path to determine how to instantate a new page. 3300894bc310SLee Schermerhorn * 3301894bc310SLee Schermerhorn * Reasons page might not be evictable: 3302ba9ddf49SLee Schermerhorn * (1) page's mapping marked unevictable 3303b291f000SNick Piggin * (2) page is part of an mlocked VMA 3304ba9ddf49SLee Schermerhorn * 3305894bc310SLee Schermerhorn */ 3306894bc310SLee Schermerhorn int page_evictable(struct page *page, struct vm_area_struct *vma) 3307894bc310SLee Schermerhorn { 3308894bc310SLee Schermerhorn 3309ba9ddf49SLee Schermerhorn if (mapping_unevictable(page_mapping(page))) 3310ba9ddf49SLee Schermerhorn return 0; 3311ba9ddf49SLee Schermerhorn 3312b291f000SNick Piggin if (PageMlocked(page) || (vma && is_mlocked_vma(vma, page))) 3313b291f000SNick Piggin return 0; 3314894bc310SLee Schermerhorn 3315894bc310SLee Schermerhorn return 1; 3316894bc310SLee Schermerhorn } 331789e004eaSLee Schermerhorn 331889e004eaSLee Schermerhorn /** 331989e004eaSLee Schermerhorn * check_move_unevictable_page - check page for evictability and move to appropriate zone lru list 332089e004eaSLee Schermerhorn * @page: page to check evictability and move to appropriate lru list 332189e004eaSLee Schermerhorn * @zone: zone page is in 332289e004eaSLee Schermerhorn * 332389e004eaSLee Schermerhorn * Checks a page for evictability and moves the page to the appropriate 332489e004eaSLee Schermerhorn * zone lru list. 332589e004eaSLee Schermerhorn * 332689e004eaSLee Schermerhorn * Restrictions: zone->lru_lock must be held, page must be on LRU and must 332789e004eaSLee Schermerhorn * have PageUnevictable set. 332889e004eaSLee Schermerhorn */ 332989e004eaSLee Schermerhorn static void check_move_unevictable_page(struct page *page, struct zone *zone) 333089e004eaSLee Schermerhorn { 333189e004eaSLee Schermerhorn VM_BUG_ON(PageActive(page)); 333289e004eaSLee Schermerhorn 333389e004eaSLee Schermerhorn retry: 333489e004eaSLee Schermerhorn ClearPageUnevictable(page); 333589e004eaSLee Schermerhorn if (page_evictable(page, NULL)) { 3336401a8e1cSJohannes Weiner enum lru_list l = page_lru_base_type(page); 3337af936a16SLee Schermerhorn 333889e004eaSLee Schermerhorn __dec_zone_state(zone, NR_UNEVICTABLE); 333989e004eaSLee Schermerhorn list_move(&page->lru, &zone->lru[l].list); 334008e552c6SKAMEZAWA Hiroyuki mem_cgroup_move_lists(page, LRU_UNEVICTABLE, l); 334189e004eaSLee Schermerhorn __inc_zone_state(zone, NR_INACTIVE_ANON + l); 334289e004eaSLee Schermerhorn __count_vm_event(UNEVICTABLE_PGRESCUED); 334389e004eaSLee Schermerhorn } else { 334489e004eaSLee Schermerhorn /* 334589e004eaSLee Schermerhorn * rotate unevictable list 334689e004eaSLee Schermerhorn */ 334789e004eaSLee Schermerhorn SetPageUnevictable(page); 334889e004eaSLee Schermerhorn list_move(&page->lru, &zone->lru[LRU_UNEVICTABLE].list); 334908e552c6SKAMEZAWA Hiroyuki mem_cgroup_rotate_lru_list(page, LRU_UNEVICTABLE); 335089e004eaSLee Schermerhorn if (page_evictable(page, NULL)) 335189e004eaSLee Schermerhorn goto retry; 335289e004eaSLee Schermerhorn } 335389e004eaSLee Schermerhorn } 335489e004eaSLee Schermerhorn 335589e004eaSLee Schermerhorn /** 335689e004eaSLee Schermerhorn * scan_mapping_unevictable_pages - scan an address space for evictable pages 335789e004eaSLee Schermerhorn * @mapping: struct address_space to scan for evictable pages 335889e004eaSLee Schermerhorn * 335989e004eaSLee Schermerhorn * Scan all pages in mapping. Check unevictable pages for 336089e004eaSLee Schermerhorn * evictability and move them to the appropriate zone lru list. 336189e004eaSLee Schermerhorn */ 336289e004eaSLee Schermerhorn void scan_mapping_unevictable_pages(struct address_space *mapping) 336389e004eaSLee Schermerhorn { 336489e004eaSLee Schermerhorn pgoff_t next = 0; 336589e004eaSLee Schermerhorn pgoff_t end = (i_size_read(mapping->host) + PAGE_CACHE_SIZE - 1) >> 336689e004eaSLee Schermerhorn PAGE_CACHE_SHIFT; 336789e004eaSLee Schermerhorn struct zone *zone; 336889e004eaSLee Schermerhorn struct pagevec pvec; 336989e004eaSLee Schermerhorn 337089e004eaSLee Schermerhorn if (mapping->nrpages == 0) 337189e004eaSLee Schermerhorn return; 337289e004eaSLee Schermerhorn 337389e004eaSLee Schermerhorn pagevec_init(&pvec, 0); 337489e004eaSLee Schermerhorn while (next < end && 337589e004eaSLee Schermerhorn pagevec_lookup(&pvec, mapping, next, PAGEVEC_SIZE)) { 337689e004eaSLee Schermerhorn int i; 337789e004eaSLee Schermerhorn int pg_scanned = 0; 337889e004eaSLee Schermerhorn 337989e004eaSLee Schermerhorn zone = NULL; 338089e004eaSLee Schermerhorn 338189e004eaSLee Schermerhorn for (i = 0; i < pagevec_count(&pvec); i++) { 338289e004eaSLee Schermerhorn struct page *page = pvec.pages[i]; 338389e004eaSLee Schermerhorn pgoff_t page_index = page->index; 338489e004eaSLee Schermerhorn struct zone *pagezone = page_zone(page); 338589e004eaSLee Schermerhorn 338689e004eaSLee Schermerhorn pg_scanned++; 338789e004eaSLee Schermerhorn if (page_index > next) 338889e004eaSLee Schermerhorn next = page_index; 338989e004eaSLee Schermerhorn next++; 339089e004eaSLee Schermerhorn 339189e004eaSLee Schermerhorn if (pagezone != zone) { 339289e004eaSLee Schermerhorn if (zone) 339389e004eaSLee Schermerhorn spin_unlock_irq(&zone->lru_lock); 339489e004eaSLee Schermerhorn zone = pagezone; 339589e004eaSLee Schermerhorn spin_lock_irq(&zone->lru_lock); 339689e004eaSLee Schermerhorn } 339789e004eaSLee Schermerhorn 339889e004eaSLee Schermerhorn if (PageLRU(page) && PageUnevictable(page)) 339989e004eaSLee Schermerhorn check_move_unevictable_page(page, zone); 340089e004eaSLee Schermerhorn } 340189e004eaSLee Schermerhorn if (zone) 340289e004eaSLee Schermerhorn spin_unlock_irq(&zone->lru_lock); 340389e004eaSLee Schermerhorn pagevec_release(&pvec); 340489e004eaSLee Schermerhorn 340589e004eaSLee Schermerhorn count_vm_events(UNEVICTABLE_PGSCANNED, pg_scanned); 340689e004eaSLee Schermerhorn } 340789e004eaSLee Schermerhorn 340889e004eaSLee Schermerhorn } 3409af936a16SLee Schermerhorn 3410af936a16SLee Schermerhorn /** 3411af936a16SLee Schermerhorn * scan_zone_unevictable_pages - check unevictable list for evictable pages 3412af936a16SLee Schermerhorn * @zone - zone of which to scan the unevictable list 3413af936a16SLee Schermerhorn * 3414af936a16SLee Schermerhorn * Scan @zone's unevictable LRU lists to check for pages that have become 3415af936a16SLee Schermerhorn * evictable. Move those that have to @zone's inactive list where they 3416af936a16SLee Schermerhorn * become candidates for reclaim, unless shrink_inactive_zone() decides 3417af936a16SLee Schermerhorn * to reactivate them. Pages that are still unevictable are rotated 3418af936a16SLee Schermerhorn * back onto @zone's unevictable list. 3419af936a16SLee Schermerhorn */ 3420af936a16SLee Schermerhorn #define SCAN_UNEVICTABLE_BATCH_SIZE 16UL /* arbitrary lock hold batch size */ 342114b90b22SKOSAKI Motohiro static void scan_zone_unevictable_pages(struct zone *zone) 3422af936a16SLee Schermerhorn { 3423af936a16SLee Schermerhorn struct list_head *l_unevictable = &zone->lru[LRU_UNEVICTABLE].list; 3424af936a16SLee Schermerhorn unsigned long scan; 3425af936a16SLee Schermerhorn unsigned long nr_to_scan = zone_page_state(zone, NR_UNEVICTABLE); 3426af936a16SLee Schermerhorn 3427af936a16SLee Schermerhorn while (nr_to_scan > 0) { 3428af936a16SLee Schermerhorn unsigned long batch_size = min(nr_to_scan, 3429af936a16SLee Schermerhorn SCAN_UNEVICTABLE_BATCH_SIZE); 3430af936a16SLee Schermerhorn 3431af936a16SLee Schermerhorn spin_lock_irq(&zone->lru_lock); 3432af936a16SLee Schermerhorn for (scan = 0; scan < batch_size; scan++) { 3433af936a16SLee Schermerhorn struct page *page = lru_to_page(l_unevictable); 3434af936a16SLee Schermerhorn 3435af936a16SLee Schermerhorn if (!trylock_page(page)) 3436af936a16SLee Schermerhorn continue; 3437af936a16SLee Schermerhorn 3438af936a16SLee Schermerhorn prefetchw_prev_lru_page(page, l_unevictable, flags); 3439af936a16SLee Schermerhorn 3440af936a16SLee Schermerhorn if (likely(PageLRU(page) && PageUnevictable(page))) 3441af936a16SLee Schermerhorn check_move_unevictable_page(page, zone); 3442af936a16SLee Schermerhorn 3443af936a16SLee Schermerhorn unlock_page(page); 3444af936a16SLee Schermerhorn } 3445af936a16SLee Schermerhorn spin_unlock_irq(&zone->lru_lock); 3446af936a16SLee Schermerhorn 3447af936a16SLee Schermerhorn nr_to_scan -= batch_size; 3448af936a16SLee Schermerhorn } 3449af936a16SLee Schermerhorn } 3450af936a16SLee Schermerhorn 3451af936a16SLee Schermerhorn 3452af936a16SLee Schermerhorn /** 3453af936a16SLee Schermerhorn * scan_all_zones_unevictable_pages - scan all unevictable lists for evictable pages 3454af936a16SLee Schermerhorn * 3455af936a16SLee Schermerhorn * A really big hammer: scan all zones' unevictable LRU lists to check for 3456af936a16SLee Schermerhorn * pages that have become evictable. Move those back to the zones' 3457af936a16SLee Schermerhorn * inactive list where they become candidates for reclaim. 3458af936a16SLee Schermerhorn * This occurs when, e.g., we have unswappable pages on the unevictable lists, 3459af936a16SLee Schermerhorn * and we add swap to the system. As such, it runs in the context of a task 3460af936a16SLee Schermerhorn * that has possibly/probably made some previously unevictable pages 3461af936a16SLee Schermerhorn * evictable. 3462af936a16SLee Schermerhorn */ 3463ff30153bSKOSAKI Motohiro static void scan_all_zones_unevictable_pages(void) 3464af936a16SLee Schermerhorn { 3465af936a16SLee Schermerhorn struct zone *zone; 3466af936a16SLee Schermerhorn 3467af936a16SLee Schermerhorn for_each_zone(zone) { 3468af936a16SLee Schermerhorn scan_zone_unevictable_pages(zone); 3469af936a16SLee Schermerhorn } 3470af936a16SLee Schermerhorn } 3471af936a16SLee Schermerhorn 3472af936a16SLee Schermerhorn /* 3473af936a16SLee Schermerhorn * scan_unevictable_pages [vm] sysctl handler. On demand re-scan of 3474af936a16SLee Schermerhorn * all nodes' unevictable lists for evictable pages 3475af936a16SLee Schermerhorn */ 3476af936a16SLee Schermerhorn unsigned long scan_unevictable_pages; 3477af936a16SLee Schermerhorn 3478af936a16SLee Schermerhorn int scan_unevictable_handler(struct ctl_table *table, int write, 34798d65af78SAlexey Dobriyan void __user *buffer, 3480af936a16SLee Schermerhorn size_t *length, loff_t *ppos) 3481af936a16SLee Schermerhorn { 34828d65af78SAlexey Dobriyan proc_doulongvec_minmax(table, write, buffer, length, ppos); 3483af936a16SLee Schermerhorn 3484af936a16SLee Schermerhorn if (write && *(unsigned long *)table->data) 3485af936a16SLee Schermerhorn scan_all_zones_unevictable_pages(); 3486af936a16SLee Schermerhorn 3487af936a16SLee Schermerhorn scan_unevictable_pages = 0; 3488af936a16SLee Schermerhorn return 0; 3489af936a16SLee Schermerhorn } 3490af936a16SLee Schermerhorn 3491e4455abbSThadeu Lima de Souza Cascardo #ifdef CONFIG_NUMA 3492af936a16SLee Schermerhorn /* 3493af936a16SLee Schermerhorn * per node 'scan_unevictable_pages' attribute. On demand re-scan of 3494af936a16SLee Schermerhorn * a specified node's per zone unevictable lists for evictable pages. 3495af936a16SLee Schermerhorn */ 3496af936a16SLee Schermerhorn 3497af936a16SLee Schermerhorn static ssize_t read_scan_unevictable_node(struct sys_device *dev, 3498af936a16SLee Schermerhorn struct sysdev_attribute *attr, 3499af936a16SLee Schermerhorn char *buf) 3500af936a16SLee Schermerhorn { 3501af936a16SLee Schermerhorn return sprintf(buf, "0\n"); /* always zero; should fit... */ 3502af936a16SLee Schermerhorn } 3503af936a16SLee Schermerhorn 3504af936a16SLee Schermerhorn static ssize_t write_scan_unevictable_node(struct sys_device *dev, 3505af936a16SLee Schermerhorn struct sysdev_attribute *attr, 3506af936a16SLee Schermerhorn const char *buf, size_t count) 3507af936a16SLee Schermerhorn { 3508af936a16SLee Schermerhorn struct zone *node_zones = NODE_DATA(dev->id)->node_zones; 3509af936a16SLee Schermerhorn struct zone *zone; 3510af936a16SLee Schermerhorn unsigned long res; 3511af936a16SLee Schermerhorn unsigned long req = strict_strtoul(buf, 10, &res); 3512af936a16SLee Schermerhorn 3513af936a16SLee Schermerhorn if (!req) 3514af936a16SLee Schermerhorn return 1; /* zero is no-op */ 3515af936a16SLee Schermerhorn 3516af936a16SLee Schermerhorn for (zone = node_zones; zone - node_zones < MAX_NR_ZONES; ++zone) { 3517af936a16SLee Schermerhorn if (!populated_zone(zone)) 3518af936a16SLee Schermerhorn continue; 3519af936a16SLee Schermerhorn scan_zone_unevictable_pages(zone); 3520af936a16SLee Schermerhorn } 3521af936a16SLee Schermerhorn return 1; 3522af936a16SLee Schermerhorn } 3523af936a16SLee Schermerhorn 3524af936a16SLee Schermerhorn 3525af936a16SLee Schermerhorn static SYSDEV_ATTR(scan_unevictable_pages, S_IRUGO | S_IWUSR, 3526af936a16SLee Schermerhorn read_scan_unevictable_node, 3527af936a16SLee Schermerhorn write_scan_unevictable_node); 3528af936a16SLee Schermerhorn 3529af936a16SLee Schermerhorn int scan_unevictable_register_node(struct node *node) 3530af936a16SLee Schermerhorn { 3531af936a16SLee Schermerhorn return sysdev_create_file(&node->sysdev, &attr_scan_unevictable_pages); 3532af936a16SLee Schermerhorn } 3533af936a16SLee Schermerhorn 3534af936a16SLee Schermerhorn void scan_unevictable_unregister_node(struct node *node) 3535af936a16SLee Schermerhorn { 3536af936a16SLee Schermerhorn sysdev_remove_file(&node->sysdev, &attr_scan_unevictable_pages); 3537af936a16SLee Schermerhorn } 3538e4455abbSThadeu Lima de Souza Cascardo #endif 3539