1b2441318SGreg Kroah-Hartman // SPDX-License-Identifier: GPL-2.0 2748446bbSMel Gorman /* 3748446bbSMel Gorman * linux/mm/compaction.c 4748446bbSMel Gorman * 5748446bbSMel Gorman * Memory compaction for the reduction of external fragmentation. Note that 6748446bbSMel Gorman * this heavily depends upon page migration to do all the real heavy 7748446bbSMel Gorman * lifting 8748446bbSMel Gorman * 9748446bbSMel Gorman * Copyright IBM Corp. 2007-2010 Mel Gorman <mel@csn.ul.ie> 10748446bbSMel Gorman */ 11698b1b30SVlastimil Babka #include <linux/cpu.h> 12748446bbSMel Gorman #include <linux/swap.h> 13748446bbSMel Gorman #include <linux/migrate.h> 14748446bbSMel Gorman #include <linux/compaction.h> 15748446bbSMel Gorman #include <linux/mm_inline.h> 16174cd4b1SIngo Molnar #include <linux/sched/signal.h> 17748446bbSMel Gorman #include <linux/backing-dev.h> 1876ab0f53SMel Gorman #include <linux/sysctl.h> 19ed4a6d7fSMel Gorman #include <linux/sysfs.h> 20194159fbSMinchan Kim #include <linux/page-isolation.h> 21b8c73fc2SAndrey Ryabinin #include <linux/kasan.h> 22698b1b30SVlastimil Babka #include <linux/kthread.h> 23698b1b30SVlastimil Babka #include <linux/freezer.h> 2483358eceSJoonsoo Kim #include <linux/page_owner.h> 25eb414681SJohannes Weiner #include <linux/psi.h> 26748446bbSMel Gorman #include "internal.h" 27748446bbSMel Gorman 28010fc29aSMinchan Kim #ifdef CONFIG_COMPACTION 2931ca72faSCharan Teja Kalla /* 3031ca72faSCharan Teja Kalla * Fragmentation score check interval for proactive compaction purposes. 3131ca72faSCharan Teja Kalla */ 3231ca72faSCharan Teja Kalla #define HPAGE_FRAG_CHECK_INTERVAL_MSEC (500) 3331ca72faSCharan Teja Kalla 34010fc29aSMinchan Kim static inline void count_compact_event(enum vm_event_item item) 35010fc29aSMinchan Kim { 36010fc29aSMinchan Kim count_vm_event(item); 37010fc29aSMinchan Kim } 38010fc29aSMinchan Kim 39010fc29aSMinchan Kim static inline void count_compact_events(enum vm_event_item item, long delta) 40010fc29aSMinchan Kim { 41010fc29aSMinchan Kim count_vm_events(item, delta); 42010fc29aSMinchan Kim } 43010fc29aSMinchan Kim #else 44010fc29aSMinchan Kim #define count_compact_event(item) do { } while (0) 45010fc29aSMinchan Kim #define count_compact_events(item, delta) do { } while (0) 46010fc29aSMinchan Kim #endif 47010fc29aSMinchan Kim 48ff9543fdSMichal Nazarewicz #if defined CONFIG_COMPACTION || defined CONFIG_CMA 49ff9543fdSMichal Nazarewicz 50b7aba698SMel Gorman #define CREATE_TRACE_POINTS 51b7aba698SMel Gorman #include <trace/events/compaction.h> 52b7aba698SMel Gorman 5306b6640aSVlastimil Babka #define block_start_pfn(pfn, order) round_down(pfn, 1UL << (order)) 5406b6640aSVlastimil Babka #define block_end_pfn(pfn, order) ALIGN((pfn) + 1, 1UL << (order)) 5506b6640aSVlastimil Babka #define pageblock_start_pfn(pfn) block_start_pfn(pfn, pageblock_order) 5606b6640aSVlastimil Babka #define pageblock_end_pfn(pfn) block_end_pfn(pfn, pageblock_order) 5706b6640aSVlastimil Babka 58facdaa91SNitin Gupta /* 59facdaa91SNitin Gupta * Page order with-respect-to which proactive compaction 60facdaa91SNitin Gupta * calculates external fragmentation, which is used as 61facdaa91SNitin Gupta * the "fragmentation score" of a node/zone. 62facdaa91SNitin Gupta */ 63facdaa91SNitin Gupta #if defined CONFIG_TRANSPARENT_HUGEPAGE 64facdaa91SNitin Gupta #define COMPACTION_HPAGE_ORDER HPAGE_PMD_ORDER 6525788738SNitin Gupta #elif defined CONFIG_HUGETLBFS 66facdaa91SNitin Gupta #define COMPACTION_HPAGE_ORDER HUGETLB_PAGE_ORDER 67facdaa91SNitin Gupta #else 68facdaa91SNitin Gupta #define COMPACTION_HPAGE_ORDER (PMD_SHIFT - PAGE_SHIFT) 69facdaa91SNitin Gupta #endif 70facdaa91SNitin Gupta 71748446bbSMel Gorman static unsigned long release_freepages(struct list_head *freelist) 72748446bbSMel Gorman { 73748446bbSMel Gorman struct page *page, *next; 746bace090SVlastimil Babka unsigned long high_pfn = 0; 75748446bbSMel Gorman 76748446bbSMel Gorman list_for_each_entry_safe(page, next, freelist, lru) { 776bace090SVlastimil Babka unsigned long pfn = page_to_pfn(page); 78748446bbSMel Gorman list_del(&page->lru); 79748446bbSMel Gorman __free_page(page); 806bace090SVlastimil Babka if (pfn > high_pfn) 816bace090SVlastimil Babka high_pfn = pfn; 82748446bbSMel Gorman } 83748446bbSMel Gorman 846bace090SVlastimil Babka return high_pfn; 85748446bbSMel Gorman } 86748446bbSMel Gorman 874469ab98SMel Gorman static void split_map_pages(struct list_head *list) 88ff9543fdSMichal Nazarewicz { 8966c64223SJoonsoo Kim unsigned int i, order, nr_pages; 9066c64223SJoonsoo Kim struct page *page, *next; 9166c64223SJoonsoo Kim LIST_HEAD(tmp_list); 92ff9543fdSMichal Nazarewicz 9366c64223SJoonsoo Kim list_for_each_entry_safe(page, next, list, lru) { 9466c64223SJoonsoo Kim list_del(&page->lru); 9566c64223SJoonsoo Kim 9666c64223SJoonsoo Kim order = page_private(page); 9766c64223SJoonsoo Kim nr_pages = 1 << order; 9866c64223SJoonsoo Kim 9946f24fd8SJoonsoo Kim post_alloc_hook(page, order, __GFP_MOVABLE); 10066c64223SJoonsoo Kim if (order) 10166c64223SJoonsoo Kim split_page(page, order); 10266c64223SJoonsoo Kim 10366c64223SJoonsoo Kim for (i = 0; i < nr_pages; i++) { 10466c64223SJoonsoo Kim list_add(&page->lru, &tmp_list); 10566c64223SJoonsoo Kim page++; 106ff9543fdSMichal Nazarewicz } 107ff9543fdSMichal Nazarewicz } 108ff9543fdSMichal Nazarewicz 10966c64223SJoonsoo Kim list_splice(&tmp_list, list); 11066c64223SJoonsoo Kim } 11166c64223SJoonsoo Kim 112bb13ffebSMel Gorman #ifdef CONFIG_COMPACTION 11368f2736aSMatthew Wilcox (Oracle) bool PageMovable(struct page *page) 114bda807d4SMinchan Kim { 11568f2736aSMatthew Wilcox (Oracle) const struct movable_operations *mops; 116bda807d4SMinchan Kim 117bda807d4SMinchan Kim VM_BUG_ON_PAGE(!PageLocked(page), page); 118bda807d4SMinchan Kim if (!__PageMovable(page)) 11968f2736aSMatthew Wilcox (Oracle) return false; 120bda807d4SMinchan Kim 12168f2736aSMatthew Wilcox (Oracle) mops = page_movable_ops(page); 12268f2736aSMatthew Wilcox (Oracle) if (mops) 12368f2736aSMatthew Wilcox (Oracle) return true; 124bda807d4SMinchan Kim 12568f2736aSMatthew Wilcox (Oracle) return false; 126bda807d4SMinchan Kim } 127bda807d4SMinchan Kim EXPORT_SYMBOL(PageMovable); 128bda807d4SMinchan Kim 12968f2736aSMatthew Wilcox (Oracle) void __SetPageMovable(struct page *page, const struct movable_operations *mops) 130bda807d4SMinchan Kim { 131bda807d4SMinchan Kim VM_BUG_ON_PAGE(!PageLocked(page), page); 13268f2736aSMatthew Wilcox (Oracle) VM_BUG_ON_PAGE((unsigned long)mops & PAGE_MAPPING_MOVABLE, page); 13368f2736aSMatthew Wilcox (Oracle) page->mapping = (void *)((unsigned long)mops | PAGE_MAPPING_MOVABLE); 134bda807d4SMinchan Kim } 135bda807d4SMinchan Kim EXPORT_SYMBOL(__SetPageMovable); 136bda807d4SMinchan Kim 137bda807d4SMinchan Kim void __ClearPageMovable(struct page *page) 138bda807d4SMinchan Kim { 139bda807d4SMinchan Kim VM_BUG_ON_PAGE(!PageMovable(page), page); 140bda807d4SMinchan Kim /* 14168f2736aSMatthew Wilcox (Oracle) * This page still has the type of a movable page, but it's 14268f2736aSMatthew Wilcox (Oracle) * actually not movable any more. 143bda807d4SMinchan Kim */ 14468f2736aSMatthew Wilcox (Oracle) page->mapping = (void *)PAGE_MAPPING_MOVABLE; 145bda807d4SMinchan Kim } 146bda807d4SMinchan Kim EXPORT_SYMBOL(__ClearPageMovable); 147bda807d4SMinchan Kim 14824e2716fSJoonsoo Kim /* Do not skip compaction more than 64 times */ 14924e2716fSJoonsoo Kim #define COMPACT_MAX_DEFER_SHIFT 6 15024e2716fSJoonsoo Kim 15124e2716fSJoonsoo Kim /* 15224e2716fSJoonsoo Kim * Compaction is deferred when compaction fails to result in a page 153860b3272SAlex Shi * allocation success. 1 << compact_defer_shift, compactions are skipped up 15424e2716fSJoonsoo Kim * to a limit of 1 << COMPACT_MAX_DEFER_SHIFT 15524e2716fSJoonsoo Kim */ 1562271b016SHui Su static void defer_compaction(struct zone *zone, int order) 15724e2716fSJoonsoo Kim { 15824e2716fSJoonsoo Kim zone->compact_considered = 0; 15924e2716fSJoonsoo Kim zone->compact_defer_shift++; 16024e2716fSJoonsoo Kim 16124e2716fSJoonsoo Kim if (order < zone->compact_order_failed) 16224e2716fSJoonsoo Kim zone->compact_order_failed = order; 16324e2716fSJoonsoo Kim 16424e2716fSJoonsoo Kim if (zone->compact_defer_shift > COMPACT_MAX_DEFER_SHIFT) 16524e2716fSJoonsoo Kim zone->compact_defer_shift = COMPACT_MAX_DEFER_SHIFT; 16624e2716fSJoonsoo Kim 16724e2716fSJoonsoo Kim trace_mm_compaction_defer_compaction(zone, order); 16824e2716fSJoonsoo Kim } 16924e2716fSJoonsoo Kim 17024e2716fSJoonsoo Kim /* Returns true if compaction should be skipped this time */ 1712271b016SHui Su static bool compaction_deferred(struct zone *zone, int order) 17224e2716fSJoonsoo Kim { 17324e2716fSJoonsoo Kim unsigned long defer_limit = 1UL << zone->compact_defer_shift; 17424e2716fSJoonsoo Kim 17524e2716fSJoonsoo Kim if (order < zone->compact_order_failed) 17624e2716fSJoonsoo Kim return false; 17724e2716fSJoonsoo Kim 17824e2716fSJoonsoo Kim /* Avoid possible overflow */ 17962b35fe0SMateusz Nosek if (++zone->compact_considered >= defer_limit) { 18024e2716fSJoonsoo Kim zone->compact_considered = defer_limit; 18124e2716fSJoonsoo Kim return false; 18262b35fe0SMateusz Nosek } 18324e2716fSJoonsoo Kim 18424e2716fSJoonsoo Kim trace_mm_compaction_deferred(zone, order); 18524e2716fSJoonsoo Kim 18624e2716fSJoonsoo Kim return true; 18724e2716fSJoonsoo Kim } 18824e2716fSJoonsoo Kim 18924e2716fSJoonsoo Kim /* 19024e2716fSJoonsoo Kim * Update defer tracking counters after successful compaction of given order, 19124e2716fSJoonsoo Kim * which means an allocation either succeeded (alloc_success == true) or is 19224e2716fSJoonsoo Kim * expected to succeed. 19324e2716fSJoonsoo Kim */ 19424e2716fSJoonsoo Kim void compaction_defer_reset(struct zone *zone, int order, 19524e2716fSJoonsoo Kim bool alloc_success) 19624e2716fSJoonsoo Kim { 19724e2716fSJoonsoo Kim if (alloc_success) { 19824e2716fSJoonsoo Kim zone->compact_considered = 0; 19924e2716fSJoonsoo Kim zone->compact_defer_shift = 0; 20024e2716fSJoonsoo Kim } 20124e2716fSJoonsoo Kim if (order >= zone->compact_order_failed) 20224e2716fSJoonsoo Kim zone->compact_order_failed = order + 1; 20324e2716fSJoonsoo Kim 20424e2716fSJoonsoo Kim trace_mm_compaction_defer_reset(zone, order); 20524e2716fSJoonsoo Kim } 20624e2716fSJoonsoo Kim 20724e2716fSJoonsoo Kim /* Returns true if restarting compaction after many failures */ 2082271b016SHui Su static bool compaction_restarting(struct zone *zone, int order) 20924e2716fSJoonsoo Kim { 21024e2716fSJoonsoo Kim if (order < zone->compact_order_failed) 21124e2716fSJoonsoo Kim return false; 21224e2716fSJoonsoo Kim 21324e2716fSJoonsoo Kim return zone->compact_defer_shift == COMPACT_MAX_DEFER_SHIFT && 21424e2716fSJoonsoo Kim zone->compact_considered >= 1UL << zone->compact_defer_shift; 21524e2716fSJoonsoo Kim } 21624e2716fSJoonsoo Kim 217bb13ffebSMel Gorman /* Returns true if the pageblock should be scanned for pages to isolate. */ 218bb13ffebSMel Gorman static inline bool isolation_suitable(struct compact_control *cc, 219bb13ffebSMel Gorman struct page *page) 220bb13ffebSMel Gorman { 221bb13ffebSMel Gorman if (cc->ignore_skip_hint) 222bb13ffebSMel Gorman return true; 223bb13ffebSMel Gorman 224bb13ffebSMel Gorman return !get_pageblock_skip(page); 225bb13ffebSMel Gorman } 226bb13ffebSMel Gorman 22702333641SVlastimil Babka static void reset_cached_positions(struct zone *zone) 22802333641SVlastimil Babka { 22902333641SVlastimil Babka zone->compact_cached_migrate_pfn[0] = zone->zone_start_pfn; 23002333641SVlastimil Babka zone->compact_cached_migrate_pfn[1] = zone->zone_start_pfn; 231623446e4SJoonsoo Kim zone->compact_cached_free_pfn = 23206b6640aSVlastimil Babka pageblock_start_pfn(zone_end_pfn(zone) - 1); 23302333641SVlastimil Babka } 23402333641SVlastimil Babka 235bb13ffebSMel Gorman /* 2362271b016SHui Su * Compound pages of >= pageblock_order should consistently be skipped until 237b527cfe5SVlastimil Babka * released. It is always pointless to compact pages of such order (if they are 238b527cfe5SVlastimil Babka * migratable), and the pageblocks they occupy cannot contain any free pages. 23921dc7e02SDavid Rientjes */ 240b527cfe5SVlastimil Babka static bool pageblock_skip_persistent(struct page *page) 24121dc7e02SDavid Rientjes { 242b527cfe5SVlastimil Babka if (!PageCompound(page)) 24321dc7e02SDavid Rientjes return false; 244b527cfe5SVlastimil Babka 245b527cfe5SVlastimil Babka page = compound_head(page); 246b527cfe5SVlastimil Babka 247b527cfe5SVlastimil Babka if (compound_order(page) >= pageblock_order) 24821dc7e02SDavid Rientjes return true; 249b527cfe5SVlastimil Babka 250b527cfe5SVlastimil Babka return false; 25121dc7e02SDavid Rientjes } 25221dc7e02SDavid Rientjes 253e332f741SMel Gorman static bool 254e332f741SMel Gorman __reset_isolation_pfn(struct zone *zone, unsigned long pfn, bool check_source, 255e332f741SMel Gorman bool check_target) 256e332f741SMel Gorman { 257e332f741SMel Gorman struct page *page = pfn_to_online_page(pfn); 2586b0868c8SMel Gorman struct page *block_page; 259e332f741SMel Gorman struct page *end_page; 260e332f741SMel Gorman unsigned long block_pfn; 261e332f741SMel Gorman 262e332f741SMel Gorman if (!page) 263e332f741SMel Gorman return false; 264e332f741SMel Gorman if (zone != page_zone(page)) 265e332f741SMel Gorman return false; 266e332f741SMel Gorman if (pageblock_skip_persistent(page)) 267e332f741SMel Gorman return false; 268e332f741SMel Gorman 269e332f741SMel Gorman /* 270e332f741SMel Gorman * If skip is already cleared do no further checking once the 271e332f741SMel Gorman * restart points have been set. 272e332f741SMel Gorman */ 273e332f741SMel Gorman if (check_source && check_target && !get_pageblock_skip(page)) 274e332f741SMel Gorman return true; 275e332f741SMel Gorman 276e332f741SMel Gorman /* 277e332f741SMel Gorman * If clearing skip for the target scanner, do not select a 278e332f741SMel Gorman * non-movable pageblock as the starting point. 279e332f741SMel Gorman */ 280e332f741SMel Gorman if (!check_source && check_target && 281e332f741SMel Gorman get_pageblock_migratetype(page) != MIGRATE_MOVABLE) 282e332f741SMel Gorman return false; 283e332f741SMel Gorman 2846b0868c8SMel Gorman /* Ensure the start of the pageblock or zone is online and valid */ 2856b0868c8SMel Gorman block_pfn = pageblock_start_pfn(pfn); 286a2e9a5afSVlastimil Babka block_pfn = max(block_pfn, zone->zone_start_pfn); 287a2e9a5afSVlastimil Babka block_page = pfn_to_online_page(block_pfn); 2886b0868c8SMel Gorman if (block_page) { 2896b0868c8SMel Gorman page = block_page; 2906b0868c8SMel Gorman pfn = block_pfn; 2916b0868c8SMel Gorman } 2926b0868c8SMel Gorman 2936b0868c8SMel Gorman /* Ensure the end of the pageblock or zone is online and valid */ 294a2e9a5afSVlastimil Babka block_pfn = pageblock_end_pfn(pfn) - 1; 2956b0868c8SMel Gorman block_pfn = min(block_pfn, zone_end_pfn(zone) - 1); 2966b0868c8SMel Gorman end_page = pfn_to_online_page(block_pfn); 2976b0868c8SMel Gorman if (!end_page) 2986b0868c8SMel Gorman return false; 2996b0868c8SMel Gorman 300e332f741SMel Gorman /* 301e332f741SMel Gorman * Only clear the hint if a sample indicates there is either a 302e332f741SMel Gorman * free page or an LRU page in the block. One or other condition 303e332f741SMel Gorman * is necessary for the block to be a migration source/target. 304e332f741SMel Gorman */ 305e332f741SMel Gorman do { 306e332f741SMel Gorman if (check_source && PageLRU(page)) { 307e332f741SMel Gorman clear_pageblock_skip(page); 308e332f741SMel Gorman return true; 309e332f741SMel Gorman } 310e332f741SMel Gorman 311e332f741SMel Gorman if (check_target && PageBuddy(page)) { 312e332f741SMel Gorman clear_pageblock_skip(page); 313e332f741SMel Gorman return true; 314e332f741SMel Gorman } 315e332f741SMel Gorman 316e332f741SMel Gorman page += (1 << PAGE_ALLOC_COSTLY_ORDER); 317a2e9a5afSVlastimil Babka } while (page <= end_page); 318e332f741SMel Gorman 319e332f741SMel Gorman return false; 320e332f741SMel Gorman } 321e332f741SMel Gorman 32221dc7e02SDavid Rientjes /* 323bb13ffebSMel Gorman * This function is called to clear all cached information on pageblocks that 324bb13ffebSMel Gorman * should be skipped for page isolation when the migrate and free page scanner 325bb13ffebSMel Gorman * meet. 326bb13ffebSMel Gorman */ 32762997027SMel Gorman static void __reset_isolation_suitable(struct zone *zone) 328bb13ffebSMel Gorman { 329e332f741SMel Gorman unsigned long migrate_pfn = zone->zone_start_pfn; 3306b0868c8SMel Gorman unsigned long free_pfn = zone_end_pfn(zone) - 1; 331e332f741SMel Gorman unsigned long reset_migrate = free_pfn; 332e332f741SMel Gorman unsigned long reset_free = migrate_pfn; 333e332f741SMel Gorman bool source_set = false; 334e332f741SMel Gorman bool free_set = false; 335e332f741SMel Gorman 336e332f741SMel Gorman if (!zone->compact_blockskip_flush) 337e332f741SMel Gorman return; 338bb13ffebSMel Gorman 33962997027SMel Gorman zone->compact_blockskip_flush = false; 340bb13ffebSMel Gorman 341e332f741SMel Gorman /* 342e332f741SMel Gorman * Walk the zone and update pageblock skip information. Source looks 343e332f741SMel Gorman * for PageLRU while target looks for PageBuddy. When the scanner 344e332f741SMel Gorman * is found, both PageBuddy and PageLRU are checked as the pageblock 345e332f741SMel Gorman * is suitable as both source and target. 346e332f741SMel Gorman */ 347e332f741SMel Gorman for (; migrate_pfn < free_pfn; migrate_pfn += pageblock_nr_pages, 348e332f741SMel Gorman free_pfn -= pageblock_nr_pages) { 349bb13ffebSMel Gorman cond_resched(); 350bb13ffebSMel Gorman 351e332f741SMel Gorman /* Update the migrate PFN */ 352e332f741SMel Gorman if (__reset_isolation_pfn(zone, migrate_pfn, true, source_set) && 353e332f741SMel Gorman migrate_pfn < reset_migrate) { 354e332f741SMel Gorman source_set = true; 355e332f741SMel Gorman reset_migrate = migrate_pfn; 356e332f741SMel Gorman zone->compact_init_migrate_pfn = reset_migrate; 357e332f741SMel Gorman zone->compact_cached_migrate_pfn[0] = reset_migrate; 358e332f741SMel Gorman zone->compact_cached_migrate_pfn[1] = reset_migrate; 359bb13ffebSMel Gorman } 36002333641SVlastimil Babka 361e332f741SMel Gorman /* Update the free PFN */ 362e332f741SMel Gorman if (__reset_isolation_pfn(zone, free_pfn, free_set, true) && 363e332f741SMel Gorman free_pfn > reset_free) { 364e332f741SMel Gorman free_set = true; 365e332f741SMel Gorman reset_free = free_pfn; 366e332f741SMel Gorman zone->compact_init_free_pfn = reset_free; 367e332f741SMel Gorman zone->compact_cached_free_pfn = reset_free; 368e332f741SMel Gorman } 369e332f741SMel Gorman } 370e332f741SMel Gorman 371e332f741SMel Gorman /* Leave no distance if no suitable block was reset */ 372e332f741SMel Gorman if (reset_migrate >= reset_free) { 373e332f741SMel Gorman zone->compact_cached_migrate_pfn[0] = migrate_pfn; 374e332f741SMel Gorman zone->compact_cached_migrate_pfn[1] = migrate_pfn; 375e332f741SMel Gorman zone->compact_cached_free_pfn = free_pfn; 376e332f741SMel Gorman } 377bb13ffebSMel Gorman } 378bb13ffebSMel Gorman 37962997027SMel Gorman void reset_isolation_suitable(pg_data_t *pgdat) 38062997027SMel Gorman { 38162997027SMel Gorman int zoneid; 38262997027SMel Gorman 38362997027SMel Gorman for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) { 38462997027SMel Gorman struct zone *zone = &pgdat->node_zones[zoneid]; 38562997027SMel Gorman if (!populated_zone(zone)) 38662997027SMel Gorman continue; 38762997027SMel Gorman 38862997027SMel Gorman /* Only flush if a full compaction finished recently */ 38962997027SMel Gorman if (zone->compact_blockskip_flush) 39062997027SMel Gorman __reset_isolation_suitable(zone); 39162997027SMel Gorman } 39262997027SMel Gorman } 39362997027SMel Gorman 394bb13ffebSMel Gorman /* 395e380bebeSMel Gorman * Sets the pageblock skip bit if it was clear. Note that this is a hint as 396e380bebeSMel Gorman * locks are not required for read/writers. Returns true if it was already set. 397e380bebeSMel Gorman */ 398e380bebeSMel Gorman static bool test_and_set_skip(struct compact_control *cc, struct page *page, 399e380bebeSMel Gorman unsigned long pfn) 400e380bebeSMel Gorman { 401e380bebeSMel Gorman bool skip; 402e380bebeSMel Gorman 403e380bebeSMel Gorman /* Do no update if skip hint is being ignored */ 404e380bebeSMel Gorman if (cc->ignore_skip_hint) 405e380bebeSMel Gorman return false; 406e380bebeSMel Gorman 407e380bebeSMel Gorman if (!IS_ALIGNED(pfn, pageblock_nr_pages)) 408e380bebeSMel Gorman return false; 409e380bebeSMel Gorman 410e380bebeSMel Gorman skip = get_pageblock_skip(page); 411e380bebeSMel Gorman if (!skip && !cc->no_set_skip_hint) 412e380bebeSMel Gorman set_pageblock_skip(page); 413e380bebeSMel Gorman 414e380bebeSMel Gorman return skip; 415e380bebeSMel Gorman } 416e380bebeSMel Gorman 417e380bebeSMel Gorman static void update_cached_migrate(struct compact_control *cc, unsigned long pfn) 418e380bebeSMel Gorman { 419e380bebeSMel Gorman struct zone *zone = cc->zone; 420e380bebeSMel Gorman 421e380bebeSMel Gorman pfn = pageblock_end_pfn(pfn); 422e380bebeSMel Gorman 423e380bebeSMel Gorman /* Set for isolation rather than compaction */ 424e380bebeSMel Gorman if (cc->no_set_skip_hint) 425e380bebeSMel Gorman return; 426e380bebeSMel Gorman 427e380bebeSMel Gorman if (pfn > zone->compact_cached_migrate_pfn[0]) 428e380bebeSMel Gorman zone->compact_cached_migrate_pfn[0] = pfn; 429e380bebeSMel Gorman if (cc->mode != MIGRATE_ASYNC && 430e380bebeSMel Gorman pfn > zone->compact_cached_migrate_pfn[1]) 431e380bebeSMel Gorman zone->compact_cached_migrate_pfn[1] = pfn; 432e380bebeSMel Gorman } 433e380bebeSMel Gorman 434e380bebeSMel Gorman /* 435bb13ffebSMel Gorman * If no pages were isolated then mark this pageblock to be skipped in the 43662997027SMel Gorman * future. The information is later cleared by __reset_isolation_suitable(). 437bb13ffebSMel Gorman */ 438c89511abSMel Gorman static void update_pageblock_skip(struct compact_control *cc, 439d097a6f6SMel Gorman struct page *page, unsigned long pfn) 440bb13ffebSMel Gorman { 441c89511abSMel Gorman struct zone *zone = cc->zone; 4426815bf3fSJoonsoo Kim 4432583d671SVlastimil Babka if (cc->no_set_skip_hint) 4446815bf3fSJoonsoo Kim return; 4456815bf3fSJoonsoo Kim 446bb13ffebSMel Gorman if (!page) 447bb13ffebSMel Gorman return; 448bb13ffebSMel Gorman 449bb13ffebSMel Gorman set_pageblock_skip(page); 450c89511abSMel Gorman 45135979ef3SDavid Rientjes /* Update where async and sync compaction should restart */ 45235979ef3SDavid Rientjes if (pfn < zone->compact_cached_free_pfn) 453c89511abSMel Gorman zone->compact_cached_free_pfn = pfn; 454c89511abSMel Gorman } 455bb13ffebSMel Gorman #else 456bb13ffebSMel Gorman static inline bool isolation_suitable(struct compact_control *cc, 457bb13ffebSMel Gorman struct page *page) 458bb13ffebSMel Gorman { 459bb13ffebSMel Gorman return true; 460bb13ffebSMel Gorman } 461bb13ffebSMel Gorman 462b527cfe5SVlastimil Babka static inline bool pageblock_skip_persistent(struct page *page) 46321dc7e02SDavid Rientjes { 46421dc7e02SDavid Rientjes return false; 46521dc7e02SDavid Rientjes } 46621dc7e02SDavid Rientjes 46721dc7e02SDavid Rientjes static inline void update_pageblock_skip(struct compact_control *cc, 468d097a6f6SMel Gorman struct page *page, unsigned long pfn) 469bb13ffebSMel Gorman { 470bb13ffebSMel Gorman } 471e380bebeSMel Gorman 472e380bebeSMel Gorman static void update_cached_migrate(struct compact_control *cc, unsigned long pfn) 473e380bebeSMel Gorman { 474e380bebeSMel Gorman } 475e380bebeSMel Gorman 476e380bebeSMel Gorman static bool test_and_set_skip(struct compact_control *cc, struct page *page, 477e380bebeSMel Gorman unsigned long pfn) 478e380bebeSMel Gorman { 479e380bebeSMel Gorman return false; 480e380bebeSMel Gorman } 481bb13ffebSMel Gorman #endif /* CONFIG_COMPACTION */ 482bb13ffebSMel Gorman 4831f9efdefSVlastimil Babka /* 4848b44d279SVlastimil Babka * Compaction requires the taking of some coarse locks that are potentially 485cb2dcaf0SMel Gorman * very heavily contended. For async compaction, trylock and record if the 486cb2dcaf0SMel Gorman * lock is contended. The lock will still be acquired but compaction will 487cb2dcaf0SMel Gorman * abort when the current block is finished regardless of success rate. 488cb2dcaf0SMel Gorman * Sync compaction acquires the lock. 4898b44d279SVlastimil Babka * 490cb2dcaf0SMel Gorman * Always returns true which makes it easier to track lock state in callers. 4911f9efdefSVlastimil Babka */ 492cb2dcaf0SMel Gorman static bool compact_lock_irqsave(spinlock_t *lock, unsigned long *flags, 4938b44d279SVlastimil Babka struct compact_control *cc) 49477337edeSJules Irenge __acquires(lock) 4958b44d279SVlastimil Babka { 496cb2dcaf0SMel Gorman /* Track if the lock is contended in async mode */ 497cb2dcaf0SMel Gorman if (cc->mode == MIGRATE_ASYNC && !cc->contended) { 498cb2dcaf0SMel Gorman if (spin_trylock_irqsave(lock, *flags)) 499cb2dcaf0SMel Gorman return true; 500cb2dcaf0SMel Gorman 501c3486f53SVlastimil Babka cc->contended = true; 5028b44d279SVlastimil Babka } 5031f9efdefSVlastimil Babka 504cb2dcaf0SMel Gorman spin_lock_irqsave(lock, *flags); 5058b44d279SVlastimil Babka return true; 5062a1402aaSMel Gorman } 5072a1402aaSMel Gorman 50885aa125fSMichal Nazarewicz /* 509c67fe375SMel Gorman * Compaction requires the taking of some coarse locks that are potentially 5108b44d279SVlastimil Babka * very heavily contended. The lock should be periodically unlocked to avoid 5118b44d279SVlastimil Babka * having disabled IRQs for a long time, even when there is nobody waiting on 5128b44d279SVlastimil Babka * the lock. It might also be that allowing the IRQs will result in 513d56c1584SMiaohe Lin * need_resched() becoming true. If scheduling is needed, compaction schedules. 5148b44d279SVlastimil Babka * Either compaction type will also abort if a fatal signal is pending. 5158b44d279SVlastimil Babka * In either case if the lock was locked, it is dropped and not regained. 516c67fe375SMel Gorman * 517d56c1584SMiaohe Lin * Returns true if compaction should abort due to fatal signal pending. 518d56c1584SMiaohe Lin * Returns false when compaction can continue. 519c67fe375SMel Gorman */ 5208b44d279SVlastimil Babka static bool compact_unlock_should_abort(spinlock_t *lock, 5218b44d279SVlastimil Babka unsigned long flags, bool *locked, struct compact_control *cc) 522c67fe375SMel Gorman { 5238b44d279SVlastimil Babka if (*locked) { 5248b44d279SVlastimil Babka spin_unlock_irqrestore(lock, flags); 5258b44d279SVlastimil Babka *locked = false; 526c67fe375SMel Gorman } 527c67fe375SMel Gorman 5288b44d279SVlastimil Babka if (fatal_signal_pending(current)) { 529c3486f53SVlastimil Babka cc->contended = true; 5308b44d279SVlastimil Babka return true; 5318b44d279SVlastimil Babka } 5328b44d279SVlastimil Babka 533cf66f070SMel Gorman cond_resched(); 534be976572SVlastimil Babka 535be976572SVlastimil Babka return false; 536be976572SVlastimil Babka } 537be976572SVlastimil Babka 538c67fe375SMel Gorman /* 5399e4be470SJerome Marchand * Isolate free pages onto a private freelist. If @strict is true, will abort 5409e4be470SJerome Marchand * returning 0 on any invalid PFNs or non-free pages inside of the pageblock 5419e4be470SJerome Marchand * (even though it may still end up isolating some pages). 54285aa125fSMichal Nazarewicz */ 543f40d1e42SMel Gorman static unsigned long isolate_freepages_block(struct compact_control *cc, 544e14c720eSVlastimil Babka unsigned long *start_pfn, 54585aa125fSMichal Nazarewicz unsigned long end_pfn, 54685aa125fSMichal Nazarewicz struct list_head *freelist, 5474fca9730SMel Gorman unsigned int stride, 54885aa125fSMichal Nazarewicz bool strict) 549748446bbSMel Gorman { 550b7aba698SMel Gorman int nr_scanned = 0, total_isolated = 0; 551d097a6f6SMel Gorman struct page *cursor; 552b8b2d825SXiubo Li unsigned long flags = 0; 553f40d1e42SMel Gorman bool locked = false; 554e14c720eSVlastimil Babka unsigned long blockpfn = *start_pfn; 55566c64223SJoonsoo Kim unsigned int order; 556748446bbSMel Gorman 5574fca9730SMel Gorman /* Strict mode is for isolation, speed is secondary */ 5584fca9730SMel Gorman if (strict) 5594fca9730SMel Gorman stride = 1; 5604fca9730SMel Gorman 561748446bbSMel Gorman cursor = pfn_to_page(blockpfn); 562748446bbSMel Gorman 563f40d1e42SMel Gorman /* Isolate free pages. */ 5644fca9730SMel Gorman for (; blockpfn < end_pfn; blockpfn += stride, cursor += stride) { 56566c64223SJoonsoo Kim int isolated; 566748446bbSMel Gorman struct page *page = cursor; 567748446bbSMel Gorman 5688b44d279SVlastimil Babka /* 5698b44d279SVlastimil Babka * Periodically drop the lock (if held) regardless of its 5708b44d279SVlastimil Babka * contention, to give chance to IRQs. Abort if fatal signal 571d56c1584SMiaohe Lin * pending. 5728b44d279SVlastimil Babka */ 573c036ddffSMiaohe Lin if (!(blockpfn % COMPACT_CLUSTER_MAX) 5748b44d279SVlastimil Babka && compact_unlock_should_abort(&cc->zone->lock, flags, 5758b44d279SVlastimil Babka &locked, cc)) 5768b44d279SVlastimil Babka break; 5778b44d279SVlastimil Babka 578b7aba698SMel Gorman nr_scanned++; 5792af120bcSLaura Abbott 5809fcd6d2eSVlastimil Babka /* 5819fcd6d2eSVlastimil Babka * For compound pages such as THP and hugetlbfs, we can save 5829fcd6d2eSVlastimil Babka * potentially a lot of iterations if we skip them at once. 5839fcd6d2eSVlastimil Babka * The check is racy, but we can consider only valid values 5849fcd6d2eSVlastimil Babka * and the only danger is skipping too much. 5859fcd6d2eSVlastimil Babka */ 5869fcd6d2eSVlastimil Babka if (PageCompound(page)) { 58721dc7e02SDavid Rientjes const unsigned int order = compound_order(page); 5889fcd6d2eSVlastimil Babka 589d3c85badSVlastimil Babka if (likely(order < MAX_ORDER)) { 59021dc7e02SDavid Rientjes blockpfn += (1UL << order) - 1; 59121dc7e02SDavid Rientjes cursor += (1UL << order) - 1; 5929fcd6d2eSVlastimil Babka } 5939fcd6d2eSVlastimil Babka goto isolate_fail; 5949fcd6d2eSVlastimil Babka } 5959fcd6d2eSVlastimil Babka 596f40d1e42SMel Gorman if (!PageBuddy(page)) 5972af120bcSLaura Abbott goto isolate_fail; 598f40d1e42SMel Gorman 59985f73e6dSMiaohe Lin /* If we already hold the lock, we can skip some rechecking. */ 60069b7189fSVlastimil Babka if (!locked) { 601cb2dcaf0SMel Gorman locked = compact_lock_irqsave(&cc->zone->lock, 6028b44d279SVlastimil Babka &flags, cc); 603f40d1e42SMel Gorman 604f40d1e42SMel Gorman /* Recheck this is a buddy page under lock */ 605f40d1e42SMel Gorman if (!PageBuddy(page)) 6062af120bcSLaura Abbott goto isolate_fail; 60769b7189fSVlastimil Babka } 608748446bbSMel Gorman 60966c64223SJoonsoo Kim /* Found a free page, will break it into order-0 pages */ 610ab130f91SMatthew Wilcox (Oracle) order = buddy_order(page); 61166c64223SJoonsoo Kim isolated = __isolate_free_page(page, order); 612a4f04f2cSDavid Rientjes if (!isolated) 613a4f04f2cSDavid Rientjes break; 61466c64223SJoonsoo Kim set_page_private(page, order); 615a4f04f2cSDavid Rientjes 616b717d6b9SWilliam Lam nr_scanned += isolated - 1; 617748446bbSMel Gorman total_isolated += isolated; 618a4f04f2cSDavid Rientjes cc->nr_freepages += isolated; 61966c64223SJoonsoo Kim list_add_tail(&page->lru, freelist); 62066c64223SJoonsoo Kim 621a4f04f2cSDavid Rientjes if (!strict && cc->nr_migratepages <= cc->nr_freepages) { 622932ff6bbSJoonsoo Kim blockpfn += isolated; 623932ff6bbSJoonsoo Kim break; 624932ff6bbSJoonsoo Kim } 625a4f04f2cSDavid Rientjes /* Advance to the end of split page */ 626748446bbSMel Gorman blockpfn += isolated - 1; 627748446bbSMel Gorman cursor += isolated - 1; 6282af120bcSLaura Abbott continue; 6292af120bcSLaura Abbott 6302af120bcSLaura Abbott isolate_fail: 6312af120bcSLaura Abbott if (strict) 6322af120bcSLaura Abbott break; 6332af120bcSLaura Abbott else 6342af120bcSLaura Abbott continue; 6352af120bcSLaura Abbott 636748446bbSMel Gorman } 637748446bbSMel Gorman 638a4f04f2cSDavid Rientjes if (locked) 639a4f04f2cSDavid Rientjes spin_unlock_irqrestore(&cc->zone->lock, flags); 640a4f04f2cSDavid Rientjes 6419fcd6d2eSVlastimil Babka /* 6429fcd6d2eSVlastimil Babka * There is a tiny chance that we have read bogus compound_order(), 6439fcd6d2eSVlastimil Babka * so be careful to not go outside of the pageblock. 6449fcd6d2eSVlastimil Babka */ 6459fcd6d2eSVlastimil Babka if (unlikely(blockpfn > end_pfn)) 6469fcd6d2eSVlastimil Babka blockpfn = end_pfn; 6479fcd6d2eSVlastimil Babka 648e34d85f0SJoonsoo Kim trace_mm_compaction_isolate_freepages(*start_pfn, blockpfn, 649e34d85f0SJoonsoo Kim nr_scanned, total_isolated); 650e34d85f0SJoonsoo Kim 651e14c720eSVlastimil Babka /* Record how far we have got within the block */ 652e14c720eSVlastimil Babka *start_pfn = blockpfn; 653e14c720eSVlastimil Babka 654f40d1e42SMel Gorman /* 655f40d1e42SMel Gorman * If strict isolation is requested by CMA then check that all the 656f40d1e42SMel Gorman * pages requested were isolated. If there were any failures, 0 is 657f40d1e42SMel Gorman * returned and CMA will fail. 658f40d1e42SMel Gorman */ 6592af120bcSLaura Abbott if (strict && blockpfn < end_pfn) 660f40d1e42SMel Gorman total_isolated = 0; 661f40d1e42SMel Gorman 6627f354a54SDavid Rientjes cc->total_free_scanned += nr_scanned; 663397487dbSMel Gorman if (total_isolated) 664010fc29aSMinchan Kim count_compact_events(COMPACTISOLATED, total_isolated); 665748446bbSMel Gorman return total_isolated; 666748446bbSMel Gorman } 667748446bbSMel Gorman 66885aa125fSMichal Nazarewicz /** 66985aa125fSMichal Nazarewicz * isolate_freepages_range() - isolate free pages. 670e8b098fcSMike Rapoport * @cc: Compaction control structure. 67185aa125fSMichal Nazarewicz * @start_pfn: The first PFN to start isolating. 67285aa125fSMichal Nazarewicz * @end_pfn: The one-past-last PFN. 67385aa125fSMichal Nazarewicz * 67485aa125fSMichal Nazarewicz * Non-free pages, invalid PFNs, or zone boundaries within the 67585aa125fSMichal Nazarewicz * [start_pfn, end_pfn) range are considered errors, cause function to 67685aa125fSMichal Nazarewicz * undo its actions and return zero. 67785aa125fSMichal Nazarewicz * 67885aa125fSMichal Nazarewicz * Otherwise, function returns one-past-the-last PFN of isolated page 67985aa125fSMichal Nazarewicz * (which may be greater then end_pfn if end fell in a middle of 68085aa125fSMichal Nazarewicz * a free page). 68185aa125fSMichal Nazarewicz */ 682ff9543fdSMichal Nazarewicz unsigned long 683bb13ffebSMel Gorman isolate_freepages_range(struct compact_control *cc, 684bb13ffebSMel Gorman unsigned long start_pfn, unsigned long end_pfn) 68585aa125fSMichal Nazarewicz { 686e1409c32SJoonsoo Kim unsigned long isolated, pfn, block_start_pfn, block_end_pfn; 68785aa125fSMichal Nazarewicz LIST_HEAD(freelist); 68885aa125fSMichal Nazarewicz 6897d49d886SVlastimil Babka pfn = start_pfn; 69006b6640aSVlastimil Babka block_start_pfn = pageblock_start_pfn(pfn); 691e1409c32SJoonsoo Kim if (block_start_pfn < cc->zone->zone_start_pfn) 692e1409c32SJoonsoo Kim block_start_pfn = cc->zone->zone_start_pfn; 69306b6640aSVlastimil Babka block_end_pfn = pageblock_end_pfn(pfn); 6947d49d886SVlastimil Babka 6957d49d886SVlastimil Babka for (; pfn < end_pfn; pfn += isolated, 696e1409c32SJoonsoo Kim block_start_pfn = block_end_pfn, 6977d49d886SVlastimil Babka block_end_pfn += pageblock_nr_pages) { 698e14c720eSVlastimil Babka /* Protect pfn from changing by isolate_freepages_block */ 699e14c720eSVlastimil Babka unsigned long isolate_start_pfn = pfn; 7007d49d886SVlastimil Babka 70185aa125fSMichal Nazarewicz block_end_pfn = min(block_end_pfn, end_pfn); 70285aa125fSMichal Nazarewicz 70358420016SJoonsoo Kim /* 70458420016SJoonsoo Kim * pfn could pass the block_end_pfn if isolated freepage 70558420016SJoonsoo Kim * is more than pageblock order. In this case, we adjust 70658420016SJoonsoo Kim * scanning range to right one. 70758420016SJoonsoo Kim */ 70858420016SJoonsoo Kim if (pfn >= block_end_pfn) { 70906b6640aSVlastimil Babka block_start_pfn = pageblock_start_pfn(pfn); 71006b6640aSVlastimil Babka block_end_pfn = pageblock_end_pfn(pfn); 71158420016SJoonsoo Kim block_end_pfn = min(block_end_pfn, end_pfn); 71258420016SJoonsoo Kim } 71358420016SJoonsoo Kim 714e1409c32SJoonsoo Kim if (!pageblock_pfn_to_page(block_start_pfn, 715e1409c32SJoonsoo Kim block_end_pfn, cc->zone)) 7167d49d886SVlastimil Babka break; 7177d49d886SVlastimil Babka 718e14c720eSVlastimil Babka isolated = isolate_freepages_block(cc, &isolate_start_pfn, 7194fca9730SMel Gorman block_end_pfn, &freelist, 0, true); 72085aa125fSMichal Nazarewicz 72185aa125fSMichal Nazarewicz /* 72285aa125fSMichal Nazarewicz * In strict mode, isolate_freepages_block() returns 0 if 72385aa125fSMichal Nazarewicz * there are any holes in the block (ie. invalid PFNs or 72485aa125fSMichal Nazarewicz * non-free pages). 72585aa125fSMichal Nazarewicz */ 72685aa125fSMichal Nazarewicz if (!isolated) 72785aa125fSMichal Nazarewicz break; 72885aa125fSMichal Nazarewicz 72985aa125fSMichal Nazarewicz /* 73085aa125fSMichal Nazarewicz * If we managed to isolate pages, it is always (1 << n) * 73185aa125fSMichal Nazarewicz * pageblock_nr_pages for some non-negative n. (Max order 73285aa125fSMichal Nazarewicz * page may span two pageblocks). 73385aa125fSMichal Nazarewicz */ 73485aa125fSMichal Nazarewicz } 73585aa125fSMichal Nazarewicz 73666c64223SJoonsoo Kim /* __isolate_free_page() does not map the pages */ 7374469ab98SMel Gorman split_map_pages(&freelist); 73885aa125fSMichal Nazarewicz 73985aa125fSMichal Nazarewicz if (pfn < end_pfn) { 74085aa125fSMichal Nazarewicz /* Loop terminated early, cleanup. */ 74185aa125fSMichal Nazarewicz release_freepages(&freelist); 74285aa125fSMichal Nazarewicz return 0; 74385aa125fSMichal Nazarewicz } 74485aa125fSMichal Nazarewicz 74585aa125fSMichal Nazarewicz /* We don't use freelists for anything. */ 74685aa125fSMichal Nazarewicz return pfn; 74785aa125fSMichal Nazarewicz } 74885aa125fSMichal Nazarewicz 749748446bbSMel Gorman /* Similar to reclaim, but different enough that they don't share logic */ 7505f438eeeSAndrey Ryabinin static bool too_many_isolated(pg_data_t *pgdat) 751748446bbSMel Gorman { 752d818fca1SMel Gorman bool too_many; 753d818fca1SMel Gorman 754bc693045SMinchan Kim unsigned long active, inactive, isolated; 755748446bbSMel Gorman 7565f438eeeSAndrey Ryabinin inactive = node_page_state(pgdat, NR_INACTIVE_FILE) + 7575f438eeeSAndrey Ryabinin node_page_state(pgdat, NR_INACTIVE_ANON); 7585f438eeeSAndrey Ryabinin active = node_page_state(pgdat, NR_ACTIVE_FILE) + 7595f438eeeSAndrey Ryabinin node_page_state(pgdat, NR_ACTIVE_ANON); 7605f438eeeSAndrey Ryabinin isolated = node_page_state(pgdat, NR_ISOLATED_FILE) + 7615f438eeeSAndrey Ryabinin node_page_state(pgdat, NR_ISOLATED_ANON); 762748446bbSMel Gorman 763d818fca1SMel Gorman too_many = isolated > (inactive + active) / 2; 764d818fca1SMel Gorman if (!too_many) 765d818fca1SMel Gorman wake_throttle_isolated(pgdat); 766d818fca1SMel Gorman 767d818fca1SMel Gorman return too_many; 768748446bbSMel Gorman } 769748446bbSMel Gorman 7702fe86e00SMichal Nazarewicz /** 771edc2ca61SVlastimil Babka * isolate_migratepages_block() - isolate all migrate-able pages within 772edc2ca61SVlastimil Babka * a single pageblock 7732fe86e00SMichal Nazarewicz * @cc: Compaction control structure. 774edc2ca61SVlastimil Babka * @low_pfn: The first PFN to isolate 775edc2ca61SVlastimil Babka * @end_pfn: The one-past-the-last PFN to isolate, within same pageblock 77689f6c88aSHugh Dickins * @mode: Isolation mode to be used. 7772fe86e00SMichal Nazarewicz * 7782fe86e00SMichal Nazarewicz * Isolate all pages that can be migrated from the range specified by 779edc2ca61SVlastimil Babka * [low_pfn, end_pfn). The range is expected to be within same pageblock. 780c2ad7a1fSOscar Salvador * Returns errno, like -EAGAIN or -EINTR in case e.g signal pending or congestion, 781369fa227SOscar Salvador * -ENOMEM in case we could not allocate a page, or 0. 782c2ad7a1fSOscar Salvador * cc->migrate_pfn will contain the next pfn to scan. 7832fe86e00SMichal Nazarewicz * 784edc2ca61SVlastimil Babka * The pages are isolated on cc->migratepages list (not required to be empty), 785c2ad7a1fSOscar Salvador * and cc->nr_migratepages is updated accordingly. 786748446bbSMel Gorman */ 787c2ad7a1fSOscar Salvador static int 788edc2ca61SVlastimil Babka isolate_migratepages_block(struct compact_control *cc, unsigned long low_pfn, 78989f6c88aSHugh Dickins unsigned long end_pfn, isolate_mode_t mode) 790748446bbSMel Gorman { 7915f438eeeSAndrey Ryabinin pg_data_t *pgdat = cc->zone->zone_pgdat; 792b7aba698SMel Gorman unsigned long nr_scanned = 0, nr_isolated = 0; 793fa9add64SHugh Dickins struct lruvec *lruvec; 794b8b2d825SXiubo Li unsigned long flags = 0; 7956168d0daSAlex Shi struct lruvec *locked = NULL; 796bb13ffebSMel Gorman struct page *page = NULL, *valid_page = NULL; 79789f6c88aSHugh Dickins struct address_space *mapping; 798e34d85f0SJoonsoo Kim unsigned long start_pfn = low_pfn; 799fdd048e1SVlastimil Babka bool skip_on_failure = false; 800fdd048e1SVlastimil Babka unsigned long next_skip_pfn = 0; 801e380bebeSMel Gorman bool skip_updated = false; 802c2ad7a1fSOscar Salvador int ret = 0; 803c2ad7a1fSOscar Salvador 804c2ad7a1fSOscar Salvador cc->migrate_pfn = low_pfn; 805748446bbSMel Gorman 806748446bbSMel Gorman /* 807748446bbSMel Gorman * Ensure that there are not too many pages isolated from the LRU 808748446bbSMel Gorman * list by either parallel reclaimers or compaction. If there are, 809748446bbSMel Gorman * delay for some time until fewer pages are isolated 810748446bbSMel Gorman */ 8115f438eeeSAndrey Ryabinin while (unlikely(too_many_isolated(pgdat))) { 812d20bdd57SZi Yan /* stop isolation if there are still pages not migrated */ 813d20bdd57SZi Yan if (cc->nr_migratepages) 814c2ad7a1fSOscar Salvador return -EAGAIN; 815d20bdd57SZi Yan 816f9e35b3bSMel Gorman /* async migration should just abort */ 817e0b9daebSDavid Rientjes if (cc->mode == MIGRATE_ASYNC) 818c2ad7a1fSOscar Salvador return -EAGAIN; 819f9e35b3bSMel Gorman 820c3f4a9a2SMel Gorman reclaim_throttle(pgdat, VMSCAN_THROTTLE_ISOLATED); 821748446bbSMel Gorman 822748446bbSMel Gorman if (fatal_signal_pending(current)) 823c2ad7a1fSOscar Salvador return -EINTR; 824748446bbSMel Gorman } 825748446bbSMel Gorman 826cf66f070SMel Gorman cond_resched(); 827aeef4b83SDavid Rientjes 828fdd048e1SVlastimil Babka if (cc->direct_compaction && (cc->mode == MIGRATE_ASYNC)) { 829fdd048e1SVlastimil Babka skip_on_failure = true; 830fdd048e1SVlastimil Babka next_skip_pfn = block_end_pfn(low_pfn, cc->order); 831fdd048e1SVlastimil Babka } 832fdd048e1SVlastimil Babka 833748446bbSMel Gorman /* Time to isolate some pages for migration */ 834748446bbSMel Gorman for (; low_pfn < end_pfn; low_pfn++) { 83529c0dde8SVlastimil Babka 836fdd048e1SVlastimil Babka if (skip_on_failure && low_pfn >= next_skip_pfn) { 837fdd048e1SVlastimil Babka /* 838fdd048e1SVlastimil Babka * We have isolated all migration candidates in the 839fdd048e1SVlastimil Babka * previous order-aligned block, and did not skip it due 840fdd048e1SVlastimil Babka * to failure. We should migrate the pages now and 841fdd048e1SVlastimil Babka * hopefully succeed compaction. 842fdd048e1SVlastimil Babka */ 843fdd048e1SVlastimil Babka if (nr_isolated) 844fdd048e1SVlastimil Babka break; 845fdd048e1SVlastimil Babka 846fdd048e1SVlastimil Babka /* 847fdd048e1SVlastimil Babka * We failed to isolate in the previous order-aligned 848fdd048e1SVlastimil Babka * block. Set the new boundary to the end of the 849fdd048e1SVlastimil Babka * current block. Note we can't simply increase 850fdd048e1SVlastimil Babka * next_skip_pfn by 1 << order, as low_pfn might have 851fdd048e1SVlastimil Babka * been incremented by a higher number due to skipping 852fdd048e1SVlastimil Babka * a compound or a high-order buddy page in the 853fdd048e1SVlastimil Babka * previous loop iteration. 854fdd048e1SVlastimil Babka */ 855fdd048e1SVlastimil Babka next_skip_pfn = block_end_pfn(low_pfn, cc->order); 856fdd048e1SVlastimil Babka } 857fdd048e1SVlastimil Babka 8588b44d279SVlastimil Babka /* 8598b44d279SVlastimil Babka * Periodically drop the lock (if held) regardless of its 860670105a2SMel Gorman * contention, to give chance to IRQs. Abort completely if 861670105a2SMel Gorman * a fatal signal is pending. 8628b44d279SVlastimil Babka */ 863c036ddffSMiaohe Lin if (!(low_pfn % COMPACT_CLUSTER_MAX)) { 8646168d0daSAlex Shi if (locked) { 8656168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 8666168d0daSAlex Shi locked = NULL; 8676168d0daSAlex Shi } 8686168d0daSAlex Shi 8696168d0daSAlex Shi if (fatal_signal_pending(current)) { 8706168d0daSAlex Shi cc->contended = true; 871c2ad7a1fSOscar Salvador ret = -EINTR; 8726168d0daSAlex Shi 873670105a2SMel Gorman goto fatal_pending; 874670105a2SMel Gorman } 875b2eef8c0SAndrea Arcangeli 8766168d0daSAlex Shi cond_resched(); 8776168d0daSAlex Shi } 8786168d0daSAlex Shi 879b7aba698SMel Gorman nr_scanned++; 880748446bbSMel Gorman 881748446bbSMel Gorman page = pfn_to_page(low_pfn); 882dc908600SMel Gorman 883e380bebeSMel Gorman /* 884e380bebeSMel Gorman * Check if the pageblock has already been marked skipped. 885e380bebeSMel Gorman * Only the aligned PFN is checked as the caller isolates 886e380bebeSMel Gorman * COMPACT_CLUSTER_MAX at a time so the second call must 887e380bebeSMel Gorman * not falsely conclude that the block should be skipped. 888e380bebeSMel Gorman */ 889e380bebeSMel Gorman if (!valid_page && IS_ALIGNED(low_pfn, pageblock_nr_pages)) { 8904af12d04SMiaohe Lin if (!isolation_suitable(cc, page)) { 891e380bebeSMel Gorman low_pfn = end_pfn; 8929df41314SAlex Shi page = NULL; 893e380bebeSMel Gorman goto isolate_abort; 894e380bebeSMel Gorman } 895bb13ffebSMel Gorman valid_page = page; 896e380bebeSMel Gorman } 897bb13ffebSMel Gorman 898369fa227SOscar Salvador if (PageHuge(page) && cc->alloc_contig) { 899ae37c7ffSOscar Salvador ret = isolate_or_dissolve_huge_page(page, &cc->migratepages); 900369fa227SOscar Salvador 901369fa227SOscar Salvador /* 902369fa227SOscar Salvador * Fail isolation in case isolate_or_dissolve_huge_page() 903369fa227SOscar Salvador * reports an error. In case of -ENOMEM, abort right away. 904369fa227SOscar Salvador */ 905369fa227SOscar Salvador if (ret < 0) { 906369fa227SOscar Salvador /* Do not report -EBUSY down the chain */ 907369fa227SOscar Salvador if (ret == -EBUSY) 908369fa227SOscar Salvador ret = 0; 90966fe1cf7SMiaohe Lin low_pfn += compound_nr(page) - 1; 910369fa227SOscar Salvador goto isolate_fail; 911369fa227SOscar Salvador } 912369fa227SOscar Salvador 913ae37c7ffSOscar Salvador if (PageHuge(page)) { 914ae37c7ffSOscar Salvador /* 915ae37c7ffSOscar Salvador * Hugepage was successfully isolated and placed 916ae37c7ffSOscar Salvador * on the cc->migratepages list. 917ae37c7ffSOscar Salvador */ 918ae37c7ffSOscar Salvador low_pfn += compound_nr(page) - 1; 919ae37c7ffSOscar Salvador goto isolate_success_no_list; 920ae37c7ffSOscar Salvador } 921ae37c7ffSOscar Salvador 922369fa227SOscar Salvador /* 923369fa227SOscar Salvador * Ok, the hugepage was dissolved. Now these pages are 924369fa227SOscar Salvador * Buddy and cannot be re-allocated because they are 925369fa227SOscar Salvador * isolated. Fall-through as the check below handles 926369fa227SOscar Salvador * Buddy pages. 927369fa227SOscar Salvador */ 928369fa227SOscar Salvador } 929369fa227SOscar Salvador 930c122b208SJoonsoo Kim /* 93199c0fd5eSVlastimil Babka * Skip if free. We read page order here without zone lock 93299c0fd5eSVlastimil Babka * which is generally unsafe, but the race window is small and 93399c0fd5eSVlastimil Babka * the worst thing that can happen is that we skip some 93499c0fd5eSVlastimil Babka * potential isolation targets. 9356c14466cSMel Gorman */ 93699c0fd5eSVlastimil Babka if (PageBuddy(page)) { 937ab130f91SMatthew Wilcox (Oracle) unsigned long freepage_order = buddy_order_unsafe(page); 93899c0fd5eSVlastimil Babka 93999c0fd5eSVlastimil Babka /* 94099c0fd5eSVlastimil Babka * Without lock, we cannot be sure that what we got is 94199c0fd5eSVlastimil Babka * a valid page order. Consider only values in the 94299c0fd5eSVlastimil Babka * valid order range to prevent low_pfn overflow. 94399c0fd5eSVlastimil Babka */ 94499c0fd5eSVlastimil Babka if (freepage_order > 0 && freepage_order < MAX_ORDER) 94599c0fd5eSVlastimil Babka low_pfn += (1UL << freepage_order) - 1; 946748446bbSMel Gorman continue; 94799c0fd5eSVlastimil Babka } 948748446bbSMel Gorman 9499927af74SMel Gorman /* 95029c0dde8SVlastimil Babka * Regardless of being on LRU, compound pages such as THP and 9511da2f328SRik van Riel * hugetlbfs are not to be compacted unless we are attempting 9521da2f328SRik van Riel * an allocation much larger than the huge page size (eg CMA). 9531da2f328SRik van Riel * We can potentially save a lot of iterations if we skip them 9541da2f328SRik van Riel * at once. The check is racy, but we can consider only valid 9551da2f328SRik van Riel * values and the only danger is skipping too much. 956bc835011SAndrea Arcangeli */ 9571da2f328SRik van Riel if (PageCompound(page) && !cc->alloc_contig) { 95821dc7e02SDavid Rientjes const unsigned int order = compound_order(page); 95929c0dde8SVlastimil Babka 960d3c85badSVlastimil Babka if (likely(order < MAX_ORDER)) 96121dc7e02SDavid Rientjes low_pfn += (1UL << order) - 1; 962fdd048e1SVlastimil Babka goto isolate_fail; 9632a1402aaSMel Gorman } 9642a1402aaSMel Gorman 965bda807d4SMinchan Kim /* 966bda807d4SMinchan Kim * Check may be lockless but that's ok as we recheck later. 967bda807d4SMinchan Kim * It's possible to migrate LRU and non-lru movable pages. 968bda807d4SMinchan Kim * Skip any other type of page 969bda807d4SMinchan Kim */ 970bda807d4SMinchan Kim if (!PageLRU(page)) { 971bda807d4SMinchan Kim /* 972bda807d4SMinchan Kim * __PageMovable can return false positive so we need 973bda807d4SMinchan Kim * to verify it under page_lock. 974bda807d4SMinchan Kim */ 975bda807d4SMinchan Kim if (unlikely(__PageMovable(page)) && 976bda807d4SMinchan Kim !PageIsolated(page)) { 977bda807d4SMinchan Kim if (locked) { 9786168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 9796168d0daSAlex Shi locked = NULL; 980bda807d4SMinchan Kim } 981bda807d4SMinchan Kim 98289f6c88aSHugh Dickins if (!isolate_movable_page(page, mode)) 983bda807d4SMinchan Kim goto isolate_success; 984bda807d4SMinchan Kim } 985bda807d4SMinchan Kim 986fdd048e1SVlastimil Babka goto isolate_fail; 987bda807d4SMinchan Kim } 98829c0dde8SVlastimil Babka 989119d6d59SDavid Rientjes /* 990119d6d59SDavid Rientjes * Migration will fail if an anonymous page is pinned in memory, 991119d6d59SDavid Rientjes * so avoid taking lru_lock and isolating it unnecessarily in an 992119d6d59SDavid Rientjes * admittedly racy check. 993119d6d59SDavid Rientjes */ 99489f6c88aSHugh Dickins mapping = page_mapping(page); 99589f6c88aSHugh Dickins if (!mapping && page_count(page) > page_mapcount(page)) 996fdd048e1SVlastimil Babka goto isolate_fail; 997119d6d59SDavid Rientjes 99873e64c51SMichal Hocko /* 99973e64c51SMichal Hocko * Only allow to migrate anonymous pages in GFP_NOFS context 100073e64c51SMichal Hocko * because those do not depend on fs locks. 100173e64c51SMichal Hocko */ 100289f6c88aSHugh Dickins if (!(cc->gfp_mask & __GFP_FS) && mapping) 100373e64c51SMichal Hocko goto isolate_fail; 100473e64c51SMichal Hocko 10059df41314SAlex Shi /* 10069df41314SAlex Shi * Be careful not to clear PageLRU until after we're 10079df41314SAlex Shi * sure the page is not being freed elsewhere -- the 10089df41314SAlex Shi * page release code relies on it. 10099df41314SAlex Shi */ 10109df41314SAlex Shi if (unlikely(!get_page_unless_zero(page))) 10119df41314SAlex Shi goto isolate_fail; 10129df41314SAlex Shi 101389f6c88aSHugh Dickins /* Only take pages on LRU: a check now makes later tests safe */ 101489f6c88aSHugh Dickins if (!PageLRU(page)) 10159df41314SAlex Shi goto isolate_fail_put; 10169df41314SAlex Shi 101789f6c88aSHugh Dickins /* Compaction might skip unevictable pages but CMA takes them */ 101889f6c88aSHugh Dickins if (!(mode & ISOLATE_UNEVICTABLE) && PageUnevictable(page)) 101989f6c88aSHugh Dickins goto isolate_fail_put; 102089f6c88aSHugh Dickins 102189f6c88aSHugh Dickins /* 102289f6c88aSHugh Dickins * To minimise LRU disruption, the caller can indicate with 102389f6c88aSHugh Dickins * ISOLATE_ASYNC_MIGRATE that it only wants to isolate pages 102489f6c88aSHugh Dickins * it will be able to migrate without blocking - clean pages 102589f6c88aSHugh Dickins * for the most part. PageWriteback would require blocking. 102689f6c88aSHugh Dickins */ 102789f6c88aSHugh Dickins if ((mode & ISOLATE_ASYNC_MIGRATE) && PageWriteback(page)) 102889f6c88aSHugh Dickins goto isolate_fail_put; 102989f6c88aSHugh Dickins 103089f6c88aSHugh Dickins if ((mode & ISOLATE_ASYNC_MIGRATE) && PageDirty(page)) { 103189f6c88aSHugh Dickins bool migrate_dirty; 103289f6c88aSHugh Dickins 103389f6c88aSHugh Dickins /* 103489f6c88aSHugh Dickins * Only pages without mappings or that have a 10359d0ddc0cSMatthew Wilcox (Oracle) * ->migrate_folio callback are possible to migrate 103689f6c88aSHugh Dickins * without blocking. However, we can be racing with 103789f6c88aSHugh Dickins * truncation so it's necessary to lock the page 103889f6c88aSHugh Dickins * to stabilise the mapping as truncation holds 103989f6c88aSHugh Dickins * the page lock until after the page is removed 104089f6c88aSHugh Dickins * from the page cache. 104189f6c88aSHugh Dickins */ 104289f6c88aSHugh Dickins if (!trylock_page(page)) 104389f6c88aSHugh Dickins goto isolate_fail_put; 104489f6c88aSHugh Dickins 104589f6c88aSHugh Dickins mapping = page_mapping(page); 10465490da4fSMatthew Wilcox (Oracle) migrate_dirty = !mapping || 10479d0ddc0cSMatthew Wilcox (Oracle) mapping->a_ops->migrate_folio; 104889f6c88aSHugh Dickins unlock_page(page); 104989f6c88aSHugh Dickins if (!migrate_dirty) 105089f6c88aSHugh Dickins goto isolate_fail_put; 105189f6c88aSHugh Dickins } 105289f6c88aSHugh Dickins 10539df41314SAlex Shi /* Try isolate the page */ 10549df41314SAlex Shi if (!TestClearPageLRU(page)) 10559df41314SAlex Shi goto isolate_fail_put; 10569df41314SAlex Shi 1057b1baabd9SMatthew Wilcox (Oracle) lruvec = folio_lruvec(page_folio(page)); 10586168d0daSAlex Shi 105969b7189fSVlastimil Babka /* If we already hold the lock, we can skip some rechecking */ 10606168d0daSAlex Shi if (lruvec != locked) { 10616168d0daSAlex Shi if (locked) 10626168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 10636168d0daSAlex Shi 10646168d0daSAlex Shi compact_lock_irqsave(&lruvec->lru_lock, &flags, cc); 10656168d0daSAlex Shi locked = lruvec; 10666168d0daSAlex Shi 1067e809c3feSMatthew Wilcox (Oracle) lruvec_memcg_debug(lruvec, page_folio(page)); 1068e380bebeSMel Gorman 1069e380bebeSMel Gorman /* Try get exclusive access under lock */ 1070e380bebeSMel Gorman if (!skip_updated) { 1071e380bebeSMel Gorman skip_updated = true; 1072e380bebeSMel Gorman if (test_and_set_skip(cc, page, low_pfn)) 1073e380bebeSMel Gorman goto isolate_abort; 1074e380bebeSMel Gorman } 10752a1402aaSMel Gorman 107629c0dde8SVlastimil Babka /* 107729c0dde8SVlastimil Babka * Page become compound since the non-locked check, 107829c0dde8SVlastimil Babka * and it's on LRU. It can only be a THP so the order 107929c0dde8SVlastimil Babka * is safe to read and it's 0 for tail pages. 108029c0dde8SVlastimil Babka */ 10811da2f328SRik van Riel if (unlikely(PageCompound(page) && !cc->alloc_contig)) { 1082d8c6546bSMatthew Wilcox (Oracle) low_pfn += compound_nr(page) - 1; 10839df41314SAlex Shi SetPageLRU(page); 10849df41314SAlex Shi goto isolate_fail_put; 1085bc835011SAndrea Arcangeli } 1086d99fd5feSAlex Shi } 1087fa9add64SHugh Dickins 10881da2f328SRik van Riel /* The whole page is taken off the LRU; skip the tail pages. */ 10891da2f328SRik van Riel if (PageCompound(page)) 10901da2f328SRik van Riel low_pfn += compound_nr(page) - 1; 1091bc835011SAndrea Arcangeli 1092748446bbSMel Gorman /* Successfully isolated */ 109346ae6b2cSYu Zhao del_page_from_lru_list(page, lruvec); 10941da2f328SRik van Riel mod_node_page_state(page_pgdat(page), 10959de4f22aSHuang Ying NR_ISOLATED_ANON + page_is_file_lru(page), 10966c357848SMatthew Wilcox (Oracle) thp_nr_pages(page)); 1097b6c75016SJoonsoo Kim 1098b6c75016SJoonsoo Kim isolate_success: 1099fdd048e1SVlastimil Babka list_add(&page->lru, &cc->migratepages); 1100ae37c7ffSOscar Salvador isolate_success_no_list: 110138935861SZi Yan cc->nr_migratepages += compound_nr(page); 110238935861SZi Yan nr_isolated += compound_nr(page); 1103b717d6b9SWilliam Lam nr_scanned += compound_nr(page) - 1; 1104748446bbSMel Gorman 1105804d3121SMel Gorman /* 1106804d3121SMel Gorman * Avoid isolating too much unless this block is being 1107cb2dcaf0SMel Gorman * rescanned (e.g. dirty/writeback pages, parallel allocation) 1108cb2dcaf0SMel Gorman * or a lock is contended. For contention, isolate quickly to 1109cb2dcaf0SMel Gorman * potentially remove one source of contention. 1110804d3121SMel Gorman */ 111138935861SZi Yan if (cc->nr_migratepages >= COMPACT_CLUSTER_MAX && 1112cb2dcaf0SMel Gorman !cc->rescan && !cc->contended) { 111331b8384aSHillf Danton ++low_pfn; 1114748446bbSMel Gorman break; 1115748446bbSMel Gorman } 1116fdd048e1SVlastimil Babka 1117fdd048e1SVlastimil Babka continue; 11189df41314SAlex Shi 11199df41314SAlex Shi isolate_fail_put: 11209df41314SAlex Shi /* Avoid potential deadlock in freeing page under lru_lock */ 11219df41314SAlex Shi if (locked) { 11226168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 11236168d0daSAlex Shi locked = NULL; 11249df41314SAlex Shi } 11259df41314SAlex Shi put_page(page); 11269df41314SAlex Shi 1127fdd048e1SVlastimil Babka isolate_fail: 1128369fa227SOscar Salvador if (!skip_on_failure && ret != -ENOMEM) 1129fdd048e1SVlastimil Babka continue; 1130fdd048e1SVlastimil Babka 1131fdd048e1SVlastimil Babka /* 1132fdd048e1SVlastimil Babka * We have isolated some pages, but then failed. Release them 1133fdd048e1SVlastimil Babka * instead of migrating, as we cannot form the cc->order buddy 1134fdd048e1SVlastimil Babka * page anyway. 1135fdd048e1SVlastimil Babka */ 1136fdd048e1SVlastimil Babka if (nr_isolated) { 1137fdd048e1SVlastimil Babka if (locked) { 11386168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 11396168d0daSAlex Shi locked = NULL; 1140fdd048e1SVlastimil Babka } 1141fdd048e1SVlastimil Babka putback_movable_pages(&cc->migratepages); 1142fdd048e1SVlastimil Babka cc->nr_migratepages = 0; 1143fdd048e1SVlastimil Babka nr_isolated = 0; 1144fdd048e1SVlastimil Babka } 1145fdd048e1SVlastimil Babka 1146fdd048e1SVlastimil Babka if (low_pfn < next_skip_pfn) { 1147fdd048e1SVlastimil Babka low_pfn = next_skip_pfn - 1; 1148fdd048e1SVlastimil Babka /* 1149fdd048e1SVlastimil Babka * The check near the loop beginning would have updated 1150fdd048e1SVlastimil Babka * next_skip_pfn too, but this is a bit simpler. 1151fdd048e1SVlastimil Babka */ 1152fdd048e1SVlastimil Babka next_skip_pfn += 1UL << cc->order; 1153fdd048e1SVlastimil Babka } 1154369fa227SOscar Salvador 1155369fa227SOscar Salvador if (ret == -ENOMEM) 1156369fa227SOscar Salvador break; 115731b8384aSHillf Danton } 1158748446bbSMel Gorman 115999c0fd5eSVlastimil Babka /* 116099c0fd5eSVlastimil Babka * The PageBuddy() check could have potentially brought us outside 116199c0fd5eSVlastimil Babka * the range to be scanned. 116299c0fd5eSVlastimil Babka */ 116399c0fd5eSVlastimil Babka if (unlikely(low_pfn > end_pfn)) 116499c0fd5eSVlastimil Babka low_pfn = end_pfn; 116599c0fd5eSVlastimil Babka 11669df41314SAlex Shi page = NULL; 11679df41314SAlex Shi 1168e380bebeSMel Gorman isolate_abort: 1169c67fe375SMel Gorman if (locked) 11706168d0daSAlex Shi unlock_page_lruvec_irqrestore(locked, flags); 11719df41314SAlex Shi if (page) { 11729df41314SAlex Shi SetPageLRU(page); 11739df41314SAlex Shi put_page(page); 11749df41314SAlex Shi } 1175748446bbSMel Gorman 117650b5b094SVlastimil Babka /* 1177804d3121SMel Gorman * Updated the cached scanner pfn once the pageblock has been scanned 1178804d3121SMel Gorman * Pages will either be migrated in which case there is no point 1179804d3121SMel Gorman * scanning in the near future or migration failed in which case the 1180804d3121SMel Gorman * failure reason may persist. The block is marked for skipping if 1181804d3121SMel Gorman * there were no pages isolated in the block or if the block is 1182804d3121SMel Gorman * rescanned twice in a row. 118350b5b094SVlastimil Babka */ 1184804d3121SMel Gorman if (low_pfn == end_pfn && (!nr_isolated || cc->rescan)) { 1185e380bebeSMel Gorman if (valid_page && !skip_updated) 1186e380bebeSMel Gorman set_pageblock_skip(valid_page); 1187e380bebeSMel Gorman update_cached_migrate(cc, low_pfn); 1188e380bebeSMel Gorman } 1189bb13ffebSMel Gorman 1190e34d85f0SJoonsoo Kim trace_mm_compaction_isolate_migratepages(start_pfn, low_pfn, 1191e34d85f0SJoonsoo Kim nr_scanned, nr_isolated); 1192b7aba698SMel Gorman 1193670105a2SMel Gorman fatal_pending: 11947f354a54SDavid Rientjes cc->total_migrate_scanned += nr_scanned; 1195397487dbSMel Gorman if (nr_isolated) 1196010fc29aSMinchan Kim count_compact_events(COMPACTISOLATED, nr_isolated); 1197397487dbSMel Gorman 1198c2ad7a1fSOscar Salvador cc->migrate_pfn = low_pfn; 1199c2ad7a1fSOscar Salvador 1200c2ad7a1fSOscar Salvador return ret; 12012fe86e00SMichal Nazarewicz } 12022fe86e00SMichal Nazarewicz 1203edc2ca61SVlastimil Babka /** 1204edc2ca61SVlastimil Babka * isolate_migratepages_range() - isolate migrate-able pages in a PFN range 1205edc2ca61SVlastimil Babka * @cc: Compaction control structure. 1206edc2ca61SVlastimil Babka * @start_pfn: The first PFN to start isolating. 1207edc2ca61SVlastimil Babka * @end_pfn: The one-past-last PFN. 1208edc2ca61SVlastimil Babka * 1209369fa227SOscar Salvador * Returns -EAGAIN when contented, -EINTR in case of a signal pending, -ENOMEM 1210369fa227SOscar Salvador * in case we could not allocate a page, or 0. 1211edc2ca61SVlastimil Babka */ 1212c2ad7a1fSOscar Salvador int 1213edc2ca61SVlastimil Babka isolate_migratepages_range(struct compact_control *cc, unsigned long start_pfn, 1214edc2ca61SVlastimil Babka unsigned long end_pfn) 1215edc2ca61SVlastimil Babka { 1216e1409c32SJoonsoo Kim unsigned long pfn, block_start_pfn, block_end_pfn; 1217c2ad7a1fSOscar Salvador int ret = 0; 1218edc2ca61SVlastimil Babka 1219edc2ca61SVlastimil Babka /* Scan block by block. First and last block may be incomplete */ 1220edc2ca61SVlastimil Babka pfn = start_pfn; 122106b6640aSVlastimil Babka block_start_pfn = pageblock_start_pfn(pfn); 1222e1409c32SJoonsoo Kim if (block_start_pfn < cc->zone->zone_start_pfn) 1223e1409c32SJoonsoo Kim block_start_pfn = cc->zone->zone_start_pfn; 122406b6640aSVlastimil Babka block_end_pfn = pageblock_end_pfn(pfn); 1225edc2ca61SVlastimil Babka 1226edc2ca61SVlastimil Babka for (; pfn < end_pfn; pfn = block_end_pfn, 1227e1409c32SJoonsoo Kim block_start_pfn = block_end_pfn, 1228edc2ca61SVlastimil Babka block_end_pfn += pageblock_nr_pages) { 1229edc2ca61SVlastimil Babka 1230edc2ca61SVlastimil Babka block_end_pfn = min(block_end_pfn, end_pfn); 1231edc2ca61SVlastimil Babka 1232e1409c32SJoonsoo Kim if (!pageblock_pfn_to_page(block_start_pfn, 1233e1409c32SJoonsoo Kim block_end_pfn, cc->zone)) 1234edc2ca61SVlastimil Babka continue; 1235edc2ca61SVlastimil Babka 1236c2ad7a1fSOscar Salvador ret = isolate_migratepages_block(cc, pfn, block_end_pfn, 1237edc2ca61SVlastimil Babka ISOLATE_UNEVICTABLE); 1238edc2ca61SVlastimil Babka 1239c2ad7a1fSOscar Salvador if (ret) 1240edc2ca61SVlastimil Babka break; 12416ea41c0cSJoonsoo Kim 124238935861SZi Yan if (cc->nr_migratepages >= COMPACT_CLUSTER_MAX) 12436ea41c0cSJoonsoo Kim break; 1244edc2ca61SVlastimil Babka } 1245edc2ca61SVlastimil Babka 1246c2ad7a1fSOscar Salvador return ret; 1247edc2ca61SVlastimil Babka } 1248edc2ca61SVlastimil Babka 1249ff9543fdSMichal Nazarewicz #endif /* CONFIG_COMPACTION || CONFIG_CMA */ 1250ff9543fdSMichal Nazarewicz #ifdef CONFIG_COMPACTION 1251018e9a49SAndrew Morton 1252b682debdSVlastimil Babka static bool suitable_migration_source(struct compact_control *cc, 1253b682debdSVlastimil Babka struct page *page) 1254b682debdSVlastimil Babka { 1255282722b0SVlastimil Babka int block_mt; 1256282722b0SVlastimil Babka 12579bebefd5SMel Gorman if (pageblock_skip_persistent(page)) 12589bebefd5SMel Gorman return false; 12599bebefd5SMel Gorman 1260282722b0SVlastimil Babka if ((cc->mode != MIGRATE_ASYNC) || !cc->direct_compaction) 1261b682debdSVlastimil Babka return true; 1262b682debdSVlastimil Babka 1263282722b0SVlastimil Babka block_mt = get_pageblock_migratetype(page); 1264282722b0SVlastimil Babka 1265282722b0SVlastimil Babka if (cc->migratetype == MIGRATE_MOVABLE) 1266282722b0SVlastimil Babka return is_migrate_movable(block_mt); 1267282722b0SVlastimil Babka else 1268282722b0SVlastimil Babka return block_mt == cc->migratetype; 1269b682debdSVlastimil Babka } 1270b682debdSVlastimil Babka 1271018e9a49SAndrew Morton /* Returns true if the page is within a block suitable for migration to */ 12729f7e3387SVlastimil Babka static bool suitable_migration_target(struct compact_control *cc, 12739f7e3387SVlastimil Babka struct page *page) 1274018e9a49SAndrew Morton { 1275018e9a49SAndrew Morton /* If the page is a large free page, then disallow migration */ 1276018e9a49SAndrew Morton if (PageBuddy(page)) { 1277018e9a49SAndrew Morton /* 1278018e9a49SAndrew Morton * We are checking page_order without zone->lock taken. But 1279018e9a49SAndrew Morton * the only small danger is that we skip a potentially suitable 1280018e9a49SAndrew Morton * pageblock, so it's not worth to check order for valid range. 1281018e9a49SAndrew Morton */ 1282ab130f91SMatthew Wilcox (Oracle) if (buddy_order_unsafe(page) >= pageblock_order) 1283018e9a49SAndrew Morton return false; 1284018e9a49SAndrew Morton } 1285018e9a49SAndrew Morton 12861ef36db2SYisheng Xie if (cc->ignore_block_suitable) 12871ef36db2SYisheng Xie return true; 12881ef36db2SYisheng Xie 1289018e9a49SAndrew Morton /* If the block is MIGRATE_MOVABLE or MIGRATE_CMA, allow migration */ 1290b682debdSVlastimil Babka if (is_migrate_movable(get_pageblock_migratetype(page))) 1291018e9a49SAndrew Morton return true; 1292018e9a49SAndrew Morton 1293018e9a49SAndrew Morton /* Otherwise skip the block */ 1294018e9a49SAndrew Morton return false; 1295018e9a49SAndrew Morton } 1296018e9a49SAndrew Morton 129770b44595SMel Gorman static inline unsigned int 129870b44595SMel Gorman freelist_scan_limit(struct compact_control *cc) 129970b44595SMel Gorman { 1300dd7ef7bdSQian Cai unsigned short shift = BITS_PER_LONG - 1; 1301dd7ef7bdSQian Cai 1302dd7ef7bdSQian Cai return (COMPACT_CLUSTER_MAX >> min(shift, cc->fast_search_fail)) + 1; 130370b44595SMel Gorman } 130470b44595SMel Gorman 1305ff9543fdSMichal Nazarewicz /* 1306f2849aa0SVlastimil Babka * Test whether the free scanner has reached the same or lower pageblock than 1307f2849aa0SVlastimil Babka * the migration scanner, and compaction should thus terminate. 1308f2849aa0SVlastimil Babka */ 1309f2849aa0SVlastimil Babka static inline bool compact_scanners_met(struct compact_control *cc) 1310f2849aa0SVlastimil Babka { 1311f2849aa0SVlastimil Babka return (cc->free_pfn >> pageblock_order) 1312f2849aa0SVlastimil Babka <= (cc->migrate_pfn >> pageblock_order); 1313f2849aa0SVlastimil Babka } 1314f2849aa0SVlastimil Babka 13155a811889SMel Gorman /* 13165a811889SMel Gorman * Used when scanning for a suitable migration target which scans freelists 13175a811889SMel Gorman * in reverse. Reorders the list such as the unscanned pages are scanned 13185a811889SMel Gorman * first on the next iteration of the free scanner 13195a811889SMel Gorman */ 13205a811889SMel Gorman static void 13215a811889SMel Gorman move_freelist_head(struct list_head *freelist, struct page *freepage) 13225a811889SMel Gorman { 13235a811889SMel Gorman LIST_HEAD(sublist); 13245a811889SMel Gorman 13255a811889SMel Gorman if (!list_is_last(freelist, &freepage->lru)) { 13265a811889SMel Gorman list_cut_before(&sublist, freelist, &freepage->lru); 13275a811889SMel Gorman list_splice_tail(&sublist, freelist); 13285a811889SMel Gorman } 13295a811889SMel Gorman } 13305a811889SMel Gorman 13315a811889SMel Gorman /* 13325a811889SMel Gorman * Similar to move_freelist_head except used by the migration scanner 13335a811889SMel Gorman * when scanning forward. It's possible for these list operations to 13345a811889SMel Gorman * move against each other if they search the free list exactly in 13355a811889SMel Gorman * lockstep. 13365a811889SMel Gorman */ 133770b44595SMel Gorman static void 133870b44595SMel Gorman move_freelist_tail(struct list_head *freelist, struct page *freepage) 133970b44595SMel Gorman { 134070b44595SMel Gorman LIST_HEAD(sublist); 134170b44595SMel Gorman 134270b44595SMel Gorman if (!list_is_first(freelist, &freepage->lru)) { 134370b44595SMel Gorman list_cut_position(&sublist, freelist, &freepage->lru); 134470b44595SMel Gorman list_splice_tail(&sublist, freelist); 134570b44595SMel Gorman } 134670b44595SMel Gorman } 134770b44595SMel Gorman 13485a811889SMel Gorman static void 13495a811889SMel Gorman fast_isolate_around(struct compact_control *cc, unsigned long pfn, unsigned long nr_isolated) 13505a811889SMel Gorman { 13515a811889SMel Gorman unsigned long start_pfn, end_pfn; 13526e2b7044SVlastimil Babka struct page *page; 13535a811889SMel Gorman 13545a811889SMel Gorman /* Do not search around if there are enough pages already */ 13555a811889SMel Gorman if (cc->nr_freepages >= cc->nr_migratepages) 13565a811889SMel Gorman return; 13575a811889SMel Gorman 13585a811889SMel Gorman /* Minimise scanning during async compaction */ 13595a811889SMel Gorman if (cc->direct_compaction && cc->mode == MIGRATE_ASYNC) 13605a811889SMel Gorman return; 13615a811889SMel Gorman 13625a811889SMel Gorman /* Pageblock boundaries */ 13636e2b7044SVlastimil Babka start_pfn = max(pageblock_start_pfn(pfn), cc->zone->zone_start_pfn); 13646e2b7044SVlastimil Babka end_pfn = min(pageblock_end_pfn(pfn), zone_end_pfn(cc->zone)); 13656e2b7044SVlastimil Babka 13666e2b7044SVlastimil Babka page = pageblock_pfn_to_page(start_pfn, end_pfn, cc->zone); 13676e2b7044SVlastimil Babka if (!page) 13686e2b7044SVlastimil Babka return; 13695a811889SMel Gorman 13705a811889SMel Gorman /* Scan before */ 13715a811889SMel Gorman if (start_pfn != pfn) { 13724fca9730SMel Gorman isolate_freepages_block(cc, &start_pfn, pfn, &cc->freepages, 1, false); 13735a811889SMel Gorman if (cc->nr_freepages >= cc->nr_migratepages) 13745a811889SMel Gorman return; 13755a811889SMel Gorman } 13765a811889SMel Gorman 13775a811889SMel Gorman /* Scan after */ 13785a811889SMel Gorman start_pfn = pfn + nr_isolated; 137960fce36aSMel Gorman if (start_pfn < end_pfn) 13804fca9730SMel Gorman isolate_freepages_block(cc, &start_pfn, end_pfn, &cc->freepages, 1, false); 13815a811889SMel Gorman 13825a811889SMel Gorman /* Skip this pageblock in the future as it's full or nearly full */ 13835a811889SMel Gorman if (cc->nr_freepages < cc->nr_migratepages) 13845a811889SMel Gorman set_pageblock_skip(page); 13855a811889SMel Gorman } 13865a811889SMel Gorman 1387dbe2d4e4SMel Gorman /* Search orders in round-robin fashion */ 1388dbe2d4e4SMel Gorman static int next_search_order(struct compact_control *cc, int order) 1389dbe2d4e4SMel Gorman { 1390dbe2d4e4SMel Gorman order--; 1391dbe2d4e4SMel Gorman if (order < 0) 1392dbe2d4e4SMel Gorman order = cc->order - 1; 1393dbe2d4e4SMel Gorman 1394dbe2d4e4SMel Gorman /* Search wrapped around? */ 1395dbe2d4e4SMel Gorman if (order == cc->search_order) { 1396dbe2d4e4SMel Gorman cc->search_order--; 1397dbe2d4e4SMel Gorman if (cc->search_order < 0) 1398dbe2d4e4SMel Gorman cc->search_order = cc->order - 1; 1399dbe2d4e4SMel Gorman return -1; 1400dbe2d4e4SMel Gorman } 1401dbe2d4e4SMel Gorman 1402dbe2d4e4SMel Gorman return order; 1403dbe2d4e4SMel Gorman } 1404dbe2d4e4SMel Gorman 14055a811889SMel Gorman static unsigned long 14065a811889SMel Gorman fast_isolate_freepages(struct compact_control *cc) 14075a811889SMel Gorman { 1408b55ca526SWonhyuk Yang unsigned int limit = max(1U, freelist_scan_limit(cc) >> 1); 14095a811889SMel Gorman unsigned int nr_scanned = 0; 141074e21484SRokudo Yan unsigned long low_pfn, min_pfn, highest = 0; 14115a811889SMel Gorman unsigned long nr_isolated = 0; 14125a811889SMel Gorman unsigned long distance; 14135a811889SMel Gorman struct page *page = NULL; 14145a811889SMel Gorman bool scan_start = false; 14155a811889SMel Gorman int order; 14165a811889SMel Gorman 14175a811889SMel Gorman /* Full compaction passes in a negative order */ 14185a811889SMel Gorman if (cc->order <= 0) 14195a811889SMel Gorman return cc->free_pfn; 14205a811889SMel Gorman 14215a811889SMel Gorman /* 14225a811889SMel Gorman * If starting the scan, use a deeper search and use the highest 14235a811889SMel Gorman * PFN found if a suitable one is not found. 14245a811889SMel Gorman */ 1425e332f741SMel Gorman if (cc->free_pfn >= cc->zone->compact_init_free_pfn) { 14265a811889SMel Gorman limit = pageblock_nr_pages >> 1; 14275a811889SMel Gorman scan_start = true; 14285a811889SMel Gorman } 14295a811889SMel Gorman 14305a811889SMel Gorman /* 14315a811889SMel Gorman * Preferred point is in the top quarter of the scan space but take 14325a811889SMel Gorman * a pfn from the top half if the search is problematic. 14335a811889SMel Gorman */ 14345a811889SMel Gorman distance = (cc->free_pfn - cc->migrate_pfn); 14355a811889SMel Gorman low_pfn = pageblock_start_pfn(cc->free_pfn - (distance >> 2)); 14365a811889SMel Gorman min_pfn = pageblock_start_pfn(cc->free_pfn - (distance >> 1)); 14375a811889SMel Gorman 14385a811889SMel Gorman if (WARN_ON_ONCE(min_pfn > low_pfn)) 14395a811889SMel Gorman low_pfn = min_pfn; 14405a811889SMel Gorman 1441dbe2d4e4SMel Gorman /* 1442dbe2d4e4SMel Gorman * Search starts from the last successful isolation order or the next 1443dbe2d4e4SMel Gorman * order to search after a previous failure 1444dbe2d4e4SMel Gorman */ 1445dbe2d4e4SMel Gorman cc->search_order = min_t(unsigned int, cc->order - 1, cc->search_order); 1446dbe2d4e4SMel Gorman 1447dbe2d4e4SMel Gorman for (order = cc->search_order; 1448dbe2d4e4SMel Gorman !page && order >= 0; 1449dbe2d4e4SMel Gorman order = next_search_order(cc, order)) { 14505a811889SMel Gorman struct free_area *area = &cc->zone->free_area[order]; 14515a811889SMel Gorman struct list_head *freelist; 14525a811889SMel Gorman struct page *freepage; 14535a811889SMel Gorman unsigned long flags; 14545a811889SMel Gorman unsigned int order_scanned = 0; 145574e21484SRokudo Yan unsigned long high_pfn = 0; 14565a811889SMel Gorman 14575a811889SMel Gorman if (!area->nr_free) 14585a811889SMel Gorman continue; 14595a811889SMel Gorman 14605a811889SMel Gorman spin_lock_irqsave(&cc->zone->lock, flags); 14615a811889SMel Gorman freelist = &area->free_list[MIGRATE_MOVABLE]; 14625a811889SMel Gorman list_for_each_entry_reverse(freepage, freelist, lru) { 14635a811889SMel Gorman unsigned long pfn; 14645a811889SMel Gorman 14655a811889SMel Gorman order_scanned++; 14665a811889SMel Gorman nr_scanned++; 14675a811889SMel Gorman pfn = page_to_pfn(freepage); 14685a811889SMel Gorman 14695a811889SMel Gorman if (pfn >= highest) 14706e2b7044SVlastimil Babka highest = max(pageblock_start_pfn(pfn), 14716e2b7044SVlastimil Babka cc->zone->zone_start_pfn); 14725a811889SMel Gorman 14735a811889SMel Gorman if (pfn >= low_pfn) { 14745a811889SMel Gorman cc->fast_search_fail = 0; 1475dbe2d4e4SMel Gorman cc->search_order = order; 14765a811889SMel Gorman page = freepage; 14775a811889SMel Gorman break; 14785a811889SMel Gorman } 14795a811889SMel Gorman 14805a811889SMel Gorman if (pfn >= min_pfn && pfn > high_pfn) { 14815a811889SMel Gorman high_pfn = pfn; 14825a811889SMel Gorman 14835a811889SMel Gorman /* Shorten the scan if a candidate is found */ 14845a811889SMel Gorman limit >>= 1; 14855a811889SMel Gorman } 14865a811889SMel Gorman 14875a811889SMel Gorman if (order_scanned >= limit) 14885a811889SMel Gorman break; 14895a811889SMel Gorman } 14905a811889SMel Gorman 14915a811889SMel Gorman /* Use a minimum pfn if a preferred one was not found */ 14925a811889SMel Gorman if (!page && high_pfn) { 14935a811889SMel Gorman page = pfn_to_page(high_pfn); 14945a811889SMel Gorman 14955a811889SMel Gorman /* Update freepage for the list reorder below */ 14965a811889SMel Gorman freepage = page; 14975a811889SMel Gorman } 14985a811889SMel Gorman 14995a811889SMel Gorman /* Reorder to so a future search skips recent pages */ 15005a811889SMel Gorman move_freelist_head(freelist, freepage); 15015a811889SMel Gorman 15025a811889SMel Gorman /* Isolate the page if available */ 15035a811889SMel Gorman if (page) { 15045a811889SMel Gorman if (__isolate_free_page(page, order)) { 15055a811889SMel Gorman set_page_private(page, order); 15065a811889SMel Gorman nr_isolated = 1 << order; 1507b717d6b9SWilliam Lam nr_scanned += nr_isolated - 1; 15085a811889SMel Gorman cc->nr_freepages += nr_isolated; 15095a811889SMel Gorman list_add_tail(&page->lru, &cc->freepages); 15105a811889SMel Gorman count_compact_events(COMPACTISOLATED, nr_isolated); 15115a811889SMel Gorman } else { 15125a811889SMel Gorman /* If isolation fails, abort the search */ 15135b56d996SQian Cai order = cc->search_order + 1; 15145a811889SMel Gorman page = NULL; 15155a811889SMel Gorman } 15165a811889SMel Gorman } 15175a811889SMel Gorman 15185a811889SMel Gorman spin_unlock_irqrestore(&cc->zone->lock, flags); 15195a811889SMel Gorman 15205a811889SMel Gorman /* 1521b55ca526SWonhyuk Yang * Smaller scan on next order so the total scan is related 15225a811889SMel Gorman * to freelist_scan_limit. 15235a811889SMel Gorman */ 15245a811889SMel Gorman if (order_scanned >= limit) 1525b55ca526SWonhyuk Yang limit = max(1U, limit >> 1); 15265a811889SMel Gorman } 15275a811889SMel Gorman 15285a811889SMel Gorman if (!page) { 15295a811889SMel Gorman cc->fast_search_fail++; 15305a811889SMel Gorman if (scan_start) { 15315a811889SMel Gorman /* 15325a811889SMel Gorman * Use the highest PFN found above min. If one was 1533f3867755SEthon Paul * not found, be pessimistic for direct compaction 15345a811889SMel Gorman * and use the min mark. 15355a811889SMel Gorman */ 1536ca2864e5SMiaohe Lin if (highest >= min_pfn) { 15375a811889SMel Gorman page = pfn_to_page(highest); 15385a811889SMel Gorman cc->free_pfn = highest; 15395a811889SMel Gorman } else { 1540e577c8b6SSuzuki K Poulose if (cc->direct_compaction && pfn_valid(min_pfn)) { 154173a6e474SBaoquan He page = pageblock_pfn_to_page(min_pfn, 15426e2b7044SVlastimil Babka min(pageblock_end_pfn(min_pfn), 15436e2b7044SVlastimil Babka zone_end_pfn(cc->zone)), 154473a6e474SBaoquan He cc->zone); 15455a811889SMel Gorman cc->free_pfn = min_pfn; 15465a811889SMel Gorman } 15475a811889SMel Gorman } 15485a811889SMel Gorman } 15495a811889SMel Gorman } 15505a811889SMel Gorman 1551d097a6f6SMel Gorman if (highest && highest >= cc->zone->compact_cached_free_pfn) { 1552d097a6f6SMel Gorman highest -= pageblock_nr_pages; 15535a811889SMel Gorman cc->zone->compact_cached_free_pfn = highest; 1554d097a6f6SMel Gorman } 15555a811889SMel Gorman 15565a811889SMel Gorman cc->total_free_scanned += nr_scanned; 15575a811889SMel Gorman if (!page) 15585a811889SMel Gorman return cc->free_pfn; 15595a811889SMel Gorman 15605a811889SMel Gorman low_pfn = page_to_pfn(page); 15615a811889SMel Gorman fast_isolate_around(cc, low_pfn, nr_isolated); 15625a811889SMel Gorman return low_pfn; 15635a811889SMel Gorman } 15645a811889SMel Gorman 1565f2849aa0SVlastimil Babka /* 1566ff9543fdSMichal Nazarewicz * Based on information in the current compact_control, find blocks 1567ff9543fdSMichal Nazarewicz * suitable for isolating free pages from and then isolate them. 1568ff9543fdSMichal Nazarewicz */ 1569edc2ca61SVlastimil Babka static void isolate_freepages(struct compact_control *cc) 1570ff9543fdSMichal Nazarewicz { 1571edc2ca61SVlastimil Babka struct zone *zone = cc->zone; 1572ff9543fdSMichal Nazarewicz struct page *page; 1573c96b9e50SVlastimil Babka unsigned long block_start_pfn; /* start of current pageblock */ 1574e14c720eSVlastimil Babka unsigned long isolate_start_pfn; /* exact pfn we start at */ 1575c96b9e50SVlastimil Babka unsigned long block_end_pfn; /* end of current pageblock */ 1576c96b9e50SVlastimil Babka unsigned long low_pfn; /* lowest pfn scanner is able to scan */ 1577ff9543fdSMichal Nazarewicz struct list_head *freelist = &cc->freepages; 15784fca9730SMel Gorman unsigned int stride; 15792fe86e00SMichal Nazarewicz 15805a811889SMel Gorman /* Try a small search of the free lists for a candidate */ 158100bc102fSMiaohe Lin fast_isolate_freepages(cc); 15825a811889SMel Gorman if (cc->nr_freepages) 15835a811889SMel Gorman goto splitmap; 15845a811889SMel Gorman 1585ff9543fdSMichal Nazarewicz /* 1586ff9543fdSMichal Nazarewicz * Initialise the free scanner. The starting point is where we last 158749e068f0SVlastimil Babka * successfully isolated from, zone-cached value, or the end of the 1588e14c720eSVlastimil Babka * zone when isolating for the first time. For looping we also need 1589e14c720eSVlastimil Babka * this pfn aligned down to the pageblock boundary, because we do 1590c96b9e50SVlastimil Babka * block_start_pfn -= pageblock_nr_pages in the for loop. 1591c96b9e50SVlastimil Babka * For ending point, take care when isolating in last pageblock of a 1592a1c1dbebSRandy Dunlap * zone which ends in the middle of a pageblock. 159349e068f0SVlastimil Babka * The low boundary is the end of the pageblock the migration scanner 159449e068f0SVlastimil Babka * is using. 1595ff9543fdSMichal Nazarewicz */ 1596e14c720eSVlastimil Babka isolate_start_pfn = cc->free_pfn; 15975a811889SMel Gorman block_start_pfn = pageblock_start_pfn(isolate_start_pfn); 1598c96b9e50SVlastimil Babka block_end_pfn = min(block_start_pfn + pageblock_nr_pages, 1599c96b9e50SVlastimil Babka zone_end_pfn(zone)); 160006b6640aSVlastimil Babka low_pfn = pageblock_end_pfn(cc->migrate_pfn); 16014fca9730SMel Gorman stride = cc->mode == MIGRATE_ASYNC ? COMPACT_CLUSTER_MAX : 1; 16022fe86e00SMichal Nazarewicz 1603ff9543fdSMichal Nazarewicz /* 1604ff9543fdSMichal Nazarewicz * Isolate free pages until enough are available to migrate the 1605ff9543fdSMichal Nazarewicz * pages on cc->migratepages. We stop searching if the migrate 1606ff9543fdSMichal Nazarewicz * and free page scanners meet or enough free pages are isolated. 1607ff9543fdSMichal Nazarewicz */ 1608f5f61a32SVlastimil Babka for (; block_start_pfn >= low_pfn; 1609c96b9e50SVlastimil Babka block_end_pfn = block_start_pfn, 1610e14c720eSVlastimil Babka block_start_pfn -= pageblock_nr_pages, 1611e14c720eSVlastimil Babka isolate_start_pfn = block_start_pfn) { 16124fca9730SMel Gorman unsigned long nr_isolated; 16134fca9730SMel Gorman 1614f6ea3adbSDavid Rientjes /* 1615f6ea3adbSDavid Rientjes * This can iterate a massively long zone without finding any 1616cb810ad2SMel Gorman * suitable migration targets, so periodically check resched. 1617f6ea3adbSDavid Rientjes */ 1618c036ddffSMiaohe Lin if (!(block_start_pfn % (COMPACT_CLUSTER_MAX * pageblock_nr_pages))) 1619cf66f070SMel Gorman cond_resched(); 1620f6ea3adbSDavid Rientjes 16217d49d886SVlastimil Babka page = pageblock_pfn_to_page(block_start_pfn, block_end_pfn, 16227d49d886SVlastimil Babka zone); 16237d49d886SVlastimil Babka if (!page) 1624ff9543fdSMichal Nazarewicz continue; 1625ff9543fdSMichal Nazarewicz 1626ff9543fdSMichal Nazarewicz /* Check the block is suitable for migration */ 16279f7e3387SVlastimil Babka if (!suitable_migration_target(cc, page)) 1628ff9543fdSMichal Nazarewicz continue; 162968e3e926SLinus Torvalds 1630bb13ffebSMel Gorman /* If isolation recently failed, do not retry */ 1631bb13ffebSMel Gorman if (!isolation_suitable(cc, page)) 1632bb13ffebSMel Gorman continue; 1633bb13ffebSMel Gorman 1634e14c720eSVlastimil Babka /* Found a block suitable for isolating free pages from. */ 16354fca9730SMel Gorman nr_isolated = isolate_freepages_block(cc, &isolate_start_pfn, 16364fca9730SMel Gorman block_end_pfn, freelist, stride, false); 1637ff9543fdSMichal Nazarewicz 1638d097a6f6SMel Gorman /* Update the skip hint if the full pageblock was scanned */ 1639d097a6f6SMel Gorman if (isolate_start_pfn == block_end_pfn) 1640d097a6f6SMel Gorman update_pageblock_skip(cc, page, block_start_pfn); 1641d097a6f6SMel Gorman 1642cb2dcaf0SMel Gorman /* Are enough freepages isolated? */ 1643cb2dcaf0SMel Gorman if (cc->nr_freepages >= cc->nr_migratepages) { 1644a46cbf3bSDavid Rientjes if (isolate_start_pfn >= block_end_pfn) { 1645a46cbf3bSDavid Rientjes /* 1646a46cbf3bSDavid Rientjes * Restart at previous pageblock if more 1647a46cbf3bSDavid Rientjes * freepages can be isolated next time. 1648a46cbf3bSDavid Rientjes */ 1649f5f61a32SVlastimil Babka isolate_start_pfn = 1650e14c720eSVlastimil Babka block_start_pfn - pageblock_nr_pages; 1651a46cbf3bSDavid Rientjes } 1652be976572SVlastimil Babka break; 1653a46cbf3bSDavid Rientjes } else if (isolate_start_pfn < block_end_pfn) { 1654f5f61a32SVlastimil Babka /* 1655a46cbf3bSDavid Rientjes * If isolation failed early, do not continue 1656a46cbf3bSDavid Rientjes * needlessly. 1657f5f61a32SVlastimil Babka */ 1658a46cbf3bSDavid Rientjes break; 1659f5f61a32SVlastimil Babka } 16604fca9730SMel Gorman 16614fca9730SMel Gorman /* Adjust stride depending on isolation */ 16624fca9730SMel Gorman if (nr_isolated) { 16634fca9730SMel Gorman stride = 1; 16644fca9730SMel Gorman continue; 16654fca9730SMel Gorman } 16664fca9730SMel Gorman stride = min_t(unsigned int, COMPACT_CLUSTER_MAX, stride << 1); 1667c89511abSMel Gorman } 1668ff9543fdSMichal Nazarewicz 16697ed695e0SVlastimil Babka /* 1670f5f61a32SVlastimil Babka * Record where the free scanner will restart next time. Either we 1671f5f61a32SVlastimil Babka * broke from the loop and set isolate_start_pfn based on the last 1672f5f61a32SVlastimil Babka * call to isolate_freepages_block(), or we met the migration scanner 1673f5f61a32SVlastimil Babka * and the loop terminated due to isolate_start_pfn < low_pfn 16747ed695e0SVlastimil Babka */ 1675f5f61a32SVlastimil Babka cc->free_pfn = isolate_start_pfn; 16765a811889SMel Gorman 16775a811889SMel Gorman splitmap: 16785a811889SMel Gorman /* __isolate_free_page() does not map the pages */ 16795a811889SMel Gorman split_map_pages(freelist); 1680748446bbSMel Gorman } 1681748446bbSMel Gorman 1682748446bbSMel Gorman /* 1683748446bbSMel Gorman * This is a migrate-callback that "allocates" freepages by taking pages 1684748446bbSMel Gorman * from the isolated freelists in the block we are migrating to. 1685748446bbSMel Gorman */ 1686748446bbSMel Gorman static struct page *compaction_alloc(struct page *migratepage, 1687666feb21SMichal Hocko unsigned long data) 1688748446bbSMel Gorman { 1689748446bbSMel Gorman struct compact_control *cc = (struct compact_control *)data; 1690748446bbSMel Gorman struct page *freepage; 1691748446bbSMel Gorman 1692748446bbSMel Gorman if (list_empty(&cc->freepages)) { 1693edc2ca61SVlastimil Babka isolate_freepages(cc); 1694748446bbSMel Gorman 1695748446bbSMel Gorman if (list_empty(&cc->freepages)) 1696748446bbSMel Gorman return NULL; 1697748446bbSMel Gorman } 1698748446bbSMel Gorman 1699748446bbSMel Gorman freepage = list_entry(cc->freepages.next, struct page, lru); 1700748446bbSMel Gorman list_del(&freepage->lru); 1701748446bbSMel Gorman cc->nr_freepages--; 1702748446bbSMel Gorman 1703748446bbSMel Gorman return freepage; 1704748446bbSMel Gorman } 1705748446bbSMel Gorman 1706748446bbSMel Gorman /* 1707d53aea3dSDavid Rientjes * This is a migrate-callback that "frees" freepages back to the isolated 1708d53aea3dSDavid Rientjes * freelist. All pages on the freelist are from the same zone, so there is no 1709d53aea3dSDavid Rientjes * special handling needed for NUMA. 1710d53aea3dSDavid Rientjes */ 1711d53aea3dSDavid Rientjes static void compaction_free(struct page *page, unsigned long data) 1712d53aea3dSDavid Rientjes { 1713d53aea3dSDavid Rientjes struct compact_control *cc = (struct compact_control *)data; 1714d53aea3dSDavid Rientjes 1715d53aea3dSDavid Rientjes list_add(&page->lru, &cc->freepages); 1716d53aea3dSDavid Rientjes cc->nr_freepages++; 1717d53aea3dSDavid Rientjes } 1718d53aea3dSDavid Rientjes 1719ff9543fdSMichal Nazarewicz /* possible outcome of isolate_migratepages */ 1720ff9543fdSMichal Nazarewicz typedef enum { 1721ff9543fdSMichal Nazarewicz ISOLATE_ABORT, /* Abort compaction now */ 1722ff9543fdSMichal Nazarewicz ISOLATE_NONE, /* No pages isolated, continue scanning */ 1723ff9543fdSMichal Nazarewicz ISOLATE_SUCCESS, /* Pages isolated, migrate */ 1724ff9543fdSMichal Nazarewicz } isolate_migrate_t; 1725ff9543fdSMichal Nazarewicz 1726ff9543fdSMichal Nazarewicz /* 17275bbe3547SEric B Munson * Allow userspace to control policy on scanning the unevictable LRU for 17285bbe3547SEric B Munson * compactable pages. 17295bbe3547SEric B Munson */ 17306923aa0dSSebastian Andrzej Siewior #ifdef CONFIG_PREEMPT_RT 17316923aa0dSSebastian Andrzej Siewior int sysctl_compact_unevictable_allowed __read_mostly = 0; 17326923aa0dSSebastian Andrzej Siewior #else 17335bbe3547SEric B Munson int sysctl_compact_unevictable_allowed __read_mostly = 1; 17346923aa0dSSebastian Andrzej Siewior #endif 17355bbe3547SEric B Munson 173670b44595SMel Gorman static inline void 173770b44595SMel Gorman update_fast_start_pfn(struct compact_control *cc, unsigned long pfn) 173870b44595SMel Gorman { 173970b44595SMel Gorman if (cc->fast_start_pfn == ULONG_MAX) 174070b44595SMel Gorman return; 174170b44595SMel Gorman 174270b44595SMel Gorman if (!cc->fast_start_pfn) 174370b44595SMel Gorman cc->fast_start_pfn = pfn; 174470b44595SMel Gorman 174570b44595SMel Gorman cc->fast_start_pfn = min(cc->fast_start_pfn, pfn); 174670b44595SMel Gorman } 174770b44595SMel Gorman 174870b44595SMel Gorman static inline unsigned long 174970b44595SMel Gorman reinit_migrate_pfn(struct compact_control *cc) 175070b44595SMel Gorman { 175170b44595SMel Gorman if (!cc->fast_start_pfn || cc->fast_start_pfn == ULONG_MAX) 175270b44595SMel Gorman return cc->migrate_pfn; 175370b44595SMel Gorman 175470b44595SMel Gorman cc->migrate_pfn = cc->fast_start_pfn; 175570b44595SMel Gorman cc->fast_start_pfn = ULONG_MAX; 175670b44595SMel Gorman 175770b44595SMel Gorman return cc->migrate_pfn; 175870b44595SMel Gorman } 175970b44595SMel Gorman 176070b44595SMel Gorman /* 176170b44595SMel Gorman * Briefly search the free lists for a migration source that already has 176270b44595SMel Gorman * some free pages to reduce the number of pages that need migration 176370b44595SMel Gorman * before a pageblock is free. 176470b44595SMel Gorman */ 176570b44595SMel Gorman static unsigned long fast_find_migrateblock(struct compact_control *cc) 176670b44595SMel Gorman { 176770b44595SMel Gorman unsigned int limit = freelist_scan_limit(cc); 176870b44595SMel Gorman unsigned int nr_scanned = 0; 176970b44595SMel Gorman unsigned long distance; 177070b44595SMel Gorman unsigned long pfn = cc->migrate_pfn; 177170b44595SMel Gorman unsigned long high_pfn; 177270b44595SMel Gorman int order; 177315d28d0dSWonhyuk Yang bool found_block = false; 177470b44595SMel Gorman 177570b44595SMel Gorman /* Skip hints are relied on to avoid repeats on the fast search */ 177670b44595SMel Gorman if (cc->ignore_skip_hint) 177770b44595SMel Gorman return pfn; 177870b44595SMel Gorman 177970b44595SMel Gorman /* 178070b44595SMel Gorman * If the migrate_pfn is not at the start of a zone or the start 178170b44595SMel Gorman * of a pageblock then assume this is a continuation of a previous 178270b44595SMel Gorman * scan restarted due to COMPACT_CLUSTER_MAX. 178370b44595SMel Gorman */ 178470b44595SMel Gorman if (pfn != cc->zone->zone_start_pfn && pfn != pageblock_start_pfn(pfn)) 178570b44595SMel Gorman return pfn; 178670b44595SMel Gorman 178770b44595SMel Gorman /* 178870b44595SMel Gorman * For smaller orders, just linearly scan as the number of pages 178970b44595SMel Gorman * to migrate should be relatively small and does not necessarily 179070b44595SMel Gorman * justify freeing up a large block for a small allocation. 179170b44595SMel Gorman */ 179270b44595SMel Gorman if (cc->order <= PAGE_ALLOC_COSTLY_ORDER) 179370b44595SMel Gorman return pfn; 179470b44595SMel Gorman 179570b44595SMel Gorman /* 179670b44595SMel Gorman * Only allow kcompactd and direct requests for movable pages to 179770b44595SMel Gorman * quickly clear out a MOVABLE pageblock for allocation. This 179870b44595SMel Gorman * reduces the risk that a large movable pageblock is freed for 179970b44595SMel Gorman * an unmovable/reclaimable small allocation. 180070b44595SMel Gorman */ 180170b44595SMel Gorman if (cc->direct_compaction && cc->migratetype != MIGRATE_MOVABLE) 180270b44595SMel Gorman return pfn; 180370b44595SMel Gorman 180470b44595SMel Gorman /* 180570b44595SMel Gorman * When starting the migration scanner, pick any pageblock within the 180670b44595SMel Gorman * first half of the search space. Otherwise try and pick a pageblock 180770b44595SMel Gorman * within the first eighth to reduce the chances that a migration 180870b44595SMel Gorman * target later becomes a source. 180970b44595SMel Gorman */ 181070b44595SMel Gorman distance = (cc->free_pfn - cc->migrate_pfn) >> 1; 181170b44595SMel Gorman if (cc->migrate_pfn != cc->zone->zone_start_pfn) 181270b44595SMel Gorman distance >>= 2; 181370b44595SMel Gorman high_pfn = pageblock_start_pfn(cc->migrate_pfn + distance); 181470b44595SMel Gorman 181570b44595SMel Gorman for (order = cc->order - 1; 181615d28d0dSWonhyuk Yang order >= PAGE_ALLOC_COSTLY_ORDER && !found_block && nr_scanned < limit; 181770b44595SMel Gorman order--) { 181870b44595SMel Gorman struct free_area *area = &cc->zone->free_area[order]; 181970b44595SMel Gorman struct list_head *freelist; 182070b44595SMel Gorman unsigned long flags; 182170b44595SMel Gorman struct page *freepage; 182270b44595SMel Gorman 182370b44595SMel Gorman if (!area->nr_free) 182470b44595SMel Gorman continue; 182570b44595SMel Gorman 182670b44595SMel Gorman spin_lock_irqsave(&cc->zone->lock, flags); 182770b44595SMel Gorman freelist = &area->free_list[MIGRATE_MOVABLE]; 182870b44595SMel Gorman list_for_each_entry(freepage, freelist, lru) { 182970b44595SMel Gorman unsigned long free_pfn; 183070b44595SMel Gorman 183115d28d0dSWonhyuk Yang if (nr_scanned++ >= limit) { 183215d28d0dSWonhyuk Yang move_freelist_tail(freelist, freepage); 183315d28d0dSWonhyuk Yang break; 183415d28d0dSWonhyuk Yang } 183515d28d0dSWonhyuk Yang 183670b44595SMel Gorman free_pfn = page_to_pfn(freepage); 183770b44595SMel Gorman if (free_pfn < high_pfn) { 183870b44595SMel Gorman /* 183970b44595SMel Gorman * Avoid if skipped recently. Ideally it would 184070b44595SMel Gorman * move to the tail but even safe iteration of 184170b44595SMel Gorman * the list assumes an entry is deleted, not 184270b44595SMel Gorman * reordered. 184370b44595SMel Gorman */ 184415d28d0dSWonhyuk Yang if (get_pageblock_skip(freepage)) 184570b44595SMel Gorman continue; 184670b44595SMel Gorman 184770b44595SMel Gorman /* Reorder to so a future search skips recent pages */ 184870b44595SMel Gorman move_freelist_tail(freelist, freepage); 184970b44595SMel Gorman 1850e380bebeSMel Gorman update_fast_start_pfn(cc, free_pfn); 185170b44595SMel Gorman pfn = pageblock_start_pfn(free_pfn); 1852bbe832b9SRei Yamamoto if (pfn < cc->zone->zone_start_pfn) 1853bbe832b9SRei Yamamoto pfn = cc->zone->zone_start_pfn; 185470b44595SMel Gorman cc->fast_search_fail = 0; 185515d28d0dSWonhyuk Yang found_block = true; 185670b44595SMel Gorman set_pageblock_skip(freepage); 185770b44595SMel Gorman break; 185870b44595SMel Gorman } 185970b44595SMel Gorman } 186070b44595SMel Gorman spin_unlock_irqrestore(&cc->zone->lock, flags); 186170b44595SMel Gorman } 186270b44595SMel Gorman 186370b44595SMel Gorman cc->total_migrate_scanned += nr_scanned; 186470b44595SMel Gorman 186570b44595SMel Gorman /* 186670b44595SMel Gorman * If fast scanning failed then use a cached entry for a page block 186770b44595SMel Gorman * that had free pages as the basis for starting a linear scan. 186870b44595SMel Gorman */ 186915d28d0dSWonhyuk Yang if (!found_block) { 187015d28d0dSWonhyuk Yang cc->fast_search_fail++; 187170b44595SMel Gorman pfn = reinit_migrate_pfn(cc); 187215d28d0dSWonhyuk Yang } 187370b44595SMel Gorman return pfn; 187470b44595SMel Gorman } 187570b44595SMel Gorman 18765bbe3547SEric B Munson /* 1877edc2ca61SVlastimil Babka * Isolate all pages that can be migrated from the first suitable block, 1878edc2ca61SVlastimil Babka * starting at the block pointed to by the migrate scanner pfn within 1879edc2ca61SVlastimil Babka * compact_control. 1880ff9543fdSMichal Nazarewicz */ 188132aaf055SPengfei Li static isolate_migrate_t isolate_migratepages(struct compact_control *cc) 1882ff9543fdSMichal Nazarewicz { 1883e1409c32SJoonsoo Kim unsigned long block_start_pfn; 1884e1409c32SJoonsoo Kim unsigned long block_end_pfn; 1885e1409c32SJoonsoo Kim unsigned long low_pfn; 1886edc2ca61SVlastimil Babka struct page *page; 1887edc2ca61SVlastimil Babka const isolate_mode_t isolate_mode = 18885bbe3547SEric B Munson (sysctl_compact_unevictable_allowed ? ISOLATE_UNEVICTABLE : 0) | 18891d2047feSHugh Dickins (cc->mode != MIGRATE_SYNC ? ISOLATE_ASYNC_MIGRATE : 0); 189070b44595SMel Gorman bool fast_find_block; 1891ff9543fdSMichal Nazarewicz 1892edc2ca61SVlastimil Babka /* 1893edc2ca61SVlastimil Babka * Start at where we last stopped, or beginning of the zone as 189470b44595SMel Gorman * initialized by compact_zone(). The first failure will use 189570b44595SMel Gorman * the lowest PFN as the starting point for linear scanning. 1896edc2ca61SVlastimil Babka */ 189770b44595SMel Gorman low_pfn = fast_find_migrateblock(cc); 189806b6640aSVlastimil Babka block_start_pfn = pageblock_start_pfn(low_pfn); 189932aaf055SPengfei Li if (block_start_pfn < cc->zone->zone_start_pfn) 190032aaf055SPengfei Li block_start_pfn = cc->zone->zone_start_pfn; 1901ff9543fdSMichal Nazarewicz 190270b44595SMel Gorman /* 190370b44595SMel Gorman * fast_find_migrateblock marks a pageblock skipped so to avoid 190470b44595SMel Gorman * the isolation_suitable check below, check whether the fast 190570b44595SMel Gorman * search was successful. 190670b44595SMel Gorman */ 190770b44595SMel Gorman fast_find_block = low_pfn != cc->migrate_pfn && !cc->fast_search_fail; 190870b44595SMel Gorman 1909ff9543fdSMichal Nazarewicz /* Only scan within a pageblock boundary */ 191006b6640aSVlastimil Babka block_end_pfn = pageblock_end_pfn(low_pfn); 1911ff9543fdSMichal Nazarewicz 1912edc2ca61SVlastimil Babka /* 1913edc2ca61SVlastimil Babka * Iterate over whole pageblocks until we find the first suitable. 1914edc2ca61SVlastimil Babka * Do not cross the free scanner. 1915edc2ca61SVlastimil Babka */ 1916e1409c32SJoonsoo Kim for (; block_end_pfn <= cc->free_pfn; 191770b44595SMel Gorman fast_find_block = false, 1918c2ad7a1fSOscar Salvador cc->migrate_pfn = low_pfn = block_end_pfn, 1919e1409c32SJoonsoo Kim block_start_pfn = block_end_pfn, 1920e1409c32SJoonsoo Kim block_end_pfn += pageblock_nr_pages) { 1921edc2ca61SVlastimil Babka 1922edc2ca61SVlastimil Babka /* 1923edc2ca61SVlastimil Babka * This can potentially iterate a massively long zone with 1924edc2ca61SVlastimil Babka * many pageblocks unsuitable, so periodically check if we 1925cb810ad2SMel Gorman * need to schedule. 1926edc2ca61SVlastimil Babka */ 1927c036ddffSMiaohe Lin if (!(low_pfn % (COMPACT_CLUSTER_MAX * pageblock_nr_pages))) 1928cf66f070SMel Gorman cond_resched(); 1929edc2ca61SVlastimil Babka 193032aaf055SPengfei Li page = pageblock_pfn_to_page(block_start_pfn, 193132aaf055SPengfei Li block_end_pfn, cc->zone); 19327d49d886SVlastimil Babka if (!page) 1933edc2ca61SVlastimil Babka continue; 1934edc2ca61SVlastimil Babka 1935e380bebeSMel Gorman /* 1936e380bebeSMel Gorman * If isolation recently failed, do not retry. Only check the 1937e380bebeSMel Gorman * pageblock once. COMPACT_CLUSTER_MAX causes a pageblock 1938e380bebeSMel Gorman * to be visited multiple times. Assume skip was checked 1939e380bebeSMel Gorman * before making it "skip" so other compaction instances do 1940e380bebeSMel Gorman * not scan the same block. 1941e380bebeSMel Gorman */ 1942e380bebeSMel Gorman if (IS_ALIGNED(low_pfn, pageblock_nr_pages) && 1943e380bebeSMel Gorman !fast_find_block && !isolation_suitable(cc, page)) 1944edc2ca61SVlastimil Babka continue; 1945edc2ca61SVlastimil Babka 1946edc2ca61SVlastimil Babka /* 1947556162bfSMiaohe Lin * For async direct compaction, only scan the pageblocks of the 1948556162bfSMiaohe Lin * same migratetype without huge pages. Async direct compaction 1949556162bfSMiaohe Lin * is optimistic to see if the minimum amount of work satisfies 1950556162bfSMiaohe Lin * the allocation. The cached PFN is updated as it's possible 1951556162bfSMiaohe Lin * that all remaining blocks between source and target are 1952556162bfSMiaohe Lin * unsuitable and the compaction scanners fail to meet. 1953edc2ca61SVlastimil Babka */ 19549bebefd5SMel Gorman if (!suitable_migration_source(cc, page)) { 19559bebefd5SMel Gorman update_cached_migrate(cc, block_end_pfn); 1956edc2ca61SVlastimil Babka continue; 19579bebefd5SMel Gorman } 1958ff9543fdSMichal Nazarewicz 1959ff9543fdSMichal Nazarewicz /* Perform the isolation */ 1960c2ad7a1fSOscar Salvador if (isolate_migratepages_block(cc, low_pfn, block_end_pfn, 1961c2ad7a1fSOscar Salvador isolate_mode)) 1962ff9543fdSMichal Nazarewicz return ISOLATE_ABORT; 1963ff9543fdSMichal Nazarewicz 1964edc2ca61SVlastimil Babka /* 1965edc2ca61SVlastimil Babka * Either we isolated something and proceed with migration. Or 1966edc2ca61SVlastimil Babka * we failed and compact_zone should decide if we should 1967edc2ca61SVlastimil Babka * continue or not. 1968edc2ca61SVlastimil Babka */ 1969edc2ca61SVlastimil Babka break; 1970edc2ca61SVlastimil Babka } 1971edc2ca61SVlastimil Babka 1972edc2ca61SVlastimil Babka return cc->nr_migratepages ? ISOLATE_SUCCESS : ISOLATE_NONE; 1973ff9543fdSMichal Nazarewicz } 1974ff9543fdSMichal Nazarewicz 197521c527a3SYaowei Bai /* 197621c527a3SYaowei Bai * order == -1 is expected when compacting via 197721c527a3SYaowei Bai * /proc/sys/vm/compact_memory 197821c527a3SYaowei Bai */ 197921c527a3SYaowei Bai static inline bool is_via_compact_memory(int order) 198021c527a3SYaowei Bai { 198121c527a3SYaowei Bai return order == -1; 198221c527a3SYaowei Bai } 198321c527a3SYaowei Bai 1984*b4a0215eSKefeng Wang /* 1985*b4a0215eSKefeng Wang * Determine whether kswapd is (or recently was!) running on this node. 1986*b4a0215eSKefeng Wang * 1987*b4a0215eSKefeng Wang * pgdat_kswapd_lock() pins pgdat->kswapd, so a concurrent kswapd_stop() can't 1988*b4a0215eSKefeng Wang * zero it. 1989*b4a0215eSKefeng Wang */ 1990facdaa91SNitin Gupta static bool kswapd_is_running(pg_data_t *pgdat) 1991facdaa91SNitin Gupta { 1992*b4a0215eSKefeng Wang bool running; 1993*b4a0215eSKefeng Wang 1994*b4a0215eSKefeng Wang pgdat_kswapd_lock(pgdat); 1995*b4a0215eSKefeng Wang running = pgdat->kswapd && task_is_running(pgdat->kswapd); 1996*b4a0215eSKefeng Wang pgdat_kswapd_unlock(pgdat); 1997*b4a0215eSKefeng Wang 1998*b4a0215eSKefeng Wang return running; 1999facdaa91SNitin Gupta } 2000facdaa91SNitin Gupta 2001facdaa91SNitin Gupta /* 2002facdaa91SNitin Gupta * A zone's fragmentation score is the external fragmentation wrt to the 200340d7e203SCharan Teja Reddy * COMPACTION_HPAGE_ORDER. It returns a value in the range [0, 100]. 200440d7e203SCharan Teja Reddy */ 200540d7e203SCharan Teja Reddy static unsigned int fragmentation_score_zone(struct zone *zone) 200640d7e203SCharan Teja Reddy { 200740d7e203SCharan Teja Reddy return extfrag_for_order(zone, COMPACTION_HPAGE_ORDER); 200840d7e203SCharan Teja Reddy } 200940d7e203SCharan Teja Reddy 201040d7e203SCharan Teja Reddy /* 201140d7e203SCharan Teja Reddy * A weighted zone's fragmentation score is the external fragmentation 201240d7e203SCharan Teja Reddy * wrt to the COMPACTION_HPAGE_ORDER scaled by the zone's size. It 201340d7e203SCharan Teja Reddy * returns a value in the range [0, 100]. 2014facdaa91SNitin Gupta * 2015facdaa91SNitin Gupta * The scaling factor ensures that proactive compaction focuses on larger 2016facdaa91SNitin Gupta * zones like ZONE_NORMAL, rather than smaller, specialized zones like 2017facdaa91SNitin Gupta * ZONE_DMA32. For smaller zones, the score value remains close to zero, 2018facdaa91SNitin Gupta * and thus never exceeds the high threshold for proactive compaction. 2019facdaa91SNitin Gupta */ 202040d7e203SCharan Teja Reddy static unsigned int fragmentation_score_zone_weighted(struct zone *zone) 2021facdaa91SNitin Gupta { 2022facdaa91SNitin Gupta unsigned long score; 2023facdaa91SNitin Gupta 202440d7e203SCharan Teja Reddy score = zone->present_pages * fragmentation_score_zone(zone); 2025facdaa91SNitin Gupta return div64_ul(score, zone->zone_pgdat->node_present_pages + 1); 2026facdaa91SNitin Gupta } 2027facdaa91SNitin Gupta 2028facdaa91SNitin Gupta /* 2029facdaa91SNitin Gupta * The per-node proactive (background) compaction process is started by its 2030facdaa91SNitin Gupta * corresponding kcompactd thread when the node's fragmentation score 2031facdaa91SNitin Gupta * exceeds the high threshold. The compaction process remains active till 2032facdaa91SNitin Gupta * the node's score falls below the low threshold, or one of the back-off 2033facdaa91SNitin Gupta * conditions is met. 2034facdaa91SNitin Gupta */ 2035d34c0a75SNitin Gupta static unsigned int fragmentation_score_node(pg_data_t *pgdat) 2036facdaa91SNitin Gupta { 2037d34c0a75SNitin Gupta unsigned int score = 0; 2038facdaa91SNitin Gupta int zoneid; 2039facdaa91SNitin Gupta 2040facdaa91SNitin Gupta for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) { 2041facdaa91SNitin Gupta struct zone *zone; 2042facdaa91SNitin Gupta 2043facdaa91SNitin Gupta zone = &pgdat->node_zones[zoneid]; 204440d7e203SCharan Teja Reddy score += fragmentation_score_zone_weighted(zone); 2045facdaa91SNitin Gupta } 2046facdaa91SNitin Gupta 2047facdaa91SNitin Gupta return score; 2048facdaa91SNitin Gupta } 2049facdaa91SNitin Gupta 2050d34c0a75SNitin Gupta static unsigned int fragmentation_score_wmark(pg_data_t *pgdat, bool low) 2051facdaa91SNitin Gupta { 2052d34c0a75SNitin Gupta unsigned int wmark_low; 2053facdaa91SNitin Gupta 2054facdaa91SNitin Gupta /* 2055f0953a1bSIngo Molnar * Cap the low watermark to avoid excessive compaction 2056f0953a1bSIngo Molnar * activity in case a user sets the proactiveness tunable 2057facdaa91SNitin Gupta * close to 100 (maximum). 2058facdaa91SNitin Gupta */ 2059d34c0a75SNitin Gupta wmark_low = max(100U - sysctl_compaction_proactiveness, 5U); 2060d34c0a75SNitin Gupta return low ? wmark_low : min(wmark_low + 10, 100U); 2061facdaa91SNitin Gupta } 2062facdaa91SNitin Gupta 2063facdaa91SNitin Gupta static bool should_proactive_compact_node(pg_data_t *pgdat) 2064facdaa91SNitin Gupta { 2065facdaa91SNitin Gupta int wmark_high; 2066facdaa91SNitin Gupta 2067facdaa91SNitin Gupta if (!sysctl_compaction_proactiveness || kswapd_is_running(pgdat)) 2068facdaa91SNitin Gupta return false; 2069facdaa91SNitin Gupta 2070facdaa91SNitin Gupta wmark_high = fragmentation_score_wmark(pgdat, false); 2071facdaa91SNitin Gupta return fragmentation_score_node(pgdat) > wmark_high; 2072facdaa91SNitin Gupta } 2073facdaa91SNitin Gupta 207440cacbcbSMel Gorman static enum compact_result __compact_finished(struct compact_control *cc) 2075748446bbSMel Gorman { 20768fb74b9fSMel Gorman unsigned int order; 2077d39773a0SVlastimil Babka const int migratetype = cc->migratetype; 2078cb2dcaf0SMel Gorman int ret; 2079748446bbSMel Gorman 2080753341a4SMel Gorman /* Compaction run completes if the migrate and free scanner meet */ 2081f2849aa0SVlastimil Babka if (compact_scanners_met(cc)) { 208255b7c4c9SVlastimil Babka /* Let the next compaction start anew. */ 208340cacbcbSMel Gorman reset_cached_positions(cc->zone); 208455b7c4c9SVlastimil Babka 208562997027SMel Gorman /* 208662997027SMel Gorman * Mark that the PG_migrate_skip information should be cleared 2087accf6242SVlastimil Babka * by kswapd when it goes to sleep. kcompactd does not set the 208862997027SMel Gorman * flag itself as the decision to be clear should be directly 208962997027SMel Gorman * based on an allocation request. 209062997027SMel Gorman */ 2091accf6242SVlastimil Babka if (cc->direct_compaction) 209240cacbcbSMel Gorman cc->zone->compact_blockskip_flush = true; 209362997027SMel Gorman 2094c8f7de0bSMichal Hocko if (cc->whole_zone) 2095748446bbSMel Gorman return COMPACT_COMPLETE; 2096c8f7de0bSMichal Hocko else 2097c8f7de0bSMichal Hocko return COMPACT_PARTIAL_SKIPPED; 2098bb13ffebSMel Gorman } 2099748446bbSMel Gorman 2100facdaa91SNitin Gupta if (cc->proactive_compaction) { 2101facdaa91SNitin Gupta int score, wmark_low; 2102facdaa91SNitin Gupta pg_data_t *pgdat; 2103facdaa91SNitin Gupta 2104facdaa91SNitin Gupta pgdat = cc->zone->zone_pgdat; 2105facdaa91SNitin Gupta if (kswapd_is_running(pgdat)) 2106facdaa91SNitin Gupta return COMPACT_PARTIAL_SKIPPED; 2107facdaa91SNitin Gupta 2108facdaa91SNitin Gupta score = fragmentation_score_zone(cc->zone); 2109facdaa91SNitin Gupta wmark_low = fragmentation_score_wmark(pgdat, true); 2110facdaa91SNitin Gupta 2111facdaa91SNitin Gupta if (score > wmark_low) 2112facdaa91SNitin Gupta ret = COMPACT_CONTINUE; 2113facdaa91SNitin Gupta else 2114facdaa91SNitin Gupta ret = COMPACT_SUCCESS; 2115facdaa91SNitin Gupta 2116facdaa91SNitin Gupta goto out; 2117facdaa91SNitin Gupta } 2118facdaa91SNitin Gupta 211921c527a3SYaowei Bai if (is_via_compact_memory(cc->order)) 212056de7263SMel Gorman return COMPACT_CONTINUE; 212156de7263SMel Gorman 2122baf6a9a1SVlastimil Babka /* 2123efe771c7SMel Gorman * Always finish scanning a pageblock to reduce the possibility of 2124efe771c7SMel Gorman * fallbacks in the future. This is particularly important when 2125efe771c7SMel Gorman * migration source is unmovable/reclaimable but it's not worth 2126efe771c7SMel Gorman * special casing. 2127baf6a9a1SVlastimil Babka */ 2128efe771c7SMel Gorman if (!IS_ALIGNED(cc->migrate_pfn, pageblock_nr_pages)) 2129baf6a9a1SVlastimil Babka return COMPACT_CONTINUE; 2130baf6a9a1SVlastimil Babka 213156de7263SMel Gorman /* Direct compactor: Is a suitable page free? */ 2132cb2dcaf0SMel Gorman ret = COMPACT_NO_SUITABLE_PAGE; 213356de7263SMel Gorman for (order = cc->order; order < MAX_ORDER; order++) { 213440cacbcbSMel Gorman struct free_area *area = &cc->zone->free_area[order]; 21352149cdaeSJoonsoo Kim bool can_steal; 21368fb74b9fSMel Gorman 213756de7263SMel Gorman /* Job done if page is free of the right migratetype */ 2138b03641afSDan Williams if (!free_area_empty(area, migratetype)) 2139cf378319SVlastimil Babka return COMPACT_SUCCESS; 214056de7263SMel Gorman 21412149cdaeSJoonsoo Kim #ifdef CONFIG_CMA 21422149cdaeSJoonsoo Kim /* MIGRATE_MOVABLE can fallback on MIGRATE_CMA */ 21432149cdaeSJoonsoo Kim if (migratetype == MIGRATE_MOVABLE && 2144b03641afSDan Williams !free_area_empty(area, MIGRATE_CMA)) 2145cf378319SVlastimil Babka return COMPACT_SUCCESS; 21462149cdaeSJoonsoo Kim #endif 21472149cdaeSJoonsoo Kim /* 21482149cdaeSJoonsoo Kim * Job done if allocation would steal freepages from 21492149cdaeSJoonsoo Kim * other migratetype buddy lists. 21502149cdaeSJoonsoo Kim */ 21512149cdaeSJoonsoo Kim if (find_suitable_fallback(area, order, migratetype, 2152fa599c44SMiaohe Lin true, &can_steal) != -1) 2153baf6a9a1SVlastimil Babka /* 2154fa599c44SMiaohe Lin * Movable pages are OK in any pageblock. If we are 2155fa599c44SMiaohe Lin * stealing for a non-movable allocation, make sure 2156fa599c44SMiaohe Lin * we finish compacting the current pageblock first 2157fa599c44SMiaohe Lin * (which is assured by the above migrate_pfn align 2158fa599c44SMiaohe Lin * check) so it is as free as possible and we won't 2159fa599c44SMiaohe Lin * have to steal another one soon. 2160baf6a9a1SVlastimil Babka */ 2161baf6a9a1SVlastimil Babka return COMPACT_SUCCESS; 2162baf6a9a1SVlastimil Babka } 2163baf6a9a1SVlastimil Babka 2164facdaa91SNitin Gupta out: 2165cb2dcaf0SMel Gorman if (cc->contended || fatal_signal_pending(current)) 2166cb2dcaf0SMel Gorman ret = COMPACT_CONTENDED; 2167cb2dcaf0SMel Gorman 2168cb2dcaf0SMel Gorman return ret; 2169837d026dSJoonsoo Kim } 2170837d026dSJoonsoo Kim 217140cacbcbSMel Gorman static enum compact_result compact_finished(struct compact_control *cc) 2172837d026dSJoonsoo Kim { 2173837d026dSJoonsoo Kim int ret; 2174837d026dSJoonsoo Kim 217540cacbcbSMel Gorman ret = __compact_finished(cc); 217640cacbcbSMel Gorman trace_mm_compaction_finished(cc->zone, cc->order, ret); 2177837d026dSJoonsoo Kim if (ret == COMPACT_NO_SUITABLE_PAGE) 2178837d026dSJoonsoo Kim ret = COMPACT_CONTINUE; 2179837d026dSJoonsoo Kim 2180837d026dSJoonsoo Kim return ret; 2181748446bbSMel Gorman } 2182748446bbSMel Gorman 2183ea7ab982SMichal Hocko static enum compact_result __compaction_suitable(struct zone *zone, int order, 2184c603844bSMel Gorman unsigned int alloc_flags, 218597a225e6SJoonsoo Kim int highest_zoneidx, 218686a294a8SMichal Hocko unsigned long wmark_target) 21873e7d3449SMel Gorman { 21883e7d3449SMel Gorman unsigned long watermark; 21893e7d3449SMel Gorman 219021c527a3SYaowei Bai if (is_via_compact_memory(order)) 21913957c776SMichal Hocko return COMPACT_CONTINUE; 21923957c776SMichal Hocko 2193a9214443SMel Gorman watermark = wmark_pages(zone, alloc_flags & ALLOC_WMARK_MASK); 2194ebff3980SVlastimil Babka /* 2195ebff3980SVlastimil Babka * If watermarks for high-order allocation are already met, there 2196ebff3980SVlastimil Babka * should be no need for compaction at all. 2197ebff3980SVlastimil Babka */ 219897a225e6SJoonsoo Kim if (zone_watermark_ok(zone, order, watermark, highest_zoneidx, 2199ebff3980SVlastimil Babka alloc_flags)) 2200cf378319SVlastimil Babka return COMPACT_SUCCESS; 2201ebff3980SVlastimil Babka 22023957c776SMichal Hocko /* 22039861a62cSVlastimil Babka * Watermarks for order-0 must be met for compaction to be able to 2204984fdba6SVlastimil Babka * isolate free pages for migration targets. This means that the 2205984fdba6SVlastimil Babka * watermark and alloc_flags have to match, or be more pessimistic than 2206984fdba6SVlastimil Babka * the check in __isolate_free_page(). We don't use the direct 2207984fdba6SVlastimil Babka * compactor's alloc_flags, as they are not relevant for freepage 220897a225e6SJoonsoo Kim * isolation. We however do use the direct compactor's highest_zoneidx 220997a225e6SJoonsoo Kim * to skip over zones where lowmem reserves would prevent allocation 221097a225e6SJoonsoo Kim * even if compaction succeeds. 22118348faf9SVlastimil Babka * For costly orders, we require low watermark instead of min for 22128348faf9SVlastimil Babka * compaction to proceed to increase its chances. 2213d883c6cfSJoonsoo Kim * ALLOC_CMA is used, as pages in CMA pageblocks are considered 2214d883c6cfSJoonsoo Kim * suitable migration targets 22153e7d3449SMel Gorman */ 22168348faf9SVlastimil Babka watermark = (order > PAGE_ALLOC_COSTLY_ORDER) ? 22178348faf9SVlastimil Babka low_wmark_pages(zone) : min_wmark_pages(zone); 22188348faf9SVlastimil Babka watermark += compact_gap(order); 221997a225e6SJoonsoo Kim if (!__zone_watermark_ok(zone, 0, watermark, highest_zoneidx, 2220d883c6cfSJoonsoo Kim ALLOC_CMA, wmark_target)) 22213e7d3449SMel Gorman return COMPACT_SKIPPED; 22223e7d3449SMel Gorman 2223cc5c9f09SVlastimil Babka return COMPACT_CONTINUE; 2224cc5c9f09SVlastimil Babka } 2225cc5c9f09SVlastimil Babka 22262b1a20c3SHui Su /* 22272b1a20c3SHui Su * compaction_suitable: Is this suitable to run compaction on this zone now? 22282b1a20c3SHui Su * Returns 22292b1a20c3SHui Su * COMPACT_SKIPPED - If there are too few free pages for compaction 22302b1a20c3SHui Su * COMPACT_SUCCESS - If the allocation would succeed without compaction 22312b1a20c3SHui Su * COMPACT_CONTINUE - If compaction should run now 22322b1a20c3SHui Su */ 2233cc5c9f09SVlastimil Babka enum compact_result compaction_suitable(struct zone *zone, int order, 2234cc5c9f09SVlastimil Babka unsigned int alloc_flags, 223597a225e6SJoonsoo Kim int highest_zoneidx) 2236cc5c9f09SVlastimil Babka { 2237cc5c9f09SVlastimil Babka enum compact_result ret; 2238cc5c9f09SVlastimil Babka int fragindex; 2239cc5c9f09SVlastimil Babka 224097a225e6SJoonsoo Kim ret = __compaction_suitable(zone, order, alloc_flags, highest_zoneidx, 2241cc5c9f09SVlastimil Babka zone_page_state(zone, NR_FREE_PAGES)); 22423e7d3449SMel Gorman /* 22433e7d3449SMel Gorman * fragmentation index determines if allocation failures are due to 22443e7d3449SMel Gorman * low memory or external fragmentation 22453e7d3449SMel Gorman * 2246ebff3980SVlastimil Babka * index of -1000 would imply allocations might succeed depending on 2247ebff3980SVlastimil Babka * watermarks, but we already failed the high-order watermark check 22483e7d3449SMel Gorman * index towards 0 implies failure is due to lack of memory 22493e7d3449SMel Gorman * index towards 1000 implies failure is due to fragmentation 22503e7d3449SMel Gorman * 225120311420SVlastimil Babka * Only compact if a failure would be due to fragmentation. Also 225220311420SVlastimil Babka * ignore fragindex for non-costly orders where the alternative to 225320311420SVlastimil Babka * a successful reclaim/compaction is OOM. Fragindex and the 225420311420SVlastimil Babka * vm.extfrag_threshold sysctl is meant as a heuristic to prevent 225520311420SVlastimil Babka * excessive compaction for costly orders, but it should not be at the 225620311420SVlastimil Babka * expense of system stability. 22573e7d3449SMel Gorman */ 225820311420SVlastimil Babka if (ret == COMPACT_CONTINUE && (order > PAGE_ALLOC_COSTLY_ORDER)) { 22593e7d3449SMel Gorman fragindex = fragmentation_index(zone, order); 22603e7d3449SMel Gorman if (fragindex >= 0 && fragindex <= sysctl_extfrag_threshold) 2261cc5c9f09SVlastimil Babka ret = COMPACT_NOT_SUITABLE_ZONE; 22623e7d3449SMel Gorman } 22633e7d3449SMel Gorman 2264837d026dSJoonsoo Kim trace_mm_compaction_suitable(zone, order, ret); 2265837d026dSJoonsoo Kim if (ret == COMPACT_NOT_SUITABLE_ZONE) 2266837d026dSJoonsoo Kim ret = COMPACT_SKIPPED; 2267837d026dSJoonsoo Kim 2268837d026dSJoonsoo Kim return ret; 2269837d026dSJoonsoo Kim } 2270837d026dSJoonsoo Kim 227186a294a8SMichal Hocko bool compaction_zonelist_suitable(struct alloc_context *ac, int order, 227286a294a8SMichal Hocko int alloc_flags) 227386a294a8SMichal Hocko { 227486a294a8SMichal Hocko struct zone *zone; 227586a294a8SMichal Hocko struct zoneref *z; 227686a294a8SMichal Hocko 227786a294a8SMichal Hocko /* 227886a294a8SMichal Hocko * Make sure at least one zone would pass __compaction_suitable if we continue 227986a294a8SMichal Hocko * retrying the reclaim. 228086a294a8SMichal Hocko */ 228197a225e6SJoonsoo Kim for_each_zone_zonelist_nodemask(zone, z, ac->zonelist, 228297a225e6SJoonsoo Kim ac->highest_zoneidx, ac->nodemask) { 228386a294a8SMichal Hocko unsigned long available; 228486a294a8SMichal Hocko enum compact_result compact_result; 228586a294a8SMichal Hocko 228686a294a8SMichal Hocko /* 228786a294a8SMichal Hocko * Do not consider all the reclaimable memory because we do not 228886a294a8SMichal Hocko * want to trash just for a single high order allocation which 228986a294a8SMichal Hocko * is even not guaranteed to appear even if __compaction_suitable 229086a294a8SMichal Hocko * is happy about the watermark check. 229186a294a8SMichal Hocko */ 22925a1c84b4SMel Gorman available = zone_reclaimable_pages(zone) / order; 229386a294a8SMichal Hocko available += zone_page_state_snapshot(zone, NR_FREE_PAGES); 229486a294a8SMichal Hocko compact_result = __compaction_suitable(zone, order, alloc_flags, 229597a225e6SJoonsoo Kim ac->highest_zoneidx, available); 2296cff387d6SMiaohe Lin if (compact_result == COMPACT_CONTINUE) 229786a294a8SMichal Hocko return true; 229886a294a8SMichal Hocko } 229986a294a8SMichal Hocko 230086a294a8SMichal Hocko return false; 230186a294a8SMichal Hocko } 230286a294a8SMichal Hocko 23035e1f0f09SMel Gorman static enum compact_result 23045e1f0f09SMel Gorman compact_zone(struct compact_control *cc, struct capture_control *capc) 2305748446bbSMel Gorman { 2306ea7ab982SMichal Hocko enum compact_result ret; 230740cacbcbSMel Gorman unsigned long start_pfn = cc->zone->zone_start_pfn; 230840cacbcbSMel Gorman unsigned long end_pfn = zone_end_pfn(cc->zone); 2309566e54e1SMel Gorman unsigned long last_migrated_pfn; 2310e0b9daebSDavid Rientjes const bool sync = cc->mode != MIGRATE_ASYNC; 23118854c55fSMel Gorman bool update_cached; 231284b328aaSBaolin Wang unsigned int nr_succeeded = 0; 2313748446bbSMel Gorman 2314a94b5252SYafang Shao /* 2315a94b5252SYafang Shao * These counters track activities during zone compaction. Initialize 2316a94b5252SYafang Shao * them before compacting a new zone. 2317a94b5252SYafang Shao */ 2318a94b5252SYafang Shao cc->total_migrate_scanned = 0; 2319a94b5252SYafang Shao cc->total_free_scanned = 0; 2320a94b5252SYafang Shao cc->nr_migratepages = 0; 2321a94b5252SYafang Shao cc->nr_freepages = 0; 2322a94b5252SYafang Shao INIT_LIST_HEAD(&cc->freepages); 2323a94b5252SYafang Shao INIT_LIST_HEAD(&cc->migratepages); 2324a94b5252SYafang Shao 232501c0bfe0SWei Yang cc->migratetype = gfp_migratetype(cc->gfp_mask); 232640cacbcbSMel Gorman ret = compaction_suitable(cc->zone, cc->order, cc->alloc_flags, 232797a225e6SJoonsoo Kim cc->highest_zoneidx); 23283e7d3449SMel Gorman /* Compaction is likely to fail */ 2329cf378319SVlastimil Babka if (ret == COMPACT_SUCCESS || ret == COMPACT_SKIPPED) 23303e7d3449SMel Gorman return ret; 2331c46649deSMichal Hocko 2332c46649deSMichal Hocko /* huh, compaction_suitable is returning something unexpected */ 2333c46649deSMichal Hocko VM_BUG_ON(ret != COMPACT_CONTINUE); 23343e7d3449SMel Gorman 2335c89511abSMel Gorman /* 2336d3132e4bSVlastimil Babka * Clear pageblock skip if there were failures recently and compaction 2337accf6242SVlastimil Babka * is about to be retried after being deferred. 2338d3132e4bSVlastimil Babka */ 233940cacbcbSMel Gorman if (compaction_restarting(cc->zone, cc->order)) 234040cacbcbSMel Gorman __reset_isolation_suitable(cc->zone); 2341d3132e4bSVlastimil Babka 2342d3132e4bSVlastimil Babka /* 2343c89511abSMel Gorman * Setup to move all movable pages to the end of the zone. Used cached 234406ed2998SVlastimil Babka * information on where the scanners should start (unless we explicitly 234506ed2998SVlastimil Babka * want to compact the whole zone), but check that it is initialised 234606ed2998SVlastimil Babka * by ensuring the values are within zone boundaries. 2347c89511abSMel Gorman */ 234870b44595SMel Gorman cc->fast_start_pfn = 0; 234906ed2998SVlastimil Babka if (cc->whole_zone) { 235006ed2998SVlastimil Babka cc->migrate_pfn = start_pfn; 235106ed2998SVlastimil Babka cc->free_pfn = pageblock_start_pfn(end_pfn - 1); 235206ed2998SVlastimil Babka } else { 235340cacbcbSMel Gorman cc->migrate_pfn = cc->zone->compact_cached_migrate_pfn[sync]; 235440cacbcbSMel Gorman cc->free_pfn = cc->zone->compact_cached_free_pfn; 2355623446e4SJoonsoo Kim if (cc->free_pfn < start_pfn || cc->free_pfn >= end_pfn) { 235606b6640aSVlastimil Babka cc->free_pfn = pageblock_start_pfn(end_pfn - 1); 235740cacbcbSMel Gorman cc->zone->compact_cached_free_pfn = cc->free_pfn; 2358c89511abSMel Gorman } 2359623446e4SJoonsoo Kim if (cc->migrate_pfn < start_pfn || cc->migrate_pfn >= end_pfn) { 2360c89511abSMel Gorman cc->migrate_pfn = start_pfn; 236140cacbcbSMel Gorman cc->zone->compact_cached_migrate_pfn[0] = cc->migrate_pfn; 236240cacbcbSMel Gorman cc->zone->compact_cached_migrate_pfn[1] = cc->migrate_pfn; 2363c89511abSMel Gorman } 2364c8f7de0bSMichal Hocko 2365e332f741SMel Gorman if (cc->migrate_pfn <= cc->zone->compact_init_migrate_pfn) 2366c8f7de0bSMichal Hocko cc->whole_zone = true; 236706ed2998SVlastimil Babka } 2368c8f7de0bSMichal Hocko 2369566e54e1SMel Gorman last_migrated_pfn = 0; 2370748446bbSMel Gorman 23718854c55fSMel Gorman /* 23728854c55fSMel Gorman * Migrate has separate cached PFNs for ASYNC and SYNC* migration on 23738854c55fSMel Gorman * the basis that some migrations will fail in ASYNC mode. However, 23748854c55fSMel Gorman * if the cached PFNs match and pageblocks are skipped due to having 23758854c55fSMel Gorman * no isolation candidates, then the sync state does not matter. 23768854c55fSMel Gorman * Until a pageblock with isolation candidates is found, keep the 23778854c55fSMel Gorman * cached PFNs in sync to avoid revisiting the same blocks. 23788854c55fSMel Gorman */ 23798854c55fSMel Gorman update_cached = !sync && 23808854c55fSMel Gorman cc->zone->compact_cached_migrate_pfn[0] == cc->zone->compact_cached_migrate_pfn[1]; 23818854c55fSMel Gorman 2382abd4349fSBaolin Wang trace_mm_compaction_begin(cc, start_pfn, end_pfn, sync); 23830eb927c0SMel Gorman 2384361a2a22SMinchan Kim /* lru_add_drain_all could be expensive with involving other CPUs */ 2385361a2a22SMinchan Kim lru_add_drain(); 2386748446bbSMel Gorman 238740cacbcbSMel Gorman while ((ret = compact_finished(cc)) == COMPACT_CONTINUE) { 23889d502c1cSMinchan Kim int err; 238919d3cf9dSYanfei Xu unsigned long iteration_start_pfn = cc->migrate_pfn; 2390748446bbSMel Gorman 2391804d3121SMel Gorman /* 2392804d3121SMel Gorman * Avoid multiple rescans which can happen if a page cannot be 2393804d3121SMel Gorman * isolated (dirty/writeback in async mode) or if the migrated 2394804d3121SMel Gorman * pages are being allocated before the pageblock is cleared. 2395804d3121SMel Gorman * The first rescan will capture the entire pageblock for 2396804d3121SMel Gorman * migration. If it fails, it'll be marked skip and scanning 2397804d3121SMel Gorman * will proceed as normal. 2398804d3121SMel Gorman */ 2399804d3121SMel Gorman cc->rescan = false; 2400804d3121SMel Gorman if (pageblock_start_pfn(last_migrated_pfn) == 240119d3cf9dSYanfei Xu pageblock_start_pfn(iteration_start_pfn)) { 2402804d3121SMel Gorman cc->rescan = true; 2403804d3121SMel Gorman } 2404804d3121SMel Gorman 240532aaf055SPengfei Li switch (isolate_migratepages(cc)) { 2406f9e35b3bSMel Gorman case ISOLATE_ABORT: 24072d1e1041SVlastimil Babka ret = COMPACT_CONTENDED; 24085733c7d1SRafael Aquini putback_movable_pages(&cc->migratepages); 2409e64c5237SShaohua Li cc->nr_migratepages = 0; 2410f9e35b3bSMel Gorman goto out; 2411f9e35b3bSMel Gorman case ISOLATE_NONE: 24128854c55fSMel Gorman if (update_cached) { 24138854c55fSMel Gorman cc->zone->compact_cached_migrate_pfn[1] = 24148854c55fSMel Gorman cc->zone->compact_cached_migrate_pfn[0]; 24158854c55fSMel Gorman } 24168854c55fSMel Gorman 2417fdaf7f5cSVlastimil Babka /* 2418fdaf7f5cSVlastimil Babka * We haven't isolated and migrated anything, but 2419fdaf7f5cSVlastimil Babka * there might still be unflushed migrations from 2420fdaf7f5cSVlastimil Babka * previous cc->order aligned block. 2421fdaf7f5cSVlastimil Babka */ 2422fdaf7f5cSVlastimil Babka goto check_drain; 2423f9e35b3bSMel Gorman case ISOLATE_SUCCESS: 24248854c55fSMel Gorman update_cached = false; 242519d3cf9dSYanfei Xu last_migrated_pfn = iteration_start_pfn; 2426f9e35b3bSMel Gorman } 2427748446bbSMel Gorman 2428d53aea3dSDavid Rientjes err = migrate_pages(&cc->migratepages, compaction_alloc, 2429e0b9daebSDavid Rientjes compaction_free, (unsigned long)cc, cc->mode, 243084b328aaSBaolin Wang MR_COMPACTION, &nr_succeeded); 2431748446bbSMel Gorman 2432abd4349fSBaolin Wang trace_mm_compaction_migratepages(cc, nr_succeeded); 2433748446bbSMel Gorman 2434f8c9301fSVlastimil Babka /* All pages were either migrated or will be released */ 2435f8c9301fSVlastimil Babka cc->nr_migratepages = 0; 24369d502c1cSMinchan Kim if (err) { 24375733c7d1SRafael Aquini putback_movable_pages(&cc->migratepages); 24387ed695e0SVlastimil Babka /* 24397ed695e0SVlastimil Babka * migrate_pages() may return -ENOMEM when scanners meet 24407ed695e0SVlastimil Babka * and we want compact_finished() to detect it 24417ed695e0SVlastimil Babka */ 2442f2849aa0SVlastimil Babka if (err == -ENOMEM && !compact_scanners_met(cc)) { 24432d1e1041SVlastimil Babka ret = COMPACT_CONTENDED; 24444bf2bba3SDavid Rientjes goto out; 2445748446bbSMel Gorman } 2446fdd048e1SVlastimil Babka /* 2447fdd048e1SVlastimil Babka * We failed to migrate at least one page in the current 2448fdd048e1SVlastimil Babka * order-aligned block, so skip the rest of it. 2449fdd048e1SVlastimil Babka */ 2450fdd048e1SVlastimil Babka if (cc->direct_compaction && 2451fdd048e1SVlastimil Babka (cc->mode == MIGRATE_ASYNC)) { 2452fdd048e1SVlastimil Babka cc->migrate_pfn = block_end_pfn( 2453fdd048e1SVlastimil Babka cc->migrate_pfn - 1, cc->order); 2454fdd048e1SVlastimil Babka /* Draining pcplists is useless in this case */ 2455566e54e1SMel Gorman last_migrated_pfn = 0; 2456fdd048e1SVlastimil Babka } 24574bf2bba3SDavid Rientjes } 2458fdaf7f5cSVlastimil Babka 2459fdaf7f5cSVlastimil Babka check_drain: 2460fdaf7f5cSVlastimil Babka /* 2461fdaf7f5cSVlastimil Babka * Has the migration scanner moved away from the previous 2462fdaf7f5cSVlastimil Babka * cc->order aligned block where we migrated from? If yes, 2463fdaf7f5cSVlastimil Babka * flush the pages that were freed, so that they can merge and 2464fdaf7f5cSVlastimil Babka * compact_finished() can detect immediately if allocation 2465fdaf7f5cSVlastimil Babka * would succeed. 2466fdaf7f5cSVlastimil Babka */ 2467566e54e1SMel Gorman if (cc->order > 0 && last_migrated_pfn) { 2468fdaf7f5cSVlastimil Babka unsigned long current_block_start = 246906b6640aSVlastimil Babka block_start_pfn(cc->migrate_pfn, cc->order); 2470fdaf7f5cSVlastimil Babka 2471566e54e1SMel Gorman if (last_migrated_pfn < current_block_start) { 2472b01b2141SIngo Molnar lru_add_drain_cpu_zone(cc->zone); 2473fdaf7f5cSVlastimil Babka /* No more flushing until we migrate again */ 2474566e54e1SMel Gorman last_migrated_pfn = 0; 2475fdaf7f5cSVlastimil Babka } 2476fdaf7f5cSVlastimil Babka } 2477fdaf7f5cSVlastimil Babka 24785e1f0f09SMel Gorman /* Stop if a page has been captured */ 24795e1f0f09SMel Gorman if (capc && capc->page) { 24805e1f0f09SMel Gorman ret = COMPACT_SUCCESS; 24815e1f0f09SMel Gorman break; 24825e1f0f09SMel Gorman } 2483748446bbSMel Gorman } 2484748446bbSMel Gorman 2485f9e35b3bSMel Gorman out: 24866bace090SVlastimil Babka /* 24876bace090SVlastimil Babka * Release free pages and update where the free scanner should restart, 24886bace090SVlastimil Babka * so we don't leave any returned pages behind in the next attempt. 24896bace090SVlastimil Babka */ 24906bace090SVlastimil Babka if (cc->nr_freepages > 0) { 24916bace090SVlastimil Babka unsigned long free_pfn = release_freepages(&cc->freepages); 24926bace090SVlastimil Babka 24936bace090SVlastimil Babka cc->nr_freepages = 0; 24946bace090SVlastimil Babka VM_BUG_ON(free_pfn == 0); 24956bace090SVlastimil Babka /* The cached pfn is always the first in a pageblock */ 249606b6640aSVlastimil Babka free_pfn = pageblock_start_pfn(free_pfn); 24976bace090SVlastimil Babka /* 24986bace090SVlastimil Babka * Only go back, not forward. The cached pfn might have been 24996bace090SVlastimil Babka * already reset to zone end in compact_finished() 25006bace090SVlastimil Babka */ 250140cacbcbSMel Gorman if (free_pfn > cc->zone->compact_cached_free_pfn) 250240cacbcbSMel Gorman cc->zone->compact_cached_free_pfn = free_pfn; 25036bace090SVlastimil Babka } 2504748446bbSMel Gorman 25057f354a54SDavid Rientjes count_compact_events(COMPACTMIGRATE_SCANNED, cc->total_migrate_scanned); 25067f354a54SDavid Rientjes count_compact_events(COMPACTFREE_SCANNED, cc->total_free_scanned); 25077f354a54SDavid Rientjes 2508abd4349fSBaolin Wang trace_mm_compaction_end(cc, start_pfn, end_pfn, sync, ret); 25090eb927c0SMel Gorman 2510748446bbSMel Gorman return ret; 2511748446bbSMel Gorman } 251276ab0f53SMel Gorman 2513ea7ab982SMichal Hocko static enum compact_result compact_zone_order(struct zone *zone, int order, 2514c3486f53SVlastimil Babka gfp_t gfp_mask, enum compact_priority prio, 251597a225e6SJoonsoo Kim unsigned int alloc_flags, int highest_zoneidx, 25165e1f0f09SMel Gorman struct page **capture) 251756de7263SMel Gorman { 2518ea7ab982SMichal Hocko enum compact_result ret; 251956de7263SMel Gorman struct compact_control cc = { 252056de7263SMel Gorman .order = order, 2521dbe2d4e4SMel Gorman .search_order = order, 25226d7ce559SDavid Rientjes .gfp_mask = gfp_mask, 252356de7263SMel Gorman .zone = zone, 2524a5508cd8SVlastimil Babka .mode = (prio == COMPACT_PRIO_ASYNC) ? 2525a5508cd8SVlastimil Babka MIGRATE_ASYNC : MIGRATE_SYNC_LIGHT, 2526ebff3980SVlastimil Babka .alloc_flags = alloc_flags, 252797a225e6SJoonsoo Kim .highest_zoneidx = highest_zoneidx, 2528accf6242SVlastimil Babka .direct_compaction = true, 2529a8e025e5SVlastimil Babka .whole_zone = (prio == MIN_COMPACT_PRIORITY), 25309f7e3387SVlastimil Babka .ignore_skip_hint = (prio == MIN_COMPACT_PRIORITY), 25319f7e3387SVlastimil Babka .ignore_block_suitable = (prio == MIN_COMPACT_PRIORITY) 253256de7263SMel Gorman }; 25335e1f0f09SMel Gorman struct capture_control capc = { 25345e1f0f09SMel Gorman .cc = &cc, 25355e1f0f09SMel Gorman .page = NULL, 25365e1f0f09SMel Gorman }; 25375e1f0f09SMel Gorman 2538b9e20f0dSVlastimil Babka /* 2539b9e20f0dSVlastimil Babka * Make sure the structs are really initialized before we expose the 2540b9e20f0dSVlastimil Babka * capture control, in case we are interrupted and the interrupt handler 2541b9e20f0dSVlastimil Babka * frees a page. 2542b9e20f0dSVlastimil Babka */ 2543b9e20f0dSVlastimil Babka barrier(); 2544b9e20f0dSVlastimil Babka WRITE_ONCE(current->capture_control, &capc); 254556de7263SMel Gorman 25465e1f0f09SMel Gorman ret = compact_zone(&cc, &capc); 2547e64c5237SShaohua Li 2548e64c5237SShaohua Li VM_BUG_ON(!list_empty(&cc.freepages)); 2549e64c5237SShaohua Li VM_BUG_ON(!list_empty(&cc.migratepages)); 2550e64c5237SShaohua Li 2551b9e20f0dSVlastimil Babka /* 2552b9e20f0dSVlastimil Babka * Make sure we hide capture control first before we read the captured 2553b9e20f0dSVlastimil Babka * page pointer, otherwise an interrupt could free and capture a page 2554b9e20f0dSVlastimil Babka * and we would leak it. 2555b9e20f0dSVlastimil Babka */ 2556b9e20f0dSVlastimil Babka WRITE_ONCE(current->capture_control, NULL); 2557b9e20f0dSVlastimil Babka *capture = READ_ONCE(capc.page); 255806dac2f4SCharan Teja Reddy /* 255906dac2f4SCharan Teja Reddy * Technically, it is also possible that compaction is skipped but 256006dac2f4SCharan Teja Reddy * the page is still captured out of luck(IRQ came and freed the page). 256106dac2f4SCharan Teja Reddy * Returning COMPACT_SUCCESS in such cases helps in properly accounting 256206dac2f4SCharan Teja Reddy * the COMPACT[STALL|FAIL] when compaction is skipped. 256306dac2f4SCharan Teja Reddy */ 256406dac2f4SCharan Teja Reddy if (*capture) 256506dac2f4SCharan Teja Reddy ret = COMPACT_SUCCESS; 25665e1f0f09SMel Gorman 2567e64c5237SShaohua Li return ret; 256856de7263SMel Gorman } 256956de7263SMel Gorman 25705e771905SMel Gorman int sysctl_extfrag_threshold = 500; 25715e771905SMel Gorman 257256de7263SMel Gorman /** 257356de7263SMel Gorman * try_to_compact_pages - Direct compact to satisfy a high-order allocation 257456de7263SMel Gorman * @gfp_mask: The GFP mask of the current allocation 25751a6d53a1SVlastimil Babka * @order: The order of the current allocation 25761a6d53a1SVlastimil Babka * @alloc_flags: The allocation flags of the current allocation 25771a6d53a1SVlastimil Babka * @ac: The context of current allocation 2578112d2d29SYang Shi * @prio: Determines how hard direct compaction should try to succeed 25796467552cSVlastimil Babka * @capture: Pointer to free page created by compaction will be stored here 258056de7263SMel Gorman * 258156de7263SMel Gorman * This is the main entry point for direct page compaction. 258256de7263SMel Gorman */ 2583ea7ab982SMichal Hocko enum compact_result try_to_compact_pages(gfp_t gfp_mask, unsigned int order, 2584c603844bSMel Gorman unsigned int alloc_flags, const struct alloc_context *ac, 25855e1f0f09SMel Gorman enum compact_priority prio, struct page **capture) 258656de7263SMel Gorman { 2587fe573327SVasily Averin int may_perform_io = (__force int)(gfp_mask & __GFP_IO); 258856de7263SMel Gorman struct zoneref *z; 258956de7263SMel Gorman struct zone *zone; 25901d4746d3SMichal Hocko enum compact_result rc = COMPACT_SKIPPED; 259156de7263SMel Gorman 259273e64c51SMichal Hocko /* 259373e64c51SMichal Hocko * Check if the GFP flags allow compaction - GFP_NOIO is really 259473e64c51SMichal Hocko * tricky context because the migration might require IO 259573e64c51SMichal Hocko */ 259673e64c51SMichal Hocko if (!may_perform_io) 259753853e2dSVlastimil Babka return COMPACT_SKIPPED; 259856de7263SMel Gorman 2599a5508cd8SVlastimil Babka trace_mm_compaction_try_to_compact_pages(order, gfp_mask, prio); 2600837d026dSJoonsoo Kim 260156de7263SMel Gorman /* Compact each zone in the list */ 260297a225e6SJoonsoo Kim for_each_zone_zonelist_nodemask(zone, z, ac->zonelist, 260397a225e6SJoonsoo Kim ac->highest_zoneidx, ac->nodemask) { 2604ea7ab982SMichal Hocko enum compact_result status; 260556de7263SMel Gorman 2606a8e025e5SVlastimil Babka if (prio > MIN_COMPACT_PRIORITY 2607a8e025e5SVlastimil Babka && compaction_deferred(zone, order)) { 26081d4746d3SMichal Hocko rc = max_t(enum compact_result, COMPACT_DEFERRED, rc); 260953853e2dSVlastimil Babka continue; 26101d4746d3SMichal Hocko } 261153853e2dSVlastimil Babka 2612a5508cd8SVlastimil Babka status = compact_zone_order(zone, order, gfp_mask, prio, 261397a225e6SJoonsoo Kim alloc_flags, ac->highest_zoneidx, capture); 261456de7263SMel Gorman rc = max(status, rc); 261556de7263SMel Gorman 26167ceb009aSVlastimil Babka /* The allocation should succeed, stop compacting */ 26177ceb009aSVlastimil Babka if (status == COMPACT_SUCCESS) { 261853853e2dSVlastimil Babka /* 261953853e2dSVlastimil Babka * We think the allocation will succeed in this zone, 262053853e2dSVlastimil Babka * but it is not certain, hence the false. The caller 262153853e2dSVlastimil Babka * will repeat this with true if allocation indeed 262253853e2dSVlastimil Babka * succeeds in this zone. 262353853e2dSVlastimil Babka */ 262453853e2dSVlastimil Babka compaction_defer_reset(zone, order, false); 26251f9efdefSVlastimil Babka 2626c3486f53SVlastimil Babka break; 26271f9efdefSVlastimil Babka } 26281f9efdefSVlastimil Babka 2629a5508cd8SVlastimil Babka if (prio != COMPACT_PRIO_ASYNC && (status == COMPACT_COMPLETE || 2630c3486f53SVlastimil Babka status == COMPACT_PARTIAL_SKIPPED)) 263153853e2dSVlastimil Babka /* 263253853e2dSVlastimil Babka * We think that allocation won't succeed in this zone 263353853e2dSVlastimil Babka * so we defer compaction there. If it ends up 263453853e2dSVlastimil Babka * succeeding after all, it will be reset. 263553853e2dSVlastimil Babka */ 263653853e2dSVlastimil Babka defer_compaction(zone, order); 26371f9efdefSVlastimil Babka 26381f9efdefSVlastimil Babka /* 26391f9efdefSVlastimil Babka * We might have stopped compacting due to need_resched() in 26401f9efdefSVlastimil Babka * async compaction, or due to a fatal signal detected. In that 2641c3486f53SVlastimil Babka * case do not try further zones 26421f9efdefSVlastimil Babka */ 2643c3486f53SVlastimil Babka if ((prio == COMPACT_PRIO_ASYNC && need_resched()) 2644c3486f53SVlastimil Babka || fatal_signal_pending(current)) 26451f9efdefSVlastimil Babka break; 26461f9efdefSVlastimil Babka } 26471f9efdefSVlastimil Babka 264856de7263SMel Gorman return rc; 264956de7263SMel Gorman } 265056de7263SMel Gorman 2651facdaa91SNitin Gupta /* 2652facdaa91SNitin Gupta * Compact all zones within a node till each zone's fragmentation score 2653facdaa91SNitin Gupta * reaches within proactive compaction thresholds (as determined by the 2654facdaa91SNitin Gupta * proactiveness tunable). 2655facdaa91SNitin Gupta * 2656facdaa91SNitin Gupta * It is possible that the function returns before reaching score targets 2657facdaa91SNitin Gupta * due to various back-off conditions, such as, contention on per-node or 2658facdaa91SNitin Gupta * per-zone locks. 2659facdaa91SNitin Gupta */ 2660facdaa91SNitin Gupta static void proactive_compact_node(pg_data_t *pgdat) 2661facdaa91SNitin Gupta { 2662facdaa91SNitin Gupta int zoneid; 2663facdaa91SNitin Gupta struct zone *zone; 2664facdaa91SNitin Gupta struct compact_control cc = { 2665facdaa91SNitin Gupta .order = -1, 2666facdaa91SNitin Gupta .mode = MIGRATE_SYNC_LIGHT, 2667facdaa91SNitin Gupta .ignore_skip_hint = true, 2668facdaa91SNitin Gupta .whole_zone = true, 2669facdaa91SNitin Gupta .gfp_mask = GFP_KERNEL, 2670facdaa91SNitin Gupta .proactive_compaction = true, 2671facdaa91SNitin Gupta }; 2672facdaa91SNitin Gupta 2673facdaa91SNitin Gupta for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) { 2674facdaa91SNitin Gupta zone = &pgdat->node_zones[zoneid]; 2675facdaa91SNitin Gupta if (!populated_zone(zone)) 2676facdaa91SNitin Gupta continue; 2677facdaa91SNitin Gupta 2678facdaa91SNitin Gupta cc.zone = zone; 2679facdaa91SNitin Gupta 2680facdaa91SNitin Gupta compact_zone(&cc, NULL); 2681facdaa91SNitin Gupta 2682facdaa91SNitin Gupta VM_BUG_ON(!list_empty(&cc.freepages)); 2683facdaa91SNitin Gupta VM_BUG_ON(!list_empty(&cc.migratepages)); 2684facdaa91SNitin Gupta } 2685facdaa91SNitin Gupta } 268656de7263SMel Gorman 268776ab0f53SMel Gorman /* Compact all zones within a node */ 26887103f16dSAndrew Morton static void compact_node(int nid) 26897be62de9SRik van Riel { 2690791cae96SVlastimil Babka pg_data_t *pgdat = NODE_DATA(nid); 2691791cae96SVlastimil Babka int zoneid; 2692791cae96SVlastimil Babka struct zone *zone; 26937be62de9SRik van Riel struct compact_control cc = { 26947be62de9SRik van Riel .order = -1, 2695e0b9daebSDavid Rientjes .mode = MIGRATE_SYNC, 269691ca9186SDavid Rientjes .ignore_skip_hint = true, 269706ed2998SVlastimil Babka .whole_zone = true, 269873e64c51SMichal Hocko .gfp_mask = GFP_KERNEL, 26997be62de9SRik van Riel }; 27007be62de9SRik van Riel 2701791cae96SVlastimil Babka 2702791cae96SVlastimil Babka for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) { 2703791cae96SVlastimil Babka 2704791cae96SVlastimil Babka zone = &pgdat->node_zones[zoneid]; 2705791cae96SVlastimil Babka if (!populated_zone(zone)) 2706791cae96SVlastimil Babka continue; 2707791cae96SVlastimil Babka 2708791cae96SVlastimil Babka cc.zone = zone; 2709791cae96SVlastimil Babka 27105e1f0f09SMel Gorman compact_zone(&cc, NULL); 2711791cae96SVlastimil Babka 2712791cae96SVlastimil Babka VM_BUG_ON(!list_empty(&cc.freepages)); 2713791cae96SVlastimil Babka VM_BUG_ON(!list_empty(&cc.migratepages)); 2714791cae96SVlastimil Babka } 27157be62de9SRik van Riel } 27167be62de9SRik van Riel 271776ab0f53SMel Gorman /* Compact all nodes in the system */ 27187964c06dSJason Liu static void compact_nodes(void) 271976ab0f53SMel Gorman { 272076ab0f53SMel Gorman int nid; 272176ab0f53SMel Gorman 27228575ec29SHugh Dickins /* Flush pending updates to the LRU lists */ 27238575ec29SHugh Dickins lru_add_drain_all(); 27248575ec29SHugh Dickins 272576ab0f53SMel Gorman for_each_online_node(nid) 272676ab0f53SMel Gorman compact_node(nid); 272776ab0f53SMel Gorman } 272876ab0f53SMel Gorman 2729fec4eb2cSYaowei Bai /* 2730facdaa91SNitin Gupta * Tunable for proactive compaction. It determines how 2731facdaa91SNitin Gupta * aggressively the kernel should compact memory in the 2732facdaa91SNitin Gupta * background. It takes values in the range [0, 100]. 2733facdaa91SNitin Gupta */ 2734d34c0a75SNitin Gupta unsigned int __read_mostly sysctl_compaction_proactiveness = 20; 2735facdaa91SNitin Gupta 273665d759c8SCharan Teja Reddy int compaction_proactiveness_sysctl_handler(struct ctl_table *table, int write, 273765d759c8SCharan Teja Reddy void *buffer, size_t *length, loff_t *ppos) 273865d759c8SCharan Teja Reddy { 273965d759c8SCharan Teja Reddy int rc, nid; 274065d759c8SCharan Teja Reddy 274165d759c8SCharan Teja Reddy rc = proc_dointvec_minmax(table, write, buffer, length, ppos); 274265d759c8SCharan Teja Reddy if (rc) 274365d759c8SCharan Teja Reddy return rc; 274465d759c8SCharan Teja Reddy 274565d759c8SCharan Teja Reddy if (write && sysctl_compaction_proactiveness) { 274665d759c8SCharan Teja Reddy for_each_online_node(nid) { 274765d759c8SCharan Teja Reddy pg_data_t *pgdat = NODE_DATA(nid); 274865d759c8SCharan Teja Reddy 274965d759c8SCharan Teja Reddy if (pgdat->proactive_compact_trigger) 275065d759c8SCharan Teja Reddy continue; 275165d759c8SCharan Teja Reddy 275265d759c8SCharan Teja Reddy pgdat->proactive_compact_trigger = true; 275365d759c8SCharan Teja Reddy wake_up_interruptible(&pgdat->kcompactd_wait); 275465d759c8SCharan Teja Reddy } 275565d759c8SCharan Teja Reddy } 275665d759c8SCharan Teja Reddy 275765d759c8SCharan Teja Reddy return 0; 275865d759c8SCharan Teja Reddy } 275965d759c8SCharan Teja Reddy 2760facdaa91SNitin Gupta /* 2761fec4eb2cSYaowei Bai * This is the entry point for compacting all nodes via 2762fec4eb2cSYaowei Bai * /proc/sys/vm/compact_memory 2763fec4eb2cSYaowei Bai */ 276476ab0f53SMel Gorman int sysctl_compaction_handler(struct ctl_table *table, int write, 276532927393SChristoph Hellwig void *buffer, size_t *length, loff_t *ppos) 276676ab0f53SMel Gorman { 276776ab0f53SMel Gorman if (write) 27687964c06dSJason Liu compact_nodes(); 276976ab0f53SMel Gorman 277076ab0f53SMel Gorman return 0; 277176ab0f53SMel Gorman } 2772ed4a6d7fSMel Gorman 2773ed4a6d7fSMel Gorman #if defined(CONFIG_SYSFS) && defined(CONFIG_NUMA) 277417adb230SYueHaibing static ssize_t compact_store(struct device *dev, 277510fbcf4cSKay Sievers struct device_attribute *attr, 2776ed4a6d7fSMel Gorman const char *buf, size_t count) 2777ed4a6d7fSMel Gorman { 27788575ec29SHugh Dickins int nid = dev->id; 27798575ec29SHugh Dickins 27808575ec29SHugh Dickins if (nid >= 0 && nid < nr_node_ids && node_online(nid)) { 27818575ec29SHugh Dickins /* Flush pending updates to the LRU lists */ 27828575ec29SHugh Dickins lru_add_drain_all(); 27838575ec29SHugh Dickins 27848575ec29SHugh Dickins compact_node(nid); 27858575ec29SHugh Dickins } 2786ed4a6d7fSMel Gorman 2787ed4a6d7fSMel Gorman return count; 2788ed4a6d7fSMel Gorman } 278917adb230SYueHaibing static DEVICE_ATTR_WO(compact); 2790ed4a6d7fSMel Gorman 2791ed4a6d7fSMel Gorman int compaction_register_node(struct node *node) 2792ed4a6d7fSMel Gorman { 279310fbcf4cSKay Sievers return device_create_file(&node->dev, &dev_attr_compact); 2794ed4a6d7fSMel Gorman } 2795ed4a6d7fSMel Gorman 2796ed4a6d7fSMel Gorman void compaction_unregister_node(struct node *node) 2797ed4a6d7fSMel Gorman { 279810fbcf4cSKay Sievers return device_remove_file(&node->dev, &dev_attr_compact); 2799ed4a6d7fSMel Gorman } 2800ed4a6d7fSMel Gorman #endif /* CONFIG_SYSFS && CONFIG_NUMA */ 2801ff9543fdSMichal Nazarewicz 2802698b1b30SVlastimil Babka static inline bool kcompactd_work_requested(pg_data_t *pgdat) 2803698b1b30SVlastimil Babka { 280465d759c8SCharan Teja Reddy return pgdat->kcompactd_max_order > 0 || kthread_should_stop() || 280565d759c8SCharan Teja Reddy pgdat->proactive_compact_trigger; 2806698b1b30SVlastimil Babka } 2807698b1b30SVlastimil Babka 2808698b1b30SVlastimil Babka static bool kcompactd_node_suitable(pg_data_t *pgdat) 2809698b1b30SVlastimil Babka { 2810698b1b30SVlastimil Babka int zoneid; 2811698b1b30SVlastimil Babka struct zone *zone; 281297a225e6SJoonsoo Kim enum zone_type highest_zoneidx = pgdat->kcompactd_highest_zoneidx; 2813698b1b30SVlastimil Babka 281497a225e6SJoonsoo Kim for (zoneid = 0; zoneid <= highest_zoneidx; zoneid++) { 2815698b1b30SVlastimil Babka zone = &pgdat->node_zones[zoneid]; 2816698b1b30SVlastimil Babka 2817698b1b30SVlastimil Babka if (!populated_zone(zone)) 2818698b1b30SVlastimil Babka continue; 2819698b1b30SVlastimil Babka 2820698b1b30SVlastimil Babka if (compaction_suitable(zone, pgdat->kcompactd_max_order, 0, 282197a225e6SJoonsoo Kim highest_zoneidx) == COMPACT_CONTINUE) 2822698b1b30SVlastimil Babka return true; 2823698b1b30SVlastimil Babka } 2824698b1b30SVlastimil Babka 2825698b1b30SVlastimil Babka return false; 2826698b1b30SVlastimil Babka } 2827698b1b30SVlastimil Babka 2828698b1b30SVlastimil Babka static void kcompactd_do_work(pg_data_t *pgdat) 2829698b1b30SVlastimil Babka { 2830698b1b30SVlastimil Babka /* 2831698b1b30SVlastimil Babka * With no special task, compact all zones so that a page of requested 2832698b1b30SVlastimil Babka * order is allocatable. 2833698b1b30SVlastimil Babka */ 2834698b1b30SVlastimil Babka int zoneid; 2835698b1b30SVlastimil Babka struct zone *zone; 2836698b1b30SVlastimil Babka struct compact_control cc = { 2837698b1b30SVlastimil Babka .order = pgdat->kcompactd_max_order, 2838dbe2d4e4SMel Gorman .search_order = pgdat->kcompactd_max_order, 283997a225e6SJoonsoo Kim .highest_zoneidx = pgdat->kcompactd_highest_zoneidx, 2840698b1b30SVlastimil Babka .mode = MIGRATE_SYNC_LIGHT, 2841a0647dc9SDavid Rientjes .ignore_skip_hint = false, 284273e64c51SMichal Hocko .gfp_mask = GFP_KERNEL, 2843698b1b30SVlastimil Babka }; 2844698b1b30SVlastimil Babka trace_mm_compaction_kcompactd_wake(pgdat->node_id, cc.order, 284597a225e6SJoonsoo Kim cc.highest_zoneidx); 28467f354a54SDavid Rientjes count_compact_event(KCOMPACTD_WAKE); 2847698b1b30SVlastimil Babka 284897a225e6SJoonsoo Kim for (zoneid = 0; zoneid <= cc.highest_zoneidx; zoneid++) { 2849698b1b30SVlastimil Babka int status; 2850698b1b30SVlastimil Babka 2851698b1b30SVlastimil Babka zone = &pgdat->node_zones[zoneid]; 2852698b1b30SVlastimil Babka if (!populated_zone(zone)) 2853698b1b30SVlastimil Babka continue; 2854698b1b30SVlastimil Babka 2855698b1b30SVlastimil Babka if (compaction_deferred(zone, cc.order)) 2856698b1b30SVlastimil Babka continue; 2857698b1b30SVlastimil Babka 2858698b1b30SVlastimil Babka if (compaction_suitable(zone, cc.order, 0, zoneid) != 2859698b1b30SVlastimil Babka COMPACT_CONTINUE) 2860698b1b30SVlastimil Babka continue; 2861698b1b30SVlastimil Babka 2862172400c6SVlastimil Babka if (kthread_should_stop()) 2863172400c6SVlastimil Babka return; 2864a94b5252SYafang Shao 2865a94b5252SYafang Shao cc.zone = zone; 28665e1f0f09SMel Gorman status = compact_zone(&cc, NULL); 2867698b1b30SVlastimil Babka 28687ceb009aSVlastimil Babka if (status == COMPACT_SUCCESS) { 2869698b1b30SVlastimil Babka compaction_defer_reset(zone, cc.order, false); 2870c8f7de0bSMichal Hocko } else if (status == COMPACT_PARTIAL_SKIPPED || status == COMPACT_COMPLETE) { 2871698b1b30SVlastimil Babka /* 2872bc3106b2SDavid Rientjes * Buddy pages may become stranded on pcps that could 2873bc3106b2SDavid Rientjes * otherwise coalesce on the zone's free area for 2874bc3106b2SDavid Rientjes * order >= cc.order. This is ratelimited by the 2875bc3106b2SDavid Rientjes * upcoming deferral. 2876bc3106b2SDavid Rientjes */ 2877bc3106b2SDavid Rientjes drain_all_pages(zone); 2878bc3106b2SDavid Rientjes 2879bc3106b2SDavid Rientjes /* 2880698b1b30SVlastimil Babka * We use sync migration mode here, so we defer like 2881698b1b30SVlastimil Babka * sync direct compaction does. 2882698b1b30SVlastimil Babka */ 2883698b1b30SVlastimil Babka defer_compaction(zone, cc.order); 2884698b1b30SVlastimil Babka } 2885698b1b30SVlastimil Babka 28867f354a54SDavid Rientjes count_compact_events(KCOMPACTD_MIGRATE_SCANNED, 28877f354a54SDavid Rientjes cc.total_migrate_scanned); 28887f354a54SDavid Rientjes count_compact_events(KCOMPACTD_FREE_SCANNED, 28897f354a54SDavid Rientjes cc.total_free_scanned); 28907f354a54SDavid Rientjes 2891698b1b30SVlastimil Babka VM_BUG_ON(!list_empty(&cc.freepages)); 2892698b1b30SVlastimil Babka VM_BUG_ON(!list_empty(&cc.migratepages)); 2893698b1b30SVlastimil Babka } 2894698b1b30SVlastimil Babka 2895698b1b30SVlastimil Babka /* 2896698b1b30SVlastimil Babka * Regardless of success, we are done until woken up next. But remember 289797a225e6SJoonsoo Kim * the requested order/highest_zoneidx in case it was higher/tighter 289897a225e6SJoonsoo Kim * than our current ones 2899698b1b30SVlastimil Babka */ 2900698b1b30SVlastimil Babka if (pgdat->kcompactd_max_order <= cc.order) 2901698b1b30SVlastimil Babka pgdat->kcompactd_max_order = 0; 290297a225e6SJoonsoo Kim if (pgdat->kcompactd_highest_zoneidx >= cc.highest_zoneidx) 290397a225e6SJoonsoo Kim pgdat->kcompactd_highest_zoneidx = pgdat->nr_zones - 1; 2904698b1b30SVlastimil Babka } 2905698b1b30SVlastimil Babka 290697a225e6SJoonsoo Kim void wakeup_kcompactd(pg_data_t *pgdat, int order, int highest_zoneidx) 2907698b1b30SVlastimil Babka { 2908698b1b30SVlastimil Babka if (!order) 2909698b1b30SVlastimil Babka return; 2910698b1b30SVlastimil Babka 2911698b1b30SVlastimil Babka if (pgdat->kcompactd_max_order < order) 2912698b1b30SVlastimil Babka pgdat->kcompactd_max_order = order; 2913698b1b30SVlastimil Babka 291497a225e6SJoonsoo Kim if (pgdat->kcompactd_highest_zoneidx > highest_zoneidx) 291597a225e6SJoonsoo Kim pgdat->kcompactd_highest_zoneidx = highest_zoneidx; 2916698b1b30SVlastimil Babka 29176818600fSDavidlohr Bueso /* 29186818600fSDavidlohr Bueso * Pairs with implicit barrier in wait_event_freezable() 29196818600fSDavidlohr Bueso * such that wakeups are not missed. 29206818600fSDavidlohr Bueso */ 29216818600fSDavidlohr Bueso if (!wq_has_sleeper(&pgdat->kcompactd_wait)) 2922698b1b30SVlastimil Babka return; 2923698b1b30SVlastimil Babka 2924698b1b30SVlastimil Babka if (!kcompactd_node_suitable(pgdat)) 2925698b1b30SVlastimil Babka return; 2926698b1b30SVlastimil Babka 2927698b1b30SVlastimil Babka trace_mm_compaction_wakeup_kcompactd(pgdat->node_id, order, 292897a225e6SJoonsoo Kim highest_zoneidx); 2929698b1b30SVlastimil Babka wake_up_interruptible(&pgdat->kcompactd_wait); 2930698b1b30SVlastimil Babka } 2931698b1b30SVlastimil Babka 2932698b1b30SVlastimil Babka /* 2933698b1b30SVlastimil Babka * The background compaction daemon, started as a kernel thread 2934698b1b30SVlastimil Babka * from the init process. 2935698b1b30SVlastimil Babka */ 2936698b1b30SVlastimil Babka static int kcompactd(void *p) 2937698b1b30SVlastimil Babka { 2938698b1b30SVlastimil Babka pg_data_t *pgdat = (pg_data_t *)p; 2939698b1b30SVlastimil Babka struct task_struct *tsk = current; 2940e1e92bfaSCharan Teja Reddy long default_timeout = msecs_to_jiffies(HPAGE_FRAG_CHECK_INTERVAL_MSEC); 2941e1e92bfaSCharan Teja Reddy long timeout = default_timeout; 2942698b1b30SVlastimil Babka 2943698b1b30SVlastimil Babka const struct cpumask *cpumask = cpumask_of_node(pgdat->node_id); 2944698b1b30SVlastimil Babka 2945698b1b30SVlastimil Babka if (!cpumask_empty(cpumask)) 2946698b1b30SVlastimil Babka set_cpus_allowed_ptr(tsk, cpumask); 2947698b1b30SVlastimil Babka 2948698b1b30SVlastimil Babka set_freezable(); 2949698b1b30SVlastimil Babka 2950698b1b30SVlastimil Babka pgdat->kcompactd_max_order = 0; 295197a225e6SJoonsoo Kim pgdat->kcompactd_highest_zoneidx = pgdat->nr_zones - 1; 2952698b1b30SVlastimil Babka 2953698b1b30SVlastimil Babka while (!kthread_should_stop()) { 2954eb414681SJohannes Weiner unsigned long pflags; 2955eb414681SJohannes Weiner 295665d759c8SCharan Teja Reddy /* 295765d759c8SCharan Teja Reddy * Avoid the unnecessary wakeup for proactive compaction 295865d759c8SCharan Teja Reddy * when it is disabled. 295965d759c8SCharan Teja Reddy */ 296065d759c8SCharan Teja Reddy if (!sysctl_compaction_proactiveness) 296165d759c8SCharan Teja Reddy timeout = MAX_SCHEDULE_TIMEOUT; 2962698b1b30SVlastimil Babka trace_mm_compaction_kcompactd_sleep(pgdat->node_id); 2963facdaa91SNitin Gupta if (wait_event_freezable_timeout(pgdat->kcompactd_wait, 296465d759c8SCharan Teja Reddy kcompactd_work_requested(pgdat), timeout) && 296565d759c8SCharan Teja Reddy !pgdat->proactive_compact_trigger) { 2966698b1b30SVlastimil Babka 2967eb414681SJohannes Weiner psi_memstall_enter(&pflags); 2968698b1b30SVlastimil Babka kcompactd_do_work(pgdat); 2969eb414681SJohannes Weiner psi_memstall_leave(&pflags); 2970e1e92bfaSCharan Teja Reddy /* 2971e1e92bfaSCharan Teja Reddy * Reset the timeout value. The defer timeout from 2972e1e92bfaSCharan Teja Reddy * proactive compaction is lost here but that is fine 2973e1e92bfaSCharan Teja Reddy * as the condition of the zone changing substantionally 2974e1e92bfaSCharan Teja Reddy * then carrying on with the previous defer interval is 2975e1e92bfaSCharan Teja Reddy * not useful. 2976e1e92bfaSCharan Teja Reddy */ 2977e1e92bfaSCharan Teja Reddy timeout = default_timeout; 2978facdaa91SNitin Gupta continue; 2979facdaa91SNitin Gupta } 2980facdaa91SNitin Gupta 2981e1e92bfaSCharan Teja Reddy /* 2982e1e92bfaSCharan Teja Reddy * Start the proactive work with default timeout. Based 2983e1e92bfaSCharan Teja Reddy * on the fragmentation score, this timeout is updated. 2984e1e92bfaSCharan Teja Reddy */ 2985e1e92bfaSCharan Teja Reddy timeout = default_timeout; 2986facdaa91SNitin Gupta if (should_proactive_compact_node(pgdat)) { 2987facdaa91SNitin Gupta unsigned int prev_score, score; 2988facdaa91SNitin Gupta 2989facdaa91SNitin Gupta prev_score = fragmentation_score_node(pgdat); 2990facdaa91SNitin Gupta proactive_compact_node(pgdat); 2991facdaa91SNitin Gupta score = fragmentation_score_node(pgdat); 2992facdaa91SNitin Gupta /* 2993facdaa91SNitin Gupta * Defer proactive compaction if the fragmentation 2994facdaa91SNitin Gupta * score did not go down i.e. no progress made. 2995facdaa91SNitin Gupta */ 2996e1e92bfaSCharan Teja Reddy if (unlikely(score >= prev_score)) 2997e1e92bfaSCharan Teja Reddy timeout = 2998e1e92bfaSCharan Teja Reddy default_timeout << COMPACT_MAX_DEFER_SHIFT; 2999facdaa91SNitin Gupta } 300065d759c8SCharan Teja Reddy if (unlikely(pgdat->proactive_compact_trigger)) 300165d759c8SCharan Teja Reddy pgdat->proactive_compact_trigger = false; 3002698b1b30SVlastimil Babka } 3003698b1b30SVlastimil Babka 3004698b1b30SVlastimil Babka return 0; 3005698b1b30SVlastimil Babka } 3006698b1b30SVlastimil Babka 3007698b1b30SVlastimil Babka /* 3008698b1b30SVlastimil Babka * This kcompactd start function will be called by init and node-hot-add. 3009698b1b30SVlastimil Babka * On node-hot-add, kcompactd will moved to proper cpus if cpus are hot-added. 3010698b1b30SVlastimil Babka */ 3011024c61eaSMiaohe Lin void kcompactd_run(int nid) 3012698b1b30SVlastimil Babka { 3013698b1b30SVlastimil Babka pg_data_t *pgdat = NODE_DATA(nid); 3014698b1b30SVlastimil Babka 3015698b1b30SVlastimil Babka if (pgdat->kcompactd) 3016024c61eaSMiaohe Lin return; 3017698b1b30SVlastimil Babka 3018698b1b30SVlastimil Babka pgdat->kcompactd = kthread_run(kcompactd, pgdat, "kcompactd%d", nid); 3019698b1b30SVlastimil Babka if (IS_ERR(pgdat->kcompactd)) { 3020698b1b30SVlastimil Babka pr_err("Failed to start kcompactd on node %d\n", nid); 3021698b1b30SVlastimil Babka pgdat->kcompactd = NULL; 3022698b1b30SVlastimil Babka } 3023698b1b30SVlastimil Babka } 3024698b1b30SVlastimil Babka 3025698b1b30SVlastimil Babka /* 3026698b1b30SVlastimil Babka * Called by memory hotplug when all memory in a node is offlined. Caller must 3027e8da368aSYun-Ze Li * be holding mem_hotplug_begin/done(). 3028698b1b30SVlastimil Babka */ 3029698b1b30SVlastimil Babka void kcompactd_stop(int nid) 3030698b1b30SVlastimil Babka { 3031698b1b30SVlastimil Babka struct task_struct *kcompactd = NODE_DATA(nid)->kcompactd; 3032698b1b30SVlastimil Babka 3033698b1b30SVlastimil Babka if (kcompactd) { 3034698b1b30SVlastimil Babka kthread_stop(kcompactd); 3035698b1b30SVlastimil Babka NODE_DATA(nid)->kcompactd = NULL; 3036698b1b30SVlastimil Babka } 3037698b1b30SVlastimil Babka } 3038698b1b30SVlastimil Babka 3039698b1b30SVlastimil Babka /* 3040698b1b30SVlastimil Babka * It's optimal to keep kcompactd on the same CPUs as their memory, but 3041698b1b30SVlastimil Babka * not required for correctness. So if the last cpu in a node goes 3042698b1b30SVlastimil Babka * away, we get changed to run anywhere: as the first one comes back, 3043698b1b30SVlastimil Babka * restore their cpu bindings. 3044698b1b30SVlastimil Babka */ 3045e46b1db2SAnna-Maria Gleixner static int kcompactd_cpu_online(unsigned int cpu) 3046698b1b30SVlastimil Babka { 3047698b1b30SVlastimil Babka int nid; 3048698b1b30SVlastimil Babka 3049698b1b30SVlastimil Babka for_each_node_state(nid, N_MEMORY) { 3050698b1b30SVlastimil Babka pg_data_t *pgdat = NODE_DATA(nid); 3051698b1b30SVlastimil Babka const struct cpumask *mask; 3052698b1b30SVlastimil Babka 3053698b1b30SVlastimil Babka mask = cpumask_of_node(pgdat->node_id); 3054698b1b30SVlastimil Babka 3055698b1b30SVlastimil Babka if (cpumask_any_and(cpu_online_mask, mask) < nr_cpu_ids) 3056698b1b30SVlastimil Babka /* One of our CPUs online: restore mask */ 30573109de30SMiaohe Lin if (pgdat->kcompactd) 3058698b1b30SVlastimil Babka set_cpus_allowed_ptr(pgdat->kcompactd, mask); 3059698b1b30SVlastimil Babka } 3060e46b1db2SAnna-Maria Gleixner return 0; 3061698b1b30SVlastimil Babka } 3062698b1b30SVlastimil Babka 3063698b1b30SVlastimil Babka static int __init kcompactd_init(void) 3064698b1b30SVlastimil Babka { 3065698b1b30SVlastimil Babka int nid; 3066e46b1db2SAnna-Maria Gleixner int ret; 3067e46b1db2SAnna-Maria Gleixner 3068e46b1db2SAnna-Maria Gleixner ret = cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN, 3069e46b1db2SAnna-Maria Gleixner "mm/compaction:online", 3070e46b1db2SAnna-Maria Gleixner kcompactd_cpu_online, NULL); 3071e46b1db2SAnna-Maria Gleixner if (ret < 0) { 3072e46b1db2SAnna-Maria Gleixner pr_err("kcompactd: failed to register hotplug callbacks.\n"); 3073e46b1db2SAnna-Maria Gleixner return ret; 3074e46b1db2SAnna-Maria Gleixner } 3075698b1b30SVlastimil Babka 3076698b1b30SVlastimil Babka for_each_node_state(nid, N_MEMORY) 3077698b1b30SVlastimil Babka kcompactd_run(nid); 3078698b1b30SVlastimil Babka return 0; 3079698b1b30SVlastimil Babka } 3080698b1b30SVlastimil Babka subsys_initcall(kcompactd_init) 3081698b1b30SVlastimil Babka 3082ff9543fdSMichal Nazarewicz #endif /* CONFIG_COMPACTION */ 3083