Merge tag 'char-misc-6.3-rc1' of git://git.kernel.org/pub/scm/linux/kernel/git/gregkh...
[linux-block.git] / mm / migrate.c
CommitLineData
b2441318 1// SPDX-License-Identifier: GPL-2.0
b20a3503 2/*
14e0f9bc 3 * Memory Migration functionality - linux/mm/migrate.c
b20a3503
CL
4 *
5 * Copyright (C) 2006 Silicon Graphics, Inc., Christoph Lameter
6 *
7 * Page migration was first developed in the context of the memory hotplug
8 * project. The main authors of the migration code are:
9 *
10 * IWAMOTO Toshihiro <iwamoto@valinux.co.jp>
11 * Hirokazu Takahashi <taka@valinux.co.jp>
12 * Dave Hansen <haveblue@us.ibm.com>
cde53535 13 * Christoph Lameter
b20a3503
CL
14 */
15
16#include <linux/migrate.h>
b95f1b31 17#include <linux/export.h>
b20a3503 18#include <linux/swap.h>
0697212a 19#include <linux/swapops.h>
b20a3503 20#include <linux/pagemap.h>
e23ca00b 21#include <linux/buffer_head.h>
b20a3503 22#include <linux/mm_inline.h>
b488893a 23#include <linux/nsproxy.h>
b20a3503 24#include <linux/pagevec.h>
e9995ef9 25#include <linux/ksm.h>
b20a3503
CL
26#include <linux/rmap.h>
27#include <linux/topology.h>
28#include <linux/cpu.h>
29#include <linux/cpuset.h>
04e62a29 30#include <linux/writeback.h>
742755a1
CL
31#include <linux/mempolicy.h>
32#include <linux/vmalloc.h>
86c3a764 33#include <linux/security.h>
42cb14b1 34#include <linux/backing-dev.h>
bda807d4 35#include <linux/compaction.h>
4f5ca265 36#include <linux/syscalls.h>
7addf443 37#include <linux/compat.h>
290408d4 38#include <linux/hugetlb.h>
8e6ac7fa 39#include <linux/hugetlb_cgroup.h>
5a0e3ad6 40#include <linux/gfp.h>
df6ad698 41#include <linux/pfn_t.h>
a5430dda 42#include <linux/memremap.h>
8315ada7 43#include <linux/userfaultfd_k.h>
bf6bddf1 44#include <linux/balloon_compaction.h>
33c3fc71 45#include <linux/page_idle.h>
d435edca 46#include <linux/page_owner.h>
6e84f315 47#include <linux/sched/mm.h>
197e7e52 48#include <linux/ptrace.h>
34290e2c 49#include <linux/oom.h>
884a6e5d 50#include <linux/memory.h>
ac16ec83 51#include <linux/random.h>
c574bbe9 52#include <linux/sched/sysctl.h>
467b171a 53#include <linux/memory-tiers.h>
b20a3503 54
0d1836c3
MN
55#include <asm/tlbflush.h>
56
7b2a2d4a
MG
57#include <trace/events/migrate.h>
58
b20a3503
CL
59#include "internal.h"
60
cd775580 61bool isolate_movable_page(struct page *page, isolate_mode_t mode)
bda807d4 62{
19979497 63 struct folio *folio = folio_get_nontail_page(page);
68f2736a 64 const struct movable_operations *mops;
bda807d4
MK
65
66 /*
67 * Avoid burning cycles with pages that are yet under __free_pages(),
68 * or just got freed under us.
69 *
70 * In case we 'win' a race for a movable page being freed under us and
71 * raise its refcount preventing __free_pages() from doing its job
72 * the put_page() at the end of this block will take care of
73 * release this page, thus avoiding a nasty leakage.
74 */
19979497 75 if (!folio)
bda807d4
MK
76 goto out;
77
19979497
VMO
78 if (unlikely(folio_test_slab(folio)))
79 goto out_putfolio;
8b881763
VB
80 /* Pairs with smp_wmb() in slab freeing, e.g. SLUB's __free_slab() */
81 smp_rmb();
bda807d4 82 /*
8b881763
VB
83 * Check movable flag before taking the page lock because
84 * we use non-atomic bitops on newly allocated page flags so
85 * unconditionally grabbing the lock ruins page's owner side.
bda807d4 86 */
19979497
VMO
87 if (unlikely(!__folio_test_movable(folio)))
88 goto out_putfolio;
8b881763
VB
89 /* Pairs with smp_wmb() in slab allocation, e.g. SLUB's alloc_slab_page() */
90 smp_rmb();
19979497
VMO
91 if (unlikely(folio_test_slab(folio)))
92 goto out_putfolio;
8b881763 93
bda807d4
MK
94 /*
95 * As movable pages are not isolated from LRU lists, concurrent
96 * compaction threads can race against page migration functions
97 * as well as race against the releasing a page.
98 *
99 * In order to avoid having an already isolated movable page
100 * being (wrongly) re-isolated while it is under migration,
101 * or to avoid attempting to isolate pages being released,
102 * lets be sure we have the page lock
103 * before proceeding with the movable page isolation steps.
104 */
19979497
VMO
105 if (unlikely(!folio_trylock(folio)))
106 goto out_putfolio;
bda807d4 107
19979497 108 if (!folio_test_movable(folio) || folio_test_isolated(folio))
bda807d4
MK
109 goto out_no_isolated;
110
19979497
VMO
111 mops = folio_movable_ops(folio);
112 VM_BUG_ON_FOLIO(!mops, folio);
bda807d4 113
19979497 114 if (!mops->isolate_page(&folio->page, mode))
bda807d4
MK
115 goto out_no_isolated;
116
117 /* Driver shouldn't use PG_isolated bit of page->flags */
19979497
VMO
118 WARN_ON_ONCE(folio_test_isolated(folio));
119 folio_set_isolated(folio);
120 folio_unlock(folio);
bda807d4 121
cd775580 122 return true;
bda807d4
MK
123
124out_no_isolated:
19979497
VMO
125 folio_unlock(folio);
126out_putfolio:
127 folio_put(folio);
bda807d4 128out:
cd775580 129 return false;
bda807d4
MK
130}
131
280d724a 132static void putback_movable_folio(struct folio *folio)
bda807d4 133{
280d724a 134 const struct movable_operations *mops = folio_movable_ops(folio);
bda807d4 135
280d724a
VMO
136 mops->putback_page(&folio->page);
137 folio_clear_isolated(folio);
bda807d4
MK
138}
139
5733c7d1
RA
140/*
141 * Put previously isolated pages back onto the appropriate lists
142 * from where they were once taken off for compaction/migration.
143 *
59c82b70
JK
144 * This function shall be used whenever the isolated pageset has been
145 * built from lru, balloon, hugetlbfs page. See isolate_migratepages_range()
7ce82f4c 146 * and isolate_hugetlb().
5733c7d1
RA
147 */
148void putback_movable_pages(struct list_head *l)
149{
280d724a
VMO
150 struct folio *folio;
151 struct folio *folio2;
5733c7d1 152
280d724a
VMO
153 list_for_each_entry_safe(folio, folio2, l, lru) {
154 if (unlikely(folio_test_hugetlb(folio))) {
155 folio_putback_active_hugetlb(folio);
31caf665
NH
156 continue;
157 }
280d724a 158 list_del(&folio->lru);
bda807d4 159 /*
280d724a
VMO
160 * We isolated non-lru movable folio so here we can use
161 * __PageMovable because LRU folio's mapping cannot have
bda807d4
MK
162 * PAGE_MAPPING_MOVABLE.
163 */
280d724a
VMO
164 if (unlikely(__folio_test_movable(folio))) {
165 VM_BUG_ON_FOLIO(!folio_test_isolated(folio), folio);
166 folio_lock(folio);
167 if (folio_test_movable(folio))
168 putback_movable_folio(folio);
bda807d4 169 else
280d724a
VMO
170 folio_clear_isolated(folio);
171 folio_unlock(folio);
172 folio_put(folio);
bda807d4 173 } else {
280d724a
VMO
174 node_stat_mod_folio(folio, NR_ISOLATED_ANON +
175 folio_is_file_lru(folio), -folio_nr_pages(folio));
176 folio_putback_lru(folio);
bda807d4 177 }
b20a3503 178 }
b20a3503
CL
179}
180
0697212a
CL
181/*
182 * Restore a potential migration pte to a working pte entry
183 */
2f031c6f
MWO
184static bool remove_migration_pte(struct folio *folio,
185 struct vm_area_struct *vma, unsigned long addr, void *old)
0697212a 186{
4eecb8b9 187 DEFINE_FOLIO_VMA_WALK(pvmw, old, vma, addr, PVMW_SYNC | PVMW_MIGRATION);
0697212a 188
3fe87967 189 while (page_vma_mapped_walk(&pvmw)) {
6c287605 190 rmap_t rmap_flags = RMAP_NONE;
4eecb8b9
MWO
191 pte_t pte;
192 swp_entry_t entry;
193 struct page *new;
194 unsigned long idx = 0;
195
196 /* pgoff is invalid for ksm pages, but they are never large */
197 if (folio_test_large(folio) && !folio_test_hugetlb(folio))
198 idx = linear_page_index(vma, pvmw.address) - pvmw.pgoff;
199 new = folio_page(folio, idx);
0697212a 200
616b8371
ZY
201#ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION
202 /* PMD-mapped THP migration entry */
203 if (!pvmw.pte) {
4eecb8b9
MWO
204 VM_BUG_ON_FOLIO(folio_test_hugetlb(folio) ||
205 !folio_test_pmd_mappable(folio), folio);
616b8371
ZY
206 remove_migration_pmd(&pvmw, new);
207 continue;
208 }
209#endif
210
4eecb8b9 211 folio_get(folio);
2e346877 212 pte = mk_pte(new, READ_ONCE(vma->vm_page_prot));
3fe87967
KS
213 if (pte_swp_soft_dirty(*pvmw.pte))
214 pte = pte_mksoft_dirty(pte);
0697212a 215
3fe87967
KS
216 /*
217 * Recheck VMA as permissions can change since migration started
218 */
219 entry = pte_to_swp_entry(*pvmw.pte);
2e346877
PX
220 if (!is_migration_entry_young(entry))
221 pte = pte_mkold(pte);
222 if (folio_test_dirty(folio) && is_migration_entry_dirty(entry))
223 pte = pte_mkdirty(pte);
4dd845b5 224 if (is_writable_migration_entry(entry))
3fe87967 225 pte = maybe_mkwrite(pte, vma);
f45ec5ff
PX
226 else if (pte_swp_uffd_wp(*pvmw.pte))
227 pte = pte_mkuffd_wp(pte);
96a9c287
PX
228 else
229 pte = pte_wrprotect(pte);
d3cb8bf6 230
6c287605
DH
231 if (folio_test_anon(folio) && !is_readable_migration_entry(entry))
232 rmap_flags |= RMAP_EXCLUSIVE;
233
6128763f 234 if (unlikely(is_device_private_page(new))) {
4dd845b5
AP
235 if (pte_write(pte))
236 entry = make_writable_device_private_entry(
237 page_to_pfn(new));
238 else
239 entry = make_readable_device_private_entry(
240 page_to_pfn(new));
6128763f 241 pte = swp_entry_to_pte(entry);
3d321bf8
RC
242 if (pte_swp_soft_dirty(*pvmw.pte))
243 pte = pte_swp_mksoft_dirty(pte);
6128763f
RC
244 if (pte_swp_uffd_wp(*pvmw.pte))
245 pte = pte_swp_mkuffd_wp(pte);
d2b2c6dd 246 }
a5430dda 247
3ef8fd7f 248#ifdef CONFIG_HUGETLB_PAGE
4eecb8b9 249 if (folio_test_hugetlb(folio)) {
79c1c594
CL
250 unsigned int shift = huge_page_shift(hstate_vma(vma));
251
3fe87967 252 pte = pte_mkhuge(pte);
79c1c594 253 pte = arch_make_huge_pte(pte, shift, vma->vm_flags);
4eecb8b9 254 if (folio_test_anon(folio))
28c5209d 255 hugepage_add_anon_rmap(new, vma, pvmw.address,
6c287605 256 rmap_flags);
3fe87967 257 else
fb3d824d 258 page_dup_file_rmap(new, true);
1eba86c0 259 set_huge_pte_at(vma->vm_mm, pvmw.address, pvmw.pte, pte);
383321ab
AK
260 } else
261#endif
262 {
4eecb8b9 263 if (folio_test_anon(folio))
f1e2db12 264 page_add_anon_rmap(new, vma, pvmw.address,
6c287605 265 rmap_flags);
383321ab 266 else
cea86fe2 267 page_add_file_rmap(new, vma, false);
1eba86c0 268 set_pte_at(vma->vm_mm, pvmw.address, pvmw.pte, pte);
383321ab 269 }
b7435507 270 if (vma->vm_flags & VM_LOCKED)
96f97c43 271 mlock_drain_local();
e125fe40 272
4cc79b33
AK
273 trace_remove_migration_pte(pvmw.address, pte_val(pte),
274 compound_order(new));
275
3fe87967
KS
276 /* No need to invalidate - it was non-present before */
277 update_mmu_cache(vma, pvmw.address, pvmw.pte);
278 }
51afb12b 279
e4b82222 280 return true;
0697212a
CL
281}
282
04e62a29
CL
283/*
284 * Get rid of all migration entries and replace them by
285 * references to the indicated page.
286 */
4eecb8b9 287void remove_migration_ptes(struct folio *src, struct folio *dst, bool locked)
04e62a29 288{
051ac83a
JK
289 struct rmap_walk_control rwc = {
290 .rmap_one = remove_migration_pte,
4eecb8b9 291 .arg = src,
051ac83a
JK
292 };
293
e388466d 294 if (locked)
2f031c6f 295 rmap_walk_locked(dst, &rwc);
e388466d 296 else
2f031c6f 297 rmap_walk(dst, &rwc);
04e62a29
CL
298}
299
0697212a
CL
300/*
301 * Something used the pte of a page under migration. We need to
302 * get to the page and wait until migration is finished.
303 * When we return from this function the fault will be retried.
0697212a 304 */
e66f17ff 305void __migration_entry_wait(struct mm_struct *mm, pte_t *ptep,
30dad309 306 spinlock_t *ptl)
0697212a 307{
30dad309 308 pte_t pte;
0697212a 309 swp_entry_t entry;
0697212a 310
30dad309 311 spin_lock(ptl);
0697212a
CL
312 pte = *ptep;
313 if (!is_swap_pte(pte))
314 goto out;
315
316 entry = pte_to_swp_entry(pte);
317 if (!is_migration_entry(entry))
318 goto out;
319
ffa65753 320 migration_entry_wait_on_locked(entry, ptep, ptl);
0697212a
CL
321 return;
322out:
323 pte_unmap_unlock(ptep, ptl);
324}
325
30dad309
NH
326void migration_entry_wait(struct mm_struct *mm, pmd_t *pmd,
327 unsigned long address)
328{
329 spinlock_t *ptl = pte_lockptr(mm, pmd);
330 pte_t *ptep = pte_offset_map(pmd, address);
331 __migration_entry_wait(mm, ptep, ptl);
332}
333
ad1ac596 334#ifdef CONFIG_HUGETLB_PAGE
fcd48540
PX
335/*
336 * The vma read lock must be held upon entry. Holding that lock prevents either
337 * the pte or the ptl from being freed.
338 *
339 * This function will release the vma lock before returning.
340 */
341void __migration_entry_wait_huge(struct vm_area_struct *vma,
342 pte_t *ptep, spinlock_t *ptl)
30dad309 343{
ad1ac596
ML
344 pte_t pte;
345
fcd48540 346 hugetlb_vma_assert_locked(vma);
ad1ac596
ML
347 spin_lock(ptl);
348 pte = huge_ptep_get(ptep);
349
fcd48540 350 if (unlikely(!is_hugetlb_entry_migration(pte))) {
ad1ac596 351 spin_unlock(ptl);
fcd48540
PX
352 hugetlb_vma_unlock_read(vma);
353 } else {
354 /*
355 * If migration entry existed, safe to release vma lock
356 * here because the pgtable page won't be freed without the
357 * pgtable lock released. See comment right above pgtable
358 * lock release in migration_entry_wait_on_locked().
359 */
360 hugetlb_vma_unlock_read(vma);
ad1ac596 361 migration_entry_wait_on_locked(pte_to_swp_entry(pte), NULL, ptl);
fcd48540 362 }
30dad309
NH
363}
364
ad1ac596
ML
365void migration_entry_wait_huge(struct vm_area_struct *vma, pte_t *pte)
366{
367 spinlock_t *ptl = huge_pte_lockptr(hstate_vma(vma), vma->vm_mm, pte);
368
fcd48540 369 __migration_entry_wait_huge(vma, pte, ptl);
ad1ac596
ML
370}
371#endif
372
616b8371
ZY
373#ifdef CONFIG_ARCH_ENABLE_THP_MIGRATION
374void pmd_migration_entry_wait(struct mm_struct *mm, pmd_t *pmd)
375{
376 spinlock_t *ptl;
616b8371
ZY
377
378 ptl = pmd_lock(mm, pmd);
379 if (!is_pmd_migration_entry(*pmd))
380 goto unlock;
ffa65753 381 migration_entry_wait_on_locked(pmd_to_swp_entry(*pmd), NULL, ptl);
616b8371
ZY
382 return;
383unlock:
384 spin_unlock(ptl);
385}
386#endif
387
108ca835
MWO
388static int folio_expected_refs(struct address_space *mapping,
389 struct folio *folio)
0b3901b3 390{
108ca835
MWO
391 int refs = 1;
392 if (!mapping)
393 return refs;
0b3901b3 394
108ca835
MWO
395 refs += folio_nr_pages(folio);
396 if (folio_test_private(folio))
397 refs++;
398
399 return refs;
0b3901b3
JK
400}
401
b20a3503 402/*
c3fcf8a5 403 * Replace the page in the mapping.
5b5c7120
CL
404 *
405 * The number of remaining references must be:
406 * 1 for anonymous pages without a mapping
407 * 2 for pages with a mapping
266cf658 408 * 3 for pages with a mapping and PagePrivate/PagePrivate2 set.
b20a3503 409 */
3417013e
MWO
410int folio_migrate_mapping(struct address_space *mapping,
411 struct folio *newfolio, struct folio *folio, int extra_count)
b20a3503 412{
3417013e 413 XA_STATE(xas, &mapping->i_pages, folio_index(folio));
42cb14b1
HD
414 struct zone *oldzone, *newzone;
415 int dirty;
108ca835 416 int expected_count = folio_expected_refs(mapping, folio) + extra_count;
3417013e 417 long nr = folio_nr_pages(folio);
8763cb45 418
6c5240ae 419 if (!mapping) {
0e8c7d0f 420 /* Anonymous page without mapping */
3417013e 421 if (folio_ref_count(folio) != expected_count)
6c5240ae 422 return -EAGAIN;
cf4b769a
HD
423
424 /* No turning back from here */
3417013e
MWO
425 newfolio->index = folio->index;
426 newfolio->mapping = folio->mapping;
427 if (folio_test_swapbacked(folio))
428 __folio_set_swapbacked(newfolio);
cf4b769a 429
78bd5209 430 return MIGRATEPAGE_SUCCESS;
6c5240ae
CL
431 }
432
3417013e
MWO
433 oldzone = folio_zone(folio);
434 newzone = folio_zone(newfolio);
42cb14b1 435
89eb946a 436 xas_lock_irq(&xas);
3417013e 437 if (!folio_ref_freeze(folio, expected_count)) {
89eb946a 438 xas_unlock_irq(&xas);
e286781d
NP
439 return -EAGAIN;
440 }
441
b20a3503 442 /*
3417013e 443 * Now we know that no one else is looking at the folio:
cf4b769a 444 * no turning back from here.
b20a3503 445 */
3417013e
MWO
446 newfolio->index = folio->index;
447 newfolio->mapping = folio->mapping;
448 folio_ref_add(newfolio, nr); /* add cache reference */
449 if (folio_test_swapbacked(folio)) {
450 __folio_set_swapbacked(newfolio);
451 if (folio_test_swapcache(folio)) {
452 folio_set_swapcache(newfolio);
453 newfolio->private = folio_get_private(folio);
6326fec1
NP
454 }
455 } else {
3417013e 456 VM_BUG_ON_FOLIO(folio_test_swapcache(folio), folio);
b20a3503
CL
457 }
458
42cb14b1 459 /* Move dirty while page refs frozen and newpage not yet exposed */
3417013e 460 dirty = folio_test_dirty(folio);
42cb14b1 461 if (dirty) {
3417013e
MWO
462 folio_clear_dirty(folio);
463 folio_set_dirty(newfolio);
42cb14b1
HD
464 }
465
3417013e 466 xas_store(&xas, newfolio);
7cf9c2c7
NP
467
468 /*
937a94c9
JG
469 * Drop cache reference from old page by unfreezing
470 * to one less reference.
7cf9c2c7
NP
471 * We know this isn't the last reference.
472 */
3417013e 473 folio_ref_unfreeze(folio, expected_count - nr);
7cf9c2c7 474
89eb946a 475 xas_unlock(&xas);
42cb14b1
HD
476 /* Leave irq disabled to prevent preemption while updating stats */
477
0e8c7d0f
CL
478 /*
479 * If moved to a different zone then also account
480 * the page for that zone. Other VM counters will be
481 * taken care of when we establish references to the
482 * new page and drop references to the old page.
483 *
484 * Note that anonymous pages are accounted for
4b9d0fab 485 * via NR_FILE_PAGES and NR_ANON_MAPPED if they
0e8c7d0f
CL
486 * are mapped to swap space.
487 */
42cb14b1 488 if (newzone != oldzone) {
0d1c2072
JW
489 struct lruvec *old_lruvec, *new_lruvec;
490 struct mem_cgroup *memcg;
491
3417013e 492 memcg = folio_memcg(folio);
0d1c2072
JW
493 old_lruvec = mem_cgroup_lruvec(memcg, oldzone->zone_pgdat);
494 new_lruvec = mem_cgroup_lruvec(memcg, newzone->zone_pgdat);
495
5c447d27
SB
496 __mod_lruvec_state(old_lruvec, NR_FILE_PAGES, -nr);
497 __mod_lruvec_state(new_lruvec, NR_FILE_PAGES, nr);
3417013e 498 if (folio_test_swapbacked(folio) && !folio_test_swapcache(folio)) {
5c447d27
SB
499 __mod_lruvec_state(old_lruvec, NR_SHMEM, -nr);
500 __mod_lruvec_state(new_lruvec, NR_SHMEM, nr);
42cb14b1 501 }
b6038942 502#ifdef CONFIG_SWAP
3417013e 503 if (folio_test_swapcache(folio)) {
b6038942
SB
504 __mod_lruvec_state(old_lruvec, NR_SWAPCACHE, -nr);
505 __mod_lruvec_state(new_lruvec, NR_SWAPCACHE, nr);
506 }
507#endif
f56753ac 508 if (dirty && mapping_can_writeback(mapping)) {
5c447d27
SB
509 __mod_lruvec_state(old_lruvec, NR_FILE_DIRTY, -nr);
510 __mod_zone_page_state(oldzone, NR_ZONE_WRITE_PENDING, -nr);
511 __mod_lruvec_state(new_lruvec, NR_FILE_DIRTY, nr);
512 __mod_zone_page_state(newzone, NR_ZONE_WRITE_PENDING, nr);
42cb14b1 513 }
4b02108a 514 }
42cb14b1 515 local_irq_enable();
b20a3503 516
78bd5209 517 return MIGRATEPAGE_SUCCESS;
b20a3503 518}
3417013e 519EXPORT_SYMBOL(folio_migrate_mapping);
b20a3503 520
290408d4
NH
521/*
522 * The expected number of remaining references is the same as that
3417013e 523 * of folio_migrate_mapping().
290408d4
NH
524 */
525int migrate_huge_page_move_mapping(struct address_space *mapping,
b890ec2a 526 struct folio *dst, struct folio *src)
290408d4 527{
b890ec2a 528 XA_STATE(xas, &mapping->i_pages, folio_index(src));
290408d4 529 int expected_count;
290408d4 530
89eb946a 531 xas_lock_irq(&xas);
b890ec2a
MWO
532 expected_count = 2 + folio_has_private(src);
533 if (!folio_ref_freeze(src, expected_count)) {
89eb946a 534 xas_unlock_irq(&xas);
290408d4
NH
535 return -EAGAIN;
536 }
537
b890ec2a
MWO
538 dst->index = src->index;
539 dst->mapping = src->mapping;
6a93ca8f 540
b890ec2a 541 folio_get(dst);
290408d4 542
b890ec2a 543 xas_store(&xas, dst);
290408d4 544
b890ec2a 545 folio_ref_unfreeze(src, expected_count - 1);
290408d4 546
89eb946a 547 xas_unlock_irq(&xas);
6a93ca8f 548
78bd5209 549 return MIGRATEPAGE_SUCCESS;
290408d4
NH
550}
551
b20a3503 552/*
19138349 553 * Copy the flags and some other ancillary information
b20a3503 554 */
19138349 555void folio_migrate_flags(struct folio *newfolio, struct folio *folio)
b20a3503 556{
7851a45c
RR
557 int cpupid;
558
19138349
MWO
559 if (folio_test_error(folio))
560 folio_set_error(newfolio);
561 if (folio_test_referenced(folio))
562 folio_set_referenced(newfolio);
563 if (folio_test_uptodate(folio))
564 folio_mark_uptodate(newfolio);
565 if (folio_test_clear_active(folio)) {
566 VM_BUG_ON_FOLIO(folio_test_unevictable(folio), folio);
567 folio_set_active(newfolio);
568 } else if (folio_test_clear_unevictable(folio))
569 folio_set_unevictable(newfolio);
570 if (folio_test_workingset(folio))
571 folio_set_workingset(newfolio);
572 if (folio_test_checked(folio))
573 folio_set_checked(newfolio);
6c287605
DH
574 /*
575 * PG_anon_exclusive (-> PG_mappedtodisk) is always migrated via
576 * migration entries. We can still have PG_anon_exclusive set on an
577 * effectively unmapped and unreferenced first sub-pages of an
578 * anonymous THP: we can simply copy it here via PG_mappedtodisk.
579 */
19138349
MWO
580 if (folio_test_mappedtodisk(folio))
581 folio_set_mappedtodisk(newfolio);
b20a3503 582
3417013e 583 /* Move dirty on pages not done by folio_migrate_mapping() */
19138349
MWO
584 if (folio_test_dirty(folio))
585 folio_set_dirty(newfolio);
b20a3503 586
19138349
MWO
587 if (folio_test_young(folio))
588 folio_set_young(newfolio);
589 if (folio_test_idle(folio))
590 folio_set_idle(newfolio);
33c3fc71 591
7851a45c
RR
592 /*
593 * Copy NUMA information to the new page, to prevent over-eager
594 * future migrations of this same page.
595 */
19138349 596 cpupid = page_cpupid_xchg_last(&folio->page, -1);
33024536
HY
597 /*
598 * For memory tiering mode, when migrate between slow and fast
599 * memory node, reset cpupid, because that is used to record
600 * page access time in slow memory node.
601 */
602 if (sysctl_numa_balancing_mode & NUMA_BALANCING_MEMORY_TIERING) {
603 bool f_toptier = node_is_toptier(page_to_nid(&folio->page));
604 bool t_toptier = node_is_toptier(page_to_nid(&newfolio->page));
605
606 if (f_toptier != t_toptier)
607 cpupid = -1;
608 }
19138349 609 page_cpupid_xchg_last(&newfolio->page, cpupid);
7851a45c 610
19138349 611 folio_migrate_ksm(newfolio, folio);
c8d6553b
HD
612 /*
613 * Please do not reorder this without considering how mm/ksm.c's
614 * get_ksm_page() depends upon ksm_migrate_page() and PageSwapCache().
615 */
19138349
MWO
616 if (folio_test_swapcache(folio))
617 folio_clear_swapcache(folio);
618 folio_clear_private(folio);
ad2fa371
MS
619
620 /* page->private contains hugetlb specific flags */
19138349
MWO
621 if (!folio_test_hugetlb(folio))
622 folio->private = NULL;
b20a3503
CL
623
624 /*
625 * If any waiters have accumulated on the new page then
626 * wake them up.
627 */
19138349
MWO
628 if (folio_test_writeback(newfolio))
629 folio_end_writeback(newfolio);
d435edca 630
6aeff241
YS
631 /*
632 * PG_readahead shares the same bit with PG_reclaim. The above
633 * end_page_writeback() may clear PG_readahead mistakenly, so set the
634 * bit after that.
635 */
19138349
MWO
636 if (folio_test_readahead(folio))
637 folio_set_readahead(newfolio);
6aeff241 638
19138349 639 folio_copy_owner(newfolio, folio);
74485cf2 640
19138349 641 if (!folio_test_hugetlb(folio))
d21bba2b 642 mem_cgroup_migrate(folio, newfolio);
b20a3503 643}
19138349 644EXPORT_SYMBOL(folio_migrate_flags);
2916ecc0 645
715cbfd6 646void folio_migrate_copy(struct folio *newfolio, struct folio *folio)
2916ecc0 647{
715cbfd6
MWO
648 folio_copy(newfolio, folio);
649 folio_migrate_flags(newfolio, folio);
2916ecc0 650}
715cbfd6 651EXPORT_SYMBOL(folio_migrate_copy);
b20a3503 652
1d8b85cc
CL
653/************************************************************
654 * Migration functions
655 ***********************************************************/
656
16ce101d
AP
657int migrate_folio_extra(struct address_space *mapping, struct folio *dst,
658 struct folio *src, enum migrate_mode mode, int extra_count)
659{
660 int rc;
661
662 BUG_ON(folio_test_writeback(src)); /* Writeback must be complete */
663
664 rc = folio_migrate_mapping(mapping, dst, src, extra_count);
665
666 if (rc != MIGRATEPAGE_SUCCESS)
667 return rc;
668
669 if (mode != MIGRATE_SYNC_NO_COPY)
670 folio_migrate_copy(dst, src);
671 else
672 folio_migrate_flags(dst, src);
673 return MIGRATEPAGE_SUCCESS;
674}
675
54184650
MWO
676/**
677 * migrate_folio() - Simple folio migration.
678 * @mapping: The address_space containing the folio.
679 * @dst: The folio to migrate the data to.
680 * @src: The folio containing the current data.
681 * @mode: How to migrate the page.
682 *
683 * Common logic to directly migrate a single LRU folio suitable for
684 * folios that do not use PagePrivate/PagePrivate2.
b20a3503 685 *
54184650 686 * Folios are locked upon entry and exit.
b20a3503 687 */
54184650
MWO
688int migrate_folio(struct address_space *mapping, struct folio *dst,
689 struct folio *src, enum migrate_mode mode)
b20a3503 690{
16ce101d 691 return migrate_folio_extra(mapping, dst, src, mode, 0);
b20a3503 692}
54184650 693EXPORT_SYMBOL(migrate_folio);
b20a3503 694
9361401e 695#ifdef CONFIG_BLOCK
84ade7c1
JK
696/* Returns true if all buffers are successfully locked */
697static bool buffer_migrate_lock_buffers(struct buffer_head *head,
698 enum migrate_mode mode)
699{
700 struct buffer_head *bh = head;
701
702 /* Simple case, sync compaction */
703 if (mode != MIGRATE_ASYNC) {
704 do {
84ade7c1
JK
705 lock_buffer(bh);
706 bh = bh->b_this_page;
707
708 } while (bh != head);
709
710 return true;
711 }
712
713 /* async case, we cannot block on lock_buffer so use trylock_buffer */
714 do {
84ade7c1
JK
715 if (!trylock_buffer(bh)) {
716 /*
717 * We failed to lock the buffer and cannot stall in
718 * async migration. Release the taken locks
719 */
720 struct buffer_head *failed_bh = bh;
84ade7c1
JK
721 bh = head;
722 while (bh != failed_bh) {
723 unlock_buffer(bh);
84ade7c1
JK
724 bh = bh->b_this_page;
725 }
726 return false;
727 }
728
729 bh = bh->b_this_page;
730 } while (bh != head);
731 return true;
732}
733
67235182
MWO
734static int __buffer_migrate_folio(struct address_space *mapping,
735 struct folio *dst, struct folio *src, enum migrate_mode mode,
89cb0888 736 bool check_refs)
1d8b85cc 737{
1d8b85cc
CL
738 struct buffer_head *bh, *head;
739 int rc;
cc4f11e6 740 int expected_count;
1d8b85cc 741
67235182
MWO
742 head = folio_buffers(src);
743 if (!head)
54184650 744 return migrate_folio(mapping, dst, src, mode);
1d8b85cc 745
cc4f11e6 746 /* Check whether page does not have extra refs before we do more work */
108ca835 747 expected_count = folio_expected_refs(mapping, src);
67235182 748 if (folio_ref_count(src) != expected_count)
cc4f11e6 749 return -EAGAIN;
1d8b85cc 750
cc4f11e6
JK
751 if (!buffer_migrate_lock_buffers(head, mode))
752 return -EAGAIN;
1d8b85cc 753
89cb0888
JK
754 if (check_refs) {
755 bool busy;
756 bool invalidated = false;
757
758recheck_buffers:
759 busy = false;
760 spin_lock(&mapping->private_lock);
761 bh = head;
762 do {
763 if (atomic_read(&bh->b_count)) {
764 busy = true;
765 break;
766 }
767 bh = bh->b_this_page;
768 } while (bh != head);
89cb0888
JK
769 if (busy) {
770 if (invalidated) {
771 rc = -EAGAIN;
772 goto unlock_buffers;
773 }
ebdf4de5 774 spin_unlock(&mapping->private_lock);
89cb0888
JK
775 invalidate_bh_lrus();
776 invalidated = true;
777 goto recheck_buffers;
778 }
779 }
780
67235182 781 rc = folio_migrate_mapping(mapping, dst, src, 0);
78bd5209 782 if (rc != MIGRATEPAGE_SUCCESS)
cc4f11e6 783 goto unlock_buffers;
1d8b85cc 784
67235182 785 folio_attach_private(dst, folio_detach_private(src));
1d8b85cc
CL
786
787 bh = head;
788 do {
67235182 789 set_bh_page(bh, &dst->page, bh_offset(bh));
1d8b85cc 790 bh = bh->b_this_page;
1d8b85cc
CL
791 } while (bh != head);
792
2916ecc0 793 if (mode != MIGRATE_SYNC_NO_COPY)
67235182 794 folio_migrate_copy(dst, src);
2916ecc0 795 else
67235182 796 folio_migrate_flags(dst, src);
1d8b85cc 797
cc4f11e6
JK
798 rc = MIGRATEPAGE_SUCCESS;
799unlock_buffers:
ebdf4de5
JK
800 if (check_refs)
801 spin_unlock(&mapping->private_lock);
1d8b85cc
CL
802 bh = head;
803 do {
804 unlock_buffer(bh);
1d8b85cc 805 bh = bh->b_this_page;
1d8b85cc
CL
806 } while (bh != head);
807
cc4f11e6 808 return rc;
1d8b85cc 809}
89cb0888 810
67235182
MWO
811/**
812 * buffer_migrate_folio() - Migration function for folios with buffers.
813 * @mapping: The address space containing @src.
814 * @dst: The folio to migrate to.
815 * @src: The folio to migrate from.
816 * @mode: How to migrate the folio.
817 *
818 * This function can only be used if the underlying filesystem guarantees
819 * that no other references to @src exist. For example attached buffer
820 * heads are accessed only under the folio lock. If your filesystem cannot
821 * provide this guarantee, buffer_migrate_folio_norefs() may be more
822 * appropriate.
823 *
824 * Return: 0 on success or a negative errno on failure.
89cb0888 825 */
67235182
MWO
826int buffer_migrate_folio(struct address_space *mapping,
827 struct folio *dst, struct folio *src, enum migrate_mode mode)
89cb0888 828{
67235182 829 return __buffer_migrate_folio(mapping, dst, src, mode, false);
89cb0888 830}
67235182
MWO
831EXPORT_SYMBOL(buffer_migrate_folio);
832
833/**
834 * buffer_migrate_folio_norefs() - Migration function for folios with buffers.
835 * @mapping: The address space containing @src.
836 * @dst: The folio to migrate to.
837 * @src: The folio to migrate from.
838 * @mode: How to migrate the folio.
839 *
840 * Like buffer_migrate_folio() except that this variant is more careful
841 * and checks that there are also no buffer head references. This function
842 * is the right one for mappings where buffer heads are directly looked
843 * up and referenced (such as block device mappings).
844 *
845 * Return: 0 on success or a negative errno on failure.
89cb0888 846 */
67235182
MWO
847int buffer_migrate_folio_norefs(struct address_space *mapping,
848 struct folio *dst, struct folio *src, enum migrate_mode mode)
89cb0888 849{
67235182 850 return __buffer_migrate_folio(mapping, dst, src, mode, true);
89cb0888 851}
e26355e2 852EXPORT_SYMBOL_GPL(buffer_migrate_folio_norefs);
9361401e 853#endif
1d8b85cc 854
2ec810d5
MWO
855int filemap_migrate_folio(struct address_space *mapping,
856 struct folio *dst, struct folio *src, enum migrate_mode mode)
857{
858 int ret;
859
860 ret = folio_migrate_mapping(mapping, dst, src, 0);
861 if (ret != MIGRATEPAGE_SUCCESS)
862 return ret;
863
864 if (folio_get_private(src))
865 folio_attach_private(dst, folio_detach_private(src));
866
867 if (mode != MIGRATE_SYNC_NO_COPY)
868 folio_migrate_copy(dst, src);
869 else
870 folio_migrate_flags(dst, src);
871 return MIGRATEPAGE_SUCCESS;
872}
873EXPORT_SYMBOL_GPL(filemap_migrate_folio);
874
04e62a29 875/*
2be7fa10 876 * Writeback a folio to clean the dirty state
04e62a29 877 */
2be7fa10 878static int writeout(struct address_space *mapping, struct folio *folio)
8351a6e4 879{
04e62a29
CL
880 struct writeback_control wbc = {
881 .sync_mode = WB_SYNC_NONE,
882 .nr_to_write = 1,
883 .range_start = 0,
884 .range_end = LLONG_MAX,
04e62a29
CL
885 .for_reclaim = 1
886 };
887 int rc;
888
889 if (!mapping->a_ops->writepage)
890 /* No write method for the address space */
891 return -EINVAL;
892
2be7fa10 893 if (!folio_clear_dirty_for_io(folio))
04e62a29
CL
894 /* Someone else already triggered a write */
895 return -EAGAIN;
896
8351a6e4 897 /*
2be7fa10
MWO
898 * A dirty folio may imply that the underlying filesystem has
899 * the folio on some queue. So the folio must be clean for
900 * migration. Writeout may mean we lose the lock and the
901 * folio state is no longer what we checked for earlier.
04e62a29
CL
902 * At this point we know that the migration attempt cannot
903 * be successful.
8351a6e4 904 */
4eecb8b9 905 remove_migration_ptes(folio, folio, false);
8351a6e4 906
2be7fa10 907 rc = mapping->a_ops->writepage(&folio->page, &wbc);
8351a6e4 908
04e62a29
CL
909 if (rc != AOP_WRITEPAGE_ACTIVATE)
910 /* unlocked. Relock */
2be7fa10 911 folio_lock(folio);
04e62a29 912
bda8550d 913 return (rc < 0) ? -EIO : -EAGAIN;
04e62a29
CL
914}
915
916/*
917 * Default handling if a filesystem does not provide a migration function.
918 */
8faa8ef5
MWO
919static int fallback_migrate_folio(struct address_space *mapping,
920 struct folio *dst, struct folio *src, enum migrate_mode mode)
04e62a29 921{
8faa8ef5
MWO
922 if (folio_test_dirty(src)) {
923 /* Only writeback folios in full synchronous migration */
2916ecc0
JG
924 switch (mode) {
925 case MIGRATE_SYNC:
926 case MIGRATE_SYNC_NO_COPY:
927 break;
928 default:
b969c4ab 929 return -EBUSY;
2916ecc0 930 }
2be7fa10 931 return writeout(mapping, src);
b969c4ab 932 }
8351a6e4
CL
933
934 /*
935 * Buffers may be managed in a filesystem specific way.
936 * We must have no buffers or drop them.
937 */
8faa8ef5
MWO
938 if (folio_test_private(src) &&
939 !filemap_release_folio(src, GFP_KERNEL))
806031bb 940 return mode == MIGRATE_SYNC ? -EAGAIN : -EBUSY;
8351a6e4 941
54184650 942 return migrate_folio(mapping, dst, src, mode);
8351a6e4
CL
943}
944
e24f0b8f
CL
945/*
946 * Move a page to a newly allocated page
947 * The page is locked and all ptes have been successfully removed.
948 *
949 * The new page will have replaced the old page if this function
950 * is successful.
894bc310
LS
951 *
952 * Return value:
953 * < 0 - error code
78bd5209 954 * MIGRATEPAGE_SUCCESS - success
e24f0b8f 955 */
e7e3ffeb 956static int move_to_new_folio(struct folio *dst, struct folio *src,
5c3f9a67 957 enum migrate_mode mode)
e24f0b8f 958{
bda807d4 959 int rc = -EAGAIN;
e7e3ffeb 960 bool is_lru = !__PageMovable(&src->page);
e24f0b8f 961
e7e3ffeb
MWO
962 VM_BUG_ON_FOLIO(!folio_test_locked(src), src);
963 VM_BUG_ON_FOLIO(!folio_test_locked(dst), dst);
e24f0b8f 964
bda807d4 965 if (likely(is_lru)) {
68f2736a
MWO
966 struct address_space *mapping = folio_mapping(src);
967
bda807d4 968 if (!mapping)
54184650 969 rc = migrate_folio(mapping, dst, src, mode);
5490da4f 970 else if (mapping->a_ops->migrate_folio)
bda807d4 971 /*
5490da4f
MWO
972 * Most folios have a mapping and most filesystems
973 * provide a migrate_folio callback. Anonymous folios
bda807d4 974 * are part of swap space which also has its own
5490da4f 975 * migrate_folio callback. This is the most common path
bda807d4
MK
976 * for page migration.
977 */
5490da4f
MWO
978 rc = mapping->a_ops->migrate_folio(mapping, dst, src,
979 mode);
bda807d4 980 else
8faa8ef5 981 rc = fallback_migrate_folio(mapping, dst, src, mode);
bda807d4 982 } else {
68f2736a
MWO
983 const struct movable_operations *mops;
984
e24f0b8f 985 /*
bda807d4
MK
986 * In case of non-lru page, it could be released after
987 * isolation step. In that case, we shouldn't try migration.
e24f0b8f 988 */
e7e3ffeb
MWO
989 VM_BUG_ON_FOLIO(!folio_test_isolated(src), src);
990 if (!folio_test_movable(src)) {
bda807d4 991 rc = MIGRATEPAGE_SUCCESS;
e7e3ffeb 992 folio_clear_isolated(src);
bda807d4
MK
993 goto out;
994 }
995
da707a6d 996 mops = folio_movable_ops(src);
68f2736a 997 rc = mops->migrate_page(&dst->page, &src->page, mode);
bda807d4 998 WARN_ON_ONCE(rc == MIGRATEPAGE_SUCCESS &&
e7e3ffeb 999 !folio_test_isolated(src));
bda807d4 1000 }
e24f0b8f 1001
5c3f9a67 1002 /*
e7e3ffeb
MWO
1003 * When successful, old pagecache src->mapping must be cleared before
1004 * src is freed; but stats require that PageAnon be left as PageAnon.
5c3f9a67
HD
1005 */
1006 if (rc == MIGRATEPAGE_SUCCESS) {
e7e3ffeb
MWO
1007 if (__PageMovable(&src->page)) {
1008 VM_BUG_ON_FOLIO(!folio_test_isolated(src), src);
bda807d4
MK
1009
1010 /*
1011 * We clear PG_movable under page_lock so any compactor
1012 * cannot try to migrate this page.
1013 */
e7e3ffeb 1014 folio_clear_isolated(src);
bda807d4
MK
1015 }
1016
1017 /*
e7e3ffeb 1018 * Anonymous and movable src->mapping will be cleared by
bda807d4
MK
1019 * free_pages_prepare so don't reset it here for keeping
1020 * the type to work PageAnon, for example.
1021 */
e7e3ffeb
MWO
1022 if (!folio_mapping_flags(src))
1023 src->mapping = NULL;
d2b2c6dd 1024
e7e3ffeb
MWO
1025 if (likely(!folio_is_zone_device(dst)))
1026 flush_dcache_folio(dst);
3fe2011f 1027 }
bda807d4 1028out:
e24f0b8f
CL
1029 return rc;
1030}
1031
64c8902e
HY
1032/*
1033 * To record some information during migration, we use some unused
1034 * fields (mapping and private) of struct folio of the newly allocated
1035 * destination folio. This is safe because nobody is using them
1036 * except us.
1037 */
1038static void __migrate_folio_record(struct folio *dst,
1039 unsigned long page_was_mapped,
1040 struct anon_vma *anon_vma)
1041{
1042 dst->mapping = (void *)anon_vma;
1043 dst->private = (void *)page_was_mapped;
1044}
1045
1046static void __migrate_folio_extract(struct folio *dst,
1047 int *page_was_mappedp,
1048 struct anon_vma **anon_vmap)
1049{
1050 *anon_vmap = (void *)dst->mapping;
1051 *page_was_mappedp = (unsigned long)dst->private;
1052 dst->mapping = NULL;
1053 dst->private = NULL;
1054}
1055
5dfab109
HY
1056/* Restore the source folio to the original state upon failure */
1057static void migrate_folio_undo_src(struct folio *src,
1058 int page_was_mapped,
1059 struct anon_vma *anon_vma,
ebe75e47 1060 bool locked,
5dfab109
HY
1061 struct list_head *ret)
1062{
1063 if (page_was_mapped)
1064 remove_migration_ptes(src, src, false);
1065 /* Drop an anon_vma reference if we took one */
1066 if (anon_vma)
1067 put_anon_vma(anon_vma);
ebe75e47
HY
1068 if (locked)
1069 folio_unlock(src);
1070 if (ret)
1071 list_move_tail(&src->lru, ret);
5dfab109
HY
1072}
1073
1074/* Restore the destination folio to the original state upon failure */
1075static void migrate_folio_undo_dst(struct folio *dst,
ebe75e47 1076 bool locked,
5dfab109
HY
1077 free_page_t put_new_page,
1078 unsigned long private)
1079{
ebe75e47
HY
1080 if (locked)
1081 folio_unlock(dst);
5dfab109
HY
1082 if (put_new_page)
1083 put_new_page(&dst->page, private);
1084 else
1085 folio_put(dst);
1086}
1087
64c8902e
HY
1088/* Cleanup src folio upon migration success */
1089static void migrate_folio_done(struct folio *src,
1090 enum migrate_reason reason)
1091{
1092 /*
1093 * Compaction can migrate also non-LRU pages which are
1094 * not accounted to NR_ISOLATED_*. They can be recognized
1095 * as __PageMovable
1096 */
1097 if (likely(!__folio_test_movable(src)))
1098 mod_node_page_state(folio_pgdat(src), NR_ISOLATED_ANON +
1099 folio_is_file_lru(src), -folio_nr_pages(src));
1100
1101 if (reason != MR_MEMORY_FAILURE)
1102 /* We release the page in page_handle_poison. */
1103 folio_put(src);
1104}
1105
ebe75e47
HY
1106/* Obtain the lock on page, remove all ptes. */
1107static int migrate_folio_unmap(new_page_t get_new_page, free_page_t put_new_page,
1108 unsigned long private, struct folio *src,
1109 struct folio **dstp, int force, bool avoid_force_lock,
1110 enum migrate_mode mode, enum migrate_reason reason,
1111 struct list_head *ret)
e24f0b8f 1112{
ebe75e47 1113 struct folio *dst;
0dabec93 1114 int rc = -EAGAIN;
ebe75e47 1115 struct page *newpage = NULL;
64c8902e 1116 int page_was_mapped = 0;
3f6c8272 1117 struct anon_vma *anon_vma = NULL;
682a71a1 1118 bool is_lru = !__PageMovable(&src->page);
ebe75e47
HY
1119 bool locked = false;
1120 bool dst_locked = false;
1121
ebe75e47
HY
1122 if (folio_ref_count(src) == 1) {
1123 /* Folio was freed from under us. So we are done. */
1124 folio_clear_active(src);
1125 folio_clear_unevictable(src);
1126 /* free_pages_prepare() will clear PG_isolated. */
1127 list_del(&src->lru);
1128 migrate_folio_done(src, reason);
1129 return MIGRATEPAGE_SUCCESS;
1130 }
1131
1132 newpage = get_new_page(&src->page, private);
1133 if (!newpage)
1134 return -ENOMEM;
1135 dst = page_folio(newpage);
1136 *dstp = dst;
1137
1138 dst->private = NULL;
95a402c3 1139
682a71a1 1140 if (!folio_trylock(src)) {
a6bc32b8 1141 if (!force || mode == MIGRATE_ASYNC)
0dabec93 1142 goto out;
3e7d3449
MG
1143
1144 /*
1145 * It's not safe for direct compaction to call lock_page.
1146 * For example, during page readahead pages are added locked
1147 * to the LRU. Later, when the IO completes the pages are
1148 * marked uptodate and unlocked. However, the queueing
1149 * could be merging multiple pages for one bio (e.g.
d4388340 1150 * mpage_readahead). If an allocation happens for the
3e7d3449
MG
1151 * second or third page, the process can end up locking
1152 * the same page twice and deadlocking. Rather than
1153 * trying to be clever about what pages can be locked,
1154 * avoid the use of lock_page for direct compaction
1155 * altogether.
1156 */
1157 if (current->flags & PF_MEMALLOC)
0dabec93 1158 goto out;
3e7d3449 1159
5dfab109
HY
1160 /*
1161 * We have locked some folios and are going to wait to lock
1162 * this folio. To avoid a potential deadlock, let's bail
1163 * out and not do that. The locked folios will be moved and
1164 * unlocked, then we can wait to lock this folio.
1165 */
1166 if (avoid_force_lock) {
1167 rc = -EDEADLOCK;
1168 goto out;
1169 }
1170
682a71a1 1171 folio_lock(src);
e24f0b8f 1172 }
ebe75e47 1173 locked = true;
e24f0b8f 1174
682a71a1 1175 if (folio_test_writeback(src)) {
11bc82d6 1176 /*
fed5b64a 1177 * Only in the case of a full synchronous migration is it
a6bc32b8
MG
1178 * necessary to wait for PageWriteback. In the async case,
1179 * the retry loop is too short and in the sync-light case,
1180 * the overhead of stalling is too much
11bc82d6 1181 */
2916ecc0
JG
1182 switch (mode) {
1183 case MIGRATE_SYNC:
1184 case MIGRATE_SYNC_NO_COPY:
1185 break;
1186 default:
11bc82d6 1187 rc = -EBUSY;
ebe75e47 1188 goto out;
11bc82d6
AA
1189 }
1190 if (!force)
ebe75e47 1191 goto out;
682a71a1 1192 folio_wait_writeback(src);
e24f0b8f 1193 }
03f15c86 1194
e24f0b8f 1195 /*
682a71a1
MWO
1196 * By try_to_migrate(), src->mapcount goes down to 0 here. In this case,
1197 * we cannot notice that anon_vma is freed while we migrate a page.
1ce82b69 1198 * This get_anon_vma() delays freeing anon_vma pointer until the end
dc386d4d 1199 * of migration. File cache pages are no problem because of page_lock()
989f89c5
KH
1200 * File Caches may use write_page() or lock_page() in migration, then,
1201 * just care Anon page here.
03f15c86 1202 *
29eea9b5 1203 * Only folio_get_anon_vma() understands the subtleties of
03f15c86
HD
1204 * getting a hold on an anon_vma from outside one of its mms.
1205 * But if we cannot get anon_vma, then we won't need it anyway,
1206 * because that implies that the anon page is no longer mapped
1207 * (and cannot be remapped so long as we hold the page lock).
dc386d4d 1208 */
682a71a1 1209 if (folio_test_anon(src) && !folio_test_ksm(src))
29eea9b5 1210 anon_vma = folio_get_anon_vma(src);
62e1c553 1211
7db7671f
HD
1212 /*
1213 * Block others from accessing the new page when we get around to
1214 * establishing additional references. We are usually the only one
682a71a1
MWO
1215 * holding a reference to dst at this point. We used to have a BUG
1216 * here if folio_trylock(dst) fails, but would like to allow for
1217 * cases where there might be a race with the previous use of dst.
7db7671f
HD
1218 * This is much like races on refcount of oldpage: just don't BUG().
1219 */
682a71a1 1220 if (unlikely(!folio_trylock(dst)))
ebe75e47
HY
1221 goto out;
1222 dst_locked = true;
7db7671f 1223
bda807d4 1224 if (unlikely(!is_lru)) {
64c8902e
HY
1225 __migrate_folio_record(dst, page_was_mapped, anon_vma);
1226 return MIGRATEPAGE_UNMAP;
bda807d4
MK
1227 }
1228
dc386d4d 1229 /*
62e1c553
SL
1230 * Corner case handling:
1231 * 1. When a new swap-cache page is read into, it is added to the LRU
1232 * and treated as swapcache but it has no rmap yet.
682a71a1 1233 * Calling try_to_unmap() against a src->mapping==NULL page will
62e1c553 1234 * trigger a BUG. So handle it here.
d12b8951 1235 * 2. An orphaned page (see truncate_cleanup_page) might have
62e1c553
SL
1236 * fs-private metadata. The page can be picked up due to memory
1237 * offlining. Everywhere else except page reclaim, the page is
1238 * invisible to the vm, so the page can not be migrated. So try to
1239 * free the metadata, so the page can be freed.
e24f0b8f 1240 */
682a71a1
MWO
1241 if (!src->mapping) {
1242 if (folio_test_private(src)) {
1243 try_to_free_buffers(src);
ebe75e47 1244 goto out;
62e1c553 1245 }
682a71a1 1246 } else if (folio_mapped(src)) {
7db7671f 1247 /* Establish migration ptes */
682a71a1
MWO
1248 VM_BUG_ON_FOLIO(folio_test_anon(src) &&
1249 !folio_test_ksm(src) && !anon_vma, src);
7e12beb8 1250 try_to_migrate(src, TTU_BATCH_FLUSH);
64c8902e 1251 page_was_mapped = 1;
2ebba6b7 1252 }
dc386d4d 1253
64c8902e
HY
1254 if (!folio_mapped(src)) {
1255 __migrate_folio_record(dst, page_was_mapped, anon_vma);
1256 return MIGRATEPAGE_UNMAP;
1257 }
1258
64c8902e 1259out:
80562ba0
HY
1260 /*
1261 * A folio that has not been unmapped will be restored to
1262 * right list unless we want to retry.
1263 */
ebe75e47
HY
1264 if (rc == -EAGAIN || rc == -EDEADLOCK)
1265 ret = NULL;
80562ba0 1266
ebe75e47
HY
1267 migrate_folio_undo_src(src, page_was_mapped, anon_vma, locked, ret);
1268 migrate_folio_undo_dst(dst, dst_locked, put_new_page, private);
80562ba0
HY
1269
1270 return rc;
1271}
1272
ebe75e47
HY
1273/* Migrate the folio to the newly allocated folio in dst. */
1274static int migrate_folio_move(free_page_t put_new_page, unsigned long private,
1275 struct folio *src, struct folio *dst,
1276 enum migrate_mode mode, enum migrate_reason reason,
1277 struct list_head *ret)
64c8902e
HY
1278{
1279 int rc;
1280 int page_was_mapped = 0;
1281 struct anon_vma *anon_vma = NULL;
1282 bool is_lru = !__PageMovable(&src->page);
5dfab109 1283 struct list_head *prev;
64c8902e
HY
1284
1285 __migrate_folio_extract(dst, &page_was_mapped, &anon_vma);
5dfab109
HY
1286 prev = dst->lru.prev;
1287 list_del(&dst->lru);
64c8902e
HY
1288
1289 rc = move_to_new_folio(dst, src, mode);
ebe75e47
HY
1290 if (rc)
1291 goto out;
5dfab109 1292
64c8902e
HY
1293 if (unlikely(!is_lru))
1294 goto out_unlock_both;
e24f0b8f 1295
c3096e67 1296 /*
682a71a1 1297 * When successful, push dst to LRU immediately: so that if it
c3096e67 1298 * turns out to be an mlocked page, remove_migration_ptes() will
682a71a1 1299 * automatically build up the correct dst->mlock_count for it.
c3096e67
HD
1300 *
1301 * We would like to do something similar for the old page, when
1302 * unsuccessful, and other cases when a page has been temporarily
1303 * isolated from the unevictable LRU: but this case is the easiest.
1304 */
ebe75e47
HY
1305 folio_add_lru(dst);
1306 if (page_was_mapped)
1307 lru_add_drain();
c3096e67 1308
5c3f9a67 1309 if (page_was_mapped)
ebe75e47 1310 remove_migration_ptes(src, dst, false);
3f6c8272 1311
7db7671f 1312out_unlock_both:
682a71a1 1313 folio_unlock(dst);
ebe75e47 1314 set_page_owner_migrate_reason(&dst->page, reason);
c6c919eb 1315 /*
682a71a1 1316 * If migration is successful, decrease refcount of dst,
c6c919eb 1317 * which will not free the page because new page owner increased
c3096e67 1318 * refcounter.
c6c919eb 1319 */
ebe75e47 1320 folio_put(dst);
c6c919eb 1321
dd4ae78a 1322 /*
ebe75e47
HY
1323 * A folio that has been migrated has all references removed
1324 * and will be freed.
dd4ae78a 1325 */
ebe75e47
HY
1326 list_del(&src->lru);
1327 /* Drop an anon_vma reference if we took one */
1328 if (anon_vma)
1329 put_anon_vma(anon_vma);
1330 folio_unlock(src);
1331 migrate_folio_done(src, reason);
bf6bddf1 1332
ebe75e47 1333 return rc;
0dabec93 1334out:
dd4ae78a 1335 /*
ebe75e47
HY
1336 * A folio that has not been migrated will be restored to
1337 * right list unless we want to retry.
dd4ae78a 1338 */
ebe75e47
HY
1339 if (rc == -EAGAIN) {
1340 list_add(&dst->lru, prev);
1341 __migrate_folio_record(dst, page_was_mapped, anon_vma);
1342 return rc;
e24f0b8f 1343 }
68711a74 1344
ebe75e47
HY
1345 migrate_folio_undo_src(src, page_was_mapped, anon_vma, true, ret);
1346 migrate_folio_undo_dst(dst, true, put_new_page, private);
1347
e24f0b8f
CL
1348 return rc;
1349}
1350
290408d4
NH
1351/*
1352 * Counterpart of unmap_and_move_page() for hugepage migration.
1353 *
1354 * This function doesn't wait the completion of hugepage I/O
1355 * because there is no race between I/O and migration for hugepage.
1356 * Note that currently hugepage I/O occurs only in direct I/O
1357 * where no lock is held and PG_writeback is irrelevant,
1358 * and writeback status of all subpages are counted in the reference
1359 * count of the head page (i.e. if all subpages of a 2MB hugepage are
1360 * under direct I/O, the reference of the head page is 512 and a bit more.)
1361 * This means that when we try to migrate hugepage whose subpages are
1362 * doing direct I/O, some references remain after try_to_unmap() and
1363 * hugepage migration fails without data corruption.
1364 *
1365 * There is also no race when direct I/O is issued on the page under migration,
1366 * because then pte is replaced with migration swap entry and direct I/O code
1367 * will wait in the page fault for migration to complete.
1368 */
1369static int unmap_and_move_huge_page(new_page_t get_new_page,
68711a74
DR
1370 free_page_t put_new_page, unsigned long private,
1371 struct page *hpage, int force,
dd4ae78a
YS
1372 enum migrate_mode mode, int reason,
1373 struct list_head *ret)
290408d4 1374{
4eecb8b9 1375 struct folio *dst, *src = page_folio(hpage);
2def7424 1376 int rc = -EAGAIN;
2ebba6b7 1377 int page_was_mapped = 0;
32665f2b 1378 struct page *new_hpage;
290408d4 1379 struct anon_vma *anon_vma = NULL;
c0d0381a 1380 struct address_space *mapping = NULL;
290408d4 1381
c33db292 1382 if (folio_ref_count(src) == 1) {
71a64f61 1383 /* page was freed from under us. So we are done. */
ea8e72f4 1384 folio_putback_active_hugetlb(src);
71a64f61
MS
1385 return MIGRATEPAGE_SUCCESS;
1386 }
1387
666feb21 1388 new_hpage = get_new_page(hpage, private);
290408d4
NH
1389 if (!new_hpage)
1390 return -ENOMEM;
4eecb8b9 1391 dst = page_folio(new_hpage);
290408d4 1392
c33db292 1393 if (!folio_trylock(src)) {
2916ecc0 1394 if (!force)
290408d4 1395 goto out;
2916ecc0
JG
1396 switch (mode) {
1397 case MIGRATE_SYNC:
1398 case MIGRATE_SYNC_NO_COPY:
1399 break;
1400 default:
1401 goto out;
1402 }
c33db292 1403 folio_lock(src);
290408d4
NH
1404 }
1405
cb6acd01
MK
1406 /*
1407 * Check for pages which are in the process of being freed. Without
c33db292 1408 * folio_mapping() set, hugetlbfs specific move page routine will not
cb6acd01
MK
1409 * be called and we could leak usage counts for subpools.
1410 */
345c62d1 1411 if (hugetlb_folio_subpool(src) && !folio_mapping(src)) {
cb6acd01
MK
1412 rc = -EBUSY;
1413 goto out_unlock;
1414 }
1415
c33db292 1416 if (folio_test_anon(src))
29eea9b5 1417 anon_vma = folio_get_anon_vma(src);
290408d4 1418
c33db292 1419 if (unlikely(!folio_trylock(dst)))
7db7671f
HD
1420 goto put_anon;
1421
c33db292 1422 if (folio_mapped(src)) {
a98a2f0c 1423 enum ttu_flags ttu = 0;
336bf30e 1424
c33db292 1425 if (!folio_test_anon(src)) {
336bf30e
MK
1426 /*
1427 * In shared mappings, try_to_unmap could potentially
1428 * call huge_pmd_unshare. Because of this, take
1429 * semaphore in write mode here and set TTU_RMAP_LOCKED
1430 * to let lower levels know we have taken the lock.
1431 */
1432 mapping = hugetlb_page_mapping_lock_write(hpage);
1433 if (unlikely(!mapping))
1434 goto unlock_put_anon;
1435
5202978b 1436 ttu = TTU_RMAP_LOCKED;
336bf30e 1437 }
c0d0381a 1438
4b8554c5 1439 try_to_migrate(src, ttu);
2ebba6b7 1440 page_was_mapped = 1;
336bf30e 1441
5202978b 1442 if (ttu & TTU_RMAP_LOCKED)
336bf30e 1443 i_mmap_unlock_write(mapping);
2ebba6b7 1444 }
290408d4 1445
c33db292 1446 if (!folio_mapped(src))
e7e3ffeb 1447 rc = move_to_new_folio(dst, src, mode);
290408d4 1448
336bf30e 1449 if (page_was_mapped)
4eecb8b9
MWO
1450 remove_migration_ptes(src,
1451 rc == MIGRATEPAGE_SUCCESS ? dst : src, false);
290408d4 1452
c0d0381a 1453unlock_put_anon:
c33db292 1454 folio_unlock(dst);
7db7671f
HD
1455
1456put_anon:
fd4a4663 1457 if (anon_vma)
9e60109f 1458 put_anon_vma(anon_vma);
8e6ac7fa 1459
2def7424 1460 if (rc == MIGRATEPAGE_SUCCESS) {
345c62d1 1461 move_hugetlb_state(src, dst, reason);
2def7424
HD
1462 put_new_page = NULL;
1463 }
8e6ac7fa 1464
cb6acd01 1465out_unlock:
c33db292 1466 folio_unlock(src);
09761333 1467out:
dd4ae78a 1468 if (rc == MIGRATEPAGE_SUCCESS)
ea8e72f4 1469 folio_putback_active_hugetlb(src);
a04840c6 1470 else if (rc != -EAGAIN)
c33db292 1471 list_move_tail(&src->lru, ret);
68711a74
DR
1472
1473 /*
1474 * If migration was not successful and there's a freeing callback, use
1475 * it. Otherwise, put_page() will drop the reference grabbed during
1476 * isolation.
1477 */
2def7424 1478 if (put_new_page)
68711a74
DR
1479 put_new_page(new_hpage, private);
1480 else
ea8e72f4 1481 folio_putback_active_hugetlb(dst);
68711a74 1482
290408d4
NH
1483 return rc;
1484}
1485
eaec4e63 1486static inline int try_split_folio(struct folio *folio, struct list_head *split_folios)
d532e2e5 1487{
9c62ff00 1488 int rc;
d532e2e5 1489
eaec4e63
HY
1490 folio_lock(folio);
1491 rc = split_folio_to_list(folio, split_folios);
1492 folio_unlock(folio);
e6fa8a79 1493 if (!rc)
eaec4e63 1494 list_move_tail(&folio->lru, split_folios);
d532e2e5
YS
1495
1496 return rc;
1497}
1498
42012e04
HY
1499#ifdef CONFIG_TRANSPARENT_HUGEPAGE
1500#define NR_MAX_BATCHED_MIGRATION HPAGE_PMD_NR
1501#else
1502#define NR_MAX_BATCHED_MIGRATION 512
1503#endif
e5bfff8b
HY
1504#define NR_MAX_MIGRATE_PAGES_RETRY 10
1505
5b855937
HY
1506struct migrate_pages_stats {
1507 int nr_succeeded; /* Normal and large folios migrated successfully, in
1508 units of base pages */
1509 int nr_failed_pages; /* Normal and large folios failed to be migrated, in
1510 units of base pages. Untried folios aren't counted */
1511 int nr_thp_succeeded; /* THP migrated successfully */
1512 int nr_thp_failed; /* THP failed to be migrated */
1513 int nr_thp_split; /* THP split before migrating */
1514};
1515
b20a3503 1516/*
e5bfff8b
HY
1517 * Returns the number of hugetlb folios that were not migrated, or an error code
1518 * after NR_MAX_MIGRATE_PAGES_RETRY attempts or if no hugetlb folios are movable
1519 * any more because the list has become empty or no retryable hugetlb folios
1520 * exist any more. It is caller's responsibility to call putback_movable_pages()
1521 * only if ret != 0.
b20a3503 1522 */
e5bfff8b
HY
1523static int migrate_hugetlbs(struct list_head *from, new_page_t get_new_page,
1524 free_page_t put_new_page, unsigned long private,
1525 enum migrate_mode mode, int reason,
1526 struct migrate_pages_stats *stats,
1527 struct list_head *ret_folios)
b20a3503 1528{
e24f0b8f 1529 int retry = 1;
e5bfff8b
HY
1530 int nr_failed = 0;
1531 int nr_retry_pages = 0;
1532 int pass = 0;
1533 struct folio *folio, *folio2;
1534 int rc, nr_pages;
1535
1536 for (pass = 0; pass < NR_MAX_MIGRATE_PAGES_RETRY && retry; pass++) {
1537 retry = 0;
1538 nr_retry_pages = 0;
1539
1540 list_for_each_entry_safe(folio, folio2, from, lru) {
1541 if (!folio_test_hugetlb(folio))
1542 continue;
1543
1544 nr_pages = folio_nr_pages(folio);
1545
1546 cond_resched();
1547
6f7d760e
HY
1548 /*
1549 * Migratability of hugepages depends on architectures and
1550 * their size. This check is necessary because some callers
1551 * of hugepage migration like soft offline and memory
1552 * hotremove don't walk through page tables or check whether
1553 * the hugepage is pmd-based or not before kicking migration.
1554 */
1555 if (!hugepage_migration_supported(folio_hstate(folio))) {
1556 nr_failed++;
1557 stats->nr_failed_pages += nr_pages;
1558 list_move_tail(&folio->lru, ret_folios);
1559 continue;
1560 }
1561
e5bfff8b
HY
1562 rc = unmap_and_move_huge_page(get_new_page,
1563 put_new_page, private,
1564 &folio->page, pass > 2, mode,
1565 reason, ret_folios);
1566 /*
1567 * The rules are:
1568 * Success: hugetlb folio will be put back
1569 * -EAGAIN: stay on the from list
1570 * -ENOMEM: stay on the from list
e5bfff8b
HY
1571 * Other errno: put on ret_folios list
1572 */
1573 switch(rc) {
e5bfff8b
HY
1574 case -ENOMEM:
1575 /*
1576 * When memory is low, don't bother to try to migrate
1577 * other folios, just exit.
1578 */
1579 stats->nr_failed_pages += nr_pages + nr_retry_pages;
1580 return -ENOMEM;
1581 case -EAGAIN:
1582 retry++;
1583 nr_retry_pages += nr_pages;
1584 break;
1585 case MIGRATEPAGE_SUCCESS:
1586 stats->nr_succeeded += nr_pages;
1587 break;
1588 default:
1589 /*
1590 * Permanent failure (-EBUSY, etc.):
1591 * unlike -EAGAIN case, the failed folio is
1592 * removed from migration folio list and not
1593 * retried in the next outer loop.
1594 */
1595 nr_failed++;
1596 stats->nr_failed_pages += nr_pages;
1597 break;
1598 }
1599 }
1600 }
1601 /*
1602 * nr_failed is number of hugetlb folios failed to be migrated. After
1603 * NR_MAX_MIGRATE_PAGES_RETRY attempts, give up and count retried hugetlb
1604 * folios as failed.
1605 */
1606 nr_failed += retry;
1607 stats->nr_failed_pages += nr_retry_pages;
1608
1609 return nr_failed;
1610}
1611
5dfab109
HY
1612/*
1613 * migrate_pages_batch() first unmaps folios in the from list as many as
1614 * possible, then move the unmapped folios.
1615 */
42012e04 1616static int migrate_pages_batch(struct list_head *from, new_page_t get_new_page,
68711a74 1617 free_page_t put_new_page, unsigned long private,
42012e04
HY
1618 enum migrate_mode mode, int reason, struct list_head *ret_folios,
1619 struct migrate_pages_stats *stats)
b20a3503 1620{
5dfab109 1621 int retry;
eaec4e63 1622 int large_retry = 1;
1a5bae25 1623 int thp_retry = 1;
b20a3503 1624 int nr_failed = 0;
077309bc 1625 int nr_retry_pages = 0;
eaec4e63 1626 int nr_large_failed = 0;
b20a3503 1627 int pass = 0;
eaec4e63 1628 bool is_large = false;
1a5bae25 1629 bool is_thp = false;
5dfab109
HY
1630 struct folio *folio, *folio2, *dst = NULL, *dst2;
1631 int rc, rc_saved, nr_pages;
eaec4e63 1632 LIST_HEAD(split_folios);
5dfab109
HY
1633 LIST_HEAD(unmap_folios);
1634 LIST_HEAD(dst_folios);
b0b515bf 1635 bool nosplit = (reason == MR_NUMA_MISPLACED);
eaec4e63 1636 bool no_split_folio_counting = false;
5dfab109 1637 bool avoid_force_lock;
e5bfff8b 1638
5dfab109
HY
1639retry:
1640 rc_saved = 0;
1641 avoid_force_lock = false;
1642 retry = 1;
e5bfff8b
HY
1643 for (pass = 0;
1644 pass < NR_MAX_MIGRATE_PAGES_RETRY && (retry || large_retry);
1645 pass++) {
e24f0b8f 1646 retry = 0;
eaec4e63 1647 large_retry = 0;
1a5bae25 1648 thp_retry = 0;
077309bc 1649 nr_retry_pages = 0;
b20a3503 1650
eaec4e63 1651 list_for_each_entry_safe(folio, folio2, from, lru) {
1a5bae25 1652 /*
eaec4e63
HY
1653 * Large folio statistics is based on the source large
1654 * folio. Capture required information that might get
1655 * lost during migration.
1a5bae25 1656 */
e5bfff8b 1657 is_large = folio_test_large(folio);
eaec4e63
HY
1658 is_thp = is_large && folio_test_pmd_mappable(folio);
1659 nr_pages = folio_nr_pages(folio);
e5bfff8b 1660
e24f0b8f 1661 cond_resched();
2d1db3b1 1662
d532e2e5 1663 /*
eaec4e63 1664 * Large folio migration might be unsupported or
6f7d760e 1665 * the allocation might be failed so we should retry
eaec4e63
HY
1666 * on the same folio with the large folio split
1667 * to normal folios.
d532e2e5 1668 *
eaec4e63 1669 * Split folios are put in split_folios, and
e6fa8a79
HY
1670 * we will migrate them after the rest of the
1671 * list is processed.
d532e2e5 1672 */
6f7d760e
HY
1673 if (!thp_migration_supported() && is_thp) {
1674 nr_large_failed++;
1675 stats->nr_thp_failed++;
1676 if (!try_split_folio(folio, &split_folios)) {
1677 stats->nr_thp_split++;
1678 continue;
f430893b 1679 }
6f7d760e
HY
1680 stats->nr_failed_pages += nr_pages;
1681 list_move_tail(&folio->lru, ret_folios);
1682 continue;
1683 }
f430893b 1684
64c8902e 1685 rc = migrate_folio_unmap(get_new_page, put_new_page, private,
5dfab109
HY
1686 folio, &dst, pass > 2, avoid_force_lock,
1687 mode, reason, ret_folios);
dd4ae78a
YS
1688 /*
1689 * The rules are:
e5bfff8b 1690 * Success: folio will be freed
5dfab109
HY
1691 * Unmap: folio will be put on unmap_folios list,
1692 * dst folio put on dst_folios list
dd4ae78a 1693 * -EAGAIN: stay on the from list
5dfab109 1694 * -EDEADLOCK: stay on the from list
dd4ae78a 1695 * -ENOMEM: stay on the from list
42012e04 1696 * Other errno: put on ret_folios list
dd4ae78a 1697 */
e24f0b8f 1698 switch(rc) {
95a402c3 1699 case -ENOMEM:
94723aaf 1700 /*
d532e2e5 1701 * When memory is low, don't bother to try to migrate
5dfab109 1702 * other folios, move unmapped folios, then exit.
94723aaf 1703 */
eaec4e63
HY
1704 if (is_large) {
1705 nr_large_failed++;
42012e04 1706 stats->nr_thp_failed += is_thp;
eaec4e63 1707 /* Large folio NUMA faulting doesn't split to retry. */
fd4a7ac3 1708 if (!nosplit) {
eaec4e63 1709 int ret = try_split_folio(folio, &split_folios);
fd4a7ac3
BW
1710
1711 if (!ret) {
42012e04 1712 stats->nr_thp_split += is_thp;
fd4a7ac3
BW
1713 break;
1714 } else if (reason == MR_LONGTERM_PIN &&
1715 ret == -EAGAIN) {
1716 /*
eaec4e63
HY
1717 * Try again to split large folio to
1718 * mitigate the failure of longterm pinning.
fd4a7ac3 1719 */
eaec4e63
HY
1720 large_retry++;
1721 thp_retry += is_thp;
1722 nr_retry_pages += nr_pages;
fd4a7ac3
BW
1723 break;
1724 }
94723aaf 1725 }
eaec4e63 1726 } else if (!no_split_folio_counting) {
f430893b 1727 nr_failed++;
1a5bae25 1728 }
b5bade97 1729
42012e04 1730 stats->nr_failed_pages += nr_pages + nr_retry_pages;
69a041ff 1731 /*
eaec4e63 1732 * There might be some split folios of fail-to-migrate large
42012e04 1733 * folios left in split_folios list. Move them to ret_folios
69a041ff 1734 * list so that they could be put back to the right list by
eaec4e63 1735 * the caller otherwise the folio refcnt will be leaked.
69a041ff 1736 */
42012e04 1737 list_splice_init(&split_folios, ret_folios);
fbed53b4 1738 /* nr_failed isn't updated for not used */
eaec4e63 1739 nr_large_failed += large_retry;
42012e04 1740 stats->nr_thp_failed += thp_retry;
5dfab109
HY
1741 rc_saved = rc;
1742 if (list_empty(&unmap_folios))
1743 goto out;
1744 else
1745 goto move;
1746 case -EDEADLOCK:
1747 /*
1748 * The folio cannot be locked for potential deadlock.
1749 * Go move (and unlock) all locked folios. Then we can
1750 * try again.
1751 */
1752 rc_saved = rc;
1753 goto move;
e24f0b8f 1754 case -EAGAIN:
eaec4e63
HY
1755 if (is_large) {
1756 large_retry++;
1757 thp_retry += is_thp;
1758 } else if (!no_split_folio_counting) {
f430893b 1759 retry++;
eaec4e63
HY
1760 }
1761 nr_retry_pages += nr_pages;
e24f0b8f 1762 break;
78bd5209 1763 case MIGRATEPAGE_SUCCESS:
42012e04
HY
1764 stats->nr_succeeded += nr_pages;
1765 stats->nr_thp_succeeded += is_thp;
e24f0b8f 1766 break;
5dfab109
HY
1767 case MIGRATEPAGE_UNMAP:
1768 /*
1769 * We have locked some folios, don't force lock
1770 * to avoid deadlock.
1771 */
1772 avoid_force_lock = true;
1773 list_move_tail(&folio->lru, &unmap_folios);
1774 list_add_tail(&dst->lru, &dst_folios);
e24f0b8f
CL
1775 break;
1776 default:
354a3363 1777 /*
d532e2e5 1778 * Permanent failure (-EBUSY, etc.):
eaec4e63
HY
1779 * unlike -EAGAIN case, the failed folio is
1780 * removed from migration folio list and not
354a3363
NH
1781 * retried in the next outer loop.
1782 */
eaec4e63
HY
1783 if (is_large) {
1784 nr_large_failed++;
42012e04 1785 stats->nr_thp_failed += is_thp;
eaec4e63 1786 } else if (!no_split_folio_counting) {
b5bade97 1787 nr_failed++;
eaec4e63 1788 }
f430893b 1789
42012e04 1790 stats->nr_failed_pages += nr_pages;
e24f0b8f 1791 break;
2d1db3b1 1792 }
b20a3503
CL
1793 }
1794 }
7047b5a4 1795 nr_failed += retry;
eaec4e63 1796 nr_large_failed += large_retry;
42012e04
HY
1797 stats->nr_thp_failed += thp_retry;
1798 stats->nr_failed_pages += nr_retry_pages;
5dfab109 1799move:
7e12beb8
HY
1800 /* Flush TLBs for all unmapped folios */
1801 try_to_unmap_flush();
1802
5dfab109
HY
1803 retry = 1;
1804 for (pass = 0;
1805 pass < NR_MAX_MIGRATE_PAGES_RETRY && (retry || large_retry);
1806 pass++) {
1807 retry = 0;
1808 large_retry = 0;
1809 thp_retry = 0;
1810 nr_retry_pages = 0;
1811
1812 dst = list_first_entry(&dst_folios, struct folio, lru);
1813 dst2 = list_next_entry(dst, lru);
1814 list_for_each_entry_safe(folio, folio2, &unmap_folios, lru) {
1815 is_large = folio_test_large(folio);
1816 is_thp = is_large && folio_test_pmd_mappable(folio);
1817 nr_pages = folio_nr_pages(folio);
1818
1819 cond_resched();
1820
1821 rc = migrate_folio_move(put_new_page, private,
1822 folio, dst, mode,
1823 reason, ret_folios);
1824 /*
1825 * The rules are:
1826 * Success: folio will be freed
1827 * -EAGAIN: stay on the unmap_folios list
1828 * Other errno: put on ret_folios list
1829 */
1830 switch(rc) {
1831 case -EAGAIN:
1832 if (is_large) {
1833 large_retry++;
1834 thp_retry += is_thp;
1835 } else if (!no_split_folio_counting) {
1836 retry++;
1837 }
1838 nr_retry_pages += nr_pages;
1839 break;
1840 case MIGRATEPAGE_SUCCESS:
1841 stats->nr_succeeded += nr_pages;
1842 stats->nr_thp_succeeded += is_thp;
1843 break;
1844 default:
1845 if (is_large) {
1846 nr_large_failed++;
1847 stats->nr_thp_failed += is_thp;
eaec4e63 1848 } else if (!no_split_folio_counting) {
b5bade97 1849 nr_failed++;
eaec4e63 1850 }
f430893b 1851
5dfab109 1852 stats->nr_failed_pages += nr_pages;
e24f0b8f 1853 break;
2d1db3b1 1854 }
5dfab109
HY
1855 dst = dst2;
1856 dst2 = list_next_entry(dst, lru);
b20a3503
CL
1857 }
1858 }
7047b5a4 1859 nr_failed += retry;
eaec4e63 1860 nr_large_failed += large_retry;
5dfab109
HY
1861 stats->nr_thp_failed += thp_retry;
1862 stats->nr_failed_pages += nr_retry_pages;
1863
1864 if (rc_saved)
1865 rc = rc_saved;
1866 else
1867 rc = nr_failed + nr_large_failed;
1868out:
1869 /* Cleanup remaining folios */
1870 dst = list_first_entry(&dst_folios, struct folio, lru);
1871 dst2 = list_next_entry(dst, lru);
1872 list_for_each_entry_safe(folio, folio2, &unmap_folios, lru) {
1873 int page_was_mapped = 0;
1874 struct anon_vma *anon_vma = NULL;
1875
1876 __migrate_folio_extract(dst, &page_was_mapped, &anon_vma);
1877 migrate_folio_undo_src(folio, page_was_mapped, anon_vma,
ebe75e47 1878 true, ret_folios);
5dfab109 1879 list_del(&dst->lru);
ebe75e47 1880 migrate_folio_undo_dst(dst, true, put_new_page, private);
5dfab109
HY
1881 dst = dst2;
1882 dst2 = list_next_entry(dst, lru);
1883 }
1884
b5bade97 1885 /*
eaec4e63
HY
1886 * Try to migrate split folios of fail-to-migrate large folios, no
1887 * nr_failed counting in this round, since all split folios of a
1888 * large folio is counted as 1 failure in the first round.
b5bade97 1889 */
5dfab109 1890 if (rc >= 0 && !list_empty(&split_folios)) {
b5bade97 1891 /*
e5bfff8b
HY
1892 * Move non-migrated folios (after NR_MAX_MIGRATE_PAGES_RETRY
1893 * retries) to ret_folios to avoid migrating them again.
b5bade97 1894 */
42012e04 1895 list_splice_init(from, ret_folios);
eaec4e63
HY
1896 list_splice_init(&split_folios, from);
1897 no_split_folio_counting = true;
5dfab109 1898 goto retry;
b5bade97
BW
1899 }
1900
5dfab109
HY
1901 /*
1902 * We have unlocked all locked folios, so we can force lock now, let's
1903 * try again.
1904 */
1905 if (rc == -EDEADLOCK)
1906 goto retry;
1907
42012e04
HY
1908 return rc;
1909}
1910
1911/*
1912 * migrate_pages - migrate the folios specified in a list, to the free folios
1913 * supplied as the target for the page migration
1914 *
1915 * @from: The list of folios to be migrated.
1916 * @get_new_page: The function used to allocate free folios to be used
1917 * as the target of the folio migration.
1918 * @put_new_page: The function used to free target folios if migration
1919 * fails, or NULL if no special handling is necessary.
1920 * @private: Private data to be passed on to get_new_page()
1921 * @mode: The migration mode that specifies the constraints for
1922 * folio migration, if any.
1923 * @reason: The reason for folio migration.
1924 * @ret_succeeded: Set to the number of folios migrated successfully if
1925 * the caller passes a non-NULL pointer.
1926 *
1927 * The function returns after NR_MAX_MIGRATE_PAGES_RETRY attempts or if no folios
1928 * are movable any more because the list has become empty or no retryable folios
1929 * exist any more. It is caller's responsibility to call putback_movable_pages()
1930 * only if ret != 0.
1931 *
1932 * Returns the number of {normal folio, large folio, hugetlb} that were not
1933 * migrated, or an error code. The number of large folio splits will be
1934 * considered as the number of non-migrated large folio, no matter how many
1935 * split folios of the large folio are migrated successfully.
1936 */
1937int migrate_pages(struct list_head *from, new_page_t get_new_page,
1938 free_page_t put_new_page, unsigned long private,
1939 enum migrate_mode mode, int reason, unsigned int *ret_succeeded)
1940{
1941 int rc, rc_gather;
1942 int nr_pages;
1943 struct folio *folio, *folio2;
1944 LIST_HEAD(folios);
1945 LIST_HEAD(ret_folios);
1946 struct migrate_pages_stats stats;
1947
1948 trace_mm_migrate_pages_start(mode, reason);
1949
1950 memset(&stats, 0, sizeof(stats));
1951
1952 rc_gather = migrate_hugetlbs(from, get_new_page, put_new_page, private,
1953 mode, reason, &stats, &ret_folios);
1954 if (rc_gather < 0)
1955 goto out;
1956again:
1957 nr_pages = 0;
1958 list_for_each_entry_safe(folio, folio2, from, lru) {
1959 /* Retried hugetlb folios will be kept in list */
1960 if (folio_test_hugetlb(folio)) {
1961 list_move_tail(&folio->lru, &ret_folios);
1962 continue;
1963 }
1964
1965 nr_pages += folio_nr_pages(folio);
1966 if (nr_pages > NR_MAX_BATCHED_MIGRATION)
1967 break;
1968 }
1969 if (nr_pages > NR_MAX_BATCHED_MIGRATION)
1970 list_cut_before(&folios, from, &folio->lru);
1971 else
1972 list_splice_init(from, &folios);
1973 rc = migrate_pages_batch(&folios, get_new_page, put_new_page, private,
1974 mode, reason, &ret_folios, &stats);
1975 list_splice_tail_init(&folios, &ret_folios);
1976 if (rc < 0) {
1977 rc_gather = rc;
1978 goto out;
1979 }
1980 rc_gather += rc;
1981 if (!list_empty(from))
1982 goto again;
95a402c3 1983out:
dd4ae78a 1984 /*
eaec4e63 1985 * Put the permanent failure folio back to migration list, they
dd4ae78a
YS
1986 * will be put back to the right list by the caller.
1987 */
eaec4e63 1988 list_splice(&ret_folios, from);
dd4ae78a 1989
03e5f82e 1990 /*
eaec4e63
HY
1991 * Return 0 in case all split folios of fail-to-migrate large folios
1992 * are migrated successfully.
03e5f82e
BW
1993 */
1994 if (list_empty(from))
42012e04 1995 rc_gather = 0;
03e5f82e 1996
5b855937
HY
1997 count_vm_events(PGMIGRATE_SUCCESS, stats.nr_succeeded);
1998 count_vm_events(PGMIGRATE_FAIL, stats.nr_failed_pages);
1999 count_vm_events(THP_MIGRATION_SUCCESS, stats.nr_thp_succeeded);
2000 count_vm_events(THP_MIGRATION_FAIL, stats.nr_thp_failed);
2001 count_vm_events(THP_MIGRATION_SPLIT, stats.nr_thp_split);
2002 trace_mm_migrate_pages(stats.nr_succeeded, stats.nr_failed_pages,
2003 stats.nr_thp_succeeded, stats.nr_thp_failed,
2004 stats.nr_thp_split, mode, reason);
7b2a2d4a 2005
5ac95884 2006 if (ret_succeeded)
5b855937 2007 *ret_succeeded = stats.nr_succeeded;
5ac95884 2008
42012e04 2009 return rc_gather;
b20a3503 2010}
95a402c3 2011
19fc7bed 2012struct page *alloc_migration_target(struct page *page, unsigned long private)
b4b38223 2013{
ffe06786 2014 struct folio *folio = page_folio(page);
19fc7bed
JK
2015 struct migration_target_control *mtc;
2016 gfp_t gfp_mask;
b4b38223 2017 unsigned int order = 0;
e37d3e83 2018 struct folio *hugetlb_folio = NULL;
ffe06786 2019 struct folio *new_folio = NULL;
19fc7bed
JK
2020 int nid;
2021 int zidx;
2022
2023 mtc = (struct migration_target_control *)private;
2024 gfp_mask = mtc->gfp_mask;
2025 nid = mtc->nid;
2026 if (nid == NUMA_NO_NODE)
ffe06786 2027 nid = folio_nid(folio);
b4b38223 2028
ffe06786 2029 if (folio_test_hugetlb(folio)) {
e51da3a9 2030 struct hstate *h = folio_hstate(folio);
d92bbc27 2031
19fc7bed 2032 gfp_mask = htlb_modify_alloc_mask(h, gfp_mask);
e37d3e83
SK
2033 hugetlb_folio = alloc_hugetlb_folio_nodemask(h, nid,
2034 mtc->nmask, gfp_mask);
2035 return &hugetlb_folio->page;
d92bbc27 2036 }
b4b38223 2037
ffe06786 2038 if (folio_test_large(folio)) {
9933a0c8
JK
2039 /*
2040 * clear __GFP_RECLAIM to make the migration callback
2041 * consistent with regular THP allocations.
2042 */
2043 gfp_mask &= ~__GFP_RECLAIM;
b4b38223 2044 gfp_mask |= GFP_TRANSHUGE;
ffe06786 2045 order = folio_order(folio);
b4b38223 2046 }
ffe06786 2047 zidx = zone_idx(folio_zone(folio));
19fc7bed 2048 if (is_highmem_idx(zidx) || zidx == ZONE_MOVABLE)
b4b38223
JK
2049 gfp_mask |= __GFP_HIGHMEM;
2050
ffe06786 2051 new_folio = __folio_alloc(gfp_mask, order, nid, mtc->nmask);
b4b38223 2052
ffe06786 2053 return &new_folio->page;
b4b38223
JK
2054}
2055
742755a1 2056#ifdef CONFIG_NUMA
742755a1 2057
a49bd4d7 2058static int store_status(int __user *status, int start, int value, int nr)
742755a1 2059{
a49bd4d7
MH
2060 while (nr-- > 0) {
2061 if (put_user(value, status + start))
2062 return -EFAULT;
2063 start++;
2064 }
2065
2066 return 0;
2067}
2068
2069static int do_move_pages_to_node(struct mm_struct *mm,
2070 struct list_head *pagelist, int node)
2071{
2072 int err;
a0976311
JK
2073 struct migration_target_control mtc = {
2074 .nid = node,
2075 .gfp_mask = GFP_HIGHUSER_MOVABLE | __GFP_THISNODE,
2076 };
a49bd4d7 2077
a0976311 2078 err = migrate_pages(pagelist, alloc_migration_target, NULL,
5ac95884 2079 (unsigned long)&mtc, MIGRATE_SYNC, MR_SYSCALL, NULL);
a49bd4d7
MH
2080 if (err)
2081 putback_movable_pages(pagelist);
2082 return err;
742755a1
CL
2083}
2084
2085/*
a49bd4d7
MH
2086 * Resolves the given address to a struct page, isolates it from the LRU and
2087 * puts it to the given pagelist.
e0153fc2
YS
2088 * Returns:
2089 * errno - if the page cannot be found/isolated
2090 * 0 - when it doesn't have to be migrated because it is already on the
2091 * target node
2092 * 1 - when it has been queued
742755a1 2093 */
a49bd4d7
MH
2094static int add_page_for_migration(struct mm_struct *mm, unsigned long addr,
2095 int node, struct list_head *pagelist, bool migrate_all)
742755a1 2096{
a49bd4d7
MH
2097 struct vm_area_struct *vma;
2098 struct page *page;
742755a1 2099 int err;
9747b9e9 2100 bool isolated;
742755a1 2101
d8ed45c5 2102 mmap_read_lock(mm);
a49bd4d7 2103 err = -EFAULT;
cb1c37b1
ML
2104 vma = vma_lookup(mm, addr);
2105 if (!vma || !vma_migratable(vma))
a49bd4d7 2106 goto out;
742755a1 2107
a49bd4d7 2108 /* FOLL_DUMP to ignore special (like zero) pages */
87d2762e 2109 page = follow_page(vma, addr, FOLL_GET | FOLL_DUMP);
89f5b7da 2110
a49bd4d7
MH
2111 err = PTR_ERR(page);
2112 if (IS_ERR(page))
2113 goto out;
89f5b7da 2114
a49bd4d7 2115 err = -ENOENT;
f7091ed6 2116 if (!page)
a49bd4d7 2117 goto out;
742755a1 2118
f7091ed6
HW
2119 if (is_zone_device_page(page))
2120 goto out_putpage;
2121
a49bd4d7
MH
2122 err = 0;
2123 if (page_to_nid(page) == node)
2124 goto out_putpage;
742755a1 2125
a49bd4d7
MH
2126 err = -EACCES;
2127 if (page_mapcount(page) > 1 && !migrate_all)
2128 goto out_putpage;
742755a1 2129
a49bd4d7
MH
2130 if (PageHuge(page)) {
2131 if (PageHead(page)) {
9747b9e9
BW
2132 isolated = isolate_hugetlb(page_folio(page), pagelist);
2133 err = isolated ? 1 : -EBUSY;
e632a938 2134 }
a49bd4d7
MH
2135 } else {
2136 struct page *head;
e632a938 2137
e8db67eb 2138 head = compound_head(page);
f7f9c00d
BW
2139 isolated = isolate_lru_page(head);
2140 if (!isolated) {
2141 err = -EBUSY;
a49bd4d7 2142 goto out_putpage;
f7f9c00d 2143 }
742755a1 2144
e0153fc2 2145 err = 1;
a49bd4d7
MH
2146 list_add_tail(&head->lru, pagelist);
2147 mod_node_page_state(page_pgdat(head),
9de4f22a 2148 NR_ISOLATED_ANON + page_is_file_lru(head),
6c357848 2149 thp_nr_pages(head));
a49bd4d7
MH
2150 }
2151out_putpage:
2152 /*
2153 * Either remove the duplicate refcount from
2154 * isolate_lru_page() or drop the page ref if it was
2155 * not isolated.
2156 */
2157 put_page(page);
2158out:
d8ed45c5 2159 mmap_read_unlock(mm);
742755a1
CL
2160 return err;
2161}
2162
7ca8783a
WY
2163static int move_pages_and_store_status(struct mm_struct *mm, int node,
2164 struct list_head *pagelist, int __user *status,
2165 int start, int i, unsigned long nr_pages)
2166{
2167 int err;
2168
5d7ae891
WY
2169 if (list_empty(pagelist))
2170 return 0;
2171
7ca8783a
WY
2172 err = do_move_pages_to_node(mm, pagelist, node);
2173 if (err) {
2174 /*
2175 * Positive err means the number of failed
2176 * pages to migrate. Since we are going to
2177 * abort and return the number of non-migrated
ab9dd4f8 2178 * pages, so need to include the rest of the
7ca8783a
WY
2179 * nr_pages that have not been attempted as
2180 * well.
2181 */
2182 if (err > 0)
a7504ed1 2183 err += nr_pages - i;
7ca8783a
WY
2184 return err;
2185 }
2186 return store_status(status, start, node, i - start);
2187}
2188
5e9a0f02
BG
2189/*
2190 * Migrate an array of page address onto an array of nodes and fill
2191 * the corresponding array of status.
2192 */
3268c63e 2193static int do_pages_move(struct mm_struct *mm, nodemask_t task_nodes,
5e9a0f02
BG
2194 unsigned long nr_pages,
2195 const void __user * __user *pages,
2196 const int __user *nodes,
2197 int __user *status, int flags)
2198{
a49bd4d7
MH
2199 int current_node = NUMA_NO_NODE;
2200 LIST_HEAD(pagelist);
2201 int start, i;
2202 int err = 0, err1;
35282a2d 2203
361a2a22 2204 lru_cache_disable();
35282a2d 2205
a49bd4d7
MH
2206 for (i = start = 0; i < nr_pages; i++) {
2207 const void __user *p;
2208 unsigned long addr;
2209 int node;
3140a227 2210
a49bd4d7
MH
2211 err = -EFAULT;
2212 if (get_user(p, pages + i))
2213 goto out_flush;
2214 if (get_user(node, nodes + i))
2215 goto out_flush;
057d3389 2216 addr = (unsigned long)untagged_addr(p);
a49bd4d7
MH
2217
2218 err = -ENODEV;
2219 if (node < 0 || node >= MAX_NUMNODES)
2220 goto out_flush;
2221 if (!node_state(node, N_MEMORY))
2222 goto out_flush;
5e9a0f02 2223
a49bd4d7
MH
2224 err = -EACCES;
2225 if (!node_isset(node, task_nodes))
2226 goto out_flush;
2227
2228 if (current_node == NUMA_NO_NODE) {
2229 current_node = node;
2230 start = i;
2231 } else if (node != current_node) {
7ca8783a
WY
2232 err = move_pages_and_store_status(mm, current_node,
2233 &pagelist, status, start, i, nr_pages);
a49bd4d7
MH
2234 if (err)
2235 goto out;
2236 start = i;
2237 current_node = node;
3140a227
BG
2238 }
2239
a49bd4d7
MH
2240 /*
2241 * Errors in the page lookup or isolation are not fatal and we simply
2242 * report them via status
2243 */
2244 err = add_page_for_migration(mm, addr, current_node,
2245 &pagelist, flags & MPOL_MF_MOVE_ALL);
e0153fc2 2246
d08221a0 2247 if (err > 0) {
e0153fc2
YS
2248 /* The page is successfully queued for migration */
2249 continue;
2250 }
3140a227 2251
65462462
JH
2252 /*
2253 * The move_pages() man page does not have an -EEXIST choice, so
2254 * use -EFAULT instead.
2255 */
2256 if (err == -EEXIST)
2257 err = -EFAULT;
2258
d08221a0
WY
2259 /*
2260 * If the page is already on the target node (!err), store the
2261 * node, otherwise, store the err.
2262 */
2263 err = store_status(status, i, err ? : current_node, 1);
a49bd4d7
MH
2264 if (err)
2265 goto out_flush;
5e9a0f02 2266
7ca8783a
WY
2267 err = move_pages_and_store_status(mm, current_node, &pagelist,
2268 status, start, i, nr_pages);
a7504ed1
HY
2269 if (err) {
2270 /* We have accounted for page i */
2271 if (err > 0)
2272 err--;
4afdacec 2273 goto out;
a7504ed1 2274 }
a49bd4d7 2275 current_node = NUMA_NO_NODE;
3140a227 2276 }
a49bd4d7
MH
2277out_flush:
2278 /* Make sure we do not overwrite the existing error */
7ca8783a
WY
2279 err1 = move_pages_and_store_status(mm, current_node, &pagelist,
2280 status, start, i, nr_pages);
dfe9aa23 2281 if (err >= 0)
a49bd4d7 2282 err = err1;
5e9a0f02 2283out:
361a2a22 2284 lru_cache_enable();
5e9a0f02
BG
2285 return err;
2286}
2287
742755a1 2288/*
2f007e74 2289 * Determine the nodes of an array of pages and store it in an array of status.
742755a1 2290 */
80bba129
BG
2291static void do_pages_stat_array(struct mm_struct *mm, unsigned long nr_pages,
2292 const void __user **pages, int *status)
742755a1 2293{
2f007e74 2294 unsigned long i;
2f007e74 2295
d8ed45c5 2296 mmap_read_lock(mm);
742755a1 2297
2f007e74 2298 for (i = 0; i < nr_pages; i++) {
80bba129 2299 unsigned long addr = (unsigned long)(*pages);
742755a1
CL
2300 struct vm_area_struct *vma;
2301 struct page *page;
c095adbc 2302 int err = -EFAULT;
2f007e74 2303
059b8b48
LH
2304 vma = vma_lookup(mm, addr);
2305 if (!vma)
742755a1
CL
2306 goto set_status;
2307
d899844e 2308 /* FOLL_DUMP to ignore special (like zero) pages */
16fd6b31 2309 page = follow_page(vma, addr, FOLL_GET | FOLL_DUMP);
89f5b7da
LT
2310
2311 err = PTR_ERR(page);
2312 if (IS_ERR(page))
2313 goto set_status;
2314
f7091ed6
HW
2315 err = -ENOENT;
2316 if (!page)
2317 goto set_status;
2318
2319 if (!is_zone_device_page(page))
4cd61484 2320 err = page_to_nid(page);
f7091ed6 2321
16fd6b31 2322 put_page(page);
742755a1 2323set_status:
80bba129
BG
2324 *status = err;
2325
2326 pages++;
2327 status++;
2328 }
2329
d8ed45c5 2330 mmap_read_unlock(mm);
80bba129
BG
2331}
2332
5b1b561b
AB
2333static int get_compat_pages_array(const void __user *chunk_pages[],
2334 const void __user * __user *pages,
2335 unsigned long chunk_nr)
2336{
2337 compat_uptr_t __user *pages32 = (compat_uptr_t __user *)pages;
2338 compat_uptr_t p;
2339 int i;
2340
2341 for (i = 0; i < chunk_nr; i++) {
2342 if (get_user(p, pages32 + i))
2343 return -EFAULT;
2344 chunk_pages[i] = compat_ptr(p);
2345 }
2346
2347 return 0;
2348}
2349
80bba129
BG
2350/*
2351 * Determine the nodes of a user array of pages and store it in
2352 * a user array of status.
2353 */
2354static int do_pages_stat(struct mm_struct *mm, unsigned long nr_pages,
2355 const void __user * __user *pages,
2356 int __user *status)
2357{
3eefb826 2358#define DO_PAGES_STAT_CHUNK_NR 16UL
80bba129
BG
2359 const void __user *chunk_pages[DO_PAGES_STAT_CHUNK_NR];
2360 int chunk_status[DO_PAGES_STAT_CHUNK_NR];
80bba129 2361
87b8d1ad 2362 while (nr_pages) {
3eefb826 2363 unsigned long chunk_nr = min(nr_pages, DO_PAGES_STAT_CHUNK_NR);
87b8d1ad 2364
5b1b561b
AB
2365 if (in_compat_syscall()) {
2366 if (get_compat_pages_array(chunk_pages, pages,
2367 chunk_nr))
2368 break;
2369 } else {
2370 if (copy_from_user(chunk_pages, pages,
2371 chunk_nr * sizeof(*chunk_pages)))
2372 break;
2373 }
80bba129
BG
2374
2375 do_pages_stat_array(mm, chunk_nr, chunk_pages, chunk_status);
2376
87b8d1ad
PA
2377 if (copy_to_user(status, chunk_status, chunk_nr * sizeof(*status)))
2378 break;
742755a1 2379
87b8d1ad
PA
2380 pages += chunk_nr;
2381 status += chunk_nr;
2382 nr_pages -= chunk_nr;
2383 }
2384 return nr_pages ? -EFAULT : 0;
742755a1
CL
2385}
2386
4dc200ce 2387static struct mm_struct *find_mm_struct(pid_t pid, nodemask_t *mem_nodes)
742755a1 2388{
742755a1 2389 struct task_struct *task;
742755a1 2390 struct mm_struct *mm;
742755a1 2391
4dc200ce
ML
2392 /*
2393 * There is no need to check if current process has the right to modify
2394 * the specified process when they are same.
2395 */
2396 if (!pid) {
2397 mmget(current->mm);
2398 *mem_nodes = cpuset_mems_allowed(current);
2399 return current->mm;
2400 }
742755a1
CL
2401
2402 /* Find the mm_struct */
a879bf58 2403 rcu_read_lock();
4dc200ce 2404 task = find_task_by_vpid(pid);
742755a1 2405 if (!task) {
a879bf58 2406 rcu_read_unlock();
4dc200ce 2407 return ERR_PTR(-ESRCH);
742755a1 2408 }
3268c63e 2409 get_task_struct(task);
742755a1
CL
2410
2411 /*
2412 * Check if this process has the right to modify the specified
197e7e52 2413 * process. Use the regular "ptrace_may_access()" checks.
742755a1 2414 */
197e7e52 2415 if (!ptrace_may_access(task, PTRACE_MODE_READ_REALCREDS)) {
c69e8d9c 2416 rcu_read_unlock();
4dc200ce 2417 mm = ERR_PTR(-EPERM);
5e9a0f02 2418 goto out;
742755a1 2419 }
c69e8d9c 2420 rcu_read_unlock();
742755a1 2421
4dc200ce
ML
2422 mm = ERR_PTR(security_task_movememory(task));
2423 if (IS_ERR(mm))
5e9a0f02 2424 goto out;
4dc200ce 2425 *mem_nodes = cpuset_mems_allowed(task);
3268c63e 2426 mm = get_task_mm(task);
4dc200ce 2427out:
3268c63e 2428 put_task_struct(task);
6e8b09ea 2429 if (!mm)
4dc200ce
ML
2430 mm = ERR_PTR(-EINVAL);
2431 return mm;
2432}
2433
2434/*
2435 * Move a list of pages in the address space of the currently executing
2436 * process.
2437 */
2438static int kernel_move_pages(pid_t pid, unsigned long nr_pages,
2439 const void __user * __user *pages,
2440 const int __user *nodes,
2441 int __user *status, int flags)
2442{
2443 struct mm_struct *mm;
2444 int err;
2445 nodemask_t task_nodes;
2446
2447 /* Check flags */
2448 if (flags & ~(MPOL_MF_MOVE|MPOL_MF_MOVE_ALL))
6e8b09ea
SL
2449 return -EINVAL;
2450
4dc200ce
ML
2451 if ((flags & MPOL_MF_MOVE_ALL) && !capable(CAP_SYS_NICE))
2452 return -EPERM;
2453
2454 mm = find_mm_struct(pid, &task_nodes);
2455 if (IS_ERR(mm))
2456 return PTR_ERR(mm);
2457
6e8b09ea
SL
2458 if (nodes)
2459 err = do_pages_move(mm, task_nodes, nr_pages, pages,
2460 nodes, status, flags);
2461 else
2462 err = do_pages_stat(mm, nr_pages, pages, status);
742755a1 2463
742755a1
CL
2464 mmput(mm);
2465 return err;
2466}
742755a1 2467
7addf443
DB
2468SYSCALL_DEFINE6(move_pages, pid_t, pid, unsigned long, nr_pages,
2469 const void __user * __user *, pages,
2470 const int __user *, nodes,
2471 int __user *, status, int, flags)
2472{
2473 return kernel_move_pages(pid, nr_pages, pages, nodes, status, flags);
2474}
2475
7039e1db
PZ
2476#ifdef CONFIG_NUMA_BALANCING
2477/*
2478 * Returns true if this is a safe migration target node for misplaced NUMA
bc53008e 2479 * pages. Currently it only checks the watermarks which is crude.
7039e1db
PZ
2480 */
2481static bool migrate_balanced_pgdat(struct pglist_data *pgdat,
3abef4e6 2482 unsigned long nr_migrate_pages)
7039e1db
PZ
2483{
2484 int z;
599d0c95 2485
7039e1db
PZ
2486 for (z = pgdat->nr_zones - 1; z >= 0; z--) {
2487 struct zone *zone = pgdat->node_zones + z;
2488
bc53008e 2489 if (!managed_zone(zone))
7039e1db
PZ
2490 continue;
2491
7039e1db
PZ
2492 /* Avoid waking kswapd by allocating pages_to_migrate pages. */
2493 if (!zone_watermark_ok(zone, 0,
2494 high_wmark_pages(zone) +
2495 nr_migrate_pages,
bfe9d006 2496 ZONE_MOVABLE, 0))
7039e1db
PZ
2497 continue;
2498 return true;
2499 }
2500 return false;
2501}
2502
2503static struct page *alloc_misplaced_dst_page(struct page *page,
666feb21 2504 unsigned long data)
7039e1db
PZ
2505{
2506 int nid = (int) data;
c185e494
MWO
2507 int order = compound_order(page);
2508 gfp_t gfp = __GFP_THISNODE;
2509 struct folio *new;
2510
2511 if (order > 0)
2512 gfp |= GFP_TRANSHUGE_LIGHT;
2513 else {
2514 gfp |= GFP_HIGHUSER_MOVABLE | __GFP_NOMEMALLOC | __GFP_NORETRY |
2515 __GFP_NOWARN;
2516 gfp &= ~__GFP_RECLAIM;
2517 }
2518 new = __folio_alloc_node(gfp, order, nid);
c5b5a3dd 2519
c185e494 2520 return &new->page;
c5b5a3dd
YS
2521}
2522
1c30e017 2523static int numamigrate_isolate_page(pg_data_t *pgdat, struct page *page)
b32967ff 2524{
2b9b624f 2525 int nr_pages = thp_nr_pages(page);
c574bbe9 2526 int order = compound_order(page);
a8f60772 2527
c574bbe9 2528 VM_BUG_ON_PAGE(order && !PageTransHuge(page), page);
3abef4e6 2529
662aeea7
YS
2530 /* Do not migrate THP mapped by multiple processes */
2531 if (PageTransHuge(page) && total_mapcount(page) > 1)
2532 return 0;
2533
7039e1db 2534 /* Avoid migrating to a node that is nearly full */
c574bbe9
HY
2535 if (!migrate_balanced_pgdat(pgdat, nr_pages)) {
2536 int z;
2537
2538 if (!(sysctl_numa_balancing_mode & NUMA_BALANCING_MEMORY_TIERING))
2539 return 0;
2540 for (z = pgdat->nr_zones - 1; z >= 0; z--) {
bc53008e 2541 if (managed_zone(pgdat->node_zones + z))
c574bbe9
HY
2542 break;
2543 }
2544 wakeup_kswapd(pgdat->node_zones + z, 0, order, ZONE_MOVABLE);
340ef390 2545 return 0;
c574bbe9 2546 }
7039e1db 2547
f7f9c00d 2548 if (!isolate_lru_page(page))
340ef390 2549 return 0;
7039e1db 2550
b75454e1 2551 mod_node_page_state(page_pgdat(page), NR_ISOLATED_ANON + page_is_file_lru(page),
2b9b624f 2552 nr_pages);
340ef390 2553
149c33e1 2554 /*
340ef390
HD
2555 * Isolating the page has taken another reference, so the
2556 * caller's reference can be safely dropped without the page
2557 * disappearing underneath us during migration.
149c33e1
MG
2558 */
2559 put_page(page);
340ef390 2560 return 1;
b32967ff
MG
2561}
2562
2563/*
2564 * Attempt to migrate a misplaced page to the specified destination
2565 * node. Caller is expected to have an elevated reference count on
2566 * the page that will be dropped by this function before returning.
2567 */
1bc115d8
MG
2568int migrate_misplaced_page(struct page *page, struct vm_area_struct *vma,
2569 int node)
b32967ff
MG
2570{
2571 pg_data_t *pgdat = NODE_DATA(node);
340ef390 2572 int isolated;
b32967ff 2573 int nr_remaining;
e39bb6be 2574 unsigned int nr_succeeded;
b32967ff 2575 LIST_HEAD(migratepages);
b5916c02 2576 int nr_pages = thp_nr_pages(page);
c5b5a3dd 2577
b32967ff 2578 /*
1bc115d8
MG
2579 * Don't migrate file pages that are mapped in multiple processes
2580 * with execute permissions as they are probably shared libraries.
b32967ff 2581 */
7ee820ee
ML
2582 if (page_mapcount(page) != 1 && page_is_file_lru(page) &&
2583 (vma->vm_flags & VM_EXEC))
b32967ff 2584 goto out;
b32967ff 2585
09a913a7
MG
2586 /*
2587 * Also do not migrate dirty pages as not all filesystems can move
2588 * dirty pages in MIGRATE_ASYNC mode which is a waste of cycles.
2589 */
9de4f22a 2590 if (page_is_file_lru(page) && PageDirty(page))
09a913a7
MG
2591 goto out;
2592
b32967ff
MG
2593 isolated = numamigrate_isolate_page(pgdat, page);
2594 if (!isolated)
2595 goto out;
2596
2597 list_add(&page->lru, &migratepages);
c185e494
MWO
2598 nr_remaining = migrate_pages(&migratepages, alloc_misplaced_dst_page,
2599 NULL, node, MIGRATE_ASYNC,
2600 MR_NUMA_MISPLACED, &nr_succeeded);
b32967ff 2601 if (nr_remaining) {
59c82b70
JK
2602 if (!list_empty(&migratepages)) {
2603 list_del(&page->lru);
c5fc5c3a
YS
2604 mod_node_page_state(page_pgdat(page), NR_ISOLATED_ANON +
2605 page_is_file_lru(page), -nr_pages);
59c82b70
JK
2606 putback_lru_page(page);
2607 }
b32967ff 2608 isolated = 0;
e39bb6be
HY
2609 }
2610 if (nr_succeeded) {
2611 count_vm_numa_events(NUMA_PAGE_MIGRATE, nr_succeeded);
2612 if (!node_is_toptier(page_to_nid(page)) && node_is_toptier(node))
2613 mod_node_page_state(pgdat, PGPROMOTE_SUCCESS,
2614 nr_succeeded);
2615 }
7039e1db 2616 BUG_ON(!list_empty(&migratepages));
7039e1db 2617 return isolated;
340ef390
HD
2618
2619out:
2620 put_page(page);
2621 return 0;
7039e1db 2622}
220018d3 2623#endif /* CONFIG_NUMA_BALANCING */
91952440 2624#endif /* CONFIG_NUMA */