mm, thp: avoid excessive compaction latency during fault
[linux-2.6-block.git] / mm / compaction.c
CommitLineData
748446bb
MG
1/*
2 * linux/mm/compaction.c
3 *
4 * Memory compaction for the reduction of external fragmentation. Note that
5 * this heavily depends upon page migration to do all the real heavy
6 * lifting
7 *
8 * Copyright IBM Corp. 2007-2010 Mel Gorman <mel@csn.ul.ie>
9 */
10#include <linux/swap.h>
11#include <linux/migrate.h>
12#include <linux/compaction.h>
13#include <linux/mm_inline.h>
14#include <linux/backing-dev.h>
76ab0f53 15#include <linux/sysctl.h>
ed4a6d7f 16#include <linux/sysfs.h>
bf6bddf1 17#include <linux/balloon_compaction.h>
194159fb 18#include <linux/page-isolation.h>
748446bb
MG
19#include "internal.h"
20
010fc29a
MK
21#ifdef CONFIG_COMPACTION
22static inline void count_compact_event(enum vm_event_item item)
23{
24 count_vm_event(item);
25}
26
27static inline void count_compact_events(enum vm_event_item item, long delta)
28{
29 count_vm_events(item, delta);
30}
31#else
32#define count_compact_event(item) do { } while (0)
33#define count_compact_events(item, delta) do { } while (0)
34#endif
35
ff9543fd
MN
36#if defined CONFIG_COMPACTION || defined CONFIG_CMA
37
b7aba698
MG
38#define CREATE_TRACE_POINTS
39#include <trace/events/compaction.h>
40
748446bb
MG
41static unsigned long release_freepages(struct list_head *freelist)
42{
43 struct page *page, *next;
44 unsigned long count = 0;
45
46 list_for_each_entry_safe(page, next, freelist, lru) {
47 list_del(&page->lru);
48 __free_page(page);
49 count++;
50 }
51
52 return count;
53}
54
ff9543fd
MN
55static void map_pages(struct list_head *list)
56{
57 struct page *page;
58
59 list_for_each_entry(page, list, lru) {
60 arch_alloc_page(page, 0);
61 kernel_map_pages(page, 1, 1);
62 }
63}
64
47118af0
MN
65static inline bool migrate_async_suitable(int migratetype)
66{
67 return is_migrate_cma(migratetype) || migratetype == MIGRATE_MOVABLE;
68}
69
bb13ffeb
MG
70#ifdef CONFIG_COMPACTION
71/* Returns true if the pageblock should be scanned for pages to isolate. */
72static inline bool isolation_suitable(struct compact_control *cc,
73 struct page *page)
74{
75 if (cc->ignore_skip_hint)
76 return true;
77
78 return !get_pageblock_skip(page);
79}
80
81/*
82 * This function is called to clear all cached information on pageblocks that
83 * should be skipped for page isolation when the migrate and free page scanner
84 * meet.
85 */
62997027 86static void __reset_isolation_suitable(struct zone *zone)
bb13ffeb
MG
87{
88 unsigned long start_pfn = zone->zone_start_pfn;
108bcc96 89 unsigned long end_pfn = zone_end_pfn(zone);
bb13ffeb
MG
90 unsigned long pfn;
91
35979ef3
DR
92 zone->compact_cached_migrate_pfn[0] = start_pfn;
93 zone->compact_cached_migrate_pfn[1] = start_pfn;
c89511ab 94 zone->compact_cached_free_pfn = end_pfn;
62997027 95 zone->compact_blockskip_flush = false;
bb13ffeb
MG
96
97 /* Walk the zone and mark every pageblock as suitable for isolation */
98 for (pfn = start_pfn; pfn < end_pfn; pfn += pageblock_nr_pages) {
99 struct page *page;
100
101 cond_resched();
102
103 if (!pfn_valid(pfn))
104 continue;
105
106 page = pfn_to_page(pfn);
107 if (zone != page_zone(page))
108 continue;
109
110 clear_pageblock_skip(page);
111 }
112}
113
62997027
MG
114void reset_isolation_suitable(pg_data_t *pgdat)
115{
116 int zoneid;
117
118 for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) {
119 struct zone *zone = &pgdat->node_zones[zoneid];
120 if (!populated_zone(zone))
121 continue;
122
123 /* Only flush if a full compaction finished recently */
124 if (zone->compact_blockskip_flush)
125 __reset_isolation_suitable(zone);
126 }
127}
128
bb13ffeb
MG
129/*
130 * If no pages were isolated then mark this pageblock to be skipped in the
62997027 131 * future. The information is later cleared by __reset_isolation_suitable().
bb13ffeb 132 */
c89511ab
MG
133static void update_pageblock_skip(struct compact_control *cc,
134 struct page *page, unsigned long nr_isolated,
35979ef3 135 bool set_unsuitable, bool migrate_scanner)
bb13ffeb 136{
c89511ab 137 struct zone *zone = cc->zone;
35979ef3 138 unsigned long pfn;
6815bf3f
JK
139
140 if (cc->ignore_skip_hint)
141 return;
142
bb13ffeb
MG
143 if (!page)
144 return;
145
35979ef3
DR
146 if (nr_isolated)
147 return;
148
149 /*
150 * Only skip pageblocks when all forms of compaction will be known to
151 * fail in the near future.
152 */
153 if (set_unsuitable)
bb13ffeb 154 set_pageblock_skip(page);
c89511ab 155
35979ef3
DR
156 pfn = page_to_pfn(page);
157
158 /* Update where async and sync compaction should restart */
159 if (migrate_scanner) {
160 if (cc->finished_update_migrate)
161 return;
162 if (pfn > zone->compact_cached_migrate_pfn[0])
163 zone->compact_cached_migrate_pfn[0] = pfn;
e0b9daeb
DR
164 if (cc->mode != MIGRATE_ASYNC &&
165 pfn > zone->compact_cached_migrate_pfn[1])
35979ef3
DR
166 zone->compact_cached_migrate_pfn[1] = pfn;
167 } else {
168 if (cc->finished_update_free)
169 return;
170 if (pfn < zone->compact_cached_free_pfn)
171 zone->compact_cached_free_pfn = pfn;
c89511ab 172 }
bb13ffeb
MG
173}
174#else
175static inline bool isolation_suitable(struct compact_control *cc,
176 struct page *page)
177{
178 return true;
179}
180
c89511ab
MG
181static void update_pageblock_skip(struct compact_control *cc,
182 struct page *page, unsigned long nr_isolated,
35979ef3 183 bool set_unsuitable, bool migrate_scanner)
bb13ffeb
MG
184{
185}
186#endif /* CONFIG_COMPACTION */
187
2a1402aa
MG
188static inline bool should_release_lock(spinlock_t *lock)
189{
190 return need_resched() || spin_is_contended(lock);
191}
192
c67fe375
MG
193/*
194 * Compaction requires the taking of some coarse locks that are potentially
195 * very heavily contended. Check if the process needs to be scheduled or
196 * if the lock is contended. For async compaction, back out in the event
197 * if contention is severe. For sync compaction, schedule.
198 *
199 * Returns true if the lock is held.
200 * Returns false if the lock is released and compaction should abort
201 */
202static bool compact_checklock_irqsave(spinlock_t *lock, unsigned long *flags,
203 bool locked, struct compact_control *cc)
204{
2a1402aa 205 if (should_release_lock(lock)) {
c67fe375
MG
206 if (locked) {
207 spin_unlock_irqrestore(lock, *flags);
208 locked = false;
209 }
210
211 /* async aborts if taking too long or contended */
e0b9daeb 212 if (cc->mode == MIGRATE_ASYNC) {
e64c5237 213 cc->contended = true;
c67fe375
MG
214 return false;
215 }
216
217 cond_resched();
c67fe375
MG
218 }
219
220 if (!locked)
221 spin_lock_irqsave(lock, *flags);
222 return true;
223}
224
f40d1e42
MG
225/* Returns true if the page is within a block suitable for migration to */
226static bool suitable_migration_target(struct page *page)
227{
7d348b9e 228 /* If the page is a large free page, then disallow migration */
f40d1e42 229 if (PageBuddy(page) && page_order(page) >= pageblock_order)
7d348b9e 230 return false;
f40d1e42
MG
231
232 /* If the block is MIGRATE_MOVABLE or MIGRATE_CMA, allow migration */
7d348b9e 233 if (migrate_async_suitable(get_pageblock_migratetype(page)))
f40d1e42
MG
234 return true;
235
236 /* Otherwise skip the block */
237 return false;
238}
239
85aa125f 240/*
9e4be470
JM
241 * Isolate free pages onto a private freelist. If @strict is true, will abort
242 * returning 0 on any invalid PFNs or non-free pages inside of the pageblock
243 * (even though it may still end up isolating some pages).
85aa125f 244 */
f40d1e42
MG
245static unsigned long isolate_freepages_block(struct compact_control *cc,
246 unsigned long blockpfn,
85aa125f
MN
247 unsigned long end_pfn,
248 struct list_head *freelist,
249 bool strict)
748446bb 250{
b7aba698 251 int nr_scanned = 0, total_isolated = 0;
bb13ffeb 252 struct page *cursor, *valid_page = NULL;
f40d1e42
MG
253 unsigned long flags;
254 bool locked = false;
01ead534 255 bool checked_pageblock = false;
748446bb 256
748446bb
MG
257 cursor = pfn_to_page(blockpfn);
258
f40d1e42 259 /* Isolate free pages. */
748446bb
MG
260 for (; blockpfn < end_pfn; blockpfn++, cursor++) {
261 int isolated, i;
262 struct page *page = cursor;
263
b7aba698 264 nr_scanned++;
f40d1e42 265 if (!pfn_valid_within(blockpfn))
2af120bc
LA
266 goto isolate_fail;
267
bb13ffeb
MG
268 if (!valid_page)
269 valid_page = page;
f40d1e42 270 if (!PageBuddy(page))
2af120bc 271 goto isolate_fail;
f40d1e42
MG
272
273 /*
274 * The zone lock must be held to isolate freepages.
275 * Unfortunately this is a very coarse lock and can be
276 * heavily contended if there are parallel allocations
277 * or parallel compactions. For async compaction do not
278 * spin on the lock and we acquire the lock as late as
279 * possible.
280 */
281 locked = compact_checklock_irqsave(&cc->zone->lock, &flags,
282 locked, cc);
283 if (!locked)
284 break;
285
286 /* Recheck this is a suitable migration target under lock */
01ead534
JK
287 if (!strict && !checked_pageblock) {
288 /*
289 * We need to check suitability of pageblock only once
290 * and this isolate_freepages_block() is called with
291 * pageblock range, so just check once is sufficient.
292 */
293 checked_pageblock = true;
294 if (!suitable_migration_target(page))
295 break;
296 }
748446bb 297
f40d1e42
MG
298 /* Recheck this is a buddy page under lock */
299 if (!PageBuddy(page))
2af120bc 300 goto isolate_fail;
748446bb
MG
301
302 /* Found a free page, break it into order-0 pages */
303 isolated = split_free_page(page);
304 total_isolated += isolated;
305 for (i = 0; i < isolated; i++) {
306 list_add(&page->lru, freelist);
307 page++;
308 }
309
310 /* If a page was split, advance to the end of it */
311 if (isolated) {
312 blockpfn += isolated - 1;
313 cursor += isolated - 1;
2af120bc 314 continue;
748446bb 315 }
2af120bc
LA
316
317isolate_fail:
318 if (strict)
319 break;
320 else
321 continue;
322
748446bb
MG
323 }
324
b7aba698 325 trace_mm_compaction_isolate_freepages(nr_scanned, total_isolated);
f40d1e42
MG
326
327 /*
328 * If strict isolation is requested by CMA then check that all the
329 * pages requested were isolated. If there were any failures, 0 is
330 * returned and CMA will fail.
331 */
2af120bc 332 if (strict && blockpfn < end_pfn)
f40d1e42
MG
333 total_isolated = 0;
334
335 if (locked)
336 spin_unlock_irqrestore(&cc->zone->lock, flags);
337
bb13ffeb
MG
338 /* Update the pageblock-skip if the whole pageblock was scanned */
339 if (blockpfn == end_pfn)
35979ef3
DR
340 update_pageblock_skip(cc, valid_page, total_isolated, true,
341 false);
bb13ffeb 342
010fc29a 343 count_compact_events(COMPACTFREE_SCANNED, nr_scanned);
397487db 344 if (total_isolated)
010fc29a 345 count_compact_events(COMPACTISOLATED, total_isolated);
748446bb
MG
346 return total_isolated;
347}
348
85aa125f
MN
349/**
350 * isolate_freepages_range() - isolate free pages.
351 * @start_pfn: The first PFN to start isolating.
352 * @end_pfn: The one-past-last PFN.
353 *
354 * Non-free pages, invalid PFNs, or zone boundaries within the
355 * [start_pfn, end_pfn) range are considered errors, cause function to
356 * undo its actions and return zero.
357 *
358 * Otherwise, function returns one-past-the-last PFN of isolated page
359 * (which may be greater then end_pfn if end fell in a middle of
360 * a free page).
361 */
ff9543fd 362unsigned long
bb13ffeb
MG
363isolate_freepages_range(struct compact_control *cc,
364 unsigned long start_pfn, unsigned long end_pfn)
85aa125f 365{
f40d1e42 366 unsigned long isolated, pfn, block_end_pfn;
85aa125f
MN
367 LIST_HEAD(freelist);
368
85aa125f 369 for (pfn = start_pfn; pfn < end_pfn; pfn += isolated) {
bb13ffeb 370 if (!pfn_valid(pfn) || cc->zone != page_zone(pfn_to_page(pfn)))
85aa125f
MN
371 break;
372
373 /*
374 * On subsequent iterations ALIGN() is actually not needed,
375 * but we keep it that we not to complicate the code.
376 */
377 block_end_pfn = ALIGN(pfn + 1, pageblock_nr_pages);
378 block_end_pfn = min(block_end_pfn, end_pfn);
379
bb13ffeb 380 isolated = isolate_freepages_block(cc, pfn, block_end_pfn,
85aa125f 381 &freelist, true);
85aa125f
MN
382
383 /*
384 * In strict mode, isolate_freepages_block() returns 0 if
385 * there are any holes in the block (ie. invalid PFNs or
386 * non-free pages).
387 */
388 if (!isolated)
389 break;
390
391 /*
392 * If we managed to isolate pages, it is always (1 << n) *
393 * pageblock_nr_pages for some non-negative n. (Max order
394 * page may span two pageblocks).
395 */
396 }
397
398 /* split_free_page does not map the pages */
399 map_pages(&freelist);
400
401 if (pfn < end_pfn) {
402 /* Loop terminated early, cleanup. */
403 release_freepages(&freelist);
404 return 0;
405 }
406
407 /* We don't use freelists for anything. */
408 return pfn;
409}
410
748446bb 411/* Update the number of anon and file isolated pages in the zone */
c67fe375 412static void acct_isolated(struct zone *zone, bool locked, struct compact_control *cc)
748446bb
MG
413{
414 struct page *page;
b9e84ac1 415 unsigned int count[2] = { 0, };
748446bb 416
b9e84ac1
MK
417 list_for_each_entry(page, &cc->migratepages, lru)
418 count[!!page_is_file_cache(page)]++;
748446bb 419
c67fe375
MG
420 /* If locked we can use the interrupt unsafe versions */
421 if (locked) {
422 __mod_zone_page_state(zone, NR_ISOLATED_ANON, count[0]);
423 __mod_zone_page_state(zone, NR_ISOLATED_FILE, count[1]);
424 } else {
425 mod_zone_page_state(zone, NR_ISOLATED_ANON, count[0]);
426 mod_zone_page_state(zone, NR_ISOLATED_FILE, count[1]);
427 }
748446bb
MG
428}
429
430/* Similar to reclaim, but different enough that they don't share logic */
431static bool too_many_isolated(struct zone *zone)
432{
bc693045 433 unsigned long active, inactive, isolated;
748446bb
MG
434
435 inactive = zone_page_state(zone, NR_INACTIVE_FILE) +
436 zone_page_state(zone, NR_INACTIVE_ANON);
bc693045
MK
437 active = zone_page_state(zone, NR_ACTIVE_FILE) +
438 zone_page_state(zone, NR_ACTIVE_ANON);
748446bb
MG
439 isolated = zone_page_state(zone, NR_ISOLATED_FILE) +
440 zone_page_state(zone, NR_ISOLATED_ANON);
441
bc693045 442 return isolated > (inactive + active) / 2;
748446bb
MG
443}
444
2fe86e00
MN
445/**
446 * isolate_migratepages_range() - isolate all migrate-able pages in range.
447 * @zone: Zone pages are in.
448 * @cc: Compaction control structure.
449 * @low_pfn: The first PFN of the range.
450 * @end_pfn: The one-past-the-last PFN of the range.
e46a2879 451 * @unevictable: true if it allows to isolate unevictable pages
2fe86e00
MN
452 *
453 * Isolate all pages that can be migrated from the range specified by
454 * [low_pfn, end_pfn). Returns zero if there is a fatal signal
455 * pending), otherwise PFN of the first page that was not scanned
456 * (which may be both less, equal to or more then end_pfn).
457 *
458 * Assumes that cc->migratepages is empty and cc->nr_migratepages is
459 * zero.
460 *
461 * Apart from cc->migratepages and cc->nr_migratetypes this function
462 * does not modify any cc's fields, in particular it does not modify
463 * (or read for that matter) cc->migrate_pfn.
748446bb 464 */
ff9543fd 465unsigned long
2fe86e00 466isolate_migratepages_range(struct zone *zone, struct compact_control *cc,
e46a2879 467 unsigned long low_pfn, unsigned long end_pfn, bool unevictable)
748446bb 468{
9927af74 469 unsigned long last_pageblock_nr = 0, pageblock_nr;
b7aba698 470 unsigned long nr_scanned = 0, nr_isolated = 0;
748446bb 471 struct list_head *migratelist = &cc->migratepages;
fa9add64 472 struct lruvec *lruvec;
c67fe375 473 unsigned long flags;
2a1402aa 474 bool locked = false;
bb13ffeb 475 struct page *page = NULL, *valid_page = NULL;
35979ef3 476 bool set_unsuitable = true;
e0b9daeb
DR
477 const isolate_mode_t mode = (cc->mode == MIGRATE_ASYNC ?
478 ISOLATE_ASYNC_MIGRATE : 0) |
da1c67a7 479 (unevictable ? ISOLATE_UNEVICTABLE : 0);
748446bb 480
748446bb
MG
481 /*
482 * Ensure that there are not too many pages isolated from the LRU
483 * list by either parallel reclaimers or compaction. If there are,
484 * delay for some time until fewer pages are isolated
485 */
486 while (unlikely(too_many_isolated(zone))) {
f9e35b3b 487 /* async migration should just abort */
e0b9daeb 488 if (cc->mode == MIGRATE_ASYNC)
2fe86e00 489 return 0;
f9e35b3b 490
748446bb
MG
491 congestion_wait(BLK_RW_ASYNC, HZ/10);
492
493 if (fatal_signal_pending(current))
2fe86e00 494 return 0;
748446bb
MG
495 }
496
497 /* Time to isolate some pages for migration */
b2eef8c0 498 cond_resched();
748446bb 499 for (; low_pfn < end_pfn; low_pfn++) {
b2eef8c0 500 /* give a chance to irqs before checking need_resched() */
be1aa03b 501 if (locked && !(low_pfn % SWAP_CLUSTER_MAX)) {
2a1402aa
MG
502 if (should_release_lock(&zone->lru_lock)) {
503 spin_unlock_irqrestore(&zone->lru_lock, flags);
504 locked = false;
505 }
b2eef8c0 506 }
c67fe375 507
0bf380bc
MG
508 /*
509 * migrate_pfn does not necessarily start aligned to a
510 * pageblock. Ensure that pfn_valid is called when moving
511 * into a new MAX_ORDER_NR_PAGES range in case of large
512 * memory holes within the zone
513 */
514 if ((low_pfn & (MAX_ORDER_NR_PAGES - 1)) == 0) {
515 if (!pfn_valid(low_pfn)) {
516 low_pfn += MAX_ORDER_NR_PAGES - 1;
517 continue;
518 }
519 }
520
748446bb
MG
521 if (!pfn_valid_within(low_pfn))
522 continue;
b7aba698 523 nr_scanned++;
748446bb 524
dc908600
MG
525 /*
526 * Get the page and ensure the page is within the same zone.
527 * See the comment in isolate_freepages about overlapping
528 * nodes. It is deliberate that the new zone lock is not taken
529 * as memory compaction should not move pages between nodes.
530 */
748446bb 531 page = pfn_to_page(low_pfn);
dc908600
MG
532 if (page_zone(page) != zone)
533 continue;
534
bb13ffeb
MG
535 if (!valid_page)
536 valid_page = page;
537
538 /* If isolation recently failed, do not retry */
539 pageblock_nr = low_pfn >> pageblock_order;
c122b208
JK
540 if (last_pageblock_nr != pageblock_nr) {
541 int mt;
542
543 last_pageblock_nr = pageblock_nr;
544 if (!isolation_suitable(cc, page))
545 goto next_pageblock;
546
547 /*
548 * For async migration, also only scan in MOVABLE
549 * blocks. Async migration is optimistic to see if
550 * the minimum amount of work satisfies the allocation
551 */
552 mt = get_pageblock_migratetype(page);
e0b9daeb
DR
553 if (cc->mode == MIGRATE_ASYNC &&
554 !migrate_async_suitable(mt)) {
35979ef3 555 set_unsuitable = false;
c122b208
JK
556 goto next_pageblock;
557 }
558 }
bb13ffeb 559
6c14466c
MG
560 /*
561 * Skip if free. page_order cannot be used without zone->lock
562 * as nothing prevents parallel allocations or buddy merging.
563 */
748446bb
MG
564 if (PageBuddy(page))
565 continue;
566
bf6bddf1
RA
567 /*
568 * Check may be lockless but that's ok as we recheck later.
569 * It's possible to migrate LRU pages and balloon pages
570 * Skip any other type of page
571 */
572 if (!PageLRU(page)) {
573 if (unlikely(balloon_page_movable(page))) {
574 if (locked && balloon_page_isolate(page)) {
575 /* Successfully isolated */
b6c75016 576 goto isolate_success;
bf6bddf1
RA
577 }
578 }
bc835011 579 continue;
bf6bddf1 580 }
bc835011
AA
581
582 /*
2a1402aa
MG
583 * PageLRU is set. lru_lock normally excludes isolation
584 * splitting and collapsing (collapsing has already happened
585 * if PageLRU is set) but the lock is not necessarily taken
586 * here and it is wasteful to take it just to check transhuge.
587 * Check TransHuge without lock and skip the whole pageblock if
588 * it's either a transhuge or hugetlbfs page, as calling
589 * compound_order() without preventing THP from splitting the
590 * page underneath us may return surprising results.
bc835011 591 */
2a1402aa
MG
592 if (PageTransHuge(page)) {
593 if (!locked)
594 goto next_pageblock;
595 low_pfn += (1 << compound_order(page)) - 1;
596 continue;
597 }
598
119d6d59
DR
599 /*
600 * Migration will fail if an anonymous page is pinned in memory,
601 * so avoid taking lru_lock and isolating it unnecessarily in an
602 * admittedly racy check.
603 */
604 if (!page_mapping(page) &&
605 page_count(page) > page_mapcount(page))
606 continue;
607
2a1402aa
MG
608 /* Check if it is ok to still hold the lock */
609 locked = compact_checklock_irqsave(&zone->lru_lock, &flags,
610 locked, cc);
611 if (!locked || fatal_signal_pending(current))
612 break;
613
614 /* Recheck PageLRU and PageTransHuge under lock */
615 if (!PageLRU(page))
616 continue;
bc835011
AA
617 if (PageTransHuge(page)) {
618 low_pfn += (1 << compound_order(page)) - 1;
619 continue;
620 }
621
fa9add64
HD
622 lruvec = mem_cgroup_page_lruvec(page, zone);
623
748446bb 624 /* Try isolate the page */
f3fd4a61 625 if (__isolate_lru_page(page, mode) != 0)
748446bb
MG
626 continue;
627
309381fe 628 VM_BUG_ON_PAGE(PageTransCompound(page), page);
bc835011 629
748446bb 630 /* Successfully isolated */
fa9add64 631 del_page_from_lru_list(page, lruvec, page_lru(page));
b6c75016
JK
632
633isolate_success:
634 cc->finished_update_migrate = true;
748446bb 635 list_add(&page->lru, migratelist);
748446bb 636 cc->nr_migratepages++;
b7aba698 637 nr_isolated++;
748446bb
MG
638
639 /* Avoid isolating too much */
31b8384a
HD
640 if (cc->nr_migratepages == COMPACT_CLUSTER_MAX) {
641 ++low_pfn;
748446bb 642 break;
31b8384a 643 }
2a1402aa
MG
644
645 continue;
646
647next_pageblock:
a9aacbcc 648 low_pfn = ALIGN(low_pfn + 1, pageblock_nr_pages) - 1;
748446bb
MG
649 }
650
c67fe375 651 acct_isolated(zone, locked, cc);
748446bb 652
c67fe375
MG
653 if (locked)
654 spin_unlock_irqrestore(&zone->lru_lock, flags);
748446bb 655
50b5b094
VB
656 /*
657 * Update the pageblock-skip information and cached scanner pfn,
658 * if the whole pageblock was scanned without isolating any page.
50b5b094 659 */
35979ef3
DR
660 if (low_pfn == end_pfn)
661 update_pageblock_skip(cc, valid_page, nr_isolated,
662 set_unsuitable, true);
bb13ffeb 663
b7aba698
MG
664 trace_mm_compaction_isolate_migratepages(nr_scanned, nr_isolated);
665
010fc29a 666 count_compact_events(COMPACTMIGRATE_SCANNED, nr_scanned);
397487db 667 if (nr_isolated)
010fc29a 668 count_compact_events(COMPACTISOLATED, nr_isolated);
397487db 669
2fe86e00
MN
670 return low_pfn;
671}
672
ff9543fd
MN
673#endif /* CONFIG_COMPACTION || CONFIG_CMA */
674#ifdef CONFIG_COMPACTION
2fe86e00 675/*
ff9543fd
MN
676 * Based on information in the current compact_control, find blocks
677 * suitable for isolating free pages from and then isolate them.
2fe86e00 678 */
ff9543fd
MN
679static void isolate_freepages(struct zone *zone,
680 struct compact_control *cc)
2fe86e00 681{
ff9543fd 682 struct page *page;
c96b9e50
VB
683 unsigned long block_start_pfn; /* start of current pageblock */
684 unsigned long block_end_pfn; /* end of current pageblock */
685 unsigned long low_pfn; /* lowest pfn scanner is able to scan */
686 unsigned long next_free_pfn; /* start pfn for scaning at next round */
ff9543fd
MN
687 int nr_freepages = cc->nr_freepages;
688 struct list_head *freelist = &cc->freepages;
2fe86e00 689
ff9543fd
MN
690 /*
691 * Initialise the free scanner. The starting point is where we last
49e068f0
VB
692 * successfully isolated from, zone-cached value, or the end of the
693 * zone when isolating for the first time. We need this aligned to
c96b9e50
VB
694 * the pageblock boundary, because we do
695 * block_start_pfn -= pageblock_nr_pages in the for loop.
696 * For ending point, take care when isolating in last pageblock of a
697 * a zone which ends in the middle of a pageblock.
49e068f0
VB
698 * The low boundary is the end of the pageblock the migration scanner
699 * is using.
ff9543fd 700 */
c96b9e50
VB
701 block_start_pfn = cc->free_pfn & ~(pageblock_nr_pages-1);
702 block_end_pfn = min(block_start_pfn + pageblock_nr_pages,
703 zone_end_pfn(zone));
7ed695e0 704 low_pfn = ALIGN(cc->migrate_pfn + 1, pageblock_nr_pages);
2fe86e00 705
ff9543fd 706 /*
c96b9e50
VB
707 * If no pages are isolated, the block_start_pfn < low_pfn check
708 * will kick in.
ff9543fd 709 */
c96b9e50 710 next_free_pfn = 0;
2fe86e00 711
ff9543fd
MN
712 /*
713 * Isolate free pages until enough are available to migrate the
714 * pages on cc->migratepages. We stop searching if the migrate
715 * and free page scanners meet or enough free pages are isolated.
716 */
c96b9e50
VB
717 for (; block_start_pfn >= low_pfn && cc->nr_migratepages > nr_freepages;
718 block_end_pfn = block_start_pfn,
719 block_start_pfn -= pageblock_nr_pages) {
ff9543fd 720 unsigned long isolated;
2fe86e00 721
f6ea3adb
DR
722 /*
723 * This can iterate a massively long zone without finding any
724 * suitable migration targets, so periodically check if we need
725 * to schedule.
726 */
727 cond_resched();
728
c96b9e50 729 if (!pfn_valid(block_start_pfn))
ff9543fd 730 continue;
2fe86e00 731
ff9543fd
MN
732 /*
733 * Check for overlapping nodes/zones. It's possible on some
734 * configurations to have a setup like
735 * node0 node1 node0
736 * i.e. it's possible that all pages within a zones range of
737 * pages do not belong to a single zone.
738 */
c96b9e50 739 page = pfn_to_page(block_start_pfn);
ff9543fd
MN
740 if (page_zone(page) != zone)
741 continue;
742
743 /* Check the block is suitable for migration */
68e3e926 744 if (!suitable_migration_target(page))
ff9543fd 745 continue;
68e3e926 746
bb13ffeb
MG
747 /* If isolation recently failed, do not retry */
748 if (!isolation_suitable(cc, page))
749 continue;
750
f40d1e42 751 /* Found a block suitable for isolating free pages from */
c96b9e50
VB
752 isolated = isolate_freepages_block(cc, block_start_pfn,
753 block_end_pfn, freelist, false);
f40d1e42 754 nr_freepages += isolated;
ff9543fd
MN
755
756 /*
757 * Record the highest PFN we isolated pages from. When next
758 * looking for free pages, the search will restart here as
759 * page migration may have returned some pages to the allocator
760 */
c96b9e50 761 if (isolated && next_free_pfn == 0) {
c89511ab 762 cc->finished_update_free = true;
c96b9e50 763 next_free_pfn = block_start_pfn;
c89511ab 764 }
ff9543fd
MN
765 }
766
767 /* split_free_page does not map the pages */
768 map_pages(freelist);
769
7ed695e0
VB
770 /*
771 * If we crossed the migrate scanner, we want to keep it that way
772 * so that compact_finished() may detect this
773 */
c96b9e50
VB
774 if (block_start_pfn < low_pfn)
775 next_free_pfn = cc->migrate_pfn;
776
777 cc->free_pfn = next_free_pfn;
ff9543fd 778 cc->nr_freepages = nr_freepages;
748446bb
MG
779}
780
781/*
782 * This is a migrate-callback that "allocates" freepages by taking pages
783 * from the isolated freelists in the block we are migrating to.
784 */
785static struct page *compaction_alloc(struct page *migratepage,
786 unsigned long data,
787 int **result)
788{
789 struct compact_control *cc = (struct compact_control *)data;
790 struct page *freepage;
791
792 /* Isolate free pages if necessary */
793 if (list_empty(&cc->freepages)) {
794 isolate_freepages(cc->zone, cc);
795
796 if (list_empty(&cc->freepages))
797 return NULL;
798 }
799
800 freepage = list_entry(cc->freepages.next, struct page, lru);
801 list_del(&freepage->lru);
802 cc->nr_freepages--;
803
804 return freepage;
805}
806
807/*
d53aea3d
DR
808 * This is a migrate-callback that "frees" freepages back to the isolated
809 * freelist. All pages on the freelist are from the same zone, so there is no
810 * special handling needed for NUMA.
811 */
812static void compaction_free(struct page *page, unsigned long data)
813{
814 struct compact_control *cc = (struct compact_control *)data;
815
816 list_add(&page->lru, &cc->freepages);
817 cc->nr_freepages++;
818}
819
820/*
821 * We cannot control nr_migratepages fully when migration is running as
822 * migrate_pages() has no knowledge of of compact_control. When migration is
823 * complete, we count the number of pages on the list by hand.
748446bb
MG
824 */
825static void update_nr_listpages(struct compact_control *cc)
826{
827 int nr_migratepages = 0;
748446bb
MG
828 struct page *page;
829
830 list_for_each_entry(page, &cc->migratepages, lru)
831 nr_migratepages++;
748446bb
MG
832
833 cc->nr_migratepages = nr_migratepages;
748446bb
MG
834}
835
ff9543fd
MN
836/* possible outcome of isolate_migratepages */
837typedef enum {
838 ISOLATE_ABORT, /* Abort compaction now */
839 ISOLATE_NONE, /* No pages isolated, continue scanning */
840 ISOLATE_SUCCESS, /* Pages isolated, migrate */
841} isolate_migrate_t;
842
843/*
844 * Isolate all pages that can be migrated from the block pointed to by
845 * the migrate scanner within compact_control.
846 */
847static isolate_migrate_t isolate_migratepages(struct zone *zone,
848 struct compact_control *cc)
849{
850 unsigned long low_pfn, end_pfn;
851
852 /* Do not scan outside zone boundaries */
853 low_pfn = max(cc->migrate_pfn, zone->zone_start_pfn);
854
855 /* Only scan within a pageblock boundary */
a9aacbcc 856 end_pfn = ALIGN(low_pfn + 1, pageblock_nr_pages);
ff9543fd
MN
857
858 /* Do not cross the free scanner or scan within a memory hole */
859 if (end_pfn > cc->free_pfn || !pfn_valid(low_pfn)) {
860 cc->migrate_pfn = end_pfn;
861 return ISOLATE_NONE;
862 }
863
864 /* Perform the isolation */
e46a2879 865 low_pfn = isolate_migratepages_range(zone, cc, low_pfn, end_pfn, false);
e64c5237 866 if (!low_pfn || cc->contended)
ff9543fd
MN
867 return ISOLATE_ABORT;
868
869 cc->migrate_pfn = low_pfn;
870
871 return ISOLATE_SUCCESS;
872}
873
748446bb 874static int compact_finished(struct zone *zone,
5a03b051 875 struct compact_control *cc)
748446bb 876{
8fb74b9f 877 unsigned int order;
5a03b051 878 unsigned long watermark;
56de7263 879
748446bb
MG
880 if (fatal_signal_pending(current))
881 return COMPACT_PARTIAL;
882
753341a4 883 /* Compaction run completes if the migrate and free scanner meet */
bb13ffeb 884 if (cc->free_pfn <= cc->migrate_pfn) {
55b7c4c9 885 /* Let the next compaction start anew. */
35979ef3
DR
886 zone->compact_cached_migrate_pfn[0] = zone->zone_start_pfn;
887 zone->compact_cached_migrate_pfn[1] = zone->zone_start_pfn;
55b7c4c9
VB
888 zone->compact_cached_free_pfn = zone_end_pfn(zone);
889
62997027
MG
890 /*
891 * Mark that the PG_migrate_skip information should be cleared
892 * by kswapd when it goes to sleep. kswapd does not set the
893 * flag itself as the decision to be clear should be directly
894 * based on an allocation request.
895 */
896 if (!current_is_kswapd())
897 zone->compact_blockskip_flush = true;
898
748446bb 899 return COMPACT_COMPLETE;
bb13ffeb 900 }
748446bb 901
82478fb7
JW
902 /*
903 * order == -1 is expected when compacting via
904 * /proc/sys/vm/compact_memory
905 */
56de7263
MG
906 if (cc->order == -1)
907 return COMPACT_CONTINUE;
908
3957c776
MH
909 /* Compaction run is not finished if the watermark is not met */
910 watermark = low_wmark_pages(zone);
911 watermark += (1 << cc->order);
912
913 if (!zone_watermark_ok(zone, cc->order, watermark, 0, 0))
914 return COMPACT_CONTINUE;
915
56de7263 916 /* Direct compactor: Is a suitable page free? */
8fb74b9f
MG
917 for (order = cc->order; order < MAX_ORDER; order++) {
918 struct free_area *area = &zone->free_area[order];
919
920 /* Job done if page is free of the right migratetype */
921 if (!list_empty(&area->free_list[cc->migratetype]))
922 return COMPACT_PARTIAL;
923
924 /* Job done if allocation would set block type */
925 if (cc->order >= pageblock_order && area->nr_free)
56de7263
MG
926 return COMPACT_PARTIAL;
927 }
928
748446bb
MG
929 return COMPACT_CONTINUE;
930}
931
3e7d3449
MG
932/*
933 * compaction_suitable: Is this suitable to run compaction on this zone now?
934 * Returns
935 * COMPACT_SKIPPED - If there are too few free pages for compaction
936 * COMPACT_PARTIAL - If the allocation would succeed without compaction
937 * COMPACT_CONTINUE - If compaction should run now
938 */
939unsigned long compaction_suitable(struct zone *zone, int order)
940{
941 int fragindex;
942 unsigned long watermark;
943
3957c776
MH
944 /*
945 * order == -1 is expected when compacting via
946 * /proc/sys/vm/compact_memory
947 */
948 if (order == -1)
949 return COMPACT_CONTINUE;
950
3e7d3449
MG
951 /*
952 * Watermarks for order-0 must be met for compaction. Note the 2UL.
953 * This is because during migration, copies of pages need to be
954 * allocated and for a short time, the footprint is higher
955 */
956 watermark = low_wmark_pages(zone) + (2UL << order);
957 if (!zone_watermark_ok(zone, 0, watermark, 0, 0))
958 return COMPACT_SKIPPED;
959
960 /*
961 * fragmentation index determines if allocation failures are due to
962 * low memory or external fragmentation
963 *
a582a738
SL
964 * index of -1000 implies allocations might succeed depending on
965 * watermarks
3e7d3449
MG
966 * index towards 0 implies failure is due to lack of memory
967 * index towards 1000 implies failure is due to fragmentation
968 *
969 * Only compact if a failure would be due to fragmentation.
970 */
971 fragindex = fragmentation_index(zone, order);
972 if (fragindex >= 0 && fragindex <= sysctl_extfrag_threshold)
973 return COMPACT_SKIPPED;
974
a582a738
SL
975 if (fragindex == -1000 && zone_watermark_ok(zone, order, watermark,
976 0, 0))
3e7d3449
MG
977 return COMPACT_PARTIAL;
978
979 return COMPACT_CONTINUE;
980}
981
748446bb
MG
982static int compact_zone(struct zone *zone, struct compact_control *cc)
983{
984 int ret;
c89511ab 985 unsigned long start_pfn = zone->zone_start_pfn;
108bcc96 986 unsigned long end_pfn = zone_end_pfn(zone);
e0b9daeb 987 const bool sync = cc->mode != MIGRATE_ASYNC;
748446bb 988
3e7d3449
MG
989 ret = compaction_suitable(zone, cc->order);
990 switch (ret) {
991 case COMPACT_PARTIAL:
992 case COMPACT_SKIPPED:
993 /* Compaction is likely to fail */
994 return ret;
995 case COMPACT_CONTINUE:
996 /* Fall through to compaction */
997 ;
998 }
999
d3132e4b
VB
1000 /*
1001 * Clear pageblock skip if there were failures recently and compaction
1002 * is about to be retried after being deferred. kswapd does not do
1003 * this reset as it'll reset the cached information when going to sleep.
1004 */
1005 if (compaction_restarting(zone, cc->order) && !current_is_kswapd())
1006 __reset_isolation_suitable(zone);
1007
c89511ab
MG
1008 /*
1009 * Setup to move all movable pages to the end of the zone. Used cached
1010 * information on where the scanners should start but check that it
1011 * is initialised by ensuring the values are within zone boundaries.
1012 */
e0b9daeb 1013 cc->migrate_pfn = zone->compact_cached_migrate_pfn[sync];
c89511ab
MG
1014 cc->free_pfn = zone->compact_cached_free_pfn;
1015 if (cc->free_pfn < start_pfn || cc->free_pfn > end_pfn) {
1016 cc->free_pfn = end_pfn & ~(pageblock_nr_pages-1);
1017 zone->compact_cached_free_pfn = cc->free_pfn;
1018 }
1019 if (cc->migrate_pfn < start_pfn || cc->migrate_pfn > end_pfn) {
1020 cc->migrate_pfn = start_pfn;
35979ef3
DR
1021 zone->compact_cached_migrate_pfn[0] = cc->migrate_pfn;
1022 zone->compact_cached_migrate_pfn[1] = cc->migrate_pfn;
c89511ab 1023 }
748446bb 1024
0eb927c0
MG
1025 trace_mm_compaction_begin(start_pfn, cc->migrate_pfn, cc->free_pfn, end_pfn);
1026
748446bb
MG
1027 migrate_prep_local();
1028
1029 while ((ret = compact_finished(zone, cc)) == COMPACT_CONTINUE) {
1030 unsigned long nr_migrate, nr_remaining;
9d502c1c 1031 int err;
748446bb 1032
f9e35b3b
MG
1033 switch (isolate_migratepages(zone, cc)) {
1034 case ISOLATE_ABORT:
1035 ret = COMPACT_PARTIAL;
5733c7d1 1036 putback_movable_pages(&cc->migratepages);
e64c5237 1037 cc->nr_migratepages = 0;
f9e35b3b
MG
1038 goto out;
1039 case ISOLATE_NONE:
748446bb 1040 continue;
f9e35b3b
MG
1041 case ISOLATE_SUCCESS:
1042 ;
1043 }
748446bb
MG
1044
1045 nr_migrate = cc->nr_migratepages;
d53aea3d 1046 err = migrate_pages(&cc->migratepages, compaction_alloc,
e0b9daeb 1047 compaction_free, (unsigned long)cc, cc->mode,
7b2a2d4a 1048 MR_COMPACTION);
748446bb
MG
1049 update_nr_listpages(cc);
1050 nr_remaining = cc->nr_migratepages;
1051
b7aba698
MG
1052 trace_mm_compaction_migratepages(nr_migrate - nr_remaining,
1053 nr_remaining);
748446bb 1054
5733c7d1 1055 /* Release isolated pages not migrated */
9d502c1c 1056 if (err) {
5733c7d1 1057 putback_movable_pages(&cc->migratepages);
748446bb 1058 cc->nr_migratepages = 0;
7ed695e0
VB
1059 /*
1060 * migrate_pages() may return -ENOMEM when scanners meet
1061 * and we want compact_finished() to detect it
1062 */
1063 if (err == -ENOMEM && cc->free_pfn > cc->migrate_pfn) {
4bf2bba3
DR
1064 ret = COMPACT_PARTIAL;
1065 goto out;
1066 }
748446bb 1067 }
748446bb
MG
1068 }
1069
f9e35b3b 1070out:
748446bb
MG
1071 /* Release free pages and check accounting */
1072 cc->nr_freepages -= release_freepages(&cc->freepages);
1073 VM_BUG_ON(cc->nr_freepages != 0);
1074
0eb927c0
MG
1075 trace_mm_compaction_end(ret);
1076
748446bb
MG
1077 return ret;
1078}
76ab0f53 1079
e0b9daeb
DR
1080static unsigned long compact_zone_order(struct zone *zone, int order,
1081 gfp_t gfp_mask, enum migrate_mode mode, bool *contended)
56de7263 1082{
e64c5237 1083 unsigned long ret;
56de7263
MG
1084 struct compact_control cc = {
1085 .nr_freepages = 0,
1086 .nr_migratepages = 0,
1087 .order = order,
1088 .migratetype = allocflags_to_migratetype(gfp_mask),
1089 .zone = zone,
e0b9daeb 1090 .mode = mode,
56de7263
MG
1091 };
1092 INIT_LIST_HEAD(&cc.freepages);
1093 INIT_LIST_HEAD(&cc.migratepages);
1094
e64c5237
SL
1095 ret = compact_zone(zone, &cc);
1096
1097 VM_BUG_ON(!list_empty(&cc.freepages));
1098 VM_BUG_ON(!list_empty(&cc.migratepages));
1099
1100 *contended = cc.contended;
1101 return ret;
56de7263
MG
1102}
1103
5e771905
MG
1104int sysctl_extfrag_threshold = 500;
1105
56de7263
MG
1106/**
1107 * try_to_compact_pages - Direct compact to satisfy a high-order allocation
1108 * @zonelist: The zonelist used for the current allocation
1109 * @order: The order of the current allocation
1110 * @gfp_mask: The GFP mask of the current allocation
1111 * @nodemask: The allowed nodes to allocate from
e0b9daeb 1112 * @mode: The migration mode for async, sync light, or sync migration
661c4cb9
MG
1113 * @contended: Return value that is true if compaction was aborted due to lock contention
1114 * @page: Optionally capture a free page of the requested order during compaction
56de7263
MG
1115 *
1116 * This is the main entry point for direct page compaction.
1117 */
1118unsigned long try_to_compact_pages(struct zonelist *zonelist,
77f1fe6b 1119 int order, gfp_t gfp_mask, nodemask_t *nodemask,
e0b9daeb 1120 enum migrate_mode mode, bool *contended)
56de7263
MG
1121{
1122 enum zone_type high_zoneidx = gfp_zone(gfp_mask);
1123 int may_enter_fs = gfp_mask & __GFP_FS;
1124 int may_perform_io = gfp_mask & __GFP_IO;
56de7263
MG
1125 struct zoneref *z;
1126 struct zone *zone;
1127 int rc = COMPACT_SKIPPED;
d95ea5d1 1128 int alloc_flags = 0;
56de7263 1129
4ffb6335 1130 /* Check if the GFP flags allow compaction */
c5a73c3d 1131 if (!order || !may_enter_fs || !may_perform_io)
56de7263
MG
1132 return rc;
1133
010fc29a 1134 count_compact_event(COMPACTSTALL);
56de7263 1135
d95ea5d1
BZ
1136#ifdef CONFIG_CMA
1137 if (allocflags_to_migratetype(gfp_mask) == MIGRATE_MOVABLE)
1138 alloc_flags |= ALLOC_CMA;
1139#endif
56de7263
MG
1140 /* Compact each zone in the list */
1141 for_each_zone_zonelist_nodemask(zone, z, zonelist, high_zoneidx,
1142 nodemask) {
56de7263
MG
1143 int status;
1144
e0b9daeb 1145 status = compact_zone_order(zone, order, gfp_mask, mode,
8fb74b9f 1146 contended);
56de7263
MG
1147 rc = max(status, rc);
1148
3e7d3449 1149 /* If a normal allocation would succeed, stop compacting */
d95ea5d1
BZ
1150 if (zone_watermark_ok(zone, order, low_wmark_pages(zone), 0,
1151 alloc_flags))
56de7263
MG
1152 break;
1153 }
1154
1155 return rc;
1156}
1157
1158
76ab0f53 1159/* Compact all zones within a node */
7103f16d 1160static void __compact_pgdat(pg_data_t *pgdat, struct compact_control *cc)
76ab0f53
MG
1161{
1162 int zoneid;
76ab0f53
MG
1163 struct zone *zone;
1164
76ab0f53 1165 for (zoneid = 0; zoneid < MAX_NR_ZONES; zoneid++) {
76ab0f53
MG
1166
1167 zone = &pgdat->node_zones[zoneid];
1168 if (!populated_zone(zone))
1169 continue;
1170
7be62de9
RR
1171 cc->nr_freepages = 0;
1172 cc->nr_migratepages = 0;
1173 cc->zone = zone;
1174 INIT_LIST_HEAD(&cc->freepages);
1175 INIT_LIST_HEAD(&cc->migratepages);
76ab0f53 1176
aad6ec37 1177 if (cc->order == -1 || !compaction_deferred(zone, cc->order))
7be62de9 1178 compact_zone(zone, cc);
76ab0f53 1179
aff62249 1180 if (cc->order > 0) {
de6c60a6
VB
1181 if (zone_watermark_ok(zone, cc->order,
1182 low_wmark_pages(zone), 0, 0))
1183 compaction_defer_reset(zone, cc->order, false);
aff62249
RR
1184 }
1185
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1186 VM_BUG_ON(!list_empty(&cc->freepages));
1187 VM_BUG_ON(!list_empty(&cc->migratepages));
76ab0f53 1188 }
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1189}
1190
7103f16d 1191void compact_pgdat(pg_data_t *pgdat, int order)
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1192{
1193 struct compact_control cc = {
1194 .order = order,
e0b9daeb 1195 .mode = MIGRATE_ASYNC,
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1196 };
1197
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1198 if (!order)
1199 return;
1200
7103f16d 1201 __compact_pgdat(pgdat, &cc);
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1202}
1203
7103f16d 1204static void compact_node(int nid)
7be62de9 1205{
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1206 struct compact_control cc = {
1207 .order = -1,
e0b9daeb 1208 .mode = MIGRATE_SYNC,
91ca9186 1209 .ignore_skip_hint = true,
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1210 };
1211
7103f16d 1212 __compact_pgdat(NODE_DATA(nid), &cc);
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1213}
1214
76ab0f53 1215/* Compact all nodes in the system */
7964c06d 1216static void compact_nodes(void)
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1217{
1218 int nid;
1219
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1220 /* Flush pending updates to the LRU lists */
1221 lru_add_drain_all();
1222
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1223 for_each_online_node(nid)
1224 compact_node(nid);
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1225}
1226
1227/* The written value is actually unused, all memory is compacted */
1228int sysctl_compact_memory;
1229
1230/* This is the entry point for compacting all nodes via /proc/sys/vm */
1231int sysctl_compaction_handler(struct ctl_table *table, int write,
1232 void __user *buffer, size_t *length, loff_t *ppos)
1233{
1234 if (write)
7964c06d 1235 compact_nodes();
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1236
1237 return 0;
1238}
ed4a6d7f 1239
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1240int sysctl_extfrag_handler(struct ctl_table *table, int write,
1241 void __user *buffer, size_t *length, loff_t *ppos)
1242{
1243 proc_dointvec_minmax(table, write, buffer, length, ppos);
1244
1245 return 0;
1246}
1247
ed4a6d7f 1248#if defined(CONFIG_SYSFS) && defined(CONFIG_NUMA)
74e77fb9 1249static ssize_t sysfs_compact_node(struct device *dev,
10fbcf4c 1250 struct device_attribute *attr,
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1251 const char *buf, size_t count)
1252{
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1253 int nid = dev->id;
1254
1255 if (nid >= 0 && nid < nr_node_ids && node_online(nid)) {
1256 /* Flush pending updates to the LRU lists */
1257 lru_add_drain_all();
1258
1259 compact_node(nid);
1260 }
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1261
1262 return count;
1263}
10fbcf4c 1264static DEVICE_ATTR(compact, S_IWUSR, NULL, sysfs_compact_node);
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1265
1266int compaction_register_node(struct node *node)
1267{
10fbcf4c 1268 return device_create_file(&node->dev, &dev_attr_compact);
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1269}
1270
1271void compaction_unregister_node(struct node *node)
1272{
10fbcf4c 1273 return device_remove_file(&node->dev, &dev_attr_compact);
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1274}
1275#endif /* CONFIG_SYSFS && CONFIG_NUMA */
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1276
1277#endif /* CONFIG_COMPACTION */