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CommitLineData
1da177e4
LT
1/*
2 * Resizable virtual memory filesystem for Linux.
3 *
4 * Copyright (C) 2000 Linus Torvalds.
5 * 2000 Transmeta Corp.
6 * 2000-2001 Christoph Rohland
7 * 2000-2001 SAP AG
8 * 2002 Red Hat Inc.
6922c0c7
HD
9 * Copyright (C) 2002-2011 Hugh Dickins.
10 * Copyright (C) 2011 Google Inc.
0edd73b3 11 * Copyright (C) 2002-2005 VERITAS Software Corporation.
1da177e4
LT
12 * Copyright (C) 2004 Andi Kleen, SuSE Labs
13 *
14 * Extended attribute support for tmpfs:
15 * Copyright (c) 2004, Luke Kenneth Casson Leighton <[email protected]>
16 * Copyright (c) 2004 Red Hat, Inc., James Morris <[email protected]>
17 *
853ac43a
MM
18 * tiny-shmem:
19 * Copyright (c) 2004, 2008 Matt Mackall <[email protected]>
20 *
1da177e4
LT
21 * This file is released under the GPL.
22 */
23
853ac43a
MM
24#include <linux/fs.h>
25#include <linux/init.h>
26#include <linux/vfs.h>
27#include <linux/mount.h>
250297ed 28#include <linux/ramfs.h>
caefba17 29#include <linux/pagemap.h>
853ac43a 30#include <linux/file.h>
e408e695 31#include <linux/fileattr.h>
853ac43a 32#include <linux/mm.h>
46c9a946 33#include <linux/random.h>
174cd4b1 34#include <linux/sched/signal.h>
b95f1b31 35#include <linux/export.h>
853ac43a 36#include <linux/swap.h>
e2e40f2c 37#include <linux/uio.h>
749df87b 38#include <linux/hugetlb.h>
626c3920 39#include <linux/fs_parser.h>
86a2f3f2 40#include <linux/swapfile.h>
014bb1de 41#include "swap.h"
95cc09d6 42
853ac43a
MM
43static struct vfsmount *shm_mnt;
44
45#ifdef CONFIG_SHMEM
1da177e4
LT
46/*
47 * This virtual memory filesystem is heavily based on the ramfs. It
48 * extends ramfs by the ability to use swap and honor resource limits
49 * which makes it a completely usable filesystem.
50 */
51
39f0247d 52#include <linux/xattr.h>
a5694255 53#include <linux/exportfs.h>
1c7c474c 54#include <linux/posix_acl.h>
feda821e 55#include <linux/posix_acl_xattr.h>
1da177e4 56#include <linux/mman.h>
1da177e4
LT
57#include <linux/string.h>
58#include <linux/slab.h>
59#include <linux/backing-dev.h>
60#include <linux/shmem_fs.h>
1da177e4 61#include <linux/writeback.h>
bda97eab 62#include <linux/pagevec.h>
41ffe5d5 63#include <linux/percpu_counter.h>
83e4fa9c 64#include <linux/falloc.h>
708e3508 65#include <linux/splice.h>
1da177e4
LT
66#include <linux/security.h>
67#include <linux/swapops.h>
68#include <linux/mempolicy.h>
69#include <linux/namei.h>
b00dc3ad 70#include <linux/ctype.h>
304dbdb7 71#include <linux/migrate.h>
c1f60a5a 72#include <linux/highmem.h>
680d794b 73#include <linux/seq_file.h>
92562927 74#include <linux/magic.h>
9183df25 75#include <linux/syscalls.h>
40e041a2 76#include <linux/fcntl.h>
9183df25 77#include <uapi/linux/memfd.h>
cfda0526 78#include <linux/userfaultfd_k.h>
4c27fe4c 79#include <linux/rmap.h>
2b4db796 80#include <linux/uuid.h>
304dbdb7 81
7c0f6ba6 82#include <linux/uaccess.h>
1da177e4 83
dd56b046
MG
84#include "internal.h"
85
09cbfeaf
KS
86#define BLOCKS_PER_PAGE (PAGE_SIZE/512)
87#define VM_ACCT(size) (PAGE_ALIGN(size) >> PAGE_SHIFT)
1da177e4 88
1da177e4
LT
89/* Pretend that each entry is of this size in directory's i_size */
90#define BOGO_DIRENT_SIZE 20
91
69f07ec9
HD
92/* Symlink up to this size is kmalloc'ed instead of using a swappable page */
93#define SHORT_SYMLINK_LEN 128
94
1aac1400 95/*
f00cdc6d 96 * shmem_fallocate communicates with shmem_fault or shmem_writepage via
9608703e 97 * inode->i_private (with i_rwsem making sure that it has only one user at
f00cdc6d 98 * a time): we would prefer not to enlarge the shmem inode just for that.
1aac1400
HD
99 */
100struct shmem_falloc {
8e205f77 101 wait_queue_head_t *waitq; /* faults into hole wait for punch to end */
1aac1400
HD
102 pgoff_t start; /* start of range currently being fallocated */
103 pgoff_t next; /* the next page offset to be fallocated */
104 pgoff_t nr_falloced; /* how many new pages have been fallocated */
105 pgoff_t nr_unswapped; /* how often writepage refused to swap out */
106};
107
0b5071dd
AV
108struct shmem_options {
109 unsigned long long blocks;
110 unsigned long long inodes;
111 struct mempolicy *mpol;
112 kuid_t uid;
113 kgid_t gid;
114 umode_t mode;
ea3271f7 115 bool full_inums;
0b5071dd
AV
116 int huge;
117 int seen;
118#define SHMEM_SEEN_BLOCKS 1
119#define SHMEM_SEEN_INODES 2
120#define SHMEM_SEEN_HUGE 4
ea3271f7 121#define SHMEM_SEEN_INUMS 8
0b5071dd
AV
122};
123
b76db735 124#ifdef CONFIG_TMPFS
680d794b
AM
125static unsigned long shmem_default_max_blocks(void)
126{
ca79b0c2 127 return totalram_pages() / 2;
680d794b
AM
128}
129
130static unsigned long shmem_default_max_inodes(void)
131{
ca79b0c2
AK
132 unsigned long nr_pages = totalram_pages();
133
134 return min(nr_pages - totalhigh_pages(), nr_pages / 2);
680d794b 135}
b76db735 136#endif
680d794b 137
da08e9b7
MWO
138static int shmem_swapin_folio(struct inode *inode, pgoff_t index,
139 struct folio **foliop, enum sgp_type sgp,
c5bf121e
VRP
140 gfp_t gfp, struct vm_area_struct *vma,
141 vm_fault_t *fault_type);
1da177e4 142
1da177e4
LT
143static inline struct shmem_sb_info *SHMEM_SB(struct super_block *sb)
144{
145 return sb->s_fs_info;
146}
147
148/*
149 * shmem_file_setup pre-accounts the whole fixed size of a VM object,
150 * for shared memory and for shared anonymous (/dev/zero) mappings
151 * (unless MAP_NORESERVE and sysctl_overcommit_memory <= 1),
152 * consistent with the pre-accounting of private mappings ...
153 */
154static inline int shmem_acct_size(unsigned long flags, loff_t size)
155{
0b0a0806 156 return (flags & VM_NORESERVE) ?
191c5424 157 0 : security_vm_enough_memory_mm(current->mm, VM_ACCT(size));
1da177e4
LT
158}
159
160static inline void shmem_unacct_size(unsigned long flags, loff_t size)
161{
0b0a0806 162 if (!(flags & VM_NORESERVE))
1da177e4
LT
163 vm_unacct_memory(VM_ACCT(size));
164}
165
77142517
KK
166static inline int shmem_reacct_size(unsigned long flags,
167 loff_t oldsize, loff_t newsize)
168{
169 if (!(flags & VM_NORESERVE)) {
170 if (VM_ACCT(newsize) > VM_ACCT(oldsize))
171 return security_vm_enough_memory_mm(current->mm,
172 VM_ACCT(newsize) - VM_ACCT(oldsize));
173 else if (VM_ACCT(newsize) < VM_ACCT(oldsize))
174 vm_unacct_memory(VM_ACCT(oldsize) - VM_ACCT(newsize));
175 }
176 return 0;
177}
178
1da177e4
LT
179/*
180 * ... whereas tmpfs objects are accounted incrementally as
75edd345 181 * pages are allocated, in order to allow large sparse files.
923e2f0e 182 * shmem_get_folio reports shmem_acct_block failure as -ENOSPC not -ENOMEM,
1da177e4
LT
183 * so that a failure on a sparse tmpfs mapping will give SIGBUS not OOM.
184 */
800d8c63 185static inline int shmem_acct_block(unsigned long flags, long pages)
1da177e4 186{
800d8c63
KS
187 if (!(flags & VM_NORESERVE))
188 return 0;
189
190 return security_vm_enough_memory_mm(current->mm,
191 pages * VM_ACCT(PAGE_SIZE));
1da177e4
LT
192}
193
194static inline void shmem_unacct_blocks(unsigned long flags, long pages)
195{
0b0a0806 196 if (flags & VM_NORESERVE)
09cbfeaf 197 vm_unacct_memory(pages * VM_ACCT(PAGE_SIZE));
1da177e4
LT
198}
199
0f079694
MR
200static inline bool shmem_inode_acct_block(struct inode *inode, long pages)
201{
202 struct shmem_inode_info *info = SHMEM_I(inode);
203 struct shmem_sb_info *sbinfo = SHMEM_SB(inode->i_sb);
204
205 if (shmem_acct_block(info->flags, pages))
206 return false;
207
208 if (sbinfo->max_blocks) {
209 if (percpu_counter_compare(&sbinfo->used_blocks,
210 sbinfo->max_blocks - pages) > 0)
211 goto unacct;
212 percpu_counter_add(&sbinfo->used_blocks, pages);
213 }
214
215 return true;
216
217unacct:
218 shmem_unacct_blocks(info->flags, pages);
219 return false;
220}
221
222static inline void shmem_inode_unacct_blocks(struct inode *inode, long pages)
223{
224 struct shmem_inode_info *info = SHMEM_I(inode);
225 struct shmem_sb_info *sbinfo = SHMEM_SB(inode->i_sb);
226
227 if (sbinfo->max_blocks)
228 percpu_counter_sub(&sbinfo->used_blocks, pages);
229 shmem_unacct_blocks(info->flags, pages);
230}
231
759b9775 232static const struct super_operations shmem_ops;
30e6a51d 233const struct address_space_operations shmem_aops;
15ad7cdc 234static const struct file_operations shmem_file_operations;
92e1d5be
AV
235static const struct inode_operations shmem_inode_operations;
236static const struct inode_operations shmem_dir_inode_operations;
237static const struct inode_operations shmem_special_inode_operations;
f0f37e2f 238static const struct vm_operations_struct shmem_vm_ops;
779750d2 239static struct file_system_type shmem_fs_type;
1da177e4 240
b0506e48
MR
241bool vma_is_shmem(struct vm_area_struct *vma)
242{
243 return vma->vm_ops == &shmem_vm_ops;
244}
245
1da177e4 246static LIST_HEAD(shmem_swaplist);
cb5f7b9a 247static DEFINE_MUTEX(shmem_swaplist_mutex);
1da177e4 248
e809d5f0
CD
249/*
250 * shmem_reserve_inode() performs bookkeeping to reserve a shmem inode, and
251 * produces a novel ino for the newly allocated inode.
252 *
253 * It may also be called when making a hard link to permit the space needed by
254 * each dentry. However, in that case, no new inode number is needed since that
255 * internally draws from another pool of inode numbers (currently global
256 * get_next_ino()). This case is indicated by passing NULL as inop.
257 */
258#define SHMEM_INO_BATCH 1024
259static int shmem_reserve_inode(struct super_block *sb, ino_t *inop)
5b04c689
PE
260{
261 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
e809d5f0
CD
262 ino_t ino;
263
264 if (!(sb->s_flags & SB_KERNMOUNT)) {
bf11b9a8 265 raw_spin_lock(&sbinfo->stat_lock);
bb3e96d6
BS
266 if (sbinfo->max_inodes) {
267 if (!sbinfo->free_inodes) {
bf11b9a8 268 raw_spin_unlock(&sbinfo->stat_lock);
bb3e96d6
BS
269 return -ENOSPC;
270 }
271 sbinfo->free_inodes--;
5b04c689 272 }
e809d5f0
CD
273 if (inop) {
274 ino = sbinfo->next_ino++;
275 if (unlikely(is_zero_ino(ino)))
276 ino = sbinfo->next_ino++;
ea3271f7
CD
277 if (unlikely(!sbinfo->full_inums &&
278 ino > UINT_MAX)) {
e809d5f0
CD
279 /*
280 * Emulate get_next_ino uint wraparound for
281 * compatibility
282 */
ea3271f7
CD
283 if (IS_ENABLED(CONFIG_64BIT))
284 pr_warn("%s: inode number overflow on device %d, consider using inode64 mount option\n",
285 __func__, MINOR(sb->s_dev));
286 sbinfo->next_ino = 1;
287 ino = sbinfo->next_ino++;
e809d5f0
CD
288 }
289 *inop = ino;
290 }
bf11b9a8 291 raw_spin_unlock(&sbinfo->stat_lock);
e809d5f0
CD
292 } else if (inop) {
293 /*
294 * __shmem_file_setup, one of our callers, is lock-free: it
295 * doesn't hold stat_lock in shmem_reserve_inode since
296 * max_inodes is always 0, and is called from potentially
297 * unknown contexts. As such, use a per-cpu batched allocator
298 * which doesn't require the per-sb stat_lock unless we are at
299 * the batch boundary.
ea3271f7
CD
300 *
301 * We don't need to worry about inode{32,64} since SB_KERNMOUNT
302 * shmem mounts are not exposed to userspace, so we don't need
303 * to worry about things like glibc compatibility.
e809d5f0
CD
304 */
305 ino_t *next_ino;
bf11b9a8 306
e809d5f0
CD
307 next_ino = per_cpu_ptr(sbinfo->ino_batch, get_cpu());
308 ino = *next_ino;
309 if (unlikely(ino % SHMEM_INO_BATCH == 0)) {
bf11b9a8 310 raw_spin_lock(&sbinfo->stat_lock);
e809d5f0
CD
311 ino = sbinfo->next_ino;
312 sbinfo->next_ino += SHMEM_INO_BATCH;
bf11b9a8 313 raw_spin_unlock(&sbinfo->stat_lock);
e809d5f0
CD
314 if (unlikely(is_zero_ino(ino)))
315 ino++;
316 }
317 *inop = ino;
318 *next_ino = ++ino;
319 put_cpu();
5b04c689 320 }
e809d5f0 321
5b04c689
PE
322 return 0;
323}
324
325static void shmem_free_inode(struct super_block *sb)
326{
327 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
328 if (sbinfo->max_inodes) {
bf11b9a8 329 raw_spin_lock(&sbinfo->stat_lock);
5b04c689 330 sbinfo->free_inodes++;
bf11b9a8 331 raw_spin_unlock(&sbinfo->stat_lock);
5b04c689
PE
332 }
333}
334
46711810 335/**
41ffe5d5 336 * shmem_recalc_inode - recalculate the block usage of an inode
1da177e4
LT
337 * @inode: inode to recalc
338 *
339 * We have to calculate the free blocks since the mm can drop
340 * undirtied hole pages behind our back.
341 *
342 * But normally info->alloced == inode->i_mapping->nrpages + info->swapped
343 * So mm freed is info->alloced - (inode->i_mapping->nrpages + info->swapped)
344 *
345 * It has to be called with the spinlock held.
346 */
347static void shmem_recalc_inode(struct inode *inode)
348{
349 struct shmem_inode_info *info = SHMEM_I(inode);
350 long freed;
351
352 freed = info->alloced - info->swapped - inode->i_mapping->nrpages;
353 if (freed > 0) {
354 info->alloced -= freed;
54af6042 355 inode->i_blocks -= freed * BLOCKS_PER_PAGE;
0f079694 356 shmem_inode_unacct_blocks(inode, freed);
1da177e4
LT
357 }
358}
359
800d8c63
KS
360bool shmem_charge(struct inode *inode, long pages)
361{
362 struct shmem_inode_info *info = SHMEM_I(inode);
4595ef88 363 unsigned long flags;
800d8c63 364
0f079694 365 if (!shmem_inode_acct_block(inode, pages))
800d8c63 366 return false;
b1cc94ab 367
aaa52e34
HD
368 /* nrpages adjustment first, then shmem_recalc_inode() when balanced */
369 inode->i_mapping->nrpages += pages;
370
4595ef88 371 spin_lock_irqsave(&info->lock, flags);
800d8c63
KS
372 info->alloced += pages;
373 inode->i_blocks += pages * BLOCKS_PER_PAGE;
374 shmem_recalc_inode(inode);
4595ef88 375 spin_unlock_irqrestore(&info->lock, flags);
800d8c63 376
800d8c63
KS
377 return true;
378}
379
380void shmem_uncharge(struct inode *inode, long pages)
381{
382 struct shmem_inode_info *info = SHMEM_I(inode);
4595ef88 383 unsigned long flags;
800d8c63 384
6ffcd825 385 /* nrpages adjustment done by __filemap_remove_folio() or caller */
aaa52e34 386
4595ef88 387 spin_lock_irqsave(&info->lock, flags);
800d8c63
KS
388 info->alloced -= pages;
389 inode->i_blocks -= pages * BLOCKS_PER_PAGE;
390 shmem_recalc_inode(inode);
4595ef88 391 spin_unlock_irqrestore(&info->lock, flags);
800d8c63 392
0f079694 393 shmem_inode_unacct_blocks(inode, pages);
800d8c63
KS
394}
395
7a5d0fbb 396/*
62f945b6 397 * Replace item expected in xarray by a new item, while holding xa_lock.
7a5d0fbb 398 */
62f945b6 399static int shmem_replace_entry(struct address_space *mapping,
7a5d0fbb
HD
400 pgoff_t index, void *expected, void *replacement)
401{
62f945b6 402 XA_STATE(xas, &mapping->i_pages, index);
6dbaf22c 403 void *item;
7a5d0fbb
HD
404
405 VM_BUG_ON(!expected);
6dbaf22c 406 VM_BUG_ON(!replacement);
62f945b6 407 item = xas_load(&xas);
7a5d0fbb
HD
408 if (item != expected)
409 return -ENOENT;
62f945b6 410 xas_store(&xas, replacement);
7a5d0fbb
HD
411 return 0;
412}
413
d1899228
HD
414/*
415 * Sometimes, before we decide whether to proceed or to fail, we must check
416 * that an entry was not already brought back from swap by a racing thread.
417 *
418 * Checking page is not enough: by the time a SwapCache page is locked, it
419 * might be reused, and again be SwapCache, using the same swap as before.
420 */
421static bool shmem_confirm_swap(struct address_space *mapping,
422 pgoff_t index, swp_entry_t swap)
423{
a12831bf 424 return xa_load(&mapping->i_pages, index) == swp_to_radix_entry(swap);
d1899228
HD
425}
426
5a6e75f8
KS
427/*
428 * Definitions for "huge tmpfs": tmpfs mounted with the huge= option
429 *
430 * SHMEM_HUGE_NEVER:
431 * disables huge pages for the mount;
432 * SHMEM_HUGE_ALWAYS:
433 * enables huge pages for the mount;
434 * SHMEM_HUGE_WITHIN_SIZE:
435 * only allocate huge pages if the page will be fully within i_size,
436 * also respect fadvise()/madvise() hints;
437 * SHMEM_HUGE_ADVISE:
438 * only allocate huge pages if requested with fadvise()/madvise();
439 */
440
441#define SHMEM_HUGE_NEVER 0
442#define SHMEM_HUGE_ALWAYS 1
443#define SHMEM_HUGE_WITHIN_SIZE 2
444#define SHMEM_HUGE_ADVISE 3
445
446/*
447 * Special values.
448 * Only can be set via /sys/kernel/mm/transparent_hugepage/shmem_enabled:
449 *
450 * SHMEM_HUGE_DENY:
451 * disables huge on shm_mnt and all mounts, for emergency use;
452 * SHMEM_HUGE_FORCE:
453 * enables huge on shm_mnt and all mounts, w/o needing option, for testing;
454 *
455 */
456#define SHMEM_HUGE_DENY (-1)
457#define SHMEM_HUGE_FORCE (-2)
458
396bcc52 459#ifdef CONFIG_TRANSPARENT_HUGEPAGE
5a6e75f8
KS
460/* ifdef here to avoid bloating shmem.o when not necessary */
461
5e6e5a12 462static int shmem_huge __read_mostly = SHMEM_HUGE_NEVER;
5a6e75f8 463
5e6e5a12
HD
464bool shmem_is_huge(struct vm_area_struct *vma,
465 struct inode *inode, pgoff_t index)
c852023e 466{
c852023e 467 loff_t i_size;
c852023e 468
f7cd16a5
XR
469 if (!S_ISREG(inode->i_mode))
470 return false;
c852023e
HD
471 if (shmem_huge == SHMEM_HUGE_DENY)
472 return false;
5e6e5a12
HD
473 if (vma && ((vma->vm_flags & VM_NOHUGEPAGE) ||
474 test_bit(MMF_DISABLE_THP, &vma->vm_mm->flags)))
c852023e 475 return false;
5e6e5a12
HD
476 if (shmem_huge == SHMEM_HUGE_FORCE)
477 return true;
478
479 switch (SHMEM_SB(inode->i_sb)->huge) {
c852023e
HD
480 case SHMEM_HUGE_ALWAYS:
481 return true;
482 case SHMEM_HUGE_WITHIN_SIZE:
de6ee659 483 index = round_up(index + 1, HPAGE_PMD_NR);
c852023e 484 i_size = round_up(i_size_read(inode), PAGE_SIZE);
de6ee659 485 if (i_size >> PAGE_SHIFT >= index)
c852023e
HD
486 return true;
487 fallthrough;
488 case SHMEM_HUGE_ADVISE:
5e6e5a12
HD
489 if (vma && (vma->vm_flags & VM_HUGEPAGE))
490 return true;
491 fallthrough;
c852023e 492 default:
c852023e
HD
493 return false;
494 }
495}
5a6e75f8 496
e5f2249a 497#if defined(CONFIG_SYSFS)
5a6e75f8
KS
498static int shmem_parse_huge(const char *str)
499{
500 if (!strcmp(str, "never"))
501 return SHMEM_HUGE_NEVER;
502 if (!strcmp(str, "always"))
503 return SHMEM_HUGE_ALWAYS;
504 if (!strcmp(str, "within_size"))
505 return SHMEM_HUGE_WITHIN_SIZE;
506 if (!strcmp(str, "advise"))
507 return SHMEM_HUGE_ADVISE;
508 if (!strcmp(str, "deny"))
509 return SHMEM_HUGE_DENY;
510 if (!strcmp(str, "force"))
511 return SHMEM_HUGE_FORCE;
512 return -EINVAL;
513}
e5f2249a 514#endif
5a6e75f8 515
e5f2249a 516#if defined(CONFIG_SYSFS) || defined(CONFIG_TMPFS)
5a6e75f8
KS
517static const char *shmem_format_huge(int huge)
518{
519 switch (huge) {
520 case SHMEM_HUGE_NEVER:
521 return "never";
522 case SHMEM_HUGE_ALWAYS:
523 return "always";
524 case SHMEM_HUGE_WITHIN_SIZE:
525 return "within_size";
526 case SHMEM_HUGE_ADVISE:
527 return "advise";
528 case SHMEM_HUGE_DENY:
529 return "deny";
530 case SHMEM_HUGE_FORCE:
531 return "force";
532 default:
533 VM_BUG_ON(1);
534 return "bad_val";
535 }
536}
f1f5929c 537#endif
5a6e75f8 538
779750d2
KS
539static unsigned long shmem_unused_huge_shrink(struct shmem_sb_info *sbinfo,
540 struct shrink_control *sc, unsigned long nr_to_split)
541{
542 LIST_HEAD(list), *pos, *next;
253fd0f0 543 LIST_HEAD(to_remove);
779750d2
KS
544 struct inode *inode;
545 struct shmem_inode_info *info;
05624571 546 struct folio *folio;
779750d2 547 unsigned long batch = sc ? sc->nr_to_scan : 128;
62c9827c 548 int split = 0;
779750d2
KS
549
550 if (list_empty(&sbinfo->shrinklist))
551 return SHRINK_STOP;
552
553 spin_lock(&sbinfo->shrinklist_lock);
554 list_for_each_safe(pos, next, &sbinfo->shrinklist) {
555 info = list_entry(pos, struct shmem_inode_info, shrinklist);
556
557 /* pin the inode */
558 inode = igrab(&info->vfs_inode);
559
560 /* inode is about to be evicted */
561 if (!inode) {
562 list_del_init(&info->shrinklist);
779750d2
KS
563 goto next;
564 }
565
566 /* Check if there's anything to gain */
567 if (round_up(inode->i_size, PAGE_SIZE) ==
568 round_up(inode->i_size, HPAGE_PMD_SIZE)) {
253fd0f0 569 list_move(&info->shrinklist, &to_remove);
779750d2
KS
570 goto next;
571 }
572
573 list_move(&info->shrinklist, &list);
574next:
62c9827c 575 sbinfo->shrinklist_len--;
779750d2
KS
576 if (!--batch)
577 break;
578 }
579 spin_unlock(&sbinfo->shrinklist_lock);
580
253fd0f0
KS
581 list_for_each_safe(pos, next, &to_remove) {
582 info = list_entry(pos, struct shmem_inode_info, shrinklist);
583 inode = &info->vfs_inode;
584 list_del_init(&info->shrinklist);
585 iput(inode);
586 }
587
779750d2
KS
588 list_for_each_safe(pos, next, &list) {
589 int ret;
05624571 590 pgoff_t index;
779750d2
KS
591
592 info = list_entry(pos, struct shmem_inode_info, shrinklist);
593 inode = &info->vfs_inode;
594
b3cd54b2 595 if (nr_to_split && split >= nr_to_split)
62c9827c 596 goto move_back;
779750d2 597
05624571
MWO
598 index = (inode->i_size & HPAGE_PMD_MASK) >> PAGE_SHIFT;
599 folio = filemap_get_folio(inode->i_mapping, index);
600 if (!folio)
779750d2
KS
601 goto drop;
602
b3cd54b2 603 /* No huge page at the end of the file: nothing to split */
05624571
MWO
604 if (!folio_test_large(folio)) {
605 folio_put(folio);
779750d2
KS
606 goto drop;
607 }
608
b3cd54b2 609 /*
62c9827c
GL
610 * Move the inode on the list back to shrinklist if we failed
611 * to lock the page at this time.
b3cd54b2
KS
612 *
613 * Waiting for the lock may lead to deadlock in the
614 * reclaim path.
615 */
05624571
MWO
616 if (!folio_trylock(folio)) {
617 folio_put(folio);
62c9827c 618 goto move_back;
b3cd54b2
KS
619 }
620
d788f5b3 621 ret = split_folio(folio);
05624571
MWO
622 folio_unlock(folio);
623 folio_put(folio);
779750d2 624
62c9827c 625 /* If split failed move the inode on the list back to shrinklist */
b3cd54b2 626 if (ret)
62c9827c 627 goto move_back;
779750d2
KS
628
629 split++;
630drop:
631 list_del_init(&info->shrinklist);
62c9827c
GL
632 goto put;
633move_back:
634 /*
635 * Make sure the inode is either on the global list or deleted
636 * from any local list before iput() since it could be deleted
637 * in another thread once we put the inode (then the local list
638 * is corrupted).
639 */
640 spin_lock(&sbinfo->shrinklist_lock);
641 list_move(&info->shrinklist, &sbinfo->shrinklist);
642 sbinfo->shrinklist_len++;
643 spin_unlock(&sbinfo->shrinklist_lock);
644put:
779750d2
KS
645 iput(inode);
646 }
647
779750d2
KS
648 return split;
649}
650
651static long shmem_unused_huge_scan(struct super_block *sb,
652 struct shrink_control *sc)
653{
654 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
655
656 if (!READ_ONCE(sbinfo->shrinklist_len))
657 return SHRINK_STOP;
658
659 return shmem_unused_huge_shrink(sbinfo, sc, 0);
660}
661
662static long shmem_unused_huge_count(struct super_block *sb,
663 struct shrink_control *sc)
664{
665 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
666 return READ_ONCE(sbinfo->shrinklist_len);
667}
396bcc52 668#else /* !CONFIG_TRANSPARENT_HUGEPAGE */
5a6e75f8
KS
669
670#define shmem_huge SHMEM_HUGE_DENY
671
5e6e5a12
HD
672bool shmem_is_huge(struct vm_area_struct *vma,
673 struct inode *inode, pgoff_t index)
674{
675 return false;
676}
677
779750d2
KS
678static unsigned long shmem_unused_huge_shrink(struct shmem_sb_info *sbinfo,
679 struct shrink_control *sc, unsigned long nr_to_split)
680{
681 return 0;
682}
396bcc52 683#endif /* CONFIG_TRANSPARENT_HUGEPAGE */
5a6e75f8 684
46f65ec1 685/*
2bb876b5 686 * Like filemap_add_folio, but error if expected item has gone.
46f65ec1 687 */
b7dd44a1 688static int shmem_add_to_page_cache(struct folio *folio,
46f65ec1 689 struct address_space *mapping,
3fea5a49
JW
690 pgoff_t index, void *expected, gfp_t gfp,
691 struct mm_struct *charge_mm)
46f65ec1 692{
b7dd44a1
MWO
693 XA_STATE_ORDER(xas, &mapping->i_pages, index, folio_order(folio));
694 long nr = folio_nr_pages(folio);
3fea5a49 695 int error;
46f65ec1 696
b7dd44a1
MWO
697 VM_BUG_ON_FOLIO(index != round_down(index, nr), folio);
698 VM_BUG_ON_FOLIO(!folio_test_locked(folio), folio);
699 VM_BUG_ON_FOLIO(!folio_test_swapbacked(folio), folio);
700 VM_BUG_ON(expected && folio_test_large(folio));
46f65ec1 701
b7dd44a1
MWO
702 folio_ref_add(folio, nr);
703 folio->mapping = mapping;
704 folio->index = index;
b065b432 705
b7dd44a1
MWO
706 if (!folio_test_swapcache(folio)) {
707 error = mem_cgroup_charge(folio, charge_mm, gfp);
4c6355b2 708 if (error) {
b7dd44a1 709 if (folio_test_pmd_mappable(folio)) {
4c6355b2
JW
710 count_vm_event(THP_FILE_FALLBACK);
711 count_vm_event(THP_FILE_FALLBACK_CHARGE);
712 }
713 goto error;
3fea5a49 714 }
3fea5a49 715 }
b7dd44a1 716 folio_throttle_swaprate(folio, gfp);
3fea5a49 717
552446a4 718 do {
552446a4 719 xas_lock_irq(&xas);
6b24ca4a
MWO
720 if (expected != xas_find_conflict(&xas)) {
721 xas_set_err(&xas, -EEXIST);
722 goto unlock;
723 }
724 if (expected && xas_find_conflict(&xas)) {
552446a4 725 xas_set_err(&xas, -EEXIST);
552446a4 726 goto unlock;
800d8c63 727 }
b7dd44a1 728 xas_store(&xas, folio);
6b24ca4a
MWO
729 if (xas_error(&xas))
730 goto unlock;
b7dd44a1 731 if (folio_test_pmd_mappable(folio)) {
800d8c63 732 count_vm_event(THP_FILE_ALLOC);
b7dd44a1 733 __lruvec_stat_mod_folio(folio, NR_SHMEM_THPS, nr);
800d8c63 734 }
800d8c63 735 mapping->nrpages += nr;
b7dd44a1
MWO
736 __lruvec_stat_mod_folio(folio, NR_FILE_PAGES, nr);
737 __lruvec_stat_mod_folio(folio, NR_SHMEM, nr);
552446a4
MW
738unlock:
739 xas_unlock_irq(&xas);
740 } while (xas_nomem(&xas, gfp));
741
742 if (xas_error(&xas)) {
3fea5a49
JW
743 error = xas_error(&xas);
744 goto error;
46f65ec1 745 }
552446a4
MW
746
747 return 0;
3fea5a49 748error:
b7dd44a1
MWO
749 folio->mapping = NULL;
750 folio_ref_sub(folio, nr);
3fea5a49 751 return error;
46f65ec1
HD
752}
753
6922c0c7 754/*
4cd400fd 755 * Like delete_from_page_cache, but substitutes swap for @folio.
6922c0c7 756 */
4cd400fd 757static void shmem_delete_from_page_cache(struct folio *folio, void *radswap)
6922c0c7 758{
4cd400fd
MWO
759 struct address_space *mapping = folio->mapping;
760 long nr = folio_nr_pages(folio);
6922c0c7
HD
761 int error;
762
b93b0163 763 xa_lock_irq(&mapping->i_pages);
4cd400fd
MWO
764 error = shmem_replace_entry(mapping, folio->index, folio, radswap);
765 folio->mapping = NULL;
766 mapping->nrpages -= nr;
767 __lruvec_stat_mod_folio(folio, NR_FILE_PAGES, -nr);
768 __lruvec_stat_mod_folio(folio, NR_SHMEM, -nr);
b93b0163 769 xa_unlock_irq(&mapping->i_pages);
4cd400fd 770 folio_put(folio);
6922c0c7
HD
771 BUG_ON(error);
772}
773
7a5d0fbb 774/*
c121d3bb 775 * Remove swap entry from page cache, free the swap and its page cache.
7a5d0fbb
HD
776 */
777static int shmem_free_swap(struct address_space *mapping,
778 pgoff_t index, void *radswap)
779{
6dbaf22c 780 void *old;
7a5d0fbb 781
55f3f7ea 782 old = xa_cmpxchg_irq(&mapping->i_pages, index, radswap, NULL, 0);
6dbaf22c
JW
783 if (old != radswap)
784 return -ENOENT;
785 free_swap_and_cache(radix_to_swp_entry(radswap));
786 return 0;
7a5d0fbb
HD
787}
788
6a15a370
VB
789/*
790 * Determine (in bytes) how many of the shmem object's pages mapped by the
48131e03 791 * given offsets are swapped out.
6a15a370 792 *
9608703e 793 * This is safe to call without i_rwsem or the i_pages lock thanks to RCU,
6a15a370
VB
794 * as long as the inode doesn't go away and racy results are not a problem.
795 */
48131e03
VB
796unsigned long shmem_partial_swap_usage(struct address_space *mapping,
797 pgoff_t start, pgoff_t end)
6a15a370 798{
7ae3424f 799 XA_STATE(xas, &mapping->i_pages, start);
6a15a370 800 struct page *page;
48131e03 801 unsigned long swapped = 0;
6a15a370
VB
802
803 rcu_read_lock();
7ae3424f
MW
804 xas_for_each(&xas, page, end - 1) {
805 if (xas_retry(&xas, page))
2cf938aa 806 continue;
3159f943 807 if (xa_is_value(page))
6a15a370
VB
808 swapped++;
809
810 if (need_resched()) {
7ae3424f 811 xas_pause(&xas);
6a15a370 812 cond_resched_rcu();
6a15a370
VB
813 }
814 }
815
816 rcu_read_unlock();
817
818 return swapped << PAGE_SHIFT;
819}
820
48131e03
VB
821/*
822 * Determine (in bytes) how many of the shmem object's pages mapped by the
823 * given vma is swapped out.
824 *
9608703e 825 * This is safe to call without i_rwsem or the i_pages lock thanks to RCU,
48131e03
VB
826 * as long as the inode doesn't go away and racy results are not a problem.
827 */
828unsigned long shmem_swap_usage(struct vm_area_struct *vma)
829{
830 struct inode *inode = file_inode(vma->vm_file);
831 struct shmem_inode_info *info = SHMEM_I(inode);
832 struct address_space *mapping = inode->i_mapping;
833 unsigned long swapped;
834
835 /* Be careful as we don't hold info->lock */
836 swapped = READ_ONCE(info->swapped);
837
838 /*
839 * The easier cases are when the shmem object has nothing in swap, or
840 * the vma maps it whole. Then we can simply use the stats that we
841 * already track.
842 */
843 if (!swapped)
844 return 0;
845
846 if (!vma->vm_pgoff && vma->vm_end - vma->vm_start >= inode->i_size)
847 return swapped << PAGE_SHIFT;
848
849 /* Here comes the more involved part */
02399c88
PX
850 return shmem_partial_swap_usage(mapping, vma->vm_pgoff,
851 vma->vm_pgoff + vma_pages(vma));
48131e03
VB
852}
853
24513264
HD
854/*
855 * SysV IPC SHM_UNLOCK restore Unevictable pages to their evictable lists.
856 */
857void shmem_unlock_mapping(struct address_space *mapping)
858{
105c988f 859 struct folio_batch fbatch;
24513264
HD
860 pgoff_t index = 0;
861
105c988f 862 folio_batch_init(&fbatch);
24513264
HD
863 /*
864 * Minor point, but we might as well stop if someone else SHM_LOCKs it.
865 */
105c988f
MWO
866 while (!mapping_unevictable(mapping) &&
867 filemap_get_folios(mapping, &index, ~0UL, &fbatch)) {
868 check_move_unevictable_folios(&fbatch);
869 folio_batch_release(&fbatch);
24513264
HD
870 cond_resched();
871 }
7a5d0fbb
HD
872}
873
b9a8a419 874static struct folio *shmem_get_partial_folio(struct inode *inode, pgoff_t index)
71725ed1 875{
b9a8a419 876 struct folio *folio;
71725ed1 877
b9a8a419 878 /*
a7f5862c 879 * At first avoid shmem_get_folio(,,,SGP_READ): that fails
b9a8a419
MWO
880 * beyond i_size, and reports fallocated pages as holes.
881 */
882 folio = __filemap_get_folio(inode->i_mapping, index,
883 FGP_ENTRY | FGP_LOCK, 0);
884 if (!xa_is_value(folio))
885 return folio;
886 /*
887 * But read a page back from swap if any of it is within i_size
888 * (although in some cases this is just a waste of time).
889 */
a7f5862c
MWO
890 folio = NULL;
891 shmem_get_folio(inode, index, &folio, SGP_READ);
892 return folio;
71725ed1
HD
893}
894
7a5d0fbb 895/*
7f4446ee 896 * Remove range of pages and swap entries from page cache, and free them.
1635f6a7 897 * If !unfalloc, truncate or punch hole; if unfalloc, undo failed fallocate.
7a5d0fbb 898 */
1635f6a7
HD
899static void shmem_undo_range(struct inode *inode, loff_t lstart, loff_t lend,
900 bool unfalloc)
1da177e4 901{
285b2c4f 902 struct address_space *mapping = inode->i_mapping;
1da177e4 903 struct shmem_inode_info *info = SHMEM_I(inode);
09cbfeaf
KS
904 pgoff_t start = (lstart + PAGE_SIZE - 1) >> PAGE_SHIFT;
905 pgoff_t end = (lend + 1) >> PAGE_SHIFT;
0e499ed3 906 struct folio_batch fbatch;
7a5d0fbb 907 pgoff_t indices[PAGEVEC_SIZE];
b9a8a419
MWO
908 struct folio *folio;
909 bool same_folio;
7a5d0fbb 910 long nr_swaps_freed = 0;
285b2c4f 911 pgoff_t index;
bda97eab
HD
912 int i;
913
83e4fa9c
HD
914 if (lend == -1)
915 end = -1; /* unsigned, so actually very big */
bda97eab 916
d144bf62
HD
917 if (info->fallocend > start && info->fallocend <= end && !unfalloc)
918 info->fallocend = start;
919
51dcbdac 920 folio_batch_init(&fbatch);
bda97eab 921 index = start;
5c211ba2 922 while (index < end && find_lock_entries(mapping, index, end - 1,
51dcbdac
MWO
923 &fbatch, indices)) {
924 for (i = 0; i < folio_batch_count(&fbatch); i++) {
b9a8a419 925 folio = fbatch.folios[i];
bda97eab 926
7a5d0fbb 927 index = indices[i];
bda97eab 928
7b774aab 929 if (xa_is_value(folio)) {
1635f6a7
HD
930 if (unfalloc)
931 continue;
7a5d0fbb 932 nr_swaps_freed += !shmem_free_swap(mapping,
7b774aab 933 index, folio);
bda97eab 934 continue;
7a5d0fbb 935 }
7b774aab 936 index += folio_nr_pages(folio) - 1;
7a5d0fbb 937
7b774aab 938 if (!unfalloc || !folio_test_uptodate(folio))
1e84a3d9 939 truncate_inode_folio(mapping, folio);
7b774aab 940 folio_unlock(folio);
bda97eab 941 }
51dcbdac
MWO
942 folio_batch_remove_exceptionals(&fbatch);
943 folio_batch_release(&fbatch);
bda97eab
HD
944 cond_resched();
945 index++;
946 }
1da177e4 947
b9a8a419
MWO
948 same_folio = (lstart >> PAGE_SHIFT) == (lend >> PAGE_SHIFT);
949 folio = shmem_get_partial_folio(inode, lstart >> PAGE_SHIFT);
950 if (folio) {
951 same_folio = lend < folio_pos(folio) + folio_size(folio);
952 folio_mark_dirty(folio);
953 if (!truncate_inode_partial_folio(folio, lstart, lend)) {
954 start = folio->index + folio_nr_pages(folio);
955 if (same_folio)
956 end = folio->index;
83e4fa9c 957 }
b9a8a419
MWO
958 folio_unlock(folio);
959 folio_put(folio);
960 folio = NULL;
83e4fa9c 961 }
b9a8a419
MWO
962
963 if (!same_folio)
964 folio = shmem_get_partial_folio(inode, lend >> PAGE_SHIFT);
965 if (folio) {
966 folio_mark_dirty(folio);
967 if (!truncate_inode_partial_folio(folio, lstart, lend))
968 end = folio->index;
969 folio_unlock(folio);
970 folio_put(folio);
bda97eab
HD
971 }
972
973 index = start;
b1a36650 974 while (index < end) {
bda97eab 975 cond_resched();
0cd6144a 976
0e499ed3 977 if (!find_get_entries(mapping, index, end - 1, &fbatch,
cf2039af 978 indices)) {
b1a36650
HD
979 /* If all gone or hole-punch or unfalloc, we're done */
980 if (index == start || end != -1)
bda97eab 981 break;
b1a36650 982 /* But if truncating, restart to make sure all gone */
bda97eab
HD
983 index = start;
984 continue;
985 }
0e499ed3 986 for (i = 0; i < folio_batch_count(&fbatch); i++) {
b9a8a419 987 folio = fbatch.folios[i];
bda97eab 988
7a5d0fbb 989 index = indices[i];
0e499ed3 990 if (xa_is_value(folio)) {
1635f6a7
HD
991 if (unfalloc)
992 continue;
0e499ed3 993 if (shmem_free_swap(mapping, index, folio)) {
b1a36650
HD
994 /* Swap was replaced by page: retry */
995 index--;
996 break;
997 }
998 nr_swaps_freed++;
7a5d0fbb
HD
999 continue;
1000 }
1001
0e499ed3 1002 folio_lock(folio);
800d8c63 1003
0e499ed3 1004 if (!unfalloc || !folio_test_uptodate(folio)) {
0e499ed3 1005 if (folio_mapping(folio) != mapping) {
b1a36650 1006 /* Page was replaced by swap: retry */
0e499ed3 1007 folio_unlock(folio);
b1a36650
HD
1008 index--;
1009 break;
1635f6a7 1010 }
0e499ed3
MWO
1011 VM_BUG_ON_FOLIO(folio_test_writeback(folio),
1012 folio);
b9a8a419 1013 truncate_inode_folio(mapping, folio);
7a5d0fbb 1014 }
b9a8a419 1015 index = folio->index + folio_nr_pages(folio) - 1;
0e499ed3 1016 folio_unlock(folio);
bda97eab 1017 }
0e499ed3
MWO
1018 folio_batch_remove_exceptionals(&fbatch);
1019 folio_batch_release(&fbatch);
bda97eab
HD
1020 index++;
1021 }
94c1e62d 1022
4595ef88 1023 spin_lock_irq(&info->lock);
7a5d0fbb 1024 info->swapped -= nr_swaps_freed;
1da177e4 1025 shmem_recalc_inode(inode);
4595ef88 1026 spin_unlock_irq(&info->lock);
1635f6a7 1027}
1da177e4 1028
1635f6a7
HD
1029void shmem_truncate_range(struct inode *inode, loff_t lstart, loff_t lend)
1030{
1031 shmem_undo_range(inode, lstart, lend, false);
078cd827 1032 inode->i_ctime = inode->i_mtime = current_time(inode);
1da177e4 1033}
94c1e62d 1034EXPORT_SYMBOL_GPL(shmem_truncate_range);
1da177e4 1035
549c7297
CB
1036static int shmem_getattr(struct user_namespace *mnt_userns,
1037 const struct path *path, struct kstat *stat,
a528d35e 1038 u32 request_mask, unsigned int query_flags)
44a30220 1039{
a528d35e 1040 struct inode *inode = path->dentry->d_inode;
44a30220
YZ
1041 struct shmem_inode_info *info = SHMEM_I(inode);
1042
d0424c42 1043 if (info->alloced - info->swapped != inode->i_mapping->nrpages) {
4595ef88 1044 spin_lock_irq(&info->lock);
d0424c42 1045 shmem_recalc_inode(inode);
4595ef88 1046 spin_unlock_irq(&info->lock);
d0424c42 1047 }
e408e695
TT
1048 if (info->fsflags & FS_APPEND_FL)
1049 stat->attributes |= STATX_ATTR_APPEND;
1050 if (info->fsflags & FS_IMMUTABLE_FL)
1051 stat->attributes |= STATX_ATTR_IMMUTABLE;
1052 if (info->fsflags & FS_NODUMP_FL)
1053 stat->attributes |= STATX_ATTR_NODUMP;
1054 stat->attributes_mask |= (STATX_ATTR_APPEND |
1055 STATX_ATTR_IMMUTABLE |
1056 STATX_ATTR_NODUMP);
0d56a451 1057 generic_fillattr(&init_user_ns, inode, stat);
89fdcd26 1058
a7fddc36 1059 if (shmem_is_huge(NULL, inode, 0))
89fdcd26
YS
1060 stat->blksize = HPAGE_PMD_SIZE;
1061
f7cd16a5
XR
1062 if (request_mask & STATX_BTIME) {
1063 stat->result_mask |= STATX_BTIME;
1064 stat->btime.tv_sec = info->i_crtime.tv_sec;
1065 stat->btime.tv_nsec = info->i_crtime.tv_nsec;
1066 }
1067
44a30220
YZ
1068 return 0;
1069}
1070
549c7297
CB
1071static int shmem_setattr(struct user_namespace *mnt_userns,
1072 struct dentry *dentry, struct iattr *attr)
1da177e4 1073{
75c3cfa8 1074 struct inode *inode = d_inode(dentry);
40e041a2 1075 struct shmem_inode_info *info = SHMEM_I(inode);
1da177e4
LT
1076 int error;
1077
2f221d6f 1078 error = setattr_prepare(&init_user_ns, dentry, attr);
db78b877
CH
1079 if (error)
1080 return error;
1081
94c1e62d
HD
1082 if (S_ISREG(inode->i_mode) && (attr->ia_valid & ATTR_SIZE)) {
1083 loff_t oldsize = inode->i_size;
1084 loff_t newsize = attr->ia_size;
3889e6e7 1085
9608703e 1086 /* protected by i_rwsem */
40e041a2
DR
1087 if ((newsize < oldsize && (info->seals & F_SEAL_SHRINK)) ||
1088 (newsize > oldsize && (info->seals & F_SEAL_GROW)))
1089 return -EPERM;
1090
94c1e62d 1091 if (newsize != oldsize) {
77142517
KK
1092 error = shmem_reacct_size(SHMEM_I(inode)->flags,
1093 oldsize, newsize);
1094 if (error)
1095 return error;
94c1e62d 1096 i_size_write(inode, newsize);
078cd827 1097 inode->i_ctime = inode->i_mtime = current_time(inode);
94c1e62d 1098 }
afa2db2f 1099 if (newsize <= oldsize) {
94c1e62d 1100 loff_t holebegin = round_up(newsize, PAGE_SIZE);
d0424c42
HD
1101 if (oldsize > holebegin)
1102 unmap_mapping_range(inode->i_mapping,
1103 holebegin, 0, 1);
1104 if (info->alloced)
1105 shmem_truncate_range(inode,
1106 newsize, (loff_t)-1);
94c1e62d 1107 /* unmap again to remove racily COWed private pages */
d0424c42
HD
1108 if (oldsize > holebegin)
1109 unmap_mapping_range(inode->i_mapping,
1110 holebegin, 0, 1);
94c1e62d 1111 }
1da177e4
LT
1112 }
1113
2f221d6f 1114 setattr_copy(&init_user_ns, inode, attr);
db78b877 1115 if (attr->ia_valid & ATTR_MODE)
e65ce2a5 1116 error = posix_acl_chmod(&init_user_ns, inode, inode->i_mode);
1da177e4
LT
1117 return error;
1118}
1119
1f895f75 1120static void shmem_evict_inode(struct inode *inode)
1da177e4 1121{
1da177e4 1122 struct shmem_inode_info *info = SHMEM_I(inode);
779750d2 1123 struct shmem_sb_info *sbinfo = SHMEM_SB(inode->i_sb);
1da177e4 1124
30e6a51d 1125 if (shmem_mapping(inode->i_mapping)) {
1da177e4
LT
1126 shmem_unacct_size(info->flags, inode->i_size);
1127 inode->i_size = 0;
bc786390 1128 mapping_set_exiting(inode->i_mapping);
3889e6e7 1129 shmem_truncate_range(inode, 0, (loff_t)-1);
779750d2
KS
1130 if (!list_empty(&info->shrinklist)) {
1131 spin_lock(&sbinfo->shrinklist_lock);
1132 if (!list_empty(&info->shrinklist)) {
1133 list_del_init(&info->shrinklist);
1134 sbinfo->shrinklist_len--;
1135 }
1136 spin_unlock(&sbinfo->shrinklist_lock);
1137 }
af53d3e9
HD
1138 while (!list_empty(&info->swaplist)) {
1139 /* Wait while shmem_unuse() is scanning this inode... */
1140 wait_var_event(&info->stop_eviction,
1141 !atomic_read(&info->stop_eviction));
cb5f7b9a 1142 mutex_lock(&shmem_swaplist_mutex);
af53d3e9
HD
1143 /* ...but beware of the race if we peeked too early */
1144 if (!atomic_read(&info->stop_eviction))
1145 list_del_init(&info->swaplist);
cb5f7b9a 1146 mutex_unlock(&shmem_swaplist_mutex);
1da177e4 1147 }
3ed47db3 1148 }
b09e0fa4 1149
38f38657 1150 simple_xattrs_free(&info->xattrs);
0f3c42f5 1151 WARN_ON(inode->i_blocks);
5b04c689 1152 shmem_free_inode(inode->i_sb);
dbd5768f 1153 clear_inode(inode);
1da177e4
LT
1154}
1155
b56a2d8a 1156static int shmem_find_swap_entries(struct address_space *mapping,
da08e9b7
MWO
1157 pgoff_t start, struct folio_batch *fbatch,
1158 pgoff_t *indices, unsigned int type)
478922e2 1159{
b56a2d8a 1160 XA_STATE(xas, &mapping->i_pages, start);
da08e9b7 1161 struct folio *folio;
87039546 1162 swp_entry_t entry;
478922e2
MW
1163
1164 rcu_read_lock();
da08e9b7
MWO
1165 xas_for_each(&xas, folio, ULONG_MAX) {
1166 if (xas_retry(&xas, folio))
5b9c98f3 1167 continue;
b56a2d8a 1168
da08e9b7 1169 if (!xa_is_value(folio))
478922e2 1170 continue;
b56a2d8a 1171
da08e9b7 1172 entry = radix_to_swp_entry(folio);
6cec2b95
ML
1173 /*
1174 * swapin error entries can be found in the mapping. But they're
1175 * deliberately ignored here as we've done everything we can do.
1176 */
87039546
HD
1177 if (swp_type(entry) != type)
1178 continue;
b56a2d8a 1179
e384200e 1180 indices[folio_batch_count(fbatch)] = xas.xa_index;
da08e9b7
MWO
1181 if (!folio_batch_add(fbatch, folio))
1182 break;
b56a2d8a
VRP
1183
1184 if (need_resched()) {
1185 xas_pause(&xas);
1186 cond_resched_rcu();
1187 }
478922e2 1188 }
478922e2 1189 rcu_read_unlock();
e21a2955 1190
da08e9b7 1191 return xas.xa_index;
478922e2
MW
1192}
1193
46f65ec1 1194/*
b56a2d8a
VRP
1195 * Move the swapped pages for an inode to page cache. Returns the count
1196 * of pages swapped in, or the error in case of failure.
46f65ec1 1197 */
da08e9b7
MWO
1198static int shmem_unuse_swap_entries(struct inode *inode,
1199 struct folio_batch *fbatch, pgoff_t *indices)
1da177e4 1200{
b56a2d8a
VRP
1201 int i = 0;
1202 int ret = 0;
bde05d1c 1203 int error = 0;
b56a2d8a 1204 struct address_space *mapping = inode->i_mapping;
1da177e4 1205
da08e9b7
MWO
1206 for (i = 0; i < folio_batch_count(fbatch); i++) {
1207 struct folio *folio = fbatch->folios[i];
2e0e26c7 1208
da08e9b7 1209 if (!xa_is_value(folio))
b56a2d8a 1210 continue;
da08e9b7
MWO
1211 error = shmem_swapin_folio(inode, indices[i],
1212 &folio, SGP_CACHE,
b56a2d8a
VRP
1213 mapping_gfp_mask(mapping),
1214 NULL, NULL);
1215 if (error == 0) {
da08e9b7
MWO
1216 folio_unlock(folio);
1217 folio_put(folio);
b56a2d8a
VRP
1218 ret++;
1219 }
1220 if (error == -ENOMEM)
1221 break;
1222 error = 0;
bde05d1c 1223 }
b56a2d8a
VRP
1224 return error ? error : ret;
1225}
bde05d1c 1226
b56a2d8a
VRP
1227/*
1228 * If swap found in inode, free it and move page from swapcache to filecache.
1229 */
10a9c496 1230static int shmem_unuse_inode(struct inode *inode, unsigned int type)
b56a2d8a
VRP
1231{
1232 struct address_space *mapping = inode->i_mapping;
1233 pgoff_t start = 0;
da08e9b7 1234 struct folio_batch fbatch;
b56a2d8a 1235 pgoff_t indices[PAGEVEC_SIZE];
b56a2d8a
VRP
1236 int ret = 0;
1237
b56a2d8a 1238 do {
da08e9b7
MWO
1239 folio_batch_init(&fbatch);
1240 shmem_find_swap_entries(mapping, start, &fbatch, indices, type);
1241 if (folio_batch_count(&fbatch) == 0) {
b56a2d8a
VRP
1242 ret = 0;
1243 break;
46f65ec1 1244 }
b56a2d8a 1245
da08e9b7 1246 ret = shmem_unuse_swap_entries(inode, &fbatch, indices);
b56a2d8a
VRP
1247 if (ret < 0)
1248 break;
1249
da08e9b7 1250 start = indices[folio_batch_count(&fbatch) - 1];
b56a2d8a
VRP
1251 } while (true);
1252
1253 return ret;
1da177e4
LT
1254}
1255
1256/*
b56a2d8a
VRP
1257 * Read all the shared memory data that resides in the swap
1258 * device 'type' back into memory, so the swap device can be
1259 * unused.
1da177e4 1260 */
10a9c496 1261int shmem_unuse(unsigned int type)
1da177e4 1262{
b56a2d8a 1263 struct shmem_inode_info *info, *next;
bde05d1c
HD
1264 int error = 0;
1265
b56a2d8a
VRP
1266 if (list_empty(&shmem_swaplist))
1267 return 0;
1268
1269 mutex_lock(&shmem_swaplist_mutex);
b56a2d8a
VRP
1270 list_for_each_entry_safe(info, next, &shmem_swaplist, swaplist) {
1271 if (!info->swapped) {
6922c0c7 1272 list_del_init(&info->swaplist);
b56a2d8a
VRP
1273 continue;
1274 }
af53d3e9
HD
1275 /*
1276 * Drop the swaplist mutex while searching the inode for swap;
1277 * but before doing so, make sure shmem_evict_inode() will not
1278 * remove placeholder inode from swaplist, nor let it be freed
1279 * (igrab() would protect from unlink, but not from unmount).
1280 */
1281 atomic_inc(&info->stop_eviction);
b56a2d8a 1282 mutex_unlock(&shmem_swaplist_mutex);
b56a2d8a 1283
10a9c496 1284 error = shmem_unuse_inode(&info->vfs_inode, type);
cb5f7b9a 1285 cond_resched();
b56a2d8a
VRP
1286
1287 mutex_lock(&shmem_swaplist_mutex);
1288 next = list_next_entry(info, swaplist);
1289 if (!info->swapped)
1290 list_del_init(&info->swaplist);
af53d3e9
HD
1291 if (atomic_dec_and_test(&info->stop_eviction))
1292 wake_up_var(&info->stop_eviction);
b56a2d8a 1293 if (error)
778dd893 1294 break;
1da177e4 1295 }
cb5f7b9a 1296 mutex_unlock(&shmem_swaplist_mutex);
778dd893 1297
778dd893 1298 return error;
1da177e4
LT
1299}
1300
1301/*
1302 * Move the page from the page cache to the swap cache.
1303 */
1304static int shmem_writepage(struct page *page, struct writeback_control *wbc)
1305{
e2e3fdc7 1306 struct folio *folio = page_folio(page);
1da177e4 1307 struct shmem_inode_info *info;
1da177e4 1308 struct address_space *mapping;
1da177e4 1309 struct inode *inode;
6922c0c7
HD
1310 swp_entry_t swap;
1311 pgoff_t index;
1da177e4 1312
1e6decf3
HD
1313 /*
1314 * If /sys/kernel/mm/transparent_hugepage/shmem_enabled is "always" or
1315 * "force", drivers/gpu/drm/i915/gem/i915_gem_shmem.c gets huge pages,
1316 * and its shmem_writeback() needs them to be split when swapping.
1317 */
f530ed0e 1318 if (folio_test_large(folio)) {
1e6decf3 1319 /* Ensure the subpages are still dirty */
f530ed0e 1320 folio_test_set_dirty(folio);
1e6decf3
HD
1321 if (split_huge_page(page) < 0)
1322 goto redirty;
f530ed0e
MWO
1323 folio = page_folio(page);
1324 folio_clear_dirty(folio);
1e6decf3
HD
1325 }
1326
f530ed0e
MWO
1327 BUG_ON(!folio_test_locked(folio));
1328 mapping = folio->mapping;
1329 index = folio->index;
1da177e4
LT
1330 inode = mapping->host;
1331 info = SHMEM_I(inode);
1332 if (info->flags & VM_LOCKED)
1333 goto redirty;
d9fe526a 1334 if (!total_swap_pages)
1da177e4
LT
1335 goto redirty;
1336
d9fe526a 1337 /*
97b713ba
CH
1338 * Our capabilities prevent regular writeback or sync from ever calling
1339 * shmem_writepage; but a stacking filesystem might use ->writepage of
1340 * its underlying filesystem, in which case tmpfs should write out to
1341 * swap only in response to memory pressure, and not for the writeback
1342 * threads or sync.
d9fe526a 1343 */
48f170fb
HD
1344 if (!wbc->for_reclaim) {
1345 WARN_ON_ONCE(1); /* Still happens? Tell us about it! */
1346 goto redirty;
1347 }
1635f6a7
HD
1348
1349 /*
1350 * This is somewhat ridiculous, but without plumbing a SWAP_MAP_FALLOC
1351 * value into swapfile.c, the only way we can correctly account for a
f530ed0e 1352 * fallocated folio arriving here is now to initialize it and write it.
1aac1400 1353 *
f530ed0e 1354 * That's okay for a folio already fallocated earlier, but if we have
1aac1400 1355 * not yet completed the fallocation, then (a) we want to keep track
f530ed0e 1356 * of this folio in case we have to undo it, and (b) it may not be a
1aac1400 1357 * good idea to continue anyway, once we're pushing into swap. So
f530ed0e 1358 * reactivate the folio, and let shmem_fallocate() quit when too many.
1635f6a7 1359 */
f530ed0e 1360 if (!folio_test_uptodate(folio)) {
1aac1400
HD
1361 if (inode->i_private) {
1362 struct shmem_falloc *shmem_falloc;
1363 spin_lock(&inode->i_lock);
1364 shmem_falloc = inode->i_private;
1365 if (shmem_falloc &&
8e205f77 1366 !shmem_falloc->waitq &&
1aac1400
HD
1367 index >= shmem_falloc->start &&
1368 index < shmem_falloc->next)
1369 shmem_falloc->nr_unswapped++;
1370 else
1371 shmem_falloc = NULL;
1372 spin_unlock(&inode->i_lock);
1373 if (shmem_falloc)
1374 goto redirty;
1375 }
f530ed0e
MWO
1376 folio_zero_range(folio, 0, folio_size(folio));
1377 flush_dcache_folio(folio);
1378 folio_mark_uptodate(folio);
1635f6a7
HD
1379 }
1380
e2e3fdc7 1381 swap = folio_alloc_swap(folio);
48f170fb
HD
1382 if (!swap.val)
1383 goto redirty;
d9fe526a 1384
b1dea800
HD
1385 /*
1386 * Add inode to shmem_unuse()'s list of swapped-out inodes,
f530ed0e 1387 * if it's not already there. Do it now before the folio is
6922c0c7 1388 * moved to swap cache, when its pagelock no longer protects
b1dea800 1389 * the inode from eviction. But don't unlock the mutex until
6922c0c7
HD
1390 * we've incremented swapped, because shmem_unuse_inode() will
1391 * prune a !swapped inode from the swaplist under this mutex.
b1dea800 1392 */
48f170fb
HD
1393 mutex_lock(&shmem_swaplist_mutex);
1394 if (list_empty(&info->swaplist))
b56a2d8a 1395 list_add(&info->swaplist, &shmem_swaplist);
b1dea800 1396
a4c366f0 1397 if (add_to_swap_cache(folio, swap,
3852f676
JK
1398 __GFP_HIGH | __GFP_NOMEMALLOC | __GFP_NOWARN,
1399 NULL) == 0) {
4595ef88 1400 spin_lock_irq(&info->lock);
6922c0c7 1401 shmem_recalc_inode(inode);
267a4c76 1402 info->swapped++;
4595ef88 1403 spin_unlock_irq(&info->lock);
6922c0c7 1404
267a4c76 1405 swap_shmem_alloc(swap);
4cd400fd 1406 shmem_delete_from_page_cache(folio, swp_to_radix_entry(swap));
267a4c76 1407
6922c0c7 1408 mutex_unlock(&shmem_swaplist_mutex);
f530ed0e
MWO
1409 BUG_ON(folio_mapped(folio));
1410 swap_writepage(&folio->page, wbc);
1da177e4
LT
1411 return 0;
1412 }
1413
6922c0c7 1414 mutex_unlock(&shmem_swaplist_mutex);
4081f744 1415 put_swap_folio(folio, swap);
1da177e4 1416redirty:
f530ed0e 1417 folio_mark_dirty(folio);
d9fe526a 1418 if (wbc->for_reclaim)
f530ed0e
MWO
1419 return AOP_WRITEPAGE_ACTIVATE; /* Return with folio locked */
1420 folio_unlock(folio);
d9fe526a 1421 return 0;
1da177e4
LT
1422}
1423
75edd345 1424#if defined(CONFIG_NUMA) && defined(CONFIG_TMPFS)
71fe804b 1425static void shmem_show_mpol(struct seq_file *seq, struct mempolicy *mpol)
680d794b 1426{
095f1fc4 1427 char buffer[64];
680d794b 1428
71fe804b 1429 if (!mpol || mpol->mode == MPOL_DEFAULT)
095f1fc4 1430 return; /* show nothing */
680d794b 1431
a7a88b23 1432 mpol_to_str(buffer, sizeof(buffer), mpol);
095f1fc4
LS
1433
1434 seq_printf(seq, ",mpol=%s", buffer);
680d794b 1435}
71fe804b
LS
1436
1437static struct mempolicy *shmem_get_sbmpol(struct shmem_sb_info *sbinfo)
1438{
1439 struct mempolicy *mpol = NULL;
1440 if (sbinfo->mpol) {
bf11b9a8 1441 raw_spin_lock(&sbinfo->stat_lock); /* prevent replace/use races */
71fe804b
LS
1442 mpol = sbinfo->mpol;
1443 mpol_get(mpol);
bf11b9a8 1444 raw_spin_unlock(&sbinfo->stat_lock);
71fe804b
LS
1445 }
1446 return mpol;
1447}
75edd345
HD
1448#else /* !CONFIG_NUMA || !CONFIG_TMPFS */
1449static inline void shmem_show_mpol(struct seq_file *seq, struct mempolicy *mpol)
1450{
1451}
1452static inline struct mempolicy *shmem_get_sbmpol(struct shmem_sb_info *sbinfo)
1453{
1454 return NULL;
1455}
1456#endif /* CONFIG_NUMA && CONFIG_TMPFS */
1457#ifndef CONFIG_NUMA
1458#define vm_policy vm_private_data
1459#endif
680d794b 1460
800d8c63
KS
1461static void shmem_pseudo_vma_init(struct vm_area_struct *vma,
1462 struct shmem_inode_info *info, pgoff_t index)
1463{
1464 /* Create a pseudo vma that just contains the policy */
2c4541e2 1465 vma_init(vma, NULL);
800d8c63
KS
1466 /* Bias interleave by inode number to distribute better across nodes */
1467 vma->vm_pgoff = index + info->vfs_inode.i_ino;
800d8c63
KS
1468 vma->vm_policy = mpol_shared_policy_lookup(&info->policy, index);
1469}
1470
1471static void shmem_pseudo_vma_destroy(struct vm_area_struct *vma)
1472{
1473 /* Drop reference taken by mpol_shared_policy_lookup() */
1474 mpol_cond_put(vma->vm_policy);
1475}
1476
5739a81c 1477static struct folio *shmem_swapin(swp_entry_t swap, gfp_t gfp,
41ffe5d5 1478 struct shmem_inode_info *info, pgoff_t index)
1da177e4 1479{
1da177e4 1480 struct vm_area_struct pvma;
18a2f371 1481 struct page *page;
8c63ca5b
WD
1482 struct vm_fault vmf = {
1483 .vma = &pvma,
1484 };
52cd3b07 1485
800d8c63 1486 shmem_pseudo_vma_init(&pvma, info, index);
e9e9b7ec 1487 page = swap_cluster_readahead(swap, gfp, &vmf);
800d8c63 1488 shmem_pseudo_vma_destroy(&pvma);
18a2f371 1489
5739a81c
MWO
1490 if (!page)
1491 return NULL;
1492 return page_folio(page);
800d8c63
KS
1493}
1494
78cc8cdc
RR
1495/*
1496 * Make sure huge_gfp is always more limited than limit_gfp.
1497 * Some of the flags set permissions, while others set limitations.
1498 */
1499static gfp_t limit_gfp_mask(gfp_t huge_gfp, gfp_t limit_gfp)
1500{
1501 gfp_t allowflags = __GFP_IO | __GFP_FS | __GFP_RECLAIM;
1502 gfp_t denyflags = __GFP_NOWARN | __GFP_NORETRY;
187df5dd
RR
1503 gfp_t zoneflags = limit_gfp & GFP_ZONEMASK;
1504 gfp_t result = huge_gfp & ~(allowflags | GFP_ZONEMASK);
1505
1506 /* Allow allocations only from the originally specified zones. */
1507 result |= zoneflags;
78cc8cdc
RR
1508
1509 /*
1510 * Minimize the result gfp by taking the union with the deny flags,
1511 * and the intersection of the allow flags.
1512 */
1513 result |= (limit_gfp & denyflags);
1514 result |= (huge_gfp & limit_gfp) & allowflags;
1515
1516 return result;
1517}
1518
72827e5c 1519static struct folio *shmem_alloc_hugefolio(gfp_t gfp,
800d8c63
KS
1520 struct shmem_inode_info *info, pgoff_t index)
1521{
1522 struct vm_area_struct pvma;
7b8d046f
MW
1523 struct address_space *mapping = info->vfs_inode.i_mapping;
1524 pgoff_t hindex;
dfe98499 1525 struct folio *folio;
800d8c63 1526
4620a06e 1527 hindex = round_down(index, HPAGE_PMD_NR);
7b8d046f
MW
1528 if (xa_find(&mapping->i_pages, &hindex, hindex + HPAGE_PMD_NR - 1,
1529 XA_PRESENT))
800d8c63 1530 return NULL;
18a2f371 1531
800d8c63 1532 shmem_pseudo_vma_init(&pvma, info, hindex);
dfe98499 1533 folio = vma_alloc_folio(gfp, HPAGE_PMD_ORDER, &pvma, 0, true);
800d8c63 1534 shmem_pseudo_vma_destroy(&pvma);
dfe98499 1535 if (!folio)
dcdf11ee 1536 count_vm_event(THP_FILE_FALLBACK);
72827e5c 1537 return folio;
1da177e4
LT
1538}
1539
0c023ef5 1540static struct folio *shmem_alloc_folio(gfp_t gfp,
41ffe5d5 1541 struct shmem_inode_info *info, pgoff_t index)
1da177e4
LT
1542{
1543 struct vm_area_struct pvma;
0c023ef5 1544 struct folio *folio;
1da177e4 1545
800d8c63 1546 shmem_pseudo_vma_init(&pvma, info, index);
0c023ef5 1547 folio = vma_alloc_folio(gfp, 0, &pvma, 0, false);
800d8c63
KS
1548 shmem_pseudo_vma_destroy(&pvma);
1549
0c023ef5
MWO
1550 return folio;
1551}
1552
b1d0ec3a 1553static struct folio *shmem_alloc_and_acct_folio(gfp_t gfp, struct inode *inode,
800d8c63
KS
1554 pgoff_t index, bool huge)
1555{
0f079694 1556 struct shmem_inode_info *info = SHMEM_I(inode);
72827e5c 1557 struct folio *folio;
800d8c63
KS
1558 int nr;
1559 int err = -ENOSPC;
52cd3b07 1560
396bcc52 1561 if (!IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE))
800d8c63
KS
1562 huge = false;
1563 nr = huge ? HPAGE_PMD_NR : 1;
1564
0f079694 1565 if (!shmem_inode_acct_block(inode, nr))
800d8c63 1566 goto failed;
800d8c63
KS
1567
1568 if (huge)
72827e5c 1569 folio = shmem_alloc_hugefolio(gfp, info, index);
800d8c63 1570 else
72827e5c
MWO
1571 folio = shmem_alloc_folio(gfp, info, index);
1572 if (folio) {
1573 __folio_set_locked(folio);
1574 __folio_set_swapbacked(folio);
b1d0ec3a 1575 return folio;
75edd345 1576 }
18a2f371 1577
800d8c63 1578 err = -ENOMEM;
0f079694 1579 shmem_inode_unacct_blocks(inode, nr);
800d8c63
KS
1580failed:
1581 return ERR_PTR(err);
1da177e4 1582}
71fe804b 1583
bde05d1c
HD
1584/*
1585 * When a page is moved from swapcache to shmem filecache (either by the
fc26babb 1586 * usual swapin of shmem_get_folio_gfp(), or by the less common swapoff of
bde05d1c
HD
1587 * shmem_unuse_inode()), it may have been read in earlier from swap, in
1588 * ignorance of the mapping it belongs to. If that mapping has special
1589 * constraints (like the gma500 GEM driver, which requires RAM below 4GB),
1590 * we may need to copy to a suitable page before moving to filecache.
1591 *
1592 * In a future release, this may well be extended to respect cpuset and
1593 * NUMA mempolicy, and applied also to anonymous pages in do_swap_page();
1594 * but for now it is a simple matter of zone.
1595 */
069d849c 1596static bool shmem_should_replace_folio(struct folio *folio, gfp_t gfp)
bde05d1c 1597{
069d849c 1598 return folio_zonenum(folio) > gfp_zone(gfp);
bde05d1c
HD
1599}
1600
0d698e25 1601static int shmem_replace_folio(struct folio **foliop, gfp_t gfp,
bde05d1c
HD
1602 struct shmem_inode_info *info, pgoff_t index)
1603{
d21bba2b 1604 struct folio *old, *new;
bde05d1c 1605 struct address_space *swap_mapping;
c1cb20d4 1606 swp_entry_t entry;
bde05d1c
HD
1607 pgoff_t swap_index;
1608 int error;
1609
0d698e25 1610 old = *foliop;
907ea17e 1611 entry = folio_swap_entry(old);
c1cb20d4 1612 swap_index = swp_offset(entry);
907ea17e 1613 swap_mapping = swap_address_space(entry);
bde05d1c
HD
1614
1615 /*
1616 * We have arrived here because our zones are constrained, so don't
1617 * limit chance of success by further cpuset and node constraints.
1618 */
1619 gfp &= ~GFP_CONSTRAINT_MASK;
907ea17e
MWO
1620 VM_BUG_ON_FOLIO(folio_test_large(old), old);
1621 new = shmem_alloc_folio(gfp, info, index);
1622 if (!new)
bde05d1c 1623 return -ENOMEM;
bde05d1c 1624
907ea17e
MWO
1625 folio_get(new);
1626 folio_copy(new, old);
1627 flush_dcache_folio(new);
bde05d1c 1628
907ea17e
MWO
1629 __folio_set_locked(new);
1630 __folio_set_swapbacked(new);
1631 folio_mark_uptodate(new);
1632 folio_set_swap_entry(new, entry);
1633 folio_set_swapcache(new);
bde05d1c
HD
1634
1635 /*
1636 * Our caller will very soon move newpage out of swapcache, but it's
1637 * a nice clean interface for us to replace oldpage by newpage there.
1638 */
b93b0163 1639 xa_lock_irq(&swap_mapping->i_pages);
907ea17e 1640 error = shmem_replace_entry(swap_mapping, swap_index, old, new);
0142ef6c 1641 if (!error) {
d21bba2b 1642 mem_cgroup_migrate(old, new);
907ea17e
MWO
1643 __lruvec_stat_mod_folio(new, NR_FILE_PAGES, 1);
1644 __lruvec_stat_mod_folio(new, NR_SHMEM, 1);
1645 __lruvec_stat_mod_folio(old, NR_FILE_PAGES, -1);
1646 __lruvec_stat_mod_folio(old, NR_SHMEM, -1);
0142ef6c 1647 }
b93b0163 1648 xa_unlock_irq(&swap_mapping->i_pages);
bde05d1c 1649
0142ef6c
HD
1650 if (unlikely(error)) {
1651 /*
1652 * Is this possible? I think not, now that our callers check
1653 * both PageSwapCache and page_private after getting page lock;
1654 * but be defensive. Reverse old to newpage for clear and free.
1655 */
907ea17e 1656 old = new;
0142ef6c 1657 } else {
907ea17e 1658 folio_add_lru(new);
0d698e25 1659 *foliop = new;
0142ef6c 1660 }
bde05d1c 1661
907ea17e
MWO
1662 folio_clear_swapcache(old);
1663 old->private = NULL;
bde05d1c 1664
907ea17e
MWO
1665 folio_unlock(old);
1666 folio_put_refs(old, 2);
0142ef6c 1667 return error;
bde05d1c
HD
1668}
1669
6cec2b95
ML
1670static void shmem_set_folio_swapin_error(struct inode *inode, pgoff_t index,
1671 struct folio *folio, swp_entry_t swap)
1672{
1673 struct address_space *mapping = inode->i_mapping;
1674 struct shmem_inode_info *info = SHMEM_I(inode);
1675 swp_entry_t swapin_error;
1676 void *old;
1677
1678 swapin_error = make_swapin_error_entry(&folio->page);
1679 old = xa_cmpxchg_irq(&mapping->i_pages, index,
1680 swp_to_radix_entry(swap),
1681 swp_to_radix_entry(swapin_error), 0);
1682 if (old != swp_to_radix_entry(swap))
1683 return;
1684
1685 folio_wait_writeback(folio);
75fa68a5 1686 delete_from_swap_cache(folio);
6cec2b95
ML
1687 spin_lock_irq(&info->lock);
1688 /*
1689 * Don't treat swapin error folio as alloced. Otherwise inode->i_blocks won't
1690 * be 0 when inode is released and thus trigger WARN_ON(inode->i_blocks) in
1691 * shmem_evict_inode.
1692 */
1693 info->alloced--;
1694 info->swapped--;
1695 shmem_recalc_inode(inode);
1696 spin_unlock_irq(&info->lock);
1697 swap_free(swap);
1698}
1699
c5bf121e 1700/*
833de10f
ML
1701 * Swap in the folio pointed to by *foliop.
1702 * Caller has to make sure that *foliop contains a valid swapped folio.
1703 * Returns 0 and the folio in foliop if success. On failure, returns the
1704 * error code and NULL in *foliop.
c5bf121e 1705 */
da08e9b7
MWO
1706static int shmem_swapin_folio(struct inode *inode, pgoff_t index,
1707 struct folio **foliop, enum sgp_type sgp,
c5bf121e
VRP
1708 gfp_t gfp, struct vm_area_struct *vma,
1709 vm_fault_t *fault_type)
1710{
1711 struct address_space *mapping = inode->i_mapping;
1712 struct shmem_inode_info *info = SHMEM_I(inode);
04f94e3f 1713 struct mm_struct *charge_mm = vma ? vma->vm_mm : NULL;
da08e9b7 1714 struct folio *folio = NULL;
c5bf121e
VRP
1715 swp_entry_t swap;
1716 int error;
1717
da08e9b7
MWO
1718 VM_BUG_ON(!*foliop || !xa_is_value(*foliop));
1719 swap = radix_to_swp_entry(*foliop);
1720 *foliop = NULL;
c5bf121e 1721
6cec2b95
ML
1722 if (is_swapin_error_entry(swap))
1723 return -EIO;
1724
c5bf121e 1725 /* Look it up and read it in.. */
5739a81c
MWO
1726 folio = swap_cache_get_folio(swap, NULL, 0);
1727 if (!folio) {
c5bf121e
VRP
1728 /* Or update major stats only when swapin succeeds?? */
1729 if (fault_type) {
1730 *fault_type |= VM_FAULT_MAJOR;
1731 count_vm_event(PGMAJFAULT);
1732 count_memcg_event_mm(charge_mm, PGMAJFAULT);
1733 }
1734 /* Here we actually start the io */
5739a81c
MWO
1735 folio = shmem_swapin(swap, gfp, info, index);
1736 if (!folio) {
c5bf121e
VRP
1737 error = -ENOMEM;
1738 goto failed;
1739 }
1740 }
1741
833de10f 1742 /* We have to do this with folio locked to prevent races */
da08e9b7
MWO
1743 folio_lock(folio);
1744 if (!folio_test_swapcache(folio) ||
1745 folio_swap_entry(folio).val != swap.val ||
c5bf121e
VRP
1746 !shmem_confirm_swap(mapping, index, swap)) {
1747 error = -EEXIST;
1748 goto unlock;
1749 }
da08e9b7 1750 if (!folio_test_uptodate(folio)) {
c5bf121e
VRP
1751 error = -EIO;
1752 goto failed;
1753 }
da08e9b7 1754 folio_wait_writeback(folio);
c5bf121e 1755
8a84802e
SP
1756 /*
1757 * Some architectures may have to restore extra metadata to the
da08e9b7 1758 * folio after reading from swap.
8a84802e 1759 */
da08e9b7 1760 arch_swap_restore(swap, folio);
8a84802e 1761
069d849c 1762 if (shmem_should_replace_folio(folio, gfp)) {
0d698e25 1763 error = shmem_replace_folio(&folio, gfp, info, index);
c5bf121e
VRP
1764 if (error)
1765 goto failed;
1766 }
1767
b7dd44a1 1768 error = shmem_add_to_page_cache(folio, mapping, index,
3fea5a49
JW
1769 swp_to_radix_entry(swap), gfp,
1770 charge_mm);
1771 if (error)
14235ab3 1772 goto failed;
c5bf121e
VRP
1773
1774 spin_lock_irq(&info->lock);
1775 info->swapped--;
1776 shmem_recalc_inode(inode);
1777 spin_unlock_irq(&info->lock);
1778
1779 if (sgp == SGP_WRITE)
da08e9b7 1780 folio_mark_accessed(folio);
c5bf121e 1781
75fa68a5 1782 delete_from_swap_cache(folio);
da08e9b7 1783 folio_mark_dirty(folio);
c5bf121e
VRP
1784 swap_free(swap);
1785
da08e9b7 1786 *foliop = folio;
c5bf121e
VRP
1787 return 0;
1788failed:
1789 if (!shmem_confirm_swap(mapping, index, swap))
1790 error = -EEXIST;
6cec2b95
ML
1791 if (error == -EIO)
1792 shmem_set_folio_swapin_error(inode, index, folio, swap);
c5bf121e 1793unlock:
da08e9b7
MWO
1794 if (folio) {
1795 folio_unlock(folio);
1796 folio_put(folio);
c5bf121e
VRP
1797 }
1798
1799 return error;
1800}
1801
1da177e4 1802/*
fc26babb 1803 * shmem_get_folio_gfp - find page in cache, or get from swap, or allocate
1da177e4
LT
1804 *
1805 * If we allocate a new one we do not mark it dirty. That's up to the
1806 * vm. If we swap it in we mark it dirty since we also free the swap
9e18eb29
ALC
1807 * entry since a page cannot live in both the swap and page cache.
1808 *
c949b097 1809 * vma, vmf, and fault_type are only supplied by shmem_fault:
9e18eb29 1810 * otherwise they are NULL.
1da177e4 1811 */
fc26babb
MWO
1812static int shmem_get_folio_gfp(struct inode *inode, pgoff_t index,
1813 struct folio **foliop, enum sgp_type sgp, gfp_t gfp,
1814 struct vm_area_struct *vma, struct vm_fault *vmf,
1815 vm_fault_t *fault_type)
1da177e4
LT
1816{
1817 struct address_space *mapping = inode->i_mapping;
23f919d4 1818 struct shmem_inode_info *info = SHMEM_I(inode);
1da177e4 1819 struct shmem_sb_info *sbinfo;
9e18eb29 1820 struct mm_struct *charge_mm;
b7dd44a1 1821 struct folio *folio;
800d8c63 1822 pgoff_t hindex = index;
164cc4fe 1823 gfp_t huge_gfp;
1da177e4 1824 int error;
54af6042 1825 int once = 0;
1635f6a7 1826 int alloced = 0;
1da177e4 1827
09cbfeaf 1828 if (index > (MAX_LFS_FILESIZE >> PAGE_SHIFT))
1da177e4 1829 return -EFBIG;
1da177e4 1830repeat:
c5bf121e
VRP
1831 if (sgp <= SGP_CACHE &&
1832 ((loff_t)index << PAGE_SHIFT) >= i_size_read(inode)) {
1833 return -EINVAL;
1834 }
1835
1836 sbinfo = SHMEM_SB(inode->i_sb);
04f94e3f 1837 charge_mm = vma ? vma->vm_mm : NULL;
c5bf121e 1838
b1d0ec3a
MWO
1839 folio = __filemap_get_folio(mapping, index, FGP_ENTRY | FGP_LOCK, 0);
1840 if (folio && vma && userfaultfd_minor(vma)) {
1841 if (!xa_is_value(folio)) {
1842 folio_unlock(folio);
1843 folio_put(folio);
c949b097
AR
1844 }
1845 *fault_type = handle_userfault(vmf, VM_UFFD_MINOR);
1846 return 0;
1847 }
1848
b1d0ec3a 1849 if (xa_is_value(folio)) {
da08e9b7 1850 error = shmem_swapin_folio(inode, index, &folio,
c5bf121e
VRP
1851 sgp, gfp, vma, fault_type);
1852 if (error == -EEXIST)
1853 goto repeat;
54af6042 1854
fc26babb 1855 *foliop = folio;
c5bf121e 1856 return error;
54af6042
HD
1857 }
1858
b1d0ec3a
MWO
1859 if (folio) {
1860 hindex = folio->index;
acdd9f8e 1861 if (sgp == SGP_WRITE)
b1d0ec3a
MWO
1862 folio_mark_accessed(folio);
1863 if (folio_test_uptodate(folio))
acdd9f8e 1864 goto out;
fc26babb 1865 /* fallocated folio */
1635f6a7
HD
1866 if (sgp != SGP_READ)
1867 goto clear;
b1d0ec3a
MWO
1868 folio_unlock(folio);
1869 folio_put(folio);
1635f6a7 1870 }
27ab7006
HD
1871
1872 /*
fc26babb
MWO
1873 * SGP_READ: succeed on hole, with NULL folio, letting caller zero.
1874 * SGP_NOALLOC: fail on hole, with NULL folio, letting caller fail.
acdd9f8e 1875 */
fc26babb 1876 *foliop = NULL;
acdd9f8e
HD
1877 if (sgp == SGP_READ)
1878 return 0;
1879 if (sgp == SGP_NOALLOC)
1880 return -ENOENT;
1881
1882 /*
1883 * Fast cache lookup and swap lookup did not find it: allocate.
27ab7006 1884 */
54af6042 1885
c5bf121e
VRP
1886 if (vma && userfaultfd_missing(vma)) {
1887 *fault_type = handle_userfault(vmf, VM_UFFD_MISSING);
1888 return 0;
1889 }
cfda0526 1890
5e6e5a12 1891 if (!shmem_is_huge(vma, inode, index))
c5bf121e 1892 goto alloc_nohuge;
1da177e4 1893
164cc4fe 1894 huge_gfp = vma_thp_gfp_mask(vma);
78cc8cdc 1895 huge_gfp = limit_gfp_mask(huge_gfp, gfp);
b1d0ec3a
MWO
1896 folio = shmem_alloc_and_acct_folio(huge_gfp, inode, index, true);
1897 if (IS_ERR(folio)) {
c5bf121e 1898alloc_nohuge:
b1d0ec3a 1899 folio = shmem_alloc_and_acct_folio(gfp, inode, index, false);
c5bf121e 1900 }
b1d0ec3a 1901 if (IS_ERR(folio)) {
c5bf121e 1902 int retry = 5;
800d8c63 1903
b1d0ec3a
MWO
1904 error = PTR_ERR(folio);
1905 folio = NULL;
c5bf121e
VRP
1906 if (error != -ENOSPC)
1907 goto unlock;
1908 /*
fc26babb 1909 * Try to reclaim some space by splitting a large folio
c5bf121e
VRP
1910 * beyond i_size on the filesystem.
1911 */
1912 while (retry--) {
1913 int ret;
66d2f4d2 1914
c5bf121e
VRP
1915 ret = shmem_unused_huge_shrink(sbinfo, NULL, 1);
1916 if (ret == SHRINK_STOP)
1917 break;
1918 if (ret)
1919 goto alloc_nohuge;
b065b432 1920 }
c5bf121e
VRP
1921 goto unlock;
1922 }
54af6042 1923
b1d0ec3a 1924 hindex = round_down(index, folio_nr_pages(folio));
54af6042 1925
c5bf121e 1926 if (sgp == SGP_WRITE)
b1d0ec3a 1927 __folio_set_referenced(folio);
c5bf121e 1928
b7dd44a1 1929 error = shmem_add_to_page_cache(folio, mapping, hindex,
3fea5a49
JW
1930 NULL, gfp & GFP_RECLAIM_MASK,
1931 charge_mm);
1932 if (error)
c5bf121e 1933 goto unacct;
b1d0ec3a 1934 folio_add_lru(folio);
779750d2 1935
c5bf121e 1936 spin_lock_irq(&info->lock);
b1d0ec3a 1937 info->alloced += folio_nr_pages(folio);
fa020a2b 1938 inode->i_blocks += (blkcnt_t)BLOCKS_PER_PAGE << folio_order(folio);
c5bf121e
VRP
1939 shmem_recalc_inode(inode);
1940 spin_unlock_irq(&info->lock);
1941 alloced = true;
1942
b1d0ec3a 1943 if (folio_test_pmd_mappable(folio) &&
c5bf121e 1944 DIV_ROUND_UP(i_size_read(inode), PAGE_SIZE) <
fc26babb 1945 folio_next_index(folio) - 1) {
ec9516fb 1946 /*
fc26babb 1947 * Part of the large folio is beyond i_size: subject
c5bf121e 1948 * to shrink under memory pressure.
1635f6a7 1949 */
c5bf121e 1950 spin_lock(&sbinfo->shrinklist_lock);
1635f6a7 1951 /*
c5bf121e
VRP
1952 * _careful to defend against unlocked access to
1953 * ->shrink_list in shmem_unused_huge_shrink()
ec9516fb 1954 */
c5bf121e
VRP
1955 if (list_empty_careful(&info->shrinklist)) {
1956 list_add_tail(&info->shrinklist,
1957 &sbinfo->shrinklist);
1958 sbinfo->shrinklist_len++;
1959 }
1960 spin_unlock(&sbinfo->shrinklist_lock);
1961 }
800d8c63 1962
c5bf121e 1963 /*
fc26babb 1964 * Let SGP_FALLOC use the SGP_WRITE optimization on a new folio.
c5bf121e
VRP
1965 */
1966 if (sgp == SGP_FALLOC)
1967 sgp = SGP_WRITE;
1968clear:
1969 /*
fc26babb
MWO
1970 * Let SGP_WRITE caller clear ends if write does not fill folio;
1971 * but SGP_FALLOC on a folio fallocated earlier must initialize
c5bf121e
VRP
1972 * it now, lest undo on failure cancel our earlier guarantee.
1973 */
b1d0ec3a
MWO
1974 if (sgp != SGP_WRITE && !folio_test_uptodate(folio)) {
1975 long i, n = folio_nr_pages(folio);
c5bf121e 1976
b1d0ec3a
MWO
1977 for (i = 0; i < n; i++)
1978 clear_highpage(folio_page(folio, i));
1979 flush_dcache_folio(folio);
1980 folio_mark_uptodate(folio);
1da177e4 1981 }
bde05d1c 1982
54af6042 1983 /* Perhaps the file has been truncated since we checked */
75edd345 1984 if (sgp <= SGP_CACHE &&
09cbfeaf 1985 ((loff_t)index << PAGE_SHIFT) >= i_size_read(inode)) {
267a4c76 1986 if (alloced) {
b1d0ec3a
MWO
1987 folio_clear_dirty(folio);
1988 filemap_remove_folio(folio);
4595ef88 1989 spin_lock_irq(&info->lock);
267a4c76 1990 shmem_recalc_inode(inode);
4595ef88 1991 spin_unlock_irq(&info->lock);
267a4c76 1992 }
54af6042 1993 error = -EINVAL;
267a4c76 1994 goto unlock;
e83c32e8 1995 }
63ec1973 1996out:
fc26babb 1997 *foliop = folio;
54af6042 1998 return 0;
1da177e4 1999
59a16ead 2000 /*
54af6042 2001 * Error recovery.
59a16ead 2002 */
54af6042 2003unacct:
b1d0ec3a 2004 shmem_inode_unacct_blocks(inode, folio_nr_pages(folio));
800d8c63 2005
b1d0ec3a
MWO
2006 if (folio_test_large(folio)) {
2007 folio_unlock(folio);
2008 folio_put(folio);
800d8c63
KS
2009 goto alloc_nohuge;
2010 }
d1899228 2011unlock:
b1d0ec3a
MWO
2012 if (folio) {
2013 folio_unlock(folio);
2014 folio_put(folio);
54af6042
HD
2015 }
2016 if (error == -ENOSPC && !once++) {
4595ef88 2017 spin_lock_irq(&info->lock);
54af6042 2018 shmem_recalc_inode(inode);
4595ef88 2019 spin_unlock_irq(&info->lock);
27ab7006 2020 goto repeat;
ff36b801 2021 }
7f4446ee 2022 if (error == -EEXIST)
54af6042
HD
2023 goto repeat;
2024 return error;
1da177e4
LT
2025}
2026
4e1fc793
MWO
2027int shmem_get_folio(struct inode *inode, pgoff_t index, struct folio **foliop,
2028 enum sgp_type sgp)
2029{
2030 return shmem_get_folio_gfp(inode, index, foliop, sgp,
2031 mapping_gfp_mask(inode->i_mapping), NULL, NULL, NULL);
2032}
2033
10d20bd2
LT
2034/*
2035 * This is like autoremove_wake_function, but it removes the wait queue
2036 * entry unconditionally - even if something else had already woken the
2037 * target.
2038 */
ac6424b9 2039static int synchronous_wake_function(wait_queue_entry_t *wait, unsigned mode, int sync, void *key)
10d20bd2
LT
2040{
2041 int ret = default_wake_function(wait, mode, sync, key);
2055da97 2042 list_del_init(&wait->entry);
10d20bd2
LT
2043 return ret;
2044}
2045
20acce67 2046static vm_fault_t shmem_fault(struct vm_fault *vmf)
1da177e4 2047{
11bac800 2048 struct vm_area_struct *vma = vmf->vma;
496ad9aa 2049 struct inode *inode = file_inode(vma->vm_file);
9e18eb29 2050 gfp_t gfp = mapping_gfp_mask(inode->i_mapping);
68a54100 2051 struct folio *folio = NULL;
20acce67
SJ
2052 int err;
2053 vm_fault_t ret = VM_FAULT_LOCKED;
1da177e4 2054
f00cdc6d
HD
2055 /*
2056 * Trinity finds that probing a hole which tmpfs is punching can
2057 * prevent the hole-punch from ever completing: which in turn
9608703e 2058 * locks writers out with its hold on i_rwsem. So refrain from
8e205f77
HD
2059 * faulting pages into the hole while it's being punched. Although
2060 * shmem_undo_range() does remove the additions, it may be unable to
2061 * keep up, as each new page needs its own unmap_mapping_range() call,
2062 * and the i_mmap tree grows ever slower to scan if new vmas are added.
2063 *
2064 * It does not matter if we sometimes reach this check just before the
2065 * hole-punch begins, so that one fault then races with the punch:
2066 * we just need to make racing faults a rare case.
2067 *
2068 * The implementation below would be much simpler if we just used a
9608703e 2069 * standard mutex or completion: but we cannot take i_rwsem in fault,
8e205f77 2070 * and bloating every shmem inode for this unlikely case would be sad.
f00cdc6d
HD
2071 */
2072 if (unlikely(inode->i_private)) {
2073 struct shmem_falloc *shmem_falloc;
2074
2075 spin_lock(&inode->i_lock);
2076 shmem_falloc = inode->i_private;
8e205f77
HD
2077 if (shmem_falloc &&
2078 shmem_falloc->waitq &&
2079 vmf->pgoff >= shmem_falloc->start &&
2080 vmf->pgoff < shmem_falloc->next) {
8897c1b1 2081 struct file *fpin;
8e205f77 2082 wait_queue_head_t *shmem_falloc_waitq;
10d20bd2 2083 DEFINE_WAIT_FUNC(shmem_fault_wait, synchronous_wake_function);
8e205f77
HD
2084
2085 ret = VM_FAULT_NOPAGE;
8897c1b1
KS
2086 fpin = maybe_unlock_mmap_for_io(vmf, NULL);
2087 if (fpin)
8e205f77 2088 ret = VM_FAULT_RETRY;
8e205f77
HD
2089
2090 shmem_falloc_waitq = shmem_falloc->waitq;
2091 prepare_to_wait(shmem_falloc_waitq, &shmem_fault_wait,
2092 TASK_UNINTERRUPTIBLE);
2093 spin_unlock(&inode->i_lock);
2094 schedule();
2095
2096 /*
2097 * shmem_falloc_waitq points into the shmem_fallocate()
2098 * stack of the hole-punching task: shmem_falloc_waitq
2099 * is usually invalid by the time we reach here, but
2100 * finish_wait() does not dereference it in that case;
2101 * though i_lock needed lest racing with wake_up_all().
2102 */
2103 spin_lock(&inode->i_lock);
2104 finish_wait(shmem_falloc_waitq, &shmem_fault_wait);
2105 spin_unlock(&inode->i_lock);
8897c1b1
KS
2106
2107 if (fpin)
2108 fput(fpin);
8e205f77 2109 return ret;
f00cdc6d 2110 }
8e205f77 2111 spin_unlock(&inode->i_lock);
f00cdc6d
HD
2112 }
2113
68a54100 2114 err = shmem_get_folio_gfp(inode, vmf->pgoff, &folio, SGP_CACHE,
cfda0526 2115 gfp, vma, vmf, &ret);
20acce67
SJ
2116 if (err)
2117 return vmf_error(err);
68a54100
MWO
2118 if (folio)
2119 vmf->page = folio_file_page(folio, vmf->pgoff);
68da9f05 2120 return ret;
1da177e4
LT
2121}
2122
c01d5b30
HD
2123unsigned long shmem_get_unmapped_area(struct file *file,
2124 unsigned long uaddr, unsigned long len,
2125 unsigned long pgoff, unsigned long flags)
2126{
2127 unsigned long (*get_area)(struct file *,
2128 unsigned long, unsigned long, unsigned long, unsigned long);
2129 unsigned long addr;
2130 unsigned long offset;
2131 unsigned long inflated_len;
2132 unsigned long inflated_addr;
2133 unsigned long inflated_offset;
2134
2135 if (len > TASK_SIZE)
2136 return -ENOMEM;
2137
2138 get_area = current->mm->get_unmapped_area;
2139 addr = get_area(file, uaddr, len, pgoff, flags);
2140
396bcc52 2141 if (!IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE))
c01d5b30
HD
2142 return addr;
2143 if (IS_ERR_VALUE(addr))
2144 return addr;
2145 if (addr & ~PAGE_MASK)
2146 return addr;
2147 if (addr > TASK_SIZE - len)
2148 return addr;
2149
2150 if (shmem_huge == SHMEM_HUGE_DENY)
2151 return addr;
2152 if (len < HPAGE_PMD_SIZE)
2153 return addr;
2154 if (flags & MAP_FIXED)
2155 return addr;
2156 /*
2157 * Our priority is to support MAP_SHARED mapped hugely;
2158 * and support MAP_PRIVATE mapped hugely too, until it is COWed.
99158997
KS
2159 * But if caller specified an address hint and we allocated area there
2160 * successfully, respect that as before.
c01d5b30 2161 */
99158997 2162 if (uaddr == addr)
c01d5b30
HD
2163 return addr;
2164
2165 if (shmem_huge != SHMEM_HUGE_FORCE) {
2166 struct super_block *sb;
2167
2168 if (file) {
2169 VM_BUG_ON(file->f_op != &shmem_file_operations);
2170 sb = file_inode(file)->i_sb;
2171 } else {
2172 /*
2173 * Called directly from mm/mmap.c, or drivers/char/mem.c
2174 * for "/dev/zero", to create a shared anonymous object.
2175 */
2176 if (IS_ERR(shm_mnt))
2177 return addr;
2178 sb = shm_mnt->mnt_sb;
2179 }
3089bf61 2180 if (SHMEM_SB(sb)->huge == SHMEM_HUGE_NEVER)
c01d5b30
HD
2181 return addr;
2182 }
2183
2184 offset = (pgoff << PAGE_SHIFT) & (HPAGE_PMD_SIZE-1);
2185 if (offset && offset + len < 2 * HPAGE_PMD_SIZE)
2186 return addr;
2187 if ((addr & (HPAGE_PMD_SIZE-1)) == offset)
2188 return addr;
2189
2190 inflated_len = len + HPAGE_PMD_SIZE - PAGE_SIZE;
2191 if (inflated_len > TASK_SIZE)
2192 return addr;
2193 if (inflated_len < len)
2194 return addr;
2195
99158997 2196 inflated_addr = get_area(NULL, uaddr, inflated_len, 0, flags);
c01d5b30
HD
2197 if (IS_ERR_VALUE(inflated_addr))
2198 return addr;
2199 if (inflated_addr & ~PAGE_MASK)
2200 return addr;
2201
2202 inflated_offset = inflated_addr & (HPAGE_PMD_SIZE-1);
2203 inflated_addr += offset - inflated_offset;
2204 if (inflated_offset > offset)
2205 inflated_addr += HPAGE_PMD_SIZE;
2206
2207 if (inflated_addr > TASK_SIZE - len)
2208 return addr;
2209 return inflated_addr;
2210}
2211
1da177e4 2212#ifdef CONFIG_NUMA
41ffe5d5 2213static int shmem_set_policy(struct vm_area_struct *vma, struct mempolicy *mpol)
1da177e4 2214{
496ad9aa 2215 struct inode *inode = file_inode(vma->vm_file);
41ffe5d5 2216 return mpol_set_shared_policy(&SHMEM_I(inode)->policy, vma, mpol);
1da177e4
LT
2217}
2218
d8dc74f2
AB
2219static struct mempolicy *shmem_get_policy(struct vm_area_struct *vma,
2220 unsigned long addr)
1da177e4 2221{
496ad9aa 2222 struct inode *inode = file_inode(vma->vm_file);
41ffe5d5 2223 pgoff_t index;
1da177e4 2224
41ffe5d5
HD
2225 index = ((addr - vma->vm_start) >> PAGE_SHIFT) + vma->vm_pgoff;
2226 return mpol_shared_policy_lookup(&SHMEM_I(inode)->policy, index);
1da177e4
LT
2227}
2228#endif
2229
d7c9e99a 2230int shmem_lock(struct file *file, int lock, struct ucounts *ucounts)
1da177e4 2231{
496ad9aa 2232 struct inode *inode = file_inode(file);
1da177e4
LT
2233 struct shmem_inode_info *info = SHMEM_I(inode);
2234 int retval = -ENOMEM;
2235
ea0dfeb4
HD
2236 /*
2237 * What serializes the accesses to info->flags?
2238 * ipc_lock_object() when called from shmctl_do_lock(),
2239 * no serialization needed when called from shm_destroy().
2240 */
1da177e4 2241 if (lock && !(info->flags & VM_LOCKED)) {
d7c9e99a 2242 if (!user_shm_lock(inode->i_size, ucounts))
1da177e4
LT
2243 goto out_nomem;
2244 info->flags |= VM_LOCKED;
89e004ea 2245 mapping_set_unevictable(file->f_mapping);
1da177e4 2246 }
d7c9e99a
AG
2247 if (!lock && (info->flags & VM_LOCKED) && ucounts) {
2248 user_shm_unlock(inode->i_size, ucounts);
1da177e4 2249 info->flags &= ~VM_LOCKED;
89e004ea 2250 mapping_clear_unevictable(file->f_mapping);
1da177e4
LT
2251 }
2252 retval = 0;
89e004ea 2253
1da177e4 2254out_nomem:
1da177e4
LT
2255 return retval;
2256}
2257
9b83a6a8 2258static int shmem_mmap(struct file *file, struct vm_area_struct *vma)
1da177e4 2259{
ab3948f5 2260 struct shmem_inode_info *info = SHMEM_I(file_inode(file));
22247efd 2261 int ret;
ab3948f5 2262
22247efd
PX
2263 ret = seal_check_future_write(info->seals, vma);
2264 if (ret)
2265 return ret;
ab3948f5 2266
51b0bff2
CM
2267 /* arm64 - allow memory tagging on RAM-based files */
2268 vma->vm_flags |= VM_MTE_ALLOWED;
2269
1da177e4
LT
2270 file_accessed(file);
2271 vma->vm_ops = &shmem_vm_ops;
2272 return 0;
2273}
2274
cb241339
HD
2275#ifdef CONFIG_TMPFS_XATTR
2276static int shmem_initxattrs(struct inode *, const struct xattr *, void *);
2277
2278/*
2279 * chattr's fsflags are unrelated to extended attributes,
2280 * but tmpfs has chosen to enable them under the same config option.
2281 */
2282static void shmem_set_inode_flags(struct inode *inode, unsigned int fsflags)
2283{
2284 unsigned int i_flags = 0;
2285
2286 if (fsflags & FS_NOATIME_FL)
2287 i_flags |= S_NOATIME;
2288 if (fsflags & FS_APPEND_FL)
2289 i_flags |= S_APPEND;
2290 if (fsflags & FS_IMMUTABLE_FL)
2291 i_flags |= S_IMMUTABLE;
2292 /*
2293 * But FS_NODUMP_FL does not require any action in i_flags.
2294 */
2295 inode_set_flags(inode, i_flags, S_NOATIME | S_APPEND | S_IMMUTABLE);
2296}
2297#else
2298static void shmem_set_inode_flags(struct inode *inode, unsigned int fsflags)
e408e695 2299{
e408e695 2300}
cb241339
HD
2301#define shmem_initxattrs NULL
2302#endif
e408e695
TT
2303
2304static struct inode *shmem_get_inode(struct super_block *sb, struct inode *dir,
09208d15 2305 umode_t mode, dev_t dev, unsigned long flags)
1da177e4
LT
2306{
2307 struct inode *inode;
2308 struct shmem_inode_info *info;
2309 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
e809d5f0 2310 ino_t ino;
1da177e4 2311
e809d5f0 2312 if (shmem_reserve_inode(sb, &ino))
5b04c689 2313 return NULL;
1da177e4
LT
2314
2315 inode = new_inode(sb);
2316 if (inode) {
e809d5f0 2317 inode->i_ino = ino;
21cb47be 2318 inode_init_owner(&init_user_ns, inode, dir, mode);
1da177e4 2319 inode->i_blocks = 0;
078cd827 2320 inode->i_atime = inode->i_mtime = inode->i_ctime = current_time(inode);
46c9a946 2321 inode->i_generation = prandom_u32();
1da177e4
LT
2322 info = SHMEM_I(inode);
2323 memset(info, 0, (char *)inode - (char *)info);
2324 spin_lock_init(&info->lock);
af53d3e9 2325 atomic_set(&info->stop_eviction, 0);
40e041a2 2326 info->seals = F_SEAL_SEAL;
0b0a0806 2327 info->flags = flags & VM_NORESERVE;
f7cd16a5 2328 info->i_crtime = inode->i_mtime;
e408e695
TT
2329 info->fsflags = (dir == NULL) ? 0 :
2330 SHMEM_I(dir)->fsflags & SHMEM_FL_INHERITED;
cb241339
HD
2331 if (info->fsflags)
2332 shmem_set_inode_flags(inode, info->fsflags);
779750d2 2333 INIT_LIST_HEAD(&info->shrinklist);
1da177e4 2334 INIT_LIST_HEAD(&info->swaplist);
38f38657 2335 simple_xattrs_init(&info->xattrs);
72c04902 2336 cache_no_acl(inode);
ff36da69 2337 mapping_set_large_folios(inode->i_mapping);
1da177e4
LT
2338
2339 switch (mode & S_IFMT) {
2340 default:
39f0247d 2341 inode->i_op = &shmem_special_inode_operations;
1da177e4
LT
2342 init_special_inode(inode, mode, dev);
2343 break;
2344 case S_IFREG:
14fcc23f 2345 inode->i_mapping->a_ops = &shmem_aops;
1da177e4
LT
2346 inode->i_op = &shmem_inode_operations;
2347 inode->i_fop = &shmem_file_operations;
71fe804b
LS
2348 mpol_shared_policy_init(&info->policy,
2349 shmem_get_sbmpol(sbinfo));
1da177e4
LT
2350 break;
2351 case S_IFDIR:
d8c76e6f 2352 inc_nlink(inode);
1da177e4
LT
2353 /* Some things misbehave if size == 0 on a directory */
2354 inode->i_size = 2 * BOGO_DIRENT_SIZE;
2355 inode->i_op = &shmem_dir_inode_operations;
2356 inode->i_fop = &simple_dir_operations;
2357 break;
2358 case S_IFLNK:
2359 /*
2360 * Must not load anything in the rbtree,
2361 * mpol_free_shared_policy will not be called.
2362 */
71fe804b 2363 mpol_shared_policy_init(&info->policy, NULL);
1da177e4
LT
2364 break;
2365 }
b45d71fb
JFG
2366
2367 lockdep_annotate_inode_mutex_key(inode);
5b04c689
PE
2368 } else
2369 shmem_free_inode(sb);
1da177e4
LT
2370 return inode;
2371}
2372
3460f6e5
AR
2373#ifdef CONFIG_USERFAULTFD
2374int shmem_mfill_atomic_pte(struct mm_struct *dst_mm,
2375 pmd_t *dst_pmd,
2376 struct vm_area_struct *dst_vma,
2377 unsigned long dst_addr,
2378 unsigned long src_addr,
8ee79edf 2379 bool zeropage, bool wp_copy,
3460f6e5 2380 struct page **pagep)
4c27fe4c
MR
2381{
2382 struct inode *inode = file_inode(dst_vma->vm_file);
2383 struct shmem_inode_info *info = SHMEM_I(inode);
4c27fe4c
MR
2384 struct address_space *mapping = inode->i_mapping;
2385 gfp_t gfp = mapping_gfp_mask(mapping);
2386 pgoff_t pgoff = linear_page_index(dst_vma, dst_addr);
4c27fe4c 2387 void *page_kaddr;
b7dd44a1 2388 struct folio *folio;
4c27fe4c 2389 int ret;
3460f6e5 2390 pgoff_t max_off;
4c27fe4c 2391
7ed9d238
AR
2392 if (!shmem_inode_acct_block(inode, 1)) {
2393 /*
2394 * We may have got a page, returned -ENOENT triggering a retry,
2395 * and now we find ourselves with -ENOMEM. Release the page, to
2396 * avoid a BUG_ON in our caller.
2397 */
2398 if (unlikely(*pagep)) {
2399 put_page(*pagep);
2400 *pagep = NULL;
2401 }
7d64ae3a 2402 return -ENOMEM;
7ed9d238 2403 }
4c27fe4c 2404
cb658a45 2405 if (!*pagep) {
7d64ae3a 2406 ret = -ENOMEM;
7a7256d5
MWO
2407 folio = shmem_alloc_folio(gfp, info, pgoff);
2408 if (!folio)
0f079694 2409 goto out_unacct_blocks;
4c27fe4c 2410
3460f6e5 2411 if (!zeropage) { /* COPY */
7a7256d5 2412 page_kaddr = kmap_local_folio(folio, 0);
8d103963
MR
2413 ret = copy_from_user(page_kaddr,
2414 (const void __user *)src_addr,
2415 PAGE_SIZE);
7a7256d5 2416 kunmap_local(page_kaddr);
8d103963 2417
c1e8d7c6 2418 /* fallback to copy_from_user outside mmap_lock */
8d103963 2419 if (unlikely(ret)) {
7a7256d5 2420 *pagep = &folio->page;
7d64ae3a 2421 ret = -ENOENT;
8d103963 2422 /* don't free the page */
7d64ae3a 2423 goto out_unacct_blocks;
8d103963 2424 }
19b482c2 2425
7a7256d5 2426 flush_dcache_folio(folio);
3460f6e5 2427 } else { /* ZEROPAGE */
7a7256d5 2428 clear_user_highpage(&folio->page, dst_addr);
4c27fe4c
MR
2429 }
2430 } else {
7a7256d5
MWO
2431 folio = page_folio(*pagep);
2432 VM_BUG_ON_FOLIO(folio_test_large(folio), folio);
4c27fe4c
MR
2433 *pagep = NULL;
2434 }
2435
7a7256d5
MWO
2436 VM_BUG_ON(folio_test_locked(folio));
2437 VM_BUG_ON(folio_test_swapbacked(folio));
2438 __folio_set_locked(folio);
2439 __folio_set_swapbacked(folio);
2440 __folio_mark_uptodate(folio);
9cc90c66 2441
e2a50c1f 2442 ret = -EFAULT;
e2a50c1f 2443 max_off = DIV_ROUND_UP(i_size_read(inode), PAGE_SIZE);
3460f6e5 2444 if (unlikely(pgoff >= max_off))
e2a50c1f
AA
2445 goto out_release;
2446
b7dd44a1 2447 ret = shmem_add_to_page_cache(folio, mapping, pgoff, NULL,
3fea5a49 2448 gfp & GFP_RECLAIM_MASK, dst_mm);
4c27fe4c 2449 if (ret)
3fea5a49 2450 goto out_release;
4c27fe4c 2451
7d64ae3a 2452 ret = mfill_atomic_install_pte(dst_mm, dst_pmd, dst_vma, dst_addr,
7a7256d5 2453 &folio->page, true, wp_copy);
7d64ae3a
AR
2454 if (ret)
2455 goto out_delete_from_cache;
4c27fe4c 2456
94b7cc01 2457 spin_lock_irq(&info->lock);
4c27fe4c
MR
2458 info->alloced++;
2459 inode->i_blocks += BLOCKS_PER_PAGE;
2460 shmem_recalc_inode(inode);
94b7cc01 2461 spin_unlock_irq(&info->lock);
4c27fe4c 2462
7a7256d5 2463 folio_unlock(folio);
7d64ae3a
AR
2464 return 0;
2465out_delete_from_cache:
7a7256d5 2466 filemap_remove_folio(folio);
4c27fe4c 2467out_release:
7a7256d5
MWO
2468 folio_unlock(folio);
2469 folio_put(folio);
4c27fe4c 2470out_unacct_blocks:
0f079694 2471 shmem_inode_unacct_blocks(inode, 1);
7d64ae3a 2472 return ret;
8d103963 2473}
3460f6e5 2474#endif /* CONFIG_USERFAULTFD */
8d103963 2475
1da177e4 2476#ifdef CONFIG_TMPFS
92e1d5be 2477static const struct inode_operations shmem_symlink_inode_operations;
69f07ec9 2478static const struct inode_operations shmem_short_symlink_operations;
1da177e4 2479
1da177e4 2480static int
800d15a5 2481shmem_write_begin(struct file *file, struct address_space *mapping,
9d6b0cd7 2482 loff_t pos, unsigned len,
800d15a5 2483 struct page **pagep, void **fsdata)
1da177e4 2484{
800d15a5 2485 struct inode *inode = mapping->host;
40e041a2 2486 struct shmem_inode_info *info = SHMEM_I(inode);
09cbfeaf 2487 pgoff_t index = pos >> PAGE_SHIFT;
eff1f906 2488 struct folio *folio;
a7605426 2489 int ret = 0;
40e041a2 2490
9608703e 2491 /* i_rwsem is held by caller */
ab3948f5
JFG
2492 if (unlikely(info->seals & (F_SEAL_GROW |
2493 F_SEAL_WRITE | F_SEAL_FUTURE_WRITE))) {
2494 if (info->seals & (F_SEAL_WRITE | F_SEAL_FUTURE_WRITE))
40e041a2
DR
2495 return -EPERM;
2496 if ((info->seals & F_SEAL_GROW) && pos + len > inode->i_size)
2497 return -EPERM;
2498 }
2499
eff1f906 2500 ret = shmem_get_folio(inode, index, &folio, SGP_WRITE);
a7605426
YS
2501
2502 if (ret)
2503 return ret;
2504
eff1f906 2505 *pagep = folio_file_page(folio, index);
a7605426 2506 if (PageHWPoison(*pagep)) {
eff1f906
MWO
2507 folio_unlock(folio);
2508 folio_put(folio);
a7605426
YS
2509 *pagep = NULL;
2510 return -EIO;
2511 }
2512
2513 return 0;
800d15a5
NP
2514}
2515
2516static int
2517shmem_write_end(struct file *file, struct address_space *mapping,
2518 loff_t pos, unsigned len, unsigned copied,
2519 struct page *page, void *fsdata)
2520{
2521 struct inode *inode = mapping->host;
2522
d3602444
HD
2523 if (pos + copied > inode->i_size)
2524 i_size_write(inode, pos + copied);
2525
ec9516fb 2526 if (!PageUptodate(page)) {
800d8c63
KS
2527 struct page *head = compound_head(page);
2528 if (PageTransCompound(page)) {
2529 int i;
2530
2531 for (i = 0; i < HPAGE_PMD_NR; i++) {
2532 if (head + i == page)
2533 continue;
2534 clear_highpage(head + i);
2535 flush_dcache_page(head + i);
2536 }
2537 }
09cbfeaf
KS
2538 if (copied < PAGE_SIZE) {
2539 unsigned from = pos & (PAGE_SIZE - 1);
ec9516fb 2540 zero_user_segments(page, 0, from,
09cbfeaf 2541 from + copied, PAGE_SIZE);
ec9516fb 2542 }
800d8c63 2543 SetPageUptodate(head);
ec9516fb 2544 }
800d15a5 2545 set_page_dirty(page);
6746aff7 2546 unlock_page(page);
09cbfeaf 2547 put_page(page);
800d15a5 2548
800d15a5 2549 return copied;
1da177e4
LT
2550}
2551
2ba5bbed 2552static ssize_t shmem_file_read_iter(struct kiocb *iocb, struct iov_iter *to)
1da177e4 2553{
6e58e79d
AV
2554 struct file *file = iocb->ki_filp;
2555 struct inode *inode = file_inode(file);
1da177e4 2556 struct address_space *mapping = inode->i_mapping;
41ffe5d5
HD
2557 pgoff_t index;
2558 unsigned long offset;
f7c1d074 2559 int error = 0;
cb66a7a1 2560 ssize_t retval = 0;
6e58e79d 2561 loff_t *ppos = &iocb->ki_pos;
a0ee5ec5 2562
09cbfeaf
KS
2563 index = *ppos >> PAGE_SHIFT;
2564 offset = *ppos & ~PAGE_MASK;
1da177e4
LT
2565
2566 for (;;) {
4601e2fc 2567 struct folio *folio = NULL;
1da177e4 2568 struct page *page = NULL;
41ffe5d5
HD
2569 pgoff_t end_index;
2570 unsigned long nr, ret;
1da177e4
LT
2571 loff_t i_size = i_size_read(inode);
2572
09cbfeaf 2573 end_index = i_size >> PAGE_SHIFT;
1da177e4
LT
2574 if (index > end_index)
2575 break;
2576 if (index == end_index) {
09cbfeaf 2577 nr = i_size & ~PAGE_MASK;
1da177e4
LT
2578 if (nr <= offset)
2579 break;
2580 }
2581
4601e2fc 2582 error = shmem_get_folio(inode, index, &folio, SGP_READ);
6e58e79d
AV
2583 if (error) {
2584 if (error == -EINVAL)
2585 error = 0;
1da177e4
LT
2586 break;
2587 }
4601e2fc
MWO
2588 if (folio) {
2589 folio_unlock(folio);
a7605426 2590
4601e2fc 2591 page = folio_file_page(folio, index);
a7605426 2592 if (PageHWPoison(page)) {
4601e2fc 2593 folio_put(folio);
a7605426
YS
2594 error = -EIO;
2595 break;
2596 }
75edd345 2597 }
1da177e4
LT
2598
2599 /*
2600 * We must evaluate after, since reads (unlike writes)
9608703e 2601 * are called without i_rwsem protection against truncate
1da177e4 2602 */
09cbfeaf 2603 nr = PAGE_SIZE;
1da177e4 2604 i_size = i_size_read(inode);
09cbfeaf 2605 end_index = i_size >> PAGE_SHIFT;
1da177e4 2606 if (index == end_index) {
09cbfeaf 2607 nr = i_size & ~PAGE_MASK;
1da177e4 2608 if (nr <= offset) {
4601e2fc
MWO
2609 if (folio)
2610 folio_put(folio);
1da177e4
LT
2611 break;
2612 }
2613 }
2614 nr -= offset;
2615
4601e2fc 2616 if (folio) {
1da177e4
LT
2617 /*
2618 * If users can be writing to this page using arbitrary
2619 * virtual addresses, take care about potential aliasing
2620 * before reading the page on the kernel side.
2621 */
2622 if (mapping_writably_mapped(mapping))
2623 flush_dcache_page(page);
2624 /*
2625 * Mark the page accessed if we read the beginning.
2626 */
2627 if (!offset)
4601e2fc 2628 folio_mark_accessed(folio);
1bdec44b
HD
2629 /*
2630 * Ok, we have the page, and it's up-to-date, so
2631 * now we can copy it to user space...
2632 */
2633 ret = copy_page_to_iter(page, offset, nr, to);
4601e2fc 2634 folio_put(folio);
1bdec44b 2635
fcb14cb1 2636 } else if (user_backed_iter(to)) {
1bdec44b
HD
2637 /*
2638 * Copy to user tends to be so well optimized, but
2639 * clear_user() not so much, that it is noticeably
2640 * faster to copy the zero page instead of clearing.
2641 */
2642 ret = copy_page_to_iter(ZERO_PAGE(0), offset, nr, to);
b5810039 2643 } else {
1bdec44b
HD
2644 /*
2645 * But submitting the same page twice in a row to
2646 * splice() - or others? - can result in confusion:
2647 * so don't attempt that optimization on pipes etc.
2648 */
2649 ret = iov_iter_zero(nr, to);
b5810039 2650 }
1da177e4 2651
6e58e79d 2652 retval += ret;
1da177e4 2653 offset += ret;
09cbfeaf
KS
2654 index += offset >> PAGE_SHIFT;
2655 offset &= ~PAGE_MASK;
1da177e4 2656
2ba5bbed 2657 if (!iov_iter_count(to))
1da177e4 2658 break;
6e58e79d
AV
2659 if (ret < nr) {
2660 error = -EFAULT;
2661 break;
2662 }
1da177e4
LT
2663 cond_resched();
2664 }
2665
09cbfeaf 2666 *ppos = ((loff_t) index << PAGE_SHIFT) + offset;
6e58e79d
AV
2667 file_accessed(file);
2668 return retval ? retval : error;
1da177e4
LT
2669}
2670
965c8e59 2671static loff_t shmem_file_llseek(struct file *file, loff_t offset, int whence)
220f2ac9
HD
2672{
2673 struct address_space *mapping = file->f_mapping;
2674 struct inode *inode = mapping->host;
220f2ac9 2675
965c8e59
AM
2676 if (whence != SEEK_DATA && whence != SEEK_HOLE)
2677 return generic_file_llseek_size(file, offset, whence,
220f2ac9 2678 MAX_LFS_FILESIZE, i_size_read(inode));
41139aa4
MWO
2679 if (offset < 0)
2680 return -ENXIO;
2681
5955102c 2682 inode_lock(inode);
9608703e 2683 /* We're holding i_rwsem so we can access i_size directly */
41139aa4 2684 offset = mapping_seek_hole_data(mapping, offset, inode->i_size, whence);
387aae6f
HD
2685 if (offset >= 0)
2686 offset = vfs_setpos(file, offset, MAX_LFS_FILESIZE);
5955102c 2687 inode_unlock(inode);
220f2ac9
HD
2688 return offset;
2689}
2690
83e4fa9c
HD
2691static long shmem_fallocate(struct file *file, int mode, loff_t offset,
2692 loff_t len)
2693{
496ad9aa 2694 struct inode *inode = file_inode(file);
e2d12e22 2695 struct shmem_sb_info *sbinfo = SHMEM_SB(inode->i_sb);
40e041a2 2696 struct shmem_inode_info *info = SHMEM_I(inode);
1aac1400 2697 struct shmem_falloc shmem_falloc;
d144bf62 2698 pgoff_t start, index, end, undo_fallocend;
e2d12e22 2699 int error;
83e4fa9c 2700
13ace4d0
HD
2701 if (mode & ~(FALLOC_FL_KEEP_SIZE | FALLOC_FL_PUNCH_HOLE))
2702 return -EOPNOTSUPP;
2703
5955102c 2704 inode_lock(inode);
83e4fa9c
HD
2705
2706 if (mode & FALLOC_FL_PUNCH_HOLE) {
2707 struct address_space *mapping = file->f_mapping;
2708 loff_t unmap_start = round_up(offset, PAGE_SIZE);
2709 loff_t unmap_end = round_down(offset + len, PAGE_SIZE) - 1;
8e205f77 2710 DECLARE_WAIT_QUEUE_HEAD_ONSTACK(shmem_falloc_waitq);
83e4fa9c 2711
9608703e 2712 /* protected by i_rwsem */
ab3948f5 2713 if (info->seals & (F_SEAL_WRITE | F_SEAL_FUTURE_WRITE)) {
40e041a2
DR
2714 error = -EPERM;
2715 goto out;
2716 }
2717
8e205f77 2718 shmem_falloc.waitq = &shmem_falloc_waitq;
aa71ecd8 2719 shmem_falloc.start = (u64)unmap_start >> PAGE_SHIFT;
f00cdc6d
HD
2720 shmem_falloc.next = (unmap_end + 1) >> PAGE_SHIFT;
2721 spin_lock(&inode->i_lock);
2722 inode->i_private = &shmem_falloc;
2723 spin_unlock(&inode->i_lock);
2724
83e4fa9c
HD
2725 if ((u64)unmap_end > (u64)unmap_start)
2726 unmap_mapping_range(mapping, unmap_start,
2727 1 + unmap_end - unmap_start, 0);
2728 shmem_truncate_range(inode, offset, offset + len - 1);
2729 /* No need to unmap again: hole-punching leaves COWed pages */
8e205f77
HD
2730
2731 spin_lock(&inode->i_lock);
2732 inode->i_private = NULL;
2733 wake_up_all(&shmem_falloc_waitq);
2055da97 2734 WARN_ON_ONCE(!list_empty(&shmem_falloc_waitq.head));
8e205f77 2735 spin_unlock(&inode->i_lock);
83e4fa9c 2736 error = 0;
8e205f77 2737 goto out;
e2d12e22
HD
2738 }
2739
2740 /* We need to check rlimit even when FALLOC_FL_KEEP_SIZE */
2741 error = inode_newsize_ok(inode, offset + len);
2742 if (error)
2743 goto out;
2744
40e041a2
DR
2745 if ((info->seals & F_SEAL_GROW) && offset + len > inode->i_size) {
2746 error = -EPERM;
2747 goto out;
2748 }
2749
09cbfeaf
KS
2750 start = offset >> PAGE_SHIFT;
2751 end = (offset + len + PAGE_SIZE - 1) >> PAGE_SHIFT;
e2d12e22
HD
2752 /* Try to avoid a swapstorm if len is impossible to satisfy */
2753 if (sbinfo->max_blocks && end - start > sbinfo->max_blocks) {
2754 error = -ENOSPC;
2755 goto out;
83e4fa9c
HD
2756 }
2757
8e205f77 2758 shmem_falloc.waitq = NULL;
1aac1400
HD
2759 shmem_falloc.start = start;
2760 shmem_falloc.next = start;
2761 shmem_falloc.nr_falloced = 0;
2762 shmem_falloc.nr_unswapped = 0;
2763 spin_lock(&inode->i_lock);
2764 inode->i_private = &shmem_falloc;
2765 spin_unlock(&inode->i_lock);
2766
d144bf62
HD
2767 /*
2768 * info->fallocend is only relevant when huge pages might be
2769 * involved: to prevent split_huge_page() freeing fallocated
2770 * pages when FALLOC_FL_KEEP_SIZE committed beyond i_size.
2771 */
2772 undo_fallocend = info->fallocend;
2773 if (info->fallocend < end)
2774 info->fallocend = end;
2775
050dcb5c 2776 for (index = start; index < end; ) {
b0802b22 2777 struct folio *folio;
e2d12e22
HD
2778
2779 /*
2780 * Good, the fallocate(2) manpage permits EINTR: we may have
2781 * been interrupted because we are using up too much memory.
2782 */
2783 if (signal_pending(current))
2784 error = -EINTR;
1aac1400
HD
2785 else if (shmem_falloc.nr_unswapped > shmem_falloc.nr_falloced)
2786 error = -ENOMEM;
e2d12e22 2787 else
b0802b22
MWO
2788 error = shmem_get_folio(inode, index, &folio,
2789 SGP_FALLOC);
e2d12e22 2790 if (error) {
d144bf62 2791 info->fallocend = undo_fallocend;
b0802b22 2792 /* Remove the !uptodate folios we added */
7f556567
HD
2793 if (index > start) {
2794 shmem_undo_range(inode,
2795 (loff_t)start << PAGE_SHIFT,
2796 ((loff_t)index << PAGE_SHIFT) - 1, true);
2797 }
1aac1400 2798 goto undone;
e2d12e22
HD
2799 }
2800
050dcb5c
HD
2801 /*
2802 * Here is a more important optimization than it appears:
b0802b22
MWO
2803 * a second SGP_FALLOC on the same large folio will clear it,
2804 * making it uptodate and un-undoable if we fail later.
050dcb5c 2805 */
b0802b22
MWO
2806 index = folio_next_index(folio);
2807 /* Beware 32-bit wraparound */
2808 if (!index)
2809 index--;
050dcb5c 2810
1aac1400
HD
2811 /*
2812 * Inform shmem_writepage() how far we have reached.
2813 * No need for lock or barrier: we have the page lock.
2814 */
b0802b22 2815 if (!folio_test_uptodate(folio))
050dcb5c
HD
2816 shmem_falloc.nr_falloced += index - shmem_falloc.next;
2817 shmem_falloc.next = index;
1aac1400 2818
e2d12e22 2819 /*
b0802b22 2820 * If !uptodate, leave it that way so that freeable folios
1635f6a7 2821 * can be recognized if we need to rollback on error later.
b0802b22
MWO
2822 * But mark it dirty so that memory pressure will swap rather
2823 * than free the folios we are allocating (and SGP_CACHE folios
e2d12e22
HD
2824 * might still be clean: we now need to mark those dirty too).
2825 */
b0802b22
MWO
2826 folio_mark_dirty(folio);
2827 folio_unlock(folio);
2828 folio_put(folio);
e2d12e22
HD
2829 cond_resched();
2830 }
2831
2832 if (!(mode & FALLOC_FL_KEEP_SIZE) && offset + len > inode->i_size)
2833 i_size_write(inode, offset + len);
1aac1400
HD
2834undone:
2835 spin_lock(&inode->i_lock);
2836 inode->i_private = NULL;
2837 spin_unlock(&inode->i_lock);
e2d12e22 2838out:
15f242bb
HD
2839 if (!error)
2840 file_modified(file);
5955102c 2841 inode_unlock(inode);
83e4fa9c
HD
2842 return error;
2843}
2844
726c3342 2845static int shmem_statfs(struct dentry *dentry, struct kstatfs *buf)
1da177e4 2846{
726c3342 2847 struct shmem_sb_info *sbinfo = SHMEM_SB(dentry->d_sb);
1da177e4
LT
2848
2849 buf->f_type = TMPFS_MAGIC;
09cbfeaf 2850 buf->f_bsize = PAGE_SIZE;
1da177e4 2851 buf->f_namelen = NAME_MAX;
0edd73b3 2852 if (sbinfo->max_blocks) {
1da177e4 2853 buf->f_blocks = sbinfo->max_blocks;
41ffe5d5
HD
2854 buf->f_bavail =
2855 buf->f_bfree = sbinfo->max_blocks -
2856 percpu_counter_sum(&sbinfo->used_blocks);
0edd73b3
HD
2857 }
2858 if (sbinfo->max_inodes) {
1da177e4
LT
2859 buf->f_files = sbinfo->max_inodes;
2860 buf->f_ffree = sbinfo->free_inodes;
1da177e4
LT
2861 }
2862 /* else leave those fields 0 like simple_statfs */
59cda49e
AG
2863
2864 buf->f_fsid = uuid_to_fsid(dentry->d_sb->s_uuid.b);
2865
1da177e4
LT
2866 return 0;
2867}
2868
2869/*
2870 * File creation. Allocate an inode, and we're done..
2871 */
2872static int
549c7297
CB
2873shmem_mknod(struct user_namespace *mnt_userns, struct inode *dir,
2874 struct dentry *dentry, umode_t mode, dev_t dev)
1da177e4 2875{
0b0a0806 2876 struct inode *inode;
1da177e4
LT
2877 int error = -ENOSPC;
2878
454abafe 2879 inode = shmem_get_inode(dir->i_sb, dir, mode, dev, VM_NORESERVE);
1da177e4 2880 if (inode) {
feda821e
CH
2881 error = simple_acl_create(dir, inode);
2882 if (error)
2883 goto out_iput;
2a7dba39 2884 error = security_inode_init_security(inode, dir,
9d8f13ba 2885 &dentry->d_name,
6d9d88d0 2886 shmem_initxattrs, NULL);
feda821e
CH
2887 if (error && error != -EOPNOTSUPP)
2888 goto out_iput;
37ec43cd 2889
718deb6b 2890 error = 0;
1da177e4 2891 dir->i_size += BOGO_DIRENT_SIZE;
078cd827 2892 dir->i_ctime = dir->i_mtime = current_time(dir);
1da177e4
LT
2893 d_instantiate(dentry, inode);
2894 dget(dentry); /* Extra count - pin the dentry in core */
1da177e4
LT
2895 }
2896 return error;
feda821e
CH
2897out_iput:
2898 iput(inode);
2899 return error;
1da177e4
LT
2900}
2901
60545d0d 2902static int
549c7297
CB
2903shmem_tmpfile(struct user_namespace *mnt_userns, struct inode *dir,
2904 struct dentry *dentry, umode_t mode)
60545d0d
AV
2905{
2906 struct inode *inode;
2907 int error = -ENOSPC;
2908
2909 inode = shmem_get_inode(dir->i_sb, dir, mode, 0, VM_NORESERVE);
2910 if (inode) {
2911 error = security_inode_init_security(inode, dir,
2912 NULL,
2913 shmem_initxattrs, NULL);
feda821e
CH
2914 if (error && error != -EOPNOTSUPP)
2915 goto out_iput;
2916 error = simple_acl_create(dir, inode);
2917 if (error)
2918 goto out_iput;
60545d0d
AV
2919 d_tmpfile(dentry, inode);
2920 }
2921 return error;
feda821e
CH
2922out_iput:
2923 iput(inode);
2924 return error;
60545d0d
AV
2925}
2926
549c7297
CB
2927static int shmem_mkdir(struct user_namespace *mnt_userns, struct inode *dir,
2928 struct dentry *dentry, umode_t mode)
1da177e4
LT
2929{
2930 int error;
2931
549c7297
CB
2932 if ((error = shmem_mknod(&init_user_ns, dir, dentry,
2933 mode | S_IFDIR, 0)))
1da177e4 2934 return error;
d8c76e6f 2935 inc_nlink(dir);
1da177e4
LT
2936 return 0;
2937}
2938
549c7297
CB
2939static int shmem_create(struct user_namespace *mnt_userns, struct inode *dir,
2940 struct dentry *dentry, umode_t mode, bool excl)
1da177e4 2941{
549c7297 2942 return shmem_mknod(&init_user_ns, dir, dentry, mode | S_IFREG, 0);
1da177e4
LT
2943}
2944
2945/*
2946 * Link a file..
2947 */
2948static int shmem_link(struct dentry *old_dentry, struct inode *dir, struct dentry *dentry)
2949{
75c3cfa8 2950 struct inode *inode = d_inode(old_dentry);
29b00e60 2951 int ret = 0;
1da177e4
LT
2952
2953 /*
2954 * No ordinary (disk based) filesystem counts links as inodes;
2955 * but each new link needs a new dentry, pinning lowmem, and
2956 * tmpfs dentries cannot be pruned until they are unlinked.
1062af92
DW
2957 * But if an O_TMPFILE file is linked into the tmpfs, the
2958 * first link must skip that, to get the accounting right.
1da177e4 2959 */
1062af92 2960 if (inode->i_nlink) {
e809d5f0 2961 ret = shmem_reserve_inode(inode->i_sb, NULL);
1062af92
DW
2962 if (ret)
2963 goto out;
2964 }
1da177e4
LT
2965
2966 dir->i_size += BOGO_DIRENT_SIZE;
078cd827 2967 inode->i_ctime = dir->i_ctime = dir->i_mtime = current_time(inode);
d8c76e6f 2968 inc_nlink(inode);
7de9c6ee 2969 ihold(inode); /* New dentry reference */
1da177e4
LT
2970 dget(dentry); /* Extra pinning count for the created dentry */
2971 d_instantiate(dentry, inode);
5b04c689
PE
2972out:
2973 return ret;
1da177e4
LT
2974}
2975
2976static int shmem_unlink(struct inode *dir, struct dentry *dentry)
2977{
75c3cfa8 2978 struct inode *inode = d_inode(dentry);
1da177e4 2979
5b04c689
PE
2980 if (inode->i_nlink > 1 && !S_ISDIR(inode->i_mode))
2981 shmem_free_inode(inode->i_sb);
1da177e4
LT
2982
2983 dir->i_size -= BOGO_DIRENT_SIZE;
078cd827 2984 inode->i_ctime = dir->i_ctime = dir->i_mtime = current_time(inode);
9a53c3a7 2985 drop_nlink(inode);
1da177e4
LT
2986 dput(dentry); /* Undo the count from "create" - this does all the work */
2987 return 0;
2988}
2989
2990static int shmem_rmdir(struct inode *dir, struct dentry *dentry)
2991{
2992 if (!simple_empty(dentry))
2993 return -ENOTEMPTY;
2994
75c3cfa8 2995 drop_nlink(d_inode(dentry));
9a53c3a7 2996 drop_nlink(dir);
1da177e4
LT
2997 return shmem_unlink(dir, dentry);
2998}
2999
549c7297
CB
3000static int shmem_whiteout(struct user_namespace *mnt_userns,
3001 struct inode *old_dir, struct dentry *old_dentry)
46fdb794
MS
3002{
3003 struct dentry *whiteout;
3004 int error;
3005
3006 whiteout = d_alloc(old_dentry->d_parent, &old_dentry->d_name);
3007 if (!whiteout)
3008 return -ENOMEM;
3009
549c7297 3010 error = shmem_mknod(&init_user_ns, old_dir, whiteout,
46fdb794
MS
3011 S_IFCHR | WHITEOUT_MODE, WHITEOUT_DEV);
3012 dput(whiteout);
3013 if (error)
3014 return error;
3015
3016 /*
3017 * Cheat and hash the whiteout while the old dentry is still in
3018 * place, instead of playing games with FS_RENAME_DOES_D_MOVE.
3019 *
3020 * d_lookup() will consistently find one of them at this point,
3021 * not sure which one, but that isn't even important.
3022 */
3023 d_rehash(whiteout);
3024 return 0;
3025}
3026
1da177e4
LT
3027/*
3028 * The VFS layer already does all the dentry stuff for rename,
3029 * we just have to decrement the usage count for the target if
3030 * it exists so that the VFS layer correctly free's it when it
3031 * gets overwritten.
3032 */
549c7297
CB
3033static int shmem_rename2(struct user_namespace *mnt_userns,
3034 struct inode *old_dir, struct dentry *old_dentry,
3035 struct inode *new_dir, struct dentry *new_dentry,
3036 unsigned int flags)
1da177e4 3037{
75c3cfa8 3038 struct inode *inode = d_inode(old_dentry);
1da177e4
LT
3039 int they_are_dirs = S_ISDIR(inode->i_mode);
3040
46fdb794 3041 if (flags & ~(RENAME_NOREPLACE | RENAME_EXCHANGE | RENAME_WHITEOUT))
3b69ff51
MS
3042 return -EINVAL;
3043
37456771 3044 if (flags & RENAME_EXCHANGE)
6429e463 3045 return simple_rename_exchange(old_dir, old_dentry, new_dir, new_dentry);
37456771 3046
1da177e4
LT
3047 if (!simple_empty(new_dentry))
3048 return -ENOTEMPTY;
3049
46fdb794
MS
3050 if (flags & RENAME_WHITEOUT) {
3051 int error;
3052
549c7297 3053 error = shmem_whiteout(&init_user_ns, old_dir, old_dentry);
46fdb794
MS
3054 if (error)
3055 return error;
3056 }
3057
75c3cfa8 3058 if (d_really_is_positive(new_dentry)) {
1da177e4 3059 (void) shmem_unlink(new_dir, new_dentry);
b928095b 3060 if (they_are_dirs) {
75c3cfa8 3061 drop_nlink(d_inode(new_dentry));
9a53c3a7 3062 drop_nlink(old_dir);
b928095b 3063 }
1da177e4 3064 } else if (they_are_dirs) {
9a53c3a7 3065 drop_nlink(old_dir);
d8c76e6f 3066 inc_nlink(new_dir);
1da177e4
LT
3067 }
3068
3069 old_dir->i_size -= BOGO_DIRENT_SIZE;
3070 new_dir->i_size += BOGO_DIRENT_SIZE;
3071 old_dir->i_ctime = old_dir->i_mtime =
3072 new_dir->i_ctime = new_dir->i_mtime =
078cd827 3073 inode->i_ctime = current_time(old_dir);
1da177e4
LT
3074 return 0;
3075}
3076
549c7297
CB
3077static int shmem_symlink(struct user_namespace *mnt_userns, struct inode *dir,
3078 struct dentry *dentry, const char *symname)
1da177e4
LT
3079{
3080 int error;
3081 int len;
3082 struct inode *inode;
7ad0414b 3083 struct folio *folio;
1da177e4
LT
3084
3085 len = strlen(symname) + 1;
09cbfeaf 3086 if (len > PAGE_SIZE)
1da177e4
LT
3087 return -ENAMETOOLONG;
3088
0825a6f9
JP
3089 inode = shmem_get_inode(dir->i_sb, dir, S_IFLNK | 0777, 0,
3090 VM_NORESERVE);
1da177e4
LT
3091 if (!inode)
3092 return -ENOSPC;
3093
9d8f13ba 3094 error = security_inode_init_security(inode, dir, &dentry->d_name,
6d9d88d0 3095 shmem_initxattrs, NULL);
343c3d7f
MN
3096 if (error && error != -EOPNOTSUPP) {
3097 iput(inode);
3098 return error;
570bc1c2
SS
3099 }
3100
1da177e4 3101 inode->i_size = len-1;
69f07ec9 3102 if (len <= SHORT_SYMLINK_LEN) {
3ed47db3
AV
3103 inode->i_link = kmemdup(symname, len, GFP_KERNEL);
3104 if (!inode->i_link) {
69f07ec9
HD
3105 iput(inode);
3106 return -ENOMEM;
3107 }
3108 inode->i_op = &shmem_short_symlink_operations;
1da177e4 3109 } else {
e8ecde25 3110 inode_nohighmem(inode);
7ad0414b 3111 error = shmem_get_folio(inode, 0, &folio, SGP_WRITE);
1da177e4
LT
3112 if (error) {
3113 iput(inode);
3114 return error;
3115 }
14fcc23f 3116 inode->i_mapping->a_ops = &shmem_aops;
1da177e4 3117 inode->i_op = &shmem_symlink_inode_operations;
7ad0414b
MWO
3118 memcpy(folio_address(folio), symname, len);
3119 folio_mark_uptodate(folio);
3120 folio_mark_dirty(folio);
3121 folio_unlock(folio);
3122 folio_put(folio);
1da177e4 3123 }
1da177e4 3124 dir->i_size += BOGO_DIRENT_SIZE;
078cd827 3125 dir->i_ctime = dir->i_mtime = current_time(dir);
1da177e4
LT
3126 d_instantiate(dentry, inode);
3127 dget(dentry);
3128 return 0;
3129}
3130
fceef393 3131static void shmem_put_link(void *arg)
1da177e4 3132{
e4b57722
MWO
3133 folio_mark_accessed(arg);
3134 folio_put(arg);
1da177e4
LT
3135}
3136
6b255391 3137static const char *shmem_get_link(struct dentry *dentry,
fceef393
AV
3138 struct inode *inode,
3139 struct delayed_call *done)
1da177e4 3140{
e4b57722 3141 struct folio *folio = NULL;
6b255391 3142 int error;
e4b57722 3143
6a6c9904 3144 if (!dentry) {
e4b57722
MWO
3145 folio = filemap_get_folio(inode->i_mapping, 0);
3146 if (!folio)
6a6c9904 3147 return ERR_PTR(-ECHILD);
7459c149 3148 if (PageHWPoison(folio_page(folio, 0)) ||
e4b57722
MWO
3149 !folio_test_uptodate(folio)) {
3150 folio_put(folio);
6a6c9904
AV
3151 return ERR_PTR(-ECHILD);
3152 }
3153 } else {
e4b57722 3154 error = shmem_get_folio(inode, 0, &folio, SGP_READ);
6a6c9904
AV
3155 if (error)
3156 return ERR_PTR(error);
e4b57722 3157 if (!folio)
a7605426 3158 return ERR_PTR(-ECHILD);
7459c149 3159 if (PageHWPoison(folio_page(folio, 0))) {
e4b57722
MWO
3160 folio_unlock(folio);
3161 folio_put(folio);
a7605426
YS
3162 return ERR_PTR(-ECHILD);
3163 }
e4b57722 3164 folio_unlock(folio);
6a6c9904 3165 }
e4b57722
MWO
3166 set_delayed_call(done, shmem_put_link, folio);
3167 return folio_address(folio);
1da177e4
LT
3168}
3169
b09e0fa4 3170#ifdef CONFIG_TMPFS_XATTR
e408e695
TT
3171
3172static int shmem_fileattr_get(struct dentry *dentry, struct fileattr *fa)
3173{
3174 struct shmem_inode_info *info = SHMEM_I(d_inode(dentry));
3175
3176 fileattr_fill_flags(fa, info->fsflags & SHMEM_FL_USER_VISIBLE);
3177
3178 return 0;
3179}
3180
3181static int shmem_fileattr_set(struct user_namespace *mnt_userns,
3182 struct dentry *dentry, struct fileattr *fa)
3183{
3184 struct inode *inode = d_inode(dentry);
3185 struct shmem_inode_info *info = SHMEM_I(inode);
3186
3187 if (fileattr_has_fsx(fa))
3188 return -EOPNOTSUPP;
cb241339
HD
3189 if (fa->flags & ~SHMEM_FL_USER_MODIFIABLE)
3190 return -EOPNOTSUPP;
e408e695
TT
3191
3192 info->fsflags = (info->fsflags & ~SHMEM_FL_USER_MODIFIABLE) |
3193 (fa->flags & SHMEM_FL_USER_MODIFIABLE);
3194
cb241339 3195 shmem_set_inode_flags(inode, info->fsflags);
e408e695
TT
3196 inode->i_ctime = current_time(inode);
3197 return 0;
3198}
3199
46711810 3200/*
b09e0fa4
EP
3201 * Superblocks without xattr inode operations may get some security.* xattr
3202 * support from the LSM "for free". As soon as we have any other xattrs
39f0247d
AG
3203 * like ACLs, we also need to implement the security.* handlers at
3204 * filesystem level, though.
3205 */
3206
6d9d88d0
JS
3207/*
3208 * Callback for security_inode_init_security() for acquiring xattrs.
3209 */
3210static int shmem_initxattrs(struct inode *inode,
3211 const struct xattr *xattr_array,
3212 void *fs_info)
3213{
3214 struct shmem_inode_info *info = SHMEM_I(inode);
3215 const struct xattr *xattr;
38f38657 3216 struct simple_xattr *new_xattr;
6d9d88d0
JS
3217 size_t len;
3218
3219 for (xattr = xattr_array; xattr->name != NULL; xattr++) {
38f38657 3220 new_xattr = simple_xattr_alloc(xattr->value, xattr->value_len);
6d9d88d0
JS
3221 if (!new_xattr)
3222 return -ENOMEM;
3223
3224 len = strlen(xattr->name) + 1;
3225 new_xattr->name = kmalloc(XATTR_SECURITY_PREFIX_LEN + len,
3226 GFP_KERNEL);
3227 if (!new_xattr->name) {
3bef735a 3228 kvfree(new_xattr);
6d9d88d0
JS
3229 return -ENOMEM;
3230 }
3231
3232 memcpy(new_xattr->name, XATTR_SECURITY_PREFIX,
3233 XATTR_SECURITY_PREFIX_LEN);
3234 memcpy(new_xattr->name + XATTR_SECURITY_PREFIX_LEN,
3235 xattr->name, len);
3236
38f38657 3237 simple_xattr_list_add(&info->xattrs, new_xattr);
6d9d88d0
JS
3238 }
3239
3240 return 0;
3241}
3242
aa7c5241 3243static int shmem_xattr_handler_get(const struct xattr_handler *handler,
b296821a
AV
3244 struct dentry *unused, struct inode *inode,
3245 const char *name, void *buffer, size_t size)
b09e0fa4 3246{
b296821a 3247 struct shmem_inode_info *info = SHMEM_I(inode);
b09e0fa4 3248
aa7c5241 3249 name = xattr_full_name(handler, name);
38f38657 3250 return simple_xattr_get(&info->xattrs, name, buffer, size);
b09e0fa4
EP
3251}
3252
aa7c5241 3253static int shmem_xattr_handler_set(const struct xattr_handler *handler,
e65ce2a5 3254 struct user_namespace *mnt_userns,
59301226
AV
3255 struct dentry *unused, struct inode *inode,
3256 const char *name, const void *value,
3257 size_t size, int flags)
b09e0fa4 3258{
59301226 3259 struct shmem_inode_info *info = SHMEM_I(inode);
b09e0fa4 3260
aa7c5241 3261 name = xattr_full_name(handler, name);
a46a2295 3262 return simple_xattr_set(&info->xattrs, name, value, size, flags, NULL);
b09e0fa4
EP
3263}
3264
aa7c5241
AG
3265static const struct xattr_handler shmem_security_xattr_handler = {
3266 .prefix = XATTR_SECURITY_PREFIX,
3267 .get = shmem_xattr_handler_get,
3268 .set = shmem_xattr_handler_set,
3269};
b09e0fa4 3270
aa7c5241
AG
3271static const struct xattr_handler shmem_trusted_xattr_handler = {
3272 .prefix = XATTR_TRUSTED_PREFIX,
3273 .get = shmem_xattr_handler_get,
3274 .set = shmem_xattr_handler_set,
3275};
b09e0fa4 3276
aa7c5241
AG
3277static const struct xattr_handler *shmem_xattr_handlers[] = {
3278#ifdef CONFIG_TMPFS_POSIX_ACL
3279 &posix_acl_access_xattr_handler,
3280 &posix_acl_default_xattr_handler,
3281#endif
3282 &shmem_security_xattr_handler,
3283 &shmem_trusted_xattr_handler,
3284 NULL
3285};
b09e0fa4
EP
3286
3287static ssize_t shmem_listxattr(struct dentry *dentry, char *buffer, size_t size)
3288{
75c3cfa8 3289 struct shmem_inode_info *info = SHMEM_I(d_inode(dentry));
786534b9 3290 return simple_xattr_list(d_inode(dentry), &info->xattrs, buffer, size);
b09e0fa4
EP
3291}
3292#endif /* CONFIG_TMPFS_XATTR */
3293
69f07ec9 3294static const struct inode_operations shmem_short_symlink_operations = {
f7cd16a5 3295 .getattr = shmem_getattr,
6b255391 3296 .get_link = simple_get_link,
b09e0fa4 3297#ifdef CONFIG_TMPFS_XATTR
b09e0fa4 3298 .listxattr = shmem_listxattr,
b09e0fa4
EP
3299#endif
3300};
3301
3302static const struct inode_operations shmem_symlink_inode_operations = {
f7cd16a5 3303 .getattr = shmem_getattr,
6b255391 3304 .get_link = shmem_get_link,
b09e0fa4 3305#ifdef CONFIG_TMPFS_XATTR
b09e0fa4 3306 .listxattr = shmem_listxattr,
39f0247d 3307#endif
b09e0fa4 3308};
39f0247d 3309
91828a40
DG
3310static struct dentry *shmem_get_parent(struct dentry *child)
3311{
3312 return ERR_PTR(-ESTALE);
3313}
3314
3315static int shmem_match(struct inode *ino, void *vfh)
3316{
3317 __u32 *fh = vfh;
3318 __u64 inum = fh[2];
3319 inum = (inum << 32) | fh[1];
3320 return ino->i_ino == inum && fh[0] == ino->i_generation;
3321}
3322
12ba780d
AG
3323/* Find any alias of inode, but prefer a hashed alias */
3324static struct dentry *shmem_find_alias(struct inode *inode)
3325{
3326 struct dentry *alias = d_find_alias(inode);
3327
3328 return alias ?: d_find_any_alias(inode);
3329}
3330
3331
480b116c
CH
3332static struct dentry *shmem_fh_to_dentry(struct super_block *sb,
3333 struct fid *fid, int fh_len, int fh_type)
91828a40 3334{
91828a40 3335 struct inode *inode;
480b116c 3336 struct dentry *dentry = NULL;
35c2a7f4 3337 u64 inum;
480b116c
CH
3338
3339 if (fh_len < 3)
3340 return NULL;
91828a40 3341
35c2a7f4
HD
3342 inum = fid->raw[2];
3343 inum = (inum << 32) | fid->raw[1];
3344
480b116c
CH
3345 inode = ilookup5(sb, (unsigned long)(inum + fid->raw[0]),
3346 shmem_match, fid->raw);
91828a40 3347 if (inode) {
12ba780d 3348 dentry = shmem_find_alias(inode);
91828a40
DG
3349 iput(inode);
3350 }
3351
480b116c 3352 return dentry;
91828a40
DG
3353}
3354
b0b0382b
AV
3355static int shmem_encode_fh(struct inode *inode, __u32 *fh, int *len,
3356 struct inode *parent)
91828a40 3357{
5fe0c237
AK
3358 if (*len < 3) {
3359 *len = 3;
94e07a75 3360 return FILEID_INVALID;
5fe0c237 3361 }
91828a40 3362
1d3382cb 3363 if (inode_unhashed(inode)) {
91828a40
DG
3364 /* Unfortunately insert_inode_hash is not idempotent,
3365 * so as we hash inodes here rather than at creation
3366 * time, we need a lock to ensure we only try
3367 * to do it once
3368 */
3369 static DEFINE_SPINLOCK(lock);
3370 spin_lock(&lock);
1d3382cb 3371 if (inode_unhashed(inode))
91828a40
DG
3372 __insert_inode_hash(inode,
3373 inode->i_ino + inode->i_generation);
3374 spin_unlock(&lock);
3375 }
3376
3377 fh[0] = inode->i_generation;
3378 fh[1] = inode->i_ino;
3379 fh[2] = ((__u64)inode->i_ino) >> 32;
3380
3381 *len = 3;
3382 return 1;
3383}
3384
39655164 3385static const struct export_operations shmem_export_ops = {
91828a40 3386 .get_parent = shmem_get_parent,
91828a40 3387 .encode_fh = shmem_encode_fh,
480b116c 3388 .fh_to_dentry = shmem_fh_to_dentry,
91828a40
DG
3389};
3390
626c3920
AV
3391enum shmem_param {
3392 Opt_gid,
3393 Opt_huge,
3394 Opt_mode,
3395 Opt_mpol,
3396 Opt_nr_blocks,
3397 Opt_nr_inodes,
3398 Opt_size,
3399 Opt_uid,
ea3271f7
CD
3400 Opt_inode32,
3401 Opt_inode64,
626c3920
AV
3402};
3403
5eede625 3404static const struct constant_table shmem_param_enums_huge[] = {
2710c957
AV
3405 {"never", SHMEM_HUGE_NEVER },
3406 {"always", SHMEM_HUGE_ALWAYS },
3407 {"within_size", SHMEM_HUGE_WITHIN_SIZE },
3408 {"advise", SHMEM_HUGE_ADVISE },
2710c957
AV
3409 {}
3410};
3411
d7167b14 3412const struct fs_parameter_spec shmem_fs_parameters[] = {
626c3920 3413 fsparam_u32 ("gid", Opt_gid),
2710c957 3414 fsparam_enum ("huge", Opt_huge, shmem_param_enums_huge),
626c3920
AV
3415 fsparam_u32oct("mode", Opt_mode),
3416 fsparam_string("mpol", Opt_mpol),
3417 fsparam_string("nr_blocks", Opt_nr_blocks),
3418 fsparam_string("nr_inodes", Opt_nr_inodes),
3419 fsparam_string("size", Opt_size),
3420 fsparam_u32 ("uid", Opt_uid),
ea3271f7
CD
3421 fsparam_flag ("inode32", Opt_inode32),
3422 fsparam_flag ("inode64", Opt_inode64),
626c3920
AV
3423 {}
3424};
3425
f3235626 3426static int shmem_parse_one(struct fs_context *fc, struct fs_parameter *param)
1da177e4 3427{
f3235626 3428 struct shmem_options *ctx = fc->fs_private;
626c3920
AV
3429 struct fs_parse_result result;
3430 unsigned long long size;
e04dc423 3431 char *rest;
626c3920
AV
3432 int opt;
3433
d7167b14 3434 opt = fs_parse(fc, shmem_fs_parameters, param, &result);
f3235626 3435 if (opt < 0)
626c3920 3436 return opt;
1da177e4 3437
626c3920
AV
3438 switch (opt) {
3439 case Opt_size:
3440 size = memparse(param->string, &rest);
e04dc423
AV
3441 if (*rest == '%') {
3442 size <<= PAGE_SHIFT;
3443 size *= totalram_pages();
3444 do_div(size, 100);
3445 rest++;
3446 }
3447 if (*rest)
626c3920 3448 goto bad_value;
e04dc423
AV
3449 ctx->blocks = DIV_ROUND_UP(size, PAGE_SIZE);
3450 ctx->seen |= SHMEM_SEEN_BLOCKS;
626c3920
AV
3451 break;
3452 case Opt_nr_blocks:
3453 ctx->blocks = memparse(param->string, &rest);
0c98c8e1 3454 if (*rest || ctx->blocks > S64_MAX)
626c3920 3455 goto bad_value;
e04dc423 3456 ctx->seen |= SHMEM_SEEN_BLOCKS;
626c3920
AV
3457 break;
3458 case Opt_nr_inodes:
3459 ctx->inodes = memparse(param->string, &rest);
e04dc423 3460 if (*rest)
626c3920 3461 goto bad_value;
e04dc423 3462 ctx->seen |= SHMEM_SEEN_INODES;
626c3920
AV
3463 break;
3464 case Opt_mode:
3465 ctx->mode = result.uint_32 & 07777;
3466 break;
3467 case Opt_uid:
3468 ctx->uid = make_kuid(current_user_ns(), result.uint_32);
e04dc423 3469 if (!uid_valid(ctx->uid))
626c3920
AV
3470 goto bad_value;
3471 break;
3472 case Opt_gid:
3473 ctx->gid = make_kgid(current_user_ns(), result.uint_32);
e04dc423 3474 if (!gid_valid(ctx->gid))
626c3920
AV
3475 goto bad_value;
3476 break;
3477 case Opt_huge:
3478 ctx->huge = result.uint_32;
3479 if (ctx->huge != SHMEM_HUGE_NEVER &&
396bcc52 3480 !(IS_ENABLED(CONFIG_TRANSPARENT_HUGEPAGE) &&
626c3920
AV
3481 has_transparent_hugepage()))
3482 goto unsupported_parameter;
e04dc423 3483 ctx->seen |= SHMEM_SEEN_HUGE;
626c3920
AV
3484 break;
3485 case Opt_mpol:
3486 if (IS_ENABLED(CONFIG_NUMA)) {
3487 mpol_put(ctx->mpol);
3488 ctx->mpol = NULL;
3489 if (mpol_parse_str(param->string, &ctx->mpol))
3490 goto bad_value;
3491 break;
3492 }
3493 goto unsupported_parameter;
ea3271f7
CD
3494 case Opt_inode32:
3495 ctx->full_inums = false;
3496 ctx->seen |= SHMEM_SEEN_INUMS;
3497 break;
3498 case Opt_inode64:
3499 if (sizeof(ino_t) < 8) {
3500 return invalfc(fc,
3501 "Cannot use inode64 with <64bit inums in kernel\n");
3502 }
3503 ctx->full_inums = true;
3504 ctx->seen |= SHMEM_SEEN_INUMS;
3505 break;
e04dc423
AV
3506 }
3507 return 0;
3508
626c3920 3509unsupported_parameter:
f35aa2bc 3510 return invalfc(fc, "Unsupported parameter '%s'", param->key);
626c3920 3511bad_value:
f35aa2bc 3512 return invalfc(fc, "Bad value for '%s'", param->key);
e04dc423
AV
3513}
3514
f3235626 3515static int shmem_parse_options(struct fs_context *fc, void *data)
e04dc423 3516{
f3235626
DH
3517 char *options = data;
3518
33f37c64
AV
3519 if (options) {
3520 int err = security_sb_eat_lsm_opts(options, &fc->security);
3521 if (err)
3522 return err;
3523 }
3524
b00dc3ad 3525 while (options != NULL) {
626c3920 3526 char *this_char = options;
b00dc3ad
HD
3527 for (;;) {
3528 /*
3529 * NUL-terminate this option: unfortunately,
3530 * mount options form a comma-separated list,
3531 * but mpol's nodelist may also contain commas.
3532 */
3533 options = strchr(options, ',');
3534 if (options == NULL)
3535 break;
3536 options++;
3537 if (!isdigit(*options)) {
3538 options[-1] = '\0';
3539 break;
3540 }
3541 }
626c3920 3542 if (*this_char) {
68d68ff6 3543 char *value = strchr(this_char, '=');
f3235626 3544 size_t len = 0;
626c3920
AV
3545 int err;
3546
3547 if (value) {
3548 *value++ = '\0';
f3235626 3549 len = strlen(value);
626c3920 3550 }
f3235626
DH
3551 err = vfs_parse_fs_string(fc, this_char, value, len);
3552 if (err < 0)
3553 return err;
1da177e4 3554 }
1da177e4
LT
3555 }
3556 return 0;
1da177e4
LT
3557}
3558
f3235626
DH
3559/*
3560 * Reconfigure a shmem filesystem.
3561 *
3562 * Note that we disallow change from limited->unlimited blocks/inodes while any
3563 * are in use; but we must separately disallow unlimited->limited, because in
3564 * that case we have no record of how much is already in use.
3565 */
3566static int shmem_reconfigure(struct fs_context *fc)
1da177e4 3567{
f3235626
DH
3568 struct shmem_options *ctx = fc->fs_private;
3569 struct shmem_sb_info *sbinfo = SHMEM_SB(fc->root->d_sb);
0edd73b3 3570 unsigned long inodes;
bf11b9a8 3571 struct mempolicy *mpol = NULL;
f3235626 3572 const char *err;
1da177e4 3573
bf11b9a8 3574 raw_spin_lock(&sbinfo->stat_lock);
0edd73b3 3575 inodes = sbinfo->max_inodes - sbinfo->free_inodes;
0c98c8e1 3576
f3235626
DH
3577 if ((ctx->seen & SHMEM_SEEN_BLOCKS) && ctx->blocks) {
3578 if (!sbinfo->max_blocks) {
3579 err = "Cannot retroactively limit size";
0b5071dd 3580 goto out;
f3235626 3581 }
0b5071dd 3582 if (percpu_counter_compare(&sbinfo->used_blocks,
f3235626
DH
3583 ctx->blocks) > 0) {
3584 err = "Too small a size for current use";
0b5071dd 3585 goto out;
f3235626 3586 }
0b5071dd 3587 }
f3235626
DH
3588 if ((ctx->seen & SHMEM_SEEN_INODES) && ctx->inodes) {
3589 if (!sbinfo->max_inodes) {
3590 err = "Cannot retroactively limit inodes";
0b5071dd 3591 goto out;
f3235626
DH
3592 }
3593 if (ctx->inodes < inodes) {
3594 err = "Too few inodes for current use";
0b5071dd 3595 goto out;
f3235626 3596 }
0b5071dd 3597 }
0edd73b3 3598
ea3271f7
CD
3599 if ((ctx->seen & SHMEM_SEEN_INUMS) && !ctx->full_inums &&
3600 sbinfo->next_ino > UINT_MAX) {
3601 err = "Current inum too high to switch to 32-bit inums";
3602 goto out;
3603 }
3604
f3235626
DH
3605 if (ctx->seen & SHMEM_SEEN_HUGE)
3606 sbinfo->huge = ctx->huge;
ea3271f7
CD
3607 if (ctx->seen & SHMEM_SEEN_INUMS)
3608 sbinfo->full_inums = ctx->full_inums;
f3235626
DH
3609 if (ctx->seen & SHMEM_SEEN_BLOCKS)
3610 sbinfo->max_blocks = ctx->blocks;
3611 if (ctx->seen & SHMEM_SEEN_INODES) {
3612 sbinfo->max_inodes = ctx->inodes;
3613 sbinfo->free_inodes = ctx->inodes - inodes;
0b5071dd 3614 }
71fe804b 3615
5f00110f
GT
3616 /*
3617 * Preserve previous mempolicy unless mpol remount option was specified.
3618 */
f3235626 3619 if (ctx->mpol) {
bf11b9a8 3620 mpol = sbinfo->mpol;
f3235626
DH
3621 sbinfo->mpol = ctx->mpol; /* transfers initial ref */
3622 ctx->mpol = NULL;
5f00110f 3623 }
bf11b9a8
SAS
3624 raw_spin_unlock(&sbinfo->stat_lock);
3625 mpol_put(mpol);
f3235626 3626 return 0;
0edd73b3 3627out:
bf11b9a8 3628 raw_spin_unlock(&sbinfo->stat_lock);
f35aa2bc 3629 return invalfc(fc, "%s", err);
1da177e4 3630}
680d794b 3631
34c80b1d 3632static int shmem_show_options(struct seq_file *seq, struct dentry *root)
680d794b 3633{
34c80b1d 3634 struct shmem_sb_info *sbinfo = SHMEM_SB(root->d_sb);
680d794b
AM
3635
3636 if (sbinfo->max_blocks != shmem_default_max_blocks())
3637 seq_printf(seq, ",size=%luk",
09cbfeaf 3638 sbinfo->max_blocks << (PAGE_SHIFT - 10));
680d794b
AM
3639 if (sbinfo->max_inodes != shmem_default_max_inodes())
3640 seq_printf(seq, ",nr_inodes=%lu", sbinfo->max_inodes);
0825a6f9 3641 if (sbinfo->mode != (0777 | S_ISVTX))
09208d15 3642 seq_printf(seq, ",mode=%03ho", sbinfo->mode);
8751e039
EB
3643 if (!uid_eq(sbinfo->uid, GLOBAL_ROOT_UID))
3644 seq_printf(seq, ",uid=%u",
3645 from_kuid_munged(&init_user_ns, sbinfo->uid));
3646 if (!gid_eq(sbinfo->gid, GLOBAL_ROOT_GID))
3647 seq_printf(seq, ",gid=%u",
3648 from_kgid_munged(&init_user_ns, sbinfo->gid));
ea3271f7
CD
3649
3650 /*
3651 * Showing inode{64,32} might be useful even if it's the system default,
3652 * since then people don't have to resort to checking both here and
3653 * /proc/config.gz to confirm 64-bit inums were successfully applied
3654 * (which may not even exist if IKCONFIG_PROC isn't enabled).
3655 *
3656 * We hide it when inode64 isn't the default and we are using 32-bit
3657 * inodes, since that probably just means the feature isn't even under
3658 * consideration.
3659 *
3660 * As such:
3661 *
3662 * +-----------------+-----------------+
3663 * | TMPFS_INODE64=y | TMPFS_INODE64=n |
3664 * +------------------+-----------------+-----------------+
3665 * | full_inums=true | show | show |
3666 * | full_inums=false | show | hide |
3667 * +------------------+-----------------+-----------------+
3668 *
3669 */
3670 if (IS_ENABLED(CONFIG_TMPFS_INODE64) || sbinfo->full_inums)
3671 seq_printf(seq, ",inode%d", (sbinfo->full_inums ? 64 : 32));
396bcc52 3672#ifdef CONFIG_TRANSPARENT_HUGEPAGE
5a6e75f8
KS
3673 /* Rightly or wrongly, show huge mount option unmasked by shmem_huge */
3674 if (sbinfo->huge)
3675 seq_printf(seq, ",huge=%s", shmem_format_huge(sbinfo->huge));
3676#endif
71fe804b 3677 shmem_show_mpol(seq, sbinfo->mpol);
680d794b
AM
3678 return 0;
3679}
9183df25 3680
680d794b 3681#endif /* CONFIG_TMPFS */
1da177e4
LT
3682
3683static void shmem_put_super(struct super_block *sb)
3684{
602586a8
HD
3685 struct shmem_sb_info *sbinfo = SHMEM_SB(sb);
3686
e809d5f0 3687 free_percpu(sbinfo->ino_batch);
602586a8 3688 percpu_counter_destroy(&sbinfo->used_blocks);
49cd0a5c 3689 mpol_put(sbinfo->mpol);
602586a8 3690 kfree(sbinfo);
1da177e4
LT
3691 sb->s_fs_info = NULL;
3692}
3693
f3235626 3694static int shmem_fill_super(struct super_block *sb, struct fs_context *fc)
1da177e4 3695{
f3235626 3696 struct shmem_options *ctx = fc->fs_private;
1da177e4 3697 struct inode *inode;
0edd73b3 3698 struct shmem_sb_info *sbinfo;
680d794b
AM
3699
3700 /* Round up to L1_CACHE_BYTES to resist false sharing */
425fbf04 3701 sbinfo = kzalloc(max((int)sizeof(struct shmem_sb_info),
680d794b
AM
3702 L1_CACHE_BYTES), GFP_KERNEL);
3703 if (!sbinfo)
3704 return -ENOMEM;
3705
680d794b 3706 sb->s_fs_info = sbinfo;
1da177e4 3707
0edd73b3 3708#ifdef CONFIG_TMPFS
1da177e4
LT
3709 /*
3710 * Per default we only allow half of the physical ram per
3711 * tmpfs instance, limiting inodes to one per page of lowmem;
3712 * but the internal instance is left unlimited.
3713 */
1751e8a6 3714 if (!(sb->s_flags & SB_KERNMOUNT)) {
f3235626
DH
3715 if (!(ctx->seen & SHMEM_SEEN_BLOCKS))
3716 ctx->blocks = shmem_default_max_blocks();
3717 if (!(ctx->seen & SHMEM_SEEN_INODES))
3718 ctx->inodes = shmem_default_max_inodes();
ea3271f7
CD
3719 if (!(ctx->seen & SHMEM_SEEN_INUMS))
3720 ctx->full_inums = IS_ENABLED(CONFIG_TMPFS_INODE64);
ca4e0519 3721 } else {
1751e8a6 3722 sb->s_flags |= SB_NOUSER;
1da177e4 3723 }
91828a40 3724 sb->s_export_op = &shmem_export_ops;
1751e8a6 3725 sb->s_flags |= SB_NOSEC;
1da177e4 3726#else
1751e8a6 3727 sb->s_flags |= SB_NOUSER;
1da177e4 3728#endif
f3235626
DH
3729 sbinfo->max_blocks = ctx->blocks;
3730 sbinfo->free_inodes = sbinfo->max_inodes = ctx->inodes;
e809d5f0
CD
3731 if (sb->s_flags & SB_KERNMOUNT) {
3732 sbinfo->ino_batch = alloc_percpu(ino_t);
3733 if (!sbinfo->ino_batch)
3734 goto failed;
3735 }
f3235626
DH
3736 sbinfo->uid = ctx->uid;
3737 sbinfo->gid = ctx->gid;
ea3271f7 3738 sbinfo->full_inums = ctx->full_inums;
f3235626
DH
3739 sbinfo->mode = ctx->mode;
3740 sbinfo->huge = ctx->huge;
3741 sbinfo->mpol = ctx->mpol;
3742 ctx->mpol = NULL;
1da177e4 3743
bf11b9a8 3744 raw_spin_lock_init(&sbinfo->stat_lock);
908c7f19 3745 if (percpu_counter_init(&sbinfo->used_blocks, 0, GFP_KERNEL))
602586a8 3746 goto failed;
779750d2
KS
3747 spin_lock_init(&sbinfo->shrinklist_lock);
3748 INIT_LIST_HEAD(&sbinfo->shrinklist);
0edd73b3 3749
285b2c4f 3750 sb->s_maxbytes = MAX_LFS_FILESIZE;
09cbfeaf
KS
3751 sb->s_blocksize = PAGE_SIZE;
3752 sb->s_blocksize_bits = PAGE_SHIFT;
1da177e4
LT
3753 sb->s_magic = TMPFS_MAGIC;
3754 sb->s_op = &shmem_ops;
cfd95a9c 3755 sb->s_time_gran = 1;
b09e0fa4 3756#ifdef CONFIG_TMPFS_XATTR
39f0247d 3757 sb->s_xattr = shmem_xattr_handlers;
b09e0fa4
EP
3758#endif
3759#ifdef CONFIG_TMPFS_POSIX_ACL
1751e8a6 3760 sb->s_flags |= SB_POSIXACL;
39f0247d 3761#endif
2b4db796 3762 uuid_gen(&sb->s_uuid);
0edd73b3 3763
454abafe 3764 inode = shmem_get_inode(sb, NULL, S_IFDIR | sbinfo->mode, 0, VM_NORESERVE);
1da177e4
LT
3765 if (!inode)
3766 goto failed;
680d794b
AM
3767 inode->i_uid = sbinfo->uid;
3768 inode->i_gid = sbinfo->gid;
318ceed0
AV
3769 sb->s_root = d_make_root(inode);
3770 if (!sb->s_root)
48fde701 3771 goto failed;
1da177e4
LT
3772 return 0;
3773
1da177e4
LT
3774failed:
3775 shmem_put_super(sb);
f2b346e4 3776 return -ENOMEM;
1da177e4
LT
3777}
3778
f3235626
DH
3779static int shmem_get_tree(struct fs_context *fc)
3780{
3781 return get_tree_nodev(fc, shmem_fill_super);
3782}
3783
3784static void shmem_free_fc(struct fs_context *fc)
3785{
3786 struct shmem_options *ctx = fc->fs_private;
3787
3788 if (ctx) {
3789 mpol_put(ctx->mpol);
3790 kfree(ctx);
3791 }
3792}
3793
3794static const struct fs_context_operations shmem_fs_context_ops = {
3795 .free = shmem_free_fc,
3796 .get_tree = shmem_get_tree,
3797#ifdef CONFIG_TMPFS
3798 .parse_monolithic = shmem_parse_options,
3799 .parse_param = shmem_parse_one,
3800 .reconfigure = shmem_reconfigure,
3801#endif
3802};
3803
fcc234f8 3804static struct kmem_cache *shmem_inode_cachep;
1da177e4
LT
3805
3806static struct inode *shmem_alloc_inode(struct super_block *sb)
3807{
41ffe5d5 3808 struct shmem_inode_info *info;
fd60b288 3809 info = alloc_inode_sb(sb, shmem_inode_cachep, GFP_KERNEL);
41ffe5d5 3810 if (!info)
1da177e4 3811 return NULL;
41ffe5d5 3812 return &info->vfs_inode;
1da177e4
LT
3813}
3814
74b1da56 3815static void shmem_free_in_core_inode(struct inode *inode)
fa0d7e3d 3816{
84e710da
AV
3817 if (S_ISLNK(inode->i_mode))
3818 kfree(inode->i_link);
fa0d7e3d
NP
3819 kmem_cache_free(shmem_inode_cachep, SHMEM_I(inode));
3820}
3821
1da177e4
LT
3822static void shmem_destroy_inode(struct inode *inode)
3823{
09208d15 3824 if (S_ISREG(inode->i_mode))
1da177e4 3825 mpol_free_shared_policy(&SHMEM_I(inode)->policy);
1da177e4
LT
3826}
3827
41ffe5d5 3828static void shmem_init_inode(void *foo)
1da177e4 3829{
41ffe5d5
HD
3830 struct shmem_inode_info *info = foo;
3831 inode_init_once(&info->vfs_inode);
1da177e4
LT
3832}
3833
9a8ec03e 3834static void shmem_init_inodecache(void)
1da177e4
LT
3835{
3836 shmem_inode_cachep = kmem_cache_create("shmem_inode_cache",
3837 sizeof(struct shmem_inode_info),
5d097056 3838 0, SLAB_PANIC|SLAB_ACCOUNT, shmem_init_inode);
1da177e4
LT
3839}
3840
41ffe5d5 3841static void shmem_destroy_inodecache(void)
1da177e4 3842{
1a1d92c1 3843 kmem_cache_destroy(shmem_inode_cachep);
1da177e4
LT
3844}
3845
a7605426
YS
3846/* Keep the page in page cache instead of truncating it */
3847static int shmem_error_remove_page(struct address_space *mapping,
3848 struct page *page)
3849{
3850 return 0;
3851}
3852
30e6a51d 3853const struct address_space_operations shmem_aops = {
1da177e4 3854 .writepage = shmem_writepage,
46de8b97 3855 .dirty_folio = noop_dirty_folio,
1da177e4 3856#ifdef CONFIG_TMPFS
800d15a5
NP
3857 .write_begin = shmem_write_begin,
3858 .write_end = shmem_write_end,
1da177e4 3859#endif
1c93923c 3860#ifdef CONFIG_MIGRATION
54184650 3861 .migrate_folio = migrate_folio,
1c93923c 3862#endif
a7605426 3863 .error_remove_page = shmem_error_remove_page,
1da177e4 3864};
30e6a51d 3865EXPORT_SYMBOL(shmem_aops);
1da177e4 3866
15ad7cdc 3867static const struct file_operations shmem_file_operations = {
1da177e4 3868 .mmap = shmem_mmap,
c01d5b30 3869 .get_unmapped_area = shmem_get_unmapped_area,
1da177e4 3870#ifdef CONFIG_TMPFS
220f2ac9 3871 .llseek = shmem_file_llseek,
2ba5bbed 3872 .read_iter = shmem_file_read_iter,
8174202b 3873 .write_iter = generic_file_write_iter,
1b061d92 3874 .fsync = noop_fsync,
82c156f8 3875 .splice_read = generic_file_splice_read,
f6cb85d0 3876 .splice_write = iter_file_splice_write,
83e4fa9c 3877 .fallocate = shmem_fallocate,
1da177e4
LT
3878#endif
3879};
3880
92e1d5be 3881static const struct inode_operations shmem_inode_operations = {
44a30220 3882 .getattr = shmem_getattr,
94c1e62d 3883 .setattr = shmem_setattr,
b09e0fa4 3884#ifdef CONFIG_TMPFS_XATTR
b09e0fa4 3885 .listxattr = shmem_listxattr,
feda821e 3886 .set_acl = simple_set_acl,
e408e695
TT
3887 .fileattr_get = shmem_fileattr_get,
3888 .fileattr_set = shmem_fileattr_set,
b09e0fa4 3889#endif
1da177e4
LT
3890};
3891
92e1d5be 3892static const struct inode_operations shmem_dir_inode_operations = {
1da177e4 3893#ifdef CONFIG_TMPFS
f7cd16a5 3894 .getattr = shmem_getattr,
1da177e4
LT
3895 .create = shmem_create,
3896 .lookup = simple_lookup,
3897 .link = shmem_link,
3898 .unlink = shmem_unlink,
3899 .symlink = shmem_symlink,
3900 .mkdir = shmem_mkdir,
3901 .rmdir = shmem_rmdir,
3902 .mknod = shmem_mknod,
2773bf00 3903 .rename = shmem_rename2,
60545d0d 3904 .tmpfile = shmem_tmpfile,
1da177e4 3905#endif
b09e0fa4 3906#ifdef CONFIG_TMPFS_XATTR
b09e0fa4 3907 .listxattr = shmem_listxattr,
e408e695
TT
3908 .fileattr_get = shmem_fileattr_get,
3909 .fileattr_set = shmem_fileattr_set,
b09e0fa4 3910#endif
39f0247d 3911#ifdef CONFIG_TMPFS_POSIX_ACL
94c1e62d 3912 .setattr = shmem_setattr,
feda821e 3913 .set_acl = simple_set_acl,
39f0247d
AG
3914#endif
3915};
3916
92e1d5be 3917static const struct inode_operations shmem_special_inode_operations = {
f7cd16a5 3918 .getattr = shmem_getattr,
b09e0fa4 3919#ifdef CONFIG_TMPFS_XATTR
b09e0fa4 3920 .listxattr = shmem_listxattr,
b09e0fa4 3921#endif
39f0247d 3922#ifdef CONFIG_TMPFS_POSIX_ACL
94c1e62d 3923 .setattr = shmem_setattr,
feda821e 3924 .set_acl = simple_set_acl,
39f0247d 3925#endif
1da177e4
LT
3926};
3927
759b9775 3928static const struct super_operations shmem_ops = {
1da177e4 3929 .alloc_inode = shmem_alloc_inode,
74b1da56 3930 .free_inode = shmem_free_in_core_inode,
1da177e4
LT
3931 .destroy_inode = shmem_destroy_inode,
3932#ifdef CONFIG_TMPFS
3933 .statfs = shmem_statfs,
680d794b 3934 .show_options = shmem_show_options,
1da177e4 3935#endif
1f895f75 3936 .evict_inode = shmem_evict_inode,
1da177e4
LT
3937 .drop_inode = generic_delete_inode,
3938 .put_super = shmem_put_super,
396bcc52 3939#ifdef CONFIG_TRANSPARENT_HUGEPAGE
779750d2
KS
3940 .nr_cached_objects = shmem_unused_huge_count,
3941 .free_cached_objects = shmem_unused_huge_scan,
3942#endif
1da177e4
LT
3943};
3944
f0f37e2f 3945static const struct vm_operations_struct shmem_vm_ops = {
54cb8821 3946 .fault = shmem_fault,
d7c17551 3947 .map_pages = filemap_map_pages,
1da177e4
LT
3948#ifdef CONFIG_NUMA
3949 .set_policy = shmem_set_policy,
3950 .get_policy = shmem_get_policy,
3951#endif
3952};
3953
f3235626 3954int shmem_init_fs_context(struct fs_context *fc)
1da177e4 3955{
f3235626
DH
3956 struct shmem_options *ctx;
3957
3958 ctx = kzalloc(sizeof(struct shmem_options), GFP_KERNEL);
3959 if (!ctx)
3960 return -ENOMEM;
3961
3962 ctx->mode = 0777 | S_ISVTX;
3963 ctx->uid = current_fsuid();
3964 ctx->gid = current_fsgid();
3965
3966 fc->fs_private = ctx;
3967 fc->ops = &shmem_fs_context_ops;
3968 return 0;
1da177e4
LT
3969}
3970
41ffe5d5 3971static struct file_system_type shmem_fs_type = {
1da177e4
LT
3972 .owner = THIS_MODULE,
3973 .name = "tmpfs",
f3235626
DH
3974 .init_fs_context = shmem_init_fs_context,
3975#ifdef CONFIG_TMPFS
d7167b14 3976 .parameters = shmem_fs_parameters,
f3235626 3977#endif
1da177e4 3978 .kill_sb = kill_litter_super,
ff36da69 3979 .fs_flags = FS_USERNS_MOUNT,
1da177e4 3980};
1da177e4 3981
9096bbe9 3982void __init shmem_init(void)
1da177e4
LT
3983{
3984 int error;
3985
9a8ec03e 3986 shmem_init_inodecache();
1da177e4 3987
41ffe5d5 3988 error = register_filesystem(&shmem_fs_type);
1da177e4 3989 if (error) {
1170532b 3990 pr_err("Could not register tmpfs\n");
1da177e4
LT
3991 goto out2;
3992 }
95dc112a 3993
ca4e0519 3994 shm_mnt = kern_mount(&shmem_fs_type);
1da177e4
LT
3995 if (IS_ERR(shm_mnt)) {
3996 error = PTR_ERR(shm_mnt);
1170532b 3997 pr_err("Could not kern_mount tmpfs\n");
1da177e4
LT
3998 goto out1;
3999 }
5a6e75f8 4000
396bcc52 4001#ifdef CONFIG_TRANSPARENT_HUGEPAGE
435c0b87 4002 if (has_transparent_hugepage() && shmem_huge > SHMEM_HUGE_DENY)
5a6e75f8
KS
4003 SHMEM_SB(shm_mnt->mnt_sb)->huge = shmem_huge;
4004 else
5e6e5a12 4005 shmem_huge = SHMEM_HUGE_NEVER; /* just in case it was patched */
5a6e75f8 4006#endif
9096bbe9 4007 return;
1da177e4
LT
4008
4009out1:
41ffe5d5 4010 unregister_filesystem(&shmem_fs_type);
1da177e4 4011out2:
41ffe5d5 4012 shmem_destroy_inodecache();
1da177e4 4013 shm_mnt = ERR_PTR(error);
1da177e4 4014}
853ac43a 4015
396bcc52 4016#if defined(CONFIG_TRANSPARENT_HUGEPAGE) && defined(CONFIG_SYSFS)
5a6e75f8 4017static ssize_t shmem_enabled_show(struct kobject *kobj,
79d4d38a 4018 struct kobj_attribute *attr, char *buf)
5a6e75f8 4019{
26083eb6 4020 static const int values[] = {
5a6e75f8
KS
4021 SHMEM_HUGE_ALWAYS,
4022 SHMEM_HUGE_WITHIN_SIZE,
4023 SHMEM_HUGE_ADVISE,
4024 SHMEM_HUGE_NEVER,
4025 SHMEM_HUGE_DENY,
4026 SHMEM_HUGE_FORCE,
4027 };
79d4d38a
JP
4028 int len = 0;
4029 int i;
5a6e75f8 4030
79d4d38a
JP
4031 for (i = 0; i < ARRAY_SIZE(values); i++) {
4032 len += sysfs_emit_at(buf, len,
4033 shmem_huge == values[i] ? "%s[%s]" : "%s%s",
4034 i ? " " : "",
4035 shmem_format_huge(values[i]));
5a6e75f8 4036 }
79d4d38a
JP
4037
4038 len += sysfs_emit_at(buf, len, "\n");
4039
4040 return len;
5a6e75f8
KS
4041}
4042
4043static ssize_t shmem_enabled_store(struct kobject *kobj,
4044 struct kobj_attribute *attr, const char *buf, size_t count)
4045{
4046 char tmp[16];
4047 int huge;
4048
4049 if (count + 1 > sizeof(tmp))
4050 return -EINVAL;
4051 memcpy(tmp, buf, count);
4052 tmp[count] = '\0';
4053 if (count && tmp[count - 1] == '\n')
4054 tmp[count - 1] = '\0';
4055
4056 huge = shmem_parse_huge(tmp);
4057 if (huge == -EINVAL)
4058 return -EINVAL;
4059 if (!has_transparent_hugepage() &&
4060 huge != SHMEM_HUGE_NEVER && huge != SHMEM_HUGE_DENY)
4061 return -EINVAL;
4062
4063 shmem_huge = huge;
435c0b87 4064 if (shmem_huge > SHMEM_HUGE_DENY)
5a6e75f8
KS
4065 SHMEM_SB(shm_mnt->mnt_sb)->huge = shmem_huge;
4066 return count;
4067}
4068
4bfa8ada 4069struct kobj_attribute shmem_enabled_attr = __ATTR_RW(shmem_enabled);
396bcc52 4070#endif /* CONFIG_TRANSPARENT_HUGEPAGE && CONFIG_SYSFS */
f3f0e1d2 4071
853ac43a
MM
4072#else /* !CONFIG_SHMEM */
4073
4074/*
4075 * tiny-shmem: simple shmemfs and tmpfs using ramfs code
4076 *
4077 * This is intended for small system where the benefits of the full
4078 * shmem code (swap-backed and resource-limited) are outweighed by
4079 * their complexity. On systems without swap this code should be
4080 * effectively equivalent, but much lighter weight.
4081 */
4082
41ffe5d5 4083static struct file_system_type shmem_fs_type = {
853ac43a 4084 .name = "tmpfs",
f3235626 4085 .init_fs_context = ramfs_init_fs_context,
d7167b14 4086 .parameters = ramfs_fs_parameters,
853ac43a 4087 .kill_sb = kill_litter_super,
2b8576cb 4088 .fs_flags = FS_USERNS_MOUNT,
853ac43a
MM
4089};
4090
9096bbe9 4091void __init shmem_init(void)
853ac43a 4092{
41ffe5d5 4093 BUG_ON(register_filesystem(&shmem_fs_type) != 0);
853ac43a 4094
41ffe5d5 4095 shm_mnt = kern_mount(&shmem_fs_type);
853ac43a 4096 BUG_ON(IS_ERR(shm_mnt));
853ac43a
MM
4097}
4098
10a9c496 4099int shmem_unuse(unsigned int type)
853ac43a
MM
4100{
4101 return 0;
4102}
4103
d7c9e99a 4104int shmem_lock(struct file *file, int lock, struct ucounts *ucounts)
3f96b79a
HD
4105{
4106 return 0;
4107}
4108
24513264
HD
4109void shmem_unlock_mapping(struct address_space *mapping)
4110{
4111}
4112
c01d5b30
HD
4113#ifdef CONFIG_MMU
4114unsigned long shmem_get_unmapped_area(struct file *file,
4115 unsigned long addr, unsigned long len,
4116 unsigned long pgoff, unsigned long flags)
4117{
4118 return current->mm->get_unmapped_area(file, addr, len, pgoff, flags);
4119}
4120#endif
4121
41ffe5d5 4122void shmem_truncate_range(struct inode *inode, loff_t lstart, loff_t lend)
94c1e62d 4123{
41ffe5d5 4124 truncate_inode_pages_range(inode->i_mapping, lstart, lend);
94c1e62d
HD
4125}
4126EXPORT_SYMBOL_GPL(shmem_truncate_range);
4127
0b0a0806
HD
4128#define shmem_vm_ops generic_file_vm_ops
4129#define shmem_file_operations ramfs_file_operations
454abafe 4130#define shmem_get_inode(sb, dir, mode, dev, flags) ramfs_get_inode(sb, dir, mode, dev)
0b0a0806
HD
4131#define shmem_acct_size(flags, size) 0
4132#define shmem_unacct_size(flags, size) do {} while (0)
853ac43a
MM
4133
4134#endif /* CONFIG_SHMEM */
4135
4136/* common code */
1da177e4 4137
703321b6 4138static struct file *__shmem_file_setup(struct vfsmount *mnt, const char *name, loff_t size,
c7277090 4139 unsigned long flags, unsigned int i_flags)
1da177e4 4140{
1da177e4 4141 struct inode *inode;
93dec2da 4142 struct file *res;
1da177e4 4143
703321b6
MA
4144 if (IS_ERR(mnt))
4145 return ERR_CAST(mnt);
1da177e4 4146
285b2c4f 4147 if (size < 0 || size > MAX_LFS_FILESIZE)
1da177e4
LT
4148 return ERR_PTR(-EINVAL);
4149
4150 if (shmem_acct_size(flags, size))
4151 return ERR_PTR(-ENOMEM);
4152
93dec2da
AV
4153 inode = shmem_get_inode(mnt->mnt_sb, NULL, S_IFREG | S_IRWXUGO, 0,
4154 flags);
dac2d1f6
AV
4155 if (unlikely(!inode)) {
4156 shmem_unacct_size(flags, size);
4157 return ERR_PTR(-ENOSPC);
4158 }
c7277090 4159 inode->i_flags |= i_flags;
1da177e4 4160 inode->i_size = size;
6d6b77f1 4161 clear_nlink(inode); /* It is unlinked */
26567cdb 4162 res = ERR_PTR(ramfs_nommu_expand_for_mapping(inode, size));
93dec2da
AV
4163 if (!IS_ERR(res))
4164 res = alloc_file_pseudo(inode, mnt, name, O_RDWR,
4165 &shmem_file_operations);
26567cdb 4166 if (IS_ERR(res))
93dec2da 4167 iput(inode);
6b4d0b27 4168 return res;
1da177e4 4169}
c7277090
EP
4170
4171/**
4172 * shmem_kernel_file_setup - get an unlinked file living in tmpfs which must be
4173 * kernel internal. There will be NO LSM permission checks against the
4174 * underlying inode. So users of this interface must do LSM checks at a
e1832f29
SS
4175 * higher layer. The users are the big_key and shm implementations. LSM
4176 * checks are provided at the key or shm level rather than the inode.
c7277090
EP
4177 * @name: name for dentry (to be seen in /proc/<pid>/maps
4178 * @size: size to be set for the file
4179 * @flags: VM_NORESERVE suppresses pre-accounting of the entire object size
4180 */
4181struct file *shmem_kernel_file_setup(const char *name, loff_t size, unsigned long flags)
4182{
703321b6 4183 return __shmem_file_setup(shm_mnt, name, size, flags, S_PRIVATE);
c7277090
EP
4184}
4185
4186/**
4187 * shmem_file_setup - get an unlinked file living in tmpfs
4188 * @name: name for dentry (to be seen in /proc/<pid>/maps
4189 * @size: size to be set for the file
4190 * @flags: VM_NORESERVE suppresses pre-accounting of the entire object size
4191 */
4192struct file *shmem_file_setup(const char *name, loff_t size, unsigned long flags)
4193{
703321b6 4194 return __shmem_file_setup(shm_mnt, name, size, flags, 0);
c7277090 4195}
395e0ddc 4196EXPORT_SYMBOL_GPL(shmem_file_setup);
1da177e4 4197
703321b6
MA
4198/**
4199 * shmem_file_setup_with_mnt - get an unlinked file living in tmpfs
4200 * @mnt: the tmpfs mount where the file will be created
4201 * @name: name for dentry (to be seen in /proc/<pid>/maps
4202 * @size: size to be set for the file
4203 * @flags: VM_NORESERVE suppresses pre-accounting of the entire object size
4204 */
4205struct file *shmem_file_setup_with_mnt(struct vfsmount *mnt, const char *name,
4206 loff_t size, unsigned long flags)
4207{
4208 return __shmem_file_setup(mnt, name, size, flags, 0);
4209}
4210EXPORT_SYMBOL_GPL(shmem_file_setup_with_mnt);
4211
46711810 4212/**
1da177e4 4213 * shmem_zero_setup - setup a shared anonymous mapping
45e55300 4214 * @vma: the vma to be mmapped is prepared by do_mmap
1da177e4
LT
4215 */
4216int shmem_zero_setup(struct vm_area_struct *vma)
4217{
4218 struct file *file;
4219 loff_t size = vma->vm_end - vma->vm_start;
4220
66fc1303 4221 /*
c1e8d7c6 4222 * Cloning a new file under mmap_lock leads to a lock ordering conflict
66fc1303
HD
4223 * between XFS directory reading and selinux: since this file is only
4224 * accessible to the user through its mapping, use S_PRIVATE flag to
4225 * bypass file security, in the same way as shmem_kernel_file_setup().
4226 */
703321b6 4227 file = shmem_kernel_file_setup("dev/zero", size, vma->vm_flags);
1da177e4
LT
4228 if (IS_ERR(file))
4229 return PTR_ERR(file);
4230
4231 if (vma->vm_file)
4232 fput(vma->vm_file);
4233 vma->vm_file = file;
4234 vma->vm_ops = &shmem_vm_ops;
f3f0e1d2 4235
1da177e4
LT
4236 return 0;
4237}
d9d90e5e
HD
4238
4239/**
4240 * shmem_read_mapping_page_gfp - read into page cache, using specified page allocation flags.
4241 * @mapping: the page's address_space
4242 * @index: the page index
4243 * @gfp: the page allocator flags to use if allocating
4244 *
4245 * This behaves as a tmpfs "read_cache_page_gfp(mapping, index, gfp)",
4246 * with any new page allocations done using the specified allocation flags.
7e0a1265 4247 * But read_cache_page_gfp() uses the ->read_folio() method: which does not
d9d90e5e
HD
4248 * suit tmpfs, since it may have pages in swapcache, and needs to find those
4249 * for itself; although drivers/gpu/drm i915 and ttm rely upon this support.
4250 *
68da9f05
HD
4251 * i915_gem_object_get_pages_gtt() mixes __GFP_NORETRY | __GFP_NOWARN in
4252 * with the mapping_gfp_mask(), to avoid OOMing the machine unnecessarily.
d9d90e5e
HD
4253 */
4254struct page *shmem_read_mapping_page_gfp(struct address_space *mapping,
4255 pgoff_t index, gfp_t gfp)
4256{
68da9f05
HD
4257#ifdef CONFIG_SHMEM
4258 struct inode *inode = mapping->host;
a3a9c397 4259 struct folio *folio;
9276aad6 4260 struct page *page;
68da9f05
HD
4261 int error;
4262
30e6a51d 4263 BUG_ON(!shmem_mapping(mapping));
a3a9c397 4264 error = shmem_get_folio_gfp(inode, index, &folio, SGP_CACHE,
cfda0526 4265 gfp, NULL, NULL, NULL);
68da9f05 4266 if (error)
a7605426
YS
4267 return ERR_PTR(error);
4268
a3a9c397
MWO
4269 folio_unlock(folio);
4270 page = folio_file_page(folio, index);
a7605426 4271 if (PageHWPoison(page)) {
a3a9c397 4272 folio_put(folio);
a7605426
YS
4273 return ERR_PTR(-EIO);
4274 }
4275
68da9f05
HD
4276 return page;
4277#else
4278 /*
4279 * The tiny !SHMEM case uses ramfs without swap
4280 */
d9d90e5e 4281 return read_cache_page_gfp(mapping, index, gfp);
68da9f05 4282#endif
d9d90e5e
HD
4283}
4284EXPORT_SYMBOL_GPL(shmem_read_mapping_page_gfp);
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